852 lines
29 KiB
TypeScript
852 lines
29 KiB
TypeScript
// @TODO:
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// - Add the batching API
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// https://playground.open-rpc.org/?schemaUrl=https://raw.githubusercontent.com/ethereum/eth1.0-apis/assembled-spec/openrpc.json&uiSchema%5BappBar%5D%5Bui:splitView%5D=true&uiSchema%5BappBar%5D%5Bui:input%5D=false&uiSchema%5BappBar%5D%5Bui:examplesDropdown%5D=false
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import { resolveAddress } from "../address/index.js";
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import { TypedDataEncoder } from "../hash/typed-data.js";
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import { accessListify } from "../transaction/index.js";
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import {
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defineProperties, getBigInt, hexlify, toQuantity, toUtf8Bytes,
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throwArgumentError, throwError,
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FetchRequest
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} from "../utils/index.js";
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import { AbstractProvider, UnmanagedSubscriber } from "./abstract-provider.js";
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import { AbstractSigner } from "./abstract-signer.js";
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import { Network } from "./network.js";
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import { FilterIdEventSubscriber, FilterIdPendingSubscriber } from "./subscriber-filterid.js";
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import type { TypedDataDomain, TypedDataField } from "../hash/index.js";
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import type { TransactionLike } from "../transaction/index.js";
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import type { PerformActionRequest, Subscriber, Subscription } from "./abstract-provider.js";
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import type { Networkish } from "./network.js";
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import type { Provider, TransactionRequest, TransactionResponse } from "./provider.js";
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import type { Signer } from "./signer.js";
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//function copy<T = any>(value: T): T {
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// return JSON.parse(JSON.stringify(value));
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//}
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const Primitive = "bigint,boolean,function,number,string,symbol".split(/,/g);
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//const Methods = "getAddress,then".split(/,/g);
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function deepCopy<T = any>(value: T): T {
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if (value == null || Primitive.indexOf(typeof(value)) >= 0) {
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return value;
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}
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// Keep any Addressable
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if (typeof((<any>value).getAddress) === "function") {
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return value;
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}
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if (Array.isArray(value)) { return <any>(value.map(deepCopy)); }
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if (typeof(value) === "object") {
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return Object.keys(value).reduce((accum, key) => {
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accum[key] = (<any>value)[key];
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return accum;
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}, <any>{ });
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}
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throw new Error(`should not happen: ${ value } (${ typeof(value) })`);
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}
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function getLowerCase(value: string): string {
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if (value) { return value.toLowerCase(); }
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return value;
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}
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interface Pollable {
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pollingInterval: number;
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}
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function isPollable(value: any): value is Pollable {
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return (value && typeof(value.pollingInterval) === "number");
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}
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export type JsonRpcPayload = {
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id: number;
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method: string;
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params: Array<any> | Record<string, any>;
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jsonrpc: "2.0";
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};
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export type JsonRpcResult = {
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id: number;
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result: any;
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};
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export type JsonRpcError = {
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id: number;
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error: {
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code: number;
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message?: string;
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data?: any;
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}
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};
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export type JsonRpcOptions = {
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// Whether to immediately fallback onto useing the polling strategy; otherwise
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// attempt to use filters first, falling back onto polling if filter returns failure
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polling?: boolean;
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// Whether to check the network on each call; only set this to true when a backend
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// **cannot** change otherwise catastrophic errors can occur
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staticNetwork?: null | Network;
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// How long to wait before draining the payload queue
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batchStallTime?: number;
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// Maximum estimated size (in bytes) to allow in a batch
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batchMaxSize?: number;
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// Maximum number of payloads to send per batch; if set to 1, non-batching requests
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// are made.
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batchMaxCount?: number;
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};
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const defaultOptions = {
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polling: false,
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staticNetwork: null,
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batchStallTime: 10, // 10ms
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batchMaxSize: (1 << 20), // 1Mb
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batchMaxCount: 100 // 100 requests
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}
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export interface JsonRpcTransactionRequest {
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from?: string;
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to?: string;
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data?: string;
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chainId?: string;
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type?: string;
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gas?: string;
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gasPrice?: string;
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maxFeePerGas?: string;
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maxPriorityFeePerGas?: string;
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nonce?: string;
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value?: string;
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accessList?: Array<{ address: string, storageKeys: Array<string> }>;
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}
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// @TODO: Unchecked Signers
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export class JsonRpcSigner extends AbstractSigner<JsonRpcApiProvider> {
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address!: string;
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constructor(provider: JsonRpcApiProvider, address: string) {
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super(provider);
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defineProperties<JsonRpcSigner>(this, { address });
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}
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connect(provider: null | Provider): Signer {
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return throwError("cannot reconnect JsonRpcSigner", "UNSUPPORTED_OPERATION", {
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operation: "signer.connect"
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});
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}
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async getAddress(): Promise<string> {
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return this.address;
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}
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// JSON-RPC will automatially fill in nonce, etc. so we just check from
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async populateTransaction(tx: TransactionRequest): Promise<TransactionLike<string>> {
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return await this.populateCall(tx);
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}
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//async getNetwork(): Promise<Frozen<Network>> {
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// return await this.provider.getNetwork();
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//}
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//async estimateGas(tx: TransactionRequest): Promise<bigint> {
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// return await this.provider.estimateGas(tx);
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//}
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//async call(tx: TransactionRequest): Promise<string> {
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// return await this.provider.call(tx);
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//}
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//async resolveName(name: string | Addressable): Promise<null | string> {
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// return await this.provider.resolveName(name);
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//}
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//async getNonce(blockTag?: BlockTag): Promise<number> {
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// return await this.provider.getTransactionCountOf(this.address);
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//}
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// Returns just the hash of the transaction after sent, which is what
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// the bare JSON-RPC API does;
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async sendUncheckedTransaction(_tx: TransactionRequest): Promise<string> {
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const tx = deepCopy(_tx);
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const promises: Array<Promise<void>> = [];
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// Make sure the from matches the sender
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if (tx.from) {
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const _from = tx.from;
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promises.push((async () => {
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const from = await resolveAddress(_from, this.provider);
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if (from == null || from.toLowerCase() !== this.address.toLowerCase()) {
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throwArgumentError("from address mismatch", "transaction", _tx);
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}
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tx.from = from;
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})());
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} else {
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tx.from = this.address;
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}
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// The JSON-RPC for eth_sendTransaction uses 90000 gas; if the user
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// wishes to use this, it is easy to specify explicitly, otherwise
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// we look it up for them.
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if (tx.gasLimit == null) {
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promises.push((async () => {
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tx.gasLimit = await this.provider.estimateGas({ ...tx, from: this.address});
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})());
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}
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// The address may be an ENS name or Addressable
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if (tx.to != null) {
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const _to = tx.to;
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promises.push((async () => {
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tx.to = await resolveAddress(_to, this.provider);
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})());
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}
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// Wait until all of our properties are filled in
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if (promises.length) { await Promise.all(promises); }
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const hexTx = this.provider.getRpcTransaction(tx);
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return this.provider.send("eth_sendTransaction", [ hexTx ]);
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}
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async sendTransaction(tx: TransactionRequest): Promise<TransactionResponse> {
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// This cannot be mined any earlier than any recent block
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const blockNumber = await this.provider.getBlockNumber();
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// Send the transaction
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const hash = await this.sendUncheckedTransaction(tx);
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// Unfortunately, JSON-RPC only provides and opaque transaction hash
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// for a response, and we need the actual transaction, so we poll
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// for it; it should show up very quickly
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return await (new Promise((resolve, reject) => {
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const timeouts = [ 1000, 100 ];
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const checkTx = async () => {
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// Try getting the transaction
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const tx = await this.provider.getTransaction(hash);
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if (tx != null) {
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resolve(this.provider._wrapTransaction(tx, hash, blockNumber));
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return;
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}
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// Wait another 4 seconds
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this.provider._setTimeout(() => { checkTx(); }, timeouts.pop() || 4000);
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};
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checkTx();
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}));
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}
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async signTransaction(_tx: TransactionRequest): Promise<string> {
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const tx = deepCopy(_tx);
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// Make sure the from matches the sender
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if (tx.from) {
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const from = await resolveAddress(tx.from, this.provider);
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if (from == null || from.toLowerCase() !== this.address.toLowerCase()) {
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return throwArgumentError("from address mismatch", "transaction", _tx);
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}
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tx.from = from;
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} else {
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tx.from = this.address;
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}
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const hexTx = this.provider.getRpcTransaction(tx);
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return await this.provider.send("eth_sign_Transaction", [ hexTx ]);
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}
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async signMessage(_message: string | Uint8Array): Promise<string> {
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const message = ((typeof(_message) === "string") ? toUtf8Bytes(_message): _message);
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return await this.provider.send("personal_sign", [
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hexlify(message), this.address.toLowerCase() ]);
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}
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async signTypedData(domain: TypedDataDomain, types: Record<string, Array<TypedDataField>>, _value: Record<string, any>): Promise<string> {
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const value = deepCopy(_value);
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// Populate any ENS names (in-place)
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const populated = await TypedDataEncoder.resolveNames(domain, types, value, async (value: string) => {
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const address = await resolveAddress(value);
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if (address == null) {
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return throwArgumentError("TypedData does not support null address", "value", value);
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}
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return address;
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});
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return await this.provider.send("eth_signTypedData_v4", [
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this.address.toLowerCase(),
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JSON.stringify(TypedDataEncoder.getPayload(populated.domain, types, populated.value))
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]);
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}
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async unlock(password: string): Promise<boolean> {
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return this.provider.send("personal_unlockAccount", [
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this.address.toLowerCase(), password, null ]);
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}
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// https://github.com/ethereum/wiki/wiki/JSON-RPC#eth_sign
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async _legacySignMessage(_message: string | Uint8Array): Promise<string> {
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const message = ((typeof(_message) === "string") ? toUtf8Bytes(_message): _message);
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return await this.provider.send("eth_sign", [
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this.address.toLowerCase(), hexlify(message) ]);
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}
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}
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type ResolveFunc = (result: JsonRpcResult) => void;
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type RejectFunc = (error: Error) => void;
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type Payload = { payload: JsonRpcPayload, resolve: ResolveFunc, reject: RejectFunc };
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export class JsonRpcApiProvider extends AbstractProvider {
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#options: Required<JsonRpcOptions>;
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#nextId: number;
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#payloads: Array<Payload>;
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#drainTimer: null | NodeJS.Timer;
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constructor(network?: Networkish, options?: JsonRpcOptions) {
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super(network);
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this.#nextId = 1;
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this.#options = Object.assign({ }, defaultOptions, options || { });
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this.#payloads = [ ];
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this.#drainTimer = null;
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// This could be relaxed in the future to just check equivalent networks
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const staticNetwork = this._getOption("staticNetwork");
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if (staticNetwork && staticNetwork !== network) {
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throwArgumentError("staticNetwork MUST match network object", "options", options);
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}
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}
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_getOption<K extends keyof JsonRpcOptions>(key: K): JsonRpcOptions[K] {
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return this.#options[key];
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}
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// @TODO: Merge this into send
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//prepareRequest(method: string, params: Array<any>): JsonRpcPayload {
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// return {
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// method, params, id: (this.#nextId++), jsonrpc: "2.0"
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// };
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//}
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/*
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async send<T = any>(method: string, params: Array<any>): Promise<T> {
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// @TODO: This should construct and queue the payload
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throw new Error("sub-class must implement this");
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}
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*/
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#scheduleDrain(): void {
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if (this.#drainTimer) { return; }
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this.#drainTimer = setTimeout(() => {
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this.#drainTimer = null;
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const payloads = this.#payloads;
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this.#payloads = [ ];
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while (payloads.length) {
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// Create payload batches that satisfy our batch constraints
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const batch = [ <Payload>(payloads.shift()) ];
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while (payloads.length) {
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if (batch.length === this.#options.batchMaxCount) { break; }
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batch.push(<Payload>(payloads.shift()));
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const bytes = JSON.stringify(batch.map((p) => p.payload));
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if (bytes.length > this.#options.batchMaxSize) {
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payloads.unshift(<Payload>(batch.pop()));
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break;
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}
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}
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// Process the result to each payload
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(async () => {
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const payload = ((batch.length === 1) ? batch[0].payload: batch.map((p) => p.payload));
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this.emit("debug", { action: "sendRpcPayload", payload });
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try {
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const result = await this._send(payload);
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this.emit("debug", { action: "receiveRpcResult", result });
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// Process results in batch order
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for (const { resolve, reject, payload } of batch) {
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// Find the matching result
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const resp = result.filter((r) => (r.id === payload.id))[0];
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// No result; the node failed us in unexpected ways
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if (resp == null) {
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return reject(new Error("@TODO: no result"));
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}
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// The response is an error
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if ("error" in resp) {
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return reject(this.getRpcError(payload, resp));
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}
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// All good; send the result
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resolve(resp.result);
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}
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} catch (error: any) {
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this.emit("debug", { action: "receiveRpcError", error });
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for (const { reject } of batch) {
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// @TODO: augment the error with the payload
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reject(error);
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}
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}
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})();
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}
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}, this.#options.batchStallTime);
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}
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// Sub-classes should **NOT** override this
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send(method: string, params: Array<any> | Record<string, any>): Promise<any> {
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// @TODO: cache chainId?? purge on switch_networks
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const id = this.#nextId++;
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const promise = new Promise((resolve, reject) => {
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this.#payloads.push({
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resolve, reject,
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payload: { method, params, id, jsonrpc: "2.0" }
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});
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});
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// If there is not a pending drainTimer, set one
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this.#scheduleDrain();
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return <Promise<JsonRpcResult>>promise;
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}
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// Sub-classes MUST override this
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_send(payload: JsonRpcPayload | Array<JsonRpcPayload>): Promise<Array<JsonRpcResult | JsonRpcError>> {
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return throwError("sub-classes must override _send", "UNSUPPORTED_OPERATION", {
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operation: "jsonRpcApiProvider._send"
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});
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}
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async getSigner(address: number | string = 0): Promise<JsonRpcSigner> {
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const accountsPromise = this.send("eth_accounts", [ ]);
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// Account index
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if (typeof(address) === "number") {
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const accounts = <Array<string>>(await accountsPromise);
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if (address > accounts.length) { throw new Error("no such account"); }
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return new JsonRpcSigner(this, accounts[address]);
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}
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const [ network, accounts ] = await Promise.all([ this.getNetwork(), accountsPromise ]);
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// Account address
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address = network.formatter.address(address);
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for (const account of accounts) {
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if (network.formatter.address(account) === account) {
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return new JsonRpcSigner(this, account);
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}
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}
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throw new Error("invalid account");
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}
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// Sub-classes can override this; it detects the *actual* network we
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// are connected to
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async _detectNetwork(): Promise<Network> {
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// We have a static network (like INFURA)
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const network = this._getOption("staticNetwork");
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if (network) { return network; }
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return Network.from(getBigInt(await this._perform({ method: "chainId" })));
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}
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_getSubscriber(sub: Subscription): Subscriber {
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// Pending Filters aren't availble via polling
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if (sub.type === "pending") { return new FilterIdPendingSubscriber(this); }
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if (sub.type === "event") {
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return new FilterIdEventSubscriber(this, sub.filter);
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}
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// Orphaned Logs are handled automatically, by the filter, since
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// logs with removed are emitted by it
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if (sub.type === "orphan" && sub.filter.orphan === "drop-log") {
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return new UnmanagedSubscriber("orphan");
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}
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return super._getSubscriber(sub);
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}
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// Normalize a JSON-RPC transaction
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getRpcTransaction(tx: TransactionRequest): JsonRpcTransactionRequest {
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const result: JsonRpcTransactionRequest = {};
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// JSON-RPC now requires numeric values to be "quantity" values
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["chainId", "gasLimit", "gasPrice", "type", "maxFeePerGas", "maxPriorityFeePerGas", "nonce", "value"].forEach((key) => {
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if ((<any>tx)[key] == null) { return; }
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let dstKey = key;
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if (key === "gasLimit") { dstKey = "gas"; }
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(<any>result)[dstKey] = toQuantity(getBigInt((<any>tx)[key], `tx.${ key }`));
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});
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// Make sure addresses and data are lowercase
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["from", "to", "data"].forEach((key) => {
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if ((<any>tx)[key] == null) { return; }
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(<any>result)[key] = hexlify((<any>tx)[key]);
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});
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// Normalize the access list object
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if (tx.accessList) {
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result["accessList"] = accessListify(tx.accessList);
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}
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return result;
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}
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// Get the necessary paramters for making a JSON-RPC request
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getRpcRequest(req: PerformActionRequest): null | { method: string, args: Array<any> } {
|
|
switch (req.method) {
|
|
case "chainId":
|
|
return { method: "eth_chainId", args: [ ] };
|
|
|
|
case "getBlockNumber":
|
|
return { method: "eth_blockNumber", args: [ ] };
|
|
|
|
case "getGasPrice":
|
|
return { method: "eth_gasPrice", args: [] };
|
|
|
|
case "getBalance":
|
|
return {
|
|
method: "eth_getBalance",
|
|
args: [ getLowerCase(req.address), req.blockTag ]
|
|
};
|
|
|
|
case "getTransactionCount":
|
|
return {
|
|
method: "eth_getTransactionCount",
|
|
args: [ getLowerCase(req.address), req.blockTag ]
|
|
};
|
|
|
|
case "getCode":
|
|
return {
|
|
method: "eth_getCode",
|
|
args: [ getLowerCase(req.address), req.blockTag ]
|
|
};
|
|
|
|
case "getStorageAt":
|
|
return {
|
|
method: "eth_getStorageAt",
|
|
args: [
|
|
getLowerCase(req.address),
|
|
("0x" + req.position.toString(16)),
|
|
req.blockTag
|
|
]
|
|
};
|
|
|
|
case "broadcastTransaction":
|
|
return {
|
|
method: "eth_sendRawTransaction",
|
|
args: [ req.signedTransaction ]
|
|
};
|
|
|
|
case "getBlock":
|
|
if ("blockTag" in req) {
|
|
return {
|
|
method: "eth_getBlockByNumber",
|
|
args: [ req.blockTag, !!req.includeTransactions ]
|
|
};
|
|
} else if ("blockHash" in req) {
|
|
return {
|
|
method: "eth_getBlockByHash",
|
|
args: [ req.blockHash, !!req.includeTransactions ]
|
|
};
|
|
}
|
|
break;
|
|
|
|
case "getTransaction":
|
|
return {
|
|
method: "eth_getTransactionByHash",
|
|
args: [ req.hash ]
|
|
};
|
|
|
|
case "getTransactionReceipt":
|
|
return {
|
|
method: "eth_getTransactionReceipt",
|
|
args: [ req.hash ]
|
|
};
|
|
|
|
case "call":
|
|
return {
|
|
method: "eth_call",
|
|
args: [ this.getRpcTransaction(req.transaction), req.blockTag ]
|
|
};
|
|
|
|
case "estimateGas": {
|
|
return {
|
|
method: "eth_estimateGas",
|
|
args: [ this.getRpcTransaction(req.transaction) ]
|
|
};
|
|
}
|
|
|
|
case "getLogs":
|
|
if (req.filter && req.filter.address != null) {
|
|
if (Array.isArray(req.filter.address)) {
|
|
req.filter.address = req.filter.address.map(getLowerCase);
|
|
} else {
|
|
req.filter.address = getLowerCase(req.filter.address);
|
|
}
|
|
}
|
|
return { method: "eth_getLogs", args: [ req.filter ] };
|
|
}
|
|
|
|
return null;
|
|
}
|
|
|
|
getRpcError(payload: JsonRpcPayload, error: JsonRpcError): Error {
|
|
console.log("getRpcError", payload, error);
|
|
return new Error(`JSON-RPC badness; @TODO: ${ error }`);
|
|
/*
|
|
if (payload.method === "eth_call") {
|
|
const result = spelunkData(error);
|
|
if (result) {
|
|
// @TODO: Extract errorSignature, errorName, errorArgs, reason if
|
|
// it is Error(string) or Panic(uint25)
|
|
return logger.makeError("execution reverted during JSON-RPC call", "CALL_EXCEPTION", {
|
|
data: result.data,
|
|
transaction: args[0]
|
|
});
|
|
}
|
|
|
|
return logger.makeError("missing revert data during JSON-RPC call", "CALL_EXCEPTION", {
|
|
data: "0x", transaction: args[0], info: { error }
|
|
});
|
|
}
|
|
|
|
if (method === "eth_estimateGas") {
|
|
// @TODO: Spelunk, and adapt the above to allow missing data.
|
|
// Then throw an UNPREDICTABLE_GAS exception
|
|
}
|
|
|
|
const message = JSON.stringify(spelunkMessage(error));
|
|
|
|
if (message.match(/insufficient funds|base fee exceeds gas limit/)) {
|
|
return logger.makeError("insufficient funds for intrinsic transaction cost", "INSUFFICIENT_FUNDS", {
|
|
transaction: args[0]
|
|
});
|
|
}
|
|
|
|
if (message.match(/nonce/) && message.match(/too low/)) {
|
|
return logger.makeError("nonce has already been used", "NONCE_EXPIRED", {
|
|
transaction: args[0]
|
|
});
|
|
}
|
|
|
|
// "replacement transaction underpriced"
|
|
if (message.match(/replacement transaction/) && message.match(/underpriced/)) {
|
|
return logger.makeError("replacement fee too low", "REPLACEMENT_UNDERPRICED", {
|
|
transaction: args[0]
|
|
});
|
|
}
|
|
|
|
if (message.match(/only replay-protected/)) {
|
|
return logger.makeError("legacy pre-eip-155 transactions not supported", "UNSUPPORTED_OPERATION", {
|
|
operation: method, info: { transaction: args[0] }
|
|
});
|
|
}
|
|
|
|
if (method === "estimateGas" && message.match(/gas required exceeds allowance|always failing transaction|execution reverted/)) {
|
|
return logger.makeError("cannot estimate gas; transaction may fail or may require manual gas limit", "UNPREDICTABLE_GAS_LIMIT", {
|
|
transaction: args[0]
|
|
});
|
|
}
|
|
|
|
return error;
|
|
*/
|
|
}
|
|
|
|
async _perform(req: PerformActionRequest): Promise<any> {
|
|
// Legacy networks do not like the type field being passed along (which
|
|
// is fair), so we delete type if it is 0 and a non-EIP-1559 network
|
|
if (req.method === "call" || req.method === "estimateGas") {
|
|
let tx = req.transaction;
|
|
if (tx && tx.type != null && getBigInt(tx.type)) {
|
|
// If there are no EIP-1559 properties, it might be non-EIP-a559
|
|
if (tx.maxFeePerGas == null && tx.maxPriorityFeePerGas == null) {
|
|
const feeData = await this.getFeeData();
|
|
if (feeData.maxFeePerGas == null && feeData.maxPriorityFeePerGas == null) {
|
|
// Network doesn't know about EIP-1559 (and hence type)
|
|
req = Object.assign({ }, req, {
|
|
transaction: Object.assign({ }, tx, { type: undefined })
|
|
});
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
const request = this.getRpcRequest(req);
|
|
|
|
if (request != null) {
|
|
return await this.send(request.method, request.args);
|
|
|
|
/*
|
|
@TODO: Add debug output to send
|
|
this.emit("debug", { type: "sendRequest", request });
|
|
try {
|
|
const result =
|
|
//console.log("RR", result);
|
|
this.emit("debug", { type: "getResponse", result });
|
|
return result;
|
|
} catch (error) {
|
|
this.emit("debug", { type: "getError", error });
|
|
throw error;
|
|
//throw this.getRpcError(request.method, request.args, <Error>error);
|
|
}
|
|
*/
|
|
}
|
|
|
|
return super._perform(req);
|
|
}
|
|
}
|
|
|
|
export class JsonRpcProvider extends JsonRpcApiProvider {
|
|
#connect: FetchRequest;
|
|
|
|
#pollingInterval: number;
|
|
|
|
constructor(url?: string | FetchRequest, network?: Networkish, options?: JsonRpcOptions) {
|
|
if (url == null) { url = "http:/\/localhost:8545"; }
|
|
super(network, options);
|
|
|
|
if (typeof(url) === "string") {
|
|
this.#connect = new FetchRequest(url);
|
|
} else {
|
|
this.#connect = url.clone();
|
|
}
|
|
|
|
this.#pollingInterval = 4000;
|
|
}
|
|
|
|
async _send(payload: JsonRpcPayload | Array<JsonRpcPayload>): Promise<Array<JsonRpcResult>> {
|
|
// Configure a POST connection for the requested method
|
|
const request = this.#connect.clone();
|
|
request.body = JSON.stringify(payload);
|
|
|
|
const response = await request.send();
|
|
response.assertOk();
|
|
|
|
let resp = response.bodyJson;
|
|
if (!Array.isArray(resp)) { resp = [ resp ]; }
|
|
|
|
return resp;
|
|
}
|
|
|
|
get pollingInterval(): number { return this.#pollingInterval; }
|
|
set pollingInterval(value: number) {
|
|
if (!Number.isInteger(value) || value < 0) { throw new Error("invalid interval"); }
|
|
this.#pollingInterval = value;
|
|
this._forEachSubscriber((sub) => {
|
|
if (isPollable(sub)) {
|
|
sub.pollingInterval = this.#pollingInterval;
|
|
}
|
|
});
|
|
}
|
|
}
|
|
|
|
// This class should only be used when it is not possible for the
|
|
// underlying network to change, such as with INFURA. If you are
|
|
// using MetaMask or some other client which allows users to change
|
|
// their network DO NOT USE THIS. Bad things will happen.
|
|
/*
|
|
export class StaticJsonRpcProvider extends JsonRpcProvider {
|
|
readonly network!: Network;
|
|
|
|
constructor(url: string | ConnectionInfo, network?: Network, options?: JsonRpcOptions) {
|
|
super(url, network, options);
|
|
defineProperties<StaticJsonRpcProvider>(this, { network });
|
|
}
|
|
|
|
async _detectNetwork(): Promise<Network> {
|
|
return this.network;
|
|
}
|
|
}
|
|
*/
|
|
/*
|
|
function spelunkData(value: any): null | { message: string, data: string } {
|
|
if (value == null) { return null; }
|
|
|
|
// These *are* the droids we're looking for.
|
|
if (typeof(value.message) === "string" && value.message.match("reverted") && isHexString(value.data)) {
|
|
return { message: value.message, data: value.data };
|
|
}
|
|
|
|
// Spelunk further...
|
|
if (typeof(value) === "object") {
|
|
for (const key in value) {
|
|
const result = spelunkData(value[key]);
|
|
if (result) { return result; }
|
|
}
|
|
return null;
|
|
}
|
|
|
|
// Might be a JSON string we can further descend...
|
|
if (typeof(value) === "string") {
|
|
try {
|
|
return spelunkData(JSON.parse(value));
|
|
} catch (error) { }
|
|
}
|
|
|
|
return null;
|
|
}
|
|
|
|
function _spelunkMessage(value: any, result: Array<string>): void {
|
|
if (value == null) { return; }
|
|
|
|
// These *are* the droids we're looking for.
|
|
if (typeof(value.message) === "string") {
|
|
result.push(value.message);
|
|
}
|
|
|
|
// Spelunk further...
|
|
if (typeof(value) === "object") {
|
|
for (const key in value) {
|
|
_spelunkMessage(value[key], result);
|
|
}
|
|
}
|
|
|
|
// Might be a JSON string we can further descend...
|
|
if (typeof(value) === "string") {
|
|
try {
|
|
return _spelunkMessage(JSON.parse(value), result);
|
|
} catch (error) { }
|
|
}
|
|
}
|
|
|
|
function spelunkMessage(value: any): Array<string> {
|
|
const result: Array<string> = [ ];
|
|
_spelunkMessage(value, result);
|
|
return result;
|
|
}
|
|
*/
|