377 lines
14 KiB
TypeScript
377 lines
14 KiB
TypeScript
"use strict";
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import { BlockTag, FeeData, Provider, TransactionRequest, TransactionResponse } from "@ethersproject/abstract-provider";
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import { BigNumber, BigNumberish } from "@ethersproject/bignumber";
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import { Bytes, BytesLike } from "@ethersproject/bytes";
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import { Deferrable, defineReadOnly, resolveProperties, shallowCopy } from "@ethersproject/properties";
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import { Logger } from "@ethersproject/logger";
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import { version } from "./_version";
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const logger = new Logger(version);
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const allowedTransactionKeys: Array<string> = [
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"accessList", "ccipReadEnabled", "chainId", "customData", "data", "from", "gasLimit", "gasPrice", "maxFeePerGas", "maxPriorityFeePerGas", "nonce", "to", "type", "value"
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];
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const forwardErrors = [
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Logger.errors.INSUFFICIENT_FUNDS,
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Logger.errors.NONCE_EXPIRED,
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Logger.errors.REPLACEMENT_UNDERPRICED,
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];
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// EIP-712 Typed Data
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// See: https://eips.ethereum.org/EIPS/eip-712
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export interface TypedDataDomain {
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name?: string;
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version?: string;
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chainId?: BigNumberish;
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verifyingContract?: string;
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salt?: BytesLike;
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};
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export interface TypedDataField {
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name: string;
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type: string;
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};
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// Sub-classes of Signer may optionally extend this interface to indicate
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// they have a private key available synchronously
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export interface ExternallyOwnedAccount {
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readonly address: string;
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readonly privateKey: string;
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}
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// Sub-Class Notes:
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// - A Signer MUST always make sure, that if present, the "from" field
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// matches the Signer, before sending or signing a transaction
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// - A Signer SHOULD always wrap private information (such as a private
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// key or mnemonic) in a function, so that console.log does not leak
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// the data
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// @TODO: This is a temporary measure to preserve backwards compatibility
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// In v6, the method on TypedDataSigner will be added to Signer
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export interface TypedDataSigner {
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_signTypedData(domain: TypedDataDomain, types: Record<string, Array<TypedDataField>>, value: Record<string, any>): Promise<string>;
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}
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export abstract class Signer {
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readonly provider?: Provider;
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///////////////////
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// Sub-classes MUST implement these
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// Returns the checksum address
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abstract getAddress(): Promise<string>
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// Returns the signed prefixed-message. This MUST treat:
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// - Bytes as a binary message
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// - string as a UTF8-message
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// i.e. "0x1234" is a SIX (6) byte string, NOT 2 bytes of data
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abstract signMessage(message: Bytes | string): Promise<string>;
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// Signs a transaction and returns the fully serialized, signed transaction.
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// The EXACT transaction MUST be signed, and NO additional properties to be added.
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// - This MAY throw if signing transactions is not supports, but if
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// it does, sentTransaction MUST be overridden.
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abstract signTransaction(transaction: Deferrable<TransactionRequest>): Promise<string>;
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// Returns a new instance of the Signer, connected to provider.
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// This MAY throw if changing providers is not supported.
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abstract connect(provider: Provider): Signer;
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readonly _isSigner: boolean;
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///////////////////
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// Sub-classes MUST call super
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constructor() {
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logger.checkAbstract(new.target, Signer);
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defineReadOnly(this, "_isSigner", true);
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}
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///////////////////
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// Sub-classes MAY override these
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async getBalance(blockTag?: BlockTag): Promise<BigNumber> {
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this._checkProvider("getBalance");
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return await this.provider.getBalance(this.getAddress(), blockTag);
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}
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async getTransactionCount(blockTag?: BlockTag): Promise<number> {
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this._checkProvider("getTransactionCount");
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return await this.provider.getTransactionCount(this.getAddress(), blockTag);
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}
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// Populates "from" if unspecified, and estimates the gas for the transaction
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async estimateGas(transaction: Deferrable<TransactionRequest>): Promise<BigNumber> {
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this._checkProvider("estimateGas");
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const tx = await resolveProperties(this.checkTransaction(transaction));
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return await this.provider.estimateGas(tx);
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}
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// Populates "from" if unspecified, and calls with the transaction
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async call(transaction: Deferrable<TransactionRequest>, blockTag?: BlockTag): Promise<string> {
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this._checkProvider("call");
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const tx = await resolveProperties(this.checkTransaction(transaction));
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return await this.provider.call(tx, blockTag);
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}
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// Populates all fields in a transaction, signs it and sends it to the network
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async sendTransaction(transaction: Deferrable<TransactionRequest>): Promise<TransactionResponse> {
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this._checkProvider("sendTransaction");
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const tx = await this.populateTransaction(transaction);
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const signedTx = await this.signTransaction(tx);
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return await this.provider.sendTransaction(signedTx);
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}
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async getChainId(): Promise<number> {
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this._checkProvider("getChainId");
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const network = await this.provider.getNetwork();
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return network.chainId;
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}
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async getGasPrice(): Promise<BigNumber> {
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this._checkProvider("getGasPrice");
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return await this.provider.getGasPrice();
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}
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async getFeeData(): Promise<FeeData> {
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this._checkProvider("getFeeData");
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return await this.provider.getFeeData();
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}
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async resolveName(name: string): Promise<string> {
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this._checkProvider("resolveName");
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return await this.provider.resolveName(name);
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}
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// Checks a transaction does not contain invalid keys and if
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// no "from" is provided, populates it.
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// - does NOT require a provider
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// - adds "from" is not present
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// - returns a COPY (safe to mutate the result)
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// By default called from: (overriding these prevents it)
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// - call
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// - estimateGas
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// - populateTransaction (and therefor sendTransaction)
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checkTransaction(transaction: Deferrable<TransactionRequest>): Deferrable<TransactionRequest> {
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for (const key in transaction) {
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if (allowedTransactionKeys.indexOf(key) === -1) {
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logger.throwArgumentError("invalid transaction key: " + key, "transaction", transaction);
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}
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}
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const tx = shallowCopy(transaction);
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if (tx.from == null) {
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tx.from = this.getAddress();
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} else {
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// Make sure any provided address matches this signer
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tx.from = Promise.all([
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Promise.resolve(tx.from),
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this.getAddress()
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]).then((result) => {
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if (result[0].toLowerCase() !== result[1].toLowerCase()) {
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logger.throwArgumentError("from address mismatch", "transaction", transaction);
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}
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return result[0];
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});
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}
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return tx;
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}
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// Populates ALL keys for a transaction and checks that "from" matches
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// this Signer. Should be used by sendTransaction but NOT by signTransaction.
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// By default called from: (overriding these prevents it)
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// - sendTransaction
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//
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// Notes:
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// - We allow gasPrice for EIP-1559 as long as it matches maxFeePerGas
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async populateTransaction(transaction: Deferrable<TransactionRequest>): Promise<TransactionRequest> {
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const tx: Deferrable<TransactionRequest> = await resolveProperties(this.checkTransaction(transaction))
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if (tx.to != null) {
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tx.to = Promise.resolve(tx.to).then(async (to) => {
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if (to == null) { return null; }
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const address = await this.resolveName(to);
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if (address == null) {
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logger.throwArgumentError("provided ENS name resolves to null", "tx.to", to);
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}
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return address;
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});
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// Prevent this error from causing an UnhandledPromiseException
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tx.to.catch((error) => { });
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}
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// Do not allow mixing pre-eip-1559 and eip-1559 properties
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const hasEip1559 = (tx.maxFeePerGas != null || tx.maxPriorityFeePerGas != null);
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if (tx.gasPrice != null && (tx.type === 2 || hasEip1559)) {
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logger.throwArgumentError("eip-1559 transaction do not support gasPrice", "transaction", transaction);
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} else if ((tx.type === 0 || tx.type === 1) && hasEip1559) {
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logger.throwArgumentError("pre-eip-1559 transaction do not support maxFeePerGas/maxPriorityFeePerGas", "transaction", transaction);
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}
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if ((tx.type === 2 || tx.type == null) && (tx.maxFeePerGas != null && tx.maxPriorityFeePerGas != null)) {
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// Fully-formed EIP-1559 transaction (skip getFeeData)
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tx.type = 2;
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} else if (tx.type === 0 || tx.type === 1) {
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// Explicit Legacy or EIP-2930 transaction
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// Populate missing gasPrice
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if (tx.gasPrice == null) { tx.gasPrice = this.getGasPrice(); }
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} else {
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// We need to get fee data to determine things
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const feeData = await this.getFeeData();
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if (tx.type == null) {
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// We need to auto-detect the intended type of this transaction...
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if (feeData.maxFeePerGas != null && feeData.maxPriorityFeePerGas != null) {
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// The network supports EIP-1559!
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// Upgrade transaction from null to eip-1559
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tx.type = 2;
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if (tx.gasPrice != null) {
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// Using legacy gasPrice property on an eip-1559 network,
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// so use gasPrice as both fee properties
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const gasPrice = tx.gasPrice;
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delete tx.gasPrice;
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tx.maxFeePerGas = gasPrice;
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tx.maxPriorityFeePerGas = gasPrice;
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} else {
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// Populate missing fee data
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if (tx.maxFeePerGas == null) { tx.maxFeePerGas = feeData.maxFeePerGas; }
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if (tx.maxPriorityFeePerGas == null) { tx.maxPriorityFeePerGas = feeData.maxPriorityFeePerGas; }
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}
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} else if (feeData.gasPrice != null) {
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// Network doesn't support EIP-1559...
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// ...but they are trying to use EIP-1559 properties
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if (hasEip1559) {
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logger.throwError("network does not support EIP-1559", Logger.errors.UNSUPPORTED_OPERATION, {
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operation: "populateTransaction"
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});
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}
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// Populate missing fee data
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if (tx.gasPrice == null) { tx.gasPrice = feeData.gasPrice; }
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// Explicitly set untyped transaction to legacy
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tx.type = 0;
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} else {
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// getFeeData has failed us.
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logger.throwError("failed to get consistent fee data", Logger.errors.UNSUPPORTED_OPERATION, {
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operation: "signer.getFeeData"
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});
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}
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} else if (tx.type === 2) {
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// Explicitly using EIP-1559
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// Populate missing fee data
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if (tx.maxFeePerGas == null) { tx.maxFeePerGas = feeData.maxFeePerGas; }
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if (tx.maxPriorityFeePerGas == null) { tx.maxPriorityFeePerGas = feeData.maxPriorityFeePerGas; }
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}
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}
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if (tx.nonce == null) { tx.nonce = this.getTransactionCount("pending"); }
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if (tx.gasLimit == null) {
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tx.gasLimit = this.estimateGas(tx).catch((error) => {
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if (forwardErrors.indexOf(error.code) >= 0) {
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throw error;
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}
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return logger.throwError("cannot estimate gas; transaction may fail or may require manual gas limit", Logger.errors.UNPREDICTABLE_GAS_LIMIT, {
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error: error,
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tx: tx
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});
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});
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}
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if (tx.chainId == null) {
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tx.chainId = this.getChainId();
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} else {
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tx.chainId = Promise.all([
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Promise.resolve(tx.chainId),
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this.getChainId()
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]).then((results) => {
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if (results[1] !== 0 && results[0] !== results[1]) {
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logger.throwArgumentError("chainId address mismatch", "transaction", transaction);
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}
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return results[0];
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});
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}
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return await resolveProperties(tx);
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}
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///////////////////
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// Sub-classes SHOULD leave these alone
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_checkProvider(operation?: string): void {
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if (!this.provider) { logger.throwError("missing provider", Logger.errors.UNSUPPORTED_OPERATION, {
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operation: (operation || "_checkProvider") });
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}
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}
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static isSigner(value: any): value is Signer {
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return !!(value && value._isSigner);
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}
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}
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export class VoidSigner extends Signer implements TypedDataSigner {
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readonly address: string;
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constructor(address: string, provider?: Provider) {
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logger.checkNew(new.target, VoidSigner);
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super();
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defineReadOnly(this, "address", address);
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defineReadOnly(this, "provider", provider || null);
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}
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getAddress(): Promise<string> {
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return Promise.resolve(this.address);
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}
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_fail(message: string, operation: string): Promise<any> {
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return Promise.resolve().then(() => {
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logger.throwError(message, Logger.errors.UNSUPPORTED_OPERATION, { operation: operation });
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});
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}
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signMessage(message: Bytes | string): Promise<string> {
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return this._fail("VoidSigner cannot sign messages", "signMessage");
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}
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signTransaction(transaction: Deferrable<TransactionRequest>): Promise<string> {
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return this._fail("VoidSigner cannot sign transactions", "signTransaction");
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}
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_signTypedData(domain: TypedDataDomain, types: Record<string, Array<TypedDataField>>, value: Record<string, any>): Promise<string> {
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return this._fail("VoidSigner cannot sign typed data", "signTypedData");
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}
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connect(provider: Provider): VoidSigner {
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return new VoidSigner(this.address, provider);
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}
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}
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