message.h 12 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. // Author: anuraag@google.com (Anuraag Agrawal)
  31. // Author: tibell@google.com (Johan Tibell)
  32. #ifndef GOOGLE_PROTOBUF_PYTHON_CPP_MESSAGE_H__
  33. #define GOOGLE_PROTOBUF_PYTHON_CPP_MESSAGE_H__
  34. #include <Python.h>
  35. #include <memory>
  36. #ifndef _SHARED_PTR_H
  37. #include <google/protobuf/stubs/shared_ptr.h>
  38. #endif
  39. #include <string>
  40. namespace google {
  41. namespace protobuf {
  42. class Message;
  43. class Reflection;
  44. class FieldDescriptor;
  45. class Descriptor;
  46. class DynamicMessageFactory;
  47. using internal::shared_ptr;
  48. namespace python {
  49. struct ExtensionDict;
  50. typedef struct CMessage {
  51. PyObject_HEAD;
  52. // This is the top-level C++ Message object that owns the whole
  53. // proto tree. Every Python CMessage holds a reference to it in
  54. // order to keep it alive as long as there's a Python object that
  55. // references any part of the tree.
  56. shared_ptr<Message> owner;
  57. // Weak reference to a parent CMessage object. This is NULL for any top-level
  58. // message and is set for any child message (i.e. a child submessage or a
  59. // part of a repeated composite field).
  60. //
  61. // Used to make sure all ancestors are also mutable when first modifying
  62. // a child submessage (in other words, turning a default message instance
  63. // into a mutable one).
  64. //
  65. // If a submessage is released (becomes a new top-level message), this field
  66. // MUST be set to NULL. The parent may get deallocated and further attempts
  67. // to use this pointer will result in a crash.
  68. struct CMessage* parent;
  69. // Pointer to the parent's descriptor that describes this submessage.
  70. // Used together with the parent's message when making a default message
  71. // instance mutable.
  72. // The pointer is owned by the global DescriptorPool.
  73. const FieldDescriptor* parent_field_descriptor;
  74. // Pointer to the C++ Message object for this CMessage. The
  75. // CMessage does not own this pointer.
  76. Message* message;
  77. // Indicates this submessage is pointing to a default instance of a message.
  78. // Submessages are always first created as read only messages and are then
  79. // made writable, at which point this field is set to false.
  80. bool read_only;
  81. // A reference to a Python dictionary containing CMessage,
  82. // RepeatedCompositeContainer, and RepeatedScalarContainer
  83. // objects. Used as a cache to make sure we don't have to make a
  84. // Python wrapper for the C++ Message objects on every access, or
  85. // deal with the synchronization nightmare that could create.
  86. PyObject* composite_fields;
  87. // A reference to the dictionary containing the message's extensions.
  88. // Similar to composite_fields, acting as a cache, but also contains the
  89. // required extension dict logic.
  90. ExtensionDict* extensions;
  91. } CMessage;
  92. extern PyTypeObject CMessage_Type;
  93. namespace cmessage {
  94. // Internal function to create a new empty Message Python object, but with empty
  95. // pointers to the C++ objects.
  96. // The caller must fill self->message, self->owner and eventually self->parent.
  97. CMessage* NewEmptyMessage(PyObject* type, const Descriptor* descriptor);
  98. // Release a submessage from its proto tree, making it a new top-level messgae.
  99. // A new message will be created if this is a read-only default instance.
  100. //
  101. // Corresponds to reflection api method ReleaseMessage.
  102. int ReleaseSubMessage(CMessage* self,
  103. const FieldDescriptor* field_descriptor,
  104. CMessage* child_cmessage);
  105. // Retrieves the C++ descriptor of a Python Extension descriptor.
  106. // On error, return NULL with an exception set.
  107. const FieldDescriptor* GetExtensionDescriptor(PyObject* extension);
  108. // Initializes a new CMessage instance for a submessage. Only called once per
  109. // submessage as the result is cached in composite_fields.
  110. //
  111. // Corresponds to reflection api method GetMessage.
  112. PyObject* InternalGetSubMessage(
  113. CMessage* self, const FieldDescriptor* field_descriptor);
  114. // Deletes a range of C++ submessages in a repeated field (following a
  115. // removal in a RepeatedCompositeContainer).
  116. //
  117. // Releases messages to the provided cmessage_list if it is not NULL rather
  118. // than just removing them from the underlying proto. This cmessage_list must
  119. // have a CMessage for each underlying submessage. The CMessages referred to
  120. // by slice will be removed from cmessage_list by this function.
  121. //
  122. // Corresponds to reflection api method RemoveLast.
  123. int InternalDeleteRepeatedField(CMessage* self,
  124. const FieldDescriptor* field_descriptor,
  125. PyObject* slice, PyObject* cmessage_list);
  126. // Sets the specified scalar value to the message.
  127. int InternalSetScalar(CMessage* self,
  128. const FieldDescriptor* field_descriptor,
  129. PyObject* value);
  130. // Sets the specified scalar value to the message. Requires it is not a Oneof.
  131. int InternalSetNonOneofScalar(Message* message,
  132. const FieldDescriptor* field_descriptor,
  133. PyObject* arg);
  134. // Retrieves the specified scalar value from the message.
  135. //
  136. // Returns a new python reference.
  137. PyObject* InternalGetScalar(const Message* message,
  138. const FieldDescriptor* field_descriptor);
  139. // Clears the message, removing all contained data. Extension dictionary and
  140. // submessages are released first if there are remaining external references.
  141. //
  142. // Corresponds to message api method Clear.
  143. PyObject* Clear(CMessage* self);
  144. // Clears the data described by the given descriptor. Used to clear extensions
  145. // (which don't have names). Extension release is handled by ExtensionDict
  146. // class, not this function.
  147. // TODO(anuraag): Try to make this discrepancy in release semantics with
  148. // ClearField less confusing.
  149. //
  150. // Corresponds to reflection api method ClearField.
  151. PyObject* ClearFieldByDescriptor(
  152. CMessage* self, const FieldDescriptor* descriptor);
  153. // Clears the data for the given field name. The message is released if there
  154. // are any external references.
  155. //
  156. // Corresponds to reflection api method ClearField.
  157. PyObject* ClearField(CMessage* self, PyObject* arg);
  158. // Checks if the message has the field described by the descriptor. Used for
  159. // extensions (which have no name).
  160. //
  161. // Corresponds to reflection api method HasField
  162. PyObject* HasFieldByDescriptor(
  163. CMessage* self, const FieldDescriptor* field_descriptor);
  164. // Checks if the message has the named field.
  165. //
  166. // Corresponds to reflection api method HasField.
  167. PyObject* HasField(CMessage* self, PyObject* arg);
  168. // Initializes values of fields on a newly constructed message.
  169. int InitAttributes(CMessage* self, PyObject* kwargs);
  170. PyObject* MergeFrom(CMessage* self, PyObject* arg);
  171. // Retrieves an attribute named 'name' from CMessage 'self'. Returns
  172. // the attribute value on success, or NULL on failure.
  173. //
  174. // Returns a new reference.
  175. PyObject* GetAttr(CMessage* self, PyObject* name);
  176. // Set the value of the attribute named 'name', for CMessage 'self',
  177. // to the value 'value'. Returns -1 on failure.
  178. int SetAttr(CMessage* self, PyObject* name, PyObject* value);
  179. PyObject* FindInitializationErrors(CMessage* self);
  180. // Set the owner field of self and any children of self, recursively.
  181. // Used when self is being released and thus has a new owner (the
  182. // released Message.)
  183. int SetOwner(CMessage* self, const shared_ptr<Message>& new_owner);
  184. int AssureWritable(CMessage* self);
  185. DynamicMessageFactory* GetMessageFactory();
  186. } // namespace cmessage
  187. /* Is 64bit */
  188. #define IS_64BIT (SIZEOF_LONG == 8)
  189. #define FIELD_IS_REPEATED(field_descriptor) \
  190. ((field_descriptor)->label() == FieldDescriptor::LABEL_REPEATED)
  191. #define GOOGLE_CHECK_GET_INT32(arg, value, err) \
  192. int32 value; \
  193. if (!CheckAndGetInteger(arg, &value, kint32min_py, kint32max_py)) { \
  194. return err; \
  195. }
  196. #define GOOGLE_CHECK_GET_INT64(arg, value, err) \
  197. int64 value; \
  198. if (!CheckAndGetInteger(arg, &value, kint64min_py, kint64max_py)) { \
  199. return err; \
  200. }
  201. #define GOOGLE_CHECK_GET_UINT32(arg, value, err) \
  202. uint32 value; \
  203. if (!CheckAndGetInteger(arg, &value, kPythonZero, kuint32max_py)) { \
  204. return err; \
  205. }
  206. #define GOOGLE_CHECK_GET_UINT64(arg, value, err) \
  207. uint64 value; \
  208. if (!CheckAndGetInteger(arg, &value, kPythonZero, kuint64max_py)) { \
  209. return err; \
  210. }
  211. #define GOOGLE_CHECK_GET_FLOAT(arg, value, err) \
  212. float value; \
  213. if (!CheckAndGetFloat(arg, &value)) { \
  214. return err; \
  215. } \
  216. #define GOOGLE_CHECK_GET_DOUBLE(arg, value, err) \
  217. double value; \
  218. if (!CheckAndGetDouble(arg, &value)) { \
  219. return err; \
  220. }
  221. #define GOOGLE_CHECK_GET_BOOL(arg, value, err) \
  222. bool value; \
  223. if (!CheckAndGetBool(arg, &value)) { \
  224. return err; \
  225. }
  226. extern PyObject* kPythonZero;
  227. extern PyObject* kint32min_py;
  228. extern PyObject* kint32max_py;
  229. extern PyObject* kuint32max_py;
  230. extern PyObject* kint64min_py;
  231. extern PyObject* kint64max_py;
  232. extern PyObject* kuint64max_py;
  233. #define FULL_MODULE_NAME "google.protobuf.pyext._message"
  234. void FormatTypeError(PyObject* arg, char* expected_types);
  235. template<class T>
  236. bool CheckAndGetInteger(
  237. PyObject* arg, T* value, PyObject* min, PyObject* max);
  238. bool CheckAndGetDouble(PyObject* arg, double* value);
  239. bool CheckAndGetFloat(PyObject* arg, float* value);
  240. bool CheckAndGetBool(PyObject* arg, bool* value);
  241. bool CheckAndSetString(
  242. PyObject* arg, Message* message,
  243. const FieldDescriptor* descriptor,
  244. const Reflection* reflection,
  245. bool append,
  246. int index);
  247. PyObject* ToStringObject(const FieldDescriptor* descriptor, string value);
  248. // Check if the passed field descriptor belongs to the given message.
  249. // If not, return false and set a Python exception (a KeyError)
  250. bool CheckFieldBelongsToMessage(const FieldDescriptor* field_descriptor,
  251. const Message* message);
  252. extern PyObject* PickleError_class;
  253. } // namespace python
  254. } // namespace protobuf
  255. } // namespace google
  256. #endif // GOOGLE_PROTOBUF_PYTHON_CPP_MESSAGE_H__