GPBCodedOutputStream.m 41 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. #import "GPBCodedOutputStream.h"
  31. #import <mach/vm_param.h>
  32. #import "GPBArray.h"
  33. #import "GPBUnknownFieldSet_PackagePrivate.h"
  34. #import "GPBUtilities_PackagePrivate.h"
  35. // Structure for containing state of a GPBCodedInputStream. Brought out into
  36. // a struct so that we can inline several common functions instead of dealing
  37. // with overhead of ObjC dispatch.
  38. typedef struct GPBOutputBufferState {
  39. uint8_t *bytes;
  40. size_t size;
  41. size_t position;
  42. NSOutputStream *output;
  43. } GPBOutputBufferState;
  44. @implementation GPBCodedOutputStream {
  45. GPBOutputBufferState state_;
  46. NSMutableData *buffer_;
  47. }
  48. static const int32_t LITTLE_ENDIAN_32_SIZE = sizeof(uint32_t);
  49. static const int32_t LITTLE_ENDIAN_64_SIZE = sizeof(uint64_t);
  50. // Internal helper that writes the current buffer to the output. The
  51. // buffer position is reset to its initial value when this returns.
  52. static void GPBRefreshBuffer(GPBOutputBufferState *state) {
  53. if (state->output == nil) {
  54. // We're writing to a single buffer.
  55. [NSException raise:@"OutOfSpace" format:@""];
  56. }
  57. if (state->position != 0) {
  58. NSInteger written =
  59. [state->output write:state->bytes maxLength:state->position];
  60. if (written != (NSInteger)state->position) {
  61. [NSException raise:@"WriteFailed" format:@""];
  62. }
  63. state->position = 0;
  64. }
  65. }
  66. static void GPBWriteRawByte(GPBOutputBufferState *state, uint8_t value) {
  67. if (state->position == state->size) {
  68. GPBRefreshBuffer(state);
  69. }
  70. state->bytes[state->position++] = value;
  71. }
  72. static void GPBWriteRawVarint32(GPBOutputBufferState *state, int32_t value) {
  73. while (YES) {
  74. if ((value & ~0x7F) == 0) {
  75. uint8_t val = (uint8_t)value;
  76. GPBWriteRawByte(state, val);
  77. return;
  78. } else {
  79. GPBWriteRawByte(state, (value & 0x7F) | 0x80);
  80. value = GPBLogicalRightShift32(value, 7);
  81. }
  82. }
  83. }
  84. static void GPBWriteRawVarint64(GPBOutputBufferState *state, int64_t value) {
  85. while (YES) {
  86. if ((value & ~0x7FL) == 0) {
  87. uint8_t val = (uint8_t)value;
  88. GPBWriteRawByte(state, val);
  89. return;
  90. } else {
  91. GPBWriteRawByte(state, ((int32_t)value & 0x7F) | 0x80);
  92. value = GPBLogicalRightShift64(value, 7);
  93. }
  94. }
  95. }
  96. static void GPBWriteInt32NoTag(GPBOutputBufferState *state, int32_t value) {
  97. if (value >= 0) {
  98. GPBWriteRawVarint32(state, value);
  99. } else {
  100. // Must sign-extend
  101. GPBWriteRawVarint64(state, value);
  102. }
  103. }
  104. static void GPBWriteUInt32(GPBOutputBufferState *state, int32_t fieldNumber,
  105. uint32_t value) {
  106. GPBWriteTagWithFormat(state, fieldNumber, GPBWireFormatVarint);
  107. GPBWriteRawVarint32(state, value);
  108. }
  109. static void GPBWriteTagWithFormat(GPBOutputBufferState *state,
  110. uint32_t fieldNumber, GPBWireFormat format) {
  111. GPBWriteRawVarint32(state, GPBWireFormatMakeTag(fieldNumber, format));
  112. }
  113. static void GPBWriteRawLittleEndian32(GPBOutputBufferState *state,
  114. int32_t value) {
  115. GPBWriteRawByte(state, (value)&0xFF);
  116. GPBWriteRawByte(state, (value >> 8) & 0xFF);
  117. GPBWriteRawByte(state, (value >> 16) & 0xFF);
  118. GPBWriteRawByte(state, (value >> 24) & 0xFF);
  119. }
  120. static void GPBWriteRawLittleEndian64(GPBOutputBufferState *state,
  121. int64_t value) {
  122. GPBWriteRawByte(state, (int32_t)(value)&0xFF);
  123. GPBWriteRawByte(state, (int32_t)(value >> 8) & 0xFF);
  124. GPBWriteRawByte(state, (int32_t)(value >> 16) & 0xFF);
  125. GPBWriteRawByte(state, (int32_t)(value >> 24) & 0xFF);
  126. GPBWriteRawByte(state, (int32_t)(value >> 32) & 0xFF);
  127. GPBWriteRawByte(state, (int32_t)(value >> 40) & 0xFF);
  128. GPBWriteRawByte(state, (int32_t)(value >> 48) & 0xFF);
  129. GPBWriteRawByte(state, (int32_t)(value >> 56) & 0xFF);
  130. }
  131. #if DEBUG && !defined(NS_BLOCK_ASSERTIONS)
  132. + (void)load {
  133. // This test exists to verify that CFStrings with embedded NULLs will work
  134. // for us. If this Assert fails, all code below that depends on
  135. // CFStringGetCStringPtr will NOT work properly on strings that contain
  136. // embedded NULLs, and we do get that in some protobufs.
  137. // Note that this will not be compiled in release.
  138. // We didn't feel that just keeping it in a unit test was sufficient because
  139. // the Protobuf unit tests are only run when somebody is actually working
  140. // on protobufs.
  141. CFStringRef zeroTest = CFSTR("Test\0String");
  142. const char *cString = CFStringGetCStringPtr(zeroTest, kCFStringEncodingUTF8);
  143. NSAssert(cString == NULL, @"Serious Error");
  144. }
  145. #endif // DEBUG && !defined(NS_BLOCK_ASSERTIONS)
  146. - (void)dealloc {
  147. [self flush];
  148. [state_.output close];
  149. [state_.output release];
  150. [buffer_ release];
  151. [super dealloc];
  152. }
  153. - (instancetype)initWithOutputStream:(NSOutputStream *)output {
  154. NSMutableData *data = [NSMutableData dataWithLength:PAGE_SIZE];
  155. return [self initWithOutputStream:output data:data];
  156. }
  157. - (instancetype)initWithData:(NSMutableData *)data {
  158. return [self initWithOutputStream:nil data:data];
  159. }
  160. - (instancetype)initWithOutputStream:(NSOutputStream *)output
  161. bufferSize:(size_t)bufferSize {
  162. NSMutableData *data = [NSMutableData dataWithLength:bufferSize];
  163. return [self initWithOutputStream:output data:data];
  164. }
  165. - (instancetype)initWithOutputStream:(NSOutputStream *)output
  166. data:(NSMutableData *)data {
  167. if ((self = [super init])) {
  168. buffer_ = [data retain];
  169. [output open];
  170. state_.bytes = [data mutableBytes];
  171. state_.size = [data length];
  172. state_.output = [output retain];
  173. }
  174. return self;
  175. }
  176. + (instancetype)streamWithOutputStream:(NSOutputStream *)output
  177. bufferSize:(size_t)bufferSize {
  178. return [[[self alloc] initWithOutputStream:output
  179. bufferSize:bufferSize] autorelease];
  180. }
  181. + (instancetype)streamWithOutputStream:(NSOutputStream *)output {
  182. return [[[self alloc] initWithOutputStream:output
  183. bufferSize:PAGE_SIZE] autorelease];
  184. }
  185. + (instancetype)streamWithData:(NSMutableData *)data {
  186. return [[[self alloc] initWithData:data] autorelease];
  187. }
  188. - (void)writeDoubleNoTag:(double)value {
  189. GPBWriteRawLittleEndian64(&state_, GPBConvertDoubleToInt64(value));
  190. }
  191. - (void)writeDouble:(int32_t)fieldNumber value:(double)value {
  192. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatFixed64);
  193. GPBWriteRawLittleEndian64(&state_, GPBConvertDoubleToInt64(value));
  194. }
  195. - (void)writeFloatNoTag:(float)value {
  196. GPBWriteRawLittleEndian32(&state_, GPBConvertFloatToInt32(value));
  197. }
  198. - (void)writeFloat:(int32_t)fieldNumber value:(float)value {
  199. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatFixed32);
  200. GPBWriteRawLittleEndian32(&state_, GPBConvertFloatToInt32(value));
  201. }
  202. - (void)writeUInt64NoTag:(uint64_t)value {
  203. GPBWriteRawVarint64(&state_, value);
  204. }
  205. - (void)writeUInt64:(int32_t)fieldNumber value:(uint64_t)value {
  206. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatVarint);
  207. GPBWriteRawVarint64(&state_, value);
  208. }
  209. - (void)writeInt64NoTag:(int64_t)value {
  210. GPBWriteRawVarint64(&state_, value);
  211. }
  212. - (void)writeInt64:(int32_t)fieldNumber value:(int64_t)value {
  213. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatVarint);
  214. GPBWriteRawVarint64(&state_, value);
  215. }
  216. - (void)writeInt32NoTag:(int32_t)value {
  217. GPBWriteInt32NoTag(&state_, value);
  218. }
  219. - (void)writeInt32:(int32_t)fieldNumber value:(int32_t)value {
  220. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatVarint);
  221. GPBWriteInt32NoTag(&state_, value);
  222. }
  223. - (void)writeFixed64NoTag:(uint64_t)value {
  224. GPBWriteRawLittleEndian64(&state_, value);
  225. }
  226. - (void)writeFixed64:(int32_t)fieldNumber value:(uint64_t)value {
  227. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatFixed64);
  228. GPBWriteRawLittleEndian64(&state_, value);
  229. }
  230. - (void)writeFixed32NoTag:(uint32_t)value {
  231. GPBWriteRawLittleEndian32(&state_, value);
  232. }
  233. - (void)writeFixed32:(int32_t)fieldNumber value:(uint32_t)value {
  234. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatFixed32);
  235. GPBWriteRawLittleEndian32(&state_, value);
  236. }
  237. - (void)writeBoolNoTag:(BOOL)value {
  238. GPBWriteRawByte(&state_, (value ? 1 : 0));
  239. }
  240. - (void)writeBool:(int32_t)fieldNumber value:(BOOL)value {
  241. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatVarint);
  242. GPBWriteRawByte(&state_, (value ? 1 : 0));
  243. }
  244. - (void)writeStringNoTag:(const NSString *)value {
  245. // If you are concerned about embedded NULLs see the test in
  246. // +load above.
  247. const char *quickString =
  248. CFStringGetCStringPtr((CFStringRef)value, kCFStringEncodingUTF8);
  249. size_t length = (quickString != NULL)
  250. ? strlen(quickString)
  251. : [value lengthOfBytesUsingEncoding:NSUTF8StringEncoding];
  252. GPBWriteRawVarint32(&state_, (int32_t)length);
  253. if (length == 0) {
  254. return;
  255. }
  256. // Fast path: Most strings are short, if the buffer already has space,
  257. // add to it directly.
  258. NSUInteger bufferBytesLeft = state_.size - state_.position;
  259. if (bufferBytesLeft >= length) {
  260. NSUInteger usedBufferLength = 0;
  261. BOOL result;
  262. if (quickString != NULL) {
  263. memcpy(state_.bytes + state_.position, quickString, length);
  264. usedBufferLength = length;
  265. result = YES;
  266. } else {
  267. result = [value getBytes:state_.bytes + state_.position
  268. maxLength:bufferBytesLeft
  269. usedLength:&usedBufferLength
  270. encoding:NSUTF8StringEncoding
  271. options:0
  272. range:NSMakeRange(0, [value length])
  273. remainingRange:NULL];
  274. }
  275. if (result) {
  276. NSAssert2((usedBufferLength == length),
  277. @"Our UTF8 calc was wrong? %tu vs %zd", usedBufferLength,
  278. length);
  279. state_.position += usedBufferLength;
  280. return;
  281. }
  282. } else if (quickString != NULL) {
  283. [self writeRawPtr:quickString offset:0 length:length];
  284. } else {
  285. // Slow path: just get it as data and write it out.
  286. NSData *utf8Data = [value dataUsingEncoding:NSUTF8StringEncoding];
  287. NSAssert2(([utf8Data length] == length),
  288. @"Strings UTF8 length was wrong? %tu vs %zd", [utf8Data length],
  289. length);
  290. [self writeRawData:utf8Data];
  291. }
  292. }
  293. - (void)writeString:(int32_t)fieldNumber value:(NSString *)value {
  294. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatLengthDelimited);
  295. [self writeStringNoTag:value];
  296. }
  297. - (void)writeGroupNoTag:(int32_t)fieldNumber value:(GPBMessage *)value {
  298. [value writeToCodedOutputStream:self];
  299. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatEndGroup);
  300. }
  301. - (void)writeGroup:(int32_t)fieldNumber value:(GPBMessage *)value {
  302. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatStartGroup);
  303. [self writeGroupNoTag:fieldNumber value:value];
  304. }
  305. - (void)writeUnknownGroupNoTag:(int32_t)fieldNumber
  306. value:(const GPBUnknownFieldSet *)value {
  307. [value writeToCodedOutputStream:self];
  308. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatEndGroup);
  309. }
  310. - (void)writeUnknownGroup:(int32_t)fieldNumber
  311. value:(GPBUnknownFieldSet *)value {
  312. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatStartGroup);
  313. [self writeUnknownGroupNoTag:fieldNumber value:value];
  314. }
  315. - (void)writeMessageNoTag:(GPBMessage *)value {
  316. GPBWriteRawVarint32(&state_, (int32_t)[value serializedSize]);
  317. [value writeToCodedOutputStream:self];
  318. }
  319. - (void)writeMessage:(int32_t)fieldNumber value:(GPBMessage *)value {
  320. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatLengthDelimited);
  321. [self writeMessageNoTag:value];
  322. }
  323. - (void)writeBytesNoTag:(NSData *)value {
  324. GPBWriteRawVarint32(&state_, (int32_t)[value length]);
  325. [self writeRawData:value];
  326. }
  327. - (void)writeBytes:(int32_t)fieldNumber value:(NSData *)value {
  328. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatLengthDelimited);
  329. [self writeBytesNoTag:value];
  330. }
  331. - (void)writeUInt32NoTag:(uint32_t)value {
  332. GPBWriteRawVarint32(&state_, value);
  333. }
  334. - (void)writeUInt32:(int32_t)fieldNumber value:(uint32_t)value {
  335. GPBWriteUInt32(&state_, fieldNumber, value);
  336. }
  337. - (void)writeEnumNoTag:(int32_t)value {
  338. GPBWriteRawVarint32(&state_, value);
  339. }
  340. - (void)writeEnum:(int32_t)fieldNumber value:(int32_t)value {
  341. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatVarint);
  342. GPBWriteRawVarint32(&state_, value);
  343. }
  344. - (void)writeSFixed32NoTag:(int32_t)value {
  345. GPBWriteRawLittleEndian32(&state_, value);
  346. }
  347. - (void)writeSFixed32:(int32_t)fieldNumber value:(int32_t)value {
  348. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatFixed32);
  349. GPBWriteRawLittleEndian32(&state_, value);
  350. }
  351. - (void)writeSFixed64NoTag:(int64_t)value {
  352. GPBWriteRawLittleEndian64(&state_, value);
  353. }
  354. - (void)writeSFixed64:(int32_t)fieldNumber value:(int64_t)value {
  355. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatFixed64);
  356. GPBWriteRawLittleEndian64(&state_, value);
  357. }
  358. - (void)writeSInt32NoTag:(int32_t)value {
  359. GPBWriteRawVarint32(&state_, GPBEncodeZigZag32(value));
  360. }
  361. - (void)writeSInt32:(int32_t)fieldNumber value:(int32_t)value {
  362. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatVarint);
  363. GPBWriteRawVarint32(&state_, GPBEncodeZigZag32(value));
  364. }
  365. - (void)writeSInt64NoTag:(int64_t)value {
  366. GPBWriteRawVarint64(&state_, GPBEncodeZigZag64(value));
  367. }
  368. - (void)writeSInt64:(int32_t)fieldNumber value:(int64_t)value {
  369. GPBWriteTagWithFormat(&state_, fieldNumber, GPBWireFormatVarint);
  370. GPBWriteRawVarint64(&state_, GPBEncodeZigZag64(value));
  371. }
  372. //%PDDM-DEFINE WRITE_PACKABLE_DEFNS(NAME, ARRAY_TYPE, TYPE, ACCESSOR_NAME)
  373. //%- (void)write##NAME##Array:(int32_t)fieldNumber
  374. //% NAME$S values:(GPB##ARRAY_TYPE##Array *)values
  375. //% NAME$S tag:(uint32_t)tag {
  376. //% if (tag != 0) {
  377. //% if (values.count == 0) return;
  378. //% __block size_t dataSize = 0;
  379. //% [values enumerate##ACCESSOR_NAME##ValuesWithBlock:^(TYPE value, NSUInteger idx, BOOL *stop) {
  380. //%#pragma unused(idx, stop)
  381. //% dataSize += GPBCompute##NAME##SizeNoTag(value);
  382. //% }];
  383. //% GPBWriteRawVarint32(&state_, tag);
  384. //% GPBWriteRawVarint32(&state_, (int32_t)dataSize);
  385. //% [values enumerate##ACCESSOR_NAME##ValuesWithBlock:^(TYPE value, NSUInteger idx, BOOL *stop) {
  386. //%#pragma unused(idx, stop)
  387. //% [self write##NAME##NoTag:value];
  388. //% }];
  389. //% } else {
  390. //% [values enumerate##ACCESSOR_NAME##ValuesWithBlock:^(TYPE value, NSUInteger idx, BOOL *stop) {
  391. //%#pragma unused(idx, stop)
  392. //% [self write##NAME:fieldNumber value:value];
  393. //% }];
  394. //% }
  395. //%}
  396. //%
  397. //%PDDM-DEFINE WRITE_UNPACKABLE_DEFNS(NAME, TYPE)
  398. //%- (void)write##NAME##Array:(int32_t)fieldNumber values:(NSArray *)values {
  399. //% for (TYPE *value in values) {
  400. //% [self write##NAME:fieldNumber value:value];
  401. //% }
  402. //%}
  403. //%
  404. //%PDDM-EXPAND WRITE_PACKABLE_DEFNS(Double, Double, double, )
  405. // This block of code is generated, do not edit it directly.
  406. - (void)writeDoubleArray:(int32_t)fieldNumber
  407. values:(GPBDoubleArray *)values
  408. tag:(uint32_t)tag {
  409. if (tag != 0) {
  410. if (values.count == 0) return;
  411. __block size_t dataSize = 0;
  412. [values enumerateValuesWithBlock:^(double value, NSUInteger idx, BOOL *stop) {
  413. #pragma unused(idx, stop)
  414. dataSize += GPBComputeDoubleSizeNoTag(value);
  415. }];
  416. GPBWriteRawVarint32(&state_, tag);
  417. GPBWriteRawVarint32(&state_, (int32_t)dataSize);
  418. [values enumerateValuesWithBlock:^(double value, NSUInteger idx, BOOL *stop) {
  419. #pragma unused(idx, stop)
  420. [self writeDoubleNoTag:value];
  421. }];
  422. } else {
  423. [values enumerateValuesWithBlock:^(double value, NSUInteger idx, BOOL *stop) {
  424. #pragma unused(idx, stop)
  425. [self writeDouble:fieldNumber value:value];
  426. }];
  427. }
  428. }
  429. //%PDDM-EXPAND WRITE_PACKABLE_DEFNS(Float, Float, float, )
  430. // This block of code is generated, do not edit it directly.
  431. - (void)writeFloatArray:(int32_t)fieldNumber
  432. values:(GPBFloatArray *)values
  433. tag:(uint32_t)tag {
  434. if (tag != 0) {
  435. if (values.count == 0) return;
  436. __block size_t dataSize = 0;
  437. [values enumerateValuesWithBlock:^(float value, NSUInteger idx, BOOL *stop) {
  438. #pragma unused(idx, stop)
  439. dataSize += GPBComputeFloatSizeNoTag(value);
  440. }];
  441. GPBWriteRawVarint32(&state_, tag);
  442. GPBWriteRawVarint32(&state_, (int32_t)dataSize);
  443. [values enumerateValuesWithBlock:^(float value, NSUInteger idx, BOOL *stop) {
  444. #pragma unused(idx, stop)
  445. [self writeFloatNoTag:value];
  446. }];
  447. } else {
  448. [values enumerateValuesWithBlock:^(float value, NSUInteger idx, BOOL *stop) {
  449. #pragma unused(idx, stop)
  450. [self writeFloat:fieldNumber value:value];
  451. }];
  452. }
  453. }
  454. //%PDDM-EXPAND WRITE_PACKABLE_DEFNS(UInt64, UInt64, uint64_t, )
  455. // This block of code is generated, do not edit it directly.
  456. - (void)writeUInt64Array:(int32_t)fieldNumber
  457. values:(GPBUInt64Array *)values
  458. tag:(uint32_t)tag {
  459. if (tag != 0) {
  460. if (values.count == 0) return;
  461. __block size_t dataSize = 0;
  462. [values enumerateValuesWithBlock:^(uint64_t value, NSUInteger idx, BOOL *stop) {
  463. #pragma unused(idx, stop)
  464. dataSize += GPBComputeUInt64SizeNoTag(value);
  465. }];
  466. GPBWriteRawVarint32(&state_, tag);
  467. GPBWriteRawVarint32(&state_, (int32_t)dataSize);
  468. [values enumerateValuesWithBlock:^(uint64_t value, NSUInteger idx, BOOL *stop) {
  469. #pragma unused(idx, stop)
  470. [self writeUInt64NoTag:value];
  471. }];
  472. } else {
  473. [values enumerateValuesWithBlock:^(uint64_t value, NSUInteger idx, BOOL *stop) {
  474. #pragma unused(idx, stop)
  475. [self writeUInt64:fieldNumber value:value];
  476. }];
  477. }
  478. }
  479. //%PDDM-EXPAND WRITE_PACKABLE_DEFNS(Int64, Int64, int64_t, )
  480. // This block of code is generated, do not edit it directly.
  481. - (void)writeInt64Array:(int32_t)fieldNumber
  482. values:(GPBInt64Array *)values
  483. tag:(uint32_t)tag {
  484. if (tag != 0) {
  485. if (values.count == 0) return;
  486. __block size_t dataSize = 0;
  487. [values enumerateValuesWithBlock:^(int64_t value, NSUInteger idx, BOOL *stop) {
  488. #pragma unused(idx, stop)
  489. dataSize += GPBComputeInt64SizeNoTag(value);
  490. }];
  491. GPBWriteRawVarint32(&state_, tag);
  492. GPBWriteRawVarint32(&state_, (int32_t)dataSize);
  493. [values enumerateValuesWithBlock:^(int64_t value, NSUInteger idx, BOOL *stop) {
  494. #pragma unused(idx, stop)
  495. [self writeInt64NoTag:value];
  496. }];
  497. } else {
  498. [values enumerateValuesWithBlock:^(int64_t value, NSUInteger idx, BOOL *stop) {
  499. #pragma unused(idx, stop)
  500. [self writeInt64:fieldNumber value:value];
  501. }];
  502. }
  503. }
  504. //%PDDM-EXPAND WRITE_PACKABLE_DEFNS(Int32, Int32, int32_t, )
  505. // This block of code is generated, do not edit it directly.
  506. - (void)writeInt32Array:(int32_t)fieldNumber
  507. values:(GPBInt32Array *)values
  508. tag:(uint32_t)tag {
  509. if (tag != 0) {
  510. if (values.count == 0) return;
  511. __block size_t dataSize = 0;
  512. [values enumerateValuesWithBlock:^(int32_t value, NSUInteger idx, BOOL *stop) {
  513. #pragma unused(idx, stop)
  514. dataSize += GPBComputeInt32SizeNoTag(value);
  515. }];
  516. GPBWriteRawVarint32(&state_, tag);
  517. GPBWriteRawVarint32(&state_, (int32_t)dataSize);
  518. [values enumerateValuesWithBlock:^(int32_t value, NSUInteger idx, BOOL *stop) {
  519. #pragma unused(idx, stop)
  520. [self writeInt32NoTag:value];
  521. }];
  522. } else {
  523. [values enumerateValuesWithBlock:^(int32_t value, NSUInteger idx, BOOL *stop) {
  524. #pragma unused(idx, stop)
  525. [self writeInt32:fieldNumber value:value];
  526. }];
  527. }
  528. }
  529. //%PDDM-EXPAND WRITE_PACKABLE_DEFNS(UInt32, UInt32, uint32_t, )
  530. // This block of code is generated, do not edit it directly.
  531. - (void)writeUInt32Array:(int32_t)fieldNumber
  532. values:(GPBUInt32Array *)values
  533. tag:(uint32_t)tag {
  534. if (tag != 0) {
  535. if (values.count == 0) return;
  536. __block size_t dataSize = 0;
  537. [values enumerateValuesWithBlock:^(uint32_t value, NSUInteger idx, BOOL *stop) {
  538. #pragma unused(idx, stop)
  539. dataSize += GPBComputeUInt32SizeNoTag(value);
  540. }];
  541. GPBWriteRawVarint32(&state_, tag);
  542. GPBWriteRawVarint32(&state_, (int32_t)dataSize);
  543. [values enumerateValuesWithBlock:^(uint32_t value, NSUInteger idx, BOOL *stop) {
  544. #pragma unused(idx, stop)
  545. [self writeUInt32NoTag:value];
  546. }];
  547. } else {
  548. [values enumerateValuesWithBlock:^(uint32_t value, NSUInteger idx, BOOL *stop) {
  549. #pragma unused(idx, stop)
  550. [self writeUInt32:fieldNumber value:value];
  551. }];
  552. }
  553. }
  554. //%PDDM-EXPAND WRITE_PACKABLE_DEFNS(Fixed64, UInt64, uint64_t, )
  555. // This block of code is generated, do not edit it directly.
  556. - (void)writeFixed64Array:(int32_t)fieldNumber
  557. values:(GPBUInt64Array *)values
  558. tag:(uint32_t)tag {
  559. if (tag != 0) {
  560. if (values.count == 0) return;
  561. __block size_t dataSize = 0;
  562. [values enumerateValuesWithBlock:^(uint64_t value, NSUInteger idx, BOOL *stop) {
  563. #pragma unused(idx, stop)
  564. dataSize += GPBComputeFixed64SizeNoTag(value);
  565. }];
  566. GPBWriteRawVarint32(&state_, tag);
  567. GPBWriteRawVarint32(&state_, (int32_t)dataSize);
  568. [values enumerateValuesWithBlock:^(uint64_t value, NSUInteger idx, BOOL *stop) {
  569. #pragma unused(idx, stop)
  570. [self writeFixed64NoTag:value];
  571. }];
  572. } else {
  573. [values enumerateValuesWithBlock:^(uint64_t value, NSUInteger idx, BOOL *stop) {
  574. #pragma unused(idx, stop)
  575. [self writeFixed64:fieldNumber value:value];
  576. }];
  577. }
  578. }
  579. //%PDDM-EXPAND WRITE_PACKABLE_DEFNS(Fixed32, UInt32, uint32_t, )
  580. // This block of code is generated, do not edit it directly.
  581. - (void)writeFixed32Array:(int32_t)fieldNumber
  582. values:(GPBUInt32Array *)values
  583. tag:(uint32_t)tag {
  584. if (tag != 0) {
  585. if (values.count == 0) return;
  586. __block size_t dataSize = 0;
  587. [values enumerateValuesWithBlock:^(uint32_t value, NSUInteger idx, BOOL *stop) {
  588. #pragma unused(idx, stop)
  589. dataSize += GPBComputeFixed32SizeNoTag(value);
  590. }];
  591. GPBWriteRawVarint32(&state_, tag);
  592. GPBWriteRawVarint32(&state_, (int32_t)dataSize);
  593. [values enumerateValuesWithBlock:^(uint32_t value, NSUInteger idx, BOOL *stop) {
  594. #pragma unused(idx, stop)
  595. [self writeFixed32NoTag:value];
  596. }];
  597. } else {
  598. [values enumerateValuesWithBlock:^(uint32_t value, NSUInteger idx, BOOL *stop) {
  599. #pragma unused(idx, stop)
  600. [self writeFixed32:fieldNumber value:value];
  601. }];
  602. }
  603. }
  604. //%PDDM-EXPAND WRITE_PACKABLE_DEFNS(SInt32, Int32, int32_t, )
  605. // This block of code is generated, do not edit it directly.
  606. - (void)writeSInt32Array:(int32_t)fieldNumber
  607. values:(GPBInt32Array *)values
  608. tag:(uint32_t)tag {
  609. if (tag != 0) {
  610. if (values.count == 0) return;
  611. __block size_t dataSize = 0;
  612. [values enumerateValuesWithBlock:^(int32_t value, NSUInteger idx, BOOL *stop) {
  613. #pragma unused(idx, stop)
  614. dataSize += GPBComputeSInt32SizeNoTag(value);
  615. }];
  616. GPBWriteRawVarint32(&state_, tag);
  617. GPBWriteRawVarint32(&state_, (int32_t)dataSize);
  618. [values enumerateValuesWithBlock:^(int32_t value, NSUInteger idx, BOOL *stop) {
  619. #pragma unused(idx, stop)
  620. [self writeSInt32NoTag:value];
  621. }];
  622. } else {
  623. [values enumerateValuesWithBlock:^(int32_t value, NSUInteger idx, BOOL *stop) {
  624. #pragma unused(idx, stop)
  625. [self writeSInt32:fieldNumber value:value];
  626. }];
  627. }
  628. }
  629. //%PDDM-EXPAND WRITE_PACKABLE_DEFNS(SInt64, Int64, int64_t, )
  630. // This block of code is generated, do not edit it directly.
  631. - (void)writeSInt64Array:(int32_t)fieldNumber
  632. values:(GPBInt64Array *)values
  633. tag:(uint32_t)tag {
  634. if (tag != 0) {
  635. if (values.count == 0) return;
  636. __block size_t dataSize = 0;
  637. [values enumerateValuesWithBlock:^(int64_t value, NSUInteger idx, BOOL *stop) {
  638. #pragma unused(idx, stop)
  639. dataSize += GPBComputeSInt64SizeNoTag(value);
  640. }];
  641. GPBWriteRawVarint32(&state_, tag);
  642. GPBWriteRawVarint32(&state_, (int32_t)dataSize);
  643. [values enumerateValuesWithBlock:^(int64_t value, NSUInteger idx, BOOL *stop) {
  644. #pragma unused(idx, stop)
  645. [self writeSInt64NoTag:value];
  646. }];
  647. } else {
  648. [values enumerateValuesWithBlock:^(int64_t value, NSUInteger idx, BOOL *stop) {
  649. #pragma unused(idx, stop)
  650. [self writeSInt64:fieldNumber value:value];
  651. }];
  652. }
  653. }
  654. //%PDDM-EXPAND WRITE_PACKABLE_DEFNS(SFixed64, Int64, int64_t, )
  655. // This block of code is generated, do not edit it directly.
  656. - (void)writeSFixed64Array:(int32_t)fieldNumber
  657. values:(GPBInt64Array *)values
  658. tag:(uint32_t)tag {
  659. if (tag != 0) {
  660. if (values.count == 0) return;
  661. __block size_t dataSize = 0;
  662. [values enumerateValuesWithBlock:^(int64_t value, NSUInteger idx, BOOL *stop) {
  663. #pragma unused(idx, stop)
  664. dataSize += GPBComputeSFixed64SizeNoTag(value);
  665. }];
  666. GPBWriteRawVarint32(&state_, tag);
  667. GPBWriteRawVarint32(&state_, (int32_t)dataSize);
  668. [values enumerateValuesWithBlock:^(int64_t value, NSUInteger idx, BOOL *stop) {
  669. #pragma unused(idx, stop)
  670. [self writeSFixed64NoTag:value];
  671. }];
  672. } else {
  673. [values enumerateValuesWithBlock:^(int64_t value, NSUInteger idx, BOOL *stop) {
  674. #pragma unused(idx, stop)
  675. [self writeSFixed64:fieldNumber value:value];
  676. }];
  677. }
  678. }
  679. //%PDDM-EXPAND WRITE_PACKABLE_DEFNS(SFixed32, Int32, int32_t, )
  680. // This block of code is generated, do not edit it directly.
  681. - (void)writeSFixed32Array:(int32_t)fieldNumber
  682. values:(GPBInt32Array *)values
  683. tag:(uint32_t)tag {
  684. if (tag != 0) {
  685. if (values.count == 0) return;
  686. __block size_t dataSize = 0;
  687. [values enumerateValuesWithBlock:^(int32_t value, NSUInteger idx, BOOL *stop) {
  688. #pragma unused(idx, stop)
  689. dataSize += GPBComputeSFixed32SizeNoTag(value);
  690. }];
  691. GPBWriteRawVarint32(&state_, tag);
  692. GPBWriteRawVarint32(&state_, (int32_t)dataSize);
  693. [values enumerateValuesWithBlock:^(int32_t value, NSUInteger idx, BOOL *stop) {
  694. #pragma unused(idx, stop)
  695. [self writeSFixed32NoTag:value];
  696. }];
  697. } else {
  698. [values enumerateValuesWithBlock:^(int32_t value, NSUInteger idx, BOOL *stop) {
  699. #pragma unused(idx, stop)
  700. [self writeSFixed32:fieldNumber value:value];
  701. }];
  702. }
  703. }
  704. //%PDDM-EXPAND WRITE_PACKABLE_DEFNS(Bool, Bool, BOOL, )
  705. // This block of code is generated, do not edit it directly.
  706. - (void)writeBoolArray:(int32_t)fieldNumber
  707. values:(GPBBoolArray *)values
  708. tag:(uint32_t)tag {
  709. if (tag != 0) {
  710. if (values.count == 0) return;
  711. __block size_t dataSize = 0;
  712. [values enumerateValuesWithBlock:^(BOOL value, NSUInteger idx, BOOL *stop) {
  713. #pragma unused(idx, stop)
  714. dataSize += GPBComputeBoolSizeNoTag(value);
  715. }];
  716. GPBWriteRawVarint32(&state_, tag);
  717. GPBWriteRawVarint32(&state_, (int32_t)dataSize);
  718. [values enumerateValuesWithBlock:^(BOOL value, NSUInteger idx, BOOL *stop) {
  719. #pragma unused(idx, stop)
  720. [self writeBoolNoTag:value];
  721. }];
  722. } else {
  723. [values enumerateValuesWithBlock:^(BOOL value, NSUInteger idx, BOOL *stop) {
  724. #pragma unused(idx, stop)
  725. [self writeBool:fieldNumber value:value];
  726. }];
  727. }
  728. }
  729. //%PDDM-EXPAND WRITE_PACKABLE_DEFNS(Enum, Enum, int32_t, Raw)
  730. // This block of code is generated, do not edit it directly.
  731. - (void)writeEnumArray:(int32_t)fieldNumber
  732. values:(GPBEnumArray *)values
  733. tag:(uint32_t)tag {
  734. if (tag != 0) {
  735. if (values.count == 0) return;
  736. __block size_t dataSize = 0;
  737. [values enumerateRawValuesWithBlock:^(int32_t value, NSUInteger idx, BOOL *stop) {
  738. #pragma unused(idx, stop)
  739. dataSize += GPBComputeEnumSizeNoTag(value);
  740. }];
  741. GPBWriteRawVarint32(&state_, tag);
  742. GPBWriteRawVarint32(&state_, (int32_t)dataSize);
  743. [values enumerateRawValuesWithBlock:^(int32_t value, NSUInteger idx, BOOL *stop) {
  744. #pragma unused(idx, stop)
  745. [self writeEnumNoTag:value];
  746. }];
  747. } else {
  748. [values enumerateRawValuesWithBlock:^(int32_t value, NSUInteger idx, BOOL *stop) {
  749. #pragma unused(idx, stop)
  750. [self writeEnum:fieldNumber value:value];
  751. }];
  752. }
  753. }
  754. //%PDDM-EXPAND WRITE_UNPACKABLE_DEFNS(String, NSString)
  755. // This block of code is generated, do not edit it directly.
  756. - (void)writeStringArray:(int32_t)fieldNumber values:(NSArray *)values {
  757. for (NSString *value in values) {
  758. [self writeString:fieldNumber value:value];
  759. }
  760. }
  761. //%PDDM-EXPAND WRITE_UNPACKABLE_DEFNS(Message, GPBMessage)
  762. // This block of code is generated, do not edit it directly.
  763. - (void)writeMessageArray:(int32_t)fieldNumber values:(NSArray *)values {
  764. for (GPBMessage *value in values) {
  765. [self writeMessage:fieldNumber value:value];
  766. }
  767. }
  768. //%PDDM-EXPAND WRITE_UNPACKABLE_DEFNS(Bytes, NSData)
  769. // This block of code is generated, do not edit it directly.
  770. - (void)writeBytesArray:(int32_t)fieldNumber values:(NSArray *)values {
  771. for (NSData *value in values) {
  772. [self writeBytes:fieldNumber value:value];
  773. }
  774. }
  775. //%PDDM-EXPAND WRITE_UNPACKABLE_DEFNS(Group, GPBMessage)
  776. // This block of code is generated, do not edit it directly.
  777. - (void)writeGroupArray:(int32_t)fieldNumber values:(NSArray *)values {
  778. for (GPBMessage *value in values) {
  779. [self writeGroup:fieldNumber value:value];
  780. }
  781. }
  782. //%PDDM-EXPAND WRITE_UNPACKABLE_DEFNS(UnknownGroup, GPBUnknownFieldSet)
  783. // This block of code is generated, do not edit it directly.
  784. - (void)writeUnknownGroupArray:(int32_t)fieldNumber values:(NSArray *)values {
  785. for (GPBUnknownFieldSet *value in values) {
  786. [self writeUnknownGroup:fieldNumber value:value];
  787. }
  788. }
  789. //%PDDM-EXPAND-END (19 expansions)
  790. - (void)writeMessageSetExtension:(int32_t)fieldNumber
  791. value:(GPBMessage *)value {
  792. GPBWriteTagWithFormat(&state_, GPBWireFormatMessageSetItem,
  793. GPBWireFormatStartGroup);
  794. GPBWriteUInt32(&state_, GPBWireFormatMessageSetTypeId, fieldNumber);
  795. [self writeMessage:GPBWireFormatMessageSetMessage value:value];
  796. GPBWriteTagWithFormat(&state_, GPBWireFormatMessageSetItem,
  797. GPBWireFormatEndGroup);
  798. }
  799. - (void)writeRawMessageSetExtension:(int32_t)fieldNumber value:(NSData *)value {
  800. GPBWriteTagWithFormat(&state_, GPBWireFormatMessageSetItem,
  801. GPBWireFormatStartGroup);
  802. GPBWriteUInt32(&state_, GPBWireFormatMessageSetTypeId, fieldNumber);
  803. [self writeBytes:GPBWireFormatMessageSetMessage value:value];
  804. GPBWriteTagWithFormat(&state_, GPBWireFormatMessageSetItem,
  805. GPBWireFormatEndGroup);
  806. }
  807. - (void)flush {
  808. if (state_.output != nil) {
  809. GPBRefreshBuffer(&state_);
  810. }
  811. }
  812. - (void)writeRawByte:(uint8_t)value {
  813. GPBWriteRawByte(&state_, value);
  814. }
  815. - (void)writeRawData:(const NSData *)data {
  816. [self writeRawPtr:[data bytes] offset:0 length:[data length]];
  817. }
  818. - (void)writeRawPtr:(const void *)value
  819. offset:(size_t)offset
  820. length:(size_t)length {
  821. if (value == nil || length == 0) {
  822. return;
  823. }
  824. NSUInteger bufferLength = state_.size;
  825. NSUInteger bufferBytesLeft = bufferLength - state_.position;
  826. if (bufferBytesLeft >= length) {
  827. // We have room in the current buffer.
  828. memcpy(state_.bytes + state_.position, ((uint8_t *)value) + offset, length);
  829. state_.position += length;
  830. } else {
  831. // Write extends past current buffer. Fill the rest of this buffer and
  832. // flush.
  833. size_t bytesWritten = bufferBytesLeft;
  834. memcpy(state_.bytes + state_.position, ((uint8_t *)value) + offset,
  835. bytesWritten);
  836. offset += bytesWritten;
  837. length -= bytesWritten;
  838. state_.position = bufferLength;
  839. GPBRefreshBuffer(&state_);
  840. bufferLength = state_.size;
  841. // Now deal with the rest.
  842. // Since we have an output stream, this is our buffer
  843. // and buffer offset == 0
  844. if (length <= bufferLength) {
  845. // Fits in new buffer.
  846. memcpy(state_.bytes, ((uint8_t *)value) + offset, length);
  847. state_.position = length;
  848. } else {
  849. // Write is very big. Let's do it all at once.
  850. [state_.output write:((uint8_t *)value) + offset maxLength:length];
  851. }
  852. }
  853. }
  854. - (void)writeTag:(uint32_t)fieldNumber format:(GPBWireFormat)format {
  855. GPBWriteTagWithFormat(&state_, fieldNumber, format);
  856. }
  857. - (void)writeRawVarint32:(int32_t)value {
  858. GPBWriteRawVarint32(&state_, value);
  859. }
  860. - (void)writeRawVarintSizeTAs32:(size_t)value {
  861. // Note the truncation.
  862. GPBWriteRawVarint32(&state_, (int32_t)value);
  863. }
  864. - (void)writeRawVarint64:(int64_t)value {
  865. GPBWriteRawVarint64(&state_, value);
  866. }
  867. - (void)writeRawLittleEndian32:(int32_t)value {
  868. GPBWriteRawLittleEndian32(&state_, value);
  869. }
  870. - (void)writeRawLittleEndian64:(int64_t)value {
  871. GPBWriteRawLittleEndian64(&state_, value);
  872. }
  873. @end
  874. size_t GPBComputeDoubleSizeNoTag(Float64 value) {
  875. #pragma unused(value)
  876. return LITTLE_ENDIAN_64_SIZE;
  877. }
  878. size_t GPBComputeFloatSizeNoTag(Float32 value) {
  879. #pragma unused(value)
  880. return LITTLE_ENDIAN_32_SIZE;
  881. }
  882. size_t GPBComputeUInt64SizeNoTag(uint64_t value) {
  883. return GPBComputeRawVarint64Size(value);
  884. }
  885. size_t GPBComputeInt64SizeNoTag(int64_t value) {
  886. return GPBComputeRawVarint64Size(value);
  887. }
  888. size_t GPBComputeInt32SizeNoTag(int32_t value) {
  889. if (value >= 0) {
  890. return GPBComputeRawVarint32Size(value);
  891. } else {
  892. // Must sign-extend.
  893. return 10;
  894. }
  895. }
  896. size_t GPBComputeSizeTSizeAsInt32NoTag(size_t value) {
  897. return GPBComputeInt32SizeNoTag((int32_t)value);
  898. }
  899. size_t GPBComputeFixed64SizeNoTag(uint64_t value) {
  900. #pragma unused(value)
  901. return LITTLE_ENDIAN_64_SIZE;
  902. }
  903. size_t GPBComputeFixed32SizeNoTag(uint32_t value) {
  904. #pragma unused(value)
  905. return LITTLE_ENDIAN_32_SIZE;
  906. }
  907. size_t GPBComputeBoolSizeNoTag(BOOL value) {
  908. #pragma unused(value)
  909. return 1;
  910. }
  911. size_t GPBComputeStringSizeNoTag(NSString *value) {
  912. // If you are concerned about embedded NULLs see the test in
  913. // +load above.
  914. const char *quickString =
  915. CFStringGetCStringPtr((CFStringRef)value, kCFStringEncodingUTF8);
  916. NSUInteger length =
  917. (quickString != NULL)
  918. ? strlen(quickString)
  919. : [value lengthOfBytesUsingEncoding:NSUTF8StringEncoding];
  920. return GPBComputeRawVarint32SizeForInteger(length) + length;
  921. }
  922. size_t GPBComputeGroupSizeNoTag(GPBMessage *value) {
  923. return [value serializedSize];
  924. }
  925. size_t GPBComputeUnknownGroupSizeNoTag(GPBUnknownFieldSet *value) {
  926. return value.serializedSize;
  927. }
  928. size_t GPBComputeMessageSizeNoTag(GPBMessage *value) {
  929. size_t size = [value serializedSize];
  930. return GPBComputeRawVarint32SizeForInteger(size) + size;
  931. }
  932. size_t GPBComputeBytesSizeNoTag(NSData *value) {
  933. NSUInteger valueLength = [value length];
  934. return GPBComputeRawVarint32SizeForInteger(valueLength) + valueLength;
  935. }
  936. size_t GPBComputeUInt32SizeNoTag(int32_t value) {
  937. return GPBComputeRawVarint32Size(value);
  938. }
  939. size_t GPBComputeEnumSizeNoTag(int32_t value) {
  940. return GPBComputeRawVarint32Size(value);
  941. }
  942. size_t GPBComputeSFixed32SizeNoTag(int32_t value) {
  943. #pragma unused(value)
  944. return LITTLE_ENDIAN_32_SIZE;
  945. }
  946. size_t GPBComputeSFixed64SizeNoTag(int64_t value) {
  947. #pragma unused(value)
  948. return LITTLE_ENDIAN_64_SIZE;
  949. }
  950. size_t GPBComputeSInt32SizeNoTag(int32_t value) {
  951. return GPBComputeRawVarint32Size(GPBEncodeZigZag32(value));
  952. }
  953. size_t GPBComputeSInt64SizeNoTag(int64_t value) {
  954. return GPBComputeRawVarint64Size(GPBEncodeZigZag64(value));
  955. }
  956. size_t GPBComputeDoubleSize(int32_t fieldNumber, double value) {
  957. return GPBComputeTagSize(fieldNumber) + GPBComputeDoubleSizeNoTag(value);
  958. }
  959. size_t GPBComputeFloatSize(int32_t fieldNumber, float value) {
  960. return GPBComputeTagSize(fieldNumber) + GPBComputeFloatSizeNoTag(value);
  961. }
  962. size_t GPBComputeUInt64Size(int32_t fieldNumber, uint64_t value) {
  963. return GPBComputeTagSize(fieldNumber) + GPBComputeUInt64SizeNoTag(value);
  964. }
  965. size_t GPBComputeInt64Size(int32_t fieldNumber, int64_t value) {
  966. return GPBComputeTagSize(fieldNumber) + GPBComputeInt64SizeNoTag(value);
  967. }
  968. size_t GPBComputeInt32Size(int32_t fieldNumber, int32_t value) {
  969. return GPBComputeTagSize(fieldNumber) + GPBComputeInt32SizeNoTag(value);
  970. }
  971. size_t GPBComputeFixed64Size(int32_t fieldNumber, uint64_t value) {
  972. return GPBComputeTagSize(fieldNumber) + GPBComputeFixed64SizeNoTag(value);
  973. }
  974. size_t GPBComputeFixed32Size(int32_t fieldNumber, uint32_t value) {
  975. return GPBComputeTagSize(fieldNumber) + GPBComputeFixed32SizeNoTag(value);
  976. }
  977. size_t GPBComputeBoolSize(int32_t fieldNumber, BOOL value) {
  978. return GPBComputeTagSize(fieldNumber) + GPBComputeBoolSizeNoTag(value);
  979. }
  980. size_t GPBComputeStringSize(int32_t fieldNumber, NSString *value) {
  981. return GPBComputeTagSize(fieldNumber) + GPBComputeStringSizeNoTag(value);
  982. }
  983. size_t GPBComputeGroupSize(int32_t fieldNumber, GPBMessage *value) {
  984. return GPBComputeTagSize(fieldNumber) * 2 + GPBComputeGroupSizeNoTag(value);
  985. }
  986. size_t GPBComputeUnknownGroupSize(int32_t fieldNumber,
  987. GPBUnknownFieldSet *value) {
  988. return GPBComputeTagSize(fieldNumber) * 2 +
  989. GPBComputeUnknownGroupSizeNoTag(value);
  990. }
  991. size_t GPBComputeMessageSize(int32_t fieldNumber, GPBMessage *value) {
  992. return GPBComputeTagSize(fieldNumber) + GPBComputeMessageSizeNoTag(value);
  993. }
  994. size_t GPBComputeBytesSize(int32_t fieldNumber, NSData *value) {
  995. return GPBComputeTagSize(fieldNumber) + GPBComputeBytesSizeNoTag(value);
  996. }
  997. size_t GPBComputeUInt32Size(int32_t fieldNumber, uint32_t value) {
  998. return GPBComputeTagSize(fieldNumber) + GPBComputeUInt32SizeNoTag(value);
  999. }
  1000. size_t GPBComputeEnumSize(int32_t fieldNumber, int32_t value) {
  1001. return GPBComputeTagSize(fieldNumber) + GPBComputeEnumSizeNoTag(value);
  1002. }
  1003. size_t GPBComputeSFixed32Size(int32_t fieldNumber, int32_t value) {
  1004. return GPBComputeTagSize(fieldNumber) + GPBComputeSFixed32SizeNoTag(value);
  1005. }
  1006. size_t GPBComputeSFixed64Size(int32_t fieldNumber, int64_t value) {
  1007. return GPBComputeTagSize(fieldNumber) + GPBComputeSFixed64SizeNoTag(value);
  1008. }
  1009. size_t GPBComputeSInt32Size(int32_t fieldNumber, int32_t value) {
  1010. return GPBComputeTagSize(fieldNumber) + GPBComputeSInt32SizeNoTag(value);
  1011. }
  1012. size_t GPBComputeSInt64Size(int32_t fieldNumber, int64_t value) {
  1013. return GPBComputeTagSize(fieldNumber) +
  1014. GPBComputeRawVarint64Size(GPBEncodeZigZag64(value));
  1015. }
  1016. size_t GPBComputeMessageSetExtensionSize(int32_t fieldNumber,
  1017. GPBMessage *value) {
  1018. return GPBComputeTagSize(GPBWireFormatMessageSetItem) * 2 +
  1019. GPBComputeUInt32Size(GPBWireFormatMessageSetTypeId, fieldNumber) +
  1020. GPBComputeMessageSize(GPBWireFormatMessageSetMessage, value);
  1021. }
  1022. size_t GPBComputeRawMessageSetExtensionSize(int32_t fieldNumber,
  1023. NSData *value) {
  1024. return GPBComputeTagSize(GPBWireFormatMessageSetItem) * 2 +
  1025. GPBComputeUInt32Size(GPBWireFormatMessageSetTypeId, fieldNumber) +
  1026. GPBComputeBytesSize(GPBWireFormatMessageSetMessage, value);
  1027. }
  1028. size_t GPBComputeTagSize(int32_t fieldNumber) {
  1029. return GPBComputeRawVarint32Size(
  1030. GPBWireFormatMakeTag(fieldNumber, GPBWireFormatVarint));
  1031. }
  1032. size_t GPBComputeWireFormatTagSize(int field_number, GPBDataType dataType) {
  1033. size_t result = GPBComputeTagSize(field_number);
  1034. if (dataType == GPBDataTypeGroup) {
  1035. // Groups have both a start and an end tag.
  1036. return result * 2;
  1037. } else {
  1038. return result;
  1039. }
  1040. }
  1041. size_t GPBComputeRawVarint32Size(int32_t value) {
  1042. // value is treated as unsigned, so it won't be sign-extended if negative.
  1043. if ((value & (0xffffffff << 7)) == 0) return 1;
  1044. if ((value & (0xffffffff << 14)) == 0) return 2;
  1045. if ((value & (0xffffffff << 21)) == 0) return 3;
  1046. if ((value & (0xffffffff << 28)) == 0) return 4;
  1047. return 5;
  1048. }
  1049. size_t GPBComputeRawVarint32SizeForInteger(NSInteger value) {
  1050. // Note the truncation.
  1051. return GPBComputeRawVarint32Size((int32_t)value);
  1052. }
  1053. size_t GPBComputeRawVarint64Size(int64_t value) {
  1054. if ((value & (0xffffffffffffffffL << 7)) == 0) return 1;
  1055. if ((value & (0xffffffffffffffffL << 14)) == 0) return 2;
  1056. if ((value & (0xffffffffffffffffL << 21)) == 0) return 3;
  1057. if ((value & (0xffffffffffffffffL << 28)) == 0) return 4;
  1058. if ((value & (0xffffffffffffffffL << 35)) == 0) return 5;
  1059. if ((value & (0xffffffffffffffffL << 42)) == 0) return 6;
  1060. if ((value & (0xffffffffffffffffL << 49)) == 0) return 7;
  1061. if ((value & (0xffffffffffffffffL << 56)) == 0) return 8;
  1062. if ((value & (0xffffffffffffffffL << 63)) == 0) return 9;
  1063. return 10;
  1064. }