306 lines
9.4 KiB
TypeScript
306 lines
9.4 KiB
TypeScript
// import { SignerWithAddress } from "@nomiclabs/hardhat-ethers/signers";
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// import { expect } from "chai";
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// import { ethers, network } from "hardhat";
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// import { P2PixErrors } from "./utils/errors";
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// import { MockToken, P2PIX } from "../src/types";
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// describe("P2PIX deposit test", () => {
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// let owner: SignerWithAddress;
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// let wallet2: SignerWithAddress;
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// let wallet3: SignerWithAddress;
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// // let wallet4: SignerWithAddress;
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// let p2pix: P2PIX; // Contract instance
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// let erc20: MockToken; // Token instance
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// let lockID: string;
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// it("Will deploy contracts", async () => {
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// [owner, wallet2, wallet3 /* , wallet4 */] =
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// await ethers.getSigners();
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// const ERC20Factory = await ethers.getContractFactory(
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// "MockToken",
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// );
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// erc20 = await ERC20Factory.deploy(
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// ethers.utils.parseEther("20000000"),
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// );
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// await erc20.deployed();
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// // Check initial balance
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// expect(await erc20.balanceOf(owner.address)).to.equal(
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// ethers.utils.parseEther("20000000"),
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// );
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// const P2PIX = await ethers.getContractFactory("P2PIX");
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// p2pix = await P2PIX.deploy(3, [
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// owner.address,
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// wallet2.address,
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// ]);
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// await p2pix.deployed();
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// const ownerKey = await p2pix._castAddrToKey(owner.address);
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// const wallet2key = await p2pix._castAddrToKey(wallet2.address);
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// const wallet3key = await p2pix._castAddrToKey(wallet3.address);
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// // Verify values at deployment
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// expect(
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// await p2pix.validBacenSigners(ownerKey),
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// ).to.equal(true);
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// expect(
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// await p2pix.validBacenSigners(wallet2key),
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// ).to.equal(true);
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// expect(
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// await p2pix.validBacenSigners(wallet3key),
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// ).to.equal(false);
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// });
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// it("Should allow create a deposit", async () => {
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// let transaction = await erc20.approve(
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// p2pix.address,
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// ethers.utils.parseEther("1000"),
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// );
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// await expect(transaction)
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// .to.emit(erc20, "Approval")
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// .withArgs(
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// owner.address,
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// p2pix.address,
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// ethers.utils.parseEther("1000"),
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// );
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// transaction = await p2pix.deposit(
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// erc20.address,
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// ethers.utils.parseEther("1000"),
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// "SELLER PIX KEY",
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// // { value: ethers.utils.parseEther("0.1") },
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// );
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// await expect(transaction)
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// .to.emit(p2pix, "DepositAdded")
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// .withArgs(
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// owner.address,
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// 0,
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// erc20.address,
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// // ethers.utils.parseEther("0.1"),
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// ethers.utils.parseEther("1000"),
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// );
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// console.log(
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// "GAS USED:",
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// (await transaction.wait()).cumulativeGasUsed.toString(),
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// );
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// });
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// it("Should allow create a new lock", async () => {
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// const transaction = await p2pix
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// .connect(wallet3)
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// .lock(
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// 0,
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// wallet3.address,
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// ethers.constants.AddressZero,
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// "0",
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// ethers.utils.parseEther("100"),
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// [],
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// );
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// lockID = ethers.utils.solidityKeccak256(
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// ["uint256", "uint256", "address"],
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// [0, ethers.utils.parseEther("100"), wallet3.address],
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// );
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// await expect(transaction)
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// .to.emit(p2pix, "LockAdded")
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// .withArgs(
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// wallet3.address,
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// lockID,
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// 0,
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// ethers.utils.parseEther("100"),
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// );
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// console.log(
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// "GAS USED:",
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// (await transaction.wait()).cumulativeGasUsed.toString(),
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// );
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// });
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// it("Should release the locked amount to the buyer", async () => {
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// const endtoendID = "123";
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// const messageToSign = ethers.utils.solidityKeccak256(
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// ["string", "uint256", "uint256"],
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// [
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// "SELLER PIX KEY",
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// ethers.utils.parseEther("100"),
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// endtoendID,
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// ],
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// );
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// // Note: messageToSign is a string, that is 66-bytes long, to sign the
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// // binary value, we must convert it to the 32 byte Array that
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// // the string represents
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// //
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// // i.e.
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// // // 66-byte string
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// // "0x592fa743889fc7f92ac2a37bb1f5ba1daf2a5c84741ca0e0061d243a2e6707ba"
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// // ... vs ...
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// // // 32 entry Uint8Array
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// // [ 89, 47, 167, 67, 136, 159, ... 103, 7, 186]
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// const messageHashBytes =
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// ethers.utils.arrayify(messageToSign);
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// // Sign the string message
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// const flatSig = await owner.signMessage(messageHashBytes);
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// // For Solidity, we need the expanded-format of a signature
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// const sig = ethers.utils.splitSignature(flatSig);
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// const transaction = await p2pix
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// .connect(wallet3)
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// .release(lockID, endtoendID, sig.r, sig.s, sig.v);
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// await expect(transaction)
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// .to.emit(p2pix, "LockReleased")
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// .withArgs(wallet3.address, lockID);
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// console.log(
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// "GAS USED:",
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// (await transaction.wait()).cumulativeGasUsed.toString(),
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// );
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// expect(await erc20.balanceOf(wallet3.address)).to.equal(
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// ethers.utils.parseEther("100"),
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// );
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// });
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// it("Should allow recreate same lock", async () => {
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// const transaction = await p2pix
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// .connect(wallet3)
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// .lock(
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// 0,
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// wallet3.address,
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// ethers.constants.AddressZero,
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// "0",
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// ethers.utils.parseEther("100"),
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// [],
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// );
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// lockID = ethers.utils.solidityKeccak256(
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// ["uint256", "uint256", "address"],
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// [0, ethers.utils.parseEther("100"), wallet3.address],
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// );
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// await expect(transaction)
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// .to.emit(p2pix, "LockAdded")
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// .withArgs(
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// wallet3.address,
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// lockID,
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// 0,
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// ethers.utils.parseEther("100"),
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// );
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// });
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// it("Should prevent create again same lock", async () => {
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// await expect(
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// p2pix
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// .connect(wallet3)
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// .lock(
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// 0,
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// wallet3.address,
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// ethers.constants.AddressZero,
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// "0",
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// ethers.utils.parseEther("100"),
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// [],
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// ),
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// ).to.be.revertedWithCustomError(p2pix, P2PixErrors.NotExpired);
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// });
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// it("Should release the locked amount to the buyer", async () => {
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// const endtoendID = "124";
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// const messageToSign = ethers.utils.solidityKeccak256(
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// ["string", "uint256", "uint256"],
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// [
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// "SELLER PIX KEY",
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// ethers.utils.parseEther("100"),
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// endtoendID,
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// ],
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// );
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// const messageHashBytes =
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// ethers.utils.arrayify(messageToSign);
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// const flatSig = await owner.signMessage(messageHashBytes);
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// const sig = ethers.utils.splitSignature(flatSig);
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// await p2pix
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// .connect(wallet3)
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// .release(lockID, endtoendID, sig.r, sig.s, sig.v);
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// expect(await erc20.balanceOf(wallet3.address)).to.equal(
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// ethers.utils.parseEther("200"),
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// );
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// });
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// it("Should prevent release again the lock", async () => {
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// const endtoendID = "125";
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// const messageToSign = ethers.utils.solidityKeccak256(
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// ["string", "uint256", "uint256"],
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// [
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// "SELLER PIX KEY",
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// ethers.utils.parseEther("100"),
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// endtoendID,
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// ],
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// );
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// const messageHashBytes =
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// ethers.utils.arrayify(messageToSign);
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// const flatSig = await owner.signMessage(messageHashBytes);
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// const sig = ethers.utils.splitSignature(flatSig);
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// await expect(
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// p2pix
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// .connect(wallet3)
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// .release(lockID, endtoendID, sig.r, sig.s, sig.v),
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// ).to.be.revertedWithCustomError(p2pix, P2PixErrors.AlreadyReleased);
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// });
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// it("Should prevent create a 900 lock", async () => {
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// await expect(
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// p2pix
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// .connect(wallet3)
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// .lock(
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// 0,
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// wallet3.address,
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// ethers.constants.AddressZero,
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// "0",
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// ethers.utils.parseEther("900"),
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// [],
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// ),
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// ).to.be.revertedWithCustomError(
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// p2pix, P2PixErrors.NotEnoughTokens);
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// });
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// it("Should allow recreate same lock again", async () => {
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// const transaction = await p2pix
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// .connect(wallet3)
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// .lock(
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// 0,
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// wallet3.address,
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// ethers.constants.AddressZero,
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// "0",
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// ethers.utils.parseEther("100"),
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// [],
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// );
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// lockID = ethers.utils.solidityKeccak256(
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// ["uint256", "uint256", "address"],
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// [0, ethers.utils.parseEther("100"), wallet3.address],
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// );
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// await expect(transaction)
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// .to.emit(p2pix, "LockAdded")
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// .withArgs(
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// wallet3.address,
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// lockID,
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// 0,
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// ethers.utils.parseEther("100"),
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// );
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// });
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// it("Should allow unlock expired lock", async () => {
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// await expect(
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// p2pix.unlockExpired([lockID]),
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// ).to.be.revertedWithCustomError(
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// p2pix, P2PixErrors.NotExpired);
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// await network.provider.send("evm_mine");
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// await network.provider.send("evm_mine");
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// await network.provider.send("evm_mine");
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// const transaction = await p2pix.unlockExpired([lockID]);
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// await expect(transaction)
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// .to.emit(p2pix, "LockReturned")
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// .withArgs(wallet3.address, lockID);
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// });
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// it("Should prevent unlock again", async () => {
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// await expect(
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// p2pix.unlockExpired([lockID]),
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// ).to.be.revertedWithCustomError(
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// p2pix, P2PixErrors.NotExpired);
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// });
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// });
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