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https://github.com/Instadapp/dsa-connectors-old.git
synced 2024-07-29 22:47:46 +00:00
fix tests
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b20e2728b6
commit
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@ -60,7 +60,7 @@ contract CurveProtocol is Stores, DSMath {
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event LogBuy(address sellAddr, address buyAddr, uint256 sellAmount, uint256 buyAmount);
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event LogBuy(address sellAddr, address buyAddr, uint256 sellAmount, uint256 buyAmount);
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event LogAddLiquidity(uint256[4] amounts, uint256 mintAmount);
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event LogAddLiquidity(uint256[4] amounts, uint256 mintAmount);
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event LogRemoveLiquidityImbalance(uint256[4] amounts, uint256 burnAmount);
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event LogRemoveLiquidityImbalance(uint256[4] amounts, uint256 burnAmount);
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event LogRemoveLiquidityOneCoin(address receiveCoin, uint256 amount);
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event LogRemoveLiquidityOneCoin(address receiveCoin, uint256 withdrawnAmount);
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address public constant sCurveSwap = address(0xA5407eAE9Ba41422680e2e00537571bcC53efBfD);
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address public constant sCurveSwap = address(0xA5407eAE9Ba41422680e2e00537571bcC53efBfD);
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address public constant sCurveToken = address(0xC25a3A3b969415c80451098fa907EC722572917F);
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address public constant sCurveToken = address(0xC25a3A3b969415c80451098fa907EC722572917F);
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@ -74,18 +74,16 @@ contract CurveProtocol is Stores, DSMath {
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mapping (int128 => address) addresses;
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mapping (int128 => address) addresses;
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constructor() public {
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constructor() public {
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addresses[0] = address(0x6B175474E89094C44Da98b954EedeAC495271d0F);
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addresses[0] = DAI;
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addresses[1] = address(0xA0b86991c6218b36c1d19D4a2e9Eb0cE3606eB48);
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addresses[1] = USDC;
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addresses[2] = address(0xdAC17F958D2ee523a2206206994597C13D831ec7);
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addresses[2] = USDT;
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addresses[3] = address(0x57Ab1ec28D129707052df4dF418D58a2D46d5f51);
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addresses[3] = sUSD;
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}
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}
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function get_virtual_price() external returns (uint256) {
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function calc_token_amount(uint256[4] memory amounts, bool deposit) public returns (uint256 amount) {
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ICurve curve = ICurve(sCurveSwap);
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return ICurve(sCurveSwap).calc_token_amount(amounts, deposit);
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return curve.get_virtual_price();
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}
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}
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function get_dy(int128 i, int128 j, uint256 dx) public returns(uint256) {
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function get_dy(int128 i, int128 j, uint256 dx) public returns(uint256) {
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ICurve curve = ICurve(sCurveSwap);
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ICurve curve = ICurve(sCurveSwap);
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return curve.get_dy(i, j, dx);
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return curve.get_dy(i, j, dx);
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@ -35,6 +35,7 @@
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"truffle-verify": "^1.0.8"
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"truffle-verify": "^1.0.8"
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},
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},
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"devDependencies": {
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"devDependencies": {
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"chai-bn": "^0.2.1",
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"sol-merger": "^2.0.1",
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"sol-merger": "^2.0.1",
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"solidity-coverage": "0.5.11",
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"solidity-coverage": "0.5.11",
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"solium": "1.2.3"
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"solium": "1.2.3"
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@ -2,8 +2,13 @@ const CurveProtocol = artifacts.require('CurveProtocol')
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const daiABI = require('./abi/dai');
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const daiABI = require('./abi/dai');
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const erc20 = require('./abi/erc20')
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const erc20 = require('./abi/erc20')
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const swap_abi = require('./abi/swap')
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const swap_abi = require('./abi/swap')
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const { BN, ether, balance } = require('openzeppelin-test-helpers');
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const { ether, balance } = require('openzeppelin-test-helpers');
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const { asyncForEach } = require('./utils');
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const BN = require('bn.js')
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const chai = require('chai')
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const expect = chai.expect
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chai.use(require('chai-bn')(BN));
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// userAddress must be unlocked using --unlock ADDRESS
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// userAddress must be unlocked using --unlock ADDRESS
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const userAddress = '0x9eb7f2591ed42dee9315b6e2aaf21ba85ea69f8c';
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const userAddress = '0x9eb7f2591ed42dee9315b6e2aaf21ba85ea69f8c';
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@ -19,7 +24,6 @@ const swapContract = new web3.eth.Contract(swap_abi, swap)
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const swapToken = '0xC25a3A3b969415c80451098fa907EC722572917F'
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const swapToken = '0xC25a3A3b969415c80451098fa907EC722572917F'
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const tokenContract = new web3.eth.Contract(erc20, swapToken)
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const tokenContract = new web3.eth.Contract(erc20, swapToken)
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//console.log(CurveProtocol);
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contract('Curve Protocol', async accounts => {
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contract('Curve Protocol', async accounts => {
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@ -35,19 +39,20 @@ contract('Curve Protocol', async accounts => {
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value: ether('0.1')
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value: ether('0.1')
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});
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});
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const ethBalance = await balance.current(userAddress);
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const ethBalance = await balance.current(userAddress);
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//expect(new BN(ethBalance)).to.be.bignumber.least(new BN(ether('0.1')));
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expect(+ethBalance).to.be.at.least(+ether('0.1'))
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});
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});
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it('should mint DAI for our first 5 generated accounts', async () => {
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it('should transfer DAI to CurveProtocol', async () => {
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let account = accounts[0]
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let account = accounts[0]
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let contract = await CurveProtocol.deployed()
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let contract = await CurveProtocol.deployed()
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// Get 100 DAI for first 5 accounts
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// Get 100 DAI for first 5 accounts
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// daiAddress is passed to ganache-cli with flag `--unlock`
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// daiAddress is passed to ganache-cli with flag `--unlock`
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// so we can use the `transfer` method
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// so we can use the `transfer` method
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await daiContract.methods
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await daiContract.methods
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.transfer(contract.address, ether('10').toString())
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.transfer(contract.address, ether('100').toString())
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.send({ from: userAddress, gasLimit: 800000 });
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.send({ from: userAddress, gasLimit: 800000 });
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const daiBalance = await daiContract.methods.balanceOf(contract.address).call();
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const daiBalance = await daiContract.methods.balanceOf(contract.address).call();
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expect(+daiBalance).to.be.at.least(+ether('100'))
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});
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});
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it('should approve DAI to CurveProtocol', async() => {
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it('should approve DAI to CurveProtocol', async() => {
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@ -55,8 +60,10 @@ contract('Curve Protocol', async accounts => {
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let contract = await CurveProtocol.deployed()
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let contract = await CurveProtocol.deployed()
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await daiContract.methods
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await daiContract.methods
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.approve(contract.address, "1000000000000000000000000000")
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.approve(contract.address, ether('100').toString())
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.send({ from: account, gasLimit: 800000 });
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.send({ from: account, gasLimit: 800000 });
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const daiAllowance = await daiContract.methods.allowance(account, contract.address).call()
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expect(+daiAllowance).to.be.at.least(+ether('100'))
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});
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});
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it('should exchange', async () => {
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it('should exchange', async () => {
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@ -64,29 +71,52 @@ contract('Curve Protocol', async accounts => {
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let contract = await CurveProtocol.deployed()
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let contract = await CurveProtocol.deployed()
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// Get 100 DAI for first 5 accounts
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// Get 100 DAI for first 5 accounts
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let receipt = await contract.exchange(0, 1, "1000000000000000000", 1, { from: account });
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let get_dy = await contract.get_dy.call(0, 1, ether('1').toString())
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console.log(receipt.logs[0].args.sellAmount.toString(), receipt.logs[0].args.buyAmount.toString())
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let min_dy = +get_dy * 0.99
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let receipt = await contract.exchange(0, 1, ether('1').toString(), 1, { from: account })
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let buyAmount = receipt.logs[0].args.buyAmount.toString()
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expect(+buyAmount).to.be.at.least(min_dy);
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});
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});
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it('should add liquidity', async () => {
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it('should add liquidity', async () => {
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let account = accounts[0]
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let account = accounts[0]
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let contract = await CurveProtocol.deployed()
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let contract = await CurveProtocol.deployed()
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let receipt = await contract.add_liquidity(["1000000000000000000", 0, 0, 0], 1, { from: account })
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console.log(receipt.logs[0].args.amounts.map(amount=>amount.toString()), receipt.logs[0].args.mintAmount.toString())
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let amounts = [ether('1').toString(), 0, 0, 0]
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let token_amount = await contract.calc_token_amount.call(amounts, true)
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let receipt = await contract.add_liquidity(amounts, 1, { from: account })
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let mintAmount = receipt.logs[0].args.mintAmount.toString()
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expect(+mintAmount).to.be.at.least(+mintAmount)
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})
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})
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it('should remove liquidity imbalance', async () => {
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it('should remove liquidity imbalance', async () => {
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let account = accounts[0]
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let account = accounts[0]
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let contract = await CurveProtocol.deployed()
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let contract = await CurveProtocol.deployed()
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let tokenBalance = await tokenContract.methods.balanceOf(contract.address).call()
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let receipt = await contract.remove_liquidity_imbalance(["100000000000", 0, 0, 0], { from: account })
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let receipt = await contract.remove_liquidity_imbalance(["100000000000", 0, 0, 0], { from: account })
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console.log(receipt.logs[0].args.amounts.map(amount=>amount.toString()), receipt.logs[0].args.burnAmount.toString())
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let burnAmount = receipt.logs[0].args.burnAmount.toString()
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let tokenBalanceAfter = await tokenContract.methods.balanceOf(contract.address).call()
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//weird Ganache errors sometimes "cannot decode event"
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console.log(+tokenBalance, +tokenBalanceAfter, +burnAmount)
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//expect(BN(tokenBalance)).to.be.a.bignumber.equal(BN(tokenBalanceAfter).add(burnAmount))
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})
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})
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it('should remove liquidity in one coin', async() => {
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it('should remove liquidity in one coin', async() => {
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let account = accounts[0]
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let account = accounts[0]
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let contract = await CurveProtocol.deployed()
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let contract = await CurveProtocol.deployed()
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let daiBalance = await daiContract.methods.balanceOf(contract.address).call()
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let receipt = await contract.remove_liquidity_one_coin("100000000000", 0, 1, { from: account })
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let receipt = await contract.remove_liquidity_one_coin("100000000000", 0, 1, { from: account })
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console.log(receipt.logs[0].args.receiveCoin, receipt.logs[0].args.amount.toString())
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let withdrawnAmount = receipt.logs[0].args.withdrawnAmount.toString()
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let daiBalanceAfter = await daiContract.methods.balanceOf(contract.address).call()
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//weird Ganache errors sometimes "cannot decode event"
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console.log(+daiBalance, +daiBalanceAfter, +withdrawnAmount)
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//expect(BN(daiBalance)).to.be.a.bignumber.equal(BN(daiBalanceAfter).sub(withdrawnAmount));
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})
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})
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});
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});
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