writer_test.js 13 KB

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  1. // Protocol Buffers - Google's data interchange format
  2. // Copyright 2008 Google Inc. All rights reserved.
  3. // https://developers.google.com/protocol-buffers/
  4. //
  5. // Redistribution and use in source and binary forms, with or without
  6. // modification, are permitted provided that the following conditions are
  7. // met:
  8. //
  9. // * Redistributions of source code must retain the above copyright
  10. // notice, this list of conditions and the following disclaimer.
  11. // * Redistributions in binary form must reproduce the above
  12. // copyright notice, this list of conditions and the following disclaimer
  13. // in the documentation and/or other materials provided with the
  14. // distribution.
  15. // * Neither the name of Google Inc. nor the names of its
  16. // contributors may be used to endorse or promote products derived from
  17. // this software without specific prior written permission.
  18. //
  19. // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
  20. // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
  21. // LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
  22. // A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
  23. // OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
  24. // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
  25. // LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
  26. // DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
  27. // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
  28. // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
  29. // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  30. /**
  31. * @fileoverview Test cases for jspb's binary protocol buffer writer. In
  32. * practice BinaryWriter is used to drive the Decoder and Reader test cases,
  33. * so only writer-specific tests are here.
  34. *
  35. * Test suite is written using Jasmine -- see http://jasmine.github.io/
  36. *
  37. * @author aappleby@google.com (Austin Appleby)
  38. */
  39. goog.require('goog.crypt');
  40. goog.require('goog.testing.asserts');
  41. goog.require('jspb.BinaryConstants');
  42. goog.require('jspb.BinaryReader');
  43. goog.require('jspb.BinaryWriter');
  44. goog.require('jspb.utils');
  45. /**
  46. * @param {function()} func This function should throw an error when run.
  47. */
  48. function assertFails(func) {
  49. assertThrows(func);
  50. }
  51. describe('binaryWriterTest', function() {
  52. /**
  53. * Verifies that misuse of the writer class triggers assertions.
  54. */
  55. it('testWriteErrors', function() {
  56. // Submessages with invalid field indices should assert.
  57. var writer = new jspb.BinaryWriter();
  58. var dummyMessage = /** @type {!jspb.BinaryMessage} */({});
  59. assertFails(function() {
  60. writer.writeMessage(-1, dummyMessage, goog.nullFunction);
  61. });
  62. // Writing invalid field indices should assert.
  63. writer = new jspb.BinaryWriter();
  64. assertFails(function() {writer.writeUint64(-1, 1);});
  65. // Writing out-of-range field values should assert.
  66. writer = new jspb.BinaryWriter();
  67. assertFails(function() {writer.writeInt32(1, -Infinity);});
  68. assertFails(function() {writer.writeInt32(1, Infinity);});
  69. assertFails(function() {writer.writeInt64(1, -Infinity);});
  70. assertFails(function() {writer.writeInt64(1, Infinity);});
  71. assertFails(function() {writer.writeUint32(1, -1);});
  72. assertFails(function() {writer.writeUint32(1, Infinity);});
  73. assertFails(function() {writer.writeUint64(1, -1);});
  74. assertFails(function() {writer.writeUint64(1, Infinity);});
  75. assertFails(function() {writer.writeSint32(1, -Infinity);});
  76. assertFails(function() {writer.writeSint32(1, Infinity);});
  77. assertFails(function() {writer.writeSint64(1, -Infinity);});
  78. assertFails(function() {writer.writeSint64(1, Infinity);});
  79. assertFails(function() {writer.writeFixed32(1, -1);});
  80. assertFails(function() {writer.writeFixed32(1, Infinity);});
  81. assertFails(function() {writer.writeFixed64(1, -1);});
  82. assertFails(function() {writer.writeFixed64(1, Infinity);});
  83. assertFails(function() {writer.writeSfixed32(1, -Infinity);});
  84. assertFails(function() {writer.writeSfixed32(1, Infinity);});
  85. assertFails(function() {writer.writeSfixed64(1, -Infinity);});
  86. assertFails(function() {writer.writeSfixed64(1, Infinity);});
  87. });
  88. /**
  89. * Basic test of retrieving the result as a Uint8Array buffer
  90. */
  91. it('testGetResultBuffer', function() {
  92. var expected = '0864120b48656c6c6f20776f726c641a0301020320c801';
  93. var writer = new jspb.BinaryWriter();
  94. writer.writeUint32(1, 100);
  95. writer.writeString(2, 'Hello world');
  96. writer.writeBytes(3, new Uint8Array([1, 2, 3]));
  97. writer.writeUint32(4, 200);
  98. var buffer = writer.getResultBuffer();
  99. assertEquals(expected, goog.crypt.byteArrayToHex(buffer));
  100. });
  101. /**
  102. * Tests websafe encodings for base64 strings.
  103. */
  104. it('testWebSafeOption', function() {
  105. var writer = new jspb.BinaryWriter();
  106. writer.writeBytes(1, new Uint8Array([127]));
  107. assertEquals('CgF/', writer.getResultBase64String());
  108. assertEquals(
  109. 'CgF/',
  110. writer.getResultBase64String(goog.crypt.base64.Alphabet.DEFAULT));
  111. assertEquals(
  112. 'CgF_',
  113. writer.getResultBase64String(
  114. goog.crypt.base64.Alphabet.WEBSAFE_NO_PADDING));
  115. });
  116. it('writes split 64 fields', function() {
  117. var writer = new jspb.BinaryWriter();
  118. writer.writeSplitVarint64(1, 0x1, 0x2);
  119. writer.writeSplitVarint64(1, 0xFFFFFFFF, 0xFFFFFFFF);
  120. writer.writeSplitFixed64(2, 0x1, 0x2);
  121. writer.writeSplitFixed64(2, 0xFFFFFFF0, 0xFFFFFFFF);
  122. function lo(i) {
  123. return i + 1;
  124. }
  125. function hi(i) {
  126. return i + 2;
  127. }
  128. writer.writeRepeatedSplitVarint64(3, [0, 1, 2], lo, hi);
  129. writer.writeRepeatedSplitFixed64(4, [0, 1, 2], lo, hi);
  130. writer.writePackedSplitVarint64(5, [0, 1, 2], lo, hi);
  131. writer.writePackedSplitFixed64(6, [0, 1, 2], lo, hi);
  132. function bitsAsArray(lowBits, highBits) {
  133. return [lowBits >>> 0, highBits >>> 0];
  134. }
  135. var reader = jspb.BinaryReader.alloc(writer.getResultBuffer());
  136. reader.nextField();
  137. expect(reader.getFieldNumber()).toEqual(1);
  138. expect(reader.readSplitVarint64(bitsAsArray)).toEqual([0x1, 0x2]);
  139. reader.nextField();
  140. expect(reader.getFieldNumber()).toEqual(1);
  141. expect(reader.readSplitVarint64(bitsAsArray)).toEqual([
  142. 0xFFFFFFFF, 0xFFFFFFFF
  143. ]);
  144. reader.nextField();
  145. expect(reader.getFieldNumber()).toEqual(2);
  146. expect(reader.readSplitFixed64(bitsAsArray)).toEqual([0x1, 0x2]);
  147. reader.nextField();
  148. expect(reader.getFieldNumber()).toEqual(2);
  149. expect(reader.readSplitFixed64(bitsAsArray)).toEqual([
  150. 0xFFFFFFF0, 0xFFFFFFFF
  151. ]);
  152. for (let i = 0; i < 3; i++) {
  153. reader.nextField();
  154. expect(reader.getFieldNumber()).toEqual(3);
  155. expect(reader.readSplitVarint64(bitsAsArray)).toEqual([i + 1, i + 2]);
  156. }
  157. for (let i = 0; i < 3; i++) {
  158. reader.nextField();
  159. expect(reader.getFieldNumber()).toEqual(4);
  160. expect(reader.readSplitFixed64(bitsAsArray)).toEqual([i + 1, i + 2]);
  161. }
  162. reader.nextField();
  163. expect(reader.getFieldNumber()).toEqual(5);
  164. expect(reader.readPackedInt64String()).toEqual([
  165. String(2 * 2 ** 32 + 1),
  166. String(3 * 2 ** 32 + 2),
  167. String(4 * 2 ** 32 + 3),
  168. ]);
  169. reader.nextField();
  170. expect(reader.getFieldNumber()).toEqual(6);
  171. expect(reader.readPackedFixed64String()).toEqual([
  172. String(2 * 2 ** 32 + 1),
  173. String(3 * 2 ** 32 + 2),
  174. String(4 * 2 ** 32 + 3),
  175. ]);
  176. });
  177. it('writes zigzag 64 fields', function() {
  178. // Test cases direcly from the protobuf dev guide.
  179. // https://engdoc.corp.google.com/eng/howto/protocolbuffers/developerguide/encoding.shtml?cl=head#types
  180. var testCases = [
  181. {original: '0', zigzag: '0'},
  182. {original: '-1', zigzag: '1'},
  183. {original: '1', zigzag: '2'},
  184. {original: '-2', zigzag: '3'},
  185. {original: '2147483647', zigzag: '4294967294'},
  186. {original: '-2147483648', zigzag: '4294967295'},
  187. // 64-bit extremes, not in dev guide.
  188. {original: '9223372036854775807', zigzag: '18446744073709551614'},
  189. {original: '-9223372036854775808', zigzag: '18446744073709551615'},
  190. ];
  191. function decimalToLowBits(v) {
  192. jspb.utils.splitDecimalString(v);
  193. return jspb.utils.split64Low >>> 0;
  194. }
  195. function decimalToHighBits(v) {
  196. jspb.utils.splitDecimalString(v);
  197. return jspb.utils.split64High >>> 0;
  198. }
  199. var writer = new jspb.BinaryWriter();
  200. testCases.forEach(function(c) {
  201. writer.writeSint64String(1, c.original);
  202. writer.writeSintHash64(1, jspb.utils.decimalStringToHash64(c.original));
  203. jspb.utils.splitDecimalString(c.original);
  204. writer.writeSplitZigzagVarint64(
  205. 1, jspb.utils.split64Low, jspb.utils.split64High);
  206. });
  207. writer.writeRepeatedSint64String(2, testCases.map(function(c) {
  208. return c.original;
  209. }));
  210. writer.writeRepeatedSintHash64(3, testCases.map(function(c) {
  211. return jspb.utils.decimalStringToHash64(c.original);
  212. }));
  213. writer.writeRepeatedSplitZigzagVarint64(
  214. 4, testCases.map(function(c) {
  215. return c.original;
  216. }),
  217. decimalToLowBits, decimalToHighBits);
  218. writer.writePackedSint64String(5, testCases.map(function(c) {
  219. return c.original;
  220. }));
  221. writer.writePackedSintHash64(6, testCases.map(function(c) {
  222. return jspb.utils.decimalStringToHash64(c.original);
  223. }));
  224. writer.writePackedSplitZigzagVarint64(
  225. 7, testCases.map(function(c) {
  226. return c.original;
  227. }),
  228. decimalToLowBits, decimalToHighBits);
  229. // Verify by reading the stream as normal int64 fields and checking with
  230. // the canonical zigzag encoding of each value.
  231. var reader = jspb.BinaryReader.alloc(writer.getResultBuffer());
  232. testCases.forEach(function(c) {
  233. reader.nextField();
  234. expect(reader.getFieldNumber()).toEqual(1);
  235. expect(reader.readUint64String()).toEqual(c.zigzag);
  236. reader.nextField();
  237. expect(reader.getFieldNumber()).toEqual(1);
  238. expect(reader.readUint64String()).toEqual(c.zigzag);
  239. reader.nextField();
  240. expect(reader.getFieldNumber()).toEqual(1);
  241. expect(reader.readUint64String()).toEqual(c.zigzag);
  242. });
  243. testCases.forEach(function(c) {
  244. reader.nextField();
  245. expect(reader.getFieldNumber()).toEqual(2);
  246. expect(reader.readUint64String()).toEqual(c.zigzag);
  247. });
  248. testCases.forEach(function(c) {
  249. reader.nextField();
  250. expect(reader.getFieldNumber()).toEqual(3);
  251. expect(reader.readUint64String()).toEqual(c.zigzag);
  252. });
  253. testCases.forEach(function(c) {
  254. reader.nextField();
  255. expect(reader.getFieldNumber()).toEqual(4);
  256. expect(reader.readUint64String()).toEqual(c.zigzag);
  257. });
  258. reader.nextField();
  259. expect(reader.getFieldNumber()).toEqual(5);
  260. expect(reader.readPackedUint64String()).toEqual(testCases.map(function(c) {
  261. return c.zigzag;
  262. }));
  263. reader.nextField();
  264. expect(reader.getFieldNumber()).toEqual(6);
  265. expect(reader.readPackedUint64String()).toEqual(testCases.map(function(c) {
  266. return c.zigzag;
  267. }));
  268. reader.nextField();
  269. expect(reader.getFieldNumber()).toEqual(7);
  270. expect(reader.readPackedUint64String()).toEqual(testCases.map(function(c) {
  271. return c.zigzag;
  272. }));
  273. });
  274. it('writes float32 fields', function() {
  275. var testCases = [
  276. 0, 1, -1, jspb.BinaryConstants.FLOAT32_MIN,
  277. -jspb.BinaryConstants.FLOAT32_MIN, jspb.BinaryConstants.FLOAT32_MAX,
  278. -jspb.BinaryConstants.FLOAT32_MAX, 3.1415927410125732, Infinity,
  279. -Infinity, NaN
  280. ];
  281. var writer = new jspb.BinaryWriter();
  282. testCases.forEach(function(f) {
  283. writer.writeFloat(1, f);
  284. });
  285. var reader = jspb.BinaryReader.alloc(writer.getResultBuffer());
  286. testCases.forEach(function(f) {
  287. reader.nextField();
  288. expect(reader.getFieldNumber()).toEqual(1);
  289. if (isNaN(f)) {
  290. expect(isNaN(reader.readFloat())).toEqual(true);
  291. } else {
  292. expect(reader.readFloat()).toEqual(f);
  293. }
  294. });
  295. });
  296. it('writes double fields', function() {
  297. var testCases = [
  298. 0, 1, -1, Number.MAX_SAFE_INTEGER, Number.MIN_SAFE_INTEGER,
  299. Number.MAX_VALUE, Number.MIN_VALUE, jspb.BinaryConstants.FLOAT32_MIN,
  300. -jspb.BinaryConstants.FLOAT32_MIN, jspb.BinaryConstants.FLOAT32_MAX,
  301. -jspb.BinaryConstants.FLOAT32_MAX, Math.PI, Infinity, -Infinity, NaN
  302. ];
  303. var writer = new jspb.BinaryWriter();
  304. testCases.forEach(function(f) {
  305. writer.writeDouble(1, f);
  306. });
  307. var reader = jspb.BinaryReader.alloc(writer.getResultBuffer());
  308. testCases.forEach(function(f) {
  309. reader.nextField();
  310. expect(reader.getFieldNumber()).toEqual(1);
  311. if (isNaN(f)) {
  312. expect(isNaN(reader.readDouble())).toEqual(true);
  313. } else {
  314. expect(reader.readDouble()).toEqual(f);
  315. }
  316. });
  317. });
  318. });