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10 Commits
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9
.gitignore
vendored
9
.gitignore
vendored
@@ -1,15 +1,14 @@
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/cache/
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/out/
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/docs/
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/log/
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/.env
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/.env-*
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/.idea/
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# Ignores development broadcast logs
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/broadcast
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# Sensitive files
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*secret*
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bin/sepolia-deploy
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/liqp-deployments.json
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# This file is only used by DeployMock
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/liqp-deployments.json
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138
bin/sepolia-deploy
Executable file
138
bin/sepolia-deploy
Executable file
@@ -0,0 +1,138 @@
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#!/bin/bash
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CHAINID=11155111
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DEPLOY_SCRIPT=DeploySepolia
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if [ -z "$SEPOLIA_RPC_URL" ]; then
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echo "Usage: SEPOLIA_RPC_URL environment variable must be set"
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exit 1
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fi
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RPC=${SEPOLIA_RPC_URL}
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if [ -z "$PRIVATE_KEY" ]; then
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echo "Usage: PRIVATE_KEY environment variable must be set"
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exit 1
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fi
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if [ -z "$ETHERSCAN_API_KEY" ]; then
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echo "Usage: ETHERSCAN_API_KEY environment variable must be set"
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exit 1
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fi
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if [ "$1" == "broadcast" ]; then
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# BROADCAST=(--broadcast --verify --etherscan-api-key "$ETHERSCAN_API_KEY")
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# use --slow to avoid triggering rate limits
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BROADCAST=(--slow --broadcast --verify --etherscan-api-key "$ETHERSCAN_API_KEY")
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else
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BROADCAST=()
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fi
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if [ "$1" != "record" ]; then
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forge clean
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forge script --fork-url "$RPC" --private-key "$PRIVATE_KEY" "${BROADCAST[@]}" script/DeploySepolia.sol || exit 1
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fi
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# Update the liqp-deployments.json file if the contracts were broadcast or record was requested
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if [ "$1" == "broadcast" ] || [ "$1" == "record" ]; then
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METADATA_FILE=deployment/liqp-deployments.json
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else
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METADATA_FILE=./liqp-deployments.json
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fi
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address() {
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if [ -z "$1" ]; then
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echo ""
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else
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cast --to-checksum-address "$1"
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fi
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}
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contract() {
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address "$(jq -r ".transactions[] | select(.contractName == \"$1\" and .transactionType == \"CREATE\") | .contractAddress" broadcast/${DEPLOY_SCRIPT}.sol/${CHAINID}/run-latest.json)"
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}
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token() {
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address "$(jq -r ".transactions[] | select(.contractName == \"MockERC20\" and .transactionType == \"CREATE\" and (.arguments | contains([\"$1\"]))) | .contractAddress" broadcast/${DEPLOY_SCRIPT}.sol/${CHAINID}/run-latest.json)"
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}
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PARTY_PLANNER=$(contract PartyPlanner)
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PARTY_POOL_VIEWER=$(contract PartyPoolViewer)
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PARTY_POOL_MINT_IMPL=$(contract PartyPoolMintImpl)
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PARTY_POOL_SWAP_IMPL=$(contract PartyPoolSwapImpl)
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PARTY_POOL_DEPLOYER=$(contract PartyPoolDeployer)
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PARTY_POOL_BP_DEPLOYER=$(contract PartyPoolBalancedPairDeployer)
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USXD=$(token USXD)
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FUSD=$(token FUSD)
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DIVE=$(token DIVE)
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BUTC=$(token BUTC)
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WTETH=$(token WTETH)
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OUT=deployment/$CHAINID/v1
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mkdir -p $OUT
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cp -r out $OUT/
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# Build and insert the JSON object directly in jq
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jq -n \
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--arg chainId "$CHAINID" \
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--arg partyPlanner "$PARTY_PLANNER" \
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--arg partyPoolViewer "$PARTY_POOL_VIEWER" \
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--arg partyPoolMintImpl "$PARTY_POOL_MINT_IMPL" \
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--arg partyPoolSwapImpl "$PARTY_POOL_SWAP_IMPL" \
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--arg partyPoolDeployer "$PARTY_POOL_DEPLOYER" \
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--arg partyPoolBPDeployer "$PARTY_POOL_BP_DEPLOYER" \
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--arg usxd "$USXD" \
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--arg fusd "$FUSD" \
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--arg dive "$DIVE" \
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--arg butc "$BUTC" \
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--arg wteth "$WTETH" \
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'
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{
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v1: {
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PartyPlanner: $partyPlanner,
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PartyPoolViewer: $partyPoolViewer,
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PartyPoolMintImpl: $partyPoolMintImpl,
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PartyPoolSwapImpl: $partyPoolSwapImpl,
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PartyPoolDeployer: $partyPoolDeployer,
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PartyPoolBalancedPairDeployer: $partyPoolBPDeployer,
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USXD: $usxd,
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FUSD: $fusd,
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DIVE: $dive,
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BUTC: $butc,
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WTETH: $wteth
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}
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} as $entry |
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(try (input | . + {($chainId): $entry}) catch {($chainId): $entry})
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' "$METADATA_FILE" 2>/dev/null > "${METADATA_FILE}.tmp" && mv "${METADATA_FILE}.tmp" "$METADATA_FILE" || \
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jq -n \
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--arg chainId "$CHAINID" \
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--arg partyPlanner "$PARTY_PLANNER" \
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--arg partyPoolViewer "$PARTY_POOL_VIEWER" \
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--arg partyPoolMintImpl "$PARTY_POOL_MINT_IMPL" \
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--arg partyPoolSwapImpl "$PARTY_POOL_SWAP_IMPL" \
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--arg partyPoolDeployer "$PARTY_POOL_DEPLOYER" \
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--arg partyPoolBPDeployer "$PARTY_POOL_BP_DEPLOYER" \
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--arg usxd "$USXD" \
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--arg fusd "$FUSD" \
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--arg dive "$DIVE" \
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--arg butc "$BUTC" \
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--arg wteth "$WTETH" \
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'{($chainId): {
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v1: {
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PartyPlanner: $partyPlanner,
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PartyPoolViewer: $partyPoolViewer,
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PartyPoolMintImpl: $partyPoolMintImpl,
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PartyPoolSwapImpl: $partyPoolSwapImpl,
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PartyPoolDeployer: $partyPoolDeployer,
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PartyPoolBalancedPairDeployer: $partyPoolBPDeployer,
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USXD: $usxd,
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FUSD: $fusd,
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DIVE: $dive,
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BUTC: $butc,
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WTETH: $wteth
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}
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}}' > "$METADATA_FILE"
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echo "Wrote $METADATA_FILE"
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2
bin/signature-upload
Executable file
2
bin/signature-upload
Executable file
@@ -0,0 +1,2 @@
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#!/bin/bash
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forge selectors upload --all
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@@ -1 +1 @@
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{"abi":[{"type":"error","name":"AddressEmptyCode","inputs":[{"name":"target","type":"address","internalType":"address"}]}],"bytecode":{"object":"0x6080806040523460175760399081601c823930815050f35b5f80fdfe5f80fdfea2646970667358221220eb0570070fec78251db3fa24b17454c9bec7df5e60c2499d03d66c5c28208ff764736f6c634300081e0033","sourceMap":"282:6520:27:-:0;;;;;;;;;;;;;;;;;;;;;","linkReferences":{}},"deployedBytecode":{"object":"0x5f80fdfea2646970667358221220eb0570070fec78251db3fa24b17454c9bec7df5e60c2499d03d66c5c28208ff764736f6c634300081e0033","sourceMap":"282:6520:27:-:0;;","linkReferences":{}},"methodIdentifiers":{},"rawMetadata":"{\"compiler\":{\"version\":\"0.8.30+commit.73712a01\"},\"language\":\"Solidity\",\"output\":{\"abi\":[{\"inputs\":[{\"internalType\":\"address\",\"name\":\"target\",\"type\":\"address\"}],\"name\":\"AddressEmptyCode\",\"type\":\"error\"}],\"devdoc\":{\"details\":\"Collection of functions related to the address type\",\"errors\":{\"AddressEmptyCode(address)\":[{\"details\":\"There's no code at `target` (it is not a contract).\"}]},\"kind\":\"dev\",\"methods\":{},\"version\":1},\"userdoc\":{\"kind\":\"user\",\"methods\":{},\"version\":1}},\"settings\":{\"compilationTarget\":{\"lib/openzeppelin-contracts/contracts/utils/Address.sol\":\"Address\"},\"evmVersion\":\"prague\",\"libraries\":{},\"metadata\":{\"bytecodeHash\":\"ipfs\"},\"optimizer\":{\"enabled\":true,\"runs\":100000000},\"remappings\":[\":@abdk/=lib/abdk-libraries-solidity/\",\":@openzeppelin/=lib/openzeppelin-contracts/\",\":abdk-libraries-solidity/=lib/abdk-libraries-solidity/\",\":erc4626-tests/=lib/openzeppelin-contracts/lib/erc4626-tests/\",\":forge-std/=lib/forge-std/src/\",\":halmos-cheatcodes/=lib/openzeppelin-contracts/lib/halmos-cheatcodes/src/\",\":openzeppelin-contracts/=lib/openzeppelin-contracts/\"],\"viaIR\":true},\"sources\":{\"lib/openzeppelin-contracts/contracts/utils/Address.sol\":{\"keccak256\":\"0xd274645d15bb7e4fcb9c833e401b2c5837404f90057f11a49118f25e0af7c76f\",\"license\":\"MIT\",\"urls\":[\"bzz-raw://d38e0b997bb7aebae26d190b03d0991feb0d204c45f945e60014e1ca9175de69\",\"dweb:/ipfs/QmWzsUHHAZcjMyF8uMDEtNpMTkYZdQrfvdKPobXvwVHKo6\"]},\"lib/openzeppelin-contracts/contracts/utils/Errors.sol\":{\"keccak256\":\"0x6afa713bfd42cf0f7656efa91201007ac465e42049d7de1d50753a373648c123\",\"license\":\"MIT\",\"urls\":[\"bzz-raw://ba1d02f4847670a1b83dec9f7d37f0b0418d6043447b69f3a29a5f9efc547fcf\",\"dweb:/ipfs/QmQ7iH2keLNUKgq2xSWcRmuBE5eZ3F5whYAkAGzCNNoEWB\"]},\"lib/openzeppelin-contracts/contracts/utils/LowLevelCall.sol\":{\"keccak256\":\"0x50e81a8b089e3f382b6c915aa0166773de64ea4756e8f9479d9943a5f956ddf5\",\"license\":\"MIT\",\"urls\":[\"bzz-raw://bfeb96a150537222e2191c03887127499a4f21dfb5f9a7211da4d81749b52848\",\"dweb:/ipfs/QmYR75ECbsBuxSiXmGvGfNKJRLoK5MdLUZL1bd8SixzxL4\"]}},\"version\":1}","metadata":{"compiler":{"version":"0.8.30+commit.73712a01"},"language":"Solidity","output":{"abi":[{"inputs":[{"internalType":"address","name":"target","type":"address"}],"type":"error","name":"AddressEmptyCode"}],"devdoc":{"kind":"dev","methods":{},"version":1},"userdoc":{"kind":"user","methods":{},"version":1}},"settings":{"remappings":["@abdk/=lib/abdk-libraries-solidity/","@openzeppelin/=lib/openzeppelin-contracts/","abdk-libraries-solidity/=lib/abdk-libraries-solidity/","erc4626-tests/=lib/openzeppelin-contracts/lib/erc4626-tests/","forge-std/=lib/forge-std/src/","halmos-cheatcodes/=lib/openzeppelin-contracts/lib/halmos-cheatcodes/src/","openzeppelin-contracts/=lib/openzeppelin-contracts/"],"optimizer":{"enabled":true,"runs":100000000},"metadata":{"bytecodeHash":"ipfs"},"compilationTarget":{"lib/openzeppelin-contracts/contracts/utils/Address.sol":"Address"},"evmVersion":"prague","libraries":{},"viaIR":true},"sources":{"lib/openzeppelin-contracts/contracts/utils/Address.sol":{"keccak256":"0xd274645d15bb7e4fcb9c833e401b2c5837404f90057f11a49118f25e0af7c76f","urls":["bzz-raw://d38e0b997bb7aebae26d190b03d0991feb0d204c45f945e60014e1ca9175de69","dweb:/ipfs/QmWzsUHHAZcjMyF8uMDEtNpMTkYZdQrfvdKPobXvwVHKo6"],"license":"MIT"},"lib/openzeppelin-contracts/contracts/utils/Errors.sol":{"keccak256":"0x6afa713bfd42cf0f7656efa91201007ac465e42049d7de1d50753a373648c123","urls":["bzz-raw://ba1d02f4847670a1b83dec9f7d37f0b0418d6043447b69f3a29a5f9efc547fcf","dweb:/ipfs/QmQ7iH2keLNUKgq2xSWcRmuBE5eZ3F5whYAkAGzCNNoEWB"],"license":"MIT"},"lib/openzeppelin-contracts/contracts/utils/LowLevelCall.sol":{"keccak256":"0x50e81a8b089e3f382b6c915aa0166773de64ea4756e8f9479d9943a5f956ddf5","urls":["bzz-raw://bfeb96a150537222e2191c03887127499a4f21dfb5f9a7211da4d81749b52848","dweb:/ipfs/QmYR75ECbsBuxSiXmGvGfNKJRLoK5MdLUZL1bd8SixzxL4"],"license":"MIT"}},"version":1},"id":27}
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{"abi":[{"type":"error","name":"AddressEmptyCode","inputs":[{"name":"target","type":"address","internalType":"address"}]}],"bytecode":{"object":"0x6080806040523460175760399081601c823930815050f35b5f80fdfe5f80fdfea2646970667358221220eb0570070fec78251db3fa24b17454c9bec7df5e60c2499d03d66c5c28208ff764736f6c634300081e0033","sourceMap":"282:6520:33:-:0;;;;;;;;;;;;;;;;;;;;;","linkReferences":{}},"deployedBytecode":{"object":"0x5f80fdfea2646970667358221220eb0570070fec78251db3fa24b17454c9bec7df5e60c2499d03d66c5c28208ff764736f6c634300081e0033","sourceMap":"282:6520:33:-:0;;","linkReferences":{}},"methodIdentifiers":{},"rawMetadata":"{\"compiler\":{\"version\":\"0.8.30+commit.73712a01\"},\"language\":\"Solidity\",\"output\":{\"abi\":[{\"inputs\":[{\"internalType\":\"address\",\"name\":\"target\",\"type\":\"address\"}],\"name\":\"AddressEmptyCode\",\"type\":\"error\"}],\"devdoc\":{\"details\":\"Collection of functions related to the address type\",\"errors\":{\"AddressEmptyCode(address)\":[{\"details\":\"There's no code at `target` (it is not a contract).\"}]},\"kind\":\"dev\",\"methods\":{},\"version\":1},\"userdoc\":{\"kind\":\"user\",\"methods\":{},\"version\":1}},\"settings\":{\"compilationTarget\":{\"lib/openzeppelin-contracts/contracts/utils/Address.sol\":\"Address\"},\"evmVersion\":\"prague\",\"libraries\":{},\"metadata\":{\"bytecodeHash\":\"ipfs\"},\"optimizer\":{\"enabled\":true,\"runs\":100000000},\"remappings\":[\":@abdk/=lib/abdk-libraries-solidity/\",\":@openzeppelin/=lib/openzeppelin-contracts/\",\":abdk-libraries-solidity/=lib/abdk-libraries-solidity/\",\":erc4626-tests/=lib/openzeppelin-contracts/lib/erc4626-tests/\",\":forge-std/=lib/forge-std/src/\",\":halmos-cheatcodes/=lib/openzeppelin-contracts/lib/halmos-cheatcodes/src/\",\":openzeppelin-contracts/=lib/openzeppelin-contracts/\"],\"viaIR\":true},\"sources\":{\"lib/openzeppelin-contracts/contracts/utils/Address.sol\":{\"keccak256\":\"0xd274645d15bb7e4fcb9c833e401b2c5837404f90057f11a49118f25e0af7c76f\",\"license\":\"MIT\",\"urls\":[\"bzz-raw://d38e0b997bb7aebae26d190b03d0991feb0d204c45f945e60014e1ca9175de69\",\"dweb:/ipfs/QmWzsUHHAZcjMyF8uMDEtNpMTkYZdQrfvdKPobXvwVHKo6\"]},\"lib/openzeppelin-contracts/contracts/utils/Errors.sol\":{\"keccak256\":\"0x6afa713bfd42cf0f7656efa91201007ac465e42049d7de1d50753a373648c123\",\"license\":\"MIT\",\"urls\":[\"bzz-raw://ba1d02f4847670a1b83dec9f7d37f0b0418d6043447b69f3a29a5f9efc547fcf\",\"dweb:/ipfs/QmQ7iH2keLNUKgq2xSWcRmuBE5eZ3F5whYAkAGzCNNoEWB\"]},\"lib/openzeppelin-contracts/contracts/utils/LowLevelCall.sol\":{\"keccak256\":\"0x50e81a8b089e3f382b6c915aa0166773de64ea4756e8f9479d9943a5f956ddf5\",\"license\":\"MIT\",\"urls\":[\"bzz-raw://bfeb96a150537222e2191c03887127499a4f21dfb5f9a7211da4d81749b52848\",\"dweb:/ipfs/QmYR75ECbsBuxSiXmGvGfNKJRLoK5MdLUZL1bd8SixzxL4\"]}},\"version\":1}","metadata":{"compiler":{"version":"0.8.30+commit.73712a01"},"language":"Solidity","output":{"abi":[{"inputs":[{"internalType":"address","name":"target","type":"address"}],"type":"error","name":"AddressEmptyCode"}],"devdoc":{"kind":"dev","methods":{},"version":1},"userdoc":{"kind":"user","methods":{},"version":1}},"settings":{"remappings":["@abdk/=lib/abdk-libraries-solidity/","@openzeppelin/=lib/openzeppelin-contracts/","abdk-libraries-solidity/=lib/abdk-libraries-solidity/","erc4626-tests/=lib/openzeppelin-contracts/lib/erc4626-tests/","forge-std/=lib/forge-std/src/","halmos-cheatcodes/=lib/openzeppelin-contracts/lib/halmos-cheatcodes/src/","openzeppelin-contracts/=lib/openzeppelin-contracts/"],"optimizer":{"enabled":true,"runs":100000000},"metadata":{"bytecodeHash":"ipfs"},"compilationTarget":{"lib/openzeppelin-contracts/contracts/utils/Address.sol":"Address"},"evmVersion":"prague","libraries":{},"viaIR":true},"sources":{"lib/openzeppelin-contracts/contracts/utils/Address.sol":{"keccak256":"0xd274645d15bb7e4fcb9c833e401b2c5837404f90057f11a49118f25e0af7c76f","urls":["bzz-raw://d38e0b997bb7aebae26d190b03d0991feb0d204c45f945e60014e1ca9175de69","dweb:/ipfs/QmWzsUHHAZcjMyF8uMDEtNpMTkYZdQrfvdKPobXvwVHKo6"],"license":"MIT"},"lib/openzeppelin-contracts/contracts/utils/Errors.sol":{"keccak256":"0x6afa713bfd42cf0f7656efa91201007ac465e42049d7de1d50753a373648c123","urls":["bzz-raw://ba1d02f4847670a1b83dec9f7d37f0b0418d6043447b69f3a29a5f9efc547fcf","dweb:/ipfs/QmQ7iH2keLNUKgq2xSWcRmuBE5eZ3F5whYAkAGzCNNoEWB"],"license":"MIT"},"lib/openzeppelin-contracts/contracts/utils/LowLevelCall.sol":{"keccak256":"0x50e81a8b089e3f382b6c915aa0166773de64ea4756e8f9479d9943a5f956ddf5","urls":["bzz-raw://bfeb96a150537222e2191c03887127499a4f21dfb5f9a7211da4d81749b52848","dweb:/ipfs/QmYR75ECbsBuxSiXmGvGfNKJRLoK5MdLUZL1bd8SixzxL4"],"license":"MIT"}},"version":1},"id":33}
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@@ -1 +1 @@
|
||||
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||||
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||||
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deployment/11155111/v1/out/GasTest.sol/GasTest.json
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deployment/11155111/v1/out/GasTest.sol/TestERC20.json
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|
||||
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|
||||
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|
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1
deployment/11155111/v1/out/IOwnable.sol/IOwnable.json
Normal file
1
deployment/11155111/v1/out/IOwnable.sol/IOwnable.json
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|
||||
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|
||||
{"abi":[{"type":"function","name":"partyFlashCallback","inputs":[{"name":"loanAmounts","type":"uint256[]","internalType":"uint256[]"},{"name":"repaymentAmounts","type":"uint256[]","internalType":"uint256[]"},{"name":"data","type":"bytes","internalType":"bytes"}],"outputs":[],"stateMutability":"nonpayable"}],"bytecode":{"object":"0x","sourceMap":"","linkReferences":{}},"deployedBytecode":{"object":"0x","sourceMap":"","linkReferences":{}},"methodIdentifiers":{"partyFlashCallback(uint256[],uint256[],bytes)":"f6c10706"},"rawMetadata":"{\"compiler\":{\"version\":\"0.8.30+commit.73712a01\"},\"language\":\"Solidity\",\"output\":{\"abi\":[{\"inputs\":[{\"internalType\":\"uint256[]\",\"name\":\"loanAmounts\",\"type\":\"uint256[]\"},{\"internalType\":\"uint256[]\",\"name\":\"repaymentAmounts\",\"type\":\"uint256[]\"},{\"internalType\":\"bytes\",\"name\":\"data\",\"type\":\"bytes\"}],\"name\":\"partyFlashCallback\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"}],\"devdoc\":{\"kind\":\"dev\",\"methods\":{},\"version\":1},\"userdoc\":{\"kind\":\"user\",\"methods\":{},\"version\":1}},\"settings\":{\"compilationTarget\":{\"src/IPartyFlashCallback.sol\":\"IPartyFlashCallback\"},\"evmVersion\":\"prague\",\"libraries\":{},\"metadata\":{\"bytecodeHash\":\"ipfs\"},\"optimizer\":{\"enabled\":true,\"runs\":100000000},\"remappings\":[\":@abdk/=lib/abdk-libraries-solidity/\",\":@openzeppelin/=lib/openzeppelin-contracts/\",\":abdk-libraries-solidity/=lib/abdk-libraries-solidity/\",\":erc4626-tests/=lib/openzeppelin-contracts/lib/erc4626-tests/\",\":forge-std/=lib/forge-std/src/\",\":halmos-cheatcodes/=lib/openzeppelin-contracts/lib/halmos-cheatcodes/src/\",\":openzeppelin-contracts/=lib/openzeppelin-contracts/\"],\"viaIR\":true},\"sources\":{\"src/IPartyFlashCallback.sol\":{\"keccak256\":\"0xff1d473d27c4dc75441a5f0db2d761916cce4a702f660e998467791efd1d9b2e\",\"license\":\"UNLICENSED\",\"urls\":[\"bzz-raw://3220d69c62ed8c8106762c92857f24011284e8ddcfa5db4210e506b112fa1870\",\"dweb:/ipfs/QmYoZiGsVwoJvyPMcsSste4tq93wVBgDqCZkwPY7dvyLBJ\"]}},\"version\":1}","metadata":{"compiler":{"version":"0.8.30+commit.73712a01"},"language":"Solidity","output":{"abi":[{"inputs":[{"internalType":"uint256[]","name":"loanAmounts","type":"uint256[]"},{"internalType":"uint256[]","name":"repaymentAmounts","type":"uint256[]"},{"internalType":"bytes","name":"data","type":"bytes"}],"stateMutability":"nonpayable","type":"function","name":"partyFlashCallback"}],"devdoc":{"kind":"dev","methods":{},"version":1},"userdoc":{"kind":"user","methods":{},"version":1}},"settings":{"remappings":["@abdk/=lib/abdk-libraries-solidity/","@openzeppelin/=lib/openzeppelin-contracts/","abdk-libraries-solidity/=lib/abdk-libraries-solidity/","erc4626-tests/=lib/openzeppelin-contracts/lib/erc4626-tests/","forge-std/=lib/forge-std/src/","halmos-cheatcodes/=lib/openzeppelin-contracts/lib/halmos-cheatcodes/src/","openzeppelin-contracts/=lib/openzeppelin-contracts/"],"optimizer":{"enabled":true,"runs":100000000},"metadata":{"bytecodeHash":"ipfs"},"compilationTarget":{"src/IPartyFlashCallback.sol":"IPartyFlashCallback"},"evmVersion":"prague","libraries":{},"viaIR":true},"sources":{"src/IPartyFlashCallback.sol":{"keccak256":"0xff1d473d27c4dc75441a5f0db2d761916cce4a702f660e998467791efd1d9b2e","urls":["bzz-raw://3220d69c62ed8c8106762c92857f24011284e8ddcfa5db4210e506b112fa1870","dweb:/ipfs/QmYoZiGsVwoJvyPMcsSste4tq93wVBgDqCZkwPY7dvyLBJ"],"license":"UNLICENSED"}},"version":1},"id":45}
|
||||
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@@ -1 +1 @@
|
||||
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|
||||
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|
||||
@@ -1 +1 @@
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||||
@@ -1 +1 @@
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||||
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@@ -1 +1 @@
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||||
@@ -1 +1 @@
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deployment/11155111/v1/out/StdError.sol/stdError.json
Normal file
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deployment/11155111/v1/out/StdError.sol/stdError.json
Normal file
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||||
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||||
1
deployment/11155111/v1/out/StdToml.sol/stdToml.json
Normal file
1
deployment/11155111/v1/out/StdToml.sol/stdToml.json
Normal file
@@ -0,0 +1 @@
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||||
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@@ -1 +1 @@
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||||
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||||
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||||
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||||
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||||
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|
||||
{"abi":[],"bytecode":{"object":"0x6080806040523460175760399081601c823930815050f35b5f80fdfe5f80fdfea2646970667358221220709c8134992b5fef4e2bf94b521207862a1126f22dcc0c41899199d76b8ca7c164736f6c634300081e0033","sourceMap":"163:427371:15:-:0;;;;;;;;;;;;;;;;;;;;;","linkReferences":{}},"deployedBytecode":{"object":"0x5f80fdfea2646970667358221220709c8134992b5fef4e2bf94b521207862a1126f22dcc0c41899199d76b8ca7c164736f6c634300081e0033","sourceMap":"163:427371:15:-:0;;","linkReferences":{}},"methodIdentifiers":{},"rawMetadata":"{\"compiler\":{\"version\":\"0.8.30+commit.73712a01\"},\"language\":\"Solidity\",\"output\":{\"abi\":[],\"devdoc\":{\"author\":\"philogy <https://github.com/philogy>\",\"details\":\"Code generated automatically by script.\",\"kind\":\"dev\",\"methods\":{},\"version\":1},\"userdoc\":{\"kind\":\"user\",\"methods\":{},\"version\":1}},\"settings\":{\"compilationTarget\":{\"lib/forge-std/src/safeconsole.sol\":\"safeconsole\"},\"evmVersion\":\"prague\",\"libraries\":{},\"metadata\":{\"bytecodeHash\":\"ipfs\"},\"optimizer\":{\"enabled\":true,\"runs\":100000000},\"remappings\":[\":@abdk/=lib/abdk-libraries-solidity/\",\":@openzeppelin/=lib/openzeppelin-contracts/\",\":abdk-libraries-solidity/=lib/abdk-libraries-solidity/\",\":erc4626-tests/=lib/openzeppelin-contracts/lib/erc4626-tests/\",\":forge-std/=lib/forge-std/src/\",\":halmos-cheatcodes/=lib/openzeppelin-contracts/lib/halmos-cheatcodes/src/\",\":openzeppelin-contracts/=lib/openzeppelin-contracts/\"],\"viaIR\":true},\"sources\":{\"lib/forge-std/src/safeconsole.sol\":{\"keccak256\":\"0xbef9786cb49d3eade757bad87568c49c8c8f35721f0193c95ffb055d9e466e11\",\"license\":\"MIT\",\"urls\":[\"bzz-raw://3bafd2b0b2d28068d329f95ea8a1fbce3719c257fcb863fc01abcbafd8d531ab\",\"dweb:/ipfs/QmUeaFjKWTVDBsHVfSob4mwt6A5hTnKDz22HaUXeZhypa3\"]}},\"version\":1}","metadata":{"compiler":{"version":"0.8.30+commit.73712a01"},"language":"Solidity","output":{"abi":[],"devdoc":{"kind":"dev","methods":{},"version":1},"userdoc":{"kind":"user","methods":{},"version":1}},"settings":{"remappings":["@abdk/=lib/abdk-libraries-solidity/","@openzeppelin/=lib/openzeppelin-contracts/","abdk-libraries-solidity/=lib/abdk-libraries-solidity/","erc4626-tests/=lib/openzeppelin-contracts/lib/erc4626-tests/","forge-std/=lib/forge-std/src/","halmos-cheatcodes/=lib/openzeppelin-contracts/lib/halmos-cheatcodes/src/","openzeppelin-contracts/=lib/openzeppelin-contracts/"],"optimizer":{"enabled":true,"runs":100000000},"metadata":{"bytecodeHash":"ipfs"},"compilationTarget":{"lib/forge-std/src/safeconsole.sol":"safeconsole"},"evmVersion":"prague","libraries":{},"viaIR":true},"sources":{"lib/forge-std/src/safeconsole.sol":{"keccak256":"0xbef9786cb49d3eade757bad87568c49c8c8f35721f0193c95ffb055d9e466e11","urls":["bzz-raw://3bafd2b0b2d28068d329f95ea8a1fbce3719c257fcb863fc01abcbafd8d531ab","dweb:/ipfs/QmUeaFjKWTVDBsHVfSob4mwt6A5hTnKDz22HaUXeZhypa3"],"license":"MIT"}},"version":1},"id":15}
|
||||
{"abi":[],"bytecode":{"object":"0x6080806040523460175760399081601c823930815050f35b5f80fdfe5f80fdfea2646970667358221220709c8134992b5fef4e2bf94b521207862a1126f22dcc0c41899199d76b8ca7c164736f6c634300081e0033","sourceMap":"163:427371:20:-:0;;;;;;;;;;;;;;;;;;;;;","linkReferences":{}},"deployedBytecode":{"object":"0x5f80fdfea2646970667358221220709c8134992b5fef4e2bf94b521207862a1126f22dcc0c41899199d76b8ca7c164736f6c634300081e0033","sourceMap":"163:427371:20:-:0;;","linkReferences":{}},"methodIdentifiers":{},"rawMetadata":"{\"compiler\":{\"version\":\"0.8.30+commit.73712a01\"},\"language\":\"Solidity\",\"output\":{\"abi\":[],\"devdoc\":{\"author\":\"philogy <https://github.com/philogy>\",\"details\":\"Code generated automatically by script.\",\"kind\":\"dev\",\"methods\":{},\"version\":1},\"userdoc\":{\"kind\":\"user\",\"methods\":{},\"version\":1}},\"settings\":{\"compilationTarget\":{\"lib/forge-std/src/safeconsole.sol\":\"safeconsole\"},\"evmVersion\":\"prague\",\"libraries\":{},\"metadata\":{\"bytecodeHash\":\"ipfs\"},\"optimizer\":{\"enabled\":true,\"runs\":100000000},\"remappings\":[\":@abdk/=lib/abdk-libraries-solidity/\",\":@openzeppelin/=lib/openzeppelin-contracts/\",\":abdk-libraries-solidity/=lib/abdk-libraries-solidity/\",\":erc4626-tests/=lib/openzeppelin-contracts/lib/erc4626-tests/\",\":forge-std/=lib/forge-std/src/\",\":halmos-cheatcodes/=lib/openzeppelin-contracts/lib/halmos-cheatcodes/src/\",\":openzeppelin-contracts/=lib/openzeppelin-contracts/\"],\"viaIR\":true},\"sources\":{\"lib/forge-std/src/safeconsole.sol\":{\"keccak256\":\"0xbef9786cb49d3eade757bad87568c49c8c8f35721f0193c95ffb055d9e466e11\",\"license\":\"MIT\",\"urls\":[\"bzz-raw://3bafd2b0b2d28068d329f95ea8a1fbce3719c257fcb863fc01abcbafd8d531ab\",\"dweb:/ipfs/QmUeaFjKWTVDBsHVfSob4mwt6A5hTnKDz22HaUXeZhypa3\"]}},\"version\":1}","metadata":{"compiler":{"version":"0.8.30+commit.73712a01"},"language":"Solidity","output":{"abi":[],"devdoc":{"kind":"dev","methods":{},"version":1},"userdoc":{"kind":"user","methods":{},"version":1}},"settings":{"remappings":["@abdk/=lib/abdk-libraries-solidity/","@openzeppelin/=lib/openzeppelin-contracts/","abdk-libraries-solidity/=lib/abdk-libraries-solidity/","erc4626-tests/=lib/openzeppelin-contracts/lib/erc4626-tests/","forge-std/=lib/forge-std/src/","halmos-cheatcodes/=lib/openzeppelin-contracts/lib/halmos-cheatcodes/src/","openzeppelin-contracts/=lib/openzeppelin-contracts/"],"optimizer":{"enabled":true,"runs":100000000},"metadata":{"bytecodeHash":"ipfs"},"compilationTarget":{"lib/forge-std/src/safeconsole.sol":"safeconsole"},"evmVersion":"prague","libraries":{},"viaIR":true},"sources":{"lib/forge-std/src/safeconsole.sol":{"keccak256":"0xbef9786cb49d3eade757bad87568c49c8c8f35721f0193c95ffb055d9e466e11","urls":["bzz-raw://3bafd2b0b2d28068d329f95ea8a1fbce3719c257fcb863fc01abcbafd8d531ab","dweb:/ipfs/QmUeaFjKWTVDBsHVfSob4mwt6A5hTnKDz22HaUXeZhypa3"],"license":"MIT"}},"version":1},"id":20}
|
||||
@@ -1,17 +1,17 @@
|
||||
{
|
||||
"11155111": {
|
||||
"v1": {
|
||||
"PartyPlanner": "0xEc41Df23428700000CEd7d81fB313Ea657EAb92F",
|
||||
"PartyPoolViewer": "0x5FFbD8516a4411a1bB7Ee0d71Aa7A6948826f278",
|
||||
"PartyPoolMintImpl": "0x7d489e8aE971B34357aa7Adef8111DAeD0497b45",
|
||||
"PartyPoolSwapImpl": "0xF44A660E2281F523523114be7633c94E377bbE6F",
|
||||
"PartyPoolDeployer": "0xAc753F480864eb130e3dA0762234dD7E00F06937",
|
||||
"PartyPoolBalancedPairDeployer": "0x760df38C9DE60b809976d67CD9cb1Ec81ab3c293",
|
||||
"USXD": "0xCb2F4B07eFe0F06264AD28590aC7f03D5cdb0729",
|
||||
"FUSD": "0x09b215368a4a4ed16a075716079080b4CEE2e38b",
|
||||
"DIVE": "0xFc3Bfd0D488322f928ac153ce8197A7d26A2237f",
|
||||
"BUTC": "0x19Ba3A189dc3DEbC07ADF7757dc8170702E91696",
|
||||
"WTETH": "0xd406e1a6b028D17b72f826E45bF36BB8Ad4077dB"
|
||||
"PartyPlanner": "0x0ad06C08ab5049e6Fd4d7f5AF457115A1475326b",
|
||||
"PartyPoolViewer": "0x750d63a39a4ccfCfB69D2f5aFDa065909C717cAB",
|
||||
"PartyPoolMintImpl": "0x25bb10BA84944F8aAEf1fD247C3B7Fe7271C23F9",
|
||||
"PartyPoolSwapImpl": "0x69b4F102e0747f61F8529b3bbFf2FC4b27438d0F",
|
||||
"PartyPoolDeployer": "0x0939F93BAa3c96226853F9F39A95beF48eA8fF04",
|
||||
"PartyPoolBalancedPairDeployer": "0xfda454fF7876aad9408517Ed2F0d11AA229Ad0a4",
|
||||
"USXD": "0x8E4D16886b8946dfE463fA172129eaBf4825fb09",
|
||||
"FUSD": "0xdc225280216822CA956738390f589c794129bd53",
|
||||
"DIVE": "0x7ba123e4e7395A361284d069bD0D545F3f820641",
|
||||
"BUTC": "0x88125947BBF1A6dd0FeD4B257BB3f9E1FBdCb3Cc",
|
||||
"WTETH": "0xC8dB65C0B9f4cf59097d4C5Bcb9e8E92B9e4e15F"
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
459
research/get_quotes.js
Normal file
459
research/get_quotes.js
Normal file
@@ -0,0 +1,459 @@
|
||||
const { ethers } = require('ethers');
|
||||
const { Token } = require('@uniswap/sdk-core');
|
||||
const fs = require('fs');
|
||||
|
||||
// Token definitions
|
||||
const ChainId = {
|
||||
MAINNET: 1
|
||||
};
|
||||
|
||||
const USDC_TOKEN = new Token(
|
||||
ChainId.MAINNET,
|
||||
'0xa0b86991c6218b36c1d19d4a2e9eb0ce3606eb48',
|
||||
6,
|
||||
'USDC',
|
||||
'USDC'
|
||||
);
|
||||
|
||||
const USDT_TOKEN = new Token(
|
||||
ChainId.MAINNET,
|
||||
'0xdAC17F958D2ee523a2206206994597C13D831ec7',
|
||||
6,
|
||||
'USDT',
|
||||
'USDT'
|
||||
);
|
||||
|
||||
// Configuration
|
||||
const QUOTER_ADDRESS = '0x52f0e24d1c21c8a0cb1e5a5dd6198556bd9e1203';
|
||||
const POSITION_MANAGER_ADDRESS = '0xbD216513d74C8cf14cf4747E6AaA6420FF64ee9e';
|
||||
|
||||
// Pool ID to fetch pool key from
|
||||
const POOL_ID = '0x8aa4e11cbdf30eedc92100f4c8a31ff748e201d44712cc8c90d189edaa8e4e47';
|
||||
|
||||
// Providers
|
||||
const anvilProvider = new ethers.providers.JsonRpcProvider('http://127.0.0.1:8545');
|
||||
|
||||
// Quoter contract ABI
|
||||
const QUOTER_ABI = [
|
||||
{
|
||||
inputs: [
|
||||
{
|
||||
components: [
|
||||
{
|
||||
components: [
|
||||
{ name: 'currency0', type: 'address' },
|
||||
{ name: 'currency1', type: 'address' },
|
||||
{ name: 'fee', type: 'uint24' },
|
||||
{ name: 'tickSpacing', type: 'int24' },
|
||||
{ name: 'hooks', type: 'address' }
|
||||
],
|
||||
name: 'poolKey',
|
||||
type: 'tuple'
|
||||
},
|
||||
{ name: 'zeroForOne', type: 'bool' },
|
||||
{ name: 'exactAmount', type: 'uint128' },
|
||||
{ name: 'hookData', type: 'bytes' }
|
||||
],
|
||||
name: 'params',
|
||||
type: 'tuple'
|
||||
}
|
||||
],
|
||||
name: 'quoteExactInputSingle',
|
||||
outputs: [
|
||||
{
|
||||
components: [
|
||||
{ name: 'amountOut', type: 'uint256' }
|
||||
],
|
||||
name: 'result',
|
||||
type: 'tuple'
|
||||
}
|
||||
],
|
||||
stateMutability: 'view',
|
||||
type: 'function'
|
||||
}
|
||||
];
|
||||
// StateView ABI for getSlot0 and getLiquidity
|
||||
const STATE_VIEW_ABI = [
|
||||
{
|
||||
inputs: [
|
||||
// { name: 'manager', type: 'address' },
|
||||
{ name: 'poolId', type: 'bytes32' }
|
||||
],
|
||||
name: 'getSlot0',
|
||||
outputs: [
|
||||
{ name: 'sqrtPriceX96', type: 'uint160' },
|
||||
{ name: 'tick', type: 'int24' },
|
||||
{ name: 'protocolFee', type: 'uint24' },
|
||||
{ name: 'lpFee', type: 'uint24' }
|
||||
],
|
||||
stateMutability: 'view',
|
||||
type: 'function'
|
||||
},
|
||||
];
|
||||
|
||||
// StateView contract address for reading pool state
|
||||
const STATE_VIEW_ADDRESS = '0x7ffe42c4a5deea5b0fec41c94c136cf115597227';
|
||||
|
||||
// Position Manager ABI
|
||||
const POSITION_MANAGER_ABI = [
|
||||
{
|
||||
inputs: [{ name: 'poolId', type: 'bytes25' }],
|
||||
name: 'poolKeys',
|
||||
outputs: [
|
||||
{
|
||||
components: [
|
||||
{ name: 'currency0', type: 'address' },
|
||||
{ name: 'currency1', type: 'address' },
|
||||
{ name: 'fee', type: 'uint24' },
|
||||
{ name: 'tickSpacing', type: 'int24' },
|
||||
{ name: 'hooks', type: 'address' }
|
||||
],
|
||||
name: 'poolKey',
|
||||
type: 'tuple'
|
||||
}
|
||||
],
|
||||
stateMutability: 'view',
|
||||
type: 'function'
|
||||
}
|
||||
];
|
||||
|
||||
// Function to get pool key from Position Manager (uses mainnet)
|
||||
async function getPoolKey() {
|
||||
try {
|
||||
const positionManager = new ethers.Contract(
|
||||
POSITION_MANAGER_ADDRESS,
|
||||
POSITION_MANAGER_ABI,
|
||||
anvilProvider
|
||||
);
|
||||
|
||||
// Extract first 25 bytes (50 hex chars + 0x prefix = 52 chars)
|
||||
const poolIdBytes25 = POOL_ID.slice(0, 52);
|
||||
|
||||
const poolKey = await positionManager.poolKeys(poolIdBytes25);
|
||||
|
||||
return {
|
||||
currency0: poolKey.currency0,
|
||||
currency1: poolKey.currency1,
|
||||
fee: poolKey.fee,
|
||||
tickSpacing: poolKey.tickSpacing,
|
||||
hooks: poolKey.hooks
|
||||
};
|
||||
} catch (error) {
|
||||
console.error('Error fetching pool key:', error.message);
|
||||
throw error;
|
||||
}
|
||||
}
|
||||
|
||||
// Convert sqrtPriceX96 to human-readable price
|
||||
function sqrtPriceX96ToPrice(sqrtPriceX96, decimals0, decimals1) {
|
||||
const Q96 = ethers.BigNumber.from(2).pow(96);
|
||||
const sqrtPrice = ethers.BigNumber.from(sqrtPriceX96);
|
||||
|
||||
// Calculate price = (sqrtPriceX96 / 2^96)^2
|
||||
const numerator = sqrtPrice.mul(sqrtPrice);
|
||||
const denominator = Q96.mul(Q96);
|
||||
|
||||
// Adjust for token decimals
|
||||
const decimalAdjustment = ethers.BigNumber.from(10).pow(decimals0 - decimals1);
|
||||
|
||||
// Convert to float for readability
|
||||
return parseFloat(numerator.toString()) / parseFloat(denominator.toString()) * parseFloat(decimalAdjustment.toString());
|
||||
}
|
||||
|
||||
// Get pool price using StateView
|
||||
async function getPoolPriceWithSDK(blockNumber) {
|
||||
try {
|
||||
// Create StateView contract with ethers
|
||||
const stateViewContract = new ethers.Contract(
|
||||
STATE_VIEW_ADDRESS,
|
||||
STATE_VIEW_ABI,
|
||||
anvilProvider
|
||||
);
|
||||
|
||||
// Get slot0 data
|
||||
const slot0 = await stateViewContract.getSlot0(POOL_ID, {
|
||||
blockTag: blockNumber
|
||||
});
|
||||
|
||||
// Convert sqrtPriceX96 to human-readable price
|
||||
const price = sqrtPriceX96ToPrice(slot0.sqrtPriceX96, 6, 6); // USDC=6, USDT=6
|
||||
const inversePrice = 1 / price;
|
||||
|
||||
console.log('\n=== Pool State ===');
|
||||
console.log('Block:', blockNumber);
|
||||
console.log('sqrtPriceX96:', slot0.sqrtPriceX96.toString());
|
||||
console.log('Tick:', slot0.tick.toString());
|
||||
console.log('Price (USDT per USDC):', price.toFixed(8));
|
||||
console.log('Price (USDC per USDT):', inversePrice.toFixed(8));
|
||||
console.log('LP Fee:', slot0.lpFee, `(${(slot0.lpFee / 10000).toFixed(2)}%)`);
|
||||
|
||||
return {
|
||||
sqrtPriceX96: slot0.sqrtPriceX96.toString(),
|
||||
tick: slot0.tick.toString(),
|
||||
price: price, // Human-readable price
|
||||
inversePrice: inversePrice,
|
||||
protocolFee: slot0.protocolFee,
|
||||
lpFee: slot0.lpFee
|
||||
};
|
||||
} catch (error) {
|
||||
console.error('Error getting pool price:', error.message);
|
||||
throw error;
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
// Get quote from historical block (10 blocks back) with multiple amount testing
|
||||
async function getQuoteFromHistoricalBlock(poolKey, targetBlock) {
|
||||
try {
|
||||
|
||||
// Get starting pool price using SDK
|
||||
try {
|
||||
await getPoolPriceWithSDK(targetBlock);
|
||||
} catch (error) {
|
||||
console.error('Error getting pool price with SDK:', error.message);
|
||||
}
|
||||
|
||||
console.log('\n=== Testing Multiple Input Amounts ===');
|
||||
console.log('Testing amounts from 1 USDC, increasing by 30% each iteration (limited to 5 iterations)');
|
||||
console.log('Testing both directions: USDC→USDT and USDT→USDC\n');
|
||||
|
||||
// Create a new provider instance that queries at specific block
|
||||
const quoterContract = new ethers.Contract(QUOTER_ADDRESS, QUOTER_ABI, anvilProvider);
|
||||
|
||||
const resultsForward = []; // USDC→USDT
|
||||
const resultsReverse = []; // USDT→USDC
|
||||
let currentAmount = 1; // Start with 1 token
|
||||
const multiplier = 1.3; // 30% increase
|
||||
const maxIterations = 200; // Limit to 5 iterations for testing
|
||||
|
||||
// Test USDC→USDT (forward direction)
|
||||
console.log('\n=== USDC → USDT (Forward Direction) ===');
|
||||
for (let i = 0; i < maxIterations; i++) {
|
||||
// Check if currentAmount exceeds 10 million
|
||||
if (currentAmount > 10000000) {
|
||||
console.log(`\nReached maximum amount limit of 1 million USDC. Stopping iterations.`);
|
||||
break;
|
||||
}
|
||||
|
||||
console.log(`\n--- Iteration ${i + 1}: ${currentAmount.toFixed(6)} USDC ---`);
|
||||
|
||||
const amountIn = ethers.utils.parseUnits(currentAmount.toFixed(6), USDC_TOKEN.decimals);
|
||||
|
||||
// Make the call at the specific block using overrides
|
||||
const quotedAmountOut = await quoterContract.callStatic.quoteExactInputSingle({
|
||||
poolKey: poolKey,
|
||||
zeroForOne: true,
|
||||
exactAmount: amountIn.toString(),
|
||||
hookData: '0x00',
|
||||
}, {
|
||||
blockTag: targetBlock // Query at specific historical block
|
||||
});
|
||||
|
||||
const actualAmountOut = ethers.BigNumber.from(quotedAmountOut.amountOut);
|
||||
|
||||
// Calculate ideal amount out (1:1 ratio for stablecoins)
|
||||
const idealAmountOut = amountIn; // Since both USDC and USDT have 6 decimals
|
||||
|
||||
// Calculate the difference from ideal
|
||||
const difference = actualAmountOut.sub(idealAmountOut);
|
||||
const isPositive = difference.gte(0);
|
||||
|
||||
// Calculate slippage in basis points and percentage
|
||||
const slippageBasisPoints = difference.mul(10000).div(idealAmountOut);
|
||||
const slippagePercentage = parseFloat(slippageBasisPoints.toString()) / 100;
|
||||
|
||||
// Calculate effective exchange rate
|
||||
const effectiveRate = parseFloat(ethers.utils.formatUnits(actualAmountOut, USDT_TOKEN.decimals)) / currentAmount;
|
||||
|
||||
// Log results for this amount
|
||||
console.log(`Amount In: ${currentAmount.toFixed(6)} USDC`);
|
||||
console.log(`Amount Out: ${ethers.utils.formatUnits(actualAmountOut, USDT_TOKEN.decimals)} USDT`);
|
||||
console.log(`Effective Rate: ${effectiveRate.toFixed(6)} USDT/USDC`);
|
||||
console.log(`Ideal Rate (1:1): ${currentAmount.toFixed(6)} USDT`);
|
||||
console.log(`Difference: ${isPositive ? '+' : ''}${ethers.utils.formatUnits(difference, USDT_TOKEN.decimals)} USDT`);
|
||||
console.log(`Slippage: ${isPositive ? '+' : ''}${slippagePercentage.toFixed(4)}% (${isPositive ? '+' : ''}${slippageBasisPoints.toString()} basis points)`);
|
||||
|
||||
// Store result
|
||||
resultsForward.push({
|
||||
iteration: i + 1,
|
||||
amountIn: currentAmount,
|
||||
amountInFormatted: currentAmount.toFixed(6) + ' USDC',
|
||||
amountOut: ethers.utils.formatUnits(actualAmountOut, USDT_TOKEN.decimals) + ' USDT',
|
||||
effectiveRate: effectiveRate,
|
||||
slippagePercentage: slippagePercentage,
|
||||
slippageBasisPoints: parseInt(slippageBasisPoints.toString()),
|
||||
isPositive: isPositive
|
||||
});
|
||||
|
||||
// Increase amount by 30% for next iteration
|
||||
currentAmount *= multiplier;
|
||||
}
|
||||
|
||||
// Reset current amount for reverse direction
|
||||
currentAmount = 1;
|
||||
|
||||
// Test USDT→USDC (reverse direction)
|
||||
console.log('\n\n=== USDT → USDC (Reverse Direction) ===');
|
||||
for (let i = 0; i < maxIterations; i++) {
|
||||
// Check if currentAmount exceeds 1 million
|
||||
if (currentAmount > 10000000) {
|
||||
console.log(`\nReached maximum amount limit of 1 million USDT. Stopping iterations.`);
|
||||
break;
|
||||
}
|
||||
|
||||
console.log(`\n--- Iteration ${i + 1}: ${currentAmount.toFixed(6)} USDT ---`);
|
||||
|
||||
const amountIn = ethers.utils.parseUnits(currentAmount.toFixed(6), USDT_TOKEN.decimals);
|
||||
|
||||
// Make the call at the specific block using overrides with zeroForOne: false
|
||||
const quotedAmountOut = await quoterContract.callStatic.quoteExactInputSingle({
|
||||
poolKey: poolKey,
|
||||
zeroForOne: false, // false for USDT→USDC
|
||||
exactAmount: amountIn.toString(),
|
||||
hookData: '0x00',
|
||||
}, {
|
||||
blockTag: targetBlock // Query at specific historical block
|
||||
});
|
||||
|
||||
const actualAmountOut = ethers.BigNumber.from(quotedAmountOut.amountOut);
|
||||
|
||||
// Calculate ideal amount out (1:1 ratio for stablecoins)
|
||||
const idealAmountOut = amountIn; // Since both USDC and USDT have 6 decimals
|
||||
|
||||
// Calculate the difference from ideal
|
||||
const difference = actualAmountOut.sub(idealAmountOut);
|
||||
const isPositive = difference.gte(0);
|
||||
|
||||
// Calculate slippage in basis points and percentage
|
||||
const slippageBasisPoints = difference.mul(10000).div(idealAmountOut);
|
||||
const slippagePercentage = parseFloat(slippageBasisPoints.toString()) / 100;
|
||||
|
||||
// Calculate effective exchange rate
|
||||
const effectiveRate = parseFloat(ethers.utils.formatUnits(actualAmountOut, USDC_TOKEN.decimals)) / currentAmount;
|
||||
|
||||
// Log results for this amount
|
||||
console.log(`Amount In: ${currentAmount.toFixed(6)} USDT`);
|
||||
console.log(`Amount Out: ${ethers.utils.formatUnits(actualAmountOut, USDC_TOKEN.decimals)} USDC`);
|
||||
console.log(`Effective Rate: ${effectiveRate.toFixed(6)} USDC/USDT`);
|
||||
console.log(`Ideal Rate (1:1): ${currentAmount.toFixed(6)} USDC`);
|
||||
console.log(`Difference: ${isPositive ? '+' : ''}${ethers.utils.formatUnits(difference, USDC_TOKEN.decimals)} USDC`);
|
||||
console.log(`Slippage: ${isPositive ? '+' : ''}${slippagePercentage.toFixed(4)}% (${isPositive ? '+' : ''}${slippageBasisPoints.toString()} basis points)`);
|
||||
|
||||
// Store result
|
||||
resultsReverse.push({
|
||||
iteration: i + 1,
|
||||
amountIn: currentAmount,
|
||||
amountInFormatted: currentAmount.toFixed(6) + ' USDT',
|
||||
amountOut: ethers.utils.formatUnits(actualAmountOut, USDC_TOKEN.decimals) + ' USDC',
|
||||
effectiveRate: effectiveRate,
|
||||
slippagePercentage: slippagePercentage,
|
||||
slippageBasisPoints: parseInt(slippageBasisPoints.toString()),
|
||||
isPositive: isPositive
|
||||
});
|
||||
|
||||
// Increase amount by 30% for next iteration
|
||||
currentAmount *= multiplier;
|
||||
}
|
||||
|
||||
// Summary
|
||||
console.log('\n\n=== Summary of Results ===');
|
||||
|
||||
console.log('\n--- Forward Direction (USDC → USDT) ---');
|
||||
console.log('\nAmount In → Amount Out (Rate) [Slippage]');
|
||||
resultsForward.forEach(r => {
|
||||
console.log(`${r.amountInFormatted} → ${r.amountOut} (${r.effectiveRate.toFixed(6)}) [${r.isPositive ? '+' : ''}${r.slippagePercentage.toFixed(4)}%]`);
|
||||
});
|
||||
|
||||
console.log('\n--- Reverse Direction (USDT → USDC) ---');
|
||||
console.log('\nAmount In → Amount Out (Rate) [Slippage]');
|
||||
resultsReverse.forEach(r => {
|
||||
console.log(`${r.amountInFormatted} → ${r.amountOut} (${r.effectiveRate.toFixed(6)}) [${r.isPositive ? '+' : ''}${r.slippagePercentage.toFixed(4)}%]`);
|
||||
});
|
||||
|
||||
return {
|
||||
blockNumber: targetBlock,
|
||||
forward: resultsForward,
|
||||
reverse: resultsReverse
|
||||
};
|
||||
} catch (error) {
|
||||
console.error('Error getting historical quote:', error.message);
|
||||
throw error;
|
||||
}
|
||||
}
|
||||
|
||||
// Function to write results to CSV
|
||||
function writeResultsToCSV(blockNumber, priceData, quoteResults) {
|
||||
const filename = `swap_results_block_${blockNumber}.csv`;
|
||||
|
||||
// Create CSV header
|
||||
let csvContent = 'Block Number,USDT per USDC,USDC per USDT,Forward Direction Amount In,Forward Direction Amount Out,Reverse Direction Amount In,Reverse Direction Amount Out\n';
|
||||
|
||||
// Get max number of iterations
|
||||
const maxIterations = Math.max(quoteResults.forward.length, quoteResults.reverse.length);
|
||||
|
||||
// Add data rows
|
||||
for (let i = 0; i < maxIterations; i++) {
|
||||
const forwardResult = quoteResults.forward[i] || { amountIn: '', amountOut: '' };
|
||||
const reverseResult = quoteResults.reverse[i] || { amountIn: '', amountOut: '' };
|
||||
|
||||
// Only include block number and prices in first row
|
||||
if (i === 0) {
|
||||
csvContent += `${blockNumber},${priceData.price.toFixed(8)},${priceData.inversePrice.toFixed(8)},`;
|
||||
} else {
|
||||
csvContent += `,,,`;
|
||||
}
|
||||
|
||||
// Extract just the numbers from the formatted strings
|
||||
const forwardAmountIn = forwardResult.amountIn ? forwardResult.amountIn.toFixed(6) : '';
|
||||
const forwardAmountOut = forwardResult.amountOut ? forwardResult.amountOut.split(' ')[0] : '';
|
||||
const reverseAmountIn = reverseResult.amountIn ? reverseResult.amountIn.toFixed(6) : '';
|
||||
const reverseAmountOut = reverseResult.amountOut ? reverseResult.amountOut.split(' ')[0] : '';
|
||||
|
||||
csvContent += `${forwardAmountIn},${forwardAmountOut},${reverseAmountIn},${reverseAmountOut}\n`;
|
||||
}
|
||||
|
||||
// Write to file
|
||||
fs.writeFileSync(filename, csvContent);
|
||||
console.log(`\n✅ Results written to ${filename}`);
|
||||
}
|
||||
|
||||
// Main function
|
||||
async function main() {
|
||||
console.log('=== Uniswap V4 Quote and Gas Estimation ===\n');
|
||||
// Get current block
|
||||
const currentBlock = await anvilProvider.getBlockNumber();
|
||||
const targetBlock = currentBlock - 10;
|
||||
|
||||
|
||||
// Fetch pool key from Position Manager
|
||||
let poolKey;
|
||||
try {
|
||||
poolKey = await getPoolKey();
|
||||
} catch (error) {
|
||||
console.error('Failed to fetch pool key. Exiting.');
|
||||
return;
|
||||
}
|
||||
|
||||
// Get pool price data
|
||||
let poolPriceData;
|
||||
try {
|
||||
poolPriceData = await getPoolPriceWithSDK(targetBlock);
|
||||
} catch (error) {
|
||||
console.error('Failed to get pool price data:', error.message);
|
||||
return;
|
||||
}
|
||||
|
||||
// Get quotes for both directions
|
||||
try {
|
||||
const quoteResults = await getQuoteFromHistoricalBlock(poolKey, targetBlock);
|
||||
console.log('✅ Historical quote successful!');
|
||||
|
||||
// Write results to CSV
|
||||
writeResultsToCSV(targetBlock, poolPriceData, quoteResults);
|
||||
} catch (error) {
|
||||
console.error('❌ Failed to get historical quote:', error.message);
|
||||
}
|
||||
}
|
||||
|
||||
// Run the main function
|
||||
main().catch(console.error);
|
||||
162
research/pool_design.py
Normal file
162
research/pool_design.py
Normal file
@@ -0,0 +1,162 @@
|
||||
import logging
|
||||
import math
|
||||
|
||||
import matplotlib.pyplot as plt
|
||||
import pandas as pd
|
||||
import numpy as np
|
||||
|
||||
log = logging.getLogger(__name__)
|
||||
|
||||
|
||||
def lmsr_swap_amount_out(
|
||||
balances,
|
||||
amount_in,
|
||||
token_in_index,
|
||||
token_out_index,
|
||||
lp_fee,
|
||||
kappa,
|
||||
):
|
||||
"""
|
||||
Compute the LMSR kernel fee-free amountOut for swapping `amount_in` of token `token_in_index`
|
||||
into token `token_out_index`, applying lp_fee to the input amount (i.e., amount_in_net = amount_in * (1 - lp_fee)).
|
||||
Uses native Python floats for performance and simplicity.
|
||||
|
||||
Notes on congruence with PartyPool / LMSRStabilized:
|
||||
- The kernel formula implemented here matches the LMSR closed-form:
|
||||
amountOut = b * ln(1 + r0 * (1 - exp(-a / b)))
|
||||
where r0 = exp((q_i - q_j) / b) and b = kappa * S (S = sum balances).
|
||||
- lp_fee is applied to the input before the kernel (fee-on-input), matching PartyPool's placement.
|
||||
- This function uses continuous float arithmetic and does NOT emulate
|
||||
PartyPool's integer/unit conversions or rounding (floor/ceil) and ppm fee quantization.
|
||||
|
||||
Parameters:
|
||||
- balances: iterable of per-token balances (numbers). These represent q_i in internal units.
|
||||
- amount_in: input amount supplied by swapper (before fees).
|
||||
- token_in_index: index of the input token i.
|
||||
- token_out_index: index of the output token j.
|
||||
- lp_fee: fractional LP fee applied to the input (e.g., 0.003).
|
||||
- kappa: liquidity parameter κ (must be positive, in same units as balances).
|
||||
|
||||
Returns:
|
||||
- float: net amountOut (exclusive of fees) the swapper receives from the pool (capped at pool balance).
|
||||
"""
|
||||
# Normalize and validate inputs (convert to floats)
|
||||
try:
|
||||
q = [float(x) for x in balances]
|
||||
a_in = float(amount_in)
|
||||
lpf = float(lp_fee)
|
||||
k = float(kappa)
|
||||
except (TypeError, ValueError) as e:
|
||||
raise ValueError("Invalid numeric input") from e
|
||||
|
||||
n = len(q)
|
||||
if not (0 <= token_in_index < n and 0 <= token_out_index < n):
|
||||
raise IndexError("token indices out of range")
|
||||
|
||||
if a_in <= 0.0:
|
||||
return 0.0
|
||||
|
||||
if k <= 0.0:
|
||||
raise ValueError("kappa must be positive")
|
||||
|
||||
# Size metric S = sum q_i
|
||||
S = sum(q)
|
||||
if S <= 0.0:
|
||||
raise ValueError("size metric (sum balances) must be positive")
|
||||
|
||||
# b = kappa * S
|
||||
b = k * S
|
||||
if b <= 0.0:
|
||||
raise ValueError("computed b must be positive")
|
||||
|
||||
# Apply LP fee on the input amount (kernel is fee-free; wrapper handles fees)
|
||||
if not (0.0 <= lpf < 1.0):
|
||||
raise ValueError("lp_fee must be in [0, 1)")
|
||||
a_net = a_in * (1.0 - lpf)
|
||||
if a_net <= 0.0:
|
||||
return 0.0
|
||||
|
||||
qi = q[token_in_index]
|
||||
qj = q[token_out_index]
|
||||
|
||||
# Guard: output asset must have non-zero effective reserve
|
||||
if qj <= 0.0:
|
||||
# No available output to withdraw
|
||||
return 0.0
|
||||
|
||||
# Compute r0 = exp((q_i - q_j) / b)
|
||||
try:
|
||||
r0 = math.exp((qi - qj) / b)
|
||||
except OverflowError:
|
||||
raise ArithmeticError("exponential overflow in r0 computation")
|
||||
|
||||
# Compute a/b
|
||||
a_over_b = a_net / b
|
||||
|
||||
# exp(-a/b)
|
||||
try:
|
||||
exp_neg = math.exp(-a_over_b)
|
||||
except OverflowError:
|
||||
# If exp would underflow/overflow, treat exp(-a/b) as 0 in extreme case
|
||||
exp_neg = 0.0
|
||||
|
||||
# inner = 1 + r0 * (1 - exp(-a/b))
|
||||
inner = 1.0 + r0 * (1.0 - exp_neg)
|
||||
|
||||
# If inner <= 0, cap to available balance qj
|
||||
if inner <= 0.0:
|
||||
return float(qj)
|
||||
|
||||
# amountOut = b * ln(inner)
|
||||
try:
|
||||
ln_inner = math.log(inner)
|
||||
except (ValueError, OverflowError):
|
||||
# Numeric issue computing ln; be conservative and return 0
|
||||
return 0.0
|
||||
|
||||
amount_out = b * ln_inner
|
||||
|
||||
# Safety: non-positive output -> return zero
|
||||
if amount_out <= 0.0:
|
||||
return 0.0
|
||||
|
||||
# Cap output to pool's current balance qj (cannot withdraw more than available)
|
||||
if amount_out > qj:
|
||||
return float(qj)
|
||||
|
||||
return float(amount_out)
|
||||
|
||||
|
||||
def main():
|
||||
balance0 = 1_000_000 # estimated from the production pool
|
||||
balances = [balance0, balance0]
|
||||
X = np.geomspace(1, 10_000_000, 100)
|
||||
Y = [1 -
|
||||
lmsr_swap_amount_out(balances, float(amount_in), 0, 1, 0.000010, 0.8)
|
||||
/ amount_in
|
||||
for amount_in in X]
|
||||
plt.plot(X / balance0, Y, label='LMSR')
|
||||
|
||||
d = pd.read_csv('swap_results_block_23640998.csv')
|
||||
d.columns = ['block', 'price0', 'price1', 'in0', 'out0', 'in1', 'out1']
|
||||
uniswap_slippage = 1 - d.out0 / d.in0 / d.iloc[0].price0
|
||||
plt.plot(d.in0 / balance0, uniswap_slippage, label='CP')
|
||||
|
||||
# Interpolate Uniswap slippage to match LMSR x-coordinates
|
||||
interp_uniswap = np.interp(X / balance0, d.in0 / balance0, uniswap_slippage)
|
||||
mask = Y < interp_uniswap
|
||||
plt.fill_between(X / balance0, 0, 1, where=mask, alpha=0.2, color='green')
|
||||
|
||||
plt.xscale('log')
|
||||
plt.yscale('log')
|
||||
plt.gca().xaxis.set_major_formatter(plt.FuncFormatter(lambda x, _: '{:.2f}'.format(10000*x)))
|
||||
plt.gca().yaxis.set_major_formatter(plt.FuncFormatter(lambda y, _: '{:.2f}%'.format(y)))
|
||||
plt.xlabel('Input Amount (basis points of initial balance)')
|
||||
plt.ylabel('Slippage')
|
||||
plt.title('Pool Slippages')
|
||||
plt.grid(True)
|
||||
plt.legend()
|
||||
plt.show()
|
||||
|
||||
if __name__ == '__main__':
|
||||
main()
|
||||
@@ -184,20 +184,15 @@ contract DeploySepolia is Script {
|
||||
|
||||
// Set ENV vars
|
||||
string memory plannerStr = vm.toString(address(planner));
|
||||
string memory viewerStr = vm.toString(address(viewer));
|
||||
vm.setEnv('PLANNER', plannerStr);
|
||||
vm.setEnv('VIEWER', viewerStr);
|
||||
vm.setEnv('USXD', vm.toString(address(usxd)));
|
||||
vm.setEnv('FUSD', vm.toString(address(fusd)));
|
||||
vm.setEnv('DIVE', vm.toString(address(dive)));
|
||||
vm.setEnv('BUTC', vm.toString(address(butc)));
|
||||
vm.setEnv('WTETH', vm.toString(address(wteth)));
|
||||
|
||||
// Write JSON config file
|
||||
string memory config = 'config';
|
||||
string memory chainConfig = 'chain config';
|
||||
string memory chainConfigStr = vm.serializeString(chainConfig, 'PartyPlannerV1', plannerStr);
|
||||
string memory configStr = vm.serializeString(config, vm.toString(block.chainid), chainConfigStr);
|
||||
vm.writeJson(configStr, 'chain.json');
|
||||
|
||||
console2.log();
|
||||
console2.log(' PartyPlanner', address(planner));
|
||||
console2.log('PartyPoolViewer', address(viewer));
|
||||
|
||||
@@ -38,29 +38,45 @@ interface IPartyPool is IERC20Metadata, IOwnable {
|
||||
IERC20 indexed tokenIn,
|
||||
IERC20 indexed tokenOut,
|
||||
uint256 amountIn,
|
||||
uint256 amountOut
|
||||
uint256 amountOut,
|
||||
uint256 lpFee,
|
||||
uint256 protocolFee
|
||||
);
|
||||
|
||||
/// @notice Emitted when a single-token swapMint is executed.
|
||||
/// Records payer/receiver, input token index, gross transfer (net+fee), net input and fee taken.
|
||||
/// @notice Emitted instead of Swap when a single-token swapMint is executed.
|
||||
event SwapMint(
|
||||
address indexed payer,
|
||||
address indexed receiver,
|
||||
uint256 indexed inputTokenIndex,
|
||||
uint256 grossTransfer, // total _tokens transferred (net + fee)
|
||||
uint256 netInput, // net input credited to swaps (after fee)
|
||||
uint256 feeTaken // fee taken (ceil)
|
||||
IERC20 indexed tokenIn,
|
||||
uint256 amountIn,
|
||||
uint256 amountOut,
|
||||
uint256 lpFee, // taken from the input token
|
||||
uint256 protocolFee // taken from the input token
|
||||
);
|
||||
|
||||
/// @notice Emitted when a burnSwap is executed.
|
||||
/// Records payer/receiver, target token index and the uint payout sent to the receiver.
|
||||
/// @notice Emitted instead of Burn when a burnSwap is executed.
|
||||
event BurnSwap(
|
||||
address indexed payer,
|
||||
address indexed receiver,
|
||||
uint256 indexed targetTokenIndex,
|
||||
uint256 payoutUint
|
||||
IERC20 indexed tokenOut,
|
||||
uint256 amountIn,
|
||||
uint256 amountOut,
|
||||
uint256 lpFee,
|
||||
uint256 protocolFee
|
||||
);
|
||||
|
||||
event Flash(
|
||||
address indexed initiator,
|
||||
IERC3156FlashBorrower indexed receiver,
|
||||
IERC20 indexed token,
|
||||
uint256 amount,
|
||||
uint256 lpFee,
|
||||
uint256 protocolFee
|
||||
);
|
||||
|
||||
/// @notice Emitted when protocol fees are collected from this pool.
|
||||
/// @dev After collection, the protocolFee accounting array will be zeroed out.
|
||||
event ProtocolFeesCollected();
|
||||
|
||||
function LMSR() external view returns (LMSRStabilized.State memory);
|
||||
|
||||
|
||||
261
src/LMSRBalancedPairPrecomputed.sol
Normal file
261
src/LMSRBalancedPairPrecomputed.sol
Normal file
@@ -0,0 +1,261 @@
|
||||
// SPDX-License-Identifier: UNLICENSED
|
||||
pragma solidity ^0.8.30;
|
||||
|
||||
import "forge-std/console2.sol";
|
||||
import {ABDKMath64x64} from "../lib/abdk-libraries-solidity/ABDKMath64x64.sol";
|
||||
import {LMSRStabilized} from "./LMSRStabilized.sol";
|
||||
|
||||
/// @title LMSRBalancedPairPrecomputed
|
||||
/// @notice Balanced-pair LMSR using a precomputed lookup table for amount-out:
|
||||
/// y = b * ln(1 + α e^Δ), with Δ = (q_i - q_j)/b and α = 1 - e^{-u}, u = a/b.
|
||||
/// @dev Precomputation is done once with exp/ln; runtime swaps are interpolation-only with no transcendental ops.
|
||||
library LMSRBalancedPairPrecomputed {
|
||||
using ABDKMath64x64 for int128;
|
||||
using LMSRStabilized for LMSRStabilized.State;
|
||||
|
||||
// Q64.64 constants
|
||||
int128 private constant ONE = 0x10000000000000000;
|
||||
|
||||
/// @dev Precomputation-only state; keeps table configuration and data separate from LMSR core state.
|
||||
struct Precomp {
|
||||
// Precompute config
|
||||
int128 W; // half-width for Δ band (Q64.64), table centered at 0
|
||||
int128 uMax; // maximum u = a/b covered (Q64.64)
|
||||
uint256 NDelta; // number of Δ samples (>= 2)
|
||||
uint256 NAlpha; // number of u/α samples (>= 2)
|
||||
int128 deltaStep; // step in Δ grid (Q64.64) == 2W/(NDelta-1)
|
||||
int128 uStep; // step in u grid (Q64.64) == uMax/(NAlpha-1)
|
||||
|
||||
// Grids and tables
|
||||
int128[] deltaGrid; // Δ_i from -W to +W, length NDelta
|
||||
int128[] uGrid; // u_j from 0 to uMax, length NAlpha
|
||||
int128[] alphaLut; // α(u_j) = 1 - exp(-u_j), length NAlpha
|
||||
int128[][] g; // g[j][i] = ln(1 + α_j * exp(Δ_i)), size NAlpha x NDelta
|
||||
}
|
||||
|
||||
/* --------------------
|
||||
Initialization
|
||||
-------------------- */
|
||||
|
||||
/// @notice Initialize the precomputed tables (assumes plenty of gas).
|
||||
/// @param s LMSR core state (must already represent a 2-asset pool with kappa set)
|
||||
/// @param p Precomputed table state to be filled
|
||||
/// @param W Half-width in Δ around parity (Q64.64), table covers Δ ∈ [-W, +W]
|
||||
/// @param uMax Maximum u = a/b to be supported by the table (Q64.64)
|
||||
/// @param NDelta Number of Δ samples (>= 2)
|
||||
/// @param NAlpha Number of u/α samples (>= 2)
|
||||
function initPrecomputed(
|
||||
LMSRStabilized.State storage s,
|
||||
Precomp storage p,
|
||||
int128 W,
|
||||
int128 uMax,
|
||||
uint256 NDelta,
|
||||
uint256 NAlpha
|
||||
) internal {
|
||||
require(s.nAssets == 2, "Precomp: requires 2-asset pool");
|
||||
require(s.kappa > int128(0), "Precomp: kappa>0");
|
||||
require(W > int128(0), "Precomp: W>0");
|
||||
require(uMax > int128(0), "Precomp: uMax>0");
|
||||
require(NDelta >= 2, "Precomp: NDelta>=2");
|
||||
require(NAlpha >= 2, "Precomp: NAlpha>=2");
|
||||
|
||||
// Store config
|
||||
p.W = W;
|
||||
p.uMax = uMax;
|
||||
p.NDelta = NDelta;
|
||||
p.NAlpha = NAlpha;
|
||||
|
||||
// Steps
|
||||
p.deltaStep = _div64(_mul64(W, _fromUInt(2)), _fromUInt(NDelta - 1)); // 2W/(NDelta-1)
|
||||
p.uStep = _div64(uMax, _fromUInt(NAlpha - 1)); // uMax/(NAlpha-1)
|
||||
|
||||
// Build grids
|
||||
p.deltaGrid = new int128[](NDelta);
|
||||
p.uGrid = new int128[](NAlpha);
|
||||
p.alphaLut = new int128[](NAlpha);
|
||||
p.g = new int128[][](NAlpha);
|
||||
|
||||
// Δ grid from -W to +W
|
||||
int128 startDelta = W.neg();
|
||||
for (uint256 i = 0; i < NDelta; ) {
|
||||
p.deltaGrid[i] = startDelta.add(_mul64(p.deltaStep, _fromUInt(i)));
|
||||
unchecked { ++i; }
|
||||
}
|
||||
|
||||
// Build u grid and alpha(u) LUT
|
||||
for (uint256 j = 0; j < NAlpha; ) {
|
||||
int128 uj = _mul64(p.uStep, _fromUInt(j)); // 0 .. uMax
|
||||
p.uGrid[j] = uj;
|
||||
// α(u) = 1 - exp(-u)
|
||||
int128 alphaJ = ONE.sub(ABDKMath64x64.exp(uj.neg()));
|
||||
p.alphaLut[j] = alphaJ;
|
||||
p.g[j] = new int128[](NDelta);
|
||||
unchecked { ++j; }
|
||||
}
|
||||
|
||||
// Fill g[j][i] = ln(1 + α_j * exp(Δ_i))
|
||||
for (uint256 j = 0; j < NAlpha; ) {
|
||||
int128 alphaJ = p.alphaLut[j];
|
||||
for (uint256 i = 0; i < NDelta; ) {
|
||||
int128 eDelta = ABDKMath64x64.exp(p.deltaGrid[i]);
|
||||
int128 inner = ONE.add(alphaJ.mul(eDelta));
|
||||
p.g[j][i] = ABDKMath64x64.ln(inner);
|
||||
unchecked { ++i; }
|
||||
}
|
||||
unchecked { ++j; }
|
||||
}
|
||||
}
|
||||
|
||||
/* --------------------
|
||||
Swap (Interpolated)
|
||||
-------------------- */
|
||||
|
||||
/// @notice Exact-input swap i -> j using the precomputed table when feasible.
|
||||
/// @dev Falls back to exact LMSR for:
|
||||
/// - limitPrice > 0,
|
||||
/// - |Δ| > W or u not in [0, uMax],
|
||||
/// - non-positive amounts or degenerate b,
|
||||
/// - non-2-asset pools.
|
||||
function swapAmountsForExactInput(
|
||||
LMSRStabilized.State storage s,
|
||||
Precomp storage p,
|
||||
uint256 i,
|
||||
uint256 j,
|
||||
int128 a,
|
||||
int128 limitPrice
|
||||
) internal view returns (int128 amountIn, int128 amountOut) {
|
||||
// Validate pool shape and indices
|
||||
if (s.nAssets != 2 || i >= 2 || j >= 2) {
|
||||
console2.log('Precomp: fallback (nAssets)');
|
||||
return LMSRStabilized.swapAmountsForExactInput(s.nAssets, s.kappa, s.qInternal, i, j, a, limitPrice);
|
||||
}
|
||||
|
||||
// Do not handle limitPrice within the table path; use exact routine for correctness.
|
||||
if (limitPrice > int128(0)) {
|
||||
console2.log('Precomp: fallback (limit>0)');
|
||||
return LMSRStabilized.swapAmountsForExactInput(s.nAssets, s.kappa, s.qInternal, i, j, a, limitPrice);
|
||||
}
|
||||
|
||||
// Compute b = κ * S(q)
|
||||
int128 sizeMetric = _computeSizeMetric(s.qInternal);
|
||||
if (!(sizeMetric > int128(0))) {
|
||||
console2.log('Precomp: fallback (size=0)');
|
||||
return (int128(0), int128(0));
|
||||
}
|
||||
int128 b = s.kappa.mul(sizeMetric);
|
||||
if (!(b > int128(0))) {
|
||||
console2.log('Precomp: fallback (b<=0)');
|
||||
return (int128(0), int128(0));
|
||||
}
|
||||
int128 invB = _div64(ONE, b);
|
||||
|
||||
// Require positive input
|
||||
if (a <= int128(0)) {
|
||||
console2.log('Precomp: fallback (a<0)');
|
||||
return LMSRStabilized.swapAmountsForExactInput(s.nAssets, s.kappa, s.qInternal, i, j, a, limitPrice);
|
||||
}
|
||||
|
||||
// Compute u and Δ
|
||||
int128 u = a.mul(invB);
|
||||
if (u < int128(0) || u > p.uMax) {
|
||||
// outside u range - fallback
|
||||
console2.log('Precomp: fallback (outside u)');
|
||||
console2.log(u);
|
||||
console2.log(p.uMax);
|
||||
return LMSRStabilized.swapAmountsForExactInput(s.nAssets, s.kappa, s.qInternal, i, j, a, limitPrice);
|
||||
}
|
||||
|
||||
int128 delta = s.qInternal[i].sub(s.qInternal[j]).mul(invB);
|
||||
int128 absDelta = delta >= int128(0) ? delta : delta.neg();
|
||||
if (absDelta > p.W) {
|
||||
// outside ±W band - fallback
|
||||
console2.log('Precomp: fallback (outside W)');
|
||||
return LMSRStabilized.swapAmountsForExactInput(s.nAssets, s.kappa, s.qInternal, i, j, a, limitPrice);
|
||||
}
|
||||
|
||||
// 1D interpolation position for u (row selection)
|
||||
(uint256 j0, int128 wu) = _interpPosition(u, p.uStep, p.NAlpha);
|
||||
int128 oneMinusWu = ONE.sub(wu);
|
||||
|
||||
// Map Δ ∈ [-W, +W] to shifted in [0, 2W]
|
||||
int128 deltaShifted = delta.add(p.W);
|
||||
(uint256 i0, int128 wd) = _interpPosition(deltaShifted, p.deltaStep, p.NDelta);
|
||||
int128 oneMinusWd = ONE.sub(wd);
|
||||
|
||||
// Interpolate along Δ within rows j0 and j0+1
|
||||
int128 g00 = p.g[j0][i0];
|
||||
int128 g01 = p.g[j0][i0 + 1];
|
||||
int128 g0 = g00.mul(oneMinusWd).add(g01.mul(wd));
|
||||
|
||||
int128 g10 = p.g[j0 + 1][i0];
|
||||
int128 g11 = p.g[j0 + 1][i0 + 1];
|
||||
int128 g1 = g10.mul(oneMinusWd).add(g11.mul(wd));
|
||||
|
||||
// Interpolate across u between rows
|
||||
int128 g = g0.mul(oneMinusWu).add(g1.mul(wu));
|
||||
|
||||
// amountOut = b * g
|
||||
int128 out64 = b.mul(g);
|
||||
if (out64 <= int128(0)) {
|
||||
// Numerical guard; fallback
|
||||
console2.log('Precomp: fallback (out<0)');
|
||||
return LMSRStabilized.swapAmountsForExactInput(s.nAssets, s.kappa, s.qInternal, i, j, a, limitPrice);
|
||||
}
|
||||
|
||||
console2.log('Precomp: success');
|
||||
amountIn = a;
|
||||
amountOut = out64;
|
||||
return (amountIn, amountOut);
|
||||
}
|
||||
|
||||
/* --------------------
|
||||
Internal helpers
|
||||
-------------------- */
|
||||
|
||||
/// @dev Compute size metric S(q) = sum q_i
|
||||
function _computeSizeMetric(int128[] memory qInternal) private pure returns (int128) {
|
||||
int128 total = int128(0);
|
||||
for (uint256 k = 0; k < qInternal.length; ) {
|
||||
total = total.add(qInternal[k]);
|
||||
unchecked { ++k; }
|
||||
}
|
||||
return total;
|
||||
}
|
||||
|
||||
/// @dev Q64.64 wrappers (avoid name conflicts and keep intent explicit)
|
||||
function _fromUInt(uint256 x) private pure returns (int128) {
|
||||
return ABDKMath64x64.fromUInt(x);
|
||||
}
|
||||
function _mul64(int128 a, int128 b) private pure returns (int128) {
|
||||
return a.mul(b);
|
||||
}
|
||||
function _div64(int128 a, int128 b) private pure returns (int128) {
|
||||
return ABDKMath64x64.div(a, b);
|
||||
}
|
||||
|
||||
/// @dev Given x >= 0 and a uniform step > 0, compute index floor(x/step) clamped to [0, n-2] and fraction w in [0,1]:
|
||||
/// x ≈ (idx * step) * (1-w) + ((idx+1) * step) * w
|
||||
function _interpPosition(int128 x, int128 step, uint256 n)
|
||||
private
|
||||
pure
|
||||
returns (uint256 idx, int128 w)
|
||||
{
|
||||
// t = x/step in Q64.64
|
||||
int128 t = _div64(x, step);
|
||||
// floor index = uint(t) via right shift by 64 (x >= 0 ensures non-negative)
|
||||
uint256 idxFloor = uint256(int256(t)) >> 64;
|
||||
if (idxFloor >= n - 1) {
|
||||
// clamp to the last segment
|
||||
idx = n - 2;
|
||||
w = ONE; // exact at upper bound
|
||||
return (idx, w);
|
||||
}
|
||||
idx = idxFloor;
|
||||
|
||||
// fractional part: w = (x - idx*step) / step
|
||||
int128 xi = _mul64(step, _fromUInt(idx));
|
||||
int128 frac = x.sub(xi);
|
||||
w = _div64(frac, step); // in [0,1)
|
||||
return (idx, w);
|
||||
}
|
||||
}
|
||||
@@ -32,8 +32,8 @@ contract PartyPlanner is OwnableExternal, IPartyPlanner {
|
||||
function protocolFeePpm() external view returns (uint256) { return PROTOCOL_FEE_PPM; }
|
||||
|
||||
/// @notice Address to receive protocol fees for pools created by this planner (may be address(0))
|
||||
address private immutable PROTOCOL_FEE_ADDRESS;
|
||||
function protocolFeeAddress() external view returns (address) { return PROTOCOL_FEE_ADDRESS; }
|
||||
address public protocolFeeAddress;
|
||||
function setProtocolFeeAddress( address feeAddress ) external onlyOwner { protocolFeeAddress = feeAddress; }
|
||||
|
||||
NativeWrapper private immutable WRAPPER;
|
||||
function wrapper() external view returns (NativeWrapper) { return WRAPPER; }
|
||||
@@ -78,7 +78,7 @@ contract PartyPlanner is OwnableExternal, IPartyPlanner {
|
||||
|
||||
require(protocolFeePpm_ < 1_000_000, "Planner: protocol fee >= ppm");
|
||||
PROTOCOL_FEE_PPM = protocolFeePpm_;
|
||||
PROTOCOL_FEE_ADDRESS = protocolFeeAddress_;
|
||||
protocolFeeAddress = protocolFeeAddress_;
|
||||
}
|
||||
|
||||
/// Main newPool variant: accepts kappa directly (preferred).
|
||||
@@ -120,7 +120,7 @@ contract PartyPlanner is OwnableExternal, IPartyPlanner {
|
||||
swapFeePpm_,
|
||||
flashFeePpm_,
|
||||
PROTOCOL_FEE_PPM,
|
||||
PROTOCOL_FEE_ADDRESS,
|
||||
protocolFeeAddress,
|
||||
WRAPPER,
|
||||
SWAP_IMPL,
|
||||
MINT_IMPL
|
||||
|
||||
@@ -19,6 +19,7 @@ import {SafeERC20} from "../lib/openzeppelin-contracts/contracts/token/ERC20/uti
|
||||
import {IERC3156FlashLender} from "../lib/openzeppelin-contracts/contracts/interfaces/IERC3156FlashLender.sol";
|
||||
import {NativeWrapper} from "./NativeWrapper.sol";
|
||||
import {OwnableExternal} from "./OwnableExternal.sol";
|
||||
import {IPartyPoolViewer} from "./IPartyPoolViewer.sol";
|
||||
|
||||
/// @title PartyPool - LMSR-backed multi-asset pool with LP ERC20 token
|
||||
/// @notice A multi-asset liquidity pool backed by the LMSRStabilized pricing model.
|
||||
@@ -66,8 +67,7 @@ contract PartyPool is PartyPoolBase, OwnableExternal, ERC20External, IPartyPool
|
||||
function protocolFeePpm() external view returns (uint256) { return PROTOCOL_FEE_PPM; }
|
||||
|
||||
/// @notice Address to which collected protocol _tokens will be sent on collectProtocolFees()
|
||||
address private immutable PROTOCOL_FEE_ADDRESS;
|
||||
function protocolFeeAddress() external view returns (address) { return PROTOCOL_FEE_ADDRESS; }
|
||||
address public protocolFeeAddress;
|
||||
|
||||
// @inheritdoc IPartyPool
|
||||
function allProtocolFeesOwed() external view returns (uint256[] memory) { return _protocolFeesOwed; }
|
||||
@@ -138,7 +138,7 @@ contract PartyPool is PartyPoolBase, OwnableExternal, ERC20External, IPartyPool
|
||||
// If the protocolFeePpm_ is set, then also require the fee address to be nonzero
|
||||
require(protocolFeePpm_ == 0 || protocolFeeAddress_ != address(0));
|
||||
PROTOCOL_FEE_PPM = protocolFeePpm_;
|
||||
PROTOCOL_FEE_ADDRESS = protocolFeeAddress_;
|
||||
protocolFeeAddress = protocolFeeAddress_;
|
||||
SWAP_IMPL = swapImpl_;
|
||||
MINT_IMPL = mintImpl_;
|
||||
|
||||
@@ -158,6 +158,14 @@ contract PartyPool is PartyPoolBase, OwnableExternal, ERC20External, IPartyPool
|
||||
_protocolFeesOwed = new uint256[](n);
|
||||
}
|
||||
|
||||
//
|
||||
// Admin operations
|
||||
//
|
||||
|
||||
function setProtocolFeeAddress( address feeAddress ) external onlyOwner {
|
||||
protocolFeeAddress = feeAddress;
|
||||
}
|
||||
|
||||
/// @notice If a security problem is found, the vault owner may call this function to permanently disable swap and
|
||||
/// mint functionality, leaving only burns (withdrawals) working.
|
||||
function kill() external onlyOwner {
|
||||
@@ -259,8 +267,9 @@ contract PartyPool is PartyPoolBase, OwnableExternal, ERC20External, IPartyPool
|
||||
uint256 balJAfter = _cachedUintBalances[outputTokenIndex] + _protocolFeesOwed[outputTokenIndex] - amountOutUint;
|
||||
|
||||
// Accrue protocol share (floor) from the fee on input token
|
||||
uint256 protoShare = 0;
|
||||
if (PROTOCOL_FEE_PPM > 0 && feeUint > 0) {
|
||||
uint256 protoShare = (feeUint * PROTOCOL_FEE_PPM) / 1_000_000; // floor
|
||||
protoShare = (feeUint * PROTOCOL_FEE_PPM) / 1_000_000; // floor
|
||||
if (protoShare > 0) {
|
||||
_protocolFeesOwed[inputTokenIndex] += protoShare;
|
||||
}
|
||||
@@ -279,7 +288,8 @@ contract PartyPool is PartyPoolBase, OwnableExternal, ERC20External, IPartyPool
|
||||
// Transfer output to receiver near the end
|
||||
_sendTokenTo(tokenOut, receiver, amountOutUint, unwrap);
|
||||
|
||||
emit Swap(payer, receiver, tokenIn, tokenOut, totalTransferAmount, amountOutUint);
|
||||
emit Swap(payer, receiver, tokenIn, tokenOut, totalTransferAmount,
|
||||
amountOutUint, feeUint - protoShare, protoShare);
|
||||
|
||||
return (totalTransferAmount, amountOutUint, feeUint);
|
||||
}
|
||||
@@ -450,8 +460,9 @@ contract PartyPool is PartyPoolBase, OwnableExternal, ERC20External, IPartyPool
|
||||
(uint256 fee, ) = _computeFee(amount, FLASH_FEE_PPM);
|
||||
|
||||
// Compute protocol share of flash fee
|
||||
uint256 protoShare = 0;
|
||||
if (PROTOCOL_FEE_PPM > 0 && fee > 0) {
|
||||
uint256 protoShare = (fee * PROTOCOL_FEE_PPM) / 1_000_000; // floor
|
||||
protoShare = (fee * PROTOCOL_FEE_PPM) / 1_000_000; // floor
|
||||
if (protoShare > 0) {
|
||||
_protocolFeesOwed[tokenIndex] += protoShare;
|
||||
}
|
||||
@@ -467,6 +478,8 @@ contract PartyPool is PartyPoolBase, OwnableExternal, ERC20External, IPartyPool
|
||||
require(balAfter >= _protocolFeesOwed[tokenIndex], "balance < protocol owed");
|
||||
_cachedUintBalances[tokenIndex] = balAfter - _protocolFeesOwed[tokenIndex];
|
||||
|
||||
emit Flash(msg.sender, receiver, token, amount, fee-protoShare, protoShare);
|
||||
|
||||
return true;
|
||||
}
|
||||
|
||||
@@ -476,7 +489,7 @@ contract PartyPool is PartyPoolBase, OwnableExternal, ERC20External, IPartyPool
|
||||
function collectProtocolFees() external nonReentrant {
|
||||
bytes memory data = abi.encodeWithSelector(
|
||||
PartyPoolSwapImpl.collectProtocolFees.selector,
|
||||
PROTOCOL_FEE_ADDRESS
|
||||
protocolFeeAddress
|
||||
);
|
||||
Address.functionDelegateCall(address(MINT_IMPL), data);
|
||||
}
|
||||
|
||||
@@ -1,15 +1,20 @@
|
||||
// SPDX-License-Identifier: UNLICENSED
|
||||
pragma solidity ^0.8.30;
|
||||
|
||||
import {ABDKMath64x64} from "../lib/abdk-libraries-solidity/ABDKMath64x64.sol";
|
||||
import {IERC20} from "../lib/openzeppelin-contracts/contracts/token/ERC20/IERC20.sol";
|
||||
import {LMSRBalancedPairPrecomputed} from "./LMSRBalancedPairPrecomputed.sol";
|
||||
import {NativeWrapper} from "./NativeWrapper.sol";
|
||||
import {LMSRStabilizedBalancedPair} from "./LMSRStabilizedBalancedPair.sol";
|
||||
import {PartyPool} from "./PartyPool.sol";
|
||||
import {PartyPoolBase} from "./PartyPoolBase.sol";
|
||||
import {PartyPoolMintImpl} from "./PartyPoolMintImpl.sol";
|
||||
import {PartyPoolSwapImpl} from "./PartyPoolSwapImpl.sol";
|
||||
|
||||
contract PartyPoolBalancedPair is PartyPool {
|
||||
|
||||
LMSRBalancedPairPrecomputed.Precomp internal _precomp;
|
||||
bool internal _precomputed;
|
||||
|
||||
constructor(
|
||||
address owner_,
|
||||
string memory name_,
|
||||
@@ -19,17 +24,32 @@ contract PartyPoolBalancedPair is PartyPool {
|
||||
int128 kappa_,
|
||||
uint256 swapFeePpm_,
|
||||
uint256 flashFeePpm_,
|
||||
uint256 protocolFeePpm_, // NEW: protocol share of fees (ppm)
|
||||
address protocolFeeAddress_, // NEW: recipient for collected protocol tokens
|
||||
uint256 protocolFeePpm_,
|
||||
address protocolFeeAddress_,
|
||||
NativeWrapper wrapperToken_,
|
||||
PartyPoolSwapImpl swapMintImpl_,
|
||||
PartyPoolMintImpl mintImpl_
|
||||
)
|
||||
PartyPool(owner_, name_, symbol_, tokens_, bases_, kappa_, swapFeePpm_, flashFeePpm_, protocolFeePpm_, protocolFeeAddress_, wrapperToken_, swapMintImpl_, mintImpl_)
|
||||
{}
|
||||
{
|
||||
// Initialize kappa early so precompute() can be called before initialMint()
|
||||
_lmsr.kappa = kappa_;
|
||||
}
|
||||
|
||||
function precompute(
|
||||
int128 W,
|
||||
int128 uMax,
|
||||
uint256 NDelta,
|
||||
uint256 NAlpha
|
||||
) external {
|
||||
require(!_precomputed, 'Precomp: already initialized');
|
||||
LMSRBalancedPairPrecomputed.initPrecomputed(_lmsr, _precomp, W, uMax, NDelta, NAlpha );
|
||||
_precomputed = true;
|
||||
}
|
||||
|
||||
function _swapAmountsForExactInput(uint256 i, uint256 j, int128 a, int128 limitPrice) internal virtual override view
|
||||
returns (int128 amountIn, int128 amountOut) {
|
||||
return LMSRStabilizedBalancedPair.swapAmountsForExactInput(_lmsr, i, j, a, limitPrice);
|
||||
// return LMSRStabilizedBalancedPair.swapAmountsForExactInput(_lmsr, i, j, a, limitPrice);
|
||||
return LMSRBalancedPairPrecomputed.swapAmountsForExactInput(_lmsr, _precomp, i, j, a, limitPrice);
|
||||
}
|
||||
}
|
||||
|
||||
@@ -1,10 +1,14 @@
|
||||
// SPDX-License-Identifier: UNLICENSED
|
||||
pragma solidity ^0.8.30;
|
||||
|
||||
import "./PartyPoolMintImpl.sol";
|
||||
import "./PartyPoolSwapImpl.sol";
|
||||
import {ABDKMath64x64} from "../lib/abdk-libraries-solidity/ABDKMath64x64.sol";
|
||||
import {IERC20} from "../lib/openzeppelin-contracts/contracts/token/ERC20/IERC20.sol";
|
||||
import {IPartyPool} from "./IPartyPool.sol";
|
||||
import {NativeWrapper} from "./NativeWrapper.sol";
|
||||
import {PartyPool} from "./PartyPool.sol";
|
||||
import {PartyPoolBalancedPair} from "./PartyPoolBalancedPair.sol";
|
||||
import {PartyPoolMintImpl} from "./PartyPoolMintImpl.sol";
|
||||
import {PartyPoolSwapImpl} from "./PartyPoolSwapImpl.sol";
|
||||
|
||||
// This pattern is needed because the PartyPlanner constructs two different types of pools (regular and balanced-pair)
|
||||
// but doesn't have room to store the initialization code of both contracts. Therefore, we delegate pool construction.
|
||||
@@ -77,7 +81,7 @@ contract PartyPoolBalancedPairDeployer is IPartyPoolDeployer {
|
||||
PartyPoolSwapImpl swapImpl_,
|
||||
PartyPoolMintImpl mintImpl_
|
||||
) external returns (IPartyPool) {
|
||||
return new PartyPoolBalancedPair(
|
||||
PartyPoolBalancedPair pool = new PartyPoolBalancedPair(
|
||||
owner_,
|
||||
name_,
|
||||
symbol_,
|
||||
@@ -92,5 +96,14 @@ contract PartyPoolBalancedPairDeployer is IPartyPoolDeployer {
|
||||
swapImpl_,
|
||||
mintImpl_
|
||||
);
|
||||
|
||||
pool.precompute(
|
||||
ABDKMath64x64.divu(25,10_000), // ±25 bps
|
||||
ABDKMath64x64.divu(10, 100), // taking up to 10% of the pool
|
||||
20, // num Δ samples
|
||||
20 // num α samples
|
||||
);
|
||||
|
||||
return pool;
|
||||
}
|
||||
}
|
||||
|
||||
@@ -424,12 +424,8 @@ contract PartyPoolMintImpl is PartyPoolBase {
|
||||
// Use natural ERC20 function since base contract inherits from ERC20
|
||||
_mint(receiver, actualLpToMint);
|
||||
|
||||
// Emit SwapMint event with gross transfer, net input and fee (planned exact-in)
|
||||
emit IPartyPool.SwapMint(payer, receiver, inputTokenIndex, totalTransfer, amountInUint, feeUintActual);
|
||||
|
||||
// Emit standard Mint event which records deposit amounts and LP minted
|
||||
emit IPartyPool.Mint(payer, receiver, new uint256[](n), actualLpToMint);
|
||||
// Note: depositAmounts array omitted (empty) since swapMint uses single-token input
|
||||
emit IPartyPool.SwapMint(payer, receiver, _tokens[inputTokenIndex],
|
||||
totalTransfer, actualLpToMint, feeUintActual-protoShare, protoShare);
|
||||
|
||||
return actualLpToMint;
|
||||
}
|
||||
@@ -524,7 +520,8 @@ contract PartyPoolMintImpl is PartyPoolBase {
|
||||
}
|
||||
|
||||
// Transfer the payout to receiver via centralized helper
|
||||
_sendTokenTo(_tokens[inputTokenIndex], receiver, amountOutUint, unwrap);
|
||||
IERC20 inputToken = _tokens[inputTokenIndex];
|
||||
_sendTokenTo(inputToken, receiver, amountOutUint, unwrap);
|
||||
|
||||
// Burn LP _tokens from payer (authorization via allowance)
|
||||
if (msg.sender != payer) {
|
||||
@@ -545,9 +542,6 @@ contract PartyPoolMintImpl is PartyPoolBase {
|
||||
newQInternal[idx] = _uintToInternalFloor(newBal, _bases[idx]);
|
||||
}
|
||||
|
||||
// Emit BurnSwap with public-facing info only (do not expose ΔS or LP burned)
|
||||
emit IPartyPool.BurnSwap(payer, receiver, inputTokenIndex, amountOutUint);
|
||||
|
||||
// If entire pool drained, deinit; else update proportionally
|
||||
bool allZero = true;
|
||||
for (uint256 idx = 0; idx < n; idx++) {
|
||||
@@ -559,7 +553,9 @@ contract PartyPoolMintImpl is PartyPoolBase {
|
||||
_lmsr.updateForProportionalChange(newQInternal);
|
||||
}
|
||||
|
||||
emit IPartyPool.Burn(payer, receiver, new uint256[](n), lpAmount);
|
||||
emit IPartyPool.BurnSwap(payer, receiver, inputToken, lpAmount, amountOutUint,
|
||||
feeTokenUint-protoShare, protoShare);
|
||||
|
||||
return amountOutUint;
|
||||
}
|
||||
|
||||
|
||||
@@ -74,18 +74,21 @@ contract PartyPoolSwapImpl is PartyPoolBase {
|
||||
_quoteSwapToLimit(inputTokenIndex, outputTokenIndex, limitPrice, swapFeePpm);
|
||||
|
||||
// Transfer the exact amount needed from payer and require exact receipt (revert on fee-on-transfer)
|
||||
_receiveTokenFrom(payer, _tokens[inputTokenIndex], totalTransferAmount);
|
||||
uint256 balIAfter = IERC20(_tokens[inputTokenIndex]).balanceOf(address(this));
|
||||
IERC20 tokenIn = _tokens[inputTokenIndex];
|
||||
_receiveTokenFrom(payer, tokenIn, totalTransferAmount);
|
||||
uint256 balIAfter = tokenIn.balanceOf(address(this));
|
||||
require(balIAfter == prevBalI + totalTransferAmount, "swapToLimit: non-standard tokenIn");
|
||||
|
||||
// Transfer output to receiver and verify exact decrease
|
||||
_sendTokenTo(_tokens[outputTokenIndex], receiver, amountOutUint, unwrap);
|
||||
uint256 balJAfter = IERC20(_tokens[outputTokenIndex]).balanceOf(address(this));
|
||||
IERC20 tokenOut = _tokens[outputTokenIndex];
|
||||
_sendTokenTo(tokenOut, receiver, amountOutUint, unwrap);
|
||||
uint256 balJAfter = IERC20(tokenOut).balanceOf(address(this));
|
||||
require(balJAfter == prevBalJ - amountOutUint, "swapToLimit: non-standard tokenOut");
|
||||
|
||||
// Accrue protocol share (floor) from the fee on input token
|
||||
uint256 protoShare = 0;
|
||||
if (protocolFeePpm > 0 && feeUint > 0 ) {
|
||||
uint256 protoShare = (feeUint * protocolFeePpm) / 1_000_000; // floor
|
||||
protoShare = (feeUint * protocolFeePpm) / 1_000_000; // floor
|
||||
if (protoShare > 0) {
|
||||
_protocolFeesOwed[inputTokenIndex] += protoShare;
|
||||
}
|
||||
@@ -102,7 +105,8 @@ contract PartyPoolSwapImpl is PartyPoolBase {
|
||||
_lmsr.applySwap(inputTokenIndex, outputTokenIndex, amountInInternalMax, amountOutInternal);
|
||||
|
||||
// Maintain original event semantics (logs input without fee)
|
||||
emit IPartyPool.Swap(payer, receiver, _tokens[inputTokenIndex], _tokens[outputTokenIndex], amountInUsedUint, amountOutUint);
|
||||
emit IPartyPool.Swap(payer, receiver, tokenIn, tokenOut,
|
||||
amountInUsedUint, amountOutUint, feeUint-protoShare, protoShare);
|
||||
|
||||
return (amountInUsedUint, amountOutUint, feeUint);
|
||||
}
|
||||
@@ -164,6 +168,7 @@ contract PartyPoolSwapImpl is PartyPoolBase {
|
||||
// transfer owed _tokens to protocol destination via centralized helper
|
||||
_sendTokenTo(_tokens[i], dest, owed, false);
|
||||
}
|
||||
emit IPartyPool.ProtocolFeesCollected();
|
||||
}
|
||||
|
||||
}
|
||||
|
||||
@@ -1,6 +1,7 @@
|
||||
// SPDX-License-Identifier: UNLICENSED
|
||||
pragma solidity ^0.8.30;
|
||||
|
||||
import {ABDKMath64x64} from "../lib/abdk-libraries-solidity/ABDKMath64x64.sol";
|
||||
import {IERC20} from "../lib/openzeppelin-contracts/contracts/token/ERC20/IERC20.sol";
|
||||
import {NativeWrapper} from "../src/NativeWrapper.sol";
|
||||
import {PartyPlanner} from "../src/PartyPlanner.sol";
|
||||
@@ -66,23 +67,31 @@ library Deploy {
|
||||
NativeWrapper wrapper,
|
||||
bool _stable
|
||||
) internal returns (PartyPool) {
|
||||
return _stable && tokens_.length == 2 ?
|
||||
new PartyPoolBalancedPair(
|
||||
owner_,
|
||||
name_,
|
||||
symbol_,
|
||||
tokens_,
|
||||
bases_,
|
||||
_kappa,
|
||||
_swapFeePpm,
|
||||
_flashFeePpm,
|
||||
PROTOCOL_FEE_PPM,
|
||||
PROTOCOL_FEE_RECEIVER,
|
||||
wrapper,
|
||||
new PartyPoolSwapImpl(wrapper),
|
||||
new PartyPoolMintImpl(wrapper)
|
||||
) :
|
||||
new PartyPool(
|
||||
if(_stable && tokens_.length == 2) {
|
||||
PartyPoolBalancedPair pool = new PartyPoolBalancedPair(
|
||||
owner_,
|
||||
name_,
|
||||
symbol_,
|
||||
tokens_,
|
||||
bases_,
|
||||
_kappa,
|
||||
_swapFeePpm,
|
||||
_flashFeePpm,
|
||||
PROTOCOL_FEE_PPM,
|
||||
PROTOCOL_FEE_RECEIVER,
|
||||
wrapper,
|
||||
new PartyPoolSwapImpl(wrapper),
|
||||
new PartyPoolMintImpl(wrapper)
|
||||
);
|
||||
pool.precompute(
|
||||
ABDKMath64x64.divu(25,10_000), // ±25 bps
|
||||
ABDKMath64x64.divu(10, 100), // taking up to 10% of the pool
|
||||
20, // num Δ samples
|
||||
20 // num α samples
|
||||
);
|
||||
return pool;
|
||||
}
|
||||
return new PartyPool(
|
||||
owner_,
|
||||
name_,
|
||||
symbol_,
|
||||
|
||||
Reference in New Issue
Block a user