731 lines
26 KiB
JavaScript
731 lines
26 KiB
JavaScript
const jsonfile = require('jsonfile');
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const elliptic = require('elliptic');
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const BigNumber = require('bignumber.js');
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const Wormhole = artifacts.require("Wormhole");
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const NFTBridge = artifacts.require("NFTBridgeEntrypoint");
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const NFTBridgeImplementation = artifacts.require("NFTBridgeImplementation");
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const NFTImplementation = artifacts.require("NFTImplementation");
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const MockBridgeImplementation = artifacts.require("MockNFTBridgeImplementation");
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const testSigner1PK = "cfb12303a19cde580bb4dd771639b0d26bc68353645571a8cff516ab2ee113a0";
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const testSigner2PK = "892330666a850761e7370376430bb8c2aa1494072d3bfeaed0c4fa3d5a9135fe";
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const WormholeImplementationFullABI = jsonfile.readFileSync("build/contracts/Implementation.json").abi
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const BridgeImplementationFullABI = jsonfile.readFileSync("build/contracts/NFTBridgeImplementation.json").abi
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const NFTImplementationFullABI = jsonfile.readFileSync("build/contracts/NFTImplementation.json").abi
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contract("NFT", function () {
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const testSigner1 = web3.eth.accounts.privateKeyToAccount(testSigner1PK);
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const testSigner2 = web3.eth.accounts.privateKeyToAccount(testSigner2PK);
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const testChainId = "2";
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const testFinality = "1";
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const testGovernanceChainId = "1";
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const testGovernanceContract = "0x0000000000000000000000000000000000000000000000000000000000000004";
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let WETH = "0xC02aaA39b223FE8D0A0e5C4F27eAD9083C756Cc2";
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const testForeignChainId = "1";
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const testForeignBridgeContract = "0x000000000000000000000000000000000000000000000000000000000000ffff";
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const testBridgedAssetChain = "0003";
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const testBridgedAssetAddress = "000000000000000000000000b7a2211e8165943192ad04f5dd21bedc29ff003e";
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it("should be initialized with the correct signers and values", async function () {
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const initialized = new web3.eth.Contract(BridgeImplementationFullABI, NFTBridge.address);
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const tokenImplentation = await initialized.methods.tokenImplementation().call();
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assert.equal(tokenImplentation, NFTImplementation.address);
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// test beacon functionality
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const beaconImplementation = await initialized.methods.implementation().call();
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assert.equal(beaconImplementation, NFTImplementation.address);
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// chain id
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const chainId = await initialized.methods.chainId().call();
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assert.equal(chainId, testChainId);
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// finality
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const finality = await initialized.methods.finality().call();
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assert.equal(finality, testFinality);
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// governance
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const governanceChainId = await initialized.methods.governanceChainId().call();
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assert.equal(governanceChainId, testGovernanceChainId);
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const governanceContract = await initialized.methods.governanceContract().call();
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assert.equal(governanceContract, testGovernanceContract);
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})
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it("should register a foreign bridge implementation correctly", async function () {
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const initialized = new web3.eth.Contract(BridgeImplementationFullABI, NFTBridge.address);
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const accounts = await web3.eth.getAccounts();
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let data = [
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"0x",
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"00000000000000000000000000000000000000000000004e4654427269646765",
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"01",
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"0000",
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web3.eth.abi.encodeParameter("uint16", testForeignChainId).substring(2 + (64 - 4)),
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web3.eth.abi.encodeParameter("bytes32", testForeignBridgeContract).substring(2),
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].join('')
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const vm = await signAndEncodeVM(
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1,
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1,
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testGovernanceChainId,
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testGovernanceContract,
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0,
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data,
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[
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testSigner1PK
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],
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0,
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0
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);
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let before = await initialized.methods.bridgeContracts(testForeignChainId).call();
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assert.equal(before, "0x0000000000000000000000000000000000000000000000000000000000000000");
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await initialized.methods.registerChain("0x" + vm).send({
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value: 0,
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from: accounts[0],
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gasLimit: 2000000
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});
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let after = await initialized.methods.bridgeContracts(testForeignChainId).call();
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assert.equal(after, testForeignBridgeContract);
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})
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it("should accept a valid upgrade", async function () {
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const initialized = new web3.eth.Contract(BridgeImplementationFullABI, NFTBridge.address);
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const accounts = await web3.eth.getAccounts();
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const mock = await MockBridgeImplementation.new();
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let data = [
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"0x",
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"00000000000000000000000000000000000000000000004e4654427269646765",
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"02",
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web3.eth.abi.encodeParameter("uint16", testChainId).substring(2 + (64 - 4)),
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web3.eth.abi.encodeParameter("address", mock.address).substring(2),
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].join('')
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const vm = await signAndEncodeVM(
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1,
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1,
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testGovernanceChainId,
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testGovernanceContract,
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0,
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data,
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[
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testSigner1PK
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],
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0,
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0
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);
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let before = await web3.eth.getStorageAt(NFTBridge.address, "0x360894a13ba1a3210667c828492db98dca3e2076cc3735a920a3ca505d382bbc");
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assert.equal(before.toLowerCase(), NFTBridgeImplementation.address.toLowerCase());
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await initialized.methods.upgrade("0x" + vm).send({
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value: 0,
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from: accounts[0],
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gasLimit: 2000000
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});
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let after = await web3.eth.getStorageAt(NFTBridge.address, "0x360894a13ba1a3210667c828492db98dca3e2076cc3735a920a3ca505d382bbc");
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assert.equal(after.toLowerCase(), mock.address.toLowerCase());
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const mockImpl = new web3.eth.Contract(MockBridgeImplementation.abi, NFTBridge.address);
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let isUpgraded = await mockImpl.methods.testNewImplementationActive().call();
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assert.ok(isUpgraded);
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})
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it("bridged tokens should only be mint- and burn-able by owner", async function () {
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const accounts = await web3.eth.getAccounts();
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// initialize our template token contract
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const token = new web3.eth.Contract(NFTImplementation.abi, NFTImplementation.address);
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await token.methods.initialize(
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"TestToken",
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"TT",
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accounts[0],
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0,
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"0x0"
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).send({
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value: 0,
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from: accounts[0],
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gasLimit: 2000000
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});
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await token.methods.mint(accounts[0], 10, "").send({
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from: accounts[0],
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gasLimit: 2000000
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});
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let failed = false
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try {
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await token.methods.mint(accounts[0], 11, "").send({
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from: accounts[1],
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gasLimit: 2000000
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});
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} catch (e) {
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failed = true
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}
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assert.ok(failed)
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failed = false
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try {
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await token.methods.burn(10).send({
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from: accounts[1],
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gasLimit: 2000000
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});
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} catch (e) {
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failed = true
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}
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assert.ok(failed)
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await token.methods.burn(10).send({
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from: accounts[0],
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gasLimit: 2000000
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});
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})
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it("should deposit and log transfers correctly", async function () {
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const accounts = await web3.eth.getAccounts();
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const tokenId = "1000000000000000000";
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// mint and approve tokens
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const token = new web3.eth.Contract(NFTImplementation.abi, NFTImplementation.address);
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await token.methods.mint(accounts[0], tokenId, "abcd").send({
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value: 0,
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from: accounts[0],
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gasLimit: 2000000
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});
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await token.methods.approve(NFTBridge.address, tokenId).send({
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value: 0,
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from: accounts[0],
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gasLimit: 2000000
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});
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// deposit tokens
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const initialized = new web3.eth.Contract(BridgeImplementationFullABI, NFTBridge.address);
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const ownerBefore = await token.methods.ownerOf(tokenId).call();
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assert.equal(ownerBefore, accounts[0]);
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await initialized.methods.transferNFT(
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NFTImplementation.address,
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tokenId,
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"10",
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"0x000000000000000000000000b7a2211e8165943192ad04f5dd21bedc29ff003e",
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"234"
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).send({
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value: 0,
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from: accounts[0],
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gasLimit: 2000000
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});
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const ownerAfter = await token.methods.ownerOf(tokenId).call();
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assert.equal(ownerAfter, NFTBridge.address);
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// check transfer log
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const wormhole = new web3.eth.Contract(WormholeImplementationFullABI, Wormhole.address);
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const log = (await wormhole.getPastEvents('LogMessagePublished', {
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fromBlock: 'latest'
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}))[0].returnValues
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assert.equal(log.sender, NFTBridge.address)
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assert.equal(log.payload.length - 2, 340);
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// payload id
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assert.equal(log.payload.substr(2, 2), "01");
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// token
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assert.equal(log.payload.substr(4, 64), web3.eth.abi.encodeParameter("address", NFTImplementation.address).substring(2));
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// chain id
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assert.equal(log.payload.substr(68, 4), web3.eth.abi.encodeParameter("uint16", testChainId).substring(2 + 64 - 4))
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// symbol (TT)
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assert.equal(log.payload.substr(72, 64), "5454000000000000000000000000000000000000000000000000000000000000")
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// name (TestToken (Wormhole))
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assert.equal(log.payload.substr(136, 64), "54657374546f6b656e0000000000000000000000000000000000000000000000")
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// tokenID
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assert.equal(log.payload.substr(200, 64), web3.eth.abi.encodeParameter("uint256", new BigNumber(tokenId).toString()).substring(2));
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// url length
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assert.equal(log.payload.substr(264, 2), web3.eth.abi.encodeParameter("uint8", 4).substring(2 + 64 - 2))
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// url
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assert.equal(log.payload.substr(266, 8), "61626364")
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// to
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assert.equal(log.payload.substr(274, 64), "000000000000000000000000b7a2211e8165943192ad04f5dd21bedc29ff003e");
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// to chain id
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assert.equal(log.payload.substr(338, 4), web3.eth.abi.encodeParameter("uint16", 10).substring(2 + 64 - 4))
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})
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it("should transfer out locked assets for a valid transfer vm", async function () {
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const accounts = await web3.eth.getAccounts();
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const tokenId = "1000000000000000000";
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const token = new web3.eth.Contract(NFTImplementation.abi, NFTImplementation.address);
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const initialized = new web3.eth.Contract(BridgeImplementationFullABI, NFTBridge.address);
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const ownerBefore = await token.methods.ownerOf(tokenId).call();
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assert.equal(ownerBefore, NFTBridge.address);
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// PayloadID uint8 = 1
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// // Address of the NFT. Left-zero-padded if shorter than 32 bytes
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// NFTAddress [32]uint8
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// // Chain ID of the NFT
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// NFTChain uint16
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// // Name of the NFT
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// Name [32]uint8
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// // Symbol of the NFT
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// Symbol [10]uint8
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// // ID of the token (big-endian uint256)
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// TokenID [32]uint8
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// // URL of the NFT
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// URLLength u8
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// URL [n]uint8
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// // Address of the recipient. Left-zero-padded if shorter than 32 bytes
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// To [32]uint8
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// // Chain ID of the recipient
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// ToChain uint16
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const data = "0x" +
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"01" +
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// tokenaddress
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web3.eth.abi.encodeParameter("address", NFTImplementation.address).substr(2) +
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// tokenchain
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web3.eth.abi.encodeParameter("uint16", testChainId).substring(2 + (64 - 4)) +
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// symbol
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"0000000000000000000000000000000000000000000000000000000000000000" +
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// name
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"0000000000000000000000000000000000000000000000000000000000000000" +
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// tokenID
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web3.eth.abi.encodeParameter("uint256", new BigNumber(tokenId).toString()).substring(2) +
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// url length
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"00" +
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// no URL
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"" +
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// receiver
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web3.eth.abi.encodeParameter("address", accounts[0]).substr(2) +
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// receiving chain
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web3.eth.abi.encodeParameter("uint16", testChainId).substring(2 + (64 - 4));
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const vm = await signAndEncodeVM(
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0,
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0,
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testForeignChainId,
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testForeignBridgeContract,
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0,
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data,
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[
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testSigner1PK
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],
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0,
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0
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);
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await initialized.methods.completeTransfer("0x" + vm).send({
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value: 0,
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from: accounts[0],
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gasLimit: 2000000
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});
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const ownerAfter = await token.methods.ownerOf(tokenId).call();
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assert.equal(ownerAfter, accounts[0]);
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})
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it("should mint bridged assets wrappers on transfer from another chain and handle fees correctly", async function () {
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const accounts = await web3.eth.getAccounts();
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let tokenId = "1000000000000000001";
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const initialized = new web3.eth.Contract(BridgeImplementationFullABI, NFTBridge.address);
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// we are using the asset where we created a wrapper in the previous test
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let data = "0x" +
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"01" +
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// tokenaddress
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testBridgedAssetAddress +
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// tokenchain
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testBridgedAssetChain +
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// symbol
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"464f520000000000000000000000000000000000000000000000000000000000" +
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// name
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"466f726569676e20436861696e204e4654000000000000000000000000000000" +
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// tokenID
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web3.eth.abi.encodeParameter("uint256", new BigNumber(tokenId).toString()).substring(2) +
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// url length
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"00" +
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// no URL
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"" +
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// receiver
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web3.eth.abi.encodeParameter("address", accounts[0]).substr(2) +
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// receiving chain
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web3.eth.abi.encodeParameter("uint16", testChainId).substring(2 + (64 - 4));
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let vm = await signAndEncodeVM(
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0,
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0,
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testForeignChainId,
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testForeignBridgeContract,
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0,
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data,
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[
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testSigner1PK
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],
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0,
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0
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);
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await initialized.methods.completeTransfer("0x" + vm).send({
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value: 0,
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from: accounts[1],
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gasLimit: 2000000
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});
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const wrappedAddress = await initialized.methods.wrappedAsset("0x" + testBridgedAssetChain, "0x" + testBridgedAssetAddress).call();
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assert.ok(await initialized.methods.isWrappedAsset(wrappedAddress).call())
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const wrappedAsset = new web3.eth.Contract(NFTImplementation.abi, wrappedAddress);
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let ownerAfter = await wrappedAsset.methods.ownerOf(tokenId).call();
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assert.equal(ownerAfter, accounts[0]);
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const symbol = await wrappedAsset.methods.symbol().call();
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assert.equal(symbol, "FOR");
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const name = await wrappedAsset.methods.name().call();
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assert.equal(name, "Foreign Chain NFT");
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const chainId = await wrappedAsset.methods.chainId().call();
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assert.equal(chainId, Number(testBridgedAssetChain));
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const nativeContract = await wrappedAsset.methods.nativeContract().call();
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assert.equal(nativeContract, "0x000000000000000000000000b7a2211e8165943192ad04f5dd21bedc29ff003e");
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// Transfer another tokenID of the same token address
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tokenId = "1000000000000000002"
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data = "0x" +
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"01" +
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// tokenaddress
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testBridgedAssetAddress +
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// tokenchain
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testBridgedAssetChain +
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// symbol
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"464f520000000000000000000000000000000000000000000000000000000000" +
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// name
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"466f726569676e20436861696e204e4654000000000000000000000000000000" +
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// tokenID
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web3.eth.abi.encodeParameter("uint256", new BigNumber(tokenId + 1).toString()).substring(2) +
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// url length
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"00" +
|
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// no URL
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"" +
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// receiver
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web3.eth.abi.encodeParameter("address", accounts[0]).substr(2) +
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// receiving chain
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web3.eth.abi.encodeParameter("uint16", testChainId).substring(2 + (64 - 4));
|
|
|
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vm = await signAndEncodeVM(
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0,
|
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0,
|
|
testForeignChainId,
|
|
testForeignBridgeContract,
|
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1,
|
|
data,
|
|
[
|
|
testSigner1PK
|
|
],
|
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0,
|
|
0
|
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);
|
|
|
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await initialized.methods.completeTransfer("0x" + vm).send({
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value: 0,
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from: accounts[1],
|
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gasLimit: 2000000
|
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});
|
|
|
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ownerAfter = await wrappedAsset.methods.ownerOf(tokenId + 1).call();
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assert.equal(ownerAfter, accounts[0]);
|
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})
|
|
|
|
it("should mint bridged assets from solana under unified name, caching the original", async function () {
|
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const accounts = await web3.eth.getAccounts();
|
|
let tokenId = "1000000000000000001";
|
|
|
|
const initialized = new web3.eth.Contract(BridgeImplementationFullABI, NFTBridge.address);
|
|
|
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// we are using the asset where we created a wrapper in the previous test
|
|
let data = "0x" +
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"01" +
|
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// tokenaddress
|
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testBridgedAssetAddress +
|
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// tokenchain
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"0001" +
|
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// symbol
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"464f520000000000000000000000000000000000000000000000000000000000" +
|
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// name
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"466f726569676e20436861696e204e4654000000000000000000000000000000" +
|
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// tokenID
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web3.eth.abi.encodeParameter("uint256", new BigNumber(tokenId).toString()).substring(2) +
|
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// url length
|
|
"00" +
|
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// no URL
|
|
"" +
|
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// receiver
|
|
web3.eth.abi.encodeParameter("address", accounts[0]).substr(2) +
|
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// receiving chain
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|
web3.eth.abi.encodeParameter("uint16", testChainId).substring(2 + (64 - 4));
|
|
|
|
let vm = await signAndEncodeVM(
|
|
0,
|
|
0,
|
|
testForeignChainId,
|
|
testForeignBridgeContract,
|
|
0,
|
|
data,
|
|
[
|
|
testSigner1PK
|
|
],
|
|
0,
|
|
0
|
|
);
|
|
|
|
await initialized.methods.completeTransfer("0x" + vm).send({
|
|
value: 0,
|
|
from: accounts[1],
|
|
gasLimit: 2000000
|
|
});
|
|
|
|
const cache = await initialized.methods.splCache(tokenId).call()
|
|
assert.equal(cache.symbol, "0x464f520000000000000000000000000000000000000000000000000000000000");
|
|
assert.equal(cache.name, "0x466f726569676e20436861696e204e4654000000000000000000000000000000");
|
|
|
|
const wrappedAddress = await initialized.methods.wrappedAsset("0x0001", "0x" + testBridgedAssetAddress).call();
|
|
const wrappedAsset = new web3.eth.Contract(NFTImplementation.abi, wrappedAddress);
|
|
|
|
const symbol = await wrappedAsset.methods.symbol().call();
|
|
assert.equal(symbol, "WORMSPLNFT");
|
|
|
|
const name = await wrappedAsset.methods.name().call();
|
|
assert.equal(name, "Wormhole Bridged Solana-NFT");
|
|
})
|
|
|
|
it("cached SPL names are loaded when transferring out, cache is cleared", async function () {
|
|
const accounts = await web3.eth.getAccounts();
|
|
let tokenId = "1000000000000000001";
|
|
|
|
const initialized = new web3.eth.Contract(BridgeImplementationFullABI, NFTBridge.address);
|
|
|
|
const wrappedAddress = await initialized.methods.wrappedAsset("0x0001", "0x" + testBridgedAssetAddress).call();
|
|
const wrappedAsset = new web3.eth.Contract(NFTImplementation.abi, wrappedAddress);
|
|
|
|
await wrappedAsset.methods.approve(NFTBridge.address, tokenId).send({
|
|
value: 0,
|
|
from: accounts[0],
|
|
gasLimit: 2000000
|
|
});
|
|
|
|
const transfer = await initialized.methods.transferNFT(
|
|
wrappedAddress,
|
|
tokenId,
|
|
"10",
|
|
"0x000000000000000000000000b7a2211e8165943192ad04f5dd21bedc29ff003e",
|
|
"2345"
|
|
).send({
|
|
value: 0,
|
|
from: accounts[0],
|
|
gasLimit: 2000000
|
|
});
|
|
|
|
// symbol
|
|
assert.ok(transfer.events[4].raw.data.includes('464f520000000000000000000000000000000000000000000000000000000000'))
|
|
// name
|
|
assert.ok(transfer.events[4].raw.data.includes('466f726569676e20436861696e204e4654000000000000000000000000000000'))
|
|
|
|
// check if cache is cleared
|
|
const cache = await initialized.methods.splCache(tokenId).call()
|
|
assert.equal(cache.symbol, "0x0000000000000000000000000000000000000000000000000000000000000000");
|
|
assert.equal(cache.name, "0x0000000000000000000000000000000000000000000000000000000000000000");
|
|
})
|
|
|
|
it("should should fail deposit unapproved NFTs", async function () {
|
|
const accounts = await web3.eth.getAccounts();
|
|
const initialized = new web3.eth.Contract(BridgeImplementationFullABI, NFTBridge.address);
|
|
const tokenId = "1000000000000000001";
|
|
|
|
const wrappedAddress = await initialized.methods.wrappedAsset("0x" + testBridgedAssetChain, "0x" + testBridgedAssetAddress).call();
|
|
|
|
// deposit tokens
|
|
let failed = false
|
|
try {
|
|
await initialized.methods.transferNFT(
|
|
wrappedAddress,
|
|
tokenId,
|
|
"10",
|
|
"0x000000000000000000000000b7a2211e8165943192ad04f5dd21bedc29ff003e",
|
|
"234"
|
|
).send({
|
|
value: 0,
|
|
from: accounts[0],
|
|
gasLimit: 2000000
|
|
});
|
|
} catch (e) {
|
|
assert.equal(e.message, "Returned error: VM Exception while processing transaction: revert ERC721: transfer caller is not owner nor approved")
|
|
failed = true
|
|
}
|
|
|
|
assert.ok(failed)
|
|
})
|
|
|
|
it("should refuse to burn wrappers not held by msg.sender", async function () {
|
|
const accounts = await web3.eth.getAccounts();
|
|
const initialized = new web3.eth.Contract(BridgeImplementationFullABI, NFTBridge.address);
|
|
const tokenId = "1000000000000000001";
|
|
|
|
const wrappedAddress = await initialized.methods.wrappedAsset("0x" + testBridgedAssetChain, "0x" + testBridgedAssetAddress).call();
|
|
const wrappedAsset = new web3.eth.Contract(NFTImplementation.abi, wrappedAddress);
|
|
|
|
// approve from 0
|
|
await wrappedAsset.methods.approve(NFTBridge.address, tokenId).send({
|
|
value: 0,
|
|
from: accounts[0],
|
|
gasLimit: 2000000
|
|
});
|
|
|
|
// deposit tokens from 1
|
|
let failed = false
|
|
try {
|
|
await initialized.methods.transferNFT(
|
|
wrappedAddress,
|
|
tokenId,
|
|
"10",
|
|
"0x000000000000000000000000b7a2211e8165943192ad04f5dd21bedc29ff003e",
|
|
"234"
|
|
).send({
|
|
value: 0,
|
|
from: accounts[1],
|
|
gasLimit: 2000000
|
|
});
|
|
} catch (e) {
|
|
assert.equal(e.message, "Returned error: VM Exception while processing transaction: revert ERC721: transfer of token that is not own")
|
|
failed = true
|
|
}
|
|
|
|
assert.ok(failed)
|
|
})
|
|
|
|
it("should deposit and burn approved bridged assets wrappers on transfer to another chain", async function () {
|
|
const accounts = await web3.eth.getAccounts();
|
|
const initialized = new web3.eth.Contract(BridgeImplementationFullABI, NFTBridge.address);
|
|
const tokenId = "1000000000000000001";
|
|
|
|
const wrappedAddress = await initialized.methods.wrappedAsset("0x" + testBridgedAssetChain, "0x" + testBridgedAssetAddress).call();
|
|
const wrappedAsset = new web3.eth.Contract(NFTImplementation.abi, wrappedAddress);
|
|
|
|
await wrappedAsset.methods.approve(NFTBridge.address, tokenId).send({
|
|
value: 0,
|
|
from: accounts[0],
|
|
gasLimit: 2000000
|
|
});
|
|
|
|
// deposit tokens
|
|
|
|
const ownerBefore = await wrappedAsset.methods.ownerOf(tokenId).call();
|
|
|
|
assert.equal(ownerBefore, accounts[0]);
|
|
|
|
await initialized.methods.transferNFT(
|
|
wrappedAddress,
|
|
tokenId,
|
|
"10",
|
|
"0x000000000000000000000000b7a2211e8165943192ad04f5dd21bedc29ff003e",
|
|
"234"
|
|
).send({
|
|
value: 0,
|
|
from: accounts[0],
|
|
gasLimit: 2000000
|
|
});
|
|
|
|
try {
|
|
await wrappedAsset.methods.ownerOf(tokenId).call();
|
|
assert.fail("burned token still exists")
|
|
} catch (e) {
|
|
assert.equal(e.data[Object.keys(e.data)[0]].reason, "ERC721: owner query for nonexistent token")
|
|
}
|
|
})
|
|
});
|
|
|
|
const signAndEncodeVM = async function (
|
|
timestamp,
|
|
nonce,
|
|
emitterChainId,
|
|
emitterAddress,
|
|
sequence,
|
|
data,
|
|
signers,
|
|
guardianSetIndex,
|
|
consistencyLevel
|
|
) {
|
|
const body = [
|
|
web3.eth.abi.encodeParameter("uint32", timestamp).substring(2 + (64 - 8)),
|
|
web3.eth.abi.encodeParameter("uint32", nonce).substring(2 + (64 - 8)),
|
|
web3.eth.abi.encodeParameter("uint16", emitterChainId).substring(2 + (64 - 4)),
|
|
web3.eth.abi.encodeParameter("bytes32", emitterAddress).substring(2),
|
|
web3.eth.abi.encodeParameter("uint64", sequence).substring(2 + (64 - 16)),
|
|
web3.eth.abi.encodeParameter("uint8", consistencyLevel).substring(2 + (64 - 2)),
|
|
data.substr(2)
|
|
]
|
|
|
|
const hash = web3.utils.soliditySha3(web3.utils.soliditySha3("0x" + body.join("")))
|
|
|
|
let signatures = "";
|
|
|
|
for (let i in signers) {
|
|
const ec = new elliptic.ec("secp256k1");
|
|
const key = ec.keyFromPrivate(signers[i]);
|
|
const signature = key.sign(hash.substr(2), {canonical: true});
|
|
|
|
const packSig = [
|
|
web3.eth.abi.encodeParameter("uint8", i).substring(2 + (64 - 2)),
|
|
zeroPadBytes(signature.r.toString(16), 32),
|
|
zeroPadBytes(signature.s.toString(16), 32),
|
|
web3.eth.abi.encodeParameter("uint8", signature.recoveryParam).substr(2 + (64 - 2)),
|
|
]
|
|
|
|
signatures += packSig.join("")
|
|
}
|
|
|
|
const vm = [
|
|
web3.eth.abi.encodeParameter("uint8", 1).substring(2 + (64 - 2)),
|
|
web3.eth.abi.encodeParameter("uint32", guardianSetIndex).substring(2 + (64 - 8)),
|
|
web3.eth.abi.encodeParameter("uint8", signers.length).substring(2 + (64 - 2)),
|
|
|
|
signatures,
|
|
body.join("")
|
|
].join("");
|
|
|
|
return vm
|
|
}
|
|
|
|
function zeroPadBytes(value, length) {
|
|
while (value.length < 2 * length) {
|
|
value = "0" + value;
|
|
}
|
|
return value;
|
|
}
|