mirror of
https://github.com/tornadocash/tornado-core.git
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123 lines
4.0 KiB
JavaScript
123 lines
4.0 KiB
JavaScript
// This file is a bit of a mess because of different bigInt formats in websnark and snarkjs
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// It will be rewritten during browser integration
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const fs = require('fs');
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const circom = require("circom");
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const snarkjs = require("snarkjs");
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const groth = snarkjs["groth"];
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const crypto = require("crypto");
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const circomlib = require('circomlib');
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const pedersen = circomlib.pedersenHash;
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const babyjub = circomlib.babyJub;
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const mimcsponge = circomlib.mimcsponge;
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const bigInt = snarkjs.bigInt;
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const buildGroth16 = require('websnark/src/groth16');
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const stringifyBigInts = require("websnark/tools/stringifybigint").stringifyBigInts;
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const unstringifyBigInts = require("websnark/tools/stringifybigint").unstringifyBigInts;
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const stringifyBigInts2 = require("snarkjs/src/stringifybigint").stringifyBigInts;
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const unstringifyBigInts2 = require("snarkjs/src/stringifybigint").unstringifyBigInts;
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const rbigint = (nbytes) => snarkjs.bigInt.leBuff2int(crypto.randomBytes(nbytes));
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function unhexBigInts(o) {
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if ((typeof(o) == "string") && (/^0x[0-9a-fA-F]+$/.test(o))) {
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return bigInt(o);
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} else if (Array.isArray(o)) {
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return o.map(unhexBigInts);
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} else if (typeof o == "object") {
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const res = {};
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for (let k in o) {
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res[k] = unhexBigInts(o[k]);
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}
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return res;
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} else {
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return o;
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}
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}
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function pedersenHash(data) {
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return babyjub.unpackPoint(pedersen.hash(data))[0];
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}
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function mimcHash(left, right) {
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return mimcsponge.multiHash([bigInt(left), bigInt(right)]).toString();
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}
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function p256(o) {
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if ((typeof(o) == "bigint") || (o instanceof bigInt)) {
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let nstr = o.toString(16);
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while (nstr.length < 64) nstr = "0"+nstr;
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nstr = "0x"+nstr;
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return nstr;
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} else if (Array.isArray(o)) {
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return o.map(p256);
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} else if (typeof o == "object") {
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const res = {};
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for (let k in o) {
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if (k === "value") {
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return p256(o[k]);
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}
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res[k] = p256(o[k]);
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}
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return res;
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} else {
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return o;
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}
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}
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function convertWitness(witness) {
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witness = unstringifyBigInts(witness);
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const buffLen = witness.length * 32;
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const buff = new ArrayBuffer(buffLen);
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const h = {
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dataView: new DataView(buff),
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offset: 0
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};
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for (let i=0; i<witness.length; i++) {
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for (let j=0; j<8; j++) {
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const v = witness[i].shiftRight(j*32).and(0xFFFFFFFF).toJSNumber();
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h.dataView.setUint32(h.offset, v, true);
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h.offset += 4;
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}
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}
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return buff;
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}
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async function snarkProof(input) {
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input = unstringifyBigInts2(input);
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const circuit = new snarkjs.Circuit(unstringifyBigInts2(require("../build/circuits/withdraw.json")));
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const pwd = process.cwd()
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let pathToProvingKey = 'build/circuits/withdraw_proving_key.bin'
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if (pwd.split('/').pop() === 'scripts') {
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pathToProvingKey = '../build/circuits/withdraw_proving_key.bin'
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}
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const proving_key = fs.readFileSync(pathToProvingKey);
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const witness = circuit.calculateWitness(input);
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const witnessBin = convertWitness(stringifyBigInts2(witness));
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const publicSignals = witness.slice(1, circuit.nPubInputs + circuit.nOutputs + 1);
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const groth16 = await buildGroth16();
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let proof = await groth16.proof(witnessBin, proving_key.buffer);
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return p256(unstringifyBigInts2(stringifyBigInts({
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pi_a: [proof.pi_a[0], proof.pi_a[1]],
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pi_b: [[proof.pi_b[0][1], proof.pi_b[0][0]], [proof.pi_b[1][1], proof.pi_b[1][0]]],
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pi_c: [proof.pi_c[0], proof.pi_c[1]],
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publicSignals: publicSignals,
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})));
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}
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async function snarkVerify(proof) {
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proof = unhexBigInts(proof);
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const verification_key = unstringifyBigInts2(require('../build/circuits/withdraw_verification_key.json'));
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const data = {
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pi_a: [proof.pi_a[0], proof.pi_a[1], bigInt(1)],
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pi_b: [[proof.pi_b[0][1], proof.pi_b[0][0]], [proof.pi_b[1][1], proof.pi_b[1][0]], [bigInt(1), bigInt(0)]],
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pi_c: [proof.pi_c[0], proof.pi_c[1], bigInt(1)]
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};
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return groth.isValid(verification_key, data, proof.publicSignals);
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}
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module.exports = {rbigint, pedersenHash, snarkProof, mimcHash, snarkVerify, unhexBigInts};
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