mirror of
https://github.com/bigchaindb/js-bigchaindb-driver.git
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261 lines
11 KiB
JavaScript
261 lines
11 KiB
JavaScript
import { Buffer } from 'buffer'
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import stableStringify from 'json-stable-stringify'
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import clone from 'clone'
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import base58 from 'bs58'
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import cc from 'crypto-conditions'
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import ccJsonify from './utils/ccJsonify'
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import sha256Hash from './sha256Hash'
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export default class Transaction {
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/**
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* @public
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* Canonically serializes a transaction into a string by sorting the keys
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* @param {object} (transaction)
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* @return {string} a canonically serialized Transaction
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*/
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static serializeTransactionIntoCanonicalString(transaction) {
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// BigchainDB signs fulfillments by serializing transactions into a
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// "canonical" format where
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const tx = clone(transaction)
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// TODO: set fulfillments to null
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// Sort the keys
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return stableStringify(tx, (a, b) => (a.key > b.key ? 1 : -1))
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}
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static makeInputTemplate(publicKeys = [], fulfills = null, fulfillment = null) {
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return {
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fulfillment,
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fulfills,
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'owners_before': publicKeys,
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}
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}
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static hashTransaction(transaction) {
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// Safely remove any tx id from the given transaction for hashing
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const tx = { ...transaction }
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delete tx.id
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return sha256Hash(Transaction.serializeTransactionIntoCanonicalString(tx))
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}
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static makeTransactionTemplate() {
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const txTemplate = {
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'id': null,
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'operation': null,
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'outputs': [],
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'inputs': [],
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'metadata': null,
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'asset': null,
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'version': '1.0',
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}
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return txTemplate
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}
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static makeTransaction(operation, asset, metadata = null, outputs = [], inputs = []) {
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const tx = Transaction.makeTransactionTemplate()
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tx.operation = operation
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tx.asset = asset
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tx.metadata = metadata
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tx.inputs = inputs
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tx.outputs = outputs
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tx.id = Transaction.hashTransaction(tx)
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return tx
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}
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/**
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* @public
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* Generate a `CREATE` transaction holding the `asset`, `metadata`, and `outputs`, to be signed by
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* the `issuers`.
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* @param {object} asset Created asset's data
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* @param {object} metadata Metadata for the Transaction
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* @param {object[]} outputs Array of Output objects to add to the Transaction.
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* Think of these as the recipients of the asset after the transaction.
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* For `CREATE` Transactions, this should usually just be a list of
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* Outputs wrapping Ed25519 Conditions generated from the issuers' public
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* keys (so that the issuers are the recipients of the created asset).
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* @param {...string[]} issuers Public key of one or more issuers to the asset being created by this
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* Transaction.
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* Note: Each of the private keys corresponding to the given public
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* keys MUST be used later (and in the same order) when signing the
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* Transaction (`signTransaction()`).
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* @returns {object} Unsigned transaction -- make sure to call signTransaction() on it before
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* sending it off!
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*/
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static makeCreateTransaction(asset, metadata, outputs, ...issuers) {
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const assetDefinition = {
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'data': asset || null,
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}
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const inputs = issuers.map((issuer) => Transaction.makeInputTemplate([issuer]))
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return Transaction.makeTransaction('CREATE', assetDefinition, metadata, outputs, inputs)
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}
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/**
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* @public
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* Create an Ed25519 Cryptocondition from an Ed25519 public key
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* to put into an Output of a Transaction
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* @param {string} publicKey base58 encoded Ed25519 public key for the recipient of the Transaction
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* @param {boolean} [json=true] If true returns a json object otherwise a crypto-condition type
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* @returns {object} Ed25519 Condition (that will need to wrapped in an Output)
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*/
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static makeEd25519Condition(publicKey, json = true) {
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const publicKeyBuffer = Buffer.from(base58.decode(publicKey))
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const ed25519Fulfillment = new cc.Ed25519Sha256()
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ed25519Fulfillment.setPublicKey(publicKeyBuffer)
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if (json) {
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return ccJsonify(ed25519Fulfillment)
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}
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return ed25519Fulfillment
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}
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/**
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* @public
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* Create an Output from a Condition.
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* Note: Assumes the given Condition was generated from a
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* single public key (e.g. a Ed25519 Condition)
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* @param {object} condition Condition (e.g. a Ed25519 Condition from `makeEd25519Condition()`)
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* @param {string} amount Amount of the output
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* @returns {object} An Output usable in a Transaction
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*/
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static makeOutput(condition, amount = '1') {
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if (typeof amount !== 'string') {
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throw new TypeError('`amount` must be of type string')
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}
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const publicKeys = []
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const getPublicKeys = details => {
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if (details.type === 'ed25519-sha-256') {
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if (!publicKeys.includes(details.public_key)) {
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publicKeys.push(details.public_key)
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}
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} else if (details.type === 'threshold-sha-256') {
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details.subconditions.map(getPublicKeys)
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}
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}
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getPublicKeys(condition.details)
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return {
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condition,
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'amount': amount,
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'public_keys': publicKeys,
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}
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}
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/**
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* @public
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* Create a Preimage-Sha256 Cryptocondition from a secret to put into an Output of a Transaction
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* @param {string} preimage Preimage to be hashed and wrapped in a crypto-condition
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* @param {boolean} [json=true] If true returns a json object otherwise a crypto-condition type
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* @returns {object} Preimage-Sha256 Condition (that will need to wrapped in an Output)
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*/
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static makeSha256Condition(preimage, json = true) {
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const sha256Fulfillment = new cc.PreimageSha256()
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sha256Fulfillment.preimage = Buffer.from(preimage)
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if (json) {
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return ccJsonify(sha256Fulfillment)
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}
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return sha256Fulfillment
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}
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/**
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* @public
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* Create an Sha256 Threshold Cryptocondition from threshold to put into an Output of a Transaction
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* @param {number} threshold
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* @param {Array} [subconditions=[]]
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* @param {boolean} [json=true] If true returns a json object otherwise a crypto-condition type
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* @returns {object} Sha256 Threshold Condition (that will need to wrapped in an Output)
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*/
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static makeThresholdCondition(threshold, subconditions = [], json = true) {
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const thresholdCondition = new cc.ThresholdSha256()
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thresholdCondition.threshold = threshold
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subconditions.forEach((subcondition) => {
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// TODO: add support for Condition and URIs
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thresholdCondition.addSubfulfillment(subcondition)
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})
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if (json) {
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return ccJsonify(thresholdCondition)
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}
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return thresholdCondition
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}
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/**
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* @public
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* Generate a `TRANSFER` transaction holding the `asset`, `metadata`, and `outputs`, that fulfills
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* the `fulfilledOutputs` of `unspentTransaction`.
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* @param {object} unspentTransaction Previous Transaction you have control over (i.e. can fulfill
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* its Output Condition)
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* @param {object} metadata Metadata for the Transaction
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* @param {object[]} outputs Array of Output objects to add to the Transaction.
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* Think of these as the recipients of the asset after the transaction.
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* For `TRANSFER` Transactions, this should usually just be a list of
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* Outputs wrapping Ed25519 Conditions generated from the public keys of
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* the recipients.
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* @param {...number} OutputIndices Indices of the Outputs in `unspentTransaction` that this
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* Transaction fulfills.
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* Note that listed public keys listed must be used (and in
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* the same order) to sign the Transaction
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* (`signTransaction()`).
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* @returns {object} Unsigned transaction -- make sure to call signTransaction() on it before
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* sending it off!
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*/
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// TODO:
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// - Make `metadata` optional argument
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static makeTransferTransaction(
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unspentOutputs,
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outputs,
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metadata
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) {
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const inputs = unspentOutputs.map((unspentOutput) => {
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const { tx, outputIndex } = { tx: unspentOutput.tx, outputIndex: unspentOutput.output_index }
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const fulfilledOutput = tx.outputs[outputIndex]
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const transactionLink = {
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'output_index': outputIndex,
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'transaction_id': tx.id,
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}
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return Transaction.makeInputTemplate(fulfilledOutput.public_keys, transactionLink)
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})
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const assetLink = {
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'id': unspentOutputs[0].tx.operation === 'CREATE' ? unspentOutputs[0].tx.id
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: unspentOutputs[0].tx.asset.id
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}
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return Transaction.makeTransaction('TRANSFER', assetLink, metadata, outputs, inputs)
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}
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/**
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* @public
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* Sign the given `transaction` with the given `privateKey`s, returning a new copy of `transaction`
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* that's been signed.
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* Note: Only generates Ed25519 Fulfillments. Thresholds and other types of Fulfillments are left as
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* an exercise for the user.
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* @param {object} transaction Transaction to sign. `transaction` is not modified.
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* @param {...string} privateKeys Private keys associated with the issuers of the `transaction`.
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* Looped through to iteratively sign any Input Fulfillments found in
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* the `transaction`.
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* @returns {object} The signed version of `transaction`.
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*/
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static signTransaction(transaction, ...privateKeys) {
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const signedTx = clone(transaction)
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signedTx.inputs.forEach((input, index) => {
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const privateKey = privateKeys[index]
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const privateKeyBuffer = Buffer.from(base58.decode(privateKey))
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const serializedTransaction = Transaction
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.serializeTransactionIntoCanonicalString(transaction)
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const ed25519Fulfillment = new cc.Ed25519Sha256()
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ed25519Fulfillment.sign(Buffer.from(serializedTransaction), privateKeyBuffer)
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const fulfillmentUri = ed25519Fulfillment.serializeUri()
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input.fulfillment = fulfillmentUri
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})
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return signedTx
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}
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}
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