Conflict resolved: publish-jobs.sh keeps master's verify command and --tries (the retrying live check) alongside the
build kind's arguments; the usage range covers the merged header.
Conflicts resolved: state.rs keeps both the sweep fields (miner-eff) and the race fields (miner-perf); bench-log.md
keeps both appended entries; publish-manifest.sh keeps master's --override implementation (8082576, the "every
height switch" rule, --verify-only, --tries, the retrying live check) and adds miner-perf's --tuning / --no-tuning
with the carry-over of consensus.override and tuning from the current manifest. One --override case, one parser.
src/sweep.rs (new): the cap steps 100% to 50% in 10% steps clamped to the card's limits, per-step rows (mean draw
from nvidia-smi power.draw, mean worker interval rate), the choice (best MH/W, ties to the higher rate then the lower
cap), the nvidia-smi power parser, a state machine on an explicit clock (15 s settle, 60 s hold, 30 s cap readback
limit), the elevated helper scripts (one administrator prompt per sweep: a command file polled by one elevated
process, self-restoring after 20 idle minutes), the unsupported reasons (Apple silicon, AMD). 9 unit tests with
PC 1's recorded RTX 5090 numbers (575 W default, 460 W cap, 290 W draw, memory temperature [N/A]).
Engine: scheduler (once after install, then weekly; one card at a time; only while the card mines, after 120 s
steady, never under a remote job hold, a pause, or inside 600 s of the hour boundary), the cap-mode probe (direct
when the engine runs elevated, else the helper), abort on any fault (card leaves mining, worker error, GPU 90 C,
job, pause, quit) with the cap restored, the chosen cap held and recorded, SWEEP table lines in the app log,
--sweep mode (sweep every supported card, print the table on stdout, leave the caps, quit). Cap floor 50% (was 60).
A readback that matches the asked cap now counts as applied (PC 1 showed "cap NOT applied" for hours at 460 W).
Dashboard: live eff MH/W on each tile, the sweep line (phase, last result, or why unsupported), Sweep now / Stop /
Unpin, "pinned" and "chosen by the sweep" on the cap line, the Settings toggle, the cards-page note, slider min 50.
A cap moved by hand pins the card: the sweep records but does not change it.
PC 1 measurement: relay/playbooks/sweep-5090.ps1 (a run job, elevated, miners stopped; a second engine with --sweep
in a scratch data folder, RESULT SWEEP lines) and docs/plans/miner-eff.md with the publish command. Not published.
Untested on a card.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
Under emulation (or --race with no other name) the race no longer times base alone: emu/test.sh passes again
(9 source checks, the serve protocol with prepare, swap and self-heal, 17 sampled hashes equal to igneum-pow).
Mac table: g256 (256 threads per threadgroup) +17.3% and +21.2% over the shipped 32-thread groups on two
programs, with the live app's worker sharing the GPU; the serve check found the unfair mutex (fixed in 123ee1a).
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
New job kind `build` (jobs.rs, jobbuild.rs, jobrun.rs run_build): free-space check on both sides (20 GB), the
build-inputs zip by sha256, setup inside the distro as root (mingw-w64 posix, clang for bindgen, protoc, zstd, the
Windows rust target; idempotent), sources extracted with the target dir persisting under /root/igneum-build,
cargo build --release native and for x86_64-pc-windows-gnu, cargo test for the manifest's packages, binaries
zstd-compressed and sent to the relay (fn=upload, Blob PUT, fn=drop; 50 MB each) with sha256 in RESULT lines,
STAGE lines with UTC times, a 40-minute default budget and per-stage caps, the Linux side killed on a cap. The
app's runner stays serial (one Active at a time), so a build never overlaps a shard job; nothing stops the miners.
From this version an unknown job kind is skipped by the app (parse_lenient) instead of rejecting the whole file;
the signer stays strict.
Mac side: packaging/windows/push-build-inputs.sh packs a fork worktree, app/igneum-app, brand/icons and
proto-cuda with a manifest (branch, commit, dirty, builds, tests) and the sha256; publish-jobs.sh add --kind build;
tools/build-job.mjs packs, publishes, watches, fetches, checks both sha256 per file and the PE header of every exe
(plus verify-exe.py on igneum-app.exe), and places the binaries where push-inputs.sh, make-payload.sh and the
cloud-devnet scripts look. relay.mjs drop <file> --body carries the body.
Tested on the Mac: 33 app tests (6 new) and the signer's 21; cargo check for x86_64-pc-windows-gnu; the packer
(7.9 MB zip, no target dirs); the publisher against a scratch folder with the rebuilt signer, the old signer
refusing the kind, a bad job refused at signing; the fetch path against the live relay with a real exe (sha256
and PE pass, a wrong sha256 refused; test items deleted). Not run on a PC: the job itself. docs/plans/build-job.md
has the first job for PC 1 and the rollout order (0.3.4 must be on the PCs before a build job is published).
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
The engine turns a worker's race line into one TUNING {json} line in the app log (card model as the worker names it,
driver, arch, program class loads and wide loads, every variant's MH/s, winner, gain, the card's power cap and
draw, MH per watt), which the existing intake receives; the card state carries the variant for the dashboard and
one event per race. tools/tuning.mjs aggregates the records from miner_logs per card model (median MH/s or MH per
watt, at least 3 samples, de-duplicated per race) and writes tuning.json; publish-manifest.sh --tuning puts it in
the signed manifest (and now takes --override for consensus.override; both are carried over from the current
manifest when not given, --no-tuning drops it); manifest.rs parses it; ota.rs writes <app data>/tuning.json and
removes it when the manifest drops it; procs::spawn takes an environment and every miner starts with
IGNEUM_TUNING_FILE, which its worker reads at every prepare. Dry run of the publisher against a scratch folder:
tuning and override written, carried over, dropped, signature verified.
docs/plans/miner-perf.md: the signed jobs for PC 1 (fetch the race build of the NVRTC worker, then
relay/playbooks/race-5090.ps1 with the miners stopped: 17 variants, 3 rounds, twice) with the exact publish
commands for the main session; not published by the agent.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
rollout-v2.sh stages the Linux igneumd (gateways from the Mac, private nodes from their gateway), rolls one node at a time with
difficulty_v2_activation_daa in every override file, checks the common chain and watches the height; results/2026-10-04/
rollout-v2*.log and v2/ (the hash-rate step under v2 and the v1 comparison). docs/plans/difficulty-v2-rollout-devnet.md: the
binaries and their sha256, the activation rule (N = DAA at publish + 10,800; baked at the cut as DAA + 14,400), the exact
restart lines for the observer node, the seed and Mac node 1, the OTA path for the two PCs through NODE_OVERRIDE_PARAMS in
packaged-config.sh (the engine side landed in 0dd587d), the rehearsal record. Bench-log entry.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
Windows combined package 0.2.0 (proto-cuda/windows-app): v4 exes from target-integration, peers = seed then Mac,
fresh appdir devnet-v4, one miner and one worker per card with --identities 8, --evm-address (PAYOUT_EVM or derived
per vendor from the PC name), voting on (VOTE=0 opts out), --prepare-packs for the hot swap with --exit-on-seed-change
as the fallback, --yes on the node, STATUS regex tolerant of the v4 now= segment, version in the dashboard header.
Mac app 0.2.0 (packaging/mac): v4 binaries, Metal worker rebuilt for macOS 11, data folder devnet-v4, EVM payout,
identities in one process, synced= flag honoured. Seed (infra/seed-nodes): stage-v4.sh builds v4 on the VM as a
niced, memory-capped transient service and installs a disabled igneumd-v4 unit with a fresh data dir; switch-v4.sh
swaps the units (--back reverses); health.sh reports active-v4. Runbook: docs/plans/cutover-2026-10-04.md.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
docs/evidence.md and site/evidence.html: 28 public claims with one of five status labels (7 designed, 3 implemented, 18 tested by the team, 0 reproduced externally, 0 reviewed independently), version or commit, the reproducible test, the result with date and machine, and independent verification (none yet for every row). Evidence link in the homepage nav and the generated pages' nav.
docs/benchmarks/proving-e2e.md: replaces the 20-second shard gate with three fixed workloads, job-received-to-accepted-proof latency, cost per proof, the eligible card list with mining and proving reported separately, the verbatim acceptance standard and the three-unrelated-operator protocol.
docs/plans/funding.md: cost, what is funded (founder's means, the client's 1% fee once there is mining), what waits on revenue, what pauses.
docs/analysis/security-budget.md: emission through six halvings at three price inputs, miners and provers separate from burns, the USD 1M floor and the year it is crossed.
docs/design/payment-routes.md: Mermaid flowchart and table of every flow, with operator, app, team and protocol revenue labelled.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
proving/igneum-prove: core (port of igneum-exec at fb33069 as the block statement), program (SP1 v6.8.1 guest),
host (execute, core, compressed; ProofSystem trait with the stub and the SP1 implementation), export (cuts a block
out of igneum_exportSegments and checks every state root against the node's). Fixtures block-78-increment and
block-56-transfers from the 3-node simnet. proving/windows-wsl2: SETUP-PROVER.bat, setup-wsl.sh, PROVE-BLOCK.bat,
make-package.sh. docs/plans/proving-v0.md: the devnet v4 shard plan, what tonight's proof shows and does not, the
morning acceptance line. Mac CPU baseline (block 78: 626 k cycles, core 22.0 s and 7.3 MB, compressed 55.7 s and
1.27 MB, both verified) appended to docs/bench-log.md, left uncommitted because that file carries another agent's
pending changes.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
igneum-seed-1 (Hetzner cx23, fsn1, 188.245.5.161:26611): built on the VM in 1,530 s, synced to the live devnet
(12,204 blocks, same sink as the live node) through a non-mining relay igneumd on the Mac (the live node's addPeer
RPC is refused in safe mode); the live node and the Windows PC learned the seed's address by peer exchange and dialled
it. seeds.txt written. Hetzner prices corrected to USD (pricing API currency) in the plans, READMEs and scripts;
current-generation types per location (cx23 EU, cpx22 sin, cpx21 US) in the cloud-devnet config.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
infra/cloud-devnet: hcloud (doctl variant) create, builder-VM provision from a git-archive source tarball,
systemd units for igneumd --devnet-suffix with a sparse --addpeer mesh and a CPU trickle miner per node,
stdlib wRPC client, experiments (latency, partition, hop, collect, observer hookup), README with the command
sequence and the Hetzner API prices of 3 Oct 2026.
infra/gpu-bench: RunPod image recipes (CUDA 12.8, ROCm), bundle, run.sh (vectors gate, 10-min raw, sweep,
inline shortcut ratio, nvcc/NVRTC/OpenCL recompile timings, results row, intake upload), bench-log template.
infra/seed-nodes: create-seed (persistent IPv4, firewall), provision on the VM, health check, addPeer from the
Mac over grpcurl, seeds.txt; igneum-seed-1 created at 188.245.5.161 (Hetzner cx23, fsn1).
docs/plans/cloud-devnet.md and docs/plans/seed-nodes.md.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>