update std-op
This commit is contained in:
parent
579d00b343
commit
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@ -1,513 +1,514 @@
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'use strict';
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/* FLO Blockchain Operator to send/receive data from blockchain using API calls*/
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//version 2.2.1
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(function(GLOBAL) {
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const floBlockchainAPI = GLOBAL.floBlockchainAPI = {
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(function(EXPORTS) { //floBlockchainAPI v2.3.0
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/* FLO Blockchain Operator to send/receive data from blockchain using API calls*/
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'use strict';
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const floBlockchainAPI = EXPORTS;
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util: {
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serverList: floGlobals.apiURL[floGlobals.blockchain].slice(0),
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curPos: floCrypto.randInt(0, floGlobals.apiURL[floGlobals.blockchain].length - 1),
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fetch_retry: function(apicall, rm_flosight) {
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return new Promise((resolve, reject) => {
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let i = this.serverList.indexOf(rm_flosight)
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if (i != -1) this.serverList.splice(i, 1);
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this.curPos = floCrypto.randInt(0, this.serverList.length - 1);
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this.fetch_api(apicall)
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const serverList = floGlobals.apiURL[floGlobals.blockchain].slice(0);
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var curPos = floCrypto.randInt(0, serverList - 1);
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function fetch_retry(apicall, rm_flosight) {
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return new Promise((resolve, reject) => {
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let i = serverList.indexOf(rm_flosight)
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if (i != -1) serverList.splice(i, 1);
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curPos = floCrypto.randInt(0, serverList.length - 1);
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fetch_api(apicall)
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.then(result => resolve(result))
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.catch(error => reject(error));
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})
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}
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function fetch_api(apicall) {
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return new Promise((resolve, reject) => {
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if (serverList.length === 0)
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reject("No floSight server working");
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else {
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let flosight = serverList[curPos];
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fetch(flosight + apicall).then(response => {
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if (response.ok)
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response.json().then(data => resolve(data));
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else {
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fetch_retry(apicall, flosight)
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.then(result => resolve(result))
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.catch(error => reject(error));
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}
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}).catch(error => {
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fetch_retry(apicall, flosight)
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.then(result => resolve(result))
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.catch(error => reject(error));
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})
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},
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fetch_api: function(apicall) {
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return new Promise((resolve, reject) => {
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if (this.serverList.length === 0)
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reject("No floSight server working");
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else {
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let flosight = this.serverList[this.curPos];
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fetch(flosight + apicall).then(response => {
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if (response.ok)
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response.json().then(data => resolve(data));
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else {
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this.fetch_retry(apicall, flosight)
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.then(result => resolve(result))
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.catch(error => reject(error));
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}
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}).catch(error => {
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this.fetch_retry(apicall, flosight)
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.then(result => resolve(result))
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.catch(error => reject(error));
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})
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}
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})
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},
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current: function() {
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return this.serverList[this.curPos];
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}
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},
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})
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}
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//Promised function to get data from API
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promisedAPI: function(apicall) {
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return new Promise((resolve, reject) => {
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//console.log(apicall);
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this.util.fetch_api(apicall)
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.then(result => resolve(result))
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.catch(error => reject(error));
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});
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},
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Object.defineProperty(floBlockchainAPI, 'current_server', {
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get: () => serverList[curPos]
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});
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//Get balance for the given Address
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getBalance: function(addr) {
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return new Promise((resolve, reject) => {
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this.promisedAPI(`api/addr/${addr}/balance`)
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.then(balance => resolve(parseFloat(balance)))
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.catch(error => reject(error));
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});
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},
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//Promised function to get data from API
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const promisedAPI = floBlockchainAPI.promisedAPI = function(apicall) {
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return new Promise((resolve, reject) => {
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//console.log(apicall);
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fetch_api(apicall)
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.then(result => resolve(result))
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.catch(error => reject(error));
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});
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}
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//Write Data into blockchain
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writeData: function(senderAddr, data, privKey, receiverAddr = floGlobals.adminID, strict_utxo = true) {
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return new Promise((resolve, reject) => {
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if (typeof data != "string")
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data = JSON.stringify(data);
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this.sendTx(senderAddr, receiverAddr, floGlobals.sendAmt, privKey, data, strict_utxo)
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.then(txid => resolve(txid))
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.catch(error => reject(error));
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});
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},
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//Get balance for the given Address
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const getBalance = floBlockchainAPI.getBalance = function(addr) {
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return new Promise((resolve, reject) => {
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promisedAPI(`api/addr/${addr}/balance`)
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.then(balance => resolve(parseFloat(balance)))
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.catch(error => reject(error));
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});
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}
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//Send Tx to blockchain
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sendTx: function(senderAddr, receiverAddr, sendAmt, privKey, floData = '', strict_utxo = true) {
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return new Promise((resolve, reject) => {
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if (!floCrypto.validateASCII(floData))
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return reject("Invalid FLO_Data: only printable ASCII characters are allowed");
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else if (!floCrypto.validateAddr(senderAddr))
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return reject(`Invalid address : ${senderAddr}`);
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else if (!floCrypto.validateAddr(receiverAddr))
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return reject(`Invalid address : ${receiverAddr}`);
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else if (privKey.length < 1 || !floCrypto.verifyPrivKey(privKey, senderAddr))
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return reject("Invalid Private key!");
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else if (typeof sendAmt !== 'number' || sendAmt <= 0)
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return reject(`Invalid sendAmt : ${sendAmt}`);
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//Send Tx to blockchain
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const sendTx = floBlockchainAPI.sendTx = function(senderAddr, receiverAddr, sendAmt, privKey, floData = '', strict_utxo = true) {
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return new Promise((resolve, reject) => {
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if (!floCrypto.validateASCII(floData))
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return reject("Invalid FLO_Data: only printable ASCII characters are allowed");
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else if (!floCrypto.validateAddr(senderAddr))
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return reject(`Invalid address : ${senderAddr}`);
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else if (!floCrypto.validateAddr(receiverAddr))
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return reject(`Invalid address : ${receiverAddr}`);
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else if (privKey.length < 1 || !floCrypto.verifyPrivKey(privKey, senderAddr))
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return reject("Invalid Private key!");
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else if (typeof sendAmt !== 'number' || sendAmt <= 0)
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return reject(`Invalid sendAmt : ${sendAmt}`);
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//get unconfirmed tx list
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this.promisedAPI(`api/addr/${senderAddr}`).then(result => {
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this.readTxs(senderAddr, 0, result.unconfirmedTxApperances).then(result => {
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let unconfirmedSpent = {};
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for (let tx of result.items)
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if (tx.confirmations == 0)
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for (let vin of tx.vin)
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if (vin.addr === senderAddr) {
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if (Array.isArray(unconfirmedSpent[vin.txid]))
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unconfirmedSpent[vin.txid].push(vin.vout);
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else
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unconfirmedSpent[vin.txid] = [vin.vout];
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}
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//get utxos list
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this.promisedAPI(`api/addr/${senderAddr}/utxo`).then(utxos => {
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//form/construct the transaction data
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var trx = bitjs.transaction();
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var utxoAmt = 0.0;
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var fee = floGlobals.fee;
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for (var i = utxos.length - 1;
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(i >= 0) && (utxoAmt < sendAmt + fee); i--) {
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//use only utxos with confirmations (strict_utxo mode)
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if (utxos[i].confirmations || !strict_utxo) {
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if (utxos[i].txid in unconfirmedSpent && unconfirmedSpent[utxos[i].txid].includes(utxos[i].vout))
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continue; //A transaction has already used this utxo, but is unconfirmed.
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trx.addinput(utxos[i].txid, utxos[i].vout, utxos[i].scriptPubKey);
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utxoAmt += utxos[i].amount;
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};
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}
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if (utxoAmt < sendAmt + fee)
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reject("Insufficient FLO balance!");
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else {
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trx.addoutput(receiverAddr, sendAmt);
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var change = utxoAmt - sendAmt - fee;
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if (change > 0)
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trx.addoutput(senderAddr, change);
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trx.addflodata(floData.replace(/\n/g, ' '));
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var signedTxHash = trx.sign(privKey, 1);
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this.broadcastTx(signedTxHash)
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.then(txid => resolve(txid))
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.catch(error => reject(error))
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}
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}).catch(error => reject(error))
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//get unconfirmed tx list
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promisedAPI(`api/addr/${senderAddr}`).then(result => {
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readTxs(senderAddr, 0, result.unconfirmedTxApperances).then(result => {
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let unconfirmedSpent = {};
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for (let tx of result.items)
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if (tx.confirmations == 0)
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for (let vin of tx.vin)
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if (vin.addr === senderAddr) {
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if (Array.isArray(unconfirmedSpent[vin.txid]))
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unconfirmedSpent[vin.txid].push(vin.vout);
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else
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unconfirmedSpent[vin.txid] = [vin.vout];
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}
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//get utxos list
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promisedAPI(`api/addr/${senderAddr}/utxo`).then(utxos => {
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//form/construct the transaction data
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var trx = bitjs.transaction();
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var utxoAmt = 0.0;
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var fee = floGlobals.fee;
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for (var i = utxos.length - 1;
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(i >= 0) && (utxoAmt < sendAmt + fee); i--) {
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//use only utxos with confirmations (strict_utxo mode)
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if (utxos[i].confirmations || !strict_utxo) {
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if (utxos[i].txid in unconfirmedSpent && unconfirmedSpent[utxos[i].txid].includes(utxos[i].vout))
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continue; //A transaction has already used the utxo, but is unconfirmed.
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trx.addinput(utxos[i].txid, utxos[i].vout, utxos[i].scriptPubKey);
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utxoAmt += utxos[i].amount;
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};
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}
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if (utxoAmt < sendAmt + fee)
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reject("Insufficient FLO balance!");
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else {
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trx.addoutput(receiverAddr, sendAmt);
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var change = utxoAmt - sendAmt - fee;
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if (change > 0)
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trx.addoutput(senderAddr, change);
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trx.addflodata(floData.replace(/\n/g, ' '));
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var signedTxHash = trx.sign(privKey, 1);
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broadcastTx(signedTxHash)
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.then(txid => resolve(txid))
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.catch(error => reject(error))
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}
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}).catch(error => reject(error))
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}).catch(error => reject(error))
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});
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},
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}).catch(error => reject(error))
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});
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}
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//merge all UTXOs of a given floID into a single UTXO
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mergeUTXOs: function(floID, privKey, floData = '') {
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return new Promise((resolve, reject) => {
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if (!floCrypto.validateAddr(floID))
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return reject(`Invalid floID`);
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if (!floCrypto.verifyPrivKey(privKey, floID))
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return reject("Invalid Private Key");
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if (!floCrypto.validateASCII(floData))
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return reject("Invalid FLO_Data: only printable ASCII characters are allowed");
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var trx = bitjs.transaction();
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var utxoAmt = 0.0;
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var fee = floGlobals.fee;
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this.promisedAPI(`api/addr/${floID}/utxo`).then(utxos => {
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for (var i = utxos.length - 1; i >= 0; i--)
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if (utxos[i].confirmations) {
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trx.addinput(utxos[i].txid, utxos[i].vout, utxos[i].scriptPubKey);
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utxoAmt += utxos[i].amount;
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//Write Data into blockchain
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floBlockchainAPI.writeData = function(senderAddr, data, privKey, receiverAddr = floGlobals.adminID, strict_utxo = true) {
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return new Promise((resolve, reject) => {
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if (typeof data != "string")
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data = JSON.stringify(data);
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sendTx(senderAddr, receiverAddr, floGlobals.sendAmt, privKey, data, strict_utxo)
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.then(txid => resolve(txid))
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.catch(error => reject(error));
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});
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}
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//merge all UTXOs of a given floID into a single UTXO
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floBlockchainAPI.mergeUTXOs = function(floID, privKey, floData = '') {
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return new Promise((resolve, reject) => {
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if (!floCrypto.validateAddr(floID))
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return reject(`Invalid floID`);
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if (!floCrypto.verifyPrivKey(privKey, floID))
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return reject("Invalid Private Key");
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if (!floCrypto.validateASCII(floData))
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return reject("Invalid FLO_Data: only printable ASCII characters are allowed");
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var trx = bitjs.transaction();
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var utxoAmt = 0.0;
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var fee = floGlobals.fee;
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promisedAPI(`api/addr/${floID}/utxo`).then(utxos => {
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for (var i = utxos.length - 1; i >= 0; i--)
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if (utxos[i].confirmations) {
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trx.addinput(utxos[i].txid, utxos[i].vout, utxos[i].scriptPubKey);
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utxoAmt += utxos[i].amount;
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}
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trx.addoutput(floID, utxoAmt - fee);
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trx.addflodata(floData.replace(/\n/g, ' '));
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var signedTxHash = trx.sign(privKey, 1);
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broadcastTx(signedTxHash)
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.then(txid => resolve(txid))
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.catch(error => reject(error))
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}).catch(error => reject(error))
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})
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}
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/**Write data into blockchain from (and/or) to multiple floID
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* @param {Array} senderPrivKeys List of sender private-keys
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* @param {string} data FLO data of the txn
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* @param {Array} receivers List of receivers
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* @param {boolean} preserveRatio (optional) preserve ratio or equal contribution
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* @return {Promise}
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*/
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floBlockchainAPI.writeDataMultiple = function(senderPrivKeys, data, receivers = [floGlobals.adminID], preserveRatio = true) {
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return new Promise((resolve, reject) => {
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if (!Array.isArray(senderPrivKeys))
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return reject("Invalid senderPrivKeys: SenderPrivKeys must be Array");
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if (!preserveRatio) {
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let tmp = {};
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let amount = (floGlobals.sendAmt * receivers.length) / senderPrivKeys.length;
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senderPrivKeys.forEach(key => tmp[key] = amount);
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senderPrivKeys = tmp;
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}
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if (!Array.isArray(receivers))
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return reject("Invalid receivers: Receivers must be Array");
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else {
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let tmp = {};
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let amount = floGlobals.sendAmt;
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receivers.forEach(floID => tmp[floID] = amount);
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receivers = tmp
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}
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if (typeof data != "string")
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data = JSON.stringify(data);
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sendTxMultiple(senderPrivKeys, receivers, data)
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.then(txid => resolve(txid))
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.catch(error => reject(error))
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})
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}
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/**Send Tx from (and/or) to multiple floID
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* @param {Array or Object} senderPrivKeys List of sender private-key (optional: with coins to be sent)
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* @param {Object} receivers List of receivers with respective amount to be sent
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* @param {string} floData FLO data of the txn
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* @return {Promise}
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*/
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const sendTxMultiple = floBlockchainAPI.sendTxMultiple = function(senderPrivKeys, receivers, floData = '') {
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return new Promise((resolve, reject) => {
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if (!floCrypto.validateASCII(floData))
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return reject("Invalid FLO_Data: only printable ASCII characters are allowed");
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let senders = {},
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preserveRatio;
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//check for argument validations
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try {
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let invalids = {
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InvalidSenderPrivKeys: [],
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InvalidSenderAmountFor: [],
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InvalidReceiverIDs: [],
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InvalidReceiveAmountFor: []
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}
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let inputVal = 0,
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outputVal = 0;
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//Validate sender privatekeys (and send amount if passed)
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//conversion when only privateKeys are passed (preserveRatio mode)
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if (Array.isArray(senderPrivKeys)) {
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senderPrivKeys.forEach(key => {
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try {
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if (!key)
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invalids.InvalidSenderPrivKeys.push(key);
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else {
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let floID = floCrypto.getFloID(key);
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senders[floID] = {
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wif: key
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}
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}
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} catch (error) {
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invalids.InvalidSenderPrivKeys.push(key)
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}
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trx.addoutput(floID, utxoAmt - fee);
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})
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preserveRatio = true;
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}
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//conversion when privatekeys are passed with send amount
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else {
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for (let key in senderPrivKeys) {
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try {
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if (!key)
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invalids.InvalidSenderPrivKeys.push(key);
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else {
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if (typeof senderPrivKeys[key] !== 'number' || senderPrivKeys[key] <= 0)
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invalids.InvalidSenderAmountFor.push(key);
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else
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inputVal += senderPrivKeys[key];
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let floID = floCrypto.getFloID(key);
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senders[floID] = {
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wif: key,
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coins: senderPrivKeys[key]
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}
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}
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} catch (error) {
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invalids.InvalidSenderPrivKeys.push(key)
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}
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}
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preserveRatio = false;
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}
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//Validate the receiver IDs and receive amount
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for (let floID in receivers) {
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if (!floCrypto.validateAddr(floID))
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invalids.InvalidReceiverIDs.push(floID);
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if (typeof receivers[floID] !== 'number' || receivers[floID] <= 0)
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invalids.InvalidReceiveAmountFor.push(floID);
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else
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outputVal += receivers[floID];
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}
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//Reject if any invalids are found
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for (let i in invalids)
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if (!invalids[i].length)
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delete invalids[i];
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if (Object.keys(invalids).length)
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return reject(invalids);
|
||||
//Reject if given inputVal and outputVal are not equal
|
||||
if (!preserveRatio && inputVal != outputVal)
|
||||
return reject(`Input Amount (${inputVal}) not equal to Output Amount (${outputVal})`);
|
||||
} catch (error) {
|
||||
return reject(error)
|
||||
}
|
||||
//Get balance of senders
|
||||
let promises = [];
|
||||
for (let floID in senders)
|
||||
promises.push(getBalance(floID));
|
||||
Promise.all(promises).then(results => {
|
||||
let totalBalance = 0,
|
||||
totalFee = floGlobals.fee,
|
||||
balance = {};
|
||||
//Divide fee among sender if not for preserveRatio
|
||||
if (!preserveRatio)
|
||||
var dividedFee = totalFee / Object.keys(senders).length;
|
||||
//Check if balance of each sender is sufficient enough
|
||||
let insufficient = [];
|
||||
for (let floID in senders) {
|
||||
balance[floID] = parseFloat(results.shift());
|
||||
if (isNaN(balance[floID]) || (preserveRatio && balance[floID] <= totalFee) ||
|
||||
(!preserveRatio && balance[floID] < senders[floID].coins + dividedFee))
|
||||
insufficient.push(floID);
|
||||
totalBalance += balance[floID];
|
||||
}
|
||||
if (insufficient.length)
|
||||
return reject({
|
||||
InsufficientBalance: insufficient
|
||||
})
|
||||
//Calculate totalSentAmount and check if totalBalance is sufficient
|
||||
let totalSendAmt = totalFee;
|
||||
for (floID in receivers)
|
||||
totalSendAmt += receivers[floID];
|
||||
if (totalBalance < totalSendAmt)
|
||||
return reject("Insufficient total Balance");
|
||||
//Get the UTXOs of the senders
|
||||
let promises = [];
|
||||
for (floID in senders)
|
||||
promises.push(promisedAPI(`api/addr/${floID}/utxo`));
|
||||
Promise.all(promises).then(results => {
|
||||
let wifSeq = [];
|
||||
var trx = bitjs.transaction();
|
||||
for (floID in senders) {
|
||||
let utxos = results.shift();
|
||||
let sendAmt;
|
||||
if (preserveRatio) {
|
||||
let ratio = (balance[floID] / totalBalance);
|
||||
sendAmt = totalSendAmt * ratio;
|
||||
} else
|
||||
sendAmt = senders[floID].coins + dividedFee;
|
||||
let wif = senders[floID].wif;
|
||||
let utxoAmt = 0.0;
|
||||
for (let i = utxos.length - 1;
|
||||
(i >= 0) && (utxoAmt < sendAmt); i--) {
|
||||
if (utxos[i].confirmations) {
|
||||
trx.addinput(utxos[i].txid, utxos[i].vout, utxos[i].scriptPubKey);
|
||||
wifSeq.push(wif);
|
||||
utxoAmt += utxos[i].amount;
|
||||
}
|
||||
}
|
||||
if (utxoAmt < sendAmt)
|
||||
return reject("Insufficient balance:" + floID);
|
||||
let change = (utxoAmt - sendAmt);
|
||||
if (change > 0)
|
||||
trx.addoutput(floID, change);
|
||||
}
|
||||
for (floID in receivers)
|
||||
trx.addoutput(floID, receivers[floID]);
|
||||
trx.addflodata(floData.replace(/\n/g, ' '));
|
||||
var signedTxHash = trx.sign(privKey, 1);
|
||||
this.broadcastTx(signedTxHash)
|
||||
for (let i = 0; i < wifSeq.length; i++)
|
||||
trx.signinput(i, wifSeq[i], 1);
|
||||
var signedTxHash = trx.serialize();
|
||||
broadcastTx(signedTxHash)
|
||||
.then(txid => resolve(txid))
|
||||
.catch(error => reject(error))
|
||||
}).catch(error => reject(error))
|
||||
})
|
||||
},
|
||||
}).catch(error => reject(error))
|
||||
})
|
||||
}
|
||||
|
||||
/**Write data into blockchain from (and/or) to multiple floID
|
||||
* @param {Array} senderPrivKeys List of sender private-keys
|
||||
* @param {string} data FLO data of the txn
|
||||
* @param {Array} receivers List of receivers
|
||||
* @param {boolean} preserveRatio (optional) preserve ratio or equal contribution
|
||||
* @return {Promise}
|
||||
*/
|
||||
writeDataMultiple: function(senderPrivKeys, data, receivers = [floGlobals.adminID], preserveRatio = true) {
|
||||
return new Promise((resolve, reject) => {
|
||||
if (!Array.isArray(senderPrivKeys))
|
||||
return reject("Invalid senderPrivKeys: SenderPrivKeys must be Array");
|
||||
if (!preserveRatio) {
|
||||
let tmp = {};
|
||||
let amount = (floGlobals.sendAmt * receivers.length) / senderPrivKeys.length;
|
||||
senderPrivKeys.forEach(key => tmp[key] = amount);
|
||||
senderPrivKeys = tmp;
|
||||
}
|
||||
if (!Array.isArray(receivers))
|
||||
return reject("Invalid receivers: Receivers must be Array");
|
||||
else {
|
||||
let tmp = {};
|
||||
let amount = floGlobals.sendAmt;
|
||||
receivers.forEach(floID => tmp[floID] = amount);
|
||||
receivers = tmp
|
||||
}
|
||||
if (typeof data != "string")
|
||||
data = JSON.stringify(data);
|
||||
this.sendTxMultiple(senderPrivKeys, receivers, data)
|
||||
.then(txid => resolve(txid))
|
||||
.catch(error => reject(error))
|
||||
})
|
||||
},
|
||||
//Broadcast signed Tx in blockchain using API
|
||||
const broadcastTx = floBlockchainAPI.broadcastTx = function(signedTxHash) {
|
||||
return new Promise((resolve, reject) => {
|
||||
if (signedTxHash.length < 1)
|
||||
return reject("Empty Signature");
|
||||
var url = serverList[curPos] + 'api/tx/send';
|
||||
fetch(url, {
|
||||
method: "POST",
|
||||
headers: {
|
||||
'Content-Type': 'application/json'
|
||||
},
|
||||
body: `{"rawtx":"${signedTxHash}"}`
|
||||
}).then(response => {
|
||||
if (response.ok)
|
||||
response.json().then(data => resolve(data.txid.result));
|
||||
else
|
||||
response.text().then(data => resolve(data));
|
||||
}).catch(error => reject(error));
|
||||
})
|
||||
}
|
||||
|
||||
/**Send Tx from (and/or) to multiple floID
|
||||
* @param {Array or Object} senderPrivKeys List of sender private-key (optional: with coins to be sent)
|
||||
* @param {Object} receivers List of receivers with respective amount to be sent
|
||||
* @param {string} floData FLO data of the txn
|
||||
* @return {Promise}
|
||||
*/
|
||||
sendTxMultiple: function(senderPrivKeys, receivers, floData = '') {
|
||||
return new Promise((resolve, reject) => {
|
||||
if (!floCrypto.validateASCII(floData))
|
||||
return reject("Invalid FLO_Data: only printable ASCII characters are allowed");
|
||||
let senders = {},
|
||||
preserveRatio;
|
||||
//check for argument validations
|
||||
try {
|
||||
let invalids = {
|
||||
InvalidSenderPrivKeys: [],
|
||||
InvalidSenderAmountFor: [],
|
||||
InvalidReceiverIDs: [],
|
||||
InvalidReceiveAmountFor: []
|
||||
}
|
||||
let inputVal = 0,
|
||||
outputVal = 0;
|
||||
//Validate sender privatekeys (and send amount if passed)
|
||||
//conversion when only privateKeys are passed (preserveRatio mode)
|
||||
if (Array.isArray(senderPrivKeys)) {
|
||||
senderPrivKeys.forEach(key => {
|
||||
try {
|
||||
if (!key)
|
||||
invalids.InvalidSenderPrivKeys.push(key);
|
||||
else {
|
||||
let floID = floCrypto.getFloID(key);
|
||||
senders[floID] = {
|
||||
wif: key
|
||||
}
|
||||
}
|
||||
} catch (error) {
|
||||
invalids.InvalidSenderPrivKeys.push(key)
|
||||
}
|
||||
})
|
||||
preserveRatio = true;
|
||||
}
|
||||
//conversion when privatekeys are passed with send amount
|
||||
else {
|
||||
for (let key in senderPrivKeys) {
|
||||
try {
|
||||
if (!key)
|
||||
invalids.InvalidSenderPrivKeys.push(key);
|
||||
else {
|
||||
if (typeof senderPrivKeys[key] !== 'number' || senderPrivKeys[key] <= 0)
|
||||
invalids.InvalidSenderAmountFor.push(key);
|
||||
else
|
||||
inputVal += senderPrivKeys[key];
|
||||
let floID = floCrypto.getFloID(key);
|
||||
senders[floID] = {
|
||||
wif: key,
|
||||
coins: senderPrivKeys[key]
|
||||
}
|
||||
}
|
||||
} catch (error) {
|
||||
invalids.InvalidSenderPrivKeys.push(key)
|
||||
}
|
||||
}
|
||||
preserveRatio = false;
|
||||
}
|
||||
//Validate the receiver IDs and receive amount
|
||||
for (let floID in receivers) {
|
||||
if (!floCrypto.validateAddr(floID))
|
||||
invalids.InvalidReceiverIDs.push(floID);
|
||||
if (typeof receivers[floID] !== 'number' || receivers[floID] <= 0)
|
||||
invalids.InvalidReceiveAmountFor.push(floID);
|
||||
else
|
||||
outputVal += receivers[floID];
|
||||
}
|
||||
//Reject if any invalids are found
|
||||
for (let i in invalids)
|
||||
if (!invalids[i].length)
|
||||
delete invalids[i];
|
||||
if (Object.keys(invalids).length)
|
||||
return reject(invalids);
|
||||
//Reject if given inputVal and outputVal are not equal
|
||||
if (!preserveRatio && inputVal != outputVal)
|
||||
return reject(`Input Amount (${inputVal}) not equal to Output Amount (${outputVal})`);
|
||||
} catch (error) {
|
||||
return reject(error)
|
||||
}
|
||||
//Get balance of senders
|
||||
let promises = [];
|
||||
for (let floID in senders)
|
||||
promises.push(this.getBalance(floID));
|
||||
Promise.all(promises).then(results => {
|
||||
let totalBalance = 0,
|
||||
totalFee = floGlobals.fee,
|
||||
balance = {};
|
||||
//Divide fee among sender if not for preserveRatio
|
||||
if (!preserveRatio)
|
||||
var dividedFee = totalFee / Object.keys(senders).length;
|
||||
//Check if balance of each sender is sufficient enough
|
||||
let insufficient = [];
|
||||
for (let floID in senders) {
|
||||
balance[floID] = parseFloat(results.shift());
|
||||
if (isNaN(balance[floID]) || (preserveRatio && balance[floID] <= totalFee) ||
|
||||
(!preserveRatio && balance[floID] < senders[floID].coins + dividedFee))
|
||||
insufficient.push(floID);
|
||||
totalBalance += balance[floID];
|
||||
}
|
||||
if (insufficient.length)
|
||||
return reject({
|
||||
InsufficientBalance: insufficient
|
||||
})
|
||||
//Calculate totalSentAmount and check if totalBalance is sufficient
|
||||
let totalSendAmt = totalFee;
|
||||
for (floID in receivers)
|
||||
totalSendAmt += receivers[floID];
|
||||
if (totalBalance < totalSendAmt)
|
||||
return reject("Insufficient total Balance");
|
||||
//Get the UTXOs of the senders
|
||||
let promises = [];
|
||||
for (floID in senders)
|
||||
promises.push(this.promisedAPI(`api/addr/${floID}/utxo`));
|
||||
Promise.all(promises).then(results => {
|
||||
let wifSeq = [];
|
||||
var trx = bitjs.transaction();
|
||||
for (floID in senders) {
|
||||
let utxos = results.shift();
|
||||
let sendAmt;
|
||||
if (preserveRatio) {
|
||||
let ratio = (balance[floID] / totalBalance);
|
||||
sendAmt = totalSendAmt * ratio;
|
||||
} else
|
||||
sendAmt = senders[floID].coins + dividedFee;
|
||||
let wif = senders[floID].wif;
|
||||
let utxoAmt = 0.0;
|
||||
for (let i = utxos.length - 1;
|
||||
(i >= 0) && (utxoAmt < sendAmt); i--) {
|
||||
if (utxos[i].confirmations) {
|
||||
trx.addinput(utxos[i].txid, utxos[i].vout, utxos[i].scriptPubKey);
|
||||
wifSeq.push(wif);
|
||||
utxoAmt += utxos[i].amount;
|
||||
}
|
||||
}
|
||||
if (utxoAmt < sendAmt)
|
||||
return reject("Insufficient balance:" + floID);
|
||||
let change = (utxoAmt - sendAmt);
|
||||
if (change > 0)
|
||||
trx.addoutput(floID, change);
|
||||
}
|
||||
for (floID in receivers)
|
||||
trx.addoutput(floID, receivers[floID]);
|
||||
trx.addflodata(floData.replace(/\n/g, ' '));
|
||||
for (let i = 0; i < wifSeq.length; i++)
|
||||
trx.signinput(i, wifSeq[i], 1);
|
||||
var signedTxHash = trx.serialize();
|
||||
this.broadcastTx(signedTxHash)
|
||||
.then(txid => resolve(txid))
|
||||
.catch(error => reject(error))
|
||||
}).catch(error => reject(error))
|
||||
}).catch(error => reject(error))
|
||||
})
|
||||
},
|
||||
floBlockchainAPI.getTx = function(txid) {
|
||||
return new Promise((resolve, reject) => {
|
||||
promisedAPI(`api/tx/${txid}`)
|
||||
.then(response => resolve(response))
|
||||
.catch(error => reject(error))
|
||||
})
|
||||
}
|
||||
|
||||
//Broadcast signed Tx in blockchain using API
|
||||
broadcastTx: function(signedTxHash) {
|
||||
return new Promise((resolve, reject) => {
|
||||
if (signedTxHash.length < 1)
|
||||
return reject("Empty Signature");
|
||||
var url = this.util.serverList[this.util.curPos] + 'api/tx/send';
|
||||
fetch(url, {
|
||||
method: "POST",
|
||||
headers: {
|
||||
'Content-Type': 'application/json'
|
||||
},
|
||||
body: `{"rawtx":"${signedTxHash}"}`
|
||||
}).then(response => {
|
||||
if (response.ok)
|
||||
response.json().then(data => resolve(data.txid.result));
|
||||
else
|
||||
response.text().then(data => resolve(data));
|
||||
}).catch(error => reject(error));
|
||||
})
|
||||
},
|
||||
//Read Txs of Address between from and to
|
||||
const readTxs = floBlockchainAPI.readTxs = function(addr, from, to) {
|
||||
return new Promise((resolve, reject) => {
|
||||
promisedAPI(`api/addrs/${addr}/txs?from=${from}&to=${to}`)
|
||||
.then(response => resolve(response))
|
||||
.catch(error => reject(error))
|
||||
});
|
||||
}
|
||||
|
||||
getTx: function(txid) {
|
||||
return new Promise((resolve, reject) => {
|
||||
this.promisedAPI(`api/tx/${txid}`)
|
||||
.then(response => resolve(response))
|
||||
.catch(error => reject(error))
|
||||
})
|
||||
},
|
||||
//Read All Txs of Address (newest first)
|
||||
floBlockchainAPI.readAllTxs = function(addr) {
|
||||
return new Promise((resolve, reject) => {
|
||||
promisedAPI(`api/addrs/${addr}/txs?from=0&to=1`).then(response => {
|
||||
promisedAPI(`api/addrs/${addr}/txs?from=0&to=${response.totalItems}0`)
|
||||
.then(response => resolve(response.items))
|
||||
.catch(error => reject(error));
|
||||
}).catch(error => reject(error))
|
||||
});
|
||||
}
|
||||
|
||||
//Read Txs of Address between from and to
|
||||
readTxs: function(addr, from, to) {
|
||||
return new Promise((resolve, reject) => {
|
||||
this.promisedAPI(`api/addrs/${addr}/txs?from=${from}&to=${to}`)
|
||||
.then(response => resolve(response))
|
||||
.catch(error => reject(error))
|
||||
});
|
||||
},
|
||||
|
||||
//Read All Txs of Address (newest first)
|
||||
readAllTxs: function(addr) {
|
||||
return new Promise((resolve, reject) => {
|
||||
this.promisedAPI(`api/addrs/${addr}/txs?from=0&to=1`).then(response => {
|
||||
this.promisedAPI(`api/addrs/${addr}/txs?from=0&to=${response.totalItems}0`)
|
||||
.then(response => resolve(response.items))
|
||||
.catch(error => reject(error));
|
||||
}).catch(error => reject(error))
|
||||
});
|
||||
},
|
||||
|
||||
/*Read flo Data from txs of given Address
|
||||
options can be used to filter data
|
||||
limit : maximum number of filtered data (default = 1000, negative = no limit)
|
||||
ignoreOld : ignore old txs (default = 0)
|
||||
sentOnly : filters only sent data
|
||||
receivedOnly: filters only received data
|
||||
pattern : filters data that with JSON pattern
|
||||
filter : custom filter funtion for floData (eg . filter: d => {return d[0] == '$'})
|
||||
tx : (boolean) resolve tx data or not (resolves an Array of Object with tx details)
|
||||
sender : flo-id(s) of sender
|
||||
receiver : flo-id(s) of receiver
|
||||
*/
|
||||
readData: function(addr, options = {}) {
|
||||
options.limit = options.limit || 0;
|
||||
options.ignoreOld = options.ignoreOld || 0;
|
||||
if (typeof options.sender === "string") options.sender = [options.sender];
|
||||
if (typeof options.receiver === "string") options.receiver = [options.receiver];
|
||||
return new Promise((resolve, reject) => {
|
||||
this.promisedAPI(`api/addrs/${addr}/txs?from=0&to=1`).then(response => {
|
||||
var newItems = response.totalItems - options.ignoreOld;
|
||||
this.promisedAPI(`api/addrs/${addr}/txs?from=0&to=${newItems*2}`).then(response => {
|
||||
if (options.limit <= 0)
|
||||
options.limit = response.items.length;
|
||||
var filteredData = [];
|
||||
let numToRead = response.totalItems - options.ignoreOld,
|
||||
unconfirmedCount = 0;
|
||||
for (let i = 0; i < numToRead && filteredData.length < options.limit; i++) {
|
||||
if (!response.items[i].confirmations) { //unconfirmed transactions
|
||||
unconfirmedCount++;
|
||||
/*Read flo Data from txs of given Address
|
||||
options can be used to filter data
|
||||
limit : maximum number of filtered data (default = 1000, negative = no limit)
|
||||
ignoreOld : ignore old txs (default = 0)
|
||||
sentOnly : filters only sent data
|
||||
receivedOnly: filters only received data
|
||||
pattern : filters data that with JSON pattern
|
||||
filter : custom filter funtion for floData (eg . filter: d => {return d[0] == '$'})
|
||||
tx : (boolean) resolve tx data or not (resolves an Array of Object with tx details)
|
||||
sender : flo-id(s) of sender
|
||||
receiver : flo-id(s) of receiver
|
||||
*/
|
||||
floBlockchainAPI.readData = function(addr, options = {}) {
|
||||
options.limit = options.limit || 0;
|
||||
options.ignoreOld = options.ignoreOld || 0;
|
||||
if (typeof options.sender === "string") options.sender = [options.sender];
|
||||
if (typeof options.receiver === "string") options.receiver = [options.receiver];
|
||||
return new Promise((resolve, reject) => {
|
||||
promisedAPI(`api/addrs/${addr}/txs?from=0&to=1`).then(response => {
|
||||
var newItems = response.totalItems - options.ignoreOld;
|
||||
promisedAPI(`api/addrs/${addr}/txs?from=0&to=${newItems*2}`).then(response => {
|
||||
if (options.limit <= 0)
|
||||
options.limit = response.items.length;
|
||||
var filteredData = [];
|
||||
let numToRead = response.totalItems - options.ignoreOld,
|
||||
unconfirmedCount = 0;
|
||||
for (let i = 0; i < numToRead && filteredData.length < options.limit; i++) {
|
||||
if (!response.items[i].confirmations) { //unconfirmed transactions
|
||||
unconfirmedCount++;
|
||||
if (numToRead < response.items[i].length)
|
||||
numToRead++;
|
||||
continue;
|
||||
}
|
||||
if (options.pattern) {
|
||||
try {
|
||||
let jsonContent = JSON.parse(response.items[i].floData);
|
||||
if (!Object.keys(jsonContent).includes(options.pattern))
|
||||
continue;
|
||||
} catch (error) {
|
||||
continue;
|
||||
}
|
||||
}
|
||||
if (options.sentOnly) {
|
||||
let flag = false;
|
||||
for (let vin of response.items[i].vin)
|
||||
if (vin.addr === addr) {
|
||||
flag = true;
|
||||
break;
|
||||
}
|
||||
if (!flag) continue;
|
||||
}
|
||||
if (Array.isArray(options.sender)) {
|
||||
let flag = false;
|
||||
for (let vin of response.items[i].vin)
|
||||
if (options.sender.includes(vin.addr)) {
|
||||
flag = true;
|
||||
break;
|
||||
}
|
||||
if (!flag) continue;
|
||||
}
|
||||
if (options.receivedOnly) {
|
||||
let flag = false;
|
||||
for (let vout of response.items[i].vout)
|
||||
if (vout.scriptPubKey.addresses[0] === addr) {
|
||||
flag = true;
|
||||
break;
|
||||
}
|
||||
if (!flag) continue;
|
||||
}
|
||||
if (Array.isArray(options.receiver)) {
|
||||
let flag = false;
|
||||
for (let vout of response.items[i].vout)
|
||||
if (options.receiver.includes(vout.scriptPubKey.addresses[0])) {
|
||||
flag = true;
|
||||
break;
|
||||
}
|
||||
if (!flag) continue;
|
||||
}
|
||||
if (options.filter && !options.filter(response.items[i].floData))
|
||||
continue;
|
||||
|
||||
if (options.tx) {
|
||||
let d = {}
|
||||
d.txid = response.items[i].txid;
|
||||
d.time = response.items[i].time;
|
||||
d.blockheight = response.items[i].blockheight;
|
||||
d.data = response.items[i].floData;
|
||||
filteredData.push(d);
|
||||
} else
|
||||
filteredData.push(response.items[i].floData);
|
||||
continue;
|
||||
}
|
||||
resolve({
|
||||
totalTxs: response.totalItems - unconfirmedCount,
|
||||
data: filteredData
|
||||
});
|
||||
}).catch(error => {
|
||||
reject(error);
|
||||
if (options.pattern) {
|
||||
try {
|
||||
let jsonContent = JSON.parse(response.items[i].floData);
|
||||
if (!Object.keys(jsonContent).includes(options.pattern))
|
||||
continue;
|
||||
} catch (error) {
|
||||
continue;
|
||||
}
|
||||
}
|
||||
if (options.sentOnly) {
|
||||
let flag = false;
|
||||
for (let vin of response.items[i].vin)
|
||||
if (vin.addr === addr) {
|
||||
flag = true;
|
||||
break;
|
||||
}
|
||||
if (!flag) continue;
|
||||
}
|
||||
if (Array.isArray(options.sender)) {
|
||||
let flag = false;
|
||||
for (let vin of response.items[i].vin)
|
||||
if (options.sender.includes(vin.addr)) {
|
||||
flag = true;
|
||||
break;
|
||||
}
|
||||
if (!flag) continue;
|
||||
}
|
||||
if (options.receivedOnly) {
|
||||
let flag = false;
|
||||
for (let vout of response.items[i].vout)
|
||||
if (vout.scriptPubKey.addresses[0] === addr) {
|
||||
flag = true;
|
||||
break;
|
||||
}
|
||||
if (!flag) continue;
|
||||
}
|
||||
if (Array.isArray(options.receiver)) {
|
||||
let flag = false;
|
||||
for (let vout of response.items[i].vout)
|
||||
if (options.receiver.includes(vout.scriptPubKey.addresses[0])) {
|
||||
flag = true;
|
||||
break;
|
||||
}
|
||||
if (!flag) continue;
|
||||
}
|
||||
if (options.filter && !options.filter(response.items[i].floData))
|
||||
continue;
|
||||
|
||||
if (options.tx) {
|
||||
let d = {}
|
||||
d.txid = response.items[i].txid;
|
||||
d.time = response.items[i].time;
|
||||
d.blockheight = response.items[i].blockheight;
|
||||
d.data = response.items[i].floData;
|
||||
filteredData.push(d);
|
||||
} else
|
||||
filteredData.push(response.items[i].floData);
|
||||
}
|
||||
resolve({
|
||||
totalTxs: response.totalItems - unconfirmedCount,
|
||||
data: filteredData
|
||||
});
|
||||
}).catch(error => {
|
||||
reject(error);
|
||||
});
|
||||
}).catch(error => {
|
||||
reject(error);
|
||||
});
|
||||
}
|
||||
});
|
||||
}
|
||||
})(typeof global !== "undefined" ? global : window);
|
||||
|
||||
|
||||
})('object' === typeof module ? module.exports : window.floBlockchainAPI = {});
|
||||
@ -1,339 +1,313 @@
|
||||
'use strict';
|
||||
(function(EXPORTS) { //floCrypto v2.3.0a
|
||||
/* FLO Crypto Operators */
|
||||
'use strict';
|
||||
const floCrypto = EXPORTS;
|
||||
|
||||
(function(GLOBAL) {
|
||||
const floCrypto = GLOBAL.floCrypto = {
|
||||
const p = BigInteger("FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFEFFFFFC2F", 16);
|
||||
const ecparams = EllipticCurve.getSECCurveByName("secp256k1");
|
||||
const ascii_alternatives = `‘ '\n’ '\n“ "\n” "\n– --\n— ---\n≥ >=\n≤ <=\n≠ !=\n× *\n÷ /\n← <-\n→ ->\n↔ <->\n⇒ =>\n⇐ <=\n⇔ <=>`;
|
||||
const exponent1 = () => p.add(BigInteger.ONE).divide(BigInteger("4"));
|
||||
|
||||
util: {
|
||||
p: BigInteger("FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFEFFFFFC2F", 16),
|
||||
function calculateY(x) {
|
||||
let exp = exponent1();
|
||||
// x is x value of public key in BigInteger format without 02 or 03 or 04 prefix
|
||||
return x.modPow(BigInteger("3"), p).add(BigInteger("7")).mod(p).modPow(exp, p)
|
||||
}
|
||||
|
||||
ecparams: EllipticCurve.getSECCurveByName("secp256k1"),
|
||||
function getUncompressedPublicKey(compressedPublicKey) {
|
||||
// Fetch x from compressedPublicKey
|
||||
let pubKeyBytes = Crypto.util.hexToBytes(compressedPublicKey);
|
||||
const prefix = pubKeyBytes.shift() // remove prefix
|
||||
let prefix_modulus = prefix % 2;
|
||||
pubKeyBytes.unshift(0) // add prefix 0
|
||||
let x = new BigInteger(pubKeyBytes)
|
||||
let xDecimalValue = x.toString()
|
||||
// Fetch y
|
||||
let y = calculateY(x);
|
||||
let yDecimalValue = y.toString();
|
||||
// verify y value
|
||||
let resultBigInt = y.mod(BigInteger("2"));
|
||||
let check = resultBigInt.toString() % 2;
|
||||
if (prefix_modulus !== check)
|
||||
yDecimalValue = y.negate().mod(p).toString();
|
||||
return {
|
||||
x: xDecimalValue,
|
||||
y: yDecimalValue
|
||||
};
|
||||
}
|
||||
|
||||
asciiAlternatives: `‘ '\n’ '\n“ "\n” "\n– --\n— ---\n≥ >=\n≤ <=\n≠ !=\n× *\n÷ /\n← <-\n→ ->\n↔ <->\n⇒ =>\n⇐ <=\n⇔ <=>`,
|
||||
|
||||
exponent1: function() {
|
||||
return this.p.add(BigInteger.ONE).divide(BigInteger("4"))
|
||||
},
|
||||
|
||||
calculateY: function(x) {
|
||||
let p = this.p;
|
||||
let exp = this.exponent1();
|
||||
// x is x value of public key in BigInteger format without 02 or 03 or 04 prefix
|
||||
return x.modPow(BigInteger("3"), p).add(BigInteger("7")).mod(p).modPow(exp, p)
|
||||
},
|
||||
getUncompressedPublicKey: function(compressedPublicKey) {
|
||||
const p = this.p;
|
||||
// Fetch x from compressedPublicKey
|
||||
let pubKeyBytes = Crypto.util.hexToBytes(compressedPublicKey);
|
||||
const prefix = pubKeyBytes.shift() // remove prefix
|
||||
let prefix_modulus = prefix % 2;
|
||||
pubKeyBytes.unshift(0) // add prefix 0
|
||||
let x = new BigInteger(pubKeyBytes)
|
||||
let xDecimalValue = x.toString()
|
||||
// Fetch y
|
||||
let y = this.calculateY(x);
|
||||
let yDecimalValue = y.toString();
|
||||
// verify y value
|
||||
let resultBigInt = y.mod(BigInteger("2"));
|
||||
let check = resultBigInt.toString() % 2;
|
||||
if (prefix_modulus !== check)
|
||||
yDecimalValue = y.negate().mod(p).toString();
|
||||
return {
|
||||
x: xDecimalValue,
|
||||
y: yDecimalValue
|
||||
};
|
||||
},
|
||||
|
||||
getSenderPublicKeyString: function() {
|
||||
let privateKey = ellipticCurveEncryption.senderRandom();
|
||||
var senderPublicKeyString = ellipticCurveEncryption.senderPublicString(privateKey);
|
||||
return {
|
||||
privateKey: privateKey,
|
||||
senderPublicKeyString: senderPublicKeyString
|
||||
}
|
||||
},
|
||||
|
||||
deriveSharedKeySender: function(receiverCompressedPublicKey, senderPrivateKey) {
|
||||
let receiverPublicKeyString = this.getUncompressedPublicKey(receiverCompressedPublicKey);
|
||||
var senderDerivedKey = ellipticCurveEncryption.senderSharedKeyDerivation(
|
||||
receiverPublicKeyString.x, receiverPublicKeyString.y, senderPrivateKey);
|
||||
return senderDerivedKey;
|
||||
},
|
||||
|
||||
deriveReceiverSharedKey: function(senderPublicKeyString, receiverPrivateKey) {
|
||||
return ellipticCurveEncryption.receiverSharedKeyDerivation(
|
||||
senderPublicKeyString.XValuePublicString, senderPublicKeyString.YValuePublicString, receiverPrivateKey);
|
||||
},
|
||||
|
||||
getReceiverPublicKeyString: function(privateKey) {
|
||||
return ellipticCurveEncryption.receiverPublicString(privateKey);
|
||||
},
|
||||
|
||||
deriveSharedKeyReceiver: function(senderPublicKeyString, receiverPrivateKey) {
|
||||
return ellipticCurveEncryption.receiverSharedKeyDerivation(
|
||||
senderPublicKeyString.XValuePublicString, senderPublicKeyString.YValuePublicString, receiverPrivateKey);
|
||||
},
|
||||
|
||||
wifToDecimal: function(pk_wif, isPubKeyCompressed = false) {
|
||||
let pk = Bitcoin.Base58.decode(pk_wif)
|
||||
pk.shift()
|
||||
pk.splice(-4, 4)
|
||||
//If the private key corresponded to a compressed public key, also drop the last byte (it should be 0x01).
|
||||
if (isPubKeyCompressed == true) pk.pop()
|
||||
pk.unshift(0)
|
||||
let privateKeyDecimal = BigInteger(pk).toString()
|
||||
let privateKeyHex = Crypto.util.bytesToHex(pk)
|
||||
return {
|
||||
privateKeyDecimal: privateKeyDecimal,
|
||||
privateKeyHex: privateKeyHex
|
||||
}
|
||||
}
|
||||
},
|
||||
|
||||
//generate a random Interger within range
|
||||
randInt: function(min, max) {
|
||||
min = Math.ceil(min);
|
||||
max = Math.floor(max);
|
||||
return Math.floor(Math.random() * (max - min + 1)) + min;
|
||||
},
|
||||
|
||||
//generate a random String within length (options : alphaNumeric chars only)
|
||||
randString: function(length, alphaNumeric = true) {
|
||||
var result = '';
|
||||
if (alphaNumeric)
|
||||
var characters = 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789';
|
||||
else
|
||||
var characters =
|
||||
'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789_+-./*?@#&$<>=[]{}():';
|
||||
for (var i = 0; i < length; i++)
|
||||
result += characters.charAt(Math.floor(Math.random() * characters.length));
|
||||
return result;
|
||||
},
|
||||
|
||||
//Encrypt Data using public-key
|
||||
encryptData: function(data, receiverCompressedPublicKey) {
|
||||
var senderECKeyData = this.util.getSenderPublicKeyString();
|
||||
var senderDerivedKey = this.util.deriveSharedKeySender(receiverCompressedPublicKey, senderECKeyData
|
||||
.privateKey);
|
||||
let senderKey = senderDerivedKey.XValue + senderDerivedKey.YValue;
|
||||
let secret = Crypto.AES.encrypt(data, senderKey);
|
||||
return {
|
||||
secret: secret,
|
||||
senderPublicKeyString: senderECKeyData.senderPublicKeyString
|
||||
};
|
||||
},
|
||||
|
||||
//Decrypt Data using private-key
|
||||
decryptData: function(data, myPrivateKey) {
|
||||
var receiverECKeyData = {};
|
||||
if (typeof myPrivateKey !== "string") throw new Error("No private key found.");
|
||||
|
||||
let privateKey = this.util.wifToDecimal(myPrivateKey, true);
|
||||
if (typeof privateKey.privateKeyDecimal !== "string") throw new Error(
|
||||
"Failed to detremine your private key.");
|
||||
receiverECKeyData.privateKey = privateKey.privateKeyDecimal;
|
||||
|
||||
var receiverDerivedKey = this.util.deriveReceiverSharedKey(data.senderPublicKeyString,
|
||||
receiverECKeyData
|
||||
.privateKey);
|
||||
|
||||
let receiverKey = receiverDerivedKey.XValue + receiverDerivedKey.YValue;
|
||||
let decryptMsg = Crypto.AES.decrypt(data.secret, receiverKey);
|
||||
return decryptMsg;
|
||||
},
|
||||
|
||||
//Sign data using private-key
|
||||
signData: function(data, privateKeyHex) {
|
||||
var key = new Bitcoin.ECKey(privateKeyHex);
|
||||
key.setCompressed(true);
|
||||
|
||||
var privateKeyArr = key.getBitcoinPrivateKeyByteArray();
|
||||
var privateKey = BigInteger.fromByteArrayUnsigned(privateKeyArr);
|
||||
var messageHash = Crypto.SHA256(data);
|
||||
|
||||
var messageHashBigInteger = new BigInteger(messageHash);
|
||||
var messageSign = Bitcoin.ECDSA.sign(messageHashBigInteger, key.priv);
|
||||
|
||||
var sighex = Crypto.util.bytesToHex(messageSign);
|
||||
return sighex;
|
||||
},
|
||||
|
||||
//Verify signatue of the data using public-key
|
||||
verifySign: function(data, signatureHex, publicKeyHex) {
|
||||
var msgHash = Crypto.SHA256(data);
|
||||
var messageHashBigInteger = new BigInteger(msgHash);
|
||||
|
||||
var sigBytes = Crypto.util.hexToBytes(signatureHex);
|
||||
var signature = Bitcoin.ECDSA.parseSig(sigBytes);
|
||||
|
||||
var publicKeyPoint = this.util.ecparams.getCurve().decodePointHex(publicKeyHex);
|
||||
|
||||
var verify = Bitcoin.ECDSA.verifyRaw(messageHashBigInteger, signature.r, signature.s,
|
||||
publicKeyPoint);
|
||||
return verify;
|
||||
},
|
||||
|
||||
//Generates a new flo ID and returns private-key, public-key and floID
|
||||
generateNewID: function() {
|
||||
try {
|
||||
var key = new Bitcoin.ECKey(false);
|
||||
key.setCompressed(true);
|
||||
return {
|
||||
floID: key.getBitcoinAddress(),
|
||||
pubKey: key.getPubKeyHex(),
|
||||
privKey: key.getBitcoinWalletImportFormat()
|
||||
}
|
||||
} catch (e) {
|
||||
console.error(e);
|
||||
}
|
||||
},
|
||||
|
||||
//Returns public-key from private-key
|
||||
getPubKeyHex: function(privateKeyHex) {
|
||||
if (!privateKeyHex)
|
||||
return null;
|
||||
var key = new Bitcoin.ECKey(privateKeyHex);
|
||||
if (key.priv == null)
|
||||
return null;
|
||||
key.setCompressed(true);
|
||||
return key.getPubKeyHex();
|
||||
},
|
||||
|
||||
//Returns flo-ID from public-key or private-key
|
||||
getFloID: function(keyHex) {
|
||||
if (!keyHex)
|
||||
return null;
|
||||
try {
|
||||
var key = new Bitcoin.ECKey(keyHex);
|
||||
if (key.priv == null)
|
||||
key.setPub(keyHex);
|
||||
return key.getBitcoinAddress();
|
||||
} catch (e) {
|
||||
return null;
|
||||
}
|
||||
},
|
||||
|
||||
//Verify the private-key for the given public-key or flo-ID
|
||||
verifyPrivKey: function(privateKeyHex, pubKey_floID, isfloID = true) {
|
||||
if (!privateKeyHex || !pubKey_floID)
|
||||
return false;
|
||||
try {
|
||||
var key = new Bitcoin.ECKey(privateKeyHex);
|
||||
if (key.priv == null)
|
||||
return false;
|
||||
key.setCompressed(true);
|
||||
if (isfloID && pubKey_floID == key.getBitcoinAddress())
|
||||
return true;
|
||||
else if (!isfloID && pubKey_floID == key.getPubKeyHex())
|
||||
return true;
|
||||
else
|
||||
return false;
|
||||
} catch (e) {
|
||||
console.error(e);
|
||||
}
|
||||
},
|
||||
|
||||
//Check if the given Address is valid or not
|
||||
validateAddr: function(inpAddr) {
|
||||
if (!inpAddr)
|
||||
return false;
|
||||
try {
|
||||
var addr = new Bitcoin.Address(inpAddr);
|
||||
return true;
|
||||
} catch {
|
||||
return false;
|
||||
}
|
||||
},
|
||||
|
||||
//Split the str using shamir's Secret and Returns the shares
|
||||
createShamirsSecretShares: function(str, total_shares, threshold_limit) {
|
||||
try {
|
||||
if (str.length > 0) {
|
||||
var strHex = shamirSecretShare.str2hex(str);
|
||||
var shares = shamirSecretShare.share(strHex, total_shares, threshold_limit);
|
||||
return shares;
|
||||
}
|
||||
return false;
|
||||
} catch {
|
||||
return false
|
||||
}
|
||||
},
|
||||
|
||||
//Verifies the shares and str
|
||||
verifyShamirsSecret: function(sharesArray, str) {
|
||||
return (str && this.retrieveShamirSecret(sharesArray) === str)
|
||||
},
|
||||
|
||||
//Returns the retrived secret by combining the shamirs shares
|
||||
retrieveShamirSecret: function(sharesArray) {
|
||||
try {
|
||||
if (sharesArray.length > 0) {
|
||||
var comb = shamirSecretShare.combine(sharesArray.slice(0, sharesArray.length));
|
||||
comb = shamirSecretShare.hex2str(comb);
|
||||
return comb;
|
||||
}
|
||||
return false;
|
||||
} catch {
|
||||
return false;
|
||||
}
|
||||
},
|
||||
|
||||
validateASCII: function(string, bool = true) {
|
||||
if (typeof string !== "string")
|
||||
return null;
|
||||
if (bool) {
|
||||
let x;
|
||||
for (let i = 0; i < string.length; i++) {
|
||||
x = string.charCodeAt(i);
|
||||
if (x < 32 || x > 127)
|
||||
return false;
|
||||
}
|
||||
return true;
|
||||
} else {
|
||||
let x, invalids = {};
|
||||
for (let i = 0; i < string.length; i++) {
|
||||
x = string.charCodeAt(i);
|
||||
if (x < 32 || x > 127)
|
||||
if (x in invalids)
|
||||
invalids[string[i]].push(i)
|
||||
else
|
||||
invalids[string[i]] = [i];
|
||||
}
|
||||
if (Object.keys(invalids).length)
|
||||
return invalids;
|
||||
else
|
||||
return true;
|
||||
}
|
||||
},
|
||||
|
||||
convertToASCII: function(string, mode = 'soft-remove') {
|
||||
let chars = this.validateASCII(string, false);
|
||||
if (chars === true)
|
||||
return string;
|
||||
else if (chars === null)
|
||||
return null;
|
||||
let convertor, result = string,
|
||||
refAlt = {};
|
||||
this.util.asciiAlternatives.split('\n').forEach(a => refAlt[a[0]] = a.slice(2));
|
||||
mode = mode.toLowerCase();
|
||||
if (mode === "hard-unicode")
|
||||
convertor = (c) => `\\u${('000'+c.charCodeAt().toString(16)).slice(-4)}`;
|
||||
else if (mode === "soft-unicode")
|
||||
convertor = (c) => refAlt[c] || `\\u${('000'+c.charCodeAt().toString(16)).slice(-4)}`;
|
||||
else if (mode === "hard-remove")
|
||||
convertor = c => "";
|
||||
else if (mode === "soft-remove")
|
||||
convertor = c => refAlt[c] || "";
|
||||
else
|
||||
return null;
|
||||
for (let c in chars)
|
||||
result = result.replaceAll(c, convertor(c));
|
||||
return result;
|
||||
},
|
||||
|
||||
revertUnicode: function(string) {
|
||||
return string.replace(/\\u[\dA-F]{4}/gi,
|
||||
m => String.fromCharCode(parseInt(m.replace(/\\u/g, ''), 16)));
|
||||
function getSenderPublicKeyString() {
|
||||
let privateKey = ellipticCurveEncryption.senderRandom();
|
||||
var senderPublicKeyString = ellipticCurveEncryption.senderPublicString(privateKey);
|
||||
return {
|
||||
privateKey: privateKey,
|
||||
senderPublicKeyString: senderPublicKeyString
|
||||
}
|
||||
}
|
||||
|
||||
})(typeof global !== "undefined" ? global : window);
|
||||
function deriveSharedKeySender(receiverPublicKeyHex, senderPrivateKey) {
|
||||
let receiverPublicKeyString = getUncompressedPublicKey(receiverPublicKeyHex);
|
||||
var senderDerivedKey = ellipticCurveEncryption.senderSharedKeyDerivation(
|
||||
receiverPublicKeyString.x, receiverPublicKeyString.y, senderPrivateKey);
|
||||
return senderDerivedKey;
|
||||
}
|
||||
|
||||
function deriveSharedKeyReceiver(senderPublicKeyString, receiverPrivateKey) {
|
||||
return ellipticCurveEncryption.receiverSharedKeyDerivation(
|
||||
senderPublicKeyString.XValuePublicString, senderPublicKeyString.YValuePublicString, receiverPrivateKey);
|
||||
}
|
||||
|
||||
function getReceiverPublicKeyString(privateKey) {
|
||||
return ellipticCurveEncryption.receiverPublicString(privateKey);
|
||||
}
|
||||
|
||||
function wifToDecimal(pk_wif, isPubKeyCompressed = false) {
|
||||
let pk = Bitcoin.Base58.decode(pk_wif)
|
||||
pk.shift()
|
||||
pk.splice(-4, 4)
|
||||
//If the private key corresponded to a compressed public key, also drop the last byte (it should be 0x01).
|
||||
if (isPubKeyCompressed == true) pk.pop()
|
||||
pk.unshift(0)
|
||||
let privateKeyDecimal = BigInteger(pk).toString()
|
||||
let privateKeyHex = Crypto.util.bytesToHex(pk)
|
||||
return {
|
||||
privateKeyDecimal: privateKeyDecimal,
|
||||
privateKeyHex: privateKeyHex
|
||||
}
|
||||
}
|
||||
|
||||
//generate a random Interger within range
|
||||
floCrypto.randInt = function(min, max) {
|
||||
min = Math.ceil(min);
|
||||
max = Math.floor(max);
|
||||
return Math.floor(Math.random() * (max - min + 1)) + min;
|
||||
}
|
||||
|
||||
//generate a random String within length (options : alphaNumeric chars only)
|
||||
floCrypto.randString = function(length, alphaNumeric = true) {
|
||||
var result = '';
|
||||
var characters = alphaNumeric ? 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789' :
|
||||
'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789_+-./*?@#&$<>=[]{}():';
|
||||
for (var i = 0; i < length; i++)
|
||||
result += characters.charAt(Math.floor(Math.random() * characters.length));
|
||||
return result;
|
||||
}
|
||||
|
||||
//Encrypt Data using public-key
|
||||
floCrypto.encryptData = function(data, receiverPublicKeyHex) {
|
||||
var senderECKeyData = getSenderPublicKeyString();
|
||||
var senderDerivedKey = deriveSharedKeySender(receiverPublicKeyHex, senderECKeyData.privateKey);
|
||||
let senderKey = senderDerivedKey.XValue + senderDerivedKey.YValue;
|
||||
let secret = Crypto.AES.encrypt(data, senderKey);
|
||||
return {
|
||||
secret: secret,
|
||||
senderPublicKeyString: senderECKeyData.senderPublicKeyString
|
||||
};
|
||||
}
|
||||
|
||||
//Decrypt Data using private-key
|
||||
floCrypto.decryptData = function(data, privateKeyHex) {
|
||||
var receiverECKeyData = {};
|
||||
if (typeof privateKeyHex !== "string") throw new Error("No private key found.");
|
||||
let privateKey = wifToDecimal(privateKeyHex, true);
|
||||
if (typeof privateKey.privateKeyDecimal !== "string") throw new Error("Failed to detremine your private key.");
|
||||
receiverECKeyData.privateKey = privateKey.privateKeyDecimal;
|
||||
var receiverDerivedKey = deriveSharedKeyReceiver(data.senderPublicKeyString, receiverECKeyData.privateKey);
|
||||
let receiverKey = receiverDerivedKey.XValue + receiverDerivedKey.YValue;
|
||||
let decryptMsg = Crypto.AES.decrypt(data.secret, receiverKey);
|
||||
return decryptMsg;
|
||||
}
|
||||
|
||||
//Sign data using private-key
|
||||
floCrypto.signData = function(data, privateKeyHex) {
|
||||
var key = new Bitcoin.ECKey(privateKeyHex);
|
||||
key.setCompressed(true);
|
||||
var privateKeyArr = key.getBitcoinPrivateKeyByteArray();
|
||||
var privateKey = BigInteger.fromByteArrayUnsigned(privateKeyArr);
|
||||
var messageHash = Crypto.SHA256(data);
|
||||
var messageHashBigInteger = new BigInteger(messageHash);
|
||||
var messageSign = Bitcoin.ECDSA.sign(messageHashBigInteger, key.priv);
|
||||
var sighex = Crypto.util.bytesToHex(messageSign);
|
||||
return sighex;
|
||||
}
|
||||
|
||||
//Verify signatue of the data using public-key
|
||||
floCrypto.verifySign = function(data, signatureHex, publicKeyHex) {
|
||||
var msgHash = Crypto.SHA256(data);
|
||||
var messageHashBigInteger = new BigInteger(msgHash);
|
||||
var sigBytes = Crypto.util.hexToBytes(signatureHex);
|
||||
var signature = Bitcoin.ECDSA.parseSig(sigBytes);
|
||||
var publicKeyPoint = ecparams.getCurve().decodePointHex(publicKeyHex);
|
||||
var verify = Bitcoin.ECDSA.verifyRaw(messageHashBigInteger, signature.r, signature.s, publicKeyPoint);
|
||||
return verify;
|
||||
}
|
||||
|
||||
//Generates a new flo ID and returns private-key, public-key and floID
|
||||
const generateNewID = floCrypto.generateNewID = function() {
|
||||
var key = new Bitcoin.ECKey(false);
|
||||
key.setCompressed(true);
|
||||
return {
|
||||
floID: key.getBitcoinAddress(),
|
||||
pubKey: key.getPubKeyHex(),
|
||||
privKey: key.getBitcoinWalletImportFormat()
|
||||
}
|
||||
}
|
||||
|
||||
Object.defineProperty(floCrypto, 'newID', {
|
||||
get: () => generateNewID()
|
||||
});
|
||||
|
||||
//Returns public-key from private-key
|
||||
floCrypto.getPubKeyHex = function(privateKeyHex) {
|
||||
if (!privateKeyHex)
|
||||
return null;
|
||||
var key = new Bitcoin.ECKey(privateKeyHex);
|
||||
if (key.priv == null)
|
||||
return null;
|
||||
key.setCompressed(true);
|
||||
return key.getPubKeyHex();
|
||||
}
|
||||
|
||||
//Returns flo-ID from public-key or private-key
|
||||
floCrypto.getFloID = function(keyHex) {
|
||||
if (!keyHex)
|
||||
return null;
|
||||
try {
|
||||
var key = new Bitcoin.ECKey(keyHex);
|
||||
if (key.priv == null)
|
||||
key.setPub(keyHex);
|
||||
return key.getBitcoinAddress();
|
||||
} catch {
|
||||
return null;
|
||||
}
|
||||
}
|
||||
|
||||
//Verify the private-key for the given public-key or flo-ID
|
||||
floCrypto.verifyPrivKey = function(privateKeyHex, pubKey_floID, isfloID = true) {
|
||||
if (!privateKeyHex || !pubKey_floID)
|
||||
return false;
|
||||
try {
|
||||
var key = new Bitcoin.ECKey(privateKeyHex);
|
||||
if (key.priv == null)
|
||||
return false;
|
||||
key.setCompressed(true);
|
||||
if (isfloID && pubKey_floID == key.getBitcoinAddress())
|
||||
return true;
|
||||
else if (!isfloID && pubKey_floID == key.getPubKeyHex())
|
||||
return true;
|
||||
else
|
||||
return false;
|
||||
} catch {
|
||||
return null;
|
||||
}
|
||||
}
|
||||
|
||||
//Check if the given Address is valid or not
|
||||
floCrypto.validateFloID = floCrypto.validateAddr = function(inpAddr) {
|
||||
if (!inpAddr)
|
||||
return false;
|
||||
try {
|
||||
let addr = new Bitcoin.Address(inpAddr);
|
||||
return true;
|
||||
} catch {
|
||||
return false;
|
||||
}
|
||||
}
|
||||
|
||||
//Split the str using shamir's Secret and Returns the shares
|
||||
floCrypto.createShamirsSecretShares = function(str, total_shares, threshold_limit) {
|
||||
try {
|
||||
if (str.length > 0) {
|
||||
var strHex = shamirSecretShare.str2hex(str);
|
||||
var shares = shamirSecretShare.share(strHex, total_shares, threshold_limit);
|
||||
return shares;
|
||||
}
|
||||
return false;
|
||||
} catch {
|
||||
return false
|
||||
}
|
||||
}
|
||||
|
||||
//Returns the retrived secret by combining the shamirs shares
|
||||
const retrieveShamirSecret = floCrypto.retrieveShamirSecret = function(sharesArray) {
|
||||
try {
|
||||
if (sharesArray.length > 0) {
|
||||
var comb = shamirSecretShare.combine(sharesArray.slice(0, sharesArray.length));
|
||||
comb = shamirSecretShare.hex2str(comb);
|
||||
return comb;
|
||||
}
|
||||
return false;
|
||||
} catch {
|
||||
return false;
|
||||
}
|
||||
}
|
||||
|
||||
//Verifies the shares and str
|
||||
floCrypto.verifyShamirsSecret = function(sharesArray, str) {
|
||||
if (!str)
|
||||
return null;
|
||||
else if (retrieveShamirSecret(sharesArray) === str)
|
||||
return true;
|
||||
else
|
||||
return false;
|
||||
}
|
||||
|
||||
const validateASCII = floCrypto.validateASCII = function(string, bool = true) {
|
||||
if (typeof string !== "string")
|
||||
return null;
|
||||
if (bool) {
|
||||
let x;
|
||||
for (let i = 0; i < string.length; i++) {
|
||||
x = string.charCodeAt(i);
|
||||
if (x < 32 || x > 127)
|
||||
return false;
|
||||
}
|
||||
return true;
|
||||
} else {
|
||||
let x, invalids = {};
|
||||
for (let i = 0; i < string.length; i++) {
|
||||
x = string.charCodeAt(i);
|
||||
if (x < 32 || x > 127)
|
||||
if (x in invalids)
|
||||
invalids[string[i]].push(i)
|
||||
else
|
||||
invalids[string[i]] = [i];
|
||||
}
|
||||
if (Object.keys(invalids).length)
|
||||
return invalids;
|
||||
else
|
||||
return true;
|
||||
}
|
||||
}
|
||||
|
||||
floCrypto.convertToASCII = function(string, mode = 'soft-remove') {
|
||||
let chars = validateASCII(string, false);
|
||||
if (chars === true)
|
||||
return string;
|
||||
else if (chars === null)
|
||||
return null;
|
||||
let convertor, result = string,
|
||||
refAlt = {};
|
||||
ascii_alternatives.split('\n').forEach(a => refAlt[a[0]] = a.slice(2));
|
||||
mode = mode.toLowerCase();
|
||||
if (mode === "hard-unicode")
|
||||
convertor = (c) => `\\u${('000'+c.charCodeAt().toString(16)).slice(-4)}`;
|
||||
else if (mode === "soft-unicode")
|
||||
convertor = (c) => refAlt[c] || `\\u${('000'+c.charCodeAt().toString(16)).slice(-4)}`;
|
||||
else if (mode === "hard-remove")
|
||||
convertor = c => "";
|
||||
else if (mode === "soft-remove")
|
||||
convertor = c => refAlt[c] || "";
|
||||
else
|
||||
return null;
|
||||
for (let c in chars)
|
||||
result = result.replaceAll(c, convertor(c));
|
||||
return result;
|
||||
}
|
||||
|
||||
floCrypto.revertUnicode = function(string) {
|
||||
return string.replace(/\\u[\dA-F]{4}/gi,
|
||||
m => String.fromCharCode(parseInt(m.replace(/\\u/g, ''), 16)));
|
||||
}
|
||||
|
||||
})('object' === typeof module ? module.exports : window.floCrypto = {});
|
||||
12564
docs/scripts/lib.js
12564
docs/scripts/lib.js
File diff suppressed because it is too large
Load Diff
@ -1,10 +1,10 @@
|
||||
const fs = require('fs');
|
||||
const getInput = require('./getInput');
|
||||
|
||||
const floGlobals = require('../docs/scripts/floGlobals');
|
||||
global.floGlobals = require('../docs/scripts/floGlobals');
|
||||
require('../src/set_globals');
|
||||
require('../docs/scripts/lib');
|
||||
require('../docs/scripts/floCrypto');
|
||||
const floCrypto = require('../docs/scripts/floCrypto');
|
||||
|
||||
console.log(__dirname);
|
||||
|
||||
|
||||
@ -2,8 +2,8 @@
|
||||
global.floGlobals = require('../docs/scripts/floGlobals');
|
||||
require('./set_globals');
|
||||
require('../docs/scripts/lib');
|
||||
require('../docs/scripts/floCrypto');
|
||||
require('../docs/scripts/floBlockchainAPI');
|
||||
global.floCrypto = require('../docs/scripts/floCrypto');
|
||||
global.floBlockchainAPI = require('../docs/scripts/floBlockchainAPI');
|
||||
require('../docs/scripts/floTokenAPI');
|
||||
|
||||
const Database = require("./database");
|
||||
|
||||
Loading…
Reference in New Issue
Block a user