2020-11-13 23:09:13 +00:00
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import crypto from "crypto";
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import {runBenchmark} from "./runner";
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2020-11-20 19:35:32 +00:00
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import {runForAllImplementations} from "../switch";
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import {IPublicKey, ISignature} from "../../src/interface";
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2020-11-13 23:09:13 +00:00
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2020-11-20 19:35:32 +00:00
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runForAllImplementations(async (bls, implementation) => {
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2020-11-25 16:09:44 +00:00
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await bls.init();
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2020-11-13 23:09:13 +00:00
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const aggCount = 30;
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// verify
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2020-11-20 19:35:32 +00:00
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runBenchmark<{pk: IPublicKey; msg: Uint8Array; sig: ISignature}, boolean>({
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id: `${implementation} verify`,
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2020-11-13 23:09:13 +00:00
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prepareTest: () => {
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const msg = randomMsg();
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2020-11-20 19:35:32 +00:00
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const sk = bls.PrivateKey.fromKeygen();
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2020-11-13 23:09:13 +00:00
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const pk = sk.toPublicKey();
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2020-11-25 16:09:44 +00:00
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const sig = sk.sign(msg);
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2020-11-13 23:09:13 +00:00
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return {
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input: {pk, msg, sig},
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resultCheck: (valid) => valid === true,
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};
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},
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testRunner: ({pk, msg, sig}) => {
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2020-11-20 19:35:32 +00:00
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return sig.verify(pk, msg);
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2020-11-13 23:09:13 +00:00
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},
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});
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// Fast aggregate
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2020-11-20 19:35:32 +00:00
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runBenchmark<{pks: IPublicKey[]; msg: Uint8Array; sig: ISignature}, boolean>({
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id: `${implementation} verifyAggregate`,
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2020-11-13 23:09:13 +00:00
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prepareTest: () => {
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const msg = randomMsg();
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const dataArr = range(aggCount).map(() => {
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2020-11-20 19:35:32 +00:00
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const sk = bls.PrivateKey.fromKeygen();
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const pk = sk.toPublicKey();
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2020-11-25 16:09:44 +00:00
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const sig = sk.sign(msg);
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2020-11-13 23:09:13 +00:00
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return {pk, sig};
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});
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const pks = dataArr.map((data) => data.pk);
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2020-11-20 19:35:32 +00:00
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const sig = bls.Signature.aggregate(dataArr.map((data) => data.sig));
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2020-11-13 23:09:13 +00:00
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return {
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input: {pks, msg, sig},
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resultCheck: (valid) => valid === true,
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};
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},
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testRunner: ({pks, msg, sig}) => {
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return sig.verifyAggregate(pks, msg);
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},
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});
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2020-11-20 19:35:32 +00:00
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// Aggregate pubkeys
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2020-11-13 23:09:13 +00:00
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2020-11-20 19:35:32 +00:00
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runBenchmark<IPublicKey[], void>({
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id: `${implementation} aggregate pubkeys (${aggCount})`,
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2020-11-13 23:09:13 +00:00
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prepareTest: () => {
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return {
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2020-11-20 19:35:32 +00:00
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input: range(aggCount).map(() => bls.PrivateKey.fromKeygen().toPublicKey()),
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2020-11-13 23:09:13 +00:00
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};
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},
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testRunner: (pks) => {
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2020-11-20 19:35:32 +00:00
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bls.PublicKey.aggregate(pks);
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2020-11-13 23:09:13 +00:00
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},
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});
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2020-11-20 19:35:32 +00:00
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// Aggregate sigs
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2020-11-14 22:25:22 +00:00
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2020-11-20 19:35:32 +00:00
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runBenchmark<ISignature[], void>({
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id: `${implementation} aggregate signatures (${aggCount})`,
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2020-11-13 23:09:13 +00:00
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prepareTest: () => {
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2020-11-20 19:35:32 +00:00
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const msg = randomMsg();
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const sigs = range(aggCount).map(() => {
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const sk = bls.PrivateKey.fromKeygen();
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2020-11-25 16:09:44 +00:00
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return sk.sign(msg);
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2020-11-20 19:35:32 +00:00
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});
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2020-11-13 23:09:13 +00:00
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return {
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2020-11-20 19:35:32 +00:00
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input: sigs,
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2020-11-13 23:09:13 +00:00
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};
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},
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2020-11-20 19:35:32 +00:00
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testRunner: (sigs) => {
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bls.Signature.aggregate(sigs);
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2020-11-13 23:09:13 +00:00
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},
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});
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2020-11-20 19:35:32 +00:00
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});
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2020-11-13 23:09:13 +00:00
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function range(n: number): number[] {
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const nums: number[] = [];
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for (let i = 0; i < n; i++) nums.push(i);
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return nums;
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}
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function randomMsg(): Uint8Array {
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return Uint8Array.from(crypto.randomBytes(32));
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}
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