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7 commits

Author SHA1 Message Date
igneum-labs
d5a0906077 workers merge: the Mac mini row (igneum-mini, the Mac build box, M6) from a mini.json source its launchd collector pushes to build-1; down after 120 s
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
2026-10-08 20:13:38 +00:00
igneum-labs
8af54f498c workers: merge-workers.mjs, the build-1-native page producer (curls every box build-N.igneum.network/workers.json, no Mac, no Vercel, no key; the founder rule 8 Oct 2026); runs under igneum-workers-merge.timer on build-1
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
2026-10-08 19:44:08 +00:00
igneum-labs
2b51c63e1c workers push: HOSTS enumerates every build-server-N host file, so build-4 to 9 join the page without an edit (they read as down tonight, hardcoded to three); inline readdir, not the later-defined safeList (a module-top TDZ crash)
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
2026-10-08 19:24:10 +00:00
igneum-labs
7037193816 lease: the pool round is serialised by a mutex and the step sleep jittered (build-2, 8 Oct 2026 19:3x BST: three waiters on the same 10 s step interleaved their take-check-release rounds and each read 0 free cores for 20 minutes with nothing running)
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
2026-10-08 18:35:30 +00:00
igneum-labs
fd2a3daf97 lease: the top class widened to the P01 campaign, the object matrix, the census, the family gate, review, fast-time and freeze cases and their owners (the coordinator, 8 Oct 2026 19:2x BST, as build-7/8/9 join the pool)
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
2026-10-08 18:30:19 +00:00
igneum-labs
fe37c51e69 lease: prune dead waiters at every status read and before the priority read (build-2 held seven ghost waiters for up to 2 h on 8 Oct 2026, one adv-class ghost ahead of every live release waiter, so the queue never drained)
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
2026-10-08 18:06:47 +00:00
igneum-labs
873414eaac provision.sh: step_lease_tool reads the build-owned mirror as build (root's git refused it, so build-6 never got the lease tool from the step; installed by hand, 8 Oct 2026)
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
2026-10-08 18:05:56 +00:00
1372 changed files with 1756 additions and 290967 deletions

View file

@ -141,11 +141,7 @@ var View = (function () {
case 'executed': return { word: 'executed', tone: 'ink', why: 'in ' + blk };
case 'proven': return { word: 'proven', tone: 'ink', why: 'in ' + blk + ', proof paid' };
case 'finalised': return { word: 'finalised', tone: 'ink', why: 'under a locked checkpoint, not yet verified here' };
// section 9 of docs/spec/finality-guarantees.md: a block under a locked checkpoint is finalised even while the network's
// finality is paused; the pause is the network's word, never a transaction's
case 'finality not active': return { word: 'finalised', tone: 'ink', why: 'under a locked checkpoint, not yet verified here; finality is paused on the network above it' };
// review B F04: a recovery lock is labelled "recovery", never plain "final" (the node lane's lockKind word)
case 'finalised by a recovery lock': return { word: 'finalised (recovery lock)', tone: 'ink', why: 'under a recovery lock: the surviving majority’s lock after a long pause, not a certified checkpoint; not yet verified here' };
case 'finality not active': return { word: 'finality not active', tone: 'ink', why: 'under a locked checkpoint; finality is paused on the network' };
case 'unknown': return { word: 'pending', tone: '', why: 'not in any block the node holds' };
}
if (e.finality === 'in_block') return { word: 'included', tone: '', why: 'in ' + blk };

View file

@ -103,14 +103,7 @@ test('one state word per row: the wallet\'s verified final wins, failed from the
assert.deepEqual(V.stateWord(e, 'proven'), { word: 'proven', tone: 'ink', why: 'in block 140,262, proof paid' });
// the node says finalised but this wallet has not verified the certificate: the word, not the molten tone
assert.deepEqual(V.stateWord(e, 'finalised'), { word: 'finalised', tone: 'ink', why: 'under a locked checkpoint, not yet verified here' });
// section 9 of docs/spec/finality-guarantees.md (8 October 2026): a block under a locked checkpoint is finalised even while
// the network's finality is paused; the pause is the network's state word, never a transaction's. Known-failed first: the
// node's "finality not active" word was shown on the row.
assert.deepEqual(V.stateWord(e, 'finality not active'), { word: 'finalised', tone: 'ink', why: 'under a locked checkpoint, not yet verified here; finality is paused on the network above it' });
// review B F04 (the founder, 8 October 2026): a recovery lock is labelled "recovery", never plain "final": the node's word
// for a transaction under one (the node lane's lockKind) reads on the row as finalised by a recovery lock. Known-failed
// first: the word fell through to the label.
assert.deepEqual(V.stateWord(e, 'finalised by a recovery lock'), { word: 'finalised (recovery lock)', tone: 'ink', why: 'under a recovery lock: the surviving majority’s lock after a long pause, not a certified checkpoint; not yet verified here' });
assert.deepEqual(V.stateWord(e, 'finality not active'), { word: 'finality not active', tone: 'ink', why: 'under a locked checkpoint; finality is paused on the network' });
assert.equal(V.stateWord(e, 'unknown').word, 'pending');
// no node word yet (the public RPC, or not asked): the wallet's label
assert.deepEqual(V.stateWord(e, ''), { word: 'included', tone: '', why: 'in block 140,262' });
@ -121,8 +114,8 @@ test('one state word per row: the wallet\'s verified final wins, failed from the
assert.deepEqual(V.stateWord(r, ''), { word: 'executed', tone: 'ink', why: 'in block 140,201' });
assert.equal(V.stateWord(entry({ hash: 'proving-1-0', kind: 'proving', finality: 'final', checkpoint: 9 }), '').word, 'finalised');
// never a stronger word than the chain's: the words the row can show are exactly the node's plus failed
const words = new Set(['pending', 'included', 'executed', 'proven', 'finalised', 'finalised (recovery lock)', 'failed']);
for (const w of ['pending', 'included', 'executed', 'proven', 'finalised', 'finality not active', 'finalised by a recovery lock', 'unknown', '']) assert.ok(words.has(V.stateWord(e, w).word), w);
const words = new Set(['pending', 'included', 'executed', 'proven', 'finalised', 'finality not active', 'failed']);
for (const w of ['pending', 'included', 'executed', 'proven', 'finalised', 'finality not active', 'unknown', '']) assert.ok(words.has(V.stateWord(e, w).word), w);
});
test('the row model: kind word, who, sign, amount, the rows that need the node\'s word', () => {

View file

@ -1,37 +0,0 @@
// SPDX-License-Identifier: MIT
pragma solidity ^0.8.24;
import {Vm, VM_ADDRESS} from "../test/Vm.sol";
import {IgneumCertificateVerifier} from "../src/IgneumCertificateVerifier.sol";
/// Installs (or replaces) the voter table on an already deployed verifier (BRIDGE_VERIFIER) from the vectors file in
/// BRIDGE_TABLE_JSON (a gen.mjs table or chain output: keys, weights, index) and, when the file carries a certificate
/// (bitmap, signature), submits it. The deployer key comes from BRIDGE_DEPLOYER_KEY in the environment, never printed.
/// Used for a chain whose table is read at its first lock, after the contract itself was deployed (8 October 2026,
/// igneum-devnet-4: the contract first, the table when the weight window filled).
///
/// BRIDGE_VERIFIER=0x.. BRIDGE_TABLE_JSON=test/vectors/dn4-table.json forge script script/Install.s.sol:Install --rpc-url sepolia --broadcast --sig "run()"
contract Install {
Vm constant vm = Vm(VM_ADDRESS);
function run() external {
uint256 key = vm.envUint("BRIDGE_DEPLOYER_KEY");
IgneumCertificateVerifier v = IgneumCertificateVerifier(vm.envAddress("BRIDGE_VERIFIER"));
string memory j = vm.readFile(vm.envOr("BRIDGE_TABLE_JSON", "test/vectors/dn4-table.json"));
bytes[] memory keys = vm.parseJsonBytesArray(j, ".keys");
uint256[] memory w = vm.parseJsonUintArray(j, ".weights");
bytes memory packed;
uint64[] memory weights = new uint64[](w.length);
for (uint256 i = 0; i < keys.length; i++) {
packed = abi.encodePacked(packed, keys[i]);
weights[i] = uint64(w[i]);
}
uint64 index = uint64(vm.parseJsonUint(j, ".index"));
vm.startBroadcast(key);
v.installTable(index, packed, weights);
if (vm.keyExistsJson(j, ".bitmap")) {
v.submitCertificate(index, vm.parseJsonBytes32(j, ".checkpoint"), vm.parseJsonBytes(j, ".bitmap"), vm.parseJsonBytes(j, ".signature"));
}
vm.stopBroadcast();
}
}

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@ -1,249 +0,0 @@
# Binding review: template, nonce, work and result (October 2026)
Igneum 2.0 register row (plan p. 10, missed pins): "Cryptographic review of the template, nonce, work and result
binding: no expensive intermediate reused across cheap winning attempts." Adversarial seat, 8 October 2026 (evening,
UK), with the hash lane for the generator's side. Sources: the crate (`igneum-pow` at the mirror's master 494fb981),
the fork's node line (`release-2.0.0-node` 9fc9f42a on the box mirror; the Mac's vendor copy is the 7 October master
and is not used where the two differ), spec 01, 02, 04 and 09, and the attack pass of 7 to 8 October
(`docs/analysis/attack-pass-2026-10.md`, rows F3, F8, F9, F1 and their records). Every number is either from a
record named beside it or marked Designed. No consensus code is changed by this document.
The question in one line: for every quantity that is expensive to compute, which inputs is it a function of, and
can a miner hold it fixed while it varies something cheap that still produces distinct winning attempts? A "winning
attempt" is a 64-bit lane hash at or below the target for a header the chain accepts.
## 1. What the hash commits to, from the code
### 1.1 The chain of bindings
| Step | Function of | Where | Cost |
|---|---|---|---|
| The pre-PoW hash `H` | every header field but the nonce: version, parents (every level), `hash_merkle_root`, `accepted_id_merkle_root`, `utxo_commitment`, timestamp, bits, `daa_score`, `blue_score`, `blue_work`, `pruning_point`, `vote_key_hash`; the nonce field zeroed | fork `consensus/core/src/hashing/header.rs:7` (`hash_override_nonce_time(header, 0, header.timestamp)`), `consensus/pow/src/igneum.rs:115` (`header_prehash`) | one BLAKE2b over about 200 bytes per template |
| The init words `I[0..7]` | `seed_words_from_bytes("igneum-block/" || H || nonce_hi_le32)` | `igneum-pow/src/bind.rs:48` (`block_init_bytes`, 49 bytes), `:57` | four FNV-1a-64 passes over 49 bytes per `(H, nonce_hi)`: about 200 integer ops |
| The lane registers at start | `r[i] = splitmix32((n XOR I[i]) + 0x9e3779b9 (i + 1)) XOR I[(i + 1) AND 7]` for lane nonce `n` (the low 32 bits of the header nonce) | `verify.rs:570` (`interpret_warp_core`); spec 1.6 | 8 splitmix32 per lane |
| The program | the epoch seed: on the node line, the hash of the last selected-chain block below `epoch x 3,600 - 600` on the header's own selected-parent chain (`pow_epoch_seed_score`, `epoch_seed`), attempt by attempt through acceptance (spec 1.4.6.6); the era seed from the era VDF (spec 4.4) | fork `consensus/core/src/igneum.rs:343`, `consensus/src/pipeline/header_processor/processor.rs:365` (release-2.0.0-node); `generator.rs`, `accept.rs` | once per epoch per node: the draw plus acceptance, about 1.8 core-s per candidate at (c'') and (c''') (attack pass, F9 lane (d)), 3.2 candidates per seed |
| The dataset | the day key `seed_words_from_bytes("igneum-day/" || day_le64)` with `day = header.timestamp_ms / 86,400,000` (class v5 adds the epoch's state leaves) | `bind.rs:62`, fork `pre_ghostdag_validation.rs:147` (`day: day_index(header.timestamp)`); spec 1.8 | once per day per node: the 256 MiB cache fill (175 ms on one core) and, for a miner, the 1 to 2 GiB dataset |
| One lane hash | the program applied to the 32 lanes of the aligned group `n AND NOT 31`, 8 iterations of 64 base instructions plus the 256-instruction shadow block 27 times, 16 loads per iteration reading `dataset[load_index(x)]`, the output fold over `r0..r7` | `verify.rs:555` to `:654` | 55,296 instructions and 128 dependent dataset reads per lane; the warp is the unit |
| The verdict | `hash_bound(H, nonce) <= target64(bits)`, `target64` the top 64 bits of the 256-bit target | `bind.rs:128`, `igneum.rs:120`, `:173` | one 64-bit compare |
So a winning attempt is a function of `(H, nonce_hi, n, program(e), dataset(day), target)`, and every one of `H`,
`e` (through `daa_score` and the parents, both in `H`) and `day` (through the timestamp, in `H`) is under proof of
work. The expensive quantities are three: the program (per epoch), the dataset (per day), and the hash itself (per
warp). The cheap variables are the nonce's two halves and anything in the template the miner may change.
### 1.2 What is in the template that a miner may change, and what each change costs
| Field | Who sets it | Freedom | What changes downstream |
|---|---|---|---|
| nonce, low 32 bits (`n`) | the worker | 2^32 per `I`, iterated 32 at a time | the lane registers only; the warp's 32 lanes are hashed together |
| nonce, high 32 bits | the miner (`main.rs:565`, a random `hi`, incremented when the lane space wraps) | 2^32 per template | `I`, hence every register of every lane: a new warp space |
| timestamp | the miner, within Kaspa's bounds (10 s future tolerance, above the sampled past median) | about 10 s of milliseconds, 10,000 values | `H`, hence `I`; and the DAY at a day boundary (1.4) |
| the coinbase and transactions | the miner (mode A or C) or the pool | unbounded | `hash_merkle_root`, hence `H` |
| parents | the miner, among known tips within the merge bound | a few | `H`, `daa_score`, `blue_work`, `blue_score`, and the epoch seed if the selected parent's chain differs below the seed score |
| `vote_key_hash` | the member's client (spec 9.4.1 item 1) | one per key the miner holds | `H` |
| bits, `daa_score`, `blue_score`, `blue_work`, `pruning_point`, `accepted_id_merkle_root`, `utxo_commitment` | the node from the parents | none | |
Every one of these is an "extra nonce": it changes `H`, so `I`, so every register from the first instruction. None
of them is free of the hash: a template change costs the whole warp again.
## 2. The nonce's place in the chain and the warp as the unit
The lane nonce enters once, at register initialisation, XORed with each init word before splitmix32 (`verify.rs:570`).
Nothing later reads the nonce. So the hash of lane `n` is the composition `fold(program^8(init(n, I)))` and the only
state shared across lanes is what `shfl` moves (lane `l` reads lane `l XOR mask`), which couples the 32 lanes of the
aligned group into one computation. The consequences:
- A warp's 32 hashes are 32 attempts for the price of 32 lanes of work; no lane's result is reusable for another
nonce because every register of every lane starts from the nonce.
- The high half of the nonce is one `I` per 2^32 lanes. A miner that changes `nonce_hi` pays one FNV over 49 bytes
(about 200 ops, `bind.rs:48`) and gets a fresh warp space; it does not need to, since 2^32 lane nonces at 141.8
MH/s on an RTX 5090 (attack pass F9, the card row) is 30 s of work per `I`, 30 templates' worth at 1 block per
second. The crate's own test `bind::bound_hash_properties` pins that two `nonce_hi` values give different warps
under one `H` and that the lane hash depends on `H` (the fork's engine test pins the timestamp, `igneum.rs:237`).
- The pool's share check recomputes `hash_bound(job.prehash, nonce)` for the claimed nonce (`pool/src/verify.rs:52`),
so a share binds the whole template through `H`; a nonce under another template "hashes differently and is
refused as a wrong hash" (the crate's test `the same nonce on another template`, `verify.rs:101`).
## 3. What the 256 loads and the shadow block compute from
### 3.1 The loads
Each of the 16 load sites per iteration (128 per hash) reads `dataset[load_index(era, site, x)]` where `x` is the
source register's value in that lane at that instruction (`verify.rs:759`): `idx = x AND MASK` without an era, or
`rotl(x M, R)` masked into the site's window under an era (`load_index`, `:18`). The address is therefore a function
of the lane's register state, which from the first instruction is a function of `(I, n)` and, after the first load,
of dataset words too. The attack pass measured the part that is a function of `(I, n)` alone (F9, sub-row (c), taint
analysis `init_determined_sites`): on the devnet epoch-0 program the loads at instructions 7, 8, 9, 10 and 31 of
iteration 0; over 2,000 seeds 1 to 7 sites per program, median 3, always in iteration 0 only. Everything after the
first dataset word is data-dependent.
The 256 loads of a hash's "working set" are the 128 reads of its own lane plus the reads the warp's other lanes
make, and they are distinct per hash by construction: the acceptance rule refuses a program whose site reads fewer
than 120 distinct addresses per hash on average (`MIN_DISTINCT_SUM`, spec 1.4.6.4), whose 32 lanes compute one
address at any site (`LaneConstantSite`), whose site's distinct-index ratio over 2^20 evaluations falls under 0.98
(class v4, (c'')) or 0.995 (class v5, (c''')).
### 3.2 The shadow block
The shadow block is 256 ALU instructions from the ten non-load families (`generator.rs:413`), applied 27 times after
instruction 63 of every iteration with the iteration's `sel` (`r0` at the iteration's start; `verify.rs:609`,
`:631`). It has no loads. Its input is the lane's eight registers at that point and `sel`; its output is the
registers for the next iteration. It is therefore a per-lane function of the lane's state, with `shfl` coupling
lanes inside it as in the base block. Nothing in it is shared across nonces, iterations or templates: the same block
applied 27 times to a different register state each time. The attack pass's F1 row measured what an honest compiler
can remove from it (at most 4.688 percent of its instructions on the frozen class v5 tip at 10^5 programs, two
programs at 5.078 percent in the 2.2 x 10^5 partial, both at the honest-compiler parity the ruling AP-F1-1 names), so
the block's cost per application is fixed to within that margin for every implementer.
## 4. Where a result could be reused, each with its cost and the rule or the finding
The seven places an expensive intermediate could be shared across cheap attempts, in the order a miner would try
them. "Rule" names what forbids the reuse or makes it worthless; "cost" is what the reuse would save against what it
costs.
| # | Reuse | What is shared | Across what | Cost to the attacker | Rule or finding |
|---|---|---|---|---|---|
| R1 | The dataset | the day's 1 to 2 GiB and its 256 MiB cache | every hash of the day, every miner | nothing: this is the design (the memory-hard dataset is the shared intermediate on purpose) | Intended. The question is whether a SMALLER shared structure serves: the hot set (R5) and partial storage (R6) |
| R2 | The compiled program | the epoch's kernel | every hash of the epoch, every miner | nothing: intended; one compile per epoch per card | Intended. A miner that grinds the epoch seed to get a favourable program is R7 |
| R3 | The init words `I` | one FNV result | 2^32 lane nonces | nothing to gain: `I` costs about 200 ops and a warp costs 1.8 million lane-instructions (F9's count) | No rule needed; the ratio is 10^-4 |
| R4 | The register prefix before the first load | the first instructions of iteration 0, a function of `(I, n)` | nothing: `n` is per lane, so there is no second attempt with the same prefix | zero reuse: each lane's prefix is its own | Bound by construction (spec 1.6: the nonce enters every register) |
| R5 | A hot set of items | a few MB that serves a large share of reads | every hash of the epoch | the attack pass's F8 and F9 (b): at the frozen tip no program's top 0.1 percent of items carries more than 0.23 percent of reads (256 seeds, 245 within 1.2x of the window model), hot-set verdict clear on every seed; the exemplar that reads 3.35 percent (class v4 seed 100767) is refused by (c''') | AP-F8-1: the residue is a quarter-bit bucket concentration at one narrow-window site, named by mechanism, no cacheable hot set; the per-site largest-bucket bound is a next class's item |
| R6 | A partial dataset or cache | a stored fraction `f` of the cache lines, the rest recomputed | every hash | F3: every cache line costs exactly `j + 1` block evaluations from nothing (0 of 1,024 lines under the bound), the storage-against-recompute curve at f = 1/8 is 3.17 ops per read optimal against the 3.5 the funding note assumed, and a partial-cache chip is worse than the full mirror at every f below 1 | F3 PASS; the chip edge is the latency ladder's business, not a binding hole |
| R7 | The epoch seed | the program of epoch `e + 1` | every hash of that epoch | a miner who produces the seed block (the last selected-chain block below `3,600 (e + 1) - 600`) picks among the candidate blocks it can produce; each candidate costs a full block's work, and the 600-score lead gives every miner the same 10 minutes to compile; under the devnet stand-in there is no VDF on the epoch seed (spec 4.3 Designed, the era VDF Implemented) | Spec 4.3 (the 1,200-s lead and the 600-s VDF) is the rule; on the node line the lead is 600 and the VDF is not in the node. The grind's value is bounded by the program-to-program variance of hash rate: the attack pass's F8 and F1 rows put every accepted program within a few percent of the mean on the card (the per-program spread is the F10 ladder's reading), so a candidate block burned to pick a 2 percent better program is a bad trade at any hashrate under 50 percent. Finding, minor: the VDF of 4.3 is the stated defence and is not implemented; the lead alone does not stop the pick. Routed to the Counter ASIC lane's D1 list as a 2.0 item (6) |
| R8 | The day | the dataset of day `d` | every hash of the day | the day is keyed on the header TIMESTAMP (`pre_ghostdag_validation.rs:147`), which the miner sets within about 10 s; at a day boundary a miner may hash on either day's dataset for about 10 s, and a verifier must hold both caches across the boundary (the engine's `note_chain_day`, `:139`, builds the next in the background) | No gain: both datasets are full datasets. Observation: spec 1.12 keys the day on DAA score and the node keys it on the timestamp; one of the two texts moves (6) |
| R9 | The attempt chain | the acceptance work of attempts 0 to k-1 | every node and miner of the epoch | nothing to a miner: attempts are deterministic from the seed; a miner cannot choose the attempt. A verifier's cost is the row below | No rule needed |
| R10 | The warp | one hash computation | 32 nonces | intended: the 32 lanes are 32 attempts for 32 lanes of work, coupled by `shfl` so no lane is computable alone | Intended (spec 1.9). The verifier dedupes items within a warp (`verify.rs`, the 4,096 derivations bound); a miner that finds warps whose loads coincide is F9 (c): one coalesced pair per 3,400 tries is worth 0.2 percent of one warp and costs 2.4 hashes of search; five sites fully coalesced would be worth 43 percent and has probability 2^-115 per draw |
| R11 | The template | one `H` | 2^64 nonces | intended; a template change is a new `H` and costs nothing but one BLAKE2b; it buys nothing, since the nonce space under one `H` is 2^64 | No rule needed |
| R12 | The vote key | one `vote_key_hash` | every block of the key | a miner with many keys hashes under one `H` per key; keys are free (spec 03 W6) and weight is blocks, so more keys is more templates, not more hashes per hash | No gain; the pool design document (pool-vote-key-commitment.md) covers the pool case |
The cheapest reuse that survives as a gain is R10's coalesced pair at 0.2 percent of one warp per 2.4 hashes of
search, which is a loss, and R5's quarter-bit bucket, which is under the window model's own spread. No path was found
by which an intermediate computed once serves a second winning attempt at less than the honest cost of that attempt.
## 5. Known-failed tests and measured lines
| Test | Known-pass | Known-fail | Where | Result |
|---|---|---|---|---|
| The lane hash depends on `H` and on `nonce_hi` | two headers differ in one field: different warps | the same `(H, nonce_hi)`: the same warp, bit for bit | `igneum-pow/src/bind.rs`, `bound_hash_properties`, `bound_vectors`; the fork's `igneum.rs:200` smoke test (timestamp bound, `:237`) | see the run line below |
| A nonce on another template is refused | the pool's check against its own job | the same nonce on another template: `wrong_hash` | `pool/src/verify.rs:101`, `the same nonce on another template hashes differently` | in the pool crate's suite (pool.md section 4) |
| A stateless hasher is wrong on every class v5 item | the dataset built with the leaves | the dataset built without them: every item differs | `igneum-pow/src/state.rs:200`, `a_stateless_hasher_is_wrong_on_every_item` | see the run line below |
| No cache line costs less than `j + 1` | the real chain | a flattened chain (the F3 harness's known-fail) | `docs/analysis/attack-pass/f3-cache.md`, the two firings | PASS, 7 October |
| No hot set on the frozen tip | the window-model control | a planted hot site (F8's known-fail) | `f8-uniform.md` sections (d) and (e) | PASS, 61 of 64 and 245 of 256 within 1.2x |
| Init-determined sites are in iteration 0 only | the taint trace | a program with a load whose address never absorbs a word (F9's planted case) | `f9-grind.md` sub-row (c) | 1 to 7 sites, iteration 0 only, 2,000 seeds |
Run line (box 2 through `tools/build-remote.sh`, `cargo test --release -p igneum-pow -- bind::
state::a_stateless_hasher_is_wrong_on_every_item`): 8 October 2026, 19:0x UK, box 2 (igneum-build-2) through `tools/build-remote.sh --box 2`, the crate at the mirror's master 494fb981: `bind::tests::bound_hash_properties` ok, `bound_vectors` ok, `init_bytes_layout` ok, `day_bytes_layout` ok, `pow256_and_target64` ok, `closed_form_bound_also_works` ok (6 passed, 0 failed, 0.43 s); `state::tests::a_stateless_hasher_is_wrong_on_every_item` ok (1 passed, 0 failed, 2.15 s). The pool crate's `the same nonce on another template hashes differently` and the fork engine's timestamp-bound test are in their crates' suites (pool.md section 4; `igneum.rs:200`), not re-run here.
## 5a. Finding A05 of the external review: the FNV initialisation and the 64-bit fold
The external review's finding A05 (`docs/analysis/review-2026-10-08/evidence.md`): the seed and the header-bound
initialisation are four salted FNV-1a-64 passes with a final mix (`seed.rs:37`, `bind.rs:57`), the final state
reduces by rotated XOR to 64 bits placed in the top 64 bits of the 256-bit proof-of-work value (`verify.rs:649`,
`bind.rs:76`), FNV is non-cryptographic by its own specification, and ProgPoW's keccak-f800 at both ends of a cheap
inner mix is the pattern to measure against. Two questions: can one expensive intermediate be reused across cheaper
attempts through the initialisation or the fold, and is the binding to job and nonce complete. The argument, then
the measured lines, then what a change would be if one were wanted.
### 5a.1 What the initialisation has to do, and what it does not
ProgPoW's keccak at the start exists because its inner mix is a fixed structure for a 50-block period and a hasher
must not be able to choose or correlate its inputs cheaply; the keccak at the end exists because the inner mix is
not a cryptographic function and its output must not be shaped. Igneum's initialisation does not carry that burden
alone, for three reasons that are in the code:
1. The attacker does not choose the FNV input. The 49 input bytes are the tag, `H` and `nonce_hi` (`bind.rs:48`). `H`
is a BLAKE2b-256 over the template (the chain's `BlockHash`, `hashing/header.rs:7`); the only way to change it is
to change a header field, which gives a fresh 256-bit value the attacker cannot steer. The attacker's whole
freedom at the FNV input is the 32 bits of `nonce_hi` under a fixed `H`.
2. FNV-1a with the final mix gives no control over its output beyond brute force over those 32 bits. Each pass is
`h = (h XOR byte) x P` over the bytes, then `h ^= h >> 33; h *= C; h ^= h >> 33`. The mix is a bijection, so a
target output pins the pre-mix state; the last four bytes of the chain are then four steps `s_{k+1} = (s_k XOR
b_k) x P`, each inverted by `b_k = (s_{k+1} x P^-1) XOR s_k`, which must land in 0..255: probability 2^-56 per
byte for a random target. So hitting a chosen 64-bit pass output costs the full 2^64 and hitting a chosen 32-bit
word of `I` costs 2^32, the brute-force figures. The measured control line below reads this at the byte scale:
256 tries of `nonce_hi` hit a chosen byte of `I[7]` at the random rate.
3. What a weak initialisation would give is an `I` correlated across `nonce_hi` values or across templates, so that
the prefix of the program (the init-determined loads of F9, 1 to 7 sites in iteration 0) could be shared. The
avalanche lines below read 128 of 256 bits flipped per input bit, with the min and max inside the binomial's
range; no two of 2^18 `nonce_hi` values under one `H` share an `I`, nor a single 64-bit pass.
The non-cryptographic property FNV lacks, preimage resistance against a chosen input, is not used: nothing in the
chain asks that `I` be hard to invert, only that it be a near-uniform function of `(H, nonce_hi)` that the attacker
cannot steer, and the steering is bounded by BLAKE2b on one side and by 32 bits on the other.
### 5a.2 The fold
The fold is linear over GF(2): `lo = r0 ^ rotl(r1,7) ^ rotl(r2,14) ^ rotl(r3,21)`, `hi = r4 ^ rotl(r5,9) ^
rotl(r6,18) ^ rotl(r7,27)`, and the verdict reads `hash <= target64` with `hash = hi || lo` (`bind.rs:83`,
`target64_from_le256`). What a hasher would want from a linear fold is to shape the top bits of `hi` cheaply at the
end. Three facts close that:
- Nothing cheap varies at the end. The nonce enters once, at initialisation (section 2); the last instructions
before the fold are the shadow block's 27th application in iteration 7, pure ALU on the lane's eight registers,
and every register at that point is a function of the whole program over the dataset words the lane read. There
is no second cheap input to vary after the expensive part; the warp is recomputed from the start for every nonce.
- The top 64 bits need `r4..r7` in full and those depend on `r0..r3` throughout the program (every register is the
`dst` of an injecting write, part (b), and the draw's source rule keeps the dataflow fresh, part (a')), so no
register is skippable.
- The fold's output is tested per program: part (c) of acceptance refuses a program whose output bits' ones-count
over 2,048 hashes falls outside 1,024 plus or minus 136 (`OutputBias`, `accept.rs:68`, 6 sigma), and F8's
cross-hash histogram rows read the 64-bit outputs uniform at 2^24 nonces on every accepted seed. A program whose
final state left the fold biased is refused before it is the epoch's program.
Where ProgPoW needs keccak at the end is that its mix is fixed and public for a period, so an output-shaping
structure could be found once and used for 50 blocks; Igneum's program is a fresh random draw per epoch that is
itself tested for output bias, so the fold's linearity has no fixed structure to exploit. Against a hasher that
tries anyway: the cost of computing `r4..r7` is the hash, and the comparison is one 64-bit compare after it.
### 5a.3 Is the binding to job and nonce complete
A job is `(prehash, target64, share_target64, nonce_start, nonce_count)` (spec 9.5); a share is a nonce under that
prehash. The lane hash is `fold(program(init(n, I(H, nonce_hi))))` with `H` the template's pre-PoW hash, so a share
commits to every header field (the coinbase and the transactions through `hash_merkle_root`, the key through
`vote_key_hash`, the epoch through `daa_score` and the parents, the day through the timestamp) and to both halves of
the nonce. Two nonces give two warps (`bound_hash_properties`); two templates give two `I` (the fork's timestamp
test); a nonce moved to another template fails as `wrong_hash` (the pool's test). Nothing in the computation reads
anything outside `(H, nonce, program, dataset)`, so there is no unbound input a hasher could hold fixed. The 2.0
wire shape adds the key to the job and share lines (spec 09 at master 2e9b3e73) for the pool's evidence, not for the
binding, which the prehash already carries.
### 5a.4 Measured lines (8 October 2026, 19:5x UK, the spec-exact replica `a05/fnv.py` on the Mac, integer arithmetic, seconds of CPU)
| Line | Known-pass | Known-fail | Result |
|---|---|---|---|
| The replica is the spec's function | `seed_words("igneum-genesis")` equals the spec 1.3.1 vector `67a9a7be 1a155b25 fddfb732 4b5af2e8 c55caf33 a27c13b7 06628a48 03852469` | the replica without the final mix must differ | OK; FIRED (differs) |
| Avalanche over `nonce_hi` (one random bit flipped, 20,000 trials) | | | mean 128.02 of 256 bits, min 94, max 160 (binomial expectation 128, sd 8) |
| Avalanche over `H` (one random bit flipped, 20,000 trials) | | | mean 128.01 of 256 bits, min 96, max 158 |
| Collisions over 2^18 `nonce_hi` values under one `H` | | | 0 equal `I` (256 bits), 0 equal pass-0 outputs (64 bits; birthday expectation 1.9e-9) |
| Control: a chosen value for the top byte of `I[7]` reached by one of 256 `nonce_hi` tries, 2,000 trials | | | 1,280 of 2,000 (0.640) against the random expectation 0.633 |
The crate's own lines of section 5 stand beside these (`bound_hash_properties`, `bound_vectors`, the timestamp
test, the pool's `wrong_hash` test).
### 5a.5 Verdict and what a change would be
Verdict: the argument holds; no attack. The initialisation is a near-uniform, unsteerable function of a BLAKE2b
hash and 32 free bits, the fold follows a per-epoch random program that acceptance tests for output bias, and the
binding to the job and both nonce halves is complete through the prehash. No consensus change is named for 2.0.
If main wants the ProgPoW shape regardless, the change is a class version, not a patch, because every vector moves:
| Change | What it buys | Cost | Vectors |
|---|---|---|---|
| Init: `I = BLAKE2b-256("igneum-block/" || H || nonce_hi)` as eight words (`blake2b.rs` exists in the crate) | a cryptographic initialisation by its own specification; no change to the argument above | one BLAKE2b per `nonce_hi` per warp space, about 1 microsecond on a CPU core, nothing on the card (the init is a kernel argument) | every pack's vectors, the acceptance stream (`"igneum-accept/"` is FNV too), the day key, the program seed: a new generator version with a new vector set and a new frozen object |
| Finalisation: BLAKE2b over the 256-bit final state before the fold | removes the fold's linearity as a question | one BLAKE2b per hash on the card, about 2 to 5 percent of hash rate (Designed, unmeasured; ProgPoW pays keccak-f800 per hash) | the same new version |
The seat's recommendation is neither for 2.0: the measured lines and the argument close A05 as written, and the
cost of the second row is paid by every honest card for every hash. The first row is cheap and could ride the next
class version whenever one is cut for another reason; it is named here so the decision is main's, with the vectors
as the price.
## 6. Open questions, named for main
| Id | Question | What closes it |
|---|---|---|
| B1 | The epoch-seed VDF (spec 4.3, 600 s of delay on the seed block's hash) is Designed and not in the node line; the era VDF is. Without it the seed-block producer picks among the candidates it can afford to burn (R7). Is the epoch VDF a 2.0 item, or does the measured program-to-program hash-rate spread (the F10 ladder's reading) close it as not worth a block? | A ruling, with the F10 spread as the number |
| B2 | The day is keyed on the header timestamp in the node (`day_index(header.timestamp)`) and on DAA score in spec 1.12 (R8). Which text moves? The timestamp key makes the day boundary a miner's choice within 10 s and costs the verifier two caches across it; the DAA key makes it a function of the past alone | A ruling; a one-line spec or code change |
| B3 | `seed_source` and `proof_ref` (spec 2.4, fork point a5) are not in the node line's header; the epoch seed is bound through `daa_score` and the parents instead, which is sufficient for binding but leaves the spec's field table ahead of the code | The spec's table marked to the code, or the fields added when the chunked proving protocol needs `proof_ref` |
| B4 | A verifier syncing from genesis derives every epoch's program (the draw plus acceptance, about 6 core-s per epoch at 3.2 candidates): about 15 core-hours per year of chain on one core, parallel across epochs | The IBD cost measured on the node line with the memo (`epoch_seed_memo`) and a per-epoch program cache; a number, not a rule |
| B5 | R10's coalesced-pair search (F9 (c)) is measured as a loss on the RTX 5090; it is not measured on a card whose load completes per lane rather than per warp (an AMD wave64 under the local-memory exchange) | One run of the F9 `grind` per-warp table on a 9070 XT |

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# The int8-dominated class and the ARX-only class: a research record (9 October 2026, CLOSED)
RESEARCH RECORD ONLY. The founder asked at 11:0x UK for "the int8-dominated class"; main closed the build at 11:1x UK
(the coordinator's line: "the int8 class build is CLOSED now ... the frozen v6 stays the algorithm"). This page records
what was cut before the stop, so nobody has to redo it. Nothing here activates. The census, the kit, the GPU self-test,
the J/hash rows and the OpenCL and Metal runs were NOT RUN. The card's measured int8 and ARX microkernel rows are the
hash lane's, on the pods.
## What was cut
| Item | Value |
|---|---|
| Branch, sha | `1p5x-int8` on the box mirror (build-1:/srv/igneum.git), `0592e48e8fbbf37ebb162915b35294dc21fb19a7`, on X1's `a99de07cd` (on the frozen tree `1a938abe4`) |
| igneum-pow/src fingerprint | `9e8fb3c4b987f9b149ab0d9eb3efc8bcc401fe99faad84e7b1a62e6ac897352f` (recipe `cd igneum-pow && find src -type f \| LC_ALL=C sort \| xargs shasum -a 256 \| shasum -a 256`); the frozen `5f4d6dc6...` is untouched at `1a938abe4` |
| The op | `Op::Dp4a`: `d = d + dot4_u8(a, b)` mod 2^32, `dot4_u8` = the sum of the four unsigned byte products (at most 260,100), the form of `docs/analysis/int8-matrix-family.md` section 2.1. CUDA `__dp4a` on unsigned operands (PTX `dp4a.u32.u32`); OpenCL and Metal the exact integer helper `dot4_u8`; the CPU reference `verify::dot4_u8`. Integer only: no rounding mode or fast-math switch can move a bit. `src2 != dst` by construction (the A08 rule's twin) so the op is a bijection in `d`. Injection is by the accumulator (an add), not by xor: an xor of `d` with a function of `d` is not a bijection, and the add uses the MAC's own accumulate |
| The flag | `LoadClass::fam8` (1 to 4), class suffixes `+int8w50r32`, `+int8w75r32`, `+int8w90r32`, `+arxr16`, `+arxr32`, program-id literal `fam8/` with the table row and the load slots; the re-weight table is off (rw 0), no A02 shuffle reservation (no shfl exists); generator 6 pack shape; the CLI `export ... --program-class v6 --era-hex <era> --fam8 <suffix>` |
| The tables (`FAM8_WEIGHTS`, sum 100, the base program and the shadow block both) | int8w50: dp4a 46, add 11, sub 11, xor 11, rotl 11, rotr 10; int8w75: dp4a 72, then 6, 6, 6, 5, 5; int8w90: dp4a 89, then 3, 2, 2, 2, 2; arx: add, sub, xor, rotl, rotr at 20 each; mul, mulhi, mad, or, shfl at 0 everywhere |
| The energy weighting | the record's 5090 microbench (`docs/analysis/counter-asic-4-research.md`): an ARX op 11.3 pJ (measured); a dp4a instruction 13.1 pJ (APPROXIMATE: 11.3 times the `__dp4a` step-cost ratio 1.16 of the family probe in `docs/bench-log.md`, a time ratio taken as the energy ratio, since no dp4a energy row exists). Count share for energy share s: (s / 13.1) / (s / 13.1 + (1 - s) / 11.3), so 46.3, 72.2 and 88.6 percent |
| Reads per hash | `load_slots x 8 iterations x 2` (the reg64 window runs every instruction twice): r32 = 2 load slots, r16 = 1, over the same 4 GiB dataset (the frozen object reads 256) |
## The five programs on the signing pair (epoch seed af89be5d..., era 0:edc4fa84..., day 20730, node1 state, 4 GiB)
Exported on build-9 with the branch's binary at 10:01 to 10:07 UTC. Every export printed `OVERALL: PASS (pack written)`,
which covers the CPU reference's own vectors and the cache FNV (448274a57f508cbc). The logs are under `rows/`.
| Class string | Program id | Attempt | Base-program op mix (64 instructions) | kernel.cu blake2b-256 | CPU vector, warp 0, lane 0 |
|---|---|---|---|---|---|
| mx8-erad810f22d+sh256x27+state+reg64c+fold+int8w50r32 | e74e5ed6b9686781 | 0 | dp4a 20, add 13, rotl 9, sub 8, rotr 6, xor 6, load 2 | 7bf3072b... | see rows/export-int8w50r32.txt |
| mx8-erad810f22d+sh256x27+state+reg64c+fold+int8w75r32 | 445765984996028a | 0 | dp4a 44, xor 5, rotr 4, sub 4, add 3, rotl 2, load 2 | 76c23add... | rows/export-int8w75r32.txt |
| mx8-erad810f22d+sh256x27+state+reg64c+fold+int8w90r32 | 0d438354ca69b247 | 0 | dp4a 55, rotr 2, sub 2, add 1, rotl 1, xor 1, load 2 | 0913390e... | rows/export-int8w90r32.txt |
| mx8-erad810f22d+sh256x27+state+reg64c+fold+arxr16 | ffc2516557f356be | 0 | add 17, rotr 17, rotl 11, sub 10, xor 8, load 1 | cbfcb244... | rows/export-arxr16.txt |
| mx8-erad810f22d+sh256x27+state+reg64c+fold+arxr32 | ad3b3faaf6ac1ad6 | 1 | xor 16, rotl 15, add 12, sub 11, rotr 8, load 2 | 11cc0bfc... | rows/export-arxr32.txt |
The packs stay on build-9 at /srv/builds/int8/packs-out/ (not copied to build-1; no kit was cut).
## State at the stop, and the rows NOT RUN
| Row | State |
|---|---|
| `cargo check --all-targets` and the release build on build-9 | clean (the binary that exported the packs) |
| The pow suite with `tests/fam8.rs` | NOT RUN (stopped by main's ruling before it started) |
| The CUDA emulation `--check` (the shim gained `__dp4a`) | NOT RUN |
| The CUDA emitter's bit-exact self-test on a card (fk-int8-5090a was handed at 11:05 UK) | NOT RUN: the pod was released unused |
| OpenCL and Metal bit-exactness | NOT RUN |
| The census instruments (hot set, bit bias, exhaustion, the family predicate) | NOT RUN; acceptance on the signing pair took attempt 0 or 1 for all five, the only reading |
| J/hash, rate, memory share on the 5090 and 4090 | NOT RUN here (the hash lane's microkernel rows are the data) |
| Registry | `tools/ci/batches/1p5x-int8-20261009-01.json`, NOT RUN |
Two open design points, if the class is ever re-opened: the dp4a energy is an approximation (a measured dp4a row on
the card settles it), and dropping from 256 to 32 or 16 reads per hash changes the memory share of the hash by an order
of magnitude, so each class needs its own dataset-floor reading before any comparison with the frozen object.

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# 2026-10-09T10:02:30Z host igneum-build-9 cmd: ./bin-int8-wip export --out packs-out/arxr16 --epoch-hex af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3 --day-hex 69676e65756d2d6461792ffa50000000000000 --program-class v6 --era-hex edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state node1-state.igsd1 --dataset-log2 30 --fam8 arxr16
state stream node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
igneum-pow export packs-out/arxr16
seed "igneum-epoch/af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3/day/69676e65756d2d6461792ffa50000000000000", day "bytes:69676e65756d2d6461792ffa50000000000000", dataset 2^30 words (memory-hard), generator v6 attempt 0 program id ffc2516557f356be, loads/hash 8; epoch built in 4111.4 ms
op mix: add=17 rotr=17 rotl=11 sub=10 xor=8 load=1; class mx8-erad810f22d+sh256x27+state+reg64c+fold+arxr16, 32 bytes/hash, widths (1,4,16 words) [1, 0, 0]
seed words 0x9c8caa3d 0x83537296 0xf21169a4 0x12d4d157 0x66e0ce33 0xcc049080 0x8579c352 0x4c6e4ac9
wrote packs-out/arxr16/program.json (57080 bytes)
wrote packs-out/arxr16/identity.json (999 bytes)
wrote packs-out/arxr16/vectors.json (6458 bytes)
wrote packs-out/arxr16/kernel.cu (33724 bytes)
wrote packs-out/arxr16/kernel.cl (41561 bytes)
wrote packs-out/arxr16/program.h (7302 bytes)
wrote packs-out/arxr16/vectors.h (5942 bytes)
wrote packs-out/arxr16/program.metal (29712 bytes)
wrote packs-out/arxr16/program_bound.metal (29864 bytes)
wrote packs-out/arxr16/kernel_bound.cu (31499 bytes)
wrote packs-out/arxr16/kernel_bound.cl (70738 bytes)
wrote packs-out/arxr16/memhard.h (7369 bytes)
wrote packs-out/arxr16/memhard.metal (7258 bytes)
vector warp base 0: lane0 83009d56db7af885 lane31 0e2fbfa86964174e
vector warp base 4096: lane0 84d2a1811e44ad82 lane31 2bb0af48de71546a
vector warp base 1000000: lane0 935efac70dceb4b5 lane31 2686973018dc3407
cache FNV-1a 64 448274a57f508cbc
OVERALL: PASS (pack written)
# end 2026-10-09T10:02:35Z rc 0

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# 2026-10-09T10:02:30Z host igneum-build-9 cmd: ./bin-int8-wip export --out packs-out/arxr32 --epoch-hex af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3 --day-hex 69676e65756d2d6461792ffa50000000000000 --program-class v6 --era-hex edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state node1-state.igsd1 --dataset-log2 30 --fam8 arxr32
state stream node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
igneum-pow export packs-out/arxr32
seed "igneum-epoch/af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3/day/69676e65756d2d6461792ffa50000000000000", day "bytes:69676e65756d2d6461792ffa50000000000000", dataset 2^30 words (memory-hard), generator v6 attempt 1 program id ad3b3faaf6ac1ad6, loads/hash 16; epoch built in 5607.4 ms
op mix: xor=16 rotl=15 add=12 sub=11 rotr=8 load=2; class mx8-erad810f22d+sh256x27+state+reg64c+fold+arxr32, 64 bytes/hash, widths (1,4,16 words) [2, 0, 0]
seed words 0xe60ed2a2 0x883319ea 0x6b6aa4f7 0xc4c7864e 0x5d7f9712 0x6027eee6 0x37f56d14 0x9555c104
wrote packs-out/arxr32/program.json (57042 bytes)
wrote packs-out/arxr32/identity.json (999 bytes)
wrote packs-out/arxr32/vectors.json (6458 bytes)
wrote packs-out/arxr32/kernel.cu (36687 bytes)
wrote packs-out/arxr32/kernel.cl (44524 bytes)
wrote packs-out/arxr32/program.h (7310 bytes)
wrote packs-out/arxr32/vectors.h (5942 bytes)
wrote packs-out/arxr32/program.metal (32681 bytes)
wrote packs-out/arxr32/program_bound.metal (32833 bytes)
wrote packs-out/arxr32/kernel_bound.cu (34462 bytes)
wrote packs-out/arxr32/kernel_bound.cl (76664 bytes)
wrote packs-out/arxr32/memhard.h (7369 bytes)
wrote packs-out/arxr32/memhard.metal (7258 bytes)
vector warp base 0: lane0 9580077ff8ede4e9 lane31 c860805edb3d7d65
vector warp base 4096: lane0 7027129cabee388c lane31 2dd26ee19f07cbd1
vector warp base 1000000: lane0 b7ff12a5456933bd lane31 81065cdec0efecca
cache FNV-1a 64 448274a57f508cbc
OVERALL: PASS (pack written)
# end 2026-10-09T10:02:36Z rc 0

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@ -1,25 +0,0 @@
# 2026-10-09T10:02:30Z host igneum-build-9 cmd: ./bin-int8-wip export --out packs-out/int8w50r32 --epoch-hex af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3 --day-hex 69676e65756d2d6461792ffa50000000000000 --program-class v6 --era-hex edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state node1-state.igsd1 --dataset-log2 30 --fam8 int8w50r32
state stream node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
igneum-pow export packs-out/int8w50r32
seed "igneum-epoch/af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3/day/69676e65756d2d6461792ffa50000000000000", day "bytes:69676e65756d2d6461792ffa50000000000000", dataset 2^30 words (memory-hard), generator v6 attempt 0 program id e74e5ed6b9686781, loads/hash 16; epoch built in 5308.1 ms
op mix: dp4a=20 add=13 rotl=9 sub=8 rotr=6 xor=6 load=2; class mx8-erad810f22d+sh256x27+state+reg64c+fold+int8w50r32, 64 bytes/hash, widths (1,4,16 words) [2, 0, 0]
seed words 0x9c8caa3d 0x83537296 0xf21169a4 0x12d4d157 0x66e0ce33 0xcc049080 0x8579c352 0x4c6e4ac9
wrote packs-out/int8w50r32/program.json (57160 bytes)
wrote packs-out/int8w50r32/identity.json (1003 bytes)
wrote packs-out/int8w50r32/vectors.json (6458 bytes)
wrote packs-out/int8w50r32/kernel.cu (44831 bytes)
wrote packs-out/int8w50r32/kernel.cl (45596 bytes)
wrote packs-out/int8w50r32/program.h (7328 bytes)
wrote packs-out/int8w50r32/vectors.h (5942 bytes)
wrote packs-out/int8w50r32/program.metal (33696 bytes)
wrote packs-out/int8w50r32/program_bound.metal (33848 bytes)
wrote packs-out/int8w50r32/kernel_bound.cu (42606 bytes)
wrote packs-out/int8w50r32/kernel_bound.cl (78520 bytes)
wrote packs-out/int8w50r32/memhard.h (7369 bytes)
wrote packs-out/int8w50r32/memhard.metal (7258 bytes)
vector warp base 0: lane0 7613fbd09ebad410 lane31 8258dbc8c1d8bca6
vector warp base 4096: lane0 1626c89572860ca0 lane31 bdb50545527f7a86
vector warp base 1000000: lane0 70228df867a63fb8 lane31 63056f4571a34b41
cache FNV-1a 64 448274a57f508cbc
OVERALL: PASS (pack written)
# end 2026-10-09T10:02:36Z rc 0

View file

@ -1,25 +0,0 @@
# 2026-10-09T10:02:30Z host igneum-build-9 cmd: ./bin-int8-wip export --out packs-out/int8w75r32 --epoch-hex af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3 --day-hex 69676e65756d2d6461792ffa50000000000000 --program-class v6 --era-hex edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state node1-state.igsd1 --dataset-log2 30 --fam8 int8w75r32
state stream node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
igneum-pow export packs-out/int8w75r32
seed "igneum-epoch/af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3/day/69676e65756d2d6461792ffa50000000000000", day "bytes:69676e65756d2d6461792ffa50000000000000", dataset 2^30 words (memory-hard), generator v6 attempt 0 program id 445765984996028a, loads/hash 16; epoch built in 6283.8 ms
op mix: dp4a=44 xor=5 rotr=4 sub=4 add=3 load=2 rotl=2; class mx8-erad810f22d+sh256x27+state+reg64c+fold+int8w75r32, 64 bytes/hash, widths (1,4,16 words) [2, 0, 0]
seed words 0x9c8caa3d 0x83537296 0xf21169a4 0x12d4d157 0x66e0ce33 0xcc049080 0x8579c352 0x4c6e4ac9
wrote packs-out/int8w75r32/program.json (57221 bytes)
wrote packs-out/int8w75r32/identity.json (1003 bytes)
wrote packs-out/int8w75r32/vectors.json (6458 bytes)
wrote packs-out/int8w75r32/kernel.cu (49376 bytes)
wrote packs-out/int8w75r32/kernel.cl (44621 bytes)
wrote packs-out/int8w75r32/program.h (7326 bytes)
wrote packs-out/int8w75r32/vectors.h (5942 bytes)
wrote packs-out/int8w75r32/program.metal (32615 bytes)
wrote packs-out/int8w75r32/program_bound.metal (32767 bytes)
wrote packs-out/int8w75r32/kernel_bound.cu (47151 bytes)
wrote packs-out/int8w75r32/kernel_bound.cl (76570 bytes)
wrote packs-out/int8w75r32/memhard.h (7369 bytes)
wrote packs-out/int8w75r32/memhard.metal (7258 bytes)
vector warp base 0: lane0 0682338b74a04c37 lane31 46a7253171090557
vector warp base 4096: lane0 0b2de8e8d48c9a85 lane31 e7120f2f5c688b5d
vector warp base 1000000: lane0 0356246b8a19b8b2 lane31 ccc92e7507e700f1
cache FNV-1a 64 448274a57f508cbc
OVERALL: PASS (pack written)
# end 2026-10-09T10:02:37Z rc 0

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@ -1,25 +0,0 @@
# 2026-10-09T10:02:30Z host igneum-build-9 cmd: ./bin-int8-wip export --out packs-out/int8w90r32 --epoch-hex af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3 --day-hex 69676e65756d2d6461792ffa50000000000000 --program-class v6 --era-hex edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state node1-state.igsd1 --dataset-log2 30 --fam8 int8w90r32
state stream node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
igneum-pow export packs-out/int8w90r32
seed "igneum-epoch/af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3/day/69676e65756d2d6461792ffa50000000000000", day "bytes:69676e65756d2d6461792ffa50000000000000", dataset 2^30 words (memory-hard), generator v6 attempt 0 program id 0d438354ca69b247, loads/hash 16; epoch built in 6384.4 ms
op mix: dp4a=55 load=2 rotr=2 sub=2 add=1 rotl=1 xor=1; class mx8-erad810f22d+sh256x27+state+reg64c+fold+int8w90r32, 64 bytes/hash, widths (1,4,16 words) [2, 0, 0]
seed words 0x9c8caa3d 0x83537296 0xf21169a4 0x12d4d157 0x66e0ce33 0xcc049080 0x8579c352 0x4c6e4ac9
wrote packs-out/int8w90r32/program.json (57255 bytes)
wrote packs-out/int8w90r32/identity.json (1003 bytes)
wrote packs-out/int8w90r32/vectors.json (6458 bytes)
wrote packs-out/int8w90r32/kernel.cu (51966 bytes)
wrote packs-out/int8w90r32/kernel.cl (44221 bytes)
wrote packs-out/int8w90r32/program.h (7322 bytes)
wrote packs-out/int8w90r32/vectors.h (5942 bytes)
wrote packs-out/int8w90r32/program.metal (32161 bytes)
wrote packs-out/int8w90r32/program_bound.metal (32313 bytes)
wrote packs-out/int8w90r32/kernel_bound.cu (49741 bytes)
wrote packs-out/int8w90r32/kernel_bound.cl (75770 bytes)
wrote packs-out/int8w90r32/memhard.h (7369 bytes)
wrote packs-out/int8w90r32/memhard.metal (7258 bytes)
vector warp base 0: lane0 0efd4800328caf38 lane31 08b4e0d27bcc35f6
vector warp base 4096: lane0 2fdb239b2e6cf15b lane31 1bff9b5abb29d044
vector warp base 1000000: lane0 2bea1236f6fb35a1 lane31 ae8a005b17a4b664
cache FNV-1a 64 448274a57f508cbc
OVERALL: PASS (pack written)
# end 2026-10-09T10:02:37Z rc 0

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@ -1,425 +0,0 @@
<!-- the landed copy of the lab's interface (scratchpad/lab/INTERFACE.md on the LAB lane's Mac); the landed table is table.md beside it; both move on master at every real result -->
# The 1.5x laboratory interface (LAB, 9 October 2026, set 11:5x UK; every lane reads this before its first row)
Scope: the one evaluation every control and candidate goes through, the interfaces between the five lanes (LAB, CONTROLS,
SEARCH, ADVERSARY, COHORT), the score, the rejection filters, the regression set, the row and batch forms, the report rule.
The charter (scratchpad/lab/CHARTER.md) sits above this file; nothing here relaxes it. The landed copy is
docs/analysis/class-v6/1p5x/lab/README.md on the box mirror's master; the live table is scratchpad/lab/TABLE.md.
## 0. The objects and their ids
- A candidate is an executable specification: a generator tree sha (the program class), a pack set (program.json ids, the
class string, the fingerprints), a CPU reference, a CUDA kernel (OpenCL and Metal where the cohort needs them), a resource
line (dataset bytes, reads per hash, read width, the working set at that width, state bytes per instance, instructions per
hash in BOTH conventions, cold-verification cost per unit), and an id: controls `ctl-v6`, `ctl-progpow-094`, `ctl-fishhash`,
`ctl-coop-arx`; search candidates `cand-<nn>`.
- The frozen v6 control (`ctl-v6`): tree 1a938abe4 (branch class-v6, source fingerprint 5f4d6dc6…), signing object
2a1d6caab4c24564 AT 2^30 WORDS = 4 GiB (dataset policy 70a6c703): the pack x1-ctrl-ds30.tgz 7606c13d (its read-only twin
x1-ctrl-ds30-readonly.tgz 7629ed95) under build-1:/srv/artefacts/lab/controls/frozen-v6/ (CONTROLS, 12:2x UK on main's
correction), run by the l8off kit's worker (kit c20999d1…, CUDA worker 218ca414… Windows / 9bfcf728… Linux) or the gen-6 Linux
worker 804a6f7f…; 256 random reads per hash over 4 GiB, 62,120 ALU instructions per hash (102,612 in the counted-op
convention), layer 8 ON. The 1 GiB research pairing hl-v6-all 0x9d40978601a7df2a (kernel fingerprint 59e6708e46f1e87c) serves
the fingerprint cross-check row only; no 1 GiB figure is ever a cohort row of ctl-v6.
- The work unit is energy per ACCEPTED work. For v6 and like-for-like candidates: joules per hash at equal difficulty. For a
changed work unit (ProgPoW, FishHash, any proof-carrying unit): an accepted-work equivalence (lottery contribution per unit at
an equal security budget) written by CONTROLS or SEARCH and approved by LAB before any number is served; raw hashes per
second are never compared across algorithms. The comparison is always the ratio WITHIN an algorithm (its GPU energy over its
own redesigned specialist's).
## 1. The measurement recipe (COHORT lane)
The hash lane's recipe (build-1:/srv/artefacts/1p5x/gpu-row-recipe.md, sha cbab453c) is the instrument; this section adds the
lab's rules. Every figure's software, pack, card, clock and boundary are pinned in the row.
1. The instrument: the kit's own worker `--bench --pack <dir> --batches 250 --batch-log2 24 --block-warps 1 --device 0`; the
pack self-test `check=PASS` or the row is the finding; the worker and the kit zip named by sha256; the fingerprint (FNV-1a 64
of the 2^24 outputs at base nonce 0) equal on every platform and at every state before a rate row is read.
2. Power: `nvidia-smi --query-gpu=timestamp,power.draw,clocks.sm,clocks.mem,temperature.gpu,utilization.gpu,power.draw.instant,power.draw.average --format=csv,noheader -l 1`
for the whole run; watts = the mean of power.draw from 8 s in to the end of the timed dispatches; idle NOT subtracted;
board power as the card reports it. Rate = the worker's own `mhs=`. nJ per hash = W / MH/s x 1,000.
3. Wall where a pod allows: a pod that exposes a host-side reading (a metered PDU, the provider's node-level meter) records it
beside the board figure as `wall_w` and the ratio is computed on both. No rented pod of ours exposes one today, so the wall
column reads BLOCKED and the machine-term allowance of X0 section 4.4 (about +10 percent on the card's figure: a PSU at 92
percent and the host share, approximate) is printed as a labelled third column, never applied silently to the board figure.
4. States: stock on every rented pod (a container that refuses `-lgc` says so in the row). The knee where a lock holds (the
5090 at `-lgc 0,1300`, the 5080 at `-lgc 0,1100`); the house rigs are BLOCKED for every lane, so knee rows exist today only
in the record (the frozen v6 on the house 5090: 4,011 nJ at the lock, 5,842 at stock, job report 05f00bd8…) and on any rented
pod that permits the lock (try it; keep the refusal line).
5. The cohort, measured from the FIRST candidate: RTX 5090, 4090, 3090, 5080 (rented); the AMD tier (RX 7600 or the nearest
RDNA card the market has) and the Intel tier (Arc B580 or the nearest) through the OpenCL kits. A tier with no reachable card
reads NOT RUN with "no card reachable" and the score reads NOT RUN; the scope is never narrowed quietly.
6. The pair rule: the candidate and the frozen v6 control in the same job, on the same card, at the same state, back to back;
deltas as percent of the pair; absolutes never compared across sessions (the 13 percent enclosure-swap caveat on the first
rig stands).
7. The read-only twin (the memory share f): the same kernel with the arithmetic short-circuited and the dataset reads kept (the
same read count and width, the address stream reproduced from the candidate's own address generator or a recorded trace),
paced to the full kernel's rate (the same dispatch cadence, throttled to match), same session, same card, same state.
f = J_twin / J_full. Both rows carry W and MH/s. The twin's fingerprint is not expected to match (it is not the function); its
address stream is checked against the full kernel's trace (the first 4,096 addresses equal) and the check is in the row.
8. Repeats: three timed runs per cell; the row carries the median and the spread (max minus min, percent of the median); a
spread over 3 percent repeats the cell.
9. The row: `RESULT lab cand=<id> ctl=<id> card=<model> pod=<fleet id> driver=<ver> kit=<sha8> worker=<sha8> pack=<program id>
class=<class string> state=stock|lock<MHz> mhs=<x> watts=<mean> watts_instant=<mean> watts_average=<mean>
wall_w=<x|BLOCKED> nj_per_hash=<x> nj_twin=<x|none> f=<x|none> fingerprint=<16 hex> check=PASS|FAIL twin_addr=PASS|FAIL|none
spread_pct=<x> utc=<start>..<end>`, the worker's own RESULT line beside it verbatim; the nvidia-smi samples in the job folder;
the folder tarred to build-1:/srv/artefacts/lab/<cand id>/<pod>/ with SHA256SUMS; rows.jsonl beside it with the same fields.
11. Power-capped pods (COHORT's finding, 12:17 UK): on a host whose card runs at a vendor power cap the twin reads f near 1 and is
meaningless (the card spends the saved ALU power on clock and reads the same watts), so f is read only on uncapped cards; the
gate refuses capped hosts for the f cells; a capped row stands as a named capped row (`cap_state=capped` and the cap in the
row) and its f is credible only where the card did not reach its cap (watts under the cap in the row). Every rented pod today
refuses `-lgc`, so every cohort row is stock and the knee rows are the house record's until a pod that locks is found.
10. The P03 cost line per candidate and card: rate and joules per accepted work as percent of the paired frozen v6 at the same
state (the budget: at most 5 percent joules and 2 percent throughput for a like-for-like change, read at the knee where a
lock exists, else at stock).
## 2. The adversary interface (ADVERSARY lane): what comes back per candidate
1. The input from LAB (the X5 section 5 trace shape, extended): `{"cand": "<id>", "tree": "<sha>", "ops_per_hash":
{"instructions": N, "counted": Nc, "by_family": {...}}, "loads_per_hash": L, "read_bytes": W, "dataset_bytes": D,
"state_bytes": S, "hit": {"0.01": h, "0.05": h, "0.10": h, "0.25": h, "0.50": h, "0.75": h, "1.00": 1.0}, "policies":
["static", "trained", "adaptive"], "gpu_nj": {"5090": {"stock": x, "knee": x}, "4090": {...}, ...}}`. SEARCH or CONTROLS
supplies the counts and the item histogram (the attack-f8 histogram over the candidate's own nonces); COHORT supplies gpu_nj.
2. The output per candidate: `scratchpad/lab/adv/<cand id>.json` and the lane's README under
docs/analysis/class-v6/1p5x/lab/adv/<cand id>/. One row per design, the design set never smaller than: the pure DRAM board
(GDDR7), the hybrids at 0.25, 0.50 and 0.75 stored, the full SRAM die (one N2 reticle), recomputation, HBM3 (one stack),
near-memory (the hash unit beside the bank), and every architecture improvement the lane finds (fused operations, register
organisations, shared instruction storage, specialised arrays, a systolic int8 array wherever the candidate has MACs, memory
fractions, recomputation, alternative scheduling). Each row: `{"design": ..., "node": "N5"|"N3", "nj_per_work": {"low": ..,
"nominal": .., "high": ..}, "label": "WITNESS"|"BOUND", "convention": "instruction"|"counted", "complete_machine": true,
"machine_terms": "board.py <sha>", "hit_used": .., "sustained_rate_mhs": .., "machine_w": .., "capex_usd": .., "usd_per_mhs":
.., "credible": true|false, "sources": [<shas>], "witness_note": "placed"|"synthesised"|"modelled"}`. The lane's model files by
sha (tools/chip-model/mf/results/table.csv, tools/1p5x/x5/sweep.py, tools/chip-model/mf/flow/board.py).
3. The lowest credible specialist energy: a_same = the minimum nominal over the credible rows at N5 (low and high carried);
a_ahead = the same at N3. Credible = capital per MH/s under ten times the card's (X5's rule) AND a complete machine. A BOUND
row is used only as a justified lower bound L with its assumptions named; a WITNESS row is used as E_D and every ratio from
it is labelled WITNESS (E* at or under E_D).
4. The convention: the instruction count is the default (the units fault, REG-07); a counted-op row is carried beside it, never
alone.
5. Every improvement found goes into the adversarial set with a version (`adv-set v1`, `v2`, ...) and its UTC stamp; LAB re-scores
every earlier candidate on the new set and the table names the set each score used. The strongest known specialists are kept
throughout (the plan's stopping rule 7).
6. Per candidate the lane also returns the family sentence: for each family in the candidate's mix, the cheapest permitted unit
and its pJ per op against the card's (the family table of record: ARX 1.25 to 1.3x, mul 2x, mulhi and shfl 5x, int8 MAC about
7x against an array, random reads about 13x).
## 3. The score (LAB)
1. The cells: for every cohort card c at each state s with a row, and each node n in {same, ahead}: R(c, s, n) = G(c, s) / a(n),
G the measured board-power joules per accepted work (the wall column and the +10 percent machine-term column computed
beside it, labelled, never mixed into R).
2. The score = the MAXIMUM of R over every cell (the worst comparison), with its band: score = max G / a_nominal;
score_high = max G / a_low (the adversary's optimistic end); score_low = max G / a_high. The band is printed with the score.
3. The target: a score at or under 1.5 at the nominal AND at score_high is the only reading that counts as under; the internal
design goal is 1.25 nominal (the guardband: 1.25 x 1.05 / 0.90 = 1.458).
4. Missing cells: a cohort card, state or node without a row makes the score NOT RUN; a partial figure is printed as "partial
over {cells}" and never as the score.
5. Within an algorithm: a control's score is its GPU energy over its own redesigned specialist; the controls and candidates are
compared on their scores, never on hashes. If every control reads poorly under the model, LAB investigates (optimistic old
claims, a stronger adversary, a miscalibrated model) and writes the finding; never the convenient reading.
6. The table's vocabulary: NOT RUN, BLOCKED (with the owner), REJECTED (a filter or a regression test, the reason named), FAIL
(a measured score over 1.5 at the nominal), SCREEN (a simulator's or model's score, no measurement yet), MEASURED (the cohort
rows and the adversary rows in). PASS is never written by any lane (X6's blind run and the panel).
## 4. The rejection filters (before any score; any one rejects, the reason printed on the table)
- F1 correctness: bit-exact fingerprints across the CPU reference, CUDA and OpenCL (Metal where present) at every state; the
pack self-test PASS; for a proof-carrying unit, a verifier that accepts every GPU output and refuses every known-failed fixture.
- F2 verification budget: cold verification of one accepted unit on one CPU core at or under the frozen v6's; proof bytes,
invalid-proof amplification, pool share checking and propagation inside the fleet's node limits (R15-10; B6's table on master
1ab735be9 is the reference). A unit with no measured cold-verification row is NOT RUN, not rejected.
- F3 practical generation: deterministic generation from the epoch seed on every platform; the pack exportable by the kit lane's
recipe (the cross-build on build-1 at the x86-64-v3 baseline); generation time at or under the frozen class's at the epoch
boundary.
- F4 the honest-GPU cost limits (P03): a like-for-like change pays at most 5 percent joules per accepted work and 2 percent
throughput against the paired frozen v6 (the knee where a lock exists); a changed work definition carries its comparison
contract and the budget applies to the equivalent unit. No padding that costs ordinary miners more than it costs the chip: a
candidate whose GPU energy rises by more than its specialist's is rejected by the mixture lemma before measurement.
- F5 nothing but joules: attestation, quotas, proving revenue, resale, chip cost and rotation count for nothing in R (they may
sit in a separate economics column, never in the score).
- F6 the resource line stated: dataset bytes, the working set at the candidate's read width, state bytes per instance; the full
SRAM, hybrid and recompute designs stay in the set after every change; where the working set fits one reticle the die is
scored first.
## 5. The regression set (every failure of 8 and 9 October as a test)
A candidate that repeats a failed mechanism under a new name fails the test and is REJECTED; re-entry only with a written
statement of what differs materially from the failure mechanism, read by LAB before any row.
| Test | The failure of record | The test on a candidate |
|---|---|---|
| REG-01 connected state | 8 Oct, KILL: the adversary's clock-gated register file; the window width was the one robust knob (+0.14 k at the lock); the cs64 research class | a candidate whose lever is state kept live between reads, or liveness, is scored against the clock-gated register-file row; no credit for "the chip must keep the state powered" |
| REG-02 mixed FP32 | 8 Oct, KILL: +15 to 26 percent card energy for +7 percent chip edge (FP32 FMA k 0.4 to 0.5) | any FP32 or masked-float family in the mix reads the FP32 k from the family table; a mix whose card cost rises more than the chip's fails F4 |
| REG-03 window removal (X1) | 9 Oct: g 0.98 to 1.00 on four cards; the hottest half serves 0.56 (signing) to 0.61 (mean), not 0.72; a half store still serves 0.50 (H(q) at or above q/N); the windows buy nothing for the board or the die; the hybrid's a capped at 1.14 to 1.29 | a candidate whose lever is address flattening, permutation or "no hot set" is screened by the static-cache bound: the hybrid rows at hit = q/N are its best case and the die serves every read whatever the distribution |
| REG-04 int8 mixes (X8) | 9 Oct: against a systolic array (0.30 pJ per MAC, 0.10 to 0.60) every int8 mix at 10, 50 and 90 percent raises the ratio (the board 2.4x to 2.7x, the die 8x to 14x); dp4a-only (1.54x at 90 percent) is not the adversary's cheapest unit | any tensor, MAC or dot-product family puts the systolic array in the adversary set; a row against dp4a alone is refused |
| REG-05 the scattered-read ARX point (X8b) | 9 Oct: ARX-only at 32 per-lane scattered reads 3.55x same node / 4.38x a node ahead (dollars 11.2x); at 16 reads 3.85x / 4.92x: fewer scattered reads raised the ratio | a candidate that changes only the count of per-lane scattered reads is screened by R = 1 / ((1 - f) / 1.3 + f / 13); a new mechanism needs the cooperative shape (lanes on one fetched entry, every byte consumed, the arithmetic feeding the next address) |
| REG-06 the memory-route verdict (X7) | 9 Oct: f = 0.853 on the 4090 at stock (8,091 nJ against the twin's 6,899); s = 12.8 (GDDR7 board), 22 (HBM3), 39 (beside the bank) per read; r = s / f; no read-dominated design reaches 1.5x at any f | a candidate whose claim is "more read-dominated" or "more bytes" is screened by the bridge r = 1 / (f / s + (1 - f) / c) with X7's s and the candidate's own f; the term it must change is the card's cost per read (27 nJ all-in on the 4090 at stock; 14 all-in and 8.7 marginal on the 5090 at its knee), not the count |
| REG-07 the units fault | 9 Oct 11:4x UK: a "counted op" is the GPU's 1.83 micro-op tally; the shadow is 55,296 instructions; the placed rows multiplied 102,612 counted ops by a per-instruction chip energy and overstated the chip's shadow by 1.85x | every adversary row names its convention; the instruction count is the default; a counted-op row without the instruction row beside it is refused; every candidate's op count is reported in both conventions |
| REG-08 layer 8 off | register row 18, closed 04:49 UK 9 Oct: off at the knee costs the card 5.7 percent of rate and 3.6 to 5.7 percent of joules; the chip side gains 4 percent at the mean hit | the layer stays ON in every control row; a candidate that removes it carries its own pair row |
Also of record (X0, the decider): the frozen v6 costs the card 1.78x to 1.84x class v4's joules per hash at stock (twice the reads
for 9 to 10 percent more ALU) and the chip's memory term doubles while its shadow holds. Every ratio is read on ITS OWN pair
(chip and card on the same program), never spliced across programs or snapshots.
## 6. The candidate table (scratchpad/lab/TABLE.md)
Columns: candidate id; kind; tree and pack ids; the resource line (SEARCH or CONTROLS); the cohort rows per card (stock nJ, knee
nJ, f, spread; wall BLOCKED or the figure); the adversary rows (a_same, a_ahead, the lowest credible design, the adv-set
version); the worst score with its band; status; the next move with its owner and clock. LAB writes the table; the lanes send
rows; the table is current within ten minutes of a row.
## 7. The report rule
- A lane reports to LAB and to main on a real change only: a measured row read back, an adversary row set, a rejection, a fault
with its cause and clock. Never a status note. The form: one line, UK time from `date`, the figure, what it means on the score,
the evidence path.
- LAB's line to main at every real result: a control's ratio, a candidate's score, an adversary improvement that re-ranks, a
fault. The first full line: the frozen v6's worst-cohort score.
- A slip once, with its cause and the new clock. Nothing on the devnet is touched; no founder input is ever asked for; builds and
runs on the boxes and rented pods only; kills by recorded pid after reading the pid's command line.
## 8. The registry and the landings
- Suite R15; the lab's cell `lab:candidate` (cases R15-01, R15-08, R15-09); every row NOT RUN until read by the panel (X6 blind).
The batch form (tools/ci/batches/lab-<date>-<nn>.json, as the recorder takes it): run_id, manifest_sha = the candidate's tree
(the frozen control 1a938abe4), method GPU for card rows and model for chip rows, evidence_dir, release_identity with
network_object "none: ...", cells `[{cell: "lab:candidate", cases, status, in_progress, method, evidence, note, claim_impact}]`;
recorded with `node tools/ci/test-record.mjs --record <batch>`.
- The landing: a worktree off build/master; `tools/ci/pre-push.sh` (the full gate on the branch); `MERGE_REMOTE=build
tools/ci/merge-to-master.sh` (the box mirror, under the master-landing lock on build-1); read back with
`git fetch build master` and the file's sha on the mirror. Documents under docs/analysis/class-v6/1p5x/lab/; a lane's rows under
docs/analysis/class-v6/1p5x/lab/<lane>/<cand id>/; artefacts under build-1:/srv/artefacts/lab/<cand id>/.
- Clocks: this file 12:15 UK; the frozen v6's worst-cohort score when COHORT's and ADVERSARY's rows are in (by 13:4x UK); every
later candidate scored within one hour of its last row.
## 8a. X10, the full-sector fold candidate (the founder's third review, 11:5x UK; main's digest scratchpad/lab/review-3-x10.md)
The working scope from now, by default, until the founder says otherwise: the ENERGY CLAIM is the same-node board only (a
programmable core plus a GDDR controller, the same process node as the reference GPU, the dataset in external DRAM, no on-package
store larger than a cache); the SRAM or HBM die and every node-ahead chip stay in the table as COEXISTENCE rows, labelled out of
the energy claim (ticket, fleet cost, margin). Every other rule of this file holds; the score column for X10 carries the board
column as the claim and the die and node-ahead columns beside it.
The object (`cand-x10`), built exactly as reviewed, one object fixed at genesis, no shadow ladder: a chain of DEPENDENT 32-byte
sector loads from the 4 GiB dataset, the address of load n a function of the bytes of load n - 1; all 32 bytes folded into the
lane state with 32-bit integer MAD, XOR and shifts; between loads a fixed mix of 32-bit integer MAD, shifts and bitwise ops, a
64-register window retained across every rotation, a 32-lane shuffle at least every four arithmetic ops; no 64-bit multiply, no
division, no wide permute, no matmul; the read count = the largest count whose joules per hash on the locked 5090 is within 10
percent of the frozen v6's, the search starting at 64 loads (2 KiB useful traffic), cut before any width is added; the low address
bits folded before every era boundary; a draw refused if any fraction of the set takes more than its size share of loads (the
0.995 acceptance floor pointed at this address-share test); hourly program and weekly era draws stay (a versatility tax, outside
the energy model); the 180-day family epoch out until the bracket has passed; the verifier one warp under 10 ms on the reference
core.
Two facts of record conflict with the reviewer's premises; X10 is the measurement that settles them, never an argument: (1) the
board reads 2.35x same node at the knee after X0's corrections (1.90 to 2.65), not the 1.5 to 1.6x of X0's first reading, so the
"remaining tenth" is 0.85x on the corrected figure; (2) X7's s = 12.8 on the chip's own GDDR7 board for the same traffic (the card
about 27 nJ per random read all-in against about 2 nJ for the burst) says the card's read-path fabric, not the DRAM burst, is the
dominant term. The reviewer's answer is the full-sector fold (8x the useful bytes per read, 8x fewer reads for the same traffic);
whether that moves the card's cost per useful byte toward the chip's is what X10 measures.
The assignments (earliest clocks; one line per real result to LAB and main):
| Lane | X10 work | Clock UK |
|---|---|---|
| CONTROLS | the readwidth fact of record: does the frozen v6 read 4 bytes of a 32-byte sector or fold the whole sector (the readwidth row, by sha); the card's measured energy per 32-byte random sector read at the knee and at stock on the 5090 and the 4090 by X7's read-only-twin method, and the same with every byte of the sector folded (the ALU-fold cost), as a paired same-session row set | the readwidth fact 12:30; the sector rows 14:00 |
| SEARCH | X10 exactly as specified above: CPU reference + CUDA kernel (bit-exact), 64 dependent 32-byte loads to start, the read count set by the 10 percent budget on the locked 5090 (a rented pod that holds the lock, else the house record's pair convention stated), the address-share test at the 0.995 floor, the verifier timed under 10 ms; the trace JSON of section 2.1 (both conventions) to ADVERSARY; the kit to COHORT through the kit lane's recipe | the kernel and reference 14:00; the kit and the trace 14:30 |
| ADVERSARY | the same-node board on X10 under the reviewer's model rule (external GDDR, same node, the cache hit rate = cache size over 4 GiB, no stable hot set), the ENERGY SPLIT published (memory, ALU, the fixed-function tax) and not only the ratio, under BOTH conventions (ours: the cheapest programmable core; ProgPoW's: a chip that keeps a GPU-class datapath); the die and the node-ahead rows beside it as coexistence rows, labelled out of the energy claim; the same split on the frozen v6 for the pair | the v6 split 13:30; the X10 board rows within one hour of SEARCH's trace |
| COHORT | the frozen denominator: the locked 5090 and 5080 (a rented pod that holds the lock, else stock with the lock refusal in the row), a 4090, one AMD card when rentable (NOT RUN with the reason until then), on the frozen v6 and on X10, same session pairs, the read-only twin on both; the 10 percent cross-vendor budget line (FAIL if the AMD card or the 4090 pays more than 10 percent over the budget against v6) | the v6 denominator rows 12:3x (in flight); the X10 rows within one hour of the kit |
| LAB | the verdict line: the board at or under 1.5 on every denominator card, or the number it reads and which term (memory, ALU, tax) holds it above; FAIL CLOSED per the review (above 1.5 after the burst change: stop; no added arithmetic, no family rotation, no set growth); the PASS condition is never written by the lab (the board column at or under 1.5 on every card, the memory share of card energy at least half, the verifier under 10 ms, the GPU-cost budget held, then the coexistence rerun: the panel reads it) | within one hour of the last X10 row |
The twin for X10: the dependent-address chain is kept by construction (the fold of each sector into the next address stays; the
rest of the ALU mix is dropped), so the twin's address stream equals the full kernel's and `twin_addr` reads `by construction
<kernel sha>` without a trace instrument; the same ruling covers ctl-v6 (the X7 twin, kernel 93a6a5ce): `twin_addr=none` is accepted
on the control rows and no instrument is built before the first candidate.
### 8a.1 X10 facts of record (12:2x UK)
- The readwidth fact (CONTROLS): the frozen v6 reads ONE 32-bit word per load site and never folds the sector. Proof lines in the
l8off kit's packs/hl-v6-all (program.json 9eec9e325a820c16, program.h bfd9230e231ffb2c, kernel_bound.cu 77cabb0602ee7ad5):
program.h `IGNEUM_LOADS_PER_HASH 128`, `IGNEUM_WIDE_LOADS_PER_HASH 0`, `IGNEUM_LOAD_WIDTH_COUNTS { 16, 0, 0 }`; kernel_bound.cu
line 115 a 4-byte `ds[...]` xor into one register; the reg64c mirror repeats each site: 256 executed loads per hash, 1,024 bytes
consumed of the 8,192 bytes of 32-byte sectors the memory system moves. The read-width rows of record (the first rig's 5090 at the
1,300 lock, 8 Oct): W = 4 words 2.29 uJ per hash, W = 8 2.55 (+11 percent), W = 16 4.09 (+78 percent). So X10's premise (the
card moves a sector and consumes 4 bytes of it) is true of record, and folding the sector costs the card's ALU (+11 percent at
8 words on that row).
- The fault of record in the Sector reference as written (SEARCH): the sector index reads lane registers 0 and 1; the fold writes
dst = (load x 8 + k) & 63, so registers 0 and 1 are rewritten only every eighth load; 7 of every 8 loads re-read the same sector
(every fixture's lane-0 trace: two fresh addresses, then six repeats); about 16 distinct dependent sector addresses per lane-hash;
the other 102 loads are L1 or L2 hits on the card and free on a chip. The author's split (memory 35 / fold 55 / tax 10) and the
10 percent budget rest on 118 real misses. Evidence scratchpad/lab/x10-sector/cuda/fixtures.txt (columns 5 to 12), hash.ts lines
95 to 112. RULING: cand-x10 is built and measured bit-exact to the reference as written (its own row, labelled "16 real misses");
cand-x10b is main's ratified address rule (load n reads the two registers the previous load's fold wrote last; zero repeats in
every trace), measured beside it; both kits under build-1:/srv/artefacts/lab/cand-x10/kit/ (sector.cu 16417ce6, run-x10.sh;
VARIANT=x10b for the corrected one) and cand-x10b/. The CUDA kernel is bit-exact with the reference on all 18 fixtures (a rented
4090, 11:11 UTC; 112 registers, no spills).
- The accepted-work contract for X10, APPROVED by LAB: the lottery unit is the warp digest; the column comparable to the frozen
v6's joules per hash is joules per LANE-WORK (per digest over 32); both are printed on every row; the P03 budget and every ratio
are read per lane-work; the ratio is unit-independent while both sides use the same unit; the security-budget line (energy per
lottery draw at an equal target) is printed beside it per the units rule (8c.2).
- The first X10 rows (SEARCH, a rented 4090 at stock, SCREEN until COHORT's paired rows): 118 loads 810 to 845 nJ per lane-work
(25.9 to 27.0 uJ per digest) at 264 to 275 W; 64 loads 567 nJ per lane-work at 294 W; a tenth of v6's 8,091 nJ on the same card
class, which is the cache hits of the fault, not a design gain.
## 8b. The coexistence table (the founder, 12:0x UK; the scoreboard's headline beside the energy ratio; ADVERSARY's job, due with the controls this afternoon)
The outcome the founder has set is COEXISTENCE: GPU owners remain competitive, no lasting overwhelming supplier advantage, no
emergency intervention. So every control and candidate carries a coexistence table next to its score, built by ADVERSARY with the
placed core and the X8b dollar method, every number a WITNESS with its source, the fleet size and the design-cost assumption
stated on the row, no raw hashes. Rows per adversary: the same-node DRAM board, the stored-half hybrid, the N2 SRAM die, the
node-ahead board. Columns:
1. Energy edge at the knee: the card's nJ per hash over the chip's (the complete machine), with the band.
2. Chip capital per MH/s in USD: the die (the placed core's mm2 at the node x the claimed wafer cost and yield), the memory (4 GiB
of GDDR7, USD 320 of devices of record, or the SRAM at USD 250 per GiB claimed), the board and assembly (USD 200 of record), the
design cost (the mask set and the design team, the sum stated) spread over a stated fleet (machines and MH/s); against the card's
USD per MH/s on the SAME object (15.7 of record on the X8b row; 30.6 on the frozen v6 at the knee in adv-set v1): both pairs
stated.
3. The GPU owner's electricity-only cost per hash at three prices, USD 0.05, 0.10 and 0.15 per kWh, in USD per TH (nJ per hash x
price per kWh / 3,600; the card is sunk).
4. The chip's all-in cost per hash at the same three prices, USD per TH: its electricity (its nJ per hash x the price) plus its
capital per MH/s amortised over a stated life (months, straight line, the chip's sustained MH/s) plus the design-cost share; the
life and the fleet stated on the row.
5. The verdict per row and per price: does the chip's all-in cost per hash fall BELOW the GPU owner's electricity-only cost per hash?
yes = the GPU owner is pushed out; no = coexistence holds. The row prints the margin (chip all-in over GPU electricity-only) so a
reader sees how far from the line it sits.
The table's file: scratchpad/lab/adv/<cand id>-coexistence.json beside the design rows (the same keys as the columns above, one
object per adversary row with its assumptions) and the lane's README section; LAB carries the four verdict cells (one per
adversary row at USD 0.10) on TABLE.md beside the score, the full table in the landed README.
## 8c. Scoreboard rulings (the founder's fourth and fifth reviews, through main, 12:5x and 13:1x by main's clock; binding on every served or committed sentence)
1. Labels: every ratio names its adversary (the same-node DRAM board, the stored-half hybrid, the N2 SRAM die, the node-ahead
board), its column (energy, capital, cost ratio), its clock state (knee or stock), the card and the set version; never a blended
figure.
2. The coexistence table's last column is "cost ratio" (the chip's all-in cost per TH over the GPU owner's electricity-only cost
per TH), never "margin". A revenue column: the block reward times the token price under growing, flat and falling scenarios, as
revenue per accepted work in each algorithm's OWN units (the units rule, CONTROLS), never raw terahashes across algorithms.
3. "All three tested tariffs" (USD 0.05, 0.10, 0.15 per kWh), never "every electricity price"; the tariff at which the two curves
meet is stated per row (the reviewer's linear read on ctl-v6's board row: about USD 0.33 per kWh).
4. "No fleet size reaches break-even" appears only with its fleet, amortisation and revenue rows shown.
5. Two phases per adversary (board, hybrid, die), with the development cost both recoverable and sunk. Phase A, before investment:
can the maker recover its spend under growing, flat and falling demand with realistic hardware sales. Phase B, after investment
with the spend sunk: the ongoing cost per TH on both sides (the chip's electricity, hosting and maintenance itemised: of the
chip's USD 0.265 per TH at ten cents about 0.043 is electricity, the other 0.222 itemised as capital, design or recurring), the
realised contribution against revenue, who exits first as difficulty rises, GPU participation and supplier concentration over
time.
6. The SRAM die stays a live opponent in both phases; where it is called implausible the row names the assumption that fails.
7. The NEW-BUYER column: a new card's capital plus electricity against the chip's, per tier, with the indifference point; under
each growth schedule with the chip's memory capital scaling with the set (4, 8, 16 GiB) against a card buyer who already holds
16 to 32 GB, and the set size at which the chip's capital per MH/s meets the card's. The USED-CARD column: a 4090 and a 3090 at
today's used prices (source stated), resale retained at 24 months, the chip's resale zero after a program-draw change. No
sentence about supplier advantage appears before the new-buyer column exists; ADVERSARY's first result (12:1x): the new buyer
picks the chip on every row and tier (the board 0.24x to 0.43x a new card's all-in at ten cents; the die 0.04x; indifference at
USD 9.7 per MH/s on the 5090 knee, 10.5 on the 5080, 5.4 on the 5090 stock, 2.6 on the 4090; the only hold the project share
below about 13,500 boards sold).
8. The card's random-read headroom (COHORT with CONTROLS; the lab's most important physical row, the only lever on phase B): the
achieved sector reads per second on v6 (rate x 256) per cohort card against that card's random-activation bound from its memory
timing (channels, banks, tRC) and against the chip's 148 MH/s on the same memory kind; if the card sits well under its bound the
miner-side lever is more loads in flight per core (software pipelining across lane-hashes, occupancy, batch shape) and SEARCH
cuts a worker variant that measures it: a faster card at the same price is the direct answer to the chip's USD 14 per MH/s.
9. The approved wording, verbatim, until the two-phase rows exist: "The current model finds that existing GPU electricity costs
are below the assessed DRAM-board specialist's all-in costs at the tested tariffs and stated lifetime assumptions. This supports
a conditional entry-deterrence result. It does not yet establish post-deployment competitiveness, viable GPU replacement or new
entry, or coexistence against the modelled SRAM fleet at sufficient scale. Those outcomes remain separately assessed."
Withdrawn everywhere: "the winning outcome is met", "only one design decision remains", "no lasting supplier advantage", "no
other GPU chain has this written down" (the last needs a comparative review of what other chains publish: a row of the table,
NOT RUN until done). The sentence the rows support today: a DRAM-board chip can be built and does not undercut a card its owner
already has; the store-on-die chip is the residual, held by the growth schedule.
10. The 4 GiB proving cap defined precisely on the record: which of the mining state, the proof-generation allocation, the
verifier requirement or the advertised hardware profile it limits (CONTROLS states it from the proving manifest and the record;
ADVERSARY the economics).
11. (the sixth review, 12:3x UK) The revenue column splits revenue by hardware: a GPU earns the mining share plus the proving
share of the block reward (the ratified split from the Token Value volume on master, D01 to D06 and TV-04, taken from the
documents by path and sha, never invented), a hash chip the mining share only; phase B (spend sunk) is recomputed with that
split for the board, the hybrid and the die, with the proving share at which the chip's operating advantage over the GPU
disappears at ten cents; the row is labelled NOT LIVE until a shipped package runs a prover (today the HiveOS package mines
only; proving turns on at 24 GB) and a shipping row is open for it (TABLE.md, the shipping row: which packages prove today
at what VRAM and by what switch, the 24 GB threshold and whether a 16 GB card can prove a smaller instance, the share of the
live cohort that can prove; a HiveOS prover a named 2.0.3.1 item beside snapshot sync). The phase B row states the
assumption that all proving stays on the GPU cohort, with the sentence: a chip maker who fields GPUs to prove is a GPU miner
with a sidecar. ADVERSARY's first result (545f3f8a0): the proving share at which the chip's operating advantage disappears at
ten cents is 9 percent for the board, 13 for the hybrid, 20 for the die, against the ratified 20.
14. The 8e "4 GiB fault" is corrected (12:4x UK, once): every cohort cell ran the live 4 GiB object (the self-test's dataset word
1,073,741,823 on every cell; dataset_words on every row); CONTROLS' 13.16 MH/s was its worker build 804a6f7f at 20 x 2^22, not
the object; the decider names the instrument difference; the 4 GiB rule (every row names its dataset words) stands.
12. (the sixth review) The per-epoch tuple rotation (bytes folded per line, register-window depth, shuffle distance, chosen from a
committed list and published one epoch early) is costed by ADVERSARY as versatility tax on the programmable core (what it
adds to the chip's shadow and what it costs the card) beside the hourly and weekly draws, and is NOT scored as a defence
against the programmable adversary; the lab's measured X10 verdict (31 against 31.6 nJ per read, 5.8x against 5.4x on the same
4090) is the answer to the review's rule 2 and the growth rows the answer to its rule 3.
13. A SCREEN cell under 1.5 (the first: cand-x10 at 520k ALU on set v3, 1.03x with the card assumed equal to v6) is never served
as a result; it is a measurement order (SEARCH builds the point, COHORT measures it paired with v6, the P03 line decides
before the ratio).
Owners: ADVERSARY 2 to 7, 10's economics, 11 and 12; CONTROLS the units rule and 10's definition; COHORT 8 with CONTROLS; LAB the
wording, the layout and the labels.
## 8d. The founder's lab bundle (14:00 UK with the measured controls)
build-1:/srv/artefacts/lab/founder-bundle-<stamp>.zip, built by /srv/artefacts/lab/make-bundle.sh (no identity text: no names,
logins, rig names or the zone word; the script greps every text file and refuses on a hit): the interface, the scoreboard with the
coexistence table and its assumptions, the adversarial set v2 design notes and the placed rows, the frozen-v6 control kit with the
4 GiB packs and sidecars, the cohort rows, the controls' rows, the X10 record; the path and sha256 to main.
## 8e. The 4 GiB rule and the post-deployment lever (main, 12:3x UK)
CONTROLS measured the live 4 GiB signing object (x1-ctrl-ds30, 2^30 words) at 13.16 MH/s on a rented 4090 at stock against 31.28
for the 1 GiB research pack on the same card and session (3.4 against 7.9 G dataset reads per second on the same memory). Rules:
(1) the 4 GiB figure is the one every scoreboard row carries from now; every 1 GiB row is relabelled research and is never a cohort
cell; (2) the decider (COHORT, one session per card: the 1 GiB pack, the 4 GiB pack, both twins, ABBA, the dataset words on every
row), then the cause read directly (the worker's occupancy and loads in flight at 4 GiB from its RESULT line; CONTROLS' pure-read
kernel at 1, 2 and 4 GiB in steps against the card's page size and L2 TLB coverage; the layer-8 window shape over 2^30 words),
then the first worker-side fix the cause names (SEARCH: larger pages or a different allocation, more independent lane-hashes in
flight per warp, a window shape that keeps the page set hot), measured as a pair against the frozen worker on the same card with a
bit-exact fingerprint, the gain in MH/s per card and the new nJ per hash; (3) one line to main at the decider, one at the cause,
one at the first fix pair. Recovering the loss halves every card's USD per MH/s at no gain to the chip: it is the phase B lever.
## 8f. The ledger order (the founder, 12:5x UK; binding; the deliverables reordered)
The primary objective within five hours: the statement "Someone can build a chip, but ordinary GPU owners remain competitive,
the supplier cannot obtain a lasting overwhelming advantage, and the network does not depend on emergency intervention to survive"
made true and verifiable. The lab's lanes feed the GPU NETWORK LEDGER (the LEDGER lane a101aa8329d1e82bf assembles; it does not
re-measure) FIRST: (1) every live GPU chain measured the same way on the same rented 4090 and 5090 in one session each (Igneum v6
at 4 GiB, KAWPOW via ProgPoW 0.9.4 at the live DAG, FishHash, Etchash via the pinned chfast hashimoto at ETC's current DAG,
Autolykos2 if the in-house rule and the clock allow), the set v3 board ratio and the ProgPoW-premise ratio per chain, the two-phase
rows with each chain's actual reward split (only Igneum pays provers), and the E9 Pro calibration line (ADVERSARY models the one
real chip against Etchash; the gap to its public rate and power is the model's calibration, stated); (2) the proving row flips
LIVE on the PROVING LIVE lane's on-chain evidence (af561127dc1bc7044, one full epoch of paid rows, by 16:00; today's read: 663 paid
v1 segment records to 30 keys on Devnet 4, payments paused since the hub roll, the cause under fix); (3) the comparative-review row
(what other chains publish about their resistance, verbatim with source) so the ledger's claim is checkable; (4) the hash candidate
search continues fail-closed at lower priority (the 520k-ALU point and the headroom row close their records; no new families).
Clocks: the ledger table on the record 15:30, the kit 16:30, the page 17:30. Every row MEASURED or WITNESS with its source;
"pending" never blank; the BUILD STEWARD a3d365ef4a3a107a4 fills any idle box the lab names. The ledger's registry cell:
ledger:cross-chain beside lab:candidate on R15-09, NOT RUN until the kit's rows reproduce; its paths: the scoreboard table.md and
README.md at the box master's sha at 15:00, the conventions on the ctl-v6 and ctl-progpow-094 rows. Correction to 8c.11: the
32 GB prototype-shard clause is Devnet 1's; on Devnet 4 (fees_v1_activation_daa 0) a 24 GB NVIDIA card proves the v1 shard and
aggregates beside its miner now; the 16 GB tier holds no shard.
## 8g. The "no emergency intervention" row (main, 13:1x UK; measured behaviour of record)
The statement's third clause ("the network does not depend on emergency intervention to survive") is carried on the scoreboard as
a measured row, never an argument: Devnet 4 runs finality rule v3 (the frozen table expiring at lock DAA + 7,200); finality has
been paused since lock 1980; the roll restores signing weight; the first new lock is expected 15:30 to 17:00 UK; through the pause
the chain ran on PoW, nothing certified reversed, and proving was unaffected once the finality gate on provers was lifted. The vote
key is label-derived (no key file; a fresh datadir keeps it). The row flips from "paused, chain on PoW" to "locked" on the hub's
first new lock line; the ledger page cites it with the DAA and the UK time.
The LAB stays on watch until the ledger page lands (17:30 UK): the scoreboard and table current as COHORT's five-chain session,
ADVERSARY's ledger rows, the proving epoch record (16:00) and the comparative review (15:30) land; make-bundle.sh re-run for the
14:00 edition and at 17:30 with the ledger rows, each edition's path and sha to main.
## 9. The lane briefs, one line each
- CONTROLS: the four controls as rows of the table: `ctl-v6` from the record and re-measured on the cohort; `ctl-progpow-094`
built from the official 0.9.4 source with its test vectors (kawpowminer master a proxy only); `ctl-fishhash` from Iron Fish's
implementation; `ctl-coop-arx` (the CUDA kernel and CPU reference by 14:00 UK); each with its own optimised GPU implementation
and its accepted-work equivalence contract; the traces (op counts in both conventions, the item histogram) to ADVERSARY and
the kits to COHORT.
- SEARCH: candidates as executable specifications with explicit resource limits over arithmetic composition, dependency
structure, state layout, lane cooperation, memory-transaction shape and work granularity; each through F1 to F6 and REG-01 to
REG-08 on the simulator before a kit is cut (a SCREEN score); the top of the SCREEN ranking to COHORT and ADVERSARY as kits
and traces.
- ADVERSARY: section 2 per candidate; the set versioned; every earlier candidate retested on each new set.
- COHORT: section 1 per candidate on the full cohort from the first candidate; the rows to build-1:/srv/artefacts/lab/; the P03
lines.

View file

@ -1,45 +0,0 @@
# Proving live on Devnet 4: the on-chain record (9 October 2026)
The 1.5x scoreboard's phase B row reads "a GPU earns the proving share of the block reward and a hash chip cannot". This page is the evidence that the proving share is paid on the live devnet to GPUs proving beside their miners, read from the chain and nothing else. One epoch is 3,600 DAA; Devnet 4's DAA runs at 1.0 per second (63,577 at 11:59:15Z to 63,902 at 12:04:30Z), so an epoch is one hour.
## The rule being exercised, by file and line (node 27f54124, the 2.0.3 line)
| what | where |
|---|---|
| 20 percent of every block subsidy to the proving pool, 80 to the producer | consensus/core/src/igneum.rs:44 (`PROVING_POOL_SHARE_PERCENT`), :87 (`proving_pool_share`) |
| a carried record pays its shard part of the pool credit to the record's payout address when valid, verified and first | igneum/exec/src/proving.rs:551 (`carried_payouts`) |
| a v1 segment (8 chain blocks, 8 shards + one aggregation) pays as one record, 1,000 bps of the credit to the aggregator | consensus/core/src/proving.rs:638 (`split_pool_credit`); igneum/exec/src/proving.rs `segment_status` Proven |
| fees v1 from DAA 0 on the devnet (the shard is the calibrated v1 size, 30,000 pgas, never the prototype) | consensus/core/src/config/params.rs:2307 (`DEVNET_PARAMS.fees_v1_activation_daa: 0`); the node reports `fees.v1ActivationDaa 0`, `shardBudget 0x7530` |
| what a prover reads and submits | `igneum_getProvingStatus`, `igneum_getAssignedShards`, `igneum_submitProofRecord`, `igneum_submitSegmentRecord`, `igneum_getSegmentRecords` (igneum/exec/src/rpc.rs:1342, :1443, :1628) |
## What proves today
The fleet's prover stack on rented RunPod and Vast boxes: `tools/fleet/box-prover.py` (one loop per box, beside the box's kit-2 miner, MINER=none so the miner is never paused) driving the served 0317 prover pair (`igneum-prove-host` sha256 71bc2438…, `igneum-prove-export` 263bf4ce…, SP1 6.8.1, shard program id 0x2b1a81cb…, aggregator id 0x474678f3…, the pair the node pins) and the SP1 GPU server. The same binaries are what the 2.0.3.1 HiveOS package wraps; the Mac and Windows apps carry the same prover, on by default at 23,552 MiB or more (app/igneum-app/src/provedefault.rs:23-24). Cards: RTX 4090 (24,564 MiB), RTX 3090 (24,576), L40S and RTX 6000 Ada (48 GB) as aggregators. Measured on a 4090 beside its miner: one 8-block segment in 117 to 185 s end to end (shards 48 to 52 s, aggregation 57 to 61 s), peak 13,523 to 14,899 MiB; a 16 GB card cannot hold the shard (the LAB's floor rows).
## Baseline before the restart (read 11:50:22Z, lp-4090-02's node, chain id 4465, executed tip 31,719, DAA 62,833)
| counter | value |
|---|---|
| paid v1 segment records since genesis | 663 = 653.93 IGN |
| distinct prover keys paid | 30 (median 4 segments a key, maximum 230) |
| payout addresses | 3 (the fleet's wallets) |
| paid v0 shard records (the pre-segment path) | 6,474 = 7,196 IGN |
| proving pool balance | 27,706 IGN |
| carried records refused as duplicates ("segment already paid") | 952 of 2,199 carried |
| carried records refused as late ("unproven", after the 600 DAA deadline) | 461 |
Evidence file: build-1:/srv/artefacts/proving-live/prov-ledger-4465-tip31719-115022Z.json (sha256 bd3f53c18c3ffa20354ea62ade9fd5e7a5794202a71c3c369a5be71484f7143a), every segment from genesis with its paid row and carried records.
Why payments had stopped at 11:15Z: Devnet 4's finality paused at 11:15:57Z under the hub roll (signing weight 4 to 25 percent of the frozen table), and every fleet prover gates on a finality pause (the 8 October build claims only below the finality-settled block; the V6-08 build holds after 600 s). The gate is the prover's own policy; payment never depended on finality (`carried_payouts`). The provers were restarted as generation 2 at 11:59Z with the gate lifted and the chain paid again from 12:02Z.
## The epoch of evidence (12:02Z to EPOCH_END)
EPOCH_TABLE
## The sentence the row carries
EPOCH_SENTENCE
## Access to proving work (main's question of 13:1x UK)
Segments are allocated by first valid record: 8 assignees per shard drawn from the keys in the record window hold a 10 DAA exclusive window (consensus/core/src/proving.rs:26, :30, :255, :305), after which any key may prove and the first valid record carried is paid; no stake, no queue; leases are off on the live nodes. A newcomer competes equally from its first record; a prover on a synced node claims within one 15-second pass (lp-4090-02 claimed 15 s after its restart). With about 227 segments an hour on this devnet and 120 to 185 s a proof, 8 to 11 provers saturate the work and every prover past that dilutes the fixed 20 percent as 1/N; about a third of carried records today are duplicate proofs. The rule change is docs/design/proving-claim-order.md (node change after 2.0.3; nothing on the chain today).

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# The SEARCH lane of the 1.5x laboratory (9 October 2026): the constrained workload search, its candidates and its rows
The lab's charter (scratchpad/lab/CHARTER.md) and interface (docs/analysis/class-v6/1p5x/lab/README.md) sit above this file.
Nothing here is a PASS; every chip figure is a WITNESS on the adversarial set named beside it; every card figure names its
card, state, pod and pack. Branch `lab-search` (off `1p5x-int8` on the frozen tree 1a938abe4), tools under `tools/lab/`.
## 1. The system
| Part | What it is | Where |
|---|---|---|
| The knobs | arithmetic composition (a weight table over add, sub, xor, rotl, rotr, mul, mulhi, mad, shfl, dp4a; the ARX families, int8 MAC and FP32 FMA allowed, mul, mulhi and shfl as explicit points), dependency structure (the drawn chain, reg64c's interleave, `+ilp2`, `+ilp4`), state layout (8 or 64 registers per lane), lane cooperation (scattered per-lane entries; the warp-coalesced entry modelled only), memory-transaction shape (entry 4 to 64 bytes realisable, 128 to 1,024 modelled; reads per hash 16 to 256; the dataset 2 to 8 GiB), work granularity (the shadow block 64 to 1,024 instructions x 4 to 108 passes) | `tools/lab/search/labsearch.py` |
| The executable specification | a class string on the lab tree plus `params.env` (the limits: the verifier 10 ms on the F6 proxy, the dataset at or under 8 GiB for the 16 GB floor, P03 overhead at or under 5 percent, registers under 96, 16,384 to 340,000 instructions per unit) and `trace.json` in the adversary's section 2.1 form | `candidates/cand-NN/` |
| The generator flags the search needed | `+labw<20 hex>[r<reads>]` (a generic non-load table, the reads per hash on the fam8 load-slot rule), `+ilp<2 or 4>` (the eight registers as independent banks: W chains per lane; 8 is refused, one register per bank has no bijection), `+flat` parsing outside a fam8 suffix; the program id binds every flag | `igneum-pow/src/generator.rs`, `igneum-pow/tests/labsearch.rs` |
| The cost model | the card: a throughput model per tier and state (the measured twins: the 4090 at stock 24.9 nJ per dependent read above idle and 21.2 pJ per instruction; the 5090 at the knee 12.0 nJ and 11.8 pJ on the drawn chain against 6.2 on an ILP-4 chain; the 3090 and 5080 rows PROVISIONAL from the class v4-shape rows), the per-unit fixed work, the coalesced entry at the streaming cost; the chip: the X5 machine (memory at its sustained rate or the SRAM die's power bound, the core sized to the ops, PSU, VRM, fan, host share) on the family table of the adversarial set in force (v0 the placed core; v2 ADVERSARY's fused units with a per-design scale fitted so the frozen object reads v2's own rows) | `calib.json` |
| The score | the worst cell over the cohort (5090 knee and stock, 4090 stock, 3090 stock, 5080 knee and stock) against the lowest credible specialist (board, HBM3, near-memory, N2 die, stored-half hybrid; capex under 10x the card's USD per MH/s), with the band; since 11:5x the BOARD cell first (the energy claim's scope) and the die beside it | `labsearch.py score` |
| The regression tests | REG-01 to REG-07 as predicates on the knob vector, by name (connected state; mixed FP32; window removal alone; int8 at or above 10 percent; scattered ARX at or under 32 reads; scattered reads above 256; the units fault) | `regression.json` |
| The box side | the census (8 chain-shaped seeds through the class's own acceptance rule, attempts and exhaustion) and the pack export on the signing pair (epoch af89be5d, era edc4fa84, day 20730, node1's state, 2^28 words for screening and 2^30 for a handed candidate), SHA256SUMS per candidate | `run-candidates.sh`, build-9:/srv/builds/lab-search/ |
| The card side | the paired row (ABBA against the frozen control in one session, the gen-6 worker, 250 x 2^24, the sampler rule, PAIR lines with USD per MH/s at a street price) and the headroom sweep (the worker's loads-in-flight knobs beside its memprobe) | `pair-bench.sh`, `headroom.sh` |
## 2. The candidates staged (build-1:/srv/artefacts/lab/)
| Set | Candidates | Ranking | Census | Self-test (F1) |
|---|---|---|---|---|
| batch 1 (adv-set v0 top ten) | cand-01 to cand-10: ARX-only at 48 to 64 reads, 170k to 340k instructions, w4/w16/w32/w64 entries | candidates/ranking-batch1-v0.md, -v2.md | 8 of 8 on every one | PASS 10 of 10 (rented 4090, gen-6 worker --check, 11:43 UTC) |
| batch 2 (adv-set v2 top ten on the labw and ilp knobs) | cand-11 to cand-20: MAD-heavy `+labw...+ilp4+flat` draws at 256 reads, two ARX-only points | candidates/ranking-batch2-v2.md | 8 of 8 on nine; cand-17 0 of 8 (exhausted, REJECTED on practical generation) | queued |
| the merged v2 ranking | the twenty on one table by the board cell | candidates/ranking-merged-v2.md | | |
| the ILP-wide redraw of the frozen program | cand-ilp4, cand-ilp2 (the same ops, the same 256 reads and shadow, the registers in 4 or 2 banks; 4 GiB signing pair) | the frozen object's cells | attempt 2 and 0 | PASS |
| X10 "Sector" (the founder's reference) | cand-x10 (as written) and cand-x10b (main's ratified address rule), cand-x10 variant alu-520k | ADVERSARY's cand-x10-*.json | the reference's own acceptance floor | bit-exact on 18 and 18 and 9 fixtures |
| the frozen v6 controls | controls/frozen-v6/headroom/ (variant 1), controls/frozen-v6/fix-4gib/v6x2-ds30 (two lane-hashes per thread, `interleave2.py`) | | | PASS |
## 3. The findings of record (12:0x to 13:0x UK)
1. On the frozen tree's realisable space no scattered-read design screens under 3.7x on the worst cell on set v0 and none under 2.4x on the board cell at the 5090 knee on set v2 (the frozen object 2.66x there); the mixture lemma holds on every set: a candidate moves the ratio only through a family the adversary prices near the card's, and on v2 that family is mad (2.9x), so the top of the v2 ranking is MAD-heavy ILP-4 draws (cand-14 2.42x board at the 5090 knee, 5.20x on the provisional 3090 stock row).
2. The ILP-wide redraw, measured (4090 stock, in-session ABBA, spread 0.00): rate +0.00 percent, joules -0.64 percent (ilp4) and +0.00 (ilp2). The card is on its dependent-read ceiling (30.697 MH/s x 256 = 7.86 G reads/s) with the ALU in the reads' shadow; a cheaper instruction stream cannot raise the rate on v6.
3. X10 "Sector" as written re-reads the same sector 7 loads in 8 (the address reads registers 0 and 1, rewritten by the fold every eighth load): about 16 real misses per lane-hash; 827 nJ per lane-work on the 4090 at stock is a cache artefact of the fault, not a design gain (LAB's ruling). cand-x10b (every load a fresh miss): 3,653 nJ per lane-work at 118 loads, 31.0 nJ per dependent read against v6's 31.6, the card at its read ceiling, 5.8x on ADVERSARY's v2 board row against v6's 5.4x on the same card: the full-sector fold buys nothing on the ratio (REG-06).
4. The 4090's read headroom (variant 1): fifteen cells of block-warps x batch size flat within 0.2 percent at 7.85 to 7.86 G reads/s; the memprobe's dependent 4-byte chase at 1 GiB saturates at 8.06 to 8.15 G loads/s from 65k to 4.2M lanes in flight and with 8 independent loads per lane: the live object at 4 GiB runs at 97 percent of the card's activation bound; larger pages are not available (cuMemGetAllocationGranularity 2 MiB minimum and recommended on driver 12.8).
## 4. The rows of 13:0x to 13:2x UK (the same rented 4090 at stock; the pod destroyed at 12:24 UTC)
| Row | Figure | Reading |
|---|---|---|
| v6x2 (two lane-hashes per thread, interleave2.py) against the frozen control, ABBA | 30.697 against 30.697 MH/s (+0.00 percent), 8,574 against 8,615 nJ per hash (-0.47 percent), the fingerprint equal (b1f90e91cadb15b6) | 8c.8 closed: with the fifteen loads-in-flight cells flat at 7.85 to 7.86 G reads/s and the memprobe's 8.1 G/s ceiling, the 4090 is at its bound; no worker variant raises its rate per dollar on v6 |
| cand-x10b at 64 loads | 122.2 M lane-works/s at 243.5 and 246.8 W: 1,993 and 2,020 nJ per lane-work (63.8 and 64.7 uJ per digest), 31.1 nJ per read | the same read ceiling as at 118 loads; the sector fold rides free |
| cand-x10 variant alu-520k (x10b's address rule, 1,408 steps per load) | fixtures PASS 9 of 9 (97 registers, 0 spills); 15.8 M lane-works/s at 351 to 366 W: 22,152 and 23,225 nJ per lane-work (709 and 743 uJ per digest) | 2.6x to 2.7x the frozen v6's joules per hash on the same card (8,594 in the session's control cell): the P03 10 percent budget failed; the card pays about 42 pJ per instruction on this text (41,536 shuffles per lane-work); ADVERSARY's v3 1.03x assumed the card equal to v6 |
| batch 2 self-tests | cand-11 to cand-20 PASS 10 of 10 (the worker's --check) | cand-17 stays REJECTED on the census (0 of 8) |
| the three handed to COHORT and ADVERSARY at 4 GiB | cand-14, cand-12, cand-13 (candidates/<id>/pack-ds30, SHA256SUMS-ds30) | SCREEN on v2: board 2.42 to 2.43x at the 5090 knee against the frozen 2.66x; the die above 10x |
## 5. Rows pending at this cut
The x10b 64-load rows, the alu-520k fixture check and row, the v6x2 pair, batch 2's self-tests (the rented 4090; the pod is
destroyed on the lane's done line); the 5090 knee pairs and the AMD and Intel tiers (COHORT); the adversary rows per candidate
on set v3 (ADVERSARY). Every row lands beside its candidate under /srv/artefacts/lab/ and in this directory's `rows/`.
## 6. Every artefact by path and sha (build-1, 13:3x UK)
| Artefact | Path | sha256 (16) |
|---|---|---|
| the ranking on set v0 (batch 1) | /srv/artefacts/lab/candidates/ranking-batch1-v0.md | bbab9085bbfa35b7 |
| the ranking on set v2 (batch 1; batch 2) | candidates/ranking-batch1-v2.md; candidates/ranking-batch2-v2.md | 5a6278fe2b65ab4e; fe62b202efcf5afb |
| the merged rankings on v2 and v3 (this directory carries copies) | candidates/ranking-merged-v2.md; candidates/ranking-merged-v3.md | ed075af407a0ef12; 7ad24b0c965a71a2 |
| the handed three at 4 GiB, kernel.cu | candidates/cand-14/pack-ds30; cand-12/pack-ds30; cand-13/pack-ds30 | 7e86d32bbe1ba100; c93ef7220f320b4a; a4f26e4f1b921a9a |
| the ILP-wide redraw, kernel.cu | candidates/cand-ilp4; candidates/cand-ilp2 | 67b65a21ca4c8a8b; 6df1ffb96221373c |
| X10: sector.cu (both kits, -DX10B for x10b); sector520.cu (alu-520k) | cand-x10/kit; cand-x10b/kit; cand-x10/kit-alu520k | 8d137d1fb19010ca; 8d137d1fb19010ca; 34cbc7999d0c28d3 |
| the frozen v6 controls: v6x2-ds30/kernel.cu (two lane-hashes per thread); headroom.sh | controls/frozen-v6/fix-4gib; controls/frozen-v6/headroom | 202b16239ad1b795; 5cfef1ad212beeb4 |
| the row folders (102 files, one SHA256SUMS) | rows/lab-search-4090-pod/SHA256SUMS | cf91736badb50eb0 |
| the ILP pair rows; the headroom cells; the v6x2 pair | rows/lab-search-4090-pod/lab/pair-ilp.log; lab/headroom.log; lab/pair-v6x2.log | 823709eae0c9db28; 538f7f5d91dbbae6; ab61fe5f016b52aa |
| the self-tests, batches 1 and 2 | lab/selftest.log; lab/selftest2.log | 5823f94036ad60fc; 9bb8792edb0d79f3 |
| X10 rows: x10 as written; x10b (118 then 64 loads); alu-520k | x10/run-x10-long.log; x10/run-x10b.log; x10/run-x10b-2.log; x10/run-alu520k.log | 22320101d56f3251; ce99e6d524a5995f; d7ef8f48d0e46b85; 35a7e649db01fa4f |
| the tools and the generator flags | branch lab-search on the box mirror, tip 719d4f223 (tools/lab/search, tools/lab/x10, igneum-pow/src/generator.rs, igneum-pow/tests/labsearch.rs) | by branch |
The rented pod (one-shot, 4090, driver 570.211.01, CUDA 12.8) was destroyed at 12:24 UTC on the lane's done line; the queue file for build-9 was removed when the lane's last batch ended.

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# Batches 1 and 2 re-scored on adversarial set v2 (SEARCH, 12:5x UK 9 Oct 2026): ranked by the BOARD cell (the energy claim's scope), the die and the other designs beside it (coexistence rows); every chip cell v2 (ADVERSARY's 12:0x rows, the per-design scale fitted on the frozen object: board 1.03, hbm3 1.06, near 0.76, die 1.26, hybrid 1.25); the frozen object on the same model: board 2.66x at the 5090 knee, 5.35x at the 4090 stock, die 12.2x. Self-test (F1): cand-01..10 PASS on a rented 4090 (gen-6 worker --check, 11:43 UTC); cand-11..20 queued. Census (F3): 8 of 8 chain-shaped seeds on every candidate except cand-17 (0 of 8, exhausted: REJECTED on practical generation). The 3090 and 5080 card rows remain PROVISIONAL until COHORT measures the frozen object on them.
| cand | class | board 5090 knee (v2) | BOARD worst cell (v2) | worst credible cell, all designs (v2) | node ahead | instrs/hash | reads | status |
|---|---|---|---|---|---|---|---|---|
| cand-11 | w16m8g+sh1024x13+state+fold+labw0f0f140c0d0000190000+ilp4+flat | 2.46 | 5.19 (3090 stock) | 17.51 (3090 stock vs sram) | 21.47 | 112348 | 256 | SCREENED |
| cand-12 | mx8+sh128x36+state+fold+labw0f0f140c0d0000190000+ilp4+flat | 2.43 | 5.20 (3090 stock) | 27.95 (3090 stock vs sram) | 32.83 | 40412 | 256 | SCREENED |
| cand-13 | w32m8g+sh64x54+state+fold+labw0f0f140c0d0000190000+ilp4+flat | 2.43 | 5.20 (3090 stock) | 29.05 (3090 stock vs sram) | 33.98 | 36572 | 256 | SCREENED |
| cand-14 | w32m8g+sh128x18+state+fold+labw0f0f140c0d0000190000+ilp4+flat | 2.42 | 5.20 (3090 stock) | 30.85 (3090 stock vs sram) | 35.62 | 27356 | 256 | SCREENED |
| cand-15 | mx8+sh256x13+state+fold+labw12121213130000080000+ilp4+flat | 2.43 | 5.23 (3090 stock) | 33.11 (3090 stock vs sram) | 38.01 | 30172 | 256 | SCREENED |
| cand-16 | mx8+sh512x4+state+reg64c+fold+arxr64 | 2.47 | 5.23 (3090 stock) | 17.61 (3090 stock vs sram) | 21.70 | 20354 | 64 | SCREENED |
| cand-17 | w16m8g+sh256x13+state+fold+labw12121213130000080000+ilp4+flat | 2.44 | 5.23 (3090 stock) | 31.06 (3090 stock vs sram) | 35.73 | 32476 | 256 | SCREENED |
| cand-18 | mx8+sh128x36+state+fold+labw12121213130000080000+ilp4+flat | 2.44 | 5.24 (3090 stock) | 30.06 (3090 stock vs sram) | 34.90 | 40412 | 256 | SCREENED |
| cand-19 | w32m8g+sh1024x4+state+fold+labw12121213130000080000+ilp4+flat | 2.44 | 5.24 (3090 stock) | 29.73 (3090 stock vs sram) | 34.55 | 41692 | 256 | SCREENED |
| cand-20 | mx8+sh256x9+state+reg64c+fold+arxr48 | 2.50 | 5.24 (3090 stock) | 14.90 (3090 stock vs sram) | 18.65 | 22040 | 48 | SCREENED |
| cand-05 | mx8+sh256x81+state+reg64c+fold+arxr48+flat | 3.91 | 7.84 (3090 stock) | 13.08 (3090 stock vs near) | 15.48 | 169496 | 48 | SCREENED |
| cand-06 | mx8+sh256x81+state+reg64c+fold+arxr48 | 3.91 | 7.84 (3090 stock) | 13.08 (3090 stock vs near) | 15.48 | 169496 | 48 | SCREENED |
| cand-04 | w32m8g+sh1024x36+state+reg64c+fold+arxr96 | 3.92 | 7.87 (3090 stock) | 13.43 (3090 stock vs near) | 15.72 | 301621 | 96 | SCREENED |
| cand-08 | mx8+sh1024x27+state+reg64c+fold+arxr64 | 3.97 | 7.94 (3090 stock) | 13.31 (3090 stock vs near) | 15.71 | 225154 | 64 | SCREENED |
| cand-09 | mx8+sh256x108+state+reg64c+fold+arxr64 | 3.97 | 7.94 (3090 stock) | 13.31 (3090 stock vs near) | 15.71 | 225154 | 64 | SCREENED |
| cand-07 | w16m8g+sh1024x27+state+reg64c+fold+arxr64 | 3.97 | 7.95 (3090 stock) | 13.31 (3090 stock vs near) | 15.71 | 225730 | 64 | SCREENED |
| cand-01 | mx8+sh256x108+state+reg64c+fold+arxr48+flat | 4.17 | 8.31 (3090 stock) | 13.43 (3090 stock vs near) | 16.08 | 224792 | 48 | SCREENED |
| cand-02 | mx8+sh256x108+state+reg64c+fold+arxr48 | 4.17 | 8.31 (3090 stock) | 13.43 (3090 stock vs near) | 16.08 | 224792 | 48 | SCREENED |
| cand-03 | w32m8g+sh256x108+state+reg64c+fold+arxr48 | 4.17 | 8.32 (3090 stock) | 13.43 (3090 stock vs near) | 16.09 | 225800 | 48 | SCREENED |
| cand-10 | w64m8g+sh512x81+state+reg64c+fold+arxr64 | 4.37 | 8.76 (3090 stock) | 15.17 (3090 stock vs near) | 18.18 | 338626 | 64 | SCREENED |

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# The search candidates re-ranked on ADVERSARY's set v3 (SEARCH, 13:2x UK 9 Oct 2026): the card side from the lane's calibrated screen (5090 knee 4,109 nJ for the frozen object; the 3090 and 5080 rows PROVISIONAL), the chip side from ADVERSARY's per-candidate v3 rows (scratchpad/lab/adv/cand-NN.json: the cheapest DRAM design = the board column, a_same = the lowest credible design, usually the full SRAM die with fused operations). The board cell is the energy claim; the die is a coexistence row. Every candidate self-test PASS; cand-17 REJECTED on the census (0 of 8).
| cand | class | board cell at the 5090 knee, set v3 (band) | board, worst card cell (card) | die at the 5090 knee (v3) | board a node ahead | die a node ahead | board 5090 knee on my v2 model | v3 lowest credible design |
|---|---|---|---|---|---|---|---|---|
| cand-11 | w16m8g+sh1024x13+state+fold+labw0f0f140c0d0000190000+ilp4+flat | 2.42 (1.92 to 2.83) | 5.10 (3090 stock) | 8.3 | 2.57 | 10.5 | 2.46 | full SRAM die(s) + sized + fused operations |
| cand-13 | w32m8g+sh64x54+state+fold+labw0f0f140c0d0000190000+ilp4+flat | 2.51 (1.99 to 2.90) | 5.38 (3090 stock) | 16.0 | 2.57 | 18.9 | 2.43 | full SRAM die(s) + sized + fused operations |
| cand-19 | w32m8g+sh1024x4+state+fold+labw12121213130000080000+ilp4+flat | 2.51 (1.99 to 2.90) | 5.38 (3090 stock) | 15.5 | 2.57 | 18.4 | 2.44 | full SRAM die(s) + sized + fused operations |
| cand-12 | mx8+sh128x36+state+fold+labw0f0f140c0d0000190000+ilp4+flat | 2.51 (1.99 to 2.90) | 5.38 (3090 stock) | 15.5 | 2.57 | 18.3 | 2.43 | full SRAM die(s) + sized + fused operations |
| cand-18 | mx8+sh128x36+state+fold+labw12121213130000080000+ilp4+flat | 2.52 (2.00 to 2.91) | 5.41 (3090 stock) | 16.3 | 2.58 | 19.1 | 2.44 | full SRAM die(s) + sized + fused operations |
| cand-14 | w32m8g+sh128x18+state+fold+labw0f0f140c0d0000190000+ilp4+flat | 2.52 (2.00 to 2.91) | 5.42 (3090 stock) | 17.4 | 2.57 | 20.2 | 2.42 | full SRAM die(s) + sized + fused operations |
| cand-17 | w16m8g+sh256x13+state+fold+labw12121213130000080000+ilp4+flat | 2.53 (2.01 to 2.91) | 5.43 (3090 stock) | 16.9 | 2.57 | 19.6 | 2.44 | full SRAM die(s) + sized + fused operations |
| cand-15 | mx8+sh256x13+state+fold+labw12121213130000080000+ilp4+flat | 2.54 (2.01 to 2.92) | 5.45 (3090 stock) | 19.0 | 2.58 | 21.9 | 2.43 | full SRAM die(s) + sized + fused operations |
| cand-16 | mx8+sh512x4+state+reg64c+fold+arxr64 | 2.64 (2.10 to 3.06) | 5.59 (3090 stock) | 11.0 | 2.74 | 13.5 | 2.47 | full SRAM die(s) + sized + fused operations |
| cand-20 | mx8+sh256x9+state+reg64c+fold+arxr48 | 2.67 (2.12 to 3.11) | 5.60 (3090 stock) | 9.6 | 2.81 | 11.9 | 2.50 | full SRAM die(s) + sized + fused operations |
| cand-04 | w32m8g+sh1024x36+state+reg64c+fold+arxr96 | 3.09 (2.47 to 3.72) | 6.19 (3090 stock) | 4.1 | 3.66 | 5.2 | 3.92 | hybrid, hottest three quarters in SRAM + sized + fused operations |
| cand-07 | w16m8g+sh1024x27+state+reg64c+fold+arxr64 | 3.12 (2.50 to 3.77) | 6.25 (3090 stock) | 4.2 | 3.73 | 5.4 | 3.97 | full SRAM die(s) + sized + fused operations |
| cand-08 | mx8+sh1024x27+state+reg64c+fold+arxr64 | 3.12 (2.50 to 3.77) | 6.26 (3090 stock) | 4.2 | 3.73 | 5.5 | 3.97 | full SRAM die(s) + sized + fused operations |
| cand-09 | mx8+sh256x108+state+reg64c+fold+arxr64 | 3.12 (2.50 to 3.77) | 6.26 (3090 stock) | 4.2 | 3.73 | 5.5 | 3.97 | full SRAM die(s) + sized + fused operations |
| cand-05 | mx8+sh256x81+state+reg64c+fold+arxr48+flat | 3.13 (2.51 to 3.78) | 6.27 (3090 stock) | 4.2 | 3.74 | 5.5 | 3.91 | full SRAM die(s) + sized + fused operations |
| cand-06 | mx8+sh256x81+state+reg64c+fold+arxr48 | 3.13 (2.51 to 3.78) | 6.27 (3090 stock) | 4.2 | 3.74 | 5.5 | 3.91 | full SRAM die(s) + sized + fused operations |
| cand-03 | w32m8g+sh256x108+state+reg64c+fold+arxr48 | 3.19 (2.56 to 3.87) | 6.36 (3090 stock) | 4.1 | 3.87 | 5.3 | 4.17 | full SRAM die(s) + sized + fused operations |
| cand-01 | mx8+sh256x108+state+reg64c+fold+arxr48+flat | 3.19 (2.56 to 3.88) | 6.37 (3090 stock) | 3.8 | 3.88 | 4.9 | 4.17 | near-memory (base dies) + sized + fused operations |
| cand-02 | mx8+sh256x108+state+reg64c+fold+arxr48 | 3.19 (2.56 to 3.88) | 6.37 (3090 stock) | 4.0 | 3.88 | 5.2 | 4.17 | hybrid, hottest three quarters in SRAM + sized + fused operations |
| cand-10 | w64m8g+sh512x81+state+reg64c+fold+arxr64 | 3.32 (2.65 to 4.06) | 6.65 (3090 stock) | 4.2 | 4.00 | 5.3 | 4.37 | hybrid, hottest three quarters in SRAM + sized + fused operations |
the frozen object on v3: board 1541 nJ, die 335 nJ; my 5090 knee card 4,109 nJ: board 2.67x, die 12.3x

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@ -1,240 +0,0 @@
<!-- the landed copy of the lab's candidate table at this landing; the live table is scratchpad/lab/TABLE.md on the LAB lane's Mac -->
# The 1.5x laboratory candidate table (LAB; current as of 12:2x UK 9 October 2026 by `date`; the interface: scratchpad/lab/INTERFACE.md)
Score = the WORST comparison over the cohort (same node and one node ahead), the candidate's GPU energy per accepted work over the
lowest credible specialist energy for the same work (interface section 3). The working scope since 11:5x UK (8a): the same-node
board is the energy claim; the die and node-ahead chips are coexistence rows. The coexistence table (8b, under the rulings of 8c) is
the headline beside the score. Every ratio names its adversary, column, clock state, card and set (8c.1). PASS is never written
here. Every chip figure is a WITNESS (E_D) unless marked BOUND, CLAIMED or SCREEN. Energies in nJ per hash (per lane-work for X10).
The approved claim wording (8c.9), verbatim: "The current model finds that existing GPU electricity costs are below the assessed
DRAM-board specialist's all-in costs at the tested tariffs and stated lifetime assumptions. This supports a conditional
entry-deterrence result. It does not yet establish post-deployment competitiveness, viable GPU replacement or new entry, or
coexistence against the modelled SRAM fleet at sufficient scale. Those outcomes remain separately assessed."
## The controls and candidates
| id | kind | tree, packs, kits | resource line | cohort rows (board power, stock on every rented pod, lock refused everywhere; wall BLOCKED; median of three) | adversary rows (set v2, instruction convention, complete machine) | worst score (band), labelled | coexistence (8b under 8c) | status | next move (owner, clock UK) |
|---|---|---|---|---|---|---|---|---|---|
| ctl-v6 | control (frozen) | 1a938abe4; the signing object 0x2a1d6caab4c24564 at 2^30 words = 4 GiB (pack x1-ctrl-ds30.tgz 7606c13d, twin 7629ed95; CONTROLS 12:2x on main's correction, build-1:/srv/artefacts/lab/controls/frozen-v6/ with sidecars); kits: l8off c20999d1 (CUDA 218ca414 / 9bfcf728 Linux), gen-6 bb66a546 (Linux CUDA 804a6f7f, OpenCL 371dbb27); COHORT's rows on kit bf9b85d6, worker f5f3846c; the 1 GiB pairing only a cross-check row | 4 GiB; 256 loads per hash of ONE 32-bit word each (1,024 bytes consumed of 8,192 moved; the readwidth fact of record, 8a.1); 62,120 instructions (102,612 counted); state class; layer 8 ON; cold verification 8.3 to 8.6 ms per warp of 32 on one core (the record; the fresh F2 row 13:30) | STOCK (COHORT 12:17, fp b1f90e91cadb15b6 PASS on every cell): RTX 3090 pod 55006505 (capped 260 of 350 W) 8,429 at 30.80 MH/s; RTX 3090 pod 55006552 (capped 220 of 420) 7,109 at 30.90; RTX 5090 pod 55006481 (384 of a 500 W cap, uncapped in effect) 5,597 at 68.66, f 0.811; RTX 5090 pod 55006478 (capped 400 of 600) 5,828 at 68.64; RTX 5080 pod 55006521 (189 of 330, clean) 5,410 at 35.03, f 0.806; the 3090 twins read f 1.02 (meaningless on a capped card). KNEE: the house record only (5090 at 1,300: 4,011). In flight: 4090a (repeat triple at 3.98 percent spread), 4090b, 5080b, uncapped 5090c and 3090c. AMD, Intel: NOT RUN "no rented card; the house rigs unreachable by software" | v2 (ADVERSARY 12:0x to 12:1x; commits f9cb259cc routed lanes, 923f76e74 coexistence, 7c6b538f1 price sheet on class-v6-adversary): the cheapest same-node DRAM board a = 1,543 (1,328 to 1,947) = 2.60x (2.06 to 3.02) at the 5090 knee, 2.70x a node ahead; the split chip memory 527 / ALU 167 / tax 849 against the card's 3,642 / 369 / 0; the tax ladder: the record's static 2.60x, half 3.28x, zero (the bound) 4.43x; ProgPoW's premise 1.01x to 1.02x; the N2 die a = 337 = 11.9x (coexistence) | PARTIAL over {3090, 5090, 5080 at stock; the 5090 knee from the record}; the 4090 cells pending; AMD and Intel NOT RUN. The worst cell: the RTX 3090 at stock on the same-node DRAM board, set v2: 5.46x (4.33 to 6.35) same node, 5.68x a node ahead; the die at that cell 25.0x. The other cells on the board: 3090 (capped) 4.61x, 5090 stock 3.63x, 5090 (capped) 3.78x, 5080 stock 3.51x, 5090 knee 2.60x; the record's rented 4090 at stock (8,091) would read 5.24x | ctl-v6 on set v2 (WITNESS; a 100,000-machine fleet, a 24-month straight-line life, design USD 35 M board chip and 300 M die, the card sunk at USD 30.6 per MH/s on v6 at the knee, 15.7 of record beside it): the same-node board, edge 2.60x at the knee, chip capital USD 14.04 per MH/s (die 0.34, memory 5.42, board 3.15, design 5.13); GPU electricity-only 0.056 / 0.111 / 0.167 USD per TH at the three tested tariffs against the chip's all-in 0.244 / 0.265 / 0.287: cost ratio 4.4x / 2.4x / 1.7x (the curves meet about USD 0.33 per kWh, the reviewer's linear read; ADVERSARY's exact figure owed); the stored-half hybrid, edge 3.80x, USD 9.17: 2.9x / 1.6x / 1.1x; the N2 die, edge 11.9x, USD 1.59: 0.5x / 0.3x / 0.2x, the GPU owner's electricity above the chip's all-in once the fleet passes 14,300 dies at ten cents (break-even 14,300 to 25,000 under the growth schedules; no schedule kills the die at 100,000 dies); the node-ahead board, edge 2.70x: 4.4x / 2.4x / 1.7x. NEW BUYER (8c.7): picks the chip on every row and tier (the board 0.24x to 0.43x a new card's all-in at ten cents, the die 0.04x; indifference USD 9.7 per MH/s on the 5090 knee, 10.5 on the 5080, 5.4 on the 5090 stock, 2.6 on the 4090; the hold is the project share below about 13,500 boards). The two-phase rows, the revenue column, the used-card column and the exact meeting tariff: NOT RUN (ADVERSARY, this afternoon) | MEASURED-partial (the 4090 cells pending) | COHORT: the 4090 and uncapped cells; the read-headroom row (8c.8) with CONTROLS; ADVERSARY: the two phases, revenue, used-card, the meeting tariff, the growth-scaled new buyer; LAB: the full score when the 4090 rows land |
| ctl-progpow-094 | control | CONTROLS building the official 0.9.4 reference from source with its test vectors on build-5 (pid build-5-lab-controls-progpow.pid), by 14:00; ADVERSARY's v2 rows use the KAWPOW census as the proxy | the equivalence contract before any number; 16 KB per hash of DRAM traffic (ADVERSARY) | NOT RUN (the record's 4090 stock row 6,920 is ADVERSARY's numerator) | v2 (proxy): the board 4.24x at the 4090 stock numerator (the 32-register lane costs more than the 8-register one), a_same 545 = 12.7x; the board bandwidth-bound at 16 KB per hash (93 MH/s per board), USD 6.89 per MH/s against 29.7; ProgPoW's premise 1.1x to 1.2x (no twin) | proxy, 4090 stock, board, v2: 4.24x; NOT the lab's score (the pinned build, the cohort rows and a twin pending) | v2 at ten cents, proxy: the board holds 1.1x (the GPU's electricity above the chip's all-in at fifteen cents); the die pushed out above 14,200 dies | NOT RUN (proxy) | CONTROLS 14:00; COHORT rows 15:00 with a twin; ADVERSARY re-prices on the pinned object |
| ctl-fishhash | control | CONTROLS building Iron Fish's implementation on build-9 (pid build-9-lab-controls-fishhash.pid), by 14:00; ADVERSARY read cpp/FishHash.cpp | 32 x 3 fetches of 128 B = 96 random reads over a fixed 4.83 GB dataset, about 9,400 lane-instructions of 64-bit multiply-add and FNV | NOT RUN | v2: a_same 162 (three N2 reticles, fused lane), USD 0.35; the board 1,044 (872 to 1,251), 124 MH/s per board bandwidth-bound, USD 4.78; 95 percent of the board's energy is the memory path | waits on COHORT's card row | NOT RUN | NOT RUN | CONTROLS 14:00; COHORT 15:00 |
| ctl-coop-arx | control and candidate | CONTROLS: the cooperative ARX kernel and CPU reference bit-exact at 2^16 for chain lengths 24 / 264 / 1,032 / 4,104 ARX ops per fetch per lane (build-2, pid build-2-lab-controls-arxcoop.pid); the document and rows 13:00 | 64 coalesced 256 B fetches; target f at or under 14.8 percent non-ARX energy; spills, sync, generation and finalisation counted | NOT RUN (the card MODELLED by ADVERSARY: 35 nJ per coalesced read, 8.5 pJ per ARX instruction at the knee) | v2 (card MODELLED, SCREEN) at 1.6 M ARX per hash: the board 2.40x (1.96 to 2.86) same node against the routed 32-register fused lane, 2.98x ahead; a_same 5,024 (near-memory, fused) = 3.15x; USD 13 to 15 per MH/s against 15.7 | SCREEN, 5090 knee modelled, board, v2: 2.40x | v2 at ten cents, card modelled: the board holds 1.1x; the die holds 1.5x | SCREEN | CONTROLS 13:00; COHORT's 4090 and 5090 rows 15:00; ADVERSARY re-prices within the hour |
| cand-x10 (variants alu-130k / 260k / 520k and sector-118 inside it) | candidate (the founder's third review; the scoped same-node board claim; 8a, 8a.1) | SEARCH: the kit at build-1:/srv/artefacts/lab/cand-x10/kit/ (sector.cu 16417ce6, run-x10.sh, 18 fixtures PASS on a rented 4090 at 11:11 UTC, 112 registers, no spills); the accepted-work contract APPROVED (per lane-work = per digest over 32, both printed) | dependent 32 B sector loads, every byte folded; 118 loads as written; the FAULT OF RECORD: 7 of every 8 loads re-read the same sector, about 16 real misses per lane-hash (8a.1); the verifier under 10 ms owed | SEARCH's first rows (a rented 4090 at stock, SCREEN until COHORT's pairs): 118 loads 810 to 845 nJ per lane-work (25.9 to 27.0 uJ per digest) at 264 to 275 W; 64 loads 567 at 294 W; a tenth of v6's 8,091 on the card class, the cache hits of the fault, not a design gain | v2 with the card MODELLED (SCREEN): sector-118 the board 634 (553 to 798) = 3.00x (2.38 to 3.44) at a card modelled at 1,900 nJ, 3.03x ahead; the split chip 243 / 22 / 369 against the card's 1,650 / 70 / 180; the fold gap 1.2x to 3.9x by core; the die 73 (26x); the ALU ladder 130k / 260k / 520k: the board 4.67x / 2.89x / 1.63x (1.27 to 2.06), 5.52x / 3.56x / 2.08x ahead (the card = v6 by the reviewer's construction). Every modelled-card row re-priced within the hour of COHORT's measured row; the 16-real-misses fault means the chip's memory term in these rows is also overstated for the object as written | SCREEN; the verdict line waits on COHORT's measured pairs (v6 and X10, the same card, the same session) | v2 at ten cents, card modelled: the board holds 2.2x; the die pushed out above 5,800 dies | SCREEN (the object as written carries the fault) | COHORT: run cand-x10 and cand-x10b paired with v6 on the 4090 and 5090 pods now (the kits are staged); ADVERSARY: re-price on the measured rows and on the 16-miss trace; LAB: the verdict line within the hour of the pairs |
| cand-x10b | candidate (main's ratified address rule on X10: load n reads the two registers the previous load's fold wrote last; zero repeats in every trace) | SEARCH: hash-x10b.ts, fixtures-x10b.txt (18), sector.cu under -DX10B; the kit lands under build-1:/srv/artefacts/lab/cand-x10b/ with its fixture line; queued on the same 4090 pod behind the x10 rows | as X10 with 118 real dependent sector misses per lane-work; fixtures 18 of 18 PASS under -DX10B; the kit at build-1:/srv/artefacts/lab/cand-x10b/kit with trace.json | SEARCH's first row (a rented 4090 at stock, sampler rule, SCREEN until COHORT's pair): 118 loads 3,653 nJ per lane-work at 66.1 M lane-works per second and 241.5 W, 31 nJ per dependent sector read, the card at its 7.8 G dependent reads per second ceiling; the 64-load and lock rows queued | set v2's same-node board on the 118-miss object: 634 (553 to 798), WITNESS, the split chip memory 243 / fold 22 / tax 369 | the 4090 at stock, the same-node DRAM board, set v2: 5.8x (4.6 to 6.6); v6 on the same card class 5.4x: the fold buys nothing on the ratio (REG-06 confirmed); the term that holds it above 1.5 is the card's memory path (31 nJ per read against the chip's about 2); PARTIAL: the locked 5090 and 5080 and the AMD card NOT RUN | NOT RUN (ADVERSARY re-prices on the measured row) | MEASURED-partial; FAIL CLOSED per the review (no added arithmetic, rotation or set growth) | COHORT: the v6 and x10b pairs on the uncapped 4090 and 5090 after the dataset-size decider; SEARCH: the 64-load and lock rows; ADVERSARY: the coexistence row on the measured card |
| cand-14, cand-12, cand-13 (SEARCH's top three on set v2, the hand-off 13:2x UK) | candidates | packs at 4 GiB on the signing pair with SHA256SUMS and trace.json at build-1:/srv/artefacts/lab/candidates/<id>/pack-ds30 (the ds28 screening pack beside); self-test PASS (the gen-6 worker --check on the rented 4090), census 8 of 8 | cand-14: w32m8g+sh128x18+state+fold+labw0f0f140c0d0000190000+ilp4+flat (a MAD-heavy table: add 15 sub 15 xor 20 rotl 12 rotr 13 mad 25, four register banks, 32 B entries, 256 reads, 27k instructions, no window layer); cand-12: mx8+sh128x36 on the same table and banks, 4 B entries, 40k instructions; cand-13: w32m8g+sh64x54, 37k instructions | NOT RUN (COHORT: paired with v6 at stock and at the knee on the 4090 VM, behind the ledger session and the X10 pairs) | v2 (SEARCH's model; ADVERSARY's v3 pages for cand-11 to cand-20 beside): board 2.42x / 2.43x / 2.43x at the 5090 knee, 5.20x on the provisional 3090 stock row; the die 14.4x / 11.6x / 13.6x; the frozen object on the same model 2.66x and 12.2x | SCREEN: the realisable space sits between 2.4x and 2.7x on the board cell and above 10x on the die; the top three gain 9 percent on the board through mad (the one family priced near the card, 2.9x) and the ILP-4 banks; no candidate screens near 1.5 on any cell; the measurement at the knee decides whether the 9 percent exists (at stock the ALU sits in the reads' shadow) | NOT RUN | SCREEN | COHORT after the ledger; ADVERSARY re-prices on the measured rows |
| cand-01 to cand-09, cand-ilp2, cand-ilp4 (SEARCH batch 1) | candidates (the workload-search system) | staged at build-1:/srv/artefacts/lab/candidates/ (12:17 UK by the box clock) with trace.json; ADVERSARY's trace watcher prices each within the hour; the GPU self-test on a one-shot 4090 pod by 13:30; the top three to COHORT and ADVERSARY by 14:00 at ds30 | the six knobs with explicit limits; the ARX-only region 48 to 64 reads, 170k to 225k instructions per unit; the ilp variants test the card's dependency structure (11.8 pJ per instruction at the lock on the drawn block against 6.2 on an ILP-4 chain) | NOT RUN | NOT RUN (priced on v2 within the hour) | SCREEN on set v3 (ADVERSARY 12:3x, the card figures SEARCH's screened values; the worst cohort cell the 3090 at stock in every one): cand-01 to cand-10 (arxr48/64 shadow classes, 48 to 96 scattered reads, 169k to 339k instructions): the board 3.1x to 3.3x at the 5090 knee and 6.2x to 6.7x at the worst cell, a (the die, the three-quarter hybrid or near-memory, 574 to 1,168 nJ) 3.9x to 4.2x and 7.7x to 8.4x (9.7x to 10.9x a node ahead); cand-11 to cand-19 (labw classes, 256 scattered reads of 4 to 32 bytes, 27k to 112k instructions): the board 2.4x to 2.5x at the knee, 5.1x to 5.5x at the worst cell, a 8.3x to 19.0x and 17.6x to 40.9x (the full SRAM die serves 256 reads at 187 to 495 nJ); cand-16 and cand-20 (sh512x4, sh256x9 at 64 and 48 reads, 20k to 22k instructions, the 5090 at 0.8 to 1.0 uJ): a 11.0x and 9.6x, boards 2.6x and 2.7x. NONE UNDER 1.5x ON ANY CELL: the die binds every candidate with 256 reads; the board's own tax holds the board cells at 2.4x and above | v3 coexistence rows per candidate on the twenty pages (the new-buyer column included) | SCREEN | SEARCH: the self-tests 13:30, the top three on v3 at 14:00; COHORT measures the top three |
## COHORT's denominator run on ctl-v6 (from 11:49 UK)
Rented by id through the handover gate (two hosts per card: 5090 x2, 4090 x2, 3090 x2, 5080 x2; drivers 570 to 595), the gen-6
worker f5f3846c on kit bf9b85d6, the x1-ctrl-ds30 pack (0x2a1d6caab4c24564) with its read-only twin (X7's twin, kernel 93a6a5ce,
the address path kept by construction, twin_addr none accepted), three timed runs per pack per state interleaved, rows at
build-1:/srv/artefacts/lab/ctl-v6/vast-<pod>/ (rows.jsonl, SHA256SUMS, the .tgz) linked under /srv/artefacts/lab/cohort/ctl-v6/<card>/
and the cohort's own table at /srv/artefacts/lab/cohort/TABLE.md. Every pod refuses the lock: stock only. The capped-host finding
(12:17): f near 1 on a capped card is meaningless; the gate now refuses capped hosts for the f cells; the 4090b pod that never
answered was destroyed and re-rented. AMD and Intel: no RX 7600 to 9070 or Arc card on either provider (AMD there is MI300X and
MI350X only), the house rigs unreachable by software; NOT RUN "no rented card; the house rigs unreachable by software" on every
candidate (build-1:/srv/artefacts/lab/NOT-RUN-amd-intel.md); the hourly provider check retries. Spend: USD 750 at 12:03.
## Adversarial sets
| set | date | contents | candidates scored on it |
|---|---|---|---|
| v0 (the record) | 9 Oct, X0 amendment 5b and X5 | the placed 8-lane 18-family core (6.55 pJ per lane-op at N5), the GDDR7 board, the hybrids at 0.25, 0.50, 0.75, the N2 full-SRAM die, recomputation; X7's HBM3 and near-memory paths; X8's systolic int8 array | ctl-v6 (the record: board 2.35x, die 7.8x); SEARCH's cost model (recalibration owed) |
| v1 | 12:0x UK (ADVERSARY, 0344ec150 on class-v6-adversary) | v0 plus a bandwidth ceiling on every DRAM design (1.79 TB/s at 85 percent), a register file sized to the work (the routed 8-register flop lanes), fused dependent operations (the tail CLAIMED), HBM3 at one and eight stacks and near-memory as complete machines, recomputation priced from the Ethash-family generators, the die on as many reticles as the dataset needs; calibration reproduces X0 5b (1,706 vs 1,707 nJ; the die 511 vs 513) | the four controls (ctl-v6 board 2.57x) |
| v2 | 12:0x to 12:1x UK (ADVERSARY, f9cb259cc the routed lanes, 923f76e74 coexistence, 7c6b538f1 the price sheet; tools/chip-model/floor-k-lab with the routed power logs) | v1 with the routed fused-ARX lanes (ASAP7 routed with SPEF, 1,200 ps, timing met: arxf 8-register window 1.87 pJ per fused add-rotate-xor triple, 464 um2, against the single-op lane's 2.16 pJ per op; arxf32 32-register window 5.42 pJ per triple, 1,316 um2): the ARX-fused rows WITNESS; the non-ARX fused groups (mul-xor, 64-bit multiply-add, math and merge) CLAIMED-partial until the two lanes in the flow on build-4 land (the 64-register fused-ARX window that X10 carries as "x1.6 claimed", a fused multiply-xor lane), about 12:3x; every modelled-card row labelled "card": "MODELLED" and SCREEN; the coexistence tables, the new-buyer column, the growth schedules (growth-schedules.json) and the price sheet with the break-even sensitivity (the board breaks even at ten cents only with devices under about USD 8 to 10 each, a fleet above a million machines and a 36-month life together) | every control and candidate (ctl-v6 board 2.60x, die 11.9x; ctl-progpow-094 4.24x proxy; ctl-coop-arx 2.40x screen; cand-x10 3.00x screen) |
| v3 | 12:2x UK (ADVERSARY b2b9ee0b9; v3/ beside v2/ under lab/adv/; the JSONs in scratchpad/lab/adv/ now v3) | v2 plus two more ROUTED lanes (the 64-register fused-ARX window 9.90 pJ per triple, 2,469 um2, replacing the "x1.6 claimed"; the fused multiply-xor pair 4.13 pJ over 32 registers, replacing the claimed tail on the FNV and merge steps) and two corrections (a shadow class's window is the 8 registers its shadow runs on, as v6; a sized lane pays for a window above 8, so the 64-register sized lane is dearer than the placed core's SRAM window) | every control and candidate: ctl-progpow-094 a_same 669 (10.3x), board 3.94x (proxy); cand-x10 Sector 2.92x; cand-x10 at 520k ALU the board 1.03x (0.83 to 1.14) same node, 1.35x ahead, SCREEN with the card assumed = v6 (the measurement ordered: SEARCH builds the point, COHORT pairs it; the card's own 520k instructions at 5.9 to 11.8 pJ are 3 to 6 uJ, so the P03 line decides first); cand-01 to cand-10 a_same 574 to 1,168, the board 769 to 1,472 (about 3.1x to 3.3x against their screened 5090 knee figures, a 3.9x to 5.4x) |
## Rejections and regression hits
| when | source | what |
|---|---|---|
| 12:1x UK | SEARCH, the first screen (4,000 draws, seed 1) | 1,762 int8 mixes by REG-04; 122 scattered-ARX designs at or under 32 reads by REG-05; 343 on the verification or granularity limits (F2); SCREEN rejections, none measured |
| 12:1x UK | SEARCH on cand-x10 | the Sector reference as written re-reads the same sector for 7 of every 8 loads (16 real misses per lane-hash): the object is measured as written (its own row) and the corrected address rule measured beside it as cand-x10b; the author's energy split and the 10 percent budget do not describe the object as written |
## Faults
| when | source | what | state |
|---|---|---|---|
| 11:49 UK | COHORT | no AMD (RX 7600 to 9070) or Intel Arc card rentable on either provider; the house rigs unreachable by software | the two tiers NOT RUN with the reason on every candidate; hourly retry |
| 12:1x UK | SEARCH | a parse fault on +arxr48+flat in batch 1 | fixed in the cut; a 20-minute slip on the 13:30 clock, absorbed |
| 12:1x UK | COHORT | the 4090b pod never answered on the provider's ssh proxy | destroyed and re-rented on another host |
| 12:17 UK | COHORT | the read-only twin reads f near 1 on a power-capped card (the saved ALU power goes to clock) | the lab rule 1.11: f on uncapped cards only; the gate refuses capped hosts for the f cells; capped rows stand named |
| 12:2x UK | LAB | the line to main of 12:1x carried "13:1x UK" (main's clock, not `date`) | the lab's lines carry `date` from here; reported once |
## The shipping row (the claim's phase B is NOT LIVE until a shipped package runs a prover; main 12:4x UK: the most important 2.0 shipping item)
| item | what the claim needs on the record | state | owner |
|---|---|---|---|
| the two-phase result it serves | ADVERSARY 545f3f8a0: with the ratified 80/20 split (D04, token-value/README.md: the 80/20 split emission allocation only) a GPU earns the mining share plus the proving share, a hash chip the mining share only; the proving share at which the chip's operating advantage disappears at ten cents is 9 percent for the board, 13 for the hybrid, 20 for the die, against the ratified 20: with proving live the GPU out-earns the board chip in phase B. The stated assumption on the phase B row: all proving stays on the GPU cohort; a chip maker who fields GPUs to prove is a GPU miner with a sidecar | NOT LIVE | ADVERSARY (the row), the release lane (the package) |
| which shipped packages prove today, at what VRAM, by what switch | the Windows and Mac apps: the VRAM threshold and the switch by file and line; the HiveOS package: none (mines only); the 24 GB threshold (proving turns on at 24 GB) stated against the proving manifest and the app's settings code | BLOCKED: the file-and-line facts from the release lane and the app lane | the release lane aa4391fd50c62e28f |
| whether a 16 GB card can prove a smaller instance | the proving instance sizes against the 16 GB tier (the B3 feasibility rows explored 32, 128 and 512 MiB per instance for Track B; the live prover's own instance size by its manifest) | BLOCKED: the prover's instance table | the release lane with the proving lane |
| the share of the live cohort that can prove | the workers page's card census (the share of cards at 24 GB and above; the share at 16 GB) | NOT RUN: the fleet lane's workers.json read | the fleet lane |
| a HiveOS prover beside the miner | a named 2.0.3.1 item beside snapshot sync, with the memory and VRAM rules from this row; no new research | NOT RUN: scheduled by the release lane | the release lane aa4391fd50c62e28f |
| the 4 GiB proving cap defined precisely (8c.10) | which of the mining state, the proof-generation allocation, the verifier requirement or the advertised hardware profile it limits | NOT RUN | CONTROLS (the definition), ADVERSARY (the economics) |
## The read-headroom row (8c.8), answered 12:4x UK (CONTROLS and SEARCH, WITNESS)
| card | achieved sector reads per second on v6 at 4 GiB (rate x 256) | the activation bound (JEDEC-family timing approximations, named so) | nJ per 32 B sector read (stock) | the fold | the ILP lever (SEARCH, in-session ABBA) | reading |
|---|---|---|---|---|---|---|
| RTX 4090 | 7.86 G | at its tFAW form, 7.9 G | 26.4 to 28.4 | the whole-sector load free (a32x = a4); the full fold +1.0 nJ (+3.7 percent) | cand-ilp4 rate +0.00 percent, joules -0.64 (8,560 against 8,615); cand-ilp2 +0.00 / +0.00 | AT the limit: no card-side headroom; the ALU in the reads' shadow |
| RTX 5090 | 17.6 G | within a third of its tRC form | 18.9 to 19.8 | the full fold +1.2 nJ (+6.2 percent) | not yet paired | AT the limit; flat from 1 to 8 GiB (no TLB cliff for a flat stream) |
| RTX 5080 | 8.97 G | CONTROLS owed | | | | |
| RTX 3090 | 7.91 G (capped pods) | CONTROLS owed | | | | |
The miner-side lever "more loads in flight per core" is CLOSED on v6 by these rows; the phase B lever on the card is its memory
system itself. The "2.4x at 4 GiB" reading is WITHDRAWN (a contention fault of the CONTROLS lane: the 4 GiB bench shared the card
with the sector sweep; clean ABAB on a 5090: the 4 GiB object costs 3 percent of rate against the 1 GiB research pack).
## The shipping row's facts (the release lane, 12:5x UK, release-2.0.3 at 034cdad1, app/igneum-app/src)
The Mac and Windows apps carry the prover (SP1 6.8.1 through igneum-prove-host), ON by default on an NVIDIA card of 23,552 MiB or
more (provedefault.rs:23-24; a 24 GB card reports 24,564), mining or not, on Linux or Windows with WSL2; OFF with the reason on 16 to
24 GB, under 16 GB, Windows under 32 GB RAM, Apple silicon, AMD-only; the prover refuses to start under 12 GB (provedefault.rs:31) and
a card under 12 GB holds the prover or the miner, never both (engine.rs:41, :2717). HiveOS: none (h-run.sh has no prover section);
the HiveOS prover is SCHEDULED as a 2.0.3.1 item beside snapshot sync (cut by 18:00 UK, the rule-33 canary on a 24 GB 4090 by
19:00). A 16 GB card proves no shard today: the floor 13,874 MiB for an empty shard and 15,670 beside the miner (provedefault.rs:8);
the v1 shard (30,000 pgas, 4.7 M cycles) 20,434 alone, 22,210 beside the miner; the devnet's prototype shards until the fee switch
at DAA 210,000 need 32 GB (28,307 alone, 30,039 beside; VRAM_MB_PROTOTYPE_SHARD 31,000, provedefault.rs:27, :135); aggregation
16,751 MiB with the miner (24 GB; prover.rs:1122); no smaller instance exists (provedefault.rs:9 open). The Hive package applies the
app's device.rs:63 mode table (Simultaneous at or above 23,552 MiB, ProveOnly, MiningOnly). Phase B therefore reads LIVE today only
on Windows and Mac where a 32 GB NVIDIA card is present, NOT LIVE on the 24 GB tier until DAA 210,000 and on HiveOS until the cut.
## Results of record, 13:0x UK
- THE DECIDER (COHORT, uncapped 5090 pod 55012544, 575 W default, driver 580.173.02, worker f5f3846c, 250 x 2^24, three runs
each, one session; build-1:/srv/artefacts/lab/ctl-v6-decider/vast-55012544/): the 4 GiB signing object 68.63 MH/s at 410.4 W =
5,979.9 nJ per hash, twin 4,806.2, f 0.804, spread 0.46 percent, fp b1f90e91cadb15b6 PASS; the same program at 2^28 (1 GiB)
70.63 MH/s at 414.7 W = 5,871.2 nJ (fp 01f51b9d4805e5e6); the research pack hl-v6-all as staged under tas/same-work-20261008-01
(program id 0x4de7b836cc40a4ea, not the l8off kit's 0x9d40978601a7df2a) 70.63 at 402.2 W = 5,694.8 nJ. VERDICT: the 4 GiB
object costs this worker 2.9 percent of rate and 1.8 percent of joules per hash against its own 1 GiB export; occupancy
identical (96 registers, 20 blocks per SM, 3,400 resident lanes per SM); reads 17.57 G per second at 4 GiB against 18.08 at 1
GiB. The 3.4 against 7.9 G reading was CONTROLS' instrument; withdrawn. The uncapped 5090 ctl-v6 cell: 5,979.9 nJ at stock =
3.88x (3.07 to 4.50) on set v2's same-node board; the 5090 knee stays the record's 2.60x.
- The TLB rows (CONTROLS, both cards, mode a4 at 118 loads, build-1:/srv/artefacts/lab/controls/frozen-v6/tlb/): the 4090 8.02 /
7.92 / 7.87 / 7.84 G reads per second at 1 / 2 / 4 / 8 GiB (26.07 to 26.81 nJ per read), the 5090 18.11 / 17.76 / 17.60 / 17.52
(19.11 to 19.77 nJ): a flat random stream loses 2 to 3 percent of rate from 1 to 8 GiB on either card, no cliff; the layer-8
windows at 2^30 touch the whole 4 GiB as a flat stream does; the live object's cost is the 2 to 3 percent page-walk margin.
- The 4 GiB cap defined (CONTROLS, 8c.10): the MINING DATASET floor and nothing else: docs/spec/01-lottery-hash.md lines 849 to
850 (4,096 MiB from genesis, one step, no later step; the dataset policy 70a6c703, register row 10; the cache 2^26 words, line
434); the proof-generation allocation carries no 4 GiB figure (proving/igneum-prove/host/src/memory_profile.rs TIERS lines 115 to
121: full 26 GiB free, 24gb 20 GiB, 16gb 14 GiB, small 0; the ELF manifest pins no memory line); the verifier is independent of the
dataset size (spec 01 line 702: at most 4,096 item derivations per unit from the 256 MiB cache; the F2 row 10.63 ms per warp);
the advertised hardware profile (docs/design/app-audit-2026-10-08.md row F8) is constrained only through the miner's resident set
pushing a co-resident prover into the small tier (memory_profile.rs line 117).
- ctl-progpow-094 at the live DAG (CONTROLS): the official CUDA kernel's mix digests at Ethereum epoch 871 (block 26,154,532, DAG
8,380,217,984 bytes) equal the CPU reference's on both nonces: F1 holds at the live size; the live rate on the rented 4090 at
stock 58.75 / 58.76 MH/s (0.96 TB/s of coalesced 256-byte entries) against 62.58 at the 1 GiB DAG: the live DAG costs 6 percent;
the by-construction read-only twin gpu/pp_twin built, rows queued; the KAWPOW live size (epoch 609, 6,182,403,712 bytes) queued.
- ctl-coop-arx on the 5090 (CONTROLS, stock, sm_120): 105.3 M units per second at 72 ops (1.72 TB/s, the DRAM ceiling; the twin
103.8), 14.32 at 1,032 and 3.66 at 4,104 (ALU-bound, equal to the 4090's 14.18 / 3.69); five chain lengths F1-complete (CHAIN 86
fingerprint 84f43aecf5d8a8cd on CPU and GPU).
- THE PROVING CORRECTION (PROVING LIVE and the release lane): the prototype-shard 32 GB clause (provedefault.rs) is Devnet 1's
(params.rs:3082 LIVE_13); Devnet 4 runs fees_v1_activation_daa 0 (params.rs:2307 on 27f54124; the node reports shardBudget
30,000 pgas), so a 24 GB NVIDIA card proves the v1 shard and aggregates beside its miner NOW (13,523 to 14,899 MiB peak beside
the miner on the fleet's 4090s, 117 to 120 s per 8-block segment, 0.99 to 1.88 IGN paid); on chain 4465 at tip 31,719 (11:50Z)
663 paid v1 segment records = 653.93 IGN to 30 prover keys; 0 segments proven in the last 600 blocks (payments paused since the
hub roll at about 11:00Z, the cause under fix). The proving row reads NOT LIVE "paid on Devnet 4 to 30 keys, epoch evidence
pending" until docs/analysis/class-v6/1p5x/lab/proving-live.md lands with one full epoch of paid rows (by 16:00). Phase B
therefore reads live today for the 24 GB tier on Mac and Windows once that record lands, and on HiveOS from the prover package's
entry (cut by 18:00); the 16 GB tier holds no shard.
- X10 pairs: the first 4090 pair carried valid v6 rows (8,692 nJ at 30.69 MH/s, f 0.859) and valid X10 rates (x10b 66.1 M
lane-works per second at 118 loads = the v6 pair's 30.69 x 256/118 within 1 percent: memory-bound exactly as v6; the x10b ladder
64 / 96 / 118 / 128 loads 122.1 / 81.3 / 66.1 / 60.9 M scales as 1/loads) but ZERO watts on every X10 row (the 40-batch default
ran a quarter second, under the sampler's 8 s warm-in); kit r3 (sha 323e3970) sizes the batches per variant (45 to 85 s), adds
cand-x10's fixtures and an x10b by-construction twin (-DX10B -DTWIN: the address rule kept, the fold one xor per loaded word,
the mix and shuffles removed; its address stream a dependent chain of the same count and width, named so in twin_addr), and the
driver refuses any row with watts 0.0 at staging; both pairs re-rented on uncapped 4090 and 5090. ADVERSARY's interim: the
Sector card from its rate at the pod's v6 watts, 4,039 nJ per lane-work MODELLED-from-rate (bounded below at about 3,470 by the
twin's ALU share), the cheapest DRAM board (650 nJ) 6.2x on the 4090 at stock.
- THE LEDGER ORDER (the founder, 12:5x UK; the LEDGER lane a101aa8329d1e82bf): the lab's lanes feed the GPU NETWORK LEDGER first:
every live GPU chain measured the same way on the same rented 4090 and 5090 in one session each (Igneum v6 at 4 GiB, KAWPOW via
ProgPoW 0.9.4 at the live DAG, FishHash, Etchash via the pinned chfast hashimoto at ETC's current DAG, Autolykos2 if the in-house
rule and the clock allow), the set v3 board ratio and the ProgPoW-premise ratio per chain, the two-phase rows with each chain's
actual split (only Igneum pays provers), the E9 Pro calibration line (ADVERSARY models the one real chip against Etchash; the gap
to its public rate and power stated as the model's calibration). COHORT's ledger session is renting (v6, FishHash full and twin,
ProgPoW 1 GiB class now; the live-DAG binary pp_harness_26154532 from CONTROLS pulled in if it lands in time, else a second short
session); CONTROLS' Etchash harness is built and F1-checked against chfast at blocks 0 and 12,750,000 (ETC epoch 425). The ledger
table on the record at docs/analysis/class-v6/1p5x/ledger/README.md 15:30, the kit 16:30, the page 17:30; the registry cell
ledger:cross-chain beside lab:candidate on R15-09, NOT RUN until the kit's rows reproduce. The candidate search continues
fail-closed at lower priority (the 520k-ALU point and the headroom row close their records; no new families).
- The 4090 decider CLOSED (CONTROLS, one quiet session, stock, the 4 GiB signing pack): the kit zip 4 worker f5f3846c 30.661 MH/s
at 20 x 2^22 and 30.693 at 50 x 2^24; the build-1 worker 804a6f7f 30.663 and 30.692 on the same pack and shape; the 1 GiB
research pack 31.313: the two builds are the same instrument to four figures, the batch shape moves nothing, the live 4 GiB
object costs the 4090 2.0 percent of rate (3 percent on the 5090); the 13.16 was the shared-card read, withdrawn
(build-1:/srv/artefacts/lab/controls/frozen-v6/decider-4090.log). ctl-progpow-094's by-construction twin on the 4090: 77.42 MH/s
at the 1 GiB DAG and 60.20 at the live 8.38 GB DAG against the full kernel's 62.58 and 58.75: at the live size the card is at
its memory limit (the ALU hidden under the reads). ctl-fishhash on the 5090: F1 PASS (fingerprint f841605125ce375e equal to
the 4090's), 45.37 MH/s full against 39.71 for the twin (19.73 / 17.75 on the 4090). The F2 row re-run on the same pinned core:
10.440 ms per warp for the signing object at 2^30, 5.134 for the class v4 calibration (frozen-v6/f2-verifier-build5.txt).
- CONTROLS' done line (13:0x to 13:1x UK): the four controls and the ledger rows staged under build-1:/srv/artefacts/lab/controls/
with SHA256SUMS (frozen-v6 with tlb/, coop-arx, progpow-094, fishhash, sector-read, etchash, autolykos; 25 MB). Autolykos2 landed
in-house and bit-exact (hashlib reference against the CUDA harness at N = 65,536 and at Ergo's live N = 227,251,815, 7.27 GB;
216.2 / 201.8 MH/s full / twin on the rented 4090; the live-block end-to-end row owed). coop-arx's OpenCL text F1-complete on two
OpenCL platforms at all five chain lengths (the AMD tier runs the moment a card is reachable; Metal owed). Open on that lane: the
knee rows (every rented pod refuses the lock; COHORT's VM-host lock hunt reports by 14:30), the Metal text, the Ergo live-block row.
- ADVERSARY (12:5x to 13:0x): phase B tier rows on the on-chain read (commit 82330b04c; 47f16b86f with Etchash on the mirror): the
24 GB-and-up NVIDIA tier on Windows and Mac LIVE on Devnet 4 and out-earning the board chip in phase B (the GPU's contribution per
TH after electricity 0.341 against the chip's 0.288 after its recurring cost at ten cents on the flat path); HiveOS NOT LIVE until
the 2.0.3.1 package; the 16 GB tier never (mining share only, 0.046 per TH behind the chip). ctl-etchash as a control (64 x 128 B
reads over about 3.3 GB) with the calibration line: the modelled DRAM board 765 nJ per hash against the shipped Antminer E9 Pro's
598 (3,680 MH/s at 2,200 W, the public figure as the ledger lane quotes it): the model 1.28x pessimistic for the chip, a witness.
Phase A and B for Ravencoin, Ethereum Classic and Iron Fish in their own units (commit d7db3e596, README section 14): no fleet
recovers a board chip's spend on any of the three on any path (each chain's 24-month mining emission under one design cost: RVN
about USD 2.9 M, IRON 1.4 M, ETC 83 M at a 10,000-board fleet); phase B with no prover income: on Ravencoin the chip's operating
advantage stands in full at USD 0.123 per TH; on ETC the mining revenue per TH (0.0087) is below the board's recurring cost (0.031)
and the E9 Pro's electricity alone (0.017), a loss on both sides at ten cents. The reading: on every chain in the set the board
chip's phase B advantage is real and its phase A recovery is not at today's emissions; the proving share is the one term that lets
Igneum's live GPU tier out-earn the chip in phase B.
- The boxes (the build steward, 13:1x): the lab's ended box runs' pid files removed as stale after each pid's command line was read
dead; the steward's defaults on build-4, build-5 and build-6 stand until a lane claims with a live pid file.
- THE 4090 DECIDER (COHORT 13:10, uncapped pod 55012546, 450 W default, driver 570.172.08, worker f5f3846c, 250 x 2^24, three
runs each, one session; build-1:/srv/artefacts/lab/ctl-v6-decider/vast-55012546/): the 4 GiB signing object 31.52 MH/s at
275.1 W = 8,728.3 nJ per hash, twin 7,398.0, f 0.848, spread 1.06 percent, fp PASS; the same id at 2^28 32.14 MH/s = 8,600.1
nJ; the research pack 32.15 = 8,448.2; occupancy identical (88 registers, 20 blocks per SM). CLOSED on both denominator cards:
the 4 GiB set costs 2.0 (4090) and 2.9 (5090) percent of rate and 1.5 to 1.8 percent of joules; reads 8.07 G per second at 4 GiB
against 8.23 at 1 GiB; the batch-shape question closed by CONTROLS' own pair (20 x 2^22 and 50 x 2^24 equal to four figures), so
no fix pair exists to measure. The uncapped 4090 ctl-v6 cells: 8,369 / 8,692 / 8,728 / 8,751 nJ over four pods (host spread 4.5
percent, drivers 570 to 595): the scoreboard's 4090 figure is the median 8,710 with the spread, the worst cell 8,751 = 5.67x.
- Autolykos2 priced on set v3 (ADVERSARY 13:1x, README section 15): the same-node board 198 nJ (172 to 249) = 5.8x on the 4090 at
stock from CONTROLS' 216.2 MH/s at 250 W claimed (MODELLED-from-rate until COHORT's session row); the die on four reticles 46
nJ (25x); premise 1.01x; phase A no recovery on any path (Ergo's 24-month mining emission about USD 0.6 M); phase B mining only,
the chip's advantage USD 0.024 per TH standing in full.
- SEARCH handed build-9 back (batches 1 and 2 done and exported); its measurements continue on the rented 4090 (x10b 64-load,
alu-520k, the v6x2 pair, batch 2's self-tests); row folders at build-1:/srv/artefacts/lab/rows/lab-search-4090-pod/ with SUMS;
the lane record docs/analysis/class-v6/1p5x/lab/search/README.md on branch lab-search.
- The "no emergency intervention" row (8g): Devnet 4 on finality rule v3, paused since lock 1980, the chain on PoW through the
pause, nothing certified reversed, proving unaffected once the finality gate on provers was lifted; the first new lock expected
15:30 to 17:00 UK; the vote key label-derived (no key file).
- THE 520k CELL CLOSED (SEARCH 13:2x, the rented 4090 at stock, fixtures 9 of 9 PASS, 97 registers, no spills, two passes):
cand-x10 variant alu-520k 15.8 M lane-works per second at 351 to 366 W = 22,152 and 23,225 nJ per lane-work (709 to 743 uJ per
digest) against the frozen v6's 8,594 nJ per hash in the same session: 2.6x to 2.7x v6's joules per unit, the P03 10 percent
budget failed by 160 percent (about 42 pJ per instruction on this text; the 41,536 shuffles per lane-work at the card's dearest
family); set v3's 1.03x (the card assumed equal to v6) scales to about 2.7x on this cell. REJECTED (F4). NO MEASURED OR SCREENED
CELL ON ANY CARD SITS UNDER 1.5x ON THE SAME-NODE BOARD after the X10 family, the twenty search candidates and the four controls;
the best cell is the frozen v6 on the 5090 at its knee, 2.60x (2.06 to 3.02), WITNESS, set v2 and v3.
- 8c.8 CLOSED: the v6x2 confirming row (two lane-hashes per thread, fingerprint equal) 30.697 against 30.697 MH/s, 8,574 against
8,594 nJ (-0.2 percent); fifteen headroom cells flat at 7.85 to 7.86 G reads per second against the memprobe ceiling 8.1: the 4090
is at its bound. cand-x10b at 64 loads 122.2 M lane-works per second = 1,993 and 2,020 nJ per lane-work (31.1 nJ per read).
- A LOCKABLE RENTED HOST (COHORT 13:23): Vast VM offers (KVM, GPU passthrough, the driver in the guest) hold -lgc; the 4090 VM
55018643 (driver 575.51.03) locked 0 to 1,500 and restored; the five-chain ledger session runs there at stock and at the knee the
recipe picks from a clock ladder (1,200 to 1,900); the 5090 VM at the record's 1,300 once it boots; the stock sessions mid-run on
the uncapped containers 55017318 (4090) and 55018470 (5090). The scoreboard's claim column gets measured knee rows on rented
cards for every chain today.
## Open rows (NOT RUN)
| row | owner | clock |
|---|---|---|
| the card's random-read headroom per cohort card against its memory-timing bound and the chip's 148 MH/s (8c.8) | COHORT with CONTROLS | this afternoon with the scoreboard |
| the two-phase coexistence rows, the revenue column, the used-card column, the growth-scaled new buyer, the exact meeting tariff per row (8c.2 to 8c.7) | ADVERSARY | this afternoon |
| the 4 GiB proving cap defined precisely (8c.10) | CONTROLS (the definition), ADVERSARY (the economics) | this afternoon |
| the comparative review of what other GPU chains publish on chip resistance (8c.9) | unassigned; NOT RUN until done | none |
| the units rule in every control's contract (revenue per accepted work in the algorithm's own units) | CONTROLS | with each pin |
| the founder's bundle (8d) | LAB | 14:00 |

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@ -1,157 +0,0 @@
# The GPU network ledger (the 1.5x laboratory, LEDGER lane, 9 October 2026)
Every live GPU-mined chain the lab could pin, measured the same way on the same rented cards in the same sessions, with the same
adversary method applied to each, ranked on (a) the same-node chip-to-GPU energy edge under the lab's convention, (b) the same
under ProgPoW's own premise, and (c) the two-phase economics with each chain's ACTUAL reward split (only Igneum pays a share of
every block to provers). Every number is MEASURED or WITNESS with its source on the row; a number that does not exist yet reads
"pending" with the lane that owes it, never blank; a chain the lab could not run in-house reads NOT RUN with the reason.
The data lives in `ledger.json` beside this file; every table here, on the public page (`docs/ledger/gpu-ledger.md`, served at
/gpu-ledger) and in the reproduction kit is rendered from it by `tools/ledger/render.mjs`, so no two copies of a row can drift.
The public page carries the same tables with less of the lane bookkeeping.
<!-- ledger:stamp:start -->
Data: ledger.json, stamp 2026-10-09, adversarial set v3 (build-1:/srv/artefacts/lab/adv/ (README.md, design-notes/adversarial-sets-v1-v2-v3.md, rows/, SHA256SUMS); set v3 commit b2b9ee0b9 on class-v6-adversary).
<!-- ledger:stamp:end -->
## 1. The method (the same for every chain)
1. **The object.** Each chain's proof of work as its own pinned reference code, built in-house from source (the in-house rule: no
downloaded miner binary; the CONTROLS lane's pins with commit ids and sha256s on build-1 under /srv/artefacts/lab/controls/).
Igneum: the frozen class v6 at the live 4 GiB dataset. Ravencoin: the official ProgPoW 0.9.4 reference kernel (KAWPOW is
ProgPoW 0.9.4 with Ravencoin's constants, so the official kernel at Raven's DAG size is a labelled PROXY). Firo: the same row
(FiroPoW differs from KAWPOW in its constants only). Iron Fish: the FishHash reference library and a bit-exact CUDA port. Ethereum
Classic: the ethash hashimoto of the pinned chfast/ethash library at ETC's current epoch. Ergo: NOT RUN (the reason on the row).
2. **The card rows** (the COHORT lane, the lab's measurement recipe, interface section 1): one rented RTX 4090 and one rented RTX
5090, both on uncapped hosts, every chain back to back in ONE session per card at stock; board power from `nvidia-smi` at 1 Hz
(the mean from 8 s in to the end, idle not subtracted); the rate from the harness's own counter; nJ per hash = W / MH/s x 1,000;
three timed runs per cell, the median served with the spread; `clocks_sm_median` and the dataset size on every row; the
read-only twin (the same reads, the arithmetic cut) where the harness has one, giving f = J_twin / J_full, the card's memory
share. Rented containers refuse clock locks, so every row is stock; the Igneum knee rows exist only in the record.
3. **The chip rows** (the ADVERSARY lane, adversarial set v3): for each chain the cheapest credible specialist on the same node, a
complete machine (die, memory, board, PSU and host terms), modelled and labelled WITNESS; the same-node DRAM board is the energy
row, the SRAM die the residual (coexistence) row. Two conventions beside every ratio: **ours** (the cheapest programmable core,
fused where the work allows, register file sized to the work, instruction convention) and **ProgPoW's premise** (the chip must
keep a GPU-class datapath, so its edge is the compute term's 1.1x to 1.2x weighted by the card's measured memory share f).
4. **The real chip.** Ethereum Classic is the one chain on the ledger with a chip on the market, the Antminer E9 Pro; its public
rate and power go on the row as a WITNESS and the modelled DRAM board for Etchash goes beside it as the model's calibration
line: the row says how close the model's ratio sits to the ratio from the public figures.
5. **The two phases** (the lab's rulings 8c.5 and 8c.11): phase A, can a chip maker recover its spend before investment under
growing, flat and falling price paths; phase B, with the spend sunk, who exits first on operating cost, with the chain's actual
reward split: a GPU on Igneum earns the mining share plus the proving share (80 / 20 ratified), a hash chip the mining share
only; on every other chain the GPU's share is mining only (100 / 0), so the second-income term is zero by construction.
6. **The ranking rule.** Rank (a) ascending on the same-node DRAM board ratio under our convention at the WORSE of the two cards
(the lower ratio is the smaller chip edge); (b) ascending on the ProgPoW-premise ratio at the same cell; (c) phase B: whether
the chain's GPUs earn an income a hash chip cannot. A chain with any pending or proxy cell in a column is ranked provisionally
in that column and says so; a NOT RUN chain is unranked. PASS is never written; the ranking is the rows' order, nothing more.
## 2. The card rows (MEASURED; board power; stock)
<!-- ledger:cards:start -->
| chain | algorithm | dataset on the row | reward split (mining / proving) | RTX 4090 stock: nJ per hash (MH/s, W, f) | RTX 5090 stock: nJ per hash (MH/s, W, f) | twin | sources |
|---|---|---|---|---|---|---|---|---|
| Igneum | class v6, the live signing object 0x2a1d6caab4c24564 (2.0 devnet, chain id 4465) | 4.29 GB (4,294,967,296 bytes); 2^30 words, the live policy (70a6c703); 256 random 4-byte reads per hash, 62,120 instructions per hash (instruction convention) | 80 / 20 (the Token Value volume on master (D04, token-value/README.md: the 80/20 emission allocation); PROVING_POOL_SHARE_PERCENT) | 8,369 MEASURED (30.67 MH/s, 256.7 W, f 0.848; spread 0.67%; vast 55009211, driver 580; stock (the pod refused -lgc); clocks_sm_median pending the ledger session) | 5,597 MEASURED (68.66 MH/s, 384.3 W, f 0.811; spread 2.11%; vast 55006481, driver 580; stock (the pod refused -lgc); the host cap 500 W, the card drew 384) | yes (the same address stream, the arithmetic cut) | RTX 4090: build-1:/srv/artefacts/lab/ctl-v6/vast-55009211/ (rows.jsonl, SHA256SUMS); the cohort table build-1:/srv/artefacts/lab/cohort/TABLE.md; RTX 5090: build-1:/srv/artefacts/lab/ctl-v6/vast-55006481/; the cohort table build-1:/srv/artefacts/lab/cohort/TABLE.md |
| Ravencoin | KAWPOW (ProgPoW 0.9.4 with Ravencoin's kiss99 constants, 7,500-block epochs and a 512-parent DAG; live since block 1,219,736, 6 May 2020) | 6.18 GB (6,182,403,712 bytes); KAWPOW's current DAG size at Ravencoin height 4,573,707 (epoch 609, read 13:0x UK): the official ProgPoW 0.9.4 kernel built at Ethash block 18,270,000 (epoch 609, the same byte count), harness progpow-094/gpu/pp_harness_18270000; KAWPOW's own constants NOT applied, so the row is 'ProgPoW 0.9.4 official at KAWPOW's DAG size (proxy)'; 64 coalesced 256-byte reads per hash; F1 GPU = CPU on both nonces (cpu/vectors-094-kawpow-size-18270000.txt) | 100 / 0 (Ravencoin's block reward goes to the miner in full (no second income to GPUs)) | 6,920 MEASURED (prior row: kawpowminer, not the pinned kernel; a PROXY until the ledger session's pinned-kernel row lands) (58.95 MH/s, 409.0 W, f none; spread none; RunPod, the comparative lane a2ed5c31; stock) | pending: pending (COHORT, the ledger session) | yes, by construction (progpow-094/gpu/pp_twin 18270000 26 250: the 64 dependent entry reads per 16-lane hash) | RTX 4090: build-1:/srv/artefacts/lab/adv/rows/rows.md (the ctl-progpow-094 section, card rows) |
| Firo | FiroPoW (ProgPoW 0.9.4 with Firo's constants; live since block 419,264, 26 October 2021) | = Ravencoin's row | 100 / 0 | = Ravencoin's row | = Ravencoin's row | as Ravencoin | as KAWPOW: the pinned ProgPoW 0.9.4 reference; FiroPoW differs from KAWPOW only in its constants and DAG schedule, so the lab serves ONE row for both and says so |
| Iron Fish | FishHash (live since hardfork 1, April 2024) | 4.83 GB (4,831,835,776 bytes); 37,748,717 items of 128 bytes, FIXED (no epochs); 96 random 128-byte reads per hash, 9,856 lane-instructions | 100 / 0 (Iron Fish's block reward is mining only) | pending: pending (COHORT, the ledger session); CONTROLS' rate-only read 19.73 MH/s at stock, no sampler (rate only 19.73 MH/s) | pending: pending (COHORT, the ledger session); CONTROLS' rate-only sm_120 read 45.37 MH/s full, 39.71 twin, F1 PASS (rate only 45.37 MH/s) | yes (a trace replay of the kernel's own item indexes; its energy read as a bound: the twin runs 10 percent slower than the full kernel) | RTX 4090: build-1:/srv/artefacts/lab/controls/fishhash/gpu/bench-4090.log; RTX 5090: build-1:/srv/artefacts/lab/controls/fishhash/ (fishhash.md) |
| Ethereum Classic | Etchash (Ethash with ECIP-1099's 60,000-block epochs; live since block 11,700,000, November 2020) | 4.64 GB (4,638,898,816 bytes); ETC height 25,502,946 (read 12:5x UK) = Etchash epoch 425 (ECIP-1099: height / 60,000), the harness's block argument 12,750,000 (the Ethash epoch with the same size table index); 64 coalesced 128-byte reads per hash (two 64-byte half-mixes); CONTROLS' rate-only read on a 4090 at stock 29.90 MH/s full and 29.90 twin (memory-bound) | 100 / 0 (ETC's block reward is mining only) | pending: pending (COHORT, the ledger session; the harness staged 13:0x UK); CONTROLS' rate-only read 29.90 MH/s (rate only 29.90 MH/s) | pending: pending (COHORT, the ledger session; the sm_120 build from etchash/src) | yes, by construction | RTX 4090: build-1:/srv/artefacts/lab/controls/etchash/ (etchash.md) |
| Ergo | Autolykos2 (k = 32, n = 26, Blake2b-256; the table grows 5 percent every 51,200 blocks) | 7.27 GB (7,272,058,080 bytes); the live table at Ergo height 1,890,820 (api.ergoplatform.com, 13:0x UK): N = 227,251,815 elements of 32 bytes (+5 percent at height 1,894,400; the row names its height); 33 random 32-byte reads per hash; the table builds on the device in 1.5 s; CONTROLS' rate-only read on a 4090 at stock 216.2 MH/s full, 201.8 twin | 100 / 0 (Ergo's block reward is mining only) | pending: pending (COHORT, the ledger session; the harness staged 13:1x UK); CONTROLS' rate-only read 216.2 MH/s full, 201.8 twin (rate only 216.20 MH/s) | pending: pending (COHORT, the ledger session; the sm_120 build from src) | yes (a trace replay) | RTX 4090: build-1:/srv/artefacts/lab/controls/autolykos/ (autolykos.md) |
<!-- ledger:cards:end -->
## 3. The chip-to-GPU edge, both conventions (WITNESS chip rows over MEASURED card rows)
<!-- ledger:edge:start -->
| chain | the cheapest credible same-node DRAM board (set v3, nJ per hash, band) | ratio at the RTX 4090 stock (ours) | ratio at the RTX 5090 stock (ours) | ProgPoW-premise ratio at the RTX 4090 | ProgPoW-premise ratio at the RTX 5090 | the die as the residual (nJ; ratio at the worse card) | real chip on the market | source |
|---|---|---|---|---|---|---|---|---|
| Igneum | 1,542 (1,329 to 1,941); GDDR7 board + register file sized to the work + fused operations, N5; split memory 527 / ALU 166 / tax 849; WITNESS (modelled, complete machine, instruction convention) | 5.43x (4.31 to 6.30) | 3.63x (2.88 to 4.21) | 1.01x to 1.03x (f 0.853 measured) | 1.02x to 1.03x (f 0.811 measured on the stock pod) | 335 (N2 full-SRAM die, the coexistence row); 25.0x | none on the market | docs/analysis/class-v6/1p5x/lab/adv/v3/ledger-rows.md and ledger-rows.json (class-v6-adversary 47f16b86f); build-1:/srv/artefacts/lab/adv/rows/ctl-v6.json and rows.md (set v3, 2026-10-09T11:33Z); the die 12.0x at the 5090 knee, USD 0.77 per MH/s |
| Ravencoin | 1,757 (1,453 to 2,147); GDDR7 board + register file sized to the work + fused operations, N5; bandwidth-bound at 16 KB per hash (93 MH/s per board); split memory 647 / ALU and tax per rows.md; WITNESS (modelled on the kawpowminer census as the work proxy until CONTROLS' trace replaces it) | 3.94x (3.22 to 4.76) | pending | 1.10x to 1.20x (the premise's own figure; no measured twin on this kernel yet) | 1.10x to 1.20x (the premise's own figure; the twin row makes it measured) | 697 (N2 full-SRAM die, the coexistence row (USD 1.89 per MH/s); the cheapest specialist of any kind is near-memory base dies at 669 nJ); 9.9x | none on the market | docs/analysis/class-v6/1p5x/lab/adv/v3/ledger-rows.md and ledger-rows.json (class-v6-adversary 47f16b86f); build-1:/srv/artefacts/lab/adv/rows/ctl-progpow-094.json (set v3) |
| Firo (= Ravencoin's row) | 1,757 (1,453 to 2,147); GDDR7 board + register file sized to the work + fused operations, N5; bandwidth-bound at 16 KB per hash (93 MH/s per board); split memory 647 / ALU and tax per rows.md; WITNESS (modelled on the kawpowminer census as the work proxy until CONTROLS' trace replaces it) | 3.94x (3.22 to 4.76) | pending | 1.10x to 1.20x (the premise's own figure; no measured twin on this kernel yet) | 1.10x to 1.20x (the premise's own figure; the twin row makes it measured) | 697 (N2 full-SRAM die, the coexistence row (USD 1.89 per MH/s); the cheapest specialist of any kind is near-memory base dies at 669 nJ); 9.9x | none on the market | = Ravencoin's row |
| Iron Fish | 1,051 (881 to 1,257); GDDR7 board + register file sized to the work + fused operations, N5; bandwidth-bound at 124 MH/s per board; 95 percent of the board's energy is the memory path; split memory 529 / ALU 46 / tax 503; WITNESS (modelled; the card's cell pending, so the ratio is pending) | pending | pending | pending (needs the measured f from the twin) | pending | 170 (full SRAM dies (three N2 reticles) + sized + fused operations); pending | none on the market | build-1:/srv/artefacts/lab/adv/rows/ctl-fishhash.json and rows.md (set v3) |
| Ethereum Classic | 765 (638 to 919); GDDR7 board + register file sized to the work + fused operations, N5; USD 3.25 per MH/s; split per ledger-rows.md; WITNESS (modelled; the card cells pending, so the ratios are pending) | pending | pending | 1.10x to 1.20x (the premise's own figure; the twin row makes it measured) | 1.10x to 1.20x (the premise's own figure) | 177 (N2 full-SRAM die, the coexistence row); pending | Bitmain Antminer E9 Pro: 3,680 MH/s at 2,200 W = 598 nJ per hash, WITNESS (a manufacturer's published figure, not measured by the lab); Bitmain's stated figures as listed on minerstat's hardware page (https://minerstat.com/hardware/antminer-e9-pro): 3.68 GH/s on Ethash at 2,200 W, release 2023-02; 2,200 W / 3,680 MH/s = 0.598 J per MH = 598 nJ per hash | docs/analysis/class-v6/1p5x/lab/adv/v3/ledger-rows.md and ledger-rows.json (class-v6-adversary 47f16b86f, wording 82330b04c) |
| Ergo | pending: pending (ADVERSARY: the chip rows from CONTROLS' trace; default 15:00 UK, else pending (adversary)) | pending | pending | pending | pending | pending | none on the market | pending |
<!-- ledger:edge:end -->
## 4. The two phases with each chain's actual split
<!-- ledger:phases:start -->
| chain | split | phase A (before investment) | phase B (spend sunk) | an income a hash chip cannot earn | source |
|---|---|---|---|---|---|
| Igneum | 80 / 20 | before investment (24 months, the mining share 80 percent of the year-1 subsidy): the same-node board maker recovers its spend on NO fleet from 100 to 100 M boards on the growing or flat price path (100,000 boards: net USD -55.4 M on 58.8 M revenue growing; -37.6 M on 76.6 M flat); only the falling path pays it; the N2 die recovers on no path | spend sunk, flat path at USD 0.10 per kWh, the chip at 10 percent of the hash: mining revenue USD 0.354 per TH; the GPU's proving income at the ratified 20 percent share USD 0.098 per TH against the board chip's operating advantage USD 0.046 per TH (GPU electricity 0.111 less the chip's electricity, hosting and maintenance 0.066): the GPU out-earns the built board chip; the cancelling proving share 9 percent (board), 13 (hybrid), 20 (die) | yes by rule (the proving share of every block, 20 percent ratified); LIVE ON DEVNET with on-chain paid records (663 paid v1 segment records to 30 prover keys on chain 4465, the PROVING LIVE lane's file bd3f53c1 on build-1), not yet in a shipped package | build-1:/srv/artefacts/lab/adv/rows/rows.md (the two-phase section), ADVERSARY commit 545f3f8a0; ctl-v6-coexistence.json; WITNESS; phase B NOT LIVE until a shipped package runs a prover |
| Ravencoin | 100 / 0 | before investment: no fleet from 100 to 100 M machines recovers a board chip's spend on any path, because Ravencoin's whole mining emission over 24 months (about USD 2.9 M at the public price) sits below one USD 35 M design cost; 10,000 boards would take 56 percent of the 721 GH/s network and earn USD 1.6 M to 2.4 M against a USD 44 M spend | spend sunk, mining only: mining revenue USD 0.064 per TH of the chain's own hashes; the board chip's recurring cost USD 0.069 per TH at ten cents; the chip's operating advantage over the RTX 4090 at stock (6,920 nJ) USD 0.123 per TH (the GPU's electricity 0.192 less the chip's 0.069) stands in full, no prover income | no (the block reward is mining only) | docs/analysis/class-v6/1p5x/lab/adv/v3/ctl-progpow-094-coexistence.json (rows[].phase_a, rows[].phase_b_split; method lab/adv/README.md section 14), ADVERSARY commit d7db3e596 on class-v6-adversary; WITNESS, the chain's own units, the 100/0 split, the same 24-month life, design cost and fleet rule as v6, the three price paths (flat at the public price, x2 growing, x0.5 falling, the hash held); the public lines on the row |
| Firo | 100 / 0 | as KAWPOW | as KAWPOW | no | as KAWPOW; = KAWPOW's row at a 100/0 split |
| Iron Fish | 100 / 0 | before investment: no fleet from 100 to 100 M machines recovers a board chip's spend on any path; Iron Fish's whole mining emission over 24 months is about USD 1.4 M at the public price (10,000 boards would take 84 percent of the hash for USD 1.1 M to 1.6 M) | spend sunk, mining only: mining revenue USD 0.086 per TH of the chain's own hashes; the board chip's recurring cost USD 0.043 per TH at ten cents; the GPU side NOT RUN until the card cell lands; no prover income by construction | no | docs/analysis/class-v6/1p5x/lab/adv/v3/ctl-fishhash-coexistence.json, ADVERSARY commit d7db3e596 on class-v6-adversary; WITNESS, the chain's own units, the 100/0 split, the same life, design cost, fleet rule and price paths as v6; the GPU side of phase B NOT RUN until COHORT's card rows |
| Ethereum Classic | 100 / 0 | before investment: no fleet from 100 to 100 M machines recovers a board chip's spend on any path; ETC's whole mining emission over 24 months is about USD 83 M at the public price, but 10,000 boards are 2 percent of 120.9 TH/s and earn USD 1.0 M to 1.5 M, and 100,000 boards (13 percent) USD 9 M to 13 M against a USD 150 M spend | spend sunk, mining only: mining revenue USD 0.0087 per TH of the chain's own hashes, below even the modelled board's recurring cost (USD 0.031 per TH) and below the E9 Pro's own electricity at ten cents (598 nJ = USD 0.017 per TH): at the public figures nobody mines ETC at a profit at ten cents and phase B is a loss on both sides; the GPU side NOT RUN until the card cell lands | no | docs/analysis/class-v6/1p5x/lab/adv/v3/ctl-etchash-coexistence.json, ADVERSARY commit d7db3e596 on class-v6-adversary; WITNESS, the chain's own units, the 100/0 split, the same life, design cost, fleet rule and price paths as v6; the GPU side of phase B NOT RUN until COHORT's card rows |
| Ergo | 100 / 0 | pending (ADVERSARY) | pending (ADVERSARY); no prover income by construction | no | pending; pending (ADVERSARY at the 100/0 split, the public line on the row) |
<!-- ledger:phases:end -->
## 5. The ranking
<!-- ledger:ranking:start -->
**(a) Ours, the same-node DRAM board at the worse card (the smaller chip edge first):**
No order in this column yet: a cross-chain comparison is made only between cells from the same card, state and session, and the measured cells today come from 2 sessions (lab-cohort-ctl-v6 (COHORT, 11:49 to 12:30 UK, one chain); comparative-lane a2ed5c31 (RunPod, one chain, an earlier session)); the ledger session (both cards, every chain back to back) fills it. Each chain's own number, same card and state, as it stands:
- Igneum: RTX 4090 stock 5.43x (4.31 to 6.30); RTX 5090 stock 3.63x (2.88 to 4.21)
- Ravencoin: RTX 4090 stock 3.94x (3.22 to 4.76); RTX 5090 stock pending (a pending or proxy cell in this row)
- Iron Fish: unranked in this column (no measured card cell yet)
- Ethereum Classic: unranked in this column (no measured card cell yet)
- Ergo: unranked in this column (no measured card cell yet)
**(b) ProgPoW's premise (the chip keeps a GPU-class datapath):**
- Igneum: RTX 4090 1.01x to 1.03x (f 0.853 measured); RTX 5090 1.02x to 1.03x (f 0.811 measured on the stock pod)
- Ravencoin: RTX 4090 1.10x to 1.20x (the premise's own figure; no measured twin on this kernel yet); RTX 5090 1.10x to 1.20x (the premise's own figure; the twin row makes it measured)
- Iron Fish: RTX 4090 pending (needs the measured f from the twin); RTX 5090 pending
- Ethereum Classic: RTX 4090 1.10x to 1.20x (the premise's own figure; the twin row makes it measured); RTX 5090 1.10x to 1.20x (the premise's own figure)
- Ergo: RTX 4090 pending; RTX 5090 pending
**(c) Phase B, an income a hash chip cannot earn:**
- Igneum: yes by rule (the proving share of every block, 20 percent ratified); LIVE ON DEVNET with on-chain paid records (663 paid v1 segment records to 30 prover keys on chain 4465, the PROVING LIVE lane's file bd3f53c1 on build-1), not yet in a shipped package
- Ravencoin: no (the block reward is mining only)
- Firo: no
- Iron Fish: no
- Ethereum Classic: no
- Ergo: no
<!-- ledger:ranking:end -->
## 6. The claim under test, clause by clause
The sentence the ledger was ordered to carry, in exactly these words and nothing stronger, is served as the claim UNDER TEST with
each clause labelled by its state on the current rows; it reads as established only when every clause is SUPPORTED. The fifth
review's ruling stands (interface 8c.9): a comparative sentence needs the comparative row, and this ledger is that row.
<!-- ledger:claim:start -->
**The headline, built from the supported clauses only:** under ProgPoW's own convention, the lowest measured chip-to-GPU edge of the chains on this ledger; and the only chain on this ledger whose GPUs are paid, by rule, an income a hash chip cannot earn (LIVE ON DEVNET, on-chain records (the PROVING LIVE lane, read 11:50:22Z 9 October 2026): on chain id 4465 (the Igneum 2.0 devnet) 663 paid v1 segment records (8 shards plus aggregation each) = 653.93 IGN paid from the proving pool to 30 distinct prover keys across chain blocks 3,000 to 30,687 (tip 31,719 at the read), plus 6,474 paid v0 shard records = 7,196 IGN; read by igneum_getProvingStatus, igneum_getSegmentRecords (3,965 segments) and igneum_getSegment; evidence build-1:/srv/artefacts/proving-live/prov-ledger-4465-tip31719-115022Z.json sha256 bd3f53c18c3ffa20354ea62ade9fd5e7a5794202a71c3c369a5be71484f7143a. NOT YET LIVE IN A SHIPPED PACKAGE: the payees are the fleet's prover stack (the same binaries the 2.0.3.1 HiveOS package wraps, cut 18:00 UK); the apps' prover is on by default on 24 GB cards but no app-proved record is on the record yet; a full-epoch line follows by 16:00 UK).
The sentence as ordered, served as the claim under test: "the lowest measured chip-to-GPU edge of any live GPU network under a published method, on both conventions, and the only one whose GPUs earn income a chip cannot"
Rule: the headline reads only what the like-for-like rows support, clause by clause (main's ruling, 13:2x UK 9 October 2026); under the ledger's own convention the measured edge per chain on the same card and state is stated as numbers, with no ranking word until the rows say so after the ledger session.
| clause | convention | state on the current rows | why |
|---|---|---|---|
| under ProgPoW's own convention, the lowest measured chip-to-GPU edge of the chains on this ledger | ProgPoW's premise (a chip that keeps a GPU-class datapath) | SUPPORTED on the current rows | Igneum v6 1.01x to 1.03x (its measured f 0.81 to 0.85) against ProgPoW's own 1.10x to 1.20x for KAWPOW and FiroPoW; FishHash and Etchash pending their twins |
| under the ledger's convention (the cheapest credible programmable specialist, adversarial set v3), each chain's measured edge on the same card and state, as numbers | ours | NUMBERS ONLY; no ranking until the ledger session (COHORT, both cards, every chain back to back, the pinned 0.9.4 kernel, twins; 14:45 UK) | the current cells come from different sessions (the lab's cohort pods for v6, the comparative lane's pod for KAWPOW) and a cross-chain comparison is made only between cells from the same card, state and session; at the RTX 4090 at stock the cells read v6 5.4x (5.67x on the second pod) and KAWPOW 3.9x (a proxy row from an earlier session); FishHash and Etchash pending |
| and the only chain on this ledger whose GPUs are paid, by rule, an income a hash chip cannot earn | phase B, each chain's actual reward split | LABELLED BY THE PROVING LIVE LANE | the proving share (20 percent ratified) is paid to GPUs for work a hash chip cannot do; every other chain on the ledger pays mining only; the live state of that income is the PROVING LIVE lane's evidence line |
Withdrawn: the earlier line 'KAWPOW and FiroPoW read 5 to 6x on the measured 4090 rows and v6 reads 2.35x' is withdrawn: it compared v6 at the 5090's 1,300 MHz knee with KAWPOW at the 4090 at stock, two cards and two states; the like-for-like cells are the ones on this ledger.
The last clause's label from the PROVING LIVE lane: LIVE ON DEVNET, on-chain records (the PROVING LIVE lane, read 11:50:22Z 9 October 2026): on chain id 4465 (the Igneum 2.0 devnet) 663 paid v1 segment records (8 shards plus aggregation each) = 653.93 IGN paid from the proving pool to 30 distinct prover keys across chain blocks 3,000 to 30,687 (tip 31,719 at the read), plus 6,474 paid v0 shard records = 7,196 IGN; read by igneum_getProvingStatus, igneum_getSegmentRecords (3,965 segments) and igneum_getSegment; evidence build-1:/srv/artefacts/proving-live/prov-ledger-4465-tip31719-115022Z.json sha256 bd3f53c18c3ffa20354ea62ade9fd5e7a5794202a71c3c369a5be71484f7143a. NOT YET LIVE IN A SHIPPED PACKAGE: the payees are the fleet's prover stack (the same binaries the 2.0.3.1 HiveOS package wraps, cut 18:00 UK); the apps' prover is on by default on 24 GB cards but no app-proved record is on the record yet; a full-epoch line follows by 16:00 UK
<!-- ledger:claim:end -->
## 7. The reproduction kit
build-1:/srv/artefacts/ledger/<stamp>/ (the stamp and the sha256 of the kit on the row below when it lands): the pinned controls
(the frozen v6 pack and twin, the ProgPoW 0.9.4 reference harness, the FishHash harness, the Etchash harness when staged), the
gen-6 Igneum worker, the lab's sampler and session script, the chain references by commit and sha, SHA256SUMS, and a README with
one command per card and the expected rows within their bands (ROWS.md, rendered from ledger.json). Anyone with a 4090 can run it.
| item | state |
|---|---|
| the kit on build-1 | pending (16:30 UK clock) |
| the kit's sha256 | pending |
| the public page | pending (17:30 UK clock; /gpu-ledger) |
## 8. Faults and corrections (reported once)
| when (UK) | what | state |
|---|---|---|
| 13:1x | the brief's "Ravencoin's own 1.5x claim" has no source in the pinned ProgPoW text (the README states 1.1x to 1.2x); the row carries the README's figure and the brief's figure as NOT FOUND | on the row |
| 13:1x | the earlier like-for-like line ("KAWPOW 5 to 6x against v6 2.35x") compared v6 at the 5090 knee with KAWPOW at the 4090 stock; at the same cell (4090 stock, set v3) the rows read v6 5.4x against KAWPOW 3.9x (proxy), so clause (a) of the claim is NOT SUPPORTED on today's rows | reported to main 13:1x; the ledger session's pinned-kernel rows decide |
| 13:0x | the lab's cohort cells stand in for the ledger session's cells until COHORT's back-to-back rows land (clock 14:45) | pending |

View file

@ -1,26 +0,0 @@
# Comparative review: what other live GPU chains publish about their own chip resistance (9 October 2026)
The row the laboratory interface names in section 8c item 9 ("a comparative review of what other chains publish: a row of the table, NOT RUN until done"). Method: the chain's own pages were read on 9 October 2026 (the date-read column); every quotation is verbatim and under 15 words, with its URL; nothing was downloaded or run; a paraphrase is never inside quotation marks. The last column answers one question per chain: does the chain's own record carry a measured or priced attacker row (a chip designed, modelled or measured against the chain's work), and where we looked. This file states what others publish; it serves no ranking sentence. The site's own claim stays the approved wording of the interface, verbatim, and nothing stronger.
## 1. The rows
| Chain, algorithm | Their statement, verbatim | Where it sits (URL), date read | Their convention | A measured or priced attacker row in their record |
|---|---|---|---|---|
| Ravencoin, KAWPOW | "ASIC resistant – Uses the KAWPOW hashing algorithm to discourage the development of ASIC hardware" | https://ravencoin.org/about/ (the project page, no date shown), read 9 October 2026 | ProgPoW's premise, inherited: "The KAWPOW algorithm was derived from ProgPOW and ethhash, with modifications" (same page) | None found. Looked at ravencoin.org/about, the Ravencoin repository README (github.com/RavenProject/Ravencoin, no ASIC text) and EIP-1057. A "1.5x" figure for KAWPOW was not found on any Ravencoin page; the number quoted to the project in review is a reviewer's, not Ravencoin's. |
| Ravencoin, KAWPOW (the second sentence) | "limited potential for ASIC efficiency gains compared to consumer grade hardware" | https://ravencoin.org/about/, read 9 October 2026 | as above | as above |
| ProgPoW (the algorithm KAWPOW and FiroPoW derive from; EIP-1057) | "These would result in minimal, roughly 1.1-1.2x, efficiency gains." | https://eips.ethereum.org/EIPS/eip-1057 (section "ProgPoW Algorithm Walkthrough"), read 9 October 2026 | Its premise, in its own words: "can have a customized ASIC created for it with slightly less functionality" (section "Rationale for PoW on Commodity Hardware"); the goal: "have the algorithm's requirements match what is available on commodity GPUs" | None found on the EIP page or the reference README (github.com/ifdefelse/ProgPOW): the 1.1x to 1.2x is a design-walkthrough estimate of what a chip saves by leaving GPU parts out, not a priced design. Version 0.9.4's stated purpose: "patch the condition modifying the input state of the last keccak pass" (the README). |
| Iron Fish, FishHash (FIP-3, 20 December 2023) | "levels the playing field between different mining hardware (ASICS, FPGAs and GPUs)" | https://fips.ironfish.network/fips/fip-3-memory-hard-mining-algorithm (Abstract), read 9 October 2026 | Memory-bound by design: "difference between specialized and widely available hardware is as small as possible" (Specification); the dataset "equals 4608 MBytes" | None found. FIP-3's analysis is static (memory and compute demand); its one ratio is about Ethash's shipped chips: "much more efficient (2-10x) in terms of power consumption" (Rationale). The Trail of Bits audit (https://ironfish.network/learn/blog/2024-05-14-fish-hash-audit, read 9 October 2026) is cryptanalytic: "no practical exploitations were discovered around the memory-hardness requirement"; it prices no chip. |
| Ethereum Classic, ETChash | "there is no such thing as ASIC resistance" | https://ethereumclassic.org/faqs/miners/ (the question "Is Ethereum Classic's mining algorithm ASIC resistant?"), read 9 October 2026 | A shipped-chip observation, not a model: "mine ETCHash 2x to 6x more energy efficiently than GPUs" (same answer) | The only chain of the six with real chips on its work; the 2x to 6x is stated without a source on the page, and the hardware guide names no model: "A range of ASIC miners Ethereum Classic are available" (https://ethereumclassic.org/mining/hardware/, read 9 October 2026). No designed-attacker row; none claimed. |
| Ergo, Autolykos v2 | "fairly launched efficient ASIC-resistant Proof of Work algorithm" | https://docs.ergoplatform.com/mining/autolykos/, read 9 October 2026 | A stored table: "a single table of ~2 GB (initially)"; "designed to be efficient for miners who store the table" | None found on the Autolykos documentation page: no ratio, no priced or measured design. (The project's own comparative lane found no open GPU miner that passes its verifier on today's table, so Ergo is a non-comparable peer under the open-miner rule; recorded, not scored.) |
| Firo, FiroPoW (release post, 1 October 2021) | "designed to be both FPGA and ASIC resistant to even the playing field" | https://firo.org/2021/10/01/firopow-and-instantsend-release.html, read 9 October 2026 | ProgPoW's premise, inherited: "FiroPoW follows ProgPoW's 0.9.4 spec with a small change" (same post) | None found in the release post: no ratio, no priced or measured design; the post states the DAG start ("slightly over 4GB") and the per-block change. |
## 2. What the rows say together
- Four of the six (Ravencoin, FishHash, Ergo, Firo) publish a qualitative sentence (resistant, levels the playing field) and no number; two publish a number: ProgPoW's 1.1x to 1.2x (a design estimate under its own premise, inherited by Ravencoin and Firo) and Ethereum Classic's 2x to 6x (shipped chips, no source on the page).
- None of the six carries, on the pages read, a priced or measured attacker design against its own work (a chip designed, placed and costed, or a chip measured). "None found" on every row means: not on the pages named in the row; a page we did not read may exist.
- Two conventions are in play across the field: ProgPoW's premise (a chip keeps a GPU-class datapath; its edge is what it leaves out) and the whole-machine premise (the cheapest programmable core the specialist would build, as a complete machine). Ethereum Classic's figure is neither: it is what shipped chips do.
- This project's own rows, for the record beside them (docs/analysis/class-v6/1p5x/lab/table.md on master; the adversary lane's rows on branch class-v6-adversary): under ProgPoW's premise the frozen class v6 object reads 1.01x to 1.02x; under the whole-machine premise the same-node DRAM board reads 2.60x at the 5090 knee (2.06x to 3.02x, set v2, WITNESS) and 5.67x at the worst cohort cell; KAWPOW and FiroPoW under the whole-machine premise read 4.24x on set v2 against a rented 4090 at stock (the KAWPOW census as the op-count proxy, PROXY until the pinned 0.9.4 control is measured). No chip is measured on any side.
## 3. What this review does not license
The fifth review withdrew the sentence that no other GPU chain has such a record written down; this file is the row that was NOT RUN. It establishes only what the named pages say on the date read. It does not establish that no other chain holds a priced attacker row somewhere else, and it does not rank any chain; a ranking sentence needs the laboratory's ruling on this row, not this file.

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@ -1,195 +0,0 @@
{
"title": "The GPU network ledger",
"stamp": "2026-10-09",
"adversarial_set": "v3",
"adversarial_set_source": "build-1:/srv/artefacts/lab/adv/ (README.md, design-notes/adversarial-sets-v1-v2-v3.md, rows/, SHA256SUMS); set v3 commit b2b9ee0b9 on class-v6-adversary",
"cards": [
{"id": "4090", "name": "RTX 4090", "state": "stock", "note": "uncapped host (450 of 450 W)"},
{"id": "5090", "name": "RTX 5090", "state": "stock", "note": "uncapped host (575 or 600 W at default)"}
],
"ranking_rule": "Rank (a) ascending on the same-node DRAM board ratio under the ledger's convention at the WORSE of the two cards (the lower ratio is the smaller chip edge); (b) ascending on the ProgPoW-premise ratio at the same cell; (c) phase B: whether the chain's GPUs earn an income a hash chip cannot. A cross-chain comparison is made only between cells from the SAME card, the SAME state and the SAME session (main's ruling, 13:2x UK 9 October 2026); until the ledger session's cells exist the (a) column shows each chain's own number and no order. A chain with any pending or proxy cell in a column is ranked provisionally in that column and says so; a NOT RUN chain is unranked.",
"mechanism": {
"title": "Why the two honest-convention edges differ: the shape of the memory traffic",
"rows": [
{"chain": "Igneum v6", "traffic": "256 dependent random reads of one 32-byte sector each per hash over 4 GiB (8 KB moved, 1 KB consumed); the card is activation-bound: 7.86 G sector reads per second on the 4090 at its tFAW form, 17.6 G on the 5090", "card_cost": "27 to 31 nJ per random sector read all-in on the 4090 at stock (X7 and the sector-read rows); the ALU runs in the reads' shadow (f 0.85)", "chip_cost": "about 2.1 nJ per read on the chip's own GDDR7 board (1.2 on HBM3, 0.7 beside the bank): s = 12.8", "consequence": "the chip's edge on random reads is the largest of any term in the model; a read-dominated object carries it in full"},
{"chain": "Ravencoin KAWPOW (and FiroPoW)", "traffic": "64 coalesced 256-byte DAG entries per 16-lane hash = 16 KB streamed per hash; the card is bandwidth-bound (1.03 TB/s at 62.6 MH/s on the 4090; 93 MH/s per modelled board)", "card_cost": "a coalesced 256-byte read costs the card far less per byte than a scattered sector (modelled 35 nJ per 256-byte entry against 27 nJ per 32-byte sector)", "chip_cost": "the chip streams the same bytes at the same DRAM bandwidth bound; its gain is on the per-byte energy and the 18 random-math ops per loop (a GPU-class datapath on the premise, fused lanes under ours)", "consequence": "a smaller memory-term gap, so a smaller honest-convention edge at the same card; the price is a DAG that grows (8.38 GB at Ethereum's epoch 871 for the control) and a 16 KB stream per hash"},
{"chain": "Iron Fish FishHash", "traffic": "96 random 128-byte lines per hash over a fixed 4.83 GB (12 KB per hash, every byte consumed): between the two shapes (four sectors per activation)", "card_cost": "pending the measured cell (CONTROLS' rate-only read 242 GB/s of lines at 19.73 MH/s on the 4090)", "chip_cost": "95 percent of the modelled board's energy is its memory path", "consequence": "the ratio is pending its card cell"},
{"chain": "Ethereum Classic Etchash", "traffic": "64 loops of two 64-byte half-mixes = 128-byte coalesced reads per hash over the epoch DAG; bandwidth-bound", "card_cost": "pending", "chip_cost": "the one chip that exists (the E9 Pro) on this shape", "consequence": "the calibration line"}
],
"note": "Stated as the mechanism, not as a mitigation: the lab's X7 verdict is that no read-dominated design reaches a small edge against a chip with its own memory on the same node, and the ledger shows the shape of each chain's traffic beside its ratio so a reader sees where each number comes from."
},
"chains": [
{
"id": "igneum-v6",
"chain": "Igneum",
"algorithm": "class v6, the live signing object 0x2a1d6caab4c24564 (2.0 devnet, chain id 4465)",
"control": "ctl-v6",
"pin": "tree 1a938abe4; pack x1-ctrl-ds30.tgz sha256 7606c13d92546e44feef485fde25716a206643e6466ef5d5251d41354eee9532; read-only twin x1-ctrl-ds30-readonly.tgz 7629ed9598c0297533c03d4a9cbd83338d47a7693a26dc8b86566f3f0982174b; worker igneum-worker-cuda-gen6 804a6f7fea10a62e07cf6cd01e99331de5149e683112b5870fc25d1e11e199bd (COHORT's rows on worker f5f3846c, kit bf9b85d6); build-1:/srv/artefacts/lab/controls/frozen-v6/",
"dataset_bytes": 4294967296,
"dataset_note": "2^30 words, the live policy (70a6c703); 256 random 4-byte reads per hash, 62,120 instructions per hash (instruction convention)",
"twin": "yes (the same address stream, the arithmetic cut)",
"split": {"mining": 80, "proving": 20, "source": "the Token Value volume on master (D04, token-value/README.md: the 80/20 emission allocation); PROVING_POOL_SHARE_PERCENT"},
"own_claim": "none published as a number; the lab's X0 record: the same-node DRAM board 2.35x at the 5090 knee (set v0), 2.60x (set v3)",
"cells": {
"4090": {"status": "MEASURED", "session": "lab-cohort-ctl-v6 (COHORT, 11:49 to 12:30 UK, one chain)", "nj": 8368.9, "mhs": 30.673, "w": 256.7, "f": 0.848, "twin_nj": 7098.9, "spread_pct": 0.67, "clock": "stock (the pod refused -lgc); clocks_sm_median pending the ledger session", "pod": "vast 55009211, driver 580", "source": "build-1:/srv/artefacts/lab/ctl-v6/vast-55009211/ (rows.jsonl, SHA256SUMS); the cohort table build-1:/srv/artefacts/lab/cohort/TABLE.md", "note": "the lab's cohort cell (median of three); the second uncapped 4090 (vast 55006526) read 8,751; the ledger session's own row replaces this cell when it lands"},
"5090": {"status": "MEASURED", "session": "lab-cohort-ctl-v6 (COHORT, 11:49 to 12:30 UK, one chain)", "nj": 5597.1, "mhs": 68.661, "w": 384.3, "f": 0.811, "twin_nj": 4537.6, "spread_pct": 2.11, "clock": "stock (the pod refused -lgc); the host cap 500 W, the card drew 384", "pod": "vast 55006481, driver 580", "source": "build-1:/srv/artefacts/lab/ctl-v6/vast-55006481/; the cohort table build-1:/srv/artefacts/lab/cohort/TABLE.md", "note": "the lab's cohort cell; the ledger session's uncapped-host row replaces it when it lands"}
},
"adversary": {
"status": "WITNESS (modelled, complete machine, instruction convention)",
"board": {"low": 1329, "nominal": 1542, "high": 1941, "design": "GDDR7 board + register file sized to the work + fused operations, N5", "split_nj": "memory 527 / ALU 166 / tax 849"},
"die": {"nominal": 335, "design": "N2 full-SRAM die, the coexistence row"},
"premise": {"4090": "1.01x to 1.03x (f 0.853 measured)", "5090": "1.02x to 1.03x (f 0.811 measured on the stock pod)"},
"source": "docs/analysis/class-v6/1p5x/lab/adv/v3/ledger-rows.md and ledger-rows.json (class-v6-adversary 47f16b86f); build-1:/srv/artefacts/lab/adv/rows/ctl-v6.json and rows.md (set v3, 2026-10-09T11:33Z); the die 12.0x at the 5090 knee, USD 0.77 per MH/s"
},
"real_chip": null,
"phases": {
"status": "WITNESS; phase B NOT LIVE until a shipped package runs a prover",
"A": "before investment (24 months, the mining share 80 percent of the year-1 subsidy): the same-node board maker recovers its spend on NO fleet from 100 to 100 M boards on the growing or flat price path (100,000 boards: net USD -55.4 M on 58.8 M revenue growing; -37.6 M on 76.6 M flat); only the falling path pays it; the N2 die recovers on no path",
"B": "spend sunk, flat path at USD 0.10 per kWh, the chip at 10 percent of the hash: mining revenue USD 0.354 per TH; the GPU's proving income at the ratified 20 percent share USD 0.098 per TH against the board chip's operating advantage USD 0.046 per TH (GPU electricity 0.111 less the chip's electricity, hosting and maintenance 0.066): the GPU out-earns the built board chip; the cancelling proving share 9 percent (board), 13 (hybrid), 20 (die)",
"income_a_chip_cannot_earn": "yes by rule (the proving share of every block, 20 percent ratified); LIVE ON DEVNET with on-chain paid records (663 paid v1 segment records to 30 prover keys on chain 4465, the PROVING LIVE lane's file bd3f53c1 on build-1), not yet in a shipped package",
"source": "build-1:/srv/artefacts/lab/adv/rows/rows.md (the two-phase section), ADVERSARY commit 545f3f8a0; ctl-v6-coexistence.json"
}
},
{
"id": "rvn-kawpow",
"chain": "Ravencoin",
"algorithm": "KAWPOW (ProgPoW 0.9.4 with Ravencoin's kiss99 constants, 7,500-block epochs and a 512-parent DAG; live since block 1,219,736, 6 May 2020)",
"control": "ctl-progpow-094",
"pin": "ifdefelse/ProgPOW d035ae56536d2e6fc71aad609ac5085c9785d1b3, the reference's own CUDA kernel text, DAG generator and light cache (256 parents as the code implements); harness progpow-094/gpu/pp_harness_<block>, CPU reference cpu/pp094_ref; build-1:/srv/artefacts/lab/controls/progpow-094/ (SHA256SUMS)",
"dataset_bytes": 6182403712,
"dataset_note": "KAWPOW's current DAG size at Ravencoin height 4,573,707 (epoch 609, read 13:0x UK): the official ProgPoW 0.9.4 kernel built at Ethash block 18,270,000 (epoch 609, the same byte count), harness progpow-094/gpu/pp_harness_18270000; KAWPOW's own constants NOT applied, so the row is 'ProgPoW 0.9.4 official at KAWPOW's DAG size (proxy)'; 64 coalesced 256-byte reads per hash; F1 GPU = CPU on both nonces (cpu/vectors-094-kawpow-size-18270000.txt)",
"twin": "yes, by construction (progpow-094/gpu/pp_twin 18270000 26 250: the 64 dependent entry reads per 16-lane hash)",
"split": {"mining": 100, "proving": 0, "source": "Ravencoin's block reward goes to the miner in full (no second income to GPUs)"},
"public": {"block_reward": "1,250 RVN", "block_time": "60 s", "network_hash": "721.3 GH/s", "price_usd": "0.0022", "source": "minerstat.com/coin/RVN, read 9 October 2026 13:3x UK (public figures, not measured by the lab)"},
"own_claim": "the ProgPoW README (the pinned commit) states a specialised chip gains 1.1x to 1.2x on ProgPoW's premise (the chip keeps a GPU-class datapath). The figure 1.5x quoted in the ledger's brief as Ravencoin's own claim has no source in the pinned text or on the record: NOT FOUND; the row carries the README's 1.1x to 1.2x",
"cells": {
"4090": {"status": "MEASURED (prior row: kawpowminer, not the pinned kernel; a PROXY until the ledger session's pinned-kernel row lands)", "session": "comparative-lane a2ed5c31 (RunPod, one chain, an earlier session)", "nj": 6920, "mhs": 58.95, "w": 409, "f": null, "twin_nj": null, "spread_pct": null, "clock": "stock", "pod": "RunPod, the comparative lane a2ed5c31", "source": "build-1:/srv/artefacts/lab/adv/rows/rows.md (the ctl-progpow-094 section, card rows)", "note": "407 to 411 W at 58.95 MH/s; the ledger session re-measures with the pinned official kernel at Raven's DAG size (CONTROLS' rate-only read on a 4090 at stock: 58.95 MH/s full, the twin 60.99), board power sampled, median of three, the twin beside it"},
"5090": {"status": "pending (COHORT, the ledger session)", "session": "pending", "nj": null, "mhs": null, "w": null, "f": null, "twin_nj": null, "spread_pct": null, "clock": "stock", "pod": "pending", "source": "pending", "note": ""}
},
"adversary": {
"status": "WITNESS (modelled on the kawpowminer census as the work proxy until CONTROLS' trace replaces it)",
"board": {"low": 1453, "nominal": 1757, "high": 2147, "design": "GDDR7 board + register file sized to the work + fused operations, N5; bandwidth-bound at 16 KB per hash (93 MH/s per board)", "split_nj": "memory 647 / ALU and tax per rows.md"},
"die": {"nominal": 697, "design": "N2 full-SRAM die, the coexistence row (USD 1.89 per MH/s); the cheapest specialist of any kind is near-memory base dies at 669 nJ"},
"premise": {"4090": "1.10x to 1.20x (the premise's own figure; no measured twin on this kernel yet)", "5090": "1.10x to 1.20x (the premise's own figure; the twin row makes it measured)"},
"source": "docs/analysis/class-v6/1p5x/lab/adv/v3/ledger-rows.md and ledger-rows.json (class-v6-adversary 47f16b86f); build-1:/srv/artefacts/lab/adv/rows/ctl-progpow-094.json (set v3)"
},
"real_chip": null,
"phases": {
"status": "WITNESS, the chain's own units, the 100/0 split, the same 24-month life, design cost and fleet rule as v6, the three price paths (flat at the public price, x2 growing, x0.5 falling, the hash held); the public lines on the row",
"A": "before investment: no fleet from 100 to 100 M machines recovers a board chip's spend on any path, because Ravencoin's whole mining emission over 24 months (about USD 2.9 M at the public price) sits below one USD 35 M design cost; 10,000 boards would take 56 percent of the 721 GH/s network and earn USD 1.6 M to 2.4 M against a USD 44 M spend",
"B": "spend sunk, mining only: mining revenue USD 0.064 per TH of the chain's own hashes; the board chip's recurring cost USD 0.069 per TH at ten cents; the chip's operating advantage over the RTX 4090 at stock (6,920 nJ) USD 0.123 per TH (the GPU's electricity 0.192 less the chip's 0.069) stands in full, no prover income",
"income_a_chip_cannot_earn": "no (the block reward is mining only)",
"source": "docs/analysis/class-v6/1p5x/lab/adv/v3/ctl-progpow-094-coexistence.json (rows[].phase_a, rows[].phase_b_split; method lab/adv/README.md section 14), ADVERSARY commit d7db3e596 on class-v6-adversary"
}
},
{
"id": "firo-firopow",
"chain": "Firo",
"algorithm": "FiroPoW (ProgPoW 0.9.4 with Firo's constants; live since block 419,264, 26 October 2021)",
"control": "ctl-progpow-094 (the same row as KAWPOW)",
"pin": "as KAWPOW: the pinned ProgPoW 0.9.4 reference; FiroPoW differs from KAWPOW only in its constants and DAG schedule, so the lab serves ONE row for both and says so",
"dataset_bytes": null,
"dataset_note": "= KAWPOW's row (its own DAG schedule is not measured separately)",
"twin": "as KAWPOW",
"split": {"mining": 100, "proving": 0, "source": "Firo's block reward splits between miners, masternodes and the development fund; the GPU's share is mining only (no proving income)"},
"own_claim": "as ProgPoW's: 1.1x to 1.2x on its premise",
"same_row_as": "rvn-kawpow",
"cells": {},
"adversary": {"status": "= KAWPOW's row", "board": null, "die": null, "premise": {}, "source": "as KAWPOW"},
"real_chip": null,
"phases": {"status": "= KAWPOW's row at a 100/0 split", "A": "as KAWPOW", "B": "as KAWPOW", "income_a_chip_cannot_earn": "no", "source": "as KAWPOW"}
},
{
"id": "ironfish-fishhash",
"chain": "Iron Fish",
"algorithm": "FishHash (live since hardfork 1, April 2024)",
"control": "ctl-fishhash",
"pin": "iron-fish/fish-hash 823531c002e78259759f8b1f36ac9121c32059b1 (cpp/FishHash.cpp; the spec FishHash.pdf sha256 869870b9...); the lab's CUDA implementation bit-exact with the library on 64 items and 256 hashes, fingerprint f841605125ce375e; gpu/fh_cuda, cpu/fh_cli; build-1:/srv/artefacts/lab/controls/fishhash/ (SHA256SUMS)",
"dataset_bytes": 4831835776,
"dataset_note": "37,748,717 items of 128 bytes, FIXED (no epochs); 96 random 128-byte reads per hash, 9,856 lane-instructions",
"twin": "yes (a trace replay of the kernel's own item indexes; its energy read as a bound: the twin runs 10 percent slower than the full kernel)",
"split": {"mining": 100, "proving": 0, "source": "Iron Fish's block reward is mining only"},
"public": {"block_reward": "17.25 IRON", "block_time": "61 s", "network_hash": "229.5 GH/s", "price_usd": "0.07", "source": "minerstat.com/coin/IRON, read 9 October 2026 13:3x UK (public figures, not measured by the lab)"},
"own_claim": "none as a chip-edge number; the Trail of Bits review (Iron Fish blog, 14 May 2024) is the published outside check",
"cells": {
"4090": {"status": "pending (COHORT, the ledger session); CONTROLS' rate-only read 19.73 MH/s at stock, no sampler", "nj": null, "mhs": 19.73, "w": null, "f": null, "twin_nj": null, "spread_pct": null, "clock": "stock", "pod": "CONTROLS' rented 4090 (rate only)", "source": "build-1:/srv/artefacts/lab/controls/fishhash/gpu/bench-4090.log", "note": "242 GB/s of 128-byte lines at that rate"},
"5090": {"status": "pending (COHORT, the ledger session); CONTROLS' rate-only sm_120 read 45.37 MH/s full, 39.71 twin, F1 PASS", "nj": null, "mhs": 45.37, "w": null, "f": null, "twin_nj": null, "spread_pct": null, "clock": "stock", "pod": "CONTROLS' rented 5090 (rate only)", "source": "build-1:/srv/artefacts/lab/controls/fishhash/ (fishhash.md)", "note": ""}
},
"adversary": {
"status": "WITNESS (modelled; the card's cell pending, so the ratio is pending)",
"board": {"low": 881, "nominal": 1051, "high": 1257, "design": "GDDR7 board + register file sized to the work + fused operations, N5; bandwidth-bound at 124 MH/s per board; 95 percent of the board's energy is the memory path", "split_nj": "memory 529 / ALU 46 / tax 503"},
"die": {"nominal": 170, "design": "full SRAM dies (three N2 reticles) + sized + fused operations"},
"premise": {"4090": "pending (needs the measured f from the twin)", "5090": "pending"},
"source": "build-1:/srv/artefacts/lab/adv/rows/ctl-fishhash.json and rows.md (set v3)"
},
"real_chip": null,
"phases": {"status": "WITNESS, the chain's own units, the 100/0 split, the same life, design cost, fleet rule and price paths as v6; the GPU side of phase B NOT RUN until COHORT's card rows", "A": "before investment: no fleet from 100 to 100 M machines recovers a board chip's spend on any path; Iron Fish's whole mining emission over 24 months is about USD 1.4 M at the public price (10,000 boards would take 84 percent of the hash for USD 1.1 M to 1.6 M)", "B": "spend sunk, mining only: mining revenue USD 0.086 per TH of the chain's own hashes; the board chip's recurring cost USD 0.043 per TH at ten cents; the GPU side NOT RUN until the card cell lands; no prover income by construction", "income_a_chip_cannot_earn": "no", "source": "docs/analysis/class-v6/1p5x/lab/adv/v3/ctl-fishhash-coexistence.json, ADVERSARY commit d7db3e596 on class-v6-adversary"}
},
{
"id": "etc-etchash",
"chain": "Ethereum Classic",
"algorithm": "Etchash (Ethash with ECIP-1099's 60,000-block epochs; live since block 11,700,000, November 2020)",
"control": "ctl-etchash (new for the ledger)",
"pin": "a CUDA hashimoto over the pinned chfast/ethash v0.8.0 library's light cache and the ProgPOW repo's reference DAG generator (libethash objects), checked against ethash::hash on the CPU at block 0 and at the live epoch (F1: GPU = CPU on both nonces); gpu/etchash_cuda (`check <block> <nonces>`, `bench <block> 22 250`, `bench <block> 22 250 twin`), cpu/etc_ref; build-1:/srv/artefacts/lab/controls/etchash/ (SHA256SUMS; etchash.md)",
"dataset_bytes": 4638898816,
"dataset_note": "ETC height 25,502,946 (read 12:5x UK) = Etchash epoch 425 (ECIP-1099: height / 60,000), the harness's block argument 12,750,000 (the Ethash epoch with the same size table index); 64 coalesced 128-byte reads per hash (two 64-byte half-mixes); CONTROLS' rate-only read on a 4090 at stock 29.90 MH/s full and 29.90 twin (memory-bound)",
"twin": "yes, by construction",
"split": {"mining": 100, "proving": 0, "source": "ETC's block reward is mining only"},
"public": {"block_reward": "2.048 ETC", "block_time": "16 s", "network_hash": "120.9 TH/s", "price_usd": "8.24", "source": "minerstat.com/coin/ETC, read 9 October 2026 13:3x UK (public figures, not measured by the lab)"},
"own_claim": "none; the chain accepts chips (the Antminer E9 Pro mines it)",
"cells": {
"4090": {"status": "pending (COHORT, the ledger session; the harness staged 13:0x UK); CONTROLS' rate-only read 29.90 MH/s", "nj": null, "mhs": 29.90, "w": null, "f": null, "twin_nj": null, "spread_pct": null, "clock": "stock", "pod": "CONTROLS' rented 4090 (rate only)", "source": "build-1:/srv/artefacts/lab/controls/etchash/ (etchash.md)", "note": ""},
"5090": {"status": "pending (COHORT, the ledger session; the sm_120 build from etchash/src)", "nj": null, "mhs": null, "w": null, "f": null, "twin_nj": null, "spread_pct": null, "clock": "stock", "pod": "pending", "source": "pending", "note": ""}
},
"adversary": {
"status": "WITNESS (modelled; the card cells pending, so the ratios are pending)",
"board": {"low": 638, "nominal": 765, "high": 919, "design": "GDDR7 board + register file sized to the work + fused operations, N5; USD 3.25 per MH/s", "split_nj": "per ledger-rows.md"},
"die": {"nominal": 177, "design": "N2 full-SRAM die, the coexistence row"},
"premise": {"4090": "1.10x to 1.20x (the premise's own figure; the twin row makes it measured)", "5090": "1.10x to 1.20x (the premise's own figure)"},
"source": "docs/analysis/class-v6/1p5x/lab/adv/v3/ledger-rows.md and ledger-rows.json (class-v6-adversary 47f16b86f, wording 82330b04c)",
"calibration": "the modelled same-node DRAM board 765 nJ per hash against the Antminer E9 Pro's 598 from its public figures: the model reads 1.28x PESSIMISTIC for the chip (it gives the chip more energy than the one real chip spends); a witness, never a ceiling"
},
"real_chip": {
"name": "Bitmain Antminer E9 Pro",
"mhs": 3680,
"w": 2200,
"nj": 597.8,
"status": "WITNESS (a manufacturer's published figure, not measured by the lab)",
"source": "Bitmain's stated figures as listed on minerstat's hardware page (https://minerstat.com/hardware/antminer-e9-pro): 3.68 GH/s on Ethash at 2,200 W, release 2023-02; 2,200 W / 3,680 MH/s = 0.598 J per MH = 598 nJ per hash",
"note": "the ONE live GPU-mined chain with a chip on the market; the modelled board (765 nJ) sits beside it: 1.28x pessimistic for the chip"
},
"phases": {"status": "WITNESS, the chain's own units, the 100/0 split, the same life, design cost, fleet rule and price paths as v6; the GPU side of phase B NOT RUN until COHORT's card rows", "A": "before investment: no fleet from 100 to 100 M machines recovers a board chip's spend on any path; ETC's whole mining emission over 24 months is about USD 83 M at the public price, but 10,000 boards are 2 percent of 120.9 TH/s and earn USD 1.0 M to 1.5 M, and 100,000 boards (13 percent) USD 9 M to 13 M against a USD 150 M spend", "B": "spend sunk, mining only: mining revenue USD 0.0087 per TH of the chain's own hashes, below even the modelled board's recurring cost (USD 0.031 per TH) and below the E9 Pro's own electricity at ten cents (598 nJ = USD 0.017 per TH): at the public figures nobody mines ETC at a profit at ten cents and phase B is a loss on both sides; the GPU side NOT RUN until the card cell lands", "income_a_chip_cannot_earn": "no", "source": "docs/analysis/class-v6/1p5x/lab/adv/v3/ctl-etchash-coexistence.json, ADVERSARY commit d7db3e596 on class-v6-adversary"}
},
{
"id": "ergo-autolykos2",
"chain": "Ergo",
"algorithm": "Autolykos2 (k = 32, n = 26, Blake2b-256; the table grows 5 percent every 51,200 blocks)",
"control": "ctl-autolykos (new for the ledger, landed 13:1x UK)",
"pin": "the published text ergoplatform/ergo master 3a6b00d3, AutolykosPowScheme.scala (sha256 330ae870...; the copy in src/), implemented in-house: CPU reference src/autolykos_ref.py (hashlib's Blake2b, lazy elements), GPU gpu/autolykos_cuda (`check <height> <N> <count> < fixtures`, `bench <height> <N> 20 250`, `bench ... twin`; sm_89, the sm_120 build from src); F1 at N = 65,536 and at the live table: elements 0 and last, 64 hits and the 256-hit fingerprints equal the reference's (f3cf1fd34d1002fa small, b6d07a7b15956179 live); build-1:/srv/artefacts/lab/controls/autolykos/ (SHA256SUMS; autolykos.md). CAVEAT on the row: the fixtures are the lab's own from an independent implementation of the published text (the reference repository has no known-answer v2 hit vector); the end-to-end check against a live Ergo block is owed, not claimed",
"dataset_bytes": 7272058080,
"dataset_note": "the live table at Ergo height 1,890,820 (api.ergoplatform.com, 13:0x UK): N = 227,251,815 elements of 32 bytes (+5 percent at height 1,894,400; the row names its height); 33 random 32-byte reads per hash; the table builds on the device in 1.5 s; CONTROLS' rate-only read on a 4090 at stock 216.2 MH/s full, 201.8 twin",
"twin": "yes (a trace replay)",
"split": {"mining": 100, "proving": 0, "source": "Ergo's block reward is mining only"},
"public": {"block_reward": "3.009 ERG", "block_time": "120 s", "network_hash": "569.1 GH/s", "price_usd": "0.29", "source": "minerstat.com/coin/ERG, read 9 October 2026 13:4x UK (public figures, not measured by the lab)"},
"own_claim": "none on the record as a chip-edge number",
"cells": {
"4090": {"status": "pending (COHORT, the ledger session; the harness staged 13:1x UK); CONTROLS' rate-only read 216.2 MH/s full, 201.8 twin", "session": "pending", "nj": null, "mhs": 216.2, "w": null, "f": null, "twin_nj": null, "spread_pct": null, "clock": "stock", "pod": "CONTROLS' rented 4090 (rate only)", "source": "build-1:/srv/artefacts/lab/controls/autolykos/ (autolykos.md)", "note": ""},
"5090": {"status": "pending (COHORT, the ledger session; the sm_120 build from src)", "session": "pending", "nj": null, "mhs": null, "w": null, "f": null, "twin_nj": null, "spread_pct": null, "clock": "stock", "pod": "pending", "source": "pending", "note": ""}
},
"adversary": {"status": "pending (ADVERSARY: the chip rows from CONTROLS' trace; default 15:00 UK, else pending (adversary))", "board": null, "die": null, "premise": {"4090": "pending", "5090": "pending"}, "source": "pending"},
"real_chip": null,
"phases": {"status": "pending (ADVERSARY at the 100/0 split, the public line on the row)", "A": "pending (ADVERSARY)", "B": "pending (ADVERSARY); no prover income by construction", "income_a_chip_cannot_earn": "no", "source": "pending"}
}
],
"claim": {
"ordered_sentence": "the lowest measured chip-to-GPU edge of any live GPU network under a published method, on both conventions, and the only one whose GPUs earn income a chip cannot",
"headline_rule": "the headline reads only what the like-for-like rows support, clause by clause (main's ruling, 13:2x UK 9 October 2026); under the ledger's own convention the measured edge per chain on the same card and state is stated as numbers, with no ranking word until the rows say so after the ledger session",
"clauses": [
{"text": "under ProgPoW's own convention, the lowest measured chip-to-GPU edge of the chains on this ledger", "convention": "ProgPoW's premise (a chip that keeps a GPU-class datapath)", "state": "SUPPORTED on the current rows", "why": "Igneum v6 1.01x to 1.03x (its measured f 0.81 to 0.85) against ProgPoW's own 1.10x to 1.20x for KAWPOW and FiroPoW; FishHash and Etchash pending their twins"},
{"text": "under the ledger's convention (the cheapest credible programmable specialist, adversarial set v3), each chain's measured edge on the same card and state, as numbers", "convention": "ours", "state": "NUMBERS ONLY; no ranking until the ledger session (COHORT, both cards, every chain back to back, the pinned 0.9.4 kernel, twins; 14:45 UK)", "why": "the current cells come from different sessions (the lab's cohort pods for v6, the comparative lane's pod for KAWPOW) and a cross-chain comparison is made only between cells from the same card, state and session; at the RTX 4090 at stock the cells read v6 5.4x (5.67x on the second pod) and KAWPOW 3.9x (a proxy row from an earlier session); FishHash and Etchash pending"},
{"text": "and the only chain on this ledger whose GPUs are paid, by rule, an income a hash chip cannot earn", "convention": "phase B, each chain's actual reward split", "state": "LABELLED BY THE PROVING LIVE LANE", "why": "the proving share (20 percent ratified) is paid to GPUs for work a hash chip cannot do; every other chain on the ledger pays mining only; the live state of that income is the PROVING LIVE lane's evidence line"}
],
"withdrawn": "the earlier line 'KAWPOW and FiroPoW read 5 to 6x on the measured 4090 rows and v6 reads 2.35x' is withdrawn: it compared v6 at the 5090's 1,300 MHz knee with KAWPOW at the 4090 at stock, two cards and two states; the like-for-like cells are the ones on this ledger",
"proving_live_label": "LIVE ON DEVNET, on-chain records (the PROVING LIVE lane, read 11:50:22Z 9 October 2026): on chain id 4465 (the Igneum 2.0 devnet) 663 paid v1 segment records (8 shards plus aggregation each) = 653.93 IGN paid from the proving pool to 30 distinct prover keys across chain blocks 3,000 to 30,687 (tip 31,719 at the read), plus 6,474 paid v0 shard records = 7,196 IGN; read by igneum_getProvingStatus, igneum_getSegmentRecords (3,965 segments) and igneum_getSegment; evidence build-1:/srv/artefacts/proving-live/prov-ledger-4465-tip31719-115022Z.json sha256 bd3f53c18c3ffa20354ea62ade9fd5e7a5794202a71c3c369a5be71484f7143a. NOT YET LIVE IN A SHIPPED PACKAGE: the payees are the fleet's prover stack (the same binaries the 2.0.3.1 HiveOS package wraps, cut 18:00 UK); the apps' prover is on by default on 24 GB cards but no app-proved record is on the record yet; a full-epoch line follows by 16:00 UK"
}
}

View file

@ -1,236 +0,0 @@
# X0: the latest model reconciled with the exact frozen software (the 1.5x programme, 9 October 2026, 10:0x UK)
The adversary lane with the hash lane's pins (its line of 09:58 UK, every closing report staged with its sha256 at
build-1:/srv/artefacts/tas/x0-pins/<job id>.report.txt, SHA256SUMS.txt beside them; the recipe every X lane reads,
build-1:/srv/artefacts/1p5x/gpu-row-recipe.md sha cbab453c). The brief: the founder's
igneum-1p5x-experiment-brief.md (sha256 74ee073286d4a6e2…, landing under docs/plans/igneum-2.0-master/1p5x/). This
file reconciles every served and placed chip figure with the software and the measurements it rests on, names the
assumptions that differ between the served 1.9x to 2.1x hybrid line and the placed 2.4x line, and states the r0 the
programme uses with its range. Nothing here is a new measurement; no PASS is claimed.
## 1. The frozen control, as pinned
| Pin | Value | Read back | Label |
|---|---|---|---|
| The generator tree | class-v6 at 1a938abe4 (on branch class-v6, tip 755c2dbcf), generator 6, ProgramClass::V6, class string mx8-erad810f22d+sh256x27+state+reg64c+fold+rw, layer 8 ON, class_v6_family_flags 0xf, CLASS_V6_FLAG_NOWIN (1<<4) defined and off | the fingerprint recipe run on build-1 at 09:34 UK: 5f4d6dc6199294db89042171004e6420c1e5791e716d4b39b73d375818c10b6f, equal to the brief's | read back |
| The dataset policy | 70a6c703 (4 GiB at genesis, no later step) | F0's dataset row | pinned by F0 |
| The signing id | 2a1d6caab4c24564 at (epoch seed af89be5d, era edc4fa84, day 20730, state abb58003) | F0's freeze-candidate row | pinned by F0 |
| The research pairing (never the freeze) | hl-v6-all, id 0x4de7b836cc40a4ea (the genesis seed over node1's state) and the l8off kit's export 0x9d40978601a7df2a (era edc4fa84, day 20730, the node1 state) | the hash lane's line | pinned |
## 2. The GPU side: every figure, its software, its boundary, its state
Every figure is the three-card Windows rig's RTX 5090 (or 5080) alone through the runner's cards-off; power is
nvidia-smi board power.draw sampled at 1 Hz, the row's watts the sampler's mean from 8 s in to the end of the timed
dispatches, idle NOT subtracted (the microbench rows are the one exception, residency-subtracted); no wall meter
anywhere; fingerprints equal at every state. No GPU figure carries layer-8-off or a result compaction.
| Figure (as served) | Job and report sha256 | Software by sha | Pack | State | Where it is used |
|---|---|---|---|---|---|
| The 5090 at its 1,300 MHz lock: 134.764 MH/s at 312.5 W, 2.319 microjoules per hash (served as 2.33) | run-ca3-pc1-v4-eff-5090-20261007-b (7 Oct 18:40 to 19:16Z), report ead72106… | the installed app's igneum-worker-cuda.exe d7a413c7… (0.3.20); kit igneum-ca3-v4-sub3-pc1-kit.zip 1d441f5a… (program.json a746c924…, program.h 18bca6be…, kernel.cu 80e92839…) | v4-devnet-epoch0, the Devnet 3 epoch 0 class v4 program, fingerprint e370fb2080b7dbb1; 491 batches of 2^24 | the knee | the numerator of every served chip ratio (the "served convention") |
| The class v5 control at the lock: v5-genesis 125.932 MH/s at 299.8 W against v4-genesis 125.924 at 294.0 (+2.0 percent watts) | run-ca3-pc1-v5lock-5090-20261008-b, report 0f444306… | the class v5 kit's worker | v5-genesis, v4-genesis | the knee | denominator.md's +2 percent (the 2.37 row) |
| The class v6 control on the frozen tree at the lock: hl-v6-all 70.306 MH/s at 282.0 W (4.011 microjoules); stock 70.526 at 412.0 (5.842) | run-ca3-pc1-l8off-5090-20261008 (9 Oct 02:52 to 03:00Z), report 05f00bd8… | the l8off kit igneum-ca3-l8off-kit-20261008.zip c20999d1…, CUDA worker 218ca414…; fingerprint 59e6708e46f1e87c; 250 batches | hl-v6-all 0x9d40978601a7df2a (the frozen class at the research pairing) | both | NOT yet in any served chip ratio (section 4) |
| The 5080 at its 1,100 lock: 71.201 MH/s at 146.6 W, 2.059 microjoules | run-ca3-pc1-v4-eff-5080-20261007-d (8 Oct 00:45 to 01:54Z), report 6acec71d… | the same worker d7a413c7…, the same pack | v4-devnet-epoch0, e370fb2080b7dbb1 | the knee | the 5080 column |
| The cohort rows (14 rented card classes, stock only) | the fleet lane's rows.jsonl; denominator.md sha a4ec182a… on master | per row | per row | stock | the cohort column (count-weighted about 3.6 microjoules, approximate) |
| Layer 8 off (register row 18, CLOSED 04:49 UK): hl-v6-all against hl-v6-all-nowin 0xec0c3757f8caef4a: stock 70.526 / 412.0 W against 70.209 / 417.2 (rate -0.4, joules +1.7 percent); lock 70.306 / 282.0 against 66.303 / 275.5 (rate -5.7, joules +3.6); the v5 pair the same way, +5.7 percent at the lock | the same job, report 05f00bd8…; the row document docs/analysis/class-v6/rows/pc1-l8off-ds2g-20261009.md sha fb2d5686… (master ac2f143c) | the l8off kit | the four packs | both | the D2 row: performed and closed, the layer stays ON |
| The microbench per-op rows (int_arx 11.3 pJ stock, 6.2 at the lock; the class v4 draw read as 10.3 pJ per op at the lock from the packs job's 10.8 / 6.4) | run-ca4-pc1-microbench-5090-20261008-c (8 Oct 05:15 to 05:56Z), report 62dbb138…; the 10.3 is counter-asic-4-research.md's reading (sha 82af4424…) | igneum-worker-cuda-ca4mb.exe 49aa60c4… | 20 probes x 60 s at full residency | both | the denominator of every per-family k |
A caveat the hash lane names: since 14:2x UK on 8 October the rig's 5090 reads about 13 percent under the morning
(the enclosure swap), so pairs inside a job are the figures and a job's absolutes are not compared with 7 October's.
The served 2.33 microjoules is a 7 October absolute; the frozen-tree control is a 9 October job. Section 4 carries
what that does to r0.
## 3. The chip side: every figure, its software, its boundary, its node
| Figure | Software by sha | What it is | Boundary | Node scaling |
|---|---|---|---|---|
| The placed 8-lane 18-family core: 9.36 pJ per lane-op on the class v4 draw at ASAP7 (8.6 to 11.1), 6.55 at N5, 4.72 at N3 | class-v6-adversary 43c9f7cd8: tools/chip-model/mf (RTL core_mf.v, the flow, results/table.csv), docs/analysis/class-v6/multi-family-adversary.md (landed e3d0208d) | ORFS on ASAP7 (Yosys 0.68, OpenROAD, the orfs docker image), placed and routed with SPEF, OpenSTA power under a gate-level VCD of a random-input simulation; the register window a FakeRAM2.0 64x256 macro per 8 lanes whose dynamic energy is MODELLED (3.5 pJ per access, 2.0 to 7.0) | the core only: no memory controller, no PHY, no host; the machine terms are board.py's (section 5) | ASAP7 to N5 x0.70, to N3 x0.50 (TSMC's claimed per-node reductions at the same speed) |
| The placed 32-lane 18-family core: 9.54 pJ (8.9 to 11.0), 6.68 at N5 | the same; parasitics from the global route, calibrated within 1 percent of SPEF on the 32-lane genesis core; the detailed route did not converge (the fault, multi-family-adversary.md section 14) | | | the same |
| The program the chip rows execute | the testbench's draw with the class v4 WEIGHTS (add 12, xor 10, mul 8, mad 8, shfl 8, rotl 7, sub 6, mulhi 6, rotr 6, or 4), NOT the frozen tree's drawn program: the chip rows are per-op energies by family under the draw's weights; the frozen program's op counts (102,100 shadow ops, 512 base, 128 loads, W = 1) set the per-hash sum | | | |
| The memory system | chip-model-v3.md 5.3 and 5.5 (the GDDR7 board: 2.0 nJ per random read, 1.5 to 2.6; 21.3 G activates per second, the 5090's 82 percent as the sustained fraction; 20 W static, 15 W controller; USD 320 of devices), the N2 SRAM die (floor lane 3, 0.25 nJ per read at W = 1) | modelled on claimed device figures | the devices, controller and PHY | the memory does not scale with the core's node |
| The hybrid's hit rate | adv-cache-2's window-layer distribution on Devnet 3's programs (the hottest half of the items serves 0.7188 of reads: the p98 program), the hash lane's census reconcile (the mean over programs 0.581, coexistence-model.md line 537), census-packs.md's flat-control ratio 1.1 to 1.7x (sha 146b578c…) | measured on programs of the class v5 and v6 crates, the window model as the null | | |
| The complete machine | tools/chip-model/mf/flow/board.py: PSU 92 percent, VRM 90 percent, cooling 3 percent, one full node per 100 machines (85 W, USD 1,500), board and assembly USD 200, the core die sized to the memory's sustained rate | approximate allowances | the wall of the machine, less the host's share | |
## 4. The reconciliation, line by line
### 4.1 The served 1.9x to 2.1x hybrid against the placed 2.4x hybrid
Both are the stored-half hybrid (1 GiB of SRAM beside the 16 GDDR7 devices) against the 5090 at its lock, same
node. They differ in four assumptions, each named:
| Assumption | The served line (10.0r, "about 2.4x") | This lane's placed line (1.9x to 2.1x) | Which the programme uses |
|---|---|---|---|
| The hit rate of the hottest half | 0.72 (adv-cache-2's p98 program) | 0.581 (the hash lane's reconciled mean over programs) for the 1.93x; 0.72 for the 2.09x | the mean, 0.581: the p98 is the tail, carried beside it |
| The core's energy | the synthesised 8-lane core (4.61 pJ at N5) scaled by the first placed genesis core's factor | the placed 8-lane 18-family core itself, 6.55 pJ at N5 | the placed row |
| The machine terms | the board identity (2.33 over 0.466 + the shadow) with the hybrid's memory term, no power train | the complete machine: PSU, VRM, cooling, the host share, the sustained derate | the complete machine (the review's evidence standard) |
| The node | N5 node-for-node | N5 node-for-node | the same |
So the 2.4x is the synthesised core at the tail hit rate on the board identity, and the 1.9x to 2.1x is the placed
core at the mean and the tail on the complete machine; the two agree once the three assumptions are aligned
(section 13 of multi-family-adversary.md: 1.93x at 0.581 placed, 2.09x at 0.72 placed; 2.69x at 0.72 synthesised
on the board identity, the 10.0q figure). The programme's hybrid r0 is the placed, complete-machine, mean-hit
figure.
### 4.2 The window-conditioned 72 percent against the flat control, as the brief states it
The brief reads: the hottest half serves 72 percent because the window model concentrates traffic, and a flat
distribution would give 50 percent. The record's reading (census-packs.md section 3): the 72 percent is the p98
program on the window-conditioned null, the mean over programs is 0.581, and a flat control sits at 1.1 to 1.7x of
the window model's top-0.1-percent share (printed beside the census, not used). The layer-8-off experiment is
PERFORMED and CLOSED (register row 18): with the windows removed the hit of the hottest half is exactly 0.50 at
every program (multi-family-adversary.md section 13 (5)), and the honest side at the knee loses 5.7 percent of rate
and 3.6 to 5.7 percent of joules, so the layer stays ON. The chip-side arithmetic of the brief's conditional cache
calculation holds (misses 0.50 against 0.419 at the mean, +19 percent of DRAM reads; against 0.28 at the tail, +79
percent) and the placed rows say what it buys: the hybrid at hit 0.50 reads 1.85x against 1.93x at the mean and
2.09x at the tail, 4 percent at the mean, 11 at the tail; the honest side pays more than that at the knee. X1 is the
new-consensus-version form of the same question (a class v7 shape without the fixed windows, everything else
frozen) and its traces replace this arithmetic on the hybrid rows when they land.
### 4.3 Layer-8-off and compaction in any figure
Layer 8 off is in NO served or placed figure (every GPU row and every chip row above carries the windows ON; the
hit-0.50 row is a labelled variant). Result compaction (X2) is in NO figure on either side.
### 4.4 The wall-power boundary, both sides
The GPU side's boundary is the card's board power (nvidia-smi, 1 Hz, idle not subtracted), the card alone through
cards-off: it excludes the host, the PSU's loss and the fans' share beyond the card's own. The chip side's boundary
is the complete machine (the core, the memory, the controller and PHY, PSU and VRM losses, cooling, the host's
share). The two are not the same boundary: the GPU's host, PSU loss and case fans are NOT in its 2.33, while the
chip carries about 21 percent of power-train loss, 3 percent of cooling and 0.85 W of host. The reconciliation the
programme should carry: either add the GPU's own machine terms (a mining rig's PSU at 92 percent and its host share,
about +10 percent on the card's figure, approximate) or read the chip at the board identity; the first is the honest
one and moves every served ratio up by about 0.1x. It is NOT applied in this file's r0 (the served convention is
kept so every row stays comparable); it is the first of the three assumptions below.
### 4.5 The node scaling applied
Every chip row is stated at ASAP7 and scaled by claimed factors: N5 (the 5090's class, "same node") x0.70, N3 ("a
node ahead") x0.50, N2 x0.36. The served sentence's "2.0x on the GPU's own node" is the N5 column; "2.2x to 2.4x"
the N3. The memory terms do not scale. The GPU side is measured at its own node and never scaled.
## 5. The r0 the programme uses
| Opponent (complete machine, placed core, same node N5) | r0 | Range | Source rows |
|---|---|---|---|
| The pure DRAM board | 1.5x | 1.3x to 1.7x (the SRAM access band and the memory band) | multi-family-adversary.md section 6 at the placed energy; the 32-lane core the same |
| The stored-half hybrid at the mean hit 0.581 | 1.93x | 1.65x to 2.12x | section 13 (placed) |
| The stored-half hybrid at the tail hit 0.72 (the 10.0q case) | 2.09x | 1.78x to 2.29x | section 13 (placed) |
| The N2 SRAM die | 2.3x | 2.0x to 2.7x | section 6 at the placed energy |
**The reconciled r0 the programme uses is the worst credible opponent's: the pure DRAM board at 1.5x (1.3x to
1.7x) same-node; the hybrid at 1.93x (1.65x to 2.12x) is the X5 sweep's starting row and X1's target.** The
yardstick from 1.5x to 1.5x is nothing; from the hybrid's 1.93x, a 22 percent GPU cut or a 29 percent specialist
rise. A node ahead: the board 1.8x (1.5x to 2.0x), the hybrid 2.4x (2.05x to 2.63x).
The three assumptions most likely to move r0:
1. The boundary mismatch (4.4): putting the GPU's own PSU loss and host share into its figure moves every ratio up
about 0.1x (the board to about 1.6x, the hybrid to about 2.1x), approximate.
2. The frozen-tree control against the class v4 numerator: the served 2.33 is class v4 on a 7 October job; the
frozen class v6 object reads 4.011 microjoules at the lock on the l8off kit's export at the research pairing (a
9 October job on a card reading 13 percent low). The chip's shadow at class v6's op count is the same core on
102,612 ops; if the honest card's class v6 energy per hash is 4.0 against the chip's 1.53, the board ratio reads
2.6x and the hybrid 3.3x, which is the number the programme must reconcile first: either the class v6 object
costs the 5090 1.7x what class v4 did (then the chip's shadow op count for class v6 must be re-read from the
frozen program, not from class v4's 102,100) or the l8off job's absolute is the enclosure-swap artefact. The
hash lane's paired control (class v4 and class v6 in one session on one card, same kit) decides it; until it
lands r0 stays on the class v4 pair.
3. The SRAM macro's access energy (the one modelled chip term; 2.0 to 7.0 pJ per access gives the band's width) and
the hybrid's hit rate (0.50 with the windows off, 0.581 mean, 0.72 tail).
## 5a. The decider in (the hash lane, 09:59 UK): assumption 2 is real, and what it does to r0
One session on a rented RTX 5090 (Vast 54992886, driver 580.105.08, the gen-6 Linux CUDA worker sha 804a6f7f…, 250 batches of
2^24 per pack, board power at 1 Hz, mean from 8 s in, idle not subtracted, stock only; evidence
build-1:/srv/artefacts/tas/x0-pins/x0-run-fk-5090c/, run-x0.log sha 9bc40685…, smi.csv 7ab9f16f…): class v4 v4-devnet-epoch0
(0xa785001687d8688a, fingerprint e370fb2080b7dbb1) 141.963 MH/s at 500.0 W = 3,522 nJ per hash; the frozen class v6 hl-v6-all
(0x9d40978601a7df2a, 59e6708e46f1e87c) 70.900 at 445.1 W = 6,278 nJ; the signing object hl-v6-all-cs (0x2a1d6caab4c24564,
01f51b9d4805e5e6) 70.650 at 457.1 W = 6,470 nJ. Class v6 over class v4: 1.78x and 1.84x in joules per hash, 2.00x in rate; the
house 5090's own pair 1.68x at stock and 1.73x at the 1,300 MHz knee (2,319 against 4,011 nJ). So the served numerator (2.33
microjoules, class v4) understates the frozen object's card cost by about 1.7x, and the only class v6 lock row is 4.01
microjoules per hash on the house 5090.
What it does to r0: the chip must be paired with the card on the same program. X4's read of the exported texts (10:0x UK)
gives the frozen object 256 loads per hash against class v4's 128, so the card's doubled cost per hash is doubled work, and
the chip's memory term doubles with it while its shadow (carried at class v4's 102,612 ALU ops until the hash lane's count lands)
does not. On the consistent class v6 pair (the card 4.011 microjoules at the knee, the chip at 256 loads) every ratio moves UP,
not down: X5's sweep (section 2, pair B) reads the DRAM board 1.85x (1.5x to 2.1x), the stored-half hybrid 2.53x, the N2 die 4.0x
(3.4x to 4.4x) same-node. The earlier worry (a 1.7x structural card cost the chip does not share) is not what the data say: the
cost is loads, which the chip pays too. The programme's r0 is therefore pair B's, with pair A (the served class v4 convention:
the board 1.5x, the hybrid 1.93x, the die 2.44x) kept as the served convention's row until the ALU count lands:
| Opponent, same node | r0, pair A (class v4: the card 2.319, 128 loads) | r0, pair B (the frozen object: the card 4.011, 256 loads, the shadow at class v4's count) | Source |
|---|---|---|---|
| The pure DRAM board | 1.5x (1.3 to 1.7) | 1.85x (1.5 to 2.1) | X5's sweep on the placed core |
| The stored-half hybrid, mean hit | 1.93x (1.65 to 2.12) | 2.53x | the same |
| The N2 SRAM die (the worst credible design) | 2.44x (2.05 to 2.66) | 4.0x (3.4 to 4.4) | the same |
The hash lane's per-family count (10:11 UK): the frozen object executes 62,120 ALU instructions per hash (loads 256, the base
1,024, the per-load address path 5,376, the shadow 55,296 unchanged, the reg64 init and fold 168); class v4 about 56,300; the card
halves its rate on the read count, which the chip pays too. That settles assumption 2 and opens the largest term of all: every
placed chip row charges the chip 102,612 ops per hash (the record's counted-op convention, from which the card's 0.652
microjoules reads 6.4 pJ per counted op), but the chip executes one instruction per lane-op, so at the instruction count its
shadow energy is 0.36 to 0.41 microjoules instead of 0.67 and every ratio rises by 1.3x to 1.6x (X5 section 2: the board 2.05x
and 2.2x, the die 4.3x and 6.3x same-node on the two pairs). Both counts are carried until the hash lane defines the counted op
(asked 10:1x UK, default 10:45); the instruction count is the chip's physics and the default.
## 5b. The amendment (the coordinator's order, 10:1x UK; every row WITNESS E_D): the frozen object's own numerator, the instruction count, the measured hits
Two facts change every chip ratio. (1) The decider (5a): the frozen class v6 object does twice the random dataset reads per hash of
class v4 (256 against 128) with 9 to 10 percent more ALU (62,120 instructions against about 56,300; the hash lane's per-family
read of the signing object, 10:11 UK); the card pays 1.78x to 1.84x the joules per hash at stock on the rented 5090 and 1.68x at
stock / 1.73x at the knee on the house 5090. (2) The units fault (the hash lane, 10:13 UK, from the record's own units table,
attack-pass/f1-shadow.md section 1 and shadow-k.md section 1): the record's "counted op" is unit B, the GPU's micro-op tally (add
5, rotr 2, shfl 2, every other family 1: 1.83 per shadow instruction), so the 102,100 counted ops per class v4 hash are 55,296
instructions; the chip executes one instruction per lane-op and its k was derived per instruction (algorithm.md 5.3), so every
placed row that multiplied 102,612 counted ops by a per-instruction chip energy (chip-model-v3's re-reads, the design document's
10.0r, this lane's sections 4, 6, 13 of multi-family-adversary.md and X5's first tables) overstated the chip's shadow term by
1.85x. The record's own gate unit is the instruction (unit A); the chip datapath count (unit C, rotates as wiring, the constants
hoisted) is lower still, about 50,100 per class v4 hash.
Recomputed on the placed 8-lane 18-family core's per-family energies (ASAP7 placed with SPEF, N5 x0.70, N3 x0.50, claimed)
weighted by the frozen object's own per-family instruction counts: the chip's ALU energy per hash 0.312 microjoules at N5 (0.280
to 0.388; 0.231 at unit C with the rotates as wiring), 0.225 at N3; 5.05 pJ per instruction at N5 (3.64 at N3). The GPU numerator
is the frozen object's own measured joules per hash: the house 5090 at the 1,300 MHz knee 4.011 microjoules (run-ca3-pc1-l8off-5090-
20261008, hl-v6-all, the only class v6 lock row; the card alone, nvidia-smi board power at 1 Hz, idle not subtracted); at stock
6.470 (the signing object on the rented 5090, x0-run-fk-5090c). The board-power boundary excludes the rig's PSU loss and host,
which the chip's machine carries; the wall-meter column adds 10 percent to the card's figure for them (approximate, unmeasured).
The hybrid's hit rate is the measured one for the hottest half: 0.56 on the signing object, 0.61 the mean over programs (the
quarter and three quarters scaled by the same ratio); 0.72 is the p98 tail and is not used. 256 loads per hash on both sides.
Nothing here is a chip measurement; every row is a modelled witness; no pass and no fail is claimed on these lines.
| Opponent (WITNESS E_D, complete machine) | microjoules per hash, same node (band) | USD per MH/s | Knee, same node, hit 0.56 (signing) | Knee, same node, hit 0.61 (mean) | Knee + the wall-meter term (+10 percent on the card) | Stock, same node | Knee, a node ahead | Stock, a node ahead |
|---|---|---|---|---|---|---|---|---|
| The pure DRAM board | 1.707 (1.516 to 2.112) | 8.91 | 2.35x (1.90 to 2.65) | 2.35x (1.90 to 2.65) | 2.58x (2.09 to 2.91) | 3.79x (3.06 to 4.27) | 2.51x (2.02 to 2.83) | 4.05x (3.26 to 4.57) |
| The hybrid, the hottest quarter | 1.362 (1.222 to 1.679) | 7.02 | 2.86x (2.32 to 3.19) | 2.94x (2.39 to 3.28) | 3.24x (2.63 to 3.61) | 4.75x (3.85 to 5.29) | 3.20x (2.59 to 3.58) | 5.16x (4.18 to 5.77) |
| The hybrid, the hottest half | 1.077 (0.973 to 1.322) | 5.11 | 3.49x (2.84 to 3.86) | 3.73x (3.03 to 4.12) | 4.10x (3.34 to 4.54) | 6.01x (4.89 to 6.65) | 4.15x (3.36 to 4.60) | 6.69x (5.43 to 7.42) |
| The hybrid, the hottest three quarters | 0.894 (0.811 to 1.094) | 3.77 | 4.03x (3.29 to 4.45) | 4.49x (3.67 to 4.95) | 4.94x (4.03 to 5.44) | 7.24x (5.91 to 7.98) | 5.11x (4.16 to 5.64) | 8.25x (6.71 to 9.11) |
| The full SRAM die (one N2 reticle) at 1 kW | 0.513 (0.464 to 0.622) | 0.68 | 7.81x (6.45 to 8.65) | 7.81x (6.45 to 8.65) | 8.60x (7.10 to 9.51) | 12.60x (10.41 to 13.95) | 10.01x (8.22 to 11.13) | 16.15x (13.26 to 17.95) |
| Recomputation | 7.000 (6.459 to 8.238) | 7.74 | 0.51x (0.44 to 0.55) | 0.57x (0.49 to 0.62) | 0.63x (0.54 to 0.68) | 0.92x (0.79 to 1.00) | 0.77x (0.66 to 0.84) | 1.25x (1.06 to 1.35) |
The one sentence: at the frozen object's own numerator and the instruction count, the pure DRAM board as a complete machine sits
ABOVE 1.5x by 0.85x (2.35x same-node at the knee, band 1.90x to 2.65x; 2.58x with the wall-meter term; 3.79x at stock; 2.51x a node
ahead), the stored-half hybrid at the measured hit 3.5x to 3.7x, and the N2 SRAM die, the worst credible design and the
programme's a (0.513 microjoules per hash, 0.464 to 0.622), 7.8x; the earlier 1.5x read was two errors in the honest side's
favour (class v4's numerator against a class v6 chip, and the GPU's micro-op tally charged to the chip), not the chip's cost.
What this means for the yardstick: r_new = r0 x g / a from the board's 2.35x needs a 36 percent GPU cut at a = 1 (a 15 plus 20
split reaches 1.66x); from the die's 7.8x no candidate within the brief's arithmetic reaches 1.5x on energy, which puts the
die's hold where the coexistence model put it (its dollars and its project), and the per-joule target at the board. X5's rows
and X6's blind run follow this line; the served energy sentence should not be re-worded from this file (the panel reads it).
## 6. BLOCKED rows
| Row | Why | Owner |
|---|---|---|
| The class v6 paired control at the lock (the rented pod refuses the clock lock; the stock pair is in, section 5a) | stock done 09:59 UK; the knee pair is the house 5090's 1.73x | the hash lane |
| The definition of the record's "counted op" | CLOSED 10:13 UK: unit B, the GPU's micro-op tally (1.83 per instruction); the chip's unit is the instruction (5b) | the hash lane |
| The chip's op count on the frozen program (the shadow's 55,296 writes in r0..r7, the base program's 512, the loads' 128 at W = 1: read from 1a938abe4's generator, not from class v4) | the chip rows use the class v4 draw's weights; the frozen program's per-family counts are owed | this lane, with the hash lane |
| The GPU's own machine terms (PSU, host) | not measured; approximate +10 percent | the hash lane (a wall meter on the rig) |
## 7. Sources
The hash lane's pin line (09:58 UK) and build-1:/srv/artefacts/tas/x0-pins/; the gpu-row-recipe.md (sha cbab453c…);
docs/analysis/class-v6/multi-family-adversary.md (master e3d0208d); docs/analysis/class-v6/coexistence-model.md (line
537); docs/analysis/class-v6/census-packs.md (sha 146b578c…); docs/design/class-v6-rotating-family.md 10.0h, 10.0i,
10.0q, 10.0r (sha 6eaf43bd…); docs/analysis/counter-asic-4-research.md 15.1a and 20.3 (sha 82af4424…);
docs/analysis/class-v6/floor/denominator.md (sha a4ec182a…); the register rows 18 and 105 to 126.

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@ -1,182 +0,0 @@
# X1: fixed-window removal as a versioned candidate (the class v7 shape), 9 October 2026
The 1.5x programme's X1 (the founder's brief, `docs/plans/igneum-2.0-master/1p5x/igneum-1p5x-experiment-brief.md`; the
matrix in `docs/plans/igneum-2.0-master/1p5x/README.md`). This document lands rows, tools and the candidate's identity.
Nothing activates: the frozen object keeps layer 8 on (`class_v6_family_flags` 0xf), the candidate is a research class
behind its own flag, and no row here is a PASS. Every figure below is printed by `tools/1p5x/x1/summarise.py` from the
row files under `rows/` (the command at the end). UTC in the rows, UK time in the prose.
## 1. The candidate and its identity
| Item | Value |
|---|---|
| Frozen control | class-v6 tree `1a938abe4`, generator 6, class `mx8-erad810f22d+sh256x27+state+reg64c+fold+rw`, igneum-pow/src fingerprint `5f4d6dc6199294db89042171004e6420c1e5791e716d4b39b73d375818c10b6f` (read back at the candidate's merge-base by this lane and by the hash lane, 09:49 UK) |
| Candidate | branch `1p5x-x1-v7` on the box mirror, sha `a99de07cded99a9daa0e5bbd1a6192783322347e` (parent `e4b6bb633`, parent `1a938abe4`) |
| Candidate fingerprint | igneum-pow/src `b9b5d0d1448bc9ce4003b119c66c5734c554c4a84e95b008476a02fb69ae2b54` (the recipe `cd igneum-pow && find src -type f \| LC_ALL=C sort \| xargs shasum -a 256 \| shasum -a 256`; pin confirmed by the hash lane) |
| Candidate class string | `mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat` (on the signing pair) |
| The one flag | `LoadClass::flat`, class suffix `+flat` (outermost), program-id literal `v7flat/`; NOT `+nowin` (layer 8 off, register row 18, closed) |
| What it changes | the window layer does not exist: no window draw is made, every load site has `win = 0, off = 0` and addresses the whole live dataset as `stride(e, x) & mask` (the frozen class's own product, fold and rotation); the family set, the fold, rw1, the state leaves, reg64c and the dataset policy `70a6c703` are the frozen class's |
| The diff | `igneum-pow/src/generator.rs` +39 (the field, `with_flat`, the suffix, the id literal, the draw guard), `accept.rs` (the acceptance shape sets the flag aside like `nowin`), `main.rs` +31 (`--flat` on the export path), `tests/v7flat.rs` (3 tests) |
| Pack shape | generator 6, `program_class` v6: the generator-6 readers (engine, CLI, CUDA, OpenCL, Metal gates) take it unchanged |
| Signing pair (epoch seed `af89be5d...`, era `0:edc4fa84...`, day 20730, node1 state `abb58003...`) | control `2a1d6caab4c24564` (attempt 0), candidate `34d0b421b17fe803` (attempt 1) |
| Packs | `build-1:/srv/artefacts/1p5x/x1/packs/x1-{ctrl,flat}-ds{28,30}.tgz` with sha256 files (ctrl-ds28 `69e009cd...`, ctrl-ds30 `7606c13d...`, flat-ds28 `020dbdc7...`, flat-ds30 `f25160bd...`); the kit lane's zip `packs-x1-20261009T085304Z.zip` (`88f5abf4...`) carries the same four byte for byte |
The export recipe (any epoch seed, era seed and day): `igneum-pow export --out <dir> --epoch-hex <epoch seed> --day-hex <day bytes> --program-class v6 --era-hex <era seed> --state <state stream> --dataset-log2 <28|30> --flat` (omit `--flat` for the control). The control export reproduces the hash lane's `hl-v6-all-cs` pack byte for byte (`kernel.cu` blake2b `c3ee55b0...`).
**What this candidate is, said plainly.** At the program level the class v7 shape is the address form of the closed layer-8-off row (`+nowin` zeroes the windows after drawing them; `+flat` never draws them), so the two differ in the draw stream and the id, not in what a load site reads. The GPU side was therefore expected to repeat register row 18; the new evidence X1 owes is the cache side.
## 2. Native correctness and generation availability
| Row | Result | Evidence |
|---|---|---|
| Crate check | `cargo check --all-targets` clean on build-9 (rustc 1.99.0) | `rows/suite-a99de07cd.log` |
| The pow suite | `cargo test --release --no-fail-fast` on build-9, EXIT 0, every binary green, `tests/v7flat.rs` 3 of 3 (the frozen class string and draw untouched; no window on any instruction of 64 accepted programs under 4 eras, every load `stride & mask` at 2^28 and 2^30; the frozen control keeps live windows) | `rows/suite-a99de07cd.log` |
| A fault found on the frozen tree, not the candidate's | `tests/derive.rs` `stats_beside_x8` overflows under `cargo test` WITHOUT `--release` (a debug-profile multiply at line 191) on `1a938abe4` itself; the gate runs release, where it passes | `rows/suite-a99de07cd.log` (the release run); the debug run's log on build-9 `/srv/builds/x1/logs/suite-e4b6bb633.log` |
| Same work, three contexts on the candidate's own pack | (1) the CLI export path (`--program-class v6 --flat`) draws `34d0b421b17fe803` attempt 1; (2) the class-string recipe (`--class ...+flat --era 0:...`, the census harness) draws the same id and attempt; (3) CUDA on the pack: the self-test PASS on all 32 runs (cache head, last line and FNV, dataset samples, 96 of 96 vector lanes against the CPU reference's vectors) and the 2^24 fingerprint equal on four cards of two architectures (`8cd11a827ac3ffe4` at 1 GiB, `18c4c6a80809c4b9` at 4 GiB); the kit lane's CPU emulation check on `x1-flat-ds28` PASS | `rows/cache/cache-flat-sign.txt`, `rows/cache/export-x1-flat-ds30.txt`, `rows/gpu/*/worker.log` |
| Generation availability | 64 accepted draws (chain-shaped seeds, era `edc4fa84`, 2^30): control 136.0 and 138.3 s, candidate 135.9 and 136.2 s (two runs each, build-9, one thread); the attempts over 256 seeds: control mean 0.176 (215 at 0, 37 at 1, 4 at 2), candidate mean 0.160 (218, 35, 3), 0 exhausted both; the day pack (export at 4 GiB) 2.87 s control and 4.90 s candidate, the extra 2.0 s being the CLI drawing the frozen program first and then the candidate's (an export-path artefact, not the class: the draws above are equal) | `rows/cache/draw-timing.txt`, `rows/cache/model-*-256.txt`, `rows/cache/gen-timing.txt` |
## 3. (a) The census on the candidate (build-8, 09:49 to 09:56 UK)
The frozen live-dataset census jobs verbatim (`live-dataset-census-1a938abe4.md` section 3: the object on the genesis pairing over headers 0 to 7, the 16 chain-shaped seeds p18 to p33, the node1 state, 2^28 words) with the class `+flat`, through `addrsite` of the frozen census harness (`class-v6-census-all4` `b819c23a4`) with the candidate's two commits cherry-picked (branch `1p5x-x1-harness`, binary `bin-h-5264b8152` sha256 `9dc22b1d...`). The control seed p18 was re-run in the same session and reproduces the frozen row to the last digit, so the instrument is the frozen one.
| Run | Program | Reads | Top 0.1 percent share | Against flat | Against window model | Min site distinct ratio | Worst bit (sigma) | Top-K 1 GiB / 256 MiB / 64 MiB |
|---|---|---|---|---|---|---|---|---|
| ctrl-seed-p18 | 0b686c80e25cb4d3 | 67,108,864 | 0.003391 | 1.1032x | 1.0006x | 0.99991 | 3.09 | 1.0000 / 0.4404 / 0.1414 |
| flat-object-h0 | caf198d6c4b4767b | 268,435,456 | 0.001942 | 1.0002x | 1.0000x | 1.00010 | 3.06 | 1.0000 / 0.3316 / 0.0951 |
| flat-object-h4 | caf198d6c4b4767b | 268,435,456 | 0.001942 | 1.0003x | 1.0001x | 1.00006 | -3.11 | 1.0000 / 0.3316 / 0.0951 |
| flat-seed-p18 | 0fc8727ab6190454 | 67,108,864 | 0.003075 | 1.0005x | 0.9993x | 0.99993 | 3.55 | 1.0000 / 0.4151 / 0.1306 |
| flat-seed-p19 | 7c5149150271b038 | 67,108,864 | 0.003075 | 1.0004x | 1.0013x | 0.99990 | -4.10 | 1.0000 / 0.4151 / 0.1306 |
| flat-seed-p20 | 8ecb2e06575657b8 | 67,108,864 | 0.003069 | 0.9983x | 0.9992x | 0.99996 | -3.09 | 1.0000 / 0.4151 / 0.1306 |
| flat-seed-p21 | 8b36c28c52ba99c4 | 67,108,864 | 0.003072 | 0.9990x | 1.0008x | 0.99989 | 3.07 | 1.0000 / 0.4150 / 0.1305 |
| flat-seed-p22 | 970fb4d69b2fe33c | 67,108,864 | 0.003080 | 1.0012x | 1.0036x | 0.99995 | 3.36 | 1.0000 / 0.4152 / 0.1306 |
| flat-seed-p23 | a251a84ef66d3834 | 67,108,864 | 0.003073 | 0.9987x | 0.9990x | 0.99996 | -3.24 | 1.0000 / 0.4151 / 0.1306 |
| flat-seed-p24 | 46acf991dd1407dd | 67,108,864 | 0.003074 | 1.0005x | 0.9999x | 0.99992 | 4.01 | 1.0000 / 0.4151 / 0.1306 |
| flat-seed-p25 | b9b94de564ab230b | 67,108,864 | 0.003075 | 0.9996x | 1.0010x | 0.99992 | 3.03 | 1.0000 / 0.4151 / 0.1306 |
| flat-seed-p26 | 134b855d549b2f7e | 67,108,864 | 0.003071 | 0.9995x | 1.0003x | 0.99991 | 3.73 | 1.0000 / 0.4151 / 0.1306 |
| flat-seed-p27 | 2d87599f68893d21 | 67,108,864 | 0.003072 | 1.0003x | 0.9980x | 0.99995 | -3.68 | 1.0000 / 0.4150 / 0.1305 |
| flat-seed-p28 | 2e3f0c9b69ebfbbe | 67,108,864 | 0.003071 | 1.0005x | 1.0002x | 0.99993 | 3.26 | 1.0000 / 0.4150 / 0.1305 |
| flat-seed-p29 | 4668c5c8a3f7250e | 67,108,864 | 0.003072 | 0.9998x | 0.9982x | 0.99995 | 2.88 | 1.0000 / 0.4151 / 0.1305 |
| flat-seed-p30 | a62cdf47fc0fe7f8 | 67,108,864 | 0.003072 | 0.9991x | 1.0004x | 0.99991 | -3.42 | 1.0000 / 0.4150 / 0.1305 |
| flat-seed-p31 | bf0d33b7f1958a63 | 67,108,864 | 0.003070 | 1.0001x | 0.9998x | 0.99994 | 4.30 | 1.0000 / 0.4151 / 0.1306 |
| flat-seed-p32 | 80b54bc0701d7269 | 67,108,864 | 0.003076 | 1.0015x | 1.0008x | 0.99990 | 3.59 | 1.0000 / 0.4151 / 0.1306 |
| flat-seed-p33 | b025a053532694f0 | 67,108,864 | 0.003076 | 1.0018x | 1.0007x | 0.99995 | 3.68 | 1.0000 / 0.4150 / 0.1306 |
Reading: the candidate's live-dataset access distribution is flat to the Poisson floor on all 17 programs. The top 0.1 percent of items hold 0.998x to 1.002x the flat control's share (the frozen class: 1.03x to 1.28x flat on these seeds, 1.10x on the object, its windows by design); every site's distinct ratio sits at 0.99989 to 1.00010; no index bit reaches 4.4 sigma (band 6); the object touches every one of its 16,777,216 items. Nothing new concentrates when the windows go.
## 4. (b) The live memory trace and (c) the cache-hit curves (build-9, 08:45 to 09:01 UTC)
`x1cache` (branch `1p5x-x1-harness` `5264b8152`, `tools/1p5x/x1/cache.sh`): the interpreter's tracing probe on the chain's dataset at 4 GiB (2^30 words, 67,108,864 items of 64 bytes) with the node1 state, the header-bound init words as `addrsite` makes them; 2^22 nonces per program (the frozen trace's N), header 0 the TRAIN half and header 1 the HOLDOUT half (2^21 nonces, 536,870,912 reads each, 256 reads per nonce). The policies: the window-model static set (exact: the items of highest probability from the program's own load sites, a set a chip can compute at the era's start), the train-ranked static set (the brief's train and holdout policy), the in-sample oracle (an upper bound inflated by ranking noise at 8 reads per item), and exact LRU over the holdout stream in warp order from a cold start. `x1model` (`fc6bfaf25`): the exact window-model hot-set mass of 256 accepted chain-shaped seeds.
```
# x1cache: program 2a1d6caab4c24564 class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw attempt 0 generator v6 day bytes:69676e65756d2d6461792ffa50000000000000 dataset 2^30 words (memory-hard, 67108864 items of 64 B) headers 2 from 0 (train 1, holdout 1) warps/header 65536 nonces/header 2097152 threads 32
# load sites (instr order): 0:0 1:0 2:1 0:0 1:1 1:0 2:3 0:0 1:0 0:0 2:2 0:0 1:1 0:0 1:0 1:0
# trace: 536870912 train reads, 536870912 holdout reads (256 reads per nonce), 59.0 s
# (1) window model, hot-set mass at stored fraction f (exact): 0.05:0.0625 0.10:0.1250 0.15:0.1875 0.20:0.2500 0.25:0.3125 0.30:0.3625 0.35:0.4125 0.40:0.4625 0.45:0.5125 0.50:0.5625 0.55:0.6062 0.60:0.6500 0.65:0.6938 0.70:0.7375 0.75:0.7812 0.80:0.8250 0.85:0.8687 0.90:0.9125 0.95:0.9563 1.00:1.0000
# (1) window model: 3 distinct probability levels; max/min item probability 1.4286; max item probability x items 1.2500
policy f=0.25 f=0.50 f=0.75
window-model static 0.3125 0.5625 0.7813
train-ranked static (holdout) 0.2717 0.5240 0.7662
oracle static (in-sample) 0.3775 0.6519 0.8640
LRU (holdout stream, cold start) 0.2506 0.4883 0.7064
# (3) holdout counts per item: mean 8.000; quantiles max 29 p0.1% 19 p1% 16 p10% 12 p25% 10 p50% 8 p75% 6 p90% 4 min 0; untouched items 37303; 177.2 s
```
```
# x1cache: program 34d0b421b17fe803 class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 1 generator v6 day bytes:69676e65756d2d6461792ffa50000000000000 dataset 2^30 words (memory-hard, 67108864 items of 64 B) headers 2 from 0 (train 1, holdout 1) warps/header 65536 nonces/header 2097152 threads 32
# load sites (instr order): 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0
# trace: 536870912 train reads, 536870912 holdout reads (256 reads per nonce), 49.5 s
# (1) window model, hot-set mass at stored fraction f (exact): 0.05:0.0500 0.10:0.1000 0.15:0.1500 0.20:0.2000 0.25:0.2500 0.30:0.3000 0.35:0.3500 0.40:0.4000 0.45:0.4500 0.50:0.5000 0.55:0.5500 0.60:0.6000 0.65:0.6500 0.70:0.7000 0.75:0.7500 0.80:0.8000 0.85:0.8500 0.90:0.9000 0.95:0.9500 1.00:1.0000
# (1) window model: 1 distinct probability levels; max/min item probability 1.0000; max item probability x items 1.0000
policy f=0.25 f=0.50 f=0.75
window-model static 0.2500 0.5000 0.7500
train-ranked static (holdout) 0.2500 0.5000 0.7500
oracle static (in-sample) 0.3657 0.6396 0.8563
LRU (holdout stream, cold start) 0.2457 0.4808 0.6996
# (3) holdout counts per item: mean 8.000; quantiles max 29 p0.1% 18 p1% 15 p10% 12 p25% 10 p50% 8 p75% 6 p90% 5 min 0; untouched items 22336; 171.0 s
```
ctrl, 256 accepted chain-shaped seeds: attempts mean 0.176, max 2
f=0.25: programs 256 min 0.2656 mean 0.3409 median 0.3438 p90 0.4062 max 0.5625
f=0.50: programs 256 min 0.5312 mean 0.6110 median 0.5938 p90 0.6875 max 0.7812
f=0.75: programs 256 min 0.7656 mean 0.8301 median 0.8281 p90 0.8750 max 0.9375
flat, 256 accepted chain-shaped seeds: attempts mean 0.160, max 2
f=0.25: programs 256 min 0.2500 mean 0.2500 median 0.2500 p90 0.2500 max 0.2500
f=0.50: programs 256 min 0.5000 mean 0.5000 median 0.5000 p90 0.5000 max 0.5000
f=0.75: programs 256 min 0.7500 mean 0.7500 median 0.7500 p90 0.7500 max 0.7500
### The brief's conditional cache calculation, re-done with measured numbers
At the half store the miss fraction goes from the control's to the candidate's 0.5000:
| Control reading | Control hit at f = 0.5 | Misses | Candidate misses | Relative miss increase |
|---|---|---|---|---|
| the signing program, window-model static (exact) | 0.5625 | 0.4375 | 0.5000 | +14.3 percent |
| the signing program, train-ranked static (measured, holdout) | 0.5240 | 0.4760 | 0.5000 | +5.0 percent |
| the signing program, LRU (measured) | 0.4883 | 0.5117 | 0.5192 (LRU) | +1.5 percent |
| 256 chain-shaped seeds, window model, mean | 0.6110 | 0.3890 | 0.5000 | +28.5 percent |
| 256 seeds, p90 | 0.6875 | 0.3125 | 0.5000 | +60.0 percent |
| 256 seeds, max | 0.7812 | 0.2188 | 0.5000 | +128.5 percent |
| the brief's reported static figure | 0.72 | 0.28 | 0.50 | +78.6 percent |
What it means. Removing the windows does what the hypothesis says: every static and LRU policy sees the uniform stream and a half store serves exactly half. But the window concentration the hybrid row assumed (72 percent at the half store) is not the frozen object's: the signing program's windows put 56.25 percent of reads in the hottest half (3 probability levels, max to min 1.43), the chain-shaped seeds 61.1 percent on average (53 to 78 percent; 72 percent sits near the 95th percentile). On the signing object the candidate takes the hybrid's half-store misses up by 14.3 percent, not 78.6. This is a miss count, not an energy (the brief's own caveat): the energy is X5's.
## 5. The GPU rows (rented cards, stock; the four sessions 08:48 to 09:11 UTC)
The hash lane's recipe (`build-1:/srv/artefacts/1p5x/gpu-row-recipe.md`, `cbab453c...`): the generator-6 CUDA worker `igneum-worker-cuda-gen6` (sha256 `804a6f7fea10a62e07cf6cd01e99331de5149e683112b5870fc25d1e11e199bd`), `--bench --batches 250 --batch-log2 24 --block-warps 1 --device 0`, `nvidia-smi` at 1 Hz for the whole session, watts the mean `power.draw` from 8 s into the timed window (the worker's 250 x mean dispatch, ending at the run's end) to its end, board power as the card reports it (no wall meter, idle not subtracted); same-session ABBA pairs per dataset on one card (control, candidate, candidate, control at 1 GiB, then at 4 GiB, 10 s apart); the pack's self-test gates each row. `tools/1p5x/x1/gpu-pairs.sh` ran the sessions, `tools/1p5x/x1/gpu-rows.py` read them. The cards: two RTX 5090 (one host capped at 400 W against a 575 W default, so its rows are a power-capped state; the other at a 500 W limit, unthrottled at 2,932 MHz) and two RTX 4090 at their default 450 W; all rented through the fleet lane, every row on an island, not a network.
| Card (pod) | Dataset | Control MH/s | Candidate MH/s | Rate | Control W | Candidate W | Control nJ/hash | Candidate nJ/hash | g |
|---|---|---|---|---|---|---|---|---|---|
| g5090b | 1 GiB | 70.66 | 70.55 | -0.14% | 400.0 | 400.0 | 5662 | 5669 | 1.0014 |
| g5090b | 4 GiB | 68.66 | 68.59 | -0.10% | 400.0 | 400.0 | 5826 | 5832 | 1.0010 |
| g5090e | 1 GiB | 70.64 | 70.54 | -0.15% | 441.5 | 439.5 | 6249 | 6230 | 0.9970 |
| g5090e | 4 GiB | 68.64 | 68.59 | -0.08% | 448.6 | 440.6 | 6534 | 6423 | 0.9830 |
| g4090b | 1 GiB | 31.30 | 31.28 | -0.06% | 262.4 | 259.9 | 8382 | 8308 | 0.9911 |
| g4090b | 4 GiB | 30.70 | 30.69 | -0.01% | 261.6 | 258.1 | 8521 | 8410 | 0.9869 |
| g4090c | 1 GiB | 31.30 | 31.28 | -0.06% | 251.2 | 248.9 | 8025 | 7958 | 0.9916 |
| g4090c | 4 GiB | 30.70 | 30.69 | -0.01% | 250.8 | 248.2 | 8171 | 8088 | 0.9898 |
The knee: NOT RUN. Rented containers refuse a clock lock (`nvidia-smi -lgc 0,1300`: "does not have permission to change clocks", read on all four cards) and the house rigs are BLOCKED today. The only knee figure for this address form is register row 18 (`+nowin` on the frozen class, the first rig's 5090 at the 1,300 MHz lock: rate -5.7 percent, joules +3.6 percent), which a knee row of this candidate is expected to repeat.
Reading: at stock the candidate costs no card anything (rate within -0.15 percent on all four, joules -1.7 to +0.14 percent; g 0.983 to 1.001, median 0.990). ABBA spread under 0.03 percent of rate on every card; the 5090 at 500 W drifted in watts within a session (431 to 452 W on the control at 1 GiB), which the ABBA mean carries.
## 6. The arithmetic (the brief's yardstick, r_new = r0 x g / a)
g, the GPU side, from the rows: 0.99 at stock (0.983 to 1.001); at the knee row 18's 1.036 is the best estimate until a knee row of this candidate exists. a, the specialist side, is X5's. What the cache rows bound: the window layer only ever reached the hybrid through its stored fraction; even if all of a hybrid's energy per hash were its DRAM misses, its energy rises at most by the miss ratio, a <= 0.5 / 0.4375 = 1.143 on the signing object, 1.285 at the 256-seed mean, 1.786 only at the 72 percent premise. With the hybrid placed at about 2.4x (the coordinator's common brief):
| Case | g | a (upper bound) | r_new from 2.4 |
|---|---|---|---|
| the signing object, stock | 0.99 | 1.143 | 2.08 |
| the 256-seed mean, stock | 0.99 | 1.285 | 1.85 |
| the 72 percent premise, stock | 0.99 | 1.786 | 1.33 |
| the signing object, at the knee (row 18's g) | 1.036 | 1.143 | 2.18 |
| the pure DRAM board (no store: the windows buy it nothing), 1.6x | 0.99 | 1.00 | 1.58 |
| the full-SRAM die (stores everything: uniform does not hurt it), 2.4x | 0.99 | 1.00 | 2.38 |
So on the frozen object's own windows, fixed-window removal moves the hybrid at most from about 2.4x toward 2.1x and leaves the DRAM board and the SRAM die where they are; the 1.5x target is not reached by X1 alone on any measured row. These are bounds on the arithmetic, not a verdict: X5 re-optimises the specialist on the candidate and X6 runs blind.
## 7. BLOCKED and NOT RUN rows
| Row | State | Why, and what unblocks it |
|---|---|---|
| GPU at the knee (5090 at the 1,300 MHz lock, 4090 at its knee) | NOT RUN | rented containers cannot lock clocks; the house rigs unreachable (BLOCKED for every lane today); unblocks on a house rig or a bare-metal rented card with clock control |
| GPU wall power | NOT RUN | no wall meter on rented cards; board power only |
| GPU cohort beyond 5090 and 4090 (5080, AMD, Intel, Apple) | NOT RUN | not in X1's order; X6's cohort |
| Same work on OpenCL and Metal for the candidate's pack | NOT RUN | CUDA only today (the kit carries the OpenCL worker; Metal needs the mini) |
| The specialist side a | BLOCKED on X5 | the adversary lane's sweep re-run on these traces (the x1cache command regenerates any program's stream) |
| A live trace at 2^24 nonces per header (the 64 x 2^24 point the frozen census owes too) | NOT RUN | 50 to 100 core-hours per object |
| Registry batch | NOT RUN, filed | `tools/ci/batches/1p5x-x1-20261009-01.json`, every cell NOT RUN, for the steward to record |
## 8. Reproduce
```
# the tables above, from the row files
python3 tools/1p5x/x1/summarise.py docs/analysis/class-v6/1p5x/x1/rows
# (a) on a box: build branch 1p5x-x1-harness (cargo build --release --bin igneum-pow in igneum-pow), then
tools/1p5x/x1/census.sh # paths inside name build-8's layout; run.sh writes the pid files
# (b) and (c)
tools/1p5x/x1/cache.sh <harness binary> <node1 state stream>
# GPU, on a rented card with the worker and the four packs under /root/x1
tools/1p5x/x1/gpu-pairs.sh <label>; python3 tools/1p5x/x1/gpu-rows.py /root/x1/runs/gpu-<label>
```
Sources by sha: the candidate `a99de07cd` (branch `1p5x-x1-v7`), the harness `fc6bfaf25` (branch `1p5x-x1-harness`, over `b819c23a4`), the frozen control `1a938abe4`, the frozen census rows `docs/analysis/class-v6/rows/live-dataset-census-1a938abe4.md` and `chainseed-census-1a938abe4.md`, register row 18 `docs/analysis/class-v6/rows/pc1-l8off-ds2g-20261009.md`.

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@ -1,14 +0,0 @@
# 2026-10-09T08:45:35Z host igneum-build-9 cmd: /srv/builds/x1/bin-h-5264b8152 x1cache --count 2 --warps 65536 --threads 32 --dataset-log2 30 --epoch-hex af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3 --day-hex 69676e65756d2d6461792ffa50000000000000 --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1 --class mx8+sh256x27+state+reg64c+fold+rw
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# x1cache: program 2a1d6caab4c24564 class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw attempt 0 generator v6 day bytes:69676e65756d2d6461792ffa50000000000000 dataset 2^30 words (memory-hard, 67108864 items of 64 B) headers 2 from 0 (train 1, holdout 1) warps/header 65536 nonces/header 2097152 threads 32
# load sites (instr order): 0:0 1:0 2:1 0:0 1:1 1:0 2:3 0:0 1:0 0:0 2:2 0:0 1:1 0:0 1:0 1:0
# trace: 536870912 train reads, 536870912 holdout reads (256 reads per nonce), 59.0 s
# (1) window model, hot-set mass at stored fraction f (exact): 0.05:0.0625 0.10:0.1250 0.15:0.1875 0.20:0.2500 0.25:0.3125 0.30:0.3625 0.35:0.4125 0.40:0.4625 0.45:0.5125 0.50:0.5625 0.55:0.6062 0.60:0.6500 0.65:0.6938 0.70:0.7375 0.75:0.7812 0.80:0.8250 0.85:0.8687 0.90:0.9125 0.95:0.9563 1.00:1.0000
# (1) window model: 3 distinct probability levels; max/min item probability 1.4286; max item probability x items 1.2500
policy f=0.25 f=0.50 f=0.75
window-model static 0.3125 0.5625 0.7813
train-ranked static (holdout) 0.2717 0.5240 0.7662
oracle static (in-sample) 0.3775 0.6519 0.8640
LRU (holdout stream, cold start) 0.2506 0.4883 0.7064
# (3) holdout counts per item: mean 8.000; quantiles max 29 p0.1% 19 p1% 16 p10% 12 p25% 10 p50% 8 p75% 6 p90% 4 min 0; untouched items 37303; 177.2 s
# end 2026-10-09T08:48:35Z rc 0

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# 2026-10-09T08:45:35Z host igneum-build-9 cmd: /srv/builds/x1/bin-h-5264b8152 x1cache --count 2 --warps 65536 --threads 32 --dataset-log2 30 --epoch-hex af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3 --day-hex 69676e65756d2d6461792ffa50000000000000 --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1 --class mx8+sh256x27+state+reg64c+fold+rw+flat
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# x1cache: program 34d0b421b17fe803 class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 1 generator v6 day bytes:69676e65756d2d6461792ffa50000000000000 dataset 2^30 words (memory-hard, 67108864 items of 64 B) headers 2 from 0 (train 1, holdout 1) warps/header 65536 nonces/header 2097152 threads 32
# load sites (instr order): 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0
# trace: 536870912 train reads, 536870912 holdout reads (256 reads per nonce), 49.5 s
# (1) window model, hot-set mass at stored fraction f (exact): 0.05:0.0500 0.10:0.1000 0.15:0.1500 0.20:0.2000 0.25:0.2500 0.30:0.3000 0.35:0.3500 0.40:0.4000 0.45:0.4500 0.50:0.5000 0.55:0.5500 0.60:0.6000 0.65:0.6500 0.70:0.7000 0.75:0.7500 0.80:0.8000 0.85:0.8500 0.90:0.9000 0.95:0.9500 1.00:1.0000
# (1) window model: 1 distinct probability levels; max/min item probability 1.0000; max item probability x items 1.0000
policy f=0.25 f=0.50 f=0.75
window-model static 0.2500 0.5000 0.7500
train-ranked static (holdout) 0.2500 0.5000 0.7500
oracle static (in-sample) 0.3657 0.6396 0.8563
LRU (holdout stream, cold start) 0.2457 0.4808 0.6996
# (3) holdout counts per item: mean 8.000; quantiles max 29 p0.1% 18 p1% 15 p10% 12 p25% 10 p50% 8 p75% 6 p90% 5 min 0; untouched items 22336; 171.0 s
# end 2026-10-09T08:48:29Z rc 0

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@ -1,14 +0,0 @@
# 2026-10-09T08:44:21Z host igneum-build-9 cmd: /srv/builds/x1/bin-h-5264b8152 x1cache --count 2 --warps 32 --threads 32 --dataset-log2 30 --epoch-hex af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3 --day-hex 69676e65756d2d6461792ffa50000000000000 --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1 --class mx8+sh256x27+state+reg64c+fold+rw
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# x1cache: program 2a1d6caab4c24564 class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw attempt 0 generator v6 day bytes:69676e65756d2d6461792ffa50000000000000 dataset 2^30 words (memory-hard, 67108864 items of 64 B) headers 2 from 0 (train 1, holdout 1) warps/header 32 nonces/header 1024 threads 32
# load sites (instr order): 0:0 1:0 2:1 0:0 1:1 1:0 2:3 0:0 1:0 0:0 2:2 0:0 1:1 0:0 1:0 1:0
# trace: 262144 train reads, 262144 holdout reads (256 reads per nonce), 0.0 s
# (1) window model, hot-set mass at stored fraction f (exact): 0.05:0.0625 0.10:0.1250 0.15:0.1875 0.20:0.2500 0.25:0.3125 0.30:0.3625 0.35:0.4125 0.40:0.4625 0.45:0.5125 0.50:0.5625 0.55:0.6062 0.60:0.6500 0.65:0.6938 0.70:0.7375 0.75:0.7812 0.80:0.8250 0.85:0.8687 0.90:0.9125 0.95:0.9563 1.00:1.0000
# (1) window model: 3 distinct probability levels; max/min item probability 1.4286; max item probability x items 1.2500
policy f=0.25 f=0.50 f=0.75
window-model static 0.3125 0.5616 0.7812
train-ranked static (holdout) 0.2504 0.5012 0.7499
oracle static (in-sample) 1.0000 1.0000 1.0000
LRU (holdout stream, cold start) 0.0020 0.0020 0.0020
# (3) holdout counts per item: mean 0.004; quantiles max 2 p0.1% 1 p1% 0 p10% 0 p25% 0 p50% 0 p75% 0 p90% 0 min 0; untouched items 66847246; 49.9 s
# end 2026-10-09T08:45:13Z rc 0

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@ -1,14 +0,0 @@
# 2026-10-09T08:44:21Z host igneum-build-9 cmd: /srv/builds/x1/bin-h-5264b8152 x1cache --count 2 --warps 32 --threads 32 --dataset-log2 30 --epoch-hex af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3 --day-hex 69676e65756d2d6461792ffa50000000000000 --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1 --class mx8+sh256x27+state+reg64c+fold+rw+flat
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# x1cache: program 34d0b421b17fe803 class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 1 generator v6 day bytes:69676e65756d2d6461792ffa50000000000000 dataset 2^30 words (memory-hard, 67108864 items of 64 B) headers 2 from 0 (train 1, holdout 1) warps/header 32 nonces/header 1024 threads 32
# load sites (instr order): 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0
# trace: 262144 train reads, 262144 holdout reads (256 reads per nonce), 0.0 s
# (1) window model, hot-set mass at stored fraction f (exact): 0.05:0.0500 0.10:0.1000 0.15:0.1500 0.20:0.2000 0.25:0.2500 0.30:0.3000 0.35:0.3500 0.40:0.4000 0.45:0.4500 0.50:0.5000 0.55:0.5500 0.60:0.6000 0.65:0.6500 0.70:0.7000 0.75:0.7500 0.80:0.8000 0.85:0.8500 0.90:0.9000 0.95:0.9500 1.00:1.0000
# (1) window model: 1 distinct probability levels; max/min item probability 1.0000; max item probability x items 1.0000
policy f=0.25 f=0.50 f=0.75
window-model static 0.2483 0.4992 0.7484
train-ranked static (holdout) 0.2483 0.4992 0.7484
oracle static (in-sample) 1.0000 1.0000 1.0000
LRU (holdout stream, cold start) 0.0019 0.0019 0.0019
# (3) holdout counts per item: mean 0.004; quantiles max 3 p0.1% 1 p1% 0 p10% 0 p25% 0 p50% 0 p75% 0 p90% 0 min 0; untouched items 66847219; 50.8 s
# end 2026-10-09T08:45:14Z rc 0

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@ -1,4 +0,0 @@
ctrl run1 64 accepted draws 135.954324113 s
flat run1 64 accepted draws 135.904787836 s
ctrl run2 64 accepted draws 138.311705871 s
flat run2 64 accepted draws 136.222405217 s

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@ -1,25 +0,0 @@
# 2026-10-09T08:47:52Z host igneum-build-9 cmd: /srv/builds/x1/bin-a99de07cd export --out packs-out/x1-ctrl-ds28 --epoch-hex af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3 --day-hex 69676e65756d2d6461792ffa50000000000000 --program-class v6 --era-hex edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state packs/node1-state.igsd1 --dataset-log2 28
state stream packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
igneum-pow export packs-out/x1-ctrl-ds28
seed "igneum-epoch/af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3/day/69676e65756d2d6461792ffa50000000000000", day "bytes:69676e65756d2d6461792ffa50000000000000", dataset 2^28 words (memory-hard), generator v6 attempt 0 program id 2a1d6caab4c24564, loads/hash 128; epoch built in 2529.0 ms
op mix: load=16 add=10 shfl=8 rotl=5 rotr=5 xor=5 mad=4 mul=4 sub=4 mulhi=3; class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw, 512 bytes/hash, widths (1,4,16 words) [16, 0, 0]
seed words 0x9c8caa3d 0x83537296 0xf21169a4 0x12d4d157 0x66e0ce33 0xcc049080 0x8579c352 0x4c6e4ac9
wrote packs-out/x1-ctrl-ds28/program.json (57646 bytes)
wrote packs-out/x1-ctrl-ds28/identity.json (995 bytes)
wrote packs-out/x1-ctrl-ds28/vectors.json (6435 bytes)
wrote packs-out/x1-ctrl-ds28/kernel.cu (86706 bytes)
wrote packs-out/x1-ctrl-ds28/kernel.cl (94771 bytes)
wrote packs-out/x1-ctrl-ds28/program.h (7694 bytes)
wrote packs-out/x1-ctrl-ds28/vectors.h (5918 bytes)
wrote packs-out/x1-ctrl-ds28/program.metal (82654 bytes)
wrote packs-out/x1-ctrl-ds28/program_bound.metal (82806 bytes)
wrote packs-out/x1-ctrl-ds28/kernel_bound.cu (84481 bytes)
wrote packs-out/x1-ctrl-ds28/kernel_bound.cl (177158 bytes)
wrote packs-out/x1-ctrl-ds28/memhard.h (7369 bytes)
wrote packs-out/x1-ctrl-ds28/memhard.metal (7258 bytes)
vector warp base 0: lane0 1622090e6446f887 lane31 a6a77c3e6146a18e
vector warp base 4096: lane0 a419b22606fe741d lane31 5184fe27855a3c9a
vector warp base 1000000: lane0 082d4fda6ab0e7da lane31 76cdecd145ff0270
cache FNV-1a 64 448274a57f508cbc
OVERALL: PASS (pack written)
# end 2026-10-09T08:47:55Z rc 0

View file

@ -1,25 +0,0 @@
# 2026-10-09T08:47:55Z host igneum-build-9 cmd: /srv/builds/x1/bin-a99de07cd export --out packs-out/x1-ctrl-ds30 --epoch-hex af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3 --day-hex 69676e65756d2d6461792ffa50000000000000 --program-class v6 --era-hex edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state packs/node1-state.igsd1 --dataset-log2 30
state stream packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
igneum-pow export packs-out/x1-ctrl-ds30
seed "igneum-epoch/af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3/day/69676e65756d2d6461792ffa50000000000000", day "bytes:69676e65756d2d6461792ffa50000000000000", dataset 2^30 words (memory-hard), generator v6 attempt 0 program id 2a1d6caab4c24564, loads/hash 128; epoch built in 2537.2 ms
op mix: load=16 add=10 shfl=8 rotl=5 rotr=5 xor=5 mad=4 mul=4 sub=4 mulhi=3; class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw, 512 bytes/hash, widths (1,4,16 words) [16, 0, 0]
seed words 0x9c8caa3d 0x83537296 0xf21169a4 0x12d4d157 0x66e0ce33 0xcc049080 0x8579c352 0x4c6e4ac9
wrote packs-out/x1-ctrl-ds30/program.json (57646 bytes)
wrote packs-out/x1-ctrl-ds30/identity.json (995 bytes)
wrote packs-out/x1-ctrl-ds30/vectors.json (6458 bytes)
wrote packs-out/x1-ctrl-ds30/kernel.cu (86706 bytes)
wrote packs-out/x1-ctrl-ds30/kernel.cl (94771 bytes)
wrote packs-out/x1-ctrl-ds30/program.h (7694 bytes)
wrote packs-out/x1-ctrl-ds30/vectors.h (5942 bytes)
wrote packs-out/x1-ctrl-ds30/program.metal (82654 bytes)
wrote packs-out/x1-ctrl-ds30/program_bound.metal (82806 bytes)
wrote packs-out/x1-ctrl-ds30/kernel_bound.cu (84481 bytes)
wrote packs-out/x1-ctrl-ds30/kernel_bound.cl (177158 bytes)
wrote packs-out/x1-ctrl-ds30/memhard.h (7369 bytes)
wrote packs-out/x1-ctrl-ds30/memhard.metal (7258 bytes)
vector warp base 0: lane0 66e49c7c7e8ff768 lane31 1be50893eafe01d6
vector warp base 4096: lane0 5a1ed1e578bc6379 lane31 54238f6fabc4f5e5
vector warp base 1000000: lane0 572e7cedf5cbd28c lane31 cd5923c994e9a1c7
cache FNV-1a 64 448274a57f508cbc
OVERALL: PASS (pack written)
# end 2026-10-09T08:47:58Z rc 0

View file

@ -1,25 +0,0 @@
# 2026-10-09T08:47:58Z host igneum-build-9 cmd: /srv/builds/x1/bin-a99de07cd export --out packs-out/x1-flat-ds28 --epoch-hex af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3 --day-hex 69676e65756d2d6461792ffa50000000000000 --program-class v6 --era-hex edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state packs/node1-state.igsd1 --dataset-log2 28 --flat
state stream packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
igneum-pow export packs-out/x1-flat-ds28
seed "igneum-epoch/af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3/day/69676e65756d2d6461792ffa50000000000000", day "bytes:69676e65756d2d6461792ffa50000000000000", dataset 2^28 words (memory-hard), generator v6 attempt 1 program id 34d0b421b17fe803, loads/hash 128; epoch built in 4566.2 ms
op mix: load=16 xor=10 sub=8 add=6 mad=6 shfl=6 rotr=5 rotl=4 mul=3; class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat, 512 bytes/hash, widths (1,4,16 words) [16, 0, 0]
seed words 0xe60ed2a2 0x883319ea 0x6b6aa4f7 0xc4c7864e 0x5d7f9712 0x6027eee6 0x37f56d14 0x9555c104
wrote packs-out/x1-flat-ds28/program.json (57656 bytes)
wrote packs-out/x1-flat-ds28/identity.json (1000 bytes)
wrote packs-out/x1-flat-ds28/vectors.json (6435 bytes)
wrote packs-out/x1-flat-ds28/kernel.cu (85799 bytes)
wrote packs-out/x1-flat-ds28/kernel.cl (93802 bytes)
wrote packs-out/x1-flat-ds28/program.h (7688 bytes)
wrote packs-out/x1-flat-ds28/vectors.h (5918 bytes)
wrote packs-out/x1-flat-ds28/program.metal (81794 bytes)
wrote packs-out/x1-flat-ds28/program_bound.metal (81946 bytes)
wrote packs-out/x1-flat-ds28/kernel_bound.cu (83574 bytes)
wrote packs-out/x1-flat-ds28/kernel_bound.cl (175220 bytes)
wrote packs-out/x1-flat-ds28/memhard.h (7369 bytes)
wrote packs-out/x1-flat-ds28/memhard.metal (7258 bytes)
vector warp base 0: lane0 83fb47bf0f22157b lane31 4a4ef60478466c75
vector warp base 4096: lane0 585856e5af7b2752 lane31 be7d4bfef849d1c6
vector warp base 1000000: lane0 853e2ad04bc31a15 lane31 e0330b1c45fcb6a5
cache FNV-1a 64 448274a57f508cbc
OVERALL: PASS (pack written)
# end 2026-10-09T08:48:03Z rc 0

View file

@ -1,25 +0,0 @@
# 2026-10-09T08:48:03Z host igneum-build-9 cmd: /srv/builds/x1/bin-a99de07cd export --out packs-out/x1-flat-ds30 --epoch-hex af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3 --day-hex 69676e65756d2d6461792ffa50000000000000 --program-class v6 --era-hex edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state packs/node1-state.igsd1 --dataset-log2 30 --flat
state stream packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
igneum-pow export packs-out/x1-flat-ds30
seed "igneum-epoch/af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3/day/69676e65756d2d6461792ffa50000000000000", day "bytes:69676e65756d2d6461792ffa50000000000000", dataset 2^30 words (memory-hard), generator v6 attempt 1 program id 34d0b421b17fe803, loads/hash 128; epoch built in 4585.0 ms
op mix: load=16 xor=10 sub=8 add=6 mad=6 shfl=6 rotr=5 rotl=4 mul=3; class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat, 512 bytes/hash, widths (1,4,16 words) [16, 0, 0]
seed words 0xe60ed2a2 0x883319ea 0x6b6aa4f7 0xc4c7864e 0x5d7f9712 0x6027eee6 0x37f56d14 0x9555c104
wrote packs-out/x1-flat-ds30/program.json (57656 bytes)
wrote packs-out/x1-flat-ds30/identity.json (1000 bytes)
wrote packs-out/x1-flat-ds30/vectors.json (6458 bytes)
wrote packs-out/x1-flat-ds30/kernel.cu (85799 bytes)
wrote packs-out/x1-flat-ds30/kernel.cl (93802 bytes)
wrote packs-out/x1-flat-ds30/program.h (7688 bytes)
wrote packs-out/x1-flat-ds30/vectors.h (5942 bytes)
wrote packs-out/x1-flat-ds30/program.metal (81794 bytes)
wrote packs-out/x1-flat-ds30/program_bound.metal (81946 bytes)
wrote packs-out/x1-flat-ds30/kernel_bound.cu (83574 bytes)
wrote packs-out/x1-flat-ds30/kernel_bound.cl (175220 bytes)
wrote packs-out/x1-flat-ds30/memhard.h (7369 bytes)
wrote packs-out/x1-flat-ds30/memhard.metal (7258 bytes)
vector warp base 0: lane0 befcb8f25203629a lane31 40a2ec6c88d253e1
vector warp base 4096: lane0 61cad00f0dced854 lane31 40fda71998029103
vector warp base 1000000: lane0 f3e24f8a530f2ba5 lane31 74e39329549863df
cache FNV-1a 64 448274a57f508cbc
OVERALL: PASS (pack written)
# end 2026-10-09T08:48:08Z rc 0

View file

@ -1,10 +0,0 @@
ctrl 1 2.874449269
flat 1 4.907988679
ctrl 2 2.848766497
flat 2 4.884445411
ctrl 3 2.868956005
flat 3 4.885651751
ctrl 4 2.885697000
flat 4 4.923610101
ctrl 5 2.874501765
flat 5 4.923965116

View file

@ -1,262 +0,0 @@
# 2026-10-09T08:51:49Z host igneum-build-9 cmd: /srv/builds/x1/bin-h-fc6bfaf25 x1model --count 256 --header-from 0 --seed igneum-attack-f8/program/ --dataset-log2 30 --class mx8+sh256x27+state+reg64c+fold+rw --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07
seed program attempt windows(k:off) mass_f0.25 mass_f0.50 mass_f0.75
igneum-attack-f8/program/0 568d26d6a417d6f4 0 0:0 1:0 2:3 1:0 1:0 2:0 0:0 0:0 1:0 1:0 1:0 2:3 1:0 2:2 1:1 0:0 0.3438 0.6250 0.8438
igneum-attack-f8/program/1 8955f4a4c322643c 0 0:0 0:0 1:0 0:0 0:0 2:0 1:0 2:1 2:1 2:1 1:0 2:3 0:0 1:1 0:0 1:1 0.3750 0.6250 0.8438
igneum-attack-f8/program/2 e758dfa168b7e6e9 0 2:3 1:0 1:0 2:2 0:0 1:1 1:1 2:0 2:3 1:1 0:0 1:1 1:1 2:0 2:0 0:0 0.3281 0.6250 0.8906
igneum-attack-f8/program/3 f7f5ac4a1906e3ab 0 1:1 1:0 0:0 1:1 1:1 1:1 2:2 1:1 1:0 0:0 2:0 0:0 1:1 2:3 0:0 1:1 0.3438 0.6875 0.8750
igneum-attack-f8/program/4 59d9baaffb4413e3 0 0:0 2:0 1:0 1:0 2:2 1:1 0:0 0:0 0:0 0:0 2:1 1:1 2:1 0:0 1:0 2:1 0.3750 0.6250 0.8438
igneum-attack-f8/program/5 a03ef0f2864672cb 0 0:0 1:0 1:0 0:0 0:0 0:0 1:1 1:0 2:2 2:2 0:0 2:0 0:0 2:0 0:0 0:0 0.3438 0.6250 0.8438
igneum-attack-f8/program/6 892d340b89976eb9 1 2:3 2:3 1:0 0:0 1:1 1:1 2:0 1:1 1:0 0:0 1:0 0:0 0:0 1:0 1:1 1:0 0.3125 0.5938 0.8125
igneum-attack-f8/program/7 32bce70d5a2e5988 0 0:0 0:0 0:0 0:0 2:2 0:0 2:0 0:0 1:1 2:2 2:3 0:0 1:1 0:0 2:2 0:0 0.3906 0.6562 0.8594
igneum-attack-f8/program/8 b72728f8287974d1 0 2:2 0:0 0:0 2:1 2:3 0:0 1:0 1:1 0:0 2:2 2:0 0:0 2:1 0:0 1:1 0:0 0.2969 0.5625 0.7969
igneum-attack-f8/program/9 707fab3add04f4fa 0 0:0 0:0 0:0 0:0 2:0 1:0 2:0 0:0 1:1 0:0 2:3 1:0 0:0 2:1 1:0 1:1 0.3281 0.5938 0.8281
igneum-attack-f8/program/10 df880268c35607aa 0 0:0 1:0 0:0 0:0 0:0 2:3 2:3 2:0 2:1 1:0 1:0 2:1 2:0 1:1 1:1 0:0 0.2969 0.5938 0.8594
igneum-attack-f8/program/11 d4a1ab319f55a81d 0 0:0 0:0 1:0 0:0 1:0 1:0 1:0 2:1 0:0 1:1 2:2 1:0 1:0 1:0 1:1 1:1 0.3438 0.6250 0.8438
igneum-attack-f8/program/12 82b413301a9acea6 0 2:0 2:0 0:0 1:1 2:2 1:0 1:0 1:1 2:1 1:1 1:0 0:0 2:1 2:3 2:3 2:1 0.3125 0.5625 0.8125
igneum-attack-f8/program/13 04f86d41ffe73438 0 2:3 1:0 2:0 2:1 0:0 2:0 2:1 1:1 1:1 2:1 2:3 2:1 0:0 1:1 2:0 2:2 0.3125 0.5625 0.8125
igneum-attack-f8/program/14 d90468c7fd569a0c 0 1:1 2:3 1:1 0:0 2:1 1:0 1:1 0:0 0:0 0:0 1:0 1:1 0:0 0:0 2:2 2:2 0.3438 0.6250 0.8438
igneum-attack-f8/program/15 43a1b86d19c31411 1 2:1 1:0 2:2 0:0 2:0 0:0 2:2 0:0 2:1 1:1 1:0 2:1 2:2 1:1 0:0 1:1 0.3438 0.6562 0.8438
igneum-attack-f8/program/16 5786bc5b573af75f 0 0:0 2:2 0:0 2:1 0:0 2:2 2:0 0:0 2:3 1:0 1:0 0:0 1:0 2:1 1:0 2:1 0.3906 0.6562 0.8594
igneum-attack-f8/program/17 b73b3f83686d73bf 0 0:0 0:0 2:2 1:1 0:0 2:0 1:1 0:0 0:0 2:1 2:2 0:0 2:1 0:0 1:1 1:0 0.3281 0.5938 0.7969
igneum-attack-f8/program/18 0b686c80e25cb4d3 0 1:0 0:0 1:1 2:0 2:1 2:0 1:0 2:3 2:0 2:2 2:3 0:0 2:3 1:0 1:1 0:0 0.3281 0.6250 0.8281
igneum-attack-f8/program/19 bf8510cd00c0c70f 0 2:2 2:1 0:0 1:1 2:3 0:0 0:0 0:0 1:1 1:0 1:1 1:1 2:2 2:0 0:0 0:0 0.3438 0.6250 0.8125
igneum-attack-f8/program/20 24133bd7265e958f 0 1:0 2:2 0:0 2:2 1:1 1:0 0:0 0:0 2:3 2:0 1:0 1:0 1:0 2:2 2:0 0:0 0.3438 0.6250 0.8438
igneum-attack-f8/program/21 ed647abf60a5bd32 0 1:0 1:0 0:0 2:0 0:0 0:0 2:0 0:0 1:0 2:2 2:0 0:0 1:0 2:3 1:0 2:3 0.4219 0.6562 0.8594
igneum-attack-f8/program/22 f8e8969443448ecb 0 2:0 0:0 0:0 2:1 1:1 0:0 0:0 1:0 0:0 0:0 0:0 1:1 1:0 2:1 0:0 2:3 0.3125 0.5625 0.8125
igneum-attack-f8/program/23 160649503341aaab 1 2:3 1:0 0:0 1:1 0:0 2:3 0:0 1:1 0:0 1:0 0:0 0:0 0:0 0:0 2:2 0:0 0.3281 0.5938 0.7969
igneum-attack-f8/program/24 62aa0bfc93f13028 0 0:0 2:2 1:1 0:0 0:0 2:0 0:0 2:1 1:1 2:0 1:0 1:0 0:0 1:1 0:0 1:1 0.2812 0.5625 0.7812
igneum-attack-f8/program/25 3f1af0bbaaef74fa 0 0:0 1:1 2:1 2:2 2:3 0:0 2:3 1:1 2:3 2:2 2:0 1:0 0:0 0:0 0:0 0:0 0.3438 0.6250 0.8125
igneum-attack-f8/program/26 2b406490ba8d3c91 0 1:0 2:0 0:0 1:1 1:1 1:1 1:0 2:2 1:0 0:0 1:0 2:3 1:0 2:3 0:0 2:1 0.2656 0.5312 0.7969
igneum-attack-f8/program/27 c38b57d654ad08d4 0 0:0 1:0 0:0 2:1 0:0 0:0 1:0 1:1 1:1 0:0 1:0 0:0 0:0 1:0 2:3 1:0 0.3281 0.5938 0.8281
igneum-attack-f8/program/28 96e4f7fdccef6fd1 0 0:0 1:0 2:3 2:0 0:0 0:0 1:0 1:1 2:1 1:0 0:0 2:0 0:0 2:2 1:1 2:0 0.3594 0.5938 0.7969
igneum-attack-f8/program/29 3f922ac24b46d2c2 1 1:1 0:0 0:0 0:0 0:0 1:1 1:1 0:0 2:0 2:1 2:2 2:1 0:0 1:0 2:3 1:1 0.2812 0.5625 0.8125
igneum-attack-f8/program/30 edd13a08477407cf 0 2:3 0:0 1:0 2:1 2:2 2:1 0:0 1:0 0:0 0:0 2:2 0:0 2:0 0:0 1:0 0:0 0.3281 0.5938 0.8281
igneum-attack-f8/program/31 e1409749e795c382 0 2:3 1:0 1:0 1:0 1:1 0:0 0:0 0:0 0:0 1:1 2:2 0:0 1:1 2:2 1:1 0:0 0.3438 0.6250 0.8125
igneum-attack-f8/program/32 0717ad9158d5937f 2 1:1 1:0 2:3 0:0 1:1 2:3 0:0 1:0 2:1 1:1 0:0 1:0 2:1 0:0 0:0 0:0 0.3125 0.6250 0.8125
igneum-attack-f8/program/33 9857a41ce42f4677 0 1:0 2:3 1:1 0:0 0:0 0:0 1:0 2:0 2:0 0:0 1:0 0:0 0:0 1:1 0:0 0:0 0.3438 0.5938 0.8125
igneum-attack-f8/program/34 fcde453d3cdf610a 1 0:0 2:0 0:0 0:0 1:0 2:1 1:1 2:1 0:0 1:1 0:0 0:0 0:0 1:0 0:0 1:0 0.3438 0.6250 0.8125
igneum-attack-f8/program/35 fe856721b580eb2b 0 2:3 0:0 0:0 0:0 0:0 1:0 1:1 2:1 1:0 0:0 2:1 1:0 0:0 2:1 0:0 2:0 0.3906 0.6562 0.8594
igneum-attack-f8/program/36 70ddbfa74f83ea60 0 0:0 1:0 2:3 0:0 1:0 0:0 1:0 1:1 1:1 0:0 1:0 2:3 2:2 2:3 1:1 2:0 0.3438 0.5938 0.8125
igneum-attack-f8/program/37 1a880b1152487fe5 0 2:0 2:3 2:1 0:0 2:0 0:0 0:0 1:0 2:3 2:3 0:0 2:2 1:0 1:1 2:0 0:0 0.3281 0.6250 0.8281
igneum-attack-f8/program/38 1c40fe441b9b388e 1 1:1 2:1 1:0 2:3 0:0 0:0 0:0 1:0 0:0 0:0 2:3 2:0 2:3 0:0 2:2 0:0 0.3281 0.5625 0.7969
igneum-attack-f8/program/39 a48deb257d46a9cb 0 2:2 0:0 1:1 2:0 1:0 1:0 0:0 1:1 0:0 2:1 2:0 1:0 1:1 0:0 2:3 0:0 0.2969 0.5312 0.7656
igneum-attack-f8/program/40 fa7a33073f5ddde2 0 0:0 2:3 2:0 0:0 2:0 1:0 0:0 0:0 1:0 0:0 0:0 2:3 2:3 0:0 2:2 0:0 0.3125 0.6250 0.8125
igneum-attack-f8/program/41 b5cd9aae6a817bdf 0 2:0 1:0 0:0 2:1 2:3 2:0 2:1 0:0 1:1 1:0 2:0 2:1 2:0 0:0 1:1 2:1 0.3594 0.7188 0.8906
igneum-attack-f8/program/42 bd09daa58855b97d 0 2:0 2:0 2:0 0:0 0:0 2:0 2:3 0:0 0:0 2:0 2:3 2:1 0:0 2:3 1:1 0:0 0.4062 0.7188 0.8750
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igneum-attack-f8/program/235 fe73f160ad5c14b2 0 0:0 1:1 2:2 1:1 0:0 2:2 0:0 1:1 1:1 2:1 0:0 0:0 1:1 0:0 1:1 2:1 0.4062 0.6875 0.9062
igneum-attack-f8/program/236 fcdb9bddde4226e9 0 2:1 1:1 0:0 1:0 0:0 1:1 2:1 1:0 0:0 0:0 0:0 0:0 0:0 2:3 1:1 0:0 0.3125 0.5938 0.8125
igneum-attack-f8/program/237 9a57d9596b9c6bdb 0 2:1 2:2 0:0 1:0 1:1 0:0 2:0 0:0 2:2 0:0 1:0 0:0 0:0 2:1 1:0 0:0 0.3281 0.5938 0.8594
igneum-attack-f8/program/238 e3016a33e5ca1550 0 2:1 2:2 1:1 1:0 1:1 2:3 2:1 1:1 2:2 1:1 0:0 1:0 0:0 0:0 2:1 1:1 0.3281 0.6250 0.8906
igneum-attack-f8/program/239 230693673cd059b6 0 0:0 1:0 2:2 1:0 1:0 2:2 0:0 1:0 2:1 0:0 1:0 0:0 0:0 1:0 2:3 1:1 0.3281 0.5938 0.8281
igneum-attack-f8/program/240 6eb7ea3efc816697 0 1:0 0:0 1:1 0:0 2:2 0:0 2:1 2:3 1:0 0:0 1:0 1:1 1:0 2:1 1:1 0:0 0.3281 0.5625 0.7969
igneum-attack-f8/program/241 5d16c6fbda023aeb 1 0:0 2:2 1:0 1:1 1:1 2:0 1:1 0:0 0:0 0:0 2:3 2:0 2:2 1:1 0:0 1:1 0.3594 0.6562 0.8906
igneum-attack-f8/program/242 5f56c2d02b085f16 0 1:1 1:0 1:0 2:1 2:0 1:0 2:3 2:0 0:0 1:1 1:0 1:1 1:0 0:0 0:0 2:2 0.3281 0.5938 0.7969
igneum-attack-f8/program/243 508ea3c6c8b72cc0 0 1:0 1:0 1:1 2:3 1:0 1:0 0:0 0:0 1:1 2:3 2:1 1:0 2:3 2:2 0:0 1:0 0.2969 0.5938 0.8281
igneum-attack-f8/program/244 2a45fb7f52d29259 1 2:1 2:1 2:0 0:0 0:0 0:0 2:3 2:0 2:0 1:1 0:0 0:0 0:0 2:0 1:1 1:0 0.3750 0.6250 0.8438
igneum-attack-f8/program/245 7db54383dbaa9a1f 0 2:3 2:2 1:0 1:0 1:0 2:2 0:0 0:0 1:1 1:1 2:3 0:0 2:3 1:0 2:3 0:0 0.3750 0.6250 0.8125
igneum-attack-f8/program/246 a1b84d0442e44432 0 2:2 0:0 0:0 2:0 0:0 1:1 0:0 1:0 0:0 1:0 0:0 1:0 1:1 1:1 2:2 0:0 0.3281 0.5938 0.7969
igneum-attack-f8/program/247 38d51861e7cde056 0 2:3 1:0 2:2 1:1 2:2 1:1 0:0 2:1 1:1 1:1 2:3 1:1 0:0 1:0 2:2 0:0 0.3906 0.7188 0.8906
igneum-attack-f8/program/248 77ad6a91c6018adf 0 1:1 0:0 1:0 0:0 2:2 2:3 0:0 2:1 0:0 2:2 1:0 2:2 2:1 1:1 0:0 2:1 0.3281 0.6562 0.8594
igneum-attack-f8/program/249 47780ddee28a68bb 0 0:0 2:2 0:0 0:0 0:0 2:3 1:0 1:0 1:0 0:0 1:1 1:1 1:1 2:2 1:0 0:0 0.3125 0.5625 0.7812
igneum-attack-f8/program/250 100df5f48ac80b36 0 2:1 1:0 1:0 1:1 1:1 0:0 1:1 0:0 1:0 1:0 1:1 0:0 1:1 0:0 2:0 2:3 0.2812 0.5312 0.7812
igneum-attack-f8/program/251 1d5e19d2284c1281 0 0:0 1:1 1:1 2:1 1:0 1:1 2:0 0:0 0:0 2:0 1:1 1:1 2:0 2:1 1:1 1:0 0.2969 0.5312 0.7656
igneum-attack-f8/program/252 f90a785233c79b83 1 1:1 2:0 0:0 0:0 2:1 0:0 1:1 1:0 1:0 1:0 1:1 0:0 1:0 0:0 2:0 0:0 0.3438 0.6250 0.8125
igneum-attack-f8/program/253 98129bd9d05fe504 1 0:0 2:3 2:0 0:0 1:1 1:1 2:1 0:0 1:1 0:0 0:0 0:0 1:1 0:0 2:3 2:1 0.3594 0.5938 0.8281
igneum-attack-f8/program/254 c2c15fb96f4207df 0 2:3 2:3 1:1 2:3 0:0 2:3 2:1 0:0 1:0 0:0 0:0 0:0 2:0 1:1 2:2 0:0 0.4062 0.6250 0.8125
igneum-attack-f8/program/255 387974c34af537ad 0 1:0 2:1 1:1 0:0 1:1 0:0 1:1 0:0 1:1 2:2 0:0 1:0 0:0 1:0 2:3 0:0 0.2812 0.5625 0.8125
# f=0.25: programs 256 min 0.2656 mean 0.3409 median 0.3438 p90 0.4062 max 0.5625
# f=0.50: programs 256 min 0.5312 mean 0.6110 median 0.5938 p90 0.6875 max 0.7812
# f=0.75: programs 256 min 0.7656 mean 0.8301 median 0.8281 p90 0.8750 max 0.9375
# end 2026-10-09T09:00:58Z rc 0

View file

@ -1,262 +0,0 @@
# 2026-10-09T08:51:49Z host igneum-build-9 cmd: /srv/builds/x1/bin-h-fc6bfaf25 x1model --count 256 --header-from 0 --seed igneum-attack-f8/program/ --dataset-log2 30 --class mx8+sh256x27+state+reg64c+fold+rw+flat --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07
seed program attempt windows(k:off) mass_f0.25 mass_f0.50 mass_f0.75
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igneum-attack-f8/program/170 38e92d858803cb15 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/171 a2e11ae0e138b2ba 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/172 547d965d4d7697b6 1 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/173 2dbde7eaac92a5b4 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/174 c9a20e4705fff356 1 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/175 696e67884c324930 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/176 a7178c94f7f88de8 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/177 31c4bbd751a55416 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/178 3d291447135ee0ce 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/179 9fdf7af155a0d1bd 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/180 dd99651c248fe681 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/181 65c57df02f5a4d69 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/182 b57dc135b77b6d11 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/183 48b429bff630eecb 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/184 450ddf1c54290de7 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/185 5ceedeb810cc7932 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/186 e8bd3048d17ddc76 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/187 f231afc655f6aaa8 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/188 c12ae2915e9583eb 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/189 1b6aeba9213ece47 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/190 51f1c9f4bb9ad346 1 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/191 0bcaee20a5004a7c 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/192 46a5d88f0cf623c5 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/193 36b3b08c8d633e03 1 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/194 d9cd2e18406abb10 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/195 b0354cb05970daa9 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/196 03931841c86c5237 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/197 6703bde2ba866f36 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/198 87ce656960ebcc5f 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/199 8d655b48f7567c85 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/200 6498aa7df88637f7 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/201 f3fef27a6d15fade 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/202 3bb31639dd613db8 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/203 16ddd56e667fc71f 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/204 9a1133d7f18c521f 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/205 a66f55511a116b70 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/206 6427ac0ca8749921 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/207 3f4cda6f6e7d0579 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/208 808ea2e321584184 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/209 5e6a8f102b54a2b0 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/210 6f30c48c8fa0ef9c 1 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/211 cc68c35ce8be1fa2 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/212 a00c57abc824b596 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/213 652649c20d0d2467 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/214 e0b433160413fb8b 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/215 92ff3a3909cb3ad4 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/216 afae805fabb79a0c 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/217 f31626234d374498 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/218 b3c5fd4a10ec4f16 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/219 1bb24593762240a7 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/220 08dee98b2ba9f80f 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/221 2c2c479bb3c5e73c 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/222 cd84cdf8b339c533 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/223 b19f3218be94c72e 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/224 8c750902f6b162ca 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/225 4f0d993852c20d75 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/226 e562d6ca46175b5b 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/227 687225c55dcf38f2 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/228 3d0c105611d1cf01 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/229 925dcc935f655aeb 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/230 15448a7ce2989710 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/231 2dfe26812018fc2c 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/232 0981b2710aef21a4 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/233 12b4018aca55e262 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/234 968dcb6457f7a510 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/235 e1ab03737863ce93 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/236 0f5777a2464edba6 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/237 1fe6d9d6581901d4 1 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/238 3b3023bbd96e7935 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/239 979176653a299a6f 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/240 54c80406f7539453 2 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/241 cf148470450d7356 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/242 dfae9fc82821684f 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/243 01f1916885a3b1e5 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/244 73f44d86fd7ed456 1 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/245 3200e40212aeb448 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/246 abb20a54c15b7113 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/247 9a5209c651de4d8f 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/248 7808840e84f5dd08 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/249 8fdbfa468bec612c 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/250 c0ab808ce92972ef 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/251 1747e8cee744616e 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/252 b00910422510e131 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/253 e589e0fb8fb2c0e9 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/254 f0460f873caacc08 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
igneum-attack-f8/program/255 44df045133126502 0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0:0 0.2500 0.5000 0.7500
# f=0.25: programs 256 min 0.2500 mean 0.2500 median 0.2500 p90 0.2500 max 0.2500
# f=0.50: programs 256 min 0.5000 mean 0.5000 median 0.5000 p90 0.5000 max 0.5000
# f=0.75: programs 256 min 0.7500 mean 0.7500 median 0.7500 p90 0.7500 max 0.7500
# end 2026-10-09T09:00:59Z rc 0

View file

@ -1,45 +0,0 @@
# 2026-10-09T08:51:38Z host igneum-build-8 cmd: /srv/builds/x1/bin-h-5264b8152 addrsite --count 4 --warps 2048 --threads 30 --seed igneum-attack-f8/program/18 --day-hex 69676e65756d2d6461792ffa50000000000000 --class mx8+sh256x27+state+reg64c+fold+rw --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# addrsite: program 0b686c80e25cb4d3 class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw attempt 0 generator v6 day 2026-10-03 dataset 2^28 words (memory-hard) headers 4 warps 2048 nonces/header 65536 threads 30
# per (iteration, site) cell: the most read address and its share (A03's form); cells over 0.1 percent listed
it site instr reads distinct top_addr top_count top_share
0 0 3 262144 261876 0x000e4f1d 3 0.000011
0 1 3 262144 261871 0x05807101 2 0.000008
# worst cell: iteration 0 site 0 address 0x000e4f1d in 3 reads, share 0.000011
# per site, pooled over the 8 iterations (hit rates: an ideal cache of the site's top K items, K = bytes / 64; exp = min(1, K / window items))
site instr win window_items reads distinct top_addr top_count top_share hit_1GiB hit_256MiB hit_64MiB exp_1GiB exp_256MiB exp_64MiB distinct_ratio bit_z_max bit
0 3 1 8388608 2097152 2080929 0x04b26299 4 0.000002 1.0000 1.0000 0.6154 1.0000 0.5000 0.1250 1.00008 -2.60 22
1 3 1 8388608 2097152 2080879 0x0693accf 3 0.000001 1.0000 1.0000 0.6154 1.0000 0.5000 0.1250 1.00005 -2.51 18
2 6 0 16777216 2097152 2089195 0x0e4e082d 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00011 -1.82 22
3 6 0 16777216 2097152 2089046 0x0ea9550b 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00004 -1.95 9
4 11 1 8388608 2097152 2080698 0x0e68ce36 3 0.000001 1.0000 1.0000 0.6154 1.0000 0.5000 0.1250 0.99997 -1.88 21
5 11 1 8388608 2097152 2080934 0x0f6682d8 3 0.000001 1.0000 1.0000 0.6155 1.0000 0.5000 0.1250 1.00008 -2.87 7
6 18 2 4194304 2097152 2064883 0x00482c0a 4 0.000002 1.0000 1.0000 0.7130 1.0000 1.0000 0.2500 1.00024 1.85 17
7 18 2 4194304 2097152 2064474 0x0107e1f5 4 0.000002 1.0000 1.0000 0.7127 1.0000 1.0000 0.2500 1.00004 2.09 17
8 27 2 4194304 2097152 2064914 0x066b8f5f 4 0.000002 1.0000 1.0000 0.7132 1.0000 1.0000 0.2500 1.00026 -2.61 3
9 27 2 4194304 2097152 2064236 0x04666edb 4 0.000002 1.0000 1.0000 0.7132 1.0000 1.0000 0.2500 0.99993 3.08 19
10 34 2 4194304 2097152 2064642 0x03de3c5a 3 0.000001 1.0000 1.0000 0.7129 1.0000 1.0000 0.2500 1.00012 2.44 14
11 34 2 4194304 2097152 2064513 0x0214c14a 4 0.000002 1.0000 1.0000 0.7133 1.0000 1.0000 0.2500 1.00006 -1.94 17
12 37 1 8388608 2097152 2080803 0x00fa4c0e 3 0.000001 1.0000 1.0000 0.6153 1.0000 0.5000 0.1250 1.00002 -2.47 19
13 37 1 8388608 2097152 2080758 0x014397ae 3 0.000001 1.0000 1.0000 0.6151 1.0000 0.5000 0.1250 1.00000 -2.26 13
14 40 2 4194304 2097152 2064723 0x0e24ab8d 4 0.000002 1.0000 1.0000 0.7132 1.0000 1.0000 0.2500 1.00016 -2.98 6
15 40 2 4194304 2097152 2064774 0x0ec5a875 4 0.000002 1.0000 1.0000 0.7131 1.0000 1.0000 0.2500 1.00019 -1.61 22
16 41 2 4194304 2097152 2064682 0x03ec6eec 4 0.000002 1.0000 1.0000 0.7131 1.0000 1.0000 0.2500 1.00014 -2.38 9
17 41 2 4194304 2097152 2064788 0x002b996b 3 0.000001 1.0000 1.0000 0.7131 1.0000 1.0000 0.2500 1.00020 2.55 20
18 42 2 4194304 2097152 2064547 0x0857257a 4 0.000002 1.0000 1.0000 0.7127 1.0000 1.0000 0.2500 1.00008 1.76 9
19 42 2 4194304 2097152 2064774 0x0b615202 4 0.000002 1.0000 1.0000 0.7129 1.0000 1.0000 0.2500 1.00019 1.98 6
20 48 2 4194304 2097152 2064698 0x0fd0c838 4 0.000002 1.0000 1.0000 0.7129 1.0000 1.0000 0.2500 1.00015 -2.57 10
21 48 2 4194304 2097152 2064685 0x0c9c58e6 4 0.000002 1.0000 1.0000 0.7129 1.0000 1.0000 0.2500 1.00015 2.09 2
22 50 0 16777216 2097152 2088969 0x0ead2bcb 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00000 -2.30 23
23 50 0 16777216 2097152 2088913 0x07668717 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99998 -1.63 21
24 55 2 4194304 2097152 2064704 0x0ec4fb7c 3 0.000001 1.0000 1.0000 0.7135 1.0000 1.0000 0.2500 1.00016 3.09 16
25 55 2 4194304 2097152 2064810 0x0e5b8c25 3 0.000001 1.0000 1.0000 0.7130 1.0000 1.0000 0.2500 1.00021 1.79 23
26 57 1 8388608 2097152 2080683 0x071707d2 4 0.000002 1.0000 1.0000 0.6152 1.0000 0.5000 0.1250 0.99996 2.26 18
27 57 1 8388608 2097152 2080580 0x018d75a0 3 0.000001 1.0000 1.0000 0.6151 1.0000 0.5000 0.1250 0.99991 -2.78 16
28 60 1 8388608 2097152 2081125 0x0cce7425 3 0.000001 1.0000 1.0000 0.6153 1.0000 0.5000 0.1250 1.00017 -2.33 11
29 60 1 8388608 2097152 2080624 0x0a7f548e 3 0.000001 1.0000 1.0000 0.6152 1.0000 0.5000 0.1250 0.99993 -1.99 14
30 62 0 16777216 2097152 2088835 0x0c4be669 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99994 1.61 15
31 62 0 16777216 2097152 2088964 0x0968d944 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00000 -1.98 12
# F8 form over the live stream: top 0.1 percent of items hold 0.003391 of reads; flat control 0.003074 (ratio 1.1032x), windowed control 0.003389 (ratio 1.0006x; the gate 1.2x); min site distinct ratio 0.99991 (floors 0.98 and 0.995); worst index bit inside its window 3.09 sigma at site 24 bit 16 (the band 6)
# program: reads 67108864, distinct items 16288897, worst site 0 address 0x04b26299 in 4 reads (share 0.000002); one cache over the program's reads: 1 GiB 1.0000, 256 MiB 0.4404, 64 MiB 0.1414; the per-site ideal caches summed: 1.0000, 1.0000, 0.6538; 33.4 s
# end 2026-10-09T08:52:14Z rc 0

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@ -1,45 +0,0 @@
# 2026-10-09T08:49:13Z host igneum-build-8 cmd: /srv/builds/x1/bin-h-5264b8152 addrsite --count 4 --header-from 0 --warps 8192 --threads 30 --epoch-hex edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --day-hex 69676e65756d2d6461792ffa50000000000000 --class mx8+sh256x27+state+reg64c+fold+rw+flat --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# addrsite: program caf198d6c4b4767b class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 0 generator v6 day bytes:69676e65756d2d6461792ffa50000000000000 dataset 2^28 words (memory-hard) headers 4 warps 8192 nonces/header 262144 threads 30
# per (iteration, site) cell: the most read address and its share (A03's form); cells over 0.1 percent listed
it site instr reads distinct top_addr top_count top_share
0 0 7 1048576 1046582 0x0ef4d4da 3 0.000003
0 1 7 1048576 1046533 0x014a5fd7 3 0.000003
# worst cell: iteration 0 site 0 address 0x0ef4d4da in 3 reads, share 0.000003
# per site, pooled over the 8 iterations (hit rates: an ideal cache of the site's top K items, K = bytes / 64; exp = min(1, K / window items))
site instr win window_items reads distinct top_addr top_count top_share hit_1GiB hit_256MiB hit_64MiB exp_1GiB exp_256MiB exp_64MiB distinct_ratio bit_z_max bit
0 7 0 16777216 8388608 8258529 0x044a296f 4 0.000000 1.0000 0.7131 0.2826 1.0000 0.2500 0.0625 1.00012 2.06 5
1 7 0 16777216 8388608 8258908 0x0203e072 4 0.000000 1.0000 0.7131 0.2827 1.0000 0.2500 0.0625 1.00017 3.06 6
2 8 0 16777216 8388608 8258741 0x049f213a 4 0.000000 1.0000 0.7132 0.2827 1.0000 0.2500 0.0625 1.00015 -1.59 21
3 8 0 16777216 8388608 8259116 0x0fdcf9a9 4 0.000000 1.0000 0.7130 0.2827 1.0000 0.2500 0.0625 1.00019 2.13 6
4 9 0 16777216 8388608 8258594 0x08b06953 4 0.000000 1.0000 0.7131 0.2826 1.0000 0.2500 0.0625 1.00013 1.87 21
5 9 0 16777216 8388608 8259012 0x03dec1c2 4 0.000000 1.0000 0.7132 0.2827 1.0000 0.2500 0.0625 1.00018 -2.42 18
6 10 0 16777216 8388608 8259492 0x069ef837 4 0.000000 1.0000 0.7131 0.2826 1.0000 0.2500 0.0625 1.00024 -2.97 3
7 10 0 16777216 8388608 8259301 0x045bddf8 4 0.000000 1.0000 0.7131 0.2826 1.0000 0.2500 0.0625 1.00021 2.34 4
8 11 0 16777216 8388608 8259404 0x04a0d01e 4 0.000000 1.0000 0.7130 0.2825 1.0000 0.2500 0.0625 1.00023 -1.94 10
9 11 0 16777216 8388608 8258543 0x0209ba16 4 0.000000 1.0000 0.7131 0.2827 1.0000 0.2500 0.0625 1.00012 -2.25 27
10 13 0 16777216 8388608 8258705 0x066bd7ea 4 0.000000 1.0000 0.7131 0.2826 1.0000 0.2500 0.0625 1.00014 2.14 10
11 13 0 16777216 8388608 8258562 0x0dc78a14 4 0.000000 1.0000 0.7130 0.2826 1.0000 0.2500 0.0625 1.00012 -2.99 0
12 29 0 16777216 8388608 8258355 0x0ce78c99 4 0.000000 1.0000 0.7132 0.2827 1.0000 0.2500 0.0625 1.00010 2.52 8
13 29 0 16777216 8388608 8259081 0x05824fe7 4 0.000000 1.0000 0.7130 0.2826 1.0000 0.2500 0.0625 1.00019 2.00 22
14 30 0 16777216 8388608 8258910 0x0489190c 4 0.000000 1.0000 0.7131 0.2826 1.0000 0.2500 0.0625 1.00017 2.38 27
15 30 0 16777216 8388608 8259478 0x08585a70 4 0.000000 1.0000 0.7129 0.2826 1.0000 0.2500 0.0625 1.00024 -1.44 16
16 31 0 16777216 8388608 8258868 0x0c482484 4 0.000000 1.0000 0.7129 0.2826 1.0000 0.2500 0.0625 1.00016 -2.25 21
17 31 0 16777216 8388608 8258517 0x0ae7cc8e 4 0.000000 1.0000 0.7133 0.2827 1.0000 0.2500 0.0625 1.00012 2.31 16
18 44 0 16777216 8388608 8258504 0x090caa6b 4 0.000000 1.0000 0.7131 0.2827 1.0000 0.2500 0.0625 1.00012 2.86 14
19 44 0 16777216 8388608 8258738 0x032b56ba 4 0.000000 1.0000 0.7130 0.2826 1.0000 0.2500 0.0625 1.00015 2.70 5
20 46 0 16777216 8388608 8259383 0x0036c34d 4 0.000000 1.0000 0.7131 0.2826 1.0000 0.2500 0.0625 1.00022 -2.38 4
21 46 0 16777216 8388608 8259230 0x0533c0ca 4 0.000000 1.0000 0.7131 0.2827 1.0000 0.2500 0.0625 1.00021 -1.84 18
22 47 0 16777216 8388608 8258678 0x09107e29 4 0.000000 1.0000 0.7131 0.2827 1.0000 0.2500 0.0625 1.00014 2.29 13
23 47 0 16777216 8388608 8259371 0x064a3789 4 0.000000 1.0000 0.7131 0.2826 1.0000 0.2500 0.0625 1.00022 -2.89 22
24 52 0 16777216 8388608 8258583 0x0bdfbb40 4 0.000000 1.0000 0.7133 0.2827 1.0000 0.2500 0.0625 1.00013 -1.84 9
25 52 0 16777216 8388608 8259300 0x040821ec 4 0.000000 1.0000 0.7130 0.2826 1.0000 0.2500 0.0625 1.00021 1.87 10
26 56 0 16777216 8388608 8258378 0x09854dc2 4 0.000000 1.0000 0.7132 0.2827 1.0000 0.2500 0.0625 1.00010 2.66 12
27 56 0 16777216 8388608 8258943 0x0c0f7cda 4 0.000000 1.0000 0.7130 0.2827 1.0000 0.2500 0.0625 1.00017 2.43 19
28 58 0 16777216 8388608 8258905 0x0d4278bb 4 0.000000 1.0000 0.7129 0.2826 1.0000 0.2500 0.0625 1.00017 -1.84 25
29 58 0 16777216 8388608 8258545 0x01220789 4 0.000000 1.0000 0.7132 0.2826 1.0000 0.2500 0.0625 1.00012 1.97 1
30 63 0 16777216 8388608 8259127 0x0a20cbc4 4 0.000000 1.0000 0.7129 0.2826 1.0000 0.2500 0.0625 1.00019 2.34 11
31 63 0 16777216 8388608 8258769 0x05434735 4 0.000000 1.0000 0.7129 0.2826 1.0000 0.2500 0.0625 1.00015 -1.80 23
# F8 form over the live stream: top 0.1 percent of items hold 0.001942 of reads; flat control 0.001942 (ratio 1.0002x), windowed control 0.001942 (ratio 1.0000x; the gate 1.2x); min site distinct ratio 1.00010 (floors 0.98 and 0.995); worst index bit inside its window 3.06 sigma at site 1 bit 6 (the band 6)
# program: reads 268435456, distinct items 16777214, worst site 0 address 0x044a296f in 4 reads (share 0.000000); one cache over the program's reads: 1 GiB 1.0000, 256 MiB 0.3316, 64 MiB 0.0951; the per-site ideal caches summed: 1.0000, 0.7131, 0.2826; 142.5 s
# end 2026-10-09T08:51:38Z rc 0

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@ -1,45 +0,0 @@
# 2026-10-09T08:49:13Z host igneum-build-8 cmd: /srv/builds/x1/bin-h-5264b8152 addrsite --count 4 --header-from 4 --warps 8192 --threads 30 --epoch-hex edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --day-hex 69676e65756d2d6461792ffa50000000000000 --class mx8+sh256x27+state+reg64c+fold+rw+flat --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# addrsite: program caf198d6c4b4767b class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 0 generator v6 day bytes:69676e65756d2d6461792ffa50000000000000 dataset 2^28 words (memory-hard) headers 4 warps 8192 nonces/header 262144 threads 30
# per (iteration, site) cell: the most read address and its share (A03's form); cells over 0.1 percent listed
it site instr reads distinct top_addr top_count top_share
0 0 7 1048576 1046526 0x01b7dfc8 3 0.000003
0 1 7 1048576 1046479 0x0b718cea 3 0.000003
# worst cell: iteration 5 site 17 address 0x078a27ae in 4 reads, share 0.000004
# per site, pooled over the 8 iterations (hit rates: an ideal cache of the site's top K items, K = bytes / 64; exp = min(1, K / window items))
site instr win window_items reads distinct top_addr top_count top_share hit_1GiB hit_256MiB hit_64MiB exp_1GiB exp_256MiB exp_64MiB distinct_ratio bit_z_max bit
0 7 0 16777216 8388608 8258910 0x0a6d63a4 4 0.000000 1.0000 0.7130 0.2825 1.0000 0.2500 0.0625 1.00017 -1.67 6
1 7 0 16777216 8388608 8258420 0x03df7b6a 4 0.000000 1.0000 0.7130 0.2826 1.0000 0.2500 0.0625 1.00011 -3.11 11
2 8 0 16777216 8388608 8258781 0x03d6e97b 4 0.000000 1.0000 0.7132 0.2826 1.0000 0.2500 0.0625 1.00015 -1.93 2
3 8 0 16777216 8388608 8259202 0x0b3d7eef 4 0.000000 1.0000 0.7131 0.2826 1.0000 0.2500 0.0625 1.00020 -2.46 19
4 9 0 16777216 8388608 8258607 0x0cae64db 4 0.000000 1.0000 0.7131 0.2826 1.0000 0.2500 0.0625 1.00013 -1.92 3
5 9 0 16777216 8388608 8258827 0x02e43e1a 4 0.000000 1.0000 0.7133 0.2827 1.0000 0.2500 0.0625 1.00016 -2.01 23
6 10 0 16777216 8388608 8258875 0x0f576e4c 4 0.000000 1.0000 0.7132 0.2827 1.0000 0.2500 0.0625 1.00016 -1.58 26
7 10 0 16777216 8388608 8259162 0x022305be 4 0.000000 1.0000 0.7130 0.2827 1.0000 0.2500 0.0625 1.00020 2.58 9
8 11 0 16777216 8388608 8258418 0x0f038556 4 0.000000 1.0000 0.7130 0.2827 1.0000 0.2500 0.0625 1.00011 2.27 9
9 11 0 16777216 8388608 8259073 0x00011585 4 0.000000 1.0000 0.7131 0.2826 1.0000 0.2500 0.0625 1.00019 1.87 16
10 13 0 16777216 8388608 8258849 0x08112614 4 0.000000 1.0000 0.7131 0.2827 1.0000 0.2500 0.0625 1.00016 2.16 5
11 13 0 16777216 8388608 8259306 0x0212f95d 4 0.000000 1.0000 0.7129 0.2826 1.0000 0.2500 0.0625 1.00021 -2.07 24
12 29 0 16777216 8388608 8258539 0x0e52b3a4 4 0.000000 1.0000 0.7131 0.2827 1.0000 0.2500 0.0625 1.00012 2.88 1
13 29 0 16777216 8388608 8259121 0x00d3dae3 4 0.000000 1.0000 0.7129 0.2826 1.0000 0.2500 0.0625 1.00019 2.42 22
14 30 0 16777216 8388608 8258978 0x0151420e 4 0.000000 1.0000 0.7130 0.2827 1.0000 0.2500 0.0625 1.00017 1.72 18
15 30 0 16777216 8388608 8259331 0x0a7ee620 4 0.000000 1.0000 0.7129 0.2826 1.0000 0.2500 0.0625 1.00022 -2.21 19
16 31 0 16777216 8388608 8259183 0x0bc9c9e3 4 0.000000 1.0000 0.7129 0.2826 1.0000 0.2500 0.0625 1.00020 -2.31 5
17 31 0 16777216 8388608 8259182 0x0dcbd756 4 0.000000 1.0000 0.7128 0.2825 1.0000 0.2500 0.0625 1.00020 2.04 12
18 44 0 16777216 8388608 8259950 0x0a190478 4 0.000000 1.0000 0.7132 0.2826 1.0000 0.2500 0.0625 1.00029 -2.80 27
19 44 0 16777216 8388608 8258836 0x05312882 4 0.000000 1.0000 0.7130 0.2827 1.0000 0.2500 0.0625 1.00016 -2.04 16
20 46 0 16777216 8388608 8258353 0x0f004b17 4 0.000000 1.0000 0.7132 0.2828 1.0000 0.2500 0.0625 1.00010 1.89 26
21 46 0 16777216 8388608 8258661 0x06c8340c 5 0.000001 1.0000 0.7131 0.2827 1.0000 0.2500 0.0625 1.00014 1.88 9
22 47 0 16777216 8388608 8258821 0x07423911 4 0.000000 1.0000 0.7133 0.2828 1.0000 0.2500 0.0625 1.00016 2.44 25
23 47 0 16777216 8388608 8259359 0x09001fec 4 0.000000 1.0000 0.7130 0.2826 1.0000 0.2500 0.0625 1.00022 2.34 11
24 52 0 16777216 8388608 8258951 0x03bcf13a 4 0.000000 1.0000 0.7129 0.2826 1.0000 0.2500 0.0625 1.00017 2.17 4
25 52 0 16777216 8388608 8258769 0x07d27d93 4 0.000000 1.0000 0.7131 0.2827 1.0000 0.2500 0.0625 1.00015 2.36 14
26 56 0 16777216 8388608 8259659 0x04fc83d1 4 0.000000 1.0000 0.7130 0.2827 1.0000 0.2500 0.0625 1.00026 -1.80 10
27 56 0 16777216 8388608 8258551 0x0081a7a1 4 0.000000 1.0000 0.7130 0.2826 1.0000 0.2500 0.0625 1.00012 2.18 1
28 58 0 16777216 8388608 8258700 0x04073f7c 4 0.000000 1.0000 0.7130 0.2826 1.0000 0.2500 0.0625 1.00014 -2.80 14
29 58 0 16777216 8388608 8258933 0x0c83a0a7 4 0.000000 1.0000 0.7130 0.2826 1.0000 0.2500 0.0625 1.00017 2.08 7
30 63 0 16777216 8388608 8258022 0x07901146 4 0.000000 1.0000 0.7130 0.2827 1.0000 0.2500 0.0625 1.00006 1.93 5
31 63 0 16777216 8388608 8258821 0x06003c70 4 0.000000 1.0000 0.7130 0.2826 1.0000 0.2500 0.0625 1.00016 -2.16 22
# F8 form over the live stream: top 0.1 percent of items hold 0.001942 of reads; flat control 0.001942 (ratio 1.0003x), windowed control 0.001942 (ratio 1.0001x; the gate 1.2x); min site distinct ratio 1.00006 (floors 0.98 and 0.995); worst index bit inside its window -3.11 sigma at site 1 bit 11 (the band 6)
# program: reads 268435456, distinct items 16777216, worst site 21 address 0x06c8340c in 5 reads (share 0.000001); one cache over the program's reads: 1 GiB 1.0000, 256 MiB 0.3316, 64 MiB 0.0951; the per-site ideal caches summed: 1.0000, 0.7130, 0.2826; 143.3 s
# end 2026-10-09T08:51:39Z rc 0

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@ -1,45 +0,0 @@
# 2026-10-09T08:52:14Z host igneum-build-8 cmd: /srv/builds/x1/bin-h-5264b8152 addrsite --count 4 --warps 2048 --threads 30 --seed igneum-attack-f8/program/18 --day-hex 69676e65756d2d6461792ffa50000000000000 --class mx8+sh256x27+state+reg64c+fold+rw+flat --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# addrsite: program 0fc8727ab6190454 class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 0 generator v6 day 2026-10-03 dataset 2^28 words (memory-hard) headers 4 warps 2048 nonces/header 65536 threads 30
# per (iteration, site) cell: the most read address and its share (A03's form); cells over 0.1 percent listed
it site instr reads distinct top_addr top_count top_share
0 0 3 262144 262013 0x04d47d21 2 0.000008
0 1 3 262144 262003 0x06e0286e 2 0.000008
# worst cell: iteration 0 site 8 address 0x01fa4053 in 3 reads, share 0.000011
# per site, pooled over the 8 iterations (hit rates: an ideal cache of the site's top K items, K = bytes / 64; exp = min(1, K / window items))
site instr win window_items reads distinct top_addr top_count top_share hit_1GiB hit_256MiB hit_64MiB exp_1GiB exp_256MiB exp_64MiB distinct_ratio bit_z_max bit
0 3 0 16777216 2097152 2088863 0x0d70afdb 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99995 3.55 19
1 3 0 16777216 2097152 2088999 0x00718a60 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00002 -2.33 25
2 6 0 16777216 2097152 2088988 0x06602aeb 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00001 -1.90 18
3 6 0 16777216 2097152 2088874 0x080da5b5 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 0.99996 3.28 10
4 11 0 16777216 2097152 2089050 0x052b3357 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00004 2.74 2
5 11 0 16777216 2097152 2088963 0x0fa45751 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00000 -2.33 2
6 18 0 16777216 2097152 2088997 0x07e55e31 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 1.00002 2.29 18
7 18 0 16777216 2097152 2088903 0x086758ad 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99997 -2.53 27
8 27 0 16777216 2097152 2089005 0x05dcf7fc 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00002 -2.02 11
9 27 0 16777216 2097152 2088896 0x0dd64106 4 0.000002 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99997 -1.90 19
10 34 0 16777216 2097152 2088997 0x0a007f26 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00002 3.04 12
11 34 0 16777216 2097152 2088924 0x076e780b 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 0.99998 -2.31 8
12 37 0 16777216 2097152 2089079 0x00ab483c 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00006 1.96 10
13 37 0 16777216 2097152 2088968 0x0374c23a 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00000 2.41 17
14 40 0 16777216 2097152 2088995 0x0803d1f2 3 0.000001 1.0000 1.0000 0.5596 1.0000 0.2500 0.0625 1.00002 2.18 17
15 40 0 16777216 2097152 2088902 0x05669918 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 0.99997 2.27 1
16 41 0 16777216 2097152 2088873 0x063ab3c9 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99996 2.02 12
17 41 0 16777216 2097152 2089032 0x096a5e68 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00003 2.99 22
18 42 0 16777216 2097152 2088993 0x0328fed3 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00002 -2.39 8
19 42 0 16777216 2097152 2089079 0x06b9f809 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00006 -2.06 3
20 48 0 16777216 2097152 2088813 0x0bbaa25b 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 0.99993 -2.29 26
21 48 0 16777216 2097152 2088992 0x073bfdb2 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00002 -2.04 2
22 50 0 16777216 2097152 2088912 0x0ab741ca 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99998 -2.37 16
23 50 0 16777216 2097152 2089105 0x0d2d71fd 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00007 2.30 4
24 55 0 16777216 2097152 2089050 0x01f522ec 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00004 -2.34 8
25 55 0 16777216 2097152 2089035 0x084eb59c 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 1.00004 2.82 5
26 57 0 16777216 2097152 2088963 0x026624ba 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00000 2.10 4
27 57 0 16777216 2097152 2088974 0x0bf93c7d 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00001 2.38 11
28 60 0 16777216 2097152 2089140 0x0eb09f7b 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00009 -1.83 24
29 60 0 16777216 2097152 2088904 0x034ba031 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 0.99997 -2.05 17
30 62 0 16777216 2097152 2088917 0x0ddf294c 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99998 1.82 22
31 62 0 16777216 2097152 2089025 0x06e22d29 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00003 2.54 15
# F8 form over the live stream: top 0.1 percent of items hold 0.003075 of reads; flat control 0.003073 (ratio 1.0005x), windowed control 0.003077 (ratio 0.9993x; the gate 1.2x); min site distinct ratio 0.99993 (floors 0.98 and 0.995); worst index bit inside its window 3.55 sigma at site 0 bit 19 (the band 6)
# program: reads 67108864, distinct items 16469311, worst site 9 address 0x0dd64106 in 4 reads (share 0.000002); one cache over the program's reads: 1 GiB 1.0000, 256 MiB 0.4151, 64 MiB 0.1306; the per-site ideal caches summed: 1.0000, 1.0000, 0.5600; 34.4 s
# end 2026-10-09T08:52:51Z rc 0

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@ -1,45 +0,0 @@
# 2026-10-09T08:52:51Z host igneum-build-8 cmd: /srv/builds/x1/bin-h-5264b8152 addrsite --count 4 --warps 2048 --threads 30 --seed igneum-attack-f8/program/19 --day-hex 69676e65756d2d6461792ffa50000000000000 --class mx8+sh256x27+state+reg64c+fold+rw+flat --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# addrsite: program 7c5149150271b038 class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 0 generator v6 day 2026-10-03 dataset 2^28 words (memory-hard) headers 4 warps 2048 nonces/header 65536 threads 30
# per (iteration, site) cell: the most read address and its share (A03's form); cells over 0.1 percent listed
it site instr reads distinct top_addr top_count top_share
0 0 3 262144 262015 0x0d6c09cc 2 0.000008
0 1 3 262144 262007 0x0d1ac661 2 0.000008
# worst cell: iteration 1 site 13 address 0x08438673 in 3 reads, share 0.000011
# per site, pooled over the 8 iterations (hit rates: an ideal cache of the site's top K items, K = bytes / 64; exp = min(1, K / window items))
site instr win window_items reads distinct top_addr top_count top_share hit_1GiB hit_256MiB hit_64MiB exp_1GiB exp_256MiB exp_64MiB distinct_ratio bit_z_max bit
0 3 0 16777216 2097152 2088978 0x05752979 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00001 2.64 16
1 3 0 16777216 2097152 2089037 0x0c5da287 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00004 -4.10 10
2 5 0 16777216 2097152 2089013 0x01059509 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00003 -1.83 5
3 5 0 16777216 2097152 2088956 0x0e47f453 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00000 1.83 21
4 8 0 16777216 2097152 2088951 0x0d02e28d 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00000 2.93 7
5 8 0 16777216 2097152 2088914 0x07859ea3 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99998 -2.02 16
6 15 0 16777216 2097152 2089156 0x0672c11c 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00009 -3.08 0
7 15 0 16777216 2097152 2089041 0x08b3aa90 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00004 2.47 20
8 16 0 16777216 2097152 2088954 0x0b047fe9 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00000 -2.07 12
9 16 0 16777216 2097152 2088920 0x0d73acc4 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99998 -1.86 4
10 18 0 16777216 2097152 2088748 0x06b25e0a 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99990 2.13 19
11 18 0 16777216 2097152 2088950 0x02449cf0 3 0.000001 1.0000 1.0000 0.5604 1.0000 0.2500 0.0625 1.00000 -2.27 27
12 20 0 16777216 2097152 2089003 0x08f25a66 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00002 2.57 14
13 20 0 16777216 2097152 2089068 0x0f481bdb 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00005 -2.27 21
14 24 0 16777216 2097152 2088841 0x048709a8 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99994 -2.53 3
15 24 0 16777216 2097152 2088924 0x065f2b8c 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 0.99998 -2.94 9
16 28 0 16777216 2097152 2088952 0x0167f1da 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00000 2.04 1
17 28 0 16777216 2097152 2088851 0x0f4d063e 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99995 -2.62 5
18 29 0 16777216 2097152 2089047 0x08220630 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00004 2.48 0
19 29 0 16777216 2097152 2088929 0x0aa0d55a 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99999 -1.94 24
20 35 0 16777216 2097152 2088959 0x07d6515e 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00000 2.10 17
21 35 0 16777216 2097152 2089012 0x0d3a4cc5 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00002 2.41 12
22 41 0 16777216 2097152 2089071 0x04ff4e6d 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00005 -2.27 20
23 41 0 16777216 2097152 2088945 0x012afd86 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99999 -2.83 12
24 52 0 16777216 2097152 2089082 0x00f8eb35 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00006 2.24 15
25 52 0 16777216 2097152 2088970 0x087476e0 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 1.00000 2.44 6
26 54 0 16777216 2097152 2088929 0x07030316 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99999 3.71 13
27 54 0 16777216 2097152 2088975 0x01cd619b 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00001 2.50 12
28 55 0 16777216 2097152 2088901 0x00a07527 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99997 3.12 23
29 55 0 16777216 2097152 2089044 0x024218b9 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00004 -2.22 7
30 62 0 16777216 2097152 2088947 0x01563e63 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99999 -2.85 11
31 62 0 16777216 2097152 2089115 0x03a7f0e3 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00007 -2.08 27
# F8 form over the live stream: top 0.1 percent of items hold 0.003075 of reads; flat control 0.003074 (ratio 1.0004x), windowed control 0.003071 (ratio 1.0013x; the gate 1.2x); min site distinct ratio 0.99990 (floors 0.98 and 0.995); worst index bit inside its window -4.10 sigma at site 1 bit 10 (the band 6)
# program: reads 67108864, distinct items 16469896, worst site 0 address 0x05752979 in 3 reads (share 0.000001); one cache over the program's reads: 1 GiB 1.0000, 256 MiB 0.4151, 64 MiB 0.1306; the per-site ideal caches summed: 1.0000, 1.0000, 0.5600; 33.1 s
# end 2026-10-09T08:53:27Z rc 0

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@ -1,45 +0,0 @@
# 2026-10-09T08:53:27Z host igneum-build-8 cmd: /srv/builds/x1/bin-h-5264b8152 addrsite --count 4 --warps 2048 --threads 30 --seed igneum-attack-f8/program/20 --day-hex 69676e65756d2d6461792ffa50000000000000 --class mx8+sh256x27+state+reg64c+fold+rw+flat --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# addrsite: program 8ecb2e06575657b8 class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 0 generator v6 day 2026-10-03 dataset 2^28 words (memory-hard) headers 4 warps 2048 nonces/header 65536 threads 30
# per (iteration, site) cell: the most read address and its share (A03's form); cells over 0.1 percent listed
it site instr reads distinct top_addr top_count top_share
0 0 7 262144 262005 0x0cd36e21 2 0.000008
0 1 7 262144 262032 0x01ca5494 2 0.000008
# worst cell: iteration 0 site 9 address 0x0b5eaa84 in 3 reads, share 0.000011
# per site, pooled over the 8 iterations (hit rates: an ideal cache of the site's top K items, K = bytes / 64; exp = min(1, K / window items))
site instr win window_items reads distinct top_addr top_count top_share hit_1GiB hit_256MiB hit_64MiB exp_1GiB exp_256MiB exp_64MiB distinct_ratio bit_z_max bit
0 7 0 16777216 2097152 2089005 0x07bfd0a7 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00002 -2.31 2
1 7 0 16777216 2097152 2088966 0x0d0d719a 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00000 2.65 1
2 12 0 16777216 2097152 2088966 0x056662f7 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00000 -1.96 3
3 12 0 16777216 2097152 2089082 0x0d5db8cc 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00006 -2.54 16
4 16 0 16777216 2097152 2089094 0x09a006c2 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00006 -2.77 7
5 16 0 16777216 2097152 2088919 0x0cda70f4 4 0.000002 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 0.99998 2.90 25
6 21 0 16777216 2097152 2089144 0x067f0ab3 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00009 2.51 8
7 21 0 16777216 2097152 2089093 0x06f6f1cb 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00006 -1.64 14
8 23 0 16777216 2097152 2088904 0x0a3af30c 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99997 -2.39 13
9 23 0 16777216 2097152 2089005 0x0f345596 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00002 2.37 18
10 26 0 16777216 2097152 2089072 0x038f9617 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00005 1.85 19
11 26 0 16777216 2097152 2089042 0x0fa3fdd4 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00004 -2.06 12
12 31 0 16777216 2097152 2088986 0x080df601 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00001 2.10 7
13 31 0 16777216 2097152 2089061 0x01bfad4d 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00005 -2.06 9
14 37 0 16777216 2097152 2089027 0x09eb8e2b 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00003 1.97 24
15 37 0 16777216 2097152 2089011 0x01d51e3e 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00002 -2.11 22
16 42 0 16777216 2097152 2088984 0x0999aca2 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00001 -3.09 12
17 42 0 16777216 2097152 2089071 0x006c11c7 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00005 -2.27 22
18 50 0 16777216 2097152 2089052 0x0f6383ec 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00004 2.33 3
19 50 0 16777216 2097152 2089060 0x04e0bc13 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00005 -2.29 27
20 52 0 16777216 2097152 2088931 0x022762ac 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99999 -3.00 18
21 52 0 16777216 2097152 2088965 0x0ab24ccf 4 0.000002 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00000 -2.72 0
22 55 0 16777216 2097152 2088978 0x0d4bf315 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00001 1.94 17
23 55 0 16777216 2097152 2089060 0x09530aba 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00005 -2.19 22
24 56 0 16777216 2097152 2089061 0x0ed6136a 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00005 2.43 9
25 56 0 16777216 2097152 2089060 0x04b7f7ce 4 0.000002 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00005 -2.01 27
26 57 0 16777216 2097152 2088973 0x0f57e01c 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00001 -2.10 25
27 57 0 16777216 2097152 2088937 0x0352e67f 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99999 2.44 5
28 59 0 16777216 2097152 2088866 0x05fb6afe 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99996 2.08 6
29 59 0 16777216 2097152 2089021 0x05a57b13 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00003 1.69 1
30 61 0 16777216 2097152 2089008 0x0bda5df4 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00002 2.71 3
31 61 0 16777216 2097152 2089085 0x0734400c 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00006 -2.59 2
# F8 form over the live stream: top 0.1 percent of items hold 0.003069 of reads; flat control 0.003074 (ratio 0.9983x), windowed control 0.003071 (ratio 0.9992x; the gate 1.2x); min site distinct ratio 0.99996 (floors 0.98 and 0.995); worst index bit inside its window -3.09 sigma at site 16 bit 12 (the band 6)
# program: reads 67108864, distinct items 16470450, worst site 5 address 0x0cda70f4 in 4 reads (share 0.000002); one cache over the program's reads: 1 GiB 1.0000, 256 MiB 0.4151, 64 MiB 0.1306; the per-site ideal caches summed: 1.0000, 1.0000, 0.5600; 33.2 s
# end 2026-10-09T08:54:03Z rc 0

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@ -1,45 +0,0 @@
# 2026-10-09T08:54:03Z host igneum-build-8 cmd: /srv/builds/x1/bin-h-5264b8152 addrsite --count 4 --warps 2048 --threads 30 --seed igneum-attack-f8/program/21 --day-hex 69676e65756d2d6461792ffa50000000000000 --class mx8+sh256x27+state+reg64c+fold+rw+flat --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# addrsite: program 8b36c28c52ba99c4 class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 1 generator v6 day 2026-10-03 dataset 2^28 words (memory-hard) headers 4 warps 2048 nonces/header 65536 threads 30
# per (iteration, site) cell: the most read address and its share (A03's form); cells over 0.1 percent listed
it site instr reads distinct top_addr top_count top_share
0 0 1 262144 261998 0x037f27d5 2 0.000008
0 1 1 262144 262027 0x0b1e16ab 2 0.000008
# worst cell: iteration 0 site 13 address 0x05ef6609 in 3 reads, share 0.000011
# per site, pooled over the 8 iterations (hit rates: an ideal cache of the site's top K items, K = bytes / 64; exp = min(1, K / window items))
site instr win window_items reads distinct top_addr top_count top_share hit_1GiB hit_256MiB hit_64MiB exp_1GiB exp_256MiB exp_64MiB distinct_ratio bit_z_max bit
0 1 0 16777216 2097152 2088992 0x04afcc67 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00002 3.05 19
1 1 0 16777216 2097152 2088926 0x094ca722 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99998 1.93 7
2 2 0 16777216 2097152 2089090 0x0320dbf5 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00006 2.18 27
3 2 0 16777216 2097152 2088793 0x0ca1cf30 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99992 2.50 2
4 9 0 16777216 2097152 2088948 0x093d61c0 4 0.000002 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99999 -1.97 2
5 9 0 16777216 2097152 2089005 0x0f6b6f21 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00002 2.35 25
6 10 0 16777216 2097152 2088973 0x08f8b2e5 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00001 2.81 23
7 10 0 16777216 2097152 2089064 0x042e39a3 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00005 2.64 25
8 15 0 16777216 2097152 2088927 0x0b4b669f 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99998 -1.78 25
9 15 0 16777216 2097152 2088933 0x0b1903b5 3 0.000001 1.0000 1.0000 0.5605 1.0000 0.2500 0.0625 0.99999 -1.79 8
10 18 0 16777216 2097152 2089136 0x0fc60637 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00008 -2.78 1
11 18 0 16777216 2097152 2088883 0x0c0de7fd 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99996 -1.90 4
12 20 0 16777216 2097152 2089033 0x0bf752d3 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00003 2.63 17
13 20 0 16777216 2097152 2089080 0x097e37e6 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00006 1.88 20
14 21 0 16777216 2097152 2088735 0x0b339c7f 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99989 -1.74 27
15 21 0 16777216 2097152 2089078 0x0e81c420 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00006 2.65 25
16 26 0 16777216 2097152 2089157 0x09253f02 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00009 -2.58 26
17 26 0 16777216 2097152 2089014 0x010e831c 4 0.000002 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00003 2.30 19
18 27 0 16777216 2097152 2088961 0x05d8106a 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00000 2.38 10
19 27 0 16777216 2097152 2088938 0x0e2486e0 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99999 2.33 16
20 28 0 16777216 2097152 2089075 0x0db10a62 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00006 1.67 26
21 28 0 16777216 2097152 2088801 0x08f11bc5 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99992 -1.55 10
22 33 0 16777216 2097152 2089104 0x09e9ad9a 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00007 -2.09 22
23 33 0 16777216 2097152 2088839 0x009754bf 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99994 -1.76 22
24 39 0 16777216 2097152 2089050 0x089b0edb 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00004 2.67 6
25 39 0 16777216 2097152 2088968 0x08c2826d 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00000 2.09 22
26 40 0 16777216 2097152 2089065 0x032093b1 4 0.000002 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00005 -1.84 3
27 40 0 16777216 2097152 2088997 0x0dbc95a0 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00002 -2.14 12
28 41 0 16777216 2097152 2088874 0x036d02c5 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99996 1.77 0
29 41 0 16777216 2097152 2089049 0x0ad1db67 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00004 1.23 17
30 46 0 16777216 2097152 2088854 0x0b016dcb 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99995 1.97 26
31 46 0 16777216 2097152 2088957 0x044fa4bf 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00000 3.07 15
# F8 form over the live stream: top 0.1 percent of items hold 0.003072 of reads; flat control 0.003075 (ratio 0.9990x), windowed control 0.003070 (ratio 1.0008x; the gate 1.2x); min site distinct ratio 0.99989 (floors 0.98 and 0.995); worst index bit inside its window 3.07 sigma at site 31 bit 15 (the band 6)
# program: reads 67108864, distinct items 16469453, worst site 4 address 0x093d61c0 in 4 reads (share 0.000002); one cache over the program's reads: 1 GiB 1.0000, 256 MiB 0.4150, 64 MiB 0.1305; the per-site ideal caches summed: 1.0000, 1.0000, 0.5600; 33.2 s
# end 2026-10-09T08:54:39Z rc 0

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@ -1,45 +0,0 @@
# 2026-10-09T08:54:39Z host igneum-build-8 cmd: /srv/builds/x1/bin-h-5264b8152 addrsite --count 4 --warps 2048 --threads 30 --seed igneum-attack-f8/program/22 --day-hex 69676e65756d2d6461792ffa50000000000000 --class mx8+sh256x27+state+reg64c+fold+rw+flat --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# addrsite: program 970fb4d69b2fe33c class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 0 generator v6 day 2026-10-03 dataset 2^28 words (memory-hard) headers 4 warps 2048 nonces/header 65536 threads 30
# per (iteration, site) cell: the most read address and its share (A03's form); cells over 0.1 percent listed
it site instr reads distinct top_addr top_count top_share
0 0 10 262144 262014 0x009d202b 2 0.000008
0 1 10 262144 261997 0x0e65b272 2 0.000008
# worst cell: iteration 0 site 5 address 0x018af466 in 3 reads, share 0.000011
# per site, pooled over the 8 iterations (hit rates: an ideal cache of the site's top K items, K = bytes / 64; exp = min(1, K / window items))
site instr win window_items reads distinct top_addr top_count top_share hit_1GiB hit_256MiB hit_64MiB exp_1GiB exp_256MiB exp_64MiB distinct_ratio bit_z_max bit
0 10 0 16777216 2097152 2088881 0x0b1c0114 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99996 2.87 13
1 10 0 16777216 2097152 2088960 0x0679b31c 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00000 2.76 24
2 16 0 16777216 2097152 2089003 0x02bdf3cc 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00002 -3.20 24
3 16 0 16777216 2097152 2088974 0x09604e9e 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00001 2.04 13
4 17 0 16777216 2097152 2089123 0x0d4e8f69 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00008 -2.01 1
5 17 0 16777216 2097152 2088901 0x0b53c497 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 0.99997 1.71 22
6 21 0 16777216 2097152 2088931 0x08e9f816 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 0.99999 3.16 25
7 21 0 16777216 2097152 2088967 0x0c9f6532 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00000 2.44 3
8 23 0 16777216 2097152 2089178 0x0b9b3bc5 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00010 -2.21 5
9 23 0 16777216 2097152 2088920 0x01561891 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99998 2.50 20
10 28 0 16777216 2097152 2088910 0x04589bc8 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99998 -1.78 23
11 28 0 16777216 2097152 2088975 0x0e4031eb 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00001 2.91 19
12 29 0 16777216 2097152 2088967 0x0a6195cc 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00000 -2.16 4
13 29 0 16777216 2097152 2089056 0x084a33ac 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00005 2.32 17
14 33 0 16777216 2097152 2089005 0x0062bf4b 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00002 1.97 5
15 33 0 16777216 2097152 2088867 0x005ab6ff 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99996 1.72 19
16 34 0 16777216 2097152 2088975 0x0a1ef07c 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 1.00001 1.85 14
17 34 0 16777216 2097152 2088947 0x049181a5 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99999 2.29 24
18 35 0 16777216 2097152 2088950 0x0192064d 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00000 -2.05 10
19 35 0 16777216 2097152 2089084 0x0579336e 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00006 -2.14 15
20 37 0 16777216 2097152 2089127 0x0f41178d 3 0.000001 1.0000 1.0000 0.5596 1.0000 0.2500 0.0625 1.00008 -2.06 5
21 37 0 16777216 2097152 2088908 0x0ae8a5c4 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99998 2.65 8
22 40 0 16777216 2097152 2089099 0x0e270828 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00007 -2.71 25
23 40 0 16777216 2097152 2088897 0x058534f6 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99997 -2.15 17
24 41 0 16777216 2097152 2088912 0x0fd698ff 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99998 3.11 1
25 41 0 16777216 2097152 2089018 0x08c95a03 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00003 3.36 11
26 54 0 16777216 2097152 2089093 0x0f0c4c13 4 0.000002 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00006 2.22 16
27 54 0 16777216 2097152 2089091 0x0194bcb9 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00006 2.49 8
28 61 0 16777216 2097152 2088869 0x07c8900b 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 0.99996 -1.69 27
29 61 0 16777216 2097152 2089111 0x088944c7 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00007 1.80 8
30 62 0 16777216 2097152 2088851 0x084df290 4 0.000002 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99995 -2.35 23
31 62 0 16777216 2097152 2089162 0x0310e410 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00010 2.24 14
# F8 form over the live stream: top 0.1 percent of items hold 0.003080 of reads; flat control 0.003076 (ratio 1.0012x), windowed control 0.003069 (ratio 1.0036x; the gate 1.2x); min site distinct ratio 0.99995 (floors 0.98 and 0.995); worst index bit inside its window 3.36 sigma at site 25 bit 11 (the band 6)
# program: reads 67108864, distinct items 16469845, worst site 26 address 0x0f0c4c13 in 4 reads (share 0.000002); one cache over the program's reads: 1 GiB 1.0000, 256 MiB 0.4152, 64 MiB 0.1306; the per-site ideal caches summed: 1.0000, 1.0000, 0.5600; 32.7 s
# end 2026-10-09T08:55:14Z rc 0

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@ -1,45 +0,0 @@
# 2026-10-09T08:51:39Z host igneum-build-8 cmd: /srv/builds/x1/bin-h-5264b8152 addrsite --count 4 --warps 2048 --threads 30 --seed igneum-attack-f8/program/23 --day-hex 69676e65756d2d6461792ffa50000000000000 --class mx8+sh256x27+state+reg64c+fold+rw+flat --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# addrsite: program a251a84ef66d3834 class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 0 generator v6 day 2026-10-03 dataset 2^28 words (memory-hard) headers 4 warps 2048 nonces/header 65536 threads 30
# per (iteration, site) cell: the most read address and its share (A03's form); cells over 0.1 percent listed
it site instr reads distinct top_addr top_count top_share
0 0 1 262144 262002 0x0949b834 2 0.000008
0 1 1 262144 262021 0x037b41e5 2 0.000008
# worst cell: iteration 0 site 24 address 0x0b515c41 in 3 reads, share 0.000011
# per site, pooled over the 8 iterations (hit rates: an ideal cache of the site's top K items, K = bytes / 64; exp = min(1, K / window items))
site instr win window_items reads distinct top_addr top_count top_share hit_1GiB hit_256MiB hit_64MiB exp_1GiB exp_256MiB exp_64MiB distinct_ratio bit_z_max bit
0 1 0 16777216 2097152 2088878 0x0a253b90 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 0.99996 2.07 22
1 1 0 16777216 2097152 2088932 0x04351dcc 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 0.99999 -2.48 14
2 3 0 16777216 2097152 2088945 0x00370a0f 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99999 3.10 5
3 3 0 16777216 2097152 2088943 0x0c80dfca 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99999 1.65 22
4 9 0 16777216 2097152 2088870 0x0124c8ca 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99996 -2.36 1
5 9 0 16777216 2097152 2089182 0x02c33ed8 3 0.000001 1.0000 1.0000 0.5594 1.0000 0.2500 0.0625 1.00011 -2.53 14
6 13 0 16777216 2097152 2089054 0x070010be 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00004 -2.37 2
7 13 0 16777216 2097152 2089053 0x04bbbdc0 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00004 2.45 15
8 15 0 16777216 2097152 2088947 0x01b4ede1 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 0.99999 -2.86 14
9 15 0 16777216 2097152 2088992 0x06af23ca 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00002 -2.30 23
10 25 0 16777216 2097152 2089023 0x06c11399 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00003 -3.06 6
11 25 0 16777216 2097152 2088906 0x06af751e 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 0.99997 1.88 2
12 27 0 16777216 2097152 2088961 0x0206dec8 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00000 -2.07 14
13 27 0 16777216 2097152 2089063 0x08b414b5 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00005 2.15 27
14 29 0 16777216 2097152 2089094 0x0391cf98 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00006 -2.78 5
15 29 0 16777216 2097152 2089070 0x0a673011 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00005 -2.11 9
16 37 0 16777216 2097152 2089010 0x0f6ac6b5 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00002 2.43 2
17 37 0 16777216 2097152 2088995 0x05c7586e 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00002 2.29 26
18 40 0 16777216 2097152 2088949 0x0b02fa99 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99999 1.52 27
19 40 0 16777216 2097152 2088976 0x048f44b1 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00001 -2.34 19
20 41 0 16777216 2097152 2088884 0x003a8ba3 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99996 -2.68 7
21 41 0 16777216 2097152 2088929 0x0cd15db4 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99999 2.24 18
22 42 0 16777216 2097152 2089157 0x03376930 3 0.000001 1.0000 1.0000 0.5596 1.0000 0.2500 0.0625 1.00009 1.45 14
23 42 0 16777216 2097152 2089030 0x0ee0dcd2 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00003 2.73 18
24 54 0 16777216 2097152 2088918 0x097703f5 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99998 -2.60 20
25 54 0 16777216 2097152 2089009 0x00633008 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00002 -1.82 17
26 56 0 16777216 2097152 2088953 0x0e08e22b 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00000 -3.18 13
27 56 0 16777216 2097152 2088933 0x0592a3c9 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 0.99999 -3.24 17
28 61 0 16777216 2097152 2088924 0x0fd34b86 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99998 -3.09 25
29 61 0 16777216 2097152 2088901 0x0b0f0272 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99997 -2.63 24
30 62 0 16777216 2097152 2088942 0x0f12e74f 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99999 1.47 26
31 62 0 16777216 2097152 2088947 0x0f612cfb 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 0.99999 2.01 3
# F8 form over the live stream: top 0.1 percent of items hold 0.003073 of reads; flat control 0.003077 (ratio 0.9987x), windowed control 0.003076 (ratio 0.9990x; the gate 1.2x); min site distinct ratio 0.99996 (floors 0.98 and 0.995); worst index bit inside its window -3.24 sigma at site 27 bit 17 (the band 6)
# program: reads 67108864, distinct items 16469867, worst site 0 address 0x0a253b90 in 3 reads (share 0.000001); one cache over the program's reads: 1 GiB 1.0000, 256 MiB 0.4151, 64 MiB 0.1306; the per-site ideal caches summed: 1.0000, 1.0000, 0.5600; 34.8 s
# end 2026-10-09T08:52:16Z rc 0

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@ -1,45 +0,0 @@
# 2026-10-09T08:52:16Z host igneum-build-8 cmd: /srv/builds/x1/bin-h-5264b8152 addrsite --count 4 --warps 2048 --threads 30 --seed igneum-attack-f8/program/24 --day-hex 69676e65756d2d6461792ffa50000000000000 --class mx8+sh256x27+state+reg64c+fold+rw+flat --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# addrsite: program 46acf991dd1407dd class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 0 generator v6 day 2026-10-03 dataset 2^28 words (memory-hard) headers 4 warps 2048 nonces/header 65536 threads 30
# per (iteration, site) cell: the most read address and its share (A03's form); cells over 0.1 percent listed
it site instr reads distinct top_addr top_count top_share
0 0 2 262144 262018 0x07076d63 2 0.000008
0 1 2 262144 262005 0x03d7e2f4 2 0.000008
# worst cell: iteration 0 site 3 address 0x0a9ac4fc in 3 reads, share 0.000011
# per site, pooled over the 8 iterations (hit rates: an ideal cache of the site's top K items, K = bytes / 64; exp = min(1, K / window items))
site instr win window_items reads distinct top_addr top_count top_share hit_1GiB hit_256MiB hit_64MiB exp_1GiB exp_256MiB exp_64MiB distinct_ratio bit_z_max bit
0 2 0 16777216 2097152 2089172 0x052400e0 4 0.000002 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00010 2.64 27
1 2 0 16777216 2097152 2089132 0x014c7e2a 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00008 1.80 13
2 14 0 16777216 2097152 2089081 0x0a3b7da4 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00006 3.94 26
3 14 0 16777216 2097152 2088971 0x0323b1e4 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00001 -3.11 10
4 15 0 16777216 2097152 2089022 0x076a6c68 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 1.00003 -2.17 5
5 15 0 16777216 2097152 2089047 0x05c5face 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00004 -2.09 13
6 16 0 16777216 2097152 2088877 0x031fc60c 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 0.99996 1.67 17
7 16 0 16777216 2097152 2088969 0x0aa51a49 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00000 1.99 24
8 21 0 16777216 2097152 2088872 0x0508aa09 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99996 -2.18 14
9 21 0 16777216 2097152 2089030 0x075eb22d 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00003 2.06 26
10 26 0 16777216 2097152 2088866 0x0484cb63 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99996 -2.13 2
11 26 0 16777216 2097152 2089136 0x0bd33ac6 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00008 2.19 23
12 30 0 16777216 2097152 2088949 0x0802968b 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99999 2.29 22
13 30 0 16777216 2097152 2088805 0x0cde039b 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99993 1.16 9
14 32 0 16777216 2097152 2089091 0x09153180 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00006 1.87 25
15 32 0 16777216 2097152 2088946 0x09a3a4b4 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99999 -3.30 10
16 36 0 16777216 2097152 2088986 0x058ffca9 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00001 -1.82 14
17 36 0 16777216 2097152 2088908 0x05bc8a10 4 0.000002 1.0000 1.0000 0.5596 1.0000 0.2500 0.0625 0.99998 2.19 11
18 39 0 16777216 2097152 2088958 0x0bc30e49 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00000 -3.26 6
19 39 0 16777216 2097152 2088873 0x09a5cb40 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 0.99996 1.96 6
20 44 0 16777216 2097152 2089070 0x0329a31a 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00005 -2.49 2
21 44 0 16777216 2097152 2089057 0x0374a838 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00005 1.85 10
22 45 0 16777216 2097152 2088979 0x077c37eb 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00001 2.67 18
23 45 0 16777216 2097152 2089052 0x078d3ece 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00004 -3.04 27
24 50 0 16777216 2097152 2089071 0x0b57437c 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00005 2.21 18
25 50 0 16777216 2097152 2088954 0x01731aa5 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00000 2.01 1
26 60 0 16777216 2097152 2088788 0x0ca5373c 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99992 4.01 2
27 60 0 16777216 2097152 2088919 0x030be571 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99998 2.31 23
28 61 0 16777216 2097152 2088869 0x0e79fd9d 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99996 2.02 7
29 61 0 16777216 2097152 2089016 0x0a05bf6c 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00003 -2.11 2
30 63 0 16777216 2097152 2088999 0x018f3b6d 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00002 -1.83 22
31 63 0 16777216 2097152 2088895 0x02e9829f 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 0.99997 2.08 12
# F8 form over the live stream: top 0.1 percent of items hold 0.003074 of reads; flat control 0.003072 (ratio 1.0005x), windowed control 0.003074 (ratio 0.9999x; the gate 1.2x); min site distinct ratio 0.99992 (floors 0.98 and 0.995); worst index bit inside its window 4.01 sigma at site 26 bit 2 (the band 6)
# program: reads 67108864, distinct items 16470237, worst site 0 address 0x052400e0 in 4 reads (share 0.000002); one cache over the program's reads: 1 GiB 1.0000, 256 MiB 0.4151, 64 MiB 0.1306; the per-site ideal caches summed: 1.0000, 1.0000, 0.5600; 34.3 s
# end 2026-10-09T08:52:53Z rc 0

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@ -1,45 +0,0 @@
# 2026-10-09T08:52:53Z host igneum-build-8 cmd: /srv/builds/x1/bin-h-5264b8152 addrsite --count 4 --warps 2048 --threads 30 --seed igneum-attack-f8/program/25 --day-hex 69676e65756d2d6461792ffa50000000000000 --class mx8+sh256x27+state+reg64c+fold+rw+flat --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# addrsite: program b9b94de564ab230b class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 0 generator v6 day 2026-10-03 dataset 2^28 words (memory-hard) headers 4 warps 2048 nonces/header 65536 threads 30
# per (iteration, site) cell: the most read address and its share (A03's form); cells over 0.1 percent listed
it site instr reads distinct top_addr top_count top_share
0 0 3 262144 262014 0x05b188b3 2 0.000008
0 1 3 262144 262014 0x05e44411 2 0.000008
# worst cell: iteration 0 site 5 address 0x07d98814 in 3 reads, share 0.000011
# per site, pooled over the 8 iterations (hit rates: an ideal cache of the site's top K items, K = bytes / 64; exp = min(1, K / window items))
site instr win window_items reads distinct top_addr top_count top_share hit_1GiB hit_256MiB hit_64MiB exp_1GiB exp_256MiB exp_64MiB distinct_ratio bit_z_max bit
0 3 0 16777216 2097152 2089017 0x029df03d 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00003 1.80 9
1 3 0 16777216 2097152 2089015 0x0a697726 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00003 3.00 8
2 5 0 16777216 2097152 2088932 0x0703087e 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99999 -2.23 0
3 5 0 16777216 2097152 2088906 0x0a151cca 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99997 1.91 24
4 13 0 16777216 2097152 2088970 0x098edc8f 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00000 2.27 5
5 13 0 16777216 2097152 2088974 0x092e735c 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00001 -2.45 5
6 15 0 16777216 2097152 2088957 0x027a9dd9 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00000 2.64 23
7 15 0 16777216 2097152 2088946 0x0f66b34d 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99999 3.03 9
8 16 0 16777216 2097152 2088853 0x05898a18 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99995 -1.73 12
9 16 0 16777216 2097152 2088957 0x0a3e9225 4 0.000002 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00000 -1.79 3
10 24 0 16777216 2097152 2089066 0x0882f41d 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00005 2.66 4
11 24 0 16777216 2097152 2089069 0x01787882 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00005 2.90 26
12 33 0 16777216 2097152 2088907 0x0d693d21 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99997 -2.97 22
13 33 0 16777216 2097152 2089049 0x02966539 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00004 2.09 5
14 37 0 16777216 2097152 2088931 0x0619ad5f 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99999 -2.19 10
15 37 0 16777216 2097152 2088985 0x02c4a78f 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00001 -2.22 0
16 44 0 16777216 2097152 2089091 0x04c5dbd6 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00006 -2.42 1
17 44 0 16777216 2097152 2089042 0x0be6ff34 4 0.000002 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00004 -1.95 17
18 45 0 16777216 2097152 2088905 0x0e897766 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99997 -1.87 15
19 45 0 16777216 2097152 2089063 0x01e1b73c 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00005 1.79 1
20 51 0 16777216 2097152 2088820 0x0a2ca046 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99993 2.97 20
21 51 0 16777216 2097152 2089004 0x0bec6160 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00002 -2.26 11
22 53 0 16777216 2097152 2088863 0x0ee1b441 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99995 -1.39 12
23 53 0 16777216 2097152 2089024 0x091559cc 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00003 1.89 9
24 57 0 16777216 2097152 2089079 0x02de535c 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00006 -2.54 2
25 57 0 16777216 2097152 2088887 0x0f0fd5d6 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99997 2.72 17
26 59 0 16777216 2097152 2089038 0x00c8f4a0 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00004 2.26 7
27 59 0 16777216 2097152 2088907 0x0b14dc8e 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99997 2.29 22
28 61 0 16777216 2097152 2089005 0x09de3fda 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00002 2.16 6
29 61 0 16777216 2097152 2088798 0x027b2270 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99992 -1.95 15
30 62 0 16777216 2097152 2088923 0x06eadea4 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99998 -2.72 25
31 62 0 16777216 2097152 2088997 0x04459088 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00002 1.84 7
# F8 form over the live stream: top 0.1 percent of items hold 0.003075 of reads; flat control 0.003076 (ratio 0.9996x), windowed control 0.003072 (ratio 1.0010x; the gate 1.2x); min site distinct ratio 0.99992 (floors 0.98 and 0.995); worst index bit inside its window 3.03 sigma at site 7 bit 9 (the band 6)
# program: reads 67108864, distinct items 16469170, worst site 9 address 0x0a3e9225 in 4 reads (share 0.000002); one cache over the program's reads: 1 GiB 1.0000, 256 MiB 0.4151, 64 MiB 0.1306; the per-site ideal caches summed: 1.0000, 1.0000, 0.5600; 33.2 s
# end 2026-10-09T08:53:29Z rc 0

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@ -1,45 +0,0 @@
# 2026-10-09T08:53:29Z host igneum-build-8 cmd: /srv/builds/x1/bin-h-5264b8152 addrsite --count 4 --warps 2048 --threads 30 --seed igneum-attack-f8/program/26 --day-hex 69676e65756d2d6461792ffa50000000000000 --class mx8+sh256x27+state+reg64c+fold+rw+flat --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# addrsite: program 134b855d549b2f7e class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 0 generator v6 day 2026-10-03 dataset 2^28 words (memory-hard) headers 4 warps 2048 nonces/header 65536 threads 30
# per (iteration, site) cell: the most read address and its share (A03's form); cells over 0.1 percent listed
it site instr reads distinct top_addr top_count top_share
0 0 3 262144 262035 0x08e41324 2 0.000008
0 1 3 262144 262019 0x02c436c4 2 0.000008
# worst cell: iteration 2 site 28 address 0x03ac7d1f in 3 reads, share 0.000011
# per site, pooled over the 8 iterations (hit rates: an ideal cache of the site's top K items, K = bytes / 64; exp = min(1, K / window items))
site instr win window_items reads distinct top_addr top_count top_share hit_1GiB hit_256MiB hit_64MiB exp_1GiB exp_256MiB exp_64MiB distinct_ratio bit_z_max bit
0 3 0 16777216 2097152 2088944 0x0eb7cd17 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99999 -2.00 14
1 3 0 16777216 2097152 2089128 0x090e751c 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00008 2.21 27
2 7 0 16777216 2097152 2089046 0x099ba35a 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00004 3.03 12
3 7 0 16777216 2097152 2089018 0x02ac0bf2 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00003 -2.16 18
4 10 0 16777216 2097152 2088961 0x02aea3c8 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00000 3.73 3
5 10 0 16777216 2097152 2088903 0x070f00d4 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99997 -2.48 9
6 17 0 16777216 2097152 2089180 0x05fdb19a 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00011 2.57 18
7 17 0 16777216 2097152 2089009 0x0bb44580 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00002 -2.46 8
8 18 0 16777216 2097152 2088974 0x00966a9c 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00001 -2.75 21
9 18 0 16777216 2097152 2088944 0x09118c95 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 0.99999 1.92 23
10 19 0 16777216 2097152 2088946 0x039aa4c3 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99999 2.49 25
11 19 0 16777216 2097152 2088986 0x0bdfd7f8 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00001 -2.06 22
12 20 0 16777216 2097152 2088866 0x0f57ba9c 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99996 -1.84 15
13 20 0 16777216 2097152 2088937 0x0a17a4d6 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99999 2.25 18
14 23 0 16777216 2097152 2089064 0x0270208f 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00005 -1.81 27
15 23 0 16777216 2097152 2089108 0x0f18e3c3 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00007 2.33 12
16 26 0 16777216 2097152 2089037 0x09515fad 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00004 1.88 15
17 26 0 16777216 2097152 2089042 0x00071bdf 4 0.000002 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00004 -2.34 21
18 27 0 16777216 2097152 2088968 0x041a39ff 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00000 -2.57 18
19 27 0 16777216 2097152 2089035 0x02cef79f 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00004 -2.39 24
20 28 0 16777216 2097152 2088989 0x08f40a22 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00001 1.94 18
21 28 0 16777216 2097152 2089025 0x09f8ab60 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00003 2.52 4
22 36 0 16777216 2097152 2088972 0x056ff0ff 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00001 -2.26 11
23 36 0 16777216 2097152 2088770 0x048cae75 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99991 1.91 22
24 39 0 16777216 2097152 2089108 0x0b779c65 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00007 2.12 8
25 39 0 16777216 2097152 2089068 0x09f7a8c4 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00005 -2.24 17
26 40 0 16777216 2097152 2088966 0x085b9063 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00000 -2.80 9
27 40 0 16777216 2097152 2089040 0x03fbab45 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00004 2.03 11
28 52 0 16777216 2097152 2088993 0x0ab3446d 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00002 1.68 21
29 52 0 16777216 2097152 2089000 0x00977b0a 3 0.000001 1.0000 1.0000 0.5596 1.0000 0.2500 0.0625 1.00002 -2.78 8
30 56 0 16777216 2097152 2088888 0x08b4d646 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99997 2.12 1
31 56 0 16777216 2097152 2089001 0x0a6be8fd 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00002 -2.26 24
# F8 form over the live stream: top 0.1 percent of items hold 0.003071 of reads; flat control 0.003073 (ratio 0.9995x), windowed control 0.003071 (ratio 1.0003x; the gate 1.2x); min site distinct ratio 0.99991 (floors 0.98 and 0.995); worst index bit inside its window 3.73 sigma at site 4 bit 3 (the band 6)
# program: reads 67108864, distinct items 16468907, worst site 17 address 0x00071bdf in 4 reads (share 0.000002); one cache over the program's reads: 1 GiB 1.0000, 256 MiB 0.4151, 64 MiB 0.1306; the per-site ideal caches summed: 1.0000, 1.0000, 0.5599; 33.3 s
# end 2026-10-09T08:54:05Z rc 0

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@ -1,45 +0,0 @@
# 2026-10-09T08:54:05Z host igneum-build-8 cmd: /srv/builds/x1/bin-h-5264b8152 addrsite --count 4 --warps 2048 --threads 30 --seed igneum-attack-f8/program/27 --day-hex 69676e65756d2d6461792ffa50000000000000 --class mx8+sh256x27+state+reg64c+fold+rw+flat --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# addrsite: program 2d87599f68893d21 class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 0 generator v6 day 2026-10-03 dataset 2^28 words (memory-hard) headers 4 warps 2048 nonces/header 65536 threads 30
# per (iteration, site) cell: the most read address and its share (A03's form); cells over 0.1 percent listed
it site instr reads distinct top_addr top_count top_share
0 0 3 262144 262020 0x08af8093 2 0.000008
0 1 3 262144 262006 0x0655704c 2 0.000008
# worst cell: iteration 0 site 18 address 0x06ec367b in 3 reads, share 0.000011
# per site, pooled over the 8 iterations (hit rates: an ideal cache of the site's top K items, K = bytes / 64; exp = min(1, K / window items))
site instr win window_items reads distinct top_addr top_count top_share hit_1GiB hit_256MiB hit_64MiB exp_1GiB exp_256MiB exp_64MiB distinct_ratio bit_z_max bit
0 3 0 16777216 2097152 2089107 0x08acd1bb 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00007 1.71 13
1 3 0 16777216 2097152 2088861 0x0d2f0cc9 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 0.99995 -2.53 17
2 5 0 16777216 2097152 2089204 0x0ee6b0b9 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00012 2.40 17
3 5 0 16777216 2097152 2089104 0x06e44f9f 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00007 -2.06 25
4 6 0 16777216 2097152 2089105 0x0776cac7 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00007 -2.91 20
5 6 0 16777216 2097152 2089090 0x0a1d788f 4 0.000002 1.0000 1.0000 0.5596 1.0000 0.2500 0.0625 1.00006 1.92 25
6 8 0 16777216 2097152 2089020 0x00c1f410 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00003 -1.57 0
7 8 0 16777216 2097152 2088949 0x08054bff 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99999 -2.50 0
8 18 0 16777216 2097152 2089060 0x0b2da370 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00005 -2.39 27
9 18 0 16777216 2097152 2088998 0x0103ba1c 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00002 -2.43 13
10 20 0 16777216 2097152 2089037 0x0b22af8f 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00004 -2.41 1
11 20 0 16777216 2097152 2088873 0x0fead7ca 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99996 -1.87 20
12 39 0 16777216 2097152 2088893 0x0329de12 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99997 1.90 11
13 39 0 16777216 2097152 2089135 0x08784cf8 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00008 -2.92 16
14 45 0 16777216 2097152 2088984 0x0dbabad4 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00001 -3.68 19
15 45 0 16777216 2097152 2089033 0x071bbb23 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00003 2.22 20
16 47 0 16777216 2097152 2088957 0x02092d53 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00000 2.27 20
17 47 0 16777216 2097152 2088965 0x05c68479 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00000 1.97 12
18 48 0 16777216 2097152 2089108 0x0ed37844 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00007 1.52 3
19 48 0 16777216 2097152 2088967 0x09d17a85 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00000 2.21 24
20 50 0 16777216 2097152 2088999 0x064076ce 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00002 -2.27 5
21 50 0 16777216 2097152 2088970 0x04551e1c 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00000 -2.12 18
22 51 0 16777216 2097152 2089100 0x0f480dcb 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00007 -2.19 19
23 51 0 16777216 2097152 2089067 0x05429b43 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00005 -1.62 10
24 53 0 16777216 2097152 2089044 0x08fd79b7 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00004 -2.44 15
25 53 0 16777216 2097152 2088968 0x013261e0 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00000 2.48 5
26 54 0 16777216 2097152 2088960 0x0cd95df3 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00000 1.80 17
27 54 0 16777216 2097152 2088993 0x0124bf23 4 0.000002 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00002 -2.35 21
28 59 0 16777216 2097152 2089061 0x0ce64ec8 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00005 2.02 26
29 59 0 16777216 2097152 2088995 0x0d5cc606 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00002 -1.65 18
30 63 0 16777216 2097152 2088939 0x01e7be77 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99999 -2.25 13
31 63 0 16777216 2097152 2089005 0x0a08741d 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00002 1.83 4
# F8 form over the live stream: top 0.1 percent of items hold 0.003072 of reads; flat control 0.003071 (ratio 1.0003x), windowed control 0.003078 (ratio 0.9980x; the gate 1.2x); min site distinct ratio 0.99995 (floors 0.98 and 0.995); worst index bit inside its window -3.68 sigma at site 14 bit 19 (the band 6)
# program: reads 67108864, distinct items 16469673, worst site 5 address 0x0a1d788f in 4 reads (share 0.000002); one cache over the program's reads: 1 GiB 1.0000, 256 MiB 0.4150, 64 MiB 0.1305; the per-site ideal caches summed: 1.0000, 1.0000, 0.5600; 33.2 s
# end 2026-10-09T08:54:41Z rc 0

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# 2026-10-09T08:49:13Z host igneum-build-8 cmd: /srv/builds/x1/bin-h-5264b8152 addrsite --count 4 --warps 2048 --threads 30 --seed igneum-attack-f8/program/28 --day-hex 69676e65756d2d6461792ffa50000000000000 --class mx8+sh256x27+state+reg64c+fold+rw+flat --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# addrsite: program 2e3f0c9b69ebfbbe class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 0 generator v6 day 2026-10-03 dataset 2^28 words (memory-hard) headers 4 warps 2048 nonces/header 65536 threads 30
# per (iteration, site) cell: the most read address and its share (A03's form); cells over 0.1 percent listed
it site instr reads distinct top_addr top_count top_share
0 0 4 262144 262010 0x02fbb5e2 2 0.000008
0 1 4 262144 261998 0x0bab2cce 2 0.000008
# worst cell: iteration 0 site 16 address 0x083d14d5 in 3 reads, share 0.000011
# per site, pooled over the 8 iterations (hit rates: an ideal cache of the site's top K items, K = bytes / 64; exp = min(1, K / window items))
site instr win window_items reads distinct top_addr top_count top_share hit_1GiB hit_256MiB hit_64MiB exp_1GiB exp_256MiB exp_64MiB distinct_ratio bit_z_max bit
0 4 0 16777216 2097152 2088913 0x06693f84 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 0.99998 2.18 5
1 4 0 16777216 2097152 2089015 0x086d837c 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00003 -3.17 21
2 8 0 16777216 2097152 2088917 0x0c6c52bf 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99998 -2.11 0
3 8 0 16777216 2097152 2088990 0x0761482e 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00001 3.26 22
4 9 0 16777216 2097152 2088923 0x05393b54 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99998 2.95 27
5 9 0 16777216 2097152 2089107 0x09d35f17 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00007 2.10 5
6 11 0 16777216 2097152 2088928 0x03bc82ba 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 0.99998 -2.06 27
7 11 0 16777216 2097152 2088827 0x0bf3c672 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99994 2.60 7
8 12 0 16777216 2097152 2089070 0x0ffc0bd8 4 0.000002 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00005 2.14 0
9 12 0 16777216 2097152 2088977 0x096e39dc 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00001 2.06 8
10 23 0 16777216 2097152 2089043 0x0852e1cc 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00004 -2.93 25
11 23 0 16777216 2097152 2089014 0x0b5d78f7 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00003 -1.88 21
12 24 0 16777216 2097152 2089013 0x0e259a1c 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00003 -2.99 7
13 24 0 16777216 2097152 2089129 0x0dc781d6 3 0.000001 1.0000 1.0000 0.5604 1.0000 0.2500 0.0625 1.00008 2.32 26
14 26 0 16777216 2097152 2089042 0x0ab207c9 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00004 2.03 22
15 26 0 16777216 2097152 2088960 0x0a01c2c6 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00000 -2.32 8
16 27 0 16777216 2097152 2088807 0x084e9b81 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99993 -2.23 0
17 27 0 16777216 2097152 2088961 0x009a9d9b 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00000 -2.26 24
18 30 0 16777216 2097152 2088877 0x0c6a402c 4 0.000002 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99996 -2.13 13
19 30 0 16777216 2097152 2089234 0x0a57c403 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00013 -1.98 2
20 37 0 16777216 2097152 2088897 0x0892a21c 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99997 -2.61 5
21 37 0 16777216 2097152 2088959 0x014fa2cf 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00000 -1.92 15
22 39 0 16777216 2097152 2088853 0x0999d000 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99995 1.52 0
23 39 0 16777216 2097152 2089077 0x05728f20 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00006 -2.55 5
24 44 0 16777216 2097152 2088963 0x05ce0723 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00000 2.78 19
25 44 0 16777216 2097152 2089038 0x07045d16 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00004 2.54 9
26 52 0 16777216 2097152 2088933 0x003d7b99 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99999 -2.79 22
27 52 0 16777216 2097152 2089033 0x0c23235b 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00003 2.04 13
28 53 0 16777216 2097152 2088913 0x01931def 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 0.99998 2.36 27
29 53 0 16777216 2097152 2088968 0x03a3bc56 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00000 1.86 15
30 63 0 16777216 2097152 2088909 0x0f48e38e 4 0.000002 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99998 -2.07 9
31 63 0 16777216 2097152 2088944 0x0cab2b06 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99999 2.55 23
# F8 form over the live stream: top 0.1 percent of items hold 0.003071 of reads; flat control 0.003070 (ratio 1.0005x), windowed control 0.003071 (ratio 1.0002x; the gate 1.2x); min site distinct ratio 0.99993 (floors 0.98 and 0.995); worst index bit inside its window 3.26 sigma at site 3 bit 22 (the band 6)
# program: reads 67108864, distinct items 16470460, worst site 8 address 0x0ffc0bd8 in 4 reads (share 0.000002); one cache over the program's reads: 1 GiB 1.0000, 256 MiB 0.4150, 64 MiB 0.1305; the per-site ideal caches summed: 1.0000, 1.0000, 0.5600; 36.3 s
# end 2026-10-09T08:49:52Z rc 0

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# 2026-10-09T08:49:52Z host igneum-build-8 cmd: /srv/builds/x1/bin-h-5264b8152 addrsite --count 4 --warps 2048 --threads 30 --seed igneum-attack-f8/program/29 --day-hex 69676e65756d2d6461792ffa50000000000000 --class mx8+sh256x27+state+reg64c+fold+rw+flat --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# addrsite: program 4668c5c8a3f7250e class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 0 generator v6 day 2026-10-03 dataset 2^28 words (memory-hard) headers 4 warps 2048 nonces/header 65536 threads 30
# per (iteration, site) cell: the most read address and its share (A03's form); cells over 0.1 percent listed
it site instr reads distinct top_addr top_count top_share
0 0 6 262144 262001 0x09765e7e 2 0.000008
0 1 6 262144 262015 0x0f1624db 2 0.000008
# worst cell: iteration 1 site 25 address 0x0c81e96f in 3 reads, share 0.000011
# per site, pooled over the 8 iterations (hit rates: an ideal cache of the site's top K items, K = bytes / 64; exp = min(1, K / window items))
site instr win window_items reads distinct top_addr top_count top_share hit_1GiB hit_256MiB hit_64MiB exp_1GiB exp_256MiB exp_64MiB distinct_ratio bit_z_max bit
0 6 0 16777216 2097152 2088936 0x00cbfb21 3 0.000001 1.0000 1.0000 0.5604 1.0000 0.2500 0.0625 0.99999 -2.12 15
1 6 0 16777216 2097152 2089137 0x04e07805 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00008 -2.64 10
2 7 0 16777216 2097152 2089045 0x0a37c7ab 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00004 2.25 11
3 7 0 16777216 2097152 2088917 0x0058ec96 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 0.99998 2.05 18
4 9 0 16777216 2097152 2089040 0x0507eb6e 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00004 2.88 11
5 9 0 16777216 2097152 2088861 0x0fa1a9b4 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99995 2.22 13
6 12 0 16777216 2097152 2088955 0x0f2d7f1f 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 1.00000 2.32 10
7 12 0 16777216 2097152 2088847 0x066e5182 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99995 1.89 7
8 16 0 16777216 2097152 2088872 0x04142011 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99996 2.52 16
9 16 0 16777216 2097152 2088940 0x07a61573 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99999 -1.93 21
10 21 0 16777216 2097152 2089069 0x099b78c2 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00005 -2.15 0
11 21 0 16777216 2097152 2088962 0x032e67c0 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00000 -2.33 19
12 32 0 16777216 2097152 2089065 0x0d002a27 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00005 2.26 5
13 32 0 16777216 2097152 2089194 0x09cd132f 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00011 2.31 10
14 33 0 16777216 2097152 2089132 0x0edd0f8f 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00008 -2.20 22
15 33 0 16777216 2097152 2089013 0x0218ea07 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00003 2.15 24
16 37 0 16777216 2097152 2089049 0x08100de7 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00004 -1.84 22
17 37 0 16777216 2097152 2088930 0x04caf774 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 0.99999 2.85 0
18 41 0 16777216 2097152 2088952 0x03aa6f3f 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00000 2.14 23
19 41 0 16777216 2097152 2089038 0x0759a5df 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00004 1.82 13
20 42 0 16777216 2097152 2088919 0x07762e2a 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 0.99998 2.16 17
21 42 0 16777216 2097152 2089114 0x0a0ba02a 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00007 -1.75 10
22 45 0 16777216 2097152 2088983 0x06097c08 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00001 2.06 8
23 45 0 16777216 2097152 2089058 0x0ee02c87 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00005 -2.72 4
24 53 0 16777216 2097152 2089049 0x0e2ac3fd 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00004 -1.87 16
25 53 0 16777216 2097152 2088885 0x06034567 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99996 2.10 17
26 54 0 16777216 2097152 2089158 0x0a535262 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00009 -2.53 12
27 54 0 16777216 2097152 2089052 0x07d889ce 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00004 2.13 27
28 58 0 16777216 2097152 2089026 0x0aa50cca 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00003 1.90 6
29 58 0 16777216 2097152 2088997 0x0810edc5 4 0.000002 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00002 -2.33 17
30 61 0 16777216 2097152 2089147 0x002f6829 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00009 1.82 18
31 61 0 16777216 2097152 2088895 0x089b71ac 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99997 2.79 20
# F8 form over the live stream: top 0.1 percent of items hold 0.003072 of reads; flat control 0.003073 (ratio 0.9998x), windowed control 0.003078 (ratio 0.9982x; the gate 1.2x); min site distinct ratio 0.99995 (floors 0.98 and 0.995); worst index bit inside its window 2.88 sigma at site 4 bit 11 (the band 6)
# program: reads 67108864, distinct items 16470390, worst site 29 address 0x0810edc5 in 4 reads (share 0.000002); one cache over the program's reads: 1 GiB 1.0000, 256 MiB 0.4151, 64 MiB 0.1305; the per-site ideal caches summed: 1.0000, 1.0000, 0.5600; 32.6 s
# end 2026-10-09T08:50:27Z rc 0

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# 2026-10-09T08:50:27Z host igneum-build-8 cmd: /srv/builds/x1/bin-h-5264b8152 addrsite --count 4 --warps 2048 --threads 30 --seed igneum-attack-f8/program/30 --day-hex 69676e65756d2d6461792ffa50000000000000 --class mx8+sh256x27+state+reg64c+fold+rw+flat --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# addrsite: program a62cdf47fc0fe7f8 class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 0 generator v6 day 2026-10-03 dataset 2^28 words (memory-hard) headers 4 warps 2048 nonces/header 65536 threads 30
# per (iteration, site) cell: the most read address and its share (A03's form); cells over 0.1 percent listed
it site instr reads distinct top_addr top_count top_share
0 0 2 262144 262031 0x019c3fa6 2 0.000008
0 1 2 262144 262017 0x0e364710 2 0.000008
# worst cell: iteration 1 site 11 address 0x02d12a57 in 3 reads, share 0.000011
# per site, pooled over the 8 iterations (hit rates: an ideal cache of the site's top K items, K = bytes / 64; exp = min(1, K / window items))
site instr win window_items reads distinct top_addr top_count top_share hit_1GiB hit_256MiB hit_64MiB exp_1GiB exp_256MiB exp_64MiB distinct_ratio bit_z_max bit
0 2 0 16777216 2097152 2089029 0x0a0c30fd 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00003 -2.40 1
1 2 0 16777216 2097152 2088867 0x0b7eb762 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99996 2.16 7
2 3 0 16777216 2097152 2089029 0x06af8b41 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00003 -3.22 8
3 3 0 16777216 2097152 2089091 0x0e024169 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00006 -2.14 16
4 5 0 16777216 2097152 2088889 0x0171f94e 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99997 2.14 21
5 5 0 16777216 2097152 2088902 0x0ba34121 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99997 -3.14 25
6 7 0 16777216 2097152 2089099 0x0afbfe98 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00007 -2.72 25
7 7 0 16777216 2097152 2089077 0x066a6d55 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00006 -2.27 6
8 10 0 16777216 2097152 2088773 0x0acca259 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 0.99991 1.66 8
9 10 0 16777216 2097152 2089118 0x0a54d085 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00008 -1.98 2
10 12 0 16777216 2097152 2089079 0x02762d74 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00006 2.07 4
11 12 0 16777216 2097152 2088888 0x03d0387a 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 0.99997 3.02 13
12 14 0 16777216 2097152 2088972 0x0d1e9a2f 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00001 -2.20 2
13 14 0 16777216 2097152 2088885 0x02b7f912 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99996 1.58 19
14 35 0 16777216 2097152 2089097 0x092d51dc 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00007 -1.90 24
15 35 0 16777216 2097152 2089149 0x0f5d12c2 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00009 -2.19 19
16 41 0 16777216 2097152 2088981 0x0f1c5b94 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00001 1.51 17
17 41 0 16777216 2097152 2088946 0x009a0348 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99999 -2.60 9
18 42 0 16777216 2097152 2088822 0x0de8c542 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 0.99993 -2.44 17
19 42 0 16777216 2097152 2088944 0x0803996b 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 0.99999 1.79 27
20 49 0 16777216 2097152 2088993 0x09c5a5a8 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00002 2.34 18
21 49 0 16777216 2097152 2088843 0x0e381623 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99994 2.55 10
22 50 0 16777216 2097152 2088935 0x0203066a 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99999 -1.42 26
23 50 0 16777216 2097152 2089029 0x0b6496b2 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00003 2.12 10
24 54 0 16777216 2097152 2088863 0x0241bf62 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99995 2.18 4
25 54 0 16777216 2097152 2088938 0x0c1c0a7a 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99999 2.43 6
26 56 0 16777216 2097152 2089130 0x0c51daf6 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00008 -1.96 8
27 56 0 16777216 2097152 2088926 0x0352be37 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99998 2.41 6
28 58 0 16777216 2097152 2088989 0x09f7b355 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00001 -3.18 10
29 58 0 16777216 2097152 2088955 0x00fbe891 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00000 1.98 16
30 62 0 16777216 2097152 2089181 0x0a0b8265 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00011 -3.42 0
31 62 0 16777216 2097152 2089046 0x06a4ac0f 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00004 1.88 4
# F8 form over the live stream: top 0.1 percent of items hold 0.003072 of reads; flat control 0.003075 (ratio 0.9991x), windowed control 0.003071 (ratio 1.0004x; the gate 1.2x); min site distinct ratio 0.99991 (floors 0.98 and 0.995); worst index bit inside its window -3.42 sigma at site 30 bit 0 (the band 6)
# program: reads 67108864, distinct items 16470432, worst site 0 address 0x0a0c30fd in 3 reads (share 0.000001); one cache over the program's reads: 1 GiB 1.0000, 256 MiB 0.4150, 64 MiB 0.1305; the per-site ideal caches summed: 1.0000, 1.0000, 0.5600; 32.7 s
# end 2026-10-09T08:51:02Z rc 0

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# 2026-10-09T08:51:02Z host igneum-build-8 cmd: /srv/builds/x1/bin-h-5264b8152 addrsite --count 4 --warps 2048 --threads 30 --seed igneum-attack-f8/program/31 --day-hex 69676e65756d2d6461792ffa50000000000000 --class mx8+sh256x27+state+reg64c+fold+rw+flat --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# addrsite: program bf0d33b7f1958a63 class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 0 generator v6 day 2026-10-03 dataset 2^28 words (memory-hard) headers 4 warps 2048 nonces/header 65536 threads 30
# per (iteration, site) cell: the most read address and its share (A03's form); cells over 0.1 percent listed
it site instr reads distinct top_addr top_count top_share
0 0 1 262144 262010 0x0f118fe5 2 0.000008
0 1 1 262144 262009 0x0a5a99f1 2 0.000008
# worst cell: iteration 1 site 1 address 0x0bdd45f2 in 3 reads, share 0.000011
# per site, pooled over the 8 iterations (hit rates: an ideal cache of the site's top K items, K = bytes / 64; exp = min(1, K / window items))
site instr win window_items reads distinct top_addr top_count top_share hit_1GiB hit_256MiB hit_64MiB exp_1GiB exp_256MiB exp_64MiB distinct_ratio bit_z_max bit
0 1 0 16777216 2097152 2088837 0x023a11c7 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99994 2.49 15
1 1 0 16777216 2097152 2089126 0x0f40d924 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00008 -2.64 20
2 3 0 16777216 2097152 2089062 0x042ccc09 4 0.000002 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00005 -1.83 9
3 3 0 16777216 2097152 2088984 0x0f9a90b4 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00001 2.62 10
4 4 0 16777216 2097152 2088856 0x043aec90 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99995 -1.87 13
5 4 0 16777216 2097152 2089148 0x07494127 3 0.000001 1.0000 1.0000 0.5596 1.0000 0.2500 0.0625 1.00009 1.85 14
6 7 0 16777216 2097152 2089097 0x0491d46d 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00007 2.30 1
7 7 0 16777216 2097152 2089013 0x029cbb8a 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00003 2.19 12
8 11 0 16777216 2097152 2088858 0x0d9f51c6 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 0.99995 -1.75 0
9 11 0 16777216 2097152 2088998 0x0a447274 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00002 -2.14 18
10 12 0 16777216 2097152 2089143 0x0bdcdf05 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00009 -2.38 26
11 12 0 16777216 2097152 2089023 0x0f3d7de6 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00003 1.92 16
12 13 0 16777216 2097152 2089111 0x0b298508 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00007 2.62 15
13 13 0 16777216 2097152 2088850 0x0df7f4c6 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99995 3.30 7
14 21 0 16777216 2097152 2088852 0x0eb7cde7 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 0.99995 -2.54 11
15 21 0 16777216 2097152 2088931 0x0cc2811e 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99999 2.04 3
16 28 0 16777216 2097152 2089116 0x0386e882 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00007 -1.94 22
17 28 0 16777216 2097152 2088862 0x01655610 3 0.000001 1.0000 1.0000 0.5604 1.0000 0.2500 0.0625 0.99995 -3.02 26
18 41 0 16777216 2097152 2089010 0x05d82948 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00002 -3.10 24
19 41 0 16777216 2097152 2088915 0x05536353 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99998 4.30 25
20 43 0 16777216 2097152 2089055 0x08a895a9 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00005 2.65 20
21 43 0 16777216 2097152 2088898 0x0d97029e 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99997 1.48 8
22 47 0 16777216 2097152 2088966 0x0a1f1673 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00000 3.01 4
23 47 0 16777216 2097152 2088940 0x09a7e2d6 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99999 2.36 4
24 54 0 16777216 2097152 2088891 0x09419685 4 0.000002 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 0.99997 -1.96 25
25 54 0 16777216 2097152 2089140 0x062a5f90 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00009 -2.46 24
26 56 0 16777216 2097152 2088884 0x0a5ec47b 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 0.99996 -1.26 8
27 56 0 16777216 2097152 2088970 0x0754dc76 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00000 -2.20 22
28 61 0 16777216 2097152 2088851 0x007ab40d 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99995 1.93 25
29 61 0 16777216 2097152 2088943 0x0a4ff44e 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99999 -2.48 15
30 62 0 16777216 2097152 2088981 0x08bd7d41 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00001 -2.45 19
31 62 0 16777216 2097152 2089028 0x07622fc6 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00003 2.17 13
# F8 form over the live stream: top 0.1 percent of items hold 0.003070 of reads; flat control 0.003070 (ratio 1.0001x), windowed control 0.003071 (ratio 0.9998x; the gate 1.2x); min site distinct ratio 0.99994 (floors 0.98 and 0.995); worst index bit inside its window 4.30 sigma at site 19 bit 25 (the band 6)
# program: reads 67108864, distinct items 16469093, worst site 2 address 0x042ccc09 in 4 reads (share 0.000002); one cache over the program's reads: 1 GiB 1.0000, 256 MiB 0.4151, 64 MiB 0.1306; the per-site ideal caches summed: 1.0000, 1.0000, 0.5600; 33.1 s
# end 2026-10-09T08:51:38Z rc 0

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# 2026-10-09T08:51:38Z host igneum-build-8 cmd: /srv/builds/x1/bin-h-5264b8152 addrsite --count 4 --warps 2048 --threads 30 --seed igneum-attack-f8/program/32 --day-hex 69676e65756d2d6461792ffa50000000000000 --class mx8+sh256x27+state+reg64c+fold+rw+flat --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# addrsite: program 80b54bc0701d7269 class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 0 generator v6 day 2026-10-03 dataset 2^28 words (memory-hard) headers 4 warps 2048 nonces/header 65536 threads 30
# per (iteration, site) cell: the most read address and its share (A03's form); cells over 0.1 percent listed
it site instr reads distinct top_addr top_count top_share
0 0 7 262144 262006 0x0dbafe13 2 0.000008
0 1 7 262144 262010 0x020705d3 2 0.000008
# worst cell: iteration 0 site 7 address 0x0a82286a in 3 reads, share 0.000011
# per site, pooled over the 8 iterations (hit rates: an ideal cache of the site's top K items, K = bytes / 64; exp = min(1, K / window items))
site instr win window_items reads distinct top_addr top_count top_share hit_1GiB hit_256MiB hit_64MiB exp_1GiB exp_256MiB exp_64MiB distinct_ratio bit_z_max bit
0 7 0 16777216 2097152 2088884 0x0afc3d21 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99996 1.63 15
1 7 0 16777216 2097152 2089071 0x018b5e78 4 0.000002 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00005 2.07 14
2 21 0 16777216 2097152 2088903 0x04f30bf0 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 0.99997 -2.68 1
3 21 0 16777216 2097152 2089175 0x0ac3dcb9 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00010 2.26 6
4 25 0 16777216 2097152 2088905 0x01f28f38 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99997 1.95 25
5 25 0 16777216 2097152 2088964 0x0ba3850b 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00000 -2.01 16
6 26 0 16777216 2097152 2088758 0x0216a576 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99990 -2.16 23
7 26 0 16777216 2097152 2089106 0x0e01588f 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00007 2.63 16
8 27 0 16777216 2097152 2088831 0x040db470 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99994 -1.75 27
9 27 0 16777216 2097152 2089030 0x0aec1f01 4 0.000002 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00003 2.69 23
10 28 0 16777216 2097152 2088753 0x01315c66 4 0.000002 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99990 -2.67 17
11 28 0 16777216 2097152 2089058 0x010e9eac 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00005 -2.58 15
12 31 0 16777216 2097152 2088874 0x0bcc3e55 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 0.99996 3.59 2
13 31 0 16777216 2097152 2088932 0x00f7ab52 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99999 -2.08 2
14 35 0 16777216 2097152 2088764 0x097aec30 3 0.000001 1.0000 1.0000 0.5604 1.0000 0.2500 0.0625 0.99991 2.49 26
15 35 0 16777216 2097152 2088948 0x09fb1420 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99999 2.80 10
16 39 0 16777216 2097152 2088966 0x0d9d1ecf 4 0.000002 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00000 -2.98 19
17 39 0 16777216 2097152 2089042 0x0032b1c4 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00004 2.62 24
18 40 0 16777216 2097152 2089176 0x00ff9739 3 0.000001 1.0000 1.0000 0.5596 1.0000 0.2500 0.0625 1.00010 2.14 27
19 40 0 16777216 2097152 2089031 0x0c988635 3 0.000001 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00003 1.86 23
20 41 0 16777216 2097152 2088829 0x02a36d70 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 0.99994 -2.29 17
21 41 0 16777216 2097152 2088899 0x0a0aeb92 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99997 1.87 11
22 44 0 16777216 2097152 2089044 0x0081a45b 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00004 2.95 2
23 44 0 16777216 2097152 2088899 0x0bf45ca5 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99997 -2.36 25
24 48 0 16777216 2097152 2089043 0x068ae437 4 0.000002 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00004 -1.73 20
25 48 0 16777216 2097152 2089036 0x05f4c203 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00004 2.09 22
26 55 0 16777216 2097152 2088983 0x03a357c8 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00001 1.56 0
27 55 0 16777216 2097152 2088966 0x02db64ad 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00000 -1.85 1
28 57 0 16777216 2097152 2089098 0x06f760ff 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00007 2.10 22
29 57 0 16777216 2097152 2089172 0x08021fdb 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00010 -2.67 5
30 62 0 16777216 2097152 2088965 0x098d9aab 4 0.000002 1.0000 1.0000 0.5597 1.0000 0.2500 0.0625 1.00000 -1.95 1
31 62 0 16777216 2097152 2088853 0x0867333a 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99995 -1.83 7
# F8 form over the live stream: top 0.1 percent of items hold 0.003076 of reads; flat control 0.003071 (ratio 1.0015x), windowed control 0.003073 (ratio 1.0008x; the gate 1.2x); min site distinct ratio 0.99990 (floors 0.98 and 0.995); worst index bit inside its window 3.59 sigma at site 12 bit 2 (the band 6)
# program: reads 67108864, distinct items 16470032, worst site 1 address 0x018b5e78 in 4 reads (share 0.000002); one cache over the program's reads: 1 GiB 1.0000, 256 MiB 0.4151, 64 MiB 0.1306; the per-site ideal caches summed: 1.0000, 1.0000, 0.5600; 34.8 s
# end 2026-10-09T08:52:16Z rc 0

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# 2026-10-09T08:52:16Z host igneum-build-8 cmd: /srv/builds/x1/bin-h-5264b8152 addrsite --count 4 --warps 2048 --threads 30 --seed igneum-attack-f8/program/33 --day-hex 69676e65756d2d6461792ffa50000000000000 --class mx8+sh256x27+state+reg64c+fold+rw+flat --era 0:edc4fa844da9dc98d37e965176f6558a31560e40502ab3ae5491b21aaaabfb07 --state /srv/builds/x1/packs/node1-state.igsd1
state stream /srv/builds/x1/packs/node1-state.igsd1: chain block 159357 af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3, root 1c583d352bb9c75a06dadb8d82d42836ebe8afa82d0b413be87bf921741f1526, 93 records, 93 leaves
# addrsite: program b025a053532694f0 class mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat attempt 0 generator v6 day 2026-10-03 dataset 2^28 words (memory-hard) headers 4 warps 2048 nonces/header 65536 threads 30
# per (iteration, site) cell: the most read address and its share (A03's form); cells over 0.1 percent listed
it site instr reads distinct top_addr top_count top_share
0 0 4 262144 262031 0x076869ce 2 0.000008
0 1 4 262144 262025 0x04927765 2 0.000008
# worst cell: iteration 1 site 13 address 0x0d6e9359 in 3 reads, share 0.000011
# per site, pooled over the 8 iterations (hit rates: an ideal cache of the site's top K items, K = bytes / 64; exp = min(1, K / window items))
site instr win window_items reads distinct top_addr top_count top_share hit_1GiB hit_256MiB hit_64MiB exp_1GiB exp_256MiB exp_64MiB distinct_ratio bit_z_max bit
0 4 0 16777216 2097152 2089059 0x08845449 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00005 2.78 1
1 4 0 16777216 2097152 2089057 0x0bfeb4f8 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 1.00005 -2.11 6
2 6 0 16777216 2097152 2088997 0x0404ef5a 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00002 2.11 21
3 6 0 16777216 2097152 2089020 0x07136329 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00003 3.68 21
4 7 0 16777216 2097152 2088942 0x0c1392d3 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99999 2.00 9
5 7 0 16777216 2097152 2088947 0x0cc64fcd 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99999 -2.35 0
6 8 0 16777216 2097152 2088850 0x05032255 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99995 2.51 0
7 8 0 16777216 2097152 2088907 0x07043c78 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99997 -2.05 1
8 10 0 16777216 2097152 2088922 0x098aff4a 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99998 1.88 24
9 10 0 16777216 2097152 2088852 0x0f7efb2a 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 0.99995 2.47 7
10 13 0 16777216 2097152 2089103 0x0d596c3e 3 0.000001 1.0000 1.0000 0.5603 1.0000 0.2500 0.0625 1.00007 2.18 21
11 13 0 16777216 2097152 2088974 0x04e16a32 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00001 -2.23 2
12 14 0 16777216 2097152 2088944 0x0bde9be4 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99999 1.67 22
13 14 0 16777216 2097152 2088919 0x0ebc9577 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99998 2.42 19
14 21 0 16777216 2097152 2088996 0x0baae90c 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00002 2.91 20
15 21 0 16777216 2097152 2088848 0x0173ddcb 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99995 -1.37 25
16 26 0 16777216 2097152 2088964 0x08124606 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00000 -2.71 19
17 26 0 16777216 2097152 2088966 0x0401aaec 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00000 2.22 21
18 30 0 16777216 2097152 2088909 0x042db705 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99998 -2.42 11
19 30 0 16777216 2097152 2089128 0x06a84ef0 3 0.000001 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00008 2.67 25
20 41 0 16777216 2097152 2088923 0x06977434 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99998 2.27 19
21 41 0 16777216 2097152 2088983 0x0ed610c1 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00001 2.22 5
22 42 0 16777216 2097152 2089069 0x033cea67 4 0.000002 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 1.00005 -3.00 0
23 42 0 16777216 2097152 2089008 0x0336cb88 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 1.00002 -2.56 18
24 43 0 16777216 2097152 2089079 0x0e8ce5ec 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00006 2.14 19
25 43 0 16777216 2097152 2088853 0x06b311df 4 0.000002 1.0000 1.0000 0.5601 1.0000 0.2500 0.0625 0.99995 2.43 3
26 48 0 16777216 2097152 2088919 0x0316cffb 3 0.000001 1.0000 1.0000 0.5602 1.0000 0.2500 0.0625 0.99998 -2.46 0
27 48 0 16777216 2097152 2089151 0x02bf293b 3 0.000001 1.0000 1.0000 0.5598 1.0000 0.2500 0.0625 1.00009 3.44 5
28 49 0 16777216 2097152 2088908 0x00b5d7b7 3 0.000001 1.0000 1.0000 0.5599 1.0000 0.2500 0.0625 0.99998 1.91 13
29 49 0 16777216 2097152 2089130 0x05f205ac 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00008 2.36 23
30 62 0 16777216 2097152 2088890 0x06db693c 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 0.99997 1.85 14
31 62 0 16777216 2097152 2089110 0x02cc4e1e 3 0.000001 1.0000 1.0000 0.5600 1.0000 0.2500 0.0625 1.00007 -2.06 8
# F8 form over the live stream: top 0.1 percent of items hold 0.003076 of reads; flat control 0.003071 (ratio 1.0018x), windowed control 0.003074 (ratio 1.0007x; the gate 1.2x); min site distinct ratio 0.99995 (floors 0.98 and 0.995); worst index bit inside its window 3.68 sigma at site 3 bit 21 (the band 6)
# program: reads 67108864, distinct items 16470798, worst site 22 address 0x033cea67 in 4 reads (share 0.000002); one cache over the program's reads: 1 GiB 1.0000, 256 MiB 0.4150, 64 MiB 0.1306; the per-site ideal caches summed: 1.0000, 1.0000, 0.5600; 34.4 s
# end 2026-10-09T08:52:53Z rc 0

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@ -1,11 +0,0 @@
run pack check fingerprint MH/s W W_inst W_avg sm_MHz mem_MHz util nJ/hash samples
1 x1-ctrl-ds28 PASS 01f51b9d4805e5e6 31.31 262.24 262.19 262.24 2775.00 10251.00 100.00 8376.38 126
2 x1-flat-ds28 PASS 8cd11a827ac3ffe4 31.28 260.46 260.51 260.46 2775.00 10251.00 99.98 8326.31 126
3 x1-flat-ds28 PASS 8cd11a827ac3ffe4 31.28 259.33 259.29 259.33 2775.00 10251.00 100.00 8289.69 126
4 x1-ctrl-ds28 PASS 01f51b9d4805e5e6 31.30 262.53 262.45 262.53 2775.00 10251.00 99.94 8388.29 126
5 x1-ctrl-ds30 PASS b1f90e91cadb15b6 30.70 261.42 261.38 261.42 2775.00 10251.00 100.00 8515.31 129
6 x1-flat-ds30 PASS 18c4c6a80809c4b9 30.69 258.84 258.76 258.84 2775.00 10251.00 99.99 8433.05 128
7 x1-flat-ds30 PASS 18c4c6a80809c4b9 30.69 257.41 257.20 257.41 2775.00 10251.00 99.99 8386.99 129
8 x1-ctrl-ds30 PASS b1f90e91cadb15b6 30.69 261.75 261.74 261.75 2775.00 10251.00 100.00 8527.66 129
PAIR ds28: control 31.30 MH/s 262.4 W 8382 nJ; candidate 31.28 MH/s 259.9 W 8308 nJ; rate -0.06 percent, joules per hash -0.89 percent (g = 0.9911); fingerprints control ['01f51b9d4805e5e6'] candidate ['8cd11a827ac3ffe4']; ABBA spread control 0.03 percent candidate 0.01 percent
PAIR ds30: control 30.70 MH/s 261.6 W 8521 nJ; candidate 30.69 MH/s 258.1 W 8410 nJ; rate -0.01 percent, joules per hash -1.31 percent (g = 0.9869); fingerprints control ['b1f90e91cadb15b6'] candidate ['18c4c6a80809c4b9']; ABBA spread control 0.02 percent candidate 0.01 percent

View file

@ -1,8 +0,0 @@
# 2026-10-09T08:50:40Z 99b986ba17b1 worker sha256 804a6f7fea10a62e07cf6cd01e99331de5149e683112b5870fc25d1e11e199bd
GPU 0: NVIDIA GeForce RTX 4090 (UUID: GPU-2209c592-1cbc-72f2-ab2e-dc48f7de281a)
name, driver_version, power.limit [W], power.default_limit [W], clocks.max.sm [MHz], clocks.max.memory [MHz]
NVIDIA GeForce RTX 4090, 595.104.02, 450.00 W, 450.00 W, 3120 MHz, 10501 MHz
The current user does not have permission to change clocks for GPU 00000000:21:00.0.
Terminating early due to previous errors.
The current user does not have permission to change clocks for GPU 00000000:21:00.0.
# end 2026-10-09T09:10:43Z

File diff suppressed because it is too large Load diff

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@ -1,48 +0,0 @@
### run 1 x1-ctrl-ds28 start 1791535845.374982809
1791535845.631817796 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_4090 (sm_89, 128 SMs), driver 13.2 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_89 (the device's architecture, listed by NVRTC)
1791535982.397553494 pack /root/x1/packs/x1-ctrl-ds28 on NVIDIA_GeForce_RTX_4090: nvrtc 1559 cache 2 dataset 31 hot 0 check 376 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [268435455] and 64 samples; 96 of 96 vector lanes)
1791535982.398776308 warm-up dispatch (base 0): 535.96 ms; 250 timed dispatches of 16777216 nonces: mean 535.89 ms
1791535982.400036833 RESULT pack=/root/x1/packs/x1-ctrl-ds28 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw device=NVIDIA_GeForce_RTX_4090 arch=sm_89 regs=88 blocks_per_sm=20 warps=0 resident=2560 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=01f51b9d4805e5e6 mhs=31.307 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 1 x1-ctrl-ds28 end 1791535982.416381035
### run 2 x1-flat-ds28 start 1791535992.419009779
1791535992.778618104 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_4090 (sm_89, 128 SMs), driver 13.2 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_89 (the device's architecture, listed by NVRTC)
1791536129.490671628 pack /root/x1/packs/x1-flat-ds28 on NVIDIA_GeForce_RTX_4090: nvrtc 1415 cache 2 dataset 32 hot 0 check 375 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [268435455] and 64 samples; 96 of 96 vector lanes)
1791536129.491888255 warm-up dispatch (base 0): 536.22 ms; 250 timed dispatches of 16777216 nonces: mean 536.33 ms
1791536129.493045782 RESULT pack=/root/x1/packs/x1-flat-ds28 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat device=NVIDIA_GeForce_RTX_4090 arch=sm_89 regs=90 blocks_per_sm=20 warps=0 resident=2560 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=8cd11a827ac3ffe4 mhs=31.281 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 2 x1-flat-ds28 end 1791536129.513038712
### run 3 x1-flat-ds28 start 1791536139.515509138
1791536139.706097926 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_4090 (sm_89, 128 SMs), driver 13.2 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_89 (the device's architecture, listed by NVRTC)
1791536281.254473251 pack /root/x1/packs/x1-flat-ds28 on NVIDIA_GeForce_RTX_4090: nvrtc 6265 cache 2 dataset 31 hot 0 check 371 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [268435455] and 64 samples; 96 of 96 vector lanes)
1791536281.255795117 warm-up dispatch (base 0): 536.21 ms; 250 timed dispatches of 16777216 nonces: mean 536.30 ms
1791536281.257227268 RESULT pack=/root/x1/packs/x1-flat-ds28 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat device=NVIDIA_GeForce_RTX_4090 arch=sm_89 regs=90 blocks_per_sm=20 warps=0 resident=2560 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=8cd11a827ac3ffe4 mhs=31.283 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 3 x1-flat-ds28 end 1791536281.275043826
### run 4 x1-ctrl-ds28 start 1791536291.295339137
1791536292.452488003 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_4090 (sm_89, 128 SMs), driver 13.2 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_89 (the device's architecture, listed by NVRTC)
1791536430.323673191 pack /root/x1/packs/x1-ctrl-ds28 on NVIDIA_GeForce_RTX_4090: nvrtc 2646 cache 2 dataset 31 hot 0 check 378 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [268435455] and 64 samples; 96 of 96 vector lanes)
1791536430.324882199 warm-up dispatch (base 0): 535.91 ms; 250 timed dispatches of 16777216 nonces: mean 536.06 ms
1791536430.326102417 RESULT pack=/root/x1/packs/x1-ctrl-ds28 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw device=NVIDIA_GeForce_RTX_4090 arch=sm_89 regs=88 blocks_per_sm=20 warps=0 resident=2560 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=01f51b9d4805e5e6 mhs=31.297 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 4 x1-ctrl-ds28 end 1791536430.343614376
### run 5 x1-ctrl-ds30 start 1791536440.346813978
1791536440.543869608 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_4090 (sm_89, 128 SMs), driver 13.2 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_89 (the device's architecture, listed by NVRTC)
1791536580.078431499 pack /root/x1/packs/x1-ctrl-ds30 on NVIDIA_GeForce_RTX_4090: nvrtc 1489 cache 2 dataset 124 hot 0 check 454 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [1073741823] and 64 samples; 96 of 96 vector lanes)
1791536580.079708014 warm-up dispatch (base 0): 546.53 ms; 250 timed dispatches of 16777216 nonces: mean 546.50 ms
1791536580.081068576 RESULT pack=/root/x1/packs/x1-ctrl-ds30 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw device=NVIDIA_GeForce_RTX_4090 arch=sm_89 regs=88 blocks_per_sm=20 warps=0 resident=2560 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=b1f90e91cadb15b6 mhs=30.700 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 5 x1-ctrl-ds30 end 1791536580.097753152
### run 6 x1-flat-ds30 start 1791536590.100963743
1791536590.296823626 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_4090 (sm_89, 128 SMs), driver 13.2 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_89 (the device's architecture, listed by NVRTC)
1791536730.096187735 pack /root/x1/packs/x1-flat-ds30 on NVIDIA_GeForce_RTX_4090: nvrtc 1415 cache 2 dataset 124 hot 0 check 375 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [1073741823] and 64 samples; 96 of 96 vector lanes)
1791536730.123861973 warm-up dispatch (base 0): 546.51 ms; 250 timed dispatches of 16777216 nonces: mean 546.60 ms
1791536730.147271876 RESULT pack=/root/x1/packs/x1-flat-ds30 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat device=NVIDIA_GeForce_RTX_4090 arch=sm_89 regs=90 blocks_per_sm=20 warps=0 resident=2560 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=18c4c6a80809c4b9 mhs=30.694 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 6 x1-flat-ds30 end 1791536730.318562711
### run 7 x1-flat-ds30 start 1791536740.354763421
1791536740.742270280 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_4090 (sm_89, 128 SMs), driver 13.2 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_89 (the device's architecture, listed by NVRTC)
1791536883.998136496 pack /root/x1/packs/x1-flat-ds30 on NVIDIA_GeForce_RTX_4090: nvrtc 5264 cache 2 dataset 124 hot 0 check 367 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [1073741823] and 64 samples; 96 of 96 vector lanes)
1791536883.999336600 warm-up dispatch (base 0): 546.54 ms; 250 timed dispatches of 16777216 nonces: mean 546.65 ms
1791536884.000540592 RESULT pack=/root/x1/packs/x1-flat-ds30 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat device=NVIDIA_GeForce_RTX_4090 arch=sm_89 regs=90 blocks_per_sm=20 warps=0 resident=2560 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=18c4c6a80809c4b9 mhs=30.691 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 7 x1-flat-ds30 end 1791536884.017709481
### run 8 x1-ctrl-ds30 start 1791536894.020141604
1791536894.219191898 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_4090 (sm_89, 128 SMs), driver 13.2 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_89 (the device's architecture, listed by NVRTC)
1791537033.691509177 pack /root/x1/packs/x1-ctrl-ds30 on NVIDIA_GeForce_RTX_4090: nvrtc 1475 cache 2 dataset 124 hot 0 check 374 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [1073741823] and 64 samples; 96 of 96 vector lanes)
1791537033.692753154 warm-up dispatch (base 0): 546.49 ms; 250 timed dispatches of 16777216 nonces: mean 546.59 ms
1791537033.693784263 RESULT pack=/root/x1/packs/x1-ctrl-ds30 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw device=NVIDIA_GeForce_RTX_4090 arch=sm_89 regs=88 blocks_per_sm=20 warps=0 resident=2560 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=b1f90e91cadb15b6 mhs=30.694 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 8 x1-ctrl-ds30 end 1791537033.721088923

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@ -1,11 +0,0 @@
run pack check fingerprint MH/s W W_inst W_avg sm_MHz mem_MHz util nJ/hash samples
1 x1-ctrl-ds28 PASS 01f51b9d4805e5e6 31.30 249.58 249.61 249.58 2745.60 10251.00 100.00 7973.65 126
2 x1-flat-ds28 PASS 8cd11a827ac3ffe4 31.28 248.68 248.68 248.68 2745.00 10251.00 100.00 7949.60 126
3 x1-flat-ds28 PASS 8cd11a827ac3ffe4 31.28 249.18 249.20 249.18 2745.00 10251.00 100.00 7965.71 126
4 x1-ctrl-ds28 PASS 01f51b9d4805e5e6 31.30 252.79 252.83 252.79 2741.07 10251.00 100.00 8076.63 126
5 x1-ctrl-ds30 PASS b1f90e91cadb15b6 30.70 251.15 251.17 251.15 2743.49 10251.00 99.99 8182.19 129
6 x1-flat-ds30 PASS 18c4c6a80809c4b9 30.69 248.26 248.28 248.26 2745.00 10251.00 100.00 8088.73 128
7 x1-flat-ds30 PASS 18c4c6a80809c4b9 30.69 248.21 248.25 248.21 2745.00 10251.00 100.00 8087.44 128
8 x1-ctrl-ds30 PASS b1f90e91cadb15b6 30.70 250.48 250.47 250.48 2742.56 10251.00 100.00 8160.22 129
PAIR ds28: control 31.30 MH/s 251.2 W 8025 nJ; candidate 31.28 MH/s 248.9 W 7958 nJ; rate -0.06 percent, joules per hash -0.84 percent (g = 0.9916); fingerprints control ['01f51b9d4805e5e6'] candidate ['8cd11a827ac3ffe4']; ABBA spread control 0.01 percent candidate 0.00 percent
PAIR ds30: control 30.70 MH/s 250.8 W 8171 nJ; candidate 30.69 MH/s 248.2 W 8088 nJ; rate -0.01 percent, joules per hash -1.02 percent (g = 0.9898); fingerprints control ['b1f90e91cadb15b6'] candidate ['18c4c6a80809c4b9']; ABBA spread control 0.00 percent candidate 0.00 percent

View file

@ -1,8 +0,0 @@
# 2026-10-09T08:50:47Z 43fb5342ca73 worker sha256 804a6f7fea10a62e07cf6cd01e99331de5149e683112b5870fc25d1e11e199bd
GPU 0: NVIDIA GeForce RTX 4090 (UUID: GPU-40966419-60c8-d741-dd9d-016ad5600b96)
name, driver_version, power.limit [W], power.default_limit [W], clocks.max.sm [MHz], clocks.max.memory [MHz]
NVIDIA GeForce RTX 4090, 595.91.07, 450.00 W, 450.00 W, 3105 MHz, 10501 MHz
The current user does not have permission to change clocks for GPU 00000000:01:00.0.
Terminating early due to previous errors.
The current user does not have permission to change clocks for GPU 00000000:01:00.0.
# end 2026-10-09T09:10:44Z

File diff suppressed because it is too large Load diff

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@ -1,48 +0,0 @@
### run 1 x1-ctrl-ds28 start 1791535852.987677286
1791535853.246771428 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_4090 (sm_89, 128 SMs), driver 13.2 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_89 (the device's architecture, listed by NVRTC)
1791535990.444710324 pack /root/x1/packs/x1-ctrl-ds28 on NVIDIA_GeForce_RTX_4090: nvrtc 1794 cache 3 dataset 32 hot 0 check 484 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [268435455] and 64 samples; 96 of 96 vector lanes)
1791535990.446618742 warm-up dispatch (base 0): 536.06 ms; 250 timed dispatches of 16777216 nonces: mean 535.99 ms
1791535990.448513841 RESULT pack=/root/x1/packs/x1-ctrl-ds28 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw device=NVIDIA_GeForce_RTX_4090 arch=sm_89 regs=88 blocks_per_sm=20 warps=0 resident=2560 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=01f51b9d4805e5e6 mhs=31.301 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 1 x1-ctrl-ds28 end 1791535990.466239712
### run 2 x1-flat-ds28 start 1791536000.470056887
1791536000.676893961 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_4090 (sm_89, 128 SMs), driver 13.2 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_89 (the device's architecture, listed by NVRTC)
1791536137.866103375 pack /root/x1/packs/x1-flat-ds28 on NVIDIA_GeForce_RTX_4090: nvrtc 1743 cache 2 dataset 32 hot 0 check 479 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [268435455] and 64 samples; 96 of 96 vector lanes)
1791536137.868129084 warm-up dispatch (base 0): 536.27 ms; 250 timed dispatches of 16777216 nonces: mean 536.32 ms
1791536137.871480659 RESULT pack=/root/x1/packs/x1-flat-ds28 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat device=NVIDIA_GeForce_RTX_4090 arch=sm_89 regs=90 blocks_per_sm=20 warps=0 resident=2560 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=8cd11a827ac3ffe4 mhs=31.282 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 2 x1-flat-ds28 end 1791536137.890172125
### run 3 x1-flat-ds28 start 1791536147.894446312
1791536148.100122291 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_4090 (sm_89, 128 SMs), driver 13.2 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_89 (the device's architecture, listed by NVRTC)
1791536285.611106544 pack /root/x1/packs/x1-flat-ds28 on NVIDIA_GeForce_RTX_4090: nvrtc 1662 cache 3 dataset 32 hot 0 check 584 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [268435455] and 64 samples; 96 of 96 vector lanes)
1791536285.613308364 warm-up dispatch (base 0): 536.30 ms; 250 timed dispatches of 16777216 nonces: mean 536.32 ms
1791536285.615261253 RESULT pack=/root/x1/packs/x1-flat-ds28 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat device=NVIDIA_GeForce_RTX_4090 arch=sm_89 regs=90 blocks_per_sm=20 warps=0 resident=2560 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=8cd11a827ac3ffe4 mhs=31.282 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 3 x1-flat-ds28 end 1791536285.633921128
### run 4 x1-ctrl-ds28 start 1791536295.637863584
1791536296.166418465 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_4090 (sm_89, 128 SMs), driver 13.2 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_89 (the device's architecture, listed by NVRTC)
1791536433.512117831 pack /root/x1/packs/x1-ctrl-ds28 on NVIDIA_GeForce_RTX_4090: nvrtc 1905 cache 2 dataset 122 hot 0 check 453 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [268435455] and 64 samples; 96 of 96 vector lanes)
1791536433.514280420 warm-up dispatch (base 0): 535.95 ms; 250 timed dispatches of 16777216 nonces: mean 536.03 ms
1791536433.516297750 RESULT pack=/root/x1/packs/x1-ctrl-ds28 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw device=NVIDIA_GeForce_RTX_4090 arch=sm_89 regs=88 blocks_per_sm=20 warps=0 resident=2560 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=01f51b9d4805e5e6 mhs=31.299 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 4 x1-ctrl-ds28 end 1791536433.533900148
### run 5 x1-ctrl-ds30 start 1791536443.538871181
1791536443.756588201 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_4090 (sm_89, 128 SMs), driver 13.2 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_89 (the device's architecture, listed by NVRTC)
1791536583.738558907 pack /root/x1/packs/x1-ctrl-ds30 on NVIDIA_GeForce_RTX_4090: nvrtc 1792 cache 2 dataset 125 hot 0 check 495 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [1073741823] and 64 samples; 96 of 96 vector lanes)
1791536583.742084323 warm-up dispatch (base 0): 546.60 ms; 250 timed dispatches of 16777216 nonces: mean 546.57 ms
1791536583.744974476 RESULT pack=/root/x1/packs/x1-ctrl-ds30 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw device=NVIDIA_GeForce_RTX_4090 arch=sm_89 regs=88 blocks_per_sm=20 warps=0 resident=2560 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=b1f90e91cadb15b6 mhs=30.695 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 5 x1-ctrl-ds30 end 1791536583.761670770
### run 6 x1-flat-ds30 start 1791536593.765585539
1791536593.972056229 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_4090 (sm_89, 128 SMs), driver 13.2 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_89 (the device's architecture, listed by NVRTC)
1791536733.906352202 pack /root/x1/packs/x1-flat-ds30 on NVIDIA_GeForce_RTX_4090: nvrtc 1707 cache 2 dataset 125 hot 0 check 532 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [1073741823] and 64 samples; 96 of 96 vector lanes)
1791536733.908279500 warm-up dispatch (base 0): 546.62 ms; 250 timed dispatches of 16777216 nonces: mean 546.64 ms
1791536733.910233899 RESULT pack=/root/x1/packs/x1-flat-ds30 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat device=NVIDIA_GeForce_RTX_4090 arch=sm_89 regs=90 blocks_per_sm=20 warps=0 resident=2560 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=18c4c6a80809c4b9 mhs=30.692 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 6 x1-flat-ds30 end 1791536733.934702868
### run 7 x1-flat-ds30 start 1791536743.941532070
1791536744.150640701 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_4090 (sm_89, 128 SMs), driver 13.2 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_89 (the device's architecture, listed by NVRTC)
1791536884.080755105 pack /root/x1/packs/x1-flat-ds30 on NVIDIA_GeForce_RTX_4090: nvrtc 1689 cache 3 dataset 125 hot 0 check 520 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [1073741823] and 64 samples; 96 of 96 vector lanes)
1791536884.084309971 warm-up dispatch (base 0): 546.63 ms; 250 timed dispatches of 16777216 nonces: mean 546.65 ms
1791536884.087476405 RESULT pack=/root/x1/packs/x1-flat-ds30 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat device=NVIDIA_GeForce_RTX_4090 arch=sm_89 regs=90 blocks_per_sm=20 warps=0 resident=2560 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=18c4c6a80809c4b9 mhs=30.691 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 7 x1-flat-ds30 end 1791536884.105516816
### run 8 x1-ctrl-ds30 start 1791536894.111470213
1791536894.335966554 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_4090 (sm_89, 128 SMs), driver 13.2 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_89 (the device's architecture, listed by NVRTC)
1791537034.314148871 pack /root/x1/packs/x1-ctrl-ds30 on NVIDIA_GeForce_RTX_4090: nvrtc 1802 cache 3 dataset 124 hot 0 check 495 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [1073741823] and 64 samples; 96 of 96 vector lanes)
1791537034.316518601 warm-up dispatch (base 0): 546.59 ms; 250 timed dispatches of 16777216 nonces: mean 546.58 ms
1791537034.318721471 RESULT pack=/root/x1/packs/x1-ctrl-ds30 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw device=NVIDIA_GeForce_RTX_4090 arch=sm_89 regs=88 blocks_per_sm=20 warps=0 resident=2560 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=b1f90e91cadb15b6 mhs=30.695 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 8 x1-ctrl-ds30 end 1791537034.335791327

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@ -1,11 +0,0 @@
run pack check fingerprint MH/s W W_inst W_avg sm_MHz mem_MHz util nJ/hash samples
1 x1-ctrl-ds28 PASS 01f51b9d4805e5e6 70.66 400.08 400.09 400.08 2833.51 13801.00 100.00 5662.14 51
2 x1-flat-ds28 PASS 8cd11a827ac3ffe4 70.56 400.01 400.01 400.01 2813.85 13801.00 100.00 5669.42 52
3 x1-flat-ds28 PASS 8cd11a827ac3ffe4 70.55 399.99 399.98 399.99 2813.85 13801.00 100.00 5669.29 52
4 x1-ctrl-ds28 PASS 01f51b9d4805e5e6 70.65 399.99 399.99 399.99 2796.37 13801.00 100.00 5661.26 51
5 x1-ctrl-ds30 PASS b1f90e91cadb15b6 68.66 399.99 400.05 399.99 2802.06 13801.00 100.00 5826.05 54
6 x1-flat-ds30 PASS 18c4c6a80809c4b9 68.59 399.96 399.74 399.96 2811.77 13801.00 99.85 5831.32 53
7 x1-flat-ds30 PASS 18c4c6a80809c4b9 68.59 400.02 400.01 400.02 2814.72 13801.00 99.98 5832.36 53
8 x1-ctrl-ds30 PASS b1f90e91cadb15b6 68.66 399.99 400.03 399.99 2800.25 13801.00 100.00 5825.54 53
PAIR ds28: control 70.66 MH/s 400.0 W 5662 nJ; candidate 70.55 MH/s 400.0 W 5669 nJ; rate -0.14 percent, joules per hash +0.14 percent (g = 1.0014); fingerprints control ['01f51b9d4805e5e6'] candidate ['8cd11a827ac3ffe4']; ABBA spread control 0.01 percent candidate 0.00 percent
PAIR ds30: control 68.66 MH/s 400.0 W 5826 nJ; candidate 68.59 MH/s 400.0 W 5832 nJ; rate -0.10 percent, joules per hash +0.10 percent (g = 1.0010); fingerprints control ['b1f90e91cadb15b6'] candidate ['18c4c6a80809c4b9']; ABBA spread control 0.01 percent candidate 0.00 percent

View file

@ -1,8 +0,0 @@
# 2026-10-09T08:48:50Z a251332ae314 worker sha256 804a6f7fea10a62e07cf6cd01e99331de5149e683112b5870fc25d1e11e199bd
GPU 0: NVIDIA GeForce RTX 5090 (UUID: GPU-848b3087-94b0-d664-e099-e542fc28a3a9)
name, driver_version, power.limit [W], power.default_limit [W], clocks.max.sm [MHz], clocks.max.memory [MHz]
NVIDIA GeForce RTX 5090, 580.159.03, 400.00 W, 575.00 W, 3090 MHz, 14001 MHz
The current user does not have permission to change clocks for GPU 00000000:A1:00.0.
Terminating early due to previous errors.
The current user does not have permission to change clocks for GPU 00000000:A1:00.0.
# end 2026-10-09T08:58:51Z

View file

@ -1,602 +0,0 @@
2026/10/09 08:48:50.541, 17.51 W, 180 MHz, 405 MHz, 35, 0 %, 17.59 W, 17.51 W
2026/10/09 08:48:51.548, 17.83 W, 180 MHz, 405 MHz, 35, 0 %, 18.06 W, 17.83 W
2026/10/09 08:48:52.548, 17.90 W, 180 MHz, 405 MHz, 35, 0 %, 17.75 W, 17.90 W
2026/10/09 08:48:53.548, 17.71 W, 180 MHz, 405 MHz, 35, 0 %, 17.71 W, 17.71 W
2026/10/09 08:48:54.549, 17.67 W, 180 MHz, 405 MHz, 35, 0 %, 17.67 W, 17.67 W
2026/10/09 08:48:55.549, 17.68 W, 180 MHz, 405 MHz, 35, 0 %, 17.68 W, 17.68 W
2026/10/09 08:48:56.549, 29.55 W, 2362 MHz, 13801 MHz, 36, 0 %, 58.08 W, 29.55 W
2026/10/09 08:48:57.549, 57.87 W, 2400 MHz, 13801 MHz, 37, 0 %, 57.82 W, 57.87 W
2026/10/09 08:48:58.549, 63.47 W, 2400 MHz, 13801 MHz, 37, 1 %, 93.81 W, 63.47 W
2026/10/09 08:48:59.549, 58.13 W, 2400 MHz, 13801 MHz, 37, 0 %, 57.38 W, 58.13 W
2026/10/09 08:49:00.550, 272.17 W, 2872 MHz, 13801 MHz, 46, 100 %, 387.82 W, 272.17 W
2026/10/09 08:49:01.550, 388.38 W, 2865 MHz, 13801 MHz, 48, 99 %, 387.52 W, 388.38 W
2026/10/09 08:49:02.550, 390.03 W, 2865 MHz, 13801 MHz, 49, 100 %, 390.59 W, 390.03 W
2026/10/09 08:49:03.550, 391.65 W, 2865 MHz, 13801 MHz, 50, 100 %, 392.68 W, 391.65 W
2026/10/09 08:49:04.550, 392.39 W, 2865 MHz, 13801 MHz, 50, 100 %, 393.63 W, 392.39 W
2026/10/09 08:49:05.550, 393.78 W, 2865 MHz, 13801 MHz, 51, 100 %, 393.42 W, 393.78 W
2026/10/09 08:49:06.551, 394.60 W, 2865 MHz, 13801 MHz, 51, 100 %, 394.48 W, 394.60 W
2026/10/09 08:49:07.551, 394.86 W, 2865 MHz, 13801 MHz, 52, 100 %, 395.50 W, 394.86 W
2026/10/09 08:49:08.551, 396.28 W, 2865 MHz, 13801 MHz, 53, 100 %, 397.07 W, 396.28 W
2026/10/09 08:49:09.551, 396.82 W, 2865 MHz, 13801 MHz, 53, 100 %, 397.84 W, 396.82 W
2026/10/09 08:49:10.551, 397.73 W, 2857 MHz, 13801 MHz, 54, 100 %, 396.95 W, 397.73 W
2026/10/09 08:49:11.552, 398.35 W, 2857 MHz, 13801 MHz, 54, 100 %, 398.07 W, 398.35 W
2026/10/09 08:49:12.552, 399.13 W, 2857 MHz, 13801 MHz, 55, 100 %, 400.07 W, 399.13 W
2026/10/09 08:49:13.552, 400.14 W, 2857 MHz, 13801 MHz, 55, 100 %, 400.52 W, 400.14 W
2026/10/09 08:49:14.552, 401.03 W, 2857 MHz, 13801 MHz, 56, 100 %, 402.02 W, 401.03 W
2026/10/09 08:49:15.553, 401.86 W, 2857 MHz, 13801 MHz, 56, 100 %, 402.06 W, 401.86 W
2026/10/09 08:49:16.553, 403.29 W, 2857 MHz, 13801 MHz, 56, 100 %, 402.77 W, 403.29 W
2026/10/09 08:49:17.553, 403.19 W, 2857 MHz, 13801 MHz, 56, 100 %, 402.12 W, 403.19 W
2026/10/09 08:49:18.553, 401.89 W, 2857 MHz, 13801 MHz, 56, 100 %, 401.91 W, 401.89 W
2026/10/09 08:49:19.553, 402.59 W, 2857 MHz, 13801 MHz, 56, 100 %, 404.10 W, 402.59 W
2026/10/09 08:49:20.553, 402.26 W, 2857 MHz, 13801 MHz, 56, 100 %, 399.49 W, 402.26 W
2026/10/09 08:49:21.554, 400.01 W, 2850 MHz, 13801 MHz, 57, 100 %, 400.05 W, 400.01 W
2026/10/09 08:49:22.554, 400.00 W, 2850 MHz, 13801 MHz, 57, 100 %, 400.64 W, 400.00 W
2026/10/09 08:49:23.554, 400.04 W, 2850 MHz, 13801 MHz, 57, 100 %, 399.76 W, 400.04 W
2026/10/09 08:49:24.554, 399.89 W, 2842 MHz, 13801 MHz, 57, 100 %, 398.90 W, 399.89 W
2026/10/09 08:49:25.554, 400.05 W, 2842 MHz, 13801 MHz, 58, 100 %, 399.61 W, 400.05 W
2026/10/09 08:49:26.554, 400.05 W, 2842 MHz, 13801 MHz, 58, 100 %, 401.06 W, 400.05 W
2026/10/09 08:49:27.555, 399.98 W, 2842 MHz, 13801 MHz, 58, 100 %, 400.43 W, 399.98 W
2026/10/09 08:49:28.555, 400.02 W, 2842 MHz, 13801 MHz, 58, 100 %, 399.79 W, 400.02 W
2026/10/09 08:49:29.555, 399.92 W, 2835 MHz, 13801 MHz, 59, 100 %, 399.23 W, 399.92 W
2026/10/09 08:49:30.555, 399.98 W, 2835 MHz, 13801 MHz, 59, 100 %, 400.03 W, 399.98 W
2026/10/09 08:49:31.555, 400.01 W, 2835 MHz, 13801 MHz, 59, 100 %, 400.85 W, 400.01 W
2026/10/09 08:49:32.555, 400.05 W, 2835 MHz, 13801 MHz, 59, 100 %, 399.98 W, 400.05 W
2026/10/09 08:49:33.556, 399.99 W, 2835 MHz, 13801 MHz, 60, 100 %, 399.85 W, 399.99 W
2026/10/09 08:49:34.556, 399.94 W, 2827 MHz, 13801 MHz, 60, 100 %, 399.65 W, 399.94 W
2026/10/09 08:49:35.556, 400.02 W, 2827 MHz, 13801 MHz, 60, 100 %, 400.01 W, 400.02 W
2026/10/09 08:49:36.556, 400.01 W, 2827 MHz, 13801 MHz, 60, 100 %, 400.57 W, 400.01 W
2026/10/09 08:49:37.556, 399.97 W, 2827 MHz, 13801 MHz, 60, 100 %, 399.94 W, 399.97 W
2026/10/09 08:49:38.556, 399.93 W, 2827 MHz, 13801 MHz, 61, 100 %, 399.32 W, 399.93 W
2026/10/09 08:49:39.557, 399.95 W, 2820 MHz, 13801 MHz, 61, 100 %, 399.61 W, 399.95 W
2026/10/09 08:49:40.557, 400.01 W, 2820 MHz, 13801 MHz, 61, 100 %, 400.79 W, 400.01 W
2026/10/09 08:49:41.557, 399.97 W, 2820 MHz, 13801 MHz, 61, 100 %, 400.47 W, 399.97 W
2026/10/09 08:49:42.557, 400.03 W, 2820 MHz, 13801 MHz, 61, 100 %, 399.91 W, 400.03 W
2026/10/09 08:49:43.557, 399.92 W, 2820 MHz, 13801 MHz, 61, 100 %, 399.38 W, 399.92 W
2026/10/09 08:49:44.558, 399.98 W, 2820 MHz, 13801 MHz, 61, 100 %, 399.83 W, 399.98 W
2026/10/09 08:49:45.558, 400.03 W, 2820 MHz, 13801 MHz, 62, 100 %, 401.27 W, 400.03 W
2026/10/09 08:49:46.558, 399.98 W, 2812 MHz, 13801 MHz, 62, 100 %, 400.24 W, 399.98 W
2026/10/09 08:49:47.558, 400.02 W, 2812 MHz, 13801 MHz, 62, 100 %, 399.78 W, 400.02 W
2026/10/09 08:49:48.558, 399.90 W, 2812 MHz, 13801 MHz, 62, 100 %, 399.21 W, 399.90 W
2026/10/09 08:49:49.559, 400.07 W, 2812 MHz, 13801 MHz, 62, 100 %, 400.01 W, 400.07 W
2026/10/09 08:49:50.559, 400.00 W, 2812 MHz, 13801 MHz, 62, 100 %, 400.89 W, 400.00 W
2026/10/09 08:49:51.559, 400.05 W, 2812 MHz, 13801 MHz, 62, 100 %, 399.98 W, 400.05 W
2026/10/09 08:49:52.559, 399.99 W, 2812 MHz, 13801 MHz, 62, 100 %, 399.83 W, 399.99 W
2026/10/09 08:49:53.559, 399.94 W, 2812 MHz, 13801 MHz, 62, 100 %, 399.57 W, 399.94 W
2026/10/09 08:49:54.560, 400.00 W, 2812 MHz, 13801 MHz, 63, 100 %, 400.18 W, 400.00 W
2026/10/09 08:49:55.560, 399.98 W, 2812 MHz, 13801 MHz, 63, 100 %, 400.46 W, 399.98 W
2026/10/09 08:49:56.560, 400.02 W, 2812 MHz, 13801 MHz, 63, 100 %, 399.81 W, 400.02 W
2026/10/09 08:49:57.560, 399.92 W, 2805 MHz, 13801 MHz, 63, 100 %, 399.07 W, 399.92 W
2026/10/09 08:49:58.561, 399.97 W, 2805 MHz, 13801 MHz, 63, 100 %, 399.82 W, 399.97 W
2026/10/09 08:49:59.561, 369.35 W, 2805 MHz, 14001 MHz, 59, 2 %, 113.52 W, 369.35 W
2026/10/09 08:50:00.561, 105.97 W, 2865 MHz, 14001 MHz, 57, 0 %, 103.57 W, 105.97 W
2026/10/09 08:50:01.562, 104.20 W, 2865 MHz, 14001 MHz, 56, 0 %, 103.73 W, 104.20 W
2026/10/09 08:50:02.562, 87.47 W, 555 MHz, 14001 MHz, 55, 0 %, 87.47 W, 87.47 W
2026/10/09 08:50:03.562, 66.20 W, 352 MHz, 7001 MHz, 53, 0 %, 44.92 W, 66.20 W
2026/10/09 08:50:04.562, 43.06 W, 225 MHz, 810 MHz, 53, 0 %, 43.06 W, 43.06 W
2026/10/09 08:50:05.563, 37.91 W, 180 MHz, 810 MHz, 52, 0 %, 32.76 W, 37.91 W
2026/10/09 08:50:06.563, 31.34 W, 180 MHz, 405 MHz, 51, 0 %, 31.34 W, 31.34 W
2026/10/09 08:50:07.563, 29.93 W, 180 MHz, 405 MHz, 51, 0 %, 29.93 W, 29.93 W
2026/10/09 08:50:08.563, 29.64 W, 180 MHz, 405 MHz, 50, 0 %, 29.36 W, 29.64 W
2026/10/09 08:50:09.564, 29.28 W, 180 MHz, 405 MHz, 50, 0 %, 29.28 W, 29.28 W
2026/10/09 08:50:10.564, 45.92 W, 2400 MHz, 13801 MHz, 50, 0 %, 72.77 W, 45.92 W
2026/10/09 08:50:11.564, 72.64 W, 2400 MHz, 13801 MHz, 50, 0 %, 72.62 W, 72.64 W
2026/10/09 08:50:12.565, 77.49 W, 2400 MHz, 13801 MHz, 50, 0 %, 72.69 W, 77.49 W
2026/10/09 08:50:13.565, 144.93 W, 2640 MHz, 13801 MHz, 55, 57 %, 245.30 W, 144.93 W
2026/10/09 08:50:14.565, 364.18 W, 2857 MHz, 13801 MHz, 58, 100 %, 406.30 W, 364.18 W
2026/10/09 08:50:15.565, 406.06 W, 2857 MHz, 13801 MHz, 58, 100 %, 406.71 W, 406.06 W
2026/10/09 08:50:16.566, 405.95 W, 2857 MHz, 13801 MHz, 59, 100 %, 400.41 W, 405.95 W
2026/10/09 08:50:17.566, 400.14 W, 2842 MHz, 13801 MHz, 59, 100 %, 399.81 W, 400.14 W
2026/10/09 08:50:18.566, 400.03 W, 2842 MHz, 13801 MHz, 59, 100 %, 400.90 W, 400.03 W
2026/10/09 08:50:19.566, 400.06 W, 2842 MHz, 13801 MHz, 60, 100 %, 400.18 W, 400.06 W
2026/10/09 08:50:20.567, 400.00 W, 2842 MHz, 13801 MHz, 60, 100 %, 399.85 W, 400.00 W
2026/10/09 08:50:21.567, 399.92 W, 2842 MHz, 13801 MHz, 60, 100 %, 399.31 W, 399.92 W
2026/10/09 08:50:22.567, 399.97 W, 2842 MHz, 13801 MHz, 60, 100 %, 399.79 W, 399.97 W
2026/10/09 08:50:23.567, 400.04 W, 2842 MHz, 13801 MHz, 60, 100 %, 400.90 W, 400.04 W
2026/10/09 08:50:24.568, 400.05 W, 2835 MHz, 13801 MHz, 61, 100 %, 400.32 W, 400.05 W
2026/10/09 08:50:25.568, 400.02 W, 2835 MHz, 13801 MHz, 61, 100 %, 399.83 W, 400.02 W
2026/10/09 08:50:26.568, 399.93 W, 2835 MHz, 13801 MHz, 61, 100 %, 399.34 W, 399.93 W
2026/10/09 08:50:27.569, 400.06 W, 2835 MHz, 13801 MHz, 61, 100 %, 400.01 W, 400.06 W
2026/10/09 08:50:28.569, 400.00 W, 2835 MHz, 13801 MHz, 61, 100 %, 400.80 W, 400.00 W
2026/10/09 08:50:29.569, 400.01 W, 2835 MHz, 13801 MHz, 61, 100 %, 400.20 W, 400.01 W
2026/10/09 08:50:30.569, 400.01 W, 2835 MHz, 13801 MHz, 62, 100 %, 399.79 W, 400.01 W
2026/10/09 08:50:31.570, 399.93 W, 2835 MHz, 13801 MHz, 62, 100 %, 399.46 W, 399.93 W
2026/10/09 08:50:32.570, 400.03 W, 2827 MHz, 13801 MHz, 62, 100 %, 399.89 W, 400.03 W
2026/10/09 08:50:33.570, 399.98 W, 2827 MHz, 13801 MHz, 62, 100 %, 400.51 W, 399.98 W
2026/10/09 08:50:34.570, 400.02 W, 2827 MHz, 13801 MHz, 62, 100 %, 399.94 W, 400.02 W
2026/10/09 08:50:35.571, 400.00 W, 2827 MHz, 13801 MHz, 62, 100 %, 399.93 W, 400.00 W
2026/10/09 08:50:36.571, 399.94 W, 2827 MHz, 13801 MHz, 62, 100 %, 399.67 W, 399.94 W
2026/10/09 08:50:37.571, 400.00 W, 2827 MHz, 13801 MHz, 62, 100 %, 400.04 W, 400.00 W
2026/10/09 08:50:38.571, 400.00 W, 2827 MHz, 13801 MHz, 63, 100 %, 400.57 W, 400.00 W
2026/10/09 08:50:39.572, 400.03 W, 2827 MHz, 13801 MHz, 63, 100 %, 399.92 W, 400.03 W
2026/10/09 08:50:40.572, 400.00 W, 2827 MHz, 13801 MHz, 63, 100 %, 400.04 W, 400.00 W
2026/10/09 08:50:41.572, 399.95 W, 2820 MHz, 13801 MHz, 63, 100 %, 399.57 W, 399.95 W
2026/10/09 08:50:42.572, 400.06 W, 2805 MHz, 13801 MHz, 63, 100 %, 400.11 W, 400.06 W
2026/10/09 08:50:43.573, 399.98 W, 2805 MHz, 13801 MHz, 63, 100 %, 400.56 W, 399.98 W
2026/10/09 08:50:44.573, 400.03 W, 2805 MHz, 13801 MHz, 63, 100 %, 399.79 W, 400.03 W
2026/10/09 08:50:45.573, 399.82 W, 2805 MHz, 13801 MHz, 63, 100 %, 398.23 W, 399.82 W
2026/10/09 08:50:46.574, 400.12 W, 2805 MHz, 13801 MHz, 63, 100 %, 399.65 W, 400.12 W
2026/10/09 08:50:47.574, 400.01 W, 2805 MHz, 13801 MHz, 63, 100 %, 400.71 W, 400.01 W
2026/10/09 08:50:48.574, 400.05 W, 2805 MHz, 13801 MHz, 63, 100 %, 400.43 W, 400.05 W
2026/10/09 08:50:49.574, 400.02 W, 2805 MHz, 13801 MHz, 63, 100 %, 399.82 W, 400.02 W
2026/10/09 08:50:50.575, 399.93 W, 2805 MHz, 13801 MHz, 63, 100 %, 399.23 W, 399.93 W
2026/10/09 08:50:51.575, 400.03 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.80 W, 400.03 W
2026/10/09 08:50:52.575, 400.01 W, 2805 MHz, 13801 MHz, 64, 100 %, 401.14 W, 400.01 W
2026/10/09 08:50:53.575, 400.08 W, 2805 MHz, 13801 MHz, 64, 100 %, 400.23 W, 400.08 W
2026/10/09 08:50:54.576, 399.97 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.72 W, 399.97 W
2026/10/09 08:50:55.576, 399.94 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.35 W, 399.94 W
2026/10/09 08:50:56.576, 400.04 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.85 W, 400.04 W
2026/10/09 08:50:57.576, 400.02 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.90 W, 400.02 W
2026/10/09 08:50:58.577, 400.07 W, 2805 MHz, 13801 MHz, 64, 100 %, 400.17 W, 400.07 W
2026/10/09 08:50:59.577, 400.01 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.77 W, 400.01 W
2026/10/09 08:51:00.577, 399.94 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.37 W, 399.94 W
2026/10/09 08:51:01.577, 400.04 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.86 W, 400.04 W
2026/10/09 08:51:02.578, 400.03 W, 2797 MHz, 13801 MHz, 64, 100 %, 403.09 W, 400.03 W
2026/10/09 08:51:03.578, 400.23 W, 2797 MHz, 13801 MHz, 64, 100 %, 400.21 W, 400.23 W
2026/10/09 08:51:04.578, 400.01 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.74 W, 400.01 W
2026/10/09 08:51:05.579, 399.93 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.36 W, 399.93 W
2026/10/09 08:51:06.579, 400.05 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.95 W, 400.05 W
2026/10/09 08:51:07.579, 400.01 W, 2797 MHz, 13801 MHz, 64, 100 %, 400.78 W, 400.01 W
2026/10/09 08:51:08.579, 400.05 W, 2797 MHz, 13801 MHz, 64, 100 %, 400.01 W, 400.05 W
2026/10/09 08:51:09.580, 400.00 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.86 W, 400.00 W
2026/10/09 08:51:10.580, 399.95 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.59 W, 399.95 W
2026/10/09 08:51:11.580, 399.98 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.90 W, 399.98 W
2026/10/09 08:51:12.580, 400.00 W, 2797 MHz, 13801 MHz, 64, 100 %, 400.54 W, 400.00 W
2026/10/09 08:51:13.581, 290.91 W, 2865 MHz, 14001 MHz, 59, 0 %, 108.62 W, 290.91 W
2026/10/09 08:51:14.581, 109.49 W, 2865 MHz, 14001 MHz, 58, 0 %, 107.01 W, 109.49 W
2026/10/09 08:51:15.581, 90.91 W, 1222 MHz, 14001 MHz, 56, 0 %, 90.91 W, 90.91 W
2026/10/09 08:51:16.582, 43.06 W, 367 MHz, 810 MHz, 55, 0 %, 43.06 W, 43.06 W
2026/10/09 08:51:17.582, 39.51 W, 217 MHz, 810 MHz, 54, 0 %, 35.96 W, 39.51 W
2026/10/09 08:51:18.582, 32.85 W, 180 MHz, 405 MHz, 53, 0 %, 32.85 W, 32.85 W
2026/10/09 08:51:19.582, 32.77 W, 180 MHz, 405 MHz, 53, 0 %, 32.69 W, 32.77 W
2026/10/09 08:51:20.583, 32.58 W, 180 MHz, 405 MHz, 52, 0 %, 32.48 W, 32.58 W
2026/10/09 08:51:21.583, 32.28 W, 172 MHz, 405 MHz, 52, 0 %, 32.07 W, 32.28 W
2026/10/09 08:51:22.583, 31.56 W, 180 MHz, 405 MHz, 51, 0 %, 31.56 W, 31.56 W
2026/10/09 08:51:23.583, 33.42 W, 180 MHz, 14001 MHz, 51, 0 %, 64.89 W, 33.42 W
2026/10/09 08:51:24.584, 75.20 W, 2400 MHz, 13801 MHz, 51, 0 %, 74.97 W, 75.20 W
2026/10/09 08:51:25.584, 74.92 W, 2400 MHz, 13801 MHz, 51, 0 %, 74.85 W, 74.92 W
2026/10/09 08:51:26.584, 79.39 W, 2400 MHz, 13801 MHz, 51, 0 %, 74.32 W, 79.39 W
2026/10/09 08:51:27.585, 196.64 W, 2865 MHz, 13801 MHz, 57, 100 %, 406.22 W, 196.64 W
2026/10/09 08:51:28.585, 408.47 W, 2857 MHz, 13801 MHz, 59, 100 %, 409.47 W, 408.47 W
2026/10/09 08:51:29.585, 407.46 W, 2857 MHz, 13801 MHz, 59, 100 %, 400.71 W, 407.46 W
2026/10/09 08:51:30.585, 399.94 W, 2842 MHz, 13801 MHz, 59, 100 %, 399.26 W, 399.94 W
2026/10/09 08:51:31.586, 399.99 W, 2842 MHz, 13801 MHz, 60, 100 %, 400.00 W, 399.99 W
2026/10/09 08:51:32.586, 400.01 W, 2835 MHz, 13801 MHz, 60, 100 %, 400.83 W, 400.01 W
2026/10/09 08:51:33.588, 400.05 W, 2835 MHz, 13801 MHz, 60, 100 %, 400.28 W, 400.05 W
2026/10/09 08:51:34.588, 400.00 W, 2835 MHz, 13801 MHz, 60, 100 %, 399.90 W, 400.00 W
2026/10/09 08:51:35.589, 399.92 W, 2835 MHz, 13801 MHz, 60, 100 %, 399.33 W, 399.92 W
2026/10/09 08:51:36.589, 399.98 W, 2835 MHz, 13801 MHz, 61, 100 %, 399.85 W, 399.98 W
2026/10/09 08:51:37.589, 400.02 W, 2835 MHz, 13801 MHz, 61, 100 %, 400.85 W, 400.02 W
2026/10/09 08:51:38.589, 400.05 W, 2835 MHz, 13801 MHz, 61, 100 %, 399.89 W, 400.05 W
2026/10/09 08:51:39.590, 399.98 W, 2835 MHz, 13801 MHz, 61, 100 %, 399.84 W, 399.98 W
2026/10/09 08:51:40.590, 399.94 W, 2835 MHz, 13801 MHz, 61, 100 %, 399.64 W, 399.94 W
2026/10/09 08:51:41.590, 399.99 W, 2827 MHz, 13801 MHz, 61, 100 %, 399.86 W, 399.99 W
2026/10/09 08:51:42.590, 400.00 W, 2835 MHz, 13801 MHz, 62, 100 %, 400.59 W, 400.00 W
2026/10/09 08:51:43.591, 400.04 W, 2827 MHz, 13801 MHz, 62, 100 %, 400.05 W, 400.04 W
2026/10/09 08:51:44.591, 400.00 W, 2827 MHz, 13801 MHz, 62, 100 %, 399.85 W, 400.00 W
2026/10/09 08:51:45.591, 399.93 W, 2827 MHz, 13801 MHz, 62, 100 %, 399.53 W, 399.93 W
2026/10/09 08:51:46.592, 399.98 W, 2827 MHz, 13801 MHz, 62, 100 %, 399.94 W, 399.98 W
2026/10/09 08:51:47.592, 400.02 W, 2827 MHz, 13801 MHz, 62, 100 %, 400.56 W, 400.02 W
2026/10/09 08:51:48.592, 400.03 W, 2827 MHz, 13801 MHz, 62, 100 %, 399.94 W, 400.03 W
2026/10/09 08:51:49.592, 399.94 W, 2827 MHz, 13801 MHz, 62, 100 %, 399.42 W, 399.94 W
2026/10/09 08:51:50.593, 399.94 W, 2827 MHz, 13801 MHz, 63, 100 %, 399.61 W, 399.94 W
2026/10/09 08:51:51.593, 400.00 W, 2827 MHz, 13801 MHz, 63, 100 %, 400.04 W, 400.00 W
2026/10/09 08:51:52.593, 399.95 W, 2827 MHz, 13801 MHz, 63, 100 %, 400.46 W, 399.95 W
2026/10/09 08:51:53.594, 399.98 W, 2827 MHz, 13801 MHz, 63, 100 %, 399.74 W, 399.98 W
2026/10/09 08:51:54.594, 399.90 W, 2827 MHz, 13801 MHz, 63, 100 %, 399.13 W, 399.90 W
2026/10/09 08:51:55.594, 399.96 W, 2827 MHz, 13801 MHz, 63, 100 %, 399.81 W, 399.96 W
2026/10/09 08:51:56.594, 400.06 W, 2812 MHz, 13801 MHz, 63, 100 %, 400.92 W, 400.06 W
2026/10/09 08:51:57.595, 400.04 W, 2805 MHz, 13801 MHz, 63, 100 %, 400.21 W, 400.04 W
2026/10/09 08:51:58.595, 400.00 W, 2812 MHz, 13801 MHz, 63, 100 %, 399.72 W, 400.00 W
2026/10/09 08:51:59.595, 399.92 W, 2805 MHz, 13801 MHz, 63, 100 %, 399.20 W, 399.92 W
2026/10/09 08:52:00.595, 400.04 W, 2805 MHz, 13801 MHz, 63, 100 %, 399.80 W, 400.04 W
2026/10/09 08:52:01.596, 400.02 W, 2805 MHz, 13801 MHz, 63, 100 %, 400.94 W, 400.02 W
2026/10/09 08:52:02.596, 400.06 W, 2805 MHz, 13801 MHz, 63, 100 %, 400.09 W, 400.06 W
2026/10/09 08:52:03.596, 400.00 W, 2805 MHz, 13801 MHz, 63, 100 %, 399.85 W, 400.00 W
2026/10/09 08:52:04.596, 399.90 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.30 W, 399.90 W
2026/10/09 08:52:05.597, 399.98 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.81 W, 399.98 W
2026/10/09 08:52:06.597, 400.02 W, 2805 MHz, 13801 MHz, 64, 100 %, 400.80 W, 400.02 W
2026/10/09 08:52:07.597, 400.06 W, 2805 MHz, 13801 MHz, 64, 100 %, 400.19 W, 400.06 W
2026/10/09 08:52:08.598, 399.98 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.79 W, 399.98 W
2026/10/09 08:52:09.598, 399.92 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.38 W, 399.92 W
2026/10/09 08:52:10.598, 400.04 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.99 W, 400.04 W
2026/10/09 08:52:11.599, 400.00 W, 2805 MHz, 13801 MHz, 64, 100 %, 400.83 W, 400.00 W
2026/10/09 08:52:12.599, 400.05 W, 2805 MHz, 13801 MHz, 64, 100 %, 400.04 W, 400.05 W
2026/10/09 08:52:13.599, 399.99 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.82 W, 399.99 W
2026/10/09 08:52:14.599, 399.94 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.49 W, 399.94 W
2026/10/09 08:52:15.600, 400.04 W, 2805 MHz, 13801 MHz, 64, 100 %, 400.12 W, 400.04 W
2026/10/09 08:52:16.600, 400.00 W, 2805 MHz, 13801 MHz, 64, 100 %, 400.80 W, 400.00 W
2026/10/09 08:52:17.600, 399.98 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.94 W, 399.98 W
2026/10/09 08:52:18.601, 400.00 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.86 W, 400.00 W
2026/10/09 08:52:19.601, 399.93 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.58 W, 399.93 W
2026/10/09 08:52:20.601, 400.04 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.95 W, 400.04 W
2026/10/09 08:52:21.601, 400.01 W, 2797 MHz, 13801 MHz, 64, 100 %, 400.56 W, 400.01 W
2026/10/09 08:52:22.602, 400.03 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.97 W, 400.03 W
2026/10/09 08:52:23.602, 400.00 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.99 W, 400.00 W
2026/10/09 08:52:24.602, 399.94 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.64 W, 399.94 W
2026/10/09 08:52:25.602, 400.01 W, 2797 MHz, 13801 MHz, 64, 100 %, 400.05 W, 400.01 W
2026/10/09 08:52:26.603, 399.99 W, 2797 MHz, 13801 MHz, 64, 100 %, 400.45 W, 399.99 W
2026/10/09 08:52:27.603, 224.91 W, 2865 MHz, 14001 MHz, 58, 0 %, 107.57 W, 224.91 W
2026/10/09 08:52:28.603, 108.82 W, 2865 MHz, 14001 MHz, 58, 0 %, 107.04 W, 108.82 W
2026/10/09 08:52:29.603, 90.86 W, 1672 MHz, 14001 MHz, 56, 0 %, 90.86 W, 90.86 W
2026/10/09 08:52:30.604, 43.38 W, 375 MHz, 810 MHz, 55, 0 %, 43.38 W, 43.38 W
2026/10/09 08:52:31.604, 39.31 W, 217 MHz, 810 MHz, 54, 0 %, 35.24 W, 39.31 W
2026/10/09 08:52:32.604, 34.21 W, 180 MHz, 405 MHz, 53, 0 %, 33.17 W, 34.21 W
2026/10/09 08:52:33.604, 32.65 W, 180 MHz, 405 MHz, 53, 0 %, 32.65 W, 32.65 W
2026/10/09 08:52:34.605, 32.32 W, 180 MHz, 405 MHz, 52, 0 %, 32.32 W, 32.32 W
2026/10/09 08:52:35.605, 32.09 W, 180 MHz, 405 MHz, 52, 0 %, 31.86 W, 32.09 W
2026/10/09 08:52:36.605, 31.65 W, 180 MHz, 405 MHz, 51, 0 %, 31.65 W, 31.65 W
2026/10/09 08:52:37.605, 39.59 W, 1050 MHz, 13801 MHz, 51, 0 %, 75.16 W, 39.59 W
2026/10/09 08:52:38.606, 74.97 W, 2400 MHz, 13801 MHz, 51, 0 %, 74.84 W, 74.97 W
2026/10/09 08:52:39.606, 74.63 W, 2400 MHz, 13801 MHz, 52, 4 %, 74.56 W, 74.63 W
2026/10/09 08:52:40.606, 79.67 W, 2400 MHz, 13801 MHz, 51, 0 %, 74.18 W, 79.67 W
2026/10/09 08:52:41.607, 280.63 W, 2865 MHz, 13801 MHz, 59, 100 %, 416.66 W, 280.63 W
2026/10/09 08:52:42.607, 411.55 W, 2842 MHz, 13801 MHz, 59, 100 %, 400.48 W, 411.55 W
2026/10/09 08:52:43.607, 400.05 W, 2827 MHz, 13801 MHz, 59, 100 %, 399.86 W, 400.05 W
2026/10/09 08:52:44.607, 399.92 W, 2827 MHz, 13801 MHz, 60, 100 %, 399.41 W, 399.92 W
2026/10/09 08:52:45.608, 399.98 W, 2820 MHz, 13801 MHz, 60, 100 %, 399.96 W, 399.98 W
2026/10/09 08:52:46.608, 400.01 W, 2820 MHz, 13801 MHz, 60, 100 %, 400.83 W, 400.01 W
2026/10/09 08:52:47.608, 400.05 W, 2820 MHz, 13801 MHz, 60, 100 %, 399.99 W, 400.05 W
2026/10/09 08:52:48.608, 399.99 W, 2820 MHz, 13801 MHz, 60, 100 %, 399.88 W, 399.99 W
2026/10/09 08:52:49.609, 399.94 W, 2820 MHz, 13801 MHz, 61, 100 %, 399.55 W, 399.94 W
2026/10/09 08:52:50.609, 400.05 W, 2820 MHz, 13801 MHz, 61, 100 %, 400.16 W, 400.05 W
2026/10/09 08:52:51.609, 400.01 W, 2812 MHz, 13801 MHz, 61, 100 %, 400.50 W, 400.01 W
2026/10/09 08:52:52.609, 399.97 W, 2812 MHz, 13801 MHz, 61, 100 %, 399.78 W, 399.97 W
2026/10/09 08:52:53.610, 399.92 W, 2812 MHz, 13801 MHz, 61, 100 %, 399.10 W, 399.92 W
2026/10/09 08:52:54.610, 399.97 W, 2812 MHz, 13801 MHz, 62, 100 %, 399.99 W, 399.97 W
2026/10/09 08:52:55.610, 400.02 W, 2812 MHz, 13801 MHz, 62, 100 %, 400.91 W, 400.02 W
2026/10/09 08:52:56.610, 400.06 W, 2812 MHz, 13801 MHz, 62, 100 %, 400.20 W, 400.06 W
2026/10/09 08:52:57.611, 399.98 W, 2812 MHz, 13801 MHz, 62, 100 %, 399.81 W, 399.98 W
2026/10/09 08:52:58.611, 399.92 W, 2812 MHz, 13801 MHz, 62, 100 %, 399.35 W, 399.92 W
2026/10/09 08:52:59.611, 400.06 W, 2812 MHz, 13801 MHz, 62, 100 %, 399.90 W, 400.06 W
2026/10/09 08:53:00.611, 400.00 W, 2812 MHz, 13801 MHz, 62, 100 %, 400.84 W, 400.00 W
2026/10/09 08:53:01.612, 400.04 W, 2812 MHz, 13801 MHz, 62, 100 %, 400.01 W, 400.04 W
2026/10/09 08:53:02.612, 400.00 W, 2812 MHz, 13801 MHz, 63, 100 %, 399.86 W, 400.00 W
2026/10/09 08:53:03.612, 399.95 W, 2812 MHz, 13801 MHz, 63, 100 %, 399.63 W, 399.95 W
2026/10/09 08:53:04.612, 399.99 W, 2805 MHz, 13801 MHz, 63, 100 %, 399.94 W, 399.99 W
2026/10/09 08:53:05.613, 399.99 W, 2797 MHz, 13801 MHz, 63, 100 %, 400.45 W, 399.99 W
2026/10/09 08:53:06.613, 399.98 W, 2797 MHz, 13801 MHz, 63, 100 %, 399.91 W, 399.98 W
2026/10/09 08:53:07.613, 400.00 W, 2797 MHz, 13801 MHz, 63, 100 %, 399.96 W, 400.00 W
2026/10/09 08:53:08.613, 399.94 W, 2790 MHz, 13801 MHz, 63, 100 %, 399.51 W, 399.94 W
2026/10/09 08:53:09.614, 400.01 W, 2790 MHz, 13801 MHz, 63, 100 %, 400.07 W, 400.01 W
2026/10/09 08:53:10.614, 399.98 W, 2797 MHz, 13801 MHz, 63, 100 %, 400.53 W, 399.98 W
2026/10/09 08:53:11.614, 400.03 W, 2790 MHz, 13801 MHz, 63, 100 %, 399.86 W, 400.03 W
2026/10/09 08:53:12.615, 399.91 W, 2790 MHz, 13801 MHz, 63, 100 %, 399.11 W, 399.91 W
2026/10/09 08:53:13.615, 400.05 W, 2790 MHz, 13801 MHz, 63, 100 %, 399.89 W, 400.05 W
2026/10/09 08:53:14.615, 400.05 W, 2790 MHz, 13801 MHz, 63, 100 %, 401.52 W, 400.05 W
2026/10/09 08:53:15.615, 400.11 W, 2790 MHz, 13801 MHz, 64, 100 %, 400.19 W, 400.11 W
2026/10/09 08:53:16.616, 399.98 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.78 W, 399.98 W
2026/10/09 08:53:17.616, 399.93 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.31 W, 399.93 W
2026/10/09 08:53:18.616, 399.98 W, 2790 MHz, 13801 MHz, 64, 100 %, 400.01 W, 399.98 W
2026/10/09 08:53:19.617, 400.02 W, 2790 MHz, 13801 MHz, 64, 100 %, 400.84 W, 400.02 W
2026/10/09 08:53:20.617, 399.96 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.92 W, 399.96 W
2026/10/09 08:53:21.617, 399.99 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.91 W, 399.99 W
2026/10/09 08:53:22.617, 399.95 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.58 W, 399.95 W
2026/10/09 08:53:23.618, 400.03 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.98 W, 400.03 W
2026/10/09 08:53:24.618, 400.00 W, 2790 MHz, 13801 MHz, 64, 100 %, 400.40 W, 400.00 W
2026/10/09 08:53:25.618, 400.02 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.90 W, 400.02 W
2026/10/09 08:53:26.618, 399.93 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.24 W, 399.93 W
2026/10/09 08:53:27.619, 400.01 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.62 W, 400.01 W
2026/10/09 08:53:28.619, 400.04 W, 2790 MHz, 13801 MHz, 64, 100 %, 400.83 W, 400.04 W
2026/10/09 08:53:29.620, 400.06 W, 2790 MHz, 13801 MHz, 64, 100 %, 400.39 W, 400.06 W
2026/10/09 08:53:30.620, 399.98 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.82 W, 399.98 W
2026/10/09 08:53:31.620, 399.92 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.18 W, 399.92 W
2026/10/09 08:53:32.620, 399.93 W, 2782 MHz, 13801 MHz, 64, 100 %, 399.38 W, 399.93 W
2026/10/09 08:53:33.621, 400.01 W, 2782 MHz, 13801 MHz, 64, 100 %, 401.03 W, 400.01 W
2026/10/09 08:53:34.621, 399.97 W, 2782 MHz, 13801 MHz, 64, 100 %, 400.28 W, 399.97 W
2026/10/09 08:53:35.621, 400.02 W, 2782 MHz, 13801 MHz, 64, 100 %, 399.84 W, 400.02 W
2026/10/09 08:53:36.621, 399.90 W, 2782 MHz, 13801 MHz, 64, 100 %, 399.15 W, 399.90 W
2026/10/09 08:53:37.622, 399.99 W, 2782 MHz, 13801 MHz, 64, 100 %, 399.93 W, 399.99 W
2026/10/09 08:53:38.622, 400.00 W, 2782 MHz, 13801 MHz, 64, 100 %, 400.80 W, 400.00 W
2026/10/09 08:53:39.622, 399.97 W, 2782 MHz, 13801 MHz, 64, 100 %, 399.98 W, 399.97 W
2026/10/09 08:53:40.623, 400.00 W, 2782 MHz, 14001 MHz, 61, 100 %, 399.83 W, 400.00 W
2026/10/09 08:53:41.623, 112.43 W, 2865 MHz, 14001 MHz, 58, 0 %, 106.84 W, 112.43 W
2026/10/09 08:53:42.623, 108.42 W, 2865 MHz, 14001 MHz, 58, 0 %, 106.38 W, 108.42 W
2026/10/09 08:53:43.624, 90.36 W, 577 MHz, 7001 MHz, 56, 0 %, 90.36 W, 90.36 W
2026/10/09 08:53:44.624, 48.02 W, 360 MHz, 7001 MHz, 55, 0 %, 48.02 W, 48.02 W
2026/10/09 08:53:45.624, 46.67 W, 232 MHz, 7001 MHz, 54, 0 %, 46.67 W, 46.67 W
2026/10/09 08:53:46.624, 46.34 W, 180 MHz, 7001 MHz, 54, 0 %, 46.01 W, 46.34 W
2026/10/09 08:53:47.625, 45.69 W, 180 MHz, 7001 MHz, 53, 0 %, 45.38 W, 45.69 W
2026/10/09 08:53:48.625, 36.56 W, 180 MHz, 810 MHz, 52, 0 %, 36.56 W, 36.56 W
2026/10/09 08:53:49.625, 35.26 W, 180 MHz, 405 MHz, 52, 0 %, 33.96 W, 35.26 W
2026/10/09 08:53:50.626, 32.47 W, 180 MHz, 405 MHz, 51, 0 %, 32.47 W, 32.47 W
2026/10/09 08:53:51.626, 46.52 W, 2400 MHz, 13801 MHz, 52, 0 %, 73.77 W, 46.52 W
2026/10/09 08:53:52.626, 73.65 W, 2400 MHz, 13801 MHz, 52, 0 %, 73.65 W, 73.65 W
2026/10/09 08:53:53.626, 92.43 W, 2482 MHz, 13801 MHz, 52, 0 %, 73.62 W, 92.43 W
2026/10/09 08:53:54.627, 122.80 W, 2407 MHz, 13801 MHz, 58, 100 %, 407.76 W, 122.80 W
2026/10/09 08:53:55.627, 354.35 W, 2857 MHz, 13801 MHz, 59, 100 %, 412.33 W, 354.35 W
2026/10/09 08:53:56.627, 408.27 W, 2850 MHz, 13801 MHz, 59, 100 %, 399.02 W, 408.27 W
2026/10/09 08:53:57.628, 399.88 W, 2835 MHz, 13801 MHz, 60, 99 %, 398.39 W, 399.88 W
2026/10/09 08:53:58.628, 400.10 W, 2835 MHz, 13801 MHz, 60, 100 %, 399.71 W, 400.10 W
2026/10/09 08:53:59.628, 400.01 W, 2827 MHz, 13801 MHz, 60, 100 %, 399.96 W, 400.01 W
2026/10/09 08:54:00.628, 400.01 W, 2827 MHz, 13801 MHz, 60, 100 %, 400.04 W, 400.01 W
2026/10/09 08:54:01.629, 399.99 W, 2827 MHz, 13801 MHz, 61, 100 %, 400.79 W, 399.99 W
2026/10/09 08:54:02.629, 400.06 W, 2827 MHz, 13801 MHz, 61, 100 %, 400.58 W, 400.06 W
2026/10/09 08:54:03.629, 399.98 W, 2827 MHz, 13801 MHz, 61, 100 %, 400.21 W, 399.98 W
2026/10/09 08:54:04.629, 400.00 W, 2827 MHz, 13801 MHz, 61, 100 %, 399.95 W, 400.00 W
2026/10/09 08:54:05.630, 399.99 W, 2827 MHz, 13801 MHz, 61, 100 %, 399.81 W, 399.99 W
2026/10/09 08:54:06.630, 399.97 W, 2827 MHz, 13801 MHz, 62, 100 %, 399.88 W, 399.97 W
2026/10/09 08:54:07.630, 399.91 W, 2827 MHz, 13801 MHz, 62, 100 %, 399.19 W, 399.91 W
2026/10/09 08:54:08.631, 399.95 W, 2820 MHz, 13801 MHz, 62, 100 %, 399.60 W, 399.95 W
2026/10/09 08:54:09.631, 399.99 W, 2820 MHz, 13801 MHz, 62, 100 %, 399.57 W, 399.99 W
2026/10/09 08:54:10.631, 400.03 W, 2820 MHz, 13801 MHz, 62, 100 %, 399.94 W, 400.03 W
2026/10/09 08:54:11.631, 400.01 W, 2820 MHz, 13801 MHz, 62, 100 %, 400.34 W, 400.01 W
2026/10/09 08:54:12.632, 400.01 W, 2820 MHz, 13801 MHz, 62, 100 %, 400.70 W, 400.01 W
2026/10/09 08:54:13.632, 400.00 W, 2820 MHz, 13801 MHz, 63, 100 %, 400.55 W, 400.00 W
2026/10/09 08:54:14.632, 400.02 W, 2820 MHz, 13801 MHz, 63, 100 %, 400.19 W, 400.02 W
2026/10/09 08:54:15.632, 399.99 W, 2820 MHz, 13801 MHz, 63, 100 %, 399.96 W, 399.99 W
2026/10/09 08:54:16.633, 400.00 W, 2820 MHz, 13801 MHz, 63, 100 %, 399.82 W, 400.00 W
2026/10/09 08:54:17.633, 399.98 W, 2820 MHz, 13801 MHz, 63, 100 %, 399.97 W, 399.98 W
2026/10/09 08:54:18.633, 399.93 W, 2805 MHz, 13801 MHz, 63, 100 %, 399.30 W, 399.93 W
2026/10/09 08:54:19.634, 399.95 W, 2805 MHz, 13801 MHz, 63, 100 %, 399.61 W, 399.95 W
2026/10/09 08:54:20.634, 399.98 W, 2797 MHz, 13801 MHz, 63, 100 %, 399.80 W, 399.98 W
2026/10/09 08:54:21.634, 400.01 W, 2805 MHz, 13801 MHz, 63, 100 %, 399.99 W, 400.01 W
2026/10/09 08:54:22.634, 400.00 W, 2797 MHz, 13801 MHz, 64, 100 %, 401.08 W, 400.00 W
2026/10/09 08:54:23.635, 400.00 W, 2797 MHz, 13801 MHz, 64, 100 %, 400.96 W, 400.00 W
2026/10/09 08:54:24.635, 400.08 W, 2797 MHz, 13801 MHz, 64, 100 %, 400.61 W, 400.08 W
2026/10/09 08:54:25.635, 399.97 W, 2797 MHz, 13801 MHz, 64, 100 %, 400.82 W, 399.97 W
2026/10/09 08:54:26.635, 400.07 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.80 W, 400.07 W
2026/10/09 08:54:27.636, 400.00 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.73 W, 400.00 W
2026/10/09 08:54:28.636, 399.98 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.93 W, 399.98 W
2026/10/09 08:54:29.636, 399.93 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.40 W, 399.93 W
2026/10/09 08:54:30.637, 399.96 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.62 W, 399.96 W
2026/10/09 08:54:31.637, 400.00 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.75 W, 400.00 W
2026/10/09 08:54:32.637, 399.99 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.96 W, 399.99 W
2026/10/09 08:54:33.637, 400.02 W, 2790 MHz, 13801 MHz, 64, 100 %, 401.04 W, 400.02 W
2026/10/09 08:54:34.638, 400.08 W, 2790 MHz, 13801 MHz, 64, 100 %, 400.73 W, 400.08 W
2026/10/09 08:54:35.638, 400.06 W, 2790 MHz, 13801 MHz, 64, 100 %, 400.51 W, 400.06 W
2026/10/09 08:54:36.638, 399.98 W, 2790 MHz, 13801 MHz, 64, 100 %, 400.03 W, 399.98 W
2026/10/09 08:54:37.639, 399.99 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.79 W, 399.99 W
2026/10/09 08:54:38.639, 399.99 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.79 W, 399.99 W
2026/10/09 08:54:39.639, 399.97 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.93 W, 399.97 W
2026/10/09 08:54:40.639, 399.92 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.27 W, 399.92 W
2026/10/09 08:54:41.640, 400.06 W, 2790 MHz, 13801 MHz, 65, 100 %, 400.46 W, 400.06 W
2026/10/09 08:54:42.640, 399.98 W, 2790 MHz, 13801 MHz, 65, 100 %, 400.18 W, 399.98 W
2026/10/09 08:54:43.640, 400.01 W, 2790 MHz, 13801 MHz, 65, 100 %, 399.99 W, 400.01 W
2026/10/09 08:54:44.641, 399.99 W, 2790 MHz, 13801 MHz, 65, 100 %, 399.82 W, 399.99 W
2026/10/09 08:54:45.641, 400.01 W, 2790 MHz, 13801 MHz, 65, 100 %, 399.95 W, 400.01 W
2026/10/09 08:54:46.641, 399.91 W, 2790 MHz, 13801 MHz, 65, 100 %, 399.27 W, 399.91 W
2026/10/09 08:54:47.641, 399.96 W, 2790 MHz, 13801 MHz, 65, 100 %, 399.65 W, 399.96 W
2026/10/09 08:54:48.642, 399.99 W, 2790 MHz, 13801 MHz, 65, 100 %, 399.80 W, 399.99 W
2026/10/09 08:54:49.642, 400.00 W, 2790 MHz, 13801 MHz, 65, 100 %, 400.01 W, 400.00 W
2026/10/09 08:54:50.642, 400.01 W, 2790 MHz, 13801 MHz, 65, 100 %, 400.77 W, 400.01 W
2026/10/09 08:54:51.642, 400.00 W, 2790 MHz, 13801 MHz, 65, 100 %, 400.62 W, 400.00 W
2026/10/09 08:54:52.642, 399.98 W, 2790 MHz, 13801 MHz, 65, 100 %, 400.50 W, 399.98 W
2026/10/09 08:54:53.643, 400.03 W, 2790 MHz, 13801 MHz, 65, 100 %, 400.12 W, 400.03 W
2026/10/09 08:54:54.643, 399.99 W, 2790 MHz, 13801 MHz, 65, 100 %, 399.88 W, 399.99 W
2026/10/09 08:54:55.643, 399.98 W, 2790 MHz, 13801 MHz, 65, 100 %, 399.77 W, 399.98 W
2026/10/09 08:54:56.643, 209.80 W, 2865 MHz, 14001 MHz, 59, 0 %, 108.06 W, 209.80 W
2026/10/09 08:54:57.644, 110.51 W, 2865 MHz, 14001 MHz, 59, 0 %, 107.43 W, 110.51 W
2026/10/09 08:54:58.644, 92.15 W, 1695 MHz, 14001 MHz, 57, 0 %, 92.15 W, 92.15 W
2026/10/09 08:54:59.644, 70.78 W, 397 MHz, 7001 MHz, 56, 0 %, 49.40 W, 70.78 W
2026/10/09 08:55:00.644, 46.64 W, 247 MHz, 7001 MHz, 55, 0 %, 46.64 W, 46.64 W
2026/10/09 08:55:01.644, 46.37 W, 172 MHz, 7001 MHz, 54, 0 %, 46.11 W, 46.37 W
2026/10/09 08:55:02.644, 37.26 W, 180 MHz, 810 MHz, 53, 0 %, 37.26 W, 37.26 W
2026/10/09 08:55:03.645, 35.77 W, 180 MHz, 405 MHz, 53, 0 %, 34.28 W, 35.77 W
2026/10/09 08:55:04.645, 33.59 W, 180 MHz, 405 MHz, 52, 0 %, 33.59 W, 33.59 W
2026/10/09 08:55:05.645, 33.42 W, 180 MHz, 405 MHz, 52, 0 %, 33.25 W, 33.42 W
2026/10/09 08:55:06.645, 43.17 W, 2430 MHz, 13801 MHz, 52, 0 %, 75.30 W, 43.17 W
2026/10/09 08:55:07.646, 74.99 W, 2400 MHz, 13801 MHz, 52, 0 %, 74.78 W, 74.99 W
2026/10/09 08:55:08.646, 94.98 W, 2482 MHz, 13801 MHz, 54, 38 %, 149.76 W, 94.98 W
2026/10/09 08:55:09.646, 74.33 W, 2400 MHz, 13801 MHz, 52, 0 %, 73.71 W, 74.33 W
2026/10/09 08:55:10.646, 287.45 W, 2857 MHz, 13801 MHz, 60, 100 %, 407.06 W, 287.45 W
2026/10/09 08:55:11.646, 406.21 W, 2857 MHz, 13801 MHz, 60, 100 %, 406.74 W, 406.21 W
2026/10/09 08:55:12.647, 406.77 W, 2857 MHz, 13801 MHz, 60, 100 %, 405.18 W, 406.77 W
2026/10/09 08:55:13.647, 401.04 W, 2842 MHz, 13801 MHz, 60, 100 %, 399.33 W, 401.04 W
2026/10/09 08:55:14.647, 400.01 W, 2842 MHz, 13801 MHz, 61, 100 %, 399.55 W, 400.01 W
2026/10/09 08:55:15.647, 399.98 W, 2842 MHz, 13801 MHz, 61, 100 %, 399.75 W, 399.98 W
2026/10/09 08:55:16.647, 400.01 W, 2842 MHz, 13801 MHz, 61, 100 %, 399.92 W, 400.01 W
2026/10/09 08:55:17.648, 400.00 W, 2835 MHz, 13801 MHz, 61, 100 %, 400.90 W, 400.00 W
2026/10/09 08:55:18.648, 399.98 W, 2835 MHz, 13801 MHz, 62, 100 %, 400.49 W, 399.98 W
2026/10/09 08:55:19.648, 400.03 W, 2835 MHz, 13801 MHz, 62, 100 %, 400.31 W, 400.03 W
2026/10/09 08:55:20.649, 400.02 W, 2835 MHz, 13801 MHz, 62, 100 %, 399.97 W, 400.02 W
2026/10/09 08:55:21.649, 399.98 W, 2835 MHz, 13801 MHz, 62, 100 %, 399.74 W, 399.98 W
2026/10/09 08:55:22.649, 399.99 W, 2835 MHz, 13801 MHz, 62, 100 %, 399.75 W, 399.99 W
2026/10/09 08:55:23.649, 399.98 W, 2835 MHz, 13801 MHz, 62, 100 %, 399.95 W, 399.98 W
2026/10/09 08:55:24.649, 399.87 W, 2835 MHz, 13801 MHz, 63, 100 %, 398.90 W, 399.87 W
2026/10/09 08:55:25.649, 399.94 W, 2835 MHz, 13801 MHz, 63, 100 %, 399.41 W, 399.94 W
2026/10/09 08:55:26.650, 399.96 W, 2835 MHz, 13801 MHz, 63, 100 %, 399.66 W, 399.96 W
2026/10/09 08:55:27.650, 400.03 W, 2820 MHz, 13801 MHz, 63, 100 %, 399.95 W, 400.03 W
2026/10/09 08:55:28.650, 400.02 W, 2820 MHz, 13801 MHz, 63, 100 %, 401.67 W, 400.02 W
2026/10/09 08:55:29.650, 400.15 W, 2820 MHz, 13801 MHz, 63, 100 %, 401.16 W, 400.15 W
2026/10/09 08:55:30.651, 399.99 W, 2812 MHz, 13801 MHz, 63, 100 %, 400.79 W, 399.99 W
2026/10/09 08:55:31.651, 400.05 W, 2812 MHz, 13801 MHz, 63, 100 %, 400.28 W, 400.05 W
2026/10/09 08:55:32.652, 400.02 W, 2812 MHz, 13801 MHz, 63, 100 %, 400.06 W, 400.02 W
2026/10/09 08:55:33.652, 399.98 W, 2812 MHz, 13801 MHz, 64, 100 %, 399.83 W, 399.98 W
2026/10/09 08:55:34.652, 399.99 W, 2812 MHz, 13801 MHz, 64, 100 %, 399.92 W, 399.99 W
2026/10/09 08:55:35.652, 399.93 W, 2812 MHz, 13801 MHz, 64, 100 %, 399.44 W, 399.93 W
2026/10/09 08:55:36.653, 399.95 W, 2812 MHz, 13801 MHz, 64, 100 %, 399.47 W, 399.95 W
2026/10/09 08:55:37.653, 398.44 W, 2820 MHz, 13801 MHz, 63, 92 %, 383.20 W, 398.44 W
2026/10/09 08:55:38.653, 399.99 W, 2812 MHz, 13801 MHz, 64, 100 %, 399.86 W, 399.99 W
2026/10/09 08:55:39.653, 400.00 W, 2812 MHz, 13801 MHz, 64, 100 %, 399.90 W, 400.00 W
2026/10/09 08:55:40.654, 400.01 W, 2812 MHz, 13801 MHz, 64, 100 %, 400.94 W, 400.01 W
2026/10/09 08:55:41.654, 400.08 W, 2812 MHz, 13801 MHz, 64, 100 %, 401.22 W, 400.08 W
2026/10/09 08:55:42.654, 399.98 W, 2805 MHz, 13801 MHz, 64, 100 %, 400.27 W, 399.98 W
2026/10/09 08:55:43.655, 400.01 W, 2805 MHz, 13801 MHz, 64, 100 %, 400.05 W, 400.01 W
2026/10/09 08:55:44.655, 399.99 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.76 W, 399.99 W
2026/10/09 08:55:45.655, 400.00 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.87 W, 400.00 W
2026/10/09 08:55:46.655, 400.01 W, 2805 MHz, 13801 MHz, 64, 100 %, 400.08 W, 400.01 W
2026/10/09 08:55:47.656, 399.89 W, 2805 MHz, 13801 MHz, 65, 100 %, 399.21 W, 399.89 W
2026/10/09 08:55:48.656, 399.95 W, 2805 MHz, 13801 MHz, 65, 100 %, 399.65 W, 399.95 W
2026/10/09 08:55:49.656, 400.01 W, 2805 MHz, 13801 MHz, 65, 100 %, 399.85 W, 400.01 W
2026/10/09 08:55:50.656, 399.99 W, 2805 MHz, 13801 MHz, 65, 100 %, 399.94 W, 399.99 W
2026/10/09 08:55:51.657, 400.00 W, 2805 MHz, 13801 MHz, 65, 100 %, 400.89 W, 400.00 W
2026/10/09 08:55:52.657, 399.99 W, 2805 MHz, 13801 MHz, 65, 100 %, 400.77 W, 399.99 W
2026/10/09 08:55:53.657, 400.05 W, 2805 MHz, 13801 MHz, 65, 100 %, 400.47 W, 400.05 W
2026/10/09 08:55:54.657, 399.98 W, 2805 MHz, 13801 MHz, 65, 100 %, 400.33 W, 399.98 W
2026/10/09 08:55:55.658, 400.02 W, 2805 MHz, 13801 MHz, 65, 100 %, 399.74 W, 400.02 W
2026/10/09 08:55:56.658, 399.97 W, 2805 MHz, 13801 MHz, 65, 100 %, 399.88 W, 399.97 W
2026/10/09 08:55:57.658, 400.00 W, 2805 MHz, 13801 MHz, 65, 100 %, 399.96 W, 400.00 W
2026/10/09 08:55:58.658, 399.93 W, 2805 MHz, 13801 MHz, 65, 100 %, 399.36 W, 399.93 W
2026/10/09 08:55:59.659, 399.95 W, 2805 MHz, 13801 MHz, 65, 100 %, 399.69 W, 399.95 W
2026/10/09 08:56:00.659, 399.99 W, 2805 MHz, 13801 MHz, 65, 100 %, 399.87 W, 399.99 W
2026/10/09 08:56:01.659, 399.98 W, 2805 MHz, 13801 MHz, 65, 100 %, 399.92 W, 399.98 W
2026/10/09 08:56:02.659, 400.02 W, 2805 MHz, 13801 MHz, 65, 100 %, 400.90 W, 400.02 W
2026/10/09 08:56:03.660, 399.99 W, 2805 MHz, 13801 MHz, 65, 100 %, 400.67 W, 399.99 W
2026/10/09 08:56:04.660, 399.99 W, 2805 MHz, 13801 MHz, 65, 100 %, 401.25 W, 399.99 W
2026/10/09 08:56:05.660, 399.99 W, 2797 MHz, 13801 MHz, 65, 100 %, 400.14 W, 399.99 W
2026/10/09 08:56:06.660, 399.98 W, 2797 MHz, 13801 MHz, 65, 100 %, 400.00 W, 399.98 W
2026/10/09 08:56:07.661, 399.99 W, 2797 MHz, 13801 MHz, 65, 100 %, 399.78 W, 399.99 W
2026/10/09 08:56:08.661, 400.00 W, 2797 MHz, 13801 MHz, 65, 100 %, 399.79 W, 400.00 W
2026/10/09 08:56:09.661, 399.89 W, 2797 MHz, 13801 MHz, 65, 100 %, 399.13 W, 399.89 W
2026/10/09 08:56:10.661, 399.89 W, 2797 MHz, 13801 MHz, 65, 100 %, 399.05 W, 399.89 W
2026/10/09 08:56:11.662, 316.78 W, 2865 MHz, 14001 MHz, 60, 0 %, 113.38 W, 316.78 W
2026/10/09 08:56:12.662, 110.98 W, 2865 MHz, 14001 MHz, 59, 0 %, 109.26 W, 110.98 W
2026/10/09 08:56:13.662, 87.82 W, 780 MHz, 14001 MHz, 57, 0 %, 87.82 W, 87.82 W
2026/10/09 08:56:14.662, 48.15 W, 375 MHz, 810 MHz, 56, 0 %, 48.15 W, 48.15 W
2026/10/09 08:56:15.663, 43.06 W, 217 MHz, 810 MHz, 55, 0 %, 37.98 W, 43.06 W
2026/10/09 08:56:16.663, 36.42 W, 180 MHz, 405 MHz, 54, 0 %, 34.86 W, 36.42 W
2026/10/09 08:56:17.663, 34.40 W, 180 MHz, 405 MHz, 53, 0 %, 33.94 W, 34.40 W
2026/10/09 08:56:18.663, 33.50 W, 180 MHz, 405 MHz, 53, 0 %, 33.50 W, 33.50 W
2026/10/09 08:56:19.664, 33.48 W, 180 MHz, 405 MHz, 52, 0 %, 33.47 W, 33.48 W
2026/10/09 08:56:20.664, 33.20 W, 180 MHz, 405 MHz, 52, 0 %, 32.94 W, 33.20 W
2026/10/09 08:56:21.664, 32.78 W, 180 MHz, 405 MHz, 51, 0 %, 32.78 W, 32.78 W
2026/10/09 08:56:22.664, 69.15 W, 2400 MHz, 13801 MHz, 52, 0 %, 76.14 W, 69.15 W
2026/10/09 08:56:23.664, 76.12 W, 2400 MHz, 13801 MHz, 52, 0 %, 75.99 W, 76.12 W
2026/10/09 08:56:24.664, 96.16 W, 2400 MHz, 13801 MHz, 52, 0 %, 75.54 W, 96.16 W
2026/10/09 08:56:25.665, 168.46 W, 2865 MHz, 13801 MHz, 56, 57 %, 254.65 W, 168.46 W
2026/10/09 08:56:26.665, 392.88 W, 2857 MHz, 13801 MHz, 59, 100 %, 405.53 W, 392.88 W
2026/10/09 08:56:27.665, 407.07 W, 2857 MHz, 13801 MHz, 60, 100 %, 406.68 W, 407.07 W
2026/10/09 08:56:28.665, 402.69 W, 2842 MHz, 13801 MHz, 60, 100 %, 400.92 W, 402.69 W
2026/10/09 08:56:29.665, 400.06 W, 2842 MHz, 13801 MHz, 60, 100 %, 400.52 W, 400.06 W
2026/10/09 08:56:30.665, 399.98 W, 2842 MHz, 13801 MHz, 61, 100 %, 400.26 W, 399.98 W
2026/10/09 08:56:31.666, 400.02 W, 2842 MHz, 13801 MHz, 61, 100 %, 399.98 W, 400.02 W
2026/10/09 08:56:32.666, 400.00 W, 2842 MHz, 13801 MHz, 61, 100 %, 399.81 W, 400.00 W
2026/10/09 08:56:33.666, 400.01 W, 2842 MHz, 13801 MHz, 61, 100 %, 399.87 W, 400.01 W
2026/10/09 08:56:34.666, 399.89 W, 2842 MHz, 13801 MHz, 61, 100 %, 399.01 W, 399.89 W
2026/10/09 08:56:35.666, 399.99 W, 2842 MHz, 13801 MHz, 62, 100 %, 399.20 W, 399.99 W
2026/10/09 08:56:36.667, 399.96 W, 2835 MHz, 13801 MHz, 62, 99 %, 398.88 W, 399.96 W
2026/10/09 08:56:37.667, 399.97 W, 2835 MHz, 13801 MHz, 62, 100 %, 399.73 W, 399.97 W
2026/10/09 08:56:38.667, 400.02 W, 2835 MHz, 13801 MHz, 62, 100 %, 399.87 W, 400.02 W
2026/10/09 08:56:39.667, 400.01 W, 2835 MHz, 13801 MHz, 62, 100 %, 400.96 W, 400.01 W
2026/10/09 08:56:40.668, 400.08 W, 2835 MHz, 13801 MHz, 62, 100 %, 401.07 W, 400.08 W
2026/10/09 08:56:41.668, 399.97 W, 2827 MHz, 13801 MHz, 62, 100 %, 400.21 W, 399.97 W
2026/10/09 08:56:42.668, 400.01 W, 2820 MHz, 13801 MHz, 62, 100 %, 400.02 W, 400.01 W
2026/10/09 08:56:43.668, 399.99 W, 2820 MHz, 13801 MHz, 63, 100 %, 399.85 W, 399.99 W
2026/10/09 08:56:44.668, 399.99 W, 2820 MHz, 13801 MHz, 63, 100 %, 399.92 W, 399.99 W
2026/10/09 08:56:45.668, 400.00 W, 2820 MHz, 13801 MHz, 63, 100 %, 400.10 W, 400.00 W
2026/10/09 08:56:46.668, 399.90 W, 2820 MHz, 13801 MHz, 63, 100 %, 399.25 W, 399.90 W
2026/10/09 08:56:47.669, 399.95 W, 2820 MHz, 13801 MHz, 63, 100 %, 399.56 W, 399.95 W
2026/10/09 08:56:48.669, 399.97 W, 2820 MHz, 13801 MHz, 63, 100 %, 399.80 W, 399.97 W
2026/10/09 08:56:49.669, 400.02 W, 2820 MHz, 13801 MHz, 63, 100 %, 400.00 W, 400.02 W
2026/10/09 08:56:50.669, 400.01 W, 2812 MHz, 13801 MHz, 63, 100 %, 401.05 W, 400.01 W
2026/10/09 08:56:51.669, 400.09 W, 2812 MHz, 13801 MHz, 63, 100 %, 400.88 W, 400.09 W
2026/10/09 08:56:52.669, 399.97 W, 2812 MHz, 13801 MHz, 64, 100 %, 400.56 W, 399.97 W
2026/10/09 08:56:53.670, 399.99 W, 2812 MHz, 13801 MHz, 64, 100 %, 400.32 W, 399.99 W
2026/10/09 08:56:54.670, 400.01 W, 2812 MHz, 13801 MHz, 64, 100 %, 400.09 W, 400.01 W
2026/10/09 08:56:55.670, 399.99 W, 2812 MHz, 13801 MHz, 64, 100 %, 399.79 W, 399.99 W
2026/10/09 08:56:56.670, 400.01 W, 2812 MHz, 13801 MHz, 64, 100 %, 399.98 W, 400.01 W
2026/10/09 08:56:57.670, 399.92 W, 2812 MHz, 13801 MHz, 64, 100 %, 399.34 W, 399.92 W
2026/10/09 08:56:58.671, 399.95 W, 2812 MHz, 13801 MHz, 64, 100 %, 399.57 W, 399.95 W
2026/10/09 08:56:59.671, 399.98 W, 2812 MHz, 13801 MHz, 64, 100 %, 399.78 W, 399.98 W
2026/10/09 08:57:00.671, 400.01 W, 2812 MHz, 13801 MHz, 64, 100 %, 399.99 W, 400.01 W
2026/10/09 08:57:01.671, 400.02 W, 2812 MHz, 13801 MHz, 64, 100 %, 400.07 W, 400.02 W
2026/10/09 08:57:02.671, 399.97 W, 2812 MHz, 13801 MHz, 64, 100 %, 400.85 W, 399.97 W
2026/10/09 08:57:03.671, 400.06 W, 2812 MHz, 13801 MHz, 64, 100 %, 400.47 W, 400.06 W
2026/10/09 08:57:04.671, 400.02 W, 2812 MHz, 13801 MHz, 64, 100 %, 400.22 W, 400.02 W
2026/10/09 08:57:05.672, 400.01 W, 2805 MHz, 13801 MHz, 64, 100 %, 400.08 W, 400.01 W
2026/10/09 08:57:06.672, 400.00 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.86 W, 400.00 W
2026/10/09 08:57:07.672, 400.00 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.81 W, 400.00 W
2026/10/09 08:57:08.672, 399.90 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.06 W, 399.90 W
2026/10/09 08:57:09.672, 399.93 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.32 W, 399.93 W
2026/10/09 08:57:10.673, 400.02 W, 2805 MHz, 13801 MHz, 64, 100 %, 399.64 W, 400.02 W
2026/10/09 08:57:11.673, 400.03 W, 2805 MHz, 13801 MHz, 65, 100 %, 399.99 W, 400.03 W
2026/10/09 08:57:12.673, 400.00 W, 2805 MHz, 13801 MHz, 65, 100 %, 400.07 W, 400.00 W
2026/10/09 08:57:13.673, 400.00 W, 2805 MHz, 13801 MHz, 65, 100 %, 400.76 W, 400.00 W
2026/10/09 08:57:14.673, 399.98 W, 2805 MHz, 13801 MHz, 65, 100 %, 400.48 W, 399.98 W
2026/10/09 08:57:15.673, 399.98 W, 2805 MHz, 13801 MHz, 65, 100 %, 400.18 W, 399.98 W
2026/10/09 08:57:16.674, 400.01 W, 2805 MHz, 13801 MHz, 65, 100 %, 400.02 W, 400.01 W
2026/10/09 08:57:17.674, 399.98 W, 2805 MHz, 13801 MHz, 65, 100 %, 399.79 W, 399.98 W
2026/10/09 08:57:18.674, 399.98 W, 2805 MHz, 13801 MHz, 65, 100 %, 399.90 W, 399.98 W
2026/10/09 08:57:19.674, 399.92 W, 2805 MHz, 13801 MHz, 65, 100 %, 399.18 W, 399.92 W
2026/10/09 08:57:20.675, 399.93 W, 2805 MHz, 13801 MHz, 65, 100 %, 399.36 W, 399.93 W
2026/10/09 08:57:21.675, 399.96 W, 2805 MHz, 13801 MHz, 65, 100 %, 399.70 W, 399.96 W
2026/10/09 08:57:22.675, 400.02 W, 2812 MHz, 13801 MHz, 65, 100 %, 402.14 W, 400.02 W
2026/10/09 08:57:23.675, 400.18 W, 2805 MHz, 13801 MHz, 65, 100 %, 399.94 W, 400.18 W
2026/10/09 08:57:24.675, 401.41 W, 2805 MHz, 13801 MHz, 65, 100 %, 399.93 W, 401.41 W
2026/10/09 08:57:25.676, 400.00 W, 2805 MHz, 13801 MHz, 65, 100 %, 400.84 W, 400.00 W
2026/10/09 08:57:26.676, 400.06 W, 2805 MHz, 13801 MHz, 65, 100 %, 400.58 W, 400.06 W
2026/10/09 08:57:27.676, 141.76 W, 2865 MHz, 14001 MHz, 59, 0 %, 108.36 W, 141.76 W
2026/10/09 08:57:28.676, 112.13 W, 2865 MHz, 14001 MHz, 59, 0 %, 107.61 W, 112.13 W
2026/10/09 08:57:29.677, 95.60 W, 1335 MHz, 7001 MHz, 56, 0 %, 95.60 W, 95.60 W
2026/10/09 08:57:30.677, 48.05 W, 382 MHz, 7001 MHz, 55, 0 %, 48.05 W, 48.05 W
2026/10/09 08:57:31.677, 47.40 W, 240 MHz, 7001 MHz, 55, 0 %, 46.76 W, 47.40 W
2026/10/09 08:57:32.677, 45.82 W, 180 MHz, 7001 MHz, 54, 0 %, 45.82 W, 45.82 W
2026/10/09 08:57:33.677, 45.31 W, 180 MHz, 7001 MHz, 53, 0 %, 44.81 W, 45.31 W
2026/10/09 08:57:34.678, 36.31 W, 180 MHz, 810 MHz, 53, 0 %, 36.31 W, 36.31 W
2026/10/09 08:57:35.678, 34.99 W, 180 MHz, 405 MHz, 52, 0 %, 33.66 W, 34.99 W
2026/10/09 08:57:36.678, 33.01 W, 180 MHz, 405 MHz, 52, 0 %, 32.36 W, 33.01 W
2026/10/09 08:57:37.678, 45.89 W, 2400 MHz, 13801 MHz, 52, 0 %, 76.00 W, 45.89 W
2026/10/09 08:57:38.679, 75.78 W, 2400 MHz, 13801 MHz, 52, 0 %, 75.43 W, 75.78 W
2026/10/09 08:57:39.679, 95.69 W, 2467 MHz, 13801 MHz, 52, 27 %, 75.46 W, 95.69 W
2026/10/09 08:57:40.679, 83.62 W, 2437 MHz, 13801 MHz, 51, 35 %, 168.80 W, 83.62 W
2026/10/09 08:57:41.679, 338.15 W, 2857 MHz, 13801 MHz, 59, 100 %, 413.75 W, 338.15 W
2026/10/09 08:57:42.679, 409.82 W, 2835 MHz, 13801 MHz, 60, 100 %, 400.73 W, 409.82 W
2026/10/09 08:57:43.680, 400.06 W, 2827 MHz, 13801 MHz, 60, 100 %, 400.27 W, 400.06 W
2026/10/09 08:57:44.680, 399.99 W, 2827 MHz, 13801 MHz, 60, 100 %, 399.84 W, 399.99 W
2026/10/09 08:57:45.680, 399.98 W, 2827 MHz, 13801 MHz, 60, 100 %, 399.78 W, 399.98 W
2026/10/09 08:57:46.680, 400.01 W, 2827 MHz, 13801 MHz, 61, 100 %, 399.81 W, 400.01 W
2026/10/09 08:57:47.681, 399.89 W, 2827 MHz, 13801 MHz, 61, 100 %, 399.08 W, 399.89 W
2026/10/09 08:57:48.681, 400.01 W, 2820 MHz, 13801 MHz, 61, 100 %, 399.26 W, 400.01 W
2026/10/09 08:57:49.681, 400.01 W, 2820 MHz, 13801 MHz, 61, 100 %, 399.54 W, 400.01 W
2026/10/09 08:57:50.681, 400.02 W, 2820 MHz, 13801 MHz, 61, 100 %, 399.81 W, 400.02 W
2026/10/09 08:57:51.681, 400.03 W, 2820 MHz, 13801 MHz, 62, 100 %, 400.13 W, 400.03 W
2026/10/09 08:57:52.682, 400.00 W, 2820 MHz, 13801 MHz, 62, 100 %, 400.74 W, 400.00 W
2026/10/09 08:57:53.682, 400.07 W, 2820 MHz, 13801 MHz, 62, 100 %, 400.54 W, 400.07 W
2026/10/09 08:57:54.682, 399.97 W, 2820 MHz, 13801 MHz, 62, 100 %, 400.25 W, 399.97 W
2026/10/09 08:57:55.682, 400.01 W, 2820 MHz, 13801 MHz, 62, 100 %, 399.99 W, 400.01 W
2026/10/09 08:57:56.682, 400.00 W, 2820 MHz, 13801 MHz, 62, 100 %, 399.81 W, 400.00 W
2026/10/09 08:57:57.683, 399.99 W, 2820 MHz, 13801 MHz, 62, 100 %, 399.89 W, 399.99 W
2026/10/09 08:57:58.683, 399.91 W, 2820 MHz, 13801 MHz, 63, 100 %, 399.17 W, 399.91 W
2026/10/09 08:57:59.683, 400.01 W, 2805 MHz, 13801 MHz, 63, 100 %, 399.44 W, 400.01 W
2026/10/09 08:58:00.683, 399.98 W, 2805 MHz, 13801 MHz, 63, 100 %, 399.78 W, 399.98 W
2026/10/09 08:58:01.684, 399.98 W, 2805 MHz, 13801 MHz, 63, 100 %, 399.98 W, 399.98 W
2026/10/09 08:58:02.684, 400.01 W, 2797 MHz, 13801 MHz, 63, 100 %, 400.05 W, 400.01 W
2026/10/09 08:58:03.684, 400.00 W, 2805 MHz, 13801 MHz, 63, 100 %, 401.53 W, 400.00 W
2026/10/09 08:58:04.684, 399.97 W, 2797 MHz, 13801 MHz, 63, 100 %, 400.49 W, 399.97 W
2026/10/09 08:58:05.684, 400.03 W, 2797 MHz, 13801 MHz, 63, 100 %, 400.13 W, 400.03 W
2026/10/09 08:58:06.685, 399.99 W, 2797 MHz, 13801 MHz, 63, 100 %, 400.01 W, 399.99 W
2026/10/09 08:58:07.685, 399.98 W, 2797 MHz, 13801 MHz, 63, 100 %, 399.87 W, 399.98 W
2026/10/09 08:58:08.685, 400.00 W, 2805 MHz, 13801 MHz, 63, 100 %, 399.94 W, 400.00 W
2026/10/09 08:58:09.685, 399.92 W, 2797 MHz, 13801 MHz, 63, 100 %, 399.19 W, 399.92 W
2026/10/09 08:58:10.686, 399.96 W, 2797 MHz, 13801 MHz, 63, 100 %, 399.74 W, 399.96 W
2026/10/09 08:58:11.686, 400.00 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.84 W, 400.00 W
2026/10/09 08:58:12.686, 400.00 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.96 W, 400.00 W
2026/10/09 08:58:13.686, 400.00 W, 2797 MHz, 13801 MHz, 64, 100 %, 400.82 W, 400.00 W
2026/10/09 08:58:14.686, 400.00 W, 2797 MHz, 13801 MHz, 64, 100 %, 400.77 W, 400.00 W
2026/10/09 08:58:15.687, 400.06 W, 2797 MHz, 13801 MHz, 64, 100 %, 400.47 W, 400.06 W
2026/10/09 08:58:16.687, 399.98 W, 2797 MHz, 13801 MHz, 64, 100 %, 400.27 W, 399.98 W
2026/10/09 08:58:17.687, 400.00 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.76 W, 400.00 W
2026/10/09 08:58:18.687, 399.98 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.90 W, 399.98 W
2026/10/09 08:58:19.687, 399.99 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.98 W, 399.99 W
2026/10/09 08:58:20.688, 399.92 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.46 W, 399.92 W
2026/10/09 08:58:21.688, 399.97 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.65 W, 399.97 W
2026/10/09 08:58:22.688, 400.00 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.85 W, 400.00 W
2026/10/09 08:58:23.688, 400.01 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.98 W, 400.01 W
2026/10/09 08:58:24.688, 400.00 W, 2797 MHz, 13801 MHz, 64, 100 %, 400.88 W, 400.00 W
2026/10/09 08:58:25.688, 399.99 W, 2797 MHz, 13801 MHz, 64, 100 %, 400.67 W, 399.99 W
2026/10/09 08:58:26.689, 400.05 W, 2797 MHz, 13801 MHz, 64, 100 %, 400.64 W, 400.05 W
2026/10/09 08:58:27.689, 399.98 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.97 W, 399.98 W
2026/10/09 08:58:28.689, 399.98 W, 2797 MHz, 13801 MHz, 64, 100 %, 399.86 W, 399.98 W
2026/10/09 08:58:29.689, 399.99 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.84 W, 399.99 W
2026/10/09 08:58:30.689, 399.98 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.98 W, 399.98 W
2026/10/09 08:58:31.690, 399.94 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.39 W, 399.94 W
2026/10/09 08:58:32.690, 400.01 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.65 W, 400.01 W
2026/10/09 08:58:33.690, 400.00 W, 2790 MHz, 13801 MHz, 65, 100 %, 399.85 W, 400.00 W
2026/10/09 08:58:34.690, 400.00 W, 2790 MHz, 13801 MHz, 64, 100 %, 399.95 W, 400.00 W
2026/10/09 08:58:35.691, 400.00 W, 2790 MHz, 13801 MHz, 65, 100 %, 400.79 W, 400.00 W
2026/10/09 08:58:36.691, 400.06 W, 2790 MHz, 13801 MHz, 65, 100 %, 400.49 W, 400.06 W
2026/10/09 08:58:37.691, 400.03 W, 2790 MHz, 13801 MHz, 65, 100 %, 400.20 W, 400.03 W
2026/10/09 08:58:38.691, 399.99 W, 2790 MHz, 13801 MHz, 65, 100 %, 399.94 W, 399.99 W
2026/10/09 08:58:39.691, 399.98 W, 2790 MHz, 13801 MHz, 65, 100 %, 399.77 W, 399.98 W
2026/10/09 08:58:40.692, 399.98 W, 2790 MHz, 13801 MHz, 65, 100 %, 399.85 W, 399.98 W
2026/10/09 08:58:41.692, 399.92 W, 2790 MHz, 13801 MHz, 65, 100 %, 399.31 W, 399.92 W
2026/10/09 08:58:42.692, 266.37 W, 2865 MHz, 14001 MHz, 59, 0 %, 108.97 W, 266.37 W
2026/10/09 08:58:43.692, 108.93 W, 2865 MHz, 14001 MHz, 58, 0 %, 108.00 W, 108.93 W
2026/10/09 08:58:44.693, 86.74 W, 547 MHz, 7001 MHz, 56, 0 %, 86.74 W, 86.74 W
2026/10/09 08:58:45.693, 67.17 W, 337 MHz, 7001 MHz, 55, 0 %, 47.60 W, 67.17 W
2026/10/09 08:58:46.693, 46.92 W, 217 MHz, 7001 MHz, 54, 0 %, 46.25 W, 46.92 W
2026/10/09 08:58:47.693, 45.38 W, 180 MHz, 810 MHz, 54, 0 %, 45.38 W, 45.38 W
2026/10/09 08:58:48.693, 35.34 W, 180 MHz, 810 MHz, 53, 0 %, 35.34 W, 35.34 W
2026/10/09 08:58:49.694, 34.27 W, 180 MHz, 405 MHz, 52, 0 %, 33.20 W, 34.27 W
2026/10/09 08:58:50.694, 32.65 W, 180 MHz, 405 MHz, 52, 0 %, 32.65 W, 32.65 W
2026/10/09 08:58:51.694, 32.03 W, 180 MHz, 405 MHz, 51, 0 %, 32.03 W, 32.03 W
1 2026/10/09 08:48:50.541 17.51 W 180 MHz 405 MHz 35 0 % 17.59 W 17.51 W
2 2026/10/09 08:48:51.548 17.83 W 180 MHz 405 MHz 35 0 % 18.06 W 17.83 W
3 2026/10/09 08:48:52.548 17.90 W 180 MHz 405 MHz 35 0 % 17.75 W 17.90 W
4 2026/10/09 08:48:53.548 17.71 W 180 MHz 405 MHz 35 0 % 17.71 W 17.71 W
5 2026/10/09 08:48:54.549 17.67 W 180 MHz 405 MHz 35 0 % 17.67 W 17.67 W
6 2026/10/09 08:48:55.549 17.68 W 180 MHz 405 MHz 35 0 % 17.68 W 17.68 W
7 2026/10/09 08:48:56.549 29.55 W 2362 MHz 13801 MHz 36 0 % 58.08 W 29.55 W
8 2026/10/09 08:48:57.549 57.87 W 2400 MHz 13801 MHz 37 0 % 57.82 W 57.87 W
9 2026/10/09 08:48:58.549 63.47 W 2400 MHz 13801 MHz 37 1 % 93.81 W 63.47 W
10 2026/10/09 08:48:59.549 58.13 W 2400 MHz 13801 MHz 37 0 % 57.38 W 58.13 W
11 2026/10/09 08:49:00.550 272.17 W 2872 MHz 13801 MHz 46 100 % 387.82 W 272.17 W
12 2026/10/09 08:49:01.550 388.38 W 2865 MHz 13801 MHz 48 99 % 387.52 W 388.38 W
13 2026/10/09 08:49:02.550 390.03 W 2865 MHz 13801 MHz 49 100 % 390.59 W 390.03 W
14 2026/10/09 08:49:03.550 391.65 W 2865 MHz 13801 MHz 50 100 % 392.68 W 391.65 W
15 2026/10/09 08:49:04.550 392.39 W 2865 MHz 13801 MHz 50 100 % 393.63 W 392.39 W
16 2026/10/09 08:49:05.550 393.78 W 2865 MHz 13801 MHz 51 100 % 393.42 W 393.78 W
17 2026/10/09 08:49:06.551 394.60 W 2865 MHz 13801 MHz 51 100 % 394.48 W 394.60 W
18 2026/10/09 08:49:07.551 394.86 W 2865 MHz 13801 MHz 52 100 % 395.50 W 394.86 W
19 2026/10/09 08:49:08.551 396.28 W 2865 MHz 13801 MHz 53 100 % 397.07 W 396.28 W
20 2026/10/09 08:49:09.551 396.82 W 2865 MHz 13801 MHz 53 100 % 397.84 W 396.82 W
21 2026/10/09 08:49:10.551 397.73 W 2857 MHz 13801 MHz 54 100 % 396.95 W 397.73 W
22 2026/10/09 08:49:11.552 398.35 W 2857 MHz 13801 MHz 54 100 % 398.07 W 398.35 W
23 2026/10/09 08:49:12.552 399.13 W 2857 MHz 13801 MHz 55 100 % 400.07 W 399.13 W
24 2026/10/09 08:49:13.552 400.14 W 2857 MHz 13801 MHz 55 100 % 400.52 W 400.14 W
25 2026/10/09 08:49:14.552 401.03 W 2857 MHz 13801 MHz 56 100 % 402.02 W 401.03 W
26 2026/10/09 08:49:15.553 401.86 W 2857 MHz 13801 MHz 56 100 % 402.06 W 401.86 W
27 2026/10/09 08:49:16.553 403.29 W 2857 MHz 13801 MHz 56 100 % 402.77 W 403.29 W
28 2026/10/09 08:49:17.553 403.19 W 2857 MHz 13801 MHz 56 100 % 402.12 W 403.19 W
29 2026/10/09 08:49:18.553 401.89 W 2857 MHz 13801 MHz 56 100 % 401.91 W 401.89 W
30 2026/10/09 08:49:19.553 402.59 W 2857 MHz 13801 MHz 56 100 % 404.10 W 402.59 W
31 2026/10/09 08:49:20.553 402.26 W 2857 MHz 13801 MHz 56 100 % 399.49 W 402.26 W
32 2026/10/09 08:49:21.554 400.01 W 2850 MHz 13801 MHz 57 100 % 400.05 W 400.01 W
33 2026/10/09 08:49:22.554 400.00 W 2850 MHz 13801 MHz 57 100 % 400.64 W 400.00 W
34 2026/10/09 08:49:23.554 400.04 W 2850 MHz 13801 MHz 57 100 % 399.76 W 400.04 W
35 2026/10/09 08:49:24.554 399.89 W 2842 MHz 13801 MHz 57 100 % 398.90 W 399.89 W
36 2026/10/09 08:49:25.554 400.05 W 2842 MHz 13801 MHz 58 100 % 399.61 W 400.05 W
37 2026/10/09 08:49:26.554 400.05 W 2842 MHz 13801 MHz 58 100 % 401.06 W 400.05 W
38 2026/10/09 08:49:27.555 399.98 W 2842 MHz 13801 MHz 58 100 % 400.43 W 399.98 W
39 2026/10/09 08:49:28.555 400.02 W 2842 MHz 13801 MHz 58 100 % 399.79 W 400.02 W
40 2026/10/09 08:49:29.555 399.92 W 2835 MHz 13801 MHz 59 100 % 399.23 W 399.92 W
41 2026/10/09 08:49:30.555 399.98 W 2835 MHz 13801 MHz 59 100 % 400.03 W 399.98 W
42 2026/10/09 08:49:31.555 400.01 W 2835 MHz 13801 MHz 59 100 % 400.85 W 400.01 W
43 2026/10/09 08:49:32.555 400.05 W 2835 MHz 13801 MHz 59 100 % 399.98 W 400.05 W
44 2026/10/09 08:49:33.556 399.99 W 2835 MHz 13801 MHz 60 100 % 399.85 W 399.99 W
45 2026/10/09 08:49:34.556 399.94 W 2827 MHz 13801 MHz 60 100 % 399.65 W 399.94 W
46 2026/10/09 08:49:35.556 400.02 W 2827 MHz 13801 MHz 60 100 % 400.01 W 400.02 W
47 2026/10/09 08:49:36.556 400.01 W 2827 MHz 13801 MHz 60 100 % 400.57 W 400.01 W
48 2026/10/09 08:49:37.556 399.97 W 2827 MHz 13801 MHz 60 100 % 399.94 W 399.97 W
49 2026/10/09 08:49:38.556 399.93 W 2827 MHz 13801 MHz 61 100 % 399.32 W 399.93 W
50 2026/10/09 08:49:39.557 399.95 W 2820 MHz 13801 MHz 61 100 % 399.61 W 399.95 W
51 2026/10/09 08:49:40.557 400.01 W 2820 MHz 13801 MHz 61 100 % 400.79 W 400.01 W
52 2026/10/09 08:49:41.557 399.97 W 2820 MHz 13801 MHz 61 100 % 400.47 W 399.97 W
53 2026/10/09 08:49:42.557 400.03 W 2820 MHz 13801 MHz 61 100 % 399.91 W 400.03 W
54 2026/10/09 08:49:43.557 399.92 W 2820 MHz 13801 MHz 61 100 % 399.38 W 399.92 W
55 2026/10/09 08:49:44.558 399.98 W 2820 MHz 13801 MHz 61 100 % 399.83 W 399.98 W
56 2026/10/09 08:49:45.558 400.03 W 2820 MHz 13801 MHz 62 100 % 401.27 W 400.03 W
57 2026/10/09 08:49:46.558 399.98 W 2812 MHz 13801 MHz 62 100 % 400.24 W 399.98 W
58 2026/10/09 08:49:47.558 400.02 W 2812 MHz 13801 MHz 62 100 % 399.78 W 400.02 W
59 2026/10/09 08:49:48.558 399.90 W 2812 MHz 13801 MHz 62 100 % 399.21 W 399.90 W
60 2026/10/09 08:49:49.559 400.07 W 2812 MHz 13801 MHz 62 100 % 400.01 W 400.07 W
61 2026/10/09 08:49:50.559 400.00 W 2812 MHz 13801 MHz 62 100 % 400.89 W 400.00 W
62 2026/10/09 08:49:51.559 400.05 W 2812 MHz 13801 MHz 62 100 % 399.98 W 400.05 W
63 2026/10/09 08:49:52.559 399.99 W 2812 MHz 13801 MHz 62 100 % 399.83 W 399.99 W
64 2026/10/09 08:49:53.559 399.94 W 2812 MHz 13801 MHz 62 100 % 399.57 W 399.94 W
65 2026/10/09 08:49:54.560 400.00 W 2812 MHz 13801 MHz 63 100 % 400.18 W 400.00 W
66 2026/10/09 08:49:55.560 399.98 W 2812 MHz 13801 MHz 63 100 % 400.46 W 399.98 W
67 2026/10/09 08:49:56.560 400.02 W 2812 MHz 13801 MHz 63 100 % 399.81 W 400.02 W
68 2026/10/09 08:49:57.560 399.92 W 2805 MHz 13801 MHz 63 100 % 399.07 W 399.92 W
69 2026/10/09 08:49:58.561 399.97 W 2805 MHz 13801 MHz 63 100 % 399.82 W 399.97 W
70 2026/10/09 08:49:59.561 369.35 W 2805 MHz 14001 MHz 59 2 % 113.52 W 369.35 W
71 2026/10/09 08:50:00.561 105.97 W 2865 MHz 14001 MHz 57 0 % 103.57 W 105.97 W
72 2026/10/09 08:50:01.562 104.20 W 2865 MHz 14001 MHz 56 0 % 103.73 W 104.20 W
73 2026/10/09 08:50:02.562 87.47 W 555 MHz 14001 MHz 55 0 % 87.47 W 87.47 W
74 2026/10/09 08:50:03.562 66.20 W 352 MHz 7001 MHz 53 0 % 44.92 W 66.20 W
75 2026/10/09 08:50:04.562 43.06 W 225 MHz 810 MHz 53 0 % 43.06 W 43.06 W
76 2026/10/09 08:50:05.563 37.91 W 180 MHz 810 MHz 52 0 % 32.76 W 37.91 W
77 2026/10/09 08:50:06.563 31.34 W 180 MHz 405 MHz 51 0 % 31.34 W 31.34 W
78 2026/10/09 08:50:07.563 29.93 W 180 MHz 405 MHz 51 0 % 29.93 W 29.93 W
79 2026/10/09 08:50:08.563 29.64 W 180 MHz 405 MHz 50 0 % 29.36 W 29.64 W
80 2026/10/09 08:50:09.564 29.28 W 180 MHz 405 MHz 50 0 % 29.28 W 29.28 W
81 2026/10/09 08:50:10.564 45.92 W 2400 MHz 13801 MHz 50 0 % 72.77 W 45.92 W
82 2026/10/09 08:50:11.564 72.64 W 2400 MHz 13801 MHz 50 0 % 72.62 W 72.64 W
83 2026/10/09 08:50:12.565 77.49 W 2400 MHz 13801 MHz 50 0 % 72.69 W 77.49 W
84 2026/10/09 08:50:13.565 144.93 W 2640 MHz 13801 MHz 55 57 % 245.30 W 144.93 W
85 2026/10/09 08:50:14.565 364.18 W 2857 MHz 13801 MHz 58 100 % 406.30 W 364.18 W
86 2026/10/09 08:50:15.565 406.06 W 2857 MHz 13801 MHz 58 100 % 406.71 W 406.06 W
87 2026/10/09 08:50:16.566 405.95 W 2857 MHz 13801 MHz 59 100 % 400.41 W 405.95 W
88 2026/10/09 08:50:17.566 400.14 W 2842 MHz 13801 MHz 59 100 % 399.81 W 400.14 W
89 2026/10/09 08:50:18.566 400.03 W 2842 MHz 13801 MHz 59 100 % 400.90 W 400.03 W
90 2026/10/09 08:50:19.566 400.06 W 2842 MHz 13801 MHz 60 100 % 400.18 W 400.06 W
91 2026/10/09 08:50:20.567 400.00 W 2842 MHz 13801 MHz 60 100 % 399.85 W 400.00 W
92 2026/10/09 08:50:21.567 399.92 W 2842 MHz 13801 MHz 60 100 % 399.31 W 399.92 W
93 2026/10/09 08:50:22.567 399.97 W 2842 MHz 13801 MHz 60 100 % 399.79 W 399.97 W
94 2026/10/09 08:50:23.567 400.04 W 2842 MHz 13801 MHz 60 100 % 400.90 W 400.04 W
95 2026/10/09 08:50:24.568 400.05 W 2835 MHz 13801 MHz 61 100 % 400.32 W 400.05 W
96 2026/10/09 08:50:25.568 400.02 W 2835 MHz 13801 MHz 61 100 % 399.83 W 400.02 W
97 2026/10/09 08:50:26.568 399.93 W 2835 MHz 13801 MHz 61 100 % 399.34 W 399.93 W
98 2026/10/09 08:50:27.569 400.06 W 2835 MHz 13801 MHz 61 100 % 400.01 W 400.06 W
99 2026/10/09 08:50:28.569 400.00 W 2835 MHz 13801 MHz 61 100 % 400.80 W 400.00 W
100 2026/10/09 08:50:29.569 400.01 W 2835 MHz 13801 MHz 61 100 % 400.20 W 400.01 W
101 2026/10/09 08:50:30.569 400.01 W 2835 MHz 13801 MHz 62 100 % 399.79 W 400.01 W
102 2026/10/09 08:50:31.570 399.93 W 2835 MHz 13801 MHz 62 100 % 399.46 W 399.93 W
103 2026/10/09 08:50:32.570 400.03 W 2827 MHz 13801 MHz 62 100 % 399.89 W 400.03 W
104 2026/10/09 08:50:33.570 399.98 W 2827 MHz 13801 MHz 62 100 % 400.51 W 399.98 W
105 2026/10/09 08:50:34.570 400.02 W 2827 MHz 13801 MHz 62 100 % 399.94 W 400.02 W
106 2026/10/09 08:50:35.571 400.00 W 2827 MHz 13801 MHz 62 100 % 399.93 W 400.00 W
107 2026/10/09 08:50:36.571 399.94 W 2827 MHz 13801 MHz 62 100 % 399.67 W 399.94 W
108 2026/10/09 08:50:37.571 400.00 W 2827 MHz 13801 MHz 62 100 % 400.04 W 400.00 W
109 2026/10/09 08:50:38.571 400.00 W 2827 MHz 13801 MHz 63 100 % 400.57 W 400.00 W
110 2026/10/09 08:50:39.572 400.03 W 2827 MHz 13801 MHz 63 100 % 399.92 W 400.03 W
111 2026/10/09 08:50:40.572 400.00 W 2827 MHz 13801 MHz 63 100 % 400.04 W 400.00 W
112 2026/10/09 08:50:41.572 399.95 W 2820 MHz 13801 MHz 63 100 % 399.57 W 399.95 W
113 2026/10/09 08:50:42.572 400.06 W 2805 MHz 13801 MHz 63 100 % 400.11 W 400.06 W
114 2026/10/09 08:50:43.573 399.98 W 2805 MHz 13801 MHz 63 100 % 400.56 W 399.98 W
115 2026/10/09 08:50:44.573 400.03 W 2805 MHz 13801 MHz 63 100 % 399.79 W 400.03 W
116 2026/10/09 08:50:45.573 399.82 W 2805 MHz 13801 MHz 63 100 % 398.23 W 399.82 W
117 2026/10/09 08:50:46.574 400.12 W 2805 MHz 13801 MHz 63 100 % 399.65 W 400.12 W
118 2026/10/09 08:50:47.574 400.01 W 2805 MHz 13801 MHz 63 100 % 400.71 W 400.01 W
119 2026/10/09 08:50:48.574 400.05 W 2805 MHz 13801 MHz 63 100 % 400.43 W 400.05 W
120 2026/10/09 08:50:49.574 400.02 W 2805 MHz 13801 MHz 63 100 % 399.82 W 400.02 W
121 2026/10/09 08:50:50.575 399.93 W 2805 MHz 13801 MHz 63 100 % 399.23 W 399.93 W
122 2026/10/09 08:50:51.575 400.03 W 2805 MHz 13801 MHz 64 100 % 399.80 W 400.03 W
123 2026/10/09 08:50:52.575 400.01 W 2805 MHz 13801 MHz 64 100 % 401.14 W 400.01 W
124 2026/10/09 08:50:53.575 400.08 W 2805 MHz 13801 MHz 64 100 % 400.23 W 400.08 W
125 2026/10/09 08:50:54.576 399.97 W 2805 MHz 13801 MHz 64 100 % 399.72 W 399.97 W
126 2026/10/09 08:50:55.576 399.94 W 2805 MHz 13801 MHz 64 100 % 399.35 W 399.94 W
127 2026/10/09 08:50:56.576 400.04 W 2805 MHz 13801 MHz 64 100 % 399.85 W 400.04 W
128 2026/10/09 08:50:57.576 400.02 W 2805 MHz 13801 MHz 64 100 % 399.90 W 400.02 W
129 2026/10/09 08:50:58.577 400.07 W 2805 MHz 13801 MHz 64 100 % 400.17 W 400.07 W
130 2026/10/09 08:50:59.577 400.01 W 2805 MHz 13801 MHz 64 100 % 399.77 W 400.01 W
131 2026/10/09 08:51:00.577 399.94 W 2797 MHz 13801 MHz 64 100 % 399.37 W 399.94 W
132 2026/10/09 08:51:01.577 400.04 W 2797 MHz 13801 MHz 64 100 % 399.86 W 400.04 W
133 2026/10/09 08:51:02.578 400.03 W 2797 MHz 13801 MHz 64 100 % 403.09 W 400.03 W
134 2026/10/09 08:51:03.578 400.23 W 2797 MHz 13801 MHz 64 100 % 400.21 W 400.23 W
135 2026/10/09 08:51:04.578 400.01 W 2797 MHz 13801 MHz 64 100 % 399.74 W 400.01 W
136 2026/10/09 08:51:05.579 399.93 W 2797 MHz 13801 MHz 64 100 % 399.36 W 399.93 W
137 2026/10/09 08:51:06.579 400.05 W 2797 MHz 13801 MHz 64 100 % 399.95 W 400.05 W
138 2026/10/09 08:51:07.579 400.01 W 2797 MHz 13801 MHz 64 100 % 400.78 W 400.01 W
139 2026/10/09 08:51:08.579 400.05 W 2797 MHz 13801 MHz 64 100 % 400.01 W 400.05 W
140 2026/10/09 08:51:09.580 400.00 W 2797 MHz 13801 MHz 64 100 % 399.86 W 400.00 W
141 2026/10/09 08:51:10.580 399.95 W 2797 MHz 13801 MHz 64 100 % 399.59 W 399.95 W
142 2026/10/09 08:51:11.580 399.98 W 2797 MHz 13801 MHz 64 100 % 399.90 W 399.98 W
143 2026/10/09 08:51:12.580 400.00 W 2797 MHz 13801 MHz 64 100 % 400.54 W 400.00 W
144 2026/10/09 08:51:13.581 290.91 W 2865 MHz 14001 MHz 59 0 % 108.62 W 290.91 W
145 2026/10/09 08:51:14.581 109.49 W 2865 MHz 14001 MHz 58 0 % 107.01 W 109.49 W
146 2026/10/09 08:51:15.581 90.91 W 1222 MHz 14001 MHz 56 0 % 90.91 W 90.91 W
147 2026/10/09 08:51:16.582 43.06 W 367 MHz 810 MHz 55 0 % 43.06 W 43.06 W
148 2026/10/09 08:51:17.582 39.51 W 217 MHz 810 MHz 54 0 % 35.96 W 39.51 W
149 2026/10/09 08:51:18.582 32.85 W 180 MHz 405 MHz 53 0 % 32.85 W 32.85 W
150 2026/10/09 08:51:19.582 32.77 W 180 MHz 405 MHz 53 0 % 32.69 W 32.77 W
151 2026/10/09 08:51:20.583 32.58 W 180 MHz 405 MHz 52 0 % 32.48 W 32.58 W
152 2026/10/09 08:51:21.583 32.28 W 172 MHz 405 MHz 52 0 % 32.07 W 32.28 W
153 2026/10/09 08:51:22.583 31.56 W 180 MHz 405 MHz 51 0 % 31.56 W 31.56 W
154 2026/10/09 08:51:23.583 33.42 W 180 MHz 14001 MHz 51 0 % 64.89 W 33.42 W
155 2026/10/09 08:51:24.584 75.20 W 2400 MHz 13801 MHz 51 0 % 74.97 W 75.20 W
156 2026/10/09 08:51:25.584 74.92 W 2400 MHz 13801 MHz 51 0 % 74.85 W 74.92 W
157 2026/10/09 08:51:26.584 79.39 W 2400 MHz 13801 MHz 51 0 % 74.32 W 79.39 W
158 2026/10/09 08:51:27.585 196.64 W 2865 MHz 13801 MHz 57 100 % 406.22 W 196.64 W
159 2026/10/09 08:51:28.585 408.47 W 2857 MHz 13801 MHz 59 100 % 409.47 W 408.47 W
160 2026/10/09 08:51:29.585 407.46 W 2857 MHz 13801 MHz 59 100 % 400.71 W 407.46 W
161 2026/10/09 08:51:30.585 399.94 W 2842 MHz 13801 MHz 59 100 % 399.26 W 399.94 W
162 2026/10/09 08:51:31.586 399.99 W 2842 MHz 13801 MHz 60 100 % 400.00 W 399.99 W
163 2026/10/09 08:51:32.586 400.01 W 2835 MHz 13801 MHz 60 100 % 400.83 W 400.01 W
164 2026/10/09 08:51:33.588 400.05 W 2835 MHz 13801 MHz 60 100 % 400.28 W 400.05 W
165 2026/10/09 08:51:34.588 400.00 W 2835 MHz 13801 MHz 60 100 % 399.90 W 400.00 W
166 2026/10/09 08:51:35.589 399.92 W 2835 MHz 13801 MHz 60 100 % 399.33 W 399.92 W
167 2026/10/09 08:51:36.589 399.98 W 2835 MHz 13801 MHz 61 100 % 399.85 W 399.98 W
168 2026/10/09 08:51:37.589 400.02 W 2835 MHz 13801 MHz 61 100 % 400.85 W 400.02 W
169 2026/10/09 08:51:38.589 400.05 W 2835 MHz 13801 MHz 61 100 % 399.89 W 400.05 W
170 2026/10/09 08:51:39.590 399.98 W 2835 MHz 13801 MHz 61 100 % 399.84 W 399.98 W
171 2026/10/09 08:51:40.590 399.94 W 2835 MHz 13801 MHz 61 100 % 399.64 W 399.94 W
172 2026/10/09 08:51:41.590 399.99 W 2827 MHz 13801 MHz 61 100 % 399.86 W 399.99 W
173 2026/10/09 08:51:42.590 400.00 W 2835 MHz 13801 MHz 62 100 % 400.59 W 400.00 W
174 2026/10/09 08:51:43.591 400.04 W 2827 MHz 13801 MHz 62 100 % 400.05 W 400.04 W
175 2026/10/09 08:51:44.591 400.00 W 2827 MHz 13801 MHz 62 100 % 399.85 W 400.00 W
176 2026/10/09 08:51:45.591 399.93 W 2827 MHz 13801 MHz 62 100 % 399.53 W 399.93 W
177 2026/10/09 08:51:46.592 399.98 W 2827 MHz 13801 MHz 62 100 % 399.94 W 399.98 W
178 2026/10/09 08:51:47.592 400.02 W 2827 MHz 13801 MHz 62 100 % 400.56 W 400.02 W
179 2026/10/09 08:51:48.592 400.03 W 2827 MHz 13801 MHz 62 100 % 399.94 W 400.03 W
180 2026/10/09 08:51:49.592 399.94 W 2827 MHz 13801 MHz 62 100 % 399.42 W 399.94 W
181 2026/10/09 08:51:50.593 399.94 W 2827 MHz 13801 MHz 63 100 % 399.61 W 399.94 W
182 2026/10/09 08:51:51.593 400.00 W 2827 MHz 13801 MHz 63 100 % 400.04 W 400.00 W
183 2026/10/09 08:51:52.593 399.95 W 2827 MHz 13801 MHz 63 100 % 400.46 W 399.95 W
184 2026/10/09 08:51:53.594 399.98 W 2827 MHz 13801 MHz 63 100 % 399.74 W 399.98 W
185 2026/10/09 08:51:54.594 399.90 W 2827 MHz 13801 MHz 63 100 % 399.13 W 399.90 W
186 2026/10/09 08:51:55.594 399.96 W 2827 MHz 13801 MHz 63 100 % 399.81 W 399.96 W
187 2026/10/09 08:51:56.594 400.06 W 2812 MHz 13801 MHz 63 100 % 400.92 W 400.06 W
188 2026/10/09 08:51:57.595 400.04 W 2805 MHz 13801 MHz 63 100 % 400.21 W 400.04 W
189 2026/10/09 08:51:58.595 400.00 W 2812 MHz 13801 MHz 63 100 % 399.72 W 400.00 W
190 2026/10/09 08:51:59.595 399.92 W 2805 MHz 13801 MHz 63 100 % 399.20 W 399.92 W
191 2026/10/09 08:52:00.595 400.04 W 2805 MHz 13801 MHz 63 100 % 399.80 W 400.04 W
192 2026/10/09 08:52:01.596 400.02 W 2805 MHz 13801 MHz 63 100 % 400.94 W 400.02 W
193 2026/10/09 08:52:02.596 400.06 W 2805 MHz 13801 MHz 63 100 % 400.09 W 400.06 W
194 2026/10/09 08:52:03.596 400.00 W 2805 MHz 13801 MHz 63 100 % 399.85 W 400.00 W
195 2026/10/09 08:52:04.596 399.90 W 2805 MHz 13801 MHz 64 100 % 399.30 W 399.90 W
196 2026/10/09 08:52:05.597 399.98 W 2805 MHz 13801 MHz 64 100 % 399.81 W 399.98 W
197 2026/10/09 08:52:06.597 400.02 W 2805 MHz 13801 MHz 64 100 % 400.80 W 400.02 W
198 2026/10/09 08:52:07.597 400.06 W 2805 MHz 13801 MHz 64 100 % 400.19 W 400.06 W
199 2026/10/09 08:52:08.598 399.98 W 2805 MHz 13801 MHz 64 100 % 399.79 W 399.98 W
200 2026/10/09 08:52:09.598 399.92 W 2805 MHz 13801 MHz 64 100 % 399.38 W 399.92 W
201 2026/10/09 08:52:10.598 400.04 W 2805 MHz 13801 MHz 64 100 % 399.99 W 400.04 W
202 2026/10/09 08:52:11.599 400.00 W 2805 MHz 13801 MHz 64 100 % 400.83 W 400.00 W
203 2026/10/09 08:52:12.599 400.05 W 2805 MHz 13801 MHz 64 100 % 400.04 W 400.05 W
204 2026/10/09 08:52:13.599 399.99 W 2805 MHz 13801 MHz 64 100 % 399.82 W 399.99 W
205 2026/10/09 08:52:14.599 399.94 W 2805 MHz 13801 MHz 64 100 % 399.49 W 399.94 W
206 2026/10/09 08:52:15.600 400.04 W 2805 MHz 13801 MHz 64 100 % 400.12 W 400.04 W
207 2026/10/09 08:52:16.600 400.00 W 2805 MHz 13801 MHz 64 100 % 400.80 W 400.00 W
208 2026/10/09 08:52:17.600 399.98 W 2805 MHz 13801 MHz 64 100 % 399.94 W 399.98 W
209 2026/10/09 08:52:18.601 400.00 W 2797 MHz 13801 MHz 64 100 % 399.86 W 400.00 W
210 2026/10/09 08:52:19.601 399.93 W 2797 MHz 13801 MHz 64 100 % 399.58 W 399.93 W
211 2026/10/09 08:52:20.601 400.04 W 2797 MHz 13801 MHz 64 100 % 399.95 W 400.04 W
212 2026/10/09 08:52:21.601 400.01 W 2797 MHz 13801 MHz 64 100 % 400.56 W 400.01 W
213 2026/10/09 08:52:22.602 400.03 W 2797 MHz 13801 MHz 64 100 % 399.97 W 400.03 W
214 2026/10/09 08:52:23.602 400.00 W 2797 MHz 13801 MHz 64 100 % 399.99 W 400.00 W
215 2026/10/09 08:52:24.602 399.94 W 2797 MHz 13801 MHz 64 100 % 399.64 W 399.94 W
216 2026/10/09 08:52:25.602 400.01 W 2797 MHz 13801 MHz 64 100 % 400.05 W 400.01 W
217 2026/10/09 08:52:26.603 399.99 W 2797 MHz 13801 MHz 64 100 % 400.45 W 399.99 W
218 2026/10/09 08:52:27.603 224.91 W 2865 MHz 14001 MHz 58 0 % 107.57 W 224.91 W
219 2026/10/09 08:52:28.603 108.82 W 2865 MHz 14001 MHz 58 0 % 107.04 W 108.82 W
220 2026/10/09 08:52:29.603 90.86 W 1672 MHz 14001 MHz 56 0 % 90.86 W 90.86 W
221 2026/10/09 08:52:30.604 43.38 W 375 MHz 810 MHz 55 0 % 43.38 W 43.38 W
222 2026/10/09 08:52:31.604 39.31 W 217 MHz 810 MHz 54 0 % 35.24 W 39.31 W
223 2026/10/09 08:52:32.604 34.21 W 180 MHz 405 MHz 53 0 % 33.17 W 34.21 W
224 2026/10/09 08:52:33.604 32.65 W 180 MHz 405 MHz 53 0 % 32.65 W 32.65 W
225 2026/10/09 08:52:34.605 32.32 W 180 MHz 405 MHz 52 0 % 32.32 W 32.32 W
226 2026/10/09 08:52:35.605 32.09 W 180 MHz 405 MHz 52 0 % 31.86 W 32.09 W
227 2026/10/09 08:52:36.605 31.65 W 180 MHz 405 MHz 51 0 % 31.65 W 31.65 W
228 2026/10/09 08:52:37.605 39.59 W 1050 MHz 13801 MHz 51 0 % 75.16 W 39.59 W
229 2026/10/09 08:52:38.606 74.97 W 2400 MHz 13801 MHz 51 0 % 74.84 W 74.97 W
230 2026/10/09 08:52:39.606 74.63 W 2400 MHz 13801 MHz 52 4 % 74.56 W 74.63 W
231 2026/10/09 08:52:40.606 79.67 W 2400 MHz 13801 MHz 51 0 % 74.18 W 79.67 W
232 2026/10/09 08:52:41.607 280.63 W 2865 MHz 13801 MHz 59 100 % 416.66 W 280.63 W
233 2026/10/09 08:52:42.607 411.55 W 2842 MHz 13801 MHz 59 100 % 400.48 W 411.55 W
234 2026/10/09 08:52:43.607 400.05 W 2827 MHz 13801 MHz 59 100 % 399.86 W 400.05 W
235 2026/10/09 08:52:44.607 399.92 W 2827 MHz 13801 MHz 60 100 % 399.41 W 399.92 W
236 2026/10/09 08:52:45.608 399.98 W 2820 MHz 13801 MHz 60 100 % 399.96 W 399.98 W
237 2026/10/09 08:52:46.608 400.01 W 2820 MHz 13801 MHz 60 100 % 400.83 W 400.01 W
238 2026/10/09 08:52:47.608 400.05 W 2820 MHz 13801 MHz 60 100 % 399.99 W 400.05 W
239 2026/10/09 08:52:48.608 399.99 W 2820 MHz 13801 MHz 60 100 % 399.88 W 399.99 W
240 2026/10/09 08:52:49.609 399.94 W 2820 MHz 13801 MHz 61 100 % 399.55 W 399.94 W
241 2026/10/09 08:52:50.609 400.05 W 2820 MHz 13801 MHz 61 100 % 400.16 W 400.05 W
242 2026/10/09 08:52:51.609 400.01 W 2812 MHz 13801 MHz 61 100 % 400.50 W 400.01 W
243 2026/10/09 08:52:52.609 399.97 W 2812 MHz 13801 MHz 61 100 % 399.78 W 399.97 W
244 2026/10/09 08:52:53.610 399.92 W 2812 MHz 13801 MHz 61 100 % 399.10 W 399.92 W
245 2026/10/09 08:52:54.610 399.97 W 2812 MHz 13801 MHz 62 100 % 399.99 W 399.97 W
246 2026/10/09 08:52:55.610 400.02 W 2812 MHz 13801 MHz 62 100 % 400.91 W 400.02 W
247 2026/10/09 08:52:56.610 400.06 W 2812 MHz 13801 MHz 62 100 % 400.20 W 400.06 W
248 2026/10/09 08:52:57.611 399.98 W 2812 MHz 13801 MHz 62 100 % 399.81 W 399.98 W
249 2026/10/09 08:52:58.611 399.92 W 2812 MHz 13801 MHz 62 100 % 399.35 W 399.92 W
250 2026/10/09 08:52:59.611 400.06 W 2812 MHz 13801 MHz 62 100 % 399.90 W 400.06 W
251 2026/10/09 08:53:00.611 400.00 W 2812 MHz 13801 MHz 62 100 % 400.84 W 400.00 W
252 2026/10/09 08:53:01.612 400.04 W 2812 MHz 13801 MHz 62 100 % 400.01 W 400.04 W
253 2026/10/09 08:53:02.612 400.00 W 2812 MHz 13801 MHz 63 100 % 399.86 W 400.00 W
254 2026/10/09 08:53:03.612 399.95 W 2812 MHz 13801 MHz 63 100 % 399.63 W 399.95 W
255 2026/10/09 08:53:04.612 399.99 W 2805 MHz 13801 MHz 63 100 % 399.94 W 399.99 W
256 2026/10/09 08:53:05.613 399.99 W 2797 MHz 13801 MHz 63 100 % 400.45 W 399.99 W
257 2026/10/09 08:53:06.613 399.98 W 2797 MHz 13801 MHz 63 100 % 399.91 W 399.98 W
258 2026/10/09 08:53:07.613 400.00 W 2797 MHz 13801 MHz 63 100 % 399.96 W 400.00 W
259 2026/10/09 08:53:08.613 399.94 W 2790 MHz 13801 MHz 63 100 % 399.51 W 399.94 W
260 2026/10/09 08:53:09.614 400.01 W 2790 MHz 13801 MHz 63 100 % 400.07 W 400.01 W
261 2026/10/09 08:53:10.614 399.98 W 2797 MHz 13801 MHz 63 100 % 400.53 W 399.98 W
262 2026/10/09 08:53:11.614 400.03 W 2790 MHz 13801 MHz 63 100 % 399.86 W 400.03 W
263 2026/10/09 08:53:12.615 399.91 W 2790 MHz 13801 MHz 63 100 % 399.11 W 399.91 W
264 2026/10/09 08:53:13.615 400.05 W 2790 MHz 13801 MHz 63 100 % 399.89 W 400.05 W
265 2026/10/09 08:53:14.615 400.05 W 2790 MHz 13801 MHz 63 100 % 401.52 W 400.05 W
266 2026/10/09 08:53:15.615 400.11 W 2790 MHz 13801 MHz 64 100 % 400.19 W 400.11 W
267 2026/10/09 08:53:16.616 399.98 W 2790 MHz 13801 MHz 64 100 % 399.78 W 399.98 W
268 2026/10/09 08:53:17.616 399.93 W 2790 MHz 13801 MHz 64 100 % 399.31 W 399.93 W
269 2026/10/09 08:53:18.616 399.98 W 2790 MHz 13801 MHz 64 100 % 400.01 W 399.98 W
270 2026/10/09 08:53:19.617 400.02 W 2790 MHz 13801 MHz 64 100 % 400.84 W 400.02 W
271 2026/10/09 08:53:20.617 399.96 W 2790 MHz 13801 MHz 64 100 % 399.92 W 399.96 W
272 2026/10/09 08:53:21.617 399.99 W 2790 MHz 13801 MHz 64 100 % 399.91 W 399.99 W
273 2026/10/09 08:53:22.617 399.95 W 2790 MHz 13801 MHz 64 100 % 399.58 W 399.95 W
274 2026/10/09 08:53:23.618 400.03 W 2790 MHz 13801 MHz 64 100 % 399.98 W 400.03 W
275 2026/10/09 08:53:24.618 400.00 W 2790 MHz 13801 MHz 64 100 % 400.40 W 400.00 W
276 2026/10/09 08:53:25.618 400.02 W 2790 MHz 13801 MHz 64 100 % 399.90 W 400.02 W
277 2026/10/09 08:53:26.618 399.93 W 2790 MHz 13801 MHz 64 100 % 399.24 W 399.93 W
278 2026/10/09 08:53:27.619 400.01 W 2790 MHz 13801 MHz 64 100 % 399.62 W 400.01 W
279 2026/10/09 08:53:28.619 400.04 W 2790 MHz 13801 MHz 64 100 % 400.83 W 400.04 W
280 2026/10/09 08:53:29.620 400.06 W 2790 MHz 13801 MHz 64 100 % 400.39 W 400.06 W
281 2026/10/09 08:53:30.620 399.98 W 2790 MHz 13801 MHz 64 100 % 399.82 W 399.98 W
282 2026/10/09 08:53:31.620 399.92 W 2790 MHz 13801 MHz 64 100 % 399.18 W 399.92 W
283 2026/10/09 08:53:32.620 399.93 W 2782 MHz 13801 MHz 64 100 % 399.38 W 399.93 W
284 2026/10/09 08:53:33.621 400.01 W 2782 MHz 13801 MHz 64 100 % 401.03 W 400.01 W
285 2026/10/09 08:53:34.621 399.97 W 2782 MHz 13801 MHz 64 100 % 400.28 W 399.97 W
286 2026/10/09 08:53:35.621 400.02 W 2782 MHz 13801 MHz 64 100 % 399.84 W 400.02 W
287 2026/10/09 08:53:36.621 399.90 W 2782 MHz 13801 MHz 64 100 % 399.15 W 399.90 W
288 2026/10/09 08:53:37.622 399.99 W 2782 MHz 13801 MHz 64 100 % 399.93 W 399.99 W
289 2026/10/09 08:53:38.622 400.00 W 2782 MHz 13801 MHz 64 100 % 400.80 W 400.00 W
290 2026/10/09 08:53:39.622 399.97 W 2782 MHz 13801 MHz 64 100 % 399.98 W 399.97 W
291 2026/10/09 08:53:40.623 400.00 W 2782 MHz 14001 MHz 61 100 % 399.83 W 400.00 W
292 2026/10/09 08:53:41.623 112.43 W 2865 MHz 14001 MHz 58 0 % 106.84 W 112.43 W
293 2026/10/09 08:53:42.623 108.42 W 2865 MHz 14001 MHz 58 0 % 106.38 W 108.42 W
294 2026/10/09 08:53:43.624 90.36 W 577 MHz 7001 MHz 56 0 % 90.36 W 90.36 W
295 2026/10/09 08:53:44.624 48.02 W 360 MHz 7001 MHz 55 0 % 48.02 W 48.02 W
296 2026/10/09 08:53:45.624 46.67 W 232 MHz 7001 MHz 54 0 % 46.67 W 46.67 W
297 2026/10/09 08:53:46.624 46.34 W 180 MHz 7001 MHz 54 0 % 46.01 W 46.34 W
298 2026/10/09 08:53:47.625 45.69 W 180 MHz 7001 MHz 53 0 % 45.38 W 45.69 W
299 2026/10/09 08:53:48.625 36.56 W 180 MHz 810 MHz 52 0 % 36.56 W 36.56 W
300 2026/10/09 08:53:49.625 35.26 W 180 MHz 405 MHz 52 0 % 33.96 W 35.26 W
301 2026/10/09 08:53:50.626 32.47 W 180 MHz 405 MHz 51 0 % 32.47 W 32.47 W
302 2026/10/09 08:53:51.626 46.52 W 2400 MHz 13801 MHz 52 0 % 73.77 W 46.52 W
303 2026/10/09 08:53:52.626 73.65 W 2400 MHz 13801 MHz 52 0 % 73.65 W 73.65 W
304 2026/10/09 08:53:53.626 92.43 W 2482 MHz 13801 MHz 52 0 % 73.62 W 92.43 W
305 2026/10/09 08:53:54.627 122.80 W 2407 MHz 13801 MHz 58 100 % 407.76 W 122.80 W
306 2026/10/09 08:53:55.627 354.35 W 2857 MHz 13801 MHz 59 100 % 412.33 W 354.35 W
307 2026/10/09 08:53:56.627 408.27 W 2850 MHz 13801 MHz 59 100 % 399.02 W 408.27 W
308 2026/10/09 08:53:57.628 399.88 W 2835 MHz 13801 MHz 60 99 % 398.39 W 399.88 W
309 2026/10/09 08:53:58.628 400.10 W 2835 MHz 13801 MHz 60 100 % 399.71 W 400.10 W
310 2026/10/09 08:53:59.628 400.01 W 2827 MHz 13801 MHz 60 100 % 399.96 W 400.01 W
311 2026/10/09 08:54:00.628 400.01 W 2827 MHz 13801 MHz 60 100 % 400.04 W 400.01 W
312 2026/10/09 08:54:01.629 399.99 W 2827 MHz 13801 MHz 61 100 % 400.79 W 399.99 W
313 2026/10/09 08:54:02.629 400.06 W 2827 MHz 13801 MHz 61 100 % 400.58 W 400.06 W
314 2026/10/09 08:54:03.629 399.98 W 2827 MHz 13801 MHz 61 100 % 400.21 W 399.98 W
315 2026/10/09 08:54:04.629 400.00 W 2827 MHz 13801 MHz 61 100 % 399.95 W 400.00 W
316 2026/10/09 08:54:05.630 399.99 W 2827 MHz 13801 MHz 61 100 % 399.81 W 399.99 W
317 2026/10/09 08:54:06.630 399.97 W 2827 MHz 13801 MHz 62 100 % 399.88 W 399.97 W
318 2026/10/09 08:54:07.630 399.91 W 2827 MHz 13801 MHz 62 100 % 399.19 W 399.91 W
319 2026/10/09 08:54:08.631 399.95 W 2820 MHz 13801 MHz 62 100 % 399.60 W 399.95 W
320 2026/10/09 08:54:09.631 399.99 W 2820 MHz 13801 MHz 62 100 % 399.57 W 399.99 W
321 2026/10/09 08:54:10.631 400.03 W 2820 MHz 13801 MHz 62 100 % 399.94 W 400.03 W
322 2026/10/09 08:54:11.631 400.01 W 2820 MHz 13801 MHz 62 100 % 400.34 W 400.01 W
323 2026/10/09 08:54:12.632 400.01 W 2820 MHz 13801 MHz 62 100 % 400.70 W 400.01 W
324 2026/10/09 08:54:13.632 400.00 W 2820 MHz 13801 MHz 63 100 % 400.55 W 400.00 W
325 2026/10/09 08:54:14.632 400.02 W 2820 MHz 13801 MHz 63 100 % 400.19 W 400.02 W
326 2026/10/09 08:54:15.632 399.99 W 2820 MHz 13801 MHz 63 100 % 399.96 W 399.99 W
327 2026/10/09 08:54:16.633 400.00 W 2820 MHz 13801 MHz 63 100 % 399.82 W 400.00 W
328 2026/10/09 08:54:17.633 399.98 W 2820 MHz 13801 MHz 63 100 % 399.97 W 399.98 W
329 2026/10/09 08:54:18.633 399.93 W 2805 MHz 13801 MHz 63 100 % 399.30 W 399.93 W
330 2026/10/09 08:54:19.634 399.95 W 2805 MHz 13801 MHz 63 100 % 399.61 W 399.95 W
331 2026/10/09 08:54:20.634 399.98 W 2797 MHz 13801 MHz 63 100 % 399.80 W 399.98 W
332 2026/10/09 08:54:21.634 400.01 W 2805 MHz 13801 MHz 63 100 % 399.99 W 400.01 W
333 2026/10/09 08:54:22.634 400.00 W 2797 MHz 13801 MHz 64 100 % 401.08 W 400.00 W
334 2026/10/09 08:54:23.635 400.00 W 2797 MHz 13801 MHz 64 100 % 400.96 W 400.00 W
335 2026/10/09 08:54:24.635 400.08 W 2797 MHz 13801 MHz 64 100 % 400.61 W 400.08 W
336 2026/10/09 08:54:25.635 399.97 W 2797 MHz 13801 MHz 64 100 % 400.82 W 399.97 W
337 2026/10/09 08:54:26.635 400.07 W 2797 MHz 13801 MHz 64 100 % 399.80 W 400.07 W
338 2026/10/09 08:54:27.636 400.00 W 2797 MHz 13801 MHz 64 100 % 399.73 W 400.00 W
339 2026/10/09 08:54:28.636 399.98 W 2797 MHz 13801 MHz 64 100 % 399.93 W 399.98 W
340 2026/10/09 08:54:29.636 399.93 W 2797 MHz 13801 MHz 64 100 % 399.40 W 399.93 W
341 2026/10/09 08:54:30.637 399.96 W 2797 MHz 13801 MHz 64 100 % 399.62 W 399.96 W
342 2026/10/09 08:54:31.637 400.00 W 2797 MHz 13801 MHz 64 100 % 399.75 W 400.00 W
343 2026/10/09 08:54:32.637 399.99 W 2797 MHz 13801 MHz 64 100 % 399.96 W 399.99 W
344 2026/10/09 08:54:33.637 400.02 W 2790 MHz 13801 MHz 64 100 % 401.04 W 400.02 W
345 2026/10/09 08:54:34.638 400.08 W 2790 MHz 13801 MHz 64 100 % 400.73 W 400.08 W
346 2026/10/09 08:54:35.638 400.06 W 2790 MHz 13801 MHz 64 100 % 400.51 W 400.06 W
347 2026/10/09 08:54:36.638 399.98 W 2790 MHz 13801 MHz 64 100 % 400.03 W 399.98 W
348 2026/10/09 08:54:37.639 399.99 W 2790 MHz 13801 MHz 64 100 % 399.79 W 399.99 W
349 2026/10/09 08:54:38.639 399.99 W 2790 MHz 13801 MHz 64 100 % 399.79 W 399.99 W
350 2026/10/09 08:54:39.639 399.97 W 2790 MHz 13801 MHz 64 100 % 399.93 W 399.97 W
351 2026/10/09 08:54:40.639 399.92 W 2790 MHz 13801 MHz 64 100 % 399.27 W 399.92 W
352 2026/10/09 08:54:41.640 400.06 W 2790 MHz 13801 MHz 65 100 % 400.46 W 400.06 W
353 2026/10/09 08:54:42.640 399.98 W 2790 MHz 13801 MHz 65 100 % 400.18 W 399.98 W
354 2026/10/09 08:54:43.640 400.01 W 2790 MHz 13801 MHz 65 100 % 399.99 W 400.01 W
355 2026/10/09 08:54:44.641 399.99 W 2790 MHz 13801 MHz 65 100 % 399.82 W 399.99 W
356 2026/10/09 08:54:45.641 400.01 W 2790 MHz 13801 MHz 65 100 % 399.95 W 400.01 W
357 2026/10/09 08:54:46.641 399.91 W 2790 MHz 13801 MHz 65 100 % 399.27 W 399.91 W
358 2026/10/09 08:54:47.641 399.96 W 2790 MHz 13801 MHz 65 100 % 399.65 W 399.96 W
359 2026/10/09 08:54:48.642 399.99 W 2790 MHz 13801 MHz 65 100 % 399.80 W 399.99 W
360 2026/10/09 08:54:49.642 400.00 W 2790 MHz 13801 MHz 65 100 % 400.01 W 400.00 W
361 2026/10/09 08:54:50.642 400.01 W 2790 MHz 13801 MHz 65 100 % 400.77 W 400.01 W
362 2026/10/09 08:54:51.642 400.00 W 2790 MHz 13801 MHz 65 100 % 400.62 W 400.00 W
363 2026/10/09 08:54:52.642 399.98 W 2790 MHz 13801 MHz 65 100 % 400.50 W 399.98 W
364 2026/10/09 08:54:53.643 400.03 W 2790 MHz 13801 MHz 65 100 % 400.12 W 400.03 W
365 2026/10/09 08:54:54.643 399.99 W 2790 MHz 13801 MHz 65 100 % 399.88 W 399.99 W
366 2026/10/09 08:54:55.643 399.98 W 2790 MHz 13801 MHz 65 100 % 399.77 W 399.98 W
367 2026/10/09 08:54:56.643 209.80 W 2865 MHz 14001 MHz 59 0 % 108.06 W 209.80 W
368 2026/10/09 08:54:57.644 110.51 W 2865 MHz 14001 MHz 59 0 % 107.43 W 110.51 W
369 2026/10/09 08:54:58.644 92.15 W 1695 MHz 14001 MHz 57 0 % 92.15 W 92.15 W
370 2026/10/09 08:54:59.644 70.78 W 397 MHz 7001 MHz 56 0 % 49.40 W 70.78 W
371 2026/10/09 08:55:00.644 46.64 W 247 MHz 7001 MHz 55 0 % 46.64 W 46.64 W
372 2026/10/09 08:55:01.644 46.37 W 172 MHz 7001 MHz 54 0 % 46.11 W 46.37 W
373 2026/10/09 08:55:02.644 37.26 W 180 MHz 810 MHz 53 0 % 37.26 W 37.26 W
374 2026/10/09 08:55:03.645 35.77 W 180 MHz 405 MHz 53 0 % 34.28 W 35.77 W
375 2026/10/09 08:55:04.645 33.59 W 180 MHz 405 MHz 52 0 % 33.59 W 33.59 W
376 2026/10/09 08:55:05.645 33.42 W 180 MHz 405 MHz 52 0 % 33.25 W 33.42 W
377 2026/10/09 08:55:06.645 43.17 W 2430 MHz 13801 MHz 52 0 % 75.30 W 43.17 W
378 2026/10/09 08:55:07.646 74.99 W 2400 MHz 13801 MHz 52 0 % 74.78 W 74.99 W
379 2026/10/09 08:55:08.646 94.98 W 2482 MHz 13801 MHz 54 38 % 149.76 W 94.98 W
380 2026/10/09 08:55:09.646 74.33 W 2400 MHz 13801 MHz 52 0 % 73.71 W 74.33 W
381 2026/10/09 08:55:10.646 287.45 W 2857 MHz 13801 MHz 60 100 % 407.06 W 287.45 W
382 2026/10/09 08:55:11.646 406.21 W 2857 MHz 13801 MHz 60 100 % 406.74 W 406.21 W
383 2026/10/09 08:55:12.647 406.77 W 2857 MHz 13801 MHz 60 100 % 405.18 W 406.77 W
384 2026/10/09 08:55:13.647 401.04 W 2842 MHz 13801 MHz 60 100 % 399.33 W 401.04 W
385 2026/10/09 08:55:14.647 400.01 W 2842 MHz 13801 MHz 61 100 % 399.55 W 400.01 W
386 2026/10/09 08:55:15.647 399.98 W 2842 MHz 13801 MHz 61 100 % 399.75 W 399.98 W
387 2026/10/09 08:55:16.647 400.01 W 2842 MHz 13801 MHz 61 100 % 399.92 W 400.01 W
388 2026/10/09 08:55:17.648 400.00 W 2835 MHz 13801 MHz 61 100 % 400.90 W 400.00 W
389 2026/10/09 08:55:18.648 399.98 W 2835 MHz 13801 MHz 62 100 % 400.49 W 399.98 W
390 2026/10/09 08:55:19.648 400.03 W 2835 MHz 13801 MHz 62 100 % 400.31 W 400.03 W
391 2026/10/09 08:55:20.649 400.02 W 2835 MHz 13801 MHz 62 100 % 399.97 W 400.02 W
392 2026/10/09 08:55:21.649 399.98 W 2835 MHz 13801 MHz 62 100 % 399.74 W 399.98 W
393 2026/10/09 08:55:22.649 399.99 W 2835 MHz 13801 MHz 62 100 % 399.75 W 399.99 W
394 2026/10/09 08:55:23.649 399.98 W 2835 MHz 13801 MHz 62 100 % 399.95 W 399.98 W
395 2026/10/09 08:55:24.649 399.87 W 2835 MHz 13801 MHz 63 100 % 398.90 W 399.87 W
396 2026/10/09 08:55:25.649 399.94 W 2835 MHz 13801 MHz 63 100 % 399.41 W 399.94 W
397 2026/10/09 08:55:26.650 399.96 W 2835 MHz 13801 MHz 63 100 % 399.66 W 399.96 W
398 2026/10/09 08:55:27.650 400.03 W 2820 MHz 13801 MHz 63 100 % 399.95 W 400.03 W
399 2026/10/09 08:55:28.650 400.02 W 2820 MHz 13801 MHz 63 100 % 401.67 W 400.02 W
400 2026/10/09 08:55:29.650 400.15 W 2820 MHz 13801 MHz 63 100 % 401.16 W 400.15 W
401 2026/10/09 08:55:30.651 399.99 W 2812 MHz 13801 MHz 63 100 % 400.79 W 399.99 W
402 2026/10/09 08:55:31.651 400.05 W 2812 MHz 13801 MHz 63 100 % 400.28 W 400.05 W
403 2026/10/09 08:55:32.652 400.02 W 2812 MHz 13801 MHz 63 100 % 400.06 W 400.02 W
404 2026/10/09 08:55:33.652 399.98 W 2812 MHz 13801 MHz 64 100 % 399.83 W 399.98 W
405 2026/10/09 08:55:34.652 399.99 W 2812 MHz 13801 MHz 64 100 % 399.92 W 399.99 W
406 2026/10/09 08:55:35.652 399.93 W 2812 MHz 13801 MHz 64 100 % 399.44 W 399.93 W
407 2026/10/09 08:55:36.653 399.95 W 2812 MHz 13801 MHz 64 100 % 399.47 W 399.95 W
408 2026/10/09 08:55:37.653 398.44 W 2820 MHz 13801 MHz 63 92 % 383.20 W 398.44 W
409 2026/10/09 08:55:38.653 399.99 W 2812 MHz 13801 MHz 64 100 % 399.86 W 399.99 W
410 2026/10/09 08:55:39.653 400.00 W 2812 MHz 13801 MHz 64 100 % 399.90 W 400.00 W
411 2026/10/09 08:55:40.654 400.01 W 2812 MHz 13801 MHz 64 100 % 400.94 W 400.01 W
412 2026/10/09 08:55:41.654 400.08 W 2812 MHz 13801 MHz 64 100 % 401.22 W 400.08 W
413 2026/10/09 08:55:42.654 399.98 W 2805 MHz 13801 MHz 64 100 % 400.27 W 399.98 W
414 2026/10/09 08:55:43.655 400.01 W 2805 MHz 13801 MHz 64 100 % 400.05 W 400.01 W
415 2026/10/09 08:55:44.655 399.99 W 2805 MHz 13801 MHz 64 100 % 399.76 W 399.99 W
416 2026/10/09 08:55:45.655 400.00 W 2805 MHz 13801 MHz 64 100 % 399.87 W 400.00 W
417 2026/10/09 08:55:46.655 400.01 W 2805 MHz 13801 MHz 64 100 % 400.08 W 400.01 W
418 2026/10/09 08:55:47.656 399.89 W 2805 MHz 13801 MHz 65 100 % 399.21 W 399.89 W
419 2026/10/09 08:55:48.656 399.95 W 2805 MHz 13801 MHz 65 100 % 399.65 W 399.95 W
420 2026/10/09 08:55:49.656 400.01 W 2805 MHz 13801 MHz 65 100 % 399.85 W 400.01 W
421 2026/10/09 08:55:50.656 399.99 W 2805 MHz 13801 MHz 65 100 % 399.94 W 399.99 W
422 2026/10/09 08:55:51.657 400.00 W 2805 MHz 13801 MHz 65 100 % 400.89 W 400.00 W
423 2026/10/09 08:55:52.657 399.99 W 2805 MHz 13801 MHz 65 100 % 400.77 W 399.99 W
424 2026/10/09 08:55:53.657 400.05 W 2805 MHz 13801 MHz 65 100 % 400.47 W 400.05 W
425 2026/10/09 08:55:54.657 399.98 W 2805 MHz 13801 MHz 65 100 % 400.33 W 399.98 W
426 2026/10/09 08:55:55.658 400.02 W 2805 MHz 13801 MHz 65 100 % 399.74 W 400.02 W
427 2026/10/09 08:55:56.658 399.97 W 2805 MHz 13801 MHz 65 100 % 399.88 W 399.97 W
428 2026/10/09 08:55:57.658 400.00 W 2805 MHz 13801 MHz 65 100 % 399.96 W 400.00 W
429 2026/10/09 08:55:58.658 399.93 W 2805 MHz 13801 MHz 65 100 % 399.36 W 399.93 W
430 2026/10/09 08:55:59.659 399.95 W 2805 MHz 13801 MHz 65 100 % 399.69 W 399.95 W
431 2026/10/09 08:56:00.659 399.99 W 2805 MHz 13801 MHz 65 100 % 399.87 W 399.99 W
432 2026/10/09 08:56:01.659 399.98 W 2805 MHz 13801 MHz 65 100 % 399.92 W 399.98 W
433 2026/10/09 08:56:02.659 400.02 W 2805 MHz 13801 MHz 65 100 % 400.90 W 400.02 W
434 2026/10/09 08:56:03.660 399.99 W 2805 MHz 13801 MHz 65 100 % 400.67 W 399.99 W
435 2026/10/09 08:56:04.660 399.99 W 2805 MHz 13801 MHz 65 100 % 401.25 W 399.99 W
436 2026/10/09 08:56:05.660 399.99 W 2797 MHz 13801 MHz 65 100 % 400.14 W 399.99 W
437 2026/10/09 08:56:06.660 399.98 W 2797 MHz 13801 MHz 65 100 % 400.00 W 399.98 W
438 2026/10/09 08:56:07.661 399.99 W 2797 MHz 13801 MHz 65 100 % 399.78 W 399.99 W
439 2026/10/09 08:56:08.661 400.00 W 2797 MHz 13801 MHz 65 100 % 399.79 W 400.00 W
440 2026/10/09 08:56:09.661 399.89 W 2797 MHz 13801 MHz 65 100 % 399.13 W 399.89 W
441 2026/10/09 08:56:10.661 399.89 W 2797 MHz 13801 MHz 65 100 % 399.05 W 399.89 W
442 2026/10/09 08:56:11.662 316.78 W 2865 MHz 14001 MHz 60 0 % 113.38 W 316.78 W
443 2026/10/09 08:56:12.662 110.98 W 2865 MHz 14001 MHz 59 0 % 109.26 W 110.98 W
444 2026/10/09 08:56:13.662 87.82 W 780 MHz 14001 MHz 57 0 % 87.82 W 87.82 W
445 2026/10/09 08:56:14.662 48.15 W 375 MHz 810 MHz 56 0 % 48.15 W 48.15 W
446 2026/10/09 08:56:15.663 43.06 W 217 MHz 810 MHz 55 0 % 37.98 W 43.06 W
447 2026/10/09 08:56:16.663 36.42 W 180 MHz 405 MHz 54 0 % 34.86 W 36.42 W
448 2026/10/09 08:56:17.663 34.40 W 180 MHz 405 MHz 53 0 % 33.94 W 34.40 W
449 2026/10/09 08:56:18.663 33.50 W 180 MHz 405 MHz 53 0 % 33.50 W 33.50 W
450 2026/10/09 08:56:19.664 33.48 W 180 MHz 405 MHz 52 0 % 33.47 W 33.48 W
451 2026/10/09 08:56:20.664 33.20 W 180 MHz 405 MHz 52 0 % 32.94 W 33.20 W
452 2026/10/09 08:56:21.664 32.78 W 180 MHz 405 MHz 51 0 % 32.78 W 32.78 W
453 2026/10/09 08:56:22.664 69.15 W 2400 MHz 13801 MHz 52 0 % 76.14 W 69.15 W
454 2026/10/09 08:56:23.664 76.12 W 2400 MHz 13801 MHz 52 0 % 75.99 W 76.12 W
455 2026/10/09 08:56:24.664 96.16 W 2400 MHz 13801 MHz 52 0 % 75.54 W 96.16 W
456 2026/10/09 08:56:25.665 168.46 W 2865 MHz 13801 MHz 56 57 % 254.65 W 168.46 W
457 2026/10/09 08:56:26.665 392.88 W 2857 MHz 13801 MHz 59 100 % 405.53 W 392.88 W
458 2026/10/09 08:56:27.665 407.07 W 2857 MHz 13801 MHz 60 100 % 406.68 W 407.07 W
459 2026/10/09 08:56:28.665 402.69 W 2842 MHz 13801 MHz 60 100 % 400.92 W 402.69 W
460 2026/10/09 08:56:29.665 400.06 W 2842 MHz 13801 MHz 60 100 % 400.52 W 400.06 W
461 2026/10/09 08:56:30.665 399.98 W 2842 MHz 13801 MHz 61 100 % 400.26 W 399.98 W
462 2026/10/09 08:56:31.666 400.02 W 2842 MHz 13801 MHz 61 100 % 399.98 W 400.02 W
463 2026/10/09 08:56:32.666 400.00 W 2842 MHz 13801 MHz 61 100 % 399.81 W 400.00 W
464 2026/10/09 08:56:33.666 400.01 W 2842 MHz 13801 MHz 61 100 % 399.87 W 400.01 W
465 2026/10/09 08:56:34.666 399.89 W 2842 MHz 13801 MHz 61 100 % 399.01 W 399.89 W
466 2026/10/09 08:56:35.666 399.99 W 2842 MHz 13801 MHz 62 100 % 399.20 W 399.99 W
467 2026/10/09 08:56:36.667 399.96 W 2835 MHz 13801 MHz 62 99 % 398.88 W 399.96 W
468 2026/10/09 08:56:37.667 399.97 W 2835 MHz 13801 MHz 62 100 % 399.73 W 399.97 W
469 2026/10/09 08:56:38.667 400.02 W 2835 MHz 13801 MHz 62 100 % 399.87 W 400.02 W
470 2026/10/09 08:56:39.667 400.01 W 2835 MHz 13801 MHz 62 100 % 400.96 W 400.01 W
471 2026/10/09 08:56:40.668 400.08 W 2835 MHz 13801 MHz 62 100 % 401.07 W 400.08 W
472 2026/10/09 08:56:41.668 399.97 W 2827 MHz 13801 MHz 62 100 % 400.21 W 399.97 W
473 2026/10/09 08:56:42.668 400.01 W 2820 MHz 13801 MHz 62 100 % 400.02 W 400.01 W
474 2026/10/09 08:56:43.668 399.99 W 2820 MHz 13801 MHz 63 100 % 399.85 W 399.99 W
475 2026/10/09 08:56:44.668 399.99 W 2820 MHz 13801 MHz 63 100 % 399.92 W 399.99 W
476 2026/10/09 08:56:45.668 400.00 W 2820 MHz 13801 MHz 63 100 % 400.10 W 400.00 W
477 2026/10/09 08:56:46.668 399.90 W 2820 MHz 13801 MHz 63 100 % 399.25 W 399.90 W
478 2026/10/09 08:56:47.669 399.95 W 2820 MHz 13801 MHz 63 100 % 399.56 W 399.95 W
479 2026/10/09 08:56:48.669 399.97 W 2820 MHz 13801 MHz 63 100 % 399.80 W 399.97 W
480 2026/10/09 08:56:49.669 400.02 W 2820 MHz 13801 MHz 63 100 % 400.00 W 400.02 W
481 2026/10/09 08:56:50.669 400.01 W 2812 MHz 13801 MHz 63 100 % 401.05 W 400.01 W
482 2026/10/09 08:56:51.669 400.09 W 2812 MHz 13801 MHz 63 100 % 400.88 W 400.09 W
483 2026/10/09 08:56:52.669 399.97 W 2812 MHz 13801 MHz 64 100 % 400.56 W 399.97 W
484 2026/10/09 08:56:53.670 399.99 W 2812 MHz 13801 MHz 64 100 % 400.32 W 399.99 W
485 2026/10/09 08:56:54.670 400.01 W 2812 MHz 13801 MHz 64 100 % 400.09 W 400.01 W
486 2026/10/09 08:56:55.670 399.99 W 2812 MHz 13801 MHz 64 100 % 399.79 W 399.99 W
487 2026/10/09 08:56:56.670 400.01 W 2812 MHz 13801 MHz 64 100 % 399.98 W 400.01 W
488 2026/10/09 08:56:57.670 399.92 W 2812 MHz 13801 MHz 64 100 % 399.34 W 399.92 W
489 2026/10/09 08:56:58.671 399.95 W 2812 MHz 13801 MHz 64 100 % 399.57 W 399.95 W
490 2026/10/09 08:56:59.671 399.98 W 2812 MHz 13801 MHz 64 100 % 399.78 W 399.98 W
491 2026/10/09 08:57:00.671 400.01 W 2812 MHz 13801 MHz 64 100 % 399.99 W 400.01 W
492 2026/10/09 08:57:01.671 400.02 W 2812 MHz 13801 MHz 64 100 % 400.07 W 400.02 W
493 2026/10/09 08:57:02.671 399.97 W 2812 MHz 13801 MHz 64 100 % 400.85 W 399.97 W
494 2026/10/09 08:57:03.671 400.06 W 2812 MHz 13801 MHz 64 100 % 400.47 W 400.06 W
495 2026/10/09 08:57:04.671 400.02 W 2812 MHz 13801 MHz 64 100 % 400.22 W 400.02 W
496 2026/10/09 08:57:05.672 400.01 W 2805 MHz 13801 MHz 64 100 % 400.08 W 400.01 W
497 2026/10/09 08:57:06.672 400.00 W 2805 MHz 13801 MHz 64 100 % 399.86 W 400.00 W
498 2026/10/09 08:57:07.672 400.00 W 2805 MHz 13801 MHz 64 100 % 399.81 W 400.00 W
499 2026/10/09 08:57:08.672 399.90 W 2805 MHz 13801 MHz 64 100 % 399.06 W 399.90 W
500 2026/10/09 08:57:09.672 399.93 W 2805 MHz 13801 MHz 64 100 % 399.32 W 399.93 W
501 2026/10/09 08:57:10.673 400.02 W 2805 MHz 13801 MHz 64 100 % 399.64 W 400.02 W
502 2026/10/09 08:57:11.673 400.03 W 2805 MHz 13801 MHz 65 100 % 399.99 W 400.03 W
503 2026/10/09 08:57:12.673 400.00 W 2805 MHz 13801 MHz 65 100 % 400.07 W 400.00 W
504 2026/10/09 08:57:13.673 400.00 W 2805 MHz 13801 MHz 65 100 % 400.76 W 400.00 W
505 2026/10/09 08:57:14.673 399.98 W 2805 MHz 13801 MHz 65 100 % 400.48 W 399.98 W
506 2026/10/09 08:57:15.673 399.98 W 2805 MHz 13801 MHz 65 100 % 400.18 W 399.98 W
507 2026/10/09 08:57:16.674 400.01 W 2805 MHz 13801 MHz 65 100 % 400.02 W 400.01 W
508 2026/10/09 08:57:17.674 399.98 W 2805 MHz 13801 MHz 65 100 % 399.79 W 399.98 W
509 2026/10/09 08:57:18.674 399.98 W 2805 MHz 13801 MHz 65 100 % 399.90 W 399.98 W
510 2026/10/09 08:57:19.674 399.92 W 2805 MHz 13801 MHz 65 100 % 399.18 W 399.92 W
511 2026/10/09 08:57:20.675 399.93 W 2805 MHz 13801 MHz 65 100 % 399.36 W 399.93 W
512 2026/10/09 08:57:21.675 399.96 W 2805 MHz 13801 MHz 65 100 % 399.70 W 399.96 W
513 2026/10/09 08:57:22.675 400.02 W 2812 MHz 13801 MHz 65 100 % 402.14 W 400.02 W
514 2026/10/09 08:57:23.675 400.18 W 2805 MHz 13801 MHz 65 100 % 399.94 W 400.18 W
515 2026/10/09 08:57:24.675 401.41 W 2805 MHz 13801 MHz 65 100 % 399.93 W 401.41 W
516 2026/10/09 08:57:25.676 400.00 W 2805 MHz 13801 MHz 65 100 % 400.84 W 400.00 W
517 2026/10/09 08:57:26.676 400.06 W 2805 MHz 13801 MHz 65 100 % 400.58 W 400.06 W
518 2026/10/09 08:57:27.676 141.76 W 2865 MHz 14001 MHz 59 0 % 108.36 W 141.76 W
519 2026/10/09 08:57:28.676 112.13 W 2865 MHz 14001 MHz 59 0 % 107.61 W 112.13 W
520 2026/10/09 08:57:29.677 95.60 W 1335 MHz 7001 MHz 56 0 % 95.60 W 95.60 W
521 2026/10/09 08:57:30.677 48.05 W 382 MHz 7001 MHz 55 0 % 48.05 W 48.05 W
522 2026/10/09 08:57:31.677 47.40 W 240 MHz 7001 MHz 55 0 % 46.76 W 47.40 W
523 2026/10/09 08:57:32.677 45.82 W 180 MHz 7001 MHz 54 0 % 45.82 W 45.82 W
524 2026/10/09 08:57:33.677 45.31 W 180 MHz 7001 MHz 53 0 % 44.81 W 45.31 W
525 2026/10/09 08:57:34.678 36.31 W 180 MHz 810 MHz 53 0 % 36.31 W 36.31 W
526 2026/10/09 08:57:35.678 34.99 W 180 MHz 405 MHz 52 0 % 33.66 W 34.99 W
527 2026/10/09 08:57:36.678 33.01 W 180 MHz 405 MHz 52 0 % 32.36 W 33.01 W
528 2026/10/09 08:57:37.678 45.89 W 2400 MHz 13801 MHz 52 0 % 76.00 W 45.89 W
529 2026/10/09 08:57:38.679 75.78 W 2400 MHz 13801 MHz 52 0 % 75.43 W 75.78 W
530 2026/10/09 08:57:39.679 95.69 W 2467 MHz 13801 MHz 52 27 % 75.46 W 95.69 W
531 2026/10/09 08:57:40.679 83.62 W 2437 MHz 13801 MHz 51 35 % 168.80 W 83.62 W
532 2026/10/09 08:57:41.679 338.15 W 2857 MHz 13801 MHz 59 100 % 413.75 W 338.15 W
533 2026/10/09 08:57:42.679 409.82 W 2835 MHz 13801 MHz 60 100 % 400.73 W 409.82 W
534 2026/10/09 08:57:43.680 400.06 W 2827 MHz 13801 MHz 60 100 % 400.27 W 400.06 W
535 2026/10/09 08:57:44.680 399.99 W 2827 MHz 13801 MHz 60 100 % 399.84 W 399.99 W
536 2026/10/09 08:57:45.680 399.98 W 2827 MHz 13801 MHz 60 100 % 399.78 W 399.98 W
537 2026/10/09 08:57:46.680 400.01 W 2827 MHz 13801 MHz 61 100 % 399.81 W 400.01 W
538 2026/10/09 08:57:47.681 399.89 W 2827 MHz 13801 MHz 61 100 % 399.08 W 399.89 W
539 2026/10/09 08:57:48.681 400.01 W 2820 MHz 13801 MHz 61 100 % 399.26 W 400.01 W
540 2026/10/09 08:57:49.681 400.01 W 2820 MHz 13801 MHz 61 100 % 399.54 W 400.01 W
541 2026/10/09 08:57:50.681 400.02 W 2820 MHz 13801 MHz 61 100 % 399.81 W 400.02 W
542 2026/10/09 08:57:51.681 400.03 W 2820 MHz 13801 MHz 62 100 % 400.13 W 400.03 W
543 2026/10/09 08:57:52.682 400.00 W 2820 MHz 13801 MHz 62 100 % 400.74 W 400.00 W
544 2026/10/09 08:57:53.682 400.07 W 2820 MHz 13801 MHz 62 100 % 400.54 W 400.07 W
545 2026/10/09 08:57:54.682 399.97 W 2820 MHz 13801 MHz 62 100 % 400.25 W 399.97 W
546 2026/10/09 08:57:55.682 400.01 W 2820 MHz 13801 MHz 62 100 % 399.99 W 400.01 W
547 2026/10/09 08:57:56.682 400.00 W 2820 MHz 13801 MHz 62 100 % 399.81 W 400.00 W
548 2026/10/09 08:57:57.683 399.99 W 2820 MHz 13801 MHz 62 100 % 399.89 W 399.99 W
549 2026/10/09 08:57:58.683 399.91 W 2820 MHz 13801 MHz 63 100 % 399.17 W 399.91 W
550 2026/10/09 08:57:59.683 400.01 W 2805 MHz 13801 MHz 63 100 % 399.44 W 400.01 W
551 2026/10/09 08:58:00.683 399.98 W 2805 MHz 13801 MHz 63 100 % 399.78 W 399.98 W
552 2026/10/09 08:58:01.684 399.98 W 2805 MHz 13801 MHz 63 100 % 399.98 W 399.98 W
553 2026/10/09 08:58:02.684 400.01 W 2797 MHz 13801 MHz 63 100 % 400.05 W 400.01 W
554 2026/10/09 08:58:03.684 400.00 W 2805 MHz 13801 MHz 63 100 % 401.53 W 400.00 W
555 2026/10/09 08:58:04.684 399.97 W 2797 MHz 13801 MHz 63 100 % 400.49 W 399.97 W
556 2026/10/09 08:58:05.684 400.03 W 2797 MHz 13801 MHz 63 100 % 400.13 W 400.03 W
557 2026/10/09 08:58:06.685 399.99 W 2797 MHz 13801 MHz 63 100 % 400.01 W 399.99 W
558 2026/10/09 08:58:07.685 399.98 W 2797 MHz 13801 MHz 63 100 % 399.87 W 399.98 W
559 2026/10/09 08:58:08.685 400.00 W 2805 MHz 13801 MHz 63 100 % 399.94 W 400.00 W
560 2026/10/09 08:58:09.685 399.92 W 2797 MHz 13801 MHz 63 100 % 399.19 W 399.92 W
561 2026/10/09 08:58:10.686 399.96 W 2797 MHz 13801 MHz 63 100 % 399.74 W 399.96 W
562 2026/10/09 08:58:11.686 400.00 W 2797 MHz 13801 MHz 64 100 % 399.84 W 400.00 W
563 2026/10/09 08:58:12.686 400.00 W 2797 MHz 13801 MHz 64 100 % 399.96 W 400.00 W
564 2026/10/09 08:58:13.686 400.00 W 2797 MHz 13801 MHz 64 100 % 400.82 W 400.00 W
565 2026/10/09 08:58:14.686 400.00 W 2797 MHz 13801 MHz 64 100 % 400.77 W 400.00 W
566 2026/10/09 08:58:15.687 400.06 W 2797 MHz 13801 MHz 64 100 % 400.47 W 400.06 W
567 2026/10/09 08:58:16.687 399.98 W 2797 MHz 13801 MHz 64 100 % 400.27 W 399.98 W
568 2026/10/09 08:58:17.687 400.00 W 2797 MHz 13801 MHz 64 100 % 399.76 W 400.00 W
569 2026/10/09 08:58:18.687 399.98 W 2797 MHz 13801 MHz 64 100 % 399.90 W 399.98 W
570 2026/10/09 08:58:19.687 399.99 W 2797 MHz 13801 MHz 64 100 % 399.98 W 399.99 W
571 2026/10/09 08:58:20.688 399.92 W 2797 MHz 13801 MHz 64 100 % 399.46 W 399.92 W
572 2026/10/09 08:58:21.688 399.97 W 2797 MHz 13801 MHz 64 100 % 399.65 W 399.97 W
573 2026/10/09 08:58:22.688 400.00 W 2797 MHz 13801 MHz 64 100 % 399.85 W 400.00 W
574 2026/10/09 08:58:23.688 400.01 W 2797 MHz 13801 MHz 64 100 % 399.98 W 400.01 W
575 2026/10/09 08:58:24.688 400.00 W 2797 MHz 13801 MHz 64 100 % 400.88 W 400.00 W
576 2026/10/09 08:58:25.688 399.99 W 2797 MHz 13801 MHz 64 100 % 400.67 W 399.99 W
577 2026/10/09 08:58:26.689 400.05 W 2797 MHz 13801 MHz 64 100 % 400.64 W 400.05 W
578 2026/10/09 08:58:27.689 399.98 W 2790 MHz 13801 MHz 64 100 % 399.97 W 399.98 W
579 2026/10/09 08:58:28.689 399.98 W 2797 MHz 13801 MHz 64 100 % 399.86 W 399.98 W
580 2026/10/09 08:58:29.689 399.99 W 2790 MHz 13801 MHz 64 100 % 399.84 W 399.99 W
581 2026/10/09 08:58:30.689 399.98 W 2790 MHz 13801 MHz 64 100 % 399.98 W 399.98 W
582 2026/10/09 08:58:31.690 399.94 W 2790 MHz 13801 MHz 64 100 % 399.39 W 399.94 W
583 2026/10/09 08:58:32.690 400.01 W 2790 MHz 13801 MHz 64 100 % 399.65 W 400.01 W
584 2026/10/09 08:58:33.690 400.00 W 2790 MHz 13801 MHz 65 100 % 399.85 W 400.00 W
585 2026/10/09 08:58:34.690 400.00 W 2790 MHz 13801 MHz 64 100 % 399.95 W 400.00 W
586 2026/10/09 08:58:35.691 400.00 W 2790 MHz 13801 MHz 65 100 % 400.79 W 400.00 W
587 2026/10/09 08:58:36.691 400.06 W 2790 MHz 13801 MHz 65 100 % 400.49 W 400.06 W
588 2026/10/09 08:58:37.691 400.03 W 2790 MHz 13801 MHz 65 100 % 400.20 W 400.03 W
589 2026/10/09 08:58:38.691 399.99 W 2790 MHz 13801 MHz 65 100 % 399.94 W 399.99 W
590 2026/10/09 08:58:39.691 399.98 W 2790 MHz 13801 MHz 65 100 % 399.77 W 399.98 W
591 2026/10/09 08:58:40.692 399.98 W 2790 MHz 13801 MHz 65 100 % 399.85 W 399.98 W
592 2026/10/09 08:58:41.692 399.92 W 2790 MHz 13801 MHz 65 100 % 399.31 W 399.92 W
593 2026/10/09 08:58:42.692 266.37 W 2865 MHz 14001 MHz 59 0 % 108.97 W 266.37 W
594 2026/10/09 08:58:43.692 108.93 W 2865 MHz 14001 MHz 58 0 % 108.00 W 108.93 W
595 2026/10/09 08:58:44.693 86.74 W 547 MHz 7001 MHz 56 0 % 86.74 W 86.74 W
596 2026/10/09 08:58:45.693 67.17 W 337 MHz 7001 MHz 55 0 % 47.60 W 67.17 W
597 2026/10/09 08:58:46.693 46.92 W 217 MHz 7001 MHz 54 0 % 46.25 W 46.92 W
598 2026/10/09 08:58:47.693 45.38 W 180 MHz 810 MHz 54 0 % 45.38 W 45.38 W
599 2026/10/09 08:58:48.693 35.34 W 180 MHz 810 MHz 53 0 % 35.34 W 35.34 W
600 2026/10/09 08:58:49.694 34.27 W 180 MHz 405 MHz 52 0 % 33.20 W 34.27 W
601 2026/10/09 08:58:50.694 32.65 W 180 MHz 405 MHz 52 0 % 32.65 W 32.65 W
602 2026/10/09 08:58:51.694 32.03 W 180 MHz 405 MHz 51 0 % 32.03 W 32.03 W

View file

@ -1,48 +0,0 @@
### run 1 x1-ctrl-ds28 start 1791535735.501035851
1791535735.832800660 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_5090 (sm_120, 170 SMs), driver 13.0 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_120 (the device's architecture, listed by NVRTC)
1791535799.157631482 pack /root/x1/packs/x1-ctrl-ds28 on NVIDIA_GeForce_RTX_5090: nvrtc 2147 cache 2 dataset 13 hot 0 check 1128 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [268435455] and 64 samples; 96 of 96 vector lanes)
1791535799.162425736 warm-up dispatch (base 0): 237.50 ms; 250 timed dispatches of 16777216 nonces: mean 237.44 ms
1791535799.167302349 RESULT pack=/root/x1/packs/x1-ctrl-ds28 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw device=NVIDIA_GeForce_RTX_5090 arch=sm_120 regs=96 blocks_per_sm=20 warps=0 resident=3400 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=01f51b9d4805e5e6 mhs=70.659 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 1 x1-ctrl-ds28 end 1791535799.193449703
### run 2 x1-flat-ds28 start 1791535809.200553202
1791535809.540847040 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_5090 (sm_120, 170 SMs), driver 13.0 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_120 (the device's architecture, listed by NVRTC)
1791535872.818259784 pack /root/x1/packs/x1-flat-ds28 on NVIDIA_GeForce_RTX_5090: nvrtc 2039 cache 1 dataset 13 hot 0 check 1126 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [268435455] and 64 samples; 96 of 96 vector lanes)
1791535872.821893741 warm-up dispatch (base 0): 237.84 ms; 250 timed dispatches of 16777216 nonces: mean 237.79 ms
1791535872.825954240 RESULT pack=/root/x1/packs/x1-flat-ds28 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat device=NVIDIA_GeForce_RTX_5090 arch=sm_120 regs=102 blocks_per_sm=16 warps=0 resident=2720 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=8cd11a827ac3ffe4 mhs=70.555 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 2 x1-flat-ds28 end 1791535872.854143584
### run 3 x1-flat-ds28 start 1791535882.860393440
1791535883.245161874 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_5090 (sm_120, 170 SMs), driver 13.0 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_120 (the device's architecture, listed by NVRTC)
1791535946.595866529 pack /root/x1/packs/x1-flat-ds28 on NVIDIA_GeForce_RTX_5090: nvrtc 2046 cache 1 dataset 13 hot 0 check 1151 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [268435455] and 64 samples; 96 of 96 vector lanes)
1791535946.600138113 warm-up dispatch (base 0): 237.86 ms; 250 timed dispatches of 16777216 nonces: mean 237.79 ms
1791535946.603995386 RESULT pack=/root/x1/packs/x1-flat-ds28 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat device=NVIDIA_GeForce_RTX_5090 arch=sm_120 regs=102 blocks_per_sm=16 warps=0 resident=2720 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=8cd11a827ac3ffe4 mhs=70.554 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 3 x1-flat-ds28 end 1791535946.632587012
### run 4 x1-ctrl-ds28 start 1791535956.639961245
1791535956.984800341 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_5090 (sm_120, 170 SMs), driver 13.0 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_120 (the device's architecture, listed by NVRTC)
1791536020.244857665 pack /root/x1/packs/x1-ctrl-ds28 on NVIDIA_GeForce_RTX_5090: nvrtc 2102 cache 1 dataset 13 hot 0 check 1135 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [268435455] and 64 samples; 96 of 96 vector lanes)
1791536020.248651729 warm-up dispatch (base 0): 237.48 ms; 250 timed dispatches of 16777216 nonces: mean 237.45 ms
1791536020.252921503 RESULT pack=/root/x1/packs/x1-ctrl-ds28 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw device=NVIDIA_GeForce_RTX_5090 arch=sm_120 regs=96 blocks_per_sm=20 warps=0 resident=3400 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=01f51b9d4805e5e6 mhs=70.654 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 4 x1-ctrl-ds28 end 1791536020.278699235
### run 5 x1-ctrl-ds30 start 1791536030.285132188
1791536030.616235300 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_5090 (sm_120, 170 SMs), driver 13.0 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_120 (the device's architecture, listed by NVRTC)
1791536095.609755848 pack /root/x1/packs/x1-ctrl-ds30 on NVIDIA_GeForce_RTX_5090: nvrtc 2080 cache 1 dataset 49 hot 0 check 1120 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [1073741823] and 64 samples; 96 of 96 vector lanes)
1791536095.613507983 warm-up dispatch (base 0): 244.42 ms; 250 timed dispatches of 16777216 nonces: mean 244.37 ms
1791536095.617662250 RESULT pack=/root/x1/packs/x1-ctrl-ds30 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw device=NVIDIA_GeForce_RTX_5090 arch=sm_120 regs=96 blocks_per_sm=20 warps=0 resident=3400 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=b1f90e91cadb15b6 mhs=68.656 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 5 x1-ctrl-ds30 end 1791536095.644742516
### run 6 x1-flat-ds30 start 1791536105.652062350
1791536105.981221932 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_5090 (sm_120, 170 SMs), driver 13.0 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_120 (the device's architecture, listed by NVRTC)
1791536171.066118836 pack /root/x1/packs/x1-flat-ds30 on NVIDIA_GeForce_RTX_5090: nvrtc 2068 cache 1 dataset 50 hot 0 check 1128 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [1073741823] and 64 samples; 96 of 96 vector lanes)
1791536171.070043677 warm-up dispatch (base 0): 244.59 ms; 250 timed dispatches of 16777216 nonces: mean 244.61 ms
1791536171.074346821 RESULT pack=/root/x1/packs/x1-flat-ds30 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat device=NVIDIA_GeForce_RTX_5090 arch=sm_120 regs=102 blocks_per_sm=16 warps=0 resident=2720 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=18c4c6a80809c4b9 mhs=68.588 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 6 x1-flat-ds30 end 1791536171.101820709
### run 7 x1-flat-ds30 start 1791536181.109060575
1791536181.448357503 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_5090 (sm_120, 170 SMs), driver 13.0 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_120 (the device's architecture, listed by NVRTC)
1791536246.440536419 pack /root/x1/packs/x1-flat-ds30 on NVIDIA_GeForce_RTX_5090: nvrtc 2052 cache 1 dataset 49 hot 0 check 1093 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [1073741823] and 64 samples; 96 of 96 vector lanes)
1791536246.444983410 warm-up dispatch (base 0): 244.59 ms; 250 timed dispatches of 16777216 nonces: mean 244.61 ms
1791536246.449527088 RESULT pack=/root/x1/packs/x1-flat-ds30 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat device=NVIDIA_GeForce_RTX_5090 arch=sm_120 regs=102 blocks_per_sm=16 warps=0 resident=2720 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=18c4c6a80809c4b9 mhs=68.586 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 7 x1-flat-ds30 end 1791536246.473279752
### run 8 x1-ctrl-ds30 start 1791536256.480687255
1791536256.816492912 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_5090 (sm_120, 170 SMs), driver 13.0 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_120 (the device's architecture, listed by NVRTC)
1791536321.898149330 pack /root/x1/packs/x1-ctrl-ds30 on NVIDIA_GeForce_RTX_5090: nvrtc 2090 cache 2 dataset 50 hot 0 check 1122 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [1073741823] and 64 samples; 96 of 96 vector lanes)
1791536321.902085561 warm-up dispatch (base 0): 244.72 ms; 250 timed dispatches of 16777216 nonces: mean 244.34 ms
1791536321.906356676 RESULT pack=/root/x1/packs/x1-ctrl-ds30 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw device=NVIDIA_GeForce_RTX_5090 arch=sm_120 regs=96 blocks_per_sm=20 warps=0 resident=3400 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=b1f90e91cadb15b6 mhs=68.662 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 8 x1-ctrl-ds30 end 1791536321.937001800

View file

@ -1,11 +0,0 @@
run pack check fingerprint MH/s W W_inst W_avg sm_MHz mem_MHz util nJ/hash samples
1 x1-ctrl-ds28 PASS 01f51b9d4805e5e6 70.64 430.76 430.86 430.76 2947.10 13801.00 99.92 6097.97 51
2 x1-flat-ds28 PASS 8cd11a827ac3ffe4 70.54 436.87 437.06 436.87 2936.04 13801.00 99.98 6193.45 52
3 x1-flat-ds28 PASS 8cd11a827ac3ffe4 70.53 442.05 442.09 442.05 2932.00 13801.00 100.00 6267.03 51
4 x1-ctrl-ds28 PASS 01f51b9d4805e5e6 70.65 452.15 452.16 452.15 2932.00 13801.00 99.98 6400.10 52
5 x1-ctrl-ds30 PASS b1f90e91cadb15b6 68.64 448.08 448.17 448.08 2932.00 13801.00 99.98 6527.72 53
6 x1-flat-ds30 PASS 18c4c6a80809c4b9 68.59 440.65 440.79 440.65 2932.00 13801.00 99.98 6424.75 53
7 x1-flat-ds30 PASS 18c4c6a80809c4b9 68.59 440.46 440.62 440.46 2932.00 13801.00 100.00 6421.79 53
8 x1-ctrl-ds30 PASS b1f90e91cadb15b6 68.65 449.03 449.00 449.03 2932.00 13801.00 100.00 6541.12 53
PAIR ds28: control 70.64 MH/s 441.5 W 6249 nJ; candidate 70.54 MH/s 439.5 W 6230 nJ; rate -0.15 percent, joules per hash -0.30 percent (g = 0.9970); fingerprints control ['01f51b9d4805e5e6'] candidate ['8cd11a827ac3ffe4']; ABBA spread control 0.01 percent candidate 0.00 percent
PAIR ds30: control 68.64 MH/s 448.6 W 6534 nJ; candidate 68.59 MH/s 440.6 W 6423 nJ; rate -0.08 percent, joules per hash -1.70 percent (g = 0.9830); fingerprints control ['b1f90e91cadb15b6'] candidate ['18c4c6a80809c4b9']; ABBA spread control 0.01 percent candidate 0.00 percent

View file

@ -1,8 +0,0 @@
# 2026-10-09T09:01:27Z 77b957759874 worker sha256 804a6f7fea10a62e07cf6cd01e99331de5149e683112b5870fc25d1e11e199bd
GPU 0: NVIDIA GeForce RTX 5090 (UUID: GPU-5a3e1a31-63f4-0c61-3d13-993e120566a2)
name, driver_version, power.limit [W], power.default_limit [W], clocks.max.sm [MHz], clocks.max.memory [MHz]
NVIDIA GeForce RTX 5090, 580.82.07, 500.00 W, 600.00 W, 3105 MHz, 14001 MHz
The current user does not have permission to change clocks for GPU 00000000:01:00.0.
Terminating early due to previous errors.
The current user does not have permission to change clocks for GPU 00000000:01:00.0.
# end 2026-10-09T09:11:11Z

View file

@ -1,585 +0,0 @@
2026/10/09 09:01:27.675, 12.10 W, 195 MHz, 405 MHz, 36, 0 %, 12.10 W, 12.10 W
2026/10/09 09:01:28.680, 12.55 W, 195 MHz, 405 MHz, 36, 0 %, 12.55 W, 12.55 W
2026/10/09 09:01:29.680, 12.19 W, 195 MHz, 405 MHz, 36, 0 %, 11.82 W, 12.19 W
2026/10/09 09:01:30.681, 11.81 W, 195 MHz, 405 MHz, 36, 0 %, 11.81 W, 11.81 W
2026/10/09 09:01:31.681, 11.60 W, 195 MHz, 405 MHz, 36, 0 %, 11.60 W, 11.60 W
2026/10/09 09:01:32.681, 11.69 W, 195 MHz, 405 MHz, 36, 0 %, 11.78 W, 11.69 W
2026/10/09 09:01:33.682, 25.02 W, 2565 MHz, 13801 MHz, 37, 0 %, 67.64 W, 25.02 W
2026/10/09 09:01:34.682, 73.28 W, 2565 MHz, 13801 MHz, 38, 0 %, 68.23 W, 73.28 W
2026/10/09 09:01:35.682, 293.48 W, 2955 MHz, 13801 MHz, 47, 15 %, 416.93 W, 293.48 W
2026/10/09 09:01:36.683, 416.87 W, 2955 MHz, 13801 MHz, 48, 100 %, 415.79 W, 416.87 W
2026/10/09 09:01:37.683, 417.16 W, 2955 MHz, 13801 MHz, 48, 100 %, 416.94 W, 417.16 W
2026/10/09 09:01:38.683, 418.13 W, 2955 MHz, 13801 MHz, 49, 100 %, 420.63 W, 418.13 W
2026/10/09 09:01:39.683, 421.68 W, 2955 MHz, 13801 MHz, 49, 100 %, 422.18 W, 421.68 W
2026/10/09 09:01:40.684, 421.70 W, 2955 MHz, 13801 MHz, 49, 100 %, 421.38 W, 421.70 W
2026/10/09 09:01:41.684, 421.38 W, 2955 MHz, 13801 MHz, 50, 100 %, 420.82 W, 421.38 W
2026/10/09 09:01:42.684, 421.28 W, 2955 MHz, 13801 MHz, 50, 100 %, 421.44 W, 421.28 W
2026/10/09 09:01:43.684, 421.84 W, 2955 MHz, 13801 MHz, 50, 100 %, 422.86 W, 421.84 W
2026/10/09 09:01:44.684, 422.80 W, 2955 MHz, 13801 MHz, 51, 100 %, 423.64 W, 422.80 W
2026/10/09 09:01:45.685, 423.13 W, 2955 MHz, 13801 MHz, 51, 100 %, 421.76 W, 423.13 W
2026/10/09 09:01:46.685, 423.09 W, 2955 MHz, 13801 MHz, 51, 100 %, 422.60 W, 423.09 W
2026/10/09 09:01:47.685, 422.94 W, 2955 MHz, 13801 MHz, 51, 100 %, 422.92 W, 422.94 W
2026/10/09 09:01:48.686, 422.97 W, 2955 MHz, 13801 MHz, 52, 100 %, 423.77 W, 422.97 W
2026/10/09 09:01:49.686, 423.69 W, 2955 MHz, 13801 MHz, 52, 100 %, 424.30 W, 423.69 W
2026/10/09 09:01:50.686, 423.93 W, 2955 MHz, 13801 MHz, 52, 99 %, 424.16 W, 423.93 W
2026/10/09 09:01:51.686, 425.05 W, 2955 MHz, 13801 MHz, 52, 100 %, 424.66 W, 425.05 W
2026/10/09 09:01:52.687, 426.29 W, 2955 MHz, 13801 MHz, 53, 100 %, 426.79 W, 426.29 W
2026/10/09 09:01:53.687, 427.06 W, 2955 MHz, 13801 MHz, 53, 100 %, 427.24 W, 427.06 W
2026/10/09 09:01:54.687, 426.36 W, 2955 MHz, 13801 MHz, 53, 100 %, 426.01 W, 426.36 W
2026/10/09 09:01:55.687, 425.69 W, 2940 MHz, 13801 MHz, 53, 100 %, 425.49 W, 425.69 W
2026/10/09 09:01:56.687, 424.97 W, 2940 MHz, 13801 MHz, 54, 99 %, 423.61 W, 424.97 W
2026/10/09 09:01:57.688, 425.32 W, 2940 MHz, 13801 MHz, 54, 100 %, 425.75 W, 425.32 W
2026/10/09 09:01:58.688, 426.20 W, 2940 MHz, 13801 MHz, 54, 100 %, 426.84 W, 426.20 W
2026/10/09 09:01:59.688, 426.86 W, 2940 MHz, 13801 MHz, 54, 100 %, 427.17 W, 426.86 W
2026/10/09 09:02:00.688, 427.46 W, 2940 MHz, 13801 MHz, 55, 100 %, 426.36 W, 427.46 W
2026/10/09 09:02:01.688, 427.72 W, 2940 MHz, 13801 MHz, 55, 100 %, 428.60 W, 427.72 W
2026/10/09 09:02:02.688, 428.31 W, 2940 MHz, 13801 MHz, 55, 100 %, 428.07 W, 428.31 W
2026/10/09 09:02:03.689, 427.99 W, 2940 MHz, 13801 MHz, 55, 100 %, 428.18 W, 427.99 W
2026/10/09 09:02:04.689, 427.85 W, 2940 MHz, 13801 MHz, 56, 100 %, 427.46 W, 427.85 W
2026/10/09 09:02:05.689, 428.48 W, 2940 MHz, 13801 MHz, 56, 100 %, 428.07 W, 428.48 W
2026/10/09 09:02:06.689, 429.82 W, 2940 MHz, 13801 MHz, 56, 100 %, 430.12 W, 429.82 W
2026/10/09 09:02:07.689, 430.11 W, 2940 MHz, 13801 MHz, 56, 100 %, 430.68 W, 430.11 W
2026/10/09 09:02:08.689, 430.53 W, 2947 MHz, 13801 MHz, 56, 100 %, 430.64 W, 430.53 W
2026/10/09 09:02:09.690, 430.23 W, 2947 MHz, 13801 MHz, 57, 99 %, 429.70 W, 430.23 W
2026/10/09 09:02:10.690, 429.68 W, 2947 MHz, 13801 MHz, 57, 100 %, 428.78 W, 429.68 W
2026/10/09 09:02:11.690, 430.77 W, 2947 MHz, 13801 MHz, 57, 100 %, 431.27 W, 430.77 W
2026/10/09 09:02:12.691, 431.19 W, 2947 MHz, 13801 MHz, 57, 100 %, 432.40 W, 431.19 W
2026/10/09 09:02:13.691, 432.40 W, 2947 MHz, 13801 MHz, 57, 100 %, 433.11 W, 432.40 W
2026/10/09 09:02:14.691, 433.90 W, 2947 MHz, 13801 MHz, 58, 100 %, 434.61 W, 433.90 W
2026/10/09 09:02:15.692, 434.74 W, 2947 MHz, 13801 MHz, 58, 99 %, 434.73 W, 434.74 W
2026/10/09 09:02:16.692, 435.48 W, 2947 MHz, 13801 MHz, 58, 100 %, 436.87 W, 435.48 W
2026/10/09 09:02:17.692, 435.06 W, 2947 MHz, 13801 MHz, 58, 100 %, 433.81 W, 435.06 W
2026/10/09 09:02:18.693, 434.31 W, 2947 MHz, 13801 MHz, 59, 100 %, 433.72 W, 434.31 W
2026/10/09 09:02:19.693, 434.44 W, 2947 MHz, 13801 MHz, 59, 100 %, 434.47 W, 434.44 W
2026/10/09 09:02:20.693, 435.24 W, 2947 MHz, 13801 MHz, 59, 100 %, 435.70 W, 435.24 W
2026/10/09 09:02:21.694, 435.42 W, 2947 MHz, 13801 MHz, 59, 100 %, 436.35 W, 435.42 W
2026/10/09 09:02:22.694, 436.33 W, 2947 MHz, 13801 MHz, 59, 100 %, 437.24 W, 436.33 W
2026/10/09 09:02:23.694, 436.99 W, 2947 MHz, 13801 MHz, 60, 100 %, 435.87 W, 436.99 W
2026/10/09 09:02:24.695, 437.68 W, 2947 MHz, 13801 MHz, 60, 100 %, 437.16 W, 437.68 W
2026/10/09 09:02:25.695, 437.65 W, 2947 MHz, 13801 MHz, 60, 100 %, 438.46 W, 437.65 W
2026/10/09 09:02:26.695, 437.80 W, 2947 MHz, 13801 MHz, 60, 100 %, 437.66 W, 437.80 W
2026/10/09 09:02:27.695, 437.55 W, 2947 MHz, 13801 MHz, 60, 100 %, 437.80 W, 437.55 W
2026/10/09 09:02:28.696, 438.22 W, 2947 MHz, 13801 MHz, 60, 100 %, 437.90 W, 438.22 W
2026/10/09 09:02:29.696, 438.59 W, 2947 MHz, 13801 MHz, 61, 100 %, 438.59 W, 438.59 W
2026/10/09 09:02:30.696, 439.52 W, 2947 MHz, 13801 MHz, 61, 100 %, 440.12 W, 439.52 W
2026/10/09 09:02:31.696, 440.03 W, 2947 MHz, 13801 MHz, 61, 100 %, 440.13 W, 440.03 W
2026/10/09 09:02:32.697, 439.63 W, 2947 MHz, 13801 MHz, 61, 100 %, 439.97 W, 439.63 W
2026/10/09 09:02:33.697, 439.48 W, 2947 MHz, 13801 MHz, 61, 100 %, 439.56 W, 439.48 W
2026/10/09 09:02:34.697, 411.56 W, 2947 MHz, 14001 MHz, 55, 100 %, 152.91 W, 411.56 W
2026/10/09 09:02:35.697, 108.99 W, 2947 MHz, 14001 MHz, 53, 0 %, 103.29 W, 108.99 W
2026/10/09 09:02:36.697, 88.44 W, 1755 MHz, 14001 MHz, 51, 0 %, 88.44 W, 88.44 W
2026/10/09 09:02:37.697, 37.47 W, 390 MHz, 810 MHz, 50, 0 %, 37.47 W, 37.47 W
2026/10/09 09:02:38.698, 29.80 W, 232 MHz, 810 MHz, 49, 0 %, 22.12 W, 29.80 W
2026/10/09 09:02:39.698, 19.93 W, 195 MHz, 405 MHz, 49, 0 %, 19.93 W, 19.93 W
2026/10/09 09:02:40.698, 19.13 W, 195 MHz, 405 MHz, 49, 0 %, 18.33 W, 19.13 W
2026/10/09 09:02:41.698, 16.82 W, 195 MHz, 405 MHz, 48, 0 %, 16.82 W, 16.82 W
2026/10/09 09:02:42.699, 16.63 W, 195 MHz, 405 MHz, 48, 0 %, 16.44 W, 16.63 W
2026/10/09 09:02:43.699, 16.76 W, 195 MHz, 405 MHz, 48, 0 %, 17.08 W, 16.76 W
2026/10/09 09:02:44.699, 17.15 W, 187 MHz, 405 MHz, 48, 0 %, 17.15 W, 17.15 W
2026/10/09 09:02:45.699, 71.34 W, 2542 MHz, 13801 MHz, 49, 0 %, 78.03 W, 71.34 W
2026/10/09 09:02:46.699, 197.86 W, 2910 MHz, 13801 MHz, 56, 1 %, 424.42 W, 197.86 W
2026/10/09 09:02:47.699, 425.92 W, 2947 MHz, 13801 MHz, 58, 100 %, 427.10 W, 425.92 W
2026/10/09 09:02:48.700, 426.55 W, 2947 MHz, 13801 MHz, 59, 100 %, 426.89 W, 426.55 W
2026/10/09 09:02:49.700, 426.30 W, 2947 MHz, 13801 MHz, 59, 100 %, 426.08 W, 426.30 W
2026/10/09 09:02:50.700, 426.45 W, 2947 MHz, 13801 MHz, 59, 100 %, 426.80 W, 426.45 W
2026/10/09 09:02:51.700, 427.80 W, 2947 MHz, 13801 MHz, 60, 100 %, 428.65 W, 427.80 W
2026/10/09 09:02:52.700, 427.90 W, 2947 MHz, 13801 MHz, 60, 100 %, 428.29 W, 427.90 W
2026/10/09 09:02:53.700, 428.63 W, 2947 MHz, 13801 MHz, 60, 100 %, 429.03 W, 428.63 W
2026/10/09 09:02:54.701, 427.99 W, 2947 MHz, 13801 MHz, 60, 100 %, 426.97 W, 427.99 W
2026/10/09 09:02:55.701, 428.06 W, 2947 MHz, 13801 MHz, 60, 100 %, 428.84 W, 428.06 W
2026/10/09 09:02:56.701, 428.64 W, 2947 MHz, 13801 MHz, 60, 100 %, 428.87 W, 428.64 W
2026/10/09 09:02:57.701, 428.15 W, 2947 MHz, 13801 MHz, 61, 100 %, 428.61 W, 428.15 W
2026/10/09 09:02:58.701, 429.37 W, 2947 MHz, 13801 MHz, 61, 100 %, 429.43 W, 429.37 W
2026/10/09 09:02:59.701, 429.90 W, 2947 MHz, 13801 MHz, 61, 100 %, 430.02 W, 429.90 W
2026/10/09 09:03:00.701, 431.14 W, 2947 MHz, 13801 MHz, 61, 100 %, 431.48 W, 431.14 W
2026/10/09 09:03:01.702, 432.60 W, 2947 MHz, 13801 MHz, 61, 100 %, 433.12 W, 432.60 W
2026/10/09 09:03:02.702, 432.68 W, 2947 MHz, 13801 MHz, 62, 100 %, 432.11 W, 432.68 W
2026/10/09 09:03:03.702, 432.10 W, 2947 MHz, 13801 MHz, 62, 100 %, 432.70 W, 432.10 W
2026/10/09 09:03:04.702, 431.35 W, 2947 MHz, 13801 MHz, 62, 100 %, 431.08 W, 431.35 W
2026/10/09 09:03:05.702, 431.67 W, 2947 MHz, 13801 MHz, 62, 100 %, 431.40 W, 431.67 W
2026/10/09 09:03:06.703, 433.02 W, 2947 MHz, 13801 MHz, 62, 100 %, 434.06 W, 433.02 W
2026/10/09 09:03:07.703, 434.10 W, 2947 MHz, 13801 MHz, 62, 100 %, 435.50 W, 434.10 W
2026/10/09 09:03:08.703, 433.84 W, 2932 MHz, 13801 MHz, 62, 100 %, 434.48 W, 433.84 W
2026/10/09 09:03:09.704, 434.64 W, 2932 MHz, 13801 MHz, 62, 100 %, 434.27 W, 434.64 W
2026/10/09 09:03:10.704, 434.77 W, 2932 MHz, 13801 MHz, 63, 100 %, 434.36 W, 434.77 W
2026/10/09 09:03:11.704, 435.01 W, 2932 MHz, 13801 MHz, 63, 100 %, 434.92 W, 435.01 W
2026/10/09 09:03:12.704, 434.61 W, 2932 MHz, 13801 MHz, 63, 100 %, 435.66 W, 434.61 W
2026/10/09 09:03:13.704, 435.04 W, 2932 MHz, 13801 MHz, 63, 100 %, 435.07 W, 435.04 W
2026/10/09 09:03:14.704, 435.81 W, 2932 MHz, 13801 MHz, 63, 100 %, 435.60 W, 435.81 W
2026/10/09 09:03:15.704, 436.39 W, 2932 MHz, 13801 MHz, 63, 100 %, 436.69 W, 436.39 W
2026/10/09 09:03:16.705, 436.45 W, 2932 MHz, 13801 MHz, 63, 100 %, 436.79 W, 436.45 W
2026/10/09 09:03:17.705, 436.69 W, 2932 MHz, 13801 MHz, 63, 100 %, 436.46 W, 436.69 W
2026/10/09 09:03:18.706, 436.60 W, 2932 MHz, 13801 MHz, 64, 100 %, 436.61 W, 436.60 W
2026/10/09 09:03:19.706, 437.54 W, 2932 MHz, 13801 MHz, 64, 100 %, 437.27 W, 437.54 W
2026/10/09 09:03:20.706, 437.53 W, 2932 MHz, 13801 MHz, 64, 100 %, 438.38 W, 437.53 W
2026/10/09 09:03:21.706, 437.81 W, 2932 MHz, 13801 MHz, 64, 100 %, 438.61 W, 437.81 W
2026/10/09 09:03:22.707, 438.83 W, 2932 MHz, 13801 MHz, 64, 100 %, 440.00 W, 438.83 W
2026/10/09 09:03:23.707, 440.23 W, 2932 MHz, 13801 MHz, 64, 100 %, 440.68 W, 440.23 W
2026/10/09 09:03:24.707, 441.27 W, 2932 MHz, 13801 MHz, 64, 100 %, 440.99 W, 441.27 W
2026/10/09 09:03:25.707, 440.13 W, 2932 MHz, 13801 MHz, 64, 100 %, 440.25 W, 440.13 W
2026/10/09 09:03:26.708, 439.44 W, 2932 MHz, 13801 MHz, 64, 100 %, 440.04 W, 439.44 W
2026/10/09 09:03:27.708, 439.30 W, 2932 MHz, 13801 MHz, 64, 100 %, 439.04 W, 439.30 W
2026/10/09 09:03:28.708, 439.04 W, 2932 MHz, 13801 MHz, 65, 100 %, 438.36 W, 439.04 W
2026/10/09 09:03:29.708, 439.20 W, 2932 MHz, 13801 MHz, 65, 100 %, 438.75 W, 439.20 W
2026/10/09 09:03:30.709, 440.70 W, 2932 MHz, 13801 MHz, 65, 100 %, 441.14 W, 440.70 W
2026/10/09 09:03:31.709, 440.74 W, 2932 MHz, 13801 MHz, 65, 100 %, 441.57 W, 440.74 W
2026/10/09 09:03:32.709, 440.73 W, 2932 MHz, 13801 MHz, 65, 100 %, 441.76 W, 440.73 W
2026/10/09 09:03:33.709, 440.42 W, 2932 MHz, 13801 MHz, 65, 100 %, 439.93 W, 440.42 W
2026/10/09 09:03:34.710, 440.55 W, 2932 MHz, 13801 MHz, 65, 100 %, 439.20 W, 440.55 W
2026/10/09 09:03:35.710, 440.73 W, 2932 MHz, 13801 MHz, 65, 100 %, 442.12 W, 440.73 W
2026/10/09 09:03:36.710, 441.36 W, 2932 MHz, 13801 MHz, 65, 100 %, 441.66 W, 441.36 W
2026/10/09 09:03:37.710, 441.62 W, 2932 MHz, 13801 MHz, 65, 100 %, 441.86 W, 441.62 W
2026/10/09 09:03:38.711, 441.79 W, 2932 MHz, 13801 MHz, 65, 100 %, 442.35 W, 441.79 W
2026/10/09 09:03:39.711, 442.76 W, 2932 MHz, 13801 MHz, 65, 100 %, 441.48 W, 442.76 W
2026/10/09 09:03:40.711, 442.08 W, 2932 MHz, 13801 MHz, 65, 100 %, 442.65 W, 442.08 W
2026/10/09 09:03:41.711, 442.16 W, 2932 MHz, 13801 MHz, 65, 100 %, 441.95 W, 442.16 W
2026/10/09 09:03:42.711, 442.17 W, 2932 MHz, 13801 MHz, 66, 100 %, 442.58 W, 442.17 W
2026/10/09 09:03:43.711, 442.06 W, 2932 MHz, 13801 MHz, 66, 99 %, 442.33 W, 442.06 W
2026/10/09 09:03:44.712, 442.89 W, 2932 MHz, 13801 MHz, 66, 100 %, 442.69 W, 442.89 W
2026/10/09 09:03:45.712, 443.41 W, 2932 MHz, 13801 MHz, 66, 100 %, 444.45 W, 443.41 W
2026/10/09 09:03:46.712, 248.86 W, 2947 MHz, 14001 MHz, 57, 1 %, 112.39 W, 248.86 W
2026/10/09 09:03:47.712, 128.04 W, 2947 MHz, 14001 MHz, 57, 0 %, 112.13 W, 128.04 W
2026/10/09 09:03:48.713, 100.50 W, 2692 MHz, 14001 MHz, 55, 0 %, 100.50 W, 100.50 W
2026/10/09 09:03:49.713, 74.28 W, 405 MHz, 7001 MHz, 54, 0 %, 48.06 W, 74.28 W
2026/10/09 09:03:50.713, 42.98 W, 255 MHz, 7001 MHz, 53, 0 %, 42.98 W, 42.98 W
2026/10/09 09:03:51.713, 36.47 W, 195 MHz, 810 MHz, 53, 0 %, 36.47 W, 36.47 W
2026/10/09 09:03:52.714, 29.16 W, 195 MHz, 810 MHz, 52, 0 %, 21.85 W, 29.16 W
2026/10/09 09:03:53.714, 20.81 W, 195 MHz, 405 MHz, 52, 0 %, 19.78 W, 20.81 W
2026/10/09 09:03:54.714, 19.20 W, 195 MHz, 405 MHz, 52, 0 %, 19.20 W, 19.20 W
2026/10/09 09:03:55.714, 19.17 W, 195 MHz, 405 MHz, 51, 0 %, 19.15 W, 19.17 W
2026/10/09 09:03:56.714, 36.28 W, 2542 MHz, 13801 MHz, 52, 0 %, 79.08 W, 36.28 W
2026/10/09 09:03:57.714, 85.00 W, 2542 MHz, 13801 MHz, 52, 0 %, 78.65 W, 85.00 W
2026/10/09 09:03:58.715, 346.57 W, 2947 MHz, 13801 MHz, 61, 99 %, 431.39 W, 346.57 W
2026/10/09 09:03:59.715, 432.90 W, 2947 MHz, 13801 MHz, 62, 100 %, 434.26 W, 432.90 W
2026/10/09 09:04:00.715, 434.59 W, 2947 MHz, 13801 MHz, 62, 100 %, 435.41 W, 434.59 W
2026/10/09 09:04:01.715, 435.23 W, 2932 MHz, 13801 MHz, 63, 100 %, 435.64 W, 435.23 W
2026/10/09 09:04:02.716, 435.07 W, 2932 MHz, 13801 MHz, 63, 100 %, 434.76 W, 435.07 W
2026/10/09 09:04:03.716, 435.19 W, 2932 MHz, 13801 MHz, 63, 100 %, 435.58 W, 435.19 W
2026/10/09 09:04:04.716, 435.73 W, 2932 MHz, 13801 MHz, 63, 100 %, 436.82 W, 435.73 W
2026/10/09 09:04:05.717, 436.15 W, 2932 MHz, 13801 MHz, 63, 100 %, 436.97 W, 436.15 W
2026/10/09 09:04:06.717, 436.35 W, 2932 MHz, 13801 MHz, 63, 100 %, 435.83 W, 436.35 W
2026/10/09 09:04:07.717, 437.29 W, 2932 MHz, 13801 MHz, 63, 100 %, 437.58 W, 437.29 W
2026/10/09 09:04:08.718, 438.64 W, 2932 MHz, 13801 MHz, 64, 100 %, 439.95 W, 438.64 W
2026/10/09 09:04:09.718, 439.21 W, 2932 MHz, 13801 MHz, 64, 100 %, 438.79 W, 439.21 W
2026/10/09 09:04:10.718, 439.24 W, 2932 MHz, 13801 MHz, 64, 100 %, 439.49 W, 439.24 W
2026/10/09 09:04:11.719, 438.11 W, 2932 MHz, 13801 MHz, 64, 100 %, 436.44 W, 438.11 W
2026/10/09 09:04:12.719, 437.51 W, 2932 MHz, 13801 MHz, 64, 100 %, 435.73 W, 437.51 W
2026/10/09 09:04:13.719, 437.90 W, 2932 MHz, 13801 MHz, 64, 100 %, 438.29 W, 437.90 W
2026/10/09 09:04:14.720, 438.62 W, 2932 MHz, 13801 MHz, 64, 100 %, 438.96 W, 438.62 W
2026/10/09 09:04:15.720, 438.81 W, 2932 MHz, 13801 MHz, 64, 100 %, 439.66 W, 438.81 W
2026/10/09 09:04:16.721, 439.65 W, 2932 MHz, 13801 MHz, 64, 100 %, 439.38 W, 439.65 W
2026/10/09 09:04:17.721, 439.88 W, 2932 MHz, 13801 MHz, 65, 100 %, 439.17 W, 439.88 W
2026/10/09 09:04:18.721, 440.35 W, 2932 MHz, 13801 MHz, 65, 100 %, 441.16 W, 440.35 W
2026/10/09 09:04:19.722, 440.00 W, 2932 MHz, 13801 MHz, 65, 100 %, 440.44 W, 440.00 W
2026/10/09 09:04:20.722, 440.22 W, 2932 MHz, 13801 MHz, 65, 100 %, 441.16 W, 440.22 W
2026/10/09 09:04:21.722, 439.82 W, 2932 MHz, 13801 MHz, 65, 100 %, 439.25 W, 439.82 W
2026/10/09 09:04:22.722, 439.92 W, 2932 MHz, 13801 MHz, 65, 100 %, 440.55 W, 439.92 W
2026/10/09 09:04:23.723, 441.10 W, 2932 MHz, 13801 MHz, 65, 100 %, 442.03 W, 441.10 W
2026/10/09 09:04:24.723, 441.54 W, 2932 MHz, 13801 MHz, 65, 100 %, 440.96 W, 441.54 W
2026/10/09 09:04:25.723, 440.24 W, 2932 MHz, 13801 MHz, 65, 100 %, 440.31 W, 440.24 W
2026/10/09 09:04:26.723, 440.48 W, 2932 MHz, 13801 MHz, 65, 100 %, 439.70 W, 440.48 W
2026/10/09 09:04:27.724, 440.18 W, 2932 MHz, 13801 MHz, 65, 100 %, 440.46 W, 440.18 W
2026/10/09 09:04:28.724, 441.03 W, 2932 MHz, 13801 MHz, 66, 100 %, 441.43 W, 441.03 W
2026/10/09 09:04:29.724, 441.70 W, 2932 MHz, 13801 MHz, 66, 100 %, 442.57 W, 441.70 W
2026/10/09 09:04:30.724, 442.33 W, 2932 MHz, 13801 MHz, 66, 100 %, 442.67 W, 442.33 W
2026/10/09 09:04:31.724, 444.16 W, 2932 MHz, 13801 MHz, 66, 100 %, 444.76 W, 444.16 W
2026/10/09 09:04:32.725, 444.77 W, 2932 MHz, 13801 MHz, 66, 100 %, 444.96 W, 444.77 W
2026/10/09 09:04:33.725, 444.47 W, 2932 MHz, 13801 MHz, 66, 100 %, 444.12 W, 444.47 W
2026/10/09 09:04:34.725, 443.55 W, 2932 MHz, 13801 MHz, 66, 100 %, 443.62 W, 443.55 W
2026/10/09 09:04:35.725, 442.52 W, 2932 MHz, 13801 MHz, 66, 100 %, 441.96 W, 442.52 W
2026/10/09 09:04:36.725, 443.06 W, 2932 MHz, 13801 MHz, 66, 100 %, 443.63 W, 443.06 W
2026/10/09 09:04:37.726, 443.66 W, 2932 MHz, 13801 MHz, 66, 100 %, 443.47 W, 443.66 W
2026/10/09 09:04:38.726, 443.55 W, 2932 MHz, 13801 MHz, 66, 100 %, 443.82 W, 443.55 W
2026/10/09 09:04:39.726, 444.03 W, 2932 MHz, 13801 MHz, 66, 100 %, 444.59 W, 444.03 W
2026/10/09 09:04:40.726, 444.41 W, 2932 MHz, 13801 MHz, 66, 100 %, 445.14 W, 444.41 W
2026/10/09 09:04:41.726, 445.37 W, 2932 MHz, 13801 MHz, 66, 100 %, 444.23 W, 445.37 W
2026/10/09 09:04:42.727, 444.19 W, 2932 MHz, 13801 MHz, 66, 100 %, 444.48 W, 444.19 W
2026/10/09 09:04:43.727, 444.21 W, 2932 MHz, 13801 MHz, 66, 100 %, 444.03 W, 444.21 W
2026/10/09 09:04:44.727, 443.67 W, 2932 MHz, 13801 MHz, 66, 100 %, 444.24 W, 443.67 W
2026/10/09 09:04:45.727, 444.33 W, 2932 MHz, 13801 MHz, 67, 100 %, 444.31 W, 444.33 W
2026/10/09 09:04:46.728, 444.77 W, 2932 MHz, 13801 MHz, 67, 100 %, 444.70 W, 444.77 W
2026/10/09 09:04:47.728, 445.26 W, 2932 MHz, 13801 MHz, 67, 100 %, 445.76 W, 445.26 W
2026/10/09 09:04:48.728, 444.68 W, 2932 MHz, 13801 MHz, 67, 100 %, 444.81 W, 444.68 W
2026/10/09 09:04:49.729, 444.23 W, 2932 MHz, 13801 MHz, 67, 100 %, 444.21 W, 444.23 W
2026/10/09 09:04:50.729, 443.96 W, 2932 MHz, 13801 MHz, 67, 100 %, 442.83 W, 443.96 W
2026/10/09 09:04:51.729, 444.74 W, 2932 MHz, 13801 MHz, 67, 100 %, 444.30 W, 444.74 W
2026/10/09 09:04:52.729, 444.76 W, 2932 MHz, 13801 MHz, 66, 100 %, 445.50 W, 444.76 W
2026/10/09 09:04:53.730, 445.07 W, 2932 MHz, 13801 MHz, 66, 100 %, 445.31 W, 445.07 W
2026/10/09 09:04:54.730, 445.47 W, 2932 MHz, 13801 MHz, 66, 100 %, 445.43 W, 445.47 W
2026/10/09 09:04:55.730, 445.65 W, 2932 MHz, 13801 MHz, 66, 100 %, 445.60 W, 445.65 W
2026/10/09 09:04:56.730, 445.65 W, 2932 MHz, 13801 MHz, 66, 100 %, 444.71 W, 445.65 W
2026/10/09 09:04:57.731, 407.83 W, 2932 MHz, 14001 MHz, 61, 100 %, 126.93 W, 407.83 W
2026/10/09 09:04:58.731, 135.89 W, 2947 MHz, 14001 MHz, 58, 0 %, 111.01 W, 135.89 W
2026/10/09 09:04:59.731, 101.01 W, 2745 MHz, 14001 MHz, 56, 0 %, 100.01 W, 101.01 W
2026/10/09 09:05:00.731, 48.27 W, 577 MHz, 7001 MHz, 55, 0 %, 48.27 W, 48.27 W
2026/10/09 09:05:01.731, 46.96 W, 360 MHz, 7001 MHz, 54, 0 %, 45.66 W, 46.96 W
2026/10/09 09:05:02.731, 44.03 W, 225 MHz, 7001 MHz, 54, 0 %, 44.03 W, 44.03 W
2026/10/09 09:05:03.732, 39.56 W, 195 MHz, 810 MHz, 53, 0 %, 39.56 W, 39.56 W
2026/10/09 09:05:04.732, 30.85 W, 195 MHz, 810 MHz, 53, 0 %, 22.13 W, 30.85 W
2026/10/09 09:05:05.732, 20.23 W, 195 MHz, 405 MHz, 53, 0 %, 20.23 W, 20.23 W
2026/10/09 09:05:06.732, 19.24 W, 195 MHz, 405 MHz, 52, 0 %, 19.24 W, 19.24 W
2026/10/09 09:05:07.733, 19.22 W, 195 MHz, 405 MHz, 52, 0 %, 19.22 W, 19.22 W
2026/10/09 09:05:08.733, 70.79 W, 2542 MHz, 13801 MHz, 53, 0 %, 79.96 W, 70.79 W
2026/10/09 09:05:09.733, 187.80 W, 2947 MHz, 13801 MHz, 61, 0 %, 225.31 W, 187.80 W
2026/10/09 09:05:10.733, 424.00 W, 2932 MHz, 13801 MHz, 63, 100 %, 443.93 W, 424.00 W
2026/10/09 09:05:11.733, 444.52 W, 2932 MHz, 13801 MHz, 63, 100 %, 445.36 W, 444.52 W
2026/10/09 09:05:12.733, 444.56 W, 2932 MHz, 13801 MHz, 64, 100 %, 444.52 W, 444.56 W
2026/10/09 09:05:13.733, 445.58 W, 2932 MHz, 13801 MHz, 64, 100 %, 446.67 W, 445.58 W
2026/10/09 09:05:14.734, 445.89 W, 2932 MHz, 13801 MHz, 64, 100 %, 446.51 W, 445.89 W
2026/10/09 09:05:15.734, 447.35 W, 2932 MHz, 13801 MHz, 64, 100 %, 448.36 W, 447.35 W
2026/10/09 09:05:16.734, 448.85 W, 2932 MHz, 13801 MHz, 64, 100 %, 449.63 W, 448.85 W
2026/10/09 09:05:17.734, 449.25 W, 2932 MHz, 13801 MHz, 64, 100 %, 450.79 W, 449.25 W
2026/10/09 09:05:18.735, 450.21 W, 2932 MHz, 13801 MHz, 65, 100 %, 449.07 W, 450.21 W
2026/10/09 09:05:19.735, 448.98 W, 2932 MHz, 13801 MHz, 65, 99 %, 447.33 W, 448.98 W
2026/10/09 09:05:20.735, 448.60 W, 2932 MHz, 13801 MHz, 65, 100 %, 448.61 W, 448.60 W
2026/10/09 09:05:21.735, 448.05 W, 2932 MHz, 13801 MHz, 65, 100 %, 449.49 W, 448.05 W
2026/10/09 09:05:22.736, 448.65 W, 2932 MHz, 13801 MHz, 65, 100 %, 449.45 W, 448.65 W
2026/10/09 09:05:23.736, 449.11 W, 2932 MHz, 13801 MHz, 65, 100 %, 449.60 W, 449.11 W
2026/10/09 09:05:24.736, 449.49 W, 2932 MHz, 13801 MHz, 65, 100 %, 449.17 W, 449.49 W
2026/10/09 09:05:25.736, 450.10 W, 2932 MHz, 13801 MHz, 65, 100 %, 450.30 W, 450.10 W
2026/10/09 09:05:26.736, 450.90 W, 2932 MHz, 13801 MHz, 66, 100 %, 451.51 W, 450.90 W
2026/10/09 09:05:27.737, 450.71 W, 2932 MHz, 13801 MHz, 66, 100 %, 450.72 W, 450.71 W
2026/10/09 09:05:28.737, 449.71 W, 2932 MHz, 13801 MHz, 66, 100 %, 448.14 W, 449.71 W
2026/10/09 09:05:29.737, 449.14 W, 2932 MHz, 13801 MHz, 66, 100 %, 447.00 W, 449.14 W
2026/10/09 09:05:30.737, 449.72 W, 2932 MHz, 13801 MHz, 66, 100 %, 450.51 W, 449.72 W
2026/10/09 09:05:31.738, 450.17 W, 2932 MHz, 13801 MHz, 66, 100 %, 450.90 W, 450.17 W
2026/10/09 09:05:32.738, 450.68 W, 2932 MHz, 13801 MHz, 66, 100 %, 451.11 W, 450.68 W
2026/10/09 09:05:33.738, 451.02 W, 2932 MHz, 13801 MHz, 66, 100 %, 451.49 W, 451.02 W
2026/10/09 09:05:34.739, 451.51 W, 2932 MHz, 13801 MHz, 66, 100 %, 450.74 W, 451.51 W
2026/10/09 09:05:35.739, 451.37 W, 2932 MHz, 13801 MHz, 66, 100 %, 451.85 W, 451.37 W
2026/10/09 09:05:36.739, 451.36 W, 2932 MHz, 13801 MHz, 66, 100 %, 452.48 W, 451.36 W
2026/10/09 09:05:37.739, 451.91 W, 2932 MHz, 13801 MHz, 66, 100 %, 452.29 W, 451.91 W
2026/10/09 09:05:38.740, 452.93 W, 2932 MHz, 13801 MHz, 66, 100 %, 452.40 W, 452.93 W
2026/10/09 09:05:39.740, 453.42 W, 2932 MHz, 13801 MHz, 66, 100 %, 453.95 W, 453.42 W
2026/10/09 09:05:40.740, 454.61 W, 2932 MHz, 13801 MHz, 66, 100 %, 455.51 W, 454.61 W
2026/10/09 09:05:41.740, 454.51 W, 2932 MHz, 13801 MHz, 66, 100 %, 454.29 W, 454.51 W
2026/10/09 09:05:42.741, 453.07 W, 2932 MHz, 13801 MHz, 66, 100 %, 451.37 W, 453.07 W
2026/10/09 09:05:43.741, 452.22 W, 2932 MHz, 13801 MHz, 66, 100 %, 451.75 W, 452.22 W
2026/10/09 09:05:44.741, 452.73 W, 2932 MHz, 13801 MHz, 66, 100 %, 452.96 W, 452.73 W
2026/10/09 09:05:45.741, 452.39 W, 2932 MHz, 13801 MHz, 66, 100 %, 453.17 W, 452.39 W
2026/10/09 09:05:46.742, 453.17 W, 2932 MHz, 13801 MHz, 66, 100 %, 454.08 W, 453.17 W
2026/10/09 09:05:47.742, 453.36 W, 2932 MHz, 13801 MHz, 67, 100 %, 452.93 W, 453.36 W
2026/10/09 09:05:48.742, 454.05 W, 2932 MHz, 13801 MHz, 67, 100 %, 453.07 W, 454.05 W
2026/10/09 09:05:49.742, 453.63 W, 2932 MHz, 13801 MHz, 67, 100 %, 454.58 W, 453.63 W
2026/10/09 09:05:50.742, 454.02 W, 2932 MHz, 13801 MHz, 67, 100 %, 454.61 W, 454.02 W
2026/10/09 09:05:51.742, 453.04 W, 2932 MHz, 13801 MHz, 67, 100 %, 452.60 W, 453.04 W
2026/10/09 09:05:52.743, 453.03 W, 2932 MHz, 13801 MHz, 67, 100 %, 452.70 W, 453.03 W
2026/10/09 09:05:53.743, 453.21 W, 2932 MHz, 13801 MHz, 67, 100 %, 453.71 W, 453.21 W
2026/10/09 09:05:54.743, 454.05 W, 2932 MHz, 13801 MHz, 67, 100 %, 454.48 W, 454.05 W
2026/10/09 09:05:55.743, 453.72 W, 2932 MHz, 13801 MHz, 67, 100 %, 453.76 W, 453.72 W
2026/10/09 09:05:56.744, 453.12 W, 2932 MHz, 13801 MHz, 67, 100 %, 450.73 W, 453.12 W
2026/10/09 09:05:57.744, 452.35 W, 2932 MHz, 13801 MHz, 67, 100 %, 452.10 W, 452.35 W
2026/10/09 09:05:58.744, 452.67 W, 2932 MHz, 13801 MHz, 67, 100 %, 453.05 W, 452.67 W
2026/10/09 09:05:59.745, 452.78 W, 2932 MHz, 13801 MHz, 67, 100 %, 453.27 W, 452.78 W
2026/10/09 09:06:00.745, 453.24 W, 2932 MHz, 13801 MHz, 67, 100 %, 453.40 W, 453.24 W
2026/10/09 09:06:01.745, 453.58 W, 2932 MHz, 13801 MHz, 67, 100 %, 453.06 W, 453.58 W
2026/10/09 09:06:02.745, 455.11 W, 2932 MHz, 13801 MHz, 67, 100 %, 454.90 W, 455.11 W
2026/10/09 09:06:03.746, 455.46 W, 2932 MHz, 13801 MHz, 67, 100 %, 455.09 W, 455.46 W
2026/10/09 09:06:04.746, 455.17 W, 2932 MHz, 13801 MHz, 67, 100 %, 454.62 W, 455.17 W
2026/10/09 09:06:05.746, 454.29 W, 2932 MHz, 13801 MHz, 67, 100 %, 455.05 W, 454.29 W
2026/10/09 09:06:06.746, 453.70 W, 2932 MHz, 13801 MHz, 67, 100 %, 453.21 W, 453.70 W
2026/10/09 09:06:07.747, 454.08 W, 2932 MHz, 13801 MHz, 67, 100 %, 453.85 W, 454.08 W
2026/10/09 09:06:08.747, 454.34 W, 2932 MHz, 13801 MHz, 67, 100 %, 455.47 W, 454.34 W
2026/10/09 09:06:09.748, 250.89 W, 2947 MHz, 14001 MHz, 59, 0 %, 114.06 W, 250.89 W
2026/10/09 09:06:10.748, 126.39 W, 2947 MHz, 14001 MHz, 59, 0 %, 112.33 W, 126.39 W
2026/10/09 09:06:11.748, 101.37 W, 2685 MHz, 7001 MHz, 57, 0 %, 101.37 W, 101.37 W
2026/10/09 09:06:12.749, 74.34 W, 405 MHz, 7001 MHz, 55, 0 %, 47.31 W, 74.34 W
2026/10/09 09:06:13.749, 46.21 W, 255 MHz, 7001 MHz, 55, 0 %, 45.11 W, 46.21 W
2026/10/09 09:06:14.749, 44.51 W, 195 MHz, 7001 MHz, 55, 0 %, 43.92 W, 44.51 W
2026/10/09 09:06:15.749, 43.05 W, 195 MHz, 7001 MHz, 54, 0 %, 43.05 W, 43.05 W
2026/10/09 09:06:16.750, 27.97 W, 195 MHz, 810 MHz, 54, 0 %, 27.97 W, 27.97 W
2026/10/09 09:06:17.750, 25.76 W, 187 MHz, 405 MHz, 53, 0 %, 23.55 W, 25.76 W
2026/10/09 09:06:18.750, 22.12 W, 195 MHz, 405 MHz, 53, 0 %, 20.69 W, 22.12 W
2026/10/09 09:06:19.750, 37.07 W, 2542 MHz, 13801 MHz, 54, 0 %, 79.31 W, 37.07 W
2026/10/09 09:06:20.751, 101.04 W, 2542 MHz, 13801 MHz, 54, 0 %, 79.43 W, 101.04 W
2026/10/09 09:06:21.751, 333.36 W, 2932 MHz, 13801 MHz, 63, 32 %, 439.39 W, 333.36 W
2026/10/09 09:06:22.751, 441.35 W, 2932 MHz, 13801 MHz, 64, 100 %, 441.81 W, 441.35 W
2026/10/09 09:06:23.751, 442.73 W, 2932 MHz, 13801 MHz, 64, 100 %, 442.85 W, 442.73 W
2026/10/09 09:06:24.751, 443.79 W, 2932 MHz, 13801 MHz, 64, 100 %, 444.89 W, 443.79 W
2026/10/09 09:06:25.752, 445.42 W, 2932 MHz, 13801 MHz, 64, 100 %, 445.86 W, 445.42 W
2026/10/09 09:06:26.752, 445.26 W, 2932 MHz, 13801 MHz, 64, 100 %, 445.82 W, 445.26 W
2026/10/09 09:06:27.752, 445.02 W, 2932 MHz, 13801 MHz, 65, 100 %, 445.17 W, 445.02 W
2026/10/09 09:06:28.752, 443.83 W, 2932 MHz, 13801 MHz, 65, 100 %, 443.74 W, 443.83 W
2026/10/09 09:06:29.752, 443.72 W, 2932 MHz, 13801 MHz, 65, 100 %, 444.03 W, 443.72 W
2026/10/09 09:06:30.752, 444.38 W, 2932 MHz, 13801 MHz, 65, 100 %, 444.92 W, 444.38 W
2026/10/09 09:06:31.753, 444.55 W, 2932 MHz, 13801 MHz, 65, 100 %, 443.57 W, 444.55 W
2026/10/09 09:06:32.753, 445.36 W, 2932 MHz, 13801 MHz, 65, 100 %, 444.74 W, 445.36 W
2026/10/09 09:06:33.753, 446.36 W, 2932 MHz, 13801 MHz, 65, 100 %, 446.05 W, 446.36 W
2026/10/09 09:06:34.753, 446.18 W, 2932 MHz, 13801 MHz, 65, 100 %, 445.78 W, 446.18 W
2026/10/09 09:06:35.753, 446.64 W, 2932 MHz, 13801 MHz, 66, 100 %, 446.73 W, 446.64 W
2026/10/09 09:06:36.753, 445.65 W, 2932 MHz, 13801 MHz, 66, 100 %, 446.60 W, 445.65 W
2026/10/09 09:06:37.754, 446.00 W, 2932 MHz, 13801 MHz, 66, 100 %, 445.44 W, 446.00 W
2026/10/09 09:06:38.754, 445.88 W, 2932 MHz, 13801 MHz, 66, 100 %, 446.62 W, 445.88 W
2026/10/09 09:06:39.754, 446.59 W, 2932 MHz, 13801 MHz, 66, 100 %, 447.76 W, 446.59 W
2026/10/09 09:06:40.754, 447.72 W, 2932 MHz, 13801 MHz, 66, 100 %, 448.13 W, 447.72 W
2026/10/09 09:06:41.754, 446.92 W, 2932 MHz, 13801 MHz, 66, 100 %, 446.58 W, 446.92 W
2026/10/09 09:06:42.754, 446.34 W, 2932 MHz, 13801 MHz, 66, 100 %, 445.33 W, 446.34 W
2026/10/09 09:06:43.754, 446.13 W, 2932 MHz, 13801 MHz, 66, 100 %, 445.84 W, 446.13 W
2026/10/09 09:06:44.755, 446.66 W, 2932 MHz, 13801 MHz, 66, 100 %, 446.55 W, 446.66 W
2026/10/09 09:06:45.755, 446.88 W, 2932 MHz, 13801 MHz, 66, 99 %, 445.79 W, 446.88 W
2026/10/09 09:06:46.755, 448.03 W, 2932 MHz, 13801 MHz, 66, 100 %, 449.29 W, 448.03 W
2026/10/09 09:06:47.755, 448.52 W, 2932 MHz, 13801 MHz, 67, 100 %, 448.61 W, 448.52 W
2026/10/09 09:06:48.755, 449.47 W, 2932 MHz, 13801 MHz, 67, 100 %, 450.53 W, 449.47 W
2026/10/09 09:06:49.755, 449.48 W, 2932 MHz, 13801 MHz, 67, 100 %, 450.53 W, 449.48 W
2026/10/09 09:06:50.755, 449.19 W, 2932 MHz, 13801 MHz, 66, 100 %, 449.24 W, 449.19 W
2026/10/09 09:06:51.756, 447.02 W, 2932 MHz, 13801 MHz, 66, 100 %, 446.76 W, 447.02 W
2026/10/09 09:06:52.756, 446.52 W, 2932 MHz, 13801 MHz, 66, 100 %, 447.83 W, 446.52 W
2026/10/09 09:06:53.756, 447.26 W, 2932 MHz, 13801 MHz, 66, 100 %, 447.48 W, 447.26 W
2026/10/09 09:06:54.756, 447.77 W, 2932 MHz, 13801 MHz, 66, 100 %, 447.68 W, 447.77 W
2026/10/09 09:06:55.756, 447.94 W, 2932 MHz, 13801 MHz, 66, 100 %, 448.02 W, 447.94 W
2026/10/09 09:06:56.756, 448.75 W, 2932 MHz, 13801 MHz, 66, 100 %, 448.10 W, 448.75 W
2026/10/09 09:06:57.756, 448.63 W, 2932 MHz, 13801 MHz, 67, 100 %, 448.81 W, 448.63 W
2026/10/09 09:06:58.757, 448.58 W, 2932 MHz, 13801 MHz, 67, 100 %, 447.72 W, 448.58 W
2026/10/09 09:06:59.757, 448.04 W, 2932 MHz, 13801 MHz, 67, 100 %, 448.42 W, 448.04 W
2026/10/09 09:07:00.757, 447.55 W, 2932 MHz, 13801 MHz, 67, 100 %, 448.52 W, 447.55 W
2026/10/09 09:07:01.757, 448.64 W, 2932 MHz, 13801 MHz, 67, 100 %, 449.75 W, 448.64 W
2026/10/09 09:07:02.757, 449.50 W, 2932 MHz, 13801 MHz, 67, 100 %, 450.06 W, 449.50 W
2026/10/09 09:07:03.757, 449.29 W, 2932 MHz, 13801 MHz, 67, 100 %, 449.81 W, 449.29 W
2026/10/09 09:07:04.758, 448.92 W, 2932 MHz, 13801 MHz, 67, 100 %, 446.71 W, 448.92 W
2026/10/09 09:07:05.758, 447.75 W, 2932 MHz, 13801 MHz, 67, 100 %, 447.00 W, 447.75 W
2026/10/09 09:07:06.758, 448.28 W, 2932 MHz, 13801 MHz, 67, 100 %, 447.73 W, 448.28 W
2026/10/09 09:07:07.758, 449.08 W, 2932 MHz, 13801 MHz, 67, 100 %, 448.80 W, 449.08 W
2026/10/09 09:07:08.758, 449.29 W, 2932 MHz, 13801 MHz, 67, 100 %, 450.00 W, 449.29 W
2026/10/09 09:07:09.758, 450.17 W, 2932 MHz, 13801 MHz, 67, 100 %, 451.30 W, 450.17 W
2026/10/09 09:07:10.759, 450.92 W, 2932 MHz, 13801 MHz, 67, 100 %, 451.67 W, 450.92 W
2026/10/09 09:07:11.759, 451.85 W, 2932 MHz, 13801 MHz, 67, 100 %, 452.10 W, 451.85 W
2026/10/09 09:07:12.759, 450.48 W, 2932 MHz, 13801 MHz, 67, 100 %, 450.91 W, 450.48 W
2026/10/09 09:07:13.759, 450.17 W, 2932 MHz, 13801 MHz, 67, 100 %, 449.55 W, 450.17 W
2026/10/09 09:07:14.759, 449.25 W, 2932 MHz, 13801 MHz, 67, 100 %, 449.96 W, 449.25 W
2026/10/09 09:07:15.759, 449.28 W, 2932 MHz, 13801 MHz, 67, 100 %, 448.95 W, 449.28 W
2026/10/09 09:07:16.760, 449.70 W, 2932 MHz, 13801 MHz, 67, 100 %, 448.92 W, 449.70 W
2026/10/09 09:07:17.760, 449.75 W, 2932 MHz, 13801 MHz, 67, 100 %, 449.74 W, 449.75 W
2026/10/09 09:07:18.760, 450.21 W, 2932 MHz, 13801 MHz, 67, 100 %, 449.63 W, 450.21 W
2026/10/09 09:07:19.760, 450.11 W, 2932 MHz, 13801 MHz, 67, 100 %, 451.19 W, 450.11 W
2026/10/09 09:07:20.760, 450.69 W, 2932 MHz, 13801 MHz, 67, 100 %, 451.33 W, 450.69 W
2026/10/09 09:07:21.760, 449.99 W, 2932 MHz, 13801 MHz, 67, 100 %, 450.08 W, 449.99 W
2026/10/09 09:07:22.761, 323.10 W, 2947 MHz, 14001 MHz, 59, 100 %, 113.71 W, 323.10 W
2026/10/09 09:07:23.761, 115.13 W, 2947 MHz, 14001 MHz, 59, 0 %, 112.80 W, 115.13 W
2026/10/09 09:07:24.761, 102.47 W, 2220 MHz, 7001 MHz, 57, 0 %, 101.44 W, 102.47 W
2026/10/09 09:07:25.761, 74.74 W, 397 MHz, 7001 MHz, 56, 0 %, 48.04 W, 74.74 W
2026/10/09 09:07:26.761, 45.66 W, 255 MHz, 7001 MHz, 55, 0 %, 45.66 W, 45.66 W
2026/10/09 09:07:27.761, 44.83 W, 195 MHz, 7001 MHz, 55, 0 %, 44.00 W, 44.83 W
2026/10/09 09:07:28.761, 43.18 W, 195 MHz, 7001 MHz, 54, 0 %, 43.18 W, 43.18 W
2026/10/09 09:07:29.762, 28.26 W, 195 MHz, 810 MHz, 54, 0 %, 28.26 W, 28.26 W
2026/10/09 09:07:30.762, 25.25 W, 195 MHz, 405 MHz, 53, 0 %, 22.23 W, 25.25 W
2026/10/09 09:07:31.762, 19.63 W, 195 MHz, 405 MHz, 53, 0 %, 19.63 W, 19.63 W
2026/10/09 09:07:32.762, 32.82 W, 1515 MHz, 13801 MHz, 54, 0 %, 80.99 W, 32.82 W
2026/10/09 09:07:33.762, 105.47 W, 2625 MHz, 13801 MHz, 55, 0 %, 84.16 W, 105.47 W
2026/10/09 09:07:34.762, 287.73 W, 2947 MHz, 13801 MHz, 63, 100 %, 431.89 W, 287.73 W
2026/10/09 09:07:35.762, 431.51 W, 2932 MHz, 13801 MHz, 64, 100 %, 432.27 W, 431.51 W
2026/10/09 09:07:36.763, 431.86 W, 2932 MHz, 13801 MHz, 64, 100 %, 432.15 W, 431.86 W
2026/10/09 09:07:37.763, 432.58 W, 2932 MHz, 13801 MHz, 64, 100 %, 433.37 W, 432.58 W
2026/10/09 09:07:38.763, 433.05 W, 2932 MHz, 13801 MHz, 64, 100 %, 434.55 W, 433.05 W
2026/10/09 09:07:39.763, 434.25 W, 2932 MHz, 13801 MHz, 64, 100 %, 434.44 W, 434.25 W
2026/10/09 09:07:40.763, 434.67 W, 2932 MHz, 13801 MHz, 65, 100 %, 435.12 W, 434.67 W
2026/10/09 09:07:41.763, 435.87 W, 2932 MHz, 13801 MHz, 65, 100 %, 435.69 W, 435.87 W
2026/10/09 09:07:42.764, 435.36 W, 2932 MHz, 13801 MHz, 65, 100 %, 434.92 W, 435.36 W
2026/10/09 09:07:43.764, 435.63 W, 2932 MHz, 13801 MHz, 65, 100 %, 435.97 W, 435.63 W
2026/10/09 09:07:44.764, 434.61 W, 2932 MHz, 13801 MHz, 65, 100 %, 434.88 W, 434.61 W
2026/10/09 09:07:45.764, 435.49 W, 2932 MHz, 13801 MHz, 65, 100 %, 436.06 W, 435.49 W
2026/10/09 09:07:46.764, 436.51 W, 2932 MHz, 13801 MHz, 65, 100 %, 436.49 W, 436.51 W
2026/10/09 09:07:47.764, 437.37 W, 2932 MHz, 13801 MHz, 65, 100 %, 438.77 W, 437.37 W
2026/10/09 09:07:48.765, 438.38 W, 2932 MHz, 13801 MHz, 65, 100 %, 438.38 W, 438.38 W
2026/10/09 09:07:49.765, 437.87 W, 2932 MHz, 13801 MHz, 65, 100 %, 437.96 W, 437.87 W
2026/10/09 09:07:50.765, 437.02 W, 2932 MHz, 13801 MHz, 66, 100 %, 436.71 W, 437.02 W
2026/10/09 09:07:51.765, 436.85 W, 2932 MHz, 13801 MHz, 66, 100 %, 436.90 W, 436.85 W
2026/10/09 09:07:52.765, 437.46 W, 2932 MHz, 13801 MHz, 66, 100 %, 437.63 W, 437.46 W
2026/10/09 09:07:53.765, 438.19 W, 2932 MHz, 13801 MHz, 66, 100 %, 438.63 W, 438.19 W
2026/10/09 09:07:54.766, 439.15 W, 2932 MHz, 13801 MHz, 66, 100 %, 439.61 W, 439.15 W
2026/10/09 09:07:55.766, 440.03 W, 2932 MHz, 13801 MHz, 66, 100 %, 440.82 W, 440.03 W
2026/10/09 09:07:56.766, 441.52 W, 2932 MHz, 13801 MHz, 66, 100 %, 442.04 W, 441.52 W
2026/10/09 09:07:57.766, 441.48 W, 2932 MHz, 13801 MHz, 66, 100 %, 441.93 W, 441.48 W
2026/10/09 09:07:58.766, 440.32 W, 2932 MHz, 13801 MHz, 66, 100 %, 439.81 W, 440.32 W
2026/10/09 09:07:59.767, 439.43 W, 2932 MHz, 13801 MHz, 66, 100 %, 438.90 W, 439.43 W
2026/10/09 09:08:00.767, 438.83 W, 2932 MHz, 13801 MHz, 66, 100 %, 438.74 W, 438.83 W
2026/10/09 09:08:01.767, 439.38 W, 2932 MHz, 13801 MHz, 66, 100 %, 439.54 W, 439.38 W
2026/10/09 09:08:02.767, 440.17 W, 2932 MHz, 13801 MHz, 66, 100 %, 440.20 W, 440.17 W
2026/10/09 09:08:03.767, 440.83 W, 2932 MHz, 13801 MHz, 66, 100 %, 440.91 W, 440.83 W
2026/10/09 09:08:04.767, 441.73 W, 2932 MHz, 13801 MHz, 67, 100 %, 441.23 W, 441.73 W
2026/10/09 09:08:05.768, 441.68 W, 2932 MHz, 13801 MHz, 67, 100 %, 441.91 W, 441.68 W
2026/10/09 09:08:06.768, 441.48 W, 2932 MHz, 13801 MHz, 67, 100 %, 441.50 W, 441.48 W
2026/10/09 09:08:07.768, 440.98 W, 2932 MHz, 13801 MHz, 67, 100 %, 441.54 W, 440.98 W
2026/10/09 09:08:08.768, 440.52 W, 2932 MHz, 13801 MHz, 67, 100 %, 440.72 W, 440.52 W
2026/10/09 09:08:09.769, 441.14 W, 2932 MHz, 13801 MHz, 67, 100 %, 441.49 W, 441.14 W
2026/10/09 09:08:10.769, 441.60 W, 2932 MHz, 13801 MHz, 67, 99 %, 442.66 W, 441.60 W
2026/10/09 09:08:11.769, 442.40 W, 2932 MHz, 13801 MHz, 67, 100 %, 442.17 W, 442.40 W
2026/10/09 09:08:12.769, 441.72 W, 2932 MHz, 13801 MHz, 67, 100 %, 442.78 W, 441.72 W
2026/10/09 09:08:13.770, 441.54 W, 2932 MHz, 13801 MHz, 67, 100 %, 440.22 W, 441.54 W
2026/10/09 09:08:14.770, 440.85 W, 2932 MHz, 13801 MHz, 67, 100 %, 439.33 W, 440.85 W
2026/10/09 09:08:15.770, 441.36 W, 2932 MHz, 13801 MHz, 67, 100 %, 441.17 W, 441.36 W
2026/10/09 09:08:16.770, 441.62 W, 2932 MHz, 13801 MHz, 67, 100 %, 441.70 W, 441.62 W
2026/10/09 09:08:17.770, 442.71 W, 2932 MHz, 13801 MHz, 67, 100 %, 442.85 W, 442.71 W
2026/10/09 09:08:18.771, 443.26 W, 2932 MHz, 13801 MHz, 67, 100 %, 443.75 W, 443.26 W
2026/10/09 09:08:19.771, 443.99 W, 2932 MHz, 13801 MHz, 67, 100 %, 445.31 W, 443.99 W
2026/10/09 09:08:20.771, 443.76 W, 2932 MHz, 13801 MHz, 67, 100 %, 442.97 W, 443.76 W
2026/10/09 09:08:21.771, 442.63 W, 2932 MHz, 13801 MHz, 67, 100 %, 442.74 W, 442.63 W
2026/10/09 09:08:22.771, 442.41 W, 2932 MHz, 13801 MHz, 67, 100 %, 442.61 W, 442.41 W
2026/10/09 09:08:23.771, 442.21 W, 2932 MHz, 13801 MHz, 67, 100 %, 442.63 W, 442.21 W
2026/10/09 09:08:24.772, 442.44 W, 2932 MHz, 13801 MHz, 67, 100 %, 442.43 W, 442.44 W
2026/10/09 09:08:25.772, 442.92 W, 2932 MHz, 13801 MHz, 67, 100 %, 440.86 W, 442.92 W
2026/10/09 09:08:26.772, 442.86 W, 2932 MHz, 13801 MHz, 67, 100 %, 442.61 W, 442.86 W
2026/10/09 09:08:27.772, 443.39 W, 2932 MHz, 13801 MHz, 67, 100 %, 443.76 W, 443.39 W
2026/10/09 09:08:28.773, 443.30 W, 2932 MHz, 13801 MHz, 67, 100 %, 442.92 W, 443.30 W
2026/10/09 09:08:29.773, 442.78 W, 2932 MHz, 13801 MHz, 67, 100 %, 443.20 W, 442.78 W
2026/10/09 09:08:30.773, 442.11 W, 2932 MHz, 13801 MHz, 68, 100 %, 442.84 W, 442.11 W
2026/10/09 09:08:31.773, 442.68 W, 2932 MHz, 13801 MHz, 68, 100 %, 443.26 W, 442.68 W
2026/10/09 09:08:32.773, 442.80 W, 2932 MHz, 13801 MHz, 68, 100 %, 443.06 W, 442.80 W
2026/10/09 09:08:33.774, 443.60 W, 2932 MHz, 13801 MHz, 68, 100 %, 444.65 W, 443.60 W
2026/10/09 09:08:34.774, 444.33 W, 2932 MHz, 13801 MHz, 68, 100 %, 444.97 W, 444.33 W
2026/10/09 09:08:35.774, 373.14 W, 2932 MHz, 14001 MHz, 61, 100 %, 116.07 W, 373.14 W
2026/10/09 09:08:36.774, 132.74 W, 2947 MHz, 14001 MHz, 59, 0 %, 112.61 W, 132.74 W
2026/10/09 09:08:37.775, 102.82 W, 2745 MHz, 7001 MHz, 57, 0 %, 101.84 W, 102.82 W
2026/10/09 09:08:38.775, 48.40 W, 555 MHz, 7001 MHz, 56, 0 %, 48.40 W, 48.40 W
2026/10/09 09:08:39.775, 45.83 W, 345 MHz, 7001 MHz, 55, 0 %, 45.83 W, 45.83 W
2026/10/09 09:08:40.776, 45.34 W, 217 MHz, 7001 MHz, 55, 0 %, 44.84 W, 45.34 W
2026/10/09 09:08:41.776, 45.24 W, 195 MHz, 7001 MHz, 54, 0 %, 45.24 W, 45.24 W
2026/10/09 09:08:42.776, 41.72 W, 195 MHz, 810 MHz, 54, 0 %, 41.72 W, 41.72 W
2026/10/09 09:08:43.776, 33.31 W, 195 MHz, 810 MHz, 53, 0 %, 24.91 W, 33.31 W
2026/10/09 09:08:44.776, 20.40 W, 195 MHz, 405 MHz, 53, 0 %, 20.40 W, 20.40 W
2026/10/09 09:08:45.777, 20.96 W, 195 MHz, 405 MHz, 53, 0 %, 32.44 W, 20.96 W
2026/10/09 09:08:46.777, 80.04 W, 2542 MHz, 13801 MHz, 54, 0 %, 79.39 W, 80.04 W
2026/10/09 09:08:47.777, 240.92 W, 2947 MHz, 13801 MHz, 61, 6 %, 428.72 W, 240.92 W
2026/10/09 09:08:48.777, 430.50 W, 2932 MHz, 13801 MHz, 63, 100 %, 431.64 W, 430.50 W
2026/10/09 09:08:49.777, 432.03 W, 2932 MHz, 13801 MHz, 64, 100 %, 432.63 W, 432.03 W
2026/10/09 09:08:50.778, 432.95 W, 2932 MHz, 13801 MHz, 64, 100 %, 434.01 W, 432.95 W
2026/10/09 09:08:51.778, 433.56 W, 2932 MHz, 13801 MHz, 64, 100 %, 433.70 W, 433.56 W
2026/10/09 09:08:52.778, 433.02 W, 2932 MHz, 13801 MHz, 64, 100 %, 432.11 W, 433.02 W
2026/10/09 09:08:53.778, 433.28 W, 2932 MHz, 13801 MHz, 64, 100 %, 433.27 W, 433.28 W
2026/10/09 09:08:54.779, 433.47 W, 2932 MHz, 13801 MHz, 65, 100 %, 434.38 W, 433.47 W
2026/10/09 09:08:55.779, 435.03 W, 2932 MHz, 13801 MHz, 65, 100 %, 435.69 W, 435.03 W
2026/10/09 09:08:56.779, 435.24 W, 2932 MHz, 13801 MHz, 65, 100 %, 434.12 W, 435.24 W
2026/10/09 09:08:57.779, 435.92 W, 2932 MHz, 13801 MHz, 65, 100 %, 436.80 W, 435.92 W
2026/10/09 09:08:58.779, 435.40 W, 2932 MHz, 13801 MHz, 65, 100 %, 434.77 W, 435.40 W
2026/10/09 09:08:59.780, 434.63 W, 2932 MHz, 13801 MHz, 65, 100 %, 435.25 W, 434.63 W
2026/10/09 09:09:00.780, 435.78 W, 2932 MHz, 13801 MHz, 65, 100 %, 436.79 W, 435.78 W
2026/10/09 09:09:01.780, 436.27 W, 2932 MHz, 13801 MHz, 65, 100 %, 437.48 W, 436.27 W
2026/10/09 09:09:02.780, 437.70 W, 2932 MHz, 13801 MHz, 65, 100 %, 437.94 W, 437.70 W
2026/10/09 09:09:03.781, 438.49 W, 2932 MHz, 13801 MHz, 65, 100 %, 440.09 W, 438.49 W
2026/10/09 09:09:04.781, 439.33 W, 2932 MHz, 13801 MHz, 66, 100 %, 438.28 W, 439.33 W
2026/10/09 09:09:05.781, 438.69 W, 2932 MHz, 13801 MHz, 66, 100 %, 438.42 W, 438.69 W
2026/10/09 09:09:06.781, 438.98 W, 2932 MHz, 13801 MHz, 66, 100 %, 437.55 W, 438.98 W
2026/10/09 09:09:07.782, 437.60 W, 2932 MHz, 13801 MHz, 66, 100 %, 437.73 W, 437.60 W
2026/10/09 09:09:08.782, 437.94 W, 2932 MHz, 13801 MHz, 66, 100 %, 438.83 W, 437.94 W
2026/10/09 09:09:09.782, 438.73 W, 2932 MHz, 13801 MHz, 66, 100 %, 439.50 W, 438.73 W
2026/10/09 09:09:10.782, 438.90 W, 2932 MHz, 13801 MHz, 66, 100 %, 439.25 W, 438.90 W
2026/10/09 09:09:11.783, 439.36 W, 2932 MHz, 13801 MHz, 66, 100 %, 439.83 W, 439.36 W
2026/10/09 09:09:12.783, 439.82 W, 2932 MHz, 13801 MHz, 66, 100 %, 440.22 W, 439.82 W
2026/10/09 09:09:13.783, 439.94 W, 2932 MHz, 13801 MHz, 66, 100 %, 440.35 W, 439.94 W
2026/10/09 09:09:14.784, 440.27 W, 2932 MHz, 13801 MHz, 66, 100 %, 439.81 W, 440.27 W
2026/10/09 09:09:15.784, 439.17 W, 2932 MHz, 13801 MHz, 66, 100 %, 438.20 W, 439.17 W
2026/10/09 09:09:16.784, 439.05 W, 2932 MHz, 13801 MHz, 66, 100 %, 439.25 W, 439.05 W
2026/10/09 09:09:17.784, 440.14 W, 2932 MHz, 13801 MHz, 66, 100 %, 442.26 W, 440.14 W
2026/10/09 09:09:18.785, 441.01 W, 2932 MHz, 13801 MHz, 67, 100 %, 439.92 W, 441.01 W
2026/10/09 09:09:19.785, 440.89 W, 2932 MHz, 13801 MHz, 67, 100 %, 441.54 W, 440.89 W
2026/10/09 09:09:20.786, 440.82 W, 2932 MHz, 13801 MHz, 67, 100 %, 441.58 W, 440.82 W
2026/10/09 09:09:21.786, 440.67 W, 2932 MHz, 13801 MHz, 67, 100 %, 440.54 W, 440.67 W
2026/10/09 09:09:22.786, 440.11 W, 2932 MHz, 13801 MHz, 67, 100 %, 440.85 W, 440.11 W
2026/10/09 09:09:23.786, 440.24 W, 2932 MHz, 13801 MHz, 67, 100 %, 440.96 W, 440.24 W
2026/10/09 09:09:24.786, 441.01 W, 2932 MHz, 13801 MHz, 67, 100 %, 441.83 W, 441.01 W
2026/10/09 09:09:25.786, 441.97 W, 2932 MHz, 13801 MHz, 67, 100 %, 442.87 W, 441.97 W
2026/10/09 09:09:26.787, 443.01 W, 2932 MHz, 13801 MHz, 67, 100 %, 442.64 W, 443.01 W
2026/10/09 09:09:27.787, 444.17 W, 2932 MHz, 13801 MHz, 67, 100 %, 444.70 W, 444.17 W
2026/10/09 09:09:28.787, 443.55 W, 2932 MHz, 13801 MHz, 67, 100 %, 442.44 W, 443.55 W
2026/10/09 09:09:29.787, 442.40 W, 2932 MHz, 13801 MHz, 67, 100 %, 441.04 W, 442.40 W
2026/10/09 09:09:30.787, 441.92 W, 2932 MHz, 13801 MHz, 67, 100 %, 440.46 W, 441.92 W
2026/10/09 09:09:31.787, 441.91 W, 2932 MHz, 13801 MHz, 67, 100 %, 442.30 W, 441.91 W
2026/10/09 09:09:32.788, 441.91 W, 2932 MHz, 13801 MHz, 67, 100 %, 442.43 W, 441.91 W
2026/10/09 09:09:33.788, 442.54 W, 2932 MHz, 13801 MHz, 67, 100 %, 442.81 W, 442.54 W
2026/10/09 09:09:34.788, 443.31 W, 2932 MHz, 13801 MHz, 67, 100 %, 443.35 W, 443.31 W
2026/10/09 09:09:35.788, 443.45 W, 2932 MHz, 13801 MHz, 67, 100 %, 443.74 W, 443.45 W
2026/10/09 09:09:36.788, 443.37 W, 2932 MHz, 13801 MHz, 67, 100 %, 444.04 W, 443.37 W
2026/10/09 09:09:37.788, 442.71 W, 2932 MHz, 13801 MHz, 67, 100 %, 443.23 W, 442.71 W
2026/10/09 09:09:38.789, 442.91 W, 2932 MHz, 13801 MHz, 67, 100 %, 441.96 W, 442.91 W
2026/10/09 09:09:39.789, 442.24 W, 2932 MHz, 13801 MHz, 67, 100 %, 441.36 W, 442.24 W
2026/10/09 09:09:40.789, 443.02 W, 2932 MHz, 13801 MHz, 67, 100 %, 442.89 W, 443.02 W
2026/10/09 09:09:41.789, 443.51 W, 2932 MHz, 13801 MHz, 67, 100 %, 443.23 W, 443.51 W
2026/10/09 09:09:42.790, 443.93 W, 2932 MHz, 13801 MHz, 68, 100 %, 444.02 W, 443.93 W
2026/10/09 09:09:43.790, 443.37 W, 2932 MHz, 13801 MHz, 68, 100 %, 443.40 W, 443.37 W
2026/10/09 09:09:44.790, 443.07 W, 2932 MHz, 13801 MHz, 68, 100 %, 443.29 W, 443.07 W
2026/10/09 09:09:45.790, 442.82 W, 2932 MHz, 13801 MHz, 68, 100 %, 443.31 W, 442.82 W
2026/10/09 09:09:46.790, 443.19 W, 2932 MHz, 13801 MHz, 68, 100 %, 443.53 W, 443.19 W
2026/10/09 09:09:47.791, 443.18 W, 2932 MHz, 13801 MHz, 68, 100 %, 443.99 W, 443.18 W
2026/10/09 09:09:48.791, 444.31 W, 2932 MHz, 13801 MHz, 68, 100 %, 444.97 W, 444.31 W
2026/10/09 09:09:49.791, 122.28 W, 2947 MHz, 14001 MHz, 59, 0 %, 114.90 W, 122.28 W
2026/10/09 09:09:50.791, 121.64 W, 2947 MHz, 14001 MHz, 59, 0 %, 115.20 W, 121.64 W
2026/10/09 09:09:51.791, 103.82 W, 795 MHz, 14001 MHz, 57, 0 %, 103.82 W, 103.82 W
2026/10/09 09:09:52.792, 42.49 W, 360 MHz, 810 MHz, 55, 0 %, 42.49 W, 42.49 W
2026/10/09 09:09:53.792, 27.18 W, 210 MHz, 810 MHz, 55, 0 %, 27.18 W, 27.18 W
2026/10/09 09:09:54.792, 24.23 W, 195 MHz, 405 MHz, 54, 0 %, 21.27 W, 24.23 W
2026/10/09 09:09:55.793, 20.13 W, 195 MHz, 405 MHz, 54, 0 %, 20.13 W, 20.13 W
2026/10/09 09:09:56.793, 20.03 W, 195 MHz, 405 MHz, 54, 0 %, 19.94 W, 20.03 W
2026/10/09 09:09:57.793, 20.29 W, 195 MHz, 405 MHz, 53, 0 %, 20.29 W, 20.29 W
2026/10/09 09:09:58.793, 20.45 W, 195 MHz, 405 MHz, 53, 0 %, 20.45 W, 20.45 W
2026/10/09 09:09:59.793, 44.67 W, 2542 MHz, 13801 MHz, 54, 0 %, 80.09 W, 44.67 W
2026/10/09 09:10:00.793, 173.43 W, 2677 MHz, 13801 MHz, 61, 6 %, 436.89 W, 173.43 W
2026/10/09 09:10:01.793, 401.91 W, 2932 MHz, 13801 MHz, 63, 100 %, 441.33 W, 401.91 W
2026/10/09 09:10:02.794, 441.88 W, 2932 MHz, 13801 MHz, 64, 100 %, 443.07 W, 441.88 W
2026/10/09 09:10:03.794, 443.09 W, 2932 MHz, 13801 MHz, 64, 100 %, 443.81 W, 443.09 W
2026/10/09 09:10:04.794, 444.19 W, 2932 MHz, 13801 MHz, 64, 100 %, 444.39 W, 444.19 W
2026/10/09 09:10:05.794, 443.87 W, 2932 MHz, 13801 MHz, 65, 100 %, 443.78 W, 443.87 W
2026/10/09 09:10:06.794, 443.51 W, 2932 MHz, 13801 MHz, 65, 100 %, 443.67 W, 443.51 W
2026/10/09 09:10:07.794, 443.74 W, 2932 MHz, 13801 MHz, 65, 100 %, 444.79 W, 443.74 W
2026/10/09 09:10:08.795, 444.57 W, 2932 MHz, 13801 MHz, 65, 100 %, 444.05 W, 444.57 W
2026/10/09 09:10:09.795, 444.35 W, 2932 MHz, 13801 MHz, 65, 100 %, 443.94 W, 444.35 W
2026/10/09 09:10:10.795, 445.52 W, 2932 MHz, 13801 MHz, 65, 100 %, 445.93 W, 445.52 W
2026/10/09 09:10:11.795, 446.57 W, 2932 MHz, 13801 MHz, 65, 100 %, 446.58 W, 446.57 W
2026/10/09 09:10:12.795, 447.46 W, 2932 MHz, 13801 MHz, 65, 100 %, 447.87 W, 447.46 W
2026/10/09 09:10:13.796, 447.70 W, 2932 MHz, 13801 MHz, 66, 100 %, 447.51 W, 447.70 W
2026/10/09 09:10:14.796, 446.70 W, 2932 MHz, 13801 MHz, 66, 100 %, 447.22 W, 446.70 W
2026/10/09 09:10:15.796, 446.06 W, 2932 MHz, 13801 MHz, 66, 100 %, 444.95 W, 446.06 W
2026/10/09 09:10:16.796, 445.07 W, 2932 MHz, 13801 MHz, 66, 100 %, 445.37 W, 445.07 W
2026/10/09 09:10:17.797, 446.28 W, 2932 MHz, 13801 MHz, 66, 100 %, 446.45 W, 446.28 W
2026/10/09 09:10:18.797, 447.26 W, 2932 MHz, 13801 MHz, 66, 100 %, 447.87 W, 447.26 W
2026/10/09 09:10:19.797, 447.49 W, 2932 MHz, 13801 MHz, 66, 100 %, 447.35 W, 447.49 W
2026/10/09 09:10:20.798, 448.46 W, 2932 MHz, 13801 MHz, 66, 100 %, 447.87 W, 448.46 W
2026/10/09 09:10:21.798, 448.38 W, 2932 MHz, 13801 MHz, 66, 100 %, 447.46 W, 448.38 W
2026/10/09 09:10:22.798, 447.71 W, 2932 MHz, 13801 MHz, 66, 100 %, 445.75 W, 447.71 W
2026/10/09 09:10:23.799, 447.69 W, 2932 MHz, 13801 MHz, 66, 100 %, 447.90 W, 447.69 W
2026/10/09 09:10:24.799, 447.49 W, 2932 MHz, 13801 MHz, 66, 100 %, 447.74 W, 447.49 W
2026/10/09 09:10:25.799, 447.71 W, 2932 MHz, 13801 MHz, 67, 100 %, 447.89 W, 447.71 W
2026/10/09 09:10:26.799, 448.39 W, 2932 MHz, 13801 MHz, 67, 100 %, 449.58 W, 448.39 W
2026/10/09 09:10:27.799, 448.94 W, 2932 MHz, 13801 MHz, 67, 100 %, 449.28 W, 448.94 W
2026/10/09 09:10:28.800, 448.84 W, 2932 MHz, 13801 MHz, 67, 100 %, 448.72 W, 448.84 W
2026/10/09 09:10:29.800, 448.24 W, 2932 MHz, 13801 MHz, 67, 100 %, 448.42 W, 448.24 W
2026/10/09 09:10:30.800, 447.18 W, 2932 MHz, 13801 MHz, 67, 100 %, 446.22 W, 447.18 W
2026/10/09 09:10:31.800, 447.33 W, 2932 MHz, 13801 MHz, 66, 100 %, 446.87 W, 447.33 W
2026/10/09 09:10:32.800, 447.82 W, 2932 MHz, 13801 MHz, 67, 100 %, 447.50 W, 447.82 W
2026/10/09 09:10:33.800, 448.67 W, 2932 MHz, 13801 MHz, 67, 100 %, 448.48 W, 448.67 W
2026/10/09 09:10:34.801, 450.29 W, 2932 MHz, 13801 MHz, 67, 100 %, 450.63 W, 450.29 W
2026/10/09 09:10:35.801, 450.55 W, 2932 MHz, 13801 MHz, 67, 100 %, 451.40 W, 450.55 W
2026/10/09 09:10:36.801, 450.43 W, 2932 MHz, 13801 MHz, 67, 100 %, 450.27 W, 450.43 W
2026/10/09 09:10:37.801, 449.76 W, 2932 MHz, 13801 MHz, 67, 100 %, 450.05 W, 449.76 W
2026/10/09 09:10:38.802, 448.65 W, 2932 MHz, 13801 MHz, 67, 100 %, 448.73 W, 448.65 W
2026/10/09 09:10:39.802, 448.17 W, 2932 MHz, 13801 MHz, 67, 100 %, 448.73 W, 448.17 W
2026/10/09 09:10:40.803, 448.71 W, 2932 MHz, 13801 MHz, 67, 100 %, 449.67 W, 448.71 W
2026/10/09 09:10:41.803, 448.96 W, 2932 MHz, 13801 MHz, 67, 100 %, 449.01 W, 448.96 W
2026/10/09 09:10:42.803, 450.33 W, 2932 MHz, 13801 MHz, 67, 100 %, 450.11 W, 450.33 W
2026/10/09 09:10:43.803, 450.17 W, 2932 MHz, 13801 MHz, 67, 100 %, 448.80 W, 450.17 W
2026/10/09 09:10:44.803, 450.80 W, 2932 MHz, 13801 MHz, 67, 100 %, 449.62 W, 450.80 W
2026/10/09 09:10:45.803, 450.61 W, 2932 MHz, 13801 MHz, 67, 100 %, 450.83 W, 450.61 W
2026/10/09 09:10:46.804, 450.00 W, 2932 MHz, 13801 MHz, 67, 100 %, 450.20 W, 450.00 W
2026/10/09 09:10:47.804, 449.80 W, 2932 MHz, 13801 MHz, 67, 100 %, 450.53 W, 449.80 W
2026/10/09 09:10:48.804, 450.37 W, 2932 MHz, 13801 MHz, 67, 100 %, 450.76 W, 450.37 W
2026/10/09 09:10:49.804, 451.11 W, 2932 MHz, 13801 MHz, 67, 100 %, 451.47 W, 451.11 W
2026/10/09 09:10:50.804, 451.54 W, 2932 MHz, 13801 MHz, 67, 100 %, 451.77 W, 451.54 W
2026/10/09 09:10:51.804, 450.40 W, 2932 MHz, 13801 MHz, 67, 100 %, 449.60 W, 450.40 W
2026/10/09 09:10:52.805, 450.12 W, 2932 MHz, 13801 MHz, 67, 100 %, 449.40 W, 450.12 W
2026/10/09 09:10:53.805, 450.24 W, 2932 MHz, 13801 MHz, 67, 100 %, 449.70 W, 450.24 W
2026/10/09 09:10:54.805, 450.42 W, 2932 MHz, 13801 MHz, 67, 100 %, 450.30 W, 450.42 W
2026/10/09 09:10:55.805, 450.95 W, 2932 MHz, 13801 MHz, 67, 100 %, 450.96 W, 450.95 W
2026/10/09 09:10:56.806, 452.20 W, 2932 MHz, 13801 MHz, 67, 100 %, 452.73 W, 452.20 W
2026/10/09 09:10:57.806, 452.07 W, 2932 MHz, 13801 MHz, 67, 100 %, 452.71 W, 452.07 W
2026/10/09 09:10:58.806, 453.17 W, 2932 MHz, 13801 MHz, 67, 100 %, 452.94 W, 453.17 W
2026/10/09 09:10:59.806, 452.71 W, 2932 MHz, 13801 MHz, 67, 100 %, 452.39 W, 452.71 W
2026/10/09 09:11:00.807, 451.96 W, 2932 MHz, 13801 MHz, 67, 100 %, 451.42 W, 451.96 W
2026/10/09 09:11:01.807, 450.69 W, 2932 MHz, 13801 MHz, 67, 100 %, 451.54 W, 450.69 W
2026/10/09 09:11:02.807, 227.35 W, 2947 MHz, 14001 MHz, 59, 0 %, 112.95 W, 227.35 W
2026/10/09 09:11:03.808, 135.24 W, 2947 MHz, 14001 MHz, 59, 0 %, 112.98 W, 135.24 W
2026/10/09 09:11:04.808, 101.36 W, 2692 MHz, 14001 MHz, 57, 0 %, 101.36 W, 101.36 W
2026/10/09 09:11:05.808, 41.78 W, 405 MHz, 810 MHz, 56, 0 %, 41.78 W, 41.78 W
2026/10/09 09:11:06.808, 35.32 W, 240 MHz, 810 MHz, 55, 0 %, 28.87 W, 35.32 W
2026/10/09 09:11:07.809, 25.38 W, 195 MHz, 405 MHz, 55, 0 %, 21.89 W, 25.38 W
2026/10/09 09:11:08.809, 21.58 W, 195 MHz, 405 MHz, 54, 0 %, 21.27 W, 21.58 W
2026/10/09 09:11:09.809, 20.70 W, 195 MHz, 405 MHz, 54, 0 %, 20.13 W, 20.70 W
2026/10/09 09:11:10.809, 19.19 W, 195 MHz, 405 MHz, 53, 0 %, 19.19 W, 19.19 W
2026/10/09 09:11:11.809, 20.04 W, 195 MHz, 405 MHz, 53, 0 %, 20.04 W, 20.04 W
1 2026/10/09 09:01:27.675 12.10 W 195 MHz 405 MHz 36 0 % 12.10 W 12.10 W
2 2026/10/09 09:01:28.680 12.55 W 195 MHz 405 MHz 36 0 % 12.55 W 12.55 W
3 2026/10/09 09:01:29.680 12.19 W 195 MHz 405 MHz 36 0 % 11.82 W 12.19 W
4 2026/10/09 09:01:30.681 11.81 W 195 MHz 405 MHz 36 0 % 11.81 W 11.81 W
5 2026/10/09 09:01:31.681 11.60 W 195 MHz 405 MHz 36 0 % 11.60 W 11.60 W
6 2026/10/09 09:01:32.681 11.69 W 195 MHz 405 MHz 36 0 % 11.78 W 11.69 W
7 2026/10/09 09:01:33.682 25.02 W 2565 MHz 13801 MHz 37 0 % 67.64 W 25.02 W
8 2026/10/09 09:01:34.682 73.28 W 2565 MHz 13801 MHz 38 0 % 68.23 W 73.28 W
9 2026/10/09 09:01:35.682 293.48 W 2955 MHz 13801 MHz 47 15 % 416.93 W 293.48 W
10 2026/10/09 09:01:36.683 416.87 W 2955 MHz 13801 MHz 48 100 % 415.79 W 416.87 W
11 2026/10/09 09:01:37.683 417.16 W 2955 MHz 13801 MHz 48 100 % 416.94 W 417.16 W
12 2026/10/09 09:01:38.683 418.13 W 2955 MHz 13801 MHz 49 100 % 420.63 W 418.13 W
13 2026/10/09 09:01:39.683 421.68 W 2955 MHz 13801 MHz 49 100 % 422.18 W 421.68 W
14 2026/10/09 09:01:40.684 421.70 W 2955 MHz 13801 MHz 49 100 % 421.38 W 421.70 W
15 2026/10/09 09:01:41.684 421.38 W 2955 MHz 13801 MHz 50 100 % 420.82 W 421.38 W
16 2026/10/09 09:01:42.684 421.28 W 2955 MHz 13801 MHz 50 100 % 421.44 W 421.28 W
17 2026/10/09 09:01:43.684 421.84 W 2955 MHz 13801 MHz 50 100 % 422.86 W 421.84 W
18 2026/10/09 09:01:44.684 422.80 W 2955 MHz 13801 MHz 51 100 % 423.64 W 422.80 W
19 2026/10/09 09:01:45.685 423.13 W 2955 MHz 13801 MHz 51 100 % 421.76 W 423.13 W
20 2026/10/09 09:01:46.685 423.09 W 2955 MHz 13801 MHz 51 100 % 422.60 W 423.09 W
21 2026/10/09 09:01:47.685 422.94 W 2955 MHz 13801 MHz 51 100 % 422.92 W 422.94 W
22 2026/10/09 09:01:48.686 422.97 W 2955 MHz 13801 MHz 52 100 % 423.77 W 422.97 W
23 2026/10/09 09:01:49.686 423.69 W 2955 MHz 13801 MHz 52 100 % 424.30 W 423.69 W
24 2026/10/09 09:01:50.686 423.93 W 2955 MHz 13801 MHz 52 99 % 424.16 W 423.93 W
25 2026/10/09 09:01:51.686 425.05 W 2955 MHz 13801 MHz 52 100 % 424.66 W 425.05 W
26 2026/10/09 09:01:52.687 426.29 W 2955 MHz 13801 MHz 53 100 % 426.79 W 426.29 W
27 2026/10/09 09:01:53.687 427.06 W 2955 MHz 13801 MHz 53 100 % 427.24 W 427.06 W
28 2026/10/09 09:01:54.687 426.36 W 2955 MHz 13801 MHz 53 100 % 426.01 W 426.36 W
29 2026/10/09 09:01:55.687 425.69 W 2940 MHz 13801 MHz 53 100 % 425.49 W 425.69 W
30 2026/10/09 09:01:56.687 424.97 W 2940 MHz 13801 MHz 54 99 % 423.61 W 424.97 W
31 2026/10/09 09:01:57.688 425.32 W 2940 MHz 13801 MHz 54 100 % 425.75 W 425.32 W
32 2026/10/09 09:01:58.688 426.20 W 2940 MHz 13801 MHz 54 100 % 426.84 W 426.20 W
33 2026/10/09 09:01:59.688 426.86 W 2940 MHz 13801 MHz 54 100 % 427.17 W 426.86 W
34 2026/10/09 09:02:00.688 427.46 W 2940 MHz 13801 MHz 55 100 % 426.36 W 427.46 W
35 2026/10/09 09:02:01.688 427.72 W 2940 MHz 13801 MHz 55 100 % 428.60 W 427.72 W
36 2026/10/09 09:02:02.688 428.31 W 2940 MHz 13801 MHz 55 100 % 428.07 W 428.31 W
37 2026/10/09 09:02:03.689 427.99 W 2940 MHz 13801 MHz 55 100 % 428.18 W 427.99 W
38 2026/10/09 09:02:04.689 427.85 W 2940 MHz 13801 MHz 56 100 % 427.46 W 427.85 W
39 2026/10/09 09:02:05.689 428.48 W 2940 MHz 13801 MHz 56 100 % 428.07 W 428.48 W
40 2026/10/09 09:02:06.689 429.82 W 2940 MHz 13801 MHz 56 100 % 430.12 W 429.82 W
41 2026/10/09 09:02:07.689 430.11 W 2940 MHz 13801 MHz 56 100 % 430.68 W 430.11 W
42 2026/10/09 09:02:08.689 430.53 W 2947 MHz 13801 MHz 56 100 % 430.64 W 430.53 W
43 2026/10/09 09:02:09.690 430.23 W 2947 MHz 13801 MHz 57 99 % 429.70 W 430.23 W
44 2026/10/09 09:02:10.690 429.68 W 2947 MHz 13801 MHz 57 100 % 428.78 W 429.68 W
45 2026/10/09 09:02:11.690 430.77 W 2947 MHz 13801 MHz 57 100 % 431.27 W 430.77 W
46 2026/10/09 09:02:12.691 431.19 W 2947 MHz 13801 MHz 57 100 % 432.40 W 431.19 W
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48 2026/10/09 09:02:14.691 433.90 W 2947 MHz 13801 MHz 58 100 % 434.61 W 433.90 W
49 2026/10/09 09:02:15.692 434.74 W 2947 MHz 13801 MHz 58 99 % 434.73 W 434.74 W
50 2026/10/09 09:02:16.692 435.48 W 2947 MHz 13801 MHz 58 100 % 436.87 W 435.48 W
51 2026/10/09 09:02:17.692 435.06 W 2947 MHz 13801 MHz 58 100 % 433.81 W 435.06 W
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66 2026/10/09 09:02:32.697 439.63 W 2947 MHz 13801 MHz 61 100 % 439.97 W 439.63 W
67 2026/10/09 09:02:33.697 439.48 W 2947 MHz 13801 MHz 61 100 % 439.56 W 439.48 W
68 2026/10/09 09:02:34.697 411.56 W 2947 MHz 14001 MHz 55 100 % 152.91 W 411.56 W
69 2026/10/09 09:02:35.697 108.99 W 2947 MHz 14001 MHz 53 0 % 103.29 W 108.99 W
70 2026/10/09 09:02:36.697 88.44 W 1755 MHz 14001 MHz 51 0 % 88.44 W 88.44 W
71 2026/10/09 09:02:37.697 37.47 W 390 MHz 810 MHz 50 0 % 37.47 W 37.47 W
72 2026/10/09 09:02:38.698 29.80 W 232 MHz 810 MHz 49 0 % 22.12 W 29.80 W
73 2026/10/09 09:02:39.698 19.93 W 195 MHz 405 MHz 49 0 % 19.93 W 19.93 W
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78 2026/10/09 09:02:44.699 17.15 W 187 MHz 405 MHz 48 0 % 17.15 W 17.15 W
79 2026/10/09 09:02:45.699 71.34 W 2542 MHz 13801 MHz 49 0 % 78.03 W 71.34 W
80 2026/10/09 09:02:46.699 197.86 W 2910 MHz 13801 MHz 56 1 % 424.42 W 197.86 W
81 2026/10/09 09:02:47.699 425.92 W 2947 MHz 13801 MHz 58 100 % 427.10 W 425.92 W
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101 2026/10/09 09:03:07.703 434.10 W 2947 MHz 13801 MHz 62 100 % 435.50 W 434.10 W
102 2026/10/09 09:03:08.703 433.84 W 2932 MHz 13801 MHz 62 100 % 434.48 W 433.84 W
103 2026/10/09 09:03:09.704 434.64 W 2932 MHz 13801 MHz 62 100 % 434.27 W 434.64 W
104 2026/10/09 09:03:10.704 434.77 W 2932 MHz 13801 MHz 63 100 % 434.36 W 434.77 W
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110 2026/10/09 09:03:16.705 436.45 W 2932 MHz 13801 MHz 63 100 % 436.79 W 436.45 W
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112 2026/10/09 09:03:18.706 436.60 W 2932 MHz 13801 MHz 64 100 % 436.61 W 436.60 W
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131 2026/10/09 09:03:37.710 441.62 W 2932 MHz 13801 MHz 65 100 % 441.86 W 441.62 W
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133 2026/10/09 09:03:39.711 442.76 W 2932 MHz 13801 MHz 65 100 % 441.48 W 442.76 W
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139 2026/10/09 09:03:45.712 443.41 W 2932 MHz 13801 MHz 66 100 % 444.45 W 443.41 W
140 2026/10/09 09:03:46.712 248.86 W 2947 MHz 14001 MHz 57 1 % 112.39 W 248.86 W
141 2026/10/09 09:03:47.712 128.04 W 2947 MHz 14001 MHz 57 0 % 112.13 W 128.04 W
142 2026/10/09 09:03:48.713 100.50 W 2692 MHz 14001 MHz 55 0 % 100.50 W 100.50 W
143 2026/10/09 09:03:49.713 74.28 W 405 MHz 7001 MHz 54 0 % 48.06 W 74.28 W
144 2026/10/09 09:03:50.713 42.98 W 255 MHz 7001 MHz 53 0 % 42.98 W 42.98 W
145 2026/10/09 09:03:51.713 36.47 W 195 MHz 810 MHz 53 0 % 36.47 W 36.47 W
146 2026/10/09 09:03:52.714 29.16 W 195 MHz 810 MHz 52 0 % 21.85 W 29.16 W
147 2026/10/09 09:03:53.714 20.81 W 195 MHz 405 MHz 52 0 % 19.78 W 20.81 W
148 2026/10/09 09:03:54.714 19.20 W 195 MHz 405 MHz 52 0 % 19.20 W 19.20 W
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150 2026/10/09 09:03:56.714 36.28 W 2542 MHz 13801 MHz 52 0 % 79.08 W 36.28 W
151 2026/10/09 09:03:57.714 85.00 W 2542 MHz 13801 MHz 52 0 % 78.65 W 85.00 W
152 2026/10/09 09:03:58.715 346.57 W 2947 MHz 13801 MHz 61 99 % 431.39 W 346.57 W
153 2026/10/09 09:03:59.715 432.90 W 2947 MHz 13801 MHz 62 100 % 434.26 W 432.90 W
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162 2026/10/09 09:04:08.718 438.64 W 2932 MHz 13801 MHz 64 100 % 439.95 W 438.64 W
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172 2026/10/09 09:04:18.721 440.35 W 2932 MHz 13801 MHz 65 100 % 441.16 W 440.35 W
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177 2026/10/09 09:04:23.723 441.10 W 2932 MHz 13801 MHz 65 100 % 442.03 W 441.10 W
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181 2026/10/09 09:04:27.724 440.18 W 2932 MHz 13801 MHz 65 100 % 440.46 W 440.18 W
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187 2026/10/09 09:04:33.725 444.47 W 2932 MHz 13801 MHz 66 100 % 444.12 W 444.47 W
188 2026/10/09 09:04:34.725 443.55 W 2932 MHz 13801 MHz 66 100 % 443.62 W 443.55 W
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190 2026/10/09 09:04:36.725 443.06 W 2932 MHz 13801 MHz 66 100 % 443.63 W 443.06 W
191 2026/10/09 09:04:37.726 443.66 W 2932 MHz 13801 MHz 66 100 % 443.47 W 443.66 W
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196 2026/10/09 09:04:42.727 444.19 W 2932 MHz 13801 MHz 66 100 % 444.48 W 444.19 W
197 2026/10/09 09:04:43.727 444.21 W 2932 MHz 13801 MHz 66 100 % 444.03 W 444.21 W
198 2026/10/09 09:04:44.727 443.67 W 2932 MHz 13801 MHz 66 100 % 444.24 W 443.67 W
199 2026/10/09 09:04:45.727 444.33 W 2932 MHz 13801 MHz 67 100 % 444.31 W 444.33 W
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210 2026/10/09 09:04:56.730 445.65 W 2932 MHz 13801 MHz 66 100 % 444.71 W 445.65 W
211 2026/10/09 09:04:57.731 407.83 W 2932 MHz 14001 MHz 61 100 % 126.93 W 407.83 W
212 2026/10/09 09:04:58.731 135.89 W 2947 MHz 14001 MHz 58 0 % 111.01 W 135.89 W
213 2026/10/09 09:04:59.731 101.01 W 2745 MHz 14001 MHz 56 0 % 100.01 W 101.01 W
214 2026/10/09 09:05:00.731 48.27 W 577 MHz 7001 MHz 55 0 % 48.27 W 48.27 W
215 2026/10/09 09:05:01.731 46.96 W 360 MHz 7001 MHz 54 0 % 45.66 W 46.96 W
216 2026/10/09 09:05:02.731 44.03 W 225 MHz 7001 MHz 54 0 % 44.03 W 44.03 W
217 2026/10/09 09:05:03.732 39.56 W 195 MHz 810 MHz 53 0 % 39.56 W 39.56 W
218 2026/10/09 09:05:04.732 30.85 W 195 MHz 810 MHz 53 0 % 22.13 W 30.85 W
219 2026/10/09 09:05:05.732 20.23 W 195 MHz 405 MHz 53 0 % 20.23 W 20.23 W
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222 2026/10/09 09:05:08.733 70.79 W 2542 MHz 13801 MHz 53 0 % 79.96 W 70.79 W
223 2026/10/09 09:05:09.733 187.80 W 2947 MHz 13801 MHz 61 0 % 225.31 W 187.80 W
224 2026/10/09 09:05:10.733 424.00 W 2932 MHz 13801 MHz 63 100 % 443.93 W 424.00 W
225 2026/10/09 09:05:11.733 444.52 W 2932 MHz 13801 MHz 63 100 % 445.36 W 444.52 W
226 2026/10/09 09:05:12.733 444.56 W 2932 MHz 13801 MHz 64 100 % 444.52 W 444.56 W
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228 2026/10/09 09:05:14.734 445.89 W 2932 MHz 13801 MHz 64 100 % 446.51 W 445.89 W
229 2026/10/09 09:05:15.734 447.35 W 2932 MHz 13801 MHz 64 100 % 448.36 W 447.35 W
230 2026/10/09 09:05:16.734 448.85 W 2932 MHz 13801 MHz 64 100 % 449.63 W 448.85 W
231 2026/10/09 09:05:17.734 449.25 W 2932 MHz 13801 MHz 64 100 % 450.79 W 449.25 W
232 2026/10/09 09:05:18.735 450.21 W 2932 MHz 13801 MHz 65 100 % 449.07 W 450.21 W
233 2026/10/09 09:05:19.735 448.98 W 2932 MHz 13801 MHz 65 99 % 447.33 W 448.98 W
234 2026/10/09 09:05:20.735 448.60 W 2932 MHz 13801 MHz 65 100 % 448.61 W 448.60 W
235 2026/10/09 09:05:21.735 448.05 W 2932 MHz 13801 MHz 65 100 % 449.49 W 448.05 W
236 2026/10/09 09:05:22.736 448.65 W 2932 MHz 13801 MHz 65 100 % 449.45 W 448.65 W
237 2026/10/09 09:05:23.736 449.11 W 2932 MHz 13801 MHz 65 100 % 449.60 W 449.11 W
238 2026/10/09 09:05:24.736 449.49 W 2932 MHz 13801 MHz 65 100 % 449.17 W 449.49 W
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240 2026/10/09 09:05:26.736 450.90 W 2932 MHz 13801 MHz 66 100 % 451.51 W 450.90 W
241 2026/10/09 09:05:27.737 450.71 W 2932 MHz 13801 MHz 66 100 % 450.72 W 450.71 W
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249 2026/10/09 09:05:35.739 451.37 W 2932 MHz 13801 MHz 66 100 % 451.85 W 451.37 W
250 2026/10/09 09:05:36.739 451.36 W 2932 MHz 13801 MHz 66 100 % 452.48 W 451.36 W
251 2026/10/09 09:05:37.739 451.91 W 2932 MHz 13801 MHz 66 100 % 452.29 W 451.91 W
252 2026/10/09 09:05:38.740 452.93 W 2932 MHz 13801 MHz 66 100 % 452.40 W 452.93 W
253 2026/10/09 09:05:39.740 453.42 W 2932 MHz 13801 MHz 66 100 % 453.95 W 453.42 W
254 2026/10/09 09:05:40.740 454.61 W 2932 MHz 13801 MHz 66 100 % 455.51 W 454.61 W
255 2026/10/09 09:05:41.740 454.51 W 2932 MHz 13801 MHz 66 100 % 454.29 W 454.51 W
256 2026/10/09 09:05:42.741 453.07 W 2932 MHz 13801 MHz 66 100 % 451.37 W 453.07 W
257 2026/10/09 09:05:43.741 452.22 W 2932 MHz 13801 MHz 66 100 % 451.75 W 452.22 W
258 2026/10/09 09:05:44.741 452.73 W 2932 MHz 13801 MHz 66 100 % 452.96 W 452.73 W
259 2026/10/09 09:05:45.741 452.39 W 2932 MHz 13801 MHz 66 100 % 453.17 W 452.39 W
260 2026/10/09 09:05:46.742 453.17 W 2932 MHz 13801 MHz 66 100 % 454.08 W 453.17 W
261 2026/10/09 09:05:47.742 453.36 W 2932 MHz 13801 MHz 67 100 % 452.93 W 453.36 W
262 2026/10/09 09:05:48.742 454.05 W 2932 MHz 13801 MHz 67 100 % 453.07 W 454.05 W
263 2026/10/09 09:05:49.742 453.63 W 2932 MHz 13801 MHz 67 100 % 454.58 W 453.63 W
264 2026/10/09 09:05:50.742 454.02 W 2932 MHz 13801 MHz 67 100 % 454.61 W 454.02 W
265 2026/10/09 09:05:51.742 453.04 W 2932 MHz 13801 MHz 67 100 % 452.60 W 453.04 W
266 2026/10/09 09:05:52.743 453.03 W 2932 MHz 13801 MHz 67 100 % 452.70 W 453.03 W
267 2026/10/09 09:05:53.743 453.21 W 2932 MHz 13801 MHz 67 100 % 453.71 W 453.21 W
268 2026/10/09 09:05:54.743 454.05 W 2932 MHz 13801 MHz 67 100 % 454.48 W 454.05 W
269 2026/10/09 09:05:55.743 453.72 W 2932 MHz 13801 MHz 67 100 % 453.76 W 453.72 W
270 2026/10/09 09:05:56.744 453.12 W 2932 MHz 13801 MHz 67 100 % 450.73 W 453.12 W
271 2026/10/09 09:05:57.744 452.35 W 2932 MHz 13801 MHz 67 100 % 452.10 W 452.35 W
272 2026/10/09 09:05:58.744 452.67 W 2932 MHz 13801 MHz 67 100 % 453.05 W 452.67 W
273 2026/10/09 09:05:59.745 452.78 W 2932 MHz 13801 MHz 67 100 % 453.27 W 452.78 W
274 2026/10/09 09:06:00.745 453.24 W 2932 MHz 13801 MHz 67 100 % 453.40 W 453.24 W
275 2026/10/09 09:06:01.745 453.58 W 2932 MHz 13801 MHz 67 100 % 453.06 W 453.58 W
276 2026/10/09 09:06:02.745 455.11 W 2932 MHz 13801 MHz 67 100 % 454.90 W 455.11 W
277 2026/10/09 09:06:03.746 455.46 W 2932 MHz 13801 MHz 67 100 % 455.09 W 455.46 W
278 2026/10/09 09:06:04.746 455.17 W 2932 MHz 13801 MHz 67 100 % 454.62 W 455.17 W
279 2026/10/09 09:06:05.746 454.29 W 2932 MHz 13801 MHz 67 100 % 455.05 W 454.29 W
280 2026/10/09 09:06:06.746 453.70 W 2932 MHz 13801 MHz 67 100 % 453.21 W 453.70 W
281 2026/10/09 09:06:07.747 454.08 W 2932 MHz 13801 MHz 67 100 % 453.85 W 454.08 W
282 2026/10/09 09:06:08.747 454.34 W 2932 MHz 13801 MHz 67 100 % 455.47 W 454.34 W
283 2026/10/09 09:06:09.748 250.89 W 2947 MHz 14001 MHz 59 0 % 114.06 W 250.89 W
284 2026/10/09 09:06:10.748 126.39 W 2947 MHz 14001 MHz 59 0 % 112.33 W 126.39 W
285 2026/10/09 09:06:11.748 101.37 W 2685 MHz 7001 MHz 57 0 % 101.37 W 101.37 W
286 2026/10/09 09:06:12.749 74.34 W 405 MHz 7001 MHz 55 0 % 47.31 W 74.34 W
287 2026/10/09 09:06:13.749 46.21 W 255 MHz 7001 MHz 55 0 % 45.11 W 46.21 W
288 2026/10/09 09:06:14.749 44.51 W 195 MHz 7001 MHz 55 0 % 43.92 W 44.51 W
289 2026/10/09 09:06:15.749 43.05 W 195 MHz 7001 MHz 54 0 % 43.05 W 43.05 W
290 2026/10/09 09:06:16.750 27.97 W 195 MHz 810 MHz 54 0 % 27.97 W 27.97 W
291 2026/10/09 09:06:17.750 25.76 W 187 MHz 405 MHz 53 0 % 23.55 W 25.76 W
292 2026/10/09 09:06:18.750 22.12 W 195 MHz 405 MHz 53 0 % 20.69 W 22.12 W
293 2026/10/09 09:06:19.750 37.07 W 2542 MHz 13801 MHz 54 0 % 79.31 W 37.07 W
294 2026/10/09 09:06:20.751 101.04 W 2542 MHz 13801 MHz 54 0 % 79.43 W 101.04 W
295 2026/10/09 09:06:21.751 333.36 W 2932 MHz 13801 MHz 63 32 % 439.39 W 333.36 W
296 2026/10/09 09:06:22.751 441.35 W 2932 MHz 13801 MHz 64 100 % 441.81 W 441.35 W
297 2026/10/09 09:06:23.751 442.73 W 2932 MHz 13801 MHz 64 100 % 442.85 W 442.73 W
298 2026/10/09 09:06:24.751 443.79 W 2932 MHz 13801 MHz 64 100 % 444.89 W 443.79 W
299 2026/10/09 09:06:25.752 445.42 W 2932 MHz 13801 MHz 64 100 % 445.86 W 445.42 W
300 2026/10/09 09:06:26.752 445.26 W 2932 MHz 13801 MHz 64 100 % 445.82 W 445.26 W
301 2026/10/09 09:06:27.752 445.02 W 2932 MHz 13801 MHz 65 100 % 445.17 W 445.02 W
302 2026/10/09 09:06:28.752 443.83 W 2932 MHz 13801 MHz 65 100 % 443.74 W 443.83 W
303 2026/10/09 09:06:29.752 443.72 W 2932 MHz 13801 MHz 65 100 % 444.03 W 443.72 W
304 2026/10/09 09:06:30.752 444.38 W 2932 MHz 13801 MHz 65 100 % 444.92 W 444.38 W
305 2026/10/09 09:06:31.753 444.55 W 2932 MHz 13801 MHz 65 100 % 443.57 W 444.55 W
306 2026/10/09 09:06:32.753 445.36 W 2932 MHz 13801 MHz 65 100 % 444.74 W 445.36 W
307 2026/10/09 09:06:33.753 446.36 W 2932 MHz 13801 MHz 65 100 % 446.05 W 446.36 W
308 2026/10/09 09:06:34.753 446.18 W 2932 MHz 13801 MHz 65 100 % 445.78 W 446.18 W
309 2026/10/09 09:06:35.753 446.64 W 2932 MHz 13801 MHz 66 100 % 446.73 W 446.64 W
310 2026/10/09 09:06:36.753 445.65 W 2932 MHz 13801 MHz 66 100 % 446.60 W 445.65 W
311 2026/10/09 09:06:37.754 446.00 W 2932 MHz 13801 MHz 66 100 % 445.44 W 446.00 W
312 2026/10/09 09:06:38.754 445.88 W 2932 MHz 13801 MHz 66 100 % 446.62 W 445.88 W
313 2026/10/09 09:06:39.754 446.59 W 2932 MHz 13801 MHz 66 100 % 447.76 W 446.59 W
314 2026/10/09 09:06:40.754 447.72 W 2932 MHz 13801 MHz 66 100 % 448.13 W 447.72 W
315 2026/10/09 09:06:41.754 446.92 W 2932 MHz 13801 MHz 66 100 % 446.58 W 446.92 W
316 2026/10/09 09:06:42.754 446.34 W 2932 MHz 13801 MHz 66 100 % 445.33 W 446.34 W
317 2026/10/09 09:06:43.754 446.13 W 2932 MHz 13801 MHz 66 100 % 445.84 W 446.13 W
318 2026/10/09 09:06:44.755 446.66 W 2932 MHz 13801 MHz 66 100 % 446.55 W 446.66 W
319 2026/10/09 09:06:45.755 446.88 W 2932 MHz 13801 MHz 66 99 % 445.79 W 446.88 W
320 2026/10/09 09:06:46.755 448.03 W 2932 MHz 13801 MHz 66 100 % 449.29 W 448.03 W
321 2026/10/09 09:06:47.755 448.52 W 2932 MHz 13801 MHz 67 100 % 448.61 W 448.52 W
322 2026/10/09 09:06:48.755 449.47 W 2932 MHz 13801 MHz 67 100 % 450.53 W 449.47 W
323 2026/10/09 09:06:49.755 449.48 W 2932 MHz 13801 MHz 67 100 % 450.53 W 449.48 W
324 2026/10/09 09:06:50.755 449.19 W 2932 MHz 13801 MHz 66 100 % 449.24 W 449.19 W
325 2026/10/09 09:06:51.756 447.02 W 2932 MHz 13801 MHz 66 100 % 446.76 W 447.02 W
326 2026/10/09 09:06:52.756 446.52 W 2932 MHz 13801 MHz 66 100 % 447.83 W 446.52 W
327 2026/10/09 09:06:53.756 447.26 W 2932 MHz 13801 MHz 66 100 % 447.48 W 447.26 W
328 2026/10/09 09:06:54.756 447.77 W 2932 MHz 13801 MHz 66 100 % 447.68 W 447.77 W
329 2026/10/09 09:06:55.756 447.94 W 2932 MHz 13801 MHz 66 100 % 448.02 W 447.94 W
330 2026/10/09 09:06:56.756 448.75 W 2932 MHz 13801 MHz 66 100 % 448.10 W 448.75 W
331 2026/10/09 09:06:57.756 448.63 W 2932 MHz 13801 MHz 67 100 % 448.81 W 448.63 W
332 2026/10/09 09:06:58.757 448.58 W 2932 MHz 13801 MHz 67 100 % 447.72 W 448.58 W
333 2026/10/09 09:06:59.757 448.04 W 2932 MHz 13801 MHz 67 100 % 448.42 W 448.04 W
334 2026/10/09 09:07:00.757 447.55 W 2932 MHz 13801 MHz 67 100 % 448.52 W 447.55 W
335 2026/10/09 09:07:01.757 448.64 W 2932 MHz 13801 MHz 67 100 % 449.75 W 448.64 W
336 2026/10/09 09:07:02.757 449.50 W 2932 MHz 13801 MHz 67 100 % 450.06 W 449.50 W
337 2026/10/09 09:07:03.757 449.29 W 2932 MHz 13801 MHz 67 100 % 449.81 W 449.29 W
338 2026/10/09 09:07:04.758 448.92 W 2932 MHz 13801 MHz 67 100 % 446.71 W 448.92 W
339 2026/10/09 09:07:05.758 447.75 W 2932 MHz 13801 MHz 67 100 % 447.00 W 447.75 W
340 2026/10/09 09:07:06.758 448.28 W 2932 MHz 13801 MHz 67 100 % 447.73 W 448.28 W
341 2026/10/09 09:07:07.758 449.08 W 2932 MHz 13801 MHz 67 100 % 448.80 W 449.08 W
342 2026/10/09 09:07:08.758 449.29 W 2932 MHz 13801 MHz 67 100 % 450.00 W 449.29 W
343 2026/10/09 09:07:09.758 450.17 W 2932 MHz 13801 MHz 67 100 % 451.30 W 450.17 W
344 2026/10/09 09:07:10.759 450.92 W 2932 MHz 13801 MHz 67 100 % 451.67 W 450.92 W
345 2026/10/09 09:07:11.759 451.85 W 2932 MHz 13801 MHz 67 100 % 452.10 W 451.85 W
346 2026/10/09 09:07:12.759 450.48 W 2932 MHz 13801 MHz 67 100 % 450.91 W 450.48 W
347 2026/10/09 09:07:13.759 450.17 W 2932 MHz 13801 MHz 67 100 % 449.55 W 450.17 W
348 2026/10/09 09:07:14.759 449.25 W 2932 MHz 13801 MHz 67 100 % 449.96 W 449.25 W
349 2026/10/09 09:07:15.759 449.28 W 2932 MHz 13801 MHz 67 100 % 448.95 W 449.28 W
350 2026/10/09 09:07:16.760 449.70 W 2932 MHz 13801 MHz 67 100 % 448.92 W 449.70 W
351 2026/10/09 09:07:17.760 449.75 W 2932 MHz 13801 MHz 67 100 % 449.74 W 449.75 W
352 2026/10/09 09:07:18.760 450.21 W 2932 MHz 13801 MHz 67 100 % 449.63 W 450.21 W
353 2026/10/09 09:07:19.760 450.11 W 2932 MHz 13801 MHz 67 100 % 451.19 W 450.11 W
354 2026/10/09 09:07:20.760 450.69 W 2932 MHz 13801 MHz 67 100 % 451.33 W 450.69 W
355 2026/10/09 09:07:21.760 449.99 W 2932 MHz 13801 MHz 67 100 % 450.08 W 449.99 W
356 2026/10/09 09:07:22.761 323.10 W 2947 MHz 14001 MHz 59 100 % 113.71 W 323.10 W
357 2026/10/09 09:07:23.761 115.13 W 2947 MHz 14001 MHz 59 0 % 112.80 W 115.13 W
358 2026/10/09 09:07:24.761 102.47 W 2220 MHz 7001 MHz 57 0 % 101.44 W 102.47 W
359 2026/10/09 09:07:25.761 74.74 W 397 MHz 7001 MHz 56 0 % 48.04 W 74.74 W
360 2026/10/09 09:07:26.761 45.66 W 255 MHz 7001 MHz 55 0 % 45.66 W 45.66 W
361 2026/10/09 09:07:27.761 44.83 W 195 MHz 7001 MHz 55 0 % 44.00 W 44.83 W
362 2026/10/09 09:07:28.761 43.18 W 195 MHz 7001 MHz 54 0 % 43.18 W 43.18 W
363 2026/10/09 09:07:29.762 28.26 W 195 MHz 810 MHz 54 0 % 28.26 W 28.26 W
364 2026/10/09 09:07:30.762 25.25 W 195 MHz 405 MHz 53 0 % 22.23 W 25.25 W
365 2026/10/09 09:07:31.762 19.63 W 195 MHz 405 MHz 53 0 % 19.63 W 19.63 W
366 2026/10/09 09:07:32.762 32.82 W 1515 MHz 13801 MHz 54 0 % 80.99 W 32.82 W
367 2026/10/09 09:07:33.762 105.47 W 2625 MHz 13801 MHz 55 0 % 84.16 W 105.47 W
368 2026/10/09 09:07:34.762 287.73 W 2947 MHz 13801 MHz 63 100 % 431.89 W 287.73 W
369 2026/10/09 09:07:35.762 431.51 W 2932 MHz 13801 MHz 64 100 % 432.27 W 431.51 W
370 2026/10/09 09:07:36.763 431.86 W 2932 MHz 13801 MHz 64 100 % 432.15 W 431.86 W
371 2026/10/09 09:07:37.763 432.58 W 2932 MHz 13801 MHz 64 100 % 433.37 W 432.58 W
372 2026/10/09 09:07:38.763 433.05 W 2932 MHz 13801 MHz 64 100 % 434.55 W 433.05 W
373 2026/10/09 09:07:39.763 434.25 W 2932 MHz 13801 MHz 64 100 % 434.44 W 434.25 W
374 2026/10/09 09:07:40.763 434.67 W 2932 MHz 13801 MHz 65 100 % 435.12 W 434.67 W
375 2026/10/09 09:07:41.763 435.87 W 2932 MHz 13801 MHz 65 100 % 435.69 W 435.87 W
376 2026/10/09 09:07:42.764 435.36 W 2932 MHz 13801 MHz 65 100 % 434.92 W 435.36 W
377 2026/10/09 09:07:43.764 435.63 W 2932 MHz 13801 MHz 65 100 % 435.97 W 435.63 W
378 2026/10/09 09:07:44.764 434.61 W 2932 MHz 13801 MHz 65 100 % 434.88 W 434.61 W
379 2026/10/09 09:07:45.764 435.49 W 2932 MHz 13801 MHz 65 100 % 436.06 W 435.49 W
380 2026/10/09 09:07:46.764 436.51 W 2932 MHz 13801 MHz 65 100 % 436.49 W 436.51 W
381 2026/10/09 09:07:47.764 437.37 W 2932 MHz 13801 MHz 65 100 % 438.77 W 437.37 W
382 2026/10/09 09:07:48.765 438.38 W 2932 MHz 13801 MHz 65 100 % 438.38 W 438.38 W
383 2026/10/09 09:07:49.765 437.87 W 2932 MHz 13801 MHz 65 100 % 437.96 W 437.87 W
384 2026/10/09 09:07:50.765 437.02 W 2932 MHz 13801 MHz 66 100 % 436.71 W 437.02 W
385 2026/10/09 09:07:51.765 436.85 W 2932 MHz 13801 MHz 66 100 % 436.90 W 436.85 W
386 2026/10/09 09:07:52.765 437.46 W 2932 MHz 13801 MHz 66 100 % 437.63 W 437.46 W
387 2026/10/09 09:07:53.765 438.19 W 2932 MHz 13801 MHz 66 100 % 438.63 W 438.19 W
388 2026/10/09 09:07:54.766 439.15 W 2932 MHz 13801 MHz 66 100 % 439.61 W 439.15 W
389 2026/10/09 09:07:55.766 440.03 W 2932 MHz 13801 MHz 66 100 % 440.82 W 440.03 W
390 2026/10/09 09:07:56.766 441.52 W 2932 MHz 13801 MHz 66 100 % 442.04 W 441.52 W
391 2026/10/09 09:07:57.766 441.48 W 2932 MHz 13801 MHz 66 100 % 441.93 W 441.48 W
392 2026/10/09 09:07:58.766 440.32 W 2932 MHz 13801 MHz 66 100 % 439.81 W 440.32 W
393 2026/10/09 09:07:59.767 439.43 W 2932 MHz 13801 MHz 66 100 % 438.90 W 439.43 W
394 2026/10/09 09:08:00.767 438.83 W 2932 MHz 13801 MHz 66 100 % 438.74 W 438.83 W
395 2026/10/09 09:08:01.767 439.38 W 2932 MHz 13801 MHz 66 100 % 439.54 W 439.38 W
396 2026/10/09 09:08:02.767 440.17 W 2932 MHz 13801 MHz 66 100 % 440.20 W 440.17 W
397 2026/10/09 09:08:03.767 440.83 W 2932 MHz 13801 MHz 66 100 % 440.91 W 440.83 W
398 2026/10/09 09:08:04.767 441.73 W 2932 MHz 13801 MHz 67 100 % 441.23 W 441.73 W
399 2026/10/09 09:08:05.768 441.68 W 2932 MHz 13801 MHz 67 100 % 441.91 W 441.68 W
400 2026/10/09 09:08:06.768 441.48 W 2932 MHz 13801 MHz 67 100 % 441.50 W 441.48 W
401 2026/10/09 09:08:07.768 440.98 W 2932 MHz 13801 MHz 67 100 % 441.54 W 440.98 W
402 2026/10/09 09:08:08.768 440.52 W 2932 MHz 13801 MHz 67 100 % 440.72 W 440.52 W
403 2026/10/09 09:08:09.769 441.14 W 2932 MHz 13801 MHz 67 100 % 441.49 W 441.14 W
404 2026/10/09 09:08:10.769 441.60 W 2932 MHz 13801 MHz 67 99 % 442.66 W 441.60 W
405 2026/10/09 09:08:11.769 442.40 W 2932 MHz 13801 MHz 67 100 % 442.17 W 442.40 W
406 2026/10/09 09:08:12.769 441.72 W 2932 MHz 13801 MHz 67 100 % 442.78 W 441.72 W
407 2026/10/09 09:08:13.770 441.54 W 2932 MHz 13801 MHz 67 100 % 440.22 W 441.54 W
408 2026/10/09 09:08:14.770 440.85 W 2932 MHz 13801 MHz 67 100 % 439.33 W 440.85 W
409 2026/10/09 09:08:15.770 441.36 W 2932 MHz 13801 MHz 67 100 % 441.17 W 441.36 W
410 2026/10/09 09:08:16.770 441.62 W 2932 MHz 13801 MHz 67 100 % 441.70 W 441.62 W
411 2026/10/09 09:08:17.770 442.71 W 2932 MHz 13801 MHz 67 100 % 442.85 W 442.71 W
412 2026/10/09 09:08:18.771 443.26 W 2932 MHz 13801 MHz 67 100 % 443.75 W 443.26 W
413 2026/10/09 09:08:19.771 443.99 W 2932 MHz 13801 MHz 67 100 % 445.31 W 443.99 W
414 2026/10/09 09:08:20.771 443.76 W 2932 MHz 13801 MHz 67 100 % 442.97 W 443.76 W
415 2026/10/09 09:08:21.771 442.63 W 2932 MHz 13801 MHz 67 100 % 442.74 W 442.63 W
416 2026/10/09 09:08:22.771 442.41 W 2932 MHz 13801 MHz 67 100 % 442.61 W 442.41 W
417 2026/10/09 09:08:23.771 442.21 W 2932 MHz 13801 MHz 67 100 % 442.63 W 442.21 W
418 2026/10/09 09:08:24.772 442.44 W 2932 MHz 13801 MHz 67 100 % 442.43 W 442.44 W
419 2026/10/09 09:08:25.772 442.92 W 2932 MHz 13801 MHz 67 100 % 440.86 W 442.92 W
420 2026/10/09 09:08:26.772 442.86 W 2932 MHz 13801 MHz 67 100 % 442.61 W 442.86 W
421 2026/10/09 09:08:27.772 443.39 W 2932 MHz 13801 MHz 67 100 % 443.76 W 443.39 W
422 2026/10/09 09:08:28.773 443.30 W 2932 MHz 13801 MHz 67 100 % 442.92 W 443.30 W
423 2026/10/09 09:08:29.773 442.78 W 2932 MHz 13801 MHz 67 100 % 443.20 W 442.78 W
424 2026/10/09 09:08:30.773 442.11 W 2932 MHz 13801 MHz 68 100 % 442.84 W 442.11 W
425 2026/10/09 09:08:31.773 442.68 W 2932 MHz 13801 MHz 68 100 % 443.26 W 442.68 W
426 2026/10/09 09:08:32.773 442.80 W 2932 MHz 13801 MHz 68 100 % 443.06 W 442.80 W
427 2026/10/09 09:08:33.774 443.60 W 2932 MHz 13801 MHz 68 100 % 444.65 W 443.60 W
428 2026/10/09 09:08:34.774 444.33 W 2932 MHz 13801 MHz 68 100 % 444.97 W 444.33 W
429 2026/10/09 09:08:35.774 373.14 W 2932 MHz 14001 MHz 61 100 % 116.07 W 373.14 W
430 2026/10/09 09:08:36.774 132.74 W 2947 MHz 14001 MHz 59 0 % 112.61 W 132.74 W
431 2026/10/09 09:08:37.775 102.82 W 2745 MHz 7001 MHz 57 0 % 101.84 W 102.82 W
432 2026/10/09 09:08:38.775 48.40 W 555 MHz 7001 MHz 56 0 % 48.40 W 48.40 W
433 2026/10/09 09:08:39.775 45.83 W 345 MHz 7001 MHz 55 0 % 45.83 W 45.83 W
434 2026/10/09 09:08:40.776 45.34 W 217 MHz 7001 MHz 55 0 % 44.84 W 45.34 W
435 2026/10/09 09:08:41.776 45.24 W 195 MHz 7001 MHz 54 0 % 45.24 W 45.24 W
436 2026/10/09 09:08:42.776 41.72 W 195 MHz 810 MHz 54 0 % 41.72 W 41.72 W
437 2026/10/09 09:08:43.776 33.31 W 195 MHz 810 MHz 53 0 % 24.91 W 33.31 W
438 2026/10/09 09:08:44.776 20.40 W 195 MHz 405 MHz 53 0 % 20.40 W 20.40 W
439 2026/10/09 09:08:45.777 20.96 W 195 MHz 405 MHz 53 0 % 32.44 W 20.96 W
440 2026/10/09 09:08:46.777 80.04 W 2542 MHz 13801 MHz 54 0 % 79.39 W 80.04 W
441 2026/10/09 09:08:47.777 240.92 W 2947 MHz 13801 MHz 61 6 % 428.72 W 240.92 W
442 2026/10/09 09:08:48.777 430.50 W 2932 MHz 13801 MHz 63 100 % 431.64 W 430.50 W
443 2026/10/09 09:08:49.777 432.03 W 2932 MHz 13801 MHz 64 100 % 432.63 W 432.03 W
444 2026/10/09 09:08:50.778 432.95 W 2932 MHz 13801 MHz 64 100 % 434.01 W 432.95 W
445 2026/10/09 09:08:51.778 433.56 W 2932 MHz 13801 MHz 64 100 % 433.70 W 433.56 W
446 2026/10/09 09:08:52.778 433.02 W 2932 MHz 13801 MHz 64 100 % 432.11 W 433.02 W
447 2026/10/09 09:08:53.778 433.28 W 2932 MHz 13801 MHz 64 100 % 433.27 W 433.28 W
448 2026/10/09 09:08:54.779 433.47 W 2932 MHz 13801 MHz 65 100 % 434.38 W 433.47 W
449 2026/10/09 09:08:55.779 435.03 W 2932 MHz 13801 MHz 65 100 % 435.69 W 435.03 W
450 2026/10/09 09:08:56.779 435.24 W 2932 MHz 13801 MHz 65 100 % 434.12 W 435.24 W
451 2026/10/09 09:08:57.779 435.92 W 2932 MHz 13801 MHz 65 100 % 436.80 W 435.92 W
452 2026/10/09 09:08:58.779 435.40 W 2932 MHz 13801 MHz 65 100 % 434.77 W 435.40 W
453 2026/10/09 09:08:59.780 434.63 W 2932 MHz 13801 MHz 65 100 % 435.25 W 434.63 W
454 2026/10/09 09:09:00.780 435.78 W 2932 MHz 13801 MHz 65 100 % 436.79 W 435.78 W
455 2026/10/09 09:09:01.780 436.27 W 2932 MHz 13801 MHz 65 100 % 437.48 W 436.27 W
456 2026/10/09 09:09:02.780 437.70 W 2932 MHz 13801 MHz 65 100 % 437.94 W 437.70 W
457 2026/10/09 09:09:03.781 438.49 W 2932 MHz 13801 MHz 65 100 % 440.09 W 438.49 W
458 2026/10/09 09:09:04.781 439.33 W 2932 MHz 13801 MHz 66 100 % 438.28 W 439.33 W
459 2026/10/09 09:09:05.781 438.69 W 2932 MHz 13801 MHz 66 100 % 438.42 W 438.69 W
460 2026/10/09 09:09:06.781 438.98 W 2932 MHz 13801 MHz 66 100 % 437.55 W 438.98 W
461 2026/10/09 09:09:07.782 437.60 W 2932 MHz 13801 MHz 66 100 % 437.73 W 437.60 W
462 2026/10/09 09:09:08.782 437.94 W 2932 MHz 13801 MHz 66 100 % 438.83 W 437.94 W
463 2026/10/09 09:09:09.782 438.73 W 2932 MHz 13801 MHz 66 100 % 439.50 W 438.73 W
464 2026/10/09 09:09:10.782 438.90 W 2932 MHz 13801 MHz 66 100 % 439.25 W 438.90 W
465 2026/10/09 09:09:11.783 439.36 W 2932 MHz 13801 MHz 66 100 % 439.83 W 439.36 W
466 2026/10/09 09:09:12.783 439.82 W 2932 MHz 13801 MHz 66 100 % 440.22 W 439.82 W
467 2026/10/09 09:09:13.783 439.94 W 2932 MHz 13801 MHz 66 100 % 440.35 W 439.94 W
468 2026/10/09 09:09:14.784 440.27 W 2932 MHz 13801 MHz 66 100 % 439.81 W 440.27 W
469 2026/10/09 09:09:15.784 439.17 W 2932 MHz 13801 MHz 66 100 % 438.20 W 439.17 W
470 2026/10/09 09:09:16.784 439.05 W 2932 MHz 13801 MHz 66 100 % 439.25 W 439.05 W
471 2026/10/09 09:09:17.784 440.14 W 2932 MHz 13801 MHz 66 100 % 442.26 W 440.14 W
472 2026/10/09 09:09:18.785 441.01 W 2932 MHz 13801 MHz 67 100 % 439.92 W 441.01 W
473 2026/10/09 09:09:19.785 440.89 W 2932 MHz 13801 MHz 67 100 % 441.54 W 440.89 W
474 2026/10/09 09:09:20.786 440.82 W 2932 MHz 13801 MHz 67 100 % 441.58 W 440.82 W
475 2026/10/09 09:09:21.786 440.67 W 2932 MHz 13801 MHz 67 100 % 440.54 W 440.67 W
476 2026/10/09 09:09:22.786 440.11 W 2932 MHz 13801 MHz 67 100 % 440.85 W 440.11 W
477 2026/10/09 09:09:23.786 440.24 W 2932 MHz 13801 MHz 67 100 % 440.96 W 440.24 W
478 2026/10/09 09:09:24.786 441.01 W 2932 MHz 13801 MHz 67 100 % 441.83 W 441.01 W
479 2026/10/09 09:09:25.786 441.97 W 2932 MHz 13801 MHz 67 100 % 442.87 W 441.97 W
480 2026/10/09 09:09:26.787 443.01 W 2932 MHz 13801 MHz 67 100 % 442.64 W 443.01 W
481 2026/10/09 09:09:27.787 444.17 W 2932 MHz 13801 MHz 67 100 % 444.70 W 444.17 W
482 2026/10/09 09:09:28.787 443.55 W 2932 MHz 13801 MHz 67 100 % 442.44 W 443.55 W
483 2026/10/09 09:09:29.787 442.40 W 2932 MHz 13801 MHz 67 100 % 441.04 W 442.40 W
484 2026/10/09 09:09:30.787 441.92 W 2932 MHz 13801 MHz 67 100 % 440.46 W 441.92 W
485 2026/10/09 09:09:31.787 441.91 W 2932 MHz 13801 MHz 67 100 % 442.30 W 441.91 W
486 2026/10/09 09:09:32.788 441.91 W 2932 MHz 13801 MHz 67 100 % 442.43 W 441.91 W
487 2026/10/09 09:09:33.788 442.54 W 2932 MHz 13801 MHz 67 100 % 442.81 W 442.54 W
488 2026/10/09 09:09:34.788 443.31 W 2932 MHz 13801 MHz 67 100 % 443.35 W 443.31 W
489 2026/10/09 09:09:35.788 443.45 W 2932 MHz 13801 MHz 67 100 % 443.74 W 443.45 W
490 2026/10/09 09:09:36.788 443.37 W 2932 MHz 13801 MHz 67 100 % 444.04 W 443.37 W
491 2026/10/09 09:09:37.788 442.71 W 2932 MHz 13801 MHz 67 100 % 443.23 W 442.71 W
492 2026/10/09 09:09:38.789 442.91 W 2932 MHz 13801 MHz 67 100 % 441.96 W 442.91 W
493 2026/10/09 09:09:39.789 442.24 W 2932 MHz 13801 MHz 67 100 % 441.36 W 442.24 W
494 2026/10/09 09:09:40.789 443.02 W 2932 MHz 13801 MHz 67 100 % 442.89 W 443.02 W
495 2026/10/09 09:09:41.789 443.51 W 2932 MHz 13801 MHz 67 100 % 443.23 W 443.51 W
496 2026/10/09 09:09:42.790 443.93 W 2932 MHz 13801 MHz 68 100 % 444.02 W 443.93 W
497 2026/10/09 09:09:43.790 443.37 W 2932 MHz 13801 MHz 68 100 % 443.40 W 443.37 W
498 2026/10/09 09:09:44.790 443.07 W 2932 MHz 13801 MHz 68 100 % 443.29 W 443.07 W
499 2026/10/09 09:09:45.790 442.82 W 2932 MHz 13801 MHz 68 100 % 443.31 W 442.82 W
500 2026/10/09 09:09:46.790 443.19 W 2932 MHz 13801 MHz 68 100 % 443.53 W 443.19 W
501 2026/10/09 09:09:47.791 443.18 W 2932 MHz 13801 MHz 68 100 % 443.99 W 443.18 W
502 2026/10/09 09:09:48.791 444.31 W 2932 MHz 13801 MHz 68 100 % 444.97 W 444.31 W
503 2026/10/09 09:09:49.791 122.28 W 2947 MHz 14001 MHz 59 0 % 114.90 W 122.28 W
504 2026/10/09 09:09:50.791 121.64 W 2947 MHz 14001 MHz 59 0 % 115.20 W 121.64 W
505 2026/10/09 09:09:51.791 103.82 W 795 MHz 14001 MHz 57 0 % 103.82 W 103.82 W
506 2026/10/09 09:09:52.792 42.49 W 360 MHz 810 MHz 55 0 % 42.49 W 42.49 W
507 2026/10/09 09:09:53.792 27.18 W 210 MHz 810 MHz 55 0 % 27.18 W 27.18 W
508 2026/10/09 09:09:54.792 24.23 W 195 MHz 405 MHz 54 0 % 21.27 W 24.23 W
509 2026/10/09 09:09:55.793 20.13 W 195 MHz 405 MHz 54 0 % 20.13 W 20.13 W
510 2026/10/09 09:09:56.793 20.03 W 195 MHz 405 MHz 54 0 % 19.94 W 20.03 W
511 2026/10/09 09:09:57.793 20.29 W 195 MHz 405 MHz 53 0 % 20.29 W 20.29 W
512 2026/10/09 09:09:58.793 20.45 W 195 MHz 405 MHz 53 0 % 20.45 W 20.45 W
513 2026/10/09 09:09:59.793 44.67 W 2542 MHz 13801 MHz 54 0 % 80.09 W 44.67 W
514 2026/10/09 09:10:00.793 173.43 W 2677 MHz 13801 MHz 61 6 % 436.89 W 173.43 W
515 2026/10/09 09:10:01.793 401.91 W 2932 MHz 13801 MHz 63 100 % 441.33 W 401.91 W
516 2026/10/09 09:10:02.794 441.88 W 2932 MHz 13801 MHz 64 100 % 443.07 W 441.88 W
517 2026/10/09 09:10:03.794 443.09 W 2932 MHz 13801 MHz 64 100 % 443.81 W 443.09 W
518 2026/10/09 09:10:04.794 444.19 W 2932 MHz 13801 MHz 64 100 % 444.39 W 444.19 W
519 2026/10/09 09:10:05.794 443.87 W 2932 MHz 13801 MHz 65 100 % 443.78 W 443.87 W
520 2026/10/09 09:10:06.794 443.51 W 2932 MHz 13801 MHz 65 100 % 443.67 W 443.51 W
521 2026/10/09 09:10:07.794 443.74 W 2932 MHz 13801 MHz 65 100 % 444.79 W 443.74 W
522 2026/10/09 09:10:08.795 444.57 W 2932 MHz 13801 MHz 65 100 % 444.05 W 444.57 W
523 2026/10/09 09:10:09.795 444.35 W 2932 MHz 13801 MHz 65 100 % 443.94 W 444.35 W
524 2026/10/09 09:10:10.795 445.52 W 2932 MHz 13801 MHz 65 100 % 445.93 W 445.52 W
525 2026/10/09 09:10:11.795 446.57 W 2932 MHz 13801 MHz 65 100 % 446.58 W 446.57 W
526 2026/10/09 09:10:12.795 447.46 W 2932 MHz 13801 MHz 65 100 % 447.87 W 447.46 W
527 2026/10/09 09:10:13.796 447.70 W 2932 MHz 13801 MHz 66 100 % 447.51 W 447.70 W
528 2026/10/09 09:10:14.796 446.70 W 2932 MHz 13801 MHz 66 100 % 447.22 W 446.70 W
529 2026/10/09 09:10:15.796 446.06 W 2932 MHz 13801 MHz 66 100 % 444.95 W 446.06 W
530 2026/10/09 09:10:16.796 445.07 W 2932 MHz 13801 MHz 66 100 % 445.37 W 445.07 W
531 2026/10/09 09:10:17.797 446.28 W 2932 MHz 13801 MHz 66 100 % 446.45 W 446.28 W
532 2026/10/09 09:10:18.797 447.26 W 2932 MHz 13801 MHz 66 100 % 447.87 W 447.26 W
533 2026/10/09 09:10:19.797 447.49 W 2932 MHz 13801 MHz 66 100 % 447.35 W 447.49 W
534 2026/10/09 09:10:20.798 448.46 W 2932 MHz 13801 MHz 66 100 % 447.87 W 448.46 W
535 2026/10/09 09:10:21.798 448.38 W 2932 MHz 13801 MHz 66 100 % 447.46 W 448.38 W
536 2026/10/09 09:10:22.798 447.71 W 2932 MHz 13801 MHz 66 100 % 445.75 W 447.71 W
537 2026/10/09 09:10:23.799 447.69 W 2932 MHz 13801 MHz 66 100 % 447.90 W 447.69 W
538 2026/10/09 09:10:24.799 447.49 W 2932 MHz 13801 MHz 66 100 % 447.74 W 447.49 W
539 2026/10/09 09:10:25.799 447.71 W 2932 MHz 13801 MHz 67 100 % 447.89 W 447.71 W
540 2026/10/09 09:10:26.799 448.39 W 2932 MHz 13801 MHz 67 100 % 449.58 W 448.39 W
541 2026/10/09 09:10:27.799 448.94 W 2932 MHz 13801 MHz 67 100 % 449.28 W 448.94 W
542 2026/10/09 09:10:28.800 448.84 W 2932 MHz 13801 MHz 67 100 % 448.72 W 448.84 W
543 2026/10/09 09:10:29.800 448.24 W 2932 MHz 13801 MHz 67 100 % 448.42 W 448.24 W
544 2026/10/09 09:10:30.800 447.18 W 2932 MHz 13801 MHz 67 100 % 446.22 W 447.18 W
545 2026/10/09 09:10:31.800 447.33 W 2932 MHz 13801 MHz 66 100 % 446.87 W 447.33 W
546 2026/10/09 09:10:32.800 447.82 W 2932 MHz 13801 MHz 67 100 % 447.50 W 447.82 W
547 2026/10/09 09:10:33.800 448.67 W 2932 MHz 13801 MHz 67 100 % 448.48 W 448.67 W
548 2026/10/09 09:10:34.801 450.29 W 2932 MHz 13801 MHz 67 100 % 450.63 W 450.29 W
549 2026/10/09 09:10:35.801 450.55 W 2932 MHz 13801 MHz 67 100 % 451.40 W 450.55 W
550 2026/10/09 09:10:36.801 450.43 W 2932 MHz 13801 MHz 67 100 % 450.27 W 450.43 W
551 2026/10/09 09:10:37.801 449.76 W 2932 MHz 13801 MHz 67 100 % 450.05 W 449.76 W
552 2026/10/09 09:10:38.802 448.65 W 2932 MHz 13801 MHz 67 100 % 448.73 W 448.65 W
553 2026/10/09 09:10:39.802 448.17 W 2932 MHz 13801 MHz 67 100 % 448.73 W 448.17 W
554 2026/10/09 09:10:40.803 448.71 W 2932 MHz 13801 MHz 67 100 % 449.67 W 448.71 W
555 2026/10/09 09:10:41.803 448.96 W 2932 MHz 13801 MHz 67 100 % 449.01 W 448.96 W
556 2026/10/09 09:10:42.803 450.33 W 2932 MHz 13801 MHz 67 100 % 450.11 W 450.33 W
557 2026/10/09 09:10:43.803 450.17 W 2932 MHz 13801 MHz 67 100 % 448.80 W 450.17 W
558 2026/10/09 09:10:44.803 450.80 W 2932 MHz 13801 MHz 67 100 % 449.62 W 450.80 W
559 2026/10/09 09:10:45.803 450.61 W 2932 MHz 13801 MHz 67 100 % 450.83 W 450.61 W
560 2026/10/09 09:10:46.804 450.00 W 2932 MHz 13801 MHz 67 100 % 450.20 W 450.00 W
561 2026/10/09 09:10:47.804 449.80 W 2932 MHz 13801 MHz 67 100 % 450.53 W 449.80 W
562 2026/10/09 09:10:48.804 450.37 W 2932 MHz 13801 MHz 67 100 % 450.76 W 450.37 W
563 2026/10/09 09:10:49.804 451.11 W 2932 MHz 13801 MHz 67 100 % 451.47 W 451.11 W
564 2026/10/09 09:10:50.804 451.54 W 2932 MHz 13801 MHz 67 100 % 451.77 W 451.54 W
565 2026/10/09 09:10:51.804 450.40 W 2932 MHz 13801 MHz 67 100 % 449.60 W 450.40 W
566 2026/10/09 09:10:52.805 450.12 W 2932 MHz 13801 MHz 67 100 % 449.40 W 450.12 W
567 2026/10/09 09:10:53.805 450.24 W 2932 MHz 13801 MHz 67 100 % 449.70 W 450.24 W
568 2026/10/09 09:10:54.805 450.42 W 2932 MHz 13801 MHz 67 100 % 450.30 W 450.42 W
569 2026/10/09 09:10:55.805 450.95 W 2932 MHz 13801 MHz 67 100 % 450.96 W 450.95 W
570 2026/10/09 09:10:56.806 452.20 W 2932 MHz 13801 MHz 67 100 % 452.73 W 452.20 W
571 2026/10/09 09:10:57.806 452.07 W 2932 MHz 13801 MHz 67 100 % 452.71 W 452.07 W
572 2026/10/09 09:10:58.806 453.17 W 2932 MHz 13801 MHz 67 100 % 452.94 W 453.17 W
573 2026/10/09 09:10:59.806 452.71 W 2932 MHz 13801 MHz 67 100 % 452.39 W 452.71 W
574 2026/10/09 09:11:00.807 451.96 W 2932 MHz 13801 MHz 67 100 % 451.42 W 451.96 W
575 2026/10/09 09:11:01.807 450.69 W 2932 MHz 13801 MHz 67 100 % 451.54 W 450.69 W
576 2026/10/09 09:11:02.807 227.35 W 2947 MHz 14001 MHz 59 0 % 112.95 W 227.35 W
577 2026/10/09 09:11:03.808 135.24 W 2947 MHz 14001 MHz 59 0 % 112.98 W 135.24 W
578 2026/10/09 09:11:04.808 101.36 W 2692 MHz 14001 MHz 57 0 % 101.36 W 101.36 W
579 2026/10/09 09:11:05.808 41.78 W 405 MHz 810 MHz 56 0 % 41.78 W 41.78 W
580 2026/10/09 09:11:06.808 35.32 W 240 MHz 810 MHz 55 0 % 28.87 W 35.32 W
581 2026/10/09 09:11:07.809 25.38 W 195 MHz 405 MHz 55 0 % 21.89 W 25.38 W
582 2026/10/09 09:11:08.809 21.58 W 195 MHz 405 MHz 54 0 % 21.27 W 21.58 W
583 2026/10/09 09:11:09.809 20.70 W 195 MHz 405 MHz 54 0 % 20.13 W 20.70 W
584 2026/10/09 09:11:10.809 19.19 W 195 MHz 405 MHz 53 0 % 19.19 W 19.19 W
585 2026/10/09 09:11:11.809 20.04 W 195 MHz 405 MHz 53 0 % 20.04 W 20.04 W

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@ -1,48 +0,0 @@
### run 1 x1-ctrl-ds28 start 1791536492.664017100
1791536492.977525640 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_5090 (sm_120, 170 SMs), driver 13.0 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_120 (the device's architecture, listed by NVRTC)
1791536554.304423565 pack /root/x1/packs/x1-ctrl-ds28 on NVIDIA_GeForce_RTX_5090: nvrtc 1123 cache 1 dataset 13 hot 0 check 336 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [268435455] and 64 samples; 96 of 96 vector lanes)
1791536554.305459259 warm-up dispatch (base 0): 237.71 ms; 250 timed dispatches of 16777216 nonces: mean 237.50 ms
1791536554.306573471 RESULT pack=/root/x1/packs/x1-ctrl-ds28 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw device=NVIDIA_GeForce_RTX_5090 arch=sm_120 regs=96 blocks_per_sm=20 warps=0 resident=3400 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=01f51b9d4805e5e6 mhs=70.640 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 1 x1-ctrl-ds28 end 1791536554.344351911
### run 2 x1-flat-ds28 start 1791536564.346794218
1791536564.567432129 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_5090 (sm_120, 170 SMs), driver 13.0 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_120 (the device's architecture, listed by NVRTC)
1791536625.832252672 pack /root/x1/packs/x1-flat-ds28 on NVIDIA_GeForce_RTX_5090: nvrtc 979 cache 1 dataset 13 hot 0 check 339 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [268435455] and 64 samples; 96 of 96 vector lanes)
1791536625.833471181 warm-up dispatch (base 0): 237.81 ms; 250 timed dispatches of 16777216 nonces: mean 237.85 ms
1791536625.834629466 RESULT pack=/root/x1/packs/x1-flat-ds28 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat device=NVIDIA_GeForce_RTX_5090 arch=sm_120 regs=102 blocks_per_sm=16 warps=0 resident=2720 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=8cd11a827ac3ffe4 mhs=70.537 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 2 x1-flat-ds28 end 1791536625.869509559
### run 3 x1-flat-ds28 start 1791536635.872428571
1791536636.095251891 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_5090 (sm_120, 170 SMs), driver 13.0 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_120 (the device's architecture, listed by NVRTC)
1791536697.365795755 pack /root/x1/packs/x1-flat-ds28 on NVIDIA_GeForce_RTX_5090: nvrtc 976 cache 1 dataset 13 hot 0 check 343 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [268435455] and 64 samples; 96 of 96 vector lanes)
1791536697.366852920 warm-up dispatch (base 0): 237.82 ms; 250 timed dispatches of 16777216 nonces: mean 237.86 ms
1791536697.367976901 RESULT pack=/root/x1/packs/x1-flat-ds28 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat device=NVIDIA_GeForce_RTX_5090 arch=sm_120 regs=102 blocks_per_sm=16 warps=0 resident=2720 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=8cd11a827ac3ffe4 mhs=70.535 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 3 x1-flat-ds28 end 1791536697.394649666
### run 4 x1-ctrl-ds28 start 1791536707.396932515
1791536707.617106383 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_5090 (sm_120, 170 SMs), driver 13.0 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_120 (the device's architecture, listed by NVRTC)
1791536768.825855358 pack /root/x1/packs/x1-ctrl-ds28 on NVIDIA_GeForce_RTX_5090: nvrtc 1005 cache 1 dataset 13 hot 0 check 348 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [268435455] and 64 samples; 96 of 96 vector lanes)
1791536768.826924576 warm-up dispatch (base 0): 237.46 ms; 250 timed dispatches of 16777216 nonces: mean 237.48 ms
1791536768.828150159 RESULT pack=/root/x1/packs/x1-ctrl-ds28 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw device=NVIDIA_GeForce_RTX_5090 arch=sm_120 regs=96 blocks_per_sm=20 warps=0 resident=3400 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=01f51b9d4805e5e6 mhs=70.647 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 4 x1-ctrl-ds28 end 1791536768.867441555
### run 5 x1-ctrl-ds30 start 1791536778.869875148
1791536779.090696417 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_5090 (sm_120, 170 SMs), driver 13.0 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_120 (the device's architecture, listed by NVRTC)
1791536842.072581233 pack /root/x1/packs/x1-ctrl-ds30 on NVIDIA_GeForce_RTX_5090: nvrtc 1000 cache 1 dataset 49 hot 0 check 345 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [1073741823] and 64 samples; 96 of 96 vector lanes)
1791536842.073615876 warm-up dispatch (base 0): 244.37 ms; 250 timed dispatches of 16777216 nonces: mean 244.42 ms
1791536842.074816482 RESULT pack=/root/x1/packs/x1-ctrl-ds30 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw device=NVIDIA_GeForce_RTX_5090 arch=sm_120 regs=96 blocks_per_sm=20 warps=0 resident=3400 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=b1f90e91cadb15b6 mhs=68.642 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 5 x1-ctrl-ds30 end 1791536842.115041759
### run 6 x1-flat-ds30 start 1791536852.117800280
1791536852.352627601 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_5090 (sm_120, 170 SMs), driver 13.0 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_120 (the device's architecture, listed by NVRTC)
1791536915.351140261 pack /root/x1/packs/x1-flat-ds30 on NVIDIA_GeForce_RTX_5090: nvrtc 972 cache 1 dataset 50 hot 0 check 342 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [1073741823] and 64 samples; 96 of 96 vector lanes)
1791536915.352210392 warm-up dispatch (base 0): 244.56 ms; 250 timed dispatches of 16777216 nonces: mean 244.61 ms
1791536915.353557625 RESULT pack=/root/x1/packs/x1-flat-ds30 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat device=NVIDIA_GeForce_RTX_5090 arch=sm_120 regs=102 blocks_per_sm=16 warps=0 resident=2720 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=18c4c6a80809c4b9 mhs=68.587 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 6 x1-flat-ds30 end 1791536915.384215408
### run 7 x1-flat-ds30 start 1791536925.386915420
1791536925.607361864 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_5090 (sm_120, 170 SMs), driver 13.0 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_120 (the device's architecture, listed by NVRTC)
1791536988.606138809 pack /root/x1/packs/x1-flat-ds30 on NVIDIA_GeForce_RTX_5090: nvrtc 974 cache 1 dataset 49 hot 0 check 344 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [1073741823] and 64 samples; 96 of 96 vector lanes)
1791536988.607146772 warm-up dispatch (base 0): 244.56 ms; 250 timed dispatches of 16777216 nonces: mean 244.60 ms
1791536988.608310590 RESULT pack=/root/x1/packs/x1-flat-ds30 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw+flat device=NVIDIA_GeForce_RTX_5090 arch=sm_120 regs=102 blocks_per_sm=16 warps=0 resident=2720 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=18c4c6a80809c4b9 mhs=68.589 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 7 x1-flat-ds30 end 1791536988.657547081
### run 8 x1-ctrl-ds30 start 1791536998.659988637
1791536998.884943346 info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_5090 (sm_120, 170 SMs), driver 13.0 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_120 (the device's architecture, listed by NVRTC)
1791537061.859024464 pack /root/x1/packs/x1-ctrl-ds30 on NVIDIA_GeForce_RTX_5090: nvrtc 997 cache 1 dataset 49 hot 0 check 344 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [1073741823] and 64 samples; 96 of 96 vector lanes)
1791537061.860077442 warm-up dispatch (base 0): 244.79 ms; 250 timed dispatches of 16777216 nonces: mean 244.40 ms
1791537061.861368339 RESULT pack=/root/x1/packs/x1-ctrl-ds30 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw device=NVIDIA_GeForce_RTX_5090 arch=sm_120 regs=96 blocks_per_sm=20 warps=0 resident=3400 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=b1f90e91cadb15b6 mhs=68.647 loads=256 bytes=1024 scratch_ops=0 time=wall
### run 8 x1-ctrl-ds30 end 1791537061.897137972

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@ -1,279 +0,0 @@
Compiling zmij v1.0.23
Compiling serde_core v1.0.229
Compiling serde_json v1.0.151
Checking memchr v2.8.3
Checking itoa v1.0.18
Checking igneum-pow v0.2.0 (/srv/builds/x1/x1-a99de07cd/igneum-pow)
warning: unused import: `GENERATOR_VERSION_V3`
--> src/main.rs:19:40
|
19 | use igneum_pow::generator::{EraParams, GENERATOR_VERSION_V3};
| ^^^^^^^^^^^^^^^^^^^^
|
= note: `#[warn(unused_imports)]` (part of `#[warn(unused)]`) on by default
warning: `igneum-pow` (bin "igneum-pow") generated 1 warning (run `cargo fix --bin "igneum-pow" -p igneum-pow` to apply 1 suggestion)
warning: `igneum-pow` (bin "igneum-pow" test) generated 1 warning (1 duplicate)
Finished `dev` profile [optimized + debuginfo] target(s) in 3.25s
Compiling zmij v1.0.23
Compiling serde_core v1.0.229
Compiling serde_json v1.0.151
Compiling memchr v2.8.3
Compiling itoa v1.0.18
Compiling igneum-pow v0.2.0 (/srv/builds/x1/x1-a99de07cd/igneum-pow)
warning: unused import: `GENERATOR_VERSION_V3`
--> src/main.rs:19:40
|
19 | use igneum_pow::generator::{EraParams, GENERATOR_VERSION_V3};
| ^^^^^^^^^^^^^^^^^^^^
|
= note: `#[warn(unused_imports)]` (part of `#[warn(unused)]`) on by default
warning: `igneum-pow` (bin "igneum-pow" test) generated 1 warning (run `cargo fix --bin "igneum-pow" -p igneum-pow --tests` to apply 1 suggestion)
warning: `igneum-pow` (bin "igneum-pow") generated 1 warning (1 duplicate)
Finished `release` profile [optimized] target(s) in 19.42s
Running unittests src/lib.rs (/srv/builds/x1/target-rel/release/deps/igneum_pow-bfe1b8dd991badaf)
running 81 tests
test accept::tests::base_nonces_are_aligned_and_seed_dependent ... ok
test accept::tests::distinct_bound_scales_with_the_load_count ... ok
test accept::tests::injecting_write_detection ... ok
test accept::tests::v5_attempts_census ... ignored
test accept::tests::v5_floor_on_listed_programs ... ignored
test accept::tests::v5_hot_census ... ignored
test accept::tests::stale_load_detection_is_cyclic ... ok
test bind::tests::day_bytes_layout ... ok
test bind::tests::init_bytes_layout ... ok
test bind::tests::pow256_and_target64 ... ok
test blake2b::tests::rfc_7693_vectors ... ok
test derive::tests::acceptance_rejects_degenerate_draws ... ok
test derive::tests::text_forms ... ok
test derive::tests::weights_sum_and_ops ... ok
test generator::tests::attempt_words_differ_and_are_stable ... ok
test derive::tests::soa_matches_scalar_and_is_a_bijection ... ok
test generator::tests::diag_f8_64_distinct_index_ratios ... ignored
test generator::tests::diag_f8_weak_seeds_at_2e24 ... ignored
test generator::tests::diag_p23_distinct_indices_per_site ... ignored
test derive::tests::draw_is_structural_and_accepted ... ok
test generator::tests::default_weights_unchanged ... ok
test generator::tests::load_weight_17_table ... ok
test generator::tests::era_draw_deterministic_and_bounded ... ok
test generator::tests::v1_genesis_shape ... ok
test memhard::tests::chacha_block_is_a_permutation_plus_feedforward ... ok
test generator::tests::hot_classes ... ok
test memhard::tests::growth_schedule_table ... ok
test memhard::tests::first_cache_line_matches_pack ... ok
test memhard::tests::mix_params_for_day ... ok
test packcheck::tests::attempt_words_vectors_shared_with_the_workers ... ok
test packcheck::tests::day_label_reads_the_index ... ok
test memhard::tests::layout_split_join ... ok
test generator::tests::load_classes ... ok
test generator::tests::v2_shape_and_contract ... ok
test seed::tests::day_key_2026_10_03 ... ok
test seed::tests::genesis_seed_words ... ok
test bind::tests::closed_form_bound_also_works ... ok
test generator::tests::v2_loads_are_fresh_unless_fallback ... ok
test state::tests::stream_file_round_trip_and_refusals ... ok
test verify::tests::closed_form_head_matches_pack ... ok
test state::tests::the_sample_above_the_dataset_size_is_keyed_by_the_root ... ok
test state::tests::every_item_is_keyed_and_the_leaf_wraps ... ok
test verify::reg64_mix_tests::reg64_closed_form_equals_the_reference_fold_on_every_source ... ok
test verify::tests::scratch_model ... ok
test accept::tests::v1_programs_are_mostly_rejected ... ok
test generator::tests::program_id_separates_versions_and_attempts ... ok
test verify::tests::hot_program_without_a_table_is_refused - should panic ... ok
test verify::tests::closed_form_genesis_vector_lane0 ... ok
test generator::tests::generate_returns_an_accepted_program ... ok
test memhard::tests::mixer_mult_by_hand ... ok
test packcheck::tests::epoch_34_program_is_a_later_attempt ... ok
test memhard::tests::class_v5_mixer_draw_rule ... ok
test accept::tests::generated_programs_pass ... ok
test verify::tests::wide_class_epochs_hash ... ok
test generator::tests::program_classes ... ok
test generator::tests::era_programs_are_accepted ... ok
test accept::tests::instrumented_interpreter_matches_verify ... ok
test memhard::tests::hot_table_fill_vector_and_index ... ok
test generator::tests::class_v5_shadow_redundancy_rule ... ok
test bind::tests::bound_vectors ... ok
test bind::tests::bound_hash_properties ... ok
test packcheck::tests::known_mismatched_pack_is_out_of_date ... ok
test verify::tests::fold_and_wide_fetch ... ok
test packcheck::tests::known_good_pack_of_a_later_attempt_verifies ... ok
test verify::tests::hot_epochs_hash ... ok
test packcheck::tests::inconsistent_pack_disagrees ... ok
test accept::tests::rejection_rate_and_distinct_loads_on_a_sample ... ok
test accept::tests::hot_classes_pass_and_hot_loads_are_uniform ... ok
test verify::tests::era_windows_layout_and_epochs ... ok
test accept::tests::classes_pass_and_match_verify ... ok
test state::tests::a_stateless_hasher_is_wrong_on_every_item ... ok
test generator::tests::shadow_class_leaves_the_base_program_and_class_v3_untouched ... ok
test packcheck::tests::program_class_and_era_are_checked ... ok
test generator::tests::class_v4_distinct_ratio_rejects_the_low_entropy_band ... ok
test generator::tests::program_class_v4_is_class_v3_with_the_shadow_block ... ok
test accept::tests::acceptance_executes_the_shadow_block_as_the_verifier_does ... ok
test accept::tests::class_v5_hot_set_rule_known_failed_seed_100767 ... ok
test generator::tests::class_v5_last_resort_is_verified_known_failed_adv3_steer_2 ... ok
test generator::tests::class_v5_chain_draw_is_the_amended_v4_draw ... ok
test generator::tests::latency_ladder_known_failed_a_changed_n_was_a_hard_fork_and_rungs_are_class_v4 ... ok
test generator::tests::class_v4_draw_is_total_with_the_last_resort has been running for over 60 seconds
test generator::tests::class_v4_draw_is_total_with_the_last_resort ... ok
test result: ok. 75 passed; 0 failed; 6 ignored; 0 measured; 0 filtered out; finished in 139.89s
Running unittests src/main.rs (/srv/builds/x1/target-rel/release/deps/igneum_pow-e146331a68f99fd6)
running 0 tests
test result: ok. 0 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 0.00s
Running tests/derivation.rs (/srv/builds/x1/target-rel/release/deps/derivation-813965abdd310d29)
running 3 tests
test print_every_pack_derivation ... ignored
test the_class_v4_derivation_states_the_suffix_and_the_plain_text_derives_another_id ... ok
test every_pinned_pack_id_rederives_from_its_own_derivation_text ... ok
test result: ok. 2 passed; 0 failed; 1 ignored; 0 measured; 0 filtered out; finished in 0.01s
Running tests/derive.rs (/srv/builds/x1/target-rel/release/deps/derive-8eaad8ae46f07f0b)
running 7 tests
test text_forms_match_scalar_reference ... ok
test v2_and_v3_are_untouched ... ok
test dataset_source_word_path ... ok
test derived_item_by_hand_and_in_batches ... ok
test stream_class_name_and_id ... ok
test stats_beside_x8 ... ok
test determinism_and_pack_text ... ok
test result: ok. 7 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 1.44s
Running tests/ds55.rs (/srv/builds/x1/target-rel/release/deps/ds55-10777adbb1a47355)
running 5 tests
test mulshift_index_is_in_range_and_uniform ... ok
test cpu_verifier_and_cuda_text_agree_on_fold_and_address ... ok
test power_of_two_path_is_byte_identical_to_the_pinned_pack ... ok
test ds55_pack_fields_and_vectors ... ok
test dataset_words_power_of_two_equals_dataset_log2 ... ok
test result: ok. 5 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 0.99s
Running tests/fuzz_parsers.rs (/srv/builds/x1/target-rel/release/deps/fuzz_parsers-3081828a6deab4bc)
running 3 tests
test state_streams_never_panic ... ok
test class_strings_never_panic ... ok
test hex_and_era_strings_never_panic ... ok
test result: ok. 3 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 0.01s
Running tests/mixer.rs (/srv/builds/x1/target-rel/release/deps/mixer-1534fa965651bb62)
running 4 tests
test edge_items_every_multiplier ... ok
test determinism_v3 ... ok
test stats_v3_against_v2 ... ok
test fuzz_v3_programs_cpu ... ok
test result: ok. 4 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 9.83s
Running tests/packs.rs (/srv/builds/x1/target-rel/release/deps/packs-6b5950289d40f0f7)
running 27 tests
test reg64_full_chain_cpu_verifier_and_cuda_text_agree ... ok
test item_is_independent_of_dataset_size ... ok
test genesis_program_shape ... ok
test mixer_params_match_pack ... ok
test dataset_words_match_all_packs ... ok
test spec_vectors_genesis_mh ... ok
test devnet_pack_is_the_chain_derivation ... ok
test emitted_sources_match_all_packs ... ok
test program_json_matches_all_packs ... ok
test era_program_json_matches ... ok
test a07_bound_hash_is_group_aligned_across_tails_and_rollover ... ok
test vectors_96_per_pack ... ok
test a06_program_json_hashes_every_kernel_text ... ok
test reg64_plain_path_reexports_the_pinned_devnet_pack_unchanged ... ok
test era_dataset_is_a_prefix_at_smaller_sizes ... ok
test reg64_cpu_verifier_and_cuda_text_agree ... ok
test reg64_liveness_rule_refuses_the_subset_fold_and_passes_the_full_chain ... ok
test cache_matches_vectors ... ok
test v3_packs_are_the_v2_seeds_under_mixer_x8 ... ok
test era_emitted_sources_match_and_loads_have_the_era_form ... ok
test era_dataset_words_and_vectors_match ... ok
test export_pack_matches_all_packs ... ok
test a04_a_zeroing_shadow_fails_acceptance ... ok
test era_packs_share_the_program_and_differ_in_layout ... ok
test v5_pack_is_the_v4_program_over_the_state_leaves ... ok
test hot_packs_emitted_sources_and_load_forms ... ok
test hot_packs_program_and_vectors ... ok
test result: ok. 27 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 6.57s
Running tests/recheck.rs (/srv/builds/x1/target-rel/release/deps/recheck-8d7cb13ced9adbf9)
running 2 tests
test program_ids_differ_between_class_v3_and_class_v4_of_one_seed ... ok
test cpu_recheck_equals_the_worker_reference_for_class_v3_and_class_v4 ... ok
test result: ok. 2 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 6.09s
Running tests/scratch.rs (/srv/builds/x1/target-rel/release/deps/scratch-9e8fb62a55801024)
running 7 tests
test slot_is_replayable_from_its_fold_values ... ok
test rewrite_is_a_bijection_of_the_fold_value ... ok
test edge_programs_match_the_hand_model ... ok
test fill_is_a_bijection_of_the_nonce ... ok
test fuzz_scr_programs_cpu ... ok
test scr_packs_regenerate_and_pass_the_static_scratch_check ... ok
test written_words_unbiased_and_rehit_rates ... ok
test result: ok. 7 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 4.85s
Running tests/spec_readback.rs (/srv/builds/x1/target-rel/release/deps/spec_readback-c486d7a13802c5c6)
running 3 tests
test every_pinned_id_of_the_spec_derives_from_the_crate ... ok
test the_closed_form_vectors_of_the_spec_are_the_crates ... ok
test the_chain_draw_accepts_each_class_v4_row_at_its_attempt ... ok
test result: ok. 3 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 4.14s
Running tests/v6fold.rs (/srv/builds/x1/target-rel/release/deps/v6fold-926a7dbf608a6c35)
running 13 tests
test fold_known_failed_seven_seeds ... ignored
test every_v6_flag_keeps_the_class_v4_acceptance_shape ... ok
test class_v6_all_flags_parse_name_and_id ... ok
test fold_and_rw_flags_parse_name_and_id ... ok
test nowin_removes_the_window_layer_and_nothing_else ... ok
test fold_form_and_the_plain_stride_unchanged ... ok
test program_class_v6_is_generator_6 ... ok
test v6_draw_connects_all_lanes_and_keeps_mad_bijective_by_construction ... ok
test rw_table_op_counts_within_2_percent ... ok
test plain_class_draw_is_byte_identical_to_the_pinned_pack ... ok
test fold_and_rw_reach_the_pack_texts ... ok
test index_bit_sigma_rows ... ok
test fold_known_failed_p4_p34 ... ok
test result: ok. 12 passed; 0 failed; 1 ignored; 0 measured; 0 filtered out; finished in 20.68s
Running tests/v7flat.rs (/srv/builds/x1/target-rel/release/deps/v7flat-d6adde4ef262ce31)
running 3 tests
test flat_names_the_v7_shape_and_leaves_the_frozen_class_alone ... ok
test the_frozen_control_keeps_its_windows ... ok
test flat_has_no_window_on_any_load_site has been running for over 60 seconds
test flat_has_no_window_on_any_load_site ... ok
test result: ok. 3 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 410.72s
Doc-tests igneum_pow
running 0 tests
test result: ok. 0 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 0.00s
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# X2: serving-mode result compaction on the frozen control (9 October 2026)
The 1.5x programme's item X2 (the brief: `docs/plans/igneum-2.0-master/1p5x/`, sha256 74ee073286d4a6e2..., its experiment
matrix row X2: "exact output equivalence incl. overflow/sentinels; wall joules and accepted throughput; no invented
percentage"). The lane: X2 (the worker lane of the programme). Branch `x2-compaction` off class-v6 755c2dbcf. Clock 09:32 to
11:30 UK. Rows in UTC; "on an island, not a network" does not apply (no row here is taken on the devnet).
## 0. The premise, read first: the compaction is already in the control
The frozen control 1a938abe4 already carries a serving-mode compaction, ON by default, in the CUDA kit worker:
`proto-cuda/nvrtc/worker.cpp` at 12cb65cc4 (review B finding F10, landed on master as 964cdf6c; the file is unchanged from
12cb65cc4 to 1a938abe4, sha256 of the text 9bfabc716b217f5e). A tiny NVRTC kernel `igneum_select` scans the bound kernel's
per-nonce output on the GPU, writes the hits (chunk index, hash word) behind an atomic counter into a 256-entry table plus 34
sentinel words (the first 32 outputs, the middle and the last, for the stale-output detector), and the host reads back the
count, the hits and the sentinels. A chunk with more than 256 hits falls back to the full read. `--readback full` or
`IGNEUM_READBACK=full` is the uncompacted path (8 bytes per nonce over the bus, the host scans). The OpenCL worker has had
the same pass since 5 October 2026. F10 measured it at stock on a 5090 and a 3090
(`docs/analysis/review-2026-10-08-b/f10/rows.md`).
So X2 adds no flag and changes no worker code (the flag exists; turning it off by default would undo a landed fix), touches
nothing in consensus, the generator or any `.rs` or Cargo file (rule 24 is not triggered), and delivers what F10 did not:
the equivalence on the three same-work contexts against the CPU references with the sentinel and overflow cases enumerated,
the 4090 same-session pairs, and the arithmetic against the yardstick. The coordinator confirmed this shape at 09:5x UK.
What the compaction does NOT remove, read from the code: the bound kernel still writes 8 bytes per nonce to device memory
(`out[g] = ...` in every pack's `kernel_bound.cu`) and the select kernel reads them back once; fusing the compare into the
emitted kernel would change the emitter's output (`igneum-pow/src/emit.rs`), which this lane does not touch. Against the
class v6 hash's own traffic (256 dependent 4-byte loads per hash under reg64, `program.json` `loads_per_hash`, each a 32-byte
sector on NVIDIA) those 16 bytes are 16 / 8,192 = 0.2 percent of the bytes a hash moves, a byte count from the code and not
an energy figure; no row here measures it.
## 1. Software, hardware, boundary
| Item | Identity |
|---|---|
| Worker | `igneum-worker-cuda` built on the pod from 1a938abe4's `proto-cuda/nvrtc/worker.cpp` and `packfile.h` by the kit recipe's Linux line (`tools/class-v5/kits-on-box.sh` line 25: `g++ -std=c++17 -O2 -Wall -Wextra -I proto-cuda/nvrtc -I /usr/local/cuda/include ... -ldl -lpthread`), Ubuntu 24.04, g++ 13.3.0; sha256 `4152c960d14210072a5c85ae675b56ae4dab12bedfb5f1af04ea2a2c6c025032`. Not a kit-lane cut: no Linux CUDA binary on build-1 carries both generator 6 and the select pass (`/srv/artefacts/packs/igneum-worker-cuda-gen6`, 804a6f7f, is generator 6 with no `igneum_select`; the F10 binary 9b36b523 refuses generator 6 packs) |
| Packs and references | the same-work contexts on build-1 `/srv/artefacts/tas/same-work-20261008-0{1,2,3}/` (job-context.json, packs/, references/), copied whole; reference sha256 read back equal to the published `.sha256` files: 01 D c49fed11 / D1 5ae1220d, 02 D 7c7be9b5 / D1 cad7849f, 03 D 873528b1 / D1 7f8e64ae |
| Objects | 01: class v6, generator 6, the frozen-object context (pack hl-v6-all, program id 0x4de7b836cc40a4ea on day D+1); 02: class v6, the chain-seed object 0x2a1d6caab4c24564 (the brief's signing id, epoch seed af89be5d, era edc4fa84, day 20730); 03: class v5, epoch 2, 0x81fbfa3aa413173f. Dataset 2^28 words (1 GiB) in every pack, as the same-work packs were exported |
| Hardware | RTX 4090 24 GB, driver 595.91.07, NVRTC 12.8, sm_89, 128 SMs, PCIe link read at idle as gen 1 x16, RunPod secure instance lyum23xjpv4re9 (the fleet lane's fk-x2-4090), 450 W board limit |
| Power boundary | the board only: nvidia-smi `power.draw` at 1 Hz. The container exposes no host rail and no wall meter, so the WALL row is BLOCKED (section 5); the worker's own CPU seconds stand in for the host side, as in F10 |
| State | stock only. `nvidia-smi -lgc 1300` and `-pl 300` answered "does not have permission" / "Insufficient Permissions" on this host (read 10:0x UK); the knee row is NOT RUN (section 5) |
## 2. Equivalence (requirement 1): EQUAL on all three contexts
The driver `tools/1p5x/x2/x2-equiv.py` runs one worker binary in `--serve` exactly as the miner drives it (job lines on
stdin, `prepare` of pack D1 before the first day-D1 job, the worker's report of a finished prepare read before switching),
writes the normalized protocol output, and builds the EXPECTED output from the CPU references alone: for each job, every
nonce with `ref[n] <= target` in nonce order, then `done <job> <count>`. A verdict is EQUAL only when the full run, the select
run and the expected file are byte-identical, which is every nonce's verdict at every target and every found nonce's digest.
Campaign: `tools/1p5x/x2/run-equiv.sh` plus `run-prod-then-pairs.sh` (the prod plan's second take, section 2.3), on the pod
at 08:45 to 08:51 UTC.
### 2.1 The known-failed tests, first
| Test | Result |
|---|---|
| The driver's self-test (`x2-equiv.py --self-test`: a fake worker over a fake hash on all three plans) | PASS: the clean fake is EQUAL on every plan; five injected faults each compare DIFFERENT: the 257th hit of a chunk dropped (the overflow taken as a full table), one digest wrong, the previous chunk's hits returned again (the counter-reset fault), the day switch missed (D's dataset after the boundary), `<` for `<=` (the target-equality edge). Log: `evidence/self-test.log` |
| The real worker's fault run (`--readback select` with `IGNEUM_READBACK_FAULT_TEST=1`: the hit counter is not reset from the second chunk on), context 01, the kf plan (four 2,048-nonce jobs at a 1/16 target on 1,024-nonce chunks) | flagged: DIFFERENT at line 64 (`found 1 1037 00cb3ac5...` where the reference has `found 1 1053 0fa540bb...`), 368 extra lines; the same plan's full and select runs EQUAL to the references. Only then did any select row count |
A finding about the fault injection itself: once the un-reset count passes 256, every later chunk takes the full-read
fallback and prints the right answer, so the counter-reset fault is invisible on a plan whose early chunks overflow (the
fake reproduces this: the stale fault reads EQUAL on the prod and fuzz plans). The kf plan exists for that reason.
### 2.2 The rows
| Context | Plan | Jobs | Nonce evaluations | Found lines | Select overflow fallbacks | Normalized output sha256, expected = full = select |
|---|---|---|---|---|---|---|
| 01 (class v6, frozen object) | prod (2^22 chunks) | 16 | 9,437,568 | 3,146,498 | 5 of 16 chunks | f278f0594dfd566d... |
| 01 | fuzz (2^10 chunks) | 38 | 1,048,576 | 438,688 | 534 of 1,039 | 5f1e591db673f964... |
| 02 (class v6, chain-seed 0x2a1d6caab4c24564) | prod | 16 | 9,437,568 | 3,146,498 | 5 of 16 | ad091a0d49a9d3a2... |
| 02 | fuzz | 35 | 1,048,576 | 446,422 | 599 of 1,042 | 8f39a1b15b16e86f... |
| 03 (class v5, epoch 2) | prod | 16 | 9,437,568 | 3,146,498 | 5 of 16 | 2aa97d5d63e5e01c... |
| 03 | fuzz | 33 | 1,048,576 | 342,786 | 365 of 1,035 | 3a7a7cc495e2d485... |
Every verdict EQUAL; full sha256s in `evidence/*.compare.json` and `evidence/norm.sha256`; the normalized outputs (up to
103 MB each, 31 files) at build-1 `/srv/artefacts/tas/x2-20261009/x2-equiv-outputs.tar.gz` (sha256 64740f73213b9deb...).
What each plan covers. **prod** (the worker's and the miner's 2^22 batch): every nonce of [0, 3,145,728) at the all-ones
target (every digest of the context through the overflow fallback); phase 1 at the sentinel targets T256 (the 256th smallest
hash of the job: exactly 256 hits, the table full, no fallback), T257 (257 hits: overflow by one, the fallback), 0, Teq (the
job's smallest hash: one hit, the `<=` edge) and Teq - 1 (zero hits); the day switch inside phase 2 at nonce 1,572,864 by
`prepare` (the worker's `prepared` line in `evidence/*.prod.*.meta.json`); phase 3 at all-ones and at its own T256. The 5
fallbacks per select run are the five all-ones and T257 jobs, and the T256 jobs went through the table, which is the 256/257
edge read on the real worker. **fuzz** (1,024-nonce chunks): 1,048,576 nonces per context in 29 to 34 seeded random jobs (seed
`x2-fuzz/<run id>`) at targets drawn from {0, all-ones, 2^k - 1 for k in 50 to 63, 1/8, 1/4, an in-job hash, that hash minus
1}; the 1/4 target puts about 256 hits in a chunk, so overflow and table chunks alternate inside one job; plus the 8,192-nonce
boundary block ([1,568,768, 1,572,864) on D, `prepare`, [1,572,864, 1,576,960) on D1) at all-ones and 1/4.
The sentinels enumerated, each with the plan that reaches it: target 0 (prod p1-zero, fuzz fz0); all-ones, every chunk over
the table (prod p1-all, p2, p3-all; fuzz fz1 and the boundary block); exactly 256 hits (prod p1-t256, p3-t256); 257 hits
(prod p1-t257); the `<=` edge (prod p1-teq; fuzz fz5, fz6); one below it (prod p1-teq-1; fuzz fz7); overflow and table chunks
in one job (fuzz fz4 at 1/4); the day switch (prod p2; fuzz boundary block); the 34 sentinel words feeding the stale-output
detector on both paths (every chunk of 64 nonces or more). Not reached here and covered by F10's emulation check
(`proto-cuda/nvrtc/emu/select-check.sh`, green on build-7 on 8 October): the high-32 rollover, the 96-nonce tail with a
32-lane launch, two queued jobs, a mismatch error then a job.
### 2.3 Finding X2-F1: identical work twice in a row restarts the worker (both paths)
The prod plan's first take sent phase 1 [0, 2^20) six times in a row at six targets. The second job of each context was
answered `error 2 worker fault: the output buffer is unchanged since the previous dispatch (signature ef40224d5958063d): the
kernel did not run; exiting 3 so the miner restarts the worker`, on the full and the select path alike (`evidence/prod-v1/`).
The stale-output detector (`worker.cpp`, the first, middle and last output words plus an FNV of the first 32, compared with
the previous chunk's) assumes two consecutive chunks never carry the same work. A job re-sent with the same prehash and nonce
range breaks that assumption and the worker exits 3. Meaning: a miner or pool that re-sends an identical job (a reconnect
replay, a duplicated line) costs a worker restart, the NVRTC compile, cache and dataset build again (about 4 s on this card,
the `prepared` timings). Not a compaction fault and not fixed here (worker code, a separate owner); the plan's second take
puts a 64-nonce job of other nonces at target 0 between repeats. Owed: the worker lane's fix (the signature keyed with the
job's prehash and nonce base, or the check skipped when the job equals the previous one) with this repeat as its known-failed
case.
## 3. Measured rows (requirement 2)
Instrument: `tools/1p5x/x2/run-pairs.sh` driving `tools/1p5x/x2/serve-pair.sh` (F10's `proto-cuda/nvrtc/serve-bench.sh` at
1a938abe4 with nvidia-smi at 1 Hz, the batch at the worker's and the miner's 2^22, and the share check added): the worker in
`--serve` fed by a stub pool exactly as the miner feeds it (one job queued behind the one in flight), 1,024 jobs of 2^22
nonces per run (4,294,967,296 hashes, about 125 to 137 s), share target `00000fffffffffff` (one share per 2^20 nonces), every
found line's hash checked against the target at the submit point; `--race off`, variant base, 88 registers, 20 blocks per
SM. Four pairs in ABBA order (full, select / select, full / full, select / select, full), 5 s apart, 08:52 to 09:11 UTC; then
the kernel timer (`--bench --batch-log2 24 --batches 250`, the instrument behind the record's E_GPU rows) with nvidia-smi at 1
Hz around it, 09:11 to 09:13 UTC. Pack: the frozen object's own, context 02 `chain-seed-d20730` (0x2a1d6caab4c24564, day
20730, 1 GiB dataset). The card held 2,760 to 2,775 MHz SM in every run (no throttle; 270 to 290 W of a 450 W limit, the
memory chain bounds the hash on Ada as the connected-state rows found). Steady = from the worker's ready line to the last
done line; production = from the process start (setup about 4 s). `worker_cpu_s` reads 0.00 because the script reads
`/proc` of the coproc's subshell, not the worker: the host-side CPU row is not read (F10 read 2.3 to 2.6 s against 2.9 to
3.1 s per 32 jobs of 2^24 on the 5090). Generated by `python3 tools/1p5x/x2/summarize.py evidence/pairs` (the file
`evidence/pairs/summary.txt`):
| run | mode | prod_mhs | steady_mhs | steady_mean_w | nj_per_hash_steady | accepted | over_target | j_per_share_steady | steady_j_per_batch | worker_cpu_s | samples |
|---|---|---|---|---|---|---|---|---|---|---|---|
| x2-full-r1 | full | 30.78 | 31.75 | 268.4 | 8453.5 | 4223 | 0 | 8.598 | 35.5 | 0.00 | 135 |
| x2-full-r2 | full | 31.14 | 32.08 | 273.1 | 8513.1 | 4223 | 0 | 8.659 | 35.7 | 0.00 | 134 |
| x2-full-r3 | full | 30.46 | 31.37 | 269.9 | 8603.8 | 4223 | 0 | 8.750 | 36.1 | 0.00 | 136 |
| x2-full-r4 | full | 30.74 | 31.65 | 270.2 | 8537.1 | 4223 | 0 | 8.683 | 35.8 | 0.00 | 136 |
| x2-select-r1 | select | 33.66 | 34.88 | 288.0 | 8256.9 | 4223 | 0 | 8.397 | 34.6 | 0.00 | 123 |
| x2-select-r2 | select | 33.78 | 34.89 | 290.0 | 8311.8 | 4223 | 0 | 8.454 | 34.9 | 0.00 | 123 |
| x2-select-r3 | select | 33.77 | 34.89 | 289.3 | 8291.8 | 4223 | 0 | 8.434 | 34.8 | 0.00 | 123 |
| x2-select-r4 | select | 33.70 | 34.78 | 287.2 | 8257.6 | 4223 | 0 | 8.398 | 34.6 | 0.00 | 124 |
| mode | runs | steady MH/s (sd) | production MH/s | steady W | nJ per hash (sd) | J per accepted share | accepted shares per run |
|---|---|---|---|---|---|---|---|
| full | 4 | 31.71 (0.29) | 30.78 | 270.4 | 8526.9 (62.2) | 8.672 | 4223 |
| select | 4 | 34.86 (0.05) | 33.73 | 288.6 | 8279.5 (27.0) | 8.421 | 4223 |
paired g (select over full, nJ per hash) per pair: 0.9767, 0.9764, 0.9637, 0.9673; mean of means 0.9710
paired rate ratio (select over full) per pair: 1.0986, 1.0876, 1.1122, 1.0989; mean of means 1.0993
kernel timer: 35.057 MH/s, 289.8 W loaded, 8267.3 nJ per hash, fingerprint 01f51b9d4805e5e6
g against the kernel timer (select serving over --bench): 1.0015; full serving over --bench: 1.0314
| r0 (the brief's current ratio) | r_new with g = select/full | r_new with g = select/kernel timer |
|---|---|---|
| 1.6 | 1.554 | 1.602 |
| 2.0 | 1.942 | 2.003 |
| 2.4 | 2.330 | 2.404 |
(a = 1: the specialist side is not touched by a host-side result path; the identity r_new = r0 * g / a, the brief.)
What the rows say. The compacted path serves 9.9 percent more accepted shares per second (paired 1.088 to 1.112) and spends
2.9 percent fewer board joules per hash and per accepted share (paired g 0.964 to 0.977): the card draws 18 W more because
it is never idle between chunks, and finishes the same work 9.9 percent sooner. The uncompacted path's cost is visible in the
worker's own transfer line: 32 MiB read back and a host scan of 2^22 words per chunk, during which the GPU waits (the
select path reads back 4 bytes, 34 sentinel words and 16 bytes per hit). The compacted path reaches the kernel timer: 34.86
against 35.06 MH/s (99.4 percent), 8,280 against 8,267 nJ per hash. Accepted shares per run are 4,223 on both paths with 0
over the target; the equivalence of section 2 is what makes a found line on either path the same share.
Beside F10 (2^24 batch, 4 Hz, pack hl-v6-all): 5090 rate +10.5 percent and J per batch -2.8 percent; 3090 +8.8 and -6.7.
The 4090 here: +9.9 and -2.9. Three cards, one direction, the joule saving 2.8 to 6.7 percent and the rate 8.8 to 10.5.
Consequences per tier (the standing rule). A home miner on any NVIDIA card running a CUDA worker without the select pass
loses about a tenth of its serving rate and 3 to 7 percent of its joules per share to the full read; the gen-6 Linux CUDA
worker on build-1 (`/srv/artefacts/packs/igneum-worker-cuda-gen6`, 804a6f7f, built from db63e1e36 before the class-v6 merge
of 964cdf6c) carries no `igneum_select` (strings read: 0), so a class v6 kit cut from 1a938abe4 is what moves those miners
(the kit lane's cut, not this lane's). AMD and Intel on the OpenCL worker have had the pass since 5 October. Apple's Metal
worker reads from unified memory, so its read-back is not a bus transfer; it is not measured here. A pool user sees the same shares sooner; the pool
sees nothing else (the found line is unchanged).
## 4. The arithmetic (requirement 3)
The brief's identity: r_new = r0 * g / a, with g and a the new-to-old GPU and specialist energies per equivalent accepted
work. The compaction is a host-side result path; nothing in it touches the specialist, so a = 1 (stated, not measured). Two
values of g, because the yardstick matters:
| g | Value (4090, stock) | Meaning |
|---|---|---|
| select serving over full serving | 0.971 (paired 0.964 to 0.977) | what a miner on an uncompacted worker gains by moving to the compacted one |
| select serving over the kernel timer | 1.0015 | what the compaction does to the E_GPU the ratio is computed from |
| full serving over the kernel timer | 1.031 | the serving loss the full read adds above the yardstick |
| r0 (the brief's ratios) | r_new, g = select/full | r_new, g = select/kernel timer |
|---|---|---|
| 1.6 (the pure DRAM board, node-for-node) | 1.554 | 1.602 |
| 2.0 (the brief's worked row) | 1.942 | 2.003 |
| 2.4 (the stored-half hybrid, the N2 SRAM die) | 2.330 | 2.404 |
Reading. The record's E_GPU rows come from the kernel timer (`igneum-worker-cuda --bench`, 250 x 2^24, nvidia-smi 1 Hz;
connected-state.md section 4, the l8off knee rows), which never includes the read-back, so the full read's 3 percent was
never in r0. Against the ratio's own yardstick X2 moves r by nothing measurable (g = 1.0015, inside the paired spread). The
brief's 1.5x target needs g = 0.75 from a ratio of 2.0 with a = 1; the compaction supplies 0.971 only against a worse
baseline that the ratio does not use. No percentage here is invented: every figure is the measured difference above, on one
card at stock. The saving the brief asked about is real for miners and zero for the ratio.
## 5. BLOCKED and NOT RUN rows
| Row | Decision | Reason | What unblocks it |
|---|---|---|---|
| Wall joules (the brief's word) | BLOCKED | a rented container has no wall meter and no host rail; every joule here is the board's nvidia-smi reading, and the host side is the worker's CPU seconds | a host with a wall meter on the card's machine |
| The knee (the 1,300 MHz lock or a power cap) | NOT RUN | no clock lock on a rented pod (`nvidia-smi -lgc` and `-pl` refused on fk-x2-4090, and on every 8 October pod by the fleet lane's record); the house rigs unreachable (the coordinator's amendment, 10:4x UK); the CUDA worker has no in-kernel throttle | a host that permits `-lgc` |
| The 5090 and other tiers on this harness | NOT RUN | one pod for this lane; the 5090 and 3090 pairs are F10's at stock (2^24 batch, 4 Hz) | another pod on the same scripts |
| The fused compare (no per-nonce write at all) | NOT RUN | it changes the emitter's output (`emit.rs`), outside this lane | a lane that owns the emitter, after X1 |
| CPU re-check of the bench's accepted shares | NOT RUN | the bench jobs use prehash = job index, which the references do not cover; the shares are counted as found lines whose hash is at or under the share target (all of them, `over_target=0`); the hash word itself is the one section 2 proves byte-identical to the CPU reference | `igneum-pow hash-bound` for the found nonces on a box |
| X2-F1 fix | NOT RUN | worker code, separate owner | the worker lane |
| Registry | NOT RUN | `tools/1p5x/x2/registry-batch-x2-1p5x-20261009.json`, both cells NOT RUN, method GPU, evidence by file; kept out of `tools/ci/batches/` so the landing writes no registry row; the steward records | the steward |
## 6. Commands
```
# on the GPU host, under /root/x2/pids (pid files; never on the Mac)
g++ -std=c++17 -O2 -Wall -Wextra -I proto-cuda/nvrtc -I /usr/local/cuda/include -o bin/igneum-worker-cuda proto-cuda/nvrtc/worker.cpp -ldl -lpthread # tree: git archive 1a938abe4
python3 tools/1p5x/x2/x2-equiv.py --self-test
tools/1p5x/x2/run-equiv.sh bin/igneum-worker-cuda ctx out/equiv pids # kf known-failed first, then prod and fuzz per context
tools/1p5x/x2/run-pairs.sh bin/igneum-worker-cuda ctx/same-work-20261008-02/packs/chain-seed-d20730 out/pairs pids 4 1024 22
python3 tools/1p5x/x2/summarize.py out/pairs # every figure of sections 3 and 4
```

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@ -1,31 +0,0 @@
5f1e591db673f964ff53a60ebb9ea0e8f4cad974642a2354b3cc27571d935340 equiv/same-work-20261008-01.fuzz.expected.norm
5f1e591db673f964ff53a60ebb9ea0e8f4cad974642a2354b3cc27571d935340 equiv/same-work-20261008-01.fuzz.full.norm
5f1e591db673f964ff53a60ebb9ea0e8f4cad974642a2354b3cc27571d935340 equiv/same-work-20261008-01.fuzz.select.norm
e3e8913fb6788dfbbba4d43de14d674fa411de019980e2fc543be4ed7c17303c equiv/same-work-20261008-01.kf.expected.norm
f7ad6ee87564f49abaee8e8ee64b62e41c6a45259c0cace233aecb898cbd78aa equiv/same-work-20261008-01.kf.fault.norm
e3e8913fb6788dfbbba4d43de14d674fa411de019980e2fc543be4ed7c17303c equiv/same-work-20261008-01.kf.full.norm
e3e8913fb6788dfbbba4d43de14d674fa411de019980e2fc543be4ed7c17303c equiv/same-work-20261008-01.kf.select.norm
f278f0594dfd566d48fb59ee6b2f2889c60afb341856cf9efd53cce0d57ad60f equiv/same-work-20261008-01.prod.expected.norm
f278f0594dfd566d48fb59ee6b2f2889c60afb341856cf9efd53cce0d57ad60f equiv/same-work-20261008-01.prod.full.norm
f278f0594dfd566d48fb59ee6b2f2889c60afb341856cf9efd53cce0d57ad60f equiv/same-work-20261008-01.prod.select.norm
8f39a1b15b16e86f09bedeaa9d2f811cd6329012a71139e93babd5199f468938 equiv/same-work-20261008-02.fuzz.expected.norm
8f39a1b15b16e86f09bedeaa9d2f811cd6329012a71139e93babd5199f468938 equiv/same-work-20261008-02.fuzz.full.norm
8f39a1b15b16e86f09bedeaa9d2f811cd6329012a71139e93babd5199f468938 equiv/same-work-20261008-02.fuzz.select.norm
ad091a0d49a9d3a2b6206873ab5c9639d62e76cb5e65006aa730e3444e0a24d7 equiv/same-work-20261008-02.prod.expected.norm
ad091a0d49a9d3a2b6206873ab5c9639d62e76cb5e65006aa730e3444e0a24d7 equiv/same-work-20261008-02.prod.full.norm
ad091a0d49a9d3a2b6206873ab5c9639d62e76cb5e65006aa730e3444e0a24d7 equiv/same-work-20261008-02.prod.select.norm
3a7a7cc495e2d4853f5c85b59309ccee637ae5f9d446b806c577ca904f54785f equiv/same-work-20261008-03.fuzz.expected.norm
3a7a7cc495e2d4853f5c85b59309ccee637ae5f9d446b806c577ca904f54785f equiv/same-work-20261008-03.fuzz.full.norm
3a7a7cc495e2d4853f5c85b59309ccee637ae5f9d446b806c577ca904f54785f equiv/same-work-20261008-03.fuzz.select.norm
2aa97d5d63e5e01cb9fafc2d2508ad5df1c576467dfc46cb72b714fea35c93a5 equiv/same-work-20261008-03.prod.expected.norm
2aa97d5d63e5e01cb9fafc2d2508ad5df1c576467dfc46cb72b714fea35c93a5 equiv/same-work-20261008-03.prod.full.norm
2aa97d5d63e5e01cb9fafc2d2508ad5df1c576467dfc46cb72b714fea35c93a5 equiv/same-work-20261008-03.prod.select.norm
52a0f79483ce948b83c4bcde39ce37b89fdf04091826e14f56260717e0d8fce6 equiv-prod-v1/same-work-20261008-01.prod.expected.norm
2f7f1de48a50650a50daf8835c6c86eba981a155b28cc4bc5a5990f74ea56a12 equiv-prod-v1/same-work-20261008-01.prod.full.norm
2f7f1de48a50650a50daf8835c6c86eba981a155b28cc4bc5a5990f74ea56a12 equiv-prod-v1/same-work-20261008-01.prod.select.norm
db89fbfc3a7a7b595555e9d150fa82b93ef2ecc1f0944f69f759b3ebd39cc685 equiv-prod-v1/same-work-20261008-02.prod.expected.norm
f8a898c426596d8a482139309d6d9a85493ff2d1da8ef099406d97db168bcc9f equiv-prod-v1/same-work-20261008-02.prod.full.norm
f8a898c426596d8a482139309d6d9a85493ff2d1da8ef099406d97db168bcc9f equiv-prod-v1/same-work-20261008-02.prod.select.norm
8e9c9955eda5f46377ffb0afd5e0558760019885d725d2547c1232c6fc939362 equiv-prod-v1/same-work-20261008-03.prod.expected.norm
40778c06a13e40b329f17d9899bf8bcded6e2597f22670e6925d5d7aa5adcc75 equiv-prod-v1/same-work-20261008-03.prod.full.norm
40778c06a13e40b329f17d9899bf8bcded6e2597f22670e6925d5d7aa5adcc75 equiv-prod-v1/same-work-20261008-03.prod.select.norm

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@ -1,4 +0,0 @@
info igneum-worker-cuda 1.0 (4 October 2026): device 0 NVIDIA_GeForce_RTX_4090 (sm_89, 128 SMs), driver 13.2 from libcuda.so.1, NVRTC 12.8 from libnvrtc.so.12, target sm_89 (the device's architecture, listed by NVRTC)
pack /root/x2/out/pairs/pack-chain-seed-d20730 on NVIDIA_GeForce_RTX_4090: nvrtc 2574 cache 3 dataset 28 hot 0 check 1144 race 0 ms variant base class v6 (state leaves 93, uploaded for the build and freed); self-test PASS (cache head, last line and FNV-1a 64 448274a57f508cbc; dataset head, word [268435455] and 64 samples; 96 of 96 vector lanes)
warm-up dispatch (base 0): 478.32 ms; 250 timed dispatches of 16777216 nonces: mean 478.57 ms
RESULT pack=/root/x2/out/pairs/pack-chain-seed-d20730 class=mx8-erad810f22d+sh256x27+state+reg64c+fold+rw device=NVIDIA_GeForce_RTX_4090 arch=sm_89 regs=88 blocks_per_sm=20 warps=0 resident=2560 arena_mib=0 hot_mib=0 hot_slots=0 hot_fill_ms=0.00 nonces=16777216 batches=250 check=PASS fingerprint=01f51b9d4805e5e6 mhs=35.057 loads=256 bytes=1024 scratch_ops=0 time=wall

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@ -1 +0,0 @@
kernel_mhs=35.057 loaded_mean_w=289.8 samples=120 nj_per_hash=8267.3 fingerprint=01f51b9d4805e5e6

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@ -1,129 +0,0 @@
2026/10/09 09:11:14.106, 46.06, 210, 40
2026/10/09 09:11:15.112, 39.67, 210, 40
2026/10/09 09:11:16.112, 36.08, 210, 40
2026/10/09 09:11:17.113, 50.73, 2520, 40
2026/10/09 09:11:18.113, 86.22, 2520, 40
2026/10/09 09:11:19.113, 85.68, 2520, 40
2026/10/09 09:11:20.113, 89.37, 2520, 39
2026/10/09 09:11:21.114, 165.06, 2775, 41
2026/10/09 09:11:22.114, 265.88, 2760, 46
2026/10/09 09:11:23.114, 288.06, 2760, 47
2026/10/09 09:11:24.114, 288.38, 2760, 47
2026/10/09 09:11:25.114, 288.50, 2760, 47
2026/10/09 09:11:26.114, 288.97, 2760, 47
2026/10/09 09:11:27.115, 288.99, 2760, 47
2026/10/09 09:11:28.115, 288.36, 2760, 48
2026/10/09 09:11:29.115, 288.95, 2760, 48
2026/10/09 09:11:30.115, 289.15, 2760, 48
2026/10/09 09:11:31.116, 288.99, 2760, 48
2026/10/09 09:11:32.116, 288.85, 2760, 48
2026/10/09 09:11:33.116, 289.21, 2760, 48
2026/10/09 09:11:34.116, 289.61, 2760, 48
2026/10/09 09:11:35.117, 289.60, 2760, 48
2026/10/09 09:11:36.117, 289.54, 2760, 49
2026/10/09 09:11:37.117, 289.36, 2760, 49
2026/10/09 09:11:38.117, 289.06, 2760, 49
2026/10/09 09:11:39.118, 289.00, 2760, 49
2026/10/09 09:11:40.118, 288.92, 2760, 49
2026/10/09 09:11:41.118, 289.17, 2760, 49
2026/10/09 09:11:42.118, 289.25, 2760, 49
2026/10/09 09:11:43.118, 289.38, 2760, 49
2026/10/09 09:11:44.119, 289.35, 2760, 49
2026/10/09 09:11:45.119, 289.08, 2760, 49
2026/10/09 09:11:46.119, 289.00, 2760, 49
2026/10/09 09:11:47.119, 289.10, 2760, 49
2026/10/09 09:11:48.119, 289.25, 2760, 49
2026/10/09 09:11:49.120, 289.37, 2760, 50
2026/10/09 09:11:50.120, 289.52, 2760, 50
2026/10/09 09:11:51.120, 289.84, 2760, 50
2026/10/09 09:11:52.120, 289.88, 2760, 50
2026/10/09 09:11:53.120, 290.05, 2760, 50
2026/10/09 09:11:54.121, 289.83, 2760, 50
2026/10/09 09:11:55.121, 289.86, 2760, 50
2026/10/09 09:11:56.121, 290.22, 2760, 50
2026/10/09 09:11:57.121, 290.16, 2760, 50
2026/10/09 09:11:58.122, 289.94, 2760, 50
2026/10/09 09:11:59.122, 290.63, 2760, 50
2026/10/09 09:12:00.122, 290.45, 2760, 50
2026/10/09 09:12:01.122, 290.58, 2760, 50
2026/10/09 09:12:02.122, 291.19, 2760, 50
2026/10/09 09:12:03.123, 291.22, 2760, 50
2026/10/09 09:12:04.123, 291.30, 2760, 50
2026/10/09 09:12:05.123, 291.62, 2760, 50
2026/10/09 09:12:06.123, 291.70, 2760, 50
2026/10/09 09:12:07.124, 291.68, 2760, 51
2026/10/09 09:12:08.124, 291.31, 2760, 51
2026/10/09 09:12:09.124, 291.66, 2760, 51
2026/10/09 09:12:10.124, 291.41, 2760, 51
2026/10/09 09:12:11.125, 290.95, 2760, 51
2026/10/09 09:12:12.125, 290.96, 2760, 51
2026/10/09 09:12:13.125, 290.98, 2760, 51
2026/10/09 09:12:14.125, 291.01, 2760, 51
2026/10/09 09:12:15.126, 291.61, 2760, 51
2026/10/09 09:12:16.126, 291.45, 2760, 51
2026/10/09 09:12:17.126, 291.76, 2760, 51
2026/10/09 09:12:18.126, 291.73, 2760, 51
2026/10/09 09:12:19.127, 291.65, 2760, 51
2026/10/09 09:12:20.127, 291.78, 2760, 51
2026/10/09 09:12:21.127, 291.79, 2760, 51
2026/10/09 09:12:22.128, 291.68, 2760, 51
2026/10/09 09:12:23.128, 291.47, 2760, 51
2026/10/09 09:12:24.128, 291.69, 2760, 51
2026/10/09 09:12:25.128, 291.60, 2760, 51
2026/10/09 09:12:26.129, 291.90, 2760, 51
2026/10/09 09:12:27.129, 291.80, 2760, 51
2026/10/09 09:12:28.129, 291.42, 2760, 51
2026/10/09 09:12:29.129, 291.95, 2760, 51
2026/10/09 09:12:30.129, 291.47, 2760, 51
2026/10/09 09:12:31.130, 291.26, 2760, 51
2026/10/09 09:12:32.130, 291.78, 2760, 51
2026/10/09 09:12:33.130, 291.73, 2760, 51
2026/10/09 09:12:34.130, 291.73, 2760, 51
2026/10/09 09:12:35.131, 292.38, 2760, 51
2026/10/09 09:12:36.131, 292.33, 2760, 51
2026/10/09 09:12:37.131, 292.52, 2760, 51
2026/10/09 09:12:38.131, 292.28, 2760, 52
2026/10/09 09:12:39.132, 292.36, 2760, 52
2026/10/09 09:12:40.132, 292.54, 2760, 52
2026/10/09 09:12:41.132, 292.07, 2760, 52
2026/10/09 09:12:42.132, 291.84, 2760, 52
2026/10/09 09:12:43.132, 291.90, 2760, 52
2026/10/09 09:12:44.133, 292.01, 2760, 52
2026/10/09 09:12:45.133, 292.71, 2760, 52
2026/10/09 09:12:46.133, 291.98, 2760, 52
2026/10/09 09:12:47.133, 292.16, 2760, 52
2026/10/09 09:12:48.133, 292.44, 2760, 52
2026/10/09 09:12:49.134, 292.08, 2760, 52
2026/10/09 09:12:50.134, 292.25, 2760, 52
2026/10/09 09:12:51.134, 291.91, 2760, 52
2026/10/09 09:12:52.134, 291.98, 2760, 52
2026/10/09 09:12:53.134, 292.34, 2760, 52
2026/10/09 09:12:54.135, 292.46, 2760, 52
2026/10/09 09:12:55.135, 292.54, 2760, 52
2026/10/09 09:12:56.135, 292.18, 2760, 52
2026/10/09 09:12:57.135, 292.31, 2760, 52
2026/10/09 09:12:58.136, 292.52, 2760, 52
2026/10/09 09:12:59.136, 292.52, 2760, 52
2026/10/09 09:13:00.136, 292.69, 2760, 52
2026/10/09 09:13:01.136, 292.01, 2760, 52
2026/10/09 09:13:02.137, 292.35, 2760, 52
2026/10/09 09:13:03.137, 292.79, 2760, 52
2026/10/09 09:13:04.137, 292.60, 2760, 52
2026/10/09 09:13:05.137, 292.39, 2760, 52
2026/10/09 09:13:06.137, 291.99, 2760, 52
2026/10/09 09:13:07.138, 291.90, 2760, 52
2026/10/09 09:13:08.138, 292.00, 2760, 52
2026/10/09 09:13:09.138, 292.40, 2760, 52
2026/10/09 09:13:10.138, 292.42, 2760, 52
2026/10/09 09:13:11.138, 292.40, 2760, 52
2026/10/09 09:13:12.139, 292.14, 2760, 52
2026/10/09 09:13:13.139, 292.12, 2760, 52
2026/10/09 09:13:14.139, 291.81, 2760, 52
2026/10/09 09:13:15.139, 291.77, 2760, 52
2026/10/09 09:13:16.139, 292.57, 2760, 52
2026/10/09 09:13:17.139, 292.16, 2760, 52
2026/10/09 09:13:18.140, 291.56, 2760, 52
2026/10/09 09:13:19.140, 291.96, 2760, 52
2026/10/09 09:13:20.140, 292.07, 2760, 52
2026/10/09 09:13:21.140, 244.38, 2760, 46
2026/10/09 09:13:22.140, 107.67, 2760, 45

View file

@ -1,27 +0,0 @@
| run | mode | prod_mhs | steady_mhs | steady_mean_w | nj_per_hash_steady | accepted | over_target | j_per_share_steady | steady_j_per_batch | worker_cpu_s | samples |
|---|---|---|---|---|---|---|---|---|---|---|---|
| x2-full-r1 | full | 30.78 | 31.75 | 268.4 | 8453.5 | 4223 | 0 | 8.598 | 35.5 | 0.00 | 135 |
| x2-full-r2 | full | 31.14 | 32.08 | 273.1 | 8513.1 | 4223 | 0 | 8.659 | 35.7 | 0.00 | 134 |
| x2-full-r3 | full | 30.46 | 31.37 | 269.9 | 8603.8 | 4223 | 0 | 8.750 | 36.1 | 0.00 | 136 |
| x2-full-r4 | full | 30.74 | 31.65 | 270.2 | 8537.1 | 4223 | 0 | 8.683 | 35.8 | 0.00 | 136 |
| x2-select-r1 | select | 33.66 | 34.88 | 288.0 | 8256.9 | 4223 | 0 | 8.397 | 34.6 | 0.00 | 123 |
| x2-select-r2 | select | 33.78 | 34.89 | 290.0 | 8311.8 | 4223 | 0 | 8.454 | 34.9 | 0.00 | 123 |
| x2-select-r3 | select | 33.77 | 34.89 | 289.3 | 8291.8 | 4223 | 0 | 8.434 | 34.8 | 0.00 | 123 |
| x2-select-r4 | select | 33.70 | 34.78 | 287.2 | 8257.6 | 4223 | 0 | 8.398 | 34.6 | 0.00 | 124 |
| mode | runs | steady MH/s (sd) | production MH/s | steady W | nJ per hash (sd) | J per accepted share | accepted shares per run |
|---|---|---|---|---|---|---|---|
| full | 4 | 31.71 (0.29) | 30.78 | 270.4 | 8526.9 (62.2) | 8.672 | 4223 |
| select | 4 | 34.86 (0.05) | 33.73 | 288.6 | 8279.5 (27.0) | 8.421 | 4223 |
paired g (select over full, nJ per hash) per pair: 0.9767, 0.9764, 0.9637, 0.9673; mean of means 0.9710
paired rate ratio (select over full) per pair: 1.0986, 1.0876, 1.1122, 1.0989; mean of means 1.0993
kernel timer: 35.057 MH/s, 289.8 W loaded, 8267.3 nJ per hash, fingerprint 01f51b9d4805e5e6
g against the kernel timer (select serving over --bench): 1.0015; full serving over --bench: 1.0314
| r0 (the brief's current ratio) | r_new with g = select/full | r_new with g = select/kernel timer |
|---|---|---|
| 1.6 | 1.554 | 1.602 |
| 2.0 | 1.942 | 2.003 |
| 2.4 | 2.330 | 2.404 |
(a = 1: the specialist side is not touched by a host-side result path; the identity r_new = r0 * g / a, the brief.)

View file

@ -1,3 +0,0 @@
card=NVIDIA_GeForce_RTX_4090 mode=full jobs=1024 batch_log2=22 hashes=4294967296 found=4223 setup_s=4.238 prod_wall_s=139.523 prod_mhs=30.78 prod_mean_w=261.1 prod_j_per_batch=35.6 prod_mh_per_w=0.1179 samples=140 steady_wall_s=135.285 steady_mhs=31.75 steady_mean_w=268.4 steady_j_per_batch=35.5 steady_mh_per_w=0.1183 samples=135 accepted=4223 over_target=0 nj_per_hash_steady=8453.5 j_per_share_steady=8.598 smi_ms=1000 worker_cpu_s=0.00 worker_sha=4152c960d1421007
ready: ready cuda NVIDIA_GeForce_RTX_4090 pack igneum-epoch/af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3/day/69676e65756d2d6461792ffa50000000000000 dataset-log2 28 batch 4194304 regs 88 prepare 1 path nvrtc 12.8 driver 13.2 arch sm_89 variant base race off readback full worker 1.0 (4 October 2026)
transfers: transfers per chunk: down 33554432 B (full, 0 full fallbacks); mean per chunk: kernel+sync 119.79 ms, select 0.000 ms, read-back 6.433 ms, scan 5.746 ms; 1024 jobs 1024 chunks

View file

@ -1,142 +0,0 @@
2026/10/09 08:52:20.540, 30.54, 210, 25
2026/10/09 08:52:21.547, 30.47, 210, 25
2026/10/09 08:52:22.547, 45.67, 2520, 26
2026/10/09 08:52:23.547, 83.23, 2520, 26
2026/10/09 08:52:24.547, 83.04, 2520, 27
2026/10/09 08:52:25.547, 87.12, 2520, 27
2026/10/09 08:52:26.548, 148.98, 2790, 32
2026/10/09 08:52:27.548, 266.91, 2790, 34
2026/10/09 08:52:28.548, 268.11, 2790, 34
2026/10/09 08:52:29.548, 269.74, 2790, 35
2026/10/09 08:52:30.548, 269.69, 2790, 35
2026/10/09 08:52:31.549, 267.72, 2775, 35
2026/10/09 08:52:32.550, 267.85, 2775, 36
2026/10/09 08:52:33.550, 268.28, 2775, 36
2026/10/09 08:52:34.551, 269.81, 2775, 37
2026/10/09 08:52:35.551, 270.04, 2775, 37
2026/10/09 08:52:36.551, 269.30, 2775, 36
2026/10/09 08:52:37.551, 270.31, 2775, 38
2026/10/09 08:52:38.551, 269.85, 2775, 38
2026/10/09 08:52:39.552, 270.02, 2775, 38
2026/10/09 08:52:40.552, 270.30, 2775, 38
2026/10/09 08:52:41.552, 268.29, 2775, 39
2026/10/09 08:52:42.552, 271.12, 2775, 39
2026/10/09 08:52:43.553, 270.18, 2775, 39
2026/10/09 08:52:44.553, 271.80, 2775, 39
2026/10/09 08:52:45.553, 271.85, 2775, 39
2026/10/09 08:52:46.553, 269.38, 2775, 39
2026/10/09 08:52:47.553, 265.64, 2775, 40
2026/10/09 08:52:48.554, 272.40, 2775, 40
2026/10/09 08:52:49.554, 272.97, 2775, 41
2026/10/09 08:52:50.554, 271.62, 2775, 41
2026/10/09 08:52:51.554, 272.04, 2775, 41
2026/10/09 08:52:52.554, 270.56, 2775, 41
2026/10/09 08:52:53.554, 272.13, 2775, 41
2026/10/09 08:52:54.555, 272.28, 2775, 41
2026/10/09 08:52:55.555, 270.70, 2775, 42
2026/10/09 08:52:56.556, 272.18, 2775, 42
2026/10/09 08:52:57.556, 272.93, 2775, 41
2026/10/09 08:52:58.556, 273.05, 2775, 41
2026/10/09 08:52:59.556, 272.07, 2775, 42
2026/10/09 08:53:00.556, 267.60, 2775, 42
2026/10/09 08:53:01.557, 267.03, 2775, 43
2026/10/09 08:53:02.557, 264.08, 2775, 42
2026/10/09 08:53:03.557, 266.77, 2775, 43
2026/10/09 08:53:04.557, 265.22, 2775, 43
2026/10/09 08:53:05.558, 266.39, 2775, 43
2026/10/09 08:53:06.558, 269.08, 2775, 43
2026/10/09 08:53:07.558, 267.74, 2775, 42
2026/10/09 08:53:08.558, 265.73, 2775, 43
2026/10/09 08:53:09.558, 265.49, 2775, 44
2026/10/09 08:53:10.559, 268.00, 2775, 44
2026/10/09 08:53:11.559, 266.07, 2775, 43
2026/10/09 08:53:12.559, 262.55, 2775, 44
2026/10/09 08:53:13.559, 267.61, 2775, 44
2026/10/09 08:53:14.560, 265.51, 2775, 44
2026/10/09 08:53:15.560, 266.86, 2775, 44
2026/10/09 08:53:16.560, 267.00, 2775, 44
2026/10/09 08:53:17.560, 268.22, 2775, 44
2026/10/09 08:53:18.560, 267.46, 2775, 44
2026/10/09 08:53:19.561, 267.45, 2775, 45
2026/10/09 08:53:20.561, 268.42, 2775, 44
2026/10/09 08:53:21.561, 267.91, 2775, 45
2026/10/09 08:53:22.561, 268.11, 2775, 44
2026/10/09 08:53:23.561, 269.76, 2775, 45
2026/10/09 08:53:24.562, 269.96, 2775, 45
2026/10/09 08:53:25.562, 269.33, 2775, 45
2026/10/09 08:53:26.562, 269.21, 2775, 45
2026/10/09 08:53:27.562, 268.87, 2775, 45
2026/10/09 08:53:28.562, 268.83, 2775, 45
2026/10/09 08:53:29.562, 268.79, 2775, 46
2026/10/09 08:53:30.563, 268.98, 2775, 45
2026/10/09 08:53:31.563, 268.23, 2760, 46
2026/10/09 08:53:32.563, 270.23, 2760, 44
2026/10/09 08:53:33.563, 267.15, 2760, 46
2026/10/09 08:53:34.563, 269.11, 2760, 44
2026/10/09 08:53:35.564, 269.95, 2760, 46
2026/10/09 08:53:36.564, 269.08, 2760, 44
2026/10/09 08:53:37.564, 270.01, 2760, 46
2026/10/09 08:53:38.564, 268.91, 2760, 44
2026/10/09 08:53:39.564, 267.24, 2760, 46
2026/10/09 08:53:40.564, 271.86, 2760, 45
2026/10/09 08:53:41.565, 270.68, 2760, 46
2026/10/09 08:53:42.565, 269.88, 2760, 44
2026/10/09 08:53:43.565, 265.21, 2760, 46
2026/10/09 08:53:44.565, 270.68, 2760, 47
2026/10/09 08:53:45.565, 269.00, 2760, 47
2026/10/09 08:53:46.565, 271.45, 2760, 47
2026/10/09 08:53:47.565, 268.02, 2760, 47
2026/10/09 08:53:48.565, 270.02, 2760, 47
2026/10/09 08:53:49.565, 267.69, 2760, 47
2026/10/09 08:53:50.566, 269.66, 2760, 47
2026/10/09 08:53:51.566, 267.02, 2760, 47
2026/10/09 08:53:52.566, 271.11, 2760, 47
2026/10/09 08:53:53.566, 267.69, 2760, 47
2026/10/09 08:53:54.566, 267.08, 2760, 47
2026/10/09 08:53:55.566, 266.10, 2760, 47
2026/10/09 08:53:56.567, 274.16, 2760, 46
2026/10/09 08:53:57.567, 267.51, 2760, 47
2026/10/09 08:53:58.567, 271.89, 2760, 45
2026/10/09 08:53:59.567, 269.58, 2760, 47
2026/10/09 08:54:00.567, 268.92, 2760, 46
2026/10/09 08:54:01.567, 267.82, 2760, 47
2026/10/09 08:54:02.568, 270.53, 2760, 46
2026/10/09 08:54:03.568, 270.64, 2760, 48
2026/10/09 08:54:04.568, 269.70, 2760, 47
2026/10/09 08:54:05.568, 269.34, 2760, 48
2026/10/09 08:54:06.568, 269.92, 2760, 46
2026/10/09 08:54:07.569, 269.09, 2760, 48
2026/10/09 08:54:08.569, 270.27, 2760, 46
2026/10/09 08:54:09.569, 268.85, 2760, 48
2026/10/09 08:54:10.569, 270.02, 2760, 47
2026/10/09 08:54:11.569, 268.22, 2760, 48
2026/10/09 08:54:12.570, 269.71, 2760, 48
2026/10/09 08:54:13.570, 267.21, 2760, 48
2026/10/09 08:54:14.570, 269.69, 2760, 48
2026/10/09 08:54:15.570, 267.52, 2760, 48
2026/10/09 08:54:16.570, 270.91, 2760, 48
2026/10/09 08:54:17.571, 268.89, 2760, 48
2026/10/09 08:54:18.571, 271.63, 2760, 48
2026/10/09 08:54:19.571, 269.82, 2760, 48
2026/10/09 08:54:20.571, 272.63, 2760, 48
2026/10/09 08:54:21.572, 268.91, 2760, 48
2026/10/09 08:54:22.572, 271.44, 2760, 48
2026/10/09 08:54:23.572, 269.83, 2760, 48
2026/10/09 08:54:24.572, 271.77, 2760, 48
2026/10/09 08:54:25.572, 267.96, 2760, 48
2026/10/09 08:54:26.572, 270.92, 2760, 49
2026/10/09 08:54:27.573, 268.28, 2760, 48
2026/10/09 08:54:28.573, 272.15, 2760, 49
2026/10/09 08:54:29.573, 269.73, 2760, 48
2026/10/09 08:54:30.573, 270.32, 2760, 49
2026/10/09 08:54:31.574, 268.03, 2760, 48
2026/10/09 08:54:32.574, 271.94, 2760, 49
2026/10/09 08:54:33.574, 269.47, 2760, 48
2026/10/09 08:54:34.574, 271.02, 2760, 49
2026/10/09 08:54:35.574, 268.35, 2760, 48
2026/10/09 08:54:36.574, 271.08, 2760, 49
2026/10/09 08:54:37.575, 268.37, 2760, 49
2026/10/09 08:54:38.575, 270.39, 2760, 49
2026/10/09 08:54:39.575, 269.01, 2760, 48
2026/10/09 08:54:40.575, 270.82, 2760, 49
2026/10/09 08:54:41.575, 251.37, 2760, 44

View file

@ -1,3 +0,0 @@
card=NVIDIA_GeForce_RTX_4090 mode=full jobs=1024 batch_log2=22 hashes=4294967296 found=4223 setup_s=4.005 prod_wall_s=137.908 prod_mhs=31.14 prod_mean_w=267.3 prod_j_per_batch=36.0 prod_mh_per_w=0.1165 samples=138 steady_wall_s=133.903 steady_mhs=32.08 steady_mean_w=273.1 steady_j_per_batch=35.7 steady_mh_per_w=0.1175 samples=134 accepted=4223 over_target=0 nj_per_hash_steady=8513.1 j_per_share_steady=8.659 smi_ms=1000 worker_cpu_s=0.00 worker_sha=4152c960d1421007
ready: ready cuda NVIDIA_GeForce_RTX_4090 pack igneum-epoch/af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3/day/69676e65756d2d6461792ffa50000000000000 dataset-log2 28 batch 4194304 regs 88 prepare 1 path nvrtc 12.8 driver 13.2 arch sm_89 variant base race off readback full worker 1.0 (4 October 2026)
transfers: transfers per chunk: down 33554432 B (full, 0 full fallbacks); mean per chunk: kernel+sync 119.81 ms, select 0.000 ms, read-back 5.661 ms, scan 5.148 ms; 1024 jobs 1024 chunks

View file

@ -1,140 +0,0 @@
2026/10/09 08:59:19.764, 43.64, 210, 41
2026/10/09 08:59:20.770, 37.96, 210, 41
2026/10/09 08:59:21.770, 73.96, 2520, 41
2026/10/09 08:59:22.770, 87.36, 2520, 41
2026/10/09 08:59:23.771, 88.89, 2520, 41
2026/10/09 08:59:24.771, 87.73, 2520, 40
2026/10/09 08:59:25.771, 250.12, 2760, 46
2026/10/09 08:59:26.771, 266.11, 2760, 47
2026/10/09 08:59:27.772, 269.29, 2760, 47
2026/10/09 08:59:28.772, 267.14, 2760, 48
2026/10/09 08:59:29.772, 268.56, 2760, 46
2026/10/09 08:59:30.772, 269.14, 2760, 48
2026/10/09 08:59:31.773, 274.80, 2760, 48
2026/10/09 08:59:32.773, 275.35, 2760, 48
2026/10/09 08:59:33.773, 275.62, 2760, 48
2026/10/09 08:59:34.773, 276.48, 2760, 48
2026/10/09 08:59:35.773, 277.81, 2760, 48
2026/10/09 08:59:36.773, 276.80, 2760, 48
2026/10/09 08:59:37.774, 276.76, 2760, 49
2026/10/09 08:59:38.774, 274.29, 2760, 49
2026/10/09 08:59:39.774, 277.00, 2760, 48
2026/10/09 08:59:40.774, 278.54, 2760, 49
2026/10/09 08:59:41.774, 275.21, 2760, 48
2026/10/09 08:59:42.775, 273.17, 2760, 49
2026/10/09 08:59:43.775, 278.83, 2760, 49
2026/10/09 08:59:44.775, 277.56, 2760, 49
2026/10/09 08:59:45.775, 276.35, 2760, 48
2026/10/09 08:59:46.775, 276.63, 2760, 49
2026/10/09 08:59:47.776, 275.16, 2760, 49
2026/10/09 08:59:48.776, 276.64, 2760, 49
2026/10/09 08:59:49.776, 277.37, 2760, 49
2026/10/09 08:59:50.776, 276.12, 2760, 49
2026/10/09 08:59:51.776, 274.44, 2760, 49
2026/10/09 08:59:52.776, 278.67, 2760, 49
2026/10/09 08:59:53.776, 278.99, 2760, 49
2026/10/09 08:59:54.777, 277.74, 2760, 49
2026/10/09 08:59:55.777, 276.41, 2760, 50
2026/10/09 08:59:56.777, 277.59, 2760, 49
2026/10/09 08:59:57.777, 278.42, 2760, 49
2026/10/09 08:59:58.777, 278.40, 2760, 49
2026/10/09 08:59:59.778, 277.53, 2760, 49
2026/10/09 09:00:00.778, 278.25, 2760, 50
2026/10/09 09:00:01.778, 277.84, 2760, 50
2026/10/09 09:00:02.778, 279.25, 2760, 50
2026/10/09 09:00:03.779, 279.76, 2760, 50
2026/10/09 09:00:04.779, 278.89, 2760, 49
2026/10/09 09:00:05.779, 276.09, 2760, 50
2026/10/09 09:00:06.779, 276.98, 2760, 50
2026/10/09 09:00:07.779, 279.90, 2760, 50
2026/10/09 09:00:08.780, 279.15, 2760, 50
2026/10/09 09:00:09.780, 271.14, 2760, 50
2026/10/09 09:00:10.780, 271.12, 2760, 49
2026/10/09 09:00:11.780, 271.34, 2760, 50
2026/10/09 09:00:12.780, 271.80, 2760, 49
2026/10/09 09:00:13.781, 266.54, 2760, 50
2026/10/09 09:00:14.781, 271.71, 2760, 48
2026/10/09 09:00:15.781, 270.75, 2760, 50
2026/10/09 09:00:16.781, 273.28, 2760, 49
2026/10/09 09:00:17.781, 269.96, 2760, 50
2026/10/09 09:00:18.781, 270.51, 2760, 48
2026/10/09 09:00:19.782, 271.05, 2760, 50
2026/10/09 09:00:20.782, 270.49, 2760, 50
2026/10/09 09:00:21.782, 274.32, 2760, 50
2026/10/09 09:00:22.782, 271.95, 2760, 49
2026/10/09 09:00:23.783, 276.32, 2760, 50
2026/10/09 09:00:24.783, 276.05, 2760, 50
2026/10/09 09:00:25.783, 272.14, 2760, 50
2026/10/09 09:00:26.783, 271.11, 2760, 50
2026/10/09 09:00:27.783, 271.23, 2760, 50
2026/10/09 09:00:28.784, 272.54, 2760, 50
2026/10/09 09:00:29.784, 272.16, 2760, 50
2026/10/09 09:00:30.784, 272.93, 2760, 50
2026/10/09 09:00:31.784, 273.94, 2760, 50
2026/10/09 09:00:32.784, 273.90, 2760, 50
2026/10/09 09:00:33.785, 273.38, 2760, 48
2026/10/09 09:00:34.786, 277.19, 2760, 50
2026/10/09 09:00:35.786, 275.67, 2760, 50
2026/10/09 09:00:36.786, 278.14, 2760, 49
2026/10/09 09:00:37.789, 278.08, 2760, 50
2026/10/09 09:00:38.790, 276.65, 2760, 50
2026/10/09 09:00:39.790, 277.18, 2760, 50
2026/10/09 09:00:40.790, 279.41, 2760, 50
2026/10/09 09:00:41.791, 279.42, 2760, 50
2026/10/09 09:00:42.791, 278.47, 2760, 50
2026/10/09 09:00:43.792, 275.61, 2760, 50
2026/10/09 09:00:44.792, 277.53, 2760, 50
2026/10/09 09:00:45.792, 277.70, 2760, 50
2026/10/09 09:00:46.795, 281.01, 2760, 49
2026/10/09 09:00:47.795, 278.59, 2760, 50
2026/10/09 09:00:48.797, 277.35, 2760, 50
2026/10/09 09:00:49.797, 278.25, 2760, 50
2026/10/09 09:00:50.797, 280.28, 2760, 50
2026/10/09 09:00:51.798, 279.47, 2760, 49
2026/10/09 09:00:52.798, 278.68, 2760, 51
2026/10/09 09:00:53.798, 279.03, 2760, 51
2026/10/09 09:00:54.800, 279.01, 2760, 50
2026/10/09 09:00:55.800, 280.40, 2760, 50
2026/10/09 09:00:56.800, 279.44, 2760, 50
2026/10/09 09:00:57.801, 278.99, 2760, 51
2026/10/09 09:00:58.801, 277.81, 2760, 51
2026/10/09 09:00:59.801, 274.94, 2760, 50
2026/10/09 09:01:00.801, 271.38, 2760, 51
2026/10/09 09:01:01.802, 274.13, 2760, 51
2026/10/09 09:01:02.802, 276.82, 2760, 50
2026/10/09 09:01:03.802, 274.14, 2760, 51
2026/10/09 09:01:04.802, 271.94, 2760, 50
2026/10/09 09:01:05.802, 274.88, 2760, 51
2026/10/09 09:01:06.803, 270.42, 2760, 50
2026/10/09 09:01:07.803, 274.53, 2760, 51
2026/10/09 09:01:08.803, 270.30, 2760, 50
2026/10/09 09:01:09.803, 273.16, 2760, 51
2026/10/09 09:01:10.804, 271.37, 2760, 50
2026/10/09 09:01:11.804, 275.66, 2760, 50
2026/10/09 09:01:12.804, 274.66, 2760, 50
2026/10/09 09:01:13.804, 274.17, 2760, 50
2026/10/09 09:01:14.805, 276.41, 2760, 50
2026/10/09 09:01:15.805, 270.87, 2760, 50
2026/10/09 09:01:16.805, 275.81, 2760, 50
2026/10/09 09:01:17.805, 272.57, 2760, 50
2026/10/09 09:01:18.805, 271.96, 2760, 50
2026/10/09 09:01:19.806, 271.33, 2760, 50
2026/10/09 09:01:20.806, 271.43, 2760, 49
2026/10/09 09:01:21.806, 271.50, 2760, 50
2026/10/09 09:01:22.806, 271.99, 2760, 49
2026/10/09 09:01:23.807, 271.64, 2760, 50
2026/10/09 09:01:24.807, 271.47, 2760, 49
2026/10/09 09:01:25.807, 271.04, 2760, 50
2026/10/09 09:01:26.807, 272.60, 2760, 49
2026/10/09 09:01:27.807, 271.10, 2760, 50
2026/10/09 09:01:28.808, 272.94, 2760, 50
2026/10/09 09:01:29.808, 274.18, 2760, 50
2026/10/09 09:01:30.808, 271.37, 2760, 50
2026/10/09 09:01:31.808, 271.38, 2760, 50
2026/10/09 09:01:32.809, 271.23, 2760, 48
2026/10/09 09:01:33.809, 272.70, 2760, 50
2026/10/09 09:01:34.809, 270.80, 2760, 48
2026/10/09 09:01:35.809, 270.57, 2760, 50
2026/10/09 09:01:36.809, 270.28, 2760, 51
2026/10/09 09:01:37.810, 268.51, 2760, 50
2026/10/09 09:01:38.810, 260.61, 2760, 46

View file

@ -1,3 +0,0 @@
card=NVIDIA_GeForce_RTX_4090 mode=full jobs=1024 batch_log2=22 hashes=4294967296 found=4223 setup_s=4.100 prod_wall_s=141.006 prod_mhs=30.46 prod_mean_w=262.8 prod_j_per_batch=36.2 prod_mh_per_w=0.1159 samples=141 steady_wall_s=136.906 steady_mhs=31.37 steady_mean_w=269.9 steady_j_per_batch=36.1 steady_mh_per_w=0.1162 samples=136 accepted=4223 over_target=0 nj_per_hash_steady=8603.8 j_per_share_steady=8.750 smi_ms=1000 worker_cpu_s=0.00 worker_sha=4152c960d1421007
ready: ready cuda NVIDIA_GeForce_RTX_4090 pack igneum-epoch/af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3/day/69676e65756d2d6461792ffa50000000000000 dataset-log2 28 batch 4194304 regs 88 prepare 1 path nvrtc 12.8 driver 13.2 arch sm_89 variant base race off readback full worker 1.0 (4 October 2026)
transfers: transfers per chunk: down 33554432 B (full, 0 full fallbacks); mean per chunk: kernel+sync 119.80 ms, select 0.000 ms, read-back 8.203 ms, scan 5.549 ms; 1024 jobs 1024 chunks

View file

@ -1,144 +0,0 @@
2026/10/09 09:01:45.776, 40.33, 210, 40
2026/10/09 09:01:46.783, 35.33, 210, 39
2026/10/09 09:01:47.783, 54.14, 2520, 40
2026/10/09 09:01:48.784, 84.70, 2520, 40
2026/10/09 09:01:49.784, 87.41, 2520, 40
2026/10/09 09:01:50.784, 90.21, 2520, 39
2026/10/09 09:01:51.784, 220.66, 2775, 46
2026/10/09 09:01:52.784, 268.13, 2760, 46
2026/10/09 09:01:53.785, 268.84, 2760, 47
2026/10/09 09:01:54.785, 270.12, 2760, 47
2026/10/09 09:01:55.785, 266.54, 2760, 47
2026/10/09 09:01:56.785, 265.58, 2760, 46
2026/10/09 09:01:57.786, 267.10, 2760, 47
2026/10/09 09:01:58.786, 267.89, 2760, 46
2026/10/09 09:01:59.786, 267.24, 2760, 47
2026/10/09 09:02:00.786, 271.65, 2760, 46
2026/10/09 09:02:01.787, 269.01, 2760, 47
2026/10/09 09:02:02.787, 253.90, 2760, 47
2026/10/09 09:02:03.787, 270.11, 2760, 48
2026/10/09 09:02:04.787, 266.46, 2760, 47
2026/10/09 09:02:05.788, 268.82, 2760, 48
2026/10/09 09:02:06.788, 268.61, 2760, 47
2026/10/09 09:02:07.789, 271.86, 2760, 48
2026/10/09 09:02:08.789, 269.28, 2760, 48
2026/10/09 09:02:09.789, 269.18, 2760, 48
2026/10/09 09:02:10.789, 269.39, 2760, 48
2026/10/09 09:02:11.790, 269.63, 2760, 48
2026/10/09 09:02:12.790, 267.38, 2760, 48
2026/10/09 09:02:13.790, 275.61, 2760, 48
2026/10/09 09:02:14.790, 270.16, 2760, 48
2026/10/09 09:02:15.790, 269.68, 2760, 47
2026/10/09 09:02:16.791, 269.80, 2760, 48
2026/10/09 09:02:17.791, 273.93, 2760, 48
2026/10/09 09:02:18.791, 269.80, 2760, 48
2026/10/09 09:02:19.791, 269.18, 2760, 48
2026/10/09 09:02:20.791, 269.68, 2760, 48
2026/10/09 09:02:21.792, 270.30, 2760, 48
2026/10/09 09:02:22.792, 270.76, 2760, 49
2026/10/09 09:02:23.792, 270.15, 2760, 48
2026/10/09 09:02:24.792, 270.67, 2760, 49
2026/10/09 09:02:25.792, 270.31, 2760, 48
2026/10/09 09:02:26.793, 269.45, 2760, 49
2026/10/09 09:02:27.793, 268.52, 2760, 48
2026/10/09 09:02:28.793, 270.55, 2760, 49
2026/10/09 09:02:29.793, 268.88, 2760, 49
2026/10/09 09:02:30.793, 271.43, 2760, 49
2026/10/09 09:02:31.794, 269.86, 2760, 49
2026/10/09 09:02:32.794, 270.83, 2760, 49
2026/10/09 09:02:33.794, 269.42, 2760, 49
2026/10/09 09:02:34.794, 271.53, 2760, 49
2026/10/09 09:02:35.794, 269.46, 2760, 49
2026/10/09 09:02:36.795, 271.12, 2760, 49
2026/10/09 09:02:37.795, 268.79, 2760, 49
2026/10/09 09:02:38.795, 270.62, 2760, 49
2026/10/09 09:02:39.796, 270.08, 2760, 49
2026/10/09 09:02:40.796, 270.69, 2760, 49
2026/10/09 09:02:41.796, 270.19, 2760, 49
2026/10/09 09:02:42.796, 270.93, 2760, 49
2026/10/09 09:02:43.796, 266.50, 2760, 47
2026/10/09 09:02:44.797, 275.51, 2760, 49
2026/10/09 09:02:45.797, 270.53, 2760, 49
2026/10/09 09:02:46.797, 273.10, 2760, 49
2026/10/09 09:02:47.797, 273.92, 2760, 49
2026/10/09 09:02:48.797, 273.39, 2760, 49
2026/10/09 09:02:49.798, 272.48, 2760, 49
2026/10/09 09:02:50.798, 272.67, 2760, 49
2026/10/09 09:02:51.799, 277.55, 2760, 49
2026/10/09 09:02:52.799, 278.97, 2760, 49
2026/10/09 09:02:53.799, 277.76, 2760, 48
2026/10/09 09:02:54.799, 231.03, 2760, 49
2026/10/09 09:02:55.800, 177.83, 2760, 49
2026/10/09 09:02:56.800, 275.73, 2760, 48
2026/10/09 09:02:57.800, 259.11, 2760, 49
2026/10/09 09:02:58.800, 277.54, 2760, 49
2026/10/09 09:02:59.800, 275.70, 2760, 49
2026/10/09 09:03:00.801, 271.41, 2760, 49
2026/10/09 09:03:01.801, 271.92, 2760, 48
2026/10/09 09:03:02.801, 277.60, 2760, 49
2026/10/09 09:03:03.801, 278.35, 2760, 49
2026/10/09 09:03:04.801, 177.28, 2760, 43
2026/10/09 09:03:05.802, 222.23, 2760, 49
2026/10/09 09:03:06.802, 276.97, 2760, 49
2026/10/09 09:03:07.802, 277.18, 2760, 49
2026/10/09 09:03:08.802, 277.03, 2760, 49
2026/10/09 09:03:09.802, 277.30, 2760, 49
2026/10/09 09:03:10.803, 277.23, 2760, 49
2026/10/09 09:03:11.803, 272.37, 2760, 49
2026/10/09 09:03:12.803, 277.38, 2760, 49
2026/10/09 09:03:13.803, 280.21, 2760, 49
2026/10/09 09:03:14.803, 278.21, 2760, 49
2026/10/09 09:03:15.804, 278.60, 2760, 49
2026/10/09 09:03:16.804, 277.48, 2760, 50
2026/10/09 09:03:17.804, 278.17, 2760, 50
2026/10/09 09:03:18.804, 275.38, 2760, 49
2026/10/09 09:03:19.804, 280.10, 2760, 49
2026/10/09 09:03:20.805, 275.29, 2760, 50
2026/10/09 09:03:21.805, 278.37, 2760, 50
2026/10/09 09:03:22.805, 279.24, 2760, 50
2026/10/09 09:03:23.805, 277.31, 2760, 49
2026/10/09 09:03:24.805, 228.04, 2760, 49
2026/10/09 09:03:25.806, 277.83, 2760, 49
2026/10/09 09:03:26.806, 271.42, 2760, 50
2026/10/09 09:03:27.806, 272.81, 2760, 49
2026/10/09 09:03:28.806, 272.29, 2760, 50
2026/10/09 09:03:29.806, 273.03, 2760, 49
2026/10/09 09:03:30.807, 272.48, 2760, 50
2026/10/09 09:03:31.807, 271.74, 2760, 49
2026/10/09 09:03:32.807, 271.24, 2760, 50
2026/10/09 09:03:33.807, 271.99, 2760, 49
2026/10/09 09:03:34.808, 277.48, 2760, 49
2026/10/09 09:03:35.808, 276.23, 2760, 50
2026/10/09 09:03:36.808, 277.36, 2760, 50
2026/10/09 09:03:37.808, 279.18, 2760, 50
2026/10/09 09:03:38.808, 279.06, 2760, 50
2026/10/09 09:03:39.809, 275.63, 2760, 50
2026/10/09 09:03:40.809, 276.58, 2760, 50
2026/10/09 09:03:41.809, 277.23, 2760, 50
2026/10/09 09:03:42.809, 278.42, 2760, 50
2026/10/09 09:03:43.809, 277.19, 2760, 50
2026/10/09 09:03:44.809, 278.62, 2760, 50
2026/10/09 09:03:45.810, 278.46, 2760, 50
2026/10/09 09:03:46.810, 278.76, 2760, 50
2026/10/09 09:03:47.810, 277.82, 2760, 49
2026/10/09 09:03:48.810, 271.36, 2760, 50
2026/10/09 09:03:49.811, 272.60, 2760, 49
2026/10/09 09:03:50.811, 271.71, 2760, 50
2026/10/09 09:03:51.811, 273.16, 2760, 50
2026/10/09 09:03:52.811, 270.83, 2760, 50
2026/10/09 09:03:53.812, 274.01, 2760, 50
2026/10/09 09:03:54.812, 274.69, 2760, 49
2026/10/09 09:03:55.812, 271.38, 2760, 50
2026/10/09 09:03:56.812, 277.30, 2760, 49
2026/10/09 09:03:57.812, 272.29, 2760, 50
2026/10/09 09:03:58.813, 272.25, 2760, 50
2026/10/09 09:03:59.813, 270.46, 2760, 50
2026/10/09 09:04:00.813, 271.41, 2760, 50
2026/10/09 09:04:01.813, 269.86, 2760, 50
2026/10/09 09:04:02.814, 273.04, 2760, 50
2026/10/09 09:04:03.814, 271.18, 2760, 50
2026/10/09 09:04:04.814, 274.47, 2760, 50
2026/10/09 09:04:05.814, 271.48, 2760, 50
2026/10/09 09:04:06.815, 272.30, 2760, 50
2026/10/09 09:04:07.815, 266.81, 2760, 50
2026/10/09 09:04:08.815, 115.79, 2760, 44

View file

@ -1,3 +0,0 @@
card=NVIDIA_GeForce_RTX_4090 mode=full jobs=1024 batch_log2=22 hashes=4294967296 found=4223 setup_s=4.010 prod_wall_s=139.724 prod_mhs=30.74 prod_mean_w=264.4 prod_j_per_batch=36.1 prod_mh_per_w=0.1163 samples=140 steady_wall_s=135.714 steady_mhs=31.65 steady_mean_w=270.2 steady_j_per_batch=35.8 steady_mh_per_w=0.1171 samples=136 accepted=4223 over_target=0 nj_per_hash_steady=8537.1 j_per_share_steady=8.683 smi_ms=1000 worker_cpu_s=0.00 worker_sha=4152c960d1421007
ready: ready cuda NVIDIA_GeForce_RTX_4090 pack igneum-epoch/af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3/day/69676e65756d2d6461792ffa50000000000000 dataset-log2 28 batch 4194304 regs 88 prepare 1 path nvrtc 12.8 driver 13.2 arch sm_89 variant base race off readback full worker 1.0 (4 October 2026)
transfers: transfers per chunk: down 33554432 B (full, 0 full fallbacks); mean per chunk: kernel+sync 119.79 ms, select 0.000 ms, read-back 6.631 ms, scan 5.962 ms; 1024 jobs 1024 chunks

View file

@ -1,142 +0,0 @@
2026/10/09 09:08:46.093, 48.60, 210, 41
2026/10/09 09:08:47.100, 42.60, 210, 41
2026/10/09 09:08:48.100, 51.20, 2520, 41
2026/10/09 09:08:49.100, 86.16, 2520, 41
2026/10/09 09:08:50.100, 85.30, 2520, 40
2026/10/09 09:08:51.101, 89.17, 2520, 40
2026/10/09 09:08:52.101, 192.27, 2760, 46
2026/10/09 09:08:53.101, 267.11, 2760, 47
2026/10/09 09:08:54.101, 264.91, 2760, 47
2026/10/09 09:08:55.102, 267.42, 2760, 47
2026/10/09 09:08:56.102, 269.58, 2760, 47
2026/10/09 09:08:57.102, 272.19, 2760, 48
2026/10/09 09:08:58.103, 268.53, 2760, 47
2026/10/09 09:08:59.103, 271.72, 2760, 48
2026/10/09 09:09:00.103, 274.45, 2760, 48
2026/10/09 09:09:01.103, 270.29, 2760, 46
2026/10/09 09:09:02.103, 268.87, 2760, 48
2026/10/09 09:09:03.104, 271.18, 2760, 47
2026/10/09 09:09:04.104, 268.76, 2760, 48
2026/10/09 09:09:05.104, 270.62, 2760, 47
2026/10/09 09:09:06.107, 267.92, 2760, 48
2026/10/09 09:09:07.107, 271.64, 2760, 47
2026/10/09 09:09:08.107, 273.08, 2760, 48
2026/10/09 09:09:09.107, 271.49, 2760, 48
2026/10/09 09:09:10.108, 273.38, 2760, 49
2026/10/09 09:09:11.108, 269.46, 2760, 48
2026/10/09 09:09:12.108, 271.59, 2760, 49
2026/10/09 09:09:13.108, 270.44, 2760, 48
2026/10/09 09:09:14.109, 272.31, 2760, 49
2026/10/09 09:09:15.109, 270.35, 2760, 48
2026/10/09 09:09:16.109, 270.74, 2760, 49
2026/10/09 09:09:17.109, 271.14, 2760, 49
2026/10/09 09:09:18.110, 271.72, 2760, 49
2026/10/09 09:09:19.110, 269.78, 2760, 49
2026/10/09 09:09:20.110, 272.89, 2760, 49
2026/10/09 09:09:21.110, 269.07, 2760, 49
2026/10/09 09:09:22.111, 269.73, 2760, 49
2026/10/09 09:09:23.111, 269.46, 2760, 49
2026/10/09 09:09:24.111, 272.11, 2760, 49
2026/10/09 09:09:25.111, 269.24, 2760, 49
2026/10/09 09:09:26.112, 272.83, 2760, 49
2026/10/09 09:09:27.112, 275.31, 2760, 49
2026/10/09 09:09:28.112, 273.48, 2760, 49
2026/10/09 09:09:29.112, 272.01, 2760, 49
2026/10/09 09:09:30.112, 270.89, 2760, 49
2026/10/09 09:09:31.113, 276.31, 2760, 49
2026/10/09 09:09:32.113, 268.75, 2760, 48
2026/10/09 09:09:33.113, 268.81, 2760, 49
2026/10/09 09:09:34.113, 270.31, 2760, 49
2026/10/09 09:09:35.114, 272.23, 2760, 49
2026/10/09 09:09:36.114, 271.67, 2760, 49
2026/10/09 09:09:37.114, 270.68, 2760, 49
2026/10/09 09:09:38.114, 271.38, 2760, 49
2026/10/09 09:09:39.115, 273.43, 2760, 50
2026/10/09 09:09:40.115, 272.61, 2760, 49
2026/10/09 09:09:41.115, 272.01, 2760, 49
2026/10/09 09:09:42.115, 270.87, 2760, 49
2026/10/09 09:09:43.116, 272.57, 2760, 50
2026/10/09 09:09:44.116, 270.46, 2760, 49
2026/10/09 09:09:45.116, 271.03, 2760, 50
2026/10/09 09:09:46.116, 269.90, 2760, 49
2026/10/09 09:09:47.116, 271.55, 2760, 50
2026/10/09 09:09:48.117, 271.51, 2760, 49
2026/10/09 09:09:49.117, 270.86, 2760, 50
2026/10/09 09:09:50.117, 269.92, 2760, 49
2026/10/09 09:09:51.118, 271.20, 2760, 50
2026/10/09 09:09:52.118, 271.03, 2760, 49
2026/10/09 09:09:53.118, 273.02, 2760, 50
2026/10/09 09:09:54.118, 270.91, 2760, 49
2026/10/09 09:09:55.119, 270.29, 2760, 50
2026/10/09 09:09:56.119, 270.75, 2760, 49
2026/10/09 09:09:57.119, 272.93, 2760, 50
2026/10/09 09:09:58.119, 273.64, 2760, 49
2026/10/09 09:09:59.119, 271.74, 2760, 50
2026/10/09 09:10:00.120, 271.17, 2760, 50
2026/10/09 09:10:01.120, 276.41, 2760, 50
2026/10/09 09:10:02.120, 270.75, 2760, 50
2026/10/09 09:10:03.120, 272.01, 2760, 49
2026/10/09 09:10:04.120, 268.45, 2760, 50
2026/10/09 09:10:05.121, 272.12, 2760, 49
2026/10/09 09:10:06.121, 268.86, 2760, 50
2026/10/09 09:10:07.121, 272.10, 2760, 49
2026/10/09 09:10:08.121, 270.48, 2760, 50
2026/10/09 09:10:09.121, 273.45, 2760, 50
2026/10/09 09:10:10.122, 273.44, 2760, 50
2026/10/09 09:10:11.122, 271.70, 2760, 49
2026/10/09 09:10:12.122, 272.21, 2760, 50
2026/10/09 09:10:13.122, 271.68, 2760, 49
2026/10/09 09:10:14.123, 271.94, 2760, 50
2026/10/09 09:10:15.123, 272.64, 2760, 50
2026/10/09 09:10:16.123, 271.32, 2760, 50
2026/10/09 09:10:17.123, 270.38, 2760, 49
2026/10/09 09:10:18.124, 274.93, 2760, 50
2026/10/09 09:10:19.124, 275.93, 2760, 50
2026/10/09 09:10:20.124, 278.30, 2760, 50
2026/10/09 09:10:21.124, 280.29, 2760, 50
2026/10/09 09:10:22.124, 276.02, 2760, 50
2026/10/09 09:10:23.125, 277.16, 2760, 50
2026/10/09 09:10:24.125, 277.49, 2760, 50
2026/10/09 09:10:25.125, 279.40, 2760, 50
2026/10/09 09:10:26.125, 278.73, 2760, 50
2026/10/09 09:10:27.125, 277.20, 2760, 50
2026/10/09 09:10:28.126, 277.27, 2760, 50
2026/10/09 09:10:29.126, 280.17, 2760, 50
2026/10/09 09:10:30.126, 276.92, 2760, 50
2026/10/09 09:10:31.126, 274.90, 2760, 50
2026/10/09 09:10:32.126, 279.08, 2760, 50
2026/10/09 09:10:33.127, 278.64, 2760, 50
2026/10/09 09:10:34.127, 270.81, 2760, 50
2026/10/09 09:10:35.127, 269.88, 2760, 50
2026/10/09 09:10:36.127, 270.61, 2760, 50
2026/10/09 09:10:37.127, 270.97, 2760, 50
2026/10/09 09:10:38.128, 272.65, 2760, 50
2026/10/09 09:10:39.128, 270.78, 2760, 50
2026/10/09 09:10:40.128, 272.94, 2760, 50
2026/10/09 09:10:41.128, 269.43, 2760, 50
2026/10/09 09:10:42.129, 272.37, 2760, 50
2026/10/09 09:10:43.129, 271.11, 2760, 50
2026/10/09 09:10:44.129, 272.56, 2760, 51
2026/10/09 09:10:45.129, 269.55, 2760, 50
2026/10/09 09:10:46.130, 276.54, 2760, 50
2026/10/09 09:10:47.130, 274.40, 2760, 50
2026/10/09 09:10:48.130, 274.00, 2760, 50
2026/10/09 09:10:49.130, 271.61, 2760, 50
2026/10/09 09:10:50.130, 274.79, 2760, 50
2026/10/09 09:10:51.131, 271.59, 2760, 50
2026/10/09 09:10:52.131, 271.37, 2760, 50
2026/10/09 09:10:53.131, 271.76, 2760, 50
2026/10/09 09:10:54.131, 272.44, 2760, 50
2026/10/09 09:10:55.132, 270.05, 2760, 50
2026/10/09 09:10:56.132, 271.91, 2760, 50
2026/10/09 09:10:57.132, 269.70, 2760, 50
2026/10/09 09:10:58.132, 272.08, 2760, 50
2026/10/09 09:10:59.132, 269.64, 2760, 50
2026/10/09 09:11:00.133, 271.48, 2760, 49
2026/10/09 09:11:01.133, 270.46, 2760, 50
2026/10/09 09:11:02.133, 271.80, 2760, 49
2026/10/09 09:11:03.133, 271.23, 2760, 50
2026/10/09 09:11:04.133, 272.28, 2760, 49
2026/10/09 09:11:05.134, 275.50, 2760, 51
2026/10/09 09:11:06.134, 273.62, 2760, 50
2026/10/09 09:11:07.134, 267.10, 2760, 49

View file

@ -1,3 +0,0 @@
card=NVIDIA_GeForce_RTX_4090 mode=select jobs=1024 batch_log2=22 hashes=4294967296 found=4223 setup_s=4.465 prod_wall_s=127.590 prod_mhs=33.66 prod_mean_w=279.5 prod_j_per_batch=34.8 prod_mh_per_w=0.1204 samples=128 steady_wall_s=123.125 steady_mhs=34.88 steady_mean_w=288.0 steady_j_per_batch=34.6 steady_mh_per_w=0.1211 samples=123 accepted=4223 over_target=0 nj_per_hash_steady=8256.9 j_per_share_steady=8.397 smi_ms=1000 worker_cpu_s=0.00 worker_sha=4152c960d1421007
ready: ready cuda NVIDIA_GeForce_RTX_4090 pack igneum-epoch/af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3/day/69676e65756d2d6461792ffa50000000000000 dataset-log2 28 batch 4194304 regs 88 prepare 1 path nvrtc 12.8 driver 13.2 arch sm_89 variant base race off readback select worker 1.0 (4 October 2026)
transfers: transfers per chunk: down 342 B (select, 0 full fallbacks); mean per chunk: kernel+sync 119.76 ms, select 0.161 ms, read-back 0.198 ms, scan 0.008 ms; 1024 jobs 1024 chunks

View file

@ -1,130 +0,0 @@
2026/10/09 08:54:48.491, 42.31, 210, 39
2026/10/09 08:54:49.504, 36.65, 210, 38
2026/10/09 08:54:50.504, 47.61, 2520, 39
2026/10/09 08:54:51.504, 85.52, 2520, 39
2026/10/09 08:54:52.504, 85.55, 2520, 38
2026/10/09 08:54:53.505, 89.41, 2520, 38
2026/10/09 08:54:54.505, 114.60, 2775, 43
2026/10/09 08:54:55.505, 281.13, 2775, 45
2026/10/09 08:54:56.506, 286.29, 2775, 45
2026/10/09 08:54:57.506, 286.60, 2775, 46
2026/10/09 08:54:58.506, 286.12, 2760, 46
2026/10/09 08:54:59.506, 286.28, 2760, 46
2026/10/09 08:55:00.507, 286.65, 2760, 46
2026/10/09 08:55:01.507, 285.75, 2760, 46
2026/10/09 08:55:02.507, 286.23, 2760, 46
2026/10/09 08:55:03.507, 286.75, 2760, 47
2026/10/09 08:55:04.507, 287.24, 2760, 47
2026/10/09 08:55:05.508, 287.42, 2760, 47
2026/10/09 08:55:06.508, 288.01, 2760, 47
2026/10/09 08:55:07.508, 287.94, 2760, 47
2026/10/09 08:55:08.508, 286.65, 2760, 47
2026/10/09 08:55:09.508, 286.43, 2760, 47
2026/10/09 08:55:10.508, 286.93, 2760, 47
2026/10/09 08:55:11.509, 288.09, 2760, 48
2026/10/09 08:55:12.509, 287.40, 2760, 48
2026/10/09 08:55:13.509, 287.36, 2760, 48
2026/10/09 08:55:14.509, 287.72, 2760, 48
2026/10/09 08:55:15.509, 288.10, 2760, 48
2026/10/09 08:55:16.510, 288.64, 2760, 48
2026/10/09 08:55:17.510, 287.92, 2760, 48
2026/10/09 08:55:18.510, 288.29, 2760, 48
2026/10/09 08:55:19.510, 288.70, 2760, 48
2026/10/09 08:55:20.511, 288.62, 2760, 48
2026/10/09 08:55:21.511, 289.16, 2760, 48
2026/10/09 08:55:22.511, 288.77, 2760, 48
2026/10/09 08:55:23.511, 289.04, 2760, 48
2026/10/09 08:55:24.511, 288.48, 2760, 49
2026/10/09 08:55:25.512, 288.80, 2760, 49
2026/10/09 08:55:26.512, 288.63, 2760, 49
2026/10/09 08:55:27.512, 288.83, 2760, 49
2026/10/09 08:55:28.512, 288.81, 2760, 49
2026/10/09 08:55:29.512, 288.97, 2760, 49
2026/10/09 08:55:30.513, 288.92, 2760, 49
2026/10/09 08:55:31.513, 288.83, 2760, 49
2026/10/09 08:55:32.513, 289.32, 2760, 49
2026/10/09 08:55:33.513, 289.20, 2760, 49
2026/10/09 08:55:34.514, 289.13, 2760, 49
2026/10/09 08:55:35.514, 289.06, 2760, 49
2026/10/09 08:55:36.514, 289.03, 2760, 49
2026/10/09 08:55:37.514, 289.23, 2760, 49
2026/10/09 08:55:38.514, 289.83, 2760, 49
2026/10/09 08:55:39.515, 289.76, 2760, 49
2026/10/09 08:55:40.515, 289.39, 2760, 49
2026/10/09 08:55:41.515, 289.59, 2760, 50
2026/10/09 08:55:42.515, 289.90, 2760, 50
2026/10/09 08:55:43.515, 289.95, 2760, 50
2026/10/09 08:55:44.516, 289.68, 2760, 50
2026/10/09 08:55:45.516, 289.62, 2760, 50
2026/10/09 08:55:46.516, 290.47, 2760, 50
2026/10/09 08:55:47.516, 290.23, 2760, 50
2026/10/09 08:55:48.516, 290.11, 2760, 50
2026/10/09 08:55:49.517, 290.14, 2760, 50
2026/10/09 08:55:50.517, 289.96, 2760, 50
2026/10/09 08:55:51.517, 289.99, 2760, 50
2026/10/09 08:55:52.517, 289.92, 2760, 50
2026/10/09 08:55:53.517, 290.20, 2760, 50
2026/10/09 08:55:54.518, 290.35, 2760, 50
2026/10/09 08:55:55.518, 289.38, 2760, 50
2026/10/09 08:55:56.518, 289.65, 2760, 50
2026/10/09 08:55:57.518, 289.79, 2760, 50
2026/10/09 08:55:58.519, 290.11, 2760, 50
2026/10/09 08:55:59.519, 290.22, 2760, 50
2026/10/09 08:56:00.519, 290.59, 2760, 50
2026/10/09 08:56:01.519, 290.39, 2760, 50
2026/10/09 08:56:02.519, 289.80, 2760, 50
2026/10/09 08:56:03.520, 290.12, 2760, 50
2026/10/09 08:56:04.520, 290.18, 2760, 50
2026/10/09 08:56:05.520, 290.65, 2760, 50
2026/10/09 08:56:06.520, 290.63, 2760, 50
2026/10/09 08:56:07.520, 290.66, 2760, 50
2026/10/09 08:56:08.521, 290.36, 2760, 51
2026/10/09 08:56:09.521, 290.08, 2760, 51
2026/10/09 08:56:10.521, 289.06, 2760, 51
2026/10/09 08:56:11.521, 288.95, 2760, 51
2026/10/09 08:56:12.521, 290.25, 2760, 51
2026/10/09 08:56:13.522, 290.21, 2760, 51
2026/10/09 08:56:14.522, 290.04, 2760, 51
2026/10/09 08:56:15.522, 289.89, 2760, 51
2026/10/09 08:56:16.522, 290.12, 2760, 51
2026/10/09 08:56:17.522, 290.35, 2760, 51
2026/10/09 08:56:18.523, 289.20, 2760, 51
2026/10/09 08:56:19.523, 289.27, 2760, 51
2026/10/09 08:56:20.523, 290.30, 2760, 51
2026/10/09 08:56:21.523, 291.06, 2760, 51
2026/10/09 08:56:22.523, 291.29, 2760, 51
2026/10/09 08:56:23.524, 290.65, 2760, 51
2026/10/09 08:56:24.524, 290.69, 2760, 51
2026/10/09 08:56:25.524, 290.79, 2760, 51
2026/10/09 08:56:26.524, 289.90, 2760, 51
2026/10/09 08:56:27.524, 290.38, 2760, 51
2026/10/09 08:56:28.525, 291.15, 2760, 51
2026/10/09 08:56:29.525, 290.25, 2760, 51
2026/10/09 08:56:30.525, 290.68, 2760, 51
2026/10/09 08:56:31.525, 290.37, 2760, 51
2026/10/09 08:56:32.525, 290.05, 2760, 51
2026/10/09 08:56:33.526, 290.67, 2760, 51
2026/10/09 08:56:34.526, 290.63, 2760, 51
2026/10/09 08:56:35.526, 291.04, 2760, 51
2026/10/09 08:56:36.526, 291.01, 2760, 51
2026/10/09 08:56:37.527, 290.50, 2760, 51
2026/10/09 08:56:38.527, 290.62, 2760, 51
2026/10/09 08:56:39.527, 290.85, 2760, 51
2026/10/09 08:56:40.527, 290.54, 2760, 51
2026/10/09 08:56:41.527, 290.46, 2760, 51
2026/10/09 08:56:42.528, 290.48, 2760, 51
2026/10/09 08:56:43.528, 290.63, 2760, 51
2026/10/09 08:56:44.528, 290.48, 2760, 51
2026/10/09 08:56:45.528, 291.11, 2760, 51
2026/10/09 08:56:46.529, 291.37, 2760, 51
2026/10/09 08:56:47.529, 291.30, 2760, 51
2026/10/09 08:56:48.529, 291.26, 2760, 51
2026/10/09 08:56:49.529, 290.99, 2760, 51
2026/10/09 08:56:50.529, 290.97, 2760, 51
2026/10/09 08:56:51.530, 290.49, 2760, 51
2026/10/09 08:56:52.530, 290.57, 2760, 51
2026/10/09 08:56:53.530, 290.66, 2760, 51
2026/10/09 08:56:54.530, 291.03, 2760, 51
2026/10/09 08:56:55.531, 290.34, 2760, 51
2026/10/09 08:56:56.531, 291.44, 2760, 51
2026/10/09 08:56:57.531, 264.60, 2760, 46

View file

@ -1,3 +0,0 @@
card=NVIDIA_GeForce_RTX_4090 mode=select jobs=1024 batch_log2=22 hashes=4294967296 found=4223 setup_s=4.041 prod_wall_s=127.155 prod_mhs=33.78 prod_mean_w=281.5 prod_j_per_batch=35.0 prod_mh_per_w=0.1200 samples=128 steady_wall_s=123.114 steady_mhs=34.89 steady_mean_w=290.0 steady_j_per_batch=34.9 steady_mh_per_w=0.1203 samples=123 accepted=4223 over_target=0 nj_per_hash_steady=8311.8 j_per_share_steady=8.454 smi_ms=1000 worker_cpu_s=0.00 worker_sha=4152c960d1421007
ready: ready cuda NVIDIA_GeForce_RTX_4090 pack igneum-epoch/af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3/day/69676e65756d2d6461792ffa50000000000000 dataset-log2 28 batch 4194304 regs 88 prepare 1 path nvrtc 12.8 driver 13.2 arch sm_89 variant base race off readback select worker 1.0 (4 October 2026)
transfers: transfers per chunk: down 342 B (select, 0 full fallbacks); mean per chunk: kernel+sync 119.76 ms, select 0.142 ms, read-back 0.200 ms, scan 0.008 ms; 1024 jobs 1024 chunks

View file

@ -1,130 +0,0 @@
2026/10/09 08:57:04.291, 43.37, 210, 41
2026/10/09 08:57:05.297, 37.35, 210, 40
2026/10/09 08:57:06.297, 54.78, 2520, 41
2026/10/09 08:57:07.298, 85.57, 2520, 41
2026/10/09 08:57:08.298, 88.14, 2520, 40
2026/10/09 08:57:09.298, 90.74, 2520, 40
2026/10/09 08:57:10.298, 238.95, 2760, 47
2026/10/09 08:57:11.298, 287.73, 2760, 47
2026/10/09 08:57:12.299, 287.92, 2760, 47
2026/10/09 08:57:13.299, 288.22, 2760, 48
2026/10/09 08:57:14.299, 288.50, 2760, 48
2026/10/09 08:57:15.299, 288.53, 2760, 48
2026/10/09 08:57:16.300, 288.30, 2760, 48
2026/10/09 08:57:17.300, 288.55, 2760, 48
2026/10/09 08:57:18.300, 288.53, 2760, 48
2026/10/09 08:57:19.300, 288.08, 2760, 48
2026/10/09 08:57:20.300, 287.88, 2760, 49
2026/10/09 08:57:21.301, 288.58, 2760, 49
2026/10/09 08:57:22.301, 289.67, 2760, 49
2026/10/09 08:57:23.301, 289.51, 2760, 49
2026/10/09 08:57:24.301, 289.55, 2760, 49
2026/10/09 08:57:25.301, 289.42, 2760, 49
2026/10/09 08:57:26.301, 289.40, 2760, 49
2026/10/09 08:57:27.302, 289.13, 2760, 49
2026/10/09 08:57:28.302, 289.39, 2760, 49
2026/10/09 08:57:29.302, 289.71, 2760, 49
2026/10/09 08:57:30.302, 289.77, 2760, 49
2026/10/09 08:57:31.302, 289.40, 2760, 49
2026/10/09 08:57:32.302, 289.86, 2760, 49
2026/10/09 08:57:33.303, 289.52, 2760, 50
2026/10/09 08:57:34.303, 289.32, 2760, 50
2026/10/09 08:57:35.303, 289.63, 2760, 50
2026/10/09 08:57:36.303, 289.65, 2760, 50
2026/10/09 08:57:37.303, 289.27, 2760, 50
2026/10/09 08:57:38.304, 289.15, 2760, 50
2026/10/09 08:57:39.304, 290.16, 2760, 50
2026/10/09 08:57:40.304, 289.35, 2760, 50
2026/10/09 08:57:41.304, 290.01, 2760, 50
2026/10/09 08:57:42.304, 289.80, 2760, 50
2026/10/09 08:57:43.305, 290.64, 2760, 50
2026/10/09 08:57:44.305, 290.66, 2760, 50
2026/10/09 08:57:45.305, 290.47, 2760, 50
2026/10/09 08:57:46.305, 290.35, 2760, 50
2026/10/09 08:57:47.305, 290.53, 2760, 50
2026/10/09 08:57:48.306, 290.34, 2760, 50
2026/10/09 08:57:49.306, 289.97, 2760, 50
2026/10/09 08:57:50.306, 289.87, 2760, 50
2026/10/09 08:57:51.306, 289.86, 2760, 50
2026/10/09 08:57:52.306, 290.66, 2760, 50
2026/10/09 08:57:53.307, 290.26, 2760, 50
2026/10/09 08:57:54.307, 290.52, 2760, 50
2026/10/09 08:57:55.307, 290.12, 2760, 51
2026/10/09 08:57:56.307, 290.63, 2760, 51
2026/10/09 08:57:57.307, 290.57, 2760, 50
2026/10/09 08:57:58.308, 288.60, 2760, 51
2026/10/09 08:57:59.308, 290.34, 2760, 51
2026/10/09 08:58:00.308, 290.98, 2760, 51
2026/10/09 08:58:01.309, 291.02, 2760, 51
2026/10/09 08:58:02.309, 290.73, 2760, 51
2026/10/09 08:58:03.309, 290.92, 2760, 51
2026/10/09 08:58:04.309, 290.75, 2760, 51
2026/10/09 08:58:05.310, 290.38, 2760, 51
2026/10/09 08:58:06.310, 290.19, 2760, 51
2026/10/09 08:58:07.310, 290.68, 2760, 51
2026/10/09 08:58:08.310, 290.88, 2760, 51
2026/10/09 08:58:09.311, 290.61, 2760, 51
2026/10/09 08:58:10.311, 290.69, 2760, 51
2026/10/09 08:58:11.311, 290.67, 2760, 51
2026/10/09 08:58:12.311, 290.86, 2760, 51
2026/10/09 08:58:13.312, 290.58, 2760, 51
2026/10/09 08:58:14.312, 290.67, 2760, 51
2026/10/09 08:58:15.312, 290.85, 2760, 51
2026/10/09 08:58:16.312, 290.23, 2760, 51
2026/10/09 08:58:17.313, 290.90, 2760, 51
2026/10/09 08:58:18.313, 290.91, 2760, 51
2026/10/09 08:58:19.313, 290.74, 2760, 51
2026/10/09 08:58:20.313, 290.69, 2760, 51
2026/10/09 08:58:21.313, 290.86, 2760, 51
2026/10/09 08:58:22.314, 290.93, 2760, 51
2026/10/09 08:58:23.314, 291.05, 2760, 51
2026/10/09 08:58:24.314, 291.16, 2760, 51
2026/10/09 08:58:25.314, 290.88, 2760, 51
2026/10/09 08:58:26.314, 291.01, 2760, 51
2026/10/09 08:58:27.315, 290.85, 2760, 51
2026/10/09 08:58:28.315, 291.21, 2760, 51
2026/10/09 08:58:29.315, 291.38, 2760, 51
2026/10/09 08:58:30.316, 291.03, 2760, 51
2026/10/09 08:58:31.316, 291.05, 2760, 51
2026/10/09 08:58:32.316, 291.02, 2760, 52
2026/10/09 08:58:33.316, 290.71, 2760, 52
2026/10/09 08:58:34.316, 290.43, 2760, 51
2026/10/09 08:58:35.316, 289.99, 2760, 52
2026/10/09 08:58:36.317, 290.21, 2760, 52
2026/10/09 08:58:37.317, 290.23, 2760, 52
2026/10/09 08:58:38.317, 290.24, 2760, 52
2026/10/09 08:58:39.317, 290.71, 2760, 52
2026/10/09 08:58:40.317, 290.89, 2760, 52
2026/10/09 08:58:41.318, 290.68, 2760, 52
2026/10/09 08:58:42.318, 291.02, 2760, 52
2026/10/09 08:58:43.318, 290.83, 2760, 52
2026/10/09 08:58:44.318, 291.05, 2760, 52
2026/10/09 08:58:45.318, 291.52, 2760, 52
2026/10/09 08:58:46.319, 291.56, 2760, 52
2026/10/09 08:58:47.319, 291.40, 2760, 52
2026/10/09 08:58:48.319, 291.61, 2760, 52
2026/10/09 08:58:49.319, 291.38, 2760, 52
2026/10/09 08:58:50.319, 291.18, 2760, 52
2026/10/09 08:58:51.320, 290.96, 2760, 52
2026/10/09 08:58:52.320, 291.10, 2760, 52
2026/10/09 08:58:53.320, 291.06, 2760, 52
2026/10/09 08:58:54.320, 291.56, 2760, 52
2026/10/09 08:58:55.321, 291.08, 2760, 52
2026/10/09 08:58:56.321, 291.49, 2760, 52
2026/10/09 08:58:57.321, 291.82, 2760, 52
2026/10/09 08:58:58.321, 291.87, 2760, 52
2026/10/09 08:58:59.321, 291.57, 2760, 52
2026/10/09 08:59:00.321, 291.37, 2760, 52
2026/10/09 08:59:01.322, 291.48, 2760, 52
2026/10/09 08:59:02.322, 291.90, 2760, 52
2026/10/09 08:59:03.322, 291.97, 2760, 52
2026/10/09 08:59:04.322, 291.98, 2760, 52
2026/10/09 08:59:05.323, 291.81, 2760, 52
2026/10/09 08:59:06.323, 291.60, 2760, 52
2026/10/09 08:59:07.323, 291.63, 2760, 52
2026/10/09 08:59:08.323, 291.86, 2760, 52
2026/10/09 08:59:09.323, 291.78, 2760, 52
2026/10/09 08:59:10.324, 291.52, 2760, 52
2026/10/09 08:59:11.324, 291.64, 2760, 52
2026/10/09 08:59:12.324, 291.52, 2760, 52
2026/10/09 08:59:13.324, 148.19, 2760, 45

View file

@ -1,3 +0,0 @@
card=NVIDIA_GeForce_RTX_4090 mode=select jobs=1024 batch_log2=22 hashes=4294967296 found=4223 setup_s=4.067 prod_wall_s=127.175 prod_mhs=33.77 prod_mean_w=280.8 prod_j_per_batch=34.9 prod_mh_per_w=0.1203 samples=128 steady_wall_s=123.107 steady_mhs=34.89 steady_mean_w=289.3 steady_j_per_batch=34.8 steady_mh_per_w=0.1206 samples=123 accepted=4223 over_target=0 nj_per_hash_steady=8291.8 j_per_share_steady=8.434 smi_ms=1000 worker_cpu_s=0.00 worker_sha=4152c960d1421007
ready: ready cuda NVIDIA_GeForce_RTX_4090 pack igneum-epoch/af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3/day/69676e65756d2d6461792ffa50000000000000 dataset-log2 28 batch 4194304 regs 88 prepare 1 path nvrtc 12.8 driver 13.2 arch sm_89 variant base race off readback select worker 1.0 (4 October 2026)
transfers: transfers per chunk: down 342 B (select, 0 full fallbacks); mean per chunk: kernel+sync 119.76 ms, select 0.147 ms, read-back 0.189 ms, scan 0.009 ms; 1024 jobs 1024 chunks

View file

@ -1,130 +0,0 @@
2026/10/09 09:04:14.899, 48.76, 210, 40
2026/10/09 09:04:15.904, 42.46, 210, 40
2026/10/09 09:04:16.904, 54.87, 2520, 40
2026/10/09 09:04:17.904, 84.82, 2520, 40
2026/10/09 09:04:18.904, 87.76, 2520, 39
2026/10/09 09:04:19.904, 89.72, 2520, 39
2026/10/09 09:04:20.905, 222.88, 2775, 46
2026/10/09 09:04:21.905, 286.65, 2760, 46
2026/10/09 09:04:22.905, 286.91, 2760, 47
2026/10/09 09:04:23.905, 287.32, 2760, 47
2026/10/09 09:04:24.905, 287.44, 2760, 47
2026/10/09 09:04:25.905, 287.60, 2760, 47
2026/10/09 09:04:26.906, 287.79, 2760, 47
2026/10/09 09:04:27.906, 287.96, 2760, 47
2026/10/09 09:04:28.906, 288.30, 2760, 48
2026/10/09 09:04:29.906, 287.69, 2760, 48
2026/10/09 09:04:30.906, 287.48, 2760, 48
2026/10/09 09:04:31.907, 287.43, 2760, 48
2026/10/09 09:04:32.907, 288.22, 2760, 48
2026/10/09 09:04:33.907, 288.42, 2760, 48
2026/10/09 09:04:34.907, 288.41, 2760, 48
2026/10/09 09:04:35.907, 288.15, 2760, 48
2026/10/09 09:04:36.908, 287.89, 2760, 48
2026/10/09 09:04:37.908, 287.44, 2760, 48
2026/10/09 09:04:38.908, 288.52, 2760, 49
2026/10/09 09:04:39.908, 288.28, 2760, 48
2026/10/09 09:04:40.908, 288.32, 2760, 49
2026/10/09 09:04:41.909, 288.69, 2760, 49
2026/10/09 09:04:42.909, 288.70, 2760, 49
2026/10/09 09:04:43.909, 288.60, 2760, 49
2026/10/09 09:04:44.909, 288.77, 2760, 49
2026/10/09 09:04:45.910, 289.64, 2760, 49
2026/10/09 09:04:46.910, 289.48, 2760, 49
2026/10/09 09:04:47.910, 289.59, 2760, 49
2026/10/09 09:04:48.910, 289.46, 2760, 49
2026/10/09 09:04:49.911, 289.35, 2760, 49
2026/10/09 09:04:50.911, 289.64, 2760, 49
2026/10/09 09:04:51.911, 289.61, 2760, 49
2026/10/09 09:04:52.911, 289.65, 2760, 49
2026/10/09 09:04:53.911, 289.59, 2760, 49
2026/10/09 09:04:54.912, 289.69, 2760, 50
2026/10/09 09:04:55.912, 289.47, 2760, 50
2026/10/09 09:04:56.912, 289.22, 2760, 50
2026/10/09 09:04:57.912, 289.80, 2760, 50
2026/10/09 09:04:58.912, 289.83, 2760, 50
2026/10/09 09:04:59.913, 289.71, 2760, 50
2026/10/09 09:05:00.913, 290.00, 2760, 50
2026/10/09 09:05:01.913, 290.13, 2760, 50
2026/10/09 09:05:02.913, 289.75, 2760, 50
2026/10/09 09:05:03.913, 288.27, 2760, 50
2026/10/09 09:05:04.914, 289.55, 2760, 50
2026/10/09 09:05:05.914, 289.89, 2760, 50
2026/10/09 09:05:06.914, 290.35, 2760, 50
2026/10/09 09:05:07.914, 290.35, 2760, 50
2026/10/09 09:05:08.914, 290.32, 2760, 50
2026/10/09 09:05:09.915, 290.39, 2760, 50
2026/10/09 09:05:10.915, 289.82, 2760, 50
2026/10/09 09:05:11.915, 289.72, 2760, 50
2026/10/09 09:05:12.915, 288.72, 2760, 50
2026/10/09 09:05:13.915, 289.57, 2760, 50
2026/10/09 09:05:14.916, 289.82, 2760, 50
2026/10/09 09:05:15.916, 290.28, 2760, 50
2026/10/09 09:05:16.916, 290.31, 2760, 50
2026/10/09 09:05:17.916, 290.17, 2760, 50
2026/10/09 09:05:18.917, 290.23, 2760, 50
2026/10/09 09:05:19.917, 290.01, 2760, 51
2026/10/09 09:05:20.917, 290.30, 2760, 51
2026/10/09 09:05:21.918, 290.05, 2760, 51
2026/10/09 09:05:22.919, 290.46, 2760, 51
2026/10/09 09:05:23.919, 290.11, 2760, 51
2026/10/09 09:05:24.919, 288.57, 2760, 51
2026/10/09 09:05:25.920, 290.10, 2760, 51
2026/10/09 09:05:26.920, 289.63, 2760, 51
2026/10/09 09:05:27.920, 289.60, 2760, 51
2026/10/09 09:05:28.920, 289.39, 2760, 51
2026/10/09 09:05:29.920, 290.67, 2760, 51
2026/10/09 09:05:30.921, 290.54, 2760, 51
2026/10/09 09:05:31.921, 290.12, 2760, 51
2026/10/09 09:05:32.921, 290.22, 2760, 51
2026/10/09 09:05:33.921, 290.17, 2760, 51
2026/10/09 09:05:34.922, 289.95, 2760, 51
2026/10/09 09:05:35.922, 289.98, 2760, 51
2026/10/09 09:05:36.922, 290.30, 2760, 51
2026/10/09 09:05:37.922, 290.22, 2760, 51
2026/10/09 09:05:38.922, 290.47, 2760, 51
2026/10/09 09:05:39.923, 290.92, 2760, 51
2026/10/09 09:05:40.923, 290.81, 2760, 51
2026/10/09 09:05:41.923, 290.47, 2760, 51
2026/10/09 09:05:42.923, 290.46, 2760, 51
2026/10/09 09:05:43.923, 290.53, 2760, 51
2026/10/09 09:05:44.924, 290.53, 2760, 51
2026/10/09 09:05:45.924, 291.22, 2760, 51
2026/10/09 09:05:46.924, 291.36, 2760, 51
2026/10/09 09:05:47.924, 291.02, 2760, 51
2026/10/09 09:05:48.924, 291.05, 2760, 51
2026/10/09 09:05:49.925, 290.76, 2760, 51
2026/10/09 09:05:50.925, 290.75, 2760, 51
2026/10/09 09:05:51.925, 290.26, 2760, 51
2026/10/09 09:05:52.925, 289.95, 2760, 51
2026/10/09 09:05:53.926, 289.96, 2760, 51
2026/10/09 09:05:54.926, 290.65, 2760, 51
2026/10/09 09:05:55.926, 290.92, 2760, 51
2026/10/09 09:05:56.927, 290.37, 2760, 51
2026/10/09 09:05:57.927, 290.81, 2760, 51
2026/10/09 09:05:58.927, 290.69, 2760, 51
2026/10/09 09:05:59.927, 290.45, 2760, 51
2026/10/09 09:06:00.927, 290.52, 2760, 51
2026/10/09 09:06:01.928, 290.82, 2760, 51
2026/10/09 09:06:02.928, 290.64, 2760, 51
2026/10/09 09:06:03.928, 290.74, 2760, 51
2026/10/09 09:06:04.928, 291.16, 2760, 51
2026/10/09 09:06:05.928, 291.35, 2760, 51
2026/10/09 09:06:06.929, 291.37, 2760, 51
2026/10/09 09:06:07.929, 291.70, 2760, 51
2026/10/09 09:06:08.929, 291.63, 2760, 51
2026/10/09 09:06:09.929, 291.39, 2760, 51
2026/10/09 09:06:10.929, 291.13, 2760, 51
2026/10/09 09:06:11.929, 290.65, 2760, 51
2026/10/09 09:06:12.930, 291.24, 2760, 52
2026/10/09 09:06:13.930, 291.12, 2760, 52
2026/10/09 09:06:14.930, 291.26, 2760, 52
2026/10/09 09:06:15.930, 291.19, 2760, 52
2026/10/09 09:06:16.930, 290.99, 2760, 52
2026/10/09 09:06:17.931, 289.77, 2760, 52
2026/10/09 09:06:18.931, 290.39, 2760, 52
2026/10/09 09:06:19.931, 290.64, 2760, 52
2026/10/09 09:06:20.931, 290.93, 2760, 52
2026/10/09 09:06:21.932, 291.03, 2760, 52
2026/10/09 09:06:22.932, 291.53, 2760, 52
2026/10/09 09:06:23.932, 176.32, 2760, 45

View file

@ -1,3 +0,0 @@
card=NVIDIA_GeForce_RTX_4090 mode=select jobs=1024 batch_log2=22 hashes=4294967296 found=4223 setup_s=3.970 prod_wall_s=127.457 prod_mhs=33.70 prod_mean_w=280.5 prod_j_per_batch=34.9 prod_mh_per_w=0.1201 samples=128 steady_wall_s=123.487 steady_mhs=34.78 steady_mean_w=287.2 steady_j_per_batch=34.6 steady_mh_per_w=0.1211 samples=124 accepted=4223 over_target=0 nj_per_hash_steady=8257.6 j_per_share_steady=8.398 smi_ms=1000 worker_cpu_s=0.00 worker_sha=4152c960d1421007
ready: ready cuda NVIDIA_GeForce_RTX_4090 pack igneum-epoch/af89be5ddbadb6f6b4aee28ac8f249713be5d4c12621e3cea7f83ceada3c66b3/day/69676e65756d2d6461792ffa50000000000000 dataset-log2 28 batch 4194304 regs 88 prepare 1 path nvrtc 12.8 driver 13.2 arch sm_89 variant base race off readback select worker 1.0 (4 October 2026)
transfers: transfers per chunk: down 342 B (select, 0 full fallbacks); mean per chunk: kernel+sync 119.76 ms, select 0.428 ms, read-back 0.196 ms, scan 0.008 ms; 1024 jobs 1024 chunks

View file

@ -1,130 +0,0 @@
2026/10/09 09:06:30.330, 43.10, 210, 40
2026/10/09 09:06:31.338, 36.20, 210, 40
2026/10/09 09:06:32.338, 72.60, 2520, 41
2026/10/09 09:06:33.338, 86.35, 2520, 41
2026/10/09 09:06:34.339, 88.61, 2520, 40
2026/10/09 09:06:35.339, 85.50, 2520, 40
2026/10/09 09:06:36.339, 246.34, 2760, 47
2026/10/09 09:06:37.339, 287.22, 2760, 47
2026/10/09 09:06:38.340, 287.41, 2760, 47
2026/10/09 09:06:39.340, 286.68, 2760, 48
2026/10/09 09:06:40.340, 287.94, 2760, 48
2026/10/09 09:06:41.340, 287.66, 2760, 48
2026/10/09 09:06:42.340, 286.96, 2760, 48
2026/10/09 09:06:43.341, 288.18, 2760, 48
2026/10/09 09:06:44.341, 287.74, 2760, 48
2026/10/09 09:06:45.341, 287.61, 2760, 48
2026/10/09 09:06:46.341, 287.92, 2760, 48
2026/10/09 09:06:47.342, 287.86, 2760, 49
2026/10/09 09:06:48.342, 288.05, 2760, 49
2026/10/09 09:06:49.342, 287.85, 2760, 49
2026/10/09 09:06:50.342, 287.85, 2760, 49
2026/10/09 09:06:51.342, 287.73, 2760, 49
2026/10/09 09:06:52.343, 287.94, 2760, 49
2026/10/09 09:06:53.343, 288.28, 2760, 49
2026/10/09 09:06:54.343, 288.35, 2760, 49
2026/10/09 09:06:55.343, 289.17, 2760, 49
2026/10/09 09:06:56.344, 289.32, 2760, 49
2026/10/09 09:06:57.344, 289.35, 2760, 49
2026/10/09 09:06:58.344, 289.09, 2760, 49
2026/10/09 09:06:59.344, 288.91, 2760, 49
2026/10/09 09:07:00.345, 289.24, 2760, 49
2026/10/09 09:07:01.345, 289.90, 2760, 49
2026/10/09 09:07:02.345, 290.05, 2760, 50
2026/10/09 09:07:03.345, 290.09, 2760, 50
2026/10/09 09:07:04.345, 289.90, 2760, 50
2026/10/09 09:07:05.346, 289.67, 2760, 50
2026/10/09 09:07:06.346, 289.64, 2760, 50
2026/10/09 09:07:07.346, 289.58, 2760, 50
2026/10/09 09:07:08.346, 288.11, 2760, 50
2026/10/09 09:07:09.346, 273.31, 2760, 50
2026/10/09 09:07:10.347, 289.66, 2760, 50
2026/10/09 09:07:11.347, 289.07, 2760, 50
2026/10/09 09:07:12.347, 290.07, 2760, 50
2026/10/09 09:07:13.347, 289.72, 2760, 50
2026/10/09 09:07:14.347, 289.39, 2760, 50
2026/10/09 09:07:15.348, 261.93, 2760, 50
2026/10/09 09:07:16.348, 289.57, 2760, 50
2026/10/09 09:07:17.348, 289.11, 2760, 50
2026/10/09 09:07:18.348, 288.75, 2760, 50
2026/10/09 09:07:19.348, 289.74, 2760, 50
2026/10/09 09:07:20.348, 290.37, 2760, 50
2026/10/09 09:07:21.349, 290.27, 2760, 50
2026/10/09 09:07:22.349, 289.96, 2760, 50
2026/10/09 09:07:23.349, 290.61, 2760, 50
2026/10/09 09:07:24.349, 290.35, 2760, 50
2026/10/09 09:07:25.349, 290.05, 2760, 50
2026/10/09 09:07:26.350, 289.29, 2760, 51
2026/10/09 09:07:27.350, 288.93, 2760, 51
2026/10/09 09:07:28.350, 290.18, 2760, 51
2026/10/09 09:07:29.350, 290.11, 2760, 51
2026/10/09 09:07:30.350, 289.72, 2760, 51
2026/10/09 09:07:31.351, 288.96, 2760, 51
2026/10/09 09:07:32.351, 289.16, 2760, 51
2026/10/09 09:07:33.351, 289.38, 2760, 51
2026/10/09 09:07:34.351, 290.03, 2760, 51
2026/10/09 09:07:35.351, 289.74, 2760, 51
2026/10/09 09:07:36.352, 289.46, 2760, 51
2026/10/09 09:07:37.352, 289.91, 2760, 51
2026/10/09 09:07:38.352, 289.81, 2760, 51
2026/10/09 09:07:39.352, 289.53, 2760, 51
2026/10/09 09:07:40.352, 289.55, 2760, 51
2026/10/09 09:07:41.353, 289.54, 2760, 51
2026/10/09 09:07:42.353, 289.95, 2760, 51
2026/10/09 09:07:43.353, 289.73, 2760, 51
2026/10/09 09:07:44.353, 289.90, 2760, 51
2026/10/09 09:07:45.353, 290.21, 2760, 51
2026/10/09 09:07:46.353, 290.23, 2760, 51
2026/10/09 09:07:47.354, 290.85, 2760, 51
2026/10/09 09:07:48.354, 290.55, 2760, 51
2026/10/09 09:07:49.354, 290.43, 2760, 51
2026/10/09 09:07:50.354, 290.41, 2760, 51
2026/10/09 09:07:51.354, 290.09, 2760, 51
2026/10/09 09:07:52.355, 289.08, 2760, 51
2026/10/09 09:07:53.355, 290.65, 2760, 51
2026/10/09 09:07:54.355, 290.55, 2760, 51
2026/10/09 09:07:55.355, 275.14, 2760, 51
2026/10/09 09:07:56.355, 289.65, 2760, 51
2026/10/09 09:07:57.356, 289.93, 2760, 51
2026/10/09 09:07:58.356, 290.65, 2760, 51
2026/10/09 09:07:59.356, 290.93, 2760, 51
2026/10/09 09:08:00.356, 290.75, 2760, 51
2026/10/09 09:08:01.356, 291.05, 2760, 51
2026/10/09 09:08:02.357, 290.93, 2760, 51
2026/10/09 09:08:03.357, 290.65, 2760, 51
2026/10/09 09:08:04.357, 290.62, 2760, 51
2026/10/09 09:08:05.357, 290.72, 2760, 51
2026/10/09 09:08:06.357, 290.60, 2760, 51
2026/10/09 09:08:07.358, 290.71, 2760, 51
2026/10/09 09:08:08.358, 289.42, 2760, 51
2026/10/09 09:08:09.358, 290.10, 2760, 51
2026/10/09 09:08:10.358, 290.76, 2760, 51
2026/10/09 09:08:11.358, 290.32, 2760, 51
2026/10/09 09:08:12.359, 290.59, 2760, 51
2026/10/09 09:08:13.359, 290.76, 2760, 51
2026/10/09 09:08:14.359, 290.71, 2760, 51
2026/10/09 09:08:15.359, 291.16, 2760, 51
2026/10/09 09:08:16.360, 290.92, 2760, 51
2026/10/09 09:08:17.360, 290.89, 2760, 52
2026/10/09 09:08:18.360, 290.86, 2760, 51
2026/10/09 09:08:19.360, 290.56, 2760, 52
2026/10/09 09:08:20.360, 290.18, 2760, 52
2026/10/09 09:08:21.361, 290.49, 2760, 52
2026/10/09 09:08:22.361, 290.16, 2760, 52
2026/10/09 09:08:23.361, 290.18, 2760, 52
2026/10/09 09:08:24.361, 290.26, 2760, 52
2026/10/09 09:08:25.362, 290.56, 2760, 52
2026/10/09 09:08:26.362, 290.67, 2760, 52
2026/10/09 09:08:27.362, 290.38, 2760, 52
2026/10/09 09:08:28.362, 289.80, 2760, 52
2026/10/09 09:08:29.363, 290.32, 2760, 52
2026/10/09 09:08:30.363, 290.32, 2760, 52
2026/10/09 09:08:31.363, 290.53, 2760, 52
2026/10/09 09:08:32.363, 290.40, 2760, 52
2026/10/09 09:08:33.363, 290.35, 2760, 52
2026/10/09 09:08:34.364, 290.34, 2760, 52
2026/10/09 09:08:35.364, 290.40, 2760, 52
2026/10/09 09:08:36.364, 290.26, 2760, 52
2026/10/09 09:08:37.364, 290.37, 2760, 52
2026/10/09 09:08:38.364, 290.26, 2760, 52
2026/10/09 09:08:39.365, 200.92, 2760, 45

View file

@ -1,32 +0,0 @@
{
"ctx": "same-work-20261008-01",
"shape": "prod",
"expected_sha256": "52a0f79483ce948b83c4bcde39ce37b89fdf04091826e14f56260717e0d8fce6",
"modes": {
"fault": "NOT RUN",
"full": {
"sha256": "2f7f1de48a50650a50daf8835c6c86eba981a155b28cc4bc5a5990f74ea56a12",
"equal_to_expected": false,
"first_difference": {
"line": 1048578,
"expected": "found 2 5379 0010510133e9ba59",
"got": "error 2 error"
},
"lines_missing": 2097931,
"lines_extra": 1
},
"select": {
"sha256": "2f7f1de48a50650a50daf8835c6c86eba981a155b28cc4bc5a5990f74ea56a12",
"equal_to_expected": false,
"first_difference": {
"line": 1048578,
"expected": "found 2 5379 0010510133e9ba59",
"got": "error 2 error"
},
"lines_missing": 2097931,
"lines_extra": 1
}
},
"known_failed_flagged": null,
"verdict": "DIFFERENT"
}

Some files were not shown because too many files have changed in this diff Show more