const chai = require("chai");
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const path = require("path");
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const snarkjs = require("snarkjs");
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const crypto = require("crypto");
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const compiler = require("circom");
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const assert = chai.assert;
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const sha256 = require("./helpers/sha256");
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// const printSignal = require("./helpers/printsignal");
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function buffer2bitArray(b) {
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const res = [];
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for (let i=0; i<b.length; i++) {
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for (let j=0; j<8; j++) {
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res.push((b[i] >> (7-j) &1));
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}
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}
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return res;
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}
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function bitArray2buffer(a) {
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const len = Math.floor((a.length -1 )/8)+1;
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const b = new Buffer.alloc(len);
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for (let i=0; i<a.length; i++) {
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const p = Math.floor(i/8);
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b[p] = b[p] | (Number(a[i]) << ( 7 - (i%8) ));
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}
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return b;
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}
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describe("SHA256 test", () => {
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it("Should work bits to array and array to bits", async () => {
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const b = new Buffer.alloc(64);
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for (let i=0; i<64; i++) {
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b[i] = i+1;
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}
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const a = buffer2bitArray(b);
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const b2 = bitArray2buffer(a);
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assert.equal(b.toString("hex"), b2.toString("hex"));
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});
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it("Should calculate a hash of 1 compressor", async () => {
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const cirDef = await compiler(path.join(__dirname, "circuits", "sha256_2_test.circom"));
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const circuit = new snarkjs.Circuit(cirDef);
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console.log("Vars: "+circuit.nVars);
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console.log("Constraints: "+circuit.nConstraints);
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const witness = circuit.calculateWitness({ "a": "1", "b": "2" });
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const b = new Buffer.alloc(54);
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b[26] = 1;
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b[53] = 2;
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const hash = crypto.createHash("sha256")
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.update(b)
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.digest("hex");
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const r = "0x" + hash.slice(10);
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const hash2 = sha256.hash(b.toString("hex"), {msgFormat: "hex-bytes"});
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assert.equal(hash, hash2);
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assert(witness[1].equals(snarkjs.bigInt(r)));
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}).timeout(1000000);
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it("Should calculate a hash of 2 compressor", async () => {
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const cirDef = await compiler(path.join(__dirname, "circuits", "sha256_test512.circom"), {reduceConstraints:false} );
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const circuit = new snarkjs.Circuit(cirDef);
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console.log("Vars: "+circuit.nVars);
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console.log("Constraints: "+circuit.nConstraints);
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/*
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const testStr = "abcdbcdecdefdefgefghfghighijhijkijkljklmklmnlmnomnopnopq";
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const b = Buffer.from(testStr, 'utf8');
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*/
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const b = new Buffer.alloc(64);
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for (let i=0; i<64; i++) {
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b[i] = i+1;
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}
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const hash = crypto.createHash("sha256")
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.update(b)
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.digest("hex");
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const arrIn = buffer2bitArray(b);
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const witness = circuit.calculateWitness({ "in": arrIn } /*, {logOutput: true} */);
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const arrOut = witness.slice(1, 257);
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const hash2 = bitArray2buffer(arrOut).toString("hex");
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assert.equal(hash, hash2);
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}).timeout(1000000);
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it("Should calculate a hash of 2 compressor", async () => {
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const cirDef = await compiler(path.join(__dirname, "circuits", "sha256_test448.circom"), {reduceConstraints:false} );
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const circuit = new snarkjs.Circuit(cirDef);
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console.log("Vars: "+circuit.nVars);
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console.log("Constraints: "+circuit.nConstraints);
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const testStr = "abcdbcdecdefdefgefghfghighijhijkijkljklmklmnlmnomnopnopq";
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const b = Buffer.from(testStr, 'utf8');
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for (let i=0; i<64; i++) {
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b[i] = i+1;
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}
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const hash = crypto.createHash("sha256")
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.update(b)
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.digest("hex");
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const arrIn = buffer2bitArray(b);
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const witness = circuit.calculateWitness({ "in": arrIn } /*, {logOutput: true} */);
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const arrOut = witness.slice(1, 257);
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const hash2 = bitArray2buffer(arrOut).toString("hex");
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assert.equal(hash, hash2);
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}).timeout(1000000);
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});
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