tools/harness runs the standard consensus-attack catalogue against a private test network of our own igneumd nodes (127.0.0.1 ports 27200+, /tmp/igneum-harness, never the live devnet or the PC node), with a pass criterion per scenario from the spec and a measured result each. Built on the node fork's own crates (igneum-harness-sim on kaspa_utils::sim as simpa does; igneum-p2p-probe for the wire). Scenarios: 1 withholding, 2 timestamp edges and drift, 3 partition and heal, 4 eclipse, 5 malformed and boundary inputs on every p2p and RPC surface, 6 resource exhaustion, 7 fast-miner flood. Finality and difficulty-controller scenarios are stubs with their criteria written. bench-log: one dated entry, a row per scenario (criterion, measured, pass or fail). First run: 19 of 20 measured rows pass. Findings recorded in the entry: scenario 5 reproduces ledger M15 on HEAD (bogus past-day or DAA headers build a 256 MiB cache before rejection; the r3-fixes branch removes it); scenario 1 at 45% hash with burst withholding shows a selfish-mining blue-share gain (50.7% of blues), the one failing row. Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com> |
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| lib | ||
| scenarios | ||
| README.md | ||
| run.mjs | ||
Igneum consensus attack harness
Plays the standard consensus-attack catalogue against a private test network of our own Igneum nodes, with a pass
criterion per scenario taken from the spec and a measured result for each. This is robustness and conformance
testing of our own devnet software, the practice upstream Kaspa (simpa, testing/integration) and the Ethereum
clients follow.
What it is built on
- The in-process network simulator from rusty-kaspa (
kaspa_utils::sim, the enginesimpauses): one realConsensusper node in virtual time. The harness adds hash-share miners, a withholder, timestamp policies, a cut-and-heal topology and reorg records. Source:vendor/igneum-node-harness/igneum/harness-sim. - Real
igneumdprocesses on127.0.0.1, driven over wRPC JSON, for the live scenarios (5, 6, 7 Part B). - A p2p probe that speaks the fork's own protocol (handshake,
InvRelayBlock,RequestRelayBlocks,Block) to deliver malformed blocks on the wire. Source:vendor/igneum-node-harness/igneum/p2p-probe.
All nodes run with skip_proof_of_work (the harness never hashes), so the harness controls each miner's hash share
exactly. Every other consensus rule (timestamps, DAA, GHOSTDAG, merge depth, mass, coinbase) runs unchanged, so
the harness exercises the ordering layer, not a weakened copy of it.
Ports and isolation
The test network uses 127.0.0.1 ports 27200 and up and data under /tmp/igneum-harness. It never touches the
live devnet (gRPC 26610, P2P 26611, observer 26640/26641/28640), the PC node at 192.168.68.67, or any port other
agents use (up to 27199). Loopback peers are never gossiped (components/addressmanager/src/lib.rs), so no link
forms that a scenario did not ask for. Everything the harness starts is stopped at the end, including on SIGINT.
Build
The harness binaries live in the harness worktree of the node fork:
cd vendor/igneum-node/ && git worktree add -b harness ../igneum-node-harness HEAD # once
cd ../igneum-node-harness
CARGO_TARGET_DIR=target nice -n 19 ~/.cargo/bin/cargo build --release -j 4 \
-p kaspad -p igneum-miner --features kaspad/igneum-pow
CARGO_TARGET_DIR=target nice -n 19 ~/.cargo/bin/cargo build --release -j 4 \
-p igneum-p2p-probe -p igneum-harness-sim
This produces target/release/igneumd, igneum-miner, igneum-p2p-probe and igneum-harness-sim. The run
scripts find them there; override with IGNEUMD, IGNEUM_P2P_PROBE, IGNEUM_HARNESS_SIM.
Run
node tools/harness/run.mjs # the full catalogue, priority order 5,2,1,3,6,4,7
node tools/harness/run.mjs s5 s2 --quick # named scenarios, short durations
node tools/harness/run.mjs --no-bench-log # do not append to docs/bench-log.md
node tools/harness/scenarios/s1-withhold.mjs --quick # one scenario on its own
Each run appends one dated entry to docs/bench-log.md with a row per scenario (criterion, measured result, pass
or fail), writes full JSON per scenario under /tmp/igneum-harness/results and /tmp/igneum-harness/sim, and
leaves the test network stopped. Exit code is non-zero if any scenario failed.
The catalogue
| # | Scenario | Where | Criterion (spec) |
|---|---|---|---|
| 1 | Withheld-block mining (10, 25, 33, 45% share, release every 5 and 20) | sim | spec 02 2.1: attacker blue-block share within 2 sigma of hash share over 2,000 blocks; reorg depth distribution recorded |
| 2 | Timestamp manipulation: past-median and future-time edges; a 33% miner stretching inside the rules | live + sim | spec 02 2.3: rejected exactly at the boundary; block-rate drift of the controller measured |
| 3 | Partition and heal (2, 10, 30 min, plus one beyond merge depth) | sim | spec 02 2.1: one chain after the merge-depth rule; reorg depth and time to heal recorded |
| 4 | Eclipse of one node (victim fed a slower side chain) | sim | spec 02 2.1: rejoins the honest chain on reconnection within the merge-depth bound |
| 5 | Malformed and boundary inputs on every p2p message and RPC method the fork touches | live + p2p | fork-divergence header and RPC rows; ledger M15: rejected without a crash or a cache build |
| 6 | Resource exhaustion (50x template, submit and mempool floods from one peer) | live | honest template p95 under 200 ms, node under its memory bound; numbers recorded |
| 7 | Fast-miner flood (50x joins at once, the devnet event) | live + sim | node stays responsive; controller trajectory recorded for the difficulty branch |
Scenario 5 overlaps the r3-fixes branch (ledger M15): that branch runs the cheap checks before the lottery
engine, caps cache builds and bans the peer. On this node branch (HEAD, d62708a8, before r3-fixes) the engine
keeps three caches, so a stream of bogus past-day headers can still force a build; scenario 5 records whether any
case built a 256 MiB cache, which is the quantity r3-fixes drives to zero.
Stubs (finality and difficulty-controller branches)
Finality and the difficulty controller live on their own branches. Their scenarios are stubs here, with criteria
written and a one-line plan for running them once the branch is merged into the harness worktree. See
scenarios/stubs.mjs. In short: 1b (withhold vs vote weight), 3b (partition vs lock revocation, ledger F16), 4b
(eclipse vs presence window, ledger F2), 2b (timestamp stretch on the dual-lane controller), 7b (the 50x flood on
the dual-lane controller, against the kaspa-sampled baseline this harness records).
Files
run.mjsscenario runner and bench-log writer.scenarios/s1..s7one file per scenario; each exportsrun({ quick })and runs standalone.scenarios/stubs.mjsthe finality and controller stubs.lib/net.mjsnode processes, topology, TCP proxy for a cuttable link, cleanup.lib/rpc.mjswRPC JSON client.lib/miner.mjsvirtual miner and latency probe.lib/address.mjsdevnet address encoder.lib/sim.mjsrunsigneum-harness-sim.lib/report.mjsresults and bench-log entry.