Convert constant components to functions
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@ -1,4 +1,4 @@
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/*
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/*
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Copyright 2018 0KIMS association.
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This file is part of circom (Zero Knowledge Circuit Compiler).
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@ -71,7 +71,7 @@ template EscalarMulWindow(base, k) {
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signal input sel[4];
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signal output out[2];
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component table;
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var table;
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component mux;
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component adder;
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@ -86,8 +86,8 @@ template EscalarMulWindow(base, k) {
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}
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for (i=0; i<16; i++) {
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table.out[i][0] ==> mux.c[0][i];
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table.out[i][1] ==> mux.c[1][i];
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mux.c[0][i] <== table[i][0];
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mux.c[1][i] <== table[i][1];
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}
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in[0] ==> adder.x1;
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@ -27,8 +27,8 @@ function pointAdd(x1,y1,x2,y2) {
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return res;
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}
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template EscalarMulW4Table(base, k) {
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signal output out[16][2];
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function EscalarMulW4Table(base, k) {
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var out[16][2];
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var i;
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var p[2];
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@ -39,11 +39,13 @@ template EscalarMulW4Table(base, k) {
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dbl = pointAdd(dbl[0], dbl[1], dbl[0], dbl[1]);
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}
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out[0][0] <== 0;
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out[0][1] <== 1;
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out[0][0] = 0;
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out[0][1] = 1;
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for (i=1; i<16; i++) {
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p = pointAdd(out[i-1][0], out[i-1][1], dbl[0], dbl[1]);
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out[i][0] <== p[0];
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out[i][1] <== p[1];
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out[i][0] = p[0];
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out[i][1] = p[1];
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}
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return out;
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}
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@ -279,7 +279,7 @@ template MiMCFeistel(nrounds) {
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t4[i] <== t2[i]*t2[i];
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if (i<nrounds-1) {
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xL[i] <== ((i==0) ? xR_in : xR[i-1]) + t4[i]*t;
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xR[i] = (i==0) ? xL_in : xL[i-1];
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xR[i] <== (i==0) ? xL_in : xL[i-1];
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} else {
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xR_out <== xR[i-1] + t4[i]*t;
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xL_out <== xL[i-1];
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@ -31,7 +31,7 @@
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"web3": "^1.0.0-beta.55"
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},
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"devDependencies": {
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"circom": "0.0.34",
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"circom": "0.0.35",
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"eslint-plugin-mocha": "^5.2.0",
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"ganache-cli": "^6.4.4",
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"mocha": "^5.2.0"
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@ -56,7 +56,7 @@ describe("Aliascheck test", () => {
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circuit.calculateWitness({in: inp});
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assert(false);
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} catch(err) {
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assert.equal(err.message, "Constraint doesn't match: 1 != 0");
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assert(/Constraint\sdoesn't\smatch(.*)1\s!=\s0/.test(err.message) );
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}
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});
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@ -67,7 +67,7 @@ describe("Aliascheck test", () => {
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circuit.calculateWitness({in: inp});
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assert(false);
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} catch(err) {
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assert.equal(err.message, "Constraint doesn't match: 1 != 0");
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assert(/Constraint\sdoesn't\smatch(.*)1\s!=\s0/.test(err.message) );
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}
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});
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@ -100,11 +100,11 @@ describe("Baby Jub test", function () {
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circuitTest.calculateWitness({x: 1, y: 0});
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assert(false, "Should be a valid point");
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} catch(err) {
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assert.equal(err.message, "Constraint doesn't match: 168700 != 1");
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assert(/Constraint\sdoesn't\smatch(.*)168700\s!=\s1/.test(err.message) );
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}
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});
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it("Should extract the public key from the private one", async () => {
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it("Should extract the public key from the private one", async () => {
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const rawpvk = Buffer.from("0001020304050607080900010203040506070809000102030405060708090021", "hex");
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const pvk = eddsa.pruneBuffer(createBlakeHash("blake512").update(rawpvk).digest().slice(0,32));
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@ -23,7 +23,7 @@ describe("Sum test", () => {
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it("Should create a sum circuit", async () => {
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const cirDef = await compiler(path.join(__dirname, "circuits", "sum_test.circom"));
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assert.equal(cirDef.nVars, 101);
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assert.equal(cirDef.nVars, 97); // 32 (in1) + 32(in2) + 32(out) + 1 (carry)
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const circuit = new snarkjs.Circuit(cirDef);
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@ -8,7 +8,7 @@ template Main() {
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var i;
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var base = [5299619240641551281634865583518297030282874472190772894086521144482721001553,
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16950150798460657717958625567821834550301663161624707787222815936182638968203]
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16950150798460657717958625567821834550301663161624707787222815936182638968203];
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component escalarMul = EscalarMul(256, base);
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@ -7,7 +7,7 @@ template Main() {
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signal output out[2];
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var base = [5299619240641551281634865583518297030282874472190772894086521144482721001553,
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16950150798460657717958625567821834550301663161624707787222815936182638968203]
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16950150798460657717958625567821834550301663161624707787222815936182638968203];
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component n2b = Num2Bits(253);
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@ -8,7 +8,7 @@ template Main() {
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var i;
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var base = [5299619240641551281634865583518297030282874472190772894086521144482721001553,
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16950150798460657717958625567821834550301663161624707787222815936182638968203]
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16950150798460657717958625567821834550301663161624707787222815936182638968203];
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component escalarMul = EscalarMul(256, base);
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@ -7,10 +7,10 @@ template Main() {
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var base = [5299619240641551281634865583518297030282874472190772894086521144482721001553,
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16950150798460657717958625567821834550301663161624707787222815936182638968203];
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component escalarMul = EscalarMulW4Table(base, 0);
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var escalarMul = EscalarMulW4Table(base, 0);
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for (var i=0; i<16; i++) {
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out[i][0] <== escalarMul.out[i][0]*in;
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out[i][1] <== escalarMul.out[i][1]*in;
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out[i][0] <== escalarMul[i][0]*in;
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out[i][1] <== escalarMul[i][1]*in;
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}
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}
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@ -7,10 +7,10 @@ template Main() {
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var base = [5299619240641551281634865583518297030282874472190772894086521144482721001553,
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16950150798460657717958625567821834550301663161624707787222815936182638968203];
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component escalarMul = EscalarMulW4Table(base, 3);
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var escalarMul = EscalarMulW4Table(base, 3);
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for (var i=0; i<16; i++) {
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out[i][0] <== escalarMul.out[i][0]*in;
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out[i][1] <== escalarMul.out[i][1]*in;
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out[i][0] <== escalarMul[i][0]*in;
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out[i][1] <== escalarMul[i][1]*in;
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}
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}
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@ -67,7 +67,7 @@ describe("EdDSA MiMC test", function () {
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M: msg});
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assert(false);
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} catch(err) {
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assert.equal(err.message, "Constraint doesn't match: 1 != 0");
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assert(/Constraint\sdoesn't\smatch(.*)1\s!=\s0/.test(err.message) );
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}
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});
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@ -67,7 +67,7 @@ describe("EdDSA Poseidon test", function () {
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M: msg});
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assert(false);
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} catch(err) {
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assert.equal(err.message, "Constraint doesn't match: 1 != 0");
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assert(/Constraint\sdoesn't\smatch(.*)1\s!=\s0/.test(err.message) );
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}
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});
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@ -38,6 +38,8 @@ describe("Exponentioation test", () => {
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const w = circuit.calculateWitness({in: 1});
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assert(circuit.checkWitness(w));
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let g = [bigInt("5299619240641551281634865583518297030282874472190772894086521144482721001553"),
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bigInt("16950150798460657717958625567821834550301663161624707787222815936182638968203")]
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@ -46,12 +48,12 @@ describe("Exponentioation test", () => {
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for (let i=0; i<16; i++) {
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const xout1 = w[circuit.getSignalIdx(`main.out[${i}][0]`)];
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const yout1 = w[circuit.getSignalIdx(`main.out[${i}][1]`)];
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/*
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console.log(xout1.toString());
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console.log(yout1.toString());
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console.log(dbl[0]);
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console.log(dbl[1]);
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*/
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// console.log(xout1.toString());
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// console.log(yout1.toString());
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// console.log(dbl[0]);
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// console.log(dbl[1]);
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assert(xout1.equals(dbl[0]));
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assert(yout1.equals(dbl[1]));
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@ -74,6 +76,8 @@ describe("Exponentioation test", () => {
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const w = circuit.calculateWitness({in: 1});
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assert(circuit.checkWitness(w));
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let g = [snarkjs.bigInt("5299619240641551281634865583518297030282874472190772894086521144482721001553"),
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snarkjs.bigInt("16950150798460657717958625567821834550301663161624707787222815936182638968203")]
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@ -87,12 +91,12 @@ describe("Exponentioation test", () => {
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const xout1 = w[circuit.getSignalIdx(`main.out[${i}][0]`)];
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const yout1 = w[circuit.getSignalIdx(`main.out[${i}][1]`)];
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/*
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console.log(xout1.toString());
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console.log(yout1.toString());
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console.log(dbl[0]);
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console.log(dbl[1]);
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*/
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// console.log(xout1.toString());
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// console.log(yout1.toString());
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// console.log(dbl[0]);
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// console.log(dbl[1]);
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assert(xout1.equals(dbl[0]));
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assert(yout1.equals(dbl[1]));
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@ -102,7 +106,7 @@ describe("Exponentioation test", () => {
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});
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it("Should exponentiate g^31", async () => {
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const cirDef = await compiler(path.join(__dirname, "circuits", "escalarmul_test.circom"));
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const cirDef = await compiler(path.join(__dirname, "circuits", "escalarmul_test.circom"), {reduceConstraints: true});
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// console.log(JSON.stringify(cirDef, null, 1));
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@ -146,12 +150,12 @@ describe("Exponentioation test", () => {
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c = addPoint(c,c);
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}
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c = addPoint(c,g);
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/*
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console.log(xout2.toString());
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console.log(yout2.toString());
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console.log(c[0].toString());
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console.log(c[1].toString());
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*/
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// console.log(xout2.toString());
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// console.log(yout2.toString());
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// console.log(c[0].toString());
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// console.log(c[1].toString());
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assert(xout2.equals(c[0]));
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assert(yout2.equals(c[1]));
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@ -43,6 +43,8 @@ describe("Mux4 test", () => {
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for (let i=0; i<16; i++) {
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const w = circuit.calculateWitness({ "selector": i });
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assert(circuit.checkWitness(w));
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assert(w[0].equals(bigInt(1)));
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// console.log(i + " -> " + w[circuit.getSignalIdx("main.out")].toString());
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@ -96,6 +98,8 @@ describe("Mux4 test", () => {
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for (let i=0; i<4; i++) {
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const w = circuit.calculateWitness({ "selector": i });
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assert(circuit.checkWitness(w));
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assert(w[0].equals(bigInt(1)));
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// console.log(i + " -> " + w[circuit.getSignalIdx("main.out")].toString());
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@ -118,6 +122,8 @@ describe("Mux4 test", () => {
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for (let i=0; i<2; i++) {
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const w = circuit.calculateWitness({ "selector": i });
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assert(circuit.checkWitness(w));
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assert(w[0].equals(bigInt(1)));
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// console.log(i + " -> " + w[circuit.getSignalIdx("main.out")].toString());
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