encode_decode.c 65 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. #include <php.h>
  32. #include <Zend/zend_exceptions.h>
  33. #include "protobuf.h"
  34. #include "utf8.h"
  35. /* stringsink *****************************************************************/
  36. static void *stringsink_start(void *_sink, const void *hd, size_t size_hint) {
  37. stringsink *sink = _sink;
  38. sink->len = 0;
  39. return sink;
  40. }
  41. size_t stringsink_string(void *_sink, const void *hd, const char *ptr,
  42. size_t len, const upb_bufhandle *handle) {
  43. stringsink *sink = _sink;
  44. size_t new_size = sink->size;
  45. PHP_PROTO_UNUSED(hd);
  46. PHP_PROTO_UNUSED(handle);
  47. while (sink->len + len > new_size) {
  48. new_size *= 2;
  49. }
  50. if (new_size != sink->size) {
  51. sink->ptr = realloc(sink->ptr, new_size);
  52. sink->size = new_size;
  53. }
  54. memcpy(sink->ptr + sink->len, ptr, len);
  55. sink->len += len;
  56. return len;
  57. }
  58. void stringsink_init(stringsink *sink) {
  59. upb_byteshandler_init(&sink->handler);
  60. upb_byteshandler_setstartstr(&sink->handler, stringsink_start, NULL);
  61. upb_byteshandler_setstring(&sink->handler, stringsink_string, NULL);
  62. upb_bytessink_reset(&sink->sink, &sink->handler, sink);
  63. sink->size = 32;
  64. sink->ptr = malloc(sink->size);
  65. PHP_PROTO_ASSERT(sink->ptr != NULL);
  66. sink->len = 0;
  67. }
  68. void stringsink_uninit(stringsink *sink) { free(sink->ptr); }
  69. void stringsink_uninit_opaque(void *sink) { stringsink_uninit(sink); }
  70. /* stackenv *****************************************************************/
  71. // Stack-allocated context during an encode/decode operation. Contains the upb
  72. // environment and its stack-based allocator, an initial buffer for allocations
  73. // to avoid malloc() when possible, and a template for PHP exception messages
  74. // if any error occurs.
  75. #define STACK_ENV_STACKBYTES 4096
  76. typedef struct {
  77. upb_arena *arena;
  78. upb_status status;
  79. const char *php_error_template;
  80. char allocbuf[STACK_ENV_STACKBYTES];
  81. } stackenv;
  82. static void stackenv_init(stackenv* se, const char* errmsg);
  83. static void stackenv_uninit(stackenv* se);
  84. static void stackenv_init(stackenv* se, const char* errmsg) {
  85. se->php_error_template = errmsg;
  86. se->arena = upb_arena_new();
  87. upb_status_clear(&se->status);
  88. }
  89. static void stackenv_uninit(stackenv* se) {
  90. upb_arena_free(se->arena);
  91. if (!upb_ok(&se->status)) {
  92. // TODO(teboring): have a way to verify that this is actually a parse error,
  93. // instead of just throwing "parse error" unconditionally.
  94. TSRMLS_FETCH();
  95. zend_throw_exception_ex(NULL, 0 TSRMLS_CC, se->php_error_template,
  96. upb_status_errmsg(&se->status));
  97. }
  98. }
  99. // -----------------------------------------------------------------------------
  100. // Parsing.
  101. // -----------------------------------------------------------------------------
  102. // TODO(teboring): This shoud be a bit in upb_msgdef
  103. static bool is_wrapper_msg(const upb_msgdef *msg) {
  104. return !strcmp(upb_filedef_name(upb_msgdef_file(msg)),
  105. "google/protobuf/wrappers.proto");
  106. }
  107. #define DEREF(msg, ofs, type) *(type*)(((uint8_t *)msg) + ofs)
  108. // Creates a handlerdata that simply contains the offset for this field.
  109. static const void* newhandlerdata(upb_handlers* h, uint32_t ofs) {
  110. size_t* hd_ofs = (size_t*)malloc(sizeof(size_t));
  111. PHP_PROTO_ASSERT(hd_ofs != NULL);
  112. *hd_ofs = ofs;
  113. upb_handlers_addcleanup(h, hd_ofs, free);
  114. return hd_ofs;
  115. }
  116. static const void* newhandlerfielddata(
  117. upb_handlers* h, const upb_fielddef* field) {
  118. const void** hd_field = malloc(sizeof(void*));
  119. PHP_PROTO_ASSERT(hd_field != NULL);
  120. *hd_field = field;
  121. upb_handlers_addcleanup(h, hd_field, free);
  122. return hd_field;
  123. }
  124. typedef struct {
  125. void* closure;
  126. stringsink sink;
  127. } stringfields_parseframe_t;
  128. typedef size_t (*encodeunknown_handlerfunc)(void* _sink, const void* hd,
  129. const char* ptr, size_t len,
  130. const upb_bufhandle* handle);
  131. typedef struct {
  132. encodeunknown_handlerfunc handler;
  133. } unknownfields_handlerdata_t;
  134. // Creates a handlerdata for unknown fields.
  135. static const void *newunknownfieldshandlerdata(upb_handlers* h) {
  136. unknownfields_handlerdata_t* hd =
  137. (unknownfields_handlerdata_t*)malloc(sizeof(unknownfields_handlerdata_t));
  138. PHP_PROTO_ASSERT(hd != NULL);
  139. hd->handler = stringsink_string;
  140. upb_handlers_addcleanup(h, hd, free);
  141. return hd;
  142. }
  143. typedef struct {
  144. const upb_fielddef *fd;
  145. size_t ofs;
  146. const upb_msgdef *md;
  147. } submsg_handlerdata_t;
  148. // Creates a handlerdata that contains field and submessage type information.
  149. static const void *newsubmsghandlerdata(upb_handlers* h, uint32_t ofs,
  150. const upb_fielddef* f) {
  151. submsg_handlerdata_t* hd =
  152. (submsg_handlerdata_t*)malloc(sizeof(submsg_handlerdata_t));
  153. PHP_PROTO_ASSERT(hd != NULL);
  154. hd->fd = f;
  155. hd->ofs = ofs;
  156. hd->md = upb_fielddef_msgsubdef(f);
  157. upb_handlers_addcleanup(h, hd, free);
  158. return hd;
  159. }
  160. typedef struct {
  161. size_t ofs; // union data slot
  162. size_t case_ofs; // oneof_case field
  163. int property_ofs; // properties table cache
  164. uint32_t oneof_case_num; // oneof-case number to place in oneof_case field
  165. const upb_msgdef *md; // msgdef, for oneof submessage handler
  166. const upb_msgdef *parent_md; // msgdef, for parent submessage
  167. } oneof_handlerdata_t;
  168. static const void *newoneofhandlerdata(upb_handlers *h,
  169. uint32_t ofs,
  170. uint32_t case_ofs,
  171. int property_ofs,
  172. const upb_msgdef *m,
  173. const upb_fielddef *f) {
  174. oneof_handlerdata_t* hd =
  175. (oneof_handlerdata_t*)malloc(sizeof(oneof_handlerdata_t));
  176. PHP_PROTO_ASSERT(hd != NULL);
  177. hd->ofs = ofs;
  178. hd->case_ofs = case_ofs;
  179. hd->property_ofs = property_ofs;
  180. hd->parent_md = m;
  181. // We reuse the field tag number as a oneof union discriminant tag. Note that
  182. // we don't expose these numbers to the user, so the only requirement is that
  183. // we have some unique ID for each union case/possibility. The field tag
  184. // numbers are already present and are easy to use so there's no reason to
  185. // create a separate ID space. In addition, using the field tag number here
  186. // lets us easily look up the field in the oneof accessor.
  187. hd->oneof_case_num = upb_fielddef_number(f);
  188. if (upb_fielddef_type(f) == UPB_TYPE_MESSAGE) {
  189. hd->md = upb_fielddef_msgsubdef(f);
  190. } else {
  191. hd->md = NULL;
  192. }
  193. upb_handlers_addcleanup(h, hd, free);
  194. return hd;
  195. }
  196. // A handler that starts a repeated field. Gets the Repeated*Field instance for
  197. // this field (such an instance always exists even in an empty message).
  198. static void *startseq_handler(void* closure, const void* hd) {
  199. MessageHeader* msg = closure;
  200. const upb_fielddef** field = (const upb_fielddef**) hd;
  201. CACHED_VALUE* cache = find_zval_property(msg, *field);
  202. TSRMLS_FETCH();
  203. repeated_field_ensure_created(*field, cache PHP_PROTO_TSRMLS_CC);
  204. return CACHED_PTR_TO_ZVAL_PTR(cache);
  205. }
  206. // Handlers that append primitive values to a repeated field.
  207. #define DEFINE_APPEND_HANDLER(type, ctype) \
  208. static bool append##type##_handler(void* closure, const void* hd, \
  209. ctype val) { \
  210. zval* array = (zval*)closure; \
  211. TSRMLS_FETCH(); \
  212. RepeatedField* intern = UNBOX(RepeatedField, array); \
  213. repeated_field_push_native(intern, &val); \
  214. return true; \
  215. }
  216. DEFINE_APPEND_HANDLER(bool, bool)
  217. DEFINE_APPEND_HANDLER(int32, int32_t)
  218. DEFINE_APPEND_HANDLER(uint32, uint32_t)
  219. DEFINE_APPEND_HANDLER(float, float)
  220. DEFINE_APPEND_HANDLER(int64, int64_t)
  221. DEFINE_APPEND_HANDLER(uint64, uint64_t)
  222. DEFINE_APPEND_HANDLER(double, double)
  223. // Appends a string or 'bytes' string to a repeated field.
  224. static void* appendstr_handler(void *closure,
  225. const void *hd,
  226. size_t size_hint) {
  227. PHP_PROTO_UNUSED(hd);
  228. stringfields_parseframe_t* frame =
  229. (stringfields_parseframe_t*)malloc(sizeof(stringfields_parseframe_t));
  230. PHP_PROTO_ASSERT(frame != NULL);
  231. frame->closure = closure;
  232. stringsink_init(&frame->sink);
  233. return frame;
  234. }
  235. static bool appendstr_end_handler(void *closure, const void *hd) {
  236. stringfields_parseframe_t* frame = closure;
  237. zval* array = (zval*)frame->closure;
  238. TSRMLS_FETCH();
  239. RepeatedField* intern = UNBOX(RepeatedField, array);
  240. #if PHP_MAJOR_VERSION < 7
  241. zval* str;
  242. MAKE_STD_ZVAL(str);
  243. PHP_PROTO_ZVAL_STRINGL(str, frame->sink.ptr, frame->sink.len, 1);
  244. repeated_field_push_native(intern, &str);
  245. #else
  246. zend_string* str = zend_string_init(frame->sink.ptr, frame->sink.len, 1);
  247. repeated_field_push_native(intern, &str);
  248. #endif
  249. stringsink_uninit(&frame->sink);
  250. free(frame);
  251. return true;
  252. }
  253. // Handlers that append primitive values to a repeated field.
  254. #define DEFINE_SINGULAR_HANDLER(type, ctype) \
  255. static bool type##_handler(void* closure, const void* hd, \
  256. ctype val) { \
  257. MessageHeader* msg = (MessageHeader*)closure; \
  258. const size_t *ofs = hd; \
  259. DEREF(message_data(msg), *ofs, ctype) = val; \
  260. return true; \
  261. }
  262. DEFINE_SINGULAR_HANDLER(bool, bool)
  263. DEFINE_SINGULAR_HANDLER(int32, int32_t)
  264. DEFINE_SINGULAR_HANDLER(uint32, uint32_t)
  265. DEFINE_SINGULAR_HANDLER(float, float)
  266. DEFINE_SINGULAR_HANDLER(int64, int64_t)
  267. DEFINE_SINGULAR_HANDLER(uint64, uint64_t)
  268. DEFINE_SINGULAR_HANDLER(double, double)
  269. #undef DEFINE_SINGULAR_HANDLER
  270. #if PHP_MAJOR_VERSION < 7
  271. static void *empty_php_string(zval** value_ptr) {
  272. SEPARATE_ZVAL_IF_NOT_REF(value_ptr);
  273. if (Z_TYPE_PP(value_ptr) == IS_STRING &&
  274. !IS_INTERNED(Z_STRVAL_PP(value_ptr))) {
  275. FREE(Z_STRVAL_PP(value_ptr));
  276. }
  277. ZVAL_EMPTY_STRING(*value_ptr);
  278. return (void*)(*value_ptr);
  279. }
  280. #else
  281. static void *empty_php_string(zval* value_ptr) {
  282. if (Z_TYPE_P(value_ptr) == IS_STRING) {
  283. zend_string_release(Z_STR_P(value_ptr));
  284. }
  285. ZVAL_EMPTY_STRING(value_ptr);
  286. return value_ptr;
  287. }
  288. #endif
  289. #if PHP_MAJOR_VERSION < 7
  290. static void new_php_string(zval** value_ptr, const char* str, size_t len) {
  291. SEPARATE_ZVAL_IF_NOT_REF(value_ptr);
  292. if (Z_TYPE_PP(value_ptr) == IS_STRING &&
  293. !IS_INTERNED(Z_STRVAL_PP(value_ptr))) {
  294. FREE(Z_STRVAL_PP(value_ptr));
  295. }
  296. ZVAL_STRINGL(*value_ptr, str, len, 1);
  297. }
  298. #else
  299. static void new_php_string(zval* value_ptr, const char* str, size_t len) {
  300. if (Z_TYPE_P(value_ptr) == IS_STRING) {
  301. zend_string_release(Z_STR_P(value_ptr));
  302. }
  303. ZVAL_NEW_STR(value_ptr, zend_string_init(str, len, 0));
  304. }
  305. #endif
  306. // Sets a non-repeated string/bytes field in a message.
  307. static void* str_handler(void *closure,
  308. const void *hd,
  309. size_t size_hint) {
  310. PHP_PROTO_UNUSED(hd);
  311. stringfields_parseframe_t* frame =
  312. (stringfields_parseframe_t*)malloc(sizeof(stringfields_parseframe_t));
  313. PHP_PROTO_ASSERT(frame != NULL);
  314. frame->closure = closure;
  315. stringsink_init(&frame->sink);
  316. return frame;
  317. }
  318. static bool str_end_handler(void *closure, const void *hd) {
  319. stringfields_parseframe_t* frame = closure;
  320. const upb_fielddef **field = (const upb_fielddef **) hd;
  321. MessageHeader* msg = (MessageHeader*)frame->closure;
  322. CACHED_VALUE* cached = find_zval_property(msg, *field);
  323. new_php_string(cached, frame->sink.ptr, frame->sink.len);
  324. stringsink_uninit(&frame->sink);
  325. free(frame);
  326. return true;
  327. }
  328. static bool map_str_end_handler(void *closure, const void *hd) {
  329. stringfields_parseframe_t* frame = closure;
  330. const size_t *ofs = hd;
  331. MessageHeader* msg = (MessageHeader*)frame->closure;
  332. new_php_string(DEREF(message_data(msg), *ofs, CACHED_VALUE*),
  333. frame->sink.ptr, frame->sink.len);
  334. stringsink_uninit(&frame->sink);
  335. free(frame);
  336. return true;
  337. }
  338. static size_t stringdata_handler(void* closure, const void* hd,
  339. const char* str, size_t len,
  340. const upb_bufhandle* handle) {
  341. stringfields_parseframe_t* frame = closure;
  342. return stringsink_string(&frame->sink, hd, str, len, handle);
  343. }
  344. // Appends a submessage to a repeated field.
  345. static void *appendsubmsg_handler(void *closure, const void *hd) {
  346. zval* array = (zval*)closure;
  347. TSRMLS_FETCH();
  348. RepeatedField* intern = UNBOX(RepeatedField, array);
  349. const submsg_handlerdata_t *submsgdata = hd;
  350. Descriptor* subdesc =
  351. UNBOX_HASHTABLE_VALUE(Descriptor, get_def_obj((void*)submsgdata->md));
  352. zend_class_entry* subklass = subdesc->klass;
  353. MessageHeader* submsg;
  354. #if PHP_MAJOR_VERSION < 7
  355. zval* val = NULL;
  356. MAKE_STD_ZVAL(val);
  357. ZVAL_OBJ(val, subklass->create_object(subklass TSRMLS_CC));
  358. repeated_field_push_native(intern, &val);
  359. submsg = UNBOX(MessageHeader, val);
  360. #else
  361. zend_object* obj = subklass->create_object(subklass TSRMLS_CC);
  362. repeated_field_push_native(intern, &obj);
  363. submsg = (MessageHeader*)((char*)obj - XtOffsetOf(MessageHeader, std));
  364. #endif
  365. custom_data_init(subklass, submsg PHP_PROTO_TSRMLS_CC);
  366. return submsg;
  367. }
  368. // Sets a non-repeated submessage field in a message.
  369. static void *submsg_handler(void *closure, const void *hd) {
  370. MessageHeader* msg = closure;
  371. const submsg_handlerdata_t* submsgdata = hd;
  372. TSRMLS_FETCH();
  373. Descriptor* subdesc =
  374. UNBOX_HASHTABLE_VALUE(Descriptor, get_def_obj((void*)submsgdata->md));
  375. zend_class_entry* subklass = subdesc->klass;
  376. zval* submsg_php;
  377. MessageHeader* submsg;
  378. CACHED_VALUE* cached = find_zval_property(msg, submsgdata->fd);
  379. if (Z_TYPE_P(CACHED_PTR_TO_ZVAL_PTR(cached)) == IS_NULL) {
  380. #if PHP_MAJOR_VERSION < 7
  381. zval val;
  382. ZVAL_OBJ(&val, subklass->create_object(subklass TSRMLS_CC));
  383. MessageHeader* intern = UNBOX(MessageHeader, &val);
  384. custom_data_init(subklass, intern PHP_PROTO_TSRMLS_CC);
  385. REPLACE_ZVAL_VALUE(cached, &val, 1);
  386. zval_dtor(&val);
  387. #else
  388. zend_object* obj = subklass->create_object(subklass TSRMLS_CC);
  389. ZVAL_OBJ(cached, obj);
  390. MessageHeader* intern = UNBOX_HASHTABLE_VALUE(MessageHeader, obj);
  391. custom_data_init(subklass, intern PHP_PROTO_TSRMLS_CC);
  392. #endif
  393. }
  394. submsg_php = CACHED_PTR_TO_ZVAL_PTR(cached);
  395. submsg = UNBOX(MessageHeader, submsg_php);
  396. return submsg;
  397. }
  398. static void *map_submsg_handler(void *closure, const void *hd) {
  399. MessageHeader* msg = closure;
  400. const submsg_handlerdata_t* submsgdata = hd;
  401. TSRMLS_FETCH();
  402. Descriptor* subdesc =
  403. UNBOX_HASHTABLE_VALUE(Descriptor, get_def_obj((void*)submsgdata->md));
  404. zend_class_entry* subklass = subdesc->klass;
  405. zval* submsg_php;
  406. MessageHeader* submsg;
  407. CACHED_VALUE* cached =
  408. DEREF(message_data(msg), submsgdata->ofs, CACHED_VALUE*);
  409. if (Z_TYPE_P(CACHED_PTR_TO_ZVAL_PTR(cached)) == IS_NULL) {
  410. #if PHP_MAJOR_VERSION < 7
  411. zval val;
  412. ZVAL_OBJ(&val, subklass->create_object(subklass TSRMLS_CC));
  413. MessageHeader* intern = UNBOX(MessageHeader, &val);
  414. custom_data_init(subklass, intern PHP_PROTO_TSRMLS_CC);
  415. REPLACE_ZVAL_VALUE(cached, &val, 1);
  416. zval_dtor(&val);
  417. #else
  418. zend_object* obj = subklass->create_object(subklass TSRMLS_CC);
  419. ZVAL_OBJ(cached, obj);
  420. MessageHeader* intern = UNBOX_HASHTABLE_VALUE(MessageHeader, obj);
  421. custom_data_init(subklass, intern PHP_PROTO_TSRMLS_CC);
  422. #endif
  423. }
  424. submsg_php = CACHED_PTR_TO_ZVAL_PTR(cached);
  425. submsg = UNBOX(MessageHeader, submsg_php);
  426. return submsg;
  427. }
  428. // Handler data for startmap/endmap handlers.
  429. typedef struct {
  430. const upb_fielddef* fd;
  431. const upb_msgdef* value_md;
  432. upb_fieldtype_t key_field_type;
  433. upb_fieldtype_t value_field_type;
  434. } map_handlerdata_t;
  435. // Temporary frame for map parsing: at the beginning of a map entry message, a
  436. // submsg handler allocates a frame to hold (i) a reference to the Map object
  437. // into which this message will be inserted and (ii) storage slots to
  438. // temporarily hold the key and value for this map entry until the end of the
  439. // submessage. When the submessage ends, another handler is called to insert the
  440. // value into the map.
  441. typedef struct {
  442. char key_storage[NATIVE_SLOT_MAX_SIZE];
  443. char value_storage[NATIVE_SLOT_MAX_SIZE];
  444. } map_parse_frame_data_t;
  445. PHP_PROTO_WRAP_OBJECT_START(map_parse_frame_t)
  446. map_parse_frame_data_t* data; // Place needs to be consistent with
  447. // MessageHeader.
  448. zval* map;
  449. // In php7, we cannot allocate zval dynamically. So we need to add zval here
  450. // to help decoding.
  451. zval key_zval;
  452. zval value_zval;
  453. PHP_PROTO_WRAP_OBJECT_END
  454. typedef struct map_parse_frame_t map_parse_frame_t;
  455. static void map_slot_init(
  456. void* memory, upb_fieldtype_t type, zval* cache,
  457. const upb_msgdef* value_msg PHP_PROTO_TSRMLS_DC) {
  458. switch (type) {
  459. case UPB_TYPE_STRING:
  460. case UPB_TYPE_BYTES: {
  461. #if PHP_MAJOR_VERSION < 7
  462. // Store zval** in memory in order to be consistent with the layout of
  463. // singular fields.
  464. zval** holder = ALLOC(zval*);
  465. *(zval***)memory = holder;
  466. zval* tmp;
  467. MAKE_STD_ZVAL(tmp);
  468. PHP_PROTO_ZVAL_STRINGL(tmp, "", 0, 1);
  469. *holder = tmp;
  470. #else
  471. *(zval**)memory = cache;
  472. PHP_PROTO_ZVAL_STRINGL(*(zval**)memory, "", 0, 1);
  473. #endif
  474. break;
  475. }
  476. case UPB_TYPE_MESSAGE: {
  477. Descriptor* subdesc =
  478. UNBOX_HASHTABLE_VALUE(Descriptor, get_def_obj(value_msg));
  479. zend_class_entry* subklass = subdesc->klass;
  480. MessageHeader* submsg;
  481. #if PHP_MAJOR_VERSION < 7
  482. zval** holder = ALLOC(zval*);
  483. zval* tmp;
  484. MAKE_STD_ZVAL(tmp);
  485. ZVAL_OBJ(tmp, subklass->create_object(subklass TSRMLS_CC));
  486. submsg = UNBOX(MessageHeader, tmp);
  487. custom_data_init(subklass, submsg PHP_PROTO_TSRMLS_CC);
  488. *holder = tmp;
  489. *(zval***)memory = holder;
  490. #else
  491. *(zval**)memory = cache;
  492. ZVAL_OBJ(*(zval**)memory, subklass->create_object(subklass TSRMLS_CC));
  493. submsg = UNBOX(MessageHeader, cache);
  494. custom_data_init(subklass, submsg PHP_PROTO_TSRMLS_CC);
  495. #endif
  496. break;
  497. }
  498. default:
  499. native_slot_init(type, memory, NULL);
  500. }
  501. }
  502. static void map_slot_uninit(void* memory, upb_fieldtype_t type) {
  503. switch (type) {
  504. case UPB_TYPE_MESSAGE:
  505. case UPB_TYPE_STRING:
  506. case UPB_TYPE_BYTES: {
  507. #if PHP_MAJOR_VERSION < 7
  508. zval** holder = *(zval***)memory;
  509. zval_ptr_dtor(holder);
  510. FREE(holder);
  511. #else
  512. php_proto_zval_ptr_dtor(*(zval**)memory);
  513. #endif
  514. break;
  515. }
  516. default:
  517. break;
  518. }
  519. }
  520. static void map_slot_key(upb_fieldtype_t type, const void* from,
  521. const char** keyval,
  522. size_t* length) {
  523. if (type == UPB_TYPE_STRING) {
  524. #if PHP_MAJOR_VERSION < 7
  525. zval* key_php = **(zval***)from;
  526. #else
  527. zval* key_php = *(zval**)from;
  528. #endif
  529. *keyval = Z_STRVAL_P(key_php);
  530. *length = Z_STRLEN_P(key_php);
  531. } else {
  532. *keyval = from;
  533. *length = native_slot_size(type);
  534. }
  535. }
  536. static void map_slot_value(upb_fieldtype_t type, const void* from,
  537. upb_value* v) {
  538. size_t len;
  539. void* to = upb_value_memory(v);
  540. #ifndef NDEBUG
  541. v->ctype = UPB_CTYPE_UINT64;
  542. #endif
  543. memset(to, 0, native_slot_size(type));
  544. switch (type) {
  545. #if PHP_MAJOR_VERSION < 7
  546. case UPB_TYPE_STRING:
  547. case UPB_TYPE_BYTES:
  548. case UPB_TYPE_MESSAGE: {
  549. *(zval**)to = **(zval***)from;
  550. Z_ADDREF_PP((zval**)to);
  551. break;
  552. }
  553. #else
  554. case UPB_TYPE_STRING:
  555. case UPB_TYPE_BYTES:
  556. *(zend_string**)to = Z_STR_P(*(zval**)from);
  557. zend_string_addref(*(zend_string**)to);
  558. break;
  559. case UPB_TYPE_MESSAGE:
  560. if (!ZVAL_IS_NULL(*(zval**)from)) {
  561. *(zend_object**)to = Z_OBJ_P(*(zval**)from);
  562. GC_ADDREF(*(zend_object**)to);
  563. }
  564. break;
  565. #endif
  566. default:
  567. len = native_slot_size(type);
  568. memcpy(to, from, len);
  569. }
  570. }
  571. // Handler to begin a map entry: allocates a temporary frame. This is the
  572. // 'startsubmsg' handler on the msgdef that contains the map field.
  573. static void *startmapentry_handler(void *closure, const void *hd) {
  574. MessageHeader* msg = closure;
  575. const map_handlerdata_t* mapdata = hd;
  576. CACHED_VALUE* cache = find_zval_property(msg, mapdata->fd);
  577. TSRMLS_FETCH();
  578. map_field_ensure_created(mapdata->fd, cache PHP_PROTO_TSRMLS_CC);
  579. zval* map = CACHED_PTR_TO_ZVAL_PTR(cache);
  580. map_parse_frame_t* frame = ALLOC(map_parse_frame_t);
  581. frame->data = ALLOC(map_parse_frame_data_t);
  582. frame->map = map;
  583. map_slot_init(&frame->data->key_storage, mapdata->key_field_type,
  584. &frame->key_zval, NULL PHP_PROTO_TSRMLS_CC);
  585. map_slot_init(&frame->data->value_storage, mapdata->value_field_type,
  586. &frame->value_zval, mapdata->value_md PHP_PROTO_TSRMLS_CC);
  587. return frame;
  588. }
  589. // Handler to end a map entry: inserts the value defined during the message into
  590. // the map. This is the 'endmsg' handler on the map entry msgdef.
  591. static bool endmap_handler(void* closure, const void* hd, upb_status* s) {
  592. map_parse_frame_t* frame = closure;
  593. const map_handlerdata_t* mapdata = hd;
  594. TSRMLS_FETCH();
  595. Map *map = UNBOX(Map, frame->map);
  596. const char* keyval = NULL;
  597. upb_value v;
  598. size_t length;
  599. map_slot_key(map->key_type, &frame->data->key_storage, &keyval, &length);
  600. map_slot_value(map->value_type, &frame->data->value_storage, &v);
  601. map_index_set(map, keyval, length, v);
  602. map_slot_uninit(&frame->data->key_storage, mapdata->key_field_type);
  603. map_slot_uninit(&frame->data->value_storage, mapdata->value_field_type);
  604. FREE(frame->data);
  605. FREE(frame);
  606. return true;
  607. }
  608. // Allocates a new map_handlerdata_t given the map entry message definition. If
  609. // the offset of the field within the parent message is also given, that is
  610. // added to the handler data as well. Note that this is called *twice* per map
  611. // field: once in the parent message handler setup when setting the startsubmsg
  612. // handler and once in the map entry message handler setup when setting the
  613. // key/value and endmsg handlers. The reason is that there is no easy way to
  614. // pass the handlerdata down to the sub-message handler setup.
  615. static map_handlerdata_t* new_map_handlerdata(
  616. const upb_fielddef* field,
  617. const upb_msgdef* mapentry_def,
  618. Descriptor* desc) {
  619. const upb_fielddef* key_field;
  620. const upb_fielddef* value_field;
  621. // TODO(teboring): Use emalloc and efree.
  622. map_handlerdata_t* hd =
  623. (map_handlerdata_t*)malloc(sizeof(map_handlerdata_t));
  624. PHP_PROTO_ASSERT(hd != NULL);
  625. hd->fd = field;
  626. key_field = upb_msgdef_itof(mapentry_def, MAP_KEY_FIELD);
  627. PHP_PROTO_ASSERT(key_field != NULL);
  628. hd->key_field_type = upb_fielddef_type(key_field);
  629. value_field = upb_msgdef_itof(mapentry_def, MAP_VALUE_FIELD);
  630. PHP_PROTO_ASSERT(value_field != NULL);
  631. hd->value_field_type = upb_fielddef_type(value_field);
  632. if (upb_fielddef_type(value_field) == UPB_TYPE_MESSAGE) {
  633. hd->value_md = upb_fielddef_msgsubdef(value_field);
  634. } else {
  635. hd->value_md = NULL;
  636. }
  637. return hd;
  638. }
  639. // Handlers that set primitive values in oneofs.
  640. #define DEFINE_ONEOF_HANDLER(type, ctype) \
  641. static bool oneof##type##_handler(void* closure, const void* hd, \
  642. ctype val) { \
  643. const oneof_handlerdata_t* oneofdata = hd; \
  644. MessageHeader* msg = (MessageHeader*)closure; \
  645. DEREF(message_data(closure), oneofdata->case_ofs, uint32_t) = \
  646. oneofdata->oneof_case_num; \
  647. DEREF(message_data(closure), oneofdata->ofs, ctype) = val; \
  648. return true; \
  649. }
  650. DEFINE_ONEOF_HANDLER(bool, bool)
  651. DEFINE_ONEOF_HANDLER(int32, int32_t)
  652. DEFINE_ONEOF_HANDLER(uint32, uint32_t)
  653. DEFINE_ONEOF_HANDLER(float, float)
  654. DEFINE_ONEOF_HANDLER(int64, int64_t)
  655. DEFINE_ONEOF_HANDLER(uint64, uint64_t)
  656. DEFINE_ONEOF_HANDLER(double, double)
  657. #undef DEFINE_ONEOF_HANDLER
  658. static void oneof_cleanup(MessageHeader* msg,
  659. const oneof_handlerdata_t* oneofdata) {
  660. uint32_t old_case_num =
  661. DEREF(message_data(msg), oneofdata->case_ofs, uint32_t);
  662. if (old_case_num == 0) {
  663. return;
  664. }
  665. const upb_fielddef* old_field =
  666. upb_msgdef_itof(oneofdata->parent_md, old_case_num);
  667. bool need_clean = false;
  668. switch (upb_fielddef_type(old_field)) {
  669. case UPB_TYPE_STRING:
  670. case UPB_TYPE_BYTES:
  671. need_clean = true;
  672. break;
  673. case UPB_TYPE_MESSAGE:
  674. if (oneofdata->oneof_case_num != old_case_num) {
  675. need_clean = true;
  676. }
  677. break;
  678. default:
  679. break;
  680. }
  681. if (need_clean) {
  682. #if PHP_MAJOR_VERSION < 7
  683. SEPARATE_ZVAL_IF_NOT_REF(
  684. DEREF(message_data(msg), oneofdata->ofs, CACHED_VALUE*));
  685. php_proto_zval_ptr_dtor(
  686. *DEREF(message_data(msg), oneofdata->ofs, CACHED_VALUE*));
  687. MAKE_STD_ZVAL(*DEREF(message_data(msg), oneofdata->ofs, CACHED_VALUE*));
  688. ZVAL_NULL(*DEREF(message_data(msg), oneofdata->ofs, CACHED_VALUE*));
  689. #endif
  690. }
  691. }
  692. // Handlers for string/bytes in a oneof.
  693. static void *oneofbytes_handler(void *closure,
  694. const void *hd,
  695. size_t size_hint) {
  696. MessageHeader* msg = closure;
  697. const oneof_handlerdata_t *oneofdata = hd;
  698. oneof_cleanup(msg, oneofdata);
  699. DEREF(message_data(msg), oneofdata->case_ofs, uint32_t) =
  700. oneofdata->oneof_case_num;
  701. DEREF(message_data(msg), oneofdata->ofs, CACHED_VALUE*) =
  702. OBJ_PROP(&msg->std, oneofdata->property_ofs);
  703. return empty_php_string(DEREF(
  704. message_data(msg), oneofdata->ofs, CACHED_VALUE*));
  705. }
  706. static bool oneofstr_end_handler(void *closure, const void *hd) {
  707. stringfields_parseframe_t* frame = closure;
  708. MessageHeader* msg = (MessageHeader*)frame->closure;
  709. const oneof_handlerdata_t *oneofdata = hd;
  710. oneof_cleanup(msg, oneofdata);
  711. DEREF(message_data(msg), oneofdata->case_ofs, uint32_t) =
  712. oneofdata->oneof_case_num;
  713. DEREF(message_data(msg), oneofdata->ofs, CACHED_VALUE*) =
  714. OBJ_PROP(&msg->std, oneofdata->property_ofs);
  715. new_php_string(DEREF(message_data(msg), oneofdata->ofs, CACHED_VALUE*),
  716. frame->sink.ptr, frame->sink.len);
  717. stringsink_uninit(&frame->sink);
  718. free(frame);
  719. return true;
  720. }
  721. static void *oneofstr_handler(void *closure,
  722. const void *hd,
  723. size_t size_hint) {
  724. PHP_PROTO_UNUSED(hd);
  725. stringfields_parseframe_t* frame =
  726. (stringfields_parseframe_t*)malloc(sizeof(stringfields_parseframe_t));
  727. PHP_PROTO_ASSERT(frame != NULL);
  728. frame->closure = closure;
  729. stringsink_init(&frame->sink);
  730. return frame;
  731. }
  732. // Handler for a submessage field in a oneof.
  733. static void* oneofsubmsg_handler(void* closure, const void* hd) {
  734. MessageHeader* msg = closure;
  735. const oneof_handlerdata_t *oneofdata = hd;
  736. uint32_t oldcase = DEREF(message_data(msg), oneofdata->case_ofs, uint32_t);
  737. TSRMLS_FETCH();
  738. Descriptor* subdesc =
  739. UNBOX_HASHTABLE_VALUE(Descriptor, get_def_obj((void*)oneofdata->md));
  740. zend_class_entry* subklass = subdesc->klass;
  741. zval* submsg_php;
  742. MessageHeader* submsg;
  743. if (oldcase != oneofdata->oneof_case_num) {
  744. oneof_cleanup(msg, oneofdata);
  745. // Create new message.
  746. DEREF(message_data(msg), oneofdata->ofs, CACHED_VALUE*) =
  747. OBJ_PROP(&msg->std, oneofdata->property_ofs);
  748. #if PHP_MAJOR_VERSION < 7
  749. zval val;
  750. ZVAL_OBJ(&val, subklass->create_object(subklass TSRMLS_CC));
  751. REPLACE_ZVAL_VALUE(DEREF(message_data(msg), oneofdata->ofs, zval**),
  752. &val, 1);
  753. zval_dtor(&val);
  754. #else
  755. zend_object* obj = subklass->create_object(subklass TSRMLS_CC);
  756. ZVAL_OBJ(DEREF(message_data(msg), oneofdata->ofs, zval*), obj);
  757. #endif
  758. }
  759. DEREF(message_data(msg), oneofdata->case_ofs, uint32_t) =
  760. oneofdata->oneof_case_num;
  761. submsg_php = CACHED_PTR_TO_ZVAL_PTR(
  762. DEREF(message_data(msg), oneofdata->ofs, CACHED_VALUE*));
  763. submsg = UNBOX(MessageHeader, submsg_php);
  764. custom_data_init(subklass, submsg PHP_PROTO_TSRMLS_CC);
  765. return submsg;
  766. }
  767. // Set up handlers for a repeated field.
  768. static void add_handlers_for_repeated_field(upb_handlers *h,
  769. const upb_fielddef *f,
  770. size_t offset) {
  771. upb_handlerattr attr = UPB_HANDLERATTR_INIT;
  772. attr.handler_data = newhandlerfielddata(h, f);
  773. upb_handlers_setstartseq(h, f, startseq_handler, &attr);
  774. switch (upb_fielddef_type(f)) {
  775. #define SET_HANDLER(utype, ltype) \
  776. case utype: \
  777. upb_handlers_set##ltype(h, f, append##ltype##_handler, NULL); \
  778. break;
  779. SET_HANDLER(UPB_TYPE_BOOL, bool);
  780. SET_HANDLER(UPB_TYPE_INT32, int32);
  781. SET_HANDLER(UPB_TYPE_UINT32, uint32);
  782. SET_HANDLER(UPB_TYPE_ENUM, int32);
  783. SET_HANDLER(UPB_TYPE_FLOAT, float);
  784. SET_HANDLER(UPB_TYPE_INT64, int64);
  785. SET_HANDLER(UPB_TYPE_UINT64, uint64);
  786. SET_HANDLER(UPB_TYPE_DOUBLE, double);
  787. #undef SET_HANDLER
  788. case UPB_TYPE_STRING:
  789. case UPB_TYPE_BYTES: {
  790. upb_handlers_setstartstr(h, f, appendstr_handler, NULL);
  791. upb_handlers_setstring(h, f, stringdata_handler, NULL);
  792. upb_handlers_setendstr(h, f, appendstr_end_handler, &attr);
  793. break;
  794. }
  795. case UPB_TYPE_MESSAGE: {
  796. upb_handlerattr attr = UPB_HANDLERATTR_INIT;
  797. attr.handler_data = newsubmsghandlerdata(h, 0, f);
  798. upb_handlers_setstartsubmsg(h, f, appendsubmsg_handler, &attr);
  799. break;
  800. }
  801. }
  802. }
  803. // Set up handlers for a singular field.
  804. static void add_handlers_for_singular_field(upb_handlers *h,
  805. const upb_fielddef *f,
  806. size_t offset, bool is_map) {
  807. switch (upb_fielddef_type(f)) {
  808. #define SET_HANDLER(utype, ltype) \
  809. case utype: { \
  810. upb_handlerattr attr = UPB_HANDLERATTR_INIT; \
  811. attr.handler_data = newhandlerdata(h, offset); \
  812. upb_handlers_set##ltype(h, f, ltype##_handler, &attr); \
  813. break; \
  814. }
  815. SET_HANDLER(UPB_TYPE_BOOL, bool);
  816. SET_HANDLER(UPB_TYPE_INT32, int32);
  817. SET_HANDLER(UPB_TYPE_UINT32, uint32);
  818. SET_HANDLER(UPB_TYPE_ENUM, int32);
  819. SET_HANDLER(UPB_TYPE_FLOAT, float);
  820. SET_HANDLER(UPB_TYPE_INT64, int64);
  821. SET_HANDLER(UPB_TYPE_UINT64, uint64);
  822. SET_HANDLER(UPB_TYPE_DOUBLE, double);
  823. #undef SET_HANDLER
  824. case UPB_TYPE_STRING:
  825. case UPB_TYPE_BYTES: {
  826. upb_handlerattr attr = UPB_HANDLERATTR_INIT;
  827. if (is_map) {
  828. attr.handler_data = newhandlerdata(h, offset);
  829. } else {
  830. attr.handler_data = newhandlerfielddata(h, f);
  831. }
  832. upb_handlers_setstartstr(h, f, str_handler, &attr);
  833. upb_handlers_setstring(h, f, stringdata_handler, &attr);
  834. if (is_map) {
  835. upb_handlers_setendstr(h, f, map_str_end_handler, &attr);
  836. } else {
  837. upb_handlers_setendstr(h, f, str_end_handler, &attr);
  838. }
  839. break;
  840. }
  841. case UPB_TYPE_MESSAGE: {
  842. upb_handlerattr attr = UPB_HANDLERATTR_INIT;
  843. if (is_map) {
  844. attr.handler_data = newsubmsghandlerdata(h, offset, f);
  845. upb_handlers_setstartsubmsg(h, f, map_submsg_handler, &attr);
  846. } else {
  847. attr.handler_data = newsubmsghandlerdata(h, 0, f);
  848. upb_handlers_setstartsubmsg(h, f, submsg_handler, &attr);
  849. }
  850. break;
  851. }
  852. }
  853. }
  854. // Adds handlers to a map field.
  855. static void add_handlers_for_mapfield(upb_handlers* h,
  856. const upb_fielddef* fielddef,
  857. size_t offset,
  858. Descriptor* desc) {
  859. const upb_msgdef* map_msgdef = upb_fielddef_msgsubdef(fielddef);
  860. map_handlerdata_t* hd = new_map_handlerdata(fielddef, map_msgdef, desc);
  861. upb_handlerattr attr = UPB_HANDLERATTR_INIT;
  862. upb_handlers_addcleanup(h, hd, free);
  863. attr.handler_data = hd;
  864. upb_handlers_setstartsubmsg(h, fielddef, startmapentry_handler, &attr);
  865. }
  866. // Adds handlers to a map-entry msgdef.
  867. static void add_handlers_for_mapentry(const upb_msgdef* msgdef, upb_handlers* h,
  868. Descriptor* desc) {
  869. const upb_fielddef* key_field = map_entry_key(msgdef);
  870. const upb_fielddef* value_field = map_entry_value(msgdef);
  871. map_handlerdata_t* hd = new_map_handlerdata(0, msgdef, desc);
  872. upb_handlerattr attr = UPB_HANDLERATTR_INIT;
  873. upb_handlers_addcleanup(h, hd, free);
  874. attr.handler_data = hd;
  875. upb_handlers_setendmsg(h, endmap_handler, &attr);
  876. add_handlers_for_singular_field(h, key_field,
  877. offsetof(map_parse_frame_data_t,
  878. key_storage), true);
  879. add_handlers_for_singular_field(h, value_field,
  880. offsetof(map_parse_frame_data_t,
  881. value_storage), true);
  882. }
  883. // Set up handlers for a oneof field.
  884. static void add_handlers_for_oneof_field(upb_handlers *h,
  885. const upb_msgdef *m,
  886. const upb_fielddef *f,
  887. size_t offset,
  888. size_t oneof_case_offset,
  889. int property_cache_offset) {
  890. upb_handlerattr attr = UPB_HANDLERATTR_INIT;
  891. attr.handler_data = newoneofhandlerdata(h, offset, oneof_case_offset,
  892. property_cache_offset, m, f);
  893. switch (upb_fielddef_type(f)) {
  894. #define SET_HANDLER(utype, ltype) \
  895. case utype: \
  896. upb_handlers_set##ltype(h, f, oneof##ltype##_handler, &attr); \
  897. break;
  898. SET_HANDLER(UPB_TYPE_BOOL, bool);
  899. SET_HANDLER(UPB_TYPE_INT32, int32);
  900. SET_HANDLER(UPB_TYPE_UINT32, uint32);
  901. SET_HANDLER(UPB_TYPE_ENUM, int32);
  902. SET_HANDLER(UPB_TYPE_FLOAT, float);
  903. SET_HANDLER(UPB_TYPE_INT64, int64);
  904. SET_HANDLER(UPB_TYPE_UINT64, uint64);
  905. SET_HANDLER(UPB_TYPE_DOUBLE, double);
  906. #undef SET_HANDLER
  907. case UPB_TYPE_STRING:
  908. case UPB_TYPE_BYTES: {
  909. upb_handlers_setstartstr(h, f, oneofstr_handler, &attr);
  910. upb_handlers_setstring(h, f, stringdata_handler, NULL);
  911. upb_handlers_setendstr(h, f, oneofstr_end_handler, &attr);
  912. break;
  913. }
  914. case UPB_TYPE_MESSAGE: {
  915. upb_handlers_setstartsubmsg(h, f, oneofsubmsg_handler, &attr);
  916. break;
  917. }
  918. }
  919. }
  920. static bool add_unknown_handler(void* closure, const void* hd, const char* buf,
  921. size_t size) {
  922. encodeunknown_handlerfunc handler =
  923. ((unknownfields_handlerdata_t*)hd)->handler;
  924. MessageHeader* msg = (MessageHeader*)closure;
  925. stringsink* unknown = DEREF(message_data(msg), 0, stringsink*);
  926. if (unknown == NULL) {
  927. DEREF(message_data(msg), 0, stringsink*) = ALLOC(stringsink);
  928. unknown = DEREF(message_data(msg), 0, stringsink*);
  929. stringsink_init(unknown);
  930. }
  931. handler(unknown, NULL, buf, size, NULL);
  932. return true;
  933. }
  934. void add_handlers_for_message(const void* closure, upb_handlers* h) {
  935. const upb_msgdef* msgdef = upb_handlers_msgdef(h);
  936. TSRMLS_FETCH();
  937. Descriptor* desc =
  938. UNBOX_HASHTABLE_VALUE(Descriptor, get_def_obj((void*)msgdef));
  939. upb_msg_field_iter i;
  940. // If this is a mapentry message type, set up a special set of handlers and
  941. // bail out of the normal (user-defined) message type handling.
  942. if (upb_msgdef_mapentry(msgdef)) {
  943. add_handlers_for_mapentry(msgdef, h, desc);
  944. return;
  945. }
  946. // Ensure layout exists. We may be invoked to create handlers for a given
  947. // message if we are included as a submsg of another message type before our
  948. // class is actually built, so to work around this, we just create the layout
  949. // (and handlers, in the class-building function) on-demand.
  950. if (desc->layout == NULL) {
  951. desc->layout = create_layout(desc->msgdef);
  952. }
  953. upb_handlerattr attr = UPB_HANDLERATTR_INIT;
  954. attr.handler_data = newunknownfieldshandlerdata(h);
  955. upb_handlers_setunknown(h, add_unknown_handler, &attr);
  956. for (upb_msg_field_begin(&i, desc->msgdef);
  957. !upb_msg_field_done(&i);
  958. upb_msg_field_next(&i)) {
  959. const upb_fielddef *f = upb_msg_iter_field(&i);
  960. size_t offset = desc->layout->fields[upb_fielddef_index(f)].offset;
  961. if (upb_fielddef_containingoneof(f)) {
  962. size_t oneof_case_offset =
  963. desc->layout->fields[upb_fielddef_index(f)].case_offset;
  964. int property_cache_index =
  965. desc->layout->fields[upb_fielddef_index(f)].cache_index;
  966. add_handlers_for_oneof_field(h, desc->msgdef, f, offset,
  967. oneof_case_offset, property_cache_index);
  968. } else if (is_map_field(f)) {
  969. add_handlers_for_mapfield(h, f, offset, desc);
  970. } else if (upb_fielddef_isseq(f)) {
  971. add_handlers_for_repeated_field(h, f, offset);
  972. } else {
  973. add_handlers_for_singular_field(h, f, offset, false);
  974. }
  975. }
  976. }
  977. // Constructs the handlers for filling a message's data into an in-memory
  978. // object.
  979. const upb_handlers* get_fill_handlers(Descriptor* desc) {
  980. return upb_handlercache_get(desc->pool->fill_handler_cache, desc->msgdef);
  981. }
  982. static const upb_pbdecodermethod *msgdef_decodermethod(Descriptor* desc) {
  983. return upb_pbcodecache_get(desc->pool->fill_method_cache, desc->msgdef);
  984. }
  985. static const upb_json_parsermethod *msgdef_jsonparsermethod(Descriptor* desc) {
  986. return upb_json_codecache_get(desc->pool->json_fill_method_cache, desc->msgdef);
  987. }
  988. // -----------------------------------------------------------------------------
  989. // Serializing.
  990. // -----------------------------------------------------------------------------
  991. static void putmsg(zval* msg, const Descriptor* desc, upb_sink sink,
  992. int depth, bool is_json TSRMLS_DC);
  993. static void putrawmsg(MessageHeader* msg, const Descriptor* desc,
  994. upb_sink sink, int depth, bool is_json,
  995. bool open_msg TSRMLS_DC);
  996. static void putjsonany(MessageHeader* msg, const Descriptor* desc,
  997. upb_sink sink, int depth TSRMLS_DC);
  998. static void putjsonlistvalue(
  999. MessageHeader* msg, const Descriptor* desc,
  1000. upb_sink sink, int depth TSRMLS_DC);
  1001. static void putjsonstruct(
  1002. MessageHeader* msg, const Descriptor* desc,
  1003. upb_sink sink, int depth TSRMLS_DC);
  1004. static void putstr(zval* str, const upb_fielddef* f, upb_sink sink,
  1005. bool force_default);
  1006. static void putrawstr(const char* str, int len, const upb_fielddef* f,
  1007. upb_sink sink, bool force_default);
  1008. static void putsubmsg(zval* submsg, const upb_fielddef* f, upb_sink sink,
  1009. int depth, bool is_json TSRMLS_DC);
  1010. static void putrawsubmsg(MessageHeader* submsg, const upb_fielddef* f,
  1011. upb_sink sink, int depth, bool is_json TSRMLS_DC);
  1012. static void putarray(zval* array, const upb_fielddef* f, upb_sink sink,
  1013. int depth, bool is_json TSRMLS_DC);
  1014. static void putmap(zval* map, const upb_fielddef* f, upb_sink sink,
  1015. int depth, bool is_json TSRMLS_DC);
  1016. static upb_selector_t getsel(const upb_fielddef* f, upb_handlertype_t type) {
  1017. upb_selector_t ret;
  1018. bool ok = upb_handlers_getselector(f, type, &ret);
  1019. PHP_PROTO_ASSERT(ok);
  1020. return ret;
  1021. }
  1022. static void put_optional_value(const void* memory, int len,
  1023. const upb_fielddef* f,
  1024. int depth, upb_sink sink,
  1025. bool is_json TSRMLS_DC) {
  1026. PHP_PROTO_ASSERT(upb_fielddef_label(f) == UPB_LABEL_OPTIONAL);
  1027. switch (upb_fielddef_type(f)) {
  1028. #define T(upbtypeconst, upbtype, ctype, default_value) \
  1029. case upbtypeconst: { \
  1030. ctype value = DEREF(memory, 0, ctype); \
  1031. if (is_json || value != default_value) { \
  1032. upb_selector_t sel = getsel(f, upb_handlers_getprimitivehandlertype(f)); \
  1033. upb_sink_put##upbtype(sink, sel, value); \
  1034. } \
  1035. } break;
  1036. T(UPB_TYPE_FLOAT, float, float, 0.0)
  1037. T(UPB_TYPE_DOUBLE, double, double, 0.0)
  1038. T(UPB_TYPE_BOOL, bool, uint8_t, 0)
  1039. T(UPB_TYPE_ENUM, int32, int32_t, 0)
  1040. T(UPB_TYPE_INT32, int32, int32_t, 0)
  1041. T(UPB_TYPE_UINT32, uint32, uint32_t, 0)
  1042. T(UPB_TYPE_INT64, int64, int64_t, 0)
  1043. T(UPB_TYPE_UINT64, uint64, uint64_t, 0)
  1044. #undef T
  1045. case UPB_TYPE_STRING:
  1046. case UPB_TYPE_BYTES:
  1047. putrawstr(memory, len, f, sink, is_json);
  1048. break;
  1049. case UPB_TYPE_MESSAGE: {
  1050. #if PHP_MAJOR_VERSION < 7
  1051. MessageHeader *submsg = UNBOX(MessageHeader, *(zval**)memory);
  1052. #else
  1053. MessageHeader *submsg =
  1054. (MessageHeader*)((char*)(*(zend_object**)memory) -
  1055. XtOffsetOf(MessageHeader, std));
  1056. #endif
  1057. putrawsubmsg(submsg, f, sink, depth, is_json TSRMLS_CC);
  1058. break;
  1059. }
  1060. default:
  1061. PHP_PROTO_ASSERT(false);
  1062. }
  1063. }
  1064. // Only string/bytes fields are stored as zval.
  1065. static const char* raw_value(void* memory, const upb_fielddef* f) {
  1066. switch (upb_fielddef_type(f)) {
  1067. case UPB_TYPE_STRING:
  1068. case UPB_TYPE_BYTES:
  1069. #if PHP_MAJOR_VERSION < 7
  1070. return Z_STRVAL_PP((zval**)memory);
  1071. #else
  1072. return ZSTR_VAL(*(zend_string**)memory);
  1073. #endif
  1074. break;
  1075. default:
  1076. return memory;
  1077. }
  1078. }
  1079. static int raw_value_len(void* memory, int len, const upb_fielddef* f) {
  1080. switch (upb_fielddef_type(f)) {
  1081. case UPB_TYPE_STRING:
  1082. case UPB_TYPE_BYTES:
  1083. #if PHP_MAJOR_VERSION < 7
  1084. return Z_STRLEN_PP((zval**)memory);
  1085. #else
  1086. return ZSTR_LEN(*(zend_string**)memory);
  1087. #endif
  1088. default:
  1089. return len;
  1090. }
  1091. }
  1092. static void putmap(zval* map, const upb_fielddef* f, upb_sink sink,
  1093. int depth, bool is_json TSRMLS_DC) {
  1094. upb_sink subsink;
  1095. const upb_fielddef* key_field;
  1096. const upb_fielddef* value_field;
  1097. MapIter it;
  1098. int len, size;
  1099. PHP_PROTO_ASSERT(map != NULL);
  1100. Map* intern = UNBOX(Map, map);
  1101. size = upb_strtable_count(&intern->table);
  1102. if (size == 0) return;
  1103. upb_sink_startseq(sink, getsel(f, UPB_HANDLER_STARTSEQ), &subsink);
  1104. PHP_PROTO_ASSERT(upb_fielddef_type(f) == UPB_TYPE_MESSAGE);
  1105. key_field = map_field_key(f);
  1106. value_field = map_field_value(f);
  1107. for (map_begin(map, &it TSRMLS_CC); !map_done(&it); map_next(&it)) {
  1108. upb_status status;
  1109. upb_sink entry_sink;
  1110. upb_sink_startsubmsg(subsink, getsel(f, UPB_HANDLER_STARTSUBMSG),
  1111. &entry_sink);
  1112. upb_sink_startmsg(entry_sink);
  1113. // Serialize key.
  1114. const char *key = map_iter_key(&it, &len);
  1115. put_optional_value(key, len, key_field, depth + 1,
  1116. entry_sink, is_json TSRMLS_CC);
  1117. // Serialize value.
  1118. upb_value value = map_iter_value(&it, &len);
  1119. put_optional_value(raw_value(upb_value_memory(&value), value_field),
  1120. raw_value_len(upb_value_memory(&value), len, value_field),
  1121. value_field, depth + 1, entry_sink, is_json TSRMLS_CC);
  1122. upb_sink_endmsg(entry_sink, &status);
  1123. upb_sink_endsubmsg(subsink, getsel(f, UPB_HANDLER_ENDSUBMSG));
  1124. }
  1125. upb_sink_endseq(sink, getsel(f, UPB_HANDLER_ENDSEQ));
  1126. }
  1127. static void putmsg(zval* msg_php, const Descriptor* desc, upb_sink sink,
  1128. int depth, bool is_json TSRMLS_DC) {
  1129. MessageHeader* msg = UNBOX(MessageHeader, msg_php);
  1130. putrawmsg(msg, desc, sink, depth, is_json, true TSRMLS_CC);
  1131. }
  1132. static const upb_handlers* msgdef_json_serialize_handlers(
  1133. Descriptor* desc, bool preserve_proto_fieldnames);
  1134. static void putjsonany(MessageHeader* msg, const Descriptor* desc,
  1135. upb_sink sink, int depth TSRMLS_DC) {
  1136. upb_status status;
  1137. const upb_fielddef* type_field = upb_msgdef_itof(desc->msgdef, UPB_ANY_TYPE);
  1138. const upb_fielddef* value_field = upb_msgdef_itof(desc->msgdef, UPB_ANY_VALUE);
  1139. zval* type_url_php_str;
  1140. const upb_msgdef *payload_type = NULL;
  1141. upb_sink_startmsg(sink);
  1142. /* Handle type url */
  1143. type_url_php_str = CACHED_PTR_TO_ZVAL_PTR(find_zval_property(msg, type_field));
  1144. if (Z_STRLEN_P(type_url_php_str) > 0) {
  1145. putstr(type_url_php_str, type_field, sink, false);
  1146. }
  1147. {
  1148. const char* type_url_str = Z_STRVAL_P(type_url_php_str);
  1149. size_t type_url_len = Z_STRLEN_P(type_url_php_str);
  1150. if (type_url_len <= 20 ||
  1151. strncmp(type_url_str, "type.googleapis.com/", 20) != 0) {
  1152. zend_error(E_ERROR, "Invalid type url: %s", type_url_str);
  1153. }
  1154. /* Resolve type url */
  1155. type_url_str += 20;
  1156. type_url_len -= 20;
  1157. payload_type = upb_symtab_lookupmsg2(
  1158. generated_pool->symtab, type_url_str, type_url_len);
  1159. if (payload_type == NULL) {
  1160. zend_error(E_ERROR, "Unknown type: %s", type_url_str);
  1161. return;
  1162. }
  1163. }
  1164. {
  1165. zval* value_php_str;
  1166. const char* value_str;
  1167. size_t value_len;
  1168. value_php_str = CACHED_PTR_TO_ZVAL_PTR(find_zval_property(msg, value_field));
  1169. value_str = Z_STRVAL_P(value_php_str);
  1170. value_len = Z_STRLEN_P(value_php_str);
  1171. if (value_len > 0) {
  1172. Descriptor* payload_desc =
  1173. UNBOX_HASHTABLE_VALUE(Descriptor, get_def_obj((void*)payload_type));
  1174. zend_class_entry* payload_klass = payload_desc->klass;
  1175. zval val;
  1176. upb_sink subsink;
  1177. bool is_wellknown;
  1178. /* Create message of the payload type. */
  1179. ZVAL_OBJ(&val, payload_klass->create_object(payload_klass TSRMLS_CC));
  1180. MessageHeader* intern = UNBOX(MessageHeader, &val);
  1181. custom_data_init(payload_klass, intern PHP_PROTO_TSRMLS_CC);
  1182. merge_from_string(value_str, value_len, payload_desc, intern);
  1183. is_wellknown =
  1184. upb_msgdef_wellknowntype(payload_desc->msgdef) !=
  1185. UPB_WELLKNOWN_UNSPECIFIED;
  1186. if (is_wellknown) {
  1187. upb_sink_startstr(sink, getsel(value_field, UPB_HANDLER_STARTSTR), 0,
  1188. &subsink);
  1189. }
  1190. subsink.handlers =
  1191. msgdef_json_serialize_handlers(payload_desc, true);
  1192. subsink.closure = sink.closure;
  1193. putrawmsg(intern, payload_desc, subsink, depth, true,
  1194. is_wellknown TSRMLS_CC);
  1195. zval_dtor(&val);
  1196. }
  1197. }
  1198. upb_sink_endmsg(sink, &status);
  1199. }
  1200. static void putjsonlistvalue(
  1201. MessageHeader* msg, const Descriptor* desc,
  1202. upb_sink sink, int depth TSRMLS_DC) {
  1203. upb_status status;
  1204. upb_sink subsink;
  1205. const upb_fielddef* f = upb_msgdef_itof(desc->msgdef, 1);
  1206. uint32_t offset = desc->layout->fields[upb_fielddef_index(f)].offset;
  1207. zval* array;
  1208. RepeatedField* intern;
  1209. HashTable *ht;
  1210. int size, i;
  1211. upb_sink_startmsg(sink);
  1212. array = CACHED_PTR_TO_ZVAL_PTR(find_zval_property(msg, f));
  1213. if (ZVAL_IS_NULL(array)) {
  1214. upb_sink_startseq(sink, getsel(f, UPB_HANDLER_STARTSEQ), &subsink);
  1215. upb_sink_endseq(sink, getsel(f, UPB_HANDLER_ENDSEQ));
  1216. } else {
  1217. intern = UNBOX(RepeatedField, array);
  1218. ht = PHP_PROTO_HASH_OF(intern->array);
  1219. size = zend_hash_num_elements(ht);
  1220. if (size == 0) {
  1221. upb_sink_startseq(sink, getsel(f, UPB_HANDLER_STARTSEQ), &subsink);
  1222. upb_sink_endseq(sink, getsel(f, UPB_HANDLER_ENDSEQ));
  1223. } else {
  1224. putarray(array, f, sink, depth, true TSRMLS_CC);
  1225. }
  1226. }
  1227. upb_sink_endmsg(sink, &status);
  1228. }
  1229. static void putjsonstruct(
  1230. MessageHeader* msg, const Descriptor* desc,
  1231. upb_sink sink, int depth TSRMLS_DC) {
  1232. upb_status status;
  1233. upb_sink subsink;
  1234. const upb_fielddef* f = upb_msgdef_itof(desc->msgdef, 1);
  1235. uint32_t offset = desc->layout->fields[upb_fielddef_index(f)].offset;
  1236. zval* map;
  1237. Map* intern;
  1238. int size;
  1239. upb_sink_startmsg(sink);
  1240. map = CACHED_PTR_TO_ZVAL_PTR(find_zval_property(msg, f));
  1241. if (ZVAL_IS_NULL(map)) {
  1242. upb_sink_startseq(sink, getsel(f, UPB_HANDLER_STARTSEQ), &subsink);
  1243. upb_sink_endseq(sink, getsel(f, UPB_HANDLER_ENDSEQ));
  1244. } else {
  1245. intern = UNBOX(Map, map);
  1246. size = upb_strtable_count(&intern->table);
  1247. if (size == 0) {
  1248. upb_sink_startseq(sink, getsel(f, UPB_HANDLER_STARTSEQ), &subsink);
  1249. upb_sink_endseq(sink, getsel(f, UPB_HANDLER_ENDSEQ));
  1250. } else {
  1251. putmap(map, f, sink, depth, true TSRMLS_CC);
  1252. }
  1253. }
  1254. upb_sink_endmsg(sink, &status);
  1255. }
  1256. static void putrawmsg(MessageHeader* msg, const Descriptor* desc,
  1257. upb_sink sink, int depth, bool is_json,
  1258. bool open_msg TSRMLS_DC) {
  1259. upb_msg_field_iter i;
  1260. upb_status status;
  1261. if (is_json &&
  1262. upb_msgdef_wellknowntype(desc->msgdef) == UPB_WELLKNOWN_ANY) {
  1263. putjsonany(msg, desc, sink, depth TSRMLS_CC);
  1264. return;
  1265. }
  1266. if (is_json &&
  1267. upb_msgdef_wellknowntype(desc->msgdef) == UPB_WELLKNOWN_LISTVALUE) {
  1268. putjsonlistvalue(msg, desc, sink, depth TSRMLS_CC);
  1269. return;
  1270. }
  1271. if (is_json &&
  1272. upb_msgdef_wellknowntype(desc->msgdef) == UPB_WELLKNOWN_STRUCT) {
  1273. putjsonstruct(msg, desc, sink, depth TSRMLS_CC);
  1274. return;
  1275. }
  1276. if (open_msg) {
  1277. upb_sink_startmsg(sink);
  1278. }
  1279. // Protect against cycles (possible because users may freely reassign message
  1280. // and repeated fields) by imposing a maximum recursion depth.
  1281. if (depth > ENCODE_MAX_NESTING) {
  1282. zend_error(E_ERROR,
  1283. "Maximum recursion depth exceeded during encoding.");
  1284. }
  1285. for (upb_msg_field_begin(&i, desc->msgdef); !upb_msg_field_done(&i);
  1286. upb_msg_field_next(&i)) {
  1287. upb_fielddef* f = upb_msg_iter_field(&i);
  1288. uint32_t offset = desc->layout->fields[upb_fielddef_index(f)].offset;
  1289. bool containing_oneof = false;
  1290. if (upb_fielddef_containingoneof(f)) {
  1291. uint32_t oneof_case_offset =
  1292. desc->layout->fields[upb_fielddef_index(f)].case_offset;
  1293. // For a oneof, check that this field is actually present -- skip all the
  1294. // below if not.
  1295. if (DEREF(message_data(msg), oneof_case_offset, uint32_t) !=
  1296. upb_fielddef_number(f)) {
  1297. continue;
  1298. }
  1299. // Otherwise, fall through to the appropriate singular-field handler
  1300. // below.
  1301. containing_oneof = true;
  1302. }
  1303. if (is_map_field(f)) {
  1304. zval* map = CACHED_PTR_TO_ZVAL_PTR(find_zval_property(msg, f));
  1305. if (!ZVAL_IS_NULL(map)) {
  1306. putmap(map, f, sink, depth, is_json TSRMLS_CC);
  1307. }
  1308. } else if (upb_fielddef_isseq(f)) {
  1309. zval* array = CACHED_PTR_TO_ZVAL_PTR(find_zval_property(msg, f));
  1310. if (!ZVAL_IS_NULL(array)) {
  1311. putarray(array, f, sink, depth, is_json TSRMLS_CC);
  1312. }
  1313. } else if (upb_fielddef_isstring(f)) {
  1314. zval* str = CACHED_PTR_TO_ZVAL_PTR(find_zval_property(msg, f));
  1315. if (containing_oneof || (is_json && is_wrapper_msg(desc->msgdef)) ||
  1316. Z_STRLEN_P(str) > 0) {
  1317. putstr(str, f, sink, is_json && is_wrapper_msg(desc->msgdef));
  1318. }
  1319. } else if (upb_fielddef_issubmsg(f)) {
  1320. zval* submsg = CACHED_PTR_TO_ZVAL_PTR(find_zval_property(msg, f));
  1321. putsubmsg(submsg, f, sink, depth, is_json TSRMLS_CC);
  1322. } else {
  1323. upb_selector_t sel = getsel(f, upb_handlers_getprimitivehandlertype(f));
  1324. #define T(upbtypeconst, upbtype, ctype, default_value) \
  1325. case upbtypeconst: { \
  1326. ctype value = DEREF(message_data(msg), offset, ctype); \
  1327. if (containing_oneof || \
  1328. (is_json && is_wrapper_msg(desc->msgdef)) || \
  1329. value != default_value) { \
  1330. upb_sink_put##upbtype(sink, sel, value); \
  1331. } \
  1332. } break;
  1333. switch (upb_fielddef_type(f)) {
  1334. T(UPB_TYPE_FLOAT, float, float, 0.0)
  1335. T(UPB_TYPE_DOUBLE, double, double, 0.0)
  1336. T(UPB_TYPE_BOOL, bool, uint8_t, 0)
  1337. case UPB_TYPE_ENUM:
  1338. T(UPB_TYPE_INT32, int32, int32_t, 0)
  1339. T(UPB_TYPE_UINT32, uint32, uint32_t, 0)
  1340. T(UPB_TYPE_INT64, int64, int64_t, 0)
  1341. T(UPB_TYPE_UINT64, uint64, uint64_t, 0)
  1342. case UPB_TYPE_STRING:
  1343. case UPB_TYPE_BYTES:
  1344. case UPB_TYPE_MESSAGE:
  1345. zend_error(E_ERROR, "Internal error.");
  1346. }
  1347. #undef T
  1348. }
  1349. }
  1350. stringsink* unknown = DEREF(message_data(msg), 0, stringsink*);
  1351. if (unknown != NULL) {
  1352. upb_sink_putunknown(sink, unknown->ptr, unknown->len);
  1353. }
  1354. if (open_msg) {
  1355. upb_sink_endmsg(sink, &status);
  1356. }
  1357. }
  1358. static void putstr(zval* str, const upb_fielddef *f,
  1359. upb_sink sink, bool force_default) {
  1360. upb_sink subsink;
  1361. if (ZVAL_IS_NULL(str)) return;
  1362. PHP_PROTO_ASSERT(Z_TYPE_P(str) == IS_STRING);
  1363. upb_sink_startstr(sink, getsel(f, UPB_HANDLER_STARTSTR), Z_STRLEN_P(str),
  1364. &subsink);
  1365. // For oneof string field, we may get here with string length is zero.
  1366. if (Z_STRLEN_P(str) > 0 || force_default) {
  1367. // Ensure that the string has the correct encoding. We also check at
  1368. // field-set time, but the user may have mutated the string object since
  1369. // then.
  1370. if (upb_fielddef_type(f) == UPB_TYPE_STRING &&
  1371. !is_structurally_valid_utf8(Z_STRVAL_P(str), Z_STRLEN_P(str))) {
  1372. zend_error(E_USER_ERROR, "Given string is not UTF8 encoded.");
  1373. return;
  1374. }
  1375. upb_sink_putstring(subsink, getsel(f, UPB_HANDLER_STRING), Z_STRVAL_P(str),
  1376. Z_STRLEN_P(str), NULL);
  1377. }
  1378. upb_sink_endstr(sink, getsel(f, UPB_HANDLER_ENDSTR));
  1379. }
  1380. static void putrawstr(const char* str, int len, const upb_fielddef* f,
  1381. upb_sink sink, bool force_default) {
  1382. upb_sink subsink;
  1383. if (len == 0 && !force_default) return;
  1384. // Ensure that the string has the correct encoding. We also check at field-set
  1385. // time, but the user may have mutated the string object since then.
  1386. if (upb_fielddef_type(f) == UPB_TYPE_STRING &&
  1387. !is_structurally_valid_utf8(str, len)) {
  1388. zend_error(E_USER_ERROR, "Given string is not UTF8 encoded.");
  1389. return;
  1390. }
  1391. upb_sink_startstr(sink, getsel(f, UPB_HANDLER_STARTSTR), len, &subsink);
  1392. upb_sink_putstring(subsink, getsel(f, UPB_HANDLER_STRING), str, len, NULL);
  1393. upb_sink_endstr(sink, getsel(f, UPB_HANDLER_ENDSTR));
  1394. }
  1395. static void putsubmsg(zval* submsg_php, const upb_fielddef* f, upb_sink sink,
  1396. int depth, bool is_json TSRMLS_DC) {
  1397. if (Z_TYPE_P(submsg_php) == IS_NULL) return;
  1398. MessageHeader *submsg = UNBOX(MessageHeader, submsg_php);
  1399. putrawsubmsg(submsg, f, sink, depth, is_json TSRMLS_CC);
  1400. }
  1401. static void putrawsubmsg(MessageHeader* submsg, const upb_fielddef* f,
  1402. upb_sink sink, int depth, bool is_json TSRMLS_DC) {
  1403. upb_sink subsink;
  1404. Descriptor* subdesc =
  1405. UNBOX_HASHTABLE_VALUE(Descriptor, get_def_obj(upb_fielddef_msgsubdef(f)));
  1406. upb_sink_startsubmsg(sink, getsel(f, UPB_HANDLER_STARTSUBMSG), &subsink);
  1407. putrawmsg(submsg, subdesc, subsink, depth + 1, is_json, true TSRMLS_CC);
  1408. upb_sink_endsubmsg(sink, getsel(f, UPB_HANDLER_ENDSUBMSG));
  1409. }
  1410. static void putarray(zval* array, const upb_fielddef* f, upb_sink sink,
  1411. int depth, bool is_json TSRMLS_DC) {
  1412. upb_sink subsink;
  1413. upb_fieldtype_t type = upb_fielddef_type(f);
  1414. upb_selector_t sel = 0;
  1415. int size, i;
  1416. PHP_PROTO_ASSERT(array != NULL);
  1417. RepeatedField* intern = UNBOX(RepeatedField, array);
  1418. HashTable *ht = PHP_PROTO_HASH_OF(intern->array);
  1419. size = zend_hash_num_elements(ht);
  1420. if (size == 0) return;
  1421. upb_sink_startseq(sink, getsel(f, UPB_HANDLER_STARTSEQ), &subsink);
  1422. if (upb_fielddef_isprimitive(f)) {
  1423. sel = getsel(f, upb_handlers_getprimitivehandlertype(f));
  1424. }
  1425. for (i = 0; i < size; i++) {
  1426. void* memory = repeated_field_index_native(intern, i TSRMLS_CC);
  1427. switch (type) {
  1428. #define T(upbtypeconst, upbtype, ctype) \
  1429. case upbtypeconst: \
  1430. upb_sink_put##upbtype(subsink, sel, *((ctype*)memory)); \
  1431. break;
  1432. T(UPB_TYPE_FLOAT, float, float)
  1433. T(UPB_TYPE_DOUBLE, double, double)
  1434. T(UPB_TYPE_BOOL, bool, int8_t)
  1435. case UPB_TYPE_ENUM:
  1436. T(UPB_TYPE_INT32, int32, int32_t)
  1437. T(UPB_TYPE_UINT32, uint32, uint32_t)
  1438. T(UPB_TYPE_INT64, int64, int64_t)
  1439. T(UPB_TYPE_UINT64, uint64, uint64_t)
  1440. case UPB_TYPE_STRING:
  1441. case UPB_TYPE_BYTES: {
  1442. #if PHP_MAJOR_VERSION < 7
  1443. const char* rawstr = Z_STRVAL_P(*(zval**)memory);
  1444. int len = Z_STRLEN_P(*(zval**)memory);
  1445. #else
  1446. const char* rawstr = ZSTR_VAL(*(zend_string**)memory);
  1447. int len = ZSTR_LEN(*(zend_string**)memory);
  1448. #endif
  1449. putrawstr(rawstr, len, f, subsink,
  1450. is_json && is_wrapper_msg(upb_fielddef_containingtype(f)));
  1451. break;
  1452. }
  1453. case UPB_TYPE_MESSAGE: {
  1454. #if PHP_MAJOR_VERSION < 7
  1455. MessageHeader *submsg = UNBOX(MessageHeader, *(zval**)memory);
  1456. #else
  1457. MessageHeader *submsg =
  1458. (MessageHeader*)((char*)(Z_OBJ_P((zval*)memory)) -
  1459. XtOffsetOf(MessageHeader, std));
  1460. #endif
  1461. putrawsubmsg(submsg, f, subsink, depth, is_json TSRMLS_CC);
  1462. break;
  1463. }
  1464. #undef T
  1465. }
  1466. }
  1467. upb_sink_endseq(sink, getsel(f, UPB_HANDLER_ENDSEQ));
  1468. }
  1469. static const upb_handlers* msgdef_pb_serialize_handlers(Descriptor* desc) {
  1470. return upb_handlercache_get(desc->pool->pb_serialize_handler_cache,
  1471. desc->msgdef);
  1472. }
  1473. static const upb_handlers* msgdef_json_serialize_handlers(
  1474. Descriptor* desc, bool preserve_proto_fieldnames) {
  1475. if (preserve_proto_fieldnames) {
  1476. return upb_handlercache_get(
  1477. desc->pool->json_serialize_handler_preserve_cache, desc->msgdef);
  1478. } else {
  1479. return upb_handlercache_get(desc->pool->json_serialize_handler_cache,
  1480. desc->msgdef);
  1481. }
  1482. }
  1483. // -----------------------------------------------------------------------------
  1484. // PHP encode/decode methods
  1485. // -----------------------------------------------------------------------------
  1486. void serialize_to_string(zval* val, zval* return_value TSRMLS_DC) {
  1487. Descriptor* desc =
  1488. UNBOX_HASHTABLE_VALUE(Descriptor, get_ce_obj(Z_OBJCE_P(val)));
  1489. stringsink sink;
  1490. stringsink_init(&sink);
  1491. {
  1492. const upb_handlers* serialize_handlers = msgdef_pb_serialize_handlers(desc);
  1493. stackenv se;
  1494. upb_pb_encoder* encoder;
  1495. stackenv_init(&se, "Error occurred during encoding: %s");
  1496. encoder = upb_pb_encoder_create(se.arena, serialize_handlers, sink.sink);
  1497. putmsg(val, desc, upb_pb_encoder_input(encoder), 0, false TSRMLS_CC);
  1498. PHP_PROTO_RETVAL_STRINGL(sink.ptr, sink.len, 1);
  1499. stackenv_uninit(&se);
  1500. stringsink_uninit(&sink);
  1501. }
  1502. }
  1503. PHP_METHOD(Message, serializeToString) {
  1504. serialize_to_string(getThis(), return_value TSRMLS_CC);
  1505. }
  1506. void merge_from_string(const char* data, int data_len, Descriptor* desc,
  1507. MessageHeader* msg) {
  1508. const upb_pbdecodermethod* method = msgdef_decodermethod(desc);
  1509. const upb_handlers* h = upb_pbdecodermethod_desthandlers(method);
  1510. stackenv se;
  1511. upb_sink sink;
  1512. upb_pbdecoder* decoder;
  1513. stackenv_init(&se, "Error occurred during parsing: %s");
  1514. upb_sink_reset(&sink, h, msg);
  1515. decoder = upb_pbdecoder_create(se.arena, method, sink, &se.status);
  1516. upb_bufsrc_putbuf(data, data_len, upb_pbdecoder_input(decoder));
  1517. stackenv_uninit(&se);
  1518. }
  1519. PHP_METHOD(Message, mergeFromString) {
  1520. Descriptor* desc =
  1521. UNBOX_HASHTABLE_VALUE(Descriptor, get_ce_obj(Z_OBJCE_P(getThis())));
  1522. MessageHeader* msg = UNBOX(MessageHeader, getThis());
  1523. char *data = NULL;
  1524. PHP_PROTO_SIZE data_len;
  1525. if (zend_parse_parameters(ZEND_NUM_ARGS() TSRMLS_CC, "s", &data, &data_len) ==
  1526. FAILURE) {
  1527. return;
  1528. }
  1529. merge_from_string(data, data_len, desc, msg);
  1530. }
  1531. PHP_METHOD(Message, serializeToJsonString) {
  1532. Descriptor* desc =
  1533. UNBOX_HASHTABLE_VALUE(Descriptor, get_ce_obj(Z_OBJCE_P(getThis())));
  1534. zend_bool preserve_proto_fieldnames = false;
  1535. if (zend_parse_parameters(ZEND_NUM_ARGS() TSRMLS_CC, "|b",
  1536. &preserve_proto_fieldnames) == FAILURE) {
  1537. return;
  1538. }
  1539. stringsink sink;
  1540. stringsink_init(&sink);
  1541. {
  1542. const upb_handlers* serialize_handlers =
  1543. msgdef_json_serialize_handlers(desc, preserve_proto_fieldnames);
  1544. upb_json_printer* printer;
  1545. stackenv se;
  1546. stackenv_init(&se, "Error occurred during encoding: %s");
  1547. printer = upb_json_printer_create(se.arena, serialize_handlers, sink.sink);
  1548. putmsg(getThis(), desc, upb_json_printer_input(printer), 0, true TSRMLS_CC);
  1549. PHP_PROTO_RETVAL_STRINGL(sink.ptr, sink.len, 1);
  1550. stackenv_uninit(&se);
  1551. stringsink_uninit(&sink);
  1552. }
  1553. }
  1554. PHP_METHOD(Message, mergeFromJsonString) {
  1555. Descriptor* desc =
  1556. UNBOX_HASHTABLE_VALUE(Descriptor, get_ce_obj(Z_OBJCE_P(getThis())));
  1557. MessageHeader* msg = UNBOX(MessageHeader, getThis());
  1558. char *data = NULL;
  1559. PHP_PROTO_SIZE data_len;
  1560. zend_bool ignore_json_unknown = false;
  1561. if (zend_parse_parameters(
  1562. ZEND_NUM_ARGS() TSRMLS_CC, "s|b", &data, &data_len,
  1563. &ignore_json_unknown) ==
  1564. FAILURE) {
  1565. return;
  1566. }
  1567. // TODO(teboring): Check and respect string encoding. If not UTF-8, we need to
  1568. // convert, because string handlers pass data directly to message string
  1569. // fields.
  1570. // TODO(teboring): Clear message.
  1571. {
  1572. const upb_json_parsermethod* method = msgdef_jsonparsermethod(desc);
  1573. stackenv se;
  1574. upb_sink sink;
  1575. upb_json_parser* parser;
  1576. stackenv_init(&se, "Error occurred during parsing: %s");
  1577. upb_sink_reset(&sink, get_fill_handlers(desc), msg);
  1578. parser = upb_json_parser_create(se.arena, method, generated_pool->symtab,
  1579. sink, &se.status, ignore_json_unknown);
  1580. upb_bufsrc_putbuf(data, data_len, upb_json_parser_input(parser));
  1581. stackenv_uninit(&se);
  1582. }
  1583. }
  1584. // TODO(teboring): refactoring with putrawmsg
  1585. static void discard_unknown_fields(MessageHeader* msg) {
  1586. upb_msg_field_iter it;
  1587. stringsink* unknown = DEREF(message_data(msg), 0, stringsink*);
  1588. if (unknown != NULL) {
  1589. stringsink_uninit(unknown);
  1590. FREE(unknown);
  1591. DEREF(message_data(msg), 0, stringsink*) = NULL;
  1592. }
  1593. // Recursively discard unknown fields of submessages.
  1594. Descriptor* desc = msg->descriptor;
  1595. TSRMLS_FETCH();
  1596. for (upb_msg_field_begin(&it, desc->msgdef);
  1597. !upb_msg_field_done(&it);
  1598. upb_msg_field_next(&it)) {
  1599. upb_fielddef* f = upb_msg_iter_field(&it);
  1600. uint32_t offset = desc->layout->fields[upb_fielddef_index(f)].offset;
  1601. bool containing_oneof = false;
  1602. if (upb_fielddef_containingoneof(f)) {
  1603. uint32_t oneof_case_offset =
  1604. desc->layout->fields[upb_fielddef_index(f)].case_offset;
  1605. // For a oneof, check that this field is actually present -- skip all the
  1606. // below if not.
  1607. if (DEREF(message_data(msg), oneof_case_offset, uint32_t) !=
  1608. upb_fielddef_number(f)) {
  1609. continue;
  1610. }
  1611. // Otherwise, fall through to the appropriate singular-field handler
  1612. // below.
  1613. containing_oneof = true;
  1614. }
  1615. if (is_map_field(f)) {
  1616. MapIter map_it;
  1617. int len, size;
  1618. const upb_fielddef* value_field;
  1619. value_field = map_field_value(f);
  1620. if (!upb_fielddef_issubmsg(value_field)) continue;
  1621. zval* map_php = CACHED_PTR_TO_ZVAL_PTR(find_zval_property(msg, f));
  1622. if (ZVAL_IS_NULL(map_php)) continue;
  1623. Map* intern = UNBOX(Map, map_php);
  1624. for (map_begin(map_php, &map_it TSRMLS_CC);
  1625. !map_done(&map_it); map_next(&map_it)) {
  1626. upb_value value = map_iter_value(&map_it, &len);
  1627. const void* memory = raw_value(upb_value_memory(&value), value_field);
  1628. #if PHP_MAJOR_VERSION < 7
  1629. MessageHeader *submsg = UNBOX(MessageHeader, *(zval**)memory);
  1630. #else
  1631. MessageHeader *submsg =
  1632. (MessageHeader*)((char*)(Z_OBJ_P((zval*)memory)) -
  1633. XtOffsetOf(MessageHeader, std));
  1634. #endif
  1635. discard_unknown_fields(submsg);
  1636. }
  1637. } else if (upb_fielddef_isseq(f)) {
  1638. if (!upb_fielddef_issubmsg(f)) continue;
  1639. zval* array_php = CACHED_PTR_TO_ZVAL_PTR(find_zval_property(msg, f));
  1640. if (ZVAL_IS_NULL(array_php)) continue;
  1641. int size, i;
  1642. RepeatedField* intern = UNBOX(RepeatedField, array_php);
  1643. HashTable *ht = PHP_PROTO_HASH_OF(intern->array);
  1644. size = zend_hash_num_elements(ht);
  1645. if (size == 0) continue;
  1646. for (i = 0; i < size; i++) {
  1647. void* memory = repeated_field_index_native(intern, i TSRMLS_CC);
  1648. #if PHP_MAJOR_VERSION < 7
  1649. MessageHeader *submsg = UNBOX(MessageHeader, *(zval**)memory);
  1650. #else
  1651. MessageHeader *submsg =
  1652. (MessageHeader*)((char*)(Z_OBJ_P((zval*)memory)) -
  1653. XtOffsetOf(MessageHeader, std));
  1654. #endif
  1655. discard_unknown_fields(submsg);
  1656. }
  1657. } else if (upb_fielddef_issubmsg(f)) {
  1658. zval* submsg_php = CACHED_PTR_TO_ZVAL_PTR(find_zval_property(msg, f));
  1659. if (Z_TYPE_P(submsg_php) == IS_NULL) continue;
  1660. MessageHeader* submsg = UNBOX(MessageHeader, submsg_php);
  1661. discard_unknown_fields(submsg);
  1662. }
  1663. }
  1664. }
  1665. PHP_METHOD(Message, discardUnknownFields) {
  1666. MessageHeader* msg = UNBOX(MessageHeader, getThis());
  1667. discard_unknown_fields(msg);
  1668. }