编译器
0.8.10+commit.fc410830
文件 1 的 6:CEtherDelegator.sol
pragma solidity ^0.8.10;
import "./CTokenInterfaces.sol";
contract CEtherDelegator is CTokenInterface, CEtherInterface, CDelegatorInterface {
constructor(
ComptrollerInterface comptroller_,
InterestRateModel interestRateModel_,
uint initialExchangeRateMantissa_,
string memory name_,
string memory symbol_,
uint8 decimals_,
address payable admin_,
address implementation_,
bytes memory becomeImplementationData
) {
admin = payable(msg.sender);
delegateTo(
implementation_,
abi.encodeWithSignature(
"initialize(address,address,uint256,string,string,uint8)",
comptroller_,
interestRateModel_,
initialExchangeRateMantissa_,
name_,
symbol_,
decimals_
)
);
_setImplementation(implementation_, false, becomeImplementationData);
admin = admin_;
}
function _setImplementation(
address implementation_,
bool allowResign,
bytes memory becomeImplementationData
) public override {
require(msg.sender == admin, "CEtherDelegator::_setImplementation: Caller must be admin");
if (allowResign) {
delegateToImplementation(abi.encodeWithSignature("_resignImplementation()"));
}
address oldImplementation = implementation;
implementation = implementation_;
delegateToImplementation(abi.encodeWithSignature("_becomeImplementation(bytes)", becomeImplementationData));
emit NewImplementation(oldImplementation, implementation);
}
function mint() external payable override {
delegateToImplementation(abi.encodeWithSignature("mint()"));
}
function redeem(uint redeemTokens) external override returns (uint) {
bytes memory data = delegateToImplementation(abi.encodeWithSignature("redeem(uint256)", redeemTokens));
return abi.decode(data, (uint));
}
function redeemBehalf(uint redeemTokens, address redeemee) external override returns (uint) {
bytes memory data = delegateToImplementation(
abi.encodeWithSignature("redeemBehalf(uint256,address)", redeemTokens, redeemee)
);
return abi.decode(data, (uint));
}
function redeemUnderlying(uint redeemAmount) external override returns (uint) {
bytes memory data = delegateToImplementation(
abi.encodeWithSignature("redeemUnderlying(uint256)", redeemAmount)
);
return abi.decode(data, (uint));
}
function borrow(uint borrowAmount) external override returns (uint) {
bytes memory data = delegateToImplementation(abi.encodeWithSignature("borrow(uint256)", borrowAmount));
return abi.decode(data, (uint));
}
function borrowBehalf(uint borrowAmount, address borrowee) external override returns (uint) {
bytes memory data = delegateToImplementation(
abi.encodeWithSignature("borrowBehalf(uint256,address)", borrowAmount, borrowee)
);
return abi.decode(data, (uint));
}
function repayBorrow() external payable override {
delegateToImplementation(abi.encodeWithSignature("repayBorrow()"));
}
function repayBorrowBehalf(address borrower) external payable override {
delegateToImplementation(abi.encodeWithSignature("repayBorrowBehalf(address)", borrower));
}
function liquidateBorrow(address borrower, CTokenInterface cTokenCollateral) external payable override {
delegateToImplementation(
abi.encodeWithSignature("liquidateBorrow(address,address)", borrower, cTokenCollateral)
);
}
function transfer(address dst, uint amount) external override returns (bool) {
bytes memory data = delegateToImplementation(abi.encodeWithSignature("transfer(address,uint256)", dst, amount));
return abi.decode(data, (bool));
}
function transferFrom(address src, address dst, uint256 amount) external override returns (bool) {
bytes memory data = delegateToImplementation(
abi.encodeWithSignature("transferFrom(address,address,uint256)", src, dst, amount)
);
return abi.decode(data, (bool));
}
function approve(address spender, uint256 amount) external override returns (bool) {
bytes memory data = delegateToImplementation(
abi.encodeWithSignature("approve(address,uint256)", spender, amount)
);
return abi.decode(data, (bool));
}
function allowance(address owner, address spender) external view override returns (uint) {
bytes memory data = delegateToViewImplementation(
abi.encodeWithSignature("allowance(address,address)", owner, spender)
);
return abi.decode(data, (uint));
}
function balanceOf(address owner) external view override returns (uint) {
bytes memory data = delegateToViewImplementation(abi.encodeWithSignature("balanceOf(address)", owner));
return abi.decode(data, (uint));
}
function balanceOfUnderlying(address owner) external override returns (uint) {
bytes memory data = delegateToImplementation(abi.encodeWithSignature("balanceOfUnderlying(address)", owner));
return abi.decode(data, (uint));
}
function getAccountSnapshot(address account) external view override returns (uint, uint, uint, uint) {
bytes memory data = delegateToViewImplementation(
abi.encodeWithSignature("getAccountSnapshot(address)", account)
);
return abi.decode(data, (uint, uint, uint, uint));
}
function borrowRatePerBlock() external view override returns (uint) {
bytes memory data = delegateToViewImplementation(abi.encodeWithSignature("borrowRatePerBlock()"));
return abi.decode(data, (uint));
}
function supplyRatePerBlock() external view override returns (uint) {
bytes memory data = delegateToViewImplementation(abi.encodeWithSignature("supplyRatePerBlock()"));
return abi.decode(data, (uint));
}
function totalBorrowsCurrent() external override returns (uint) {
bytes memory data = delegateToImplementation(abi.encodeWithSignature("totalBorrowsCurrent()"));
return abi.decode(data, (uint));
}
function borrowBalanceCurrent(address account) external override returns (uint) {
bytes memory data = delegateToImplementation(abi.encodeWithSignature("borrowBalanceCurrent(address)", account));
return abi.decode(data, (uint));
}
function borrowBalanceStored(address account) public view override returns (uint) {
bytes memory data = delegateToViewImplementation(
abi.encodeWithSignature("borrowBalanceStored(address)", account)
);
return abi.decode(data, (uint));
}
function exchangeRateCurrent() public override returns (uint) {
bytes memory data = delegateToImplementation(abi.encodeWithSignature("exchangeRateCurrent()"));
return abi.decode(data, (uint));
}
function exchangeRateStored() public view override returns (uint) {
bytes memory data = delegateToViewImplementation(abi.encodeWithSignature("exchangeRateStored()"));
return abi.decode(data, (uint));
}
function getCash() external view override returns (uint) {
bytes memory data = delegateToViewImplementation(abi.encodeWithSignature("getCash()"));
return abi.decode(data, (uint));
}
function accrueInterest() public override returns (uint) {
bytes memory data = delegateToImplementation(abi.encodeWithSignature("accrueInterest()"));
return abi.decode(data, (uint));
}
function seize(address liquidator, address borrower, uint seizeTokens) external override returns (uint) {
bytes memory data = delegateToImplementation(
abi.encodeWithSignature("seize(address,address,uint256)", liquidator, borrower, seizeTokens)
);
return abi.decode(data, (uint));
}
function sweepToken(EIP20NonStandardInterface token) external override {
delegateToImplementation(abi.encodeWithSignature("sweepToken(address)", token));
}
function _setPendingAdmin(address payable newPendingAdmin) external override returns (uint) {
bytes memory data = delegateToImplementation(
abi.encodeWithSignature("_setPendingAdmin(address)", newPendingAdmin)
);
return abi.decode(data, (uint));
}
function _setComptroller(ComptrollerInterface newComptroller) public override returns (uint) {
bytes memory data = delegateToImplementation(
abi.encodeWithSignature("_setComptroller(address)", newComptroller)
);
return abi.decode(data, (uint));
}
function _setReserveGuardian(address payable newReserveGuardian) external override returns (uint) {
bytes memory data = delegateToImplementation(
abi.encodeWithSignature("_setReserveGuardian(address)", newReserveGuardian)
);
return abi.decode(data, (uint));
}
function _setReserveFactor(uint newReserveFactorMantissa) external override returns (uint) {
bytes memory data = delegateToImplementation(
abi.encodeWithSignature("_setReserveFactor(uint256)", newReserveFactorMantissa)
);
return abi.decode(data, (uint));
}
function _acceptAdmin() external override returns (uint) {
bytes memory data = delegateToImplementation(abi.encodeWithSignature("_acceptAdmin()"));
return abi.decode(data, (uint));
}
function _addReserves() external payable override returns (uint) {
bytes memory data = delegateToImplementation(abi.encodeWithSignature("_addReserves()"));
return abi.decode(data, (uint));
}
function _reduceReserves(uint reduceAmount) external override returns (uint) {
bytes memory data = delegateToImplementation(abi.encodeWithSignature("_reduceReserves(uint256)", reduceAmount));
return abi.decode(data, (uint));
}
function _setInterestRateModel(InterestRateModel newInterestRateModel) public override returns (uint) {
bytes memory data = delegateToImplementation(
abi.encodeWithSignature("_setInterestRateModel(address)", newInterestRateModel)
);
return abi.decode(data, (uint));
}
function delegateTo(address callee, bytes memory data) internal returns (bytes memory) {
(bool success, bytes memory returnData) = callee.delegatecall(data);
assembly {
if eq(success, 0) {
revert(add(returnData, 0x20), returndatasize())
}
}
return returnData;
}
function delegateToImplementation(bytes memory data) public returns (bytes memory) {
return delegateTo(implementation, data);
}
function delegateToViewImplementation(bytes memory data) public view returns (bytes memory) {
(bool success, bytes memory returnData) = address(this).staticcall(
abi.encodeWithSignature("delegateToImplementation(bytes)", data)
);
assembly {
if eq(success, 0) {
revert(add(returnData, 0x20), returndatasize())
}
}
return abi.decode(returnData, (bytes));
}
fallback() external payable {
require(msg.value == 0, "CEtherDelegator:fallback: cannot send value to fallback");
(bool success, ) = implementation.delegatecall(msg.data);
assembly {
let free_mem_ptr := mload(0x40)
returndatacopy(free_mem_ptr, 0, returndatasize())
switch success
case 0 {
revert(free_mem_ptr, returndatasize())
}
default {
return(free_mem_ptr, returndatasize())
}
}
}
receive() external payable {
delegateToImplementation(abi.encodeWithSignature("mint()"));
}
}
文件 2 的 6:CTokenInterfaces.sol
pragma solidity ^0.8.10;
import "./ComptrollerInterface.sol";
import "./InterestRateModel.sol";
import "./EIP20NonStandardInterface.sol";
import "./ErrorReporter.sol";
contract CTokenStorage {
bool internal _notEntered;
string public name;
string public symbol;
uint8 public decimals;
uint internal constant borrowRateMaxMantissa = 0.0005e16;
uint internal constant reserveFactorMaxMantissa = 1e18;
address payable public admin;
address payable public pendingAdmin;
ComptrollerInterface public comptroller;
InterestRateModel public interestRateModel;
uint internal initialExchangeRateMantissa;
uint public reserveFactorMantissa;
uint public accrualBlockNumber;
uint public borrowIndex;
uint public totalBorrows;
uint public totalReserves;
uint public totalSupply;
mapping(address => uint) internal accountTokens;
mapping(address => mapping(address => uint)) internal transferAllowances;
struct BorrowSnapshot {
uint principal;
uint interestIndex;
}
mapping(address => BorrowSnapshot) internal accountBorrows;
uint public constant protocolSeizeShareMantissa = 2.8e16;
address payable public reserveGuardian;
}
abstract contract CTokenInterface is CTokenStorage {
bool public constant isCToken = true;
event AccrueInterest(uint cashPrior, uint interestAccumulated, uint borrowIndex, uint totalBorrows);
event Mint(address minter, uint mintAmount, uint mintTokens);
event Redeem(address redeemer, uint redeemAmount, uint redeemTokens);
event Borrow(address borrower, uint borrowAmount, uint accountBorrows, uint totalBorrows, uint borrowIndex);
event RepayBorrow(
address payer,
address borrower,
uint repayAmount,
uint accountBorrows,
uint totalBorrows,
uint borrowIndex
);
event LiquidateBorrow(
address liquidator,
address borrower,
uint repayAmount,
address cTokenCollateral,
uint seizeTokens
);
event NewPendingAdmin(address oldPendingAdmin, address newPendingAdmin);
event NewAdmin(address oldAdmin, address newAdmin);
event NewComptroller(ComptrollerInterface oldComptroller, ComptrollerInterface newComptroller);
event NewMarketInterestRateModel(InterestRateModel oldInterestRateModel, InterestRateModel newInterestRateModel);
event NewReserveGuardian(address oldReserveGuardian, address newReserveGuardian);
event NewReserveFactor(uint oldReserveFactorMantissa, uint newReserveFactorMantissa);
event ReservesAdded(address benefactor, uint addAmount, uint newTotalReserves);
event ReservesReduced(address admin, uint reduceAmount, uint newTotalReserves);
event Transfer(address indexed from, address indexed to, uint amount);
event Approval(address indexed owner, address indexed spender, uint amount);
function transfer(address dst, uint amount) external virtual returns (bool);
function transferFrom(address src, address dst, uint amount) external virtual returns (bool);
function approve(address spender, uint amount) external virtual returns (bool);
function allowance(address owner, address spender) external view virtual returns (uint);
function balanceOf(address owner) external view virtual returns (uint);
function balanceOfUnderlying(address owner) external virtual returns (uint);
function getAccountSnapshot(address account) external view virtual returns (uint, uint, uint, uint);
function borrowRatePerBlock() external view virtual returns (uint);
function supplyRatePerBlock() external view virtual returns (uint);
function totalBorrowsCurrent() external virtual returns (uint);
function borrowBalanceCurrent(address account) external virtual returns (uint);
function borrowBalanceStored(address account) external view virtual returns (uint);
function exchangeRateCurrent() external virtual returns (uint);
function exchangeRateStored() external view virtual returns (uint);
function getCash() external view virtual returns (uint);
function accrueInterest() external virtual returns (uint);
function seize(address liquidator, address borrower, uint seizeTokens) external virtual returns (uint);
function _setPendingAdmin(address payable newPendingAdmin) external virtual returns (uint);
function _acceptAdmin() external virtual returns (uint);
function _setComptroller(ComptrollerInterface newComptroller) external virtual returns (uint);
function _setReserveGuardian(address payable NewReserveGuardian) external virtual returns (uint);
function _setReserveFactor(uint newReserveFactorMantissa) external virtual returns (uint);
function _reduceReserves(uint reduceAmount) external virtual returns (uint);
function _setInterestRateModel(InterestRateModel newInterestRateModel) external virtual returns (uint);
}
contract CErc20Storage {
address public underlying;
}
abstract contract CErc20Interface is CErc20Storage {
function mint(uint mintAmount) external virtual returns (uint);
function redeem(uint redeemTokens) external virtual returns (uint);
function redeemBehalf(uint redeemTokens, address redeemee) external virtual returns (uint);
function redeemUnderlying(uint redeemAmount) external virtual returns (uint);
function borrow(uint borrowAmount) external virtual returns (uint);
function borrowBehalf(uint borrowAmount, address borrowee) external virtual returns (uint);
function repayBorrow(uint repayAmount) external virtual returns (uint);
function repayBorrowBehalf(address borrower, uint repayAmount) external virtual returns (uint);
function liquidateBorrow(
address borrower,
uint repayAmount,
CTokenInterface cTokenCollateral
) external virtual returns (uint);
function sweepToken(EIP20NonStandardInterface token) external virtual;
function _addReserves(uint addAmount) external virtual returns (uint);
}
abstract contract CEtherInterface {
function mint() external payable virtual;
function redeem(uint redeemTokens) external virtual returns (uint);
function redeemBehalf(uint redeemTokens, address redeemee) external virtual returns (uint);
function redeemUnderlying(uint redeemAmount) external virtual returns (uint);
function borrow(uint borrowAmount) external virtual returns (uint);
function borrowBehalf(uint borrowAmount, address borrowee) external virtual returns (uint);
function repayBorrow() external payable virtual;
function repayBorrowBehalf(address borrower) external payable virtual;
function liquidateBorrow(address borrower, CTokenInterface cTokenCollateral) external payable virtual;
function sweepToken(EIP20NonStandardInterface token) external virtual;
function _addReserves() external payable virtual returns (uint);
}
contract CDelegationStorage {
address public implementation;
}
abstract contract CDelegatorInterface is CDelegationStorage {
event NewImplementation(address oldImplementation, address newImplementation);
function _setImplementation(
address implementation_,
bool allowResign,
bytes memory becomeImplementationData
) external virtual;
}
abstract contract CDelegateInterface is CDelegationStorage {
function _becomeImplementation(bytes memory data) external virtual;
function _resignImplementation() external virtual;
}
文件 3 的 6:ComptrollerInterface.sol
pragma solidity ^0.8.10;
abstract contract ComptrollerInterface {
bool public constant isComptroller = true;
function enterMarkets(address[] calldata cTokens) external virtual returns (uint[] memory);
function exitMarket(address cToken) external virtual returns (uint);
function mintAllowed(address cToken, address minter, uint mintAmount) external virtual returns (uint);
function mintVerify(address cToken, address minter, uint mintAmount, uint mintTokens) external virtual;
function redeemAllowed(address cToken, address redeemer, uint redeemTokens) external virtual returns (uint);
function redeemVerify(address cToken, address redeemer, uint redeemAmount, uint redeemTokens) external virtual;
function borrowAllowed(address cToken, address borrower, uint borrowAmount) external virtual returns (uint);
function borrowVerify(address cToken, address borrower, uint borrowAmount) external virtual;
function repayBorrowAllowed(
address cToken,
address payer,
address borrower,
uint repayAmount
) external virtual returns (uint);
function repayBorrowVerify(
address cToken,
address payer,
address borrower,
uint repayAmount,
uint borrowerIndex
) external virtual;
function enableLooping(bool state) external virtual returns (bool);
function isLoopingEnabled(address user) external view virtual returns (bool);
function liquidateBorrowAllowed(
address cTokenBorrowed,
address cTokenCollateral,
address liquidator,
address borrower,
uint repayAmount
) external virtual returns (uint);
function liquidateBorrowVerify(
address cTokenBorrowed,
address cTokenCollateral,
address liquidator,
address borrower,
uint repayAmount,
uint seizeTokens
) external virtual;
function seizeAllowed(
address cTokenCollateral,
address cTokenBorrowed,
address liquidator,
address borrower,
uint seizeTokens
) external virtual returns (uint);
function seizeVerify(
address cTokenCollateral,
address cTokenBorrowed,
address liquidator,
address borrower,
uint seizeTokens
) external virtual;
function transferAllowed(
address cToken,
address src,
address dst,
uint transferTokens
) external virtual returns (uint);
function transferVerify(address cToken, address src, address dst, uint transferTokens) external virtual;
function liquidateCalculateSeizeTokens(
address cTokenBorrowed,
address cTokenCollateral,
uint repayAmount
) external view virtual returns (uint, uint);
}
文件 4 的 6:EIP20NonStandardInterface.sol
pragma solidity ^0.8.10;
interface EIP20NonStandardInterface {
function totalSupply() external view returns (uint256);
function balanceOf(address owner) external view returns (uint256 balance);
function transfer(address dst, uint256 amount) external;
function transferFrom(address src, address dst, uint256 amount) external;
function approve(address spender, uint256 amount) external returns (bool success);
function allowance(address owner, address spender) external view returns (uint256 remaining);
event Transfer(address indexed from, address indexed to, uint256 amount);
event Approval(address indexed owner, address indexed spender, uint256 amount);
}
文件 5 的 6:ErrorReporter.sol
pragma solidity ^0.8.10;
contract ComptrollerErrorReporter {
enum Error {
NO_ERROR,
UNAUTHORIZED,
COMPTROLLER_MISMATCH,
INSUFFICIENT_SHORTFALL,
INSUFFICIENT_LIQUIDITY,
INVALID_CLOSE_FACTOR,
INVALID_COLLATERAL_FACTOR,
INVALID_LIQUIDATION_INCENTIVE,
MARKET_NOT_ENTERED,
MARKET_NOT_LISTED,
MARKET_ALREADY_LISTED,
MATH_ERROR,
NONZERO_BORROW_BALANCE,
PRICE_ERROR,
REJECTION,
SNAPSHOT_ERROR,
TOO_MANY_ASSETS,
TOO_MUCH_REPAY
}
enum FailureInfo {
ACCEPT_ADMIN_PENDING_ADMIN_CHECK,
ACCEPT_PENDING_IMPLEMENTATION_ADDRESS_CHECK,
EXIT_MARKET_BALANCE_OWED,
EXIT_MARKET_REJECTION,
SET_CLOSE_FACTOR_OWNER_CHECK,
SET_CLOSE_FACTOR_VALIDATION,
SET_COLLATERAL_FACTOR_OWNER_CHECK,
SET_COLLATERAL_FACTOR_NO_EXISTS,
SET_COLLATERAL_FACTOR_VALIDATION,
SET_COLLATERAL_FACTOR_WITHOUT_PRICE,
SET_IMPLEMENTATION_OWNER_CHECK,
SET_LIQUIDATION_INCENTIVE_OWNER_CHECK,
SET_LIQUIDATION_INCENTIVE_VALIDATION,
SET_MAX_ASSETS_OWNER_CHECK,
SET_PENDING_ADMIN_OWNER_CHECK,
SET_PENDING_IMPLEMENTATION_OWNER_CHECK,
SET_PRICE_ORACLE_OWNER_CHECK,
SUPPORT_MARKET_EXISTS,
SUPPORT_MARKET_OWNER_CHECK,
SET_PAUSE_GUARDIAN_OWNER_CHECK
}
event Failure(uint error, uint info, uint detail);
function fail(Error err, FailureInfo info) internal returns (uint) {
emit Failure(uint(err), uint(info), 0);
return uint(err);
}
function failOpaque(Error err, FailureInfo info, uint opaqueError) internal returns (uint) {
emit Failure(uint(err), uint(info), opaqueError);
return uint(err);
}
}
contract TokenErrorReporter {
uint public constant NO_ERROR = 0;
error TransferComptrollerRejection(uint256 errorCode);
error TransferNotAllowed();
error TransferNotEnough();
error TransferTooMuch();
error MintComptrollerRejection(uint256 errorCode);
error MintFreshnessCheck();
error RedeemComptrollerRejection(uint256 errorCode);
error RedeemFreshnessCheck();
error RedeemTransferOutNotPossible();
error BorrowComptrollerRejection(uint256 errorCode);
error BorrowFreshnessCheck();
error BorrowCashNotAvailable();
error RepayBorrowComptrollerRejection(uint256 errorCode);
error RepayBorrowFreshnessCheck();
error LiquidateComptrollerRejection(uint256 errorCode);
error LiquidateFreshnessCheck();
error LiquidateCollateralFreshnessCheck();
error LiquidateAccrueBorrowInterestFailed(uint256 errorCode);
error LiquidateAccrueCollateralInterestFailed(uint256 errorCode);
error LiquidateLiquidatorIsBorrower();
error LiquidateCloseAmountIsZero();
error LiquidateCloseAmountIsUintMax();
error LiquidateRepayBorrowFreshFailed(uint256 errorCode);
error LiquidateSeizeComptrollerRejection(uint256 errorCode);
error LiquidateSeizeLiquidatorIsBorrower();
error AcceptAdminPendingAdminCheck();
error SetComptrollerOwnerCheck();
error SetPendingAdminOwnerCheck();
error SetReserveFactorAdminCheck();
error SetReserveFactorFreshCheck();
error SetReserveFactorBoundsCheck();
error AddReservesFactorFreshCheck(uint256 actualAddAmount);
error ReduceReservesAdminCheck();
error ReduceReservesGuardianCheck();
error ReduceReservesFreshCheck();
error ReduceReservesCashNotAvailable();
error ReduceReservesCashValidation();
error SetInterestRateModelOwnerCheck();
error SetInterestRateModelFreshCheck();
}
文件 6 的 6:InterestRateModel.sol
pragma solidity ^0.8.10;
abstract contract InterestRateModel {
bool public constant isInterestRateModel = true;
function getBorrowRate(uint cash, uint borrows, uint reserves) virtual external view returns (uint);
function getSupplyRate(uint cash, uint borrows, uint reserves, uint reserveFactorMantissa) virtual external view returns (uint);
}
{
"compilationTarget": {
"lodestar/contracts/CEtherDelegator.sol": "CEtherDelegator"
},
"evmVersion": "london",
"libraries": {},
"metadata": {
"bytecodeHash": "ipfs",
"useLiteralContent": true
},
"optimizer": {
"enabled": true,
"runs": 200
},
"remappings": []
}
[{"inputs":[{"internalType":"contract ComptrollerInterface","name":"comptroller_","type":"address"},{"internalType":"contract InterestRateModel","name":"interestRateModel_","type":"address"},{"internalType":"uint256","name":"initialExchangeRateMantissa_","type":"uint256"},{"internalType":"string","name":"name_","type":"string"},{"internalType":"string","name":"symbol_","type":"string"},{"internalType":"uint8","name":"decimals_","type":"uint8"},{"internalType":"address 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