mirror of
https://github.com/Instadapp/aave-protocol-v2.git
synced 2024-07-29 21:47:30 +00:00
682 lines
23 KiB
TypeScript
682 lines
23 KiB
TypeScript
import {TestEnv, makeSuite} from './helpers/make-suite';
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import {APPROVAL_AMOUNT_LENDING_POOL} from '../helpers/constants';
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import {ethers} from 'ethers';
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import BigNumber from 'bignumber.js';
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import {
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calcExpectedVariableDebtTokenBalance,
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calcExpectedStableDebtTokenBalance,
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} from './helpers/utils/calculations';
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import {getContractsData} from './helpers/actions';
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import {timeLatest, waitForTx} from '../helpers/misc-utils';
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import {ProtocolErrors, tEthereumAddress} from '../helpers/types';
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const {expect} = require('chai');
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const {parseUnits, parseEther} = ethers.utils;
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export const expectRepayWithCollateralEvent = (
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events: ethers.Event[],
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pool: tEthereumAddress,
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collateral: tEthereumAddress,
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borrowing: tEthereumAddress,
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user: tEthereumAddress
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) => {
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if (!events || events.length < 16) {
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expect(false, 'INVALID_EVENTS_LENGTH_ON_REPAY_COLLATERAL');
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}
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const repayWithCollateralEvent = events[15];
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expect(repayWithCollateralEvent.address).to.be.equal(pool);
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expect(`0x${repayWithCollateralEvent.topics[1].slice(26)}`.toLowerCase()).to.be.equal(
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collateral.toLowerCase()
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);
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expect(`0x${repayWithCollateralEvent.topics[2].slice(26)}`).to.be.equal(borrowing.toLowerCase());
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expect(`0x${repayWithCollateralEvent.topics[3].slice(26)}`.toLowerCase()).to.be.equal(
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user.toLowerCase()
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);
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};
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makeSuite('LendingPool. repayWithCollateral()', (testEnv: TestEnv) => {
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const {IS_PAUSED} = ProtocolErrors;
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it("It's not possible to repayWithCollateral() on a non-active collateral or a non active principal", async () => {
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const {configurator, weth, pool, users, dai, mockSwapAdapter} = testEnv;
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const user = users[1];
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await configurator.deactivateReserve(weth.address);
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await expect(
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pool
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.connect(user.signer)
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.repayWithCollateral(
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weth.address,
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dai.address,
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user.address,
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parseEther('100'),
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mockSwapAdapter.address,
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'0x'
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)
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).to.be.revertedWith('2');
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await configurator.activateReserve(weth.address);
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await configurator.deactivateReserve(dai.address);
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await expect(
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pool
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.connect(user.signer)
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.repayWithCollateral(
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weth.address,
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dai.address,
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user.address,
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parseEther('100'),
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mockSwapAdapter.address,
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'0x'
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)
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).to.be.revertedWith('2');
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await configurator.activateReserve(dai.address);
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});
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it('User 1 provides some liquidity for others to borrow', async () => {
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const {pool, weth, dai, usdc, deployer} = testEnv;
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await weth.mint(parseEther('200'));
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await weth.approve(pool.address, parseEther('200'));
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await pool.deposit(weth.address, parseEther('200'), deployer.address, 0);
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await dai.mint(parseEther('20000'));
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await dai.approve(pool.address, parseEther('20000'));
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await pool.deposit(dai.address, parseEther('20000'), deployer.address, 0);
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await usdc.mint(parseEther('20000'));
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await usdc.approve(pool.address, parseEther('20000'));
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await pool.deposit(usdc.address, parseEther('20000'), deployer.address, 0);
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});
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it('User 2 deposit WETH and borrows DAI at Variable', async () => {
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const {pool, weth, dai, users} = testEnv;
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const user = users[1];
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const amountToDeposit = ethers.utils.parseEther('1');
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const amountToBorrow = ethers.utils.parseEther('20');
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await weth.connect(user.signer).mint(amountToDeposit);
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await weth.connect(user.signer).approve(pool.address, APPROVAL_AMOUNT_LENDING_POOL);
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await pool.connect(user.signer).deposit(weth.address, amountToDeposit, user.address, '0');
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await pool.connect(user.signer).borrow(dai.address, amountToBorrow, 2, 0, user.address);
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});
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it('It is not possible to do reentrancy on repayWithCollateral()', async () => {
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const {pool, weth, dai, users, mockSwapAdapter, oracle} = testEnv;
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const user = users[1];
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const amountToRepay = parseEther('10');
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await waitForTx(await mockSwapAdapter.setTryReentrancy(true));
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await mockSwapAdapter.setAmountToReturn(amountToRepay);
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await expect(
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pool
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.connect(user.signer)
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.repayWithCollateral(
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weth.address,
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dai.address,
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user.address,
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amountToRepay,
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mockSwapAdapter.address,
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'0x'
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)
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).to.be.revertedWith('53');
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});
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it('User 2 tries to repay his DAI Variable loan using his WETH collateral. First half the amount, after that, the rest', async () => {
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const {pool, weth, dai, users, mockSwapAdapter, oracle} = testEnv;
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const user = users[1];
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const amountToRepay = parseEther('10');
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await waitForTx(await mockSwapAdapter.setTryReentrancy(false));
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const {userData: wethUserDataBefore} = await getContractsData(
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weth.address,
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user.address,
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testEnv
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);
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const {reserveData: daiReserveDataBefore, userData: daiUserDataBefore} = await getContractsData(
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dai.address,
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user.address,
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testEnv
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);
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await mockSwapAdapter.setAmountToReturn(amountToRepay);
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await waitForTx(
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await pool
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.connect(user.signer)
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.repayWithCollateral(
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weth.address,
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dai.address,
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user.address,
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amountToRepay,
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mockSwapAdapter.address,
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'0x'
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)
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);
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const repayWithCollateralTimestamp = await timeLatest();
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const {userData: wethUserDataAfter} = await getContractsData(
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weth.address,
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user.address,
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testEnv
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);
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const {userData: daiUserDataAfter} = await getContractsData(dai.address, user.address, testEnv);
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const collateralPrice = await oracle.getAssetPrice(weth.address);
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const principalPrice = await oracle.getAssetPrice(dai.address);
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const collateralDecimals = (
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await pool.getReserveConfigurationData(weth.address)
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).decimals.toString();
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const principalDecimals = (
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await pool.getReserveConfigurationData(dai.address)
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).decimals.toString();
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const expectedCollateralLiquidated = new BigNumber(principalPrice.toString())
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.times(new BigNumber(amountToRepay.toString()).times(105))
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.times(new BigNumber(10).pow(collateralDecimals))
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.div(
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new BigNumber(collateralPrice.toString()).times(new BigNumber(10).pow(principalDecimals))
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)
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.div(100)
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.decimalPlaces(0, BigNumber.ROUND_DOWN);
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const expectedVariableDebtIncrease = calcExpectedVariableDebtTokenBalance(
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daiReserveDataBefore,
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daiUserDataBefore,
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new BigNumber(repayWithCollateralTimestamp)
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).minus(daiUserDataBefore.currentVariableDebt);
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expect(daiUserDataAfter.currentVariableDebt).to.be.bignumber.almostEqual(
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new BigNumber(daiUserDataBefore.currentVariableDebt)
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.minus(amountToRepay.toString())
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.plus(expectedVariableDebtIncrease)
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.toString()
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);
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expect(wethUserDataAfter.currentATokenBalance).to.be.bignumber.equal(
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new BigNumber(wethUserDataBefore.currentATokenBalance).minus(
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expectedCollateralLiquidated.toString()
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)
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);
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expect(wethUserDataAfter.usageAsCollateralEnabled).to.be.true;
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});
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it('User 3 deposits WETH and borrows USDC at Variable', async () => {
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const {pool, weth, usdc, users} = testEnv;
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const user = users[2];
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const amountToDeposit = parseEther('10');
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const amountToBorrow = parseUnits('40', 6);
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await weth.connect(user.signer).mint(amountToDeposit);
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await weth.connect(user.signer).approve(pool.address, APPROVAL_AMOUNT_LENDING_POOL);
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await pool.connect(user.signer).deposit(weth.address, amountToDeposit, user.address, '0');
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await pool.connect(user.signer).borrow(usdc.address, amountToBorrow, 2, 0, user.address);
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});
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it('User 3 repays completely his USDC loan by swapping his WETH collateral', async () => {
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const {pool, weth, usdc, users, mockSwapAdapter, oracle} = testEnv;
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const user = users[2];
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const amountToRepay = parseUnits('10', 6);
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const {userData: wethUserDataBefore} = await getContractsData(
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weth.address,
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user.address,
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testEnv
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);
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const {
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reserveData: usdcReserveDataBefore,
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userData: usdcUserDataBefore,
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} = await getContractsData(usdc.address, user.address, testEnv);
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await mockSwapAdapter.setAmountToReturn(amountToRepay);
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await waitForTx(
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await pool
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.connect(user.signer)
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.repayWithCollateral(
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weth.address,
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usdc.address,
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user.address,
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amountToRepay,
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mockSwapAdapter.address,
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'0x'
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)
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);
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const repayWithCollateralTimestamp = await timeLatest();
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const {userData: wethUserDataAfter} = await getContractsData(
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weth.address,
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user.address,
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testEnv
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);
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const {userData: usdcUserDataAfter} = await getContractsData(
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usdc.address,
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user.address,
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testEnv
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);
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const collateralPrice = await oracle.getAssetPrice(weth.address);
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const principalPrice = await oracle.getAssetPrice(usdc.address);
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const collateralDecimals = (
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await pool.getReserveConfigurationData(weth.address)
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).decimals.toString();
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const principalDecimals = (
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await pool.getReserveConfigurationData(usdc.address)
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).decimals.toString();
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const expectedCollateralLiquidated = new BigNumber(principalPrice.toString())
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.times(new BigNumber(amountToRepay.toString()).times(105))
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.times(new BigNumber(10).pow(collateralDecimals))
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.div(
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new BigNumber(collateralPrice.toString()).times(new BigNumber(10).pow(principalDecimals))
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)
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.div(100)
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.decimalPlaces(0, BigNumber.ROUND_DOWN);
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const expectedVariableDebtIncrease = calcExpectedVariableDebtTokenBalance(
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usdcReserveDataBefore,
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usdcUserDataBefore,
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new BigNumber(repayWithCollateralTimestamp)
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).minus(usdcUserDataBefore.currentVariableDebt);
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expect(usdcUserDataAfter.currentVariableDebt).to.be.bignumber.almostEqual(
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new BigNumber(usdcUserDataBefore.currentVariableDebt)
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.minus(amountToRepay.toString())
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.plus(expectedVariableDebtIncrease)
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.toString(),
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'INVALID_DEBT_POSITION'
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);
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expect(wethUserDataAfter.currentATokenBalance).to.be.bignumber.equal(
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new BigNumber(wethUserDataBefore.currentATokenBalance).minus(
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expectedCollateralLiquidated.toString()
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),
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'INVALID_COLLATERAL_POSITION'
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);
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expect(wethUserDataAfter.usageAsCollateralEnabled).to.be.true;
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});
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it('Revert expected. User 3 tries to repay with his collateral a currency he havent borrow', async () => {
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const {pool, weth, dai, users, mockSwapAdapter} = testEnv;
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const user = users[2];
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const amountToRepay = parseUnits('10', 6);
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await expect(
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pool
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.connect(user.signer)
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.repayWithCollateral(
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weth.address,
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dai.address,
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user.address,
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amountToRepay,
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mockSwapAdapter.address,
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'0x'
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)
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).to.be.revertedWith('40');
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});
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it('User 3 tries to repay with his collateral all his variable debt and part of the stable', async () => {
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const {pool, weth, usdc, users, mockSwapAdapter, oracle} = testEnv;
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const user = users[2];
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const amountToDeposit = parseEther('20');
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const amountToBorrowStable = parseUnits('40', 6);
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const amountToBorrowVariable = parseUnits('40', 6);
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await weth.connect(user.signer).mint(amountToDeposit);
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await pool.connect(user.signer).deposit(weth.address, amountToDeposit, user.address, '0');
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await pool
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.connect(user.signer)
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.borrow(usdc.address, amountToBorrowVariable, 2, 0, user.address);
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await pool.connect(user.signer).borrow(usdc.address, amountToBorrowStable, 1, 0, user.address);
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const amountToRepay = parseUnits('80', 6);
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const {userData: wethUserDataBefore} = await getContractsData(
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weth.address,
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user.address,
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testEnv
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);
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const {
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reserveData: usdcReserveDataBefore,
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userData: usdcUserDataBefore,
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} = await getContractsData(usdc.address, user.address, testEnv);
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await mockSwapAdapter.setAmountToReturn(amountToRepay);
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const txReceipt = await waitForTx(
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await pool
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.connect(user.signer)
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.repayWithCollateral(
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weth.address,
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usdc.address,
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user.address,
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amountToRepay,
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mockSwapAdapter.address,
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'0x'
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)
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);
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const repayWithCollateralTimestamp = await timeLatest();
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const {userData: wethUserDataAfter} = await getContractsData(
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weth.address,
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user.address,
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testEnv
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);
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const {userData: usdcUserDataAfter} = await getContractsData(
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usdc.address,
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user.address,
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testEnv
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);
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const collateralPrice = await oracle.getAssetPrice(weth.address);
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const principalPrice = await oracle.getAssetPrice(usdc.address);
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const collateralDecimals = (
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await pool.getReserveConfigurationData(weth.address)
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).decimals.toString();
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const principalDecimals = (
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await pool.getReserveConfigurationData(usdc.address)
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).decimals.toString();
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const expectedCollateralLiquidated = new BigNumber(principalPrice.toString())
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.times(new BigNumber(amountToRepay.toString()).times(105))
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.times(new BigNumber(10).pow(collateralDecimals))
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.div(
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new BigNumber(collateralPrice.toString()).times(new BigNumber(10).pow(principalDecimals))
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)
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.div(100)
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.decimalPlaces(0, BigNumber.ROUND_DOWN);
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const expectedVariableDebtIncrease = calcExpectedVariableDebtTokenBalance(
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usdcReserveDataBefore,
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usdcUserDataBefore,
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new BigNumber(repayWithCollateralTimestamp)
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).minus(usdcUserDataBefore.currentVariableDebt);
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const expectedStableDebtIncrease = calcExpectedStableDebtTokenBalance(
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usdcUserDataBefore.principalStableDebt,
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usdcUserDataBefore.stableBorrowRate,
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usdcUserDataBefore.stableRateLastUpdated,
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new BigNumber(repayWithCollateralTimestamp)
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).minus(usdcUserDataBefore.currentStableDebt);
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expect(usdcUserDataAfter.currentVariableDebt).to.be.bignumber.equal(
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new BigNumber(usdcUserDataBefore.currentVariableDebt)
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.minus(amountToRepay.toString())
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.plus(expectedVariableDebtIncrease)
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.gte(0)
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? new BigNumber(usdcUserDataBefore.currentVariableDebt)
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.minus(amountToRepay.toString())
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.plus(expectedVariableDebtIncrease)
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.toString()
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: '0',
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'INVALID_VARIABLE_DEBT_POSITION'
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);
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const stableDebtRepaid = new BigNumber(usdcUserDataBefore.currentVariableDebt)
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.minus(amountToRepay.toString())
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.plus(expectedVariableDebtIncrease)
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.abs();
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expect(usdcUserDataAfter.currentStableDebt).to.be.bignumber.equal(
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new BigNumber(usdcUserDataBefore.currentStableDebt)
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.minus(stableDebtRepaid)
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.plus(expectedStableDebtIncrease)
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.gte(0)
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? new BigNumber(usdcUserDataBefore.currentStableDebt)
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.minus(stableDebtRepaid)
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.plus(expectedStableDebtIncrease)
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.toString()
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: '0',
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'INVALID_STABLE_DEBT_POSITION'
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);
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expect(wethUserDataAfter.currentATokenBalance).to.be.bignumber.equal(
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new BigNumber(wethUserDataBefore.currentATokenBalance).minus(
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expectedCollateralLiquidated.toString()
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),
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'INVALID_COLLATERAL_POSITION'
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);
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const eventsEmitted = txReceipt.events || [];
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expectRepayWithCollateralEvent(
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eventsEmitted,
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pool.address,
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weth.address,
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usdc.address,
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user.address
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);
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expect(wethUserDataAfter.usageAsCollateralEnabled).to.be.true;
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});
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it('User 4 tries to repay a bigger amount that what can be swapped of a particular collateral, repaying only the maximum allowed by that collateral', async () => {
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const {pool, weth, dai, users, mockSwapAdapter, oracle} = testEnv;
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const user = users[3];
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const amountToDepositWeth = parseEther('0.1');
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const amountToDepositDAI = parseEther('500');
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const amountToBorrowVariable = parseEther('80');
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await weth.connect(user.signer).mint(amountToDepositWeth);
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await dai.connect(user.signer).mint(amountToDepositDAI);
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await weth.connect(user.signer).approve(pool.address, APPROVAL_AMOUNT_LENDING_POOL);
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await dai.connect(user.signer).approve(pool.address, APPROVAL_AMOUNT_LENDING_POOL);
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|
|
await pool.connect(user.signer).deposit(weth.address, amountToDepositWeth, user.address, '0');
|
|
await pool.connect(user.signer).deposit(dai.address, amountToDepositDAI, user.address, '0');
|
|
|
|
await pool.connect(user.signer).borrow(dai.address, amountToBorrowVariable, 2, 0, user.address);
|
|
|
|
const amountToRepay = parseEther('80');
|
|
|
|
const {userData: wethUserDataBefore} = await getContractsData(
|
|
weth.address,
|
|
user.address,
|
|
testEnv
|
|
);
|
|
|
|
const {reserveData: daiReserveDataBefore, userData: daiUserDataBefore} = await getContractsData(
|
|
dai.address,
|
|
user.address,
|
|
testEnv
|
|
);
|
|
|
|
await mockSwapAdapter.setAmountToReturn(amountToRepay);
|
|
await waitForTx(
|
|
await pool
|
|
.connect(user.signer)
|
|
.repayWithCollateral(
|
|
weth.address,
|
|
dai.address,
|
|
user.address,
|
|
amountToRepay,
|
|
mockSwapAdapter.address,
|
|
'0x'
|
|
)
|
|
);
|
|
const repayWithCollateralTimestamp = await timeLatest();
|
|
|
|
const {userData: wethUserDataAfter} = await getContractsData(
|
|
weth.address,
|
|
user.address,
|
|
testEnv
|
|
);
|
|
|
|
const {userData: daiUserDataAfter} = await getContractsData(dai.address, user.address, testEnv);
|
|
|
|
const collateralPrice = await oracle.getAssetPrice(weth.address);
|
|
const principalPrice = await oracle.getAssetPrice(dai.address);
|
|
|
|
const collateralConfig = await pool.getReserveConfigurationData(weth.address);
|
|
|
|
const collateralDecimals = collateralConfig.decimals.toString();
|
|
const principalDecimals = (
|
|
await pool.getReserveConfigurationData(dai.address)
|
|
).decimals.toString();
|
|
const collateralLiquidationBonus = collateralConfig.liquidationBonus.toString();
|
|
|
|
const expectedDebtCovered = new BigNumber(collateralPrice.toString())
|
|
.times(new BigNumber(wethUserDataBefore.currentATokenBalance.toString()))
|
|
.times(new BigNumber(10).pow(principalDecimals))
|
|
.div(
|
|
new BigNumber(principalPrice.toString()).times(new BigNumber(10).pow(collateralDecimals))
|
|
)
|
|
.div(new BigNumber(collateralLiquidationBonus).div(10000).toString())
|
|
.decimalPlaces(0, BigNumber.ROUND_DOWN);
|
|
|
|
const expectedVariableDebtIncrease = calcExpectedVariableDebtTokenBalance(
|
|
daiReserveDataBefore,
|
|
daiUserDataBefore,
|
|
new BigNumber(repayWithCollateralTimestamp)
|
|
).minus(daiUserDataBefore.currentVariableDebt);
|
|
|
|
expect(daiUserDataAfter.currentVariableDebt).to.be.bignumber.almostEqual(
|
|
new BigNumber(daiUserDataBefore.currentVariableDebt)
|
|
.minus(expectedDebtCovered.toString())
|
|
.plus(expectedVariableDebtIncrease),
|
|
'INVALID_VARIABLE_DEBT_POSITION'
|
|
);
|
|
|
|
expect(wethUserDataAfter.currentATokenBalance).to.be.bignumber.almostEqual(0);
|
|
|
|
expect(wethUserDataAfter.usageAsCollateralEnabled).to.be.false;
|
|
});
|
|
|
|
it('User 5 deposits WETH and DAI, then borrows USDC at Variable, then disables WETH as collateral', async () => {
|
|
const {pool, weth, dai, usdc, users} = testEnv;
|
|
const user = users[4];
|
|
const amountWETHToDeposit = parseEther('10');
|
|
const amountDAIToDeposit = parseEther('120');
|
|
const amountToBorrow = parseUnits('65', 6);
|
|
|
|
await weth.connect(user.signer).mint(amountWETHToDeposit);
|
|
await weth.connect(user.signer).approve(pool.address, APPROVAL_AMOUNT_LENDING_POOL);
|
|
await pool.connect(user.signer).deposit(weth.address, amountWETHToDeposit, user.address, '0');
|
|
|
|
await dai.connect(user.signer).mint(amountDAIToDeposit);
|
|
await dai.connect(user.signer).approve(pool.address, APPROVAL_AMOUNT_LENDING_POOL);
|
|
await pool.connect(user.signer).deposit(dai.address, amountDAIToDeposit, user.address, '0');
|
|
|
|
await pool.connect(user.signer).borrow(usdc.address, amountToBorrow, 2, 0, user.address);
|
|
});
|
|
|
|
it('User 5 tries to repay his USDC loan by swapping his WETH collateral, should not revert even with WETH collateral disabled', async () => {
|
|
const {pool, weth, usdc, users, mockSwapAdapter, oracle} = testEnv;
|
|
const user = users[4];
|
|
|
|
const amountToRepay = parseUnits('65', 6);
|
|
|
|
// Disable WETH as collateral
|
|
await pool.connect(user.signer).setUserUseReserveAsCollateral(weth.address, false);
|
|
|
|
const {userData: wethUserDataBefore} = await getContractsData(
|
|
weth.address,
|
|
user.address,
|
|
testEnv
|
|
);
|
|
|
|
const {
|
|
reserveData: usdcReserveDataBefore,
|
|
userData: usdcUserDataBefore,
|
|
} = await getContractsData(usdc.address, user.address, testEnv);
|
|
|
|
expect(wethUserDataBefore.usageAsCollateralEnabled).to.be.false;
|
|
|
|
// User 5 should be able to liquidate himself with WETH, even if is disabled
|
|
await mockSwapAdapter.setAmountToReturn(amountToRepay);
|
|
expect(
|
|
await pool
|
|
.connect(user.signer)
|
|
.repayWithCollateral(
|
|
weth.address,
|
|
usdc.address,
|
|
user.address,
|
|
amountToRepay,
|
|
mockSwapAdapter.address,
|
|
'0x'
|
|
)
|
|
);
|
|
const repayWithCollateralTimestamp = await timeLatest();
|
|
|
|
const {userData: wethUserDataAfter} = await getContractsData(
|
|
weth.address,
|
|
user.address,
|
|
testEnv
|
|
);
|
|
|
|
const {userData: usdcUserDataAfter} = await getContractsData(
|
|
usdc.address,
|
|
user.address,
|
|
testEnv
|
|
);
|
|
|
|
const collateralPrice = await oracle.getAssetPrice(weth.address);
|
|
const principalPrice = await oracle.getAssetPrice(usdc.address);
|
|
|
|
const collateralDecimals = (
|
|
await pool.getReserveConfigurationData(weth.address)
|
|
).decimals.toString();
|
|
const principalDecimals = (
|
|
await pool.getReserveConfigurationData(usdc.address)
|
|
).decimals.toString();
|
|
|
|
const expectedCollateralLiquidated = new BigNumber(principalPrice.toString())
|
|
.times(new BigNumber(amountToRepay.toString()).times(105))
|
|
.times(new BigNumber(10).pow(collateralDecimals))
|
|
.div(
|
|
new BigNumber(collateralPrice.toString()).times(new BigNumber(10).pow(principalDecimals))
|
|
)
|
|
.div(100)
|
|
.decimalPlaces(0, BigNumber.ROUND_DOWN);
|
|
|
|
const expectedVariableDebtIncrease = calcExpectedVariableDebtTokenBalance(
|
|
usdcReserveDataBefore,
|
|
usdcUserDataBefore,
|
|
new BigNumber(repayWithCollateralTimestamp)
|
|
).minus(usdcUserDataBefore.currentVariableDebt);
|
|
|
|
expect(usdcUserDataAfter.currentVariableDebt).to.be.bignumber.almostEqual(
|
|
new BigNumber(usdcUserDataBefore.currentVariableDebt)
|
|
.minus(amountToRepay.toString())
|
|
.plus(expectedVariableDebtIncrease)
|
|
.toString(),
|
|
'INVALID_DEBT_POSITION'
|
|
);
|
|
|
|
expect(wethUserDataAfter.currentATokenBalance).to.be.bignumber.equal(
|
|
new BigNumber(wethUserDataBefore.currentATokenBalance).minus(
|
|
expectedCollateralLiquidated.toString()
|
|
),
|
|
'INVALID_COLLATERAL_POSITION'
|
|
);
|
|
|
|
expect(wethUserDataAfter.usageAsCollateralEnabled).to.be.false;
|
|
});
|
|
});
|