- Move snapshot to after setRecenterAccess so agent reverts restore recenterAccess for account 2 on every retry - Read feeDestination() dynamically from LM (removes hardcoded constant) and add || die guards on impersonation calls - Add EXIT/INT/TERM cleanup trap that reverts to the baseline snapshot - Fix agent floor-check snippet: add FEE_DEST/FEE_BAL reads so formula matches compute_eth_per_token (adj=s-f-k, not adj=s-k) - Use `timeout "$CLAUDE_TIMEOUT"` to enforce wall-clock process limit - Correct taxRateIndex range: 0-29 (30-element TAX_RATES array) - Fix outstandingSupply() description: excludes LM-held KRK, not all KRK Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
465 lines
18 KiB
Bash
Executable file
465 lines
18 KiB
Bash
Executable file
#!/usr/bin/env bash
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# red-team.sh — Adversarial floor-attack agent runner.
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#
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# Spawns a Claude sub-agent with tools and a goal: make ethPerToken() decrease.
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# The agent iterates freely — snapshot → strategy → check floor → revert → repeat.
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#
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# Usage: red-team.sh
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#
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# Exit codes:
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# 0 floor held (no confirmed decrease)
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# 1 floor broken (agent found a strategy that decreased ethPerToken)
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# 2 infra error (stack not running, missing dependency, etc.)
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#
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# Environment overrides:
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# CLAUDE_TIMEOUT seconds for the agent run (default: 7200)
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# RPC_URL Anvil RPC endpoint (default: http://localhost:8545)
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set -euo pipefail
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CAST=/home/debian/.foundry/bin/cast
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RPC_URL="${RPC_URL:-http://localhost:8545}"
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CLAUDE_TIMEOUT="${CLAUDE_TIMEOUT:-7200}"
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REPO_ROOT="$(cd "$(dirname "$0")/../.." && pwd)"
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REPORT_DIR="$REPO_ROOT/tmp"
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REPORT="$REPORT_DIR/red-team-report.txt"
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DEPLOYMENTS="$REPO_ROOT/onchain/deployments-local.json"
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# ── Anvil accounts ─────────────────────────────────────────────────────────────
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# Account 8 — adversary (10k ETH, 0 KRK)
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ADV_PK=0xdbda1821b80551c9d65939329250298aa3472ba22feea921c0cf5d620ea67b97
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# Account 2 — recenter caller (granted recenterAccess by bootstrap)
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RECENTER_PK=0x5de4111afa1a4b94908f83103eb1f1706367c2e68ca870fc3fb9a804cdab365a
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# ── Infrastructure constants ───────────────────────────────────────────────────
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WETH=0x4200000000000000000000000000000000000006
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SWAP_ROUTER=0x94cC0AaC535CCDB3C01d6787D6413C739ae12bc4
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V3_FACTORY=0x4752ba5DBc23f44D87826276BF6Fd6b1C372aD24
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NPM=0x27F971cb582BF9E50F397e4d29a5C7A34f11faA2
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POOL_FEE=10000
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# ── Logging helpers ────────────────────────────────────────────────────────────
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log() { echo "[red-team] $*"; }
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die() { echo "[red-team] ERROR: $*" >&2; exit 2; }
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# ── Prerequisites ──────────────────────────────────────────────────────────────
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command -v "$CAST" &>/dev/null || die "cast not found at $CAST"
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command -v claude &>/dev/null || die "claude CLI not found (install: npm i -g @anthropic-ai/claude-code)"
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command -v python3 &>/dev/null || die "python3 not found"
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command -v jq &>/dev/null || die "jq not found"
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# ── 1. Verify stack is running ─────────────────────────────────────────────────
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log "Verifying Anvil is accessible at $RPC_URL ..."
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"$CAST" chain-id --rpc-url "$RPC_URL" >/dev/null 2>&1 \
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|| die "Anvil not accessible at $RPC_URL — run: ./scripts/dev.sh start"
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# ── 2. Read contract addresses ─────────────────────────────────────────────────
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[[ -f "$DEPLOYMENTS" ]] || die "deployments-local.json not found at $DEPLOYMENTS (bootstrap not complete)"
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KRK=$(jq -r '.contracts.Kraiken' "$DEPLOYMENTS")
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STAKE=$(jq -r '.contracts.Stake' "$DEPLOYMENTS")
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LM=$(jq -r '.contracts.LiquidityManager' "$DEPLOYMENTS")
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OPT=$(jq -r '.contracts.OptimizerProxy' "$DEPLOYMENTS")
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for var in KRK STAKE LM OPT; do
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val="${!var}"
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[[ -n "$val" && "$val" != "null" ]] \
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|| die "$var address missing from deployments-local.json — was bootstrap successful?"
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done
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log " KRK: $KRK"
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log " STAKE: $STAKE"
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log " LM: $LM"
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log " OPT: $OPT"
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# Derive Anvil account addresses from their private keys
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ADV_ADDR=$("$CAST" wallet address --private-key "$ADV_PK")
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RECENTER_ADDR=$("$CAST" wallet address --private-key "$RECENTER_PK")
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log " Adversary: $ADV_ADDR (account 8)"
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log " Recenter: $RECENTER_ADDR (account 2)"
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# Get Uniswap V3 Pool address
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POOL=$("$CAST" call "$V3_FACTORY" "getPool(address,address,uint24)(address)" \
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"$WETH" "$KRK" "$POOL_FEE" --rpc-url "$RPC_URL")
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log " Pool: $POOL"
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# ── 3. Grant recenterAccess to account 2 ──────────────────────────────────────
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# Done BEFORE the snapshot so every revert restores account 2's access.
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# LM.recenterAccess is a single address slot — replace it with account 2.
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# Only the feeDestination is authorised to call setRecenterAccess().
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log "Granting recenterAccess to account 2 ($RECENTER_ADDR) ..."
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FEE_DEST=$("$CAST" call "$LM" "feeDestination()(address)" --rpc-url "$RPC_URL") \
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|| die "Failed to read feeDestination() from LM"
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FEE_DEST=$(echo "$FEE_DEST" | tr -d '[:space:]')
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"$CAST" rpc --rpc-url "$RPC_URL" anvil_impersonateAccount "$FEE_DEST" \
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|| die "anvil_impersonateAccount $FEE_DEST failed"
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"$CAST" send --rpc-url "$RPC_URL" --from "$FEE_DEST" --unlocked \
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"$LM" "setRecenterAccess(address)" "$RECENTER_ADDR" >/dev/null 2>&1 \
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|| die "setRecenterAccess($RECENTER_ADDR) failed — check that feeDestination is correct"
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"$CAST" rpc --rpc-url "$RPC_URL" anvil_stopImpersonatingAccount "$FEE_DEST" \
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|| die "anvil_stopImpersonatingAccount $FEE_DEST failed"
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log " recenterAccess granted"
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# ── 4. Take Anvil snapshot (clean baseline, includes recenterAccess grant) ─────
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log "Taking Anvil snapshot..."
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SNAP=$("$CAST" rpc anvil_snapshot --rpc-url "$RPC_URL" | tr -d '"')
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log " Snapshot ID: $SNAP"
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# Revert to the baseline snapshot on exit so subsequent runs start clean.
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cleanup() {
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local rc=$?
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if [[ -n "${SNAP:-}" ]]; then
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"$CAST" rpc anvil_revert "$SNAP" --rpc-url "$RPC_URL" >/dev/null 2>&1 || true
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fi
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exit $rc
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}
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trap cleanup EXIT INT TERM
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# ── Helper: compute ethPerToken (mirrors floor.ts getEthPerToken) ──────────────
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# ethPerToken = (lm_native_eth + lm_weth) * 1e18 / adjusted_outstanding_supply
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# adjusted_supply = outstandingSupply() - KRK_at_feeDestination - KRK_at_stakingPool
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compute_eth_per_token() {
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local lm_eth lm_weth supply fee_bal stake_bal adj_supply
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lm_eth=$("$CAST" balance "$LM" --rpc-url "$RPC_URL" 2>/dev/null | tr -d '[:space:]')
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lm_weth=$("$CAST" call "$WETH" "balanceOf(address)(uint256)" "$LM" \
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--rpc-url "$RPC_URL" 2>/dev/null | tr -d '[:space:]')
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supply=$("$CAST" call "$KRK" "outstandingSupply()(uint256)" \
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--rpc-url "$RPC_URL" 2>/dev/null | tr -d '[:space:]')
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# Fee destination: read from contract (set at deploy time, may differ per fork)
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local fee_dest
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fee_dest=$("$CAST" call "$LM" "feeDestination()(address)" \
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--rpc-url "$RPC_URL" 2>/dev/null | tr -d '[:space:]')
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fee_bal=0
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local zero="0x0000000000000000000000000000000000000000"
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if [[ "${fee_dest,,}" != "${zero,,}" ]]; then
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fee_bal=$("$CAST" call "$KRK" "balanceOf(address)(uint256)" "$fee_dest" \
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--rpc-url "$RPC_URL" 2>/dev/null | tr -d '[:space:]' || echo 0)
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fi
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# Staking pool: use the deployed Stake address (mirrors peripheryContracts()[1])
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stake_bal=$("$CAST" call "$KRK" "balanceOf(address)(uint256)" "$STAKE" \
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--rpc-url "$RPC_URL" 2>/dev/null | tr -d '[:space:]' || echo 0)
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python3 - <<PYEOF
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e = int('${lm_eth:-0}' or 0)
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w = int('${lm_weth:-0}' or 0)
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s = int('${supply:-0}' or 0)
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f = int('${fee_bal:-0}' or 0)
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k = int('${stake_bal:-0}' or 0)
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adj = s - f - k
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print(0 if adj <= 0 else (e + w) * 10**18 // adj)
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PYEOF
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}
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# ── 5. Read floor_before ───────────────────────────────────────────────────────
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log "Reading floor before agent run..."
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FLOOR_BEFORE=$(compute_eth_per_token)
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log " floor_before = $FLOOR_BEFORE wei/token"
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# ── 6. Build agent prompt ──────────────────────────────────────────────────────
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PROMPT=$(cat <<PROMPT_EOF
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# Red-team mission: break the KRAIKEN protocol floor
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## Goal
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Make ethPerToken **decrease** compared to its current value.
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Current ethPerToken: ${FLOOR_BEFORE} wei/token
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ethPerToken measures: (LiquidityManager native ETH + WETH) × 1e18 ÷ adjusted_outstanding_supply
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It is the floor price — the minimum ETH per KRK token the protocol will pay.
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---
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## Contract addresses (local Anvil)
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| Contract | Address |
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|--------------------|---------|
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| Kraiken (KRK) | ${KRK} |
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| Stake | ${STAKE} |
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| LiquidityManager | ${LM} |
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| OptimizerProxy | ${OPT} |
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| Pool (WETH/KRK 1%) | ${POOL} |
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| NonfungiblePosManager (NPM) | ${NPM} |
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| WETH | ${WETH} |
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| SwapRouter02 | ${SWAP_ROUTER} |
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RPC: http://localhost:8545
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CAST binary: /home/debian/.foundry/bin/cast
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---
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## Your accounts
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### Adversary — Anvil account 8 (your main account)
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- Address: ${ADV_ADDR}
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- Private key: ${ADV_PK}
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- Balance: 10 000 ETH, 0 KRK
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### Recenter caller — Anvil account 2
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- Address: ${RECENTER_ADDR}
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- Private key: ${RECENTER_PK}
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- Has recenterAccess on LiquidityManager
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---
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## Protocol mechanics
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### ethPerToken (the floor)
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\`\`\`
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ethPerToken = (LM_native_ETH + LM_WETH) * 1e18 / adjusted_supply
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adjusted_supply = KRK.outstandingSupply() - KRK_at_feeDestination - KRK_at_Stake
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\`\`\`
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To DECREASE the floor you must either:
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- Reduce LM's ETH/WETH holdings, OR
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- Increase the adjusted outstanding supply of KRK
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### Three LM positions
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The LiquidityManager maintains three Uniswap V3 positions:
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1. **ANCHOR** — straddles the current price; provides two-sided liquidity
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2. **DISCOVERY** — above current price; captures upside momentum
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3. **FLOOR** — a floor bid: ETH in, KRK out. Backing the floor price.
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### recenter()
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Calling \`LiquidityManager.recenter()\` removes all three positions, mints or burns KRK
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to rebalance, then re-deploys positions at the current price. It:
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- Can mint NEW KRK (increasing supply → decreasing floor)
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- Can burn KRK (decreasing supply → increasing floor)
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- Moves ETH between positions
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Only recenterAccess account can call it.
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### Staking
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\`Stake.snatch(assets, receiver, taxRateIndex, positionsToSnatch)\`
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- taxRateIndex: 0–29 (index into the 30-element TAX_RATES array — not a raw percentage)
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- KRK staked is held by the Stake contract (excluded from adjusted_supply)
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- KRK in Stake does NOT count against the floor denominator
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### outstandingSupply() vs totalSupply()
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\`KRK.outstandingSupply() = totalSupply() - balanceOf(liquidityManager)\`
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LM-held KRK (in pool positions) is excluded from outstandingSupply.
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The floor formula then additionally subtracts KRK at Stake and feeDestination to get adjusted_supply.
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---
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## Cast command patterns
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### Check the floor (run after each strategy)
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\`\`\`bash
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LM_ETH=\$(/home/debian/.foundry/bin/cast balance ${LM} --rpc-url http://localhost:8545)
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LM_WETH=\$(/home/debian/.foundry/bin/cast call ${WETH} "balanceOf(address)(uint256)" ${LM} --rpc-url http://localhost:8545)
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SUPPLY=\$(/home/debian/.foundry/bin/cast call ${KRK} "outstandingSupply()(uint256)" --rpc-url http://localhost:8545)
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FEE_DEST=\$(/home/debian/.foundry/bin/cast call ${LM} "feeDestination()(address)" --rpc-url http://localhost:8545)
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FEE_BAL=\$(/home/debian/.foundry/bin/cast call ${KRK} "balanceOf(address)(uint256)" \$FEE_DEST --rpc-url http://localhost:8545)
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STAKE_BAL=\$(/home/debian/.foundry/bin/cast call ${KRK} "balanceOf(address)(uint256)" ${STAKE} --rpc-url http://localhost:8545)
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python3 -c "e=\$LM_ETH; w=\$LM_WETH; s=\$SUPPLY; f=\$FEE_BAL; k=\$STAKE_BAL; adj=s-f-k; print('ethPerToken:', (e+w)*10**18//adj if adj>0 else 0, 'wei/token')"
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\`\`\`
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### Wrap ETH to WETH
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\`\`\`bash
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/home/debian/.foundry/bin/cast send ${WETH} "deposit()" --value 100ether \
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--private-key ${ADV_PK} --rpc-url http://localhost:8545
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\`\`\`
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### Approve token spend
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\`\`\`bash
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/home/debian/.foundry/bin/cast send <TOKEN> "approve(address,uint256)" <SPENDER> \
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115792089237316195423570985008687907853269984665640564039457584007913129639935 \
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--private-key ${ADV_PK} --rpc-url http://localhost:8545
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\`\`\`
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### Buy KRK (WETH → KRK via SwapRouter)
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\`\`\`bash
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# Must wrap ETH and approve WETH first
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/home/debian/.foundry/bin/cast send ${SWAP_ROUTER} \
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"exactInputSingle((address,address,uint24,address,uint256,uint256,uint160))" \
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"(${WETH},${KRK},${POOL_FEE},${ADV_ADDR},<WETH_AMOUNT>,0,0)" \
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--private-key ${ADV_PK} --rpc-url http://localhost:8545
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\`\`\`
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### Sell KRK (KRK → WETH via SwapRouter)
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\`\`\`bash
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# Must approve KRK first
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/home/debian/.foundry/bin/cast send ${SWAP_ROUTER} \
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"exactInputSingle((address,address,uint24,address,uint256,uint256,uint160))" \
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"(${KRK},${WETH},${POOL_FEE},${ADV_ADDR},<KRK_AMOUNT>,0,0)" \
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--private-key ${ADV_PK} --rpc-url http://localhost:8545
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\`\`\`
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### Stake KRK (snatch with no snatching)
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\`\`\`bash
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# Approve KRK to Stake first
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/home/debian/.foundry/bin/cast send ${STAKE} \
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"snatch(uint256,address,uint32,uint256[])" \
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<KRK_AMOUNT> ${ADV_ADDR} 0 "[]" \
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--private-key ${ADV_PK} --rpc-url http://localhost:8545
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\`\`\`
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### Unstake KRK
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\`\`\`bash
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/home/debian/.foundry/bin/cast send ${STAKE} \
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"exitPosition(uint256)" <POSITION_ID> \
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--private-key ${ADV_PK} --rpc-url http://localhost:8545
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\`\`\`
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### Trigger recenter (account 2 only)
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\`\`\`bash
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/home/debian/.foundry/bin/cast send ${LM} "recenter()" \
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--private-key ${RECENTER_PK} --rpc-url http://localhost:8545
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\`\`\`
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### Read KRK balance
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\`\`\`bash
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/home/debian/.foundry/bin/cast call ${KRK} "balanceOf(address)(uint256)" ${ADV_ADDR} \
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--rpc-url http://localhost:8545
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\`\`\`
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### Read ETH balance
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\`\`\`bash
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/home/debian/.foundry/bin/cast balance ${ADV_ADDR} --rpc-url http://localhost:8545
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\`\`\`
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### Add LP position via NPM (mint)
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\`\`\`bash
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# Must approve both tokens to NPM first. tickLower/tickUpper must be multiples of 200 (pool tickSpacing).
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/home/debian/.foundry/bin/cast send ${NPM} \
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"mint((address,address,uint24,int24,int24,uint256,uint256,uint256,uint256,address,uint256))" \
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"(${WETH},${KRK},${POOL_FEE},<TICK_LOWER>,<TICK_UPPER>,<AMOUNT0>,<AMOUNT1>,0,0,${ADV_ADDR},<DEADLINE>)" \
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--private-key ${ADV_PK} --rpc-url http://localhost:8545
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\`\`\`
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### Remove LP position via NPM (decreaseLiquidity then collect)
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\`\`\`bash
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/home/debian/.foundry/bin/cast send ${NPM} \
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"decreaseLiquidity((uint256,uint128,uint256,uint256,uint256))" \
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"(<TOKEN_ID>,<LIQUIDITY>,0,0,<DEADLINE>)" \
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--private-key ${ADV_PK} --rpc-url http://localhost:8545
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/home/debian/.foundry/bin/cast send ${NPM} \
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"collect((uint256,address,uint128,uint128))" \
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"(<TOKEN_ID>,${ADV_ADDR},340282366920938463463374607431768211455,340282366920938463463374607431768211455)" \
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--private-key ${ADV_PK} --rpc-url http://localhost:8545
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\`\`\`
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### Mine a block
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\`\`\`bash
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/home/debian/.foundry/bin/cast rpc evm_mine --rpc-url http://localhost:8545
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\`\`\`
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### Snapshot and revert (for resetting between strategies)
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\`\`\`bash
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# Take snapshot (returns ID — save it):
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SNAP=\$(/home/debian/.foundry/bin/cast rpc anvil_snapshot --rpc-url http://localhost:8545 | tr -d '"')
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# Revert to snapshot (one-shot — take a new snapshot immediately after):
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/home/debian/.foundry/bin/cast rpc anvil_revert \$SNAP --rpc-url http://localhost:8545
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\`\`\`
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---
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## Rules
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1. You have 10 000 ETH. Start by wrapping some if you need WETH for swaps.
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2. Your goal is to make ethPerToken DECREASE vs the starting value (${FLOOR_BEFORE} wei/token).
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3. Try at least 3 distinct strategies. After each attempt:
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a. Run the floor-check command above to measure ethPerToken.
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b. If the floor DECREASED — report this as a SUCCESS and describe the exact steps.
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c. If the floor held or INCREASED — revert to the snapshot and try a new strategy.
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Remember: \`anvil_revert\` is one-shot. Take a new snapshot immediately after reverting.
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4. You may chain multiple actions in one strategy (e.g. large buy → recenter → large sell).
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5. Be methodical. Report every strategy tried even if it failed.
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---
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## Final report format
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After trying all strategies, output a clearly structured report:
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\`\`\`
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=== RED-TEAM REPORT ===
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floor_before: <value> wei/token
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STRATEGY 1: <name>
|
||
Steps: <what you did>
|
||
floor_after: <value>
|
||
Result: INCREASED / HELD / DECREASED
|
||
|
||
STRATEGY 2: ...
|
||
...
|
||
|
||
=== CONCLUSION ===
|
||
Floor broken: YES / NO
|
||
Winning strategy: <describe if YES, else "None">
|
||
floor_before: ${FLOOR_BEFORE} wei/token
|
||
floor_after: <final value>
|
||
\`\`\`
|
||
PROMPT_EOF
|
||
)
|
||
|
||
# ── 7. Create output directory and run the agent ───────────────────────────────
|
||
mkdir -p "$REPORT_DIR"
|
||
|
||
log "Spawning Claude red-team agent (timeout: ${CLAUDE_TIMEOUT}s)..."
|
||
log " Report will be written to: $REPORT"
|
||
|
||
set +e
|
||
timeout "$CLAUDE_TIMEOUT" claude -p --dangerously-skip-permissions \
|
||
"$PROMPT" >"$REPORT" 2>&1
|
||
AGENT_EXIT=$?
|
||
set -e
|
||
|
||
if [[ $AGENT_EXIT -ne 0 ]]; then
|
||
log "WARNING: claude exited with code $AGENT_EXIT — see $REPORT for details"
|
||
fi
|
||
|
||
# ── 8. Read floor_after ────────────────────────────────────────────────────────
|
||
log "Reading floor after agent run..."
|
||
FLOOR_AFTER=$(compute_eth_per_token)
|
||
log " floor_after = $FLOOR_AFTER wei/token"
|
||
|
||
# ── 9. Summarise results ───────────────────────────────────────────────────────
|
||
log ""
|
||
log "=== RED-TEAM SUMMARY ==="
|
||
log ""
|
||
log " floor_before : $FLOOR_BEFORE wei/token"
|
||
log " floor_after : $FLOOR_AFTER wei/token"
|
||
log ""
|
||
|
||
BROKE=false
|
||
if python3 -c "import sys; sys.exit(0 if int('$FLOOR_AFTER') < int('$FLOOR_BEFORE') else 1)"; then
|
||
BROKE=true
|
||
fi
|
||
|
||
if [[ "$BROKE" == "true" ]]; then
|
||
DELTA=$(python3 -c "print($FLOOR_BEFORE - $FLOOR_AFTER)")
|
||
log " RESULT: FLOOR BROKEN ❌"
|
||
log " Decrease: $DELTA wei/token"
|
||
log ""
|
||
log " See $REPORT for the winning strategy."
|
||
log ""
|
||
# Append a machine-readable summary to the report
|
||
cat >>"$REPORT" <<SUMMARY_EOF
|
||
|
||
=== RUNNER SUMMARY ===
|
||
floor_before : $FLOOR_BEFORE
|
||
floor_after : $FLOOR_AFTER
|
||
delta : -$DELTA
|
||
verdict : FLOOR_BROKEN
|
||
SUMMARY_EOF
|
||
exit 1
|
||
else
|
||
log " RESULT: FLOOR HELD ✅"
|
||
log ""
|
||
log " See $REPORT for strategies attempted."
|
||
log ""
|
||
cat >>"$REPORT" <<SUMMARY_EOF
|
||
|
||
=== RUNNER SUMMARY ===
|
||
floor_before : $FLOOR_BEFORE
|
||
floor_after : $FLOOR_AFTER
|
||
delta : 0 (or increase)
|
||
verdict : FLOOR_HELD
|
||
SUMMARY_EOF
|
||
exit 0
|
||
fi
|