encoder.py 26 KB

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  1. # Protocol Buffers - Google's data interchange format
  2. # Copyright 2008 Google Inc. All rights reserved.
  3. # http://code.google.com/p/protobuf/
  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. #PY25 compatible for GAE.
  31. #
  32. # Copyright 2009 Google Inc. All Rights Reserved.
  33. """Code for encoding protocol message primitives.
  34. Contains the logic for encoding every logical protocol field type
  35. into one of the 5 physical wire types.
  36. This code is designed to push the Python interpreter's performance to the
  37. limits.
  38. The basic idea is that at startup time, for every field (i.e. every
  39. FieldDescriptor) we construct two functions: a "sizer" and an "encoder". The
  40. sizer takes a value of this field's type and computes its byte size. The
  41. encoder takes a writer function and a value. It encodes the value into byte
  42. strings and invokes the writer function to write those strings. Typically the
  43. writer function is the write() method of a cStringIO.
  44. We try to do as much work as possible when constructing the writer and the
  45. sizer rather than when calling them. In particular:
  46. * We copy any needed global functions to local variables, so that we do not need
  47. to do costly global table lookups at runtime.
  48. * Similarly, we try to do any attribute lookups at startup time if possible.
  49. * Every field's tag is encoded to bytes at startup, since it can't change at
  50. runtime.
  51. * Whatever component of the field size we can compute at startup, we do.
  52. * We *avoid* sharing code if doing so would make the code slower and not sharing
  53. does not burden us too much. For example, encoders for repeated fields do
  54. not just call the encoders for singular fields in a loop because this would
  55. add an extra function call overhead for every loop iteration; instead, we
  56. manually inline the single-value encoder into the loop.
  57. * If a Python function lacks a return statement, Python actually generates
  58. instructions to pop the result of the last statement off the stack, push
  59. None onto the stack, and then return that. If we really don't care what
  60. value is returned, then we can save two instructions by returning the
  61. result of the last statement. It looks funny but it helps.
  62. * We assume that type and bounds checking has happened at a higher level.
  63. """
  64. __author__ = 'kenton@google.com (Kenton Varda)'
  65. import struct
  66. import sys ##PY25
  67. _PY2 = sys.version_info[0] < 3 ##PY25
  68. from google.protobuf.internal import wire_format
  69. # This will overflow and thus become IEEE-754 "infinity". We would use
  70. # "float('inf')" but it doesn't work on Windows pre-Python-2.6.
  71. _POS_INF = 1e10000
  72. _NEG_INF = -_POS_INF
  73. def _VarintSize(value):
  74. """Compute the size of a varint value."""
  75. if value <= 0x7f: return 1
  76. if value <= 0x3fff: return 2
  77. if value <= 0x1fffff: return 3
  78. if value <= 0xfffffff: return 4
  79. if value <= 0x7ffffffff: return 5
  80. if value <= 0x3ffffffffff: return 6
  81. if value <= 0x1ffffffffffff: return 7
  82. if value <= 0xffffffffffffff: return 8
  83. if value <= 0x7fffffffffffffff: return 9
  84. return 10
  85. def _SignedVarintSize(value):
  86. """Compute the size of a signed varint value."""
  87. if value < 0: return 10
  88. if value <= 0x7f: return 1
  89. if value <= 0x3fff: return 2
  90. if value <= 0x1fffff: return 3
  91. if value <= 0xfffffff: return 4
  92. if value <= 0x7ffffffff: return 5
  93. if value <= 0x3ffffffffff: return 6
  94. if value <= 0x1ffffffffffff: return 7
  95. if value <= 0xffffffffffffff: return 8
  96. if value <= 0x7fffffffffffffff: return 9
  97. return 10
  98. def _TagSize(field_number):
  99. """Returns the number of bytes required to serialize a tag with this field
  100. number."""
  101. # Just pass in type 0, since the type won't affect the tag+type size.
  102. return _VarintSize(wire_format.PackTag(field_number, 0))
  103. # --------------------------------------------------------------------
  104. # In this section we define some generic sizers. Each of these functions
  105. # takes parameters specific to a particular field type, e.g. int32 or fixed64.
  106. # It returns another function which in turn takes parameters specific to a
  107. # particular field, e.g. the field number and whether it is repeated or packed.
  108. # Look at the next section to see how these are used.
  109. def _SimpleSizer(compute_value_size):
  110. """A sizer which uses the function compute_value_size to compute the size of
  111. each value. Typically compute_value_size is _VarintSize."""
  112. def SpecificSizer(field_number, is_repeated, is_packed):
  113. tag_size = _TagSize(field_number)
  114. if is_packed:
  115. local_VarintSize = _VarintSize
  116. def PackedFieldSize(value):
  117. result = 0
  118. for element in value:
  119. result += compute_value_size(element)
  120. return result + local_VarintSize(result) + tag_size
  121. return PackedFieldSize
  122. elif is_repeated:
  123. def RepeatedFieldSize(value):
  124. result = tag_size * len(value)
  125. for element in value:
  126. result += compute_value_size(element)
  127. return result
  128. return RepeatedFieldSize
  129. else:
  130. def FieldSize(value):
  131. return tag_size + compute_value_size(value)
  132. return FieldSize
  133. return SpecificSizer
  134. def _ModifiedSizer(compute_value_size, modify_value):
  135. """Like SimpleSizer, but modify_value is invoked on each value before it is
  136. passed to compute_value_size. modify_value is typically ZigZagEncode."""
  137. def SpecificSizer(field_number, is_repeated, is_packed):
  138. tag_size = _TagSize(field_number)
  139. if is_packed:
  140. local_VarintSize = _VarintSize
  141. def PackedFieldSize(value):
  142. result = 0
  143. for element in value:
  144. result += compute_value_size(modify_value(element))
  145. return result + local_VarintSize(result) + tag_size
  146. return PackedFieldSize
  147. elif is_repeated:
  148. def RepeatedFieldSize(value):
  149. result = tag_size * len(value)
  150. for element in value:
  151. result += compute_value_size(modify_value(element))
  152. return result
  153. return RepeatedFieldSize
  154. else:
  155. def FieldSize(value):
  156. return tag_size + compute_value_size(modify_value(value))
  157. return FieldSize
  158. return SpecificSizer
  159. def _FixedSizer(value_size):
  160. """Like _SimpleSizer except for a fixed-size field. The input is the size
  161. of one value."""
  162. def SpecificSizer(field_number, is_repeated, is_packed):
  163. tag_size = _TagSize(field_number)
  164. if is_packed:
  165. local_VarintSize = _VarintSize
  166. def PackedFieldSize(value):
  167. result = len(value) * value_size
  168. return result + local_VarintSize(result) + tag_size
  169. return PackedFieldSize
  170. elif is_repeated:
  171. element_size = value_size + tag_size
  172. def RepeatedFieldSize(value):
  173. return len(value) * element_size
  174. return RepeatedFieldSize
  175. else:
  176. field_size = value_size + tag_size
  177. def FieldSize(value):
  178. return field_size
  179. return FieldSize
  180. return SpecificSizer
  181. # ====================================================================
  182. # Here we declare a sizer constructor for each field type. Each "sizer
  183. # constructor" is a function that takes (field_number, is_repeated, is_packed)
  184. # as parameters and returns a sizer, which in turn takes a field value as
  185. # a parameter and returns its encoded size.
  186. Int32Sizer = Int64Sizer = EnumSizer = _SimpleSizer(_SignedVarintSize)
  187. UInt32Sizer = UInt64Sizer = _SimpleSizer(_VarintSize)
  188. SInt32Sizer = SInt64Sizer = _ModifiedSizer(
  189. _SignedVarintSize, wire_format.ZigZagEncode)
  190. Fixed32Sizer = SFixed32Sizer = FloatSizer = _FixedSizer(4)
  191. Fixed64Sizer = SFixed64Sizer = DoubleSizer = _FixedSizer(8)
  192. BoolSizer = _FixedSizer(1)
  193. def StringSizer(field_number, is_repeated, is_packed):
  194. """Returns a sizer for a string field."""
  195. tag_size = _TagSize(field_number)
  196. local_VarintSize = _VarintSize
  197. local_len = len
  198. assert not is_packed
  199. if is_repeated:
  200. def RepeatedFieldSize(value):
  201. result = tag_size * len(value)
  202. for element in value:
  203. l = local_len(element.encode('utf-8'))
  204. result += local_VarintSize(l) + l
  205. return result
  206. return RepeatedFieldSize
  207. else:
  208. def FieldSize(value):
  209. l = local_len(value.encode('utf-8'))
  210. return tag_size + local_VarintSize(l) + l
  211. return FieldSize
  212. def BytesSizer(field_number, is_repeated, is_packed):
  213. """Returns a sizer for a bytes field."""
  214. tag_size = _TagSize(field_number)
  215. local_VarintSize = _VarintSize
  216. local_len = len
  217. assert not is_packed
  218. if is_repeated:
  219. def RepeatedFieldSize(value):
  220. result = tag_size * len(value)
  221. for element in value:
  222. l = local_len(element)
  223. result += local_VarintSize(l) + l
  224. return result
  225. return RepeatedFieldSize
  226. else:
  227. def FieldSize(value):
  228. l = local_len(value)
  229. return tag_size + local_VarintSize(l) + l
  230. return FieldSize
  231. def GroupSizer(field_number, is_repeated, is_packed):
  232. """Returns a sizer for a group field."""
  233. tag_size = _TagSize(field_number) * 2
  234. assert not is_packed
  235. if is_repeated:
  236. def RepeatedFieldSize(value):
  237. result = tag_size * len(value)
  238. for element in value:
  239. result += element.ByteSize()
  240. return result
  241. return RepeatedFieldSize
  242. else:
  243. def FieldSize(value):
  244. return tag_size + value.ByteSize()
  245. return FieldSize
  246. def MessageSizer(field_number, is_repeated, is_packed):
  247. """Returns a sizer for a message field."""
  248. tag_size = _TagSize(field_number)
  249. local_VarintSize = _VarintSize
  250. assert not is_packed
  251. if is_repeated:
  252. def RepeatedFieldSize(value):
  253. result = tag_size * len(value)
  254. for element in value:
  255. l = element.ByteSize()
  256. result += local_VarintSize(l) + l
  257. return result
  258. return RepeatedFieldSize
  259. else:
  260. def FieldSize(value):
  261. l = value.ByteSize()
  262. return tag_size + local_VarintSize(l) + l
  263. return FieldSize
  264. # --------------------------------------------------------------------
  265. # MessageSet is special.
  266. def MessageSetItemSizer(field_number):
  267. """Returns a sizer for extensions of MessageSet.
  268. The message set message looks like this:
  269. message MessageSet {
  270. repeated group Item = 1 {
  271. required int32 type_id = 2;
  272. required string message = 3;
  273. }
  274. }
  275. """
  276. static_size = (_TagSize(1) * 2 + _TagSize(2) + _VarintSize(field_number) +
  277. _TagSize(3))
  278. local_VarintSize = _VarintSize
  279. def FieldSize(value):
  280. l = value.ByteSize()
  281. return static_size + local_VarintSize(l) + l
  282. return FieldSize
  283. # ====================================================================
  284. # Encoders!
  285. def _VarintEncoder():
  286. """Return an encoder for a basic varint value (does not include tag)."""
  287. local_chr = _PY2 and chr or (lambda x: bytes((x,))) ##PY25
  288. ##!PY25 local_chr = chr if bytes is str else lambda x: bytes((x,))
  289. def EncodeVarint(write, value):
  290. bits = value & 0x7f
  291. value >>= 7
  292. while value:
  293. write(local_chr(0x80|bits))
  294. bits = value & 0x7f
  295. value >>= 7
  296. return write(local_chr(bits))
  297. return EncodeVarint
  298. def _SignedVarintEncoder():
  299. """Return an encoder for a basic signed varint value (does not include
  300. tag)."""
  301. local_chr = _PY2 and chr or (lambda x: bytes((x,))) ##PY25
  302. ##!PY25 local_chr = chr if bytes is str else lambda x: bytes((x,))
  303. def EncodeSignedVarint(write, value):
  304. if value < 0:
  305. value += (1 << 64)
  306. bits = value & 0x7f
  307. value >>= 7
  308. while value:
  309. write(local_chr(0x80|bits))
  310. bits = value & 0x7f
  311. value >>= 7
  312. return write(local_chr(bits))
  313. return EncodeSignedVarint
  314. _EncodeVarint = _VarintEncoder()
  315. _EncodeSignedVarint = _SignedVarintEncoder()
  316. def _VarintBytes(value):
  317. """Encode the given integer as a varint and return the bytes. This is only
  318. called at startup time so it doesn't need to be fast."""
  319. pieces = []
  320. _EncodeVarint(pieces.append, value)
  321. return "".encode("latin1").join(pieces) ##PY25
  322. ##!PY25 return b"".join(pieces)
  323. def TagBytes(field_number, wire_type):
  324. """Encode the given tag and return the bytes. Only called at startup."""
  325. return _VarintBytes(wire_format.PackTag(field_number, wire_type))
  326. # --------------------------------------------------------------------
  327. # As with sizers (see above), we have a number of common encoder
  328. # implementations.
  329. def _SimpleEncoder(wire_type, encode_value, compute_value_size):
  330. """Return a constructor for an encoder for fields of a particular type.
  331. Args:
  332. wire_type: The field's wire type, for encoding tags.
  333. encode_value: A function which encodes an individual value, e.g.
  334. _EncodeVarint().
  335. compute_value_size: A function which computes the size of an individual
  336. value, e.g. _VarintSize().
  337. """
  338. def SpecificEncoder(field_number, is_repeated, is_packed):
  339. if is_packed:
  340. tag_bytes = TagBytes(field_number, wire_format.WIRETYPE_LENGTH_DELIMITED)
  341. local_EncodeVarint = _EncodeVarint
  342. def EncodePackedField(write, value):
  343. write(tag_bytes)
  344. size = 0
  345. for element in value:
  346. size += compute_value_size(element)
  347. local_EncodeVarint(write, size)
  348. for element in value:
  349. encode_value(write, element)
  350. return EncodePackedField
  351. elif is_repeated:
  352. tag_bytes = TagBytes(field_number, wire_type)
  353. def EncodeRepeatedField(write, value):
  354. for element in value:
  355. write(tag_bytes)
  356. encode_value(write, element)
  357. return EncodeRepeatedField
  358. else:
  359. tag_bytes = TagBytes(field_number, wire_type)
  360. def EncodeField(write, value):
  361. write(tag_bytes)
  362. return encode_value(write, value)
  363. return EncodeField
  364. return SpecificEncoder
  365. def _ModifiedEncoder(wire_type, encode_value, compute_value_size, modify_value):
  366. """Like SimpleEncoder but additionally invokes modify_value on every value
  367. before passing it to encode_value. Usually modify_value is ZigZagEncode."""
  368. def SpecificEncoder(field_number, is_repeated, is_packed):
  369. if is_packed:
  370. tag_bytes = TagBytes(field_number, wire_format.WIRETYPE_LENGTH_DELIMITED)
  371. local_EncodeVarint = _EncodeVarint
  372. def EncodePackedField(write, value):
  373. write(tag_bytes)
  374. size = 0
  375. for element in value:
  376. size += compute_value_size(modify_value(element))
  377. local_EncodeVarint(write, size)
  378. for element in value:
  379. encode_value(write, modify_value(element))
  380. return EncodePackedField
  381. elif is_repeated:
  382. tag_bytes = TagBytes(field_number, wire_type)
  383. def EncodeRepeatedField(write, value):
  384. for element in value:
  385. write(tag_bytes)
  386. encode_value(write, modify_value(element))
  387. return EncodeRepeatedField
  388. else:
  389. tag_bytes = TagBytes(field_number, wire_type)
  390. def EncodeField(write, value):
  391. write(tag_bytes)
  392. return encode_value(write, modify_value(value))
  393. return EncodeField
  394. return SpecificEncoder
  395. def _StructPackEncoder(wire_type, format):
  396. """Return a constructor for an encoder for a fixed-width field.
  397. Args:
  398. wire_type: The field's wire type, for encoding tags.
  399. format: The format string to pass to struct.pack().
  400. """
  401. value_size = struct.calcsize(format)
  402. def SpecificEncoder(field_number, is_repeated, is_packed):
  403. local_struct_pack = struct.pack
  404. if is_packed:
  405. tag_bytes = TagBytes(field_number, wire_format.WIRETYPE_LENGTH_DELIMITED)
  406. local_EncodeVarint = _EncodeVarint
  407. def EncodePackedField(write, value):
  408. write(tag_bytes)
  409. local_EncodeVarint(write, len(value) * value_size)
  410. for element in value:
  411. write(local_struct_pack(format, element))
  412. return EncodePackedField
  413. elif is_repeated:
  414. tag_bytes = TagBytes(field_number, wire_type)
  415. def EncodeRepeatedField(write, value):
  416. for element in value:
  417. write(tag_bytes)
  418. write(local_struct_pack(format, element))
  419. return EncodeRepeatedField
  420. else:
  421. tag_bytes = TagBytes(field_number, wire_type)
  422. def EncodeField(write, value):
  423. write(tag_bytes)
  424. return write(local_struct_pack(format, value))
  425. return EncodeField
  426. return SpecificEncoder
  427. def _FloatingPointEncoder(wire_type, format):
  428. """Return a constructor for an encoder for float fields.
  429. This is like StructPackEncoder, but catches errors that may be due to
  430. passing non-finite floating-point values to struct.pack, and makes a
  431. second attempt to encode those values.
  432. Args:
  433. wire_type: The field's wire type, for encoding tags.
  434. format: The format string to pass to struct.pack().
  435. """
  436. b = _PY2 and (lambda x:x) or (lambda x:x.encode('latin1')) ##PY25
  437. value_size = struct.calcsize(format)
  438. if value_size == 4:
  439. def EncodeNonFiniteOrRaise(write, value):
  440. # Remember that the serialized form uses little-endian byte order.
  441. if value == _POS_INF:
  442. write(b('\x00\x00\x80\x7F')) ##PY25
  443. ##!PY25 write(b'\x00\x00\x80\x7F')
  444. elif value == _NEG_INF:
  445. write(b('\x00\x00\x80\xFF')) ##PY25
  446. ##!PY25 write(b'\x00\x00\x80\xFF')
  447. elif value != value: # NaN
  448. write(b('\x00\x00\xC0\x7F')) ##PY25
  449. ##!PY25 write(b'\x00\x00\xC0\x7F')
  450. else:
  451. raise
  452. elif value_size == 8:
  453. def EncodeNonFiniteOrRaise(write, value):
  454. if value == _POS_INF:
  455. write(b('\x00\x00\x00\x00\x00\x00\xF0\x7F')) ##PY25
  456. ##!PY25 write(b'\x00\x00\x00\x00\x00\x00\xF0\x7F')
  457. elif value == _NEG_INF:
  458. write(b('\x00\x00\x00\x00\x00\x00\xF0\xFF')) ##PY25
  459. ##!PY25 write(b'\x00\x00\x00\x00\x00\x00\xF0\xFF')
  460. elif value != value: # NaN
  461. write(b('\x00\x00\x00\x00\x00\x00\xF8\x7F')) ##PY25
  462. ##!PY25 write(b'\x00\x00\x00\x00\x00\x00\xF8\x7F')
  463. else:
  464. raise
  465. else:
  466. raise ValueError('Can\'t encode floating-point values that are '
  467. '%d bytes long (only 4 or 8)' % value_size)
  468. def SpecificEncoder(field_number, is_repeated, is_packed):
  469. local_struct_pack = struct.pack
  470. if is_packed:
  471. tag_bytes = TagBytes(field_number, wire_format.WIRETYPE_LENGTH_DELIMITED)
  472. local_EncodeVarint = _EncodeVarint
  473. def EncodePackedField(write, value):
  474. write(tag_bytes)
  475. local_EncodeVarint(write, len(value) * value_size)
  476. for element in value:
  477. # This try/except block is going to be faster than any code that
  478. # we could write to check whether element is finite.
  479. try:
  480. write(local_struct_pack(format, element))
  481. except SystemError:
  482. EncodeNonFiniteOrRaise(write, element)
  483. return EncodePackedField
  484. elif is_repeated:
  485. tag_bytes = TagBytes(field_number, wire_type)
  486. def EncodeRepeatedField(write, value):
  487. for element in value:
  488. write(tag_bytes)
  489. try:
  490. write(local_struct_pack(format, element))
  491. except SystemError:
  492. EncodeNonFiniteOrRaise(write, element)
  493. return EncodeRepeatedField
  494. else:
  495. tag_bytes = TagBytes(field_number, wire_type)
  496. def EncodeField(write, value):
  497. write(tag_bytes)
  498. try:
  499. write(local_struct_pack(format, value))
  500. except SystemError:
  501. EncodeNonFiniteOrRaise(write, value)
  502. return EncodeField
  503. return SpecificEncoder
  504. # ====================================================================
  505. # Here we declare an encoder constructor for each field type. These work
  506. # very similarly to sizer constructors, described earlier.
  507. Int32Encoder = Int64Encoder = EnumEncoder = _SimpleEncoder(
  508. wire_format.WIRETYPE_VARINT, _EncodeSignedVarint, _SignedVarintSize)
  509. UInt32Encoder = UInt64Encoder = _SimpleEncoder(
  510. wire_format.WIRETYPE_VARINT, _EncodeVarint, _VarintSize)
  511. SInt32Encoder = SInt64Encoder = _ModifiedEncoder(
  512. wire_format.WIRETYPE_VARINT, _EncodeVarint, _VarintSize,
  513. wire_format.ZigZagEncode)
  514. # Note that Python conveniently guarantees that when using the '<' prefix on
  515. # formats, they will also have the same size across all platforms (as opposed
  516. # to without the prefix, where their sizes depend on the C compiler's basic
  517. # type sizes).
  518. Fixed32Encoder = _StructPackEncoder(wire_format.WIRETYPE_FIXED32, '<I')
  519. Fixed64Encoder = _StructPackEncoder(wire_format.WIRETYPE_FIXED64, '<Q')
  520. SFixed32Encoder = _StructPackEncoder(wire_format.WIRETYPE_FIXED32, '<i')
  521. SFixed64Encoder = _StructPackEncoder(wire_format.WIRETYPE_FIXED64, '<q')
  522. FloatEncoder = _FloatingPointEncoder(wire_format.WIRETYPE_FIXED32, '<f')
  523. DoubleEncoder = _FloatingPointEncoder(wire_format.WIRETYPE_FIXED64, '<d')
  524. def BoolEncoder(field_number, is_repeated, is_packed):
  525. """Returns an encoder for a boolean field."""
  526. ##!PY25 false_byte = b'\x00'
  527. ##!PY25 true_byte = b'\x01'
  528. false_byte = '\x00'.encode('latin1') ##PY25
  529. true_byte = '\x01'.encode('latin1') ##PY25
  530. if is_packed:
  531. tag_bytes = TagBytes(field_number, wire_format.WIRETYPE_LENGTH_DELIMITED)
  532. local_EncodeVarint = _EncodeVarint
  533. def EncodePackedField(write, value):
  534. write(tag_bytes)
  535. local_EncodeVarint(write, len(value))
  536. for element in value:
  537. if element:
  538. write(true_byte)
  539. else:
  540. write(false_byte)
  541. return EncodePackedField
  542. elif is_repeated:
  543. tag_bytes = TagBytes(field_number, wire_format.WIRETYPE_VARINT)
  544. def EncodeRepeatedField(write, value):
  545. for element in value:
  546. write(tag_bytes)
  547. if element:
  548. write(true_byte)
  549. else:
  550. write(false_byte)
  551. return EncodeRepeatedField
  552. else:
  553. tag_bytes = TagBytes(field_number, wire_format.WIRETYPE_VARINT)
  554. def EncodeField(write, value):
  555. write(tag_bytes)
  556. if value:
  557. return write(true_byte)
  558. return write(false_byte)
  559. return EncodeField
  560. def StringEncoder(field_number, is_repeated, is_packed):
  561. """Returns an encoder for a string field."""
  562. tag = TagBytes(field_number, wire_format.WIRETYPE_LENGTH_DELIMITED)
  563. local_EncodeVarint = _EncodeVarint
  564. local_len = len
  565. assert not is_packed
  566. if is_repeated:
  567. def EncodeRepeatedField(write, value):
  568. for element in value:
  569. encoded = element.encode('utf-8')
  570. write(tag)
  571. local_EncodeVarint(write, local_len(encoded))
  572. write(encoded)
  573. return EncodeRepeatedField
  574. else:
  575. def EncodeField(write, value):
  576. encoded = value.encode('utf-8')
  577. write(tag)
  578. local_EncodeVarint(write, local_len(encoded))
  579. return write(encoded)
  580. return EncodeField
  581. def BytesEncoder(field_number, is_repeated, is_packed):
  582. """Returns an encoder for a bytes field."""
  583. tag = TagBytes(field_number, wire_format.WIRETYPE_LENGTH_DELIMITED)
  584. local_EncodeVarint = _EncodeVarint
  585. local_len = len
  586. assert not is_packed
  587. if is_repeated:
  588. def EncodeRepeatedField(write, value):
  589. for element in value:
  590. write(tag)
  591. local_EncodeVarint(write, local_len(element))
  592. write(element)
  593. return EncodeRepeatedField
  594. else:
  595. def EncodeField(write, value):
  596. write(tag)
  597. local_EncodeVarint(write, local_len(value))
  598. return write(value)
  599. return EncodeField
  600. def GroupEncoder(field_number, is_repeated, is_packed):
  601. """Returns an encoder for a group field."""
  602. start_tag = TagBytes(field_number, wire_format.WIRETYPE_START_GROUP)
  603. end_tag = TagBytes(field_number, wire_format.WIRETYPE_END_GROUP)
  604. assert not is_packed
  605. if is_repeated:
  606. def EncodeRepeatedField(write, value):
  607. for element in value:
  608. write(start_tag)
  609. element._InternalSerialize(write)
  610. write(end_tag)
  611. return EncodeRepeatedField
  612. else:
  613. def EncodeField(write, value):
  614. write(start_tag)
  615. value._InternalSerialize(write)
  616. return write(end_tag)
  617. return EncodeField
  618. def MessageEncoder(field_number, is_repeated, is_packed):
  619. """Returns an encoder for a message field."""
  620. tag = TagBytes(field_number, wire_format.WIRETYPE_LENGTH_DELIMITED)
  621. local_EncodeVarint = _EncodeVarint
  622. assert not is_packed
  623. if is_repeated:
  624. def EncodeRepeatedField(write, value):
  625. for element in value:
  626. write(tag)
  627. local_EncodeVarint(write, element.ByteSize())
  628. element._InternalSerialize(write)
  629. return EncodeRepeatedField
  630. else:
  631. def EncodeField(write, value):
  632. write(tag)
  633. local_EncodeVarint(write, value.ByteSize())
  634. return value._InternalSerialize(write)
  635. return EncodeField
  636. # --------------------------------------------------------------------
  637. # As before, MessageSet is special.
  638. def MessageSetItemEncoder(field_number):
  639. """Encoder for extensions of MessageSet.
  640. The message set message looks like this:
  641. message MessageSet {
  642. repeated group Item = 1 {
  643. required int32 type_id = 2;
  644. required string message = 3;
  645. }
  646. }
  647. """
  648. start_bytes = "".encode("latin1").join([ ##PY25
  649. ##!PY25 start_bytes = b"".join([
  650. TagBytes(1, wire_format.WIRETYPE_START_GROUP),
  651. TagBytes(2, wire_format.WIRETYPE_VARINT),
  652. _VarintBytes(field_number),
  653. TagBytes(3, wire_format.WIRETYPE_LENGTH_DELIMITED)])
  654. end_bytes = TagBytes(1, wire_format.WIRETYPE_END_GROUP)
  655. local_EncodeVarint = _EncodeVarint
  656. def EncodeField(write, value):
  657. write(start_bytes)
  658. local_EncodeVarint(write, value.ByteSize())
  659. value._InternalSerialize(write)
  660. return write(end_bytes)
  661. return EncodeField