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https://github.com/Instadapp/aave-protocol-v2.git
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411 lines
17 KiB
Solidity
411 lines
17 KiB
Solidity
// SPDX-License-Identifier: agpl-3.0
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pragma solidity 0.6.12;
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pragma experimental ABIEncoderV2;
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import {ILendingPoolAddressesProvider} from './ILendingPoolAddressesProvider.sol';
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import {DataTypes} from '../protocol/libraries/types/DataTypes.sol';
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interface ILendingPool {
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/**
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* @dev Emitted on deposit()
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* @param reserve The address of the underlying asset of the reserve
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* @param user The address initiating the deposit
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* @param onBehalfOf The beneficiary of the deposit, receiving the aTokens
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* @param amount The amount deposited
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* @param referral The referral code used
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**/
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event Deposit(
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address indexed reserve,
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address user,
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address indexed onBehalfOf,
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uint256 amount,
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uint16 indexed referral
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);
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/**
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* @dev Emitted on withdraw()
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* @param reserve The address of the underlyng asset being withdrawn
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* @param user The address initiating the withdrawal, owner of aTokens
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* @param to Address that will receive the underlying
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* @param amount The amount to be withdrawn
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**/
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event Withdraw(address indexed reserve, address indexed user, address indexed to, uint256 amount);
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/**
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* @dev Emitted on borrow() and flashLoan() when debt needs to be opened
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* @param reserve The address of the underlying asset being borrowed
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* @param user The address of the user initiating the borrow(), receiving the funds on borrow() or just
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* initiator of the transaction on flashLoan()
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* @param onBehalfOf The address that will be getting the debt
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* @param amount The amount borrowed out
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* @param borrowRateMode The rate mode: 1 for Stable, 2 for Variable
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* @param borrowRate The numeric rate at which the user has borrowed
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* @param referral The referral code used
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**/
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event Borrow(
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address indexed reserve,
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address user,
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address indexed onBehalfOf,
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uint256 amount,
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uint256 borrowRateMode,
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uint256 borrowRate,
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uint16 indexed referral
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);
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/**
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* @dev Emitted on repay()
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* @param reserve The address of the underlying asset of the reserve
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* @param user The beneficiary of the repayment, getting his debt reduced
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* @param repayer The address of the user initiating the repay(), providing the funds
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* @param amount The amount repaid
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**/
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event Repay(
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address indexed reserve,
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address indexed user,
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address indexed repayer,
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uint256 amount
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);
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/**
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* @dev Emitted on swapBorrowRateMode()
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* @param reserve The address of the underlying asset of the reserve
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* @param user The address of the user swapping his rate mode
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* @param rateMode The rate mode that the user wants to swap to
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**/
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event Swap(address indexed reserve, address indexed user, uint256 rateMode);
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/**
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* @dev Emitted on setUserUseReserveAsCollateral()
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* @param reserve The address of the underlying asset of the reserve
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* @param user The address of the user enabling the usage as collateral
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**/
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event ReserveUsedAsCollateralEnabled(address indexed reserve, address indexed user);
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/**
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* @dev Emitted on setUserUseReserveAsCollateral()
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* @param reserve The address of the underlying asset of the reserve
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* @param user The address of the user enabling the usage as collateral
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**/
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event ReserveUsedAsCollateralDisabled(address indexed reserve, address indexed user);
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/**
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* @dev Emitted on rebalanceStableBorrowRate()
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* @param reserve The address of the underlying asset of the reserve
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* @param user The address of the user for which the rebalance has been executed
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**/
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event RebalanceStableBorrowRate(address indexed reserve, address indexed user);
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/**
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* @dev Emitted on flashLoan()
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* @param target The address of the flash loan receiver contract
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* @param initiator The address initiating the flash loan
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* @param asset The address of the asset being flash borrowed
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* @param amount The amount flash borrowed
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* @param premium The fee flash borrowed
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* @param referralCode The referral code used
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**/
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event FlashLoan(
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address indexed target,
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address indexed initiator,
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address indexed asset,
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uint256 amount,
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uint256 premium,
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uint16 referralCode
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);
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/**
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* @dev Emitted when the pause is triggered.
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*/
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event Paused();
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/**
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* @dev Emitted when the pause is lifted.
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*/
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event Unpaused();
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/**
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* @dev Emitted when a borrower is liquidated. This event is emitted by the LendingPool via
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* LendingPoolCollateral manager using a DELEGATECALL
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* This allows to have the events in the generated ABI for LendingPool.
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* @param collateralAsset The address of the underlying asset used as collateral, to receive as result of the liquidation
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* @param debtAsset The address of the underlying borrowed asset to be repaid with the liquidation
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* @param user The address of the borrower getting liquidated
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* @param debtToCover The debt amount of borrowed `asset` the liquidator wants to cover
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* @param liquidatedCollateralAmount The amount of collateral received by the liiquidator
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* @param liquidator The address of the liquidator
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* @param receiveAToken `true` if the liquidators wants to receive the collateral aTokens, `false` if he wants
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* to receive the underlying collateral asset directly
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**/
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event LiquidationCall(
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address indexed collateralAsset,
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address indexed debtAsset,
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address indexed user,
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uint256 debtToCover,
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uint256 liquidatedCollateralAmount,
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address liquidator,
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bool receiveAToken
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);
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/**
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* @dev Emitted when the state of a reserve is updated. NOTE: This event is actually declared
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* in the ReserveLogic library and emitted in the updateInterestRates() function. Since the function is internal,
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* the event will actually be fired by the LendingPool contract. The event is therefore replicated here so it
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* gets added to the LendingPool ABI
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* @param reserve The address of the underlying asset of the reserve
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* @param liquidityRate The new liquidity rate
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* @param stableBorrowRate The new stable borrow rate
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* @param variableBorrowRate The new variable borrow rate
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* @param liquidityIndex The new liquidity index
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* @param variableBorrowIndex The new variable borrow index
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**/
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event ReserveDataUpdated(
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address indexed reserve,
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uint256 liquidityRate,
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uint256 stableBorrowRate,
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uint256 variableBorrowRate,
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uint256 liquidityIndex,
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uint256 variableBorrowIndex
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);
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/**
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* @dev Deposits an `amount` of underlying asset into the reserve, receiving in return overlying aTokens.
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* - E.g. User deposits 100 USDC and gets in return 100 aUSDC
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* @param asset The address of the underlying asset to deposit
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* @param amount The amount to be deposited
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* @param onBehalfOf The address that will receive the aTokens, same as msg.sender if the user
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* wants to receive them on his own wallet, or a different address if the beneficiary of aTokens
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* is a different wallet
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* @param referralCode Code used to register the integrator originating the operation, for potential rewards.
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* 0 if the action is executed directly by the user, without any middle-man
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**/
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function deposit(
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address asset,
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uint256 amount,
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address onBehalfOf,
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uint16 referralCode
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) external;
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/**
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* @dev Withdraws an `amount` of underlying asset from the reserve, burning the equivalent aTokens owned
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* E.g. User has 100 aUSDC, calls withdraw() and receives 100 USDC, burning the 100 aUSDC
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* @param asset The address of the underlying asset to withdraw
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* @param amount The underlying amount to be withdrawn
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* - Send the value type(uint256).max in order to withdraw the whole aToken balance
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* @param to Address that will receive the underlying, same as msg.sender if the user
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* wants to receive it on his own wallet, or a different address if the beneficiary is a
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* different wallet
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* @return The final amount withdrawn
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**/
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function withdraw(
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address asset,
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uint256 amount,
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address to
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) external returns (uint256);
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/**
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* @dev Allows users to borrow a specific `amount` of the reserve underlying asset, provided that the borrower
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* already deposited enough collateral, or he was given enough allowance by a credit delegator on the
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* corresponding debt token (StableDebtToken or VariableDebtToken)
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* - E.g. User borrows 100 USDC passing as `onBehalfOf` his own address, receiving the 100 USDC in his wallet
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* and 100 stable/variable debt tokens, depending on the `interestRateMode`
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* @param asset The address of the underlying asset to borrow
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* @param amount The amount to be borrowed
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* @param interestRateMode The interest rate mode at which the user wants to borrow: 1 for Stable, 2 for Variable
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* @param referralCode Code used to register the integrator originating the operation, for potential rewards.
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* 0 if the action is executed directly by the user, without any middle-man
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* @param onBehalfOf Address of the user who will receive the debt. Should be the address of the borrower itself
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* calling the function if he wants to borrow against his own collateral, or the address of the credit delegator
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* if he has been given credit delegation allowance
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**/
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function borrow(
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address asset,
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uint256 amount,
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uint256 interestRateMode,
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uint16 referralCode,
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address onBehalfOf
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) external;
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/**
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* @notice Repays a borrowed `amount` on a specific reserve, burning the equivalent debt tokens owned
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* - E.g. User repays 100 USDC, burning 100 variable/stable debt tokens of the `onBehalfOf` address
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* @param asset The address of the borrowed underlying asset previously borrowed
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* @param amount The amount to repay
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* - Send the value type(uint256).max in order to repay the whole debt for `asset` on the specific `debtMode`
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* @param rateMode The interest rate mode at of the debt the user wants to repay: 1 for Stable, 2 for Variable
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* @param onBehalfOf Address of the user who will get his debt reduced/removed. Should be the address of the
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* user calling the function if he wants to reduce/remove his own debt, or the address of any other
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* other borrower whose debt should be removed
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* @return The final amount repaid
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**/
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function repay(
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address asset,
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uint256 amount,
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uint256 rateMode,
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address onBehalfOf
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) external returns (uint256);
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/**
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* @dev Allows a borrower to swap his debt between stable and variable mode, or viceversa
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* @param asset The address of the underlying asset borrowed
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* @param rateMode The rate mode that the user wants to swap to
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**/
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function swapBorrowRateMode(address asset, uint256 rateMode) external;
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/**
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* @dev Rebalances the stable interest rate of a user to the current stable rate defined on the reserve.
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* - Users can be rebalanced if the following conditions are satisfied:
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* 1. Usage ratio is above 95%
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* 2. the current deposit APY is below REBALANCE_UP_THRESHOLD * maxVariableBorrowRate, which means that too much has been
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* borrowed at a stable rate and depositors are not earning enough
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* @param asset The address of the underlying asset borrowed
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* @param user The address of the user to be rebalanced
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**/
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function rebalanceStableBorrowRate(address asset, address user) external;
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/**
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* @dev Allows depositors to enable/disable a specific deposited asset as collateral
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* @param asset The address of the underlying asset deposited
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* @param useAsCollateral `true` if the user wants to use the deposit as collateral, `false` otherwise
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**/
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function setUserUseReserveAsCollateral(address asset, bool useAsCollateral) external;
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/**
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* @dev Function to liquidate a non-healthy position collateral-wise, with Health Factor below 1
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* - The caller (liquidator) covers `debtToCover` amount of debt of the user getting liquidated, and receives
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* a proportionally amount of the `collateralAsset` plus a bonus to cover market risk
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* @param collateralAsset The address of the underlying asset used as collateral, to receive as result of the liquidation
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* @param debtAsset The address of the underlying borrowed asset to be repaid with the liquidation
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* @param user The address of the borrower getting liquidated
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* @param debtToCover The debt amount of borrowed `asset` the liquidator wants to cover
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* @param receiveAToken `true` if the liquidators wants to receive the collateral aTokens, `false` if he wants
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* to receive the underlying collateral asset directly
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**/
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function liquidationCall(
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address collateralAsset,
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address debtAsset,
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address user,
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uint256 debtToCover,
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bool receiveAToken
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) external;
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/**
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* @dev Allows smartcontracts to access the liquidity of the pool within one transaction,
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* as long as the amount taken plus a fee is returned.
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* IMPORTANT There are security concerns for developers of flashloan receiver contracts that must be kept into consideration.
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* For further details please visit https://developers.aave.com
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* @param receiverAddress The address of the contract receiving the funds, implementing the IFlashLoanReceiver interface
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* @param assets The addresses of the assets being flash-borrowed
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* @param amounts The amounts amounts being flash-borrowed
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* @param modes Types of the debt to open if the flash loan is not returned:
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* 0 -> Don't open any debt, just revert if funds can't be transferred from the receiver
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* 1 -> Open debt at stable rate for the value of the amount flash-borrowed to the `onBehalfOf` address
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* 2 -> Open debt at variable rate for the value of the amount flash-borrowed to the `onBehalfOf` address
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* @param onBehalfOf The address that will receive the debt in the case of using on `modes` 1 or 2
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* @param params Variadic packed params to pass to the receiver as extra information
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* @param referralCode Code used to register the integrator originating the operation, for potential rewards.
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* 0 if the action is executed directly by the user, without any middle-man
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**/
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function flashLoan(
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address receiverAddress,
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address[] calldata assets,
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uint256[] calldata amounts,
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uint256[] calldata modes,
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address onBehalfOf,
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bytes calldata params,
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uint16 referralCode
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) external;
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/**
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* @dev Returns the user account data across all the reserves
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* @param user The address of the user
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* @return totalCollateralETH the total collateral in ETH of the user
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* @return totalDebtETH the total debt in ETH of the user
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* @return availableBorrowsETH the borrowing power left of the user
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* @return currentLiquidationThreshold the liquidation threshold of the user
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* @return ltv the loan to value of the user
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* @return healthFactor the current health factor of the user
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**/
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function getUserAccountData(address user)
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external
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view
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returns (
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uint256 totalCollateralETH,
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uint256 totalDebtETH,
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uint256 availableBorrowsETH,
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uint256 currentLiquidationThreshold,
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uint256 ltv,
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uint256 healthFactor
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);
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function initReserve(
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address reserve,
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address aTokenAddress,
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address stableDebtAddress,
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address variableDebtAddress,
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address interestRateStrategyAddress
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) external;
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function setReserveInterestRateStrategyAddress(address reserve, address rateStrategyAddress)
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external;
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function setConfiguration(address reserve, uint256 configuration) external;
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/**
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* @dev Returns the configuration of the reserve
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* @param asset The address of the underlying asset of the reserve
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* @return The configuration of the reserve
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**/
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function getConfiguration(address asset)
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external
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view
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returns (DataTypes.ReserveConfigurationMap memory);
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/**
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* @dev Returns the configuration of the user across all the reserves
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* @param user The user address
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* @return The configuration of the user
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**/
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function getUserConfiguration(address user)
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external
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view
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returns (DataTypes.UserConfigurationMap memory);
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/**
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* @dev Returns the normalized income normalized income of the reserve
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* @param asset The address of the underlying asset of the reserve
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* @return The reserve's normalized income
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*/
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function getReserveNormalizedIncome(address asset) external view returns (uint256);
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/**
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* @dev Returns the normalized variable debt per unit of asset
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* @param asset The address of the underlying asset of the reserve
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* @return The reserve normalized variable debt
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*/
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function getReserveNormalizedVariableDebt(address asset) external view returns (uint256);
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/**
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* @dev Returns the state and configuration of the reserve
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* @param asset The address of the underlying asset of the reserve
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* @return The state of the reserve
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**/
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function getReserveData(address asset) external view returns (DataTypes.ReserveData memory);
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function finalizeTransfer(
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address asset,
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address from,
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address to,
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uint256 amount,
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uint256 balanceFromAfter,
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uint256 balanceToBefore
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) external;
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function getReservesList() external view returns (address[] memory);
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function getAddressesProvider() external view returns (ILendingPoolAddressesProvider);
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function setPause(bool val) external;
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function paused() external view returns (bool);
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}
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