116 lines
5.8 KiB
TypeScript
116 lines
5.8 KiB
TypeScript
/// <reference types="node" />
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import { Psbt as PsbtBase } from 'bip174';
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import { KeyValue, PsbtGlobalUpdate, PsbtInputUpdate, PsbtOutputUpdate, TransactionInput, TransactionOutput } from 'bip174/src/lib/interfaces';
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import { Signer, SignerAsync } from './ecpair';
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import { Network } from './networks';
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import { Transaction } from './transaction';
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/**
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* Psbt class can parse and generate a PSBT binary based off of the BIP174.
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* There are 6 roles that this class fulfills. (Explained in BIP174)
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*
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* Creator: This can be done with `new Psbt()`
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* Updater: This can be done with `psbt.addInput(input)`, `psbt.addInputs(inputs)`,
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* `psbt.addOutput(output)`, `psbt.addOutputs(outputs)` when you are looking to
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* add new inputs and outputs to the PSBT, and `psbt.updateGlobal(itemObject)`,
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* `psbt.updateInput(itemObject)`, `psbt.updateOutput(itemObject)`
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* addInput requires hash: Buffer | string; and index: number; as attributes
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* and can also include any attributes that are used in updateInput method.
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* addOutput requires script: Buffer; and value: number; and likewise can include
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* data for updateOutput.
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* For a list of what attributes should be what types. Check the bip174 library.
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* Also, check the integration tests for some examples of usage.
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* Signer: There are a few methods. signAllInputs and signAllInputsAsync, which will search all input
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* information for your pubkey or pubkeyhash, and only sign inputs where it finds
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* your info. Or you can explicitly sign a specific input with signInput and
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* signInputAsync. For the async methods you can create a SignerAsync object
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* and use something like a hardware wallet to sign with. (You must implement this)
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* Combiner: psbts can be combined easily with `psbt.combine(psbt2, psbt3, psbt4 ...)`
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* the psbt calling combine will always have precedence when a conflict occurs.
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* Combine checks if the internal bitcoin transaction is the same, so be sure that
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* all sequences, version, locktime, etc. are the same before combining.
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* Input Finalizer: This role is fairly important. Not only does it need to construct
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* the input scriptSigs and witnesses, but it SHOULD verify the signatures etc.
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* Before running `psbt.finalizeAllInputs()` please run `psbt.validateSignaturesOfAllInputs()`
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* Running any finalize method will delete any data in the input(s) that are no longer
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* needed due to the finalized scripts containing the information.
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* Transaction Extractor: This role will perform some checks before returning a
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* Transaction object. Such as fee rate not being larger than maximumFeeRate etc.
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*/
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export declare class Psbt {
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readonly data: PsbtBase;
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static fromBase64(data: string, opts?: PsbtOptsOptional): Psbt;
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static fromHex(data: string, opts?: PsbtOptsOptional): Psbt;
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static fromBuffer(buffer: Buffer, opts?: PsbtOptsOptional): Psbt;
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private __CACHE;
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private opts;
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constructor(opts?: PsbtOptsOptional, data?: PsbtBase);
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readonly inputCount: number;
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combine(...those: Psbt[]): this;
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clone(): Psbt;
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setMaximumFeeRate(satoshiPerByte: number): void;
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setVersion(version: number): this;
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setLocktime(locktime: number): this;
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setInputSequence(inputIndex: number, sequence: number): this;
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addInputs(inputDatas: TransactionInput[]): this;
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addInput(inputData: TransactionInput): this;
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addOutputs(outputDatas: TransactionOutput[]): this;
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addOutput(outputData: TransactionOutput): this;
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extractTransaction(disableFeeCheck?: boolean): Transaction;
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getFeeRate(): number;
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finalizeAllInputs(): this;
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finalizeInput(inputIndex: number): this;
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validateSignaturesOfAllInputs(): boolean;
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validateSignaturesOfInput(inputIndex: number, pubkey?: Buffer): boolean;
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signAllInputsHD(hdKeyPair: HDSigner, sighashTypes?: number[]): this;
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signAllInputsHDAsync(hdKeyPair: HDSigner | HDSignerAsync, sighashTypes?: number[]): Promise<void>;
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signInputHD(inputIndex: number, hdKeyPair: HDSigner, sighashTypes?: number[]): this;
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signInputHDAsync(inputIndex: number, hdKeyPair: HDSigner | HDSignerAsync, sighashTypes?: number[]): Promise<void>;
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signAllInputs(keyPair: Signer, sighashTypes?: number[]): this;
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signAllInputsAsync(keyPair: Signer | SignerAsync, sighashTypes?: number[]): Promise<void>;
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signInput(inputIndex: number, keyPair: Signer, sighashTypes?: number[]): this;
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signInputAsync(inputIndex: number, keyPair: Signer | SignerAsync, sighashTypes?: number[]): Promise<void>;
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toBuffer(): Buffer;
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toHex(): string;
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toBase64(): string;
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updateGlobal(updateData: PsbtGlobalUpdate): this;
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updateInput(inputIndex: number, updateData: PsbtInputUpdate): this;
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updateOutput(outputIndex: number, updateData: PsbtOutputUpdate): this;
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addUnknownKeyValToGlobal(keyVal: KeyValue): this;
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addUnknownKeyValToInput(inputIndex: number, keyVal: KeyValue): this;
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addUnknownKeyValToOutput(outputIndex: number, keyVal: KeyValue): this;
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clearFinalizedInput(inputIndex: number): this;
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}
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interface PsbtOptsOptional {
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network?: Network;
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maximumFeeRate?: number;
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}
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interface HDSignerBase {
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/**
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* DER format compressed publicKey buffer
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*/
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publicKey: Buffer;
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/**
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* The first 4 bytes of the sha256-ripemd160 of the publicKey
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*/
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fingerprint: Buffer;
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}
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interface HDSigner extends HDSignerBase {
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/**
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* The path string must match /^m(\/\d+'?)+$/
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* ex. m/44'/0'/0'/1/23 levels with ' must be hard derivations
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*/
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derivePath(path: string): HDSigner;
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/**
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* Input hash (the "message digest") for the signature algorithm
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* Return a 64 byte signature (32 byte r and 32 byte s in that order)
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*/
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sign(hash: Buffer): Buffer;
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}
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/**
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* Same as above but with async sign method
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*/
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interface HDSignerAsync extends HDSignerBase {
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derivePath(path: string): HDSignerAsync;
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sign(hash: Buffer): Promise<Buffer>;
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}
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export {};
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