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ndn-js

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A JavaScript client library for Named Data Networking

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/* * Copyright (C) 2014-2019 Regents of the University of California. * @author: Jeff Thompson <jefft0@remap.ucla.edu> * * This program is free software: you can redistribute it and/or modify * it under the terms of the GNU Lesser General Public License as published by * the Free Software Foundation, either version 3 of the License, or * (at your option) any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public License * along with this program. If not, see <http://www.gnu.org/licenses/>. * A copy of the GNU Lesser General Public License is in the file COPYING. */ var Name = require('../..').Name; var Data = require('../..').Data; var Blob = require('../..').Blob; var MetaInfo = require('../..').MetaInfo; var KeyLocator = require('../..').KeyLocator; var KeyLocatorType = require('../..').KeyLocatorType; var KeyType = require('../..').KeyType; var Validator = require('../..').Validator; var ValidationPolicyFromPib = require('../..').ValidationPolicyFromPib; var SafeBag = require('../..').SafeBag; var KeyChain = require('../..').KeyChain; var TestEncodeDecodeBenchmark = function TestEncodeDecodeBenchmark() { }; exports.TestEncodeDecodeBenchmark = TestEncodeDecodeBenchmark; function getNowSeconds() { return new Date().getTime() / 1000.0; } var DEFAULT_RSA_PUBLIC_KEY_DER = new Buffer([ 0x30, 0x82, 0x01, 0x22, 0x30, 0x0d, 0x06, 0x09, 0x2a, 0x86, 0x48, 0x86, 0xf7, 0x0d, 0x01, 0x01, 0x01, 0x05, 0x00, 0x03, 0x82, 0x01, 0x0f, 0x00, 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0xbe, 0x44, 0x3f, 0xb9, 0xfe, 0xbc, 0x8d, 0xda, 0xcb, 0xea, 0x8f ]); //re-use a single keyChain so that we don't have to import key 1000 times var keyChain; /** * Loop to encode a data packet nIterations times. * @param {number} nIterations The number of iterations. * @param {boolean} useComplex If true, use a large name, large content and all fields. If false, use a small name, small content * and only required fields. * @param {boolean} useCrypto If true, sign the data packet. If false, use a blank signature. * @param {function} onFinished When finished this calls onFinished(duration, encoding) * where duration is the number of seconds for all iterations and encoding is * the wire encoding Blob. It is necessary to use a callback because the * crypto functions use callbacks. * @param {number} nIterationsBeforeYield (optional) The number of loops before * calling setTimeout(0) to yield. This is useful to let the system process * pending callbacks after nIterationsBeforeYield iterations. If null or omitted, * this does not use setTimeout. */ TestEncodeDecodeBenchmark.benchmarkEncodeDataSeconds = function (nIterations, useComplex, useCrypto, onFinished, nIterationsBeforeYield) { var name; var content; if (useComplex) { // Use a large name and content. name = new Name("/ndn/ucla.edu/apps/lwndn-test/numbers.txt/%FD%05%05%E8%0C%CE%1D/%00"); var contentString = ""; var count = 1; contentString += "" + (count++); while (contentString.length < 1115) contentString += " " + (count++); content = new Buffer(contentString); } else { // Use a small name and content. name = new Name("/test"); content = new Buffer("abc"); } var finalBlockId = new Buffer("\0"); // Initialize the KeyChain storage in case useCrypto is true. var certificateName; var doDummySign = false; if (!keyChain){ //generate KeyChain keyChain = new KeyChain("pib-memory:", "tpm-memory:"); keyChain.importSafeBag(new SafeBag (new Name("/testname/KEY/123"), new Blob(DEFAULT_RSA_PRIVATE_KEY_DER, false), new Blob(DEFAULT_RSA_PUBLIC_KEY_DER, false))); certificateName = keyChain.getDefaultCertificateName(); //this is the first time, so do a dummy sign to make sure key is imported doDummySign = true; } var signatureBits = new Buffer(256); for (var i = 0; i < signatureBits.length; ++i) signatureBits[i] = 0; var encoding = null; var start = getNowSeconds(); var count = 0; var onComplete = function(data) { count += 1; if (count >= nIterations){ // We don't know when onComplete will be called. But after calling // nIterations times, we are finished. encoding = data.wireEncode(); onFinished(getNowSeconds() - start, encoding); } }; var iteration = 0; var loopBody = function() { // If !nIterationsBeforeYield then we loop forever. for (j = 0; !nIterationsBeforeYield || j < nIterationsBeforeYield; ++j) { if (iteration >= nIterations) { if (!useCrypto) // onComplete wasn't called to call onFinished, so do it here. onFinished(getNowSeconds() - start, encoding); return; } var data = new Data(name); data.setContent(content); data.setMetaInfo(new MetaInfo()); if (useComplex) { data.getMetaInfo().setFreshnessPeriod(30000); data.getMetaInfo().setFinalBlockId(finalBlockId); } if (useCrypto) // This sets the signature fields. keyChain.sign(data, onComplete); else { // Imitate IdentityManager.signByCertificate to set up the signature // fields, but don't sign. var keyLocator = new KeyLocator(); keyLocator.setType(KeyLocatorType.KEYNAME); keyLocator.setKeyName(certificateName); var sha256Signature = data.getSignature(); sha256Signature.setKeyLocator(keyLocator); sha256Signature.setSignature(signatureBits); encoding = data.wireEncode(); } if (doDummySign){ doDummySign = false; keyChain.sign(data); } ++iteration; } // Yield to process accumulated callbacks. setTimeout(loopBody, 0); }; loopBody(); }; function onVerifyFailed(data, error) { console.log("Signature verification: FAILED. Reason: " + error.getInfo()); } /** * Loop to decode a data packet nIterations times. * @param {number} nIterations The number of times to decode. * @param {boolean} useCrypto If true, verify the signature. If false, don't verify. * @param {Blob} encoding The encoded data packet to decode. * @param {function} onFinished When finished this calls onFinished(duration) * where duration is the number of seconds for all iterations. It is necessary * to use a callback because the crypto functions use callbacks. * @param {number} nIterationsBeforeYield (optional) The number of loops before * calling setTimeout(0) to yield. This is useful to let the system process * pending callbacks after nIterationsBeforeYield iterations. If null or omitted, * this does not use setTimeout. */ TestEncodeDecodeBenchmark.benchmarkDecodeDataSeconds = function (nIterations, useCrypto, encoding, onFinished, nIterationsBeforeYield) { // Initialize the KeyChain storage in case useCrypto is true. var keyChain = new KeyChain("pib-memory:", "tpm-memory:"); // This puts the public key in the pibImpl used by the SelfVerifyPolicyManager. keyChain.importSafeBag(new SafeBag (new Name("/testname/KEY/123"), new Blob(DEFAULT_RSA_PRIVATE_KEY_DER, false), new Blob(DEFAULT_RSA_PUBLIC_KEY_DER, false))); var validator = new Validator(new ValidationPolicyFromPib(keyChain.getPib())); var start = getNowSeconds(); var count = 0; var onVerifySuccess = function(data) { count += 1; if (count >= nIterations) // We don't know when onVerifySuccess will be called. But after calling // nIterations times, we are finished. onFinished(getNowSeconds() - start); }; var iteration = 0; var loopBody = function() { // If !nIterationsBeforeYield then we loop forever. for (j = 0; !nIterationsBeforeYield || j < nIterationsBeforeYield; ++j) { if (iteration >= nIterations) { if (!useCrypto) // onVerifySuccess wasn't called to call onFinished, so do it here. onFinished(getNowSeconds() - start); return; } var data = new Data(); data.wireDecode(encoding); if (useCrypto) validator.validate(data, onVerifySuccess, onVerifyFailed); ++iteration; } // Yield to process accumulated callbacks. setTimeout(loopBody, 0); }; loopBody(); };