fixed: smart contract token
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commit
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node_modules
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.env
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# Hardhat files
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/cache
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/artifacts
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# TypeChain files
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/typechain
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/typechain-types
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# solidity-coverage files
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/coverage
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/coverage.json
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# Hardhat Ignition default folder for deployments against a local node
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ignition/deployments/chain-31337
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// SPDX-License-Identifier: UNLICENSED
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pragma solidity ^0.8.28;
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// Uncomment this line to use console.log
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// import "hardhat/console.sol";
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contract Lock {
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uint public unlockTime;
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address payable public owner;
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event Withdrawal(uint amount, uint when);
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constructor(uint _unlockTime) payable {
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require(
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block.timestamp < _unlockTime,
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"Unlock time should be in the future"
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);
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unlockTime = _unlockTime;
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owner = payable(msg.sender);
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}
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function withdraw() public {
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// Uncomment this line, and the import of "hardhat/console.sol", to print a log in your terminal
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// console.log("Unlock time is %o and block timestamp is %o", unlockTime, block.timestamp);
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require(block.timestamp >= unlockTime, "You can't withdraw yet");
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require(msg.sender == owner, "You aren't the owner");
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emit Withdrawal(address(this).balance, block.timestamp);
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owner.transfer(address(this).balance);
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}
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}
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# Sample Hardhat Project
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This project demonstrates a basic Hardhat use case. It comes with a sample contract, a test for that contract, and a Hardhat Ignition module that deploys that contract.
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Try running some of the following tasks:
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```shell
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npx hardhat help
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npx hardhat test
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REPORT_GAS=true npx hardhat test
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npx hardhat node
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npx hardhat ignition deploy ./ignition/modules/Lock.ts
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```
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// SPDX-License-Identifier: MIT
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pragma solidity ^0.8.20;
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import "@openzeppelin/contracts/token/ERC20/ERC20.sol";
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contract SyifaToken is ERC20 {
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constructor(uint256 initialSupply) ERC20("SyifaToken", "SYF") {
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_mint(msg.sender, initialSupply * 10 ** decimals());
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}
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}
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import { HardhatUserConfig } from "hardhat/config";
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import "@nomicfoundation/hardhat-toolbox";
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import * as dotenv from "dotenv";
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dotenv.config();
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const PRIVATE_KEY = process.env.PRIVATE_KEY || "";
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const AMOY_RPC_URL = process.env.AMOY_RPC_URL || "";
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const config: HardhatUserConfig = {
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solidity: "0.8.20",
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networks: {
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amoy: {
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url: AMOY_RPC_URL,
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accounts: [PRIVATE_KEY],
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chainId: 80002, // Polygon Amoy
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},
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},
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};
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export default config;
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// This setup uses Hardhat Ignition to manage smart contract deployments.
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// Learn more about it at https://hardhat.org/ignition
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import { buildModule } from "@nomicfoundation/hardhat-ignition/modules";
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const JAN_1ST_2030 = 1893456000;
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const ONE_GWEI: bigint = 1_000_000_000n;
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const LockModule = buildModule("LockModule", (m) => {
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const unlockTime = m.getParameter("unlockTime", JAN_1ST_2030);
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const lockedAmount = m.getParameter("lockedAmount", ONE_GWEI);
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const lock = m.contract("Lock", [unlockTime], {
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value: lockedAmount,
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});
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return { lock };
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});
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export default LockModule;
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File diff suppressed because it is too large
Load Diff
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{
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"name": "smart-contract2",
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"version": "1.0.0",
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"description": "",
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"main": "index.js",
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"scripts": {
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"test": "echo \"Error: no test specified\" && exit 1"
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},
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"keywords": [],
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"author": "",
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"license": "ISC",
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"devDependencies": {
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"@nomicfoundation/hardhat-toolbox": "^6.1.0",
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"hardhat": "^2.26.3"
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},
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"dependencies": {
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"@openzeppelin/contracts": "^5.4.0",
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"dotenv": "^17.2.2"
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}
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}
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import { ethers } from "hardhat";
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async function main() {
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const initialSupply = 1_000_000;
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const SyifaToken = await ethers.getContractFactory("SyifaToken");
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const token = await SyifaToken.deploy(initialSupply);
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await token.waitForDeployment();
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console.log(`Token deployed at: ${await token.getAddress()}`);
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}
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main().catch((error) => {
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console.error(error);
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process.exitCode = 1;
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});
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import {
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time,
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loadFixture,
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} from "@nomicfoundation/hardhat-toolbox/network-helpers";
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import { anyValue } from "@nomicfoundation/hardhat-chai-matchers/withArgs";
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import { expect } from "chai";
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import hre from "hardhat";
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describe("Lock", function () {
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// We define a fixture to reuse the same setup in every test.
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// We use loadFixture to run this setup once, snapshot that state,
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// and reset Hardhat Network to that snapshot in every test.
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async function deployOneYearLockFixture() {
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const ONE_YEAR_IN_SECS = 365 * 24 * 60 * 60;
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const ONE_GWEI = 1_000_000_000;
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const lockedAmount = ONE_GWEI;
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const unlockTime = (await time.latest()) + ONE_YEAR_IN_SECS;
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// Contracts are deployed using the first signer/account by default
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const [owner, otherAccount] = await hre.ethers.getSigners();
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const Lock = await hre.ethers.getContractFactory("Lock");
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const lock = await Lock.deploy(unlockTime, { value: lockedAmount });
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return { lock, unlockTime, lockedAmount, owner, otherAccount };
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}
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describe("Deployment", function () {
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it("Should set the right unlockTime", async function () {
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const { lock, unlockTime } = await loadFixture(deployOneYearLockFixture);
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expect(await lock.unlockTime()).to.equal(unlockTime);
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});
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it("Should set the right owner", async function () {
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const { lock, owner } = await loadFixture(deployOneYearLockFixture);
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expect(await lock.owner()).to.equal(owner.address);
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});
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it("Should receive and store the funds to lock", async function () {
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const { lock, lockedAmount } = await loadFixture(
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deployOneYearLockFixture
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);
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expect(await hre.ethers.provider.getBalance(lock.target)).to.equal(
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lockedAmount
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);
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});
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it("Should fail if the unlockTime is not in the future", async function () {
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// We don't use the fixture here because we want a different deployment
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const latestTime = await time.latest();
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const Lock = await hre.ethers.getContractFactory("Lock");
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await expect(Lock.deploy(latestTime, { value: 1 })).to.be.revertedWith(
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"Unlock time should be in the future"
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);
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});
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});
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describe("Withdrawals", function () {
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describe("Validations", function () {
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it("Should revert with the right error if called too soon", async function () {
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const { lock } = await loadFixture(deployOneYearLockFixture);
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await expect(lock.withdraw()).to.be.revertedWith(
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"You can't withdraw yet"
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);
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});
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it("Should revert with the right error if called from another account", async function () {
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const { lock, unlockTime, otherAccount } = await loadFixture(
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deployOneYearLockFixture
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);
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// We can increase the time in Hardhat Network
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await time.increaseTo(unlockTime);
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// We use lock.connect() to send a transaction from another account
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await expect(lock.connect(otherAccount).withdraw()).to.be.revertedWith(
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"You aren't the owner"
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);
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});
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it("Shouldn't fail if the unlockTime has arrived and the owner calls it", async function () {
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const { lock, unlockTime } = await loadFixture(
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deployOneYearLockFixture
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);
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// Transactions are sent using the first signer by default
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await time.increaseTo(unlockTime);
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await expect(lock.withdraw()).not.to.be.reverted;
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});
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});
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describe("Events", function () {
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it("Should emit an event on withdrawals", async function () {
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const { lock, unlockTime, lockedAmount } = await loadFixture(
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deployOneYearLockFixture
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);
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await time.increaseTo(unlockTime);
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await expect(lock.withdraw())
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.to.emit(lock, "Withdrawal")
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.withArgs(lockedAmount, anyValue); // We accept any value as `when` arg
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});
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});
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describe("Transfers", function () {
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it("Should transfer the funds to the owner", async function () {
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const { lock, unlockTime, lockedAmount, owner } = await loadFixture(
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deployOneYearLockFixture
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);
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await time.increaseTo(unlockTime);
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await expect(lock.withdraw()).to.changeEtherBalances(
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[owner, lock],
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[lockedAmount, -lockedAmount]
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);
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});
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});
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});
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});
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{
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"compilerOptions": {
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"target": "es2020",
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"module": "commonjs",
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"esModuleInterop": true,
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"forceConsistentCasingInFileNames": true,
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"strict": true,
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"skipLibCheck": true,
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"resolveJsonModule": true
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}
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}
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