mirror of
https://github.com/Instadapp/aave-protocol-v2.git
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436 lines
14 KiB
Solidity
436 lines
14 KiB
Solidity
// SPDX-License-Identifier: agpl-3.0
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pragma solidity 0.6.12;
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import {DebtTokenBase} from './base/DebtTokenBase.sol';
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import {MathUtils} from '../libraries/math/MathUtils.sol';
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import {WadRayMath} from '../libraries/math/WadRayMath.sol';
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import {IStableDebtToken} from '../../interfaces/IStableDebtToken.sol';
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import {ILendingPool} from '../../interfaces/ILendingPool.sol';
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import {IAaveIncentivesController} from '../../interfaces/IAaveIncentivesController.sol';
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import {Errors} from '../libraries/helpers/Errors.sol';
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/**
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* @title StableDebtToken
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* @notice Implements a stable debt token to track the borrowing positions of users
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* at stable rate mode
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* @author Aave
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**/
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contract StableDebtToken is IStableDebtToken, DebtTokenBase {
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using WadRayMath for uint256;
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uint256 public constant DEBT_TOKEN_REVISION = 0x1;
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uint256 internal _avgStableRate;
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mapping(address => uint40) internal _timestamps;
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mapping(address => uint256) internal _usersStableRate;
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uint40 internal _totalSupplyTimestamp;
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ILendingPool internal _pool;
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address internal _underlyingAsset;
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IAaveIncentivesController internal _incentivesController;
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/**
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* @dev Initializes the debt token.
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* @param pool The address of the lending pool where this aToken will be used
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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 debtTokenDecimals The decimals of the debtToken, same as the underlying asset's
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* @param debtTokenName The name of the token
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* @param debtTokenSymbol The symbol of the token
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*/
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function initialize(
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ILendingPool pool,
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address underlyingAsset,
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IAaveIncentivesController incentivesController,
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uint8 debtTokenDecimals,
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string memory debtTokenName,
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string memory debtTokenSymbol,
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bytes calldata params
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) public override initializer {
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_setName(debtTokenName);
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_setSymbol(debtTokenSymbol);
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_setDecimals(debtTokenDecimals);
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_pool = pool;
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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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address(incentivesController),
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debtTokenDecimals,
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debtTokenName,
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debtTokenSymbol,
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params
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);
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}
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/**
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* @dev Gets the revision of the stable debt token implementation
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* @return The debt token implementation revision
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**/
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function getRevision() internal pure virtual override returns (uint256) {
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return DEBT_TOKEN_REVISION;
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}
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/**
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* @dev Returns the average stable rate across all the stable rate debt
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* @return the average stable rate
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**/
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function getAverageStableRate() external view virtual override returns (uint256) {
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return _avgStableRate;
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}
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/**
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* @dev Returns the timestamp of the last user action
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* @return The last update timestamp
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**/
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function getUserLastUpdated(address user) external view virtual override returns (uint40) {
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return _timestamps[user];
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}
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/**
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* @dev Returns the stable rate of the user
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* @param user The address of the user
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* @return The stable rate of user
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**/
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function getUserStableRate(address user) external view virtual override returns (uint256) {
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return _usersStableRate[user];
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}
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/**
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* @dev Calculates the current user debt balance
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* @return The accumulated debt of the user
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**/
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function balanceOf(address account) public view virtual override returns (uint256) {
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uint256 accountBalance = super.balanceOf(account);
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uint256 stableRate = _usersStableRate[account];
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if (accountBalance == 0) {
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return 0;
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}
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uint256 cumulatedInterest =
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MathUtils.calculateCompoundedInterest(stableRate, _timestamps[account]);
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return accountBalance.rayMul(cumulatedInterest);
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}
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struct MintLocalVars {
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uint256 previousSupply;
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uint256 nextSupply;
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uint256 amountInRay;
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uint256 newStableRate;
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uint256 currentAvgStableRate;
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}
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/**
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* @dev Mints debt token to the `onBehalfOf` address.
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* - Only callable by the LendingPool
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* - The resulting rate is the weighted average between the rate of the new debt
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* and the rate of the previous debt
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* @param user The address receiving the borrowed underlying, being the delegatee in case
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* of credit delegate, or same as `onBehalfOf` otherwise
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* @param onBehalfOf The address receiving the debt tokens
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* @param amount The amount of debt tokens to mint
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* @param rate The rate of the debt being minted
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**/
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function mint(
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address user,
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address onBehalfOf,
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uint256 amount,
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uint256 rate
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) external override onlyLendingPool returns (bool) {
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MintLocalVars memory vars;
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if (user != onBehalfOf) {
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_decreaseBorrowAllowance(onBehalfOf, user, amount);
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}
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(, uint256 currentBalance, uint256 balanceIncrease) = _calculateBalanceIncrease(onBehalfOf);
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vars.previousSupply = totalSupply();
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vars.currentAvgStableRate = _avgStableRate;
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vars.nextSupply = _totalSupply = vars.previousSupply.add(amount);
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vars.amountInRay = amount.wadToRay();
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vars.newStableRate = _usersStableRate[onBehalfOf]
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.rayMul(currentBalance.wadToRay())
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.add(vars.amountInRay.rayMul(rate))
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.rayDiv(currentBalance.add(amount).wadToRay());
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require(vars.newStableRate <= type(uint128).max, Errors.SDT_STABLE_DEBT_OVERFLOW);
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_usersStableRate[onBehalfOf] = vars.newStableRate;
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//solium-disable-next-line
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_totalSupplyTimestamp = _timestamps[onBehalfOf] = uint40(block.timestamp);
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// Calculates the updated average stable rate
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vars.currentAvgStableRate = _avgStableRate = vars
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.currentAvgStableRate
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.rayMul(vars.previousSupply.wadToRay())
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.add(rate.rayMul(vars.amountInRay))
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.rayDiv(vars.nextSupply.wadToRay());
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_mint(onBehalfOf, amount.add(balanceIncrease), vars.previousSupply);
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emit Transfer(address(0), onBehalfOf, amount);
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emit Mint(
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user,
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onBehalfOf,
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amount,
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currentBalance,
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balanceIncrease,
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vars.newStableRate,
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vars.currentAvgStableRate,
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vars.nextSupply
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);
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return currentBalance == 0;
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}
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/**
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* @dev Burns debt of `user`
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* @param user The address of the user getting his debt burned
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* @param amount The amount of debt tokens getting burned
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**/
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function burn(address user, uint256 amount) external override onlyLendingPool {
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(, uint256 currentBalance, uint256 balanceIncrease) = _calculateBalanceIncrease(user);
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uint256 previousSupply = totalSupply();
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uint256 newAvgStableRate = 0;
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uint256 nextSupply = 0;
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uint256 userStableRate = _usersStableRate[user];
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// Since the total supply and each single user debt accrue separately,
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// there might be accumulation errors so that the last borrower repaying
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// mght actually try to repay more than the available debt supply.
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// In this case we simply set the total supply and the avg stable rate to 0
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if (previousSupply <= amount) {
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_avgStableRate = 0;
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_totalSupply = 0;
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} else {
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nextSupply = _totalSupply = previousSupply.sub(amount);
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uint256 firstTerm = _avgStableRate.rayMul(previousSupply.wadToRay());
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uint256 secondTerm = userStableRate.rayMul(amount.wadToRay());
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// For the same reason described above, when the last user is repaying it might
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// happen that user rate * user balance > avg rate * total supply. In that case,
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// we simply set the avg rate to 0
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if (secondTerm >= firstTerm) {
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newAvgStableRate = _avgStableRate = _totalSupply = 0;
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} else {
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newAvgStableRate = _avgStableRate = firstTerm.sub(secondTerm).rayDiv(nextSupply.wadToRay());
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}
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}
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if (amount == currentBalance) {
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_usersStableRate[user] = 0;
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_timestamps[user] = 0;
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} else {
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//solium-disable-next-line
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_timestamps[user] = uint40(block.timestamp);
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}
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//solium-disable-next-line
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_totalSupplyTimestamp = uint40(block.timestamp);
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if (balanceIncrease > amount) {
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uint256 amountToMint = balanceIncrease.sub(amount);
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_mint(user, amountToMint, previousSupply);
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emit Mint(
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user,
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user,
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amountToMint,
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currentBalance,
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balanceIncrease,
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userStableRate,
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newAvgStableRate,
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nextSupply
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);
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} else {
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uint256 amountToBurn = amount.sub(balanceIncrease);
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_burn(user, amountToBurn, previousSupply);
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emit Burn(user, amountToBurn, currentBalance, balanceIncrease, newAvgStableRate, nextSupply);
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}
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emit Transfer(user, address(0), amount);
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}
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/**
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* @dev Calculates the increase in balance since the last user interaction
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* @param user The address of the user for which the interest is being accumulated
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* @return The previous principal balance, the new principal balance and the balance increase
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**/
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function _calculateBalanceIncrease(address user)
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internal
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view
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returns (
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uint256,
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uint256,
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uint256
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)
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{
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uint256 previousPrincipalBalance = super.balanceOf(user);
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if (previousPrincipalBalance == 0) {
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return (0, 0, 0);
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}
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// Calculation of the accrued interest since the last accumulation
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uint256 balanceIncrease = balanceOf(user).sub(previousPrincipalBalance);
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return (
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previousPrincipalBalance,
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previousPrincipalBalance.add(balanceIncrease),
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balanceIncrease
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);
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}
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/**
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* @dev Returns the principal and total supply, the average borrow rate and the last supply update timestamp
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**/
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function getSupplyData()
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public
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view
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override
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returns (
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uint256,
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uint256,
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uint256,
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uint40
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)
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{
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uint256 avgRate = _avgStableRate;
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return (super.totalSupply(), _calcTotalSupply(avgRate), avgRate, _totalSupplyTimestamp);
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}
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/**
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* @dev Returns the the total supply and the average stable rate
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**/
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function getTotalSupplyAndAvgRate() public view override returns (uint256, uint256) {
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uint256 avgRate = _avgStableRate;
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return (_calcTotalSupply(avgRate), avgRate);
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}
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/**
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* @dev Returns the total supply
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**/
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function totalSupply() public view override returns (uint256) {
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return _calcTotalSupply(_avgStableRate);
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}
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/**
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* @dev Returns the timestamp at which the total supply was updated
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**/
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function getTotalSupplyLastUpdated() public view override returns (uint40) {
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return _totalSupplyTimestamp;
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}
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/**
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* @dev Returns the principal debt balance of the user from
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* @param user The user's address
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* @return The debt balance of the user since the last burn/mint action
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**/
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function principalBalanceOf(address user) external view virtual 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 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 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 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 For internal usage in the logic of the parent contracts
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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 For internal usage in the logic of the parent contracts
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**/
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function _getUnderlyingAssetAddress() internal view override returns (address) {
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return _underlyingAsset;
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}
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/**
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* @dev For internal usage in the logic of the parent contracts
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**/
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function _getLendingPool() internal view override returns (ILendingPool) {
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return _pool;
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}
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/**
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* @dev Calculates the total supply
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* @param avgRate The average rate at which the total supply increases
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* @return The debt balance of the user since the last burn/mint action
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**/
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function _calcTotalSupply(uint256 avgRate) internal view virtual returns (uint256) {
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uint256 principalSupply = super.totalSupply();
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if (principalSupply == 0) {
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return 0;
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}
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uint256 cumulatedInterest =
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MathUtils.calculateCompoundedInterest(avgRate, _totalSupplyTimestamp);
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return principalSupply.rayMul(cumulatedInterest);
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}
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/**
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* @dev Mints stable debt tokens to an user
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* @param account The account receiving the debt tokens
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* @param amount The amount being minted
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* @param oldTotalSupply the total supply before the minting event
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**/
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function _mint(
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address account,
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uint256 amount,
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uint256 oldTotalSupply
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) internal {
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uint256 oldAccountBalance = _balances[account];
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_balances[account] = oldAccountBalance.add(amount);
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if (address(_incentivesController) != address(0)) {
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_incentivesController.handleAction(account, oldTotalSupply, oldAccountBalance);
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}
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}
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/**
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* @dev Burns stable debt tokens of an user
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* @param account The user getting his debt burned
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* @param amount The amount being burned
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* @param oldTotalSupply The total supply before the burning event
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**/
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function _burn(
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address account,
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uint256 amount,
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uint256 oldTotalSupply
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) internal {
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uint256 oldAccountBalance = _balances[account];
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_balances[account] = oldAccountBalance.sub(amount, Errors.SDT_BURN_EXCEEDS_BALANCE);
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if (address(_incentivesController) != address(0)) {
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_incentivesController.handleAction(account, oldTotalSupply, oldAccountBalance);
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}
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}
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}
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