protobuf.h 20 KB

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  1. // Protocol Buffers - Google's data interchange format
  2. // Copyright 2014 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. #ifndef __GOOGLE_PROTOBUF_RUBY_PROTOBUF_H__
  31. #define __GOOGLE_PROTOBUF_RUBY_PROTOBUF_H__
  32. #include <ruby/ruby.h>
  33. #include <ruby/vm.h>
  34. #include <ruby/encoding.h>
  35. #include "upb.h"
  36. // Forward decls.
  37. struct DescriptorPool;
  38. struct Descriptor;
  39. struct FieldDescriptor;
  40. struct EnumDescriptor;
  41. struct MessageLayout;
  42. struct MessageField;
  43. struct MessageHeader;
  44. struct MessageBuilderContext;
  45. struct EnumBuilderContext;
  46. struct Builder;
  47. typedef struct DescriptorPool DescriptorPool;
  48. typedef struct Descriptor Descriptor;
  49. typedef struct FieldDescriptor FieldDescriptor;
  50. typedef struct OneofDescriptor OneofDescriptor;
  51. typedef struct EnumDescriptor EnumDescriptor;
  52. typedef struct MessageLayout MessageLayout;
  53. typedef struct MessageField MessageField;
  54. typedef struct MessageHeader MessageHeader;
  55. typedef struct MessageBuilderContext MessageBuilderContext;
  56. typedef struct OneofBuilderContext OneofBuilderContext;
  57. typedef struct EnumBuilderContext EnumBuilderContext;
  58. typedef struct Builder Builder;
  59. /*
  60. It can be a bit confusing how the C structs defined below and the Ruby
  61. objects interact and hold references to each other. First, a few principles:
  62. - Ruby's "TypedData" abstraction lets a Ruby VALUE hold a pointer to a C
  63. struct (or arbitrary memory chunk), own it, and free it when collected.
  64. Thus, each struct below will have a corresponding Ruby object
  65. wrapping/owning it.
  66. - To get back from an underlying upb {msg,enum}def to the Ruby object, we
  67. keep a global hashmap, accessed by get_def_obj/add_def_obj below.
  68. The in-memory structure is then something like:
  69. Ruby | upb
  70. |
  71. DescriptorPool ------------|-----------> upb_symtab____________________
  72. | | (message types) \
  73. | v \
  74. Descriptor ---------------|-----------> upb_msgdef (enum types)|
  75. |--> msgclass | | ^ |
  76. | (dynamically built) | | | (submsg fields) |
  77. |--> MessageLayout | | | /
  78. |--------------------------|> decoder method| | /
  79. \--------------------------|> serialize | | /
  80. | handlers v | /
  81. FieldDescriptor -----------|-----------> upb_fielddef /
  82. | | /
  83. | v (enum fields) /
  84. EnumDescriptor ------------|-----------> upb_enumdef <----------'
  85. |
  86. |
  87. ^ | \___/
  88. `---------------|-----------------' (get_def_obj map)
  89. */
  90. // -----------------------------------------------------------------------------
  91. // Ruby class structure definitions.
  92. // -----------------------------------------------------------------------------
  93. struct DescriptorPool {
  94. upb_symtab* symtab;
  95. };
  96. struct Descriptor {
  97. const upb_msgdef* msgdef;
  98. MessageLayout* layout;
  99. VALUE klass; // begins as nil
  100. const upb_handlers* fill_handlers;
  101. const upb_pbdecodermethod* fill_method;
  102. const upb_handlers* pb_serialize_handlers;
  103. const upb_handlers* json_serialize_handlers;
  104. // Handlers hold type class references for sub-message fields directly in some
  105. // cases. We need to keep these rooted because they might otherwise be
  106. // collected.
  107. VALUE typeclass_references;
  108. };
  109. struct FieldDescriptor {
  110. const upb_fielddef* fielddef;
  111. };
  112. struct OneofDescriptor {
  113. const upb_oneofdef* oneofdef;
  114. };
  115. struct EnumDescriptor {
  116. const upb_enumdef* enumdef;
  117. VALUE module; // begins as nil
  118. };
  119. struct MessageBuilderContext {
  120. VALUE descriptor;
  121. VALUE builder;
  122. };
  123. struct OneofBuilderContext {
  124. VALUE descriptor;
  125. VALUE builder;
  126. };
  127. struct EnumBuilderContext {
  128. VALUE enumdesc;
  129. };
  130. struct Builder {
  131. VALUE pending_list;
  132. upb_def** defs; // used only while finalizing
  133. };
  134. extern VALUE cDescriptorPool;
  135. extern VALUE cDescriptor;
  136. extern VALUE cFieldDescriptor;
  137. extern VALUE cEnumDescriptor;
  138. extern VALUE cMessageBuilderContext;
  139. extern VALUE cOneofBuilderContext;
  140. extern VALUE cEnumBuilderContext;
  141. extern VALUE cBuilder;
  142. extern const char* kDescriptorInstanceVar;
  143. // We forward-declare all of the Ruby method implementations here because we
  144. // sometimes call the methods directly across .c files, rather than going
  145. // through Ruby's method dispatching (e.g. during message parse). It's cleaner
  146. // to keep the list of object methods together than to split them between
  147. // static-in-file definitions and header declarations.
  148. void DescriptorPool_mark(void* _self);
  149. void DescriptorPool_free(void* _self);
  150. VALUE DescriptorPool_alloc(VALUE klass);
  151. void DescriptorPool_register(VALUE module);
  152. DescriptorPool* ruby_to_DescriptorPool(VALUE value);
  153. VALUE DescriptorPool_add(VALUE _self, VALUE def);
  154. VALUE DescriptorPool_build(VALUE _self);
  155. VALUE DescriptorPool_lookup(VALUE _self, VALUE name);
  156. VALUE DescriptorPool_generated_pool(VALUE _self);
  157. void Descriptor_mark(void* _self);
  158. void Descriptor_free(void* _self);
  159. VALUE Descriptor_alloc(VALUE klass);
  160. void Descriptor_register(VALUE module);
  161. Descriptor* ruby_to_Descriptor(VALUE value);
  162. VALUE Descriptor_name(VALUE _self);
  163. VALUE Descriptor_name_set(VALUE _self, VALUE str);
  164. VALUE Descriptor_each(VALUE _self);
  165. VALUE Descriptor_lookup(VALUE _self, VALUE name);
  166. VALUE Descriptor_add_field(VALUE _self, VALUE obj);
  167. VALUE Descriptor_add_oneof(VALUE _self, VALUE obj);
  168. VALUE Descriptor_each_oneof(VALUE _self);
  169. VALUE Descriptor_lookup_oneof(VALUE _self, VALUE name);
  170. VALUE Descriptor_msgclass(VALUE _self);
  171. extern const rb_data_type_t _Descriptor_type;
  172. void FieldDescriptor_mark(void* _self);
  173. void FieldDescriptor_free(void* _self);
  174. VALUE FieldDescriptor_alloc(VALUE klass);
  175. void FieldDescriptor_register(VALUE module);
  176. FieldDescriptor* ruby_to_FieldDescriptor(VALUE value);
  177. VALUE FieldDescriptor_name(VALUE _self);
  178. VALUE FieldDescriptor_name_set(VALUE _self, VALUE str);
  179. VALUE FieldDescriptor_type(VALUE _self);
  180. VALUE FieldDescriptor_type_set(VALUE _self, VALUE type);
  181. VALUE FieldDescriptor_label(VALUE _self);
  182. VALUE FieldDescriptor_label_set(VALUE _self, VALUE label);
  183. VALUE FieldDescriptor_number(VALUE _self);
  184. VALUE FieldDescriptor_number_set(VALUE _self, VALUE number);
  185. VALUE FieldDescriptor_submsg_name(VALUE _self);
  186. VALUE FieldDescriptor_submsg_name_set(VALUE _self, VALUE value);
  187. VALUE FieldDescriptor_subtype(VALUE _self);
  188. VALUE FieldDescriptor_get(VALUE _self, VALUE msg_rb);
  189. VALUE FieldDescriptor_set(VALUE _self, VALUE msg_rb, VALUE value);
  190. upb_fieldtype_t ruby_to_fieldtype(VALUE type);
  191. VALUE fieldtype_to_ruby(upb_fieldtype_t type);
  192. void OneofDescriptor_mark(void* _self);
  193. void OneofDescriptor_free(void* _self);
  194. VALUE OneofDescriptor_alloc(VALUE klass);
  195. void OneofDescriptor_register(VALUE module);
  196. OneofDescriptor* ruby_to_OneofDescriptor(VALUE value);
  197. VALUE OneofDescriptor_name(VALUE _self);
  198. VALUE OneofDescriptor_name_set(VALUE _self, VALUE value);
  199. VALUE OneofDescriptor_add_field(VALUE _self, VALUE field);
  200. VALUE OneofDescriptor_each(VALUE _self, VALUE field);
  201. void EnumDescriptor_mark(void* _self);
  202. void EnumDescriptor_free(void* _self);
  203. VALUE EnumDescriptor_alloc(VALUE klass);
  204. void EnumDescriptor_register(VALUE module);
  205. EnumDescriptor* ruby_to_EnumDescriptor(VALUE value);
  206. VALUE EnumDescriptor_name(VALUE _self);
  207. VALUE EnumDescriptor_name_set(VALUE _self, VALUE str);
  208. VALUE EnumDescriptor_add_value(VALUE _self, VALUE name, VALUE number);
  209. VALUE EnumDescriptor_lookup_name(VALUE _self, VALUE name);
  210. VALUE EnumDescriptor_lookup_value(VALUE _self, VALUE number);
  211. VALUE EnumDescriptor_each(VALUE _self);
  212. VALUE EnumDescriptor_enummodule(VALUE _self);
  213. extern const rb_data_type_t _EnumDescriptor_type;
  214. void MessageBuilderContext_mark(void* _self);
  215. void MessageBuilderContext_free(void* _self);
  216. VALUE MessageBuilderContext_alloc(VALUE klass);
  217. void MessageBuilderContext_register(VALUE module);
  218. MessageBuilderContext* ruby_to_MessageBuilderContext(VALUE value);
  219. VALUE MessageBuilderContext_initialize(VALUE _self,
  220. VALUE descriptor,
  221. VALUE builder);
  222. VALUE MessageBuilderContext_optional(int argc, VALUE* argv, VALUE _self);
  223. VALUE MessageBuilderContext_required(int argc, VALUE* argv, VALUE _self);
  224. VALUE MessageBuilderContext_repeated(int argc, VALUE* argv, VALUE _self);
  225. VALUE MessageBuilderContext_map(int argc, VALUE* argv, VALUE _self);
  226. VALUE MessageBuilderContext_oneof(VALUE _self, VALUE name);
  227. void OneofBuilderContext_mark(void* _self);
  228. void OneofBuilderContext_free(void* _self);
  229. VALUE OneofBuilderContext_alloc(VALUE klass);
  230. void OneofBuilderContext_register(VALUE module);
  231. OneofBuilderContext* ruby_to_OneofBuilderContext(VALUE value);
  232. VALUE OneofBuilderContext_initialize(VALUE _self,
  233. VALUE descriptor,
  234. VALUE builder);
  235. VALUE OneofBuilderContext_optional(int argc, VALUE* argv, VALUE _self);
  236. void EnumBuilderContext_mark(void* _self);
  237. void EnumBuilderContext_free(void* _self);
  238. VALUE EnumBuilderContext_alloc(VALUE klass);
  239. void EnumBuilderContext_register(VALUE module);
  240. EnumBuilderContext* ruby_to_EnumBuilderContext(VALUE value);
  241. VALUE EnumBuilderContext_initialize(VALUE _self, VALUE enumdesc);
  242. VALUE EnumBuilderContext_value(VALUE _self, VALUE name, VALUE number);
  243. void Builder_mark(void* _self);
  244. void Builder_free(void* _self);
  245. VALUE Builder_alloc(VALUE klass);
  246. void Builder_register(VALUE module);
  247. Builder* ruby_to_Builder(VALUE value);
  248. VALUE Builder_add_message(VALUE _self, VALUE name);
  249. VALUE Builder_add_enum(VALUE _self, VALUE name);
  250. VALUE Builder_finalize_to_pool(VALUE _self, VALUE pool_rb);
  251. // -----------------------------------------------------------------------------
  252. // Native slot storage abstraction.
  253. // -----------------------------------------------------------------------------
  254. #define NATIVE_SLOT_MAX_SIZE sizeof(uint64_t)
  255. size_t native_slot_size(upb_fieldtype_t type);
  256. void native_slot_set(upb_fieldtype_t type,
  257. VALUE type_class,
  258. void* memory,
  259. VALUE value);
  260. VALUE native_slot_get(upb_fieldtype_t type,
  261. VALUE type_class,
  262. const void* memory);
  263. void native_slot_init(upb_fieldtype_t type, void* memory);
  264. void native_slot_mark(upb_fieldtype_t type, void* memory);
  265. void native_slot_dup(upb_fieldtype_t type, void* to, void* from);
  266. void native_slot_deep_copy(upb_fieldtype_t type, void* to, void* from);
  267. bool native_slot_eq(upb_fieldtype_t type, void* mem1, void* mem2);
  268. void native_slot_validate_string_encoding(upb_fieldtype_t type, VALUE value);
  269. void native_slot_check_int_range_precision(upb_fieldtype_t type, VALUE value);
  270. extern rb_encoding* kRubyStringUtf8Encoding;
  271. extern rb_encoding* kRubyStringASCIIEncoding;
  272. extern rb_encoding* kRubyString8bitEncoding;
  273. VALUE field_type_class(const upb_fielddef* field);
  274. #define MAP_KEY_FIELD 1
  275. #define MAP_VALUE_FIELD 2
  276. // These operate on a map field (i.e., a repeated field of submessages whose
  277. // submessage type is a map-entry msgdef).
  278. bool is_map_field(const upb_fielddef* field);
  279. const upb_fielddef* map_field_key(const upb_fielddef* field);
  280. const upb_fielddef* map_field_value(const upb_fielddef* field);
  281. // These operate on a map-entry msgdef.
  282. const upb_fielddef* map_entry_key(const upb_msgdef* msgdef);
  283. const upb_fielddef* map_entry_value(const upb_msgdef* msgdef);
  284. // -----------------------------------------------------------------------------
  285. // Repeated field container type.
  286. // -----------------------------------------------------------------------------
  287. typedef struct {
  288. upb_fieldtype_t field_type;
  289. VALUE field_type_class;
  290. void* elements;
  291. int size;
  292. int capacity;
  293. } RepeatedField;
  294. void RepeatedField_mark(void* self);
  295. void RepeatedField_free(void* self);
  296. VALUE RepeatedField_alloc(VALUE klass);
  297. VALUE RepeatedField_init(int argc, VALUE* argv, VALUE self);
  298. void RepeatedField_register(VALUE module);
  299. extern const rb_data_type_t RepeatedField_type;
  300. extern VALUE cRepeatedField;
  301. RepeatedField* ruby_to_RepeatedField(VALUE value);
  302. VALUE RepeatedField_each(VALUE _self);
  303. VALUE RepeatedField_index(VALUE _self, VALUE _index);
  304. void* RepeatedField_index_native(VALUE _self, int index);
  305. VALUE RepeatedField_index_set(VALUE _self, VALUE _index, VALUE val);
  306. void RepeatedField_reserve(RepeatedField* self, int new_size);
  307. VALUE RepeatedField_push(VALUE _self, VALUE val);
  308. void RepeatedField_push_native(VALUE _self, void* data);
  309. VALUE RepeatedField_pop(VALUE _self);
  310. VALUE RepeatedField_insert(int argc, VALUE* argv, VALUE _self);
  311. VALUE RepeatedField_replace(VALUE _self, VALUE list);
  312. VALUE RepeatedField_clear(VALUE _self);
  313. VALUE RepeatedField_length(VALUE _self);
  314. VALUE RepeatedField_dup(VALUE _self);
  315. VALUE RepeatedField_deep_copy(VALUE _self);
  316. VALUE RepeatedField_eq(VALUE _self, VALUE _other);
  317. VALUE RepeatedField_hash(VALUE _self);
  318. VALUE RepeatedField_inspect(VALUE _self);
  319. VALUE RepeatedField_plus(VALUE _self, VALUE list);
  320. // Defined in repeated_field.c; also used by Map.
  321. void validate_type_class(upb_fieldtype_t type, VALUE klass);
  322. // -----------------------------------------------------------------------------
  323. // Map container type.
  324. // -----------------------------------------------------------------------------
  325. typedef struct {
  326. upb_fieldtype_t key_type;
  327. upb_fieldtype_t value_type;
  328. VALUE value_type_class;
  329. upb_strtable table;
  330. } Map;
  331. void Map_mark(void* self);
  332. void Map_free(void* self);
  333. VALUE Map_alloc(VALUE klass);
  334. VALUE Map_init(int argc, VALUE* argv, VALUE self);
  335. void Map_register(VALUE module);
  336. extern const rb_data_type_t Map_type;
  337. extern VALUE cMap;
  338. Map* ruby_to_Map(VALUE value);
  339. VALUE Map_each(VALUE _self);
  340. VALUE Map_keys(VALUE _self);
  341. VALUE Map_values(VALUE _self);
  342. VALUE Map_index(VALUE _self, VALUE key);
  343. VALUE Map_index_set(VALUE _self, VALUE key, VALUE value);
  344. VALUE Map_has_key(VALUE _self, VALUE key);
  345. VALUE Map_delete(VALUE _self, VALUE key);
  346. VALUE Map_clear(VALUE _self);
  347. VALUE Map_length(VALUE _self);
  348. VALUE Map_dup(VALUE _self);
  349. VALUE Map_deep_copy(VALUE _self);
  350. VALUE Map_eq(VALUE _self, VALUE _other);
  351. VALUE Map_hash(VALUE _self);
  352. VALUE Map_inspect(VALUE _self);
  353. VALUE Map_merge(VALUE _self, VALUE hashmap);
  354. VALUE Map_merge_into_self(VALUE _self, VALUE hashmap);
  355. typedef struct {
  356. Map* self;
  357. upb_strtable_iter it;
  358. } Map_iter;
  359. void Map_begin(VALUE _self, Map_iter* iter);
  360. void Map_next(Map_iter* iter);
  361. bool Map_done(Map_iter* iter);
  362. VALUE Map_iter_key(Map_iter* iter);
  363. VALUE Map_iter_value(Map_iter* iter);
  364. // -----------------------------------------------------------------------------
  365. // Message layout / storage.
  366. // -----------------------------------------------------------------------------
  367. #define MESSAGE_FIELD_NO_CASE ((size_t)-1)
  368. struct MessageField {
  369. size_t offset;
  370. size_t case_offset; // for oneofs, a uint32. Else, MESSAGE_FIELD_NO_CASE.
  371. };
  372. struct MessageLayout {
  373. const upb_msgdef* msgdef;
  374. MessageField* fields;
  375. size_t size;
  376. };
  377. MessageLayout* create_layout(const upb_msgdef* msgdef);
  378. void free_layout(MessageLayout* layout);
  379. VALUE layout_get(MessageLayout* layout,
  380. const void* storage,
  381. const upb_fielddef* field);
  382. void layout_set(MessageLayout* layout,
  383. void* storage,
  384. const upb_fielddef* field,
  385. VALUE val);
  386. void layout_init(MessageLayout* layout, void* storage);
  387. void layout_mark(MessageLayout* layout, void* storage);
  388. void layout_dup(MessageLayout* layout, void* to, void* from);
  389. void layout_deep_copy(MessageLayout* layout, void* to, void* from);
  390. VALUE layout_eq(MessageLayout* layout, void* msg1, void* msg2);
  391. VALUE layout_hash(MessageLayout* layout, void* storage);
  392. VALUE layout_inspect(MessageLayout* layout, void* storage);
  393. // -----------------------------------------------------------------------------
  394. // Message class creation.
  395. // -----------------------------------------------------------------------------
  396. struct MessageHeader {
  397. Descriptor* descriptor; // kept alive by self.class.descriptor reference.
  398. // Data comes after this.
  399. };
  400. extern rb_data_type_t Message_type;
  401. VALUE build_class_from_descriptor(Descriptor* descriptor);
  402. void* Message_data(void* msg);
  403. void Message_mark(void* self);
  404. void Message_free(void* self);
  405. VALUE Message_alloc(VALUE klass);
  406. VALUE Message_method_missing(int argc, VALUE* argv, VALUE _self);
  407. VALUE Message_initialize(int argc, VALUE* argv, VALUE _self);
  408. VALUE Message_dup(VALUE _self);
  409. VALUE Message_deep_copy(VALUE _self);
  410. VALUE Message_eq(VALUE _self, VALUE _other);
  411. VALUE Message_hash(VALUE _self);
  412. VALUE Message_inspect(VALUE _self);
  413. VALUE Message_index(VALUE _self, VALUE field_name);
  414. VALUE Message_index_set(VALUE _self, VALUE field_name, VALUE value);
  415. VALUE Message_descriptor(VALUE klass);
  416. VALUE Message_decode(VALUE klass, VALUE data);
  417. VALUE Message_encode(VALUE klass, VALUE msg_rb);
  418. VALUE Message_decode_json(VALUE klass, VALUE data);
  419. VALUE Message_encode_json(VALUE klass, VALUE msg_rb);
  420. VALUE Google_Protobuf_encode(VALUE self, VALUE msg_rb);
  421. VALUE Google_Protobuf_decode(VALUE self, VALUE klass, VALUE msg_rb);
  422. VALUE Google_Protobuf_encode_json(VALUE self, VALUE msg_rb);
  423. VALUE Google_Protobuf_decode_json(VALUE self, VALUE klass, VALUE msg_rb);
  424. VALUE Google_Protobuf_deep_copy(VALUE self, VALUE obj);
  425. VALUE build_module_from_enumdesc(EnumDescriptor* enumdef);
  426. VALUE enum_lookup(VALUE self, VALUE number);
  427. VALUE enum_resolve(VALUE self, VALUE sym);
  428. const upb_pbdecodermethod *new_fillmsg_decodermethod(
  429. Descriptor* descriptor, const void *owner);
  430. // -----------------------------------------------------------------------------
  431. // Global map from upb {msg,enum}defs to wrapper Descriptor/EnumDescriptor
  432. // instances.
  433. // -----------------------------------------------------------------------------
  434. void add_def_obj(const void* def, VALUE value);
  435. VALUE get_def_obj(const void* def);
  436. // -----------------------------------------------------------------------------
  437. // Utilities.
  438. // -----------------------------------------------------------------------------
  439. void check_upb_status(const upb_status* status, const char* msg);
  440. #define CHECK_UPB(code, msg) do { \
  441. upb_status status = UPB_STATUS_INIT; \
  442. code; \
  443. check_upb_status(&status, msg); \
  444. } while (0)
  445. #endif // __GOOGLE_PROTOBUF_RUBY_PROTOBUF_H__