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Snark test
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@ -1,4 +1,3 @@
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include "../node_modules/circomlib/circuits/bitify.circom";
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include "../node_modules/circomlib/circuits/mimcsponge.circom";
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// Computes MiMC(left + right)
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@ -71,4 +70,4 @@ template MerkleTree(levels, rounds) {
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}
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root === hashers[levels - 1].hash;
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}
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}
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55
test/test_snark.js
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55
test/test_snark.js
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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 circomlib = require('circomlib');
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const bigInt = snarkjs.bigInt;
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const stringifyBigInts = require("../node_modules/websnark/tools/stringifybigint.js").stringifyBigInts;
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const unstringifyBigInts = require("../node_modules/websnark/tools/stringifybigint.js").unstringifyBigInts;
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const utils = require("./utils");
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const merkleTree = require('../lib/MerkleTree');
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const jsStorage = require("../lib/Storage");
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const mimcHasher = require("../lib/MiMC");
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function generateDeposit() {
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let deposit = {
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secret: utils.rbigint(31),
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nullifier: utils.rbigint(31),
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};
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const preimage = Buffer.concat([deposit.nullifier.leInt2Buff(32), deposit.secret.leInt2Buff(32)]);
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deposit.commitment = utils.pedersenHash(preimage);
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return deposit;
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}
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(async () => {
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const dep1 = generateDeposit();
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const dep2 = generateDeposit();
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const dep3 = generateDeposit();
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const tree = new merkleTree("", new jsStorage(), new mimcHasher(), 16, 0);
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await tree.insert(dep1.commitment);
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await tree.insert(dep2.commitment);
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await tree.insert(dep3.commitment);
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const {root, path_elements, path_index} = await tree.path(1);
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// Circuit input
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const input = stringifyBigInts({
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// public
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root: root,
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nullifier: dep2.nullifier,
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receiver: utils.rbigint(20),
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fee: bigInt(1e17),
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// private
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secret: dep2.secret,
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pathElements: path_elements,
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pathIndex: path_index,
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});
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console.log("Input:\n", input);
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console.time("Time");
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const proof = await utils.snarkProof(input);
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console.log("Proof:\n", proof);
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console.timeEnd("Time");
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})();
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87
test/utils.js
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87
test/utils.js
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@ -0,0 +1,87 @@
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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('../node_modules/websnark/src/groth16.js');
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const stringifyBigInts = require("../node_modules/websnark/tools/stringifybigint.js").stringifyBigInts;
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const unstringifyBigInts = require("../node_modules/websnark/tools/stringifybigint.js").unstringifyBigInts;
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const rbigint = (nbytes) => snarkjs.bigInt.leBuff2int(crypto.randomBytes(nbytes));
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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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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 i=0; i<8; i++) {
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//const v = witness[i].shiftRight(i*32).and(0xFFFFFFFF).toJSNumber();
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const v = Number(witness[i].shr(i * 32).and(BigInt(0xFFFFFFFF)));
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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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function toArrayBuffer(b) {
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return b.buffer.slice(b.byteOffset, b.byteOffset + b.byteLength);
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}
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async function snarkProof(input) {
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const circuit = new snarkjs.Circuit(unstringifyBigInts(require("../build/circuits/withdraw.json")));
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const witnessArray = circuit.calculateWitness(input);
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const witness = convertWitness(witnessArray);
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const publicSignals = witnessArray.slice(1, circuit.nPubInputs + circuit.nOutputs + 1);
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const key = toArrayBuffer(fs.readFileSync("../build/circuits/withdraw_proving_key.bin"));
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const groth16 = await buildGroth16();
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let proof = await groth16.proof(witness, key);
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proof = unstringifyBigInts(proof);
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return p256({
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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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module.exports = {rbigint, pedersenHash, snarkProof, mimcHash};
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