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336 lines
8.1 KiB
336 lines
8.1 KiB
var assert = require('assert')
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var bufferutils = require('./bufferutils')
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var crypto = require('./crypto')
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var typeForce = require('typeforce')
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var opcodes = require('./opcodes')
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var Script = require('./script')
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function Transaction () {
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this.version = 1
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this.locktime = 0
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this.ins = []
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this.outs = []
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}
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Transaction.DEFAULT_SEQUENCE = 0xffffffff
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Transaction.SIGHASH_ALL = 0x01
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Transaction.SIGHASH_NONE = 0x02
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Transaction.SIGHASH_SINGLE = 0x03
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Transaction.SIGHASH_ANYONECANPAY = 0x80
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Transaction.fromBuffer = function (buffer, __disableAssert) {
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var offset = 0
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function readSlice (n) {
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offset += n
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return buffer.slice(offset - n, offset)
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}
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function readUInt32 () {
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var i = buffer.readUInt32LE(offset)
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offset += 4
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return i
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}
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function readUInt64 () {
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var i = bufferutils.readUInt64LE(buffer, offset)
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offset += 8
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return i
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}
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function readVarInt () {
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var vi = bufferutils.readVarInt(buffer, offset)
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offset += vi.size
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return vi.number
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}
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function readScript () {
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return Script.fromBuffer(readSlice(readVarInt()))
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}
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function readGenerationScript () {
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return new Script(readSlice(readVarInt()), [])
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}
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var tx = new Transaction()
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tx.version = readUInt32()
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var vinLen = readVarInt()
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for (var i = 0; i < vinLen; ++i) {
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var hash = readSlice(32)
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if (Transaction.isCoinbaseHash(hash)) {
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tx.ins.push({
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hash: hash,
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index: readUInt32(),
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script: readGenerationScript(),
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sequence: readUInt32()
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})
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} else {
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tx.ins.push({
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hash: hash,
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index: readUInt32(),
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script: readScript(),
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sequence: readUInt32()
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})
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}
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}
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var voutLen = readVarInt()
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for (i = 0; i < voutLen; ++i) {
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tx.outs.push({
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value: readUInt64(),
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script: readScript()
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})
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}
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tx.locktime = readUInt32()
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if (!__disableAssert) {
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assert.equal(offset, buffer.length, 'Transaction has unexpected data')
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}
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return tx
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}
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Transaction.fromHex = function (hex) {
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return Transaction.fromBuffer(new Buffer(hex, 'hex'))
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}
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Transaction.isCoinbaseHash = function (buffer) {
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return Array.prototype.every.call(buffer, function (x) {
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return x === 0
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})
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}
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Transaction.prototype.addInput = function (hash, index, sequence, script) {
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if (sequence === undefined || sequence === null) {
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sequence = Transaction.DEFAULT_SEQUENCE
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}
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script = script || Script.EMPTY
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typeForce('Buffer', hash)
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typeForce('Number', index)
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typeForce('Number', sequence)
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typeForce('Script', script)
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assert.equal(hash.length, 32, 'Expected hash length of 32, got ' + hash.length)
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// Add the input and return the input's index
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return (this.ins.push({
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hash: hash,
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index: index,
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script: script,
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sequence: sequence
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}) - 1)
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}
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Transaction.prototype.addOutput = function (scriptPubKey, value) {
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typeForce('Script', scriptPubKey)
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typeForce('Number', value)
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// Add the output and return the output's index
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return (this.outs.push({
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script: scriptPubKey,
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value: value
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}) - 1)
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}
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Transaction.prototype.byteLength = function () {
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function scriptSize (script) {
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var length = script.buffer.length
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return bufferutils.varIntSize(length) + length
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}
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return (
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8 +
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bufferutils.varIntSize(this.ins.length) +
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bufferutils.varIntSize(this.outs.length) +
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this.ins.reduce(function (sum, input) { return sum + 40 + scriptSize(input.script) }, 0) +
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this.outs.reduce(function (sum, output) { return sum + 8 + scriptSize(output.script) }, 0)
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)
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}
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Transaction.prototype.clone = function () {
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var newTx = new Transaction()
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newTx.version = this.version
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newTx.locktime = this.locktime
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newTx.ins = this.ins.map(function (txIn) {
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return {
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hash: txIn.hash,
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index: txIn.index,
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script: txIn.script,
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sequence: txIn.sequence
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}
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})
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newTx.outs = this.outs.map(function (txOut) {
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return {
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script: txOut.script,
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value: txOut.value
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}
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})
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return newTx
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}
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var one = new Buffer('0000000000000000000000000000000000000000000000000000000000000001', 'hex')
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/**
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* Hash transaction for signing a specific input.
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*
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* Bitcoin uses a different hash for each signed transaction input.
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* This method copies the transaction, makes the necessary changes based on the
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* hashType, and then hashes the result.
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* This hash can then be used to sign the provided transaction input.
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*/
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Transaction.prototype.hashForSignature = function (inIndex, prevOutScript, hashType) {
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typeForce('Number', inIndex)
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typeForce('Script', prevOutScript)
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typeForce('Number', hashType)
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assert(inIndex >= 0, 'Invalid vin index')
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// https://github.com/bitcoin/bitcoin/blob/master/src/test/sighash_tests.cpp#L29
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if (inIndex >= this.ins.length) return one
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var txTmp = this.clone()
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// in case concatenating two scripts ends up with two codeseparators,
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// or an extra one at the end, this prevents all those possible incompatibilities.
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var hashScript = prevOutScript.without(opcodes.OP_CODESEPARATOR)
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var i
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// blank out other inputs' signatures
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txTmp.ins.forEach(function (input) { input.script = Script.EMPTY })
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txTmp.ins[inIndex].script = hashScript
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// blank out some of the inputs
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if ((hashType & 0x1f) === Transaction.SIGHASH_NONE) {
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// wildcard payee
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txTmp.outs = []
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// let the others update at will
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txTmp.ins.forEach(function (input, i) {
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if (i !== inIndex) {
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input.sequence = 0
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}
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})
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} else if ((hashType & 0x1f) === Transaction.SIGHASH_SINGLE) {
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var nOut = inIndex
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// only lock-in the txOut payee at same index as txIn
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// https://github.com/bitcoin/bitcoin/blob/master/src/test/sighash_tests.cpp#L60
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if (nOut >= this.outs.length) return one
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txTmp.outs = txTmp.outs.slice(0, nOut + 1)
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// blank all other outputs (clear scriptPubKey, value === -1)
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var stubOut = {
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script: Script.EMPTY,
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valueBuffer: new Buffer('ffffffffffffffff', 'hex')
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}
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for (i = 0; i < nOut; i++) {
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txTmp.outs[i] = stubOut
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}
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// let the others update at will
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txTmp.ins.forEach(function (input, i) {
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if (i !== inIndex) {
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input.sequence = 0
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}
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})
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}
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// blank out other inputs completely, not recommended for open transactions
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if (hashType & Transaction.SIGHASH_ANYONECANPAY) {
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txTmp.ins[0] = txTmp.ins[inIndex]
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txTmp.ins = txTmp.ins.slice(0, 1)
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}
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// serialize and hash
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var buffer = new Buffer(txTmp.byteLength() + 4)
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buffer.writeInt32LE(hashType, buffer.length - 4)
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txTmp.toBuffer().copy(buffer, 0)
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return crypto.hash256(buffer)
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}
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Transaction.prototype.getHash = function () {
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return crypto.hash256(this.toBuffer())
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}
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Transaction.prototype.getId = function () {
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// TxHash is little-endian, we need big-endian
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return bufferutils.reverse(this.getHash()).toString('hex')
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}
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Transaction.prototype.toBuffer = function () {
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var buffer = new Buffer(this.byteLength())
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var offset = 0
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function writeSlice (slice) {
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slice.copy(buffer, offset)
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offset += slice.length
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}
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function writeUInt32 (i) {
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buffer.writeUInt32LE(i, offset)
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offset += 4
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}
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function writeUInt64 (i) {
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bufferutils.writeUInt64LE(buffer, i, offset)
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offset += 8
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}
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function writeVarInt (i) {
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var n = bufferutils.writeVarInt(buffer, i, offset)
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offset += n
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}
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writeUInt32(this.version)
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writeVarInt(this.ins.length)
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this.ins.forEach(function (txIn) {
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writeSlice(txIn.hash)
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writeUInt32(txIn.index)
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writeVarInt(txIn.script.buffer.length)
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writeSlice(txIn.script.buffer)
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writeUInt32(txIn.sequence)
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})
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writeVarInt(this.outs.length)
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this.outs.forEach(function (txOut) {
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if (!txOut.valueBuffer) {
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writeUInt64(txOut.value)
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} else {
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writeSlice(txOut.valueBuffer)
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}
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writeVarInt(txOut.script.buffer.length)
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writeSlice(txOut.script.buffer)
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})
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writeUInt32(this.locktime)
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return buffer
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}
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Transaction.prototype.toHex = function () {
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return this.toBuffer().toString('hex')
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}
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Transaction.prototype.setInputScript = function (index, script) {
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typeForce('Number', index)
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typeForce('Script', script)
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this.ins[index].script = script
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}
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module.exports = Transaction
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