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@unilogin/sdk

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SDK is a JS library, that communicates with relayer. SDK allows managing contract, by creating basic contract-calling messages.

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"use strict"; var __assign = (this && this.__assign) || function () { __assign = Object.assign || function(t) { for (var s, i = 1, n = arguments.length; i < n; i++) { s = arguments[i]; for (var p in s) if (Object.prototype.hasOwnProperty.call(s, p)) t[p] = s[p]; } return t; }; return __assign.apply(this, arguments); }; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; var __generator = (this && this.__generator) || function (thisArg, body) { var _ = { label: 0, sent: function() { if (t[0] & 1) throw t[1]; return t[1]; }, trys: [], ops: [] }, f, y, t, g; return g = { next: verb(0), "throw": verb(1), "return": verb(2) }, typeof Symbol === "function" && (g[Symbol.iterator] = function() { return this; }), g; function verb(n) { return function (v) { return step([n, v]); }; } function step(op) { if (f) throw new TypeError("Generator is already executing."); while (_) try { if (f = 1, y && (t = op[0] & 2 ? y["return"] : op[0] ? y["throw"] || ((t = y["return"]) && t.call(y), 0) : y.next) && !(t = t.call(y, op[1])).done) return t; if (y = 0, t) op = [op[0] & 2, t.value]; switch (op[0]) { case 0: case 1: t = op; break; case 4: _.label++; return { value: op[1], done: false }; case 5: _.label++; y = op[1]; op = [0]; continue; case 7: op = _.ops.pop(); _.trys.pop(); continue; default: if (!(t = _.trys, t = t.length > 0 && t[t.length - 1]) && (op[0] === 6 || op[0] === 2)) { _ = 0; continue; } if (op[0] === 3 && (!t || (op[1] > t[0] && op[1] < t[3]))) { _.label = op[1]; break; } if (op[0] === 6 && _.label < t[1]) { _.label = t[1]; t = op; break; } if (t && _.label < t[2]) { _.label = t[2]; _.ops.push(op); break; } if (t[2]) _.ops.pop(); _.trys.pop(); continue; } op = body.call(thisArg, _); } catch (e) { op = [6, e]; y = 0; } finally { f = t = 0; } if (op[0] & 5) throw op[1]; return { value: op[0] ? op[1] : void 0, done: true }; } }; var __read = (this && this.__read) || function (o, n) { var m = typeof Symbol === "function" && o[Symbol.iterator]; if (!m) return o; var i = m.call(o), r, ar = [], e; try { while ((n === void 0 || n-- > 0) && !(r = i.next()).done) ar.push(r.value); } catch (error) { e = { error: error }; } finally { try { if (r && !r.done && (m = i["return"])) m.call(i); } finally { if (e) throw e.error; } } return ar; }; var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (Object.hasOwnProperty.call(mod, k)) result[k] = mod[k]; result["default"] = mod; return result; }; var __importDefault = (this && this.__importDefault) || function (mod) { return (mod && mod.__esModule) ? mod : { "default": mod }; }; Object.defineProperty(exports, "__esModule", { value: true }); var chai_1 = __importStar(require("chai")); var ethers_1 = require("ethers"); var ethereum_waffle_1 = require("ethereum-waffle"); var commons_1 = require("@unilogin/commons"); var testutils_1 = require("@unilogin/contracts/testutils"); var contracts_1 = require("@unilogin/contracts"); var relayer_1 = require("@unilogin/relayer"); var sdk_1 = __importDefault(require("../../../src/api/sdk")); chai_1.default.use(ethereum_waffle_1.solidity); describe('INT: FutureWallet', function () { var provider; var relayer; var wallet; var ensName = 'name.mylogin.eth'; var futureWalletFactory; beforeEach(function () { return __awaiter(void 0, void 0, void 0, function () { var sdk; var _a, _b; return __generator(this, function (_c) { switch (_c.label) { case 0: provider = ethereum_waffle_1.createMockProvider(); _a = __read(ethereum_waffle_1.getWallets(provider), 1), wallet = _a[0]; return [4 /*yield*/, relayer_1.RelayerUnderTest.createPreconfigured(wallet)]; case 1: (_b = _c.sent(), relayer = _b.relayer, provider = _b.provider); return [4 /*yield*/, relayer.start()]; case 2: _c.sent(); sdk = new sdk_1.default(relayer.url(), provider, commons_1.TEST_SDK_CONFIG); return [4 /*yield*/, sdk.fetchRelayerConfig()]; case 3: _c.sent(); futureWalletFactory = sdk.getFutureWalletFactory(); return [2 /*return*/]; } }); }); }); it('createNew returns proper FutureWallet', function () { return __awaiter(void 0, void 0, void 0, function () { var futureWallet; return __generator(this, function (_a) { switch (_a.label) { case 0: return [4 /*yield*/, futureWalletFactory.createNew(ensName, commons_1.TEST_GAS_PRICE, commons_1.ETHER_NATIVE_TOKEN.address)]; case 1: futureWallet = _a.sent(); chai_1.expect(futureWallet.privateKey).to.be.properPrivateKey; chai_1.expect(futureWallet.contractAddress).to.be.properAddress; chai_1.expect(futureWallet.gasPrice).to.eq(commons_1.TEST_GAS_PRICE); chai_1.expect(futureWallet.gasToken).to.eq(commons_1.ETHER_NATIVE_TOKEN.address); return [2 /*return*/]; } }); }); }); it('waitForBalance returns promise, which resolves when balance update', function () { return __awaiter(void 0, void 0, void 0, function () { var futureWallet, result; return __generator(this, function (_a) { switch (_a.label) { case 0: return [4 /*yield*/, futureWalletFactory.createNew(ensName, commons_1.TEST_GAS_PRICE, commons_1.ETHER_NATIVE_TOKEN.address)]; case 1: futureWallet = _a.sent(); return [4 /*yield*/, wallet.sendTransaction({ to: futureWallet.contractAddress, value: ethers_1.utils.parseEther('2') })]; case 2: _a.sent(); return [4 /*yield*/, futureWallet.waitForBalance()]; case 3: result = _a.sent(); chai_1.expect(result).be.eq(futureWallet.contractAddress); return [2 /*return*/]; } }); }); }); it('should not deploy contract which does not have balance', function () { return __awaiter(void 0, void 0, void 0, function () { var futureWallet, waitToBeSuccess; return __generator(this, function (_a) { switch (_a.label) { case 0: return [4 /*yield*/, futureWalletFactory.createNew(ensName, commons_1.TEST_GAS_PRICE, commons_1.ETHER_NATIVE_TOKEN.address)]; case 1: futureWallet = _a.sent(); return [4 /*yield*/, futureWallet.deploy()]; case 2: waitToBeSuccess = (_a.sent()).waitToBeSuccess; return [4 /*yield*/, chai_1.expect(waitToBeSuccess()).to.be.eventually.rejected]; case 3: _a.sent(); return [2 /*return*/]; } }); }); }); it('counterfactual deployment roundtrip', function () { return __awaiter(void 0, void 0, void 0, function () { var futureWallet, waitToBeSuccess, deployedWallet, _a, message; return __generator(this, function (_b) { switch (_b.label) { case 0: return [4 /*yield*/, futureWalletFactory.createNew(ensName, commons_1.TEST_GAS_PRICE, commons_1.ETHER_NATIVE_TOKEN.address)]; case 1: futureWallet = _b.sent(); return [4 /*yield*/, wallet.sendTransaction({ to: futureWallet.contractAddress, value: ethers_1.utils.parseEther('2') })]; case 2: _b.sent(); return [4 /*yield*/, futureWallet.waitForBalance()]; case 3: _b.sent(); return [4 /*yield*/, futureWallet.deploy()]; case 4: waitToBeSuccess = (_b.sent()).waitToBeSuccess; return [4 /*yield*/, waitToBeSuccess()]; case 5: deployedWallet = _b.sent(); chai_1.expect(deployedWallet.contractAddress).to.eq(futureWallet.contractAddress); _a = chai_1.expect; return [4 /*yield*/, provider.getCode(futureWallet.contractAddress)]; case 6: _a.apply(void 0, [_b.sent()]).to.eq("0x" + commons_1.getDeployedBytecode(contracts_1.gnosisSafe.Proxy)); message = __assign(__assign({}, testutils_1.emptyMessage), { from: futureWallet.contractAddress, to: commons_1.TEST_ACCOUNT_ADDRESS, value: ethers_1.utils.parseEther('1'), gasLimit: commons_1.DEFAULT_GAS_LIMIT }); return [4 /*yield*/, chai_1.expect(deployedWallet.execute(message)).to.be.fulfilled]; case 7: _b.sent(); return [4 /*yield*/, chai_1.expect(futureWallet.deploy()).to.be.rejected]; case 8: _b.sent(); return [2 /*return*/]; } }); }); }); afterEach(function () { return __awaiter(void 0, void 0, void 0, function () { return __generator(this, function (_a) { switch (_a.label) { case 0: return [4 /*yield*/, relayer.stop()]; case 1: _a.sent(); return [2 /*return*/]; } }); }); }); }); //# sourceMappingURL=FutureWallet.int.test.js.map