编译器
0.8.20+commit.a1b79de6
文件 1 的 30:EIP165.sol
pragma solidity 0.8.20;
abstract contract EIP165 {
function supportsInterface(bytes4 interfaceId) public pure virtual returns (bool) {
return interfaceId == this.supportsInterface.selector;
}
}
文件 2 的 30:ERC1155.sol
pragma solidity ^0.8;
import "../../tokens/IERC1155.sol";
abstract contract ERC1155 is IERC1155 {
event URI(string value, uint256 indexed id);
mapping(address => mapping(uint256 => uint256)) public balanceOf;
mapping(address => mapping(address => bool)) public isApprovedForAll;
function uri(uint256 id) public view virtual returns (string memory);
function setApprovalForAll(address operator, bool approved) public virtual {
isApprovedForAll[msg.sender][operator] = approved;
emit ApprovalForAll(msg.sender, operator, approved);
}
function safeTransferFrom(
address from,
address to,
uint256 id,
uint256 amount,
bytes calldata data
) public virtual {
require(msg.sender == from || isApprovedForAll[from][msg.sender], "NOT_AUTHORIZED");
balanceOf[from][id] -= amount;
balanceOf[to][id] += amount;
emit TransferSingle(msg.sender, from, to, id, amount);
require(
to.code.length == 0
? to != address(0)
: ERC1155TokenReceiverBase(to).onERC1155Received(
msg.sender,
from,
id,
amount,
data
) == ERC1155TokenReceiverBase.onERC1155Received.selector,
"UNSAFE_RECIPIENT"
);
}
function safeBatchTransferFrom(
address from,
address to,
uint256[] calldata ids,
uint256[] calldata amounts,
bytes calldata data
) public virtual {
require(ids.length == amounts.length, "LENGTH_MISMATCH");
require(msg.sender == from || isApprovedForAll[from][msg.sender], "NOT_AUTHORIZED");
uint256 id;
uint256 amount;
for (uint256 i; i < ids.length; ) {
id = ids[i];
amount = amounts[i];
balanceOf[from][id] -= amount;
balanceOf[to][id] += amount;
unchecked {
++i;
}
}
emit TransferBatch(msg.sender, from, to, ids, amounts);
require(
to.code.length == 0
? to != address(0)
: ERC1155TokenReceiverBase(to).onERC1155BatchReceived(
msg.sender,
from,
ids,
amounts,
data
) == ERC1155TokenReceiverBase.onERC1155BatchReceived.selector,
"UNSAFE_RECIPIENT"
);
}
function balanceOfBatch(
address[] calldata owners,
uint256[] calldata ids
) public view virtual returns (uint256[] memory balances) {
require(owners.length == ids.length, "LENGTH_MISMATCH");
balances = new uint256[](owners.length);
unchecked {
for (uint256 i; i < owners.length; ++i) {
balances[i] = balanceOf[owners[i]][ids[i]];
}
}
}
function supportsInterface(bytes4 interfaceId) public view virtual returns (bool) {
return
interfaceId == 0x01ffc9a7 ||
interfaceId == 0xd9b67a26 ||
interfaceId == 0x0e89341c;
}
function _mint(address to, uint256 id, uint256 amount, bytes memory data) internal virtual {
balanceOf[to][id] += amount;
emit TransferSingle(msg.sender, address(0), to, id, amount);
require(
to.code.length == 0
? to != address(0)
: ERC1155TokenReceiverBase(to).onERC1155Received(
msg.sender,
address(0),
id,
amount,
data
) == ERC1155TokenReceiverBase.onERC1155Received.selector,
"UNSAFE_RECIPIENT"
);
}
function _batchMint(
address to,
uint256[] memory ids,
uint256[] memory amounts,
bytes memory data
) internal virtual {
uint256 idsLength = ids.length;
require(idsLength == amounts.length, "LENGTH_MISMATCH");
for (uint256 i; i < idsLength; ) {
balanceOf[to][ids[i]] += amounts[i];
unchecked {
++i;
}
}
emit TransferBatch(msg.sender, address(0), to, ids, amounts);
require(
to.code.length == 0
? to != address(0)
: ERC1155TokenReceiverBase(to).onERC1155BatchReceived(
msg.sender,
address(0),
ids,
amounts,
data
) == ERC1155TokenReceiverBase.onERC1155BatchReceived.selector,
"UNSAFE_RECIPIENT"
);
}
function _batchBurn(
address from,
uint256[] memory ids,
uint256[] memory amounts
) internal virtual {
uint256 idsLength = ids.length;
require(idsLength == amounts.length, "LENGTH_MISMATCH");
for (uint256 i; i < idsLength; ) {
balanceOf[from][ids[i]] -= amounts[i];
unchecked {
++i;
}
}
emit TransferBatch(msg.sender, from, address(0), ids, amounts);
}
function _burn(address from, uint256 id, uint256 amount) internal virtual {
balanceOf[from][id] -= amount;
emit TransferSingle(msg.sender, from, address(0), id, amount);
}
}
abstract contract ERC1155TokenReceiverBase {
function onERC1155Received(
address,
address,
uint256,
uint256,
bytes calldata
) external virtual returns (bytes4) {
return ERC1155TokenReceiverBase.onERC1155Received.selector;
}
function onERC1155BatchReceived(
address,
address,
uint256[] calldata,
uint256[] calldata,
bytes calldata
) external virtual returns (bytes4) {
return ERC1155TokenReceiverBase.onERC1155BatchReceived.selector;
}
}
文件 3 的 30:ERC721.sol
pragma solidity >=0.8.0;
import "../../tokens/IERC721.sol";
import "../../utils/EIP165.sol";
abstract contract ERC721 is IERC721, EIP165 {
error NotMinted();
error ZeroAddress();
error UnsafeRecipient();
error Unauthorized();
string public name;
string public symbol;
function tokenURI(uint256 id ) public virtual returns (string memory);
mapping(uint256 => address) internal _ownerOf;
mapping(address => uint256) internal _balanceOf;
function ownerOf(uint256 id) public view virtual returns (address owner) {
owner = _ownerOf[id];
if (owner == address(0)) {
revert NotMinted();
}
}
function balanceOf(address owner) public view virtual returns (uint256) {
if (owner == address(0)) {
revert ZeroAddress();
}
return _balanceOf[owner];
}
mapping(uint256 => address) public getApproved;
mapping(address => mapping(address => bool)) public isApprovedForAll;
constructor(string memory _name, string memory _symbol) {
name = _name;
symbol = _symbol;
}
function approve(address spender, uint256 id) public virtual {
address owner = _ownerOf[id];
if (msg.sender != owner && !isApprovedForAll[owner][msg.sender]) {
revert Unauthorized();
}
getApproved[id] = spender;
emit Approval(owner, spender, id);
}
function setApprovalForAll(address operator, bool approved) public virtual {
isApprovedForAll[msg.sender][operator] = approved;
emit ApprovalForAll(msg.sender, operator, approved);
}
function transferFrom(address from, address to, uint256 id) public virtual {
if (from != _ownerOf[id]) {
revert Unauthorized();
}
if (to == address(0)) {
revert ZeroAddress();
}
if (
msg.sender != from &&
!isApprovedForAll[from][msg.sender] &&
msg.sender != getApproved[id]
) {
revert Unauthorized();
}
unchecked {
_balanceOf[from]--;
_balanceOf[to]++;
}
_ownerOf[id] = to;
delete getApproved[id];
emit Transfer(from, to, id);
}
function safeTransferFrom(address from, address to, uint256 id) public virtual {
transferFrom(from, to, id);
if (
to.code.length != 0 &&
ERC721TokenReceiver(to).onERC721Received(msg.sender, from, id, "") !=
ERC721TokenReceiver.onERC721Received.selector
) {
revert UnsafeRecipient();
}
}
function safeTransferFrom(
address from,
address to,
uint256 id,
bytes calldata data
) public virtual {
transferFrom(from, to, id);
if (
to.code.length != 0 &&
ERC721TokenReceiver(to).onERC721Received(msg.sender, from, id, data) !=
ERC721TokenReceiver.onERC721Received.selector
) {
revert UnsafeRecipient();
}
}
function supportsInterface(bytes4 interfaceId) public pure virtual override returns (bool) {
return
super.supportsInterface(interfaceId) ||
interfaceId == 0x80ac58cd ||
interfaceId == 0x5b5e139f;
}
function _mint(address to, uint256 id) internal virtual {
if (to == address(0)) {
revert ZeroAddress();
}
if (_ownerOf[id] != address(0)) {
revert Unauthorized();
}
unchecked {
_balanceOf[to]++;
}
_ownerOf[id] = to;
emit Transfer(address(0), to, id);
}
function _burn(uint256 id) internal virtual {
address owner = _ownerOf[id];
if (owner == address(0)) {
revert Unauthorized();
}
unchecked {
_balanceOf[owner]--;
}
delete _ownerOf[id];
delete getApproved[id];
emit Transfer(owner, address(0), id);
}
function _safeMint(address to, uint256 id) internal virtual {
_mint(to, id);
if (
to.code.length != 0 &&
ERC721TokenReceiver(to).onERC721Received(msg.sender, address(0), id, "") !=
ERC721TokenReceiver.onERC721Received.selector
) {
revert UnsafeRecipient();
}
}
function _safeMint(address to, uint256 id, bytes memory data) internal virtual {
_mint(to, id);
if (
to.code.length != 0 &&
ERC721TokenReceiver(to).onERC721Received(msg.sender, address(0), id, data) !=
ERC721TokenReceiver.onERC721Received.selector
) {
revert UnsafeRecipient();
}
}
}
abstract contract ERC721TokenReceiver {
function onERC721Received(
address,
address,
uint256,
bytes calldata
) external virtual returns (bytes4) {
return ERC721TokenReceiver.onERC721Received.selector;
}
}
文件 4 的 30:IERC1155.sol
pragma solidity ^0.8;
interface IERC1155 {
event TransferSingle(
address indexed operator,
address indexed from,
address indexed to,
uint256 id,
uint256 amount
);
event TransferBatch(
address indexed operator,
address indexed from,
address indexed to,
uint256[] ids,
uint256[] amounts
);
event ApprovalForAll(address indexed owner, address indexed operator, bool approved);
function setApprovalForAll(address operator, bool approved) external;
function safeTransferFrom(
address from,
address to,
uint256 id,
uint256 amount,
bytes calldata data
) external;
function safeBatchTransferFrom(
address from,
address to,
uint256[] calldata ids,
uint256[] calldata amounts,
bytes calldata data
) external;
function balanceOf(address owner, uint256 tokenId) external view returns (uint256);
function isApprovedForAll(address owner, address spender) external view returns (bool);
function balanceOfBatch(
address[] calldata owners,
uint256[] calldata ids
) external view returns (uint256[] memory balances);
}
文件 5 的 30:IERC165.sol
pragma solidity ^0.8.19;
interface IERC165 {
function supportsInterface(bytes4 interfaceId) external view returns (bool);
}
文件 6 的 30:IERC20.sol
pragma solidity ^0.8;
interface IERC20 {
event Transfer(address indexed owner, address indexed to, uint256 amount);
event Approval(address indexed owner, address indexed spender, uint256 allowance);
function transfer(address to, uint256 amount) external returns (bool);
function transferFrom(address from, address to, uint256 amount) external returns (bool);
function approve(address spender, uint256 allowance) external returns (bool);
function allowance(address owner, address spender) external view returns (uint256);
function balanceOf(address owner) external view returns (uint256);
}
文件 7 的 30:IERC2981.sol
pragma solidity ^0.8.19;
import "../utils/introspection/IERC165.sol";
interface IERC2981 is IERC165 {
function royaltyInfo(
uint256 tokenId,
uint256 salePrice
) external view returns (address receiver, uint256 royaltyAmount);
}
文件 8 的 30:IERC4906.sol
pragma solidity ^0.8;
interface IERC4906 {
event MetadataUpdate(uint256 _tokenId);
event BatchMetadataUpdate(uint256 _fromTokenId, uint256 _toTokenId);
}
文件 9 的 30:IERC721.sol
pragma solidity ^0.8;
interface IERC721 {
event Transfer(address indexed owner, address indexed to, uint256 indexed tokenId);
event Approval(address indexed owner, address indexed operator, uint256 indexed tokenId);
event ApprovalForAll(address indexed owner, address indexed operator, bool approved);
function transferFrom(address from, address to, uint256 tokenId) external;
function safeTransferFrom(
address from,
address to,
uint256 tokenId,
bytes calldata data
) external;
function safeTransferFrom(address from, address to, uint256 tokenId) external;
function approve(address operator, uint256 tokenId) external;
function setApprovalForAll(address operator, bool isApproved) external;
function name() external view returns (string memory);
function symbol() external view returns (string memory);
function getApproved(uint256 tokenId) external view returns (address);
function isApprovedForAll(address owner, address operator) external view returns (bool);
function ownerOf(uint256 tokenId) external view returns (address);
function balanceOf(address owner) external view returns (uint256);
}
文件 10 的 30:IERC721Receiver.sol
pragma solidity ^0.8;
interface IERC721Receiver {
function onERC721Received(
address operator,
address from,
uint256 tokenId,
bytes memory data
) external returns (bytes4);
}
文件 11 的 30:IGlobals.sol
pragma solidity 0.8.20;
import "../utils/Implementation.sol";
interface IGlobals {
function multiSig() external view returns (address);
function getBytes32(uint256 key) external view returns (bytes32);
function getUint256(uint256 key) external view returns (uint256);
function getBool(uint256 key) external view returns (bool);
function getAddress(uint256 key) external view returns (address);
function getImplementation(uint256 key) external view returns (Implementation);
function getIncludesBytes32(uint256 key, bytes32 value) external view returns (bool);
function getIncludesUint256(uint256 key, uint256 value) external view returns (bool);
function getIncludesAddress(uint256 key, address value) external view returns (bool);
function setBytes32(uint256 key, bytes32 value) external;
function setUint256(uint256 key, uint256 value) external;
function setBool(uint256 key, bool value) external;
function setAddress(uint256 key, address value) external;
function setIncludesBytes32(uint256 key, bytes32 value, bool isIncluded) external;
function setIncludesUint256(uint256 key, uint256 value, bool isIncluded) external;
function setIncludesAddress(uint256 key, address value, bool isIncluded) external;
}
文件 12 的 30:IProposalExecutionEngine.sol
pragma solidity 0.8.20;
import "../tokens/IERC721.sol";
interface IProposalExecutionEngine {
struct ExecuteProposalParams {
uint256 proposalId;
bytes proposalData;
bytes progressData;
bytes extraData;
uint256 flags;
IERC721[] preciousTokens;
uint256[] preciousTokenIds;
}
function initialize(address oldImpl, bytes memory initData) external;
function executeProposal(
ExecuteProposalParams memory params
) external payable returns (bytes memory nextProgressData);
function cancelProposal(uint256 proposalId) external;
}
文件 13 的 30:ITokenDistributor.sol
pragma solidity 0.8.20;
import "../tokens/IERC20.sol";
import "../party/Party.sol";
interface ITokenDistributor {
enum TokenType {
Native,
Erc20
}
struct DistributionInfo {
TokenType tokenType;
uint256 distributionId;
Party party;
address payable feeRecipient;
address token;
uint128 memberSupply;
uint128 fee;
uint96 totalShares;
}
event DistributionCreated(Party indexed party, DistributionInfo info);
event DistributionFeeClaimed(
Party indexed party,
address indexed feeRecipient,
TokenType tokenType,
address token,
uint256 amount
);
event DistributionClaimedByPartyToken(
Party indexed party,
uint256 indexed partyTokenId,
address indexed owner,
TokenType tokenType,
address token,
uint256 amountClaimed
);
function createNativeDistribution(
Party party,
address payable feeRecipient,
uint16 feeBps
) external payable returns (DistributionInfo memory info);
function createErc20Distribution(
IERC20 token,
Party party,
address payable feeRecipient,
uint16 feeBps
) external returns (DistributionInfo memory info);
function claim(
DistributionInfo calldata info,
uint256 partyTokenId
) external returns (uint128 amountClaimed);
function claimFee(DistributionInfo calldata info, address payable recipient) external;
function batchClaim(
DistributionInfo[] calldata infos,
uint256[] calldata partyTokenIds
) external returns (uint128[] memory amountsClaimed);
function batchClaimFee(
DistributionInfo[] calldata infos,
address payable[] calldata recipients
) external;
function getClaimAmount(
DistributionInfo calldata info,
uint256 partyTokenId
) external view returns (uint128);
function wasFeeClaimed(Party party, uint256 distributionId) external view returns (bool);
function hasPartyTokenIdClaimed(
Party party,
uint256 partyTokenId,
uint256 distributionId
) external view returns (bool);
function getRemainingMemberSupply(
Party party,
uint256 distributionId
) external view returns (uint128);
}
文件 14 的 30:Implementation.sol
pragma solidity 0.8.20;
abstract contract Implementation {
event Initialized();
error AlreadyInitialized();
error OnlyDelegateCallError();
address public immutable implementation;
bool public initialized;
constructor() {
implementation = address(this);
}
modifier onlyDelegateCall() virtual {
if (address(this) == implementation) {
revert OnlyDelegateCallError();
}
_;
}
modifier onlyInitialize() {
if (initialized) revert AlreadyInitialized();
initialized = true;
emit Initialized();
_;
}
function IMPL() external view returns (address) {
return implementation;
}
}
文件 15 的 30:LibAddress.sol
pragma solidity 0.8.20;
library LibAddress {
error EthTransferFailed(address receiver, bytes errData);
function transferEth(address payable receiver, uint256 amount) internal {
if (amount == 0) return;
(bool s, bytes memory r) = receiver.call{ value: amount }("");
if (!s) {
revert EthTransferFailed(receiver, r);
}
}
}
文件 16 的 30:LibERC20Compat.sol
pragma solidity 0.8.20;
import "../tokens/IERC20.sol";
library LibERC20Compat {
error NotATokenError(IERC20 token);
error TokenTransferFailedError(IERC20 token, address to, uint256 amount);
error TokenApprovalFailed(IERC20 token, address spender, uint256 amount);
function compatTransfer(IERC20 token, address to, uint256 amount) internal {
(bool s, bytes memory r) = address(token).call(
abi.encodeCall(IERC20.transfer, (to, amount))
);
if (s) {
if (r.length == 0) {
uint256 cs;
assembly {
cs := extcodesize(token)
}
if (cs == 0) {
revert NotATokenError(token);
}
return;
}
if (abi.decode(r, (bool))) {
return;
}
}
revert TokenTransferFailedError(token, to, amount);
}
function compatTransferFrom(IERC20 token, address from, address to, uint256 amount) internal {
(bool s, bytes memory r) = address(token).call(
abi.encodeCall(IERC20.transferFrom, (from, to, amount))
);
if (s) {
if (r.length == 0) {
uint256 cs;
assembly {
cs := extcodesize(token)
}
if (cs == 0) {
revert NotATokenError(token);
}
return;
}
if (abi.decode(r, (bool))) {
return;
}
}
revert TokenTransferFailedError(token, to, amount);
}
function compatApprove(IERC20 token, address spender, uint256 amount) internal {
(bool s, bytes memory r) = address(token).call(
abi.encodeCall(IERC20.approve, (spender, amount))
);
if (s) {
if (r.length == 0) {
uint256 cs;
assembly {
cs := extcodesize(token)
}
if (cs == 0) {
revert NotATokenError(token);
}
return;
}
if (abi.decode(r, (bool))) {
return;
}
}
revert TokenApprovalFailed(token, spender, amount);
}
}
文件 17 的 30:LibGlobals.sol
pragma solidity 0.8.20;
library LibGlobals {
uint256 internal constant GLOBAL_PARTY_IMPL = 1;
uint256 internal constant GLOBAL_PROPOSAL_ENGINE_IMPL = 2;
uint256 internal constant GLOBAL_PARTY_FACTORY = 3;
uint256 internal constant GLOBAL_GOVERNANCE_NFT_RENDER_IMPL = 4;
uint256 internal constant GLOBAL_CF_NFT_RENDER_IMPL = 5;
uint256 internal constant GLOBAL_OS_ZORA_AUCTION_TIMEOUT = 6;
uint256 internal constant GLOBAL_OS_ZORA_AUCTION_DURATION = 7;
uint256 internal constant GLOBAL_DAO_WALLET = 11;
uint256 internal constant GLOBAL_TOKEN_DISTRIBUTOR = 12;
uint256 internal constant GLOBAL_OPENSEA_CONDUIT_KEY = 13;
uint256 internal constant GLOBAL_OPENSEA_ZONE = 14;
uint256 internal constant GLOBAL_PROPOSAL_MAX_CANCEL_DURATION = 15;
uint256 internal constant GLOBAL_ZORA_MIN_AUCTION_DURATION = 16;
uint256 internal constant GLOBAL_ZORA_MAX_AUCTION_DURATION = 17;
uint256 internal constant GLOBAL_ZORA_MAX_AUCTION_TIMEOUT = 18;
uint256 internal constant GLOBAL_OS_MIN_ORDER_DURATION = 19;
uint256 internal constant GLOBAL_OS_MAX_ORDER_DURATION = 20;
uint256 internal constant GLOBAL_DISABLE_PARTY_ACTIONS = 21;
uint256 internal constant GLOBAL_RENDERER_STORAGE = 22;
uint256 internal constant GLOBAL_PROPOSAL_MIN_CANCEL_DURATION = 23;
uint256 internal constant GLOBAL_METADATA_REGISTRY = 26;
uint256 internal constant GLOBAL_SEAPORT = 30;
uint256 internal constant GLOBAL_CONDUIT_CONTROLLER = 31;
uint256 internal constant GLOBAL_OFF_CHAIN_SIGNATURE_VALIDATOR = 32;
}
文件 18 的 30:LibProposal.sol
pragma solidity 0.8.20;
import "../tokens/IERC721.sol";
library LibProposal {
uint256 internal constant PROPOSAL_FLAG_UNANIMOUS = 0x1;
uint256 internal constant PROPOSAL_FLAG_HOSTS_ACCEPT = 0x2;
function isTokenPrecious(
IERC721 token,
IERC721[] memory preciousTokens
) internal pure returns (bool) {
for (uint256 i; i < preciousTokens.length; ++i) {
if (token == preciousTokens[i]) {
return true;
}
}
return false;
}
function isTokenIdPrecious(
IERC721 token,
uint256 tokenId,
IERC721[] memory preciousTokens,
uint256[] memory preciousTokenIds
) internal pure returns (bool) {
for (uint256 i; i < preciousTokens.length; ++i) {
if (token == preciousTokens[i] && tokenId == preciousTokenIds[i]) {
return true;
}
}
return false;
}
}
文件 19 的 30:LibRawResult.sol
pragma solidity 0.8.20;
library LibRawResult {
function rawRevert(bytes memory b) internal pure {
assembly {
revert(add(b, 32), mload(b))
}
}
function rawReturn(bytes memory b) internal pure {
assembly {
return(add(b, 32), mload(b))
}
}
}
文件 20 的 30:LibSafeCast.sol
pragma solidity 0.8.20;
library LibSafeCast {
error Uint256ToUint96CastOutOfRange(uint256 v);
error Uint256ToInt192CastOutOfRange(uint256 v);
error Int192ToUint96CastOutOfRange(int192 i192);
error Uint256ToInt128CastOutOfRangeError(uint256 u256);
error Uint256ToUint128CastOutOfRangeError(uint256 u256);
error Uint256ToUint40CastOutOfRangeError(uint256 u256);
error Uint96ToUint16CastOutOfRange(uint96 u96);
function safeCastUint256ToUint96(uint256 v) internal pure returns (uint96) {
if (v > uint256(type(uint96).max)) {
revert Uint256ToUint96CastOutOfRange(v);
}
return uint96(v);
}
function safeCastUint256ToUint128(uint256 v) internal pure returns (uint128) {
if (v > uint256(type(uint128).max)) {
revert Uint256ToUint128CastOutOfRangeError(v);
}
return uint128(v);
}
function safeCastUint256ToUint160(uint256 v) internal pure returns (uint160) {
if (v > uint256(type(uint160).max)) {
revert Uint256ToUint128CastOutOfRangeError(v);
}
return uint160(v);
}
function safeCastUint256ToInt192(uint256 v) internal pure returns (int192) {
if (v > uint256(uint192(type(int192).max))) {
revert Uint256ToInt192CastOutOfRange(v);
}
return int192(uint192(v));
}
function safeCastUint96ToUint16(uint96 v) internal pure returns (uint16) {
if (v > uint96(type(uint16).max)) {
revert Uint96ToUint16CastOutOfRange(v);
}
return uint16(v);
}
function safeCastUint96ToInt192(uint96 v) internal pure returns (int192) {
return int192(uint192(v));
}
function safeCastInt192ToUint96(int192 i192) internal pure returns (uint96) {
if (i192 < 0 || i192 > int192(uint192(type(uint96).max))) {
revert Int192ToUint96CastOutOfRange(i192);
}
return uint96(uint192(i192));
}
function safeCastUint256ToInt128(uint256 x) internal pure returns (int128) {
if (x > uint256(uint128(type(int128).max))) {
revert Uint256ToInt128CastOutOfRangeError(x);
}
return int128(uint128(x));
}
function safeCastUint256ToUint40(uint256 x) internal pure returns (uint40) {
if (x > uint256(type(uint40).max)) {
revert Uint256ToUint40CastOutOfRangeError(x);
}
return uint40(x);
}
}
文件 21 的 30:Multicall.sol
pragma solidity 0.8.20;
import "../utils/LibRawResult.sol";
abstract contract Multicall {
using LibRawResult for bytes;
function multicall(bytes[] calldata multicallData) external {
for (uint256 i; i < multicallData.length; ++i) {
(bool s, bytes memory r) = address(this).delegatecall(multicallData[i]);
if (!s) {
r.rawRevert();
}
}
}
}
文件 22 的 30:Party.sol
pragma solidity 0.8.20;
import "../tokens/IERC721.sol";
import "./PartyGovernanceNFT.sol";
import "./PartyGovernance.sol";
contract Party is PartyGovernanceNFT {
struct PartyOptions {
PartyGovernance.GovernanceOpts governance;
ProposalStorage.ProposalEngineOpts proposalEngine;
string name;
string symbol;
uint256 customizationPresetId;
}
struct PartyInitData {
PartyOptions options;
IERC721[] preciousTokens;
uint256[] preciousTokenIds;
address[] authorities;
uint40 rageQuitTimestamp;
}
uint16 public constant VERSION_ID = 2;
constructor(IGlobals globals) PartyGovernanceNFT(globals) {}
function initialize(PartyInitData memory initData) external onlyInitialize {
PartyGovernanceNFT._initialize(
initData.options.name,
initData.options.symbol,
initData.options.customizationPresetId,
initData.options.governance,
initData.options.proposalEngine,
initData.preciousTokens,
initData.preciousTokenIds,
initData.authorities,
initData.rageQuitTimestamp
);
}
receive() external payable {}
}
文件 23 的 30:PartyGovernance.sol
pragma solidity 0.8.20;
import { ITokenDistributor } from "../distribution/ITokenDistributor.sol";
import { ReadOnlyDelegateCall } from "../utils/ReadOnlyDelegateCall.sol";
import { IERC721 } from "../tokens/IERC721.sol";
import { IERC20 } from "../tokens/IERC20.sol";
import { IERC721Receiver } from "../tokens/IERC721Receiver.sol";
import { ERC1155TokenReceiverBase } from "../vendor/solmate/ERC1155.sol";
import { LibERC20Compat } from "../utils/LibERC20Compat.sol";
import { LibRawResult } from "../utils/LibRawResult.sol";
import { LibSafeCast } from "../utils/LibSafeCast.sol";
import { IERC4906 } from "../utils/IERC4906.sol";
import { IGlobals } from "../globals/IGlobals.sol";
import { LibGlobals } from "../globals/LibGlobals.sol";
import { IProposalExecutionEngine } from "../proposals/IProposalExecutionEngine.sol";
import { LibProposal } from "../proposals/LibProposal.sol";
import { ProposalStorage } from "../proposals/ProposalStorage.sol";
import { Implementation } from "../utils/Implementation.sol";
import { Party } from "./Party.sol";
abstract contract PartyGovernance is
ProposalStorage,
Implementation,
IERC4906,
ReadOnlyDelegateCall
{
using LibERC20Compat for IERC20;
using LibRawResult for bytes;
using LibSafeCast for uint256;
using LibSafeCast for int192;
using LibSafeCast for uint96;
enum ProposalStatus {
Invalid,
Voting,
Defeated,
Passed,
Ready,
InProgress,
Complete,
Cancelled
}
struct GovernanceOpts {
address[] hosts;
uint40 voteDuration;
uint40 executionDelay;
uint16 passThresholdBps;
uint96 totalVotingPower;
uint16 feeBps;
address payable feeRecipient;
}
struct VotingPowerSnapshot {
uint40 timestamp;
uint96 delegatedVotingPower;
uint96 intrinsicVotingPower;
bool isDelegated;
}
struct Proposal {
uint40 maxExecutableTime;
uint40 cancelDelay;
bytes proposalData;
}
struct ProposalStateValues {
uint40 proposedTime;
uint40 passedTime;
uint40 executedTime;
uint40 completedTime;
uint96 votes;
uint96 totalVotingPower;
uint8 numHosts;
uint8 numHostsAccepted;
uint40 voteDuration;
uint40 executionDelay;
uint16 passThresholdBps;
}
struct ProposalState {
ProposalStateValues values;
bytes32 hash;
mapping(address => bool) hasVoted;
}
event Proposed(uint256 proposalId, address proposer, Proposal proposal);
event ProposalAccepted(uint256 proposalId, address voter, uint256 weight);
event EmergencyExecute(address target, bytes data, uint256 amountEth);
event ProposalPassed(uint256 indexed proposalId);
event ProposalVetoed(uint256 indexed proposalId, address host);
event ProposalExecuted(uint256 indexed proposalId, address executor, bytes nextProgressData);
event ProposalCancelled(uint256 indexed proposalId);
event DistributionCreated(
ITokenDistributor.TokenType tokenType,
address token,
uint256 tokenId
);
event PartyDelegateUpdated(address indexed owner, address indexed delegate);
event HostStatusTransferred(address oldHost, address newHost);
event EmergencyExecuteDisabled();
event PartyVotingSnapshotCreated(
address indexed voter,
uint40 timestamp,
uint96 delegatedVotingPower,
uint96 intrinsicVotingPower,
bool isDelegated
);
error MismatchedPreciousListLengths();
error BadProposalStatusError(ProposalStatus status);
error BadProposalHashError(bytes32 proposalHash, bytes32 actualHash);
error ExecutionTimeExceededError(uint40 maxExecutableTime, uint40 timestamp);
error NotAuthorized();
error InvalidDelegateError();
error BadPreciousListError();
error OnlyWhenEmergencyActionsAllowedError();
error OnlyWhenEnabledError();
error AlreadyVotedError(address voter);
error InvalidNewHostError();
error ProposalCannotBeCancelledYetError(uint40 currentTime, uint40 cancelTime);
error InvalidBpsError(uint16 bps);
error InvalidGovernanceParameter(uint256 value);
error DistributionsRequireVoteError();
error PartyNotStartedError();
error CannotModifyTotalVotingPowerAndAcceptError();
error TooManyHosts();
uint256 private constant UINT40_HIGH_BIT = 1 << 39;
uint96 private constant VETO_VALUE = type(uint96).max;
IGlobals private immutable _GLOBALS;
bool public emergencyExecuteDisabled;
uint16 public feeBps;
address payable public feeRecipient;
uint40 public lastTotalVotingPowerChangeTimestamp;
bytes32 public preciousListHash;
uint256 public lastProposalId;
mapping(address => bool) public isHost;
mapping(address => address) public delegationsByVoter;
uint8 public numHosts;
mapping(uint256 => ProposalState) private _proposalStateByProposalId;
mapping(address => VotingPowerSnapshot[]) private _votingPowerSnapshotsByVoter;
function _assertHost() internal view {
if (!isHost[msg.sender]) {
revert NotAuthorized();
}
}
function _assertActiveMember() internal view {
VotingPowerSnapshot memory snap = _getLastVotingPowerSnapshotForVoter(msg.sender);
if (snap.intrinsicVotingPower == 0 && snap.delegatedVotingPower == 0) {
revert NotAuthorized();
}
}
modifier onlyPartyDao() {
{
address partyDao = _GLOBALS.getAddress(LibGlobals.GLOBAL_DAO_WALLET);
if (msg.sender != partyDao) {
revert NotAuthorized();
}
}
_;
}
modifier onlyPartyDaoOrHost() {
address partyDao = _GLOBALS.getAddress(LibGlobals.GLOBAL_DAO_WALLET);
if (msg.sender != partyDao && !isHost[msg.sender]) {
revert NotAuthorized();
}
_;
}
modifier onlyWhenEmergencyExecuteAllowed() {
if (emergencyExecuteDisabled) {
revert OnlyWhenEmergencyActionsAllowedError();
}
_;
}
function _assertNotGloballyDisabled() internal view {
if (_GLOBALS.getBool(LibGlobals.GLOBAL_DISABLE_PARTY_ACTIONS)) {
revert OnlyWhenEnabledError();
}
}
constructor(IGlobals globals) {
_GLOBALS = globals;
}
function _initialize(
GovernanceOpts memory govOpts,
ProposalStorage.ProposalEngineOpts memory proposalEngineOpts,
IERC721[] memory preciousTokens,
uint256[] memory preciousTokenIds
) internal virtual {
if (govOpts.feeBps > 1e4) {
revert InvalidBpsError(govOpts.feeBps);
}
if (govOpts.voteDuration < 1 hours) {
revert InvalidGovernanceParameter(govOpts.voteDuration);
}
if (govOpts.passThresholdBps == 0 || govOpts.passThresholdBps > 1e4) {
revert InvalidBpsError(govOpts.passThresholdBps);
}
if (govOpts.executionDelay == 0 || govOpts.executionDelay > 30 days) {
revert InvalidGovernanceParameter(govOpts.executionDelay);
}
_initProposalImpl(
IProposalExecutionEngine(_GLOBALS.getAddress(LibGlobals.GLOBAL_PROPOSAL_ENGINE_IMPL)),
abi.encode(proposalEngineOpts)
);
_getSharedProposalStorage().governanceValues = GovernanceValues({
voteDuration: govOpts.voteDuration,
executionDelay: govOpts.executionDelay,
passThresholdBps: govOpts.passThresholdBps,
totalVotingPower: govOpts.totalVotingPower
});
numHosts = uint8(govOpts.hosts.length);
feeBps = govOpts.feeBps;
feeRecipient = govOpts.feeRecipient;
_setPreciousList(preciousTokens, preciousTokenIds);
if (govOpts.hosts.length > type(uint8).max) {
revert TooManyHosts();
}
for (uint256 i = 0; i < govOpts.hosts.length; ++i) {
isHost[govOpts.hosts[i]] = true;
}
}
fallback() external {
bytes4 functionSelector = bytes4(msg.data[0:4]);
if (
functionSelector == ERC1155TokenReceiverBase.onERC1155BatchReceived.selector ||
functionSelector == ERC1155TokenReceiverBase.onERC1155Received.selector ||
functionSelector == IERC721Receiver.onERC721Received.selector
) {
assembly {
let freeMem := mload(0x40)
mstore(freeMem, functionSelector)
mstore(0x40, add(freeMem, 0x20))
return(freeMem, 0x20)
}
}
_readOnlyDelegateCall(address(_getSharedProposalStorage().engineImpl), msg.data);
}
function supportsInterface(bytes4 interfaceId) public pure virtual returns (bool) {
return
interfaceId == type(IERC721Receiver).interfaceId ||
interfaceId == type(ERC1155TokenReceiverBase).interfaceId;
}
function getProposalExecutionEngine() external view returns (IProposalExecutionEngine) {
return _getSharedProposalStorage().engineImpl;
}
function getProposalEngineOpts() external view returns (ProposalEngineOpts memory) {
return _getSharedProposalStorage().opts;
}
function getVotingPowerAt(
address voter,
uint40 timestamp,
uint256 snapIndex
) public view returns (uint96 votingPower) {
VotingPowerSnapshot memory snap = _getVotingPowerSnapshotAt(voter, timestamp, snapIndex);
return (snap.isDelegated ? 0 : snap.intrinsicVotingPower) + snap.delegatedVotingPower;
}
function getProposalStateInfo(
uint256 proposalId
) external view returns (ProposalStatus status, ProposalStateValues memory values) {
values = _proposalStateByProposalId[proposalId].values;
status = _getProposalStatus(values);
}
function getGovernanceValues() external view returns (GovernanceValues memory) {
return _getSharedProposalStorage().governanceValues;
}
function getProposalHash(Proposal memory proposal) public pure returns (bytes32 proposalHash) {
bytes32 dataHash = keccak256(proposal.proposalData);
assembly {
let dataPos := add(proposal, 0x40)
let t := mload(dataPos)
mstore(dataPos, dataHash)
proposalHash := keccak256(proposal, 0x60)
mstore(dataPos, t)
}
}
function findVotingPowerSnapshotIndex(
address voter,
uint40 timestamp
) public view returns (uint256 index) {
VotingPowerSnapshot[] storage snaps = _votingPowerSnapshotsByVoter[voter];
uint256 high = snaps.length;
uint256 low = 0;
while (low < high) {
uint256 mid = (low + high) / 2;
if (snaps[mid].timestamp > timestamp) {
high = mid;
} else {
low = mid + 1;
}
}
return high == 0 ? type(uint256).max : high - 1;
}
function delegateVotingPower(address delegate) external {
_adjustVotingPower(msg.sender, 0, delegate);
}
function abdicateHost(address newPartyHost) external {
_assertHost();
if (newPartyHost != address(0)) {
revert InvalidNewHostError();
} else {
--numHosts;
}
isHost[msg.sender] = false;
emit HostStatusTransferred(msg.sender, newPartyHost);
}
function distribute(
uint256 amount,
ITokenDistributor.TokenType tokenType,
address token,
uint256 tokenId
) external returns (ITokenDistributor.DistributionInfo memory distInfo) {
_assertNotGloballyDisabled();
if (msg.sender != address(this)) {
if (
_getSharedProposalStorage().opts.distributionsConfig !=
DistributionsConfig.AllowedWithoutVote
) {
revert DistributionsRequireVoteError();
}
VotingPowerSnapshot memory snap = _getLastVotingPowerSnapshotForVoter(msg.sender);
if (snap.intrinsicVotingPower == 0 && snap.delegatedVotingPower == 0) {
revert NotAuthorized();
}
}
if (_getSharedProposalStorage().governanceValues.totalVotingPower == 0) {
revert PartyNotStartedError();
}
ITokenDistributor distributor = ITokenDistributor(
_GLOBALS.getAddress(LibGlobals.GLOBAL_TOKEN_DISTRIBUTOR)
);
emit DistributionCreated(tokenType, token, tokenId);
_emitMetadataUpdateEvent();
address payable feeRecipient_ = feeRecipient;
uint16 feeBps_ = feeBps;
if (tokenType == ITokenDistributor.TokenType.Native) {
return
distributor.createNativeDistribution{ value: amount }(
Party(payable(address(this))),
feeRecipient_,
feeBps_
);
}
assert(tokenType == ITokenDistributor.TokenType.Erc20);
IERC20(token).compatTransfer(address(distributor), amount);
return
distributor.createErc20Distribution(
IERC20(token),
Party(payable(address(this))),
feeRecipient_,
feeBps_
);
}
function propose(
Proposal memory proposal,
uint256 latestSnapIndex
) external returns (uint256 proposalId) {
_assertActiveMember();
proposalId = ++lastProposalId;
ProposalStorage.GovernanceValues memory gv = _getSharedProposalStorage().governanceValues;
(
_proposalStateByProposalId[proposalId].values,
_proposalStateByProposalId[proposalId].hash
) = (
ProposalStateValues({
proposedTime: uint40(block.timestamp),
passedTime: 0,
executedTime: 0,
completedTime: 0,
votes: 0,
totalVotingPower: gv.totalVotingPower,
numHosts: numHosts,
numHostsAccepted: 0,
voteDuration: gv.voteDuration,
executionDelay: gv.executionDelay,
passThresholdBps: gv.passThresholdBps
}),
getProposalHash(proposal)
);
emit Proposed(proposalId, msg.sender, proposal);
accept(proposalId, latestSnapIndex);
_emitMetadataUpdateEvent();
}
function accept(uint256 proposalId, uint256 snapIndex) public returns (uint256 totalVotes) {
ProposalState storage info = _proposalStateByProposalId[proposalId];
ProposalStateValues memory values = info.values;
{
ProposalStatus status = _getProposalStatus(values);
if (
status != ProposalStatus.Voting &&
status != ProposalStatus.Passed &&
status != ProposalStatus.Ready
) {
revert BadProposalStatusError(status);
}
}
if (lastTotalVotingPowerChangeTimestamp == block.timestamp) {
revert CannotModifyTotalVotingPowerAndAcceptError();
}
if (info.hasVoted[msg.sender]) {
revert AlreadyVotedError(msg.sender);
}
info.hasVoted[msg.sender] = true;
uint96 votingPower = getVotingPowerAt(msg.sender, values.proposedTime - 1, snapIndex);
values.votes += votingPower;
if (isHost[msg.sender]) {
++values.numHostsAccepted;
}
info.values = values;
emit ProposalAccepted(proposalId, msg.sender, votingPower);
if (
values.passedTime == 0 &&
(uint256(values.votes) * 1e4) / uint256(values.totalVotingPower) >=
uint256(values.passThresholdBps)
) {
info.values.passedTime = uint40(block.timestamp);
emit ProposalPassed(proposalId);
_emitMetadataUpdateEvent();
}
return values.votes;
}
function veto(uint256 proposalId) external {
_assertHost();
ProposalState storage info = _proposalStateByProposalId[proposalId];
ProposalStateValues memory values = info.values;
{
ProposalStatus status = _getProposalStatus(values);
if (
status != ProposalStatus.Voting &&
status != ProposalStatus.Passed &&
status != ProposalStatus.Ready
) {
revert BadProposalStatusError(status);
}
}
info.values.votes = VETO_VALUE;
emit ProposalVetoed(proposalId, msg.sender);
_emitMetadataUpdateEvent();
}
function execute(
uint256 proposalId,
Proposal memory proposal,
IERC721[] memory preciousTokens,
uint256[] memory preciousTokenIds,
bytes calldata progressData,
bytes calldata extraData
) external payable {
_assertNotGloballyDisabled();
_assertActiveMember();
ProposalState storage proposalState = _proposalStateByProposalId[proposalId];
_validateProposalHash(proposal, proposalState.hash);
ProposalStateValues memory values = proposalState.values;
ProposalStatus status = _getProposalStatus(values);
if (status != ProposalStatus.Ready && status != ProposalStatus.InProgress) {
revert BadProposalStatusError(status);
}
if (status == ProposalStatus.Ready) {
if (proposal.maxExecutableTime < block.timestamp) {
revert ExecutionTimeExceededError(
proposal.maxExecutableTime,
uint40(block.timestamp)
);
}
proposalState.values.executedTime = uint40(block.timestamp);
}
if (!_isPreciousListCorrect(preciousTokens, preciousTokenIds)) {
revert BadPreciousListError();
}
proposalState.values.completedTime = uint40(block.timestamp);
bool completed = _executeProposal(
proposalId,
proposal,
preciousTokens,
preciousTokenIds,
_getProposalFlags(values),
progressData,
extraData
);
if (!completed) {
proposalState.values.completedTime = 0;
}
}
function cancel(uint256 proposalId, Proposal calldata proposal) external {
_assertActiveMember();
ProposalState storage proposalState = _proposalStateByProposalId[proposalId];
_validateProposalHash(proposal, proposalState.hash);
ProposalStateValues memory values = proposalState.values;
{
ProposalStatus status = _getProposalStatus(values);
if (status != ProposalStatus.InProgress) {
revert BadProposalStatusError(status);
}
}
{
uint256 cancelDelay = proposal.cancelDelay;
uint256 globalMaxCancelDelay = _GLOBALS.getUint256(
LibGlobals.GLOBAL_PROPOSAL_MAX_CANCEL_DURATION
);
uint256 globalMinCancelDelay = _GLOBALS.getUint256(
LibGlobals.GLOBAL_PROPOSAL_MIN_CANCEL_DURATION
);
if (globalMaxCancelDelay != 0) {
if (cancelDelay > globalMaxCancelDelay) {
cancelDelay = globalMaxCancelDelay;
}
}
if (globalMinCancelDelay != 0) {
if (cancelDelay < globalMinCancelDelay) {
cancelDelay = globalMinCancelDelay;
}
}
uint256 cancelTime = values.executedTime + cancelDelay;
if (block.timestamp < cancelTime) {
revert ProposalCannotBeCancelledYetError(
uint40(block.timestamp),
uint40(cancelTime)
);
}
}
proposalState.values.completedTime = uint40(block.timestamp | UINT40_HIGH_BIT);
{
(bool success, bytes memory resultData) = (
address(_getSharedProposalStorage().engineImpl)
).delegatecall(abi.encodeCall(IProposalExecutionEngine.cancelProposal, (proposalId)));
if (!success) {
resultData.rawRevert();
}
}
emit ProposalCancelled(proposalId);
_emitMetadataUpdateEvent();
}
function emergencyExecute(
address targetAddress,
bytes calldata targetCallData,
uint256 amountEth
) external payable onlyPartyDao onlyWhenEmergencyExecuteAllowed {
(bool success, bytes memory res) = targetAddress.call{ value: amountEth }(targetCallData);
if (!success) {
res.rawRevert();
}
emit EmergencyExecute(targetAddress, targetCallData, amountEth);
}
function disableEmergencyExecute() external onlyPartyDaoOrHost {
emergencyExecuteDisabled = true;
emit EmergencyExecuteDisabled();
}
function _executeProposal(
uint256 proposalId,
Proposal memory proposal,
IERC721[] memory preciousTokens,
uint256[] memory preciousTokenIds,
uint256 flags,
bytes memory progressData,
bytes memory extraData
) private returns (bool completed) {
IProposalExecutionEngine.ExecuteProposalParams
memory executeParams = IProposalExecutionEngine.ExecuteProposalParams({
proposalId: proposalId,
proposalData: proposal.proposalData,
progressData: progressData,
extraData: extraData,
preciousTokens: preciousTokens,
preciousTokenIds: preciousTokenIds,
flags: flags
});
bytes memory nextProgressData;
{
(bool success, bytes memory resultData) = address(
_getSharedProposalStorage().engineImpl
).delegatecall(
abi.encodeCall(IProposalExecutionEngine.executeProposal, (executeParams))
);
if (!success) {
resultData.rawRevert();
}
nextProgressData = abi.decode(resultData, (bytes));
}
emit ProposalExecuted(proposalId, msg.sender, nextProgressData);
_emitMetadataUpdateEvent();
return nextProgressData.length == 0;
}
function _getVotingPowerSnapshotAt(
address voter,
uint40 timestamp,
uint256 hintIndex
) internal view returns (VotingPowerSnapshot memory snap) {
VotingPowerSnapshot[] storage snaps = _votingPowerSnapshotsByVoter[voter];
uint256 snapsLength = snaps.length;
if (snapsLength != 0) {
if (
hintIndex < snapsLength &&
snaps[hintIndex].timestamp <= timestamp &&
(hintIndex == snapsLength - 1 || snaps[hintIndex + 1].timestamp > timestamp)
) {
return snaps[hintIndex];
}
hintIndex = findVotingPowerSnapshotIndex(voter, timestamp);
if (hintIndex != type(uint256).max) {
return snaps[hintIndex];
}
}
return snap;
}
function _transferVotingPower(address from, address to, uint256 power) internal {
int192 powerI192 = power.safeCastUint256ToInt192();
_adjustVotingPower(from, -powerI192, address(0));
_adjustVotingPower(to, powerI192, address(0));
}
function _adjustVotingPower(address voter, int192 votingPower, address delegate) internal {
VotingPowerSnapshot memory oldSnap = _getLastVotingPowerSnapshotForVoter(voter);
address oldDelegate = delegationsByVoter[voter];
oldDelegate = oldDelegate == address(0) ? voter : oldDelegate;
delegate = delegate == address(0) ? oldDelegate : delegate;
VotingPowerSnapshot memory newSnap = VotingPowerSnapshot({
timestamp: uint40(block.timestamp),
delegatedVotingPower: oldSnap.delegatedVotingPower,
intrinsicVotingPower: (oldSnap.intrinsicVotingPower.safeCastUint96ToInt192() +
votingPower).safeCastInt192ToUint96(),
isDelegated: delegate != voter
});
_insertVotingPowerSnapshot(voter, newSnap);
delegationsByVoter[voter] = delegate;
emit PartyDelegateUpdated(voter, delegate);
_rebalanceDelegates(voter, oldDelegate, delegate, oldSnap, newSnap);
}
function _rebalanceDelegates(
address voter,
address oldDelegate,
address newDelegate,
VotingPowerSnapshot memory oldSnap,
VotingPowerSnapshot memory newSnap
) private {
if (newDelegate == address(0) || oldDelegate == address(0)) {
revert InvalidDelegateError();
}
if (oldDelegate != voter && oldDelegate != newDelegate) {
VotingPowerSnapshot memory oldDelegateSnap = _getLastVotingPowerSnapshotForVoter(
oldDelegate
);
VotingPowerSnapshot memory updatedOldDelegateSnap = VotingPowerSnapshot({
timestamp: uint40(block.timestamp),
delegatedVotingPower: oldDelegateSnap.delegatedVotingPower -
oldSnap.intrinsicVotingPower,
intrinsicVotingPower: oldDelegateSnap.intrinsicVotingPower,
isDelegated: oldDelegateSnap.isDelegated
});
_insertVotingPowerSnapshot(oldDelegate, updatedOldDelegateSnap);
}
if (newDelegate != voter) {
VotingPowerSnapshot memory newDelegateSnap = _getLastVotingPowerSnapshotForVoter(
newDelegate
);
uint96 newDelegateDelegatedVotingPower = newDelegateSnap.delegatedVotingPower +
newSnap.intrinsicVotingPower;
if (newDelegate == oldDelegate) {
newDelegateDelegatedVotingPower -= oldSnap.intrinsicVotingPower;
}
VotingPowerSnapshot memory updatedNewDelegateSnap = VotingPowerSnapshot({
timestamp: uint40(block.timestamp),
delegatedVotingPower: newDelegateDelegatedVotingPower,
intrinsicVotingPower: newDelegateSnap.intrinsicVotingPower,
isDelegated: newDelegateSnap.isDelegated
});
_insertVotingPowerSnapshot(newDelegate, updatedNewDelegateSnap);
}
}
function _insertVotingPowerSnapshot(address voter, VotingPowerSnapshot memory snap) private {
emit PartyVotingSnapshotCreated(
voter,
snap.timestamp,
snap.delegatedVotingPower,
snap.intrinsicVotingPower,
snap.isDelegated
);
VotingPowerSnapshot[] storage voterSnaps = _votingPowerSnapshotsByVoter[voter];
uint256 n = voterSnaps.length;
if (n != 0) {
VotingPowerSnapshot memory lastSnap = voterSnaps[n - 1];
if (lastSnap.timestamp == snap.timestamp) {
voterSnaps[n - 1] = snap;
return;
}
}
voterSnaps.push(snap);
}
function _getLastVotingPowerSnapshotForVoter(
address voter
) private view returns (VotingPowerSnapshot memory snap) {
VotingPowerSnapshot[] storage voterSnaps = _votingPowerSnapshotsByVoter[voter];
uint256 n = voterSnaps.length;
if (n != 0) {
snap = voterSnaps[n - 1];
}
}
function _getProposalFlags(ProposalStateValues memory pv) private pure returns (uint256) {
uint256 flags = 0;
if (_isUnanimousVotes(pv.votes, pv.totalVotingPower)) {
flags = flags | LibProposal.PROPOSAL_FLAG_UNANIMOUS;
}
if (_hostsAccepted(pv.numHosts, pv.numHostsAccepted)) {
flags = flags | LibProposal.PROPOSAL_FLAG_HOSTS_ACCEPT;
}
return flags;
}
function _getProposalStatus(
ProposalStateValues memory pv
) private view returns (ProposalStatus status) {
if (pv.proposedTime == 0) {
return ProposalStatus.Invalid;
}
if (pv.executedTime != 0) {
if (pv.completedTime == 0) {
return ProposalStatus.InProgress;
}
if (pv.completedTime & UINT40_HIGH_BIT == UINT40_HIGH_BIT) {
return ProposalStatus.Cancelled;
}
return ProposalStatus.Complete;
}
if (pv.votes == type(uint96).max) {
return ProposalStatus.Defeated;
}
uint40 t = uint40(block.timestamp);
if (pv.passedTime != 0) {
if (pv.passedTime + pv.executionDelay <= t) {
return ProposalStatus.Ready;
}
if (_isUnanimousVotes(pv.votes, pv.totalVotingPower)) {
return ProposalStatus.Ready;
}
if (_hostsAccepted(pv.numHosts, pv.numHostsAccepted)) {
return ProposalStatus.Ready;
}
return ProposalStatus.Passed;
}
if (pv.proposedTime + pv.voteDuration <= t) {
return ProposalStatus.Defeated;
}
return ProposalStatus.Voting;
}
function _isUnanimousVotes(
uint96 totalVotes,
uint96 totalVotingPower
) private pure returns (bool) {
uint256 acceptanceRatio = (uint256(totalVotes) * 1e4) / totalVotingPower;
return acceptanceRatio >= 0.9999e4;
}
function _hostsAccepted(
uint8 snapshotNumHosts,
uint8 numHostsAccepted
) private pure returns (bool) {
return snapshotNumHosts > 0 && snapshotNumHosts == numHostsAccepted;
}
function _setPreciousList(
IERC721[] memory preciousTokens,
uint256[] memory preciousTokenIds
) private {
if (preciousTokens.length != preciousTokenIds.length) {
revert MismatchedPreciousListLengths();
}
preciousListHash = _hashPreciousList(preciousTokens, preciousTokenIds);
}
function _isPreciousListCorrect(
IERC721[] memory preciousTokens,
uint256[] memory preciousTokenIds
) private view returns (bool) {
return preciousListHash == _hashPreciousList(preciousTokens, preciousTokenIds);
}
function _hashPreciousList(
IERC721[] memory preciousTokens,
uint256[] memory preciousTokenIds
) internal pure returns (bytes32 h) {
assembly {
mstore(0x00, keccak256(add(preciousTokens, 0x20), mul(mload(preciousTokens), 0x20)))
mstore(0x20, keccak256(add(preciousTokenIds, 0x20), mul(mload(preciousTokenIds), 0x20)))
h := keccak256(0x00, 0x40)
}
}
function _emitMetadataUpdateEvent() internal {
emit BatchMetadataUpdate(0, type(uint256).max);
}
function _validateProposalHash(Proposal memory proposal, bytes32 expectedHash) private pure {
bytes32 actualHash = getProposalHash(proposal);
if (expectedHash != actualHash) {
revert BadProposalHashError(actualHash, expectedHash);
}
}
}
文件 24 的 30:PartyGovernanceNFT.sol
pragma solidity 0.8.20;
import "../utils/LibSafeCast.sol";
import "../utils/LibAddress.sol";
import "openzeppelin/contracts/interfaces/IERC2981.sol";
import "../globals/IGlobals.sol";
import "../tokens/IERC721.sol";
import "../vendor/solmate/ERC721.sol";
import "./PartyGovernance.sol";
import "../renderers/RendererStorage.sol";
abstract contract PartyGovernanceNFT is PartyGovernance, ERC721, IERC2981 {
using LibSafeCast for uint256;
using LibSafeCast for uint96;
using LibERC20Compat for IERC20;
using LibAddress for address payable;
error FixedRageQuitTimestampError(uint40 rageQuitTimestamp);
error CannotRageQuitError(uint40 rageQuitTimestamp);
error CannotDisableRageQuitAfterInitializationError();
error CannotEnableRageQuitIfNotDistributionsRequireVoteError();
error InvalidTokenOrderError();
error BelowMinWithdrawAmountError(uint256 amount, uint256 minAmount);
error NothingToBurnError();
event AuthorityAdded(address indexed authority);
event AuthorityRemoved(address indexed authority);
event RageQuitSet(uint40 oldRageQuitTimestamp, uint40 newRageQuitTimestamp);
event Burn(address caller, uint256 tokenId, uint256 votingPower);
event RageQuit(address caller, uint256[] tokenIds, IERC20[] withdrawTokens, address receiver);
event PartyCardIntrinsicVotingPowerSet(uint256 indexed tokenId, uint256 intrinsicVotingPower);
uint40 private constant ENABLE_RAGEQUIT_PERMANENTLY = 0x6b5b567bfe;
uint40 private constant DISABLE_RAGEQUIT_PERMANENTLY = 0xab2cb21860;
address private constant ETH_ADDRESS = 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE;
IGlobals private immutable _GLOBALS;
uint96 public tokenCount;
uint96 public mintedVotingPower;
uint40 public rageQuitTimestamp;
mapping(uint256 => uint256) public votingPowerByTokenId;
mapping(address => bool) public isAuthority;
function _assertAuthority() internal view {
if (!isAuthority[msg.sender]) {
revert NotAuthorized();
}
}
modifier onlySelf() {
if (msg.sender != address(this)) {
revert NotAuthorized();
}
_;
}
constructor(IGlobals globals) payable PartyGovernance(globals) ERC721("", "") {
_GLOBALS = globals;
}
function _initialize(
string memory name_,
string memory symbol_,
uint256 customizationPresetId,
PartyGovernance.GovernanceOpts memory governanceOpts,
ProposalStorage.ProposalEngineOpts memory proposalEngineOpts,
IERC721[] memory preciousTokens,
uint256[] memory preciousTokenIds,
address[] memory authorities,
uint40 rageQuitTimestamp_
) internal {
PartyGovernance._initialize(
governanceOpts,
proposalEngineOpts,
preciousTokens,
preciousTokenIds
);
name = name_;
symbol = symbol_;
if (rageQuitTimestamp_ != 0) {
if (proposalEngineOpts.distributionsConfig == DistributionsConfig.AllowedWithoutVote) {
revert CannotEnableRageQuitIfNotDistributionsRequireVoteError();
}
rageQuitTimestamp = rageQuitTimestamp_;
}
unchecked {
for (uint256 i; i < authorities.length; ++i) {
isAuthority[authorities[i]] = true;
}
}
if (customizationPresetId != 0) {
RendererStorage(_GLOBALS.getAddress(LibGlobals.GLOBAL_RENDERER_STORAGE))
.useCustomizationPreset(customizationPresetId);
}
}
function supportsInterface(
bytes4 interfaceId
) public pure override(PartyGovernance, ERC721, IERC165) returns (bool) {
return
PartyGovernance.supportsInterface(interfaceId) ||
ERC721.supportsInterface(interfaceId) ||
interfaceId == type(IERC2981).interfaceId;
}
function tokenURI(uint256) public view override returns (string memory) {
_delegateToRenderer();
return "";
}
function contractURI() external view returns (string memory) {
_delegateToRenderer();
return "";
}
function royaltyInfo(uint256, uint256) external view returns (address, uint256) {
_delegateToRenderer();
return (address(0), 0);
}
function getDistributionShareOf(uint256 tokenId) external view returns (uint256) {
return votingPowerByTokenId[tokenId];
}
function getVotingPowerShareOf(uint256 tokenId) public view returns (uint256) {
uint256 totalVotingPower = _getSharedProposalStorage().governanceValues.totalVotingPower;
return
totalVotingPower == 0 ? 0 : (votingPowerByTokenId[tokenId] * 1e18) / totalVotingPower;
}
function mint(
address owner,
uint256 votingPower,
address delegate
) external returns (uint256 tokenId) {
_assertAuthority();
uint96 mintedVotingPower_ = mintedVotingPower;
uint96 totalVotingPower = _getSharedProposalStorage().governanceValues.totalVotingPower;
uint96 votingPower_ = votingPower.safeCastUint256ToUint96();
if (totalVotingPower != 0 && totalVotingPower - mintedVotingPower_ < votingPower_) {
unchecked {
votingPower_ = totalVotingPower - mintedVotingPower_;
}
}
unchecked {
tokenId = ++tokenCount;
}
mintedVotingPower += votingPower_;
votingPowerByTokenId[tokenId] = votingPower_;
emit PartyCardIntrinsicVotingPowerSet(tokenId, votingPower_);
address delegate_ = delegationsByVoter[owner];
if (delegate_ != address(0)) {
delegate = delegate_;
}
_adjustVotingPower(owner, votingPower_.safeCastUint96ToInt192(), delegate);
_safeMint(owner, tokenId);
}
function increaseVotingPower(uint256 tokenId, uint96 votingPower) external {
_assertAuthority();
uint96 mintedVotingPower_ = mintedVotingPower;
uint96 totalVotingPower = _getSharedProposalStorage().governanceValues.totalVotingPower;
if (totalVotingPower != 0 && totalVotingPower - mintedVotingPower_ < votingPower) {
unchecked {
votingPower = totalVotingPower - mintedVotingPower_;
}
}
mintedVotingPower += votingPower;
uint256 newIntrinsicVotingPower = votingPowerByTokenId[tokenId] + votingPower;
votingPowerByTokenId[tokenId] = newIntrinsicVotingPower;
emit PartyCardIntrinsicVotingPowerSet(tokenId, newIntrinsicVotingPower);
_adjustVotingPower(ownerOf(tokenId), votingPower.safeCastUint96ToInt192(), address(0));
emit MetadataUpdate(tokenId);
}
function decreaseVotingPower(uint256 tokenId, uint96 votingPower) external {
_assertAuthority();
mintedVotingPower -= votingPower;
votingPowerByTokenId[tokenId] -= votingPower;
_adjustVotingPower(ownerOf(tokenId), -votingPower.safeCastUint96ToInt192(), address(0));
emit MetadataUpdate(tokenId);
}
function increaseTotalVotingPower(uint96 votingPower) external {
_assertAuthority();
_getSharedProposalStorage().governanceValues.totalVotingPower += votingPower;
lastTotalVotingPowerChangeTimestamp == uint40(block.timestamp);
emit BatchMetadataUpdate(0, type(uint256).max);
}
function decreaseTotalVotingPower(uint96 votingPower) external {
_assertAuthority();
_getSharedProposalStorage().governanceValues.totalVotingPower -= votingPower;
lastTotalVotingPowerChangeTimestamp == uint40(block.timestamp);
emit BatchMetadataUpdate(0, type(uint256).max);
}
function burn(uint256[] memory tokenIds) public {
_assertAuthority();
_burnAndUpdateVotingPower(tokenIds, false);
}
function _burnAndUpdateVotingPower(
uint256[] memory tokenIds,
bool checkIfAuthorizedToBurn
) private returns (uint96 totalVotingPowerBurned) {
for (uint256 i; i < tokenIds.length; ++i) {
uint256 tokenId = tokenIds[i];
address owner = ownerOf(tokenId);
if (checkIfAuthorizedToBurn) {
if (
msg.sender != owner &&
getApproved[tokenId] != msg.sender &&
!isApprovedForAll[owner][msg.sender]
) {
revert NotAuthorized();
}
}
uint96 votingPower = votingPowerByTokenId[tokenId].safeCastUint256ToUint96();
totalVotingPowerBurned += votingPower;
delete votingPowerByTokenId[tokenId];
emit PartyCardIntrinsicVotingPowerSet(tokenId, 0);
_adjustVotingPower(owner, -votingPower.safeCastUint96ToInt192(), address(0));
_burn(tokenId);
emit Burn(msg.sender, tokenId, votingPower);
}
mintedVotingPower -= totalVotingPowerBurned;
emit BatchMetadataUpdate(0, type(uint256).max);
}
function burn(uint256 tokenId) external {
uint256[] memory tokenIds = new uint256[](1);
tokenIds[0] = tokenId;
burn(tokenIds);
}
function setRageQuit(uint40 newRageQuitTimestamp) external {
_assertHost();
if (newRageQuitTimestamp == DISABLE_RAGEQUIT_PERMANENTLY) {
revert CannotDisableRageQuitAfterInitializationError();
}
if (
_getSharedProposalStorage().opts.distributionsConfig ==
DistributionsConfig.AllowedWithoutVote
) revert CannotEnableRageQuitIfNotDistributionsRequireVoteError();
uint40 oldRageQuitTimestamp = rageQuitTimestamp;
if (
oldRageQuitTimestamp == ENABLE_RAGEQUIT_PERMANENTLY ||
oldRageQuitTimestamp == DISABLE_RAGEQUIT_PERMANENTLY
) {
revert FixedRageQuitTimestampError(oldRageQuitTimestamp);
}
rageQuitTimestamp = newRageQuitTimestamp;
emit RageQuitSet(oldRageQuitTimestamp, newRageQuitTimestamp);
}
function rageQuit(
uint256[] calldata tokenIds,
IERC20[] calldata withdrawTokens,
uint256[] calldata minWithdrawAmounts,
address receiver
) external {
if (tokenIds.length == 0) revert NothingToBurnError();
bool isAuthority_ = isAuthority[msg.sender];
uint40 currentRageQuitTimestamp = rageQuitTimestamp;
if (!isAuthority_) {
if (currentRageQuitTimestamp != ENABLE_RAGEQUIT_PERMANENTLY) {
if (
currentRageQuitTimestamp == DISABLE_RAGEQUIT_PERMANENTLY ||
currentRageQuitTimestamp < block.timestamp
) {
revert CannotRageQuitError(currentRageQuitTimestamp);
}
}
}
rageQuitTimestamp = DISABLE_RAGEQUIT_PERMANENTLY;
lastTotalVotingPowerChangeTimestamp = uint40(block.timestamp);
uint256[] memory withdrawAmounts = new uint256[](withdrawTokens.length);
{
IERC20 prevToken;
for (uint256 i; i < withdrawTokens.length; ++i) {
if (prevToken >= withdrawTokens[i]) revert InvalidTokenOrderError();
prevToken = withdrawTokens[i];
uint256 balance = address(withdrawTokens[i]) == ETH_ADDRESS
? address(this).balance
: withdrawTokens[i].balanceOf(address(this));
for (uint256 j; j < tokenIds.length; ++j) {
withdrawAmounts[i] += (balance * getVotingPowerShareOf(tokenIds[j])) / 1e18;
}
}
}
{
uint96 totalVotingPowerBurned = _burnAndUpdateVotingPower(tokenIds, !isAuthority_);
_getSharedProposalStorage().governanceValues.totalVotingPower -= totalVotingPowerBurned;
}
{
uint16 feeBps_ = feeBps;
for (uint256 i; i < withdrawTokens.length; ++i) {
IERC20 token = withdrawTokens[i];
uint256 amount = withdrawAmounts[i];
uint256 fee = (amount * feeBps_) / 1e4;
if (fee > 0) {
amount -= fee;
if (address(token) == ETH_ADDRESS) {
payable(feeRecipient).transferEth(fee);
} else {
token.compatTransfer(feeRecipient, fee);
}
}
uint256 minAmount = minWithdrawAmounts[i];
if (amount < minAmount) {
revert BelowMinWithdrawAmountError(amount, minAmount);
}
if (amount > 0) {
if (address(token) == ETH_ADDRESS) {
payable(receiver).transferEth(amount);
} else {
token.compatTransfer(receiver, amount);
}
}
}
}
rageQuitTimestamp = currentRageQuitTimestamp;
emit RageQuit(msg.sender, tokenIds, withdrawTokens, receiver);
}
function transferFrom(address owner, address to, uint256 tokenId) public override {
_transferVotingPower(owner, to, votingPowerByTokenId[tokenId]);
super.transferFrom(owner, to, tokenId);
}
function safeTransferFrom(address owner, address to, uint256 tokenId) public override {
super.safeTransferFrom(owner, to, tokenId);
}
function safeTransferFrom(
address owner,
address to,
uint256 tokenId,
bytes calldata data
) public override {
super.safeTransferFrom(owner, to, tokenId, data);
}
function addAuthority(address authority) external onlySelf {
isAuthority[authority] = true;
emit AuthorityAdded(authority);
}
function abdicateAuthority() external {
_assertAuthority();
delete isAuthority[msg.sender];
emit AuthorityRemoved(msg.sender);
}
function _delegateToRenderer() private view {
_readOnlyDelegateCall(
_GLOBALS.getAddress(LibGlobals.GLOBAL_GOVERNANCE_NFT_RENDER_IMPL),
msg.data
);
assert(false);
}
}
文件 25 的 30:ProposalStorage.sol
pragma solidity 0.8.20;
import "./IProposalExecutionEngine.sol";
import "../utils/LibRawResult.sol";
abstract contract ProposalStorage {
using LibRawResult for bytes;
struct SharedProposalStorage {
IProposalExecutionEngine engineImpl;
ProposalEngineOpts opts;
GovernanceValues governanceValues;
}
struct GovernanceValues {
uint40 voteDuration;
uint40 executionDelay;
uint16 passThresholdBps;
uint96 totalVotingPower;
}
enum DistributionsConfig {
AllowedWithoutVote,
AllowedWithVote,
NotAllowed
}
struct ProposalEngineOpts {
bool enableAddAuthorityProposal;
bool allowArbCallsToSpendPartyEth;
bool allowOperators;
DistributionsConfig distributionsConfig;
}
uint256 internal constant PROPOSAL_FLAG_UNANIMOUS = 0x1;
uint256 private constant SHARED_STORAGE_SLOT =
uint256(keccak256("ProposalStorage.SharedProposalStorage"));
function _initProposalImpl(IProposalExecutionEngine impl, bytes memory initData) internal {
SharedProposalStorage storage stor = _getSharedProposalStorage();
IProposalExecutionEngine oldImpl = stor.engineImpl;
stor.engineImpl = impl;
(bool s, bytes memory r) = address(impl).delegatecall(
abi.encodeCall(IProposalExecutionEngine.initialize, (address(oldImpl), initData))
);
if (!s) {
r.rawRevert();
}
}
function _getSharedProposalStorage()
internal
pure
returns (SharedProposalStorage storage stor)
{
uint256 s = SHARED_STORAGE_SLOT;
assembly {
stor.slot := s
}
}
}
文件 26 的 30:ReadOnlyDelegateCall.sol
pragma solidity 0.8.20;
import "./LibRawResult.sol";
interface IReadOnlyDelegateCall {
function delegateCallAndRevert(address impl, bytes memory callData) external view;
}
abstract contract ReadOnlyDelegateCall {
using LibRawResult for bytes;
function delegateCallAndRevert(address impl, bytes memory callData) external {
require(msg.sender == address(this));
(bool s, bytes memory r) = impl.delegatecall(callData);
abi.encode(s, r).rawRevert();
}
function _readOnlyDelegateCall(address impl, bytes memory callData) internal view {
try IReadOnlyDelegateCall(address(this)).delegateCallAndRevert(impl, callData) {
assert(false);
} catch (bytes memory r) {
(bool success, bytes memory resultData) = abi.decode(r, (bool, bytes));
if (!success) {
resultData.rawRevert();
}
resultData.rawReturn();
}
}
}
文件 27 的 30:ReentrancyGuard.sol
pragma solidity ^0.8.19;
abstract contract ReentrancyGuard {
uint256 private constant _NOT_ENTERED = 1;
uint256 private constant _ENTERED = 2;
uint256 private _status;
error ReentrancyGuardReentrantCall();
constructor() {
_status = _NOT_ENTERED;
}
modifier nonReentrant() {
_nonReentrantBefore();
_;
_nonReentrantAfter();
}
function _nonReentrantBefore() private {
if (_status == _ENTERED) {
revert ReentrancyGuardReentrantCall();
}
_status = _ENTERED;
}
function _nonReentrantAfter() private {
_status = _NOT_ENTERED;
}
function _reentrancyGuardEntered() internal view returns (bool) {
return _status == _ENTERED;
}
}
文件 28 的 30:RendererStorage.sol
pragma solidity 0.8.20;
import "solmate/utils/SSTORE2.sol";
import "../utils/Multicall.sol";
contract RendererStorage is Multicall {
error AlreadySetError();
error NotOwnerError(address caller, address owner);
event OwnershipTransferred(address previousOwner, address newOwner);
uint256 constant CROWDFUND_CARD_DATA = 0;
uint256 constant PARTY_CARD_DATA = 1;
address public owner;
mapping(uint256 => bytes) public customizationPresets;
mapping(address => uint256) public getPresetFor;
mapping(uint256 => address) public files;
modifier onlyOwner() {
address owner_ = owner;
if (msg.sender != owner_) {
revert NotOwnerError(msg.sender, owner_);
}
_;
}
constructor(address _owner) {
owner = _owner;
files[CROWDFUND_CARD_DATA] = SSTORE2.write(
bytes(
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70.1 0 0 0-2.74 12.52 55.65 55.65 0 0 1-6.19-8.84 69.17 69.17 0 0 1 2.65-12.1c1.77-5.31 3.35-5.91 5.86-2.23v-.05c2.14 3.07 1.81 6.14.42 10.7ZM61.69 72.2l-.05.05a221.85 221.85 0 0 1-7.77-18.1l.14-.14a194.51 194.51 0 0 1 18.56 6.98 144.44 144.44 0 0 0-10.88 11.22Zm54.84-47.38c-4.42.7-9.02 1.95-13.67 3.72a65.03 65.03 0 0 0-7.81-5.31 66.04 66.04 0 0 1 13.02-3.54c1.53-.19 6.23-.79 10.32 2.42v-.05c2.47 1.91.14 2.37-1.86 2.75Z" style="fill:url(#h)"/>'
)
);
}
function transferOwnership(address newOwner) external onlyOwner {
emit OwnershipTransferred(owner, newOwner);
owner = newOwner;
}
function writeFile(uint256 key, string memory data) external onlyOwner {
files[key] = SSTORE2.write(bytes(data));
}
function readFile(uint256 key) external view returns (string memory data) {
return string(SSTORE2.read(files[key]));
}
function createCustomizationPreset(
uint256 id,
bytes memory customizationData
) external onlyOwner {
customizationPresets[id] = customizationData;
}
function useCustomizationPreset(uint256 id) external {
getPresetFor[msg.sender] = id;
}
}
文件 29 的 30:SSTORE2.sol
pragma solidity >=0.8.0;
library SSTORE2 {
uint256 internal constant DATA_OFFSET = 1;
function write(bytes memory data) internal returns (address pointer) {
bytes memory runtimeCode = abi.encodePacked(hex"00", data);
bytes memory creationCode = abi.encodePacked(
hex"60_0B_59_81_38_03_80_92_59_39_F3",
runtimeCode
);
assembly {
pointer := create(0, add(creationCode, 32), mload(creationCode))
}
require(pointer != address(0), "DEPLOYMENT_FAILED");
}
function read(address pointer) internal view returns (bytes memory) {
return readBytecode(pointer, DATA_OFFSET, pointer.code.length - DATA_OFFSET);
}
function read(address pointer, uint256 start) internal view returns (bytes memory) {
start += DATA_OFFSET;
return readBytecode(pointer, start, pointer.code.length - start);
}
function read(
address pointer,
uint256 start,
uint256 end
) internal view returns (bytes memory) {
start += DATA_OFFSET;
end += DATA_OFFSET;
require(pointer.code.length >= end, "OUT_OF_BOUNDS");
return readBytecode(pointer, start, end - start);
}
function readBytecode(
address pointer,
uint256 start,
uint256 size
) private view returns (bytes memory data) {
assembly {
data := mload(0x40)
mstore(0x40, add(data, and(add(add(size, 32), 31), not(31))))
mstore(data, size)
extcodecopy(pointer, add(data, 32), start, size)
}
}
}
文件 30 的 30:TokenDistributor.sol
pragma solidity 0.8.20;
import "openzeppelin/contracts/security/ReentrancyGuard.sol";
import "../globals/IGlobals.sol";
import "../globals/LibGlobals.sol";
import "../tokens/IERC20.sol";
import "../utils/LibAddress.sol";
import "../utils/LibERC20Compat.sol";
import "../utils/LibRawResult.sol";
import "../utils/LibSafeCast.sol";
import "./ITokenDistributor.sol";
contract TokenDistributor is ITokenDistributor, ReentrancyGuard {
using LibAddress for address payable;
using LibERC20Compat for IERC20;
using LibRawResult for bytes;
using LibSafeCast for uint256;
struct DistributionState {
bytes32 distributionHash;
uint128 remainingMemberSupply;
bool wasFeeClaimed;
mapping(uint256 => bool) hasPartyTokenClaimed;
uint96 maxTokenId;
}
struct CreateDistributionArgs {
Party party;
TokenType tokenType;
address token;
uint256 currentTokenBalance;
address payable feeRecipient;
uint16 feeBps;
}
event EmergencyExecute(address target, bytes data);
error OnlyPartyDaoError(address notDao, address partyDao);
error InvalidDistributionInfoError(DistributionInfo info);
error DistributionAlreadyClaimedByPartyTokenError(uint256 distributionId, uint256 partyTokenId);
error DistributionFeeAlreadyClaimedError(uint256 distributionId);
error MustOwnTokenError(address sender, address expectedOwner, uint256 partyTokenId);
error TokenIdAboveMaxError(uint256 partyTokenId, uint256 maxTokenId);
error EmergencyActionsNotAllowedError();
error InvalidDistributionSupplyError(uint128 supply);
error OnlyFeeRecipientError(address caller, address feeRecipient);
error InvalidFeeBpsError(uint16 feeBps);
address private constant NATIVE_TOKEN_ADDRESS = 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE;
IGlobals public immutable GLOBALS;
uint40 public immutable EMERGENCY_DISABLED_TIMESTAMP;
mapping(Party => uint256) public lastDistributionIdPerParty;
mapping(bytes32 => uint256) private _storedBalances;
mapping(Party => mapping(uint256 => DistributionState)) private _distributionStates;
modifier onlyPartyDao() {
{
address partyDao = GLOBALS.getAddress(LibGlobals.GLOBAL_DAO_WALLET);
if (msg.sender != partyDao) {
revert OnlyPartyDaoError(msg.sender, partyDao);
}
}
_;
}
modifier onlyIfEmergencyActionsAllowed() {
if (block.timestamp > EMERGENCY_DISABLED_TIMESTAMP) {
revert EmergencyActionsNotAllowedError();
}
_;
}
constructor(IGlobals globals, uint40 emergencyDisabledTimestamp) {
GLOBALS = globals;
EMERGENCY_DISABLED_TIMESTAMP = emergencyDisabledTimestamp;
}
function createNativeDistribution(
Party party,
address payable feeRecipient,
uint16 feeBps
) external payable nonReentrant returns (DistributionInfo memory info) {
info = _createDistribution(
CreateDistributionArgs({
party: party,
tokenType: TokenType.Native,
token: NATIVE_TOKEN_ADDRESS,
currentTokenBalance: address(this).balance,
feeRecipient: feeRecipient,
feeBps: feeBps
})
);
}
function createErc20Distribution(
IERC20 token,
Party party,
address payable feeRecipient,
uint16 feeBps
) external nonReentrant returns (DistributionInfo memory info) {
info = _createDistribution(
CreateDistributionArgs({
party: party,
tokenType: TokenType.Erc20,
token: address(token),
currentTokenBalance: token.balanceOf(address(this)),
feeRecipient: feeRecipient,
feeBps: feeBps
})
);
}
function claim(
DistributionInfo calldata info,
uint256 partyTokenId
) public nonReentrant returns (uint128 amountClaimed) {
{
address ownerOfPartyToken = info.party.ownerOf(partyTokenId);
if (msg.sender != ownerOfPartyToken) {
revert MustOwnTokenError(msg.sender, ownerOfPartyToken, partyTokenId);
}
}
DistributionState storage state = _distributionStates[info.party][info.distributionId];
if (state.distributionHash != _getDistributionHash(info)) {
revert InvalidDistributionInfoError(info);
}
if (state.hasPartyTokenClaimed[partyTokenId]) {
revert DistributionAlreadyClaimedByPartyTokenError(info.distributionId, partyTokenId);
}
state.hasPartyTokenClaimed[partyTokenId] = true;
amountClaimed = getClaimAmount(info, partyTokenId);
uint128 remainingMemberSupply = state.remainingMemberSupply;
amountClaimed = amountClaimed > remainingMemberSupply
? remainingMemberSupply
: amountClaimed;
state.remainingMemberSupply = remainingMemberSupply - amountClaimed;
_transfer(info.tokenType, info.token, payable(msg.sender), amountClaimed);
emit DistributionClaimedByPartyToken(
info.party,
partyTokenId,
msg.sender,
info.tokenType,
info.token,
amountClaimed
);
}
function claimFee(
DistributionInfo calldata info,
address payable recipient
) public nonReentrant {
DistributionState storage state = _distributionStates[info.party][info.distributionId];
if (state.distributionHash != _getDistributionHash(info)) {
revert InvalidDistributionInfoError(info);
}
if (info.feeRecipient != msg.sender) {
revert OnlyFeeRecipientError(msg.sender, info.feeRecipient);
}
if (state.wasFeeClaimed) {
revert DistributionFeeAlreadyClaimedError(info.distributionId);
}
state.wasFeeClaimed = true;
_transfer(info.tokenType, info.token, recipient, info.fee);
emit DistributionFeeClaimed(
info.party,
info.feeRecipient,
info.tokenType,
info.token,
info.fee
);
}
function batchClaim(
DistributionInfo[] calldata infos,
uint256[] calldata partyTokenIds
) external returns (uint128[] memory amountsClaimed) {
amountsClaimed = new uint128[](infos.length);
for (uint256 i = 0; i < infos.length; ++i) {
amountsClaimed[i] = claim(infos[i], partyTokenIds[i]);
}
}
function batchClaimFee(
DistributionInfo[] calldata infos,
address payable[] calldata recipients
) external {
for (uint256 i = 0; i < infos.length; ++i) {
claimFee(infos[i], recipients[i]);
}
}
function getClaimAmount(
DistributionInfo calldata info,
uint256 partyTokenId
) public view returns (uint128) {
Party party = info.party;
uint96 maxTokenId = _distributionStates[party][info.distributionId].maxTokenId;
if (
partyTokenId > maxTokenId &&
info.party.getGovernanceValues().totalVotingPower > info.totalShares
) {
revert TokenIdAboveMaxError(partyTokenId, maxTokenId);
}
(bool success, bytes memory response) = address(party).staticcall(
abi.encodeCall(party.VERSION_ID, ())
);
if (success && abi.decode(response, (uint16)) >= 1) {
uint256 shareOfSupply = ((info.party.getDistributionShareOf(partyTokenId)) * 1e18) /
info.totalShares;
return
((shareOfSupply * info.memberSupply + (1e18 - 1)) / 1e18)
.safeCastUint256ToUint128();
} else {
uint256 shareOfSupply = party.getDistributionShareOf(partyTokenId);
return
((shareOfSupply * info.memberSupply + (1e18 - 1)) / 1e18)
.safeCastUint256ToUint128();
}
}
function wasFeeClaimed(Party party, uint256 distributionId) external view returns (bool) {
return _distributionStates[party][distributionId].wasFeeClaimed;
}
function hasPartyTokenIdClaimed(
Party party,
uint256 partyTokenId,
uint256 distributionId
) external view returns (bool) {
return _distributionStates[party][distributionId].hasPartyTokenClaimed[partyTokenId];
}
function getRemainingMemberSupply(
Party party,
uint256 distributionId
) external view returns (uint128) {
return _distributionStates[party][distributionId].remainingMemberSupply;
}
function emergencyExecute(
address targetAddress,
bytes calldata targetCallData
) external onlyPartyDao onlyIfEmergencyActionsAllowed {
(bool success, bytes memory res) = targetAddress.delegatecall(targetCallData);
if (!success) {
res.rawRevert();
}
emit EmergencyExecute(targetAddress, targetCallData);
}
function _createDistribution(
CreateDistributionArgs memory args
) private returns (DistributionInfo memory info) {
if (args.feeBps > 1e4) {
revert InvalidFeeBpsError(args.feeBps);
}
uint128 supply;
{
bytes32 balanceId = _getBalanceId(args.tokenType, args.token);
supply = (args.currentTokenBalance - _storedBalances[balanceId])
.safeCastUint256ToUint128();
if (supply == 0) {
revert InvalidDistributionSupplyError(supply);
}
_storedBalances[balanceId] = args.currentTokenBalance;
}
uint128 fee = (supply * args.feeBps) / 1e4;
uint128 memberSupply = supply - fee;
info = DistributionInfo({
tokenType: args.tokenType,
distributionId: ++lastDistributionIdPerParty[args.party],
token: args.token,
party: args.party,
memberSupply: memberSupply,
feeRecipient: args.feeRecipient,
fee: fee,
totalShares: args.party.getGovernanceValues().totalVotingPower
});
DistributionState storage state = _distributionStates[args.party][info.distributionId];
state.distributionHash = _getDistributionHash(info);
state.remainingMemberSupply = memberSupply;
state.maxTokenId = args.party.tokenCount();
emit DistributionCreated(args.party, info);
}
function _transfer(
TokenType tokenType,
address token,
address payable recipient,
uint256 amount
) private {
bytes32 balanceId = _getBalanceId(tokenType, token);
_storedBalances[balanceId] -= amount;
if (tokenType == TokenType.Native) {
recipient.transferEth(amount);
} else {
assert(tokenType == TokenType.Erc20);
IERC20(token).compatTransfer(recipient, amount);
}
}
function _getDistributionHash(
DistributionInfo memory info
) internal pure returns (bytes32 hash) {
assembly {
hash := keccak256(info, 0x100)
}
}
function _getBalanceId(
TokenType tokenType,
address token
) private pure returns (bytes32 balanceId) {
if (tokenType == TokenType.Native) {
return bytes32(uint256(uint160(NATIVE_TOKEN_ADDRESS)));
}
assert(tokenType == TokenType.Erc20);
return bytes32(uint256(uint160(token)));
}
}
{
"compilationTarget": {
"contracts/distribution/TokenDistributor.sol": "TokenDistributor"
},
"evmVersion": "shanghai",
"libraries": {},
"metadata": {
"bytecodeHash": "ipfs"
},
"optimizer": {
"enabled": true,
"runs": 50
},
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