Fix tests by returning promises
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87b626d42a
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28779e0b35
2 changed files with 47 additions and 49 deletions
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@ -570,11 +570,11 @@ window.textsecure.nacl = function() {
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var onLoadCallbacks = [];
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var naclLoaded = 0;
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self.registerOnLoadFunction = function(func) {
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if (naclLoaded || !self.USE_NACL) {
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func();
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return;
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}
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onLoadCallbacks[onLoadCallbacks.length] = func;
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return new Promise(function(resolve, reject) {
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if (naclLoaded || !self.USE_NACL)
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return resolve(func());
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onLoadCallbacks[onLoadCallbacks.length] = [ func, resolve, reject ];
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});
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}
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var naclMessageNextId = 0;
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@ -582,8 +582,13 @@ window.textsecure.nacl = function() {
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window.moduleDidLoad = function() {
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common.hideModule();
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naclLoaded = 1;
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for (var i = 0; i < onLoadCallbacks.length; i++)
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onLoadCallbacks[i]();
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for (var i = 0; i < onLoadCallbacks.length; i++) {
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try {
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onLoadCallbacks[i][1](onLoadCallbacks[i][0]());
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} catch (e) {
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onLoadCallbacks[i][2](e);
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}
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}
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onLoadCallbacks = [];
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}
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77
js/test.js
77
js/test.js
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@ -35,10 +35,9 @@ describe("Cryptographic primitives", function() {
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var counter = hexToArrayBuffer('f0f1f2f3f4f5f6f7f8f9fafbfcfdfeff');
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var plaintext = hexToArrayBuffer('6bc1bee22e409f96e93d7e117393172a');
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var ciphertext = hexToArrayBuffer('874d6191b620e3261bef6864990db6ce');
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window.crypto.subtle.encrypt({name: "AES-CTR", counter: counter}, key, plaintext).then(function(result) {
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assert.strictEqual(getString(result), getString(ciphertext));
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done();
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});
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return window.crypto.subtle.encrypt({name: "AES-CTR", counter: counter}, key, plaintext).then(function(result) {
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assert.strictEqual(getString(result) +"", getString(ciphertext));
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}).then(done).catch(done);
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});
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});
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@ -48,10 +47,9 @@ describe("Cryptographic primitives", function() {
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var counter = hexToArrayBuffer('f0f1f2f3f4f5f6f7f8f9fafbfcfdfeff');
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var plaintext = hexToArrayBuffer('6bc1bee22e409f96e93d7e117393172a');
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var ciphertext = hexToArrayBuffer('874d6191b620e3261bef6864990db6ce');
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window.crypto.subtle.decrypt({name: "AES-CTR", counter: counter}, key, ciphertext).then(function(result) {
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return window.crypto.subtle.decrypt({name: "AES-CTR", counter: counter}, key, ciphertext).then(function(result) {
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assert.strictEqual(getString(result), getString(plaintext));
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done();
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});
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}).then(done).catch(done);
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});
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});
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@ -61,10 +59,9 @@ describe("Cryptographic primitives", function() {
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var iv = hexToArrayBuffer('000102030405060708090a0b0c0d0e0f');
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var plaintext = hexToArrayBuffer('6bc1bee22e409f96e93d7e117393172aae2d8a571e03ac9c9eb76fac45af8e5130c81c46a35ce411e5fbc1191a0a52eff69f2445df4f9b17ad2b417be66c3710');
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var ciphertext = hexToArrayBuffer('f58c4c04d6e5f1ba779eabfb5f7bfbd69cfc4e967edb808d679f777bc6702c7d39f23369a9d9bacfa530e26304231461b2eb05e2c39be9fcda6c19078c6a9d1b3f461796d6b0d6b2e0c2a72b4d80e644');
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window.crypto.subtle.decrypt({name: "AES-CBC", iv: iv}, key, ciphertext).then(function(result) {
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return window.crypto.subtle.decrypt({name: "AES-CBC", iv: iv}, key, ciphertext).then(function(result) {
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assert.strictEqual(getString(result), getString(plaintext));
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done();
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});
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}).then(done).catch(done);
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});
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});
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@ -73,10 +70,9 @@ describe("Cryptographic primitives", function() {
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var key = hexToArrayBuffer('6f35628d65813435534b5d67fbdb54cb33403d04e843103e6399f806cb5df95febbdd61236f33245');
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var input = hexToArrayBuffer('752cff52e4b90768558e5369e75d97c69643509a5e5904e0a386cbe4d0970ef73f918f675945a9aefe26daea27587e8dc909dd56fd0468805f834039b345f855cfe19c44b55af241fff3ffcd8045cd5c288e6c4e284c3720570b58e4d47b8feeedc52fd1401f698a209fccfa3b4c0d9a797b046a2759f82a54c41ccd7b5f592b');
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var mac = getString(hexToArrayBuffer('05d1243e6465ed9620c9aec1c351a186'));
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window.crypto.subtle.sign({name: "HMAC", hash: "SHA-256"}, key, input).then(function(result) {
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return window.crypto.subtle.sign({name: "HMAC", hash: "SHA-256"}, key, input).then(function(result) {
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assert.strictEqual(getString(result).substring(0, mac.length), mac);
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done();
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});
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}).then(done).catch(done);
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});
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});
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@ -95,13 +91,12 @@ describe("Cryptographic primitives", function() {
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for (var i = 0; i < 10; i++)
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info[i] = 240 + i;
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textsecure.crypto.testing_only.HKDF(IKM.buffer, salt.buffer, info.buffer).then(function(OKM){
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return textsecure.crypto.testing_only.HKDF(IKM.buffer, salt.buffer, info.buffer).then(function(OKM){
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var T1 = hexToArrayBuffer("3cb25f25faacd57a90434f64d0362f2a2d2d0a90cf1a5a4c5db02d56ecc4c5bf");
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var T2 = hexToArrayBuffer("34007208d5b887185865");
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assert.equal(getString(OKM[0]), getString(T1));
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assert.equal(getString(OKM[1]).substring(0, 10), getString(T2));
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done();
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});
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}).then(done).catch(done);
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});
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});
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});
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@ -125,13 +120,12 @@ describe('Unencrypted PushMessageProto "decrypt"', function() {
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message: text_message.encode()
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};
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textsecure.crypto.handleIncomingPushMessageProto(server_message).
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return textsecure.crypto.handleIncomingPushMessageProto(server_message).
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then(function(message) {
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assert.equal(message.body, text_message.body);
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assert.equal(message.attachments.length, text_message.attachments.length);
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assert.equal(text_message.attachments.length, 0);
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done();
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});
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}).then(done).catch(done);
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});
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});
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@ -148,7 +142,7 @@ describe("Curve25519", function() {
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describe("Simple Curve25519 test vectors", function() {
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it('works', function(done) {
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textsecure.registerOnLoadFunction(function() {
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return textsecure.registerOnLoadFunction(function() {
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// These are just some random curve25519 test vectors I found online (with a version byte prepended to pubkeys)
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var alice_priv = hexToArrayBuffer("77076d0a7318a57d3c16c17251b26645df4c2f87ebc0992ab177fba51db92c2a");
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var alice_pub = hexToArrayBuffer("058520f0098930a754748b7ddcb43ef75a0dbf3a0d26381af4eba4a98eaa9b4e6a");
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@ -156,14 +150,14 @@ describe("Curve25519", function() {
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var bob_pub = hexToArrayBuffer("05de9edb7d7b7dc1b4d35b61c2ece435373f8343c85b78674dadfc7e146f882b4f");
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var shared_sec = hexToArrayBuffer("4a5d9d5ba4ce2de1728e3bf480350f25e07e21c947d19e3376f09b3c1e161742");
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textsecure.crypto.testing_only.privToPub(alice_priv, true).then(function(aliceKeyPair) {
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return textsecure.crypto.testing_only.privToPub(alice_priv, true).then(function(aliceKeyPair) {
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var target = new Uint8Array(alice_priv.slice(0));
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target[0] &= 248;
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target[31] &= 127;
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target[31] |= 64;
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assert.equal(getString(aliceKeyPair.privKey), getString(target));
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textsecure.crypto.testing_only.privToPub(bob_priv, true).then(function(bobKeyPair) {
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return textsecure.crypto.testing_only.privToPub(bob_priv, true).then(function(bobKeyPair) {
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var target = new Uint8Array(bob_priv.slice(0));
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target[0] &= 248;
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target[31] &= 127;
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@ -172,23 +166,22 @@ describe("Curve25519", function() {
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assert.equal(getString(aliceKeyPair.pubKey), getString(alice_pub));
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assert.equal(getString(bobKeyPair.pubKey), getString(bob_pub));
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textsecure.crypto.testing_only.ECDHE(bobKeyPair.pubKey, aliceKeyPair.privKey).then(function(ss) {
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return textsecure.crypto.testing_only.ECDHE(bobKeyPair.pubKey, aliceKeyPair.privKey).then(function(ss) {
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assert.equal(getString(ss), getString(shared_sec));
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textsecure.crypto.testing_only.ECDHE(aliceKeyPair.pubKey, bobKeyPair.privKey).then(function(ss) {
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return textsecure.crypto.testing_only.ECDHE(aliceKeyPair.pubKey, bobKeyPair.privKey).then(function(ss) {
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assert.equal(getString(ss), getString(shared_sec));
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done();
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});
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});
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});
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});
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});
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}).then(done).catch(done);
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});
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});
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describe("Simple Ed25519 tests", function() {
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it('works', function(done) {
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textsecure.registerOnLoadFunction(function() {
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return textsecure.registerOnLoadFunction(function() {
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// Some self-generated test vectors
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var priv = hexToArrayBuffer("48a8892cc4e49124b7b57d94fa15becfce071830d6449004685e387c62409973");
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var pub = hexToArrayBuffer("0555f1bfede27b6a03e0dd389478ffb01462e5c52dbbac32cf870f00af1ed9af3a");
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@ -196,19 +189,17 @@ describe("Curve25519", function() {
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var sig = hexToArrayBuffer("2bc06c745acb8bae10fbc607ee306084d0c28e2b3bb819133392473431291fd0"+
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"dfa9c7f11479996cf520730d2901267387e08d85bbf2af941590e3035a545285");
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textsecure.crypto.testing_only.privToPub(priv, false).then(function(pubCalc) {
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return textsecure.crypto.testing_only.privToPub(priv, false).then(function(pubCalc) {
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//if (getString(pub) != getString(pubCalc))
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// return false;
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textsecure.crypto.testing_only.Ed25519Sign(priv, msg).then(function(sigCalc) {
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return textsecure.crypto.testing_only.Ed25519Sign(priv, msg).then(function(sigCalc) {
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assert.equal(getString(sig), getString(sigCalc));
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textsecure.crypto.testing_only.Ed25519Verify(pub, msg, sig).then(function() {
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done();
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});
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return textsecure.crypto.testing_only.Ed25519Verify(pub, msg, sig);
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});
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});
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});
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}).then(done).catch(done);
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});
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});
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@ -217,15 +208,15 @@ describe("Curve25519", function() {
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before(function() { localStorage.clear(); });
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after(function() { localStorage.clear(); });
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it ('works', function(done) {
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textsecure.registerOnLoadFunction(function() {
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textsecure.crypto.generateKeys().then(function() {
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return textsecure.registerOnLoadFunction(function() {
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return textsecure.crypto.generateKeys().then(function() {
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assert.isDefined(textsecure.storage.getEncrypted("25519KeyidentityKey"));
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assert.isDefined(textsecure.storage.getEncrypted("25519KeysignedKey0"));
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for (var i = 0; i < 100; i++) {
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assert.isDefined(textsecure.storage.getEncrypted("25519KeypreKey" + i));
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}
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var origIdentityKey = getString(textsecure.storage.getEncrypted("25519KeyidentityKey").privKey);
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textsecure.crypto.generateKeys().then(function() {
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return textsecure.crypto.generateKeys().then(function() {
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assert.isDefined(textsecure.storage.getEncrypted("25519KeyidentityKey"));
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assert.equal(getString(textsecure.storage.getEncrypted("25519KeyidentityKey").privKey), origIdentityKey);
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@ -236,7 +227,7 @@ describe("Curve25519", function() {
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assert.isDefined(textsecure.storage.getEncrypted("25519KeypreKey" + i));
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}
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textsecure.crypto.generateKeys().then(function() {
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return textsecure.crypto.generateKeys().then(function() {
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assert.isDefined(textsecure.storage.getEncrypted("25519KeyidentityKey"));
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assert.equal(getString(textsecure.storage.getEncrypted("25519KeyidentityKey").privKey), origIdentityKey);
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@ -247,12 +238,10 @@ describe("Curve25519", function() {
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for (var i = 0; i < 300; i++) {
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assert.isDefined(textsecure.storage.getEncrypted("25519KeypreKey" + i));
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}
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done();
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});
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});
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});
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});
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}).then(done).catch(done);
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});
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});
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});
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@ -392,8 +381,12 @@ describe("Axolotl", function() {
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describe("test vectors", function() {
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_.each(axolotlTestVectors, function(t, i) {
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it(t.name, function() {
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assert(runAxolotlTest(t.vectors));
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it(t.name, function(done) {
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return textsecure.registerOnLoadFunction(function() {
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return runAxolotlTest(t.vectors).then(function(res) {
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assert(res);
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});
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}).then(done).catch(done);
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});
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});
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});
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