Address Contract Verified
Address
0x3363BAe2Fc44dA742Df13CD3ee94b6bB868ea376
Balance
0 ETH
Nonce
1
Code Size
15223 bytes
Creator
0x7CDB3CA0...5ac1 at tx 0xaa9bc31f...1e6462
Indexed Transactions
0 (1 on-chain, 1.3% indexed)
Contract Bytecode
15223 bytes
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
Verified Source Code Full Match
Compiler: v0.8.10+commit.fc410830
EVM: istanbul
Optimization: Yes (200 runs)
CErc20.sol 228 lines
// SPDX-License-Identifier: BSD-3-Clause
pragma solidity ^0.8.10;
import "./CToken.sol";
interface CompLike {
function delegate(address delegatee) external;
}
/**
* @title Compound's CErc20 Contract
* @notice CTokens which wrap an EIP-20 underlying
* @author Compound
*/
contract CErc20 is CToken, CErc20Interface {
/**
* @notice Initialize the new money market
* @param underlying_ The address of the underlying asset
* @param comptroller_ The address of the Comptroller
* @param interestRateModel_ The address of the interest rate model
* @param initialExchangeRateMantissa_ The initial exchange rate, scaled by 1e18
* @param name_ ERC-20 name of this token
* @param symbol_ ERC-20 symbol of this token
* @param decimals_ ERC-20 decimal precision of this token
*/
function initialize(address underlying_,
ComptrollerInterface comptroller_,
InterestRateModel interestRateModel_,
uint initialExchangeRateMantissa_,
string memory name_,
string memory symbol_,
uint8 decimals_) public {
// CToken initialize does the bulk of the work
super.initialize(comptroller_, interestRateModel_, initialExchangeRateMantissa_, name_, symbol_, decimals_);
// Set underlying and sanity check it
underlying = underlying_;
EIP20Interface(underlying).totalSupply();
}
/*** User Interface ***/
/**
* @notice Sender supplies assets into the market and receives cTokens in exchange
* @dev Accrues interest whether or not the operation succeeds, unless reverted
* @param mintAmount The amount of the underlying asset to supply
* @return uint 0=success, otherwise a failure (see ErrorReporter.sol for details)
*/
function mint(uint mintAmount) override external returns (uint) {
mintInternal(mintAmount);
return NO_ERROR;
}
/**
* @notice Sender redeems cTokens in exchange for the underlying asset
* @dev Accrues interest whether or not the operation succeeds, unless reverted
* @param redeemTokens The number of cTokens to redeem into underlying
* @return uint 0=success, otherwise a failure (see ErrorReporter.sol for details)
*/
function redeem(uint redeemTokens) override external returns (uint) {
redeemInternal(redeemTokens);
return NO_ERROR;
}
/**
* @notice Sender redeems cTokens in exchange for a specified amount of underlying asset
* @dev Accrues interest whether or not the operation succeeds, unless reverted
* @param redeemAmount The amount of underlying to redeem
* @return uint 0=success, otherwise a failure (see ErrorReporter.sol for details)
*/
function redeemUnderlying(uint redeemAmount) override external returns (uint) {
redeemUnderlyingInternal(redeemAmount);
return NO_ERROR;
}
/**
* @notice Sender borrows assets from the protocol to their own address
* @param borrowAmount The amount of the underlying asset to borrow
* @return uint 0=success, otherwise a failure (see ErrorReporter.sol for details)
*/
function borrow(uint borrowAmount) override external returns (uint) {
borrowInternal(borrowAmount);
return NO_ERROR;
}
/**
* @notice Sender repays their own borrow
* @param repayAmount The amount to repay, or -1 for the full outstanding amount
* @return uint 0=success, otherwise a failure (see ErrorReporter.sol for details)
*/
function repayBorrow(uint repayAmount) override external returns (uint) {
repayBorrowInternal(repayAmount);
return NO_ERROR;
}
/**
* @notice Sender repays a borrow belonging to borrower
* @param borrower the account with the debt being payed off
* @param repayAmount The amount to repay, or -1 for the full outstanding amount
* @return uint 0=success, otherwise a failure (see ErrorReporter.sol for details)
*/
function repayBorrowBehalf(address borrower, uint repayAmount) override external returns (uint) {
repayBorrowBehalfInternal(borrower, repayAmount);
return NO_ERROR;
}
/**
* @notice The sender liquidates the borrowers collateral.
* The collateral seized is transferred to the liquidator.
* @param borrower The borrower of this cToken to be liquidated
* @param repayAmount The amount of the underlying borrowed asset to repay
* @param cTokenCollateral The market in which to seize collateral from the borrower
* @return uint 0=success, otherwise a failure (see ErrorReporter.sol for details)
*/
function liquidateBorrow(address borrower, uint repayAmount, CTokenInterface cTokenCollateral) override external returns (uint) {
liquidateBorrowInternal(borrower, repayAmount, cTokenCollateral);
return NO_ERROR;
}
/**
* @notice A public function to sweep accidental ERC-20 transfers to this contract. Tokens are sent to admin (timelock)
* @param token The address of the ERC-20 token to sweep
*/
function sweepToken(EIP20NonStandardInterface token) override external {
require(msg.sender == admin, "CErc20::sweepToken: only admin can sweep tokens");
require(address(token) != underlying, "CErc20::sweepToken: can not sweep underlying token");
uint256 balance = token.balanceOf(address(this));
token.transfer(admin, balance);
}
/**
* @notice The sender adds to reserves.
* @param addAmount The amount fo underlying token to add as reserves
* @return uint 0=success, otherwise a failure (see ErrorReporter.sol for details)
*/
function _addReserves(uint addAmount) override external returns (uint) {
return _addReservesInternal(addAmount);
}
/*** Safe Token ***/
/**
* @notice Gets balance of this contract in terms of the underlying
* @dev This excludes the value of the current message, if any
* @return The quantity of underlying tokens owned by this contract
*/
function getCashPrior() virtual override internal view returns (uint) {
EIP20Interface token = EIP20Interface(underlying);
return token.balanceOf(address(this));
}
/**
* @dev Similar to EIP20 transfer, except it handles a False result from `transferFrom` and reverts in that case.
* This will revert due to insufficient balance or insufficient allowance.
* This function returns the actual amount received,
* which may be less than `amount` if there is a fee attached to the transfer.
*
* Note: This wrapper safely handles non-standard ERC-20 tokens that do not return a value.
* See here: https://medium.com/coinmonks/missing-return-value-bug-at-least-130-tokens-affected-d67bf08521ca
*/
function doTransferIn(address from, uint amount) virtual override internal returns (uint) {
// Read from storage once
address underlying_ = underlying;
EIP20NonStandardInterface token = EIP20NonStandardInterface(underlying_);
uint balanceBefore = EIP20Interface(underlying_).balanceOf(address(this));
token.transferFrom(from, address(this), amount);
bool success;
assembly {
switch returndatasize()
case 0 { // This is a non-standard ERC-20
success := not(0) // set success to true
}
case 32 { // This is a compliant ERC-20
returndatacopy(0, 0, 32)
success := mload(0) // Set `success = returndata` of override external call
}
default { // This is an excessively non-compliant ERC-20, revert.
revert(0, 0)
}
}
require(success, "TOKEN_TRANSFER_IN_FAILED");
// Calculate the amount that was *actually* transferred
uint balanceAfter = EIP20Interface(underlying_).balanceOf(address(this));
return balanceAfter - balanceBefore; // underflow already checked above, just subtract
}
/**
* @dev Similar to EIP20 transfer, except it handles a False success from `transfer` and returns an explanatory
* error code rather than reverting. If caller has not called checked protocol's balance, this may revert due to
* insufficient cash held in this contract. If caller has checked protocol's balance prior to this call, and verified
* it is >= amount, this should not revert in normal conditions.
*
* Note: This wrapper safely handles non-standard ERC-20 tokens that do not return a value.
* See here: https://medium.com/coinmonks/missing-return-value-bug-at-least-130-tokens-affected-d67bf08521ca
*/
function doTransferOut(address payable to, uint amount) virtual override internal {
EIP20NonStandardInterface token = EIP20NonStandardInterface(underlying);
token.transfer(to, amount);
bool success;
assembly {
switch returndatasize()
case 0 { // This is a non-standard ERC-20
success := not(0) // set success to true
}
case 32 { // This is a compliant ERC-20
returndatacopy(0, 0, 32)
success := mload(0) // Set `success = returndata` of override external call
}
default { // This is an excessively non-compliant ERC-20, revert.
revert(0, 0)
}
}
require(success, "TOKEN_TRANSFER_OUT_FAILED");
}
/**
* @notice Admin call to delegate the votes of the COMP-like underlying
* @param compLikeDelegatee The address to delegate votes to
* @dev CTokens whose underlying are not CompLike should revert here
*/
function _delegateCompLikeTo(address compLikeDelegatee) external {
require(msg.sender == admin, "only the admin may set the comp-like delegate");
CompLike(underlying).delegate(compLikeDelegatee);
}
}
CToken.sol 1156 lines
// SPDX-License-Identifier: BSD-3-Clause
pragma solidity ^0.8.10;
import "./ComptrollerInterface.sol";
import "./CTokenInterfaces.sol";
import "./ErrorReporter.sol";
import "./EIP20Interface.sol";
import "./InterestRateModel.sol";
import "./ExponentialNoError.sol";
/**
* @title Compound's CToken Contract
* @notice Abstract base for CTokens
* @author Compound
*/
abstract contract CToken is CTokenInterface, ExponentialNoError, TokenErrorReporter {
/**
* @notice Initialize the money market
* @param comptroller_ The address of the Comptroller
* @param interestRateModel_ The address of the interest rate model
* @param initialExchangeRateMantissa_ The initial exchange rate, scaled by 1e18
* @param name_ EIP-20 name of this token
* @param symbol_ EIP-20 symbol of this token
* @param decimals_ EIP-20 decimal precision of this token
*/
function initialize(ComptrollerInterface comptroller_,
InterestRateModel interestRateModel_,
uint initialExchangeRateMantissa_,
string memory name_,
string memory symbol_,
uint8 decimals_) public {
require(msg.sender == admin, "only admin may initialize the market");
require(accrualBlockNumber == 0 && borrowIndex == 0, "market may only be initialized once");
// Set initial exchange rate
initialExchangeRateMantissa = initialExchangeRateMantissa_;
require(initialExchangeRateMantissa > 0, "initial exchange rate must be greater than zero.");
// Set the comptroller
uint err = _setComptroller(comptroller_);
require(err == NO_ERROR, "setting comptroller failed");
// Initialize block number and borrow index (block number mocks depend on comptroller being set)
accrualBlockNumber = getBlockNumber();
borrowIndex = mantissaOne;
// Set the interest rate model (depends on block number / borrow index)
err = _setInterestRateModelFresh(interestRateModel_);
require(err == NO_ERROR, "setting interest rate model failed");
name = name_;
symbol = symbol_;
decimals = decimals_;
// The counter starts true to prevent changing it from zero to non-zero (i.e. smaller cost/refund)
_notEntered = true;
}
/**
* @notice Transfer `tokens` tokens from `src` to `dst` by `spender`
* @dev Called by both `transfer` and `transferFrom` internally
* @param spender The address of the account performing the transfer
* @param src The address of the source account
* @param dst The address of the destination account
* @param tokens The number of tokens to transfer
* @return 0 if the transfer succeeded, else revert
*/
function transferTokens(address spender, address src, address dst, uint tokens) internal returns (uint) {
/* Fail if transfer not allowed */
uint allowed = comptroller.transferAllowed(address(this), src, dst, tokens);
if (allowed != 0) {
revert TransferComptrollerRejection(allowed);
}
/* Do not allow self-transfers */
if (src == dst) {
revert TransferNotAllowed();
}
/* Get the allowance, infinite for the account owner */
uint startingAllowance = 0;
if (spender == src) {
startingAllowance = type(uint).max;
} else {
startingAllowance = transferAllowances[src][spender];
}
/* Do the calculations, checking for {under,over}flow */
uint allowanceNew = startingAllowance - tokens;
uint srcTokensNew = accountTokens[src] - tokens;
uint dstTokensNew = accountTokens[dst] + tokens;
/////////////////////////
// EFFECTS & INTERACTIONS
// (No safe failures beyond this point)
accountTokens[src] = srcTokensNew;
accountTokens[dst] = dstTokensNew;
/* Eat some of the allowance (if necessary) */
if (startingAllowance != type(uint).max) {
transferAllowances[src][spender] = allowanceNew;
}
/* We emit a Transfer event */
emit Transfer(src, dst, tokens);
// unused function
// comptroller.transferVerify(address(this), src, dst, tokens);
return NO_ERROR;
}
/**
* @notice Transfer `amount` tokens from `msg.sender` to `dst`
* @param dst The address of the destination account
* @param amount The number of tokens to transfer
* @return Whether or not the transfer succeeded
*/
function transfer(address dst, uint256 amount) override external nonReentrant returns (bool) {
return transferTokens(msg.sender, msg.sender, dst, amount) == NO_ERROR;
}
/**
* @notice Transfer `amount` tokens from `src` to `dst`
* @param src The address of the source account
* @param dst The address of the destination account
* @param amount The number of tokens to transfer
* @return Whether or not the transfer succeeded
*/
function transferFrom(address src, address dst, uint256 amount) override external nonReentrant returns (bool) {
return transferTokens(msg.sender, src, dst, amount) == NO_ERROR;
}
/**
* @notice Approve `spender` to transfer up to `amount` from `src`
* @dev This will overwrite the approval amount for `spender`
* and is subject to issues noted [here](https://eips.ethereum.org/EIPS/eip-20#approve)
* @param spender The address of the account which may transfer tokens
* @param amount The number of tokens that are approved (uint256.max means infinite)
* @return Whether or not the approval succeeded
*/
function approve(address spender, uint256 amount) override external returns (bool) {
address src = msg.sender;
transferAllowances[src][spender] = amount;
emit Approval(src, spender, amount);
return true;
}
/**
* @notice Get the current allowance from `owner` for `spender`
* @param owner The address of the account which owns the tokens to be spent
* @param spender The address of the account which may transfer tokens
* @return The number of tokens allowed to be spent (-1 means infinite)
*/
function allowance(address owner, address spender) override external view returns (uint256) {
return transferAllowances[owner][spender];
}
/**
* @notice Get the token balance of the `owner`
* @param owner The address of the account to query
* @return The number of tokens owned by `owner`
*/
function balanceOf(address owner) override external view returns (uint256) {
return accountTokens[owner];
}
/**
* @notice Get the underlying balance of the `owner`
* @dev This also accrues interest in a transaction
* @param owner The address of the account to query
* @return The amount of underlying owned by `owner`
*/
function balanceOfUnderlying(address owner) override external returns (uint) {
Exp memory exchangeRate = Exp({mantissa: exchangeRateCurrent()});
return mul_ScalarTruncate(exchangeRate, accountTokens[owner]);
}
/**
* @notice Get a snapshot of the account's balances, and the cached exchange rate
* @dev This is used by comptroller to more efficiently perform liquidity checks.
* @param account Address of the account to snapshot
* @return (possible error, token balance, borrow balance, exchange rate mantissa)
*/
function getAccountSnapshot(address account) override external view returns (uint, uint, uint, uint) {
return (
NO_ERROR,
accountTokens[account],
borrowBalanceStoredInternal(account),
exchangeRateStoredInternal()
);
}
/**
* @dev Function to simply retrieve block number
* This exists mainly for inheriting test contracts to stub this result.
*/
function getBlockNumber() virtual internal view returns (uint) {
return block.number;
}
/**
* @notice Returns the current per-block borrow interest rate for this cToken
* @return The borrow interest rate per block, scaled by 1e18
*/
function borrowRatePerBlock() override external view returns (uint) {
return interestRateModel.getBorrowRate(getCashPrior(), totalBorrows, totalReserves);
}
/**
* @notice Returns the current per-block supply interest rate for this cToken
* @return The supply interest rate per block, scaled by 1e18
*/
function supplyRatePerBlock() override external view returns (uint) {
return interestRateModel.getSupplyRate(getCashPrior(), totalBorrows, totalReserves, reserveFactorMantissa);
}
/**
* @notice Returns the current total borrows plus accrued interest
* @return The total borrows with interest
*/
function totalBorrowsCurrent() override external nonReentrant returns (uint) {
accrueInterest();
return totalBorrows;
}
/**
* @notice Accrue interest to updated borrowIndex and then calculate account's borrow balance using the updated borrowIndex
* @param account The address whose balance should be calculated after updating borrowIndex
* @return The calculated balance
*/
function borrowBalanceCurrent(address account) override external nonReentrant returns (uint) {
accrueInterest();
return borrowBalanceStored(account);
}
/**
* @notice Return the borrow balance of account based on stored data
* @param account The address whose balance should be calculated
* @return The calculated balance
*/
function borrowBalanceStored(address account) override public view returns (uint) {
return borrowBalanceStoredInternal(account);
}
/**
* @notice Return the borrow balance of account based on stored data
* @param account The address whose balance should be calculated
* @return (error code, the calculated balance or 0 if error code is non-zero)
*/
function borrowBalanceStoredInternal(address account) internal view returns (uint) {
/* Get borrowBalance and borrowIndex */
BorrowSnapshot storage borrowSnapshot = accountBorrows[account];
/* If borrowBalance = 0 then borrowIndex is likely also 0.
* Rather than failing the calculation with a division by 0, we immediately return 0 in this case.
*/
if (borrowSnapshot.principal == 0) {
return 0;
}
/* Calculate new borrow balance using the interest index:
* recentBorrowBalance = borrower.borrowBalance * market.borrowIndex / borrower.borrowIndex
*/
uint principalTimesIndex = borrowSnapshot.principal * borrowIndex;
return principalTimesIndex / borrowSnapshot.interestIndex;
}
/**
* @notice Accrue interest then return the up-to-date exchange rate
* @return Calculated exchange rate scaled by 1e18
*/
function exchangeRateCurrent() override public nonReentrant returns (uint) {
accrueInterest();
return exchangeRateStored();
}
/**
* @notice Calculates the exchange rate from the underlying to the CToken
* @dev This function does not accrue interest before calculating the exchange rate
* @return Calculated exchange rate scaled by 1e18
*/
function exchangeRateStored() override public view returns (uint) {
return exchangeRateStoredInternal();
}
/**
* @notice Calculates the exchange rate from the underlying to the CToken
* @dev This function does not accrue interest before calculating the exchange rate
* @return calculated exchange rate scaled by 1e18
*/
function exchangeRateStoredInternal() virtual internal view returns (uint) {
uint _totalSupply = totalSupply;
if (_totalSupply == 0) {
/*
* If there are no tokens minted:
* exchangeRate = initialExchangeRate
*/
return initialExchangeRateMantissa;
} else {
/*
* Otherwise:
* exchangeRate = (totalCash + totalBorrows - totalReserves) / totalSupply
*/
uint totalCash = getCashPrior();
uint cashPlusBorrowsMinusReserves = totalCash + totalBorrows - totalReserves;
uint exchangeRate = cashPlusBorrowsMinusReserves * expScale / _totalSupply;
return exchangeRate;
}
}
/**
* @notice Get cash balance of this cToken in the underlying asset
* @return The quantity of underlying asset owned by this contract
*/
function getCash() override external view returns (uint) {
return getCashPrior();
}
/**
* @notice Applies accrued interest to total borrows and reserves
* @dev This calculates interest accrued from the last checkpointed block
* up to the current block and writes new checkpoint to storage.
*/
function accrueInterest() virtual override public returns (uint) {
/* Remember the initial block number */
uint currentBlockNumber = getBlockNumber();
uint accrualBlockNumberPrior = accrualBlockNumber;
/* Short-circuit accumulating 0 interest */
if (accrualBlockNumberPrior == currentBlockNumber) {
return NO_ERROR;
}
/* Read the previous values out of storage */
uint cashPrior = getCashPrior();
uint borrowsPrior = totalBorrows;
uint reservesPrior = totalReserves;
uint borrowIndexPrior = borrowIndex;
/* Calculate the current borrow interest rate */
uint borrowRateMantissa = interestRateModel.getBorrowRate(cashPrior, borrowsPrior, reservesPrior);
require(borrowRateMantissa <= borrowRateMaxMantissa, "borrow rate is absurdly high");
/* Calculate the number of blocks elapsed since the last accrual */
uint blockDelta = currentBlockNumber - accrualBlockNumberPrior;
/*
* Calculate the interest accumulated into borrows and reserves and the new index:
* simpleInterestFactor = borrowRate * blockDelta
* interestAccumulated = simpleInterestFactor * totalBorrows
* totalBorrowsNew = interestAccumulated + totalBorrows
* totalReservesNew = interestAccumulated * reserveFactor + totalReserves
* borrowIndexNew = simpleInterestFactor * borrowIndex + borrowIndex
*/
Exp memory simpleInterestFactor = mul_(Exp({mantissa: borrowRateMantissa}), blockDelta);
uint interestAccumulated = mul_ScalarTruncate(simpleInterestFactor, borrowsPrior);
uint totalBorrowsNew = interestAccumulated + borrowsPrior;
uint totalReservesNew = mul_ScalarTruncateAddUInt(Exp({mantissa: reserveFactorMantissa}), interestAccumulated, reservesPrior);
uint borrowIndexNew = mul_ScalarTruncateAddUInt(simpleInterestFactor, borrowIndexPrior, borrowIndexPrior);
/////////////////////////
// EFFECTS & INTERACTIONS
// (No safe failures beyond this point)
/* We write the previously calculated values into storage */
accrualBlockNumber = currentBlockNumber;
borrowIndex = borrowIndexNew;
totalBorrows = totalBorrowsNew;
totalReserves = totalReservesNew;
/* We emit an AccrueInterest event */
emit AccrueInterest(cashPrior, interestAccumulated, borrowIndexNew, totalBorrowsNew);
return NO_ERROR;
}
/**
* @notice Sender supplies assets into the market and receives cTokens in exchange
* @dev Accrues interest whether or not the operation succeeds, unless reverted
* @param mintAmount The amount of the underlying asset to supply
*/
function mintInternal(uint mintAmount) internal nonReentrant {
accrueInterest();
// mintFresh emits the actual Mint event if successful and logs on errors, so we don't need to
mintFresh(msg.sender, mintAmount);
}
/**
* @notice User supplies assets into the market and receives cTokens in exchange
* @dev Assumes interest has already been accrued up to the current block
* @param minter The address of the account which is supplying the assets
* @param mintAmount The amount of the underlying asset to supply
*/
function mintFresh(address minter, uint mintAmount) internal {
/* Fail if mint not allowed */
uint allowed = comptroller.mintAllowed(address(this), minter, mintAmount);
if (allowed != 0) {
revert MintComptrollerRejection(allowed);
}
/* Verify market's block number equals current block number */
if (accrualBlockNumber != getBlockNumber()) {
revert MintFreshnessCheck();
}
Exp memory exchangeRate = Exp({mantissa: exchangeRateStoredInternal()});
/////////////////////////
// EFFECTS & INTERACTIONS
// (No safe failures beyond this point)
/*
* We call `doTransferIn` for the minter and the mintAmount.
* Note: The cToken must handle variations between ERC-20 and ETH underlying.
* `doTransferIn` reverts if anything goes wrong, since we can't be sure if
* side-effects occurred. The function returns the amount actually transferred,
* in case of a fee. On success, the cToken holds an additional `actualMintAmount`
* of cash.
*/
uint actualMintAmount = doTransferIn(minter, mintAmount);
/*
* We get the current exchange rate and calculate the number of cTokens to be minted:
* mintTokens = actualMintAmount / exchangeRate
*/
uint mintTokens = div_(actualMintAmount, exchangeRate);
/*
* We calculate the new total supply of cTokens and minter token balance, checking for overflow:
* totalSupplyNew = totalSupply + mintTokens
* accountTokensNew = accountTokens[minter] + mintTokens
* And write them into storage
*/
totalSupply = totalSupply + mintTokens;
accountTokens[minter] = accountTokens[minter] + mintTokens;
/* We emit a Mint event, and a Transfer event */
emit Mint(minter, actualMintAmount, mintTokens);
emit Transfer(address(this), minter, mintTokens);
/* We call the defense hook */
// unused function
// comptroller.mintVerify(address(this), minter, actualMintAmount, mintTokens);
}
/**
* @notice Sender redeems cTokens in exchange for the underlying asset
* @dev Accrues interest whether or not the operation succeeds, unless reverted
* @param redeemTokens The number of cTokens to redeem into underlying
*/
function redeemInternal(uint redeemTokens) internal nonReentrant {
accrueInterest();
// redeemFresh emits redeem-specific logs on errors, so we don't need to
redeemFresh(payable(msg.sender), redeemTokens, 0);
}
/**
* @notice Sender redeems cTokens in exchange for a specified amount of underlying asset
* @dev Accrues interest whether or not the operation succeeds, unless reverted
* @param redeemAmount The amount of underlying to receive from redeeming cTokens
*/
function redeemUnderlyingInternal(uint redeemAmount) internal nonReentrant {
accrueInterest();
// redeemFresh emits redeem-specific logs on errors, so we don't need to
redeemFresh(payable(msg.sender), 0, redeemAmount);
}
/**
* @notice User redeems cTokens in exchange for the underlying asset
* @dev Assumes interest has already been accrued up to the current block
* @param redeemer The address of the account which is redeeming the tokens
* @param redeemTokensIn The number of cTokens to redeem into underlying (only one of redeemTokensIn or redeemAmountIn may be non-zero)
* @param redeemAmountIn The number of underlying tokens to receive from redeeming cTokens (only one of redeemTokensIn or redeemAmountIn may be non-zero)
*/
function redeemFresh(address payable redeemer, uint redeemTokensIn, uint redeemAmountIn) internal {
require(redeemTokensIn == 0 || redeemAmountIn == 0, "one of redeemTokensIn or redeemAmountIn must be zero");
/* exchangeRate = invoke Exchange Rate Stored() */
Exp memory exchangeRate = Exp({mantissa: exchangeRateStoredInternal() });
uint redeemTokens;
uint redeemAmount;
/* If redeemTokensIn > 0: */
if (redeemTokensIn > 0) {
/*
* We calculate the exchange rate and the amount of underlying to be redeemed:
* redeemTokens = redeemTokensIn
* redeemAmount = redeemTokensIn x exchangeRateCurrent
*/
redeemTokens = redeemTokensIn;
redeemAmount = mul_ScalarTruncate(exchangeRate, redeemTokensIn);
} else {
/*
* We get the current exchange rate and calculate the amount to be redeemed:
* redeemTokens = redeemAmountIn / exchangeRate
* redeemAmount = redeemAmountIn
*/
redeemTokens = div_(redeemAmountIn, exchangeRate);
redeemAmount = redeemAmountIn;
}
/* Fail if redeem not allowed */
uint allowed = comptroller.redeemAllowed(address(this), redeemer, redeemTokens);
if (allowed != 0) {
revert RedeemComptrollerRejection(allowed);
}
/* Verify market's block number equals current block number */
if (accrualBlockNumber != getBlockNumber()) {
revert RedeemFreshnessCheck();
}
/* Fail gracefully if protocol has insufficient cash */
if (getCashPrior() < redeemAmount) {
revert RedeemTransferOutNotPossible();
}
/////////////////////////
// EFFECTS & INTERACTIONS
// (No safe failures beyond this point)
/*
* We write the previously calculated values into storage.
* Note: Avoid token reentrancy attacks by writing reduced supply before external transfer.
*/
totalSupply = totalSupply - redeemTokens;
accountTokens[redeemer] = accountTokens[redeemer] - redeemTokens;
/*
* We invoke doTransferOut for the redeemer and the redeemAmount.
* Note: The cToken must handle variations between ERC-20 and ETH underlying.
* On success, the cToken has redeemAmount less of cash.
* doTransferOut reverts if anything goes wrong, since we can't be sure if side effects occurred.
*/
doTransferOut(redeemer, redeemAmount);
/* We emit a Transfer event, and a Redeem event */
emit Transfer(redeemer, address(this), redeemTokens);
emit Redeem(redeemer, redeemAmount, redeemTokens);
/* We call the defense hook */
comptroller.redeemVerify(address(this), redeemer, redeemAmount, redeemTokens);
}
/**
* @notice Sender borrows assets from the protocol to their own address
* @param borrowAmount The amount of the underlying asset to borrow
*/
function borrowInternal(uint borrowAmount) internal nonReentrant {
accrueInterest();
// borrowFresh emits borrow-specific logs on errors, so we don't need to
borrowFresh(payable(msg.sender), borrowAmount);
}
/**
* @notice Users borrow assets from the protocol to their own address
* @param borrowAmount The amount of the underlying asset to borrow
*/
function borrowFresh(address payable borrower, uint borrowAmount) internal {
/* Fail if borrow not allowed */
uint allowed = comptroller.borrowAllowed(address(this), borrower, borrowAmount);
if (allowed != 0) {
revert BorrowComptrollerRejection(allowed);
}
/* Verify market's block number equals current block number */
if (accrualBlockNumber != getBlockNumber()) {
revert BorrowFreshnessCheck();
}
/* Fail gracefully if protocol has insufficient underlying cash */
if (getCashPrior() < borrowAmount) {
revert BorrowCashNotAvailable();
}
/*
* We calculate the new borrower and total borrow balances, failing on overflow:
* accountBorrowNew = accountBorrow + borrowAmount
* totalBorrowsNew = totalBorrows + borrowAmount
*/
uint accountBorrowsPrev = borrowBalanceStoredInternal(borrower);
uint accountBorrowsNew = accountBorrowsPrev + borrowAmount;
uint totalBorrowsNew = totalBorrows + borrowAmount;
/////////////////////////
// EFFECTS & INTERACTIONS
// (No safe failures beyond this point)
/*
* We write the previously calculated values into storage.
* Note: Avoid token reentrancy attacks by writing increased borrow before external transfer.
`*/
accountBorrows[borrower].principal = accountBorrowsNew;
accountBorrows[borrower].interestIndex = borrowIndex;
totalBorrows = totalBorrowsNew;
/*
* We invoke doTransferOut for the borrower and the borrowAmount.
* Note: The cToken must handle variations between ERC-20 and ETH underlying.
* On success, the cToken borrowAmount less of cash.
* doTransferOut reverts if anything goes wrong, since we can't be sure if side effects occurred.
*/
doTransferOut(borrower, borrowAmount);
/* We emit a Borrow event */
emit Borrow(borrower, borrowAmount, accountBorrowsNew, totalBorrowsNew);
}
/**
* @notice Sender repays their own borrow
* @param repayAmount The amount to repay, or -1 for the full outstanding amount
*/
function repayBorrowInternal(uint repayAmount) internal nonReentrant {
accrueInterest();
// repayBorrowFresh emits repay-borrow-specific logs on errors, so we don't need to
repayBorrowFresh(msg.sender, msg.sender, repayAmount);
}
/**
* @notice Sender repays a borrow belonging to borrower
* @param borrower the account with the debt being payed off
* @param repayAmount The amount to repay, or -1 for the full outstanding amount
*/
function repayBorrowBehalfInternal(address borrower, uint repayAmount) internal nonReentrant {
accrueInterest();
// repayBorrowFresh emits repay-borrow-specific logs on errors, so we don't need to
repayBorrowFresh(msg.sender, borrower, repayAmount);
}
/**
* @notice Borrows are repaid by another user (possibly the borrower).
* @param payer the account paying off the borrow
* @param borrower the account with the debt being payed off
* @param repayAmount the amount of underlying tokens being returned, or -1 for the full outstanding amount
* @return (uint) the actual repayment amount.
*/
function repayBorrowFresh(address payer, address borrower, uint repayAmount) internal returns (uint) {
/* Fail if repayBorrow not allowed */
uint allowed = comptroller.repayBorrowAllowed(address(this), payer, borrower, repayAmount);
if (allowed != 0) {
revert RepayBorrowComptrollerRejection(allowed);
}
/* Verify market's block number equals current block number */
if (accrualBlockNumber != getBlockNumber()) {
revert RepayBorrowFreshnessCheck();
}
/* We fetch the amount the borrower owes, with accumulated interest */
uint accountBorrowsPrev = borrowBalanceStoredInternal(borrower);
/* If repayAmount == -1, repayAmount = accountBorrows */
uint repayAmountFinal = repayAmount == type(uint).max ? accountBorrowsPrev : repayAmount;
/////////////////////////
// EFFECTS & INTERACTIONS
// (No safe failures beyond this point)
/*
* We call doTransferIn for the payer and the repayAmount
* Note: The cToken must handle variations between ERC-20 and ETH underlying.
* On success, the cToken holds an additional repayAmount of cash.
* doTransferIn reverts if anything goes wrong, since we can't be sure if side effects occurred.
* it returns the amount actually transferred, in case of a fee.
*/
uint actualRepayAmount = doTransferIn(payer, repayAmountFinal);
/*
* We calculate the new borrower and total borrow balances, failing on underflow:
* accountBorrowsNew = accountBorrows - actualRepayAmount
* totalBorrowsNew = totalBorrows - actualRepayAmount
*/
uint accountBorrowsNew = accountBorrowsPrev - actualRepayAmount;
uint totalBorrowsNew = totalBorrows - actualRepayAmount;
/* We write the previously calculated values into storage */
accountBorrows[borrower].principal = accountBorrowsNew;
accountBorrows[borrower].interestIndex = borrowIndex;
totalBorrows = totalBorrowsNew;
/* We emit a RepayBorrow event */
emit RepayBorrow(payer, borrower, actualRepayAmount, accountBorrowsNew, totalBorrowsNew);
return actualRepayAmount;
}
/**
* @notice The sender liquidates the borrowers collateral.
* The collateral seized is transferred to the liquidator.
* @param borrower The borrower of this cToken to be liquidated
* @param cTokenCollateral The market in which to seize collateral from the borrower
* @param repayAmount The amount of the underlying borrowed asset to repay
*/
function liquidateBorrowInternal(address borrower, uint repayAmount, CTokenInterface cTokenCollateral) internal nonReentrant {
accrueInterest();
uint error = cTokenCollateral.accrueInterest();
if (error != NO_ERROR) {
// accrueInterest emits logs on errors, but we still want to log the fact that an attempted liquidation failed
revert LiquidateAccrueCollateralInterestFailed(error);
}
// liquidateBorrowFresh emits borrow-specific logs on errors, so we don't need to
liquidateBorrowFresh(msg.sender, borrower, repayAmount, cTokenCollateral);
}
/**
* @notice The liquidator liquidates the borrowers collateral.
* The collateral seized is transferred to the liquidator.
* @param borrower The borrower of this cToken to be liquidated
* @param liquidator The address repaying the borrow and seizing collateral
* @param cTokenCollateral The market in which to seize collateral from the borrower
* @param repayAmount The amount of the underlying borrowed asset to repay
*/
function liquidateBorrowFresh(address liquidator, address borrower, uint repayAmount, CTokenInterface cTokenCollateral) internal {
/* Fail if liquidate not allowed */
uint allowed = comptroller.liquidateBorrowAllowed(address(this), address(cTokenCollateral), liquidator, borrower, repayAmount);
if (allowed != 0) {
revert LiquidateComptrollerRejection(allowed);
}
/* Verify market's block number equals current block number */
if (accrualBlockNumber != getBlockNumber()) {
revert LiquidateFreshnessCheck();
}
/* Verify cTokenCollateral market's block number equals current block number */
if (cTokenCollateral.accrualBlockNumber() != getBlockNumber()) {
revert LiquidateCollateralFreshnessCheck();
}
/* Fail if borrower = liquidator */
if (borrower == liquidator) {
revert LiquidateLiquidatorIsBorrower();
}
/* Fail if repayAmount = 0 */
if (repayAmount == 0) {
revert LiquidateCloseAmountIsZero();
}
/* Fail if repayAmount = -1 */
if (repayAmount == type(uint).max) {
revert LiquidateCloseAmountIsUintMax();
}
/* Fail if repayBorrow fails */
uint actualRepayAmount = repayBorrowFresh(liquidator, borrower, repayAmount);
/////////////////////////
// EFFECTS & INTERACTIONS
// (No safe failures beyond this point)
/* We calculate the number of collateral tokens that will be seized */
(uint amountSeizeError, uint seizeTokens) = comptroller.liquidateCalculateSeizeTokens(address(this), address(cTokenCollateral), actualRepayAmount);
require(amountSeizeError == NO_ERROR, "LIQUIDATE_COMPTROLLER_CALCULATE_AMOUNT_SEIZE_FAILED");
/* Revert if borrower collateral token balance < seizeTokens */
require(cTokenCollateral.balanceOf(borrower) >= seizeTokens, "LIQUIDATE_SEIZE_TOO_MUCH");
// If this is also the collateral, run seizeInternal to avoid re-entrancy, otherwise make an external call
if (address(cTokenCollateral) == address(this)) {
seizeInternal(address(this), liquidator, borrower, seizeTokens);
} else {
require(cTokenCollateral.seize(liquidator, borrower, seizeTokens) == NO_ERROR, "token seizure failed");
}
/* We emit a LiquidateBorrow event */
emit LiquidateBorrow(liquidator, borrower, actualRepayAmount, address(cTokenCollateral), seizeTokens);
}
/**
* @notice Transfers collateral tokens (this market) to the liquidator.
* @dev Will fail unless called by another cToken during the process of liquidation.
* Its absolutely critical to use msg.sender as the borrowed cToken and not a parameter.
* @param liquidator The account receiving seized collateral
* @param borrower The account having collateral seized
* @param seizeTokens The number of cTokens to seize
* @return uint 0=success, otherwise a failure (see ErrorReporter.sol for details)
*/
function seize(address liquidator, address borrower, uint seizeTokens) override external nonReentrant returns (uint) {
seizeInternal(msg.sender, liquidator, borrower, seizeTokens);
return NO_ERROR;
}
/**
* @notice Transfers collateral tokens (this market) to the liquidator.
* @dev Called only during an in-kind liquidation, or by liquidateBorrow during the liquidation of another CToken.
* Its absolutely critical to use msg.sender as the seizer cToken and not a parameter.
* @param seizerToken The contract seizing the collateral (i.e. borrowed cToken)
* @param liquidator The account receiving seized collateral
* @param borrower The account having collateral seized
* @param seizeTokens The number of cTokens to seize
*/
function seizeInternal(address seizerToken, address liquidator, address borrower, uint seizeTokens) internal {
/* Fail if seize not allowed */
uint allowed = comptroller.seizeAllowed(address(this), seizerToken, liquidator, borrower, seizeTokens);
if (allowed != 0) {
revert LiquidateSeizeComptrollerRejection(allowed);
}
/* Fail if borrower = liquidator */
if (borrower == liquidator) {
revert LiquidateSeizeLiquidatorIsBorrower();
}
/*
* We calculate the new borrower and liquidator token balances, failing on underflow/overflow:
* borrowerTokensNew = accountTokens[borrower] - seizeTokens
* liquidatorTokensNew = accountTokens[liquidator] + seizeTokens
*/
uint protocolSeizeTokens = mul_(seizeTokens, Exp({mantissa: protocolSeizeShareMantissa}));
uint liquidatorSeizeTokens = seizeTokens - protocolSeizeTokens;
Exp memory exchangeRate = Exp({mantissa: exchangeRateStoredInternal()});
uint protocolSeizeAmount = mul_ScalarTruncate(exchangeRate, protocolSeizeTokens);
uint totalReservesNew = totalReserves + protocolSeizeAmount;
/////////////////////////
// EFFECTS & INTERACTIONS
// (No safe failures beyond this point)
/* We write the calculated values into storage */
totalReserves = totalReservesNew;
totalSupply = totalSupply - protocolSeizeTokens;
accountTokens[borrower] = accountTokens[borrower] - seizeTokens;
accountTokens[liquidator] = accountTokens[liquidator] + liquidatorSeizeTokens;
/* Emit a Transfer event */
emit Transfer(borrower, liquidator, liquidatorSeizeTokens);
emit Transfer(borrower, address(this), protocolSeizeTokens);
emit ReservesAdded(address(this), protocolSeizeAmount, totalReservesNew);
}
/*** Admin Functions ***/
/**
* @notice Begins transfer of admin rights. The newPendingAdmin must call `_acceptAdmin` to finalize the transfer.
* @dev Admin function to begin change of admin. The newPendingAdmin must call `_acceptAdmin` to finalize the transfer.
* @param newPendingAdmin New pending admin.
* @return uint 0=success, otherwise a failure (see ErrorReporter.sol for details)
*/
function _setPendingAdmin(address payable newPendingAdmin) override external returns (uint) {
// Check caller = admin
if (msg.sender != admin) {
revert SetPendingAdminOwnerCheck();
}
// Save current value, if any, for inclusion in log
address oldPendingAdmin = pendingAdmin;
// Store pendingAdmin with value newPendingAdmin
pendingAdmin = newPendingAdmin;
// Emit NewPendingAdmin(oldPendingAdmin, newPendingAdmin)
emit NewPendingAdmin(oldPendingAdmin, newPendingAdmin);
return NO_ERROR;
}
/**
* @notice Accepts transfer of admin rights. msg.sender must be pendingAdmin
* @dev Admin function for pending admin to accept role and update admin
* @return uint 0=success, otherwise a failure (see ErrorReporter.sol for details)
*/
function _acceptAdmin() override external returns (uint) {
// Check caller is pendingAdmin and pendingAdmin ≠ address(0)
if (msg.sender != pendingAdmin || msg.sender == address(0)) {
revert AcceptAdminPendingAdminCheck();
}
// Save current values for inclusion in log
address oldAdmin = admin;
address oldPendingAdmin = pendingAdmin;
// Store admin with value pendingAdmin
admin = pendingAdmin;
// Clear the pending value
pendingAdmin = payable(address(0));
emit NewAdmin(oldAdmin, admin);
emit NewPendingAdmin(oldPendingAdmin, pendingAdmin);
return NO_ERROR;
}
/**
* @notice Sets a new comptroller for the market
* @dev Admin function to set a new comptroller
* @return uint 0=success, otherwise a failure (see ErrorReporter.sol for details)
*/
function _setComptroller(ComptrollerInterface newComptroller) override public returns (uint) {
// Check caller is admin
if (msg.sender != admin) {
revert SetComptrollerOwnerCheck();
}
ComptrollerInterface oldComptroller = comptroller;
// Ensure invoke comptroller.isComptroller() returns true
require(newComptroller.isComptroller(), "marker method returned false");
// Set market's comptroller to newComptroller
comptroller = newComptroller;
// Emit NewComptroller(oldComptroller, newComptroller)
emit NewComptroller(oldComptroller, newComptroller);
return NO_ERROR;
}
/**
* @notice accrues interest and sets a new reserve factor for the protocol using _setReserveFactorFresh
* @dev Admin function to accrue interest and set a new reserve factor
* @return uint 0=success, otherwise a failure (see ErrorReporter.sol for details)
*/
function _setReserveFactor(uint newReserveFactorMantissa) override external nonReentrant returns (uint) {
accrueInterest();
// _setReserveFactorFresh emits reserve-factor-specific logs on errors, so we don't need to.
return _setReserveFactorFresh(newReserveFactorMantissa);
}
/**
* @notice Sets a new reserve factor for the protocol (*requires fresh interest accrual)
* @dev Admin function to set a new reserve factor
* @return uint 0=success, otherwise a failure (see ErrorReporter.sol for details)
*/
function _setReserveFactorFresh(uint newReserveFactorMantissa) internal returns (uint) {
// Check caller is admin
if (msg.sender != admin) {
revert SetReserveFactorAdminCheck();
}
// Verify market's block number equals current block number
if (accrualBlockNumber != getBlockNumber()) {
revert SetReserveFactorFreshCheck();
}
// Check newReserveFactor ≤ maxReserveFactor
if (newReserveFactorMantissa > reserveFactorMaxMantissa) {
revert SetReserveFactorBoundsCheck();
}
uint oldReserveFactorMantissa = reserveFactorMantissa;
reserveFactorMantissa = newReserveFactorMantissa;
emit NewReserveFactor(oldReserveFactorMantissa, newReserveFactorMantissa);
return NO_ERROR;
}
/**
* @notice Accrues interest and reduces reserves by transferring from msg.sender
* @param addAmount Amount of addition to reserves
* @return uint 0=success, otherwise a failure (see ErrorReporter.sol for details)
*/
function _addReservesInternal(uint addAmount) internal nonReentrant returns (uint) {
accrueInterest();
// _addReservesFresh emits reserve-addition-specific logs on errors, so we don't need to.
_addReservesFresh(addAmount);
return NO_ERROR;
}
/**
* @notice Add reserves by transferring from caller
* @dev Requires fresh interest accrual
* @param addAmount Amount of addition to reserves
* @return (uint, uint) An error code (0=success, otherwise a failure (see ErrorReporter.sol for details)) and the actual amount added, net token fees
*/
function _addReservesFresh(uint addAmount) internal returns (uint, uint) {
// totalReserves + actualAddAmount
uint totalReservesNew;
uint actualAddAmount;
// We fail gracefully unless market's block number equals current block number
if (accrualBlockNumber != getBlockNumber()) {
revert AddReservesFactorFreshCheck(actualAddAmount);
}
/////////////////////////
// EFFECTS & INTERACTIONS
// (No safe failures beyond this point)
/*
* We call doTransferIn for the caller and the addAmount
* Note: The cToken must handle variations between ERC-20 and ETH underlying.
* On success, the cToken holds an additional addAmount of cash.
* doTransferIn reverts if anything goes wrong, since we can't be sure if side effects occurred.
* it returns the amount actually transferred, in case of a fee.
*/
actualAddAmount = doTransferIn(msg.sender, addAmount);
totalReservesNew = totalReserves + actualAddAmount;
// Store reserves[n+1] = reserves[n] + actualAddAmount
totalReserves = totalReservesNew;
/* Emit NewReserves(admin, actualAddAmount, reserves[n+1]) */
emit ReservesAdded(msg.sender, actualAddAmount, totalReservesNew);
/* Return (NO_ERROR, actualAddAmount) */
return (NO_ERROR, actualAddAmount);
}
/**
* @notice Accrues interest and reduces reserves by transferring to admin
* @param reduceAmount Amount of reduction to reserves
* @return uint 0=success, otherwise a failure (see ErrorReporter.sol for details)
*/
function _reduceReserves(uint reduceAmount) override external nonReentrant returns (uint) {
accrueInterest();
// _reduceReservesFresh emits reserve-reduction-specific logs on errors, so we don't need to.
return _reduceReservesFresh(reduceAmount);
}
/**
* @notice Reduces reserves by transferring to admin
* @dev Requires fresh interest accrual
* @param reduceAmount Amount of reduction to reserves
* @return uint 0=success, otherwise a failure (see ErrorReporter.sol for details)
*/
function _reduceReservesFresh(uint reduceAmount) internal returns (uint) {
// totalReserves - reduceAmount
uint totalReservesNew;
// Check caller is admin
if (msg.sender != admin) {
revert ReduceReservesAdminCheck();
}
// We fail gracefully unless market's block number equals current block number
if (accrualBlockNumber != getBlockNumber()) {
revert ReduceReservesFreshCheck();
}
// Fail gracefully if protocol has insufficient underlying cash
if (getCashPrior() < reduceAmount) {
revert ReduceReservesCashNotAvailable();
}
// Check reduceAmount ≤ reserves[n] (totalReserves)
if (reduceAmount > totalReserves) {
revert ReduceReservesCashValidation();
}
/////////////////////////
// EFFECTS & INTERACTIONS
// (No safe failures beyond this point)
totalReservesNew = totalReserves - reduceAmount;
// Store reserves[n+1] = reserves[n] - reduceAmount
totalReserves = totalReservesNew;
// doTransferOut reverts if anything goes wrong, since we can't be sure if side effects occurred.
doTransferOut(admin, reduceAmount);
emit ReservesReduced(admin, reduceAmount, totalReservesNew);
return NO_ERROR;
}
/**
* @notice accrues interest and updates the interest rate model using _setInterestRateModelFresh
* @dev Admin function to accrue interest and update the interest rate model
* @param newInterestRateModel the new interest rate model to use
* @return uint 0=success, otherwise a failure (see ErrorReporter.sol for details)
*/
function _setInterestRateModel(InterestRateModel newInterestRateModel) override public returns (uint) {
accrueInterest();
// _setInterestRateModelFresh emits interest-rate-model-update-specific logs on errors, so we don't need to.
return _setInterestRateModelFresh(newInterestRateModel);
}
/**
* @notice updates the interest rate model (*requires fresh interest accrual)
* @dev Admin function to update the interest rate model
* @param newInterestRateModel the new interest rate model to use
* @return uint 0=success, otherwise a failure (see ErrorReporter.sol for details)
*/
function _setInterestRateModelFresh(InterestRateModel newInterestRateModel) internal returns (uint) {
// Used to store old model for use in the event that is emitted on success
InterestRateModel oldInterestRateModel;
// Check caller is admin
if (msg.sender != admin) {
revert SetInterestRateModelOwnerCheck();
}
// We fail gracefully unless market's block number equals current block number
if (accrualBlockNumber != getBlockNumber()) {
revert SetInterestRateModelFreshCheck();
}
// Track the market's current interest rate model
oldInterestRateModel = interestRateModel;
// Ensure invoke newInterestRateModel.isInterestRateModel() returns true
require(newInterestRateModel.isInterestRateModel(), "marker method returned false");
// Set the interest rate model to newInterestRateModel
interestRateModel = newInterestRateModel;
// Emit NewMarketInterestRateModel(oldInterestRateModel, newInterestRateModel)
emit NewMarketInterestRateModel(oldInterestRateModel, newInterestRateModel);
return NO_ERROR;
}
/*** Safe Token ***/
/**
* @notice Gets balance of this contract in terms of the underlying
* @dev This excludes the value of the current message, if any
* @return The quantity of underlying owned by this contract
*/
function getCashPrior() virtual internal view returns (uint);
/**
* @dev Performs a transfer in, reverting upon failure. Returns the amount actually transferred to the protocol, in case of a fee.
* This may revert due to insufficient balance or insufficient allowance.
*/
function doTransferIn(address from, uint amount) virtual internal returns (uint);
/**
* @dev Performs a transfer out, ideally returning an explanatory error code upon failure rather than reverting.
* If caller has not called checked protocol's balance, may revert due to insufficient cash held in the contract.
* If caller has checked protocol's balance, and verified it is >= amount, this should not revert in normal conditions.
*/
function doTransferOut(address payable to, uint amount) virtual internal;
/*** Reentrancy Guard ***/
/**
* @dev Prevents a contract from calling itself, directly or indirectly.
*/
modifier nonReentrant() {
require(_notEntered, "re-entered");
_notEntered = false;
_;
_notEntered = true; // get a gas-refund post-Istanbul
}
}
ErrorReporter.sol 127 lines
// SPDX-License-Identifier: BSD-3-Clause
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, // no longer possible
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
}
/**
* @dev `error` corresponds to enum Error; `info` corresponds to enum FailureInfo, and `detail` is an arbitrary
* contract-specific code that enables us to report opaque error codes from upgradeable contracts.
**/
event Failure(uint error, uint info, uint detail);
/**
* @dev use this when reporting a known error from the money market or a non-upgradeable collaborator
*/
function fail(Error err, FailureInfo info) internal returns (uint) {
emit Failure(uint(err), uint(info), 0);
return uint(err);
}
/**
* @dev use this when reporting an opaque error from an upgradeable collaborator contract
*/
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; // support legacy return codes
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 ReduceReservesFreshCheck();
error ReduceReservesCashNotAvailable();
error ReduceReservesCashValidation();
error SetInterestRateModelOwnerCheck();
error SetInterestRateModelFreshCheck();
}
CErc20Delegate.sol 44 lines
// SPDX-License-Identifier: BSD-3-Clause
pragma solidity ^0.8.10;
import "./CErc20.sol";
/**
* @title Compound's CErc20Delegate Contract
* @notice CTokens which wrap an EIP-20 underlying and are delegated to
* @author Compound
*/
contract CErc20Delegate is CErc20, CDelegateInterface {
/**
* @notice Construct an empty delegate
*/
constructor() {}
/**
* @notice Called by the delegator on a delegate to initialize it for duty
* @param data The encoded bytes data for any initialization
*/
function _becomeImplementation(bytes memory data) virtual override public {
// Shh -- currently unused
data;
// Shh -- we don't ever want this hook to be marked pure
if (false) {
implementation = address(0);
}
require(msg.sender == admin, "only the admin may call _becomeImplementation");
}
/**
* @notice Called by the delegator on a delegate to forfeit its responsibility
*/
function _resignImplementation() virtual override public {
// Shh -- we don't ever want this hook to be marked pure
if (false) {
implementation = address(0);
}
require(msg.sender == admin, "only the admin may call _resignImplementation");
}
}
EIP20Interface.sol 63 lines
// SPDX-License-Identifier: BSD-3-Clause
pragma solidity ^0.8.10;
/**
* @title ERC 20 Token Standard Interface
* https://eips.ethereum.org/EIPS/eip-20
*/
interface EIP20Interface {
function name() external view returns (string memory);
function symbol() external view returns (string memory);
function decimals() external view returns (uint8);
/**
* @notice Get the total number of tokens in circulation
* @return The supply of tokens
*/
function totalSupply() external view returns (uint256);
/**
* @notice Gets the balance of the specified address
* @param owner The address from which the balance will be retrieved
* @return balance The balance
*/
function balanceOf(address owner) external view returns (uint256 balance);
/**
* @notice Transfer `amount` tokens from `msg.sender` to `dst`
* @param dst The address of the destination account
* @param amount The number of tokens to transfer
* @return success Whether or not the transfer succeeded
*/
function transfer(address dst, uint256 amount) external returns (bool success);
/**
* @notice Transfer `amount` tokens from `src` to `dst`
* @param src The address of the source account
* @param dst The address of the destination account
* @param amount The number of tokens to transfer
* @return success Whether or not the transfer succeeded
*/
function transferFrom(address src, address dst, uint256 amount) external returns (bool success);
/**
* @notice Approve `spender` to transfer up to `amount` from `src`
* @dev This will overwrite the approval amount for `spender`
* and is subject to issues noted [here](https://eips.ethereum.org/EIPS/eip-20#approve)
* @param spender The address of the account which may transfer tokens
* @param amount The number of tokens that are approved (-1 means infinite)
* @return success Whether or not the approval succeeded
*/
function approve(address spender, uint256 amount) external returns (bool success);
/**
* @notice Get the current allowance from `owner` for `spender`
* @param owner The address of the account which owns the tokens to be spent
* @param spender The address of the account which may transfer tokens
* @return remaining The number of tokens allowed to be spent (-1 means infinite)
*/
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);
}
CTokenInterfaces.sol 293 lines
// SPDX-License-Identifier: BSD-3-Clause
pragma solidity ^0.8.10;
import "./ComptrollerInterface.sol";
import "./InterestRateModel.sol";
import "./EIP20NonStandardInterface.sol";
import "./ErrorReporter.sol";
contract CTokenStorage {
/**
* @dev Guard variable for re-entrancy checks
*/
bool internal _notEntered;
/**
* @notice EIP-20 token name for this token
*/
string public name;
/**
* @notice EIP-20 token symbol for this token
*/
string public symbol;
/**
* @notice EIP-20 token decimals for this token
*/
uint8 public decimals;
// Maximum borrow rate that can ever be applied (.0005% / block)
uint internal constant borrowRateMaxMantissa = 0.0005e16;
// Maximum fraction of interest that can be set aside for reserves
uint internal constant reserveFactorMaxMantissa = 1e18;
/**
* @notice Administrator for this contract
*/
address payable public admin;
/**
* @notice Pending administrator for this contract
*/
address payable public pendingAdmin;
/**
* @notice Contract which oversees inter-cToken operations
*/
ComptrollerInterface public comptroller;
/**
* @notice Model which tells what the current interest rate should be
*/
InterestRateModel public interestRateModel;
// Initial exchange rate used when minting the first CTokens (used when totalSupply = 0)
uint internal initialExchangeRateMantissa;
/**
* @notice Fraction of interest currently set aside for reserves
*/
uint public reserveFactorMantissa;
/**
* @notice Block number that interest was last accrued at
*/
uint public accrualBlockNumber;
/**
* @notice Accumulator of the total earned interest rate since the opening of the market
*/
uint public borrowIndex;
/**
* @notice Total amount of outstanding borrows of the underlying in this market
*/
uint public totalBorrows;
/**
* @notice Total amount of reserves of the underlying held in this market
*/
uint public totalReserves;
/**
* @notice Total number of tokens in circulation
*/
uint public totalSupply;
// Official record of token balances for each account
mapping (address => uint) internal accountTokens;
// Approved token transfer amounts on behalf of others
mapping (address => mapping (address => uint)) internal transferAllowances;
/**
* @notice Container for borrow balance information
* @member principal Total balance (with accrued interest), after applying the most recent balance-changing action
* @member interestIndex Global borrowIndex as of the most recent balance-changing action
*/
struct BorrowSnapshot {
uint principal;
uint interestIndex;
}
// Mapping of account addresses to outstanding borrow balances
mapping(address => BorrowSnapshot) internal accountBorrows;
/**
* @notice Share of seized collateral that is added to reserves
*/
uint public constant protocolSeizeShareMantissa = 2.8e16; //2.8%
}
abstract contract CTokenInterface is CTokenStorage {
/**
* @notice Indicator that this is a CToken contract (for inspection)
*/
bool public constant isCToken = true;
/*** Market Events ***/
/**
* @notice Event emitted when interest is accrued
*/
event AccrueInterest(uint cashPrior, uint interestAccumulated, uint borrowIndex, uint totalBorrows);
/**
* @notice Event emitted when tokens are minted
*/
event Mint(address minter, uint mintAmount, uint mintTokens);
/**
* @notice Event emitted when tokens are redeemed
*/
event Redeem(address redeemer, uint redeemAmount, uint redeemTokens);
/**
* @notice Event emitted when underlying is borrowed
*/
event Borrow(address borrower, uint borrowAmount, uint accountBorrows, uint totalBorrows);
/**
* @notice Event emitted when a borrow is repaid
*/
event RepayBorrow(address payer, address borrower, uint repayAmount, uint accountBorrows, uint totalBorrows);
/**
* @notice Event emitted when a borrow is liquidated
*/
event LiquidateBorrow(address liquidator, address borrower, uint repayAmount, address cTokenCollateral, uint seizeTokens);
/*** Admin Events ***/
/**
* @notice Event emitted when pendingAdmin is changed
*/
event NewPendingAdmin(address oldPendingAdmin, address newPendingAdmin);
/**
* @notice Event emitted when pendingAdmin is accepted, which means admin is updated
*/
event NewAdmin(address oldAdmin, address newAdmin);
/**
* @notice Event emitted when comptroller is changed
*/
event NewComptroller(ComptrollerInterface oldComptroller, ComptrollerInterface newComptroller);
/**
* @notice Event emitted when interestRateModel is changed
*/
event NewMarketInterestRateModel(InterestRateModel oldInterestRateModel, InterestRateModel newInterestRateModel);
/**
* @notice Event emitted when the reserve factor is changed
*/
event NewReserveFactor(uint oldReserveFactorMantissa, uint newReserveFactorMantissa);
/**
* @notice Event emitted when the reserves are added
*/
event ReservesAdded(address benefactor, uint addAmount, uint newTotalReserves);
/**
* @notice Event emitted when the reserves are reduced
*/
event ReservesReduced(address admin, uint reduceAmount, uint newTotalReserves);
/**
* @notice EIP20 Transfer event
*/
event Transfer(address indexed from, address indexed to, uint amount);
/**
* @notice EIP20 Approval event
*/
event Approval(address indexed owner, address indexed spender, uint amount);
/*** User Interface ***/
function transfer(address dst, uint amount) virtual external returns (bool);
function transferFrom(address src, address dst, uint amount) virtual external returns (bool);
function approve(address spender, uint amount) virtual external returns (bool);
function allowance(address owner, address spender) virtual external view returns (uint);
function balanceOf(address owner) virtual external view returns (uint);
function balanceOfUnderlying(address owner) virtual external returns (uint);
function getAccountSnapshot(address account) virtual external view returns (uint, uint, uint, uint);
function borrowRatePerBlock() virtual external view returns (uint);
function supplyRatePerBlock() virtual external view returns (uint);
function totalBorrowsCurrent() virtual external returns (uint);
function borrowBalanceCurrent(address account) virtual external returns (uint);
function borrowBalanceStored(address account) virtual external view returns (uint);
function exchangeRateCurrent() virtual external returns (uint);
function exchangeRateStored() virtual external view returns (uint);
function getCash() virtual external view returns (uint);
function accrueInterest() virtual external returns (uint);
function seize(address liquidator, address borrower, uint seizeTokens) virtual external returns (uint);
/*** Admin Functions ***/
function _setPendingAdmin(address payable newPendingAdmin) virtual external returns (uint);
function _acceptAdmin() virtual external returns (uint);
function _setComptroller(ComptrollerInterface newComptroller) virtual external returns (uint);
function _setReserveFactor(uint newReserveFactorMantissa) virtual external returns (uint);
function _reduceReserves(uint reduceAmount) virtual external returns (uint);
function _setInterestRateModel(InterestRateModel newInterestRateModel) virtual external returns (uint);
}
contract CErc20Storage {
/**
* @notice Underlying asset for this CToken
*/
address public underlying;
}
abstract contract CErc20Interface is CErc20Storage {
/*** User Interface ***/
function mint(uint mintAmount) virtual external returns (uint);
function redeem(uint redeemTokens) virtual external returns (uint);
function redeemUnderlying(uint redeemAmount) virtual external returns (uint);
function borrow(uint borrowAmount) virtual external returns (uint);
function repayBorrow(uint repayAmount) virtual external returns (uint);
function repayBorrowBehalf(address borrower, uint repayAmount) virtual external returns (uint);
function liquidateBorrow(address borrower, uint repayAmount, CTokenInterface cTokenCollateral) virtual external returns (uint);
function sweepToken(EIP20NonStandardInterface token) virtual external;
/*** Admin Functions ***/
function _addReserves(uint addAmount) virtual external returns (uint);
}
contract CDelegationStorage {
/**
* @notice Implementation address for this contract
*/
address public implementation;
}
abstract contract CDelegatorInterface is CDelegationStorage {
/**
* @notice Emitted when implementation is changed
*/
event NewImplementation(address oldImplementation, address newImplementation);
/**
* @notice Called by the admin to update the implementation of the delegator
* @param implementation_ The address of the new implementation for delegation
* @param allowResign Flag to indicate whether to call _resignImplementation on the old implementation
* @param becomeImplementationData The encoded bytes data to be passed to _becomeImplementation
*/
function _setImplementation(address implementation_, bool allowResign, bytes memory becomeImplementationData) virtual external;
}
abstract contract CDelegateInterface is CDelegationStorage {
/**
* @notice Called by the delegator on a delegate to initialize it for duty
* @dev Should revert if any issues arise which make it unfit for delegation
* @param data The encoded bytes data for any initialization
*/
function _becomeImplementation(bytes memory data) virtual external;
/**
* @notice Called by the delegator on a delegate to forfeit its responsibility
*/
function _resignImplementation() virtual external;
}
InterestRateModel.sol 30 lines
// SPDX-License-Identifier: BSD-3-Clause
pragma solidity ^0.8.10;
/**
* @title Compound's InterestRateModel Interface
* @author Compound
*/
abstract contract InterestRateModel {
/// @notice Indicator that this is an InterestRateModel contract (for inspection)
bool public constant isInterestRateModel = true;
/**
* @notice Calculates the current borrow interest rate per block
* @param cash The total amount of cash the market has
* @param borrows The total amount of borrows the market has outstanding
* @param reserves The total amount of reserves the market has
* @return The borrow rate per block (as a percentage, and scaled by 1e18)
*/
function getBorrowRate(uint cash, uint borrows, uint reserves) virtual external view returns (uint);
/**
* @notice Calculates the current supply interest rate per block
* @param cash The total amount of cash the market has
* @param borrows The total amount of borrows the market has outstanding
* @param reserves The total amount of reserves the market has
* @param reserveFactorMantissa The current reserve factor the market has
* @return The supply rate per block (as a percentage, and scaled by 1e18)
*/
function getSupplyRate(uint cash, uint borrows, uint reserves, uint reserveFactorMantissa) virtual external view returns (uint);
}
ExponentialNoError.sol 171 lines
// SPDX-License-Identifier: BSD-3-Clause
pragma solidity ^0.8.10;
/**
* @title Exponential module for storing fixed-precision decimals
* @author Compound
* @notice Exp is a struct which stores decimals with a fixed precision of 18 decimal places.
* Thus, if we wanted to store the 5.1, mantissa would store 5.1e18. That is:
* `Exp({mantissa: 5100000000000000000})`.
*/
contract ExponentialNoError {
uint constant expScale = 1e18;
uint constant doubleScale = 1e36;
uint constant halfExpScale = expScale/2;
uint constant mantissaOne = expScale;
struct Exp {
uint mantissa;
}
struct Double {
uint mantissa;
}
/**
* @dev Truncates the given exp to a whole number value.
* For example, truncate(Exp{mantissa: 15 * expScale}) = 15
*/
function truncate(Exp memory exp) pure internal returns (uint) {
// Note: We are not using careful math here as we're performing a division that cannot fail
return exp.mantissa / expScale;
}
/**
* @dev Multiply an Exp by a scalar, then truncate to return an unsigned integer.
*/
function mul_ScalarTruncate(Exp memory a, uint scalar) pure internal returns (uint) {
Exp memory product = mul_(a, scalar);
return truncate(product);
}
/**
* @dev Multiply an Exp by a scalar, truncate, then add an to an unsigned integer, returning an unsigned integer.
*/
function mul_ScalarTruncateAddUInt(Exp memory a, uint scalar, uint addend) pure internal returns (uint) {
Exp memory product = mul_(a, scalar);
return add_(truncate(product), addend);
}
/**
* @dev Checks if first Exp is less than second Exp.
*/
function lessThanExp(Exp memory left, Exp memory right) pure internal returns (bool) {
return left.mantissa < right.mantissa;
}
/**
* @dev Checks if left Exp <= right Exp.
*/
function lessThanOrEqualExp(Exp memory left, Exp memory right) pure internal returns (bool) {
return left.mantissa <= right.mantissa;
}
/**
* @dev Checks if left Exp > right Exp.
*/
function greaterThanExp(Exp memory left, Exp memory right) pure internal returns (bool) {
return left.mantissa > right.mantissa;
}
/**
* @dev returns true if Exp is exactly zero
*/
function isZeroExp(Exp memory value) pure internal returns (bool) {
return value.mantissa == 0;
}
function safe224(uint n, string memory errorMessage) pure internal returns (uint224) {
require(n < 2**224, errorMessage);
return uint224(n);
}
function safe32(uint n, string memory errorMessage) pure internal returns (uint32) {
require(n < 2**32, errorMessage);
return uint32(n);
}
function add_(Exp memory a, Exp memory b) pure internal returns (Exp memory) {
return Exp({mantissa: add_(a.mantissa, b.mantissa)});
}
function add_(Double memory a, Double memory b) pure internal returns (Double memory) {
return Double({mantissa: add_(a.mantissa, b.mantissa)});
}
function add_(uint a, uint b) pure internal returns (uint) {
return a + b;
}
function sub_(Exp memory a, Exp memory b) pure internal returns (Exp memory) {
return Exp({mantissa: sub_(a.mantissa, b.mantissa)});
}
function sub_(Double memory a, Double memory b) pure internal returns (Double memory) {
return Double({mantissa: sub_(a.mantissa, b.mantissa)});
}
function sub_(uint a, uint b) pure internal returns (uint) {
return a - b;
}
function mul_(Exp memory a, Exp memory b) pure internal returns (Exp memory) {
return Exp({mantissa: mul_(a.mantissa, b.mantissa) / expScale});
}
function mul_(Exp memory a, uint b) pure internal returns (Exp memory) {
return Exp({mantissa: mul_(a.mantissa, b)});
}
function mul_(uint a, Exp memory b) pure internal returns (uint) {
return mul_(a, b.mantissa) / expScale;
}
function mul_(Double memory a, Double memory b) pure internal returns (Double memory) {
return Double({mantissa: mul_(a.mantissa, b.mantissa) / doubleScale});
}
function mul_(Double memory a, uint b) pure internal returns (Double memory) {
return Double({mantissa: mul_(a.mantissa, b)});
}
function mul_(uint a, Double memory b) pure internal returns (uint) {
return mul_(a, b.mantissa) / doubleScale;
}
function mul_(uint a, uint b) pure internal returns (uint) {
return a * b;
}
function div_(Exp memory a, Exp memory b) pure internal returns (Exp memory) {
return Exp({mantissa: div_(mul_(a.mantissa, expScale), b.mantissa)});
}
function div_(Exp memory a, uint b) pure internal returns (Exp memory) {
return Exp({mantissa: div_(a.mantissa, b)});
}
function div_(uint a, Exp memory b) pure internal returns (uint) {
return div_(mul_(a, expScale), b.mantissa);
}
function div_(Double memory a, Double memory b) pure internal returns (Double memory) {
return Double({mantissa: div_(mul_(a.mantissa, doubleScale), b.mantissa)});
}
function div_(Double memory a, uint b) pure internal returns (Double memory) {
return Double({mantissa: div_(a.mantissa, b)});
}
function div_(uint a, Double memory b) pure internal returns (uint) {
return div_(mul_(a, doubleScale), b.mantissa);
}
function div_(uint a, uint b) pure internal returns (uint) {
return a / b;
}
function fraction(uint a, uint b) pure internal returns (Double memory) {
return Double({mantissa: div_(mul_(a, doubleScale), b)});
}
}
ComptrollerInterface.sol 72 lines
// SPDX-License-Identifier: BSD-3-Clause
pragma solidity ^0.8.10;
abstract contract ComptrollerInterface {
/// @notice Indicator that this is a Comptroller contract (for inspection)
bool public constant isComptroller = true;
/*** Assets You Are In ***/
function enterMarkets(address[] calldata cTokens) virtual external returns (uint[] memory);
function exitMarket(address cToken) virtual external returns (uint);
/*** Policy Hooks ***/
function mintAllowed(address cToken, address minter, uint mintAmount) virtual external returns (uint);
function mintVerify(address cToken, address minter, uint mintAmount, uint mintTokens) virtual external;
function redeemAllowed(address cToken, address redeemer, uint redeemTokens) virtual external returns (uint);
function redeemVerify(address cToken, address redeemer, uint redeemAmount, uint redeemTokens) virtual external;
function borrowAllowed(address cToken, address borrower, uint borrowAmount) virtual external returns (uint);
function borrowVerify(address cToken, address borrower, uint borrowAmount) virtual external;
function repayBorrowAllowed(
address cToken,
address payer,
address borrower,
uint repayAmount) virtual external returns (uint);
function repayBorrowVerify(
address cToken,
address payer,
address borrower,
uint repayAmount,
uint borrowerIndex) virtual external;
function liquidateBorrowAllowed(
address cTokenBorrowed,
address cTokenCollateral,
address liquidator,
address borrower,
uint repayAmount) virtual external returns (uint);
function liquidateBorrowVerify(
address cTokenBorrowed,
address cTokenCollateral,
address liquidator,
address borrower,
uint repayAmount,
uint seizeTokens) virtual external;
function seizeAllowed(
address cTokenCollateral,
address cTokenBorrowed,
address liquidator,
address borrower,
uint seizeTokens) virtual external returns (uint);
function seizeVerify(
address cTokenCollateral,
address cTokenBorrowed,
address liquidator,
address borrower,
uint seizeTokens) virtual external;
function transferAllowed(address cToken, address src, address dst, uint transferTokens) virtual external returns (uint);
function transferVerify(address cToken, address src, address dst, uint transferTokens) virtual external;
/*** Liquidity/Liquidation Calculations ***/
function liquidateCalculateSeizeTokens(
address cTokenBorrowed,
address cTokenCollateral,
uint repayAmount) virtual external view returns (uint, uint);
}
EIP20NonStandardInterface.sol 71 lines
// SPDX-License-Identifier: BSD-3-Clause
pragma solidity ^0.8.10;
/**
* @title EIP20NonStandardInterface
* @dev Version of ERC20 with no return values for `transfer` and `transferFrom`
* See https://medium.com/coinmonks/missing-return-value-bug-at-least-130-tokens-affected-d67bf08521ca
*/
interface EIP20NonStandardInterface {
/**
* @notice Get the total number of tokens in circulation
* @return The supply of tokens
*/
function totalSupply() external view returns (uint256);
/**
* @notice Gets the balance of the specified address
* @param owner The address from which the balance will be retrieved
* @return balance The balance
*/
function balanceOf(address owner) external view returns (uint256 balance);
///
/// !!!!!!!!!!!!!!
/// !!! NOTICE !!! `transfer` does not return a value, in violation of the ERC-20 specification
/// !!!!!!!!!!!!!!
///
/**
* @notice Transfer `amount` tokens from `msg.sender` to `dst`
* @param dst The address of the destination account
* @param amount The number of tokens to transfer
*/
function transfer(address dst, uint256 amount) external;
///
/// !!!!!!!!!!!!!!
/// !!! NOTICE !!! `transferFrom` does not return a value, in violation of the ERC-20 specification
/// !!!!!!!!!!!!!!
///
/**
* @notice Transfer `amount` tokens from `src` to `dst`
* @param src The address of the source account
* @param dst The address of the destination account
* @param amount The number of tokens to transfer
*/
function transferFrom(address src, address dst, uint256 amount) external;
/**
* @notice Approve `spender` to transfer up to `amount` from `src`
* @dev This will overwrite the approval amount for `spender`
* and is subject to issues noted [here](https://eips.ethereum.org/EIPS/eip-20#approve)
* @param spender The address of the account which may transfer tokens
* @param amount The number of tokens that are approved
* @return success Whether or not the approval succeeded
*/
function approve(address spender, uint256 amount) external returns (bool success);
/**
* @notice Get the current allowance from `owner` for `spender`
* @param owner The address of the account which owns the tokens to be spent
* @param spender The address of the account which may transfer tokens
* @return remaining The number of tokens allowed to be spent
*/
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);
}
Read Contract
NO_ERROR 0x69ab3250 → uint256
accrualBlockNumber 0x6c540baf → uint256
admin 0xf851a440 → address
allowance 0xdd62ed3e → uint256
balanceOf 0x70a08231 → uint256
borrowBalanceStored 0x95dd9193 → uint256
borrowIndex 0xaa5af0fd → uint256
borrowRatePerBlock 0xf8f9da28 → uint256
comptroller 0x5fe3b567 → address
decimals 0x313ce567 → uint8
exchangeRateStored 0x182df0f5 → uint256
getAccountSnapshot 0xc37f68e2 → uint256, uint256, uint256, uint256
getCash 0x3b1d21a2 → uint256
implementation 0x5c60da1b → address
interestRateModel 0xf3fdb15a → address
isCToken 0xfe9c44ae → bool
name 0x06fdde03 → string
pendingAdmin 0x26782247 → address
protocolSeizeShareMantissa 0x6752e702 → uint256
reserveFactorMantissa 0x173b9904 → uint256
supplyRatePerBlock 0xae9d70b0 → uint256
symbol 0x95d89b41 → string
totalBorrows 0x47bd3718 → uint256
totalReserves 0x8f840ddd → uint256
totalSupply 0x18160ddd → uint256
underlying 0x6f307dc3 → address
Write Contract 29 functions
These functions modify contract state and require a wallet transaction to execute.
_acceptAdmin 0xe9c714f2
No parameters
returns: uint256
_addReserves 0x3e941010
uint256 addAmount
returns: uint256
_becomeImplementation 0x56e67728
bytes data
_delegateCompLikeTo 0x7f1e06be
address compLikeDelegatee
_reduceReserves 0x601a0bf1
uint256 reduceAmount
returns: uint256
_resignImplementation 0x153ab505
No parameters
_setComptroller 0x4576b5db
address newComptroller
returns: uint256
_setInterestRateModel 0xf2b3abbd
address newInterestRateModel
returns: uint256
_setPendingAdmin 0xb71d1a0c
address newPendingAdmin
returns: uint256
_setReserveFactor 0xfca7820b
uint256 newReserveFactorMantissa
returns: uint256
accrueInterest 0xa6afed95
No parameters
returns: uint256
approve 0x095ea7b3
address spender
uint256 amount
returns: bool
balanceOfUnderlying 0x3af9e669
address owner
returns: uint256
borrow 0xc5ebeaec
uint256 borrowAmount
returns: uint256
borrowBalanceCurrent 0x17bfdfbc
address account
returns: uint256
exchangeRateCurrent 0xbd6d894d
No parameters
returns: uint256
initialize 0x1a31d465
address underlying_
address comptroller_
address interestRateModel_
uint256 initialExchangeRateMantissa_
string name_
string symbol_
uint8 decimals_
initialize 0x99d8c1b4
address comptroller_
address interestRateModel_
uint256 initialExchangeRateMantissa_
string name_
string symbol_
uint8 decimals_
liquidateBorrow 0xf5e3c462
address borrower
uint256 repayAmount
address cTokenCollateral
returns: uint256
mint 0xa0712d68
uint256 mintAmount
returns: uint256
redeem 0xdb006a75
uint256 redeemTokens
returns: uint256
redeemUnderlying 0x852a12e3
uint256 redeemAmount
returns: uint256
repayBorrow 0x0e752702
uint256 repayAmount
returns: uint256
repayBorrowBehalf 0x2608f818
address borrower
uint256 repayAmount
returns: uint256
seize 0xb2a02ff1
address liquidator
address borrower
uint256 seizeTokens
returns: uint256
sweepToken 0x1be19560
address token
totalBorrowsCurrent 0x73acee98
No parameters
returns: uint256
transfer 0xa9059cbb
address dst
uint256 amount
returns: bool
transferFrom 0x23b872dd
address src
address dst
uint256 amount
returns: bool
Recent Transactions
This address has 1 on-chain transactions, but only 1.3% of the chain is indexed. Transactions will appear as indexing progresses. View on Etherscan →