* generate wrappers in @0x/contract-wrappers and delete abi-gen-wrappers * trim exports from contract-wrappers * separate contract-wrappers tests to get rid of dependency cycle * remove dummy token contracts * temporarily skip coordinator test until we can upgrade coordinator server
635 lines
32 KiB
TypeScript
635 lines
32 KiB
TypeScript
import { ContractAddresses, getContractAddressesForChainOrThrow } from '@0x/contract-addresses';
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import { IAssetDataContract } from '@0x/contracts-asset-proxy';
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import { ExchangeContract } from '@0x/contracts-exchange';
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import { blockchainTests, constants, expect, OrderFactory } from '@0x/contracts-test-utils';
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import { defaultOrmConfig, getAppAsync } from '@0x/coordinator-server';
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import { devConstants, tokenUtils } from '@0x/dev-utils';
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import { runMigrationsOnceAsync } from '@0x/migrations';
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import { SignedOrder } from '@0x/types';
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import { BigNumber, fetchAsync, logUtils } from '@0x/utils';
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import * as nock from 'nock';
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import { CoordinatorClient, CoordinatorRegistryContract, CoordinatorServerErrorMsg } from '@0x/contracts-coordinator';
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import { DummyERC20TokenContract } from '@0x/contracts-erc20';
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const coordinatorPort = '3000';
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const anotherCoordinatorPort = '4000';
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const coordinatorEndpoint = 'http://localhost:';
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const DEFAULT_PROTOCOL_FEE_MULTIPLIER = new BigNumber(150000);
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// tslint:disable:custom-no-magic-numbers
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blockchainTests.skip('Coordinator Client', env => {
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const takerTokenFillAmount = new BigNumber(0);
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const chainId = 1337;
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const assetDataEncoder = new IAssetDataContract(constants.NULL_ADDRESS, env.provider);
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let contractAddresses: ContractAddresses;
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let coordinatorRegistry: CoordinatorRegistryContract;
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let coordinatorClient: CoordinatorClient;
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let orderFactory: OrderFactory;
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let userAddresses: string[];
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let makerAddress: string;
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let takerAddress: string;
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let feeRecipientAddressOne: string;
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let feeRecipientAddressTwo: string;
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let feeRecipientAddressThree: string;
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let feeRecipientAddressFour: string;
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let makerAssetData: string;
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let takerAssetData: string;
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let feeAssetData: string;
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let makerToken: DummyERC20TokenContract;
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let takerToken: DummyERC20TokenContract;
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let txHash: string;
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let signedOrder: SignedOrder;
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let anotherSignedOrder: SignedOrder;
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let signedOrderWithDifferentFeeRecipient: SignedOrder;
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let signedOrderWithDifferentCoordinatorOperator: SignedOrder;
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// for testing server error responses
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let serverValidationError: any;
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before(async () => {
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contractAddresses = await runMigrationsOnceAsync(env.provider, {
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gas: devConstants.GAS_LIMIT,
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from: devConstants.TESTRPC_FIRST_ADDRESS,
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});
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coordinatorClient = new CoordinatorClient(
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contractAddresses.coordinator,
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env.provider,
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chainId,
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{}, // txDefaults
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contractAddresses.exchange,
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contractAddresses.coordinatorRegistry,
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);
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coordinatorRegistry = new CoordinatorRegistryContract(contractAddresses.coordinatorRegistry, env.provider);
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userAddresses = await env.web3Wrapper.getAvailableAddressesAsync();
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[
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,
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makerAddress,
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takerAddress,
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feeRecipientAddressOne,
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feeRecipientAddressTwo,
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feeRecipientAddressThree,
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feeRecipientAddressFour,
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] = userAddresses.slice(0, 7);
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// declare encoded asset data
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const [makerTokenAddress, takerTokenAddress] = tokenUtils.getDummyERC20TokenAddresses();
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const feeTokenAddress = contractAddresses.zrxToken;
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[makerAssetData, takerAssetData, feeAssetData] = [
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assetDataEncoder.ERC20Token(makerTokenAddress).getABIEncodedTransactionData(),
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assetDataEncoder.ERC20Token(takerTokenAddress).getABIEncodedTransactionData(),
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assetDataEncoder.ERC20Token(feeTokenAddress).getABIEncodedTransactionData(),
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];
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// set initial balances
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makerToken = new DummyERC20TokenContract(makerTokenAddress, env.provider);
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takerToken = new DummyERC20TokenContract(takerTokenAddress, env.provider);
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// Configure order defaults
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const defaultOrderParams = {
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...constants.STATIC_ORDER_PARAMS,
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makerAddress,
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feeRecipientAddress: feeRecipientAddressOne,
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makerAssetData,
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takerAssetData,
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makerFeeAssetData: feeAssetData,
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takerFeeAssetData: feeAssetData,
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senderAddress: contractAddresses.coordinator,
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exchangeAddress: contractAddresses.exchange,
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chainId,
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};
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const privateKey = constants.TESTRPC_PRIVATE_KEYS[userAddresses.indexOf(makerAddress)];
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orderFactory = new OrderFactory(privateKey, defaultOrderParams);
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// configure mock coordinator servers
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const coordinatorServerConfigs = {
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HTTP_PORT: 3000, // Only used in default instantiation in 0x-coordinator-server/server.js; not used here
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CHAIN_ID_TO_SETTINGS: {
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// TODO: change to CHAIN_ID_TO_SETTINGS when @0x/coordinator-server is ready
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[chainId]: {
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FEE_RECIPIENTS: [feeRecipientAddressOne, feeRecipientAddressTwo, feeRecipientAddressThree].map(
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address => {
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return {
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ADDRESS: address,
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PRIVATE_KEY: constants.TESTRPC_PRIVATE_KEYS[userAddresses.indexOf(address)].toString(
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'hex',
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),
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};
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},
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),
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// Ethereum RPC url, only used in the default instantiation in 0x-coordinator-server/server.js
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// Not used here when instantiating with the imported app
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RPC_URL: 'http://ignore',
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},
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},
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NETWORK_ID_TO_CONTRACT_ADDRESSES: {
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// TODO: change to CHAIN_ID_TO_CONTRACT_ADDRESSES when @0x/coordinator-server is ready
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[chainId]: getContractAddressesForChainOrThrow(chainId),
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},
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// Optional selective delay on fill requests
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SELECTIVE_DELAY_MS: 0,
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EXPIRATION_DURATION_SECONDS: 60, // 1 minute
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};
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// start coordinator servers
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const serverScenarios: Array<[string, string]> = [
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['coord_server_1', coordinatorPort],
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['coord_server_2', anotherCoordinatorPort],
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];
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await Promise.all(
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serverScenarios.map(async ([name, port]) => {
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const app = await getAppAsync(
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{
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[chainId]: env.provider,
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},
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coordinatorServerConfigs,
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{
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name,
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type: 'sqlite',
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database: ':memory:',
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entities: defaultOrmConfig.entities,
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cli: defaultOrmConfig.cli,
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logging: defaultOrmConfig.logging,
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synchronize: defaultOrmConfig.synchronize,
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},
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);
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app.listen(port, () => {
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logUtils.log(`Coordinator SERVER API (HTTP) listening on port ${port}!`);
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});
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return app;
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}),
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);
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// register coordinator servers
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[
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[feeRecipientAddressOne, coordinatorPort],
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[feeRecipientAddressTwo, coordinatorPort],
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[feeRecipientAddressThree, anotherCoordinatorPort],
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].forEach(async ([address, port]) => {
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await coordinatorRegistry
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.setCoordinatorEndpoint(`${coordinatorEndpoint}${port}`)
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.awaitTransactionSuccessAsync(
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{ from: address },
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{ pollingIntervalMs: constants.AWAIT_TRANSACTION_MINED_MS },
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);
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});
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});
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beforeEach(async () => {
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signedOrder = await orderFactory.newSignedOrderAsync();
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anotherSignedOrder = await orderFactory.newSignedOrderAsync();
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signedOrderWithDifferentFeeRecipient = await orderFactory.newSignedOrderAsync({
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feeRecipientAddress: feeRecipientAddressTwo,
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});
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signedOrderWithDifferentCoordinatorOperator = await orderFactory.newSignedOrderAsync({
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feeRecipientAddress: feeRecipientAddressThree,
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});
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makerToken.setBalance(makerAddress, constants.INITIAL_ERC20_BALANCE);
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takerToken.setBalance(takerAddress, constants.INITIAL_ERC20_BALANCE);
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});
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describe('test setup', () => {
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it('should have coordinator registry which returns an endpoint', async () => {
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const setCoordinatorEndpoint = await coordinatorRegistry
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.getCoordinatorEndpoint(feeRecipientAddressOne)
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.callAsync();
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const anotherSetCoordinatorEndpoint = await coordinatorRegistry
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.getCoordinatorEndpoint(feeRecipientAddressThree)
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.callAsync();
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expect(setCoordinatorEndpoint).to.equal(`${coordinatorEndpoint}${coordinatorPort}`);
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expect(anotherSetCoordinatorEndpoint).to.equal(`${coordinatorEndpoint}${anotherCoordinatorPort}`);
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});
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it('should have coordinator server endpoints which respond to pings', async () => {
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let result = await fetchAsync(`${coordinatorEndpoint}${coordinatorPort}/v2/ping`);
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expect(result.status).to.equal(200);
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expect(await result.text()).to.equal('pong');
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result = await fetchAsync(`${coordinatorEndpoint}${anotherCoordinatorPort}/v2/ping`);
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expect(result.status).to.equal(200);
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expect(await result.text()).to.equal('pong');
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});
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});
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// fill handling is the same for all fill methods so we can test them all through the fillOrder and batchFillOrders interfaces
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describe('#fillOrderAsync', () => {
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it('should fill a valid order', async () => {
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txHash = await coordinatorClient.fillOrderAsync(
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signedOrder,
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takerTokenFillAmount,
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signedOrder.signature,
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{ from: takerAddress },
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{ shouldValidate: true },
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);
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await env.web3Wrapper.awaitTransactionSuccessAsync(txHash, constants.AWAIT_TRANSACTION_MINED_MS);
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});
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});
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describe('#batchFillOrdersAsync', () => {
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it('should fill a batch of valid orders', async () => {
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const signedOrders = [signedOrder, anotherSignedOrder];
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const takerAssetFillAmounts = Array(2).fill(takerTokenFillAmount);
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txHash = await coordinatorClient.batchFillOrdersAsync(
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signedOrders,
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takerAssetFillAmounts,
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signedOrders.map(o => o.signature),
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{ from: takerAddress, value: DEFAULT_PROTOCOL_FEE_MULTIPLIER.times(signedOrders.length) },
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);
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await env.web3Wrapper.awaitTransactionSuccessAsync(txHash, constants.AWAIT_TRANSACTION_MINED_MS);
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});
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it('should fill a batch of orders with different feeRecipientAddresses with the same coordinator server', async () => {
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const signedOrders = [signedOrder, anotherSignedOrder, signedOrderWithDifferentFeeRecipient];
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const takerAssetFillAmounts = Array(3).fill(takerTokenFillAmount);
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txHash = await coordinatorClient.batchFillOrdersAsync(
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signedOrders,
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takerAssetFillAmounts,
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signedOrders.map(o => o.signature),
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{ from: takerAddress, value: DEFAULT_PROTOCOL_FEE_MULTIPLIER.times(signedOrders.length) },
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);
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await env.web3Wrapper.awaitTransactionSuccessAsync(txHash, constants.AWAIT_TRANSACTION_MINED_MS);
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});
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// coordinator-server, as currently implemented, shares a singleton database connection across
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// all instantiations. Making the request to two different mocked server endpoints still hits the
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// same database and fails because of the uniqueness constraint on transactions in the database.
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it.skip('should fill a batch of orders with different feeRecipientAddresses with different coordinator servers', async () => {
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const signedOrders = [
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signedOrder,
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anotherSignedOrder,
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signedOrderWithDifferentFeeRecipient,
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signedOrderWithDifferentCoordinatorOperator,
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];
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const takerAssetFillAmounts = Array(4).fill(takerTokenFillAmount);
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txHash = await coordinatorClient.batchFillOrdersAsync(
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signedOrders,
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takerAssetFillAmounts,
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signedOrders.map(o => o.signature),
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{ from: takerAddress },
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);
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await env.web3Wrapper.awaitTransactionSuccessAsync(txHash, constants.AWAIT_TRANSACTION_MINED_MS);
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});
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it('should fill a batch of mixed coordinator and non-coordinator orders', async () => {
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const nonCoordinatorOrder = await orderFactory.newSignedOrderAsync({
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senderAddress: constants.NULL_ADDRESS,
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});
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const signedOrders = [signedOrder, nonCoordinatorOrder];
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const takerAssetFillAmounts = Array(2).fill(takerTokenFillAmount);
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txHash = await coordinatorClient.batchFillOrdersAsync(
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signedOrders,
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takerAssetFillAmounts,
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signedOrders.map(o => o.signature),
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{ from: takerAddress, value: DEFAULT_PROTOCOL_FEE_MULTIPLIER.multipliedBy(signedOrders.length) },
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);
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await env.web3Wrapper.awaitTransactionSuccessAsync(txHash, constants.AWAIT_TRANSACTION_MINED_MS);
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});
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});
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describe('#softCancelAsync, #batchSoftCancelAsync', () => {
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it('should soft cancel a valid order', async () => {
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const response = await coordinatorClient.softCancelAsync(signedOrder);
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expect(response.outstandingFillSignatures).to.have.lengthOf(0);
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expect(response.cancellationSignatures).to.have.lengthOf(1);
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});
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it('should soft cancel a batch of valid orders', async () => {
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const orders = [signedOrder, anotherSignedOrder];
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const response = await coordinatorClient.batchSoftCancelAsync(orders);
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expect(response).to.have.lengthOf(1);
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expect(response[0].outstandingFillSignatures).to.have.lengthOf(0);
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expect(response[0].cancellationSignatures).to.have.lengthOf(1);
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});
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it('should soft cancel a batch of orders with different feeRecipientAddresses', async () => {
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const orders = [signedOrder, anotherSignedOrder, signedOrderWithDifferentFeeRecipient];
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const response = await coordinatorClient.batchSoftCancelAsync(orders);
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expect(response).to.have.lengthOf(1);
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expect(response[0].outstandingFillSignatures).to.have.lengthOf(0);
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expect(response[0].cancellationSignatures).to.have.lengthOf(2);
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});
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it('should soft cancel a batch of orders with different coordinatorOperator and concatenate responses', async () => {
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const orders = [
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signedOrder,
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anotherSignedOrder,
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signedOrderWithDifferentFeeRecipient,
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signedOrderWithDifferentCoordinatorOperator,
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];
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const response = await coordinatorClient.batchSoftCancelAsync(orders);
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expect(response).to.have.lengthOf(2);
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expect(response[0].outstandingFillSignatures).to.have.lengthOf(0);
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expect(response[0].cancellationSignatures).to.have.lengthOf(3);
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expect(response[1].cancellationSignatures).to.have.lengthOf(3); // both coordinator servers support the same feeRecipients
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});
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});
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describe('#hardCancelOrderAsync, #batchHardCancelOrdersAsync, #cancelOrdersUpToAsync', () => {
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it('should hard cancel a valid order', async () => {
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txHash = await coordinatorClient.hardCancelOrderAsync(signedOrder, { from: makerAddress });
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await env.web3Wrapper.awaitTransactionSuccessAsync(txHash, constants.AWAIT_TRANSACTION_MINED_MS);
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});
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it('should hard cancel a batch of valid orders', async () => {
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const orders = [signedOrder, anotherSignedOrder];
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txHash = await coordinatorClient.batchHardCancelOrdersAsync(orders, { from: makerAddress });
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await env.web3Wrapper.awaitTransactionSuccessAsync(txHash, constants.AWAIT_TRANSACTION_MINED_MS);
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});
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it('should hard cancel orders up to target order epoch', async () => {
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const targetOrderEpoch = new BigNumber(42);
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txHash = await coordinatorClient.hardCancelOrdersUpToAsync(targetOrderEpoch, { from: makerAddress });
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await env.web3Wrapper.awaitTransactionSuccessAsync(txHash, constants.AWAIT_TRANSACTION_MINED_MS);
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const exchange = new ExchangeContract(contractAddresses.exchange, env.provider);
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const orderEpoch = await exchange.orderEpoch(makerAddress, contractAddresses.coordinator).callAsync();
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expect(orderEpoch).to.be.bignumber.equal(targetOrderEpoch.plus(1));
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});
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});
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describe('coordinator edge cases', () => {
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let badOrder: SignedOrder;
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beforeEach('setup order with non-registered feeRecipient', async () => {
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badOrder = await orderFactory.newSignedOrderAsync({
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feeRecipientAddress: feeRecipientAddressFour,
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});
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});
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it('should throw error when feeRecipientAddress is not in registry', async () => {
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await expect(
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coordinatorClient.fillOrderAsync(badOrder, takerTokenFillAmount, badOrder.signature, {
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from: takerAddress,
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}),
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).to.eventually.be.rejected();
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});
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it('should throw informative error when coordinator endpoint does not work', async () => {
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await env.web3Wrapper.awaitTransactionSuccessAsync(
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await coordinatorRegistry.setCoordinatorEndpoint('http://badUri.com').sendTransactionAsync({
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from: feeRecipientAddressFour,
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}),
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constants.AWAIT_TRANSACTION_MINED_MS,
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);
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await expect(
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coordinatorClient.fillOrderAsync(badOrder, takerTokenFillAmount, badOrder.signature, {
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from: takerAddress,
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}),
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).to.eventually.be.rejectedWith(CoordinatorServerErrorMsg.FillFailed);
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});
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});
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describe('coordinator server errors', () => {
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serverValidationError = {
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code: 1004,
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reason: '',
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validationErrors: [
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{
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field: 'signedTransaction',
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code: 1004,
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reason:
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'A transaction can only be approved once. To request approval to perform the same actions, generate and sign an identical transaction with a different salt value.',
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},
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],
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};
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beforeEach(async () => {
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nock(`${coordinatorEndpoint}${coordinatorPort}`)
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.post('/v2/request_transaction', () => true)
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.query({
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chainId: 1337,
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})
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.reply(400, serverValidationError);
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});
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afterEach(async () => {
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nock.cleanAll();
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});
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it('should throw error when softCancel fails', async () => {
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await coordinatorClient
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.softCancelAsync(signedOrder)
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.then(res => {
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expect(res).to.be.undefined();
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})
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.catch(err => {
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expect(err.message).equal(CoordinatorServerErrorMsg.CancellationFailed);
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expect(err.approvedOrders).to.be.empty('array');
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expect(err.cancellations).to.be.empty('array');
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const errorBody = err.errors[0];
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expect(errorBody.isError).to.be.true();
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expect(errorBody.status).to.equal(400);
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expect(errorBody.error).to.deep.equal(serverValidationError);
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expect(errorBody.orders).to.deep.equal([signedOrder]);
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expect(errorBody.coordinatorOperator).to.equal(`${coordinatorEndpoint}${coordinatorPort}`);
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});
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});
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it('should throw error when batch soft cancel totally fails with single coordinator operator', async () => {
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const orders = [signedOrder, signedOrderWithDifferentFeeRecipient];
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await coordinatorClient
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.batchSoftCancelAsync(orders)
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.then(res => {
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expect(res).to.be.undefined();
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})
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.catch(err => {
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expect(err.message).equal(CoordinatorServerErrorMsg.CancellationFailed);
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expect(err.approvedOrders).to.be.empty('array');
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expect(err.cancellations).to.be.empty('array');
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const errorBody = err.errors[0];
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expect(errorBody.isError).to.be.true();
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expect(errorBody.status).to.equal(400);
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expect(errorBody.error).to.deep.equal(serverValidationError);
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expect(errorBody.orders).to.deep.equal(orders);
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expect(errorBody.coordinatorOperator).to.equal(`${coordinatorEndpoint}${coordinatorPort}`);
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});
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});
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it('should throw consolidated error when batch soft cancel partially fails with different coordinator operators', async () => {
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const serverCancellationSuccess = {
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outstandingFillSignatures: [
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{
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orderHash: '0xd1dc61f3e7e5f41d72beae7863487beea108971de678ca00d903756f842ef3ce',
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approvalSignatures: [
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'0x1c7383ca8ebd6de8b5b20b1c2d49bea166df7dfe4af1932c9c52ec07334e859cf2176901da35f4480ceb3ab63d8d0339d851c31929c40d88752689b9a8a535671303',
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],
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expirationTimeSeconds: 1552390380,
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takerAssetFillAmount: 100000000000000000000,
|
|
},
|
|
],
|
|
cancellationSignatures: [
|
|
'0x2ea3117a8ebd6de8b5b20b1c2d49bea166df7dfe4af1932c9c52ec07334e859cf2176901da35f4480ceb3ab63d8d0339d851c31929c40d88752689b9a855b5a7b401',
|
|
],
|
|
};
|
|
nock(`${coordinatorEndpoint}${anotherCoordinatorPort}`)
|
|
.post('/v2/request_transaction', () => true)
|
|
.query({
|
|
chainId: 1337,
|
|
})
|
|
.reply(200, serverCancellationSuccess);
|
|
|
|
const signedOrders = [signedOrder, signedOrderWithDifferentCoordinatorOperator];
|
|
await coordinatorClient
|
|
.batchSoftCancelAsync(signedOrders)
|
|
.then(res => {
|
|
expect(res).to.be.undefined();
|
|
})
|
|
.catch(err => {
|
|
expect(err.message).equal(CoordinatorServerErrorMsg.CancellationFailed);
|
|
expect(err.approvedOrders).to.be.empty('array');
|
|
expect(err.cancellations).to.deep.equal([serverCancellationSuccess]);
|
|
|
|
const errorBody = err.errors[0];
|
|
expect(errorBody.isError).to.be.true();
|
|
expect(errorBody.status).to.equal(400);
|
|
expect(errorBody.error).to.deep.equal(serverValidationError);
|
|
expect(errorBody.orders).to.deep.equal([signedOrder]);
|
|
expect(errorBody.coordinatorOperator).to.equal(`${coordinatorEndpoint}${coordinatorPort}`);
|
|
});
|
|
});
|
|
it('should throw consolidated error when batch soft cancel totally fails with different coordinator operators', async () => {
|
|
nock(`${coordinatorEndpoint}${anotherCoordinatorPort}`)
|
|
.post('/v2/request_transaction', () => true)
|
|
.query({
|
|
chainId: 1337,
|
|
})
|
|
.reply(400, serverValidationError);
|
|
|
|
const signedOrders = [signedOrder, signedOrderWithDifferentCoordinatorOperator];
|
|
await coordinatorClient
|
|
.batchSoftCancelAsync(signedOrders)
|
|
.then(res => {
|
|
expect(res).to.be.undefined();
|
|
})
|
|
.catch(err => {
|
|
expect(err.message).equal(CoordinatorServerErrorMsg.CancellationFailed);
|
|
expect(err.approvedOrders).to.be.empty('array');
|
|
expect(err.cancellations).to.be.empty('array');
|
|
|
|
const errorBody = err.errors[0];
|
|
expect(errorBody.isError).to.be.true();
|
|
expect(errorBody.status).to.equal(400);
|
|
expect(errorBody.error).to.deep.equal(serverValidationError);
|
|
expect(errorBody.orders).to.deep.equal([signedOrder]);
|
|
expect(errorBody.coordinatorOperator).to.equal(`${coordinatorEndpoint}${coordinatorPort}`);
|
|
|
|
const anotherErrorBody = err.errors[1];
|
|
expect(anotherErrorBody.isError).to.be.true();
|
|
expect(anotherErrorBody.status).to.equal(400);
|
|
expect(anotherErrorBody.error).to.deep.equal(serverValidationError);
|
|
expect(anotherErrorBody.orders).to.deep.equal([signedOrderWithDifferentCoordinatorOperator]);
|
|
expect(anotherErrorBody.coordinatorOperator).to.equal(
|
|
`${coordinatorEndpoint}${anotherCoordinatorPort}`,
|
|
);
|
|
});
|
|
});
|
|
it('should throw error when a fill fails', async () => {
|
|
await coordinatorClient
|
|
.fillOrderAsync(signedOrder, takerTokenFillAmount, signedOrder.signature, { from: takerAddress })
|
|
.then(res => {
|
|
expect(res).to.be.undefined();
|
|
})
|
|
.catch(err => {
|
|
expect(err.message).equal(CoordinatorServerErrorMsg.FillFailed);
|
|
expect(err.approvedOrders).to.be.empty('array');
|
|
expect(err.cancellations).to.be.empty('array');
|
|
|
|
const errorBody = err.errors[0];
|
|
expect(errorBody.isError).to.be.true();
|
|
expect(errorBody.status).to.equal(400);
|
|
expect(errorBody.error).to.deep.equal(serverValidationError);
|
|
expect(errorBody.orders).to.deep.equal([signedOrder]);
|
|
expect(errorBody.coordinatorOperator).to.equal(`${coordinatorEndpoint}${coordinatorPort}`);
|
|
});
|
|
});
|
|
it('should throw error when batch fill fails with single coordinator operator', async () => {
|
|
const signedOrders = [signedOrder, signedOrderWithDifferentFeeRecipient];
|
|
const takerAssetFillAmounts = [takerTokenFillAmount, takerTokenFillAmount, takerTokenFillAmount];
|
|
await coordinatorClient
|
|
.batchFillOrdersAsync(signedOrders, takerAssetFillAmounts, signedOrders.map(o => o.signature), {
|
|
from: takerAddress,
|
|
})
|
|
.then(res => {
|
|
expect(res).to.be.undefined();
|
|
})
|
|
.catch(err => {
|
|
expect(err.message).equal(CoordinatorServerErrorMsg.FillFailed);
|
|
expect(err.approvedOrders).to.be.empty('array');
|
|
expect(err.cancellations).to.be.empty('array');
|
|
|
|
const errorBody = err.errors[0];
|
|
expect(errorBody.isError).to.be.true();
|
|
expect(errorBody.status).to.equal(400);
|
|
expect(errorBody.error).to.deep.equal(serverValidationError);
|
|
expect(errorBody.orders).to.deep.equal(signedOrders);
|
|
expect(errorBody.coordinatorOperator).to.equal(`${coordinatorEndpoint}${coordinatorPort}`);
|
|
});
|
|
});
|
|
it('should throw consolidated error when batch fill partially fails with different coordinator operators', async () => {
|
|
const serverApprovalSuccess = {
|
|
signatures: [
|
|
'0x1cc07d7ae39679690a91418d46491520f058e4fb14debdf2e98f2376b3970de8512ace44af0be6d1c65617f7aae8c2364ff63f241515ee1559c3eeecb0f671d9e903',
|
|
],
|
|
expirationTimeSeconds: 1552390014,
|
|
};
|
|
nock(`${coordinatorEndpoint}${anotherCoordinatorPort}`)
|
|
.post('/v2/request_transaction', () => true)
|
|
.query({
|
|
chainId: 1337,
|
|
})
|
|
.reply(200, serverApprovalSuccess);
|
|
|
|
const signedOrders = [signedOrder, signedOrderWithDifferentCoordinatorOperator];
|
|
const takerAssetFillAmounts = [takerTokenFillAmount, takerTokenFillAmount, takerTokenFillAmount];
|
|
await coordinatorClient
|
|
.batchFillOrdersAsync(signedOrders, takerAssetFillAmounts, signedOrders.map(o => o.signature), {
|
|
from: takerAddress,
|
|
})
|
|
.then(res => {
|
|
expect(res).to.be.undefined();
|
|
})
|
|
.catch(err => {
|
|
expect(err.message).equal(CoordinatorServerErrorMsg.FillFailed);
|
|
expect(err.approvedOrders).to.deep.equal([signedOrderWithDifferentCoordinatorOperator]);
|
|
expect(err.cancellations).to.be.empty('array');
|
|
|
|
const errorBody = err.errors[0];
|
|
expect(errorBody.isError).to.be.true();
|
|
expect(errorBody.status).to.equal(400);
|
|
expect(errorBody.error).to.deep.equal(serverValidationError);
|
|
expect(errorBody.orders).to.deep.equal([signedOrder]);
|
|
expect(errorBody.coordinatorOperator).to.equal(`${coordinatorEndpoint}${coordinatorPort}`);
|
|
});
|
|
});
|
|
it('should throw consolidated error when batch fill totally fails with different coordinator operators', async () => {
|
|
nock(`${coordinatorEndpoint}${anotherCoordinatorPort}`)
|
|
.post('/v2/request_transaction', () => true)
|
|
.query({
|
|
chainId: 1337,
|
|
})
|
|
.reply(400, serverValidationError);
|
|
|
|
const signedOrders = [signedOrder, signedOrderWithDifferentCoordinatorOperator];
|
|
const takerAssetFillAmounts = [takerTokenFillAmount, takerTokenFillAmount, takerTokenFillAmount];
|
|
await coordinatorClient
|
|
.batchFillOrdersAsync(signedOrders, takerAssetFillAmounts, signedOrders.map(o => o.signature), {
|
|
from: takerAddress,
|
|
})
|
|
.then(res => {
|
|
expect(res).to.be.undefined();
|
|
})
|
|
.catch(err => {
|
|
expect(err.message).equal(CoordinatorServerErrorMsg.FillFailed);
|
|
expect(err.approvedOrders).to.be.empty('array');
|
|
expect(err.cancellations).to.be.empty('array');
|
|
|
|
const errorBody = err.errors[0];
|
|
expect(errorBody.isError).to.be.true();
|
|
expect(errorBody.status).to.equal(400);
|
|
expect(errorBody.error).to.deep.equal(serverValidationError);
|
|
expect(errorBody.orders).to.deep.equal([signedOrder]);
|
|
expect(errorBody.coordinatorOperator).to.equal(`${coordinatorEndpoint}${coordinatorPort}`);
|
|
|
|
const anotherErrorBody = err.errors[1];
|
|
expect(anotherErrorBody.isError).to.be.true();
|
|
expect(anotherErrorBody.status).to.equal(400);
|
|
expect(anotherErrorBody.error).to.deep.equal(serverValidationError);
|
|
expect(anotherErrorBody.orders).to.deep.equal([signedOrderWithDifferentCoordinatorOperator]);
|
|
expect(anotherErrorBody.coordinatorOperator).to.equal(
|
|
`${coordinatorEndpoint}${anotherCoordinatorPort}`,
|
|
);
|
|
});
|
|
});
|
|
});
|
|
});
|
|
// tslint:disable:max-file-line-count
|