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 // Author: kenton@google.com (Kenton Varda)
32 
33 #include <iostream>
34 #include <string>
35 
36 #include <google/protobuf/stubs/logging.h>
37 #include <google/protobuf/stubs/common.h>
38 #include <google/protobuf/arena_test_util.h>
39 #include <google/protobuf/map_lite_test_util.h>
40 #include <google/protobuf/map_lite_unittest.pb.h>
41 #include <google/protobuf/test_util_lite.h>
42 #include <google/protobuf/unittest_lite.pb.h>
43 #include <google/protobuf/io/coded_stream.h>
44 #include <google/protobuf/io/zero_copy_stream_impl_lite.h>
45 #include <google/protobuf/wire_format_lite.h>
46 #include <gtest/gtest.h>
47 #include <google/protobuf/stubs/strutil.h>
48 
49 namespace google {
50 namespace protobuf {
51 
52 // Helper methods to test parsing merge behavior.
ExpectMessageMerged(const unittest::TestAllTypesLite & message)53 void ExpectMessageMerged(const unittest::TestAllTypesLite& message) {
54   EXPECT_EQ(message.optional_int32(), 3);
55   EXPECT_EQ(message.optional_int64(), 2);
56   EXPECT_EQ(message.optional_string(), "hello");
57 }
58 
AssignParsingMergeMessages(unittest::TestAllTypesLite * msg1,unittest::TestAllTypesLite * msg2,unittest::TestAllTypesLite * msg3)59 void AssignParsingMergeMessages(unittest::TestAllTypesLite* msg1,
60                                 unittest::TestAllTypesLite* msg2,
61                                 unittest::TestAllTypesLite* msg3) {
62   msg1->set_optional_int32(1);
63   msg2->set_optional_int64(2);
64   msg3->set_optional_int32(3);
65   msg3->set_optional_string("hello");
66 }
67 
SetAllTypesInEmptyMessageUnknownFields(unittest::TestEmptyMessageLite * empty_message)68 void SetAllTypesInEmptyMessageUnknownFields(
69     unittest::TestEmptyMessageLite* empty_message) {
70   protobuf_unittest::TestAllTypesLite message;
71   TestUtilLite::ExpectClear(message);
72   TestUtilLite::SetAllFields(&message);
73   std::string data = message.SerializeAsString();
74   empty_message->ParseFromString(data);
75 }
76 
SetSomeTypesInEmptyMessageUnknownFields(unittest::TestEmptyMessageLite * empty_message)77 void SetSomeTypesInEmptyMessageUnknownFields(
78     unittest::TestEmptyMessageLite* empty_message) {
79   protobuf_unittest::TestAllTypesLite message;
80   TestUtilLite::ExpectClear(message);
81   message.set_optional_int32(101);
82   message.set_optional_int64(102);
83   message.set_optional_uint32(103);
84   message.set_optional_uint64(104);
85   std::string data = message.SerializeAsString();
86   empty_message->ParseFromString(data);
87 }
88 
TEST(Lite,AllLite1)89 TEST(Lite, AllLite1) {
90   std::string data;
91 
92   {
93     protobuf_unittest::TestAllTypesLite message, message2, message3;
94     TestUtilLite::ExpectClear(message);
95     TestUtilLite::SetAllFields(&message);
96     message2.CopyFrom(message);
97     data = message.SerializeAsString();
98     message3.ParseFromString(data);
99     TestUtilLite::ExpectAllFieldsSet(message);
100     TestUtilLite::ExpectAllFieldsSet(message2);
101     TestUtilLite::ExpectAllFieldsSet(message3);
102     TestUtilLite::ModifyRepeatedFields(&message);
103     TestUtilLite::ExpectRepeatedFieldsModified(message);
104     message.Clear();
105     TestUtilLite::ExpectClear(message);
106   }
107 }
108 
TEST(Lite,AllLite2)109 TEST(Lite, AllLite2) {
110   std::string data;
111   {
112     protobuf_unittest::TestAllExtensionsLite message, message2, message3;
113     TestUtilLite::ExpectExtensionsClear(message);
114     TestUtilLite::SetAllExtensions(&message);
115     message2.CopyFrom(message);
116     std::string extensions_data = message.SerializeAsString();
117     message3.ParseFromString(extensions_data);
118     TestUtilLite::ExpectAllExtensionsSet(message);
119     TestUtilLite::ExpectAllExtensionsSet(message2);
120     TestUtilLite::ExpectAllExtensionsSet(message3);
121     TestUtilLite::ModifyRepeatedExtensions(&message);
122     TestUtilLite::ExpectRepeatedExtensionsModified(message);
123     message.Clear();
124     TestUtilLite::ExpectExtensionsClear(message);
125   }
126 }
127 
TEST(Lite,AllLite3)128 TEST(Lite, AllLite3) {
129   std::string data, packed_data;
130 
131   {
132     protobuf_unittest::TestPackedTypesLite message, message2, message3;
133     TestUtilLite::ExpectPackedClear(message);
134     TestUtilLite::SetPackedFields(&message);
135     message2.CopyFrom(message);
136     packed_data = message.SerializeAsString();
137     message3.ParseFromString(packed_data);
138     TestUtilLite::ExpectPackedFieldsSet(message);
139     TestUtilLite::ExpectPackedFieldsSet(message2);
140     TestUtilLite::ExpectPackedFieldsSet(message3);
141     TestUtilLite::ModifyPackedFields(&message);
142     TestUtilLite::ExpectPackedFieldsModified(message);
143     message.Clear();
144     TestUtilLite::ExpectPackedClear(message);
145   }
146 
147   {
148     protobuf_unittest::TestPackedExtensionsLite message, message2, message3;
149     TestUtilLite::ExpectPackedExtensionsClear(message);
150     TestUtilLite::SetPackedExtensions(&message);
151     message2.CopyFrom(message);
152     std::string packed_extensions_data = message.SerializeAsString();
153     EXPECT_EQ(packed_extensions_data, packed_data);
154     message3.ParseFromString(packed_extensions_data);
155     TestUtilLite::ExpectPackedExtensionsSet(message);
156     TestUtilLite::ExpectPackedExtensionsSet(message2);
157     TestUtilLite::ExpectPackedExtensionsSet(message3);
158     TestUtilLite::ModifyPackedExtensions(&message);
159     TestUtilLite::ExpectPackedExtensionsModified(message);
160     message.Clear();
161     TestUtilLite::ExpectPackedExtensionsClear(message);
162   }
163 }
164 
TEST(Lite,AllLite5)165 TEST(Lite, AllLite5) {
166   std::string data;
167 
168   {
169     // Test that if an optional or required message/group field appears multiple
170     // times in the input, they need to be merged.
171     unittest::TestParsingMergeLite::RepeatedFieldsGenerator generator;
172     unittest::TestAllTypesLite* msg1;
173     unittest::TestAllTypesLite* msg2;
174     unittest::TestAllTypesLite* msg3;
175 
176 #define ASSIGN_REPEATED_FIELD(FIELD) \
177   msg1 = generator.add_##FIELD();    \
178   msg2 = generator.add_##FIELD();    \
179   msg3 = generator.add_##FIELD();    \
180   AssignParsingMergeMessages(msg1, msg2, msg3)
181 
182     ASSIGN_REPEATED_FIELD(field1);
183     ASSIGN_REPEATED_FIELD(field2);
184     ASSIGN_REPEATED_FIELD(field3);
185     ASSIGN_REPEATED_FIELD(ext1);
186     ASSIGN_REPEATED_FIELD(ext2);
187 
188 #undef ASSIGN_REPEATED_FIELD
189 #define ASSIGN_REPEATED_GROUP(FIELD)                \
190   msg1 = generator.add_##FIELD()->mutable_field1(); \
191   msg2 = generator.add_##FIELD()->mutable_field1(); \
192   msg3 = generator.add_##FIELD()->mutable_field1(); \
193   AssignParsingMergeMessages(msg1, msg2, msg3)
194 
195     ASSIGN_REPEATED_GROUP(group1);
196     ASSIGN_REPEATED_GROUP(group2);
197 
198 #undef ASSIGN_REPEATED_GROUP
199 
200     std::string buffer;
201     generator.SerializeToString(&buffer);
202     unittest::TestParsingMergeLite parsing_merge;
203     parsing_merge.ParseFromString(buffer);
204 
205     // Required and optional fields should be merged.
206     ExpectMessageMerged(parsing_merge.required_all_types());
207     ExpectMessageMerged(parsing_merge.optional_all_types());
208     ExpectMessageMerged(
209         parsing_merge.optionalgroup().optional_group_all_types());
210     ExpectMessageMerged(parsing_merge.GetExtension(
211         unittest::TestParsingMergeLite::optional_ext));
212 
213     // Repeated fields should not be merged.
214     EXPECT_EQ(parsing_merge.repeated_all_types_size(), 3);
215     EXPECT_EQ(parsing_merge.repeatedgroup_size(), 3);
216     EXPECT_EQ(parsing_merge.ExtensionSize(
217                   unittest::TestParsingMergeLite::repeated_ext),
218               3);
219   }
220 }
221 
TEST(Lite,AllLite6)222 TEST(Lite, AllLite6) {
223   std::string data;
224 
225   // Test unknown fields support for lite messages.
226   {
227     protobuf_unittest::TestAllTypesLite message, message2;
228     protobuf_unittest::TestEmptyMessageLite empty_message;
229     TestUtilLite::ExpectClear(message);
230     TestUtilLite::SetAllFields(&message);
231     data = message.SerializeAsString();
232     ASSERT_TRUE(empty_message.ParseFromString(data));
233     data.clear();
234     data = empty_message.SerializeAsString();
235     EXPECT_TRUE(message2.ParseFromString(data));
236     data = message2.SerializeAsString();
237     TestUtilLite::ExpectAllFieldsSet(message2);
238     message.Clear();
239     TestUtilLite::ExpectClear(message);
240   }
241 }
242 
TEST(Lite,AllLite7)243 TEST(Lite, AllLite7) {
244   std::string data;
245 
246   {
247     protobuf_unittest::TestAllExtensionsLite message, message2;
248     protobuf_unittest::TestEmptyMessageLite empty_message;
249     TestUtilLite::ExpectExtensionsClear(message);
250     TestUtilLite::SetAllExtensions(&message);
251     data = message.SerializeAsString();
252     empty_message.ParseFromString(data);
253     data.clear();
254     data = empty_message.SerializeAsString();
255     message2.ParseFromString(data);
256     data = message2.SerializeAsString();
257     TestUtilLite::ExpectAllExtensionsSet(message2);
258     message.Clear();
259     TestUtilLite::ExpectExtensionsClear(message);
260   }
261 }
262 
TEST(Lite,AllLite8)263 TEST(Lite, AllLite8) {
264   std::string data;
265 
266   {
267     protobuf_unittest::TestPackedTypesLite message, message2;
268     protobuf_unittest::TestEmptyMessageLite empty_message;
269     TestUtilLite::ExpectPackedClear(message);
270     TestUtilLite::SetPackedFields(&message);
271     data = message.SerializeAsString();
272     empty_message.ParseFromString(data);
273     data.clear();
274     data = empty_message.SerializeAsString();
275     message2.ParseFromString(data);
276     data = message2.SerializeAsString();
277     TestUtilLite::ExpectPackedFieldsSet(message2);
278     message.Clear();
279     TestUtilLite::ExpectPackedClear(message);
280   }
281 }
282 
TEST(Lite,AllLite9)283 TEST(Lite, AllLite9) {
284   std::string data;
285 
286   {
287     protobuf_unittest::TestPackedExtensionsLite message, message2;
288     protobuf_unittest::TestEmptyMessageLite empty_message;
289     TestUtilLite::ExpectPackedExtensionsClear(message);
290     TestUtilLite::SetPackedExtensions(&message);
291     data = message.SerializeAsString();
292     empty_message.ParseFromString(data);
293     data.clear();
294     data = empty_message.SerializeAsString();
295     message2.ParseFromString(data);
296     data = message2.SerializeAsString();
297     TestUtilLite::ExpectPackedExtensionsSet(message2);
298     message.Clear();
299     TestUtilLite::ExpectPackedExtensionsClear(message);
300   }
301 }
302 
TEST(Lite,AllLite10)303 TEST(Lite, AllLite10) {
304   std::string data;
305 
306   {
307     // Test Unknown fields swap
308     protobuf_unittest::TestEmptyMessageLite empty_message, empty_message2;
309     SetAllTypesInEmptyMessageUnknownFields(&empty_message);
310     SetSomeTypesInEmptyMessageUnknownFields(&empty_message2);
311     data = empty_message.SerializeAsString();
312     std::string data2 = empty_message2.SerializeAsString();
313     empty_message.Swap(&empty_message2);
314     EXPECT_EQ(data, empty_message2.SerializeAsString());
315     EXPECT_EQ(data2, empty_message.SerializeAsString());
316   }
317 }
318 
TEST(Lite,AllLite11)319 TEST(Lite, AllLite11) {
320   std::string data;
321 
322   {
323     // Test unknown fields swap with self
324     protobuf_unittest::TestEmptyMessageLite empty_message;
325     SetAllTypesInEmptyMessageUnknownFields(&empty_message);
326     data = empty_message.SerializeAsString();
327     empty_message.Swap(&empty_message);
328     EXPECT_EQ(data, empty_message.SerializeAsString());
329   }
330 }
331 
TEST(Lite,AllLite12)332 TEST(Lite, AllLite12) {
333   std::string data;
334 
335   {
336     // Test MergeFrom with unknown fields
337     protobuf_unittest::TestAllTypesLite message, message2;
338     protobuf_unittest::TestEmptyMessageLite empty_message, empty_message2;
339     message.set_optional_int32(101);
340     message.add_repeated_int32(201);
341     message.set_optional_nested_enum(unittest::TestAllTypesLite::BAZ);
342     message2.set_optional_int64(102);
343     message2.add_repeated_int64(202);
344     message2.set_optional_foreign_enum(unittest::FOREIGN_LITE_BAZ);
345 
346     data = message.SerializeAsString();
347     empty_message.ParseFromString(data);
348     data = message2.SerializeAsString();
349     empty_message2.ParseFromString(data);
350     message.MergeFrom(message2);
351     empty_message.MergeFrom(empty_message2);
352 
353     data = empty_message.SerializeAsString();
354     message2.ParseFromString(data);
355     // We do not compare the serialized output of a normal message and a lite
356     // message because the order of fields do not match. We convert lite message
357     // back into normal message, then compare.
358     EXPECT_EQ(message.SerializeAsString(), message2.SerializeAsString());
359   }
360 }
361 
TEST(Lite,AllLite13)362 TEST(Lite, AllLite13) {
363   std::string data;
364 
365   {
366     // Test unknown enum value
367     protobuf_unittest::TestAllTypesLite message;
368     std::string buffer;
369     {
370       io::StringOutputStream output_stream(&buffer);
371       io::CodedOutputStream coded_output(&output_stream);
372       internal::WireFormatLite::WriteTag(
373           protobuf_unittest::TestAllTypesLite::kOptionalNestedEnumFieldNumber,
374           internal::WireFormatLite::WIRETYPE_VARINT, &coded_output);
375       coded_output.WriteVarint32(10);
376       internal::WireFormatLite::WriteTag(
377           protobuf_unittest::TestAllTypesLite::kRepeatedNestedEnumFieldNumber,
378           internal::WireFormatLite::WIRETYPE_VARINT, &coded_output);
379       coded_output.WriteVarint32(20);
380     }
381     message.ParseFromString(buffer);
382     data = message.SerializeAsString();
383     EXPECT_EQ(data, buffer);
384   }
385 }
386 
TEST(Lite,AllLite14)387 TEST(Lite, AllLite14) {
388   std::string data;
389 
390   {
391     // Test Clear with unknown fields
392     protobuf_unittest::TestEmptyMessageLite empty_message;
393     SetAllTypesInEmptyMessageUnknownFields(&empty_message);
394     empty_message.Clear();
395     EXPECT_EQ(0, empty_message.unknown_fields().size());
396   }
397 }
398 
399 // Tests for map lite =============================================
400 
TEST(Lite,AllLite15)401 TEST(Lite, AllLite15) {
402   std::string data;
403 
404   {
405     // Accessors
406     protobuf_unittest::TestMapLite message;
407 
408     MapLiteTestUtil::SetMapFields(&message);
409     MapLiteTestUtil::ExpectMapFieldsSet(message);
410 
411     MapLiteTestUtil::ModifyMapFields(&message);
412     MapLiteTestUtil::ExpectMapFieldsModified(message);
413   }
414 }
415 
TEST(Lite,AllLite16)416 TEST(Lite, AllLite16) {
417   std::string data;
418 
419   {
420     // SetMapFieldsInitialized
421     protobuf_unittest::TestMapLite message;
422 
423     MapLiteTestUtil::SetMapFieldsInitialized(&message);
424     MapLiteTestUtil::ExpectMapFieldsSetInitialized(message);
425   }
426 }
427 
TEST(Lite,AllLite17)428 TEST(Lite, AllLite17) {
429   std::string data;
430 
431   {
432     // Clear
433     protobuf_unittest::TestMapLite message;
434 
435     MapLiteTestUtil::SetMapFields(&message);
436     message.Clear();
437     MapLiteTestUtil::ExpectClear(message);
438   }
439 }
440 
TEST(Lite,AllLite18)441 TEST(Lite, AllLite18) {
442   std::string data;
443 
444   {
445     // ClearMessageMap
446     protobuf_unittest::TestMessageMapLite message;
447 
448     // Creates a TestAllTypes with default value
449     TestUtilLite::ExpectClear((*message.mutable_map_int32_message())[0]);
450   }
451 }
452 
TEST(Lite,AllLite19)453 TEST(Lite, AllLite19) {
454   std::string data;
455 
456   {
457     // CopyFrom
458     protobuf_unittest::TestMapLite message1, message2;
459 
460     MapLiteTestUtil::SetMapFields(&message1);
461     message2.CopyFrom(message1);
462     MapLiteTestUtil::ExpectMapFieldsSet(message2);
463 
464     // Copying from self should be a no-op.
465     message2.CopyFrom(message2);
466     MapLiteTestUtil::ExpectMapFieldsSet(message2);
467   }
468 }
469 
TEST(Lite,AllLite20)470 TEST(Lite, AllLite20) {
471   std::string data;
472 
473   {
474     // CopyFromMessageMap
475     protobuf_unittest::TestMessageMapLite message1, message2;
476 
477     (*message1.mutable_map_int32_message())[0].add_repeated_int32(100);
478     (*message2.mutable_map_int32_message())[0].add_repeated_int32(101);
479 
480     message1.CopyFrom(message2);
481 
482     // Checks repeated field is overwritten.
483     EXPECT_EQ(1, message1.map_int32_message().at(0).repeated_int32_size());
484     EXPECT_EQ(101, message1.map_int32_message().at(0).repeated_int32(0));
485   }
486 }
487 
TEST(Lite,AllLite21)488 TEST(Lite, AllLite21) {
489   std::string data;
490 
491   {
492     // SwapWithEmpty
493     protobuf_unittest::TestMapLite message1, message2;
494 
495     MapLiteTestUtil::SetMapFields(&message1);
496     MapLiteTestUtil::ExpectMapFieldsSet(message1);
497     MapLiteTestUtil::ExpectClear(message2);
498 
499     message1.Swap(&message2);
500     MapLiteTestUtil::ExpectMapFieldsSet(message2);
501     MapLiteTestUtil::ExpectClear(message1);
502   }
503 }
504 
TEST(Lite,AllLite22)505 TEST(Lite, AllLite22) {
506   std::string data;
507 
508   {
509     // SwapWithSelf
510     protobuf_unittest::TestMapLite message;
511 
512     MapLiteTestUtil::SetMapFields(&message);
513     MapLiteTestUtil::ExpectMapFieldsSet(message);
514 
515     message.Swap(&message);
516     MapLiteTestUtil::ExpectMapFieldsSet(message);
517   }
518 }
519 
TEST(Lite,AllLite23)520 TEST(Lite, AllLite23) {
521   std::string data;
522 
523   {
524     // SwapWithOther
525     protobuf_unittest::TestMapLite message1, message2;
526 
527     MapLiteTestUtil::SetMapFields(&message1);
528     MapLiteTestUtil::SetMapFields(&message2);
529     MapLiteTestUtil::ModifyMapFields(&message2);
530 
531     message1.Swap(&message2);
532     MapLiteTestUtil::ExpectMapFieldsModified(message1);
533     MapLiteTestUtil::ExpectMapFieldsSet(message2);
534   }
535 }
536 
TEST(Lite,AllLite24)537 TEST(Lite, AllLite24) {
538   std::string data;
539 
540   {
541     // CopyConstructor
542     protobuf_unittest::TestMapLite message1;
543     MapLiteTestUtil::SetMapFields(&message1);
544 
545     protobuf_unittest::TestMapLite message2(message1);
546     MapLiteTestUtil::ExpectMapFieldsSet(message2);
547   }
548 }
549 
TEST(Lite,AllLite25)550 TEST(Lite, AllLite25) {
551   std::string data;
552 
553   {
554     // CopyAssignmentOperator
555     protobuf_unittest::TestMapLite message1;
556     MapLiteTestUtil::SetMapFields(&message1);
557 
558     protobuf_unittest::TestMapLite message2;
559     message2 = message1;
560     MapLiteTestUtil::ExpectMapFieldsSet(message2);
561 
562     // Make sure that self-assignment does something sane.
563     message2.operator=(message2);
564     MapLiteTestUtil::ExpectMapFieldsSet(message2);
565   }
566 }
567 
TEST(Lite,AllLite26)568 TEST(Lite, AllLite26) {
569   std::string data;
570 
571   {
572     // NonEmptyMergeFrom
573     protobuf_unittest::TestMapLite message1, message2;
574 
575     MapLiteTestUtil::SetMapFields(&message1);
576 
577     // This field will test merging into an empty spot.
578     (*message2.mutable_map_int32_int32())[1] = 1;
579     message1.mutable_map_int32_int32()->erase(1);
580 
581     // This tests overwriting.
582     (*message2.mutable_map_int32_double())[1] = 1;
583     (*message1.mutable_map_int32_double())[1] = 2;
584 
585     message1.MergeFrom(message2);
586     MapLiteTestUtil::ExpectMapFieldsSet(message1);
587   }
588 }
589 
TEST(Lite,AllLite27)590 TEST(Lite, AllLite27) {
591   std::string data;
592 
593   {
594     // MergeFromMessageMap
595     protobuf_unittest::TestMessageMapLite message1, message2;
596 
597     (*message1.mutable_map_int32_message())[0].add_repeated_int32(100);
598     (*message2.mutable_map_int32_message())[0].add_repeated_int32(101);
599 
600     message1.MergeFrom(message2);
601 
602     // Checks repeated field is overwritten.
603     EXPECT_EQ(1, message1.map_int32_message().at(0).repeated_int32_size());
604     EXPECT_EQ(101, message1.map_int32_message().at(0).repeated_int32(0));
605   }
606 }
607 
TEST(Lite,AllLite28)608 TEST(Lite, AllLite28) {
609   std::string data;
610 
611   {
612     // Test the generated SerializeWithCachedSizesToArray()
613     protobuf_unittest::TestMapLite message1, message2;
614     std::string data;
615     MapLiteTestUtil::SetMapFields(&message1);
616     int size = message1.ByteSize();
617     data.resize(size);
618     ::google::protobuf::uint8* start = reinterpret_cast<::google::protobuf::uint8*>(::google::protobuf::string_as_array(&data));
619     ::google::protobuf::uint8* end = message1.SerializeWithCachedSizesToArray(start);
620     EXPECT_EQ(size, end - start);
621     EXPECT_TRUE(message2.ParseFromString(data));
622     MapLiteTestUtil::ExpectMapFieldsSet(message2);
623   }
624 }
625 
TEST(Lite,AllLite29)626 TEST(Lite, AllLite29) {
627   std::string data;
628 
629   {
630     // Test the generated SerializeWithCachedSizes()
631     protobuf_unittest::TestMapLite message1, message2;
632     MapLiteTestUtil::SetMapFields(&message1);
633     int size = message1.ByteSize();
634     std::string data;
635     data.resize(size);
636     {
637       // Allow the output stream to buffer only one byte at a time.
638       io::ArrayOutputStream array_stream(::google::protobuf::string_as_array(&data), size, 1);
639       io::CodedOutputStream output_stream(&array_stream);
640       message1.SerializeWithCachedSizes(&output_stream);
641       EXPECT_FALSE(output_stream.HadError());
642       EXPECT_EQ(size, output_stream.ByteCount());
643     }
644     EXPECT_TRUE(message2.ParseFromString(data));
645     MapLiteTestUtil::ExpectMapFieldsSet(message2);
646   }
647 }
648 
649 
TEST(Lite,AllLite32)650 TEST(Lite, AllLite32) {
651   std::string data;
652 
653   {
654     // Proto2UnknownEnum
655     protobuf_unittest::TestEnumMapPlusExtraLite from;
656     (*from.mutable_known_map_field())[0] =
657         protobuf_unittest::E_PROTO2_MAP_ENUM_FOO_LITE;
658     (*from.mutable_unknown_map_field())[0] =
659         protobuf_unittest::E_PROTO2_MAP_ENUM_EXTRA_LITE;
660     std::string data;
661     from.SerializeToString(&data);
662 
663     protobuf_unittest::TestEnumMapLite to;
664     EXPECT_TRUE(to.ParseFromString(data));
665     EXPECT_EQ(0, to.unknown_map_field().size());
666     EXPECT_FALSE(to.mutable_unknown_fields()->empty());
667     ASSERT_EQ(1, to.known_map_field().size());
668     EXPECT_EQ(protobuf_unittest::PROTO2_MAP_ENUM_FOO_LITE,
669               to.known_map_field().at(0));
670 
671     data.clear();
672     from.Clear();
673     to.SerializeToString(&data);
674     EXPECT_TRUE(from.ParseFromString(data));
675     ASSERT_EQ(1, from.known_map_field().size());
676     EXPECT_EQ(protobuf_unittest::E_PROTO2_MAP_ENUM_FOO_LITE,
677               from.known_map_field().at(0));
678     ASSERT_EQ(1, from.unknown_map_field().size());
679     EXPECT_EQ(protobuf_unittest::E_PROTO2_MAP_ENUM_EXTRA_LITE,
680               from.unknown_map_field().at(0));
681   }
682 }
683 
TEST(Lite,AllLite33)684 TEST(Lite, AllLite33) {
685   std::string data;
686 
687   {
688     // StandardWireFormat
689     protobuf_unittest::TestMapLite message;
690     std::string data = "\x0A\x04\x08\x01\x10\x01";
691 
692     EXPECT_TRUE(message.ParseFromString(data));
693     ASSERT_EQ(1, message.map_int32_int32().size());
694     EXPECT_EQ(1, message.map_int32_int32().at(1));
695   }
696 }
697 
TEST(Lite,AllLite34)698 TEST(Lite, AllLite34) {
699   std::string data;
700 
701   {
702     // UnorderedWireFormat
703     protobuf_unittest::TestMapLite message;
704 
705     // put value before key in wire format
706     std::string data = "\x0A\x04\x10\x01\x08\x02";
707 
708     EXPECT_TRUE(message.ParseFromString(data));
709     ASSERT_EQ(1, message.map_int32_int32().size());
710     ASSERT_NE(message.map_int32_int32().find(2),
711               message.map_int32_int32().end());
712     EXPECT_EQ(1, message.map_int32_int32().at(2));
713   }
714 }
715 
TEST(Lite,AllLite35)716 TEST(Lite, AllLite35) {
717   std::string data;
718 
719   {
720     // DuplicatedKeyWireFormat
721     protobuf_unittest::TestMapLite message;
722 
723     // Two key fields in wire format
724     std::string data = "\x0A\x06\x08\x01\x08\x02\x10\x01";
725 
726     EXPECT_TRUE(message.ParseFromString(data));
727     ASSERT_EQ(1, message.map_int32_int32().size());
728     EXPECT_EQ(1, message.map_int32_int32().at(2));
729   }
730 }
731 
TEST(Lite,AllLite36)732 TEST(Lite, AllLite36) {
733   std::string data;
734 
735   {
736     // DuplicatedValueWireFormat
737     protobuf_unittest::TestMapLite message;
738 
739     // Two value fields in wire format
740     std::string data = "\x0A\x06\x08\x01\x10\x01\x10\x02";
741 
742     EXPECT_TRUE(message.ParseFromString(data));
743     ASSERT_EQ(1, message.map_int32_int32().size());
744     EXPECT_EQ(2, message.map_int32_int32().at(1));
745   }
746 }
747 
TEST(Lite,AllLite37)748 TEST(Lite, AllLite37) {
749   std::string data;
750 
751   {
752     // MissedKeyWireFormat
753     protobuf_unittest::TestMapLite message;
754 
755     // No key field in wire format
756     std::string data = "\x0A\x02\x10\x01";
757 
758     EXPECT_TRUE(message.ParseFromString(data));
759     ASSERT_EQ(1, message.map_int32_int32().size());
760     ASSERT_NE(message.map_int32_int32().find(0),
761               message.map_int32_int32().end());
762     EXPECT_EQ(1, message.map_int32_int32().at(0));
763   }
764 }
765 
TEST(Lite,AllLite38)766 TEST(Lite, AllLite38) {
767   std::string data;
768 
769   {
770     // MissedValueWireFormat
771     protobuf_unittest::TestMapLite message;
772 
773     // No value field in wire format
774     std::string data = "\x0A\x02\x08\x01";
775 
776     EXPECT_TRUE(message.ParseFromString(data));
777     ASSERT_EQ(1, message.map_int32_int32().size());
778     ASSERT_NE(message.map_int32_int32().find(1),
779               message.map_int32_int32().end());
780     EXPECT_EQ(0, message.map_int32_int32().at(1));
781   }
782 }
783 
TEST(Lite,AllLite39)784 TEST(Lite, AllLite39) {
785   std::string data;
786 
787   {
788     // UnknownFieldWireFormat
789     protobuf_unittest::TestMapLite message;
790 
791     // Unknown field in wire format
792     std::string data = "\x0A\x06\x08\x02\x10\x03\x18\x01";
793 
794     EXPECT_TRUE(message.ParseFromString(data));
795     ASSERT_EQ(1, message.map_int32_int32().size());
796     EXPECT_EQ(3, message.map_int32_int32().at(2));
797   }
798 }
799 
TEST(Lite,AllLite40)800 TEST(Lite, AllLite40) {
801   std::string data;
802 
803   {
804     // CorruptedWireFormat
805     protobuf_unittest::TestMapLite message;
806 
807     // corrupted data in wire format
808     std::string data = "\x0A\x06\x08\x02\x11\x03";
809 
810     EXPECT_FALSE(message.ParseFromString(data));
811   }
812 }
813 
TEST(Lite,AllLite41)814 TEST(Lite, AllLite41) {
815   std::string data;
816 
817   {
818     // IsInitialized
819     protobuf_unittest::TestRequiredMessageMapLite map_message;
820 
821     // Add an uninitialized message.
822     (*map_message.mutable_map_field())[0];
823     EXPECT_FALSE(map_message.IsInitialized());
824 
825     // Initialize uninitialized message
826     (*map_message.mutable_map_field())[0].set_a(0);
827     (*map_message.mutable_map_field())[0].set_b(0);
828     (*map_message.mutable_map_field())[0].set_c(0);
829     EXPECT_TRUE(map_message.IsInitialized());
830   }
831 }
832 
TEST(Lite,AllLite42)833 TEST(Lite, AllLite42) {
834   std::string data;
835 
836   {
837     // Check that adding more values to enum does not corrupt message
838     // when passed through an old client.
839     protobuf_unittest::V2MessageLite v2_message;
840     v2_message.set_int_field(800);
841     // Set enum field to the value not understood by the old client.
842     v2_message.set_enum_field(protobuf_unittest::V2_SECOND);
843     std::string v2_bytes = v2_message.SerializeAsString();
844 
845     protobuf_unittest::V1MessageLite v1_message;
846     v1_message.ParseFromString(v2_bytes);
847     EXPECT_TRUE(v1_message.IsInitialized());
848     EXPECT_EQ(v1_message.int_field(), v2_message.int_field());
849     // V1 client does not understand V2_SECOND value, so it discards it and
850     // uses default value instead.
851     EXPECT_EQ(v1_message.enum_field(), protobuf_unittest::V1_FIRST);
852 
853     // However, when re-serialized, it should preserve enum value.
854     std::string v1_bytes = v1_message.SerializeAsString();
855 
856     protobuf_unittest::V2MessageLite same_v2_message;
857     same_v2_message.ParseFromString(v1_bytes);
858 
859     EXPECT_EQ(v2_message.int_field(), same_v2_message.int_field());
860     EXPECT_EQ(v2_message.enum_field(), same_v2_message.enum_field());
861   }
862 }
863 
864 // Test that when parsing a oneof, we can successfully clear whatever already
865 // happened to be stored in the oneof.
TEST(Lite,AllLite43)866 TEST(Lite, AllLite43) {
867   protobuf_unittest::TestOneofParsingLite message1;
868 
869   message1.set_oneof_int32(17);
870   std::string serialized;
871   EXPECT_TRUE(message1.SerializeToString(&serialized));
872 
873   // Submessage
874   {
875     protobuf_unittest::TestOneofParsingLite message2;
876     message2.mutable_oneof_submessage();
877     io::CodedInputStream input_stream(
878         reinterpret_cast<const ::google::protobuf::uint8*>(serialized.data()), serialized.size());
879     EXPECT_TRUE(message2.MergeFromCodedStream(&input_stream));
880     EXPECT_EQ(17, message2.oneof_int32());
881   }
882 
883   // String
884   {
885     protobuf_unittest::TestOneofParsingLite message2;
886     message2.set_oneof_string("string");
887     io::CodedInputStream input_stream(
888         reinterpret_cast<const ::google::protobuf::uint8*>(serialized.data()), serialized.size());
889     EXPECT_TRUE(message2.MergeFromCodedStream(&input_stream));
890     EXPECT_EQ(17, message2.oneof_int32());
891   }
892 
893   // Bytes
894   {
895     protobuf_unittest::TestOneofParsingLite message2;
896     message2.set_oneof_bytes("bytes");
897     io::CodedInputStream input_stream(
898         reinterpret_cast<const ::google::protobuf::uint8*>(serialized.data()), serialized.size());
899     EXPECT_TRUE(message2.MergeFromCodedStream(&input_stream));
900     EXPECT_EQ(17, message2.oneof_int32());
901   }
902 }
903 
904 // Verify that we can successfully parse fields of various types within oneof
905 // fields. We also verify that we can parse the same data twice into the same
906 // message.
TEST(Lite,AllLite44)907 TEST(Lite, AllLite44) {
908   // Int32
909   {
910     protobuf_unittest::TestOneofParsingLite original;
911     original.set_oneof_int32(17);
912     std::string serialized;
913     EXPECT_TRUE(original.SerializeToString(&serialized));
914     protobuf_unittest::TestOneofParsingLite parsed;
915     for (int i = 0; i < 2; ++i) {
916       io::CodedInputStream input_stream(
917           reinterpret_cast<const ::google::protobuf::uint8*>(serialized.data()),
918           serialized.size());
919       EXPECT_TRUE(parsed.MergeFromCodedStream(&input_stream));
920       EXPECT_EQ(17, parsed.oneof_int32());
921     }
922   }
923 
924   // Submessage
925   {
926     protobuf_unittest::TestOneofParsingLite original;
927     original.mutable_oneof_submessage()->set_optional_int32(5);
928     std::string serialized;
929     EXPECT_TRUE(original.SerializeToString(&serialized));
930     protobuf_unittest::TestOneofParsingLite parsed;
931     for (int i = 0; i < 2; ++i) {
932       io::CodedInputStream input_stream(
933           reinterpret_cast<const ::google::protobuf::uint8*>(serialized.data()),
934           serialized.size());
935       EXPECT_TRUE(parsed.MergeFromCodedStream(&input_stream));
936       EXPECT_EQ(5, parsed.oneof_submessage().optional_int32());
937     }
938   }
939 
940   // String
941   {
942     protobuf_unittest::TestOneofParsingLite original;
943     original.set_oneof_string("string");
944     std::string serialized;
945     EXPECT_TRUE(original.SerializeToString(&serialized));
946     protobuf_unittest::TestOneofParsingLite parsed;
947     for (int i = 0; i < 2; ++i) {
948       io::CodedInputStream input_stream(
949           reinterpret_cast<const ::google::protobuf::uint8*>(serialized.data()),
950           serialized.size());
951       EXPECT_TRUE(parsed.MergeFromCodedStream(&input_stream));
952       EXPECT_EQ("string", parsed.oneof_string());
953     }
954   }
955 
956   // Bytes
957   {
958     protobuf_unittest::TestOneofParsingLite original;
959     original.set_oneof_bytes("bytes");
960     std::string serialized;
961     EXPECT_TRUE(original.SerializeToString(&serialized));
962     protobuf_unittest::TestOneofParsingLite parsed;
963     for (int i = 0; i < 2; ++i) {
964       io::CodedInputStream input_stream(
965           reinterpret_cast<const ::google::protobuf::uint8*>(serialized.data()),
966           serialized.size());
967       EXPECT_TRUE(parsed.MergeFromCodedStream(&input_stream));
968       EXPECT_EQ("bytes", parsed.oneof_bytes());
969     }
970   }
971 
972   // Enum
973   {
974     protobuf_unittest::TestOneofParsingLite original;
975     original.set_oneof_enum(protobuf_unittest::V2_SECOND);
976     std::string serialized;
977     EXPECT_TRUE(original.SerializeToString(&serialized));
978     protobuf_unittest::TestOneofParsingLite parsed;
979     for (int i = 0; i < 2; ++i) {
980       io::CodedInputStream input_stream(
981           reinterpret_cast<const ::google::protobuf::uint8*>(serialized.data()),
982           serialized.size());
983       EXPECT_TRUE(parsed.MergeFromCodedStream(&input_stream));
984       EXPECT_EQ(protobuf_unittest::V2_SECOND, parsed.oneof_enum());
985     }
986   }
987 
988   std::cout << "PASS" << std::endl;
989 }
990 
TEST(Lite,AllLite45)991 TEST(Lite, AllLite45) {
992   // Test unknown fields are not discarded upon parsing.
993   std::string data = "\20\1";  // varint 1 with field number 2
994 
995   protobuf_unittest::ForeignMessageLite a;
996   EXPECT_TRUE(a.ParseFromString(data));
997   io::CodedInputStream input_stream(
998       reinterpret_cast<const ::google::protobuf::uint8*>(data.data()), data.size());
999   EXPECT_TRUE(a.MergePartialFromCodedStream(&input_stream));
1000 
1001   std::string serialized = a.SerializeAsString();
1002   EXPECT_EQ(serialized.substr(0, 2), data);
1003   EXPECT_EQ(serialized.substr(2), data);
1004 }
1005 
1006 // The following two tests check for wire compatibility between packed and
1007 // unpacked repeated fields. There used to be a bug in the generated parsing
1008 // code that caused us to calculate the highest possible tag number without
1009 // taking into account that a repeated field might not be in the packed (or
1010 // unpacked) state we expect. These tests specifically check for that issue by
1011 // making sure we can parse repeated fields when the tag is higher than we would
1012 // expect.
TEST(Lite,AllLite46)1013 TEST(Lite, AllLite46) {
1014   protobuf_unittest::PackedInt32 packed;
1015   packed.add_repeated_int32(42);
1016   std::string serialized;
1017   ASSERT_TRUE(packed.SerializeToString(&serialized));
1018 
1019   protobuf_unittest::NonPackedInt32 non_packed;
1020   ASSERT_TRUE(non_packed.ParseFromString(serialized));
1021   ASSERT_EQ(1, non_packed.repeated_int32_size());
1022   EXPECT_EQ(42, non_packed.repeated_int32(0));
1023 }
1024 
TEST(Lite,AllLite47)1025 TEST(Lite, AllLite47) {
1026   protobuf_unittest::NonPackedFixed32 non_packed;
1027   non_packed.add_repeated_fixed32(42);
1028   std::string serialized;
1029   ASSERT_TRUE(non_packed.SerializeToString(&serialized));
1030 
1031   protobuf_unittest::PackedFixed32 packed;
1032   ASSERT_TRUE(packed.ParseFromString(serialized));
1033   ASSERT_EQ(1, packed.repeated_fixed32_size());
1034   EXPECT_EQ(42, packed.repeated_fixed32(0));
1035 }
1036 
TEST(Lite,MapCrash)1037 TEST(Lite, MapCrash) {
1038   // See b/113635730
1039   Arena arena;
1040   auto msg = Arena::CreateMessage<protobuf_unittest::TestMapLite>(&arena);
1041   // Payload for the map<string, Enum> with a enum varint that's longer >
1042   // 10 bytes. This causes a parse fail and a subsequent delete. field 16
1043   // (map<int32, MapEnumLite>) tag = 128+2 = \202 \1
1044   //   13 long \15
1045   //   int32 key = 1  (\10 \1)
1046   //   MapEnumLite value = too long varint (parse error)
1047   EXPECT_FALSE(msg->ParseFromString(
1048       "\202\1\15\10\1\200\200\200\200\200\200\200\200\200\200\1"));
1049 }
1050 
TEST(Lite,CorrectEnding)1051 TEST(Lite, CorrectEnding) {
1052   protobuf_unittest::TestAllTypesLite msg;
1053   {
1054     // All proto wireformat parsers should act the same on parsing data in as
1055     // much as it concerns the parsing, ie. not the interpretation of the data.
1056     // TestAllTypesLite is not a group inside another message. So in practice
1057     // will not encounter an end-group tag. However the parser should behave
1058     // like any wire format parser should.
1059     static const char kWireFormat[] = "\204\1";
1060     io::CodedInputStream cis(reinterpret_cast<const uint8*>(kWireFormat), 2);
1061     // The old CodedInputStream parser got an optimization (ReadTagNoLastTag)
1062     // for non-group messages (like TestAllTypesLite) which made it not accept
1063     // end-group. This is not a real big deal, but I think going forward its
1064     // good to have all parse loops behave 'exactly' the same.
1065 #if GOOGLE_PROTOBUF_ENABLE_EXPERIMENTAL_PARSER
1066     EXPECT_TRUE(msg.MergePartialFromCodedStream(&cis));
1067     EXPECT_FALSE(cis.ConsumedEntireMessage());
1068     EXPECT_TRUE(cis.LastTagWas(132));
1069 #endif
1070   }
1071   {
1072     // This is an incomplete end-group tag. This should be a genuine parse
1073     // failure.
1074     static const char kWireFormat[] = "\214";
1075     io::CodedInputStream cis(reinterpret_cast<const uint8*>(kWireFormat), 1);
1076     // Unfortunately the old parser detects a parse error in ReadTag and returns
1077     // 0 (as it states 0 is an invalid tag). However 0 is not an invalid tag
1078     // as it can be used to terminate the stream, so this returns true.
1079 #if GOOGLE_PROTOBUF_ENABLE_EXPERIMENTAL_PARSER
1080     EXPECT_FALSE(msg.MergePartialFromCodedStream(&cis));
1081 #endif
1082   }
1083 }
1084 
TEST(Lite,DebugString)1085 TEST(Lite, DebugString) {
1086   protobuf_unittest::TestAllTypesLite message1, message2;
1087   EXPECT_TRUE(HasPrefixString(message1.DebugString(), "MessageLite at 0x"));
1088   EXPECT_TRUE(HasPrefixString(message2.DebugString(), "MessageLite at 0x"));
1089 
1090   // DebugString() and ShortDebugString() are the same for now.
1091   EXPECT_EQ(message1.DebugString(), message1.ShortDebugString());
1092 
1093   // Even identical lite protos should have different DebugString() output. Part
1094   // of the reason for including the memory address is so that we get some
1095   // non-determinism, which should make it easier for us to change the output
1096   // later without breaking any code.
1097   EXPECT_NE(message1.DebugString(), message2.DebugString());
1098 }
1099 
TEST(Lite,EnumValueToName)1100 TEST(Lite, EnumValueToName) {
1101   EXPECT_EQ("FOREIGN_LITE_FOO", protobuf_unittest::ForeignEnumLite_Name(
1102                                     protobuf_unittest::FOREIGN_LITE_FOO));
1103   EXPECT_EQ("FOREIGN_LITE_BAR", protobuf_unittest::ForeignEnumLite_Name(
1104                                     protobuf_unittest::FOREIGN_LITE_BAR));
1105   EXPECT_EQ("FOREIGN_LITE_BAZ", protobuf_unittest::ForeignEnumLite_Name(
1106                                     protobuf_unittest::FOREIGN_LITE_BAZ));
1107   EXPECT_EQ("", protobuf_unittest::ForeignEnumLite_Name(0));
1108   EXPECT_EQ("", protobuf_unittest::ForeignEnumLite_Name(999));
1109 }
1110 
TEST(Lite,NestedEnumValueToName)1111 TEST(Lite, NestedEnumValueToName) {
1112   EXPECT_EQ("FOO", protobuf_unittest::TestAllTypesLite::NestedEnum_Name(
1113                        protobuf_unittest::TestAllTypesLite::FOO));
1114   EXPECT_EQ("BAR", protobuf_unittest::TestAllTypesLite::NestedEnum_Name(
1115                        protobuf_unittest::TestAllTypesLite::BAR));
1116   EXPECT_EQ("BAZ", protobuf_unittest::TestAllTypesLite::NestedEnum_Name(
1117                        protobuf_unittest::TestAllTypesLite::BAZ));
1118   EXPECT_EQ("", protobuf_unittest::TestAllTypesLite::NestedEnum_Name(0));
1119   EXPECT_EQ("", protobuf_unittest::TestAllTypesLite::NestedEnum_Name(999));
1120 }
1121 
TEST(Lite,EnumNameToValue)1122 TEST(Lite, EnumNameToValue) {
1123   protobuf_unittest::ForeignEnumLite value;
1124 
1125   ASSERT_TRUE(
1126       protobuf_unittest::ForeignEnumLite_Parse("FOREIGN_LITE_FOO", &value));
1127   EXPECT_EQ(protobuf_unittest::FOREIGN_LITE_FOO, value);
1128 
1129   ASSERT_TRUE(
1130       protobuf_unittest::ForeignEnumLite_Parse("FOREIGN_LITE_BAR", &value));
1131   EXPECT_EQ(protobuf_unittest::FOREIGN_LITE_BAR, value);
1132 
1133   ASSERT_TRUE(
1134       protobuf_unittest::ForeignEnumLite_Parse("FOREIGN_LITE_BAZ", &value));
1135   EXPECT_EQ(protobuf_unittest::FOREIGN_LITE_BAZ, value);
1136 
1137   // Non-existent values
1138   EXPECT_FALSE(protobuf_unittest::ForeignEnumLite_Parse("E", &value));
1139   EXPECT_FALSE(
1140       protobuf_unittest::ForeignEnumLite_Parse("FOREIGN_LITE_C", &value));
1141   EXPECT_FALSE(protobuf_unittest::ForeignEnumLite_Parse("G", &value));
1142 }
1143 
TEST(Lite,NestedEnumNameToValue)1144 TEST(Lite, NestedEnumNameToValue) {
1145   protobuf_unittest::TestAllTypesLite::NestedEnum value;
1146 
1147   ASSERT_TRUE(
1148       protobuf_unittest::TestAllTypesLite::NestedEnum_Parse("FOO", &value));
1149   EXPECT_EQ(protobuf_unittest::TestAllTypesLite::FOO, value);
1150 
1151   ASSERT_TRUE(
1152       protobuf_unittest::TestAllTypesLite::NestedEnum_Parse("BAR", &value));
1153   EXPECT_EQ(protobuf_unittest::TestAllTypesLite::BAR, value);
1154 
1155   ASSERT_TRUE(
1156       protobuf_unittest::TestAllTypesLite::NestedEnum_Parse("BAZ", &value));
1157   EXPECT_EQ(protobuf_unittest::TestAllTypesLite::BAZ, value);
1158 
1159   // Non-existent values
1160   EXPECT_FALSE(
1161       protobuf_unittest::TestAllTypesLite::NestedEnum_Parse("A", &value));
1162   EXPECT_FALSE(
1163       protobuf_unittest::TestAllTypesLite::NestedEnum_Parse("C", &value));
1164   EXPECT_FALSE(
1165       protobuf_unittest::TestAllTypesLite::NestedEnum_Parse("G", &value));
1166 }
1167 
TEST(Lite,AliasedEnum)1168 TEST(Lite, AliasedEnum) {
1169   // Enums with allow_alias = true can have multiple entries with the same
1170   // value.
1171   EXPECT_EQ("FOO1", protobuf_unittest::DupEnum::TestEnumWithDupValueLite_Name(
1172                         protobuf_unittest::DupEnum::FOO1));
1173   EXPECT_EQ("FOO1", protobuf_unittest::DupEnum::TestEnumWithDupValueLite_Name(
1174                         protobuf_unittest::DupEnum::FOO2));
1175   EXPECT_EQ("BAR1", protobuf_unittest::DupEnum::TestEnumWithDupValueLite_Name(
1176                         protobuf_unittest::DupEnum::BAR1));
1177   EXPECT_EQ("BAR1", protobuf_unittest::DupEnum::TestEnumWithDupValueLite_Name(
1178                         protobuf_unittest::DupEnum::BAR2));
1179   EXPECT_EQ("BAZ", protobuf_unittest::DupEnum::TestEnumWithDupValueLite_Name(
1180                        protobuf_unittest::DupEnum::BAZ));
1181   EXPECT_EQ("", protobuf_unittest::DupEnum::TestEnumWithDupValueLite_Name(999));
1182 
1183   protobuf_unittest::DupEnum::TestEnumWithDupValueLite value;
1184   ASSERT_TRUE(
1185       protobuf_unittest::DupEnum::TestEnumWithDupValueLite_Parse("FOO1", &value));
1186   EXPECT_EQ(protobuf_unittest::DupEnum::FOO1, value);
1187 
1188   value = static_cast<protobuf_unittest::DupEnum::TestEnumWithDupValueLite>(0);
1189   ASSERT_TRUE(
1190       protobuf_unittest::DupEnum::TestEnumWithDupValueLite_Parse("FOO2", &value));
1191   EXPECT_EQ(protobuf_unittest::DupEnum::FOO2, value);
1192 }
1193 
1194 }  // namespace protobuf
1195 }  // namespace google
1196