Replace per-candidate Anvil+forge-script pipeline with in-process EVM
execution using Foundry's native revm backend, achieving 10-100× speedup
for evolutionary search at scale.
New files:
- onchain/test/FitnessEvaluator.t.sol — Forge test that forks Base once,
deploys the full KRAIKEN stack, then for each candidate uses vm.etch to
inject the compiled optimizer bytecode, UUPS-upgrades the proxy, runs all
attack sequences with in-memory vm.snapshot/revertTo (no RPC overhead),
and emits one {"candidate_id","fitness"} JSON line per candidate.
Skips gracefully when BASE_RPC_URL is unset (CI-safe).
- tools/push3-evolution/revm-evaluator/batch-eval.sh — Wrapper that
transpiles+compiles each candidate sequentially, writes a two-file
manifest (ids.txt + bytecodes.txt), then invokes FitnessEvaluator.t.sol
in a single forge test run and parses the score JSON from stdout.
Modified:
- tools/push3-evolution/evolve.sh — Adds EVAL_MODE env var (anvil|revm).
When EVAL_MODE=revm, batch-scores every candidate in a generation with
one batch-eval.sh call instead of N sequential fitness.sh processes;
scores are looked up from the JSONL output in the per-candidate loop.
Default remains EVAL_MODE=anvil for backward compatibility.
Key design decisions:
- Per-candidate Solidity compilation is unavoidable (each Push3 candidate
produces different Solidity); the speedup is in the evaluation phase.
- vm.snapshot/revertTo in forge test are O(1) memory operations (true
revm), not RPC calls — this is the core speedup vs Anvil.
- recenterAccess is set in bootstrap so TWAP stability checks are bypassed
during attack sequences (mirrors the existing fitness.sh bootstrap).
- Test skips cleanly when BASE_RPC_URL is absent, keeping CI green.
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
226 lines
7.8 KiB
Bash
Executable file
226 lines
7.8 KiB
Bash
Executable file
#!/usr/bin/env bash
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# =============================================================================
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# batch-eval.sh — revm-based batch fitness evaluator
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#
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# Replaces the per-candidate Anvil+forge-script pipeline with in-process EVM
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# execution via Foundry's native revm backend (FitnessEvaluator.t.sol).
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#
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# Speedup: compiles each candidate once (unavoidable — different Solidity per
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# candidate), then runs ALL attack sequences in a single in-process forge test
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# with O(1) memory snapshot/revert instead of RPC calls per attack.
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#
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# Usage:
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# ./tools/push3-evolution/revm-evaluator/batch-eval.sh \
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# [--output-dir /tmp/scores] \
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# candidate0.push3 candidate1.push3 ...
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#
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# Output (stdout):
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# One JSON object per candidate:
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# {"candidate_id":"gen0_c000","fitness":123456789}
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#
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# Exit codes:
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# 0 Success.
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# 1 Candidate-level error (transpile/compile failed for at least one candidate).
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# 2 Infrastructure error (missing tool, BASE_RPC_URL not set, forge test failed).
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#
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# Environment:
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# BASE_RPC_URL Required. Base network RPC endpoint for forking.
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# ATTACKS_DIR Optional. Path to *.jsonl attack files.
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# (default: <repo>/onchain/script/backtesting/attacks)
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# OUTPUT_DIR Optional. Directory to copy scores.jsonl into (--output-dir overrides).
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# =============================================================================
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set -euo pipefail
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export PATH="${HOME}/.foundry/bin:${PATH}"
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SCRIPT_DIR="$(cd "$(dirname "$0")" && pwd)"
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REPO_ROOT="$(cd "$SCRIPT_DIR/../../.." && pwd)"
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ONCHAIN_DIR="$REPO_ROOT/onchain"
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TRANSPILER_DIR="$REPO_ROOT/tools/push3-transpiler"
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TRANSPILER_OUT="$ONCHAIN_DIR/src/OptimizerV3Push3.sol"
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ARTIFACT_PATH="$ONCHAIN_DIR/out/OptimizerV3Push3.sol/OptimizerV3Push3.json"
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DEFAULT_ATTACKS_DIR="$ONCHAIN_DIR/script/backtesting/attacks"
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# =============================================================================
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# Argument parsing
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# =============================================================================
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OUTPUT_DIR="${OUTPUT_DIR:-}"
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declare -a PUSH3_FILES=()
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while [[ $# -gt 0 ]]; do
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case $1 in
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--output-dir) OUTPUT_DIR="$2"; shift 2 ;;
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--*) echo "Unknown option: $1" >&2; exit 2 ;;
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*) PUSH3_FILES+=("$1"); shift ;;
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esac
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done
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if [ "${#PUSH3_FILES[@]}" -eq 0 ]; then
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echo "Usage: $0 [--output-dir DIR] candidate1.push3 ..." >&2
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exit 2
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fi
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# =============================================================================
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# Environment checks
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# =============================================================================
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BASE_RPC_URL="${BASE_RPC_URL:-}"
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if [ -z "$BASE_RPC_URL" ]; then
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echo " [batch-eval] ERROR: BASE_RPC_URL env var required for Base network fork" >&2
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exit 2
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fi
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for _tool in forge node python3; do
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command -v "$_tool" &>/dev/null || { echo " [batch-eval] ERROR: $_tool not found in PATH" >&2; exit 2; }
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done
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# =============================================================================
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# Helpers
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# =============================================================================
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log() { echo " [batch-eval] $*" >&2; }
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fail2() { echo " [batch-eval] ERROR: $*" >&2; exit 2; }
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# =============================================================================
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# Step 1 — Ensure transpiler dependencies are installed
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# =============================================================================
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if [ ! -d "$TRANSPILER_DIR/node_modules" ]; then
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log "Installing transpiler dependencies…"
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(cd "$TRANSPILER_DIR" && npm install --silent) || fail2 "npm install in push3-transpiler failed"
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fi
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# =============================================================================
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# Step 2 — Transpile + compile each candidate, extract bytecodes into manifest
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# =============================================================================
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MANIFEST_DIR="$(mktemp -d)"
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IDS_FILE="$MANIFEST_DIR/ids.txt"
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BYTECODES_FILE="$MANIFEST_DIR/bytecodes.txt"
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: > "$IDS_FILE"
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: > "$BYTECODES_FILE"
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COMPILED_COUNT=0
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FAILED_IDS=""
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for PUSH3_FILE in "${PUSH3_FILES[@]}"; do
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PUSH3_FILE="$(cd "$(dirname "$PUSH3_FILE")" && pwd)/$(basename "$PUSH3_FILE")"
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CANDIDATE_ID="$(basename "$PUSH3_FILE" .push3)"
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# Transpile Push3 → OptimizerV3Push3.sol
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TRANSPILE_EC=0
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(
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cd "$TRANSPILER_DIR"
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npx ts-node src/index.ts "$PUSH3_FILE" "$TRANSPILER_OUT"
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) >/dev/null 2>&1 || TRANSPILE_EC=$?
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if [ "$TRANSPILE_EC" -ne 0 ]; then
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log "WARNING: transpile failed for $CANDIDATE_ID (exit $TRANSPILE_EC) — skipping"
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FAILED_IDS="$FAILED_IDS $CANDIDATE_ID"
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continue
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fi
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# Compile (forge's incremental build skips unchanged files quickly)
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FORGE_EC=0
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(cd "$ONCHAIN_DIR" && forge build --silent) >/dev/null 2>&1 || FORGE_EC=$?
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if [ "$FORGE_EC" -ne 0 ]; then
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log "WARNING: forge build failed for $CANDIDATE_ID (exit $FORGE_EC) — skipping"
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FAILED_IDS="$FAILED_IDS $CANDIDATE_ID"
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continue
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fi
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# Extract bytecode from artifact (strip leading 0x if present)
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BYTECODE_HEX="$(python3 - "$ARTIFACT_PATH" <<'PYEOF'
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import json, sys
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with open(sys.argv[1]) as f:
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d = json.load(f)
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bytecode = d["bytecode"]["object"]
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# Ensure 0x prefix
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if not bytecode.startswith("0x"):
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bytecode = "0x" + bytecode
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print(bytecode)
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PYEOF
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)" || { log "WARNING: failed to extract bytecode for $CANDIDATE_ID — skipping"; FAILED_IDS="$FAILED_IDS $CANDIDATE_ID"; continue; }
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if [ -z "$BYTECODE_HEX" ] || [ "$BYTECODE_HEX" = "0x" ]; then
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log "WARNING: empty bytecode for $CANDIDATE_ID — skipping"
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FAILED_IDS="$FAILED_IDS $CANDIDATE_ID"
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continue
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fi
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printf '%s\n' "$CANDIDATE_ID" >> "$IDS_FILE"
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printf '%s\n' "$BYTECODE_HEX" >> "$BYTECODES_FILE"
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COMPILED_COUNT=$((COMPILED_COUNT + 1))
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log "Compiled $CANDIDATE_ID"
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done
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if [ "$COMPILED_COUNT" -eq 0 ]; then
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fail2 "No candidates compiled successfully — aborting"
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fi
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log "Compiled $COMPILED_COUNT / ${#PUSH3_FILES[@]} candidates"
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# =============================================================================
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# Step 3 — Run FitnessEvaluator.t.sol (in-process revm, all candidates at once)
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# =============================================================================
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ATTACKS_DIR="${ATTACKS_DIR:-$DEFAULT_ATTACKS_DIR}"
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log "Running FitnessEvaluator.t.sol (in-process revm, fork: $BASE_RPC_URL)…"
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FORGE_TEST_EC=0
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FORGE_OUTPUT="$(
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cd "$ONCHAIN_DIR"
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BASE_RPC_URL="$BASE_RPC_URL" \
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FITNESS_MANIFEST_DIR="$MANIFEST_DIR" \
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ATTACKS_DIR="$ATTACKS_DIR" \
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forge test \
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--match-contract FitnessEvaluator \
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--match-test testBatchEvaluate \
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-vv \
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--no-match-path "NOT_A_REAL_PATH" \
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2>&1
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)" || FORGE_TEST_EC=$?
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if [ "$FORGE_TEST_EC" -ne 0 ]; then
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# Surface forge output on failure for diagnosis
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printf '%s\n' "$FORGE_OUTPUT" >&2
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fail2 "forge test failed (exit $FORGE_TEST_EC)"
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fi
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# =============================================================================
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# Step 4 — Extract and emit score JSON lines
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#
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# forge test -vv wraps console.log output with leading spaces and a "Logs:" header.
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# We grep for lines containing the score JSON pattern and strip the indentation.
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# =============================================================================
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SCORES_JSONL="$(printf '%s\n' "$FORGE_OUTPUT" | grep -E '"candidate_id"' | sed 's/^[[:space:]]*//' || true)"
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if [ -z "$SCORES_JSONL" ]; then
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printf '%s\n' "$FORGE_OUTPUT" >&2
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fail2 "No score lines found in forge test output"
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fi
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# Emit scores to stdout
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printf '%s\n' "$SCORES_JSONL"
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# Optionally write to output directory
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if [ -n "$OUTPUT_DIR" ]; then
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mkdir -p "$OUTPUT_DIR"
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printf '%s\n' "$SCORES_JSONL" > "$OUTPUT_DIR/scores.jsonl"
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log "Scores written to $OUTPUT_DIR/scores.jsonl"
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fi
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# Warn about any candidates that were skipped (compile failures)
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if [ -n "$FAILED_IDS" ]; then
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log "WARNING: the following candidates were skipped (compile failed): $FAILED_IDS"
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exit 1
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fi
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log "Done — scored $COMPILED_COUNT candidates"
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