mirror of
https://github.com/Instadapp/aave-protocol-v2.git
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407 lines
13 KiB
Solidity
407 lines
13 KiB
Solidity
// SPDX-License-Identifier: agpl-3.0
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pragma solidity 0.6.12;
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import {IERC20} from '../../dependencies/openzeppelin/contracts/IERC20.sol';
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import {SafeERC20} from '../../dependencies/openzeppelin/contracts/SafeERC20.sol';
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import {ILendingPool} from '../../interfaces/ILendingPool.sol';
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import {IAToken} from '../../interfaces/IAToken.sol';
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import {WadRayMath} from '../libraries/math/WadRayMath.sol';
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import {Errors} from '../libraries/helpers/Errors.sol';
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import {VersionedInitializable} from '../libraries/aave-upgradeability/VersionedInitializable.sol';
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import {IncentivizedERC20} from './IncentivizedERC20.sol';
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import {IAaveIncentivesController} from '../../interfaces/IAaveIncentivesController.sol';
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/**
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* @title Aave ERC20 AToken
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* @dev Implementation of the interest bearing token for the Aave protocol
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* @author Aave
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*/
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contract AToken is
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VersionedInitializable,
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IncentivizedERC20('ATOKEN_IMPL', 'ATOKEN_IMPL', 0),
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IAToken
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{
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using WadRayMath for uint256;
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using SafeERC20 for IERC20;
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bytes public constant EIP712_REVISION = bytes('1');
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bytes32 internal constant EIP712_DOMAIN =
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keccak256('EIP712Domain(string name,string version,uint256 chainId,address verifyingContract)');
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bytes32 public constant PERMIT_TYPEHASH =
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keccak256('Permit(address owner,address spender,uint256 value,uint256 nonce,uint256 deadline)');
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uint256 public constant ATOKEN_REVISION = 0x1;
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/// @dev owner => next valid nonce to submit with permit()
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mapping(address => uint256) public _nonces;
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bytes32 public DOMAIN_SEPARATOR;
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ILendingPool internal _pool;
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address internal _treasury;
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address internal _underlyingAsset;
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IAaveIncentivesController internal _incentivesController;
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modifier onlyLendingPool {
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require(_msgSender() == address(_pool), Errors.CT_CALLER_MUST_BE_LENDING_POOL);
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_;
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}
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function getRevision() internal pure virtual override returns (uint256) {
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return ATOKEN_REVISION;
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}
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/**
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* @dev Initializes the aToken
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* @param pool The address of the lending pool where this aToken will be used
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* @param treasury The address of the Aave treasury, receiving the fees on this aToken
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* @param underlyingAsset The address of the underlying asset of this aToken (E.g. WETH for aWETH)
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* @param incentivesController The smart contract managing potential incentives distribution
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* @param aTokenDecimals The decimals of the aToken, same as the underlying asset's
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* @param aTokenName The name of the aToken
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* @param aTokenSymbol The symbol of the aToken
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*/
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function initialize(
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ILendingPool pool,
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address treasury,
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address underlyingAsset,
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IAaveIncentivesController incentivesController,
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uint8 aTokenDecimals,
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string calldata aTokenName,
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string calldata aTokenSymbol,
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bytes calldata params
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) external override initializer {
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uint256 chainId;
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//solium-disable-next-line
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assembly {
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chainId := chainid()
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}
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DOMAIN_SEPARATOR = keccak256(
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abi.encode(
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EIP712_DOMAIN,
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keccak256(bytes(aTokenName)),
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keccak256(EIP712_REVISION),
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chainId,
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address(this)
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)
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);
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_setName(aTokenName);
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_setSymbol(aTokenSymbol);
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_setDecimals(aTokenDecimals);
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_pool = pool;
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_treasury = treasury;
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_underlyingAsset = underlyingAsset;
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_incentivesController = incentivesController;
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emit Initialized(
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underlyingAsset,
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address(pool),
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treasury,
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address(incentivesController),
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aTokenDecimals,
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aTokenName,
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aTokenSymbol,
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params
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);
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}
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/**
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* @dev Burns aTokens from `user` and sends the equivalent amount of underlying to `receiverOfUnderlying`
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* - Only callable by the LendingPool, as extra state updates there need to be managed
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* @param user The owner of the aTokens, getting them burned
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* @param receiverOfUnderlying The address that will receive the underlying
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* @param amount The amount being burned
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* @param index The new liquidity index of the reserve
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**/
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function burn(
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address user,
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address receiverOfUnderlying,
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uint256 amount,
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uint256 index
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) external override onlyLendingPool {
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uint256 amountScaled = amount.rayDiv(index);
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require(amountScaled != 0, Errors.CT_INVALID_BURN_AMOUNT);
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_burn(user, amountScaled);
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IERC20(_underlyingAsset).safeTransfer(receiverOfUnderlying, amount);
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emit Transfer(user, address(0), amount);
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emit Burn(user, receiverOfUnderlying, amount, index);
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}
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/**
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* @dev Mints `amount` aTokens to `user`
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* - Only callable by the LendingPool, as extra state updates there need to be managed
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* @param user The address receiving the minted tokens
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* @param amount The amount of tokens getting minted
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* @param index The new liquidity index of the reserve
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* @return `true` if the the previous balance of the user was 0
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*/
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function mint(
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address user,
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uint256 amount,
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uint256 index
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) external override onlyLendingPool returns (bool) {
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uint256 previousBalance = super.balanceOf(user);
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uint256 amountScaled = amount.rayDiv(index);
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require(amountScaled != 0, Errors.CT_INVALID_MINT_AMOUNT);
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_mint(user, amountScaled);
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emit Transfer(address(0), user, amount);
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emit Mint(user, amount, index);
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return previousBalance == 0;
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}
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/**
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* @dev Mints aTokens to the reserve treasury
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* - Only callable by the LendingPool
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* @param amount The amount of tokens getting minted
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* @param index The new liquidity index of the reserve
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*/
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function mintToTreasury(uint256 amount, uint256 index) external override onlyLendingPool {
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if (amount == 0) {
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return;
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}
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address treasury = _treasury;
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// Compared to the normal mint, we don't check for rounding errors.
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// The amount to mint can easily be very small since it is a fraction of the interest ccrued.
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// In that case, the treasury will experience a (very small) loss, but it
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// wont cause potentially valid transactions to fail.
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_mint(treasury, amount.rayDiv(index));
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emit Transfer(address(0), treasury, amount);
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emit Mint(treasury, amount, index);
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}
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/**
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* @dev Transfers aTokens in the event of a borrow being liquidated, in case the liquidators reclaims the aToken
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* - Only callable by the LendingPool
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* @param from The address getting liquidated, current owner of the aTokens
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* @param to The recipient
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* @param value The amount of tokens getting transferred
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**/
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function transferOnLiquidation(
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address from,
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address to,
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uint256 value
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) external override onlyLendingPool {
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// Being a normal transfer, the Transfer() and BalanceTransfer() are emitted
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// so no need to emit a specific event here
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_transfer(from, to, value, false);
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emit Transfer(from, to, value);
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}
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/**
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* @dev Calculates the balance of the user: principal balance + interest generated by the principal
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* @param user The user whose balance is calculated
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* @return The balance of the user
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**/
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function balanceOf(address user)
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public
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view
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override(IncentivizedERC20, IERC20)
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returns (uint256)
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{
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return super.balanceOf(user).rayMul(_pool.getReserveNormalizedIncome(_underlyingAsset));
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}
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/**
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* @dev Returns the scaled balance of the user. The scaled balance is the sum of all the
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* updated stored balance divided by the reserve's liquidity index at the moment of the update
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* @param user The user whose balance is calculated
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* @return The scaled balance of the user
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**/
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function scaledBalanceOf(address user) external view override returns (uint256) {
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return super.balanceOf(user);
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}
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/**
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* @dev Returns the scaled balance of the user and the scaled total supply.
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* @param user The address of the user
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* @return The scaled balance of the user
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* @return The scaled balance and the scaled total supply
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**/
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function getScaledUserBalanceAndSupply(address user)
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external
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view
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override
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returns (uint256, uint256)
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{
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return (super.balanceOf(user), super.totalSupply());
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}
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/**
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* @dev calculates the total supply of the specific aToken
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* since the balance of every single user increases over time, the total supply
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* does that too.
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* @return the current total supply
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**/
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function totalSupply() public view override(IncentivizedERC20, IERC20) returns (uint256) {
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uint256 currentSupplyScaled = super.totalSupply();
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if (currentSupplyScaled == 0) {
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return 0;
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}
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return currentSupplyScaled.rayMul(_pool.getReserveNormalizedIncome(_underlyingAsset));
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}
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/**
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* @dev Returns the scaled total supply of the variable debt token. Represents sum(debt/index)
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* @return the scaled total supply
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**/
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function scaledTotalSupply() public view virtual override returns (uint256) {
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return super.totalSupply();
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}
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/**
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* @dev Returns the address of the Aave treasury, receiving the fees on this aToken
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**/
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function RESERVE_TREASURY_ADDRESS() public view returns (address) {
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return _treasury;
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}
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/**
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* @dev Returns the address of the underlying asset of this aToken (E.g. WETH for aWETH)
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**/
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function UNDERLYING_ASSET_ADDRESS() public override view returns (address) {
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return _underlyingAsset;
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}
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/**
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* @dev Returns the address of the lending pool where this aToken is used
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**/
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function POOL() public view returns (ILendingPool) {
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return _pool;
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}
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/**
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* @dev For internal usage in the logic of the parent contract IncentivizedERC20
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**/
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function _getIncentivesController() internal view override returns (IAaveIncentivesController) {
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return _incentivesController;
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}
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/**
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* @dev Returns the address of the incentives controller contract
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**/
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function getIncentivesController() external view override returns (IAaveIncentivesController) {
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return _getIncentivesController();
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}
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/**
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* @dev Transfers the underlying asset to `target`. Used by the LendingPool to transfer
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* assets in borrow(), withdraw() and flashLoan()
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* @param target The recipient of the aTokens
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* @param amount The amount getting transferred
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* @return The amount transferred
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**/
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function transferUnderlyingTo(address target, uint256 amount)
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external
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override
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onlyLendingPool
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returns (uint256)
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{
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IERC20(_underlyingAsset).safeTransfer(target, amount);
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return amount;
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}
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/**
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* @dev Invoked to execute actions on the aToken side after a repayment.
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* @param user The user executing the repayment
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* @param amount The amount getting repaid
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**/
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function handleRepayment(address user, uint256 amount) external override onlyLendingPool {}
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/**
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* @dev implements the permit function as for
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* https://github.com/ethereum/EIPs/blob/8a34d644aacf0f9f8f00815307fd7dd5da07655f/EIPS/eip-2612.md
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* @param owner The owner of the funds
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* @param spender The spender
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* @param value The amount
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* @param deadline The deadline timestamp, type(uint256).max for max deadline
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* @param v Signature param
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* @param s Signature param
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* @param r Signature param
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*/
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function permit(
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address owner,
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address spender,
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uint256 value,
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uint256 deadline,
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uint8 v,
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bytes32 r,
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bytes32 s
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) external {
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require(owner != address(0), 'INVALID_OWNER');
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//solium-disable-next-line
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require(block.timestamp <= deadline, 'INVALID_EXPIRATION');
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uint256 currentValidNonce = _nonces[owner];
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bytes32 digest =
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keccak256(
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abi.encodePacked(
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'\x19\x01',
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DOMAIN_SEPARATOR,
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keccak256(abi.encode(PERMIT_TYPEHASH, owner, spender, value, currentValidNonce, deadline))
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)
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);
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require(owner == ecrecover(digest, v, r, s), 'INVALID_SIGNATURE');
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_nonces[owner] = currentValidNonce.add(1);
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_approve(owner, spender, value);
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}
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/**
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* @dev Transfers the aTokens between two users. Validates the transfer
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* (ie checks for valid HF after the transfer) if required
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* @param from The source address
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* @param to The destination address
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* @param amount The amount getting transferred
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* @param validate `true` if the transfer needs to be validated
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**/
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function _transfer(
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address from,
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address to,
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uint256 amount,
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bool validate
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) internal {
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address underlyingAsset = _underlyingAsset;
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ILendingPool pool = _pool;
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uint256 index = pool.getReserveNormalizedIncome(underlyingAsset);
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uint256 fromBalanceBefore = super.balanceOf(from).rayMul(index);
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uint256 toBalanceBefore = super.balanceOf(to).rayMul(index);
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super._transfer(from, to, amount.rayDiv(index));
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if (validate) {
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pool.finalizeTransfer(underlyingAsset, from, to, amount, fromBalanceBefore, toBalanceBefore);
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}
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emit BalanceTransfer(from, to, amount, index);
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}
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/**
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* @dev Overrides the parent _transfer to force validated transfer() and transferFrom()
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* @param from The source address
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* @param to The destination address
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* @param amount The amount getting transferred
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**/
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function _transfer(
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address from,
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address to,
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uint256 amount
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) internal override {
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_transfer(from, to, amount, true);
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}
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}
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