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>
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Cloud devnet and rented-GPU benchmarks: plan
3 October 2026. Scripts in infra/cloud-devnet/ and infra/gpu-bench/. Nothing in either directory spends until
Josh answers "yes" to one command; the seed node (docs/plans/seed-nodes.md) is the only thing live tonight.
Experiment 1: a 20-node Igneum devnet across regions
What: 20 small VMs (Hetzner Cloud, 4 each in Falkenstein, Helsinki, Ashburn, Hillsboro, Singapore) running igneumd
on a private network (igneum-devnet-20, own genesis, 2^18 hashes per block) with one CPU trickle miner and one BLS
vote key per node, wired as a sparse mesh of about 4 peers each. Three measurements: inter-region RTT and block
propagation delay per node; a region cut off with iptables for 10 minutes and healed, recording the reorg depth,
the heal time and whether any checkpoint locked with two hashes; and a schedule of hash-rate steps (4x on half the
nodes, a region off) for the difficulty controller.
What it proves:
| Measurement | Closes or informs |
|---|---|
| Reorg depth distribution under real latency, and the partition's reorg depth and heal time | gate 3: the checkpoint determination depth d (spec 03 C1, placeholder 60, devnet 20, ledger F7) is set from exactly this distribution; the floor rule (lock needs 56.7% of total weight) is tested against a real partition instead of the checkpoint-level simulator (ledger F2, F3, F11; O-3.6 two certificates at one index) |
| Block propagation p50/p90/p99 between regions | the 5 s network delay bound behind GHOSTDAG k at 1 BPS; spec 03's lock latency (simulated 2.5 s median at a 2 s inter-region delay) |
| Settle time and overshoot per hash-rate step | spec 02 section 2.3: the dual-lane controller's simulator numbers (x50 settled in 62 s, /50 in 657 s) on a real network with real timestamps; on the master tree it measures Kaspa's sampled DAA instead, so build from the difficulty worktree for this one |
What it does not prove: nothing about GPU hash rates (CPU miners), nothing at 1,000 miners, one evening of data.
Cost (Hetzner API prices of 3 Oct 2026, net): USD 0.76 per hour for the 20 nodes at 4 per location (USD 476 per month if left running), or USD 0.47 per hour EU-heavy; the builder VM USD 0.0296 per hour for one hour. An evening of six hours: about USD 5. DigitalOcean variant: USD 0.71 per hour. Time to first block after "yes": about 25 minutes (VM creation, a 10 to 25 minute build, install).
Command sequence: infra/cloud-devnet/README.md, section "The command sequence". In short: create.sh,
provision.sh, start.sh, then experiments/latency.sh 10, experiments/partition.sh sin 10, experiments/hop.sh,
experiments/collect.sh, then stop.sh and destroy.sh.
Experiment 2: rented GPUs
What: one RunPod pod per card (RTX 3060 if a host offers one, RTX 3090, RTX 4090, RTX 5090; an AMD RX 7900 XTX is not
offered by RunPod and Vast.ai lists no AMD consumer cards in general, approximate, so the ROCm recipe is shipped and
waits for an AMD box). Each pod gets the bundle (proto-cuda/host.cu, the three packs, proto-opencl/host.c, the
bench scripts), builds the worker with --serve support, and runs: the vectors gate, a 10-minute raw bench at 1 GiB
on the memory-hard pack, the dataset sweep 64 MiB to 1 GiB (the L2 cliff), the inline-dataset shortcut kernel against
the honest one (the ratio), and the hourly-recompile timing (nvcc to cubin as the worker's prepare path does it,
NVRTC in process, and the OpenCL compiler where an ICD is present). It prints one results row, appends it to
results.md, and uploads the row and the log to the intake (/api/log, the Windows package's key).
What it proves:
| Measurement | Closes or informs |
|---|---|
| Mhash/s at 1 GiB per card, 10 minutes sustained | the per-card hash rate table the litepaper and the miner community need; the first numbers for 3060, 3090 and 4090 (only the 5090 and the M5 Max are measured) |
| The sweep's cliff between the card's L2 and 1 GiB | ledger M1 ("the program space is tiny"): the defence is random reads over a dataset larger than any on-chip cache; the cliff per card is the measurement behind the "under 2x for a chip" target |
| Inline shortcut over honest rate | ledger M16 (a 256 MiB cache on a die): the recompute attacker's rate on three more cards than the M5 Max's 0.21; the 64 MiB-cache variant inside the 5090's L2 needs a pack exported with a smaller cache and is a follow-up |
| nvcc, NVRTC and OpenCL compile times per card | ledger M11 (hourly JIT on real rigs) and M17: whether the hourly program change costs milliseconds or seconds on real NVIDIA drivers, in process and out of process |
Cost (RunPod pricing page, 3 Oct 2026, USD per hour): RTX 3090 0.22 community / 0.50 secure, RTX 4090 0.34 / 0.74, RTX 5090 0.69 / 0.99; the 3060 is not on RunPod's table (Vast.ai about 0.05 to 0.10, approximate). One run is about 45 minutes, so the four NVIDIA cards cost about USD 2 on community cloud or USD 3.50 on secure cloud, plus a few cents of storage. Per-minute billing.
Command sequence: infra/gpu-bench/README.md. In short: make-bundle.sh on the Mac, start a pod from the image
recipe with SSH, scp the bundle, ./run.sh, read results.md, paste the row into docs/bench-log.md with the
template.
The go/no-go question for Josh
Spend about USD 5 (Hetzner, billed in USD) and USD 2 to 4 (RunPod) tonight-to-tomorrow for (a) the first reorg-depth, propagation and partition numbers
from a real multi-region network, which gate 3 needs and the simulator cannot give, and (b) the per-card hash rates
and the three ASIC-resistance measurements (L2 cliff, inline ratio, recompile time) on 3060, 3090 and 4090, closing
the measurement half of ledger items M1, M11 and M16 for those cards? If yes: cd infra/cloud-devnet && ./create.sh
and cd infra/gpu-bench && ./make-bundle.sh are the two starting commands. If no: the scripts keep, nothing bills,
and the seed node stays at USD 6.49 per month.