479 lines
18 KiB
JavaScript
479 lines
18 KiB
JavaScript
const algosdk = require('algosdk')
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const fs = require('fs')
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// eslint-disable-next-line camelcase
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const { sha512_256 } = require('js-sha512')
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const tools = require('../tools/app-tools')
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const approvalProgramFilename = 'teal/pricekeeper/pricekeeper.teal'
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const clearProgramFilename = 'teal/pricekeeper/clearstate.teal'
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const vaaProcessorApprovalProgramFilename = 'teal/wormhole/build/vaa-processor-approval.teal'
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const vaaProcessorClearProgramFilename = 'teal/wormhole/build/vaa-processor-clear.teal'
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const vaaVerifyStatelessProgramFilename = 'teal/wormhole/build/vaa-verify.teal'
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class PricecasterLib {
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constructor (algodClient, ownerAddr = undefined) {
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this.algodClient = algodClient
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this.ownerAddr = ownerAddr
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this.minFee = 1000
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/**
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* Set Application Id used in all the functions of this class.
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* @param {number} applicationId application id
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* @returns {void}
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*/
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this.setAppId = function (applicationId) {
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this.appId = applicationId
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}
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/**
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* Get minimum fee to pay for transactions.
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* @return {Number} minimum transaction fee
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*/
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this.minTransactionFee = function () {
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return this.minFee
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}
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/**
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* Internal function.
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* Read application local state related to the account.
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* @param {String} accountAddr account to retrieve local state
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* @return {Array} an array containing all the {key: value} pairs of the local state
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*/
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this.readLocalState = function (accountAddr) {
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return tools.readAppLocalState(this.algodClient, this.appId, accountAddr)
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}
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/**
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* Internal function.
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* Read application global state.
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* @return {Array} an array containing all the {key: value} pairs of the global state
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* @returns {void}
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*/
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this.readGlobalState = function () {
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return tools.readAppGlobalState(this.algodClient, this.appId, this.ownerAddr)
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}
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/**
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* Print local state of accountAddr on stdout.
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* @param {String} accountAddr account to retrieve local state
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* @returns {void}
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*/
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this.printLocalState = async function (accountAddr) {
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await tools.printAppLocalState(this.algodClient, this.appId, accountAddr)
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}
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/**
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* Print application global state on stdout.
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* @returns {void}
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*/
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this.printGlobalState = async function () {
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await tools.printAppGlobalState(this.algodClient, this.appId, this.ownerAddr)
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}
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/**
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* Internal function.
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* Read application local state variable related to accountAddr.
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* @param {String} accountAddr account to retrieve local state
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* @param {String} key variable key to get the value associated
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* @return {String/Number} it returns the value associated to the key that could be an address, a number or a
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* base64 string containing a ByteArray
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*/
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this.readLocalStateByKey = function (accountAddr, key) {
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return tools.readAppLocalStateByKey(this.algodClient, this.appId, accountAddr, key)
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}
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/**
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* Internal function.
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* Read application global state variable.
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* @param {String} key variable key to get the value associated
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* @return {String/Number} it returns the value associated to the key that could be an address,
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* a number or a base64 string containing a ByteArray
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*/
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this.readGlobalStateByKey = function (key) {
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return tools.readAppGlobalStateByKey(this.algodClient, this.appId, this.ownerAddr, key)
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}
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/**
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* Compile program that programFilename contains.
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* @param {String} programFilename filepath to the program to compile
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* @return {String} base64 string containing the compiled program
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*/
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this.compileProgram = async function (programBytes) {
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const compileResponse = await this.algodClient.compile(programBytes).do()
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const compiledBytes = new Uint8Array(Buffer.from(compileResponse.result, 'base64'))
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return { compiledBytes, hash: compileResponse.hash }
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}
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/**
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* Internal function.
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* Compile application clear state program.
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* @return {String} base64 string containing the compiled program
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*/
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this.compileClearProgram = function () {
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const program = fs.readFileSync(clearProgramFilename, 'utf8')
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return this.compileProgram(program)
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}
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/**
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* Internal function.
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* Compile application clear state program.
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* @return {String} base64 string containing the compiled program
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*/
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this.compileVAAProcessorClearProgram = function () {
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const program = fs.readFileSync(vaaProcessorClearProgramFilename, 'utf8')
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return this.compileProgram(program)
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}
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/**
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* Internal function.
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* Compile pricekeeper application approval program.
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* @return {String} base64 string containing the compiled program
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*/
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this.compileApprovalProgram = async function () {
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const program = fs.readFileSync(approvalProgramFilename, 'utf8')
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const compiledApprovalProgram = await this.compileProgram(program)
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this.approvalProgramHash = compiledApprovalProgram.hash
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return compiledApprovalProgram
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}
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/**
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* Internal function.
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* Compile VAA Processor application approval program.
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* @return {String} base64 string containing the compiled program
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*/
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this.compileVAAProcessorApprovalProgram = async function () {
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const program = fs.readFileSync(vaaProcessorApprovalProgramFilename, 'utf8')
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const compiledApprovalProgram = await this.compileProgram(program)
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this.approvalProgramHash = compiledApprovalProgram.hash
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return compiledApprovalProgram
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}
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/**
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* Helper function to retrieve the application id from a createApp transaction response.
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* @param {Object} txResponse object containig the transactionResponse of the createApp call
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* @return {Number} application id of the created application
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*/
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this.appIdFromCreateAppResponse = function (txResponse) {
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return txResponse['application-index']
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}
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/**
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* Create an application based on the default approval and clearState programs or based on the specified files.
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* @param {String} sender account used to sign the createApp transaction
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* @param {Function} signCallback callback with prototype signCallback(sender, tx) used to sign transactions
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* @return {String} transaction id of the created application
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*/
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this.createApp = async function (sender, validatorAddr, symbol, signCallback) {
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if (symbol.length > 16) {
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throw new Error('Symbol exceeds 16 characters')
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}
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symbol = symbol.padEnd(16, ' ')
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const localInts = 0
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const localBytes = 0
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const globalInts = 4
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const globalBytes = 3
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// declare onComplete as NoOp
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const onComplete = algosdk.OnApplicationComplete.NoOpOC
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// get node suggested parameters
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const params = await algodClient.getTransactionParams().do()
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params.fee = this.minFee
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params.flatFee = true
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const compiledProgram = await this.compileApprovalProgram()
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const approvalProgramCompiled = compiledProgram.compiledBytes
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const clearProgramCompiled = (await this.compileClearProgram()).compiledBytes
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const enc = new TextEncoder()
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const appArgs = [new Uint8Array(algosdk.decodeAddress(validatorAddr).publicKey), enc.encode(symbol)]
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// create unsigned transaction
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const txApp = algosdk.makeApplicationCreateTxn(
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sender, params, onComplete,
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approvalProgramCompiled, clearProgramCompiled,
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localInts, localBytes, globalInts, globalBytes, appArgs
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)
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const txId = txApp.txID().toString()
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// Sign the transaction
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const txAppSigned = signCallback(sender, txApp)
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// Submit the transaction
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await algodClient.sendRawTransaction(txAppSigned).do()
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return txId
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}
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/**
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* Create the VAA Processor application based on the default approval and clearState programs or based on the specified files.
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* @param {String} sender account used to sign the createApp transaction
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* @param {String} gexpTime Guardian key set expiration time
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* @param {String} gkeys Guardian keys listed as a single array
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* @param {Function} signCallback callback with prototype signCallback(sender, tx) used to sign transactions
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* @return {String} transaction id of the created application
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*/
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this.createVaaProcessorApp = async function (sender, gexpTime, gkeys, signCallback) {
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const localInts = 0
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const localBytes = 0
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const globalInts = 2
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const globalBytes = 20
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// declare onComplete as NoOp
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const onComplete = algosdk.OnApplicationComplete.NoOpOC
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// get node suggested parameters
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const params = await algodClient.getTransactionParams().do()
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params.fee = this.minFee
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params.flatFee = true
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const compiledProgram = await this.compileVAAProcessorApprovalProgram()
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const approvalProgramCompiled = compiledProgram.compiledBytes
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const clearProgramCompiled = (await this.compileVAAProcessorClearProgram()).compiledBytes
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const appArgs = [new Uint8Array(Buffer.from(gkeys, 'hex')), algosdk.encodeUint64(parseInt(gexpTime))]
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// create unsigned transaction
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const txApp = algosdk.makeApplicationCreateTxn(
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sender, params, onComplete,
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approvalProgramCompiled, clearProgramCompiled,
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localInts, localBytes, globalInts, globalBytes, appArgs
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)
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const txId = txApp.txID().toString()
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// Sign the transaction
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const txAppSigned = signCallback(sender, txApp)
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// Submit the transaction
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await algodClient.sendRawTransaction(txAppSigned).do()
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return txId
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}
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/**
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* Internal function.
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* Call application specifying args and accounts.
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* @param {String} sender caller address
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* @param {Array} appArgs array of arguments to pass to application call
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* @param {Array} appAccounts array of accounts to pass to application call
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* @param {Function} signCallback callback with prototype signCallback(sender, tx) used to sign transactions
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* @return {String} transaction id of the transaction
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*/
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this.callApp = async function (sender, appArgs, appAccounts, signCallback) {
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// get node suggested parameters
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const params = await this.algodClient.getTransactionParams().do()
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params.fee = this.minFee
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params.flatFee = true
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// create unsigned transaction
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const txApp = algosdk.makeApplicationNoOpTxn(sender, params, this.appId, appArgs, appAccounts.length === 0 ? undefined : appAccounts)
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const txId = txApp.txID().toString()
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// Sign the transaction
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const txAppSigned = signCallback(sender, txApp)
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// Submit the transaction
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await this.algodClient.sendRawTransaction(txAppSigned).do()
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return txId
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}
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/**
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* Internal function.
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* Call application specifying args and accounts. Do it in a group of dummy TXs for maximizing computations.
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* @param {String} sender caller address
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* @param {Array} appArgs array of arguments to pass to application call
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* @param {Array} appAccounts array of accounts to pass to application call
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* @param {Function} signCallback callback with prototype signCallback(sender, tx) used to sign transactions
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* @param {number} dummyTxCount the number of dummyTx to submit, with the real call last.
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* @return {String} transaction id of the transaction
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*/
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this.callAppInDummyGroup = async function (sender, appArgs, appAccounts, signCallback, dummyTxCount) {
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// get node suggested parameters
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const params = await this.algodClient.getTransactionParams().do()
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params.fee = this.minFee
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params.flatFee = true
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// console.log(appArgs)
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const txns = []
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const enc = new TextEncoder()
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for (let i = 0; i < dummyTxCount; ++i) {
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txns.push(algosdk.makeApplicationNoOpTxn(sender,
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params,
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this.appId,
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undefined, undefined, undefined, undefined,
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enc.encode(`dummy_TX_${i}`)))
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}
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const appTx = algosdk.makeApplicationNoOpTxn(sender, params, this.appId, appArgs)
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txns.push(appTx)
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algosdk.assignGroupID(txns)
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const txId = appTx.txID().toString()
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// Sign the transactions
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const signedTxns = []
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for (const tx of txns) {
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signedTxns.push(signCallback(sender, tx))
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}
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// Submit the transaction
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await this.algodClient.sendRawTransaction(signedTxns).do()
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return txId
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}
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/**
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* ClearState sender. Remove all the sender associated local data.
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* @param {String} sender account to ClearState
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* @param {Function} signCallback callback with prototype signCallback(sender, tx) used to sign transactions
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* @return {[String]} transaction id of one of the transactions of the group
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*/
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this.clearApp = async function (sender, signCallback, forcedAppId) {
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// get node suggested parameters
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const params = await this.algodClient.getTransactionParams().do()
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params.fee = this.minFee
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params.flatFee = true
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let appId = this.appId
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if (forcedAppId) {
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appId = forcedAppId
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}
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// create unsigned transaction
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const txApp = algosdk.makeApplicationClearStateTxn(sender, params, appId)
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const txId = txApp.txID().toString()
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// Sign the transaction
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const txAppSigned = signCallback(sender, txApp)
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// Submit the transaction
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await this.algodClient.sendRawTransaction(txAppSigned).do()
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return txId
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}
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/**
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* Permanent delete the application.
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* @param {String} sender owner account
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* @param {Function} signCallback callback with prototype signCallback(sender, tx) used to sign transactions
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* @param {Function} applicationId use this application id instead of the one set
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* @return {String} transaction id of one of the transactions of the group
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*/
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this.deleteApp = async function (sender, signCallback, applicationId) {
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// get node suggested parameters
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const params = await this.algodClient.getTransactionParams().do()
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params.fee = this.minFee
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params.flatFee = true
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if (!applicationId) {
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applicationId = this.appId
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}
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// create unsigned transaction
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const txApp = algosdk.makeApplicationDeleteTxn(sender, params, applicationId)
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const txId = txApp.txID().toString()
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// Sign the transaction
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const txAppSigned = signCallback(sender, txApp)
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// Submit the transaction
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await this.algodClient.sendRawTransaction(txAppSigned).do()
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return txId
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}
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/**
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* Helper function to wait until transaction txId is included in a block/round.
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* @param {String} txId transaction id to wait for
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* @return {VOID} VOID
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*/
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this.waitForConfirmation = async function (txId) {
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const status = (await this.algodClient.status().do())
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let lastRound = status['last-round']
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// eslint-disable-next-line no-constant-condition
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while (true) {
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const pendingInfo = await this.algodClient.pendingTransactionInformation(txId).do()
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if (pendingInfo['confirmed-round'] !== null && pendingInfo['confirmed-round'] > 0) {
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// Got the completed Transaction
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return pendingInfo['confirmed-round']
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}
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lastRound += 1
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await this.algodClient.statusAfterBlock(lastRound).do()
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}
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}
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/**
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* Helper function to wait until transaction txId is included in a block/round
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* and returns the transaction response associated to the transaction.
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* @param {String} txId transaction id to get transaction response
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* @return {Object} returns an object containing response information
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*/
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this.waitForTransactionResponse = async function (txId) {
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// Wait for confirmation
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await this.waitForConfirmation(txId)
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// display results
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return this.algodClient.pendingTransactionInformation(txId).do()
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}
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/**
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* Creates a message with price data for the PriceKeeper contract
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* @param {String} symbol Symbol, must match appid support, 16-char UTF long
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* @param {BigInt} price Aggregated price
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* @param {BigInt} confidence Confidence
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* @param {BigInt} exp Exponent (positive)
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* @param {BigInt} slot Valid-slot of price aggregation
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* @param {Uint8Array} sk Signing key.
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* @param {string} header (optional) Message header. 'PRICEDATA' if undefined.
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* @param {BigInt} appId (optional) AppId. Default is this contract appId.
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* @param {number} version (optional) Version. Default is 1 if undefined.
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* @param {BigInt} ts (optional) Timestamp of message. Current system ts if undefined.
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* @returns A base64-encoded message.
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*/
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this.createMessage = function (symbol, price, exp, confidence, slot, sk, header, appId, version, ts) {
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const buf = Buffer.alloc(138)
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buf.write(header === undefined ? 'PRICEDATA' : header, 0)
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buf.writeInt8(version === undefined ? 1 : version, 9)
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buf.writeBigUInt64BE(appId === undefined ? BigInt(this.appId) : appId, 10)
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buf.write(symbol, 18)
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buf.writeBigUInt64BE(price, 34)
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// (!) Libraries like Pyth publish negative exponents. Write as signed 64bit
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buf.writeBigInt64BE(exp, 42)
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buf.writeBigUInt64BE(confidence, 50)
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buf.writeBigUInt64BE(slot, 58)
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buf.writeBigUInt64BE(ts === undefined ? BigInt(Math.floor(Date.now() / 1000)) : ts, 66)
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const digestu8 = Buffer.from(sha512_256(buf.slice(0, 74)), 'hex')
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const signature = Buffer.from(algosdk.tealSign(sk, digestu8, this.approvalProgramHash))
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signature.copy(buf, 74)
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return buf
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}
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/**
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* Submits message to the PriceKeeper contract.
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* @param {*} sender Sender account
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* @param {*} msgb64 Base64-encoded message.
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* @returns Transaction identifier (txid)
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*/
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this.submitMessage = async function (sender, msgBuffer, signCallback) {
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if (!algosdk.isValidAddress(sender)) {
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throw new Error('Invalid sender address: ' + sender)
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}
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const appArgs = []
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appArgs.push(new Uint8Array(msgBuffer))
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return await this.callAppInDummyGroup(sender, appArgs, [], signCallback, 3)
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}
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}
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}
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module.exports = {
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PricecasterLib
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}
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