gmock-spec-builders_test.cc 73 KB
Newer Older
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
// Copyright 2007, Google Inc.
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are
// met:
//
//     * Redistributions of source code must retain the above copyright
// notice, this list of conditions and the following disclaimer.
//     * Redistributions in binary form must reproduce the above
// copyright notice, this list of conditions and the following disclaimer
// in the documentation and/or other materials provided with the
// distribution.
//     * Neither the name of Google Inc. nor the names of its
// contributors may be used to endorse or promote products derived from
// this software without specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
Gennadiy Civil's avatar
 
Gennadiy Civil committed
29

30
31
32
33
// Google Mock - a framework for writing C++ mock classes.
//
// This file tests the spec builder syntax.

34
#include "gmock/gmock-spec-builders.h"
35

misterg's avatar
misterg committed
36
#include <memory>
37
38
39
#include <ostream>  // NOLINT
#include <sstream>
#include <string>
40
#include <type_traits>
41

42
43
44
#include "gmock/gmock.h"
#include "gmock/internal/gmock-port.h"
#include "gtest/gtest-spi.h"
45
#include "gtest/gtest.h"
46
#include "gtest/internal/gtest-port.h"
47
48
49
50

namespace testing {
namespace {

51
52
53
54
55
56
57
using ::testing::internal::FormatFileLocation;
using ::testing::internal::kAllow;
using ::testing::internal::kErrorVerbosity;
using ::testing::internal::kFail;
using ::testing::internal::kInfoVerbosity;
using ::testing::internal::kWarn;
using ::testing::internal::kWarningVerbosity;
58

59
#if GTEST_HAS_STREAM_REDIRECTION
60
61
using ::testing::internal::CaptureStdout;
using ::testing::internal::GetCapturedStdout;
62
#endif
63

64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
class Incomplete;

class MockIncomplete {
 public:
  // This line verifies that a mock method can take a by-reference
  // argument of an incomplete type.
  MOCK_METHOD1(ByRefFunc, void(const Incomplete& x));
};

// Tells Google Mock how to print a value of type Incomplete.
void PrintTo(const Incomplete& x, ::std::ostream* os);

TEST(MockMethodTest, CanInstantiateWithIncompleteArgType) {
  // Even though this mock class contains a mock method that takes
  // by-reference an argument whose type is incomplete, we can still
  // use the mock, as long as Google Mock knows how to print the
  // argument.
  MockIncomplete incomplete;
82
  EXPECT_CALL(incomplete, ByRefFunc(_)).Times(AnyNumber());
83
84
85
86
87
88
89
90
}

// The definition of the printer for the argument type doesn't have to
// be visible where the mock is used.
void PrintTo(const Incomplete& /* x */, ::std::ostream* os) {
  *os << "incomplete";
}

91
92
class Result {};

93
94
95
96
97
98
// A type that's not default constructible.
class NonDefaultConstructible {
 public:
  explicit NonDefaultConstructible(int /* dummy */) {}
};

99
100
class MockA {
 public:
101
  MockA() = default;
102

103
104
105
106
107
  MOCK_METHOD1(DoA, void(int n));
  MOCK_METHOD1(ReturnResult, Result(int n));
  MOCK_METHOD0(ReturnNonDefaultConstructible, NonDefaultConstructible());
  MOCK_METHOD2(Binary, bool(int x, int y));
  MOCK_METHOD2(ReturnInt, int(int x, int y));
108
109

 private:
110
111
  MockA(const MockA&) = delete;
  MockA& operator=(const MockA&) = delete;
112
113
114
115
};

class MockB {
 public:
116
  MockB() = default;
117

118
  MOCK_CONST_METHOD0(DoB, int());  // NOLINT
119
  MOCK_METHOD1(DoB, int(int n));   // NOLINT
120
121

 private:
122
123
  MockB(const MockB&) = delete;
  MockB& operator=(const MockB&) = delete;
124
125
};

126
127
class ReferenceHoldingMock {
 public:
128
  ReferenceHoldingMock() = default;
129

misterg's avatar
misterg committed
130
  MOCK_METHOD1(AcceptReference, void(std::shared_ptr<MockA>*));
131
132

 private:
133
134
  ReferenceHoldingMock(const ReferenceHoldingMock&) = delete;
  ReferenceHoldingMock& operator=(const ReferenceHoldingMock&) = delete;
135
136
};

137
138
139
140
141
142
143
144
145
// Tests that EXPECT_CALL and ON_CALL compile in a presence of macro
// redefining a mock method name. This could happen, for example, when
// the tested code #includes Win32 API headers which define many APIs
// as macros, e.g. #define TextOut TextOutW.

#define Method MethodW

class CC {
 public:
146
  virtual ~CC() = default;
147
148
149
150
  virtual int Method() = 0;
};
class MockCC : public CC {
 public:
151
  MockCC() = default;
152

153
  MOCK_METHOD0(Method, int());
154
155

 private:
156
157
  MockCC(const MockCC&) = delete;
  MockCC& operator=(const MockCC&) = delete;
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
};

// Tests that a method with expanded name compiles.
TEST(OnCallSyntaxTest, CompilesWithMethodNameExpandedFromMacro) {
  MockCC cc;
  ON_CALL(cc, Method());
}

// Tests that the method with expanded name not only compiles but runs
// and returns a correct value, too.
TEST(OnCallSyntaxTest, WorksWithMethodNameExpandedFromMacro) {
  MockCC cc;
  ON_CALL(cc, Method()).WillByDefault(Return(42));
  EXPECT_EQ(42, cc.Method());
}

// Tests that a method with expanded name compiles.
TEST(ExpectCallSyntaxTest, CompilesWithMethodNameExpandedFromMacro) {
  MockCC cc;
  EXPECT_CALL(cc, Method());
  cc.Method();
}

// Tests that it works, too.
TEST(ExpectCallSyntaxTest, WorksWithMethodNameExpandedFromMacro) {
  MockCC cc;
  EXPECT_CALL(cc, Method()).WillOnce(Return(42));
  EXPECT_EQ(42, cc.Method());
}

#undef Method  // Done with macro redefinition tests.

// Tests that ON_CALL evaluates its arguments exactly once as promised
// by Google Mock.
TEST(OnCallSyntaxTest, EvaluatesFirstArgumentOnce) {
  MockA a;
  MockA* pa = &a;

  ON_CALL(*pa++, DoA(_));
  EXPECT_EQ(&a + 1, pa);
}

TEST(OnCallSyntaxTest, EvaluatesSecondArgumentOnce) {
  MockA a;
  int n = 0;

  ON_CALL(a, DoA(n++));
  EXPECT_EQ(1, n);
}

// Tests that the syntax of ON_CALL() is enforced at run time.

210
TEST(OnCallSyntaxTest, WithIsOptional) {
211
212
  MockA a;

213
214
  ON_CALL(a, DoA(5)).WillByDefault(Return());
  ON_CALL(a, DoA(_)).With(_).WillByDefault(Return());
215
216
}

217
TEST(OnCallSyntaxTest, WithCanAppearAtMostOnce) {
218
219
  MockA a;

220
221
222
223
224
225
226
227
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        ON_CALL(a, ReturnResult(_))
            .With(_)
            .With(_)
            .WillByDefault(Return(Result()));
      },
      ".With() cannot appear more than once in an ON_CALL()");
228
229
}

230
231
232
TEST(OnCallSyntaxTest, WillByDefaultIsMandatory) {
  MockA a;

233
234
235
236
237
238
  EXPECT_DEATH_IF_SUPPORTED(
      {
        ON_CALL(a, DoA(5));
        a.DoA(5);
      },
      "");
239
240
241
242
243
}

TEST(OnCallSyntaxTest, WillByDefaultCanAppearAtMostOnce) {
  MockA a;

244
245
246
247
248
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        ON_CALL(a, DoA(5)).WillByDefault(Return()).WillByDefault(Return());
      },
      ".WillByDefault() must appear exactly once in an ON_CALL()");
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
}

// Tests that EXPECT_CALL evaluates its arguments exactly once as
// promised by Google Mock.
TEST(ExpectCallSyntaxTest, EvaluatesFirstArgumentOnce) {
  MockA a;
  MockA* pa = &a;

  EXPECT_CALL(*pa++, DoA(_));
  a.DoA(0);
  EXPECT_EQ(&a + 1, pa);
}

TEST(ExpectCallSyntaxTest, EvaluatesSecondArgumentOnce) {
  MockA a;
  int n = 0;

  EXPECT_CALL(a, DoA(n++));
  a.DoA(0);
  EXPECT_EQ(1, n);
}

// Tests that the syntax of EXPECT_CALL() is enforced at run time.

273
TEST(ExpectCallSyntaxTest, WithIsOptional) {
274
275
  MockA a;

276
277
  EXPECT_CALL(a, DoA(5)).Times(0);
  EXPECT_CALL(a, DoA(6)).With(_).Times(0);
278
279
}

280
TEST(ExpectCallSyntaxTest, WithCanAppearAtMostOnce) {
281
282
  MockA a;

283
284
285
286
287
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        EXPECT_CALL(a, DoA(6)).With(_).With(_);
      },
      ".With() cannot appear more than once in an EXPECT_CALL()");
288
289
290
291

  a.DoA(6);
}

292
TEST(ExpectCallSyntaxTest, WithMustBeFirstClause) {
293
294
  MockA a;

295
296
297
298
299
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        EXPECT_CALL(a, DoA(1)).Times(1).With(_);
      },
      ".With() must be the first clause in an EXPECT_CALL()");
300
301
302

  a.DoA(1);

303
304
305
306
307
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        EXPECT_CALL(a, DoA(2)).WillOnce(Return()).With(_);
      },
      ".With() must be the first clause in an EXPECT_CALL()");
308
309
310
311
312
313
314

  a.DoA(2);
}

TEST(ExpectCallSyntaxTest, TimesCanBeInferred) {
  MockA a;

315
  EXPECT_CALL(a, DoA(1)).WillOnce(Return());
316

317
  EXPECT_CALL(a, DoA(2)).WillOnce(Return()).WillRepeatedly(Return());
318
319
320
321
322
323
324
325
326

  a.DoA(1);
  a.DoA(2);
  a.DoA(2);
}

TEST(ExpectCallSyntaxTest, TimesCanAppearAtMostOnce) {
  MockA a;

327
328
329
330
331
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        EXPECT_CALL(a, DoA(1)).Times(1).Times(2);
      },
      ".Times() cannot appear more than once in an EXPECT_CALL()");
332
333
334
335
336
337
338
339
340

  a.DoA(1);
  a.DoA(1);
}

TEST(ExpectCallSyntaxTest, TimesMustBeBeforeInSequence) {
  MockA a;
  Sequence s;

341
342
343
344
345
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        EXPECT_CALL(a, DoA(1)).InSequence(s).Times(1);
      },
      ".Times() may only appear *before* ");
346
347
348
349
350
351
352
353
354

  a.DoA(1);
}

TEST(ExpectCallSyntaxTest, InSequenceIsOptional) {
  MockA a;
  Sequence s;

  EXPECT_CALL(a, DoA(1));
355
  EXPECT_CALL(a, DoA(2)).InSequence(s);
356
357
358
359
360
361
362
363
364

  a.DoA(1);
  a.DoA(2);
}

TEST(ExpectCallSyntaxTest, InSequenceCanAppearMultipleTimes) {
  MockA a;
  Sequence s1, s2;

365
  EXPECT_CALL(a, DoA(1)).InSequence(s1, s2).InSequence(s1);
366
367
368
369

  a.DoA(1);
}

370
371
372
373
TEST(ExpectCallSyntaxTest, InSequenceMustBeBeforeAfter) {
  MockA a;
  Sequence s;

374
375
376
377
378
379
  Expectation e = EXPECT_CALL(a, DoA(1)).Times(AnyNumber());
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        EXPECT_CALL(a, DoA(2)).After(e).InSequence(s);
      },
      ".InSequence() cannot appear after ");
380
381
382
383
384

  a.DoA(2);
}

TEST(ExpectCallSyntaxTest, InSequenceMustBeBeforeWillOnce) {
385
386
387
  MockA a;
  Sequence s;

388
389
390
391
392
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        EXPECT_CALL(a, DoA(1)).WillOnce(Return()).InSequence(s);
      },
      ".InSequence() cannot appear after ");
393
394
395
396

  a.DoA(1);
}

397
398
399
400
TEST(ExpectCallSyntaxTest, AfterMustBeBeforeWillOnce) {
  MockA a;

  Expectation e = EXPECT_CALL(a, DoA(1));
401
402
403
  EXPECT_NONFATAL_FAILURE(
      { EXPECT_CALL(a, DoA(2)).WillOnce(Return()).After(e); },
      ".After() cannot appear after ");
404
405
406
407
408

  a.DoA(1);
  a.DoA(2);
}

409
410
411
412
TEST(ExpectCallSyntaxTest, WillIsOptional) {
  MockA a;

  EXPECT_CALL(a, DoA(1));
413
  EXPECT_CALL(a, DoA(2)).WillOnce(Return());
414
415
416
417
418
419
420
421
422
423
424
425
426
427
428
429
430
431

  a.DoA(1);
  a.DoA(2);
}

TEST(ExpectCallSyntaxTest, WillCanAppearMultipleTimes) {
  MockA a;

  EXPECT_CALL(a, DoA(1))
      .Times(AnyNumber())
      .WillOnce(Return())
      .WillOnce(Return())
      .WillOnce(Return());
}

TEST(ExpectCallSyntaxTest, WillMustBeBeforeWillRepeatedly) {
  MockA a;

432
433
434
435
436
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        EXPECT_CALL(a, DoA(1)).WillRepeatedly(Return()).WillOnce(Return());
      },
      ".WillOnce() cannot appear after ");
437
438
439
440
441
442
443

  a.DoA(1);
}

TEST(ExpectCallSyntaxTest, WillRepeatedlyIsOptional) {
  MockA a;

444
445
  EXPECT_CALL(a, DoA(1)).WillOnce(Return());
  EXPECT_CALL(a, DoA(2)).WillOnce(Return()).WillRepeatedly(Return());
446
447
448
449
450
451
452
453
454

  a.DoA(1);
  a.DoA(2);
  a.DoA(2);
}

TEST(ExpectCallSyntaxTest, WillRepeatedlyCannotAppearMultipleTimes) {
  MockA a;

455
456
457
458
459
460
461
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        EXPECT_CALL(a, DoA(1)).WillRepeatedly(Return()).WillRepeatedly(
            Return());
      },
      ".WillRepeatedly() cannot appear more than once in an "
      "EXPECT_CALL()");
462
463
464
465
466
}

TEST(ExpectCallSyntaxTest, WillRepeatedlyMustBeBeforeRetiresOnSaturation) {
  MockA a;

467
468
469
470
471
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        EXPECT_CALL(a, DoA(1)).RetiresOnSaturation().WillRepeatedly(Return());
      },
      ".WillRepeatedly() cannot appear after ");
472
473
474
475
476
477
}

TEST(ExpectCallSyntaxTest, RetiresOnSaturationIsOptional) {
  MockA a;

  EXPECT_CALL(a, DoA(1));
478
  EXPECT_CALL(a, DoA(1)).RetiresOnSaturation();
479
480
481
482
483
484
485
486

  a.DoA(1);
  a.DoA(1);
}

TEST(ExpectCallSyntaxTest, RetiresOnSaturationCannotAppearMultipleTimes) {
  MockA a;

487
488
489
490
491
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        EXPECT_CALL(a, DoA(1)).RetiresOnSaturation().RetiresOnSaturation();
      },
      ".RetiresOnSaturation() cannot appear more than once");
492
493
494
495
496
497
498
499
500
501

  a.DoA(1);
}

TEST(ExpectCallSyntaxTest, DefaultCardinalityIsOnce) {
  {
    MockA a;
    EXPECT_CALL(a, DoA(1));
    a.DoA(1);
  }
502
503
504
505
506
507
508
509
510
511
512
513
514
515
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        MockA a;
        EXPECT_CALL(a, DoA(1));
      },
      "to be called once");
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        MockA a;
        EXPECT_CALL(a, DoA(1));
        a.DoA(1);
        a.DoA(1);
      },
      "to be called once");
516
517
}

518
#if GTEST_HAS_STREAM_REDIRECTION
519
520
521
522

// Tests that Google Mock doesn't print a warning when the number of
// WillOnce() is adequate.
TEST(ExpectCallSyntaxTest, DoesNotWarnOnAdequateActionCount) {
523
  CaptureStdout();
524
525
526
527
  {
    MockB b;

    // It's always fine to omit WillOnce() entirely.
528
529
530
    EXPECT_CALL(b, DoB()).Times(0);
    EXPECT_CALL(b, DoB(1)).Times(AtMost(1));
    EXPECT_CALL(b, DoB(2)).Times(1).WillRepeatedly(Return(1));
531
532
533
534
535
536
537
538
539

    // It's fine for the number of WillOnce()s to equal the upper bound.
    EXPECT_CALL(b, DoB(3))
        .Times(Between(1, 2))
        .WillOnce(Return(1))
        .WillOnce(Return(2));

    // It's fine for the number of WillOnce()s to be smaller than the
    // upper bound when there is a WillRepeatedly().
540
541
    EXPECT_CALL(b, DoB(4)).Times(AtMost(3)).WillOnce(Return(1)).WillRepeatedly(
        Return(2));
542
543
544
545
546

    // Satisfies the above expectations.
    b.DoB(2);
    b.DoB(3);
  }
547
  EXPECT_STREQ("", GetCapturedStdout().c_str());
548
549
550
551
552
}

// Tests that Google Mock warns on having too many actions in an
// expectation compared to its cardinality.
TEST(ExpectCallSyntaxTest, WarnsOnTooManyActions) {
553
  CaptureStdout();
554
555
556
557
  {
    MockB b;

    // Warns when the number of WillOnce()s is larger than the upper bound.
558
559
560
    EXPECT_CALL(b, DoB()).Times(0).WillOnce(Return(1));  // #1
    EXPECT_CALL(b, DoB()).Times(AtMost(1)).WillOnce(Return(1)).WillOnce(
        Return(2));  // #2
561
562
563
564
565
566
567
568
    EXPECT_CALL(b, DoB(1))
        .Times(1)
        .WillOnce(Return(1))
        .WillOnce(Return(2))
        .RetiresOnSaturation();  // #3

    // Warns when the number of WillOnce()s equals the upper bound and
    // there is a WillRepeatedly().
569
570
571
    EXPECT_CALL(b, DoB()).Times(0).WillRepeatedly(Return(1));  // #4
    EXPECT_CALL(b, DoB(2)).Times(1).WillOnce(Return(1)).WillRepeatedly(
        Return(2));  // #5
572
573
574
575
576

    // Satisfies the above expectations.
    b.DoB(1);
    b.DoB(2);
  }
577
  const std::string output = GetCapturedStdout();
578
579
580
581
582
583
584
585
586
  EXPECT_PRED_FORMAT2(IsSubstring,
                      "Too many actions specified in EXPECT_CALL(b, DoB())...\n"
                      "Expected to be never called, but has 1 WillOnce().",
                      output);  // #1
  EXPECT_PRED_FORMAT2(IsSubstring,
                      "Too many actions specified in EXPECT_CALL(b, DoB())...\n"
                      "Expected to be called at most once, "
                      "but has 2 WillOnce()s.",
                      output);  // #2
587
588
589
590
591
  EXPECT_PRED_FORMAT2(
      IsSubstring,
      "Too many actions specified in EXPECT_CALL(b, DoB(1))...\n"
      "Expected to be called once, but has 2 WillOnce()s.",
      output);  // #3
592
593
594
595
596
  EXPECT_PRED_FORMAT2(IsSubstring,
                      "Too many actions specified in EXPECT_CALL(b, DoB())...\n"
                      "Expected to be never called, but has 0 WillOnce()s "
                      "and a WillRepeatedly().",
                      output);  // #4
597
598
599
600
601
602
  EXPECT_PRED_FORMAT2(
      IsSubstring,
      "Too many actions specified in EXPECT_CALL(b, DoB(2))...\n"
      "Expected to be called once, but has 1 WillOnce() "
      "and a WillRepeatedly().",
      output);  // #5
603
604
605
606
607
608
609
}

// Tests that Google Mock warns on having too few actions in an
// expectation compared to its cardinality.
TEST(ExpectCallSyntaxTest, WarnsOnTooFewActions) {
  MockB b;

610
  EXPECT_CALL(b, DoB()).Times(Between(2, 3)).WillOnce(Return(1));
611

612
  CaptureStdout();
613
  b.DoB();
614
  const std::string output = GetCapturedStdout();
615
616
617
618
619
  EXPECT_PRED_FORMAT2(IsSubstring,
                      "Too few actions specified in EXPECT_CALL(b, DoB())...\n"
                      "Expected to be called between 2 and 3 times, "
                      "but has only 1 WillOnce().",
                      output);
620
621
622
  b.DoB();
}

623
TEST(ExpectCallSyntaxTest, WarningIsErrorWithFlag) {
Abseil Team's avatar
Abseil Team committed
624
  int original_behavior = GMOCK_FLAG_GET(default_mock_behavior);
625

Abseil Team's avatar
Abseil Team committed
626
  GMOCK_FLAG_SET(default_mock_behavior, kAllow);
627
628
629
630
631
632
633
634
  CaptureStdout();
  {
    MockA a;
    a.DoA(0);
  }
  std::string output = GetCapturedStdout();
  EXPECT_TRUE(output.empty()) << output;

Abseil Team's avatar
Abseil Team committed
635
  GMOCK_FLAG_SET(default_mock_behavior, kWarn);
636
637
638
639
640
641
642
  CaptureStdout();
  {
    MockA a;
    a.DoA(0);
  }
  std::string warning_output = GetCapturedStdout();
  EXPECT_PRED_FORMAT2(IsSubstring, "GMOCK WARNING", warning_output);
643
644
  EXPECT_PRED_FORMAT2(IsSubstring, "Uninteresting mock function call",
                      warning_output);
645

Abseil Team's avatar
Abseil Team committed
646
  GMOCK_FLAG_SET(default_mock_behavior, kFail);
647
648
649
650
651
652
  EXPECT_NONFATAL_FAILURE(
      {
        MockA a;
        a.DoA(0);
      },
      "Uninteresting mock function call");
653

Alyssa Wilk's avatar
Alyssa Wilk committed
654
  // Out of bounds values are converted to kWarn
Abseil Team's avatar
Abseil Team committed
655
  GMOCK_FLAG_SET(default_mock_behavior, -1);
Alyssa Wilk's avatar
Alyssa Wilk committed
656
657
658
659
660
661
662
  CaptureStdout();
  {
    MockA a;
    a.DoA(0);
  }
  warning_output = GetCapturedStdout();
  EXPECT_PRED_FORMAT2(IsSubstring, "GMOCK WARNING", warning_output);
663
664
  EXPECT_PRED_FORMAT2(IsSubstring, "Uninteresting mock function call",
                      warning_output);
Abseil Team's avatar
Abseil Team committed
665
  GMOCK_FLAG_SET(default_mock_behavior, 3);
Alyssa Wilk's avatar
Alyssa Wilk committed
666
667
668
669
670
671
672
  CaptureStdout();
  {
    MockA a;
    a.DoA(0);
  }
  warning_output = GetCapturedStdout();
  EXPECT_PRED_FORMAT2(IsSubstring, "GMOCK WARNING", warning_output);
673
674
  EXPECT_PRED_FORMAT2(IsSubstring, "Uninteresting mock function call",
                      warning_output);
Alyssa Wilk's avatar
Alyssa Wilk committed
675

Abseil Team's avatar
Abseil Team committed
676
  GMOCK_FLAG_SET(default_mock_behavior, original_behavior);
677
678
}

679
#endif  // GTEST_HAS_STREAM_REDIRECTION
680
681
682
683
684
685
686
687
688
689
690
691
692
693
694
695

// Tests the semantics of ON_CALL().

// Tests that the built-in default action is taken when no ON_CALL()
// is specified.
TEST(OnCallTest, TakesBuiltInDefaultActionWhenNoOnCall) {
  MockB b;
  EXPECT_CALL(b, DoB());

  EXPECT_EQ(0, b.DoB());
}

// Tests that the built-in default action is taken when no ON_CALL()
// matches the invocation.
TEST(OnCallTest, TakesBuiltInDefaultActionWhenNoOnCallMatches) {
  MockB b;
696
  ON_CALL(b, DoB(1)).WillByDefault(Return(1));
697
698
699
700
701
702
703
704
  EXPECT_CALL(b, DoB(_));

  EXPECT_EQ(0, b.DoB(2));
}

// Tests that the last matching ON_CALL() action is taken.
TEST(OnCallTest, PicksLastMatchingOnCall) {
  MockB b;
705
706
707
  ON_CALL(b, DoB(_)).WillByDefault(Return(3));
  ON_CALL(b, DoB(2)).WillByDefault(Return(2));
  ON_CALL(b, DoB(1)).WillByDefault(Return(1));
708
709
710
711
712
713
714
715
716
717
718
719
720
721
722
723
724
725
726
727
728
729
730
  EXPECT_CALL(b, DoB(_));

  EXPECT_EQ(2, b.DoB(2));
}

// Tests the semantics of EXPECT_CALL().

// Tests that any call is allowed when no EXPECT_CALL() is specified.
TEST(ExpectCallTest, AllowsAnyCallWhenNoSpec) {
  MockB b;
  EXPECT_CALL(b, DoB());
  // There is no expectation on DoB(int).

  b.DoB();

  // DoB(int) can be called any number of times.
  b.DoB(1);
  b.DoB(2);
}

// Tests that the last matching EXPECT_CALL() fires.
TEST(ExpectCallTest, PicksLastMatchingExpectCall) {
  MockB b;
731
732
  EXPECT_CALL(b, DoB(_)).WillRepeatedly(Return(2));
  EXPECT_CALL(b, DoB(1)).WillRepeatedly(Return(1));
733
734
735
736
737
738

  EXPECT_EQ(1, b.DoB(1));
}

// Tests lower-bound violation.
TEST(ExpectCallTest, CatchesTooFewCalls) {
739
740
741
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        MockB b;
742
        EXPECT_CALL(b, DoB(5)).Description("DoB Method").Times(AtLeast(2));
743

744
745
        b.DoB(5);
      },
746
747
      "Actual function \"DoB Method\" call count "
      "doesn't match EXPECT_CALL(b, DoB(5))...\n"
748
749
      "         Expected: to be called at least twice\n"
      "           Actual: called once - unsatisfied and active");
750
751
752
753
754
755
756
}

// Tests that the cardinality can be inferred when no Times(...) is
// specified.
TEST(ExpectCallTest, InfersCardinalityWhenThereIsNoWillRepeatedly) {
  {
    MockB b;
757
    EXPECT_CALL(b, DoB()).WillOnce(Return(1)).WillOnce(Return(2));
758
759
760
761
762

    EXPECT_EQ(1, b.DoB());
    EXPECT_EQ(2, b.DoB());
  }

763
764
765
766
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        MockB b;
        EXPECT_CALL(b, DoB()).WillOnce(Return(1)).WillOnce(Return(2));
767

768
769
770
        EXPECT_EQ(1, b.DoB());
      },
      "to be called twice");
771
772
773

  {  // NOLINT
    MockB b;
774
    EXPECT_CALL(b, DoB()).WillOnce(Return(1)).WillOnce(Return(2));
775
776
777
778
779
780
781
782
783
784

    EXPECT_EQ(1, b.DoB());
    EXPECT_EQ(2, b.DoB());
    EXPECT_NONFATAL_FAILURE(b.DoB(), "to be called twice");
  }
}

TEST(ExpectCallTest, InfersCardinality1WhenThereIsWillRepeatedly) {
  {
    MockB b;
785
    EXPECT_CALL(b, DoB()).WillOnce(Return(1)).WillRepeatedly(Return(2));
786
787
788
789
790
791

    EXPECT_EQ(1, b.DoB());
  }

  {  // NOLINT
    MockB b;
792
    EXPECT_CALL(b, DoB()).WillOnce(Return(1)).WillRepeatedly(Return(2));
793
794
795
796
797
798

    EXPECT_EQ(1, b.DoB());
    EXPECT_EQ(2, b.DoB());
    EXPECT_EQ(2, b.DoB());
  }

799
800
801
802
803
804
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        MockB b;
        EXPECT_CALL(b, DoB()).WillOnce(Return(1)).WillRepeatedly(Return(2));
      },
      "to be called at least once");
805
806
}

807
808
#if defined(GTEST_INTERNAL_CPLUSPLUS_LANG) && \
    GTEST_INTERNAL_CPLUSPLUS_LANG >= 201703L
809
810
811
812
813
814

// It should be possible to return a non-moveable type from a mock action in
// C++17 and above, where it's guaranteed that such a type can be initialized
// from a prvalue returned from a function.
TEST(ExpectCallTest, NonMoveableType) {
  // Define a non-moveable result type.
Patryk Gawroński's avatar
Patryk Gawroński committed
815
816
817
  struct NonMoveableStruct {
    explicit NonMoveableStruct(int x_in) : x(x_in) {}
    NonMoveableStruct(NonMoveableStruct&&) = delete;
818
819
820
821

    int x;
  };

Patryk Gawroński's avatar
Patryk Gawroński committed
822
823
  static_assert(!std::is_move_constructible_v<NonMoveableStruct>);
  static_assert(!std::is_copy_constructible_v<NonMoveableStruct>);
824

Patryk Gawroński's avatar
Patryk Gawroński committed
825
826
  static_assert(!std::is_move_assignable_v<NonMoveableStruct>);
  static_assert(!std::is_copy_assignable_v<NonMoveableStruct>);
827
828
829

  // We should be able to use a callable that returns that result as both a
  // OnceAction and an Action, whether the callable ignores arguments or not.
Patryk Gawroński's avatar
Patryk Gawroński committed
830
  const auto return_17 = [] { return NonMoveableStruct(17); };
831

Patryk Gawroński's avatar
Patryk Gawroński committed
832
833
  static_cast<void>(OnceAction<NonMoveableStruct()>{return_17});
  static_cast<void>(Action<NonMoveableStruct()>{return_17});
834

Patryk Gawroński's avatar
Patryk Gawroński committed
835
836
  static_cast<void>(OnceAction<NonMoveableStruct(int)>{return_17});
  static_cast<void>(Action<NonMoveableStruct(int)>{return_17});
837
838
839

  // It should be possible to return the result end to end through an
  // EXPECT_CALL statement, with both WillOnce and WillRepeatedly.
Patryk Gawroński's avatar
Patryk Gawroński committed
840
  MockFunction<NonMoveableStruct()> mock;
841
842
843
844
845
846
847
848
849
850
851
  EXPECT_CALL(mock, Call)   //
      .WillOnce(return_17)  //
      .WillRepeatedly(return_17);

  EXPECT_EQ(17, mock.AsStdFunction()().x);
  EXPECT_EQ(17, mock.AsStdFunction()().x);
  EXPECT_EQ(17, mock.AsStdFunction()().x);
}

#endif  // C++17 and above

852
853
854
855
// Tests that the n-th action is taken for the n-th matching
// invocation.
TEST(ExpectCallTest, NthMatchTakesNthAction) {
  MockB b;
856
857
  EXPECT_CALL(b, DoB()).WillOnce(Return(1)).WillOnce(Return(2)).WillOnce(
      Return(3));
858
859
860
861
862
863

  EXPECT_EQ(1, b.DoB());
  EXPECT_EQ(2, b.DoB());
  EXPECT_EQ(3, b.DoB());
}

864
865
866
867
// Tests that the WillRepeatedly() action is taken when the WillOnce(...)
// list is exhausted.
TEST(ExpectCallTest, TakesRepeatedActionWhenWillListIsExhausted) {
  MockB b;
868
  EXPECT_CALL(b, DoB()).WillOnce(Return(1)).WillRepeatedly(Return(2));
869
870
871
872
873
874

  EXPECT_EQ(1, b.DoB());
  EXPECT_EQ(2, b.DoB());
  EXPECT_EQ(2, b.DoB());
}

875
#if GTEST_HAS_STREAM_REDIRECTION
876
877
878
879
880

// Tests that the default action is taken when the WillOnce(...) list is
// exhausted and there is no WillRepeatedly().
TEST(ExpectCallTest, TakesDefaultActionWhenWillListIsExhausted) {
  MockB b;
881
  EXPECT_CALL(b, DoB(_)).Times(1);
882
883
884
885
886
  EXPECT_CALL(b, DoB())
      .Times(AnyNumber())
      .WillOnce(Return(1))
      .WillOnce(Return(2));

887
  CaptureStdout();
888
889
890
891
  EXPECT_EQ(0, b.DoB(1));  // Shouldn't generate a warning as the
                           // expectation has no action clause at all.
  EXPECT_EQ(1, b.DoB());
  EXPECT_EQ(2, b.DoB());
892
  const std::string output1 = GetCapturedStdout();
893
  EXPECT_STREQ("", output1.c_str());
894

895
  CaptureStdout();
896
897
  EXPECT_EQ(0, b.DoB());
  EXPECT_EQ(0, b.DoB());
898
  const std::string output2 = GetCapturedStdout();
899
900
901
902
903
904
905
906
  EXPECT_THAT(output2.c_str(),
              HasSubstr("Actions ran out in EXPECT_CALL(b, DoB())...\n"
                        "Called 3 times, but only 2 WillOnce()s are specified"
                        " - returning default value."));
  EXPECT_THAT(output2.c_str(),
              HasSubstr("Actions ran out in EXPECT_CALL(b, DoB())...\n"
                        "Called 4 times, but only 2 WillOnce()s are specified"
                        " - returning default value."));
907
908
}

909
TEST(FunctionMockerMessageTest, ReportsExpectCallLocationForExhausedActions) {
910
  MockB b;
911
912
  std::string expect_call_location = FormatFileLocation(__FILE__, __LINE__ + 1);
  EXPECT_CALL(b, DoB()).Times(AnyNumber()).WillOnce(Return(1));
913
914

  EXPECT_EQ(1, b.DoB());
915
916
917

  CaptureStdout();
  EXPECT_EQ(0, b.DoB());
918
  const std::string output = GetCapturedStdout();
919
920
  // The warning message should contain the call location.
  EXPECT_PRED_FORMAT2(IsSubstring, expect_call_location, output);
921
922
}

923
TEST(FunctionMockerMessageTest,
924
     ReportsDefaultActionLocationOfUninterestingCallsForNaggyMock) {
925
926
927
  std::string on_call_location;
  CaptureStdout();
  {
928
    NaggyMock<MockB> b;
929
930
931
932
933
934
935
936
937
    on_call_location = FormatFileLocation(__FILE__, __LINE__ + 1);
    ON_CALL(b, DoB(_)).WillByDefault(Return(0));
    b.DoB(0);
  }
  EXPECT_PRED_FORMAT2(IsSubstring, on_call_location, GetCapturedStdout());
}

#endif  // GTEST_HAS_STREAM_REDIRECTION

938
939
940
941
942
// Tests that an uninteresting call performs the default action.
TEST(UninterestingCallTest, DoesDefaultAction) {
  // When there is an ON_CALL() statement, the action specified by it
  // should be taken.
  MockA a;
943
  ON_CALL(a, Binary(_, _)).WillByDefault(Return(true));
944
945
946
947
948
949
950
951
952
953
954
955
956
  EXPECT_TRUE(a.Binary(1, 2));

  // When there is no ON_CALL(), the default value for the return type
  // should be returned.
  MockB b;
  EXPECT_EQ(0, b.DoB());
}

// Tests that an unexpected call performs the default action.
TEST(UnexpectedCallTest, DoesDefaultAction) {
  // When there is an ON_CALL() statement, the action specified by it
  // should be taken.
  MockA a;
957
  ON_CALL(a, Binary(_, _)).WillByDefault(Return(true));
958
959
960
961
962
963
964
965
966
967
  EXPECT_CALL(a, Binary(0, 0));
  a.Binary(0, 0);
  bool result = false;
  EXPECT_NONFATAL_FAILURE(result = a.Binary(1, 2),
                          "Unexpected mock function call");
  EXPECT_TRUE(result);

  // When there is no ON_CALL(), the default value for the return type
  // should be returned.
  MockB b;
968
  EXPECT_CALL(b, DoB(0)).Times(0);
969
  int n = -1;
970
  EXPECT_NONFATAL_FAILURE(n = b.DoB(1), "Unexpected mock function call");
971
972
973
974
975
976
977
978
979
980
981
982
983
984
985
986
987
988
989
990
991
992
993
994
995
996
997
998
999
1000
1001
1002
1003
1004
1005
1006
1007
  EXPECT_EQ(0, n);
}

// Tests that when an unexpected void function generates the right
// failure message.
TEST(UnexpectedCallTest, GeneratesFailureForVoidFunction) {
  // First, tests the message when there is only one EXPECT_CALL().
  MockA a1;
  EXPECT_CALL(a1, DoA(1));
  a1.DoA(1);
  // Ideally we should match the failure message against a regex, but
  // EXPECT_NONFATAL_FAILURE doesn't support that, so we test for
  // multiple sub-strings instead.
  EXPECT_NONFATAL_FAILURE(
      a1.DoA(9),
      "Unexpected mock function call - returning directly.\n"
      "    Function call: DoA(9)\n"
      "Google Mock tried the following 1 expectation, but it didn't match:");
  EXPECT_NONFATAL_FAILURE(
      a1.DoA(9),
      "  Expected arg #0: is equal to 1\n"
      "           Actual: 9\n"
      "         Expected: to be called once\n"
      "           Actual: called once - saturated and active");

  // Next, tests the message when there are more than one EXPECT_CALL().
  MockA a2;
  EXPECT_CALL(a2, DoA(1));
  EXPECT_CALL(a2, DoA(3));
  a2.DoA(1);
  EXPECT_NONFATAL_FAILURE(
      a2.DoA(2),
      "Unexpected mock function call - returning directly.\n"
      "    Function call: DoA(2)\n"
      "Google Mock tried the following 2 expectations, but none matched:");
  EXPECT_NONFATAL_FAILURE(
      a2.DoA(2),
1008
      "tried expectation #0: EXPECT_CALL(a2, DoA(1))...\n"
1009
1010
1011
1012
1013
1014
      "  Expected arg #0: is equal to 1\n"
      "           Actual: 2\n"
      "         Expected: to be called once\n"
      "           Actual: called once - saturated and active");
  EXPECT_NONFATAL_FAILURE(
      a2.DoA(2),
1015
      "tried expectation #1: EXPECT_CALL(a2, DoA(3))...\n"
1016
1017
1018
1019
1020
1021
1022
1023
1024
1025
1026
1027
1028
1029
1030
1031
1032
1033
1034
1035
1036
1037
1038
1039
1040
1041
1042
1043
1044
1045
1046
      "  Expected arg #0: is equal to 3\n"
      "           Actual: 2\n"
      "         Expected: to be called once\n"
      "           Actual: never called - unsatisfied and active");
  a2.DoA(3);
}

// Tests that an unexpected non-void function generates the right
// failure message.
TEST(UnexpectedCallTest, GeneartesFailureForNonVoidFunction) {
  MockB b1;
  EXPECT_CALL(b1, DoB(1));
  b1.DoB(1);
  EXPECT_NONFATAL_FAILURE(
      b1.DoB(2),
      "Unexpected mock function call - returning default value.\n"
      "    Function call: DoB(2)\n"
      "          Returns: 0\n"
      "Google Mock tried the following 1 expectation, but it didn't match:");
  EXPECT_NONFATAL_FAILURE(
      b1.DoB(2),
      "  Expected arg #0: is equal to 1\n"
      "           Actual: 2\n"
      "         Expected: to be called once\n"
      "           Actual: called once - saturated and active");
}

// Tests that Google Mock explains that an retired expectation doesn't
// match the call.
TEST(UnexpectedCallTest, RetiredExpectation) {
  MockB b;
1047
  EXPECT_CALL(b, DoB(1)).RetiresOnSaturation();
1048
1049

  b.DoB(1);
1050
1051
1052
  EXPECT_NONFATAL_FAILURE(b.DoB(1),
                          "         Expected: the expectation is active\n"
                          "           Actual: it is retired");
1053
1054
1055
1056
1057
1058
1059
1060
}

// Tests that Google Mock explains that an expectation that doesn't
// match the arguments doesn't match the call.
TEST(UnexpectedCallTest, UnmatchedArguments) {
  MockB b;
  EXPECT_CALL(b, DoB(1));

1061
1062
1063
  EXPECT_NONFATAL_FAILURE(b.DoB(2),
                          "  Expected arg #0: is equal to 1\n"
                          "           Actual: 2\n");
1064
1065
1066
1067
1068
  b.DoB(1);
}

// Tests that Google Mock explains that an expectation with
// unsatisfied pre-requisites doesn't match the call.
yutotnh's avatar
yutotnh committed
1069
TEST(UnexpectedCallTest, UnsatisfiedPrerequisites) {
1070
1071
  Sequence s1, s2;
  MockB b;
1072
1073
1074
1075
  EXPECT_CALL(b, DoB(1)).InSequence(s1);
  EXPECT_CALL(b, DoB(2)).Times(AnyNumber()).InSequence(s1);
  EXPECT_CALL(b, DoB(3)).InSequence(s2);
  EXPECT_CALL(b, DoB(4)).InSequence(s1, s2);
1076
1077
1078
1079
1080
1081
1082
1083
1084
1085
1086
1087

  ::testing::TestPartResultArray failures;
  {
    ::testing::ScopedFakeTestPartResultReporter reporter(&failures);
    b.DoB(4);
    // Now 'failures' contains the Google Test failures generated by
    // the above statement.
  }

  // There should be one non-fatal failure.
  ASSERT_EQ(1, failures.size());
  const ::testing::TestPartResult& r = failures.GetTestPartResult(0);
zhanyong.wan's avatar
zhanyong.wan committed
1088
  EXPECT_EQ(::testing::TestPartResult::kNonFatalFailure, r.type());
1089
1090
1091

  // Verifies that the failure message contains the two unsatisfied
  // pre-requisites but not the satisfied one.
Tom Hughes's avatar
Tom Hughes committed
1092
#ifdef GTEST_USES_POSIX_RE
1093
1094
1095
1096
1097
1098
1099
  EXPECT_THAT(r.message(),
              ContainsRegex(
                  // POSIX RE doesn't understand the (?s) prefix, but has no
                  // trouble with (.|\n).
                  "the following immediate pre-requisites are not satisfied:\n"
                  "(.|\n)*: pre-requisite #0\n"
                  "(.|\n)*: pre-requisite #1"));
1100
1101
#else
  // We can only use Google Test's own simple regex.
1102
1103
1104
  EXPECT_THAT(r.message(),
              ContainsRegex(
                  "the following immediate pre-requisites are not satisfied:"));
1105
1106
  EXPECT_THAT(r.message(), ContainsRegex(": pre-requisite #0"));
  EXPECT_THAT(r.message(), ContainsRegex(": pre-requisite #1"));
Tom Hughes's avatar
Tom Hughes committed
1107
#endif  // GTEST_USES_POSIX_RE
1108
1109
1110
1111
1112
1113

  b.DoB(1);
  b.DoB(3);
  b.DoB(4);
}

1114
1115
TEST(UndefinedReturnValueTest,
     ReturnValueIsMandatoryWhenNotDefaultConstructible) {
1116
  MockA a;
Gennadiy Civil's avatar
 
Gennadiy Civil committed
1117
  // FIXME: We should really verify the output message,
1118
1119
  // but we cannot yet due to that EXPECT_DEATH only captures stderr
  // while Google Mock logs to stdout.
1120
#if GTEST_HAS_EXCEPTIONS
1121
  EXPECT_ANY_THROW(a.ReturnNonDefaultConstructible());
1122
#else
1123
  EXPECT_DEATH_IF_SUPPORTED(a.ReturnNonDefaultConstructible(), "");
1124
#endif
1125
1126
}

1127
1128
1129
1130
1131
1132
// Tests that an excessive call (one whose arguments match the
// matchers but is called too many times) performs the default action.
TEST(ExcessiveCallTest, DoesDefaultAction) {
  // When there is an ON_CALL() statement, the action specified by it
  // should be taken.
  MockA a;
1133
  ON_CALL(a, Binary(_, _)).WillByDefault(Return(true));
1134
1135
1136
1137
1138
1139
1140
1141
1142
1143
  EXPECT_CALL(a, Binary(0, 0));
  a.Binary(0, 0);
  bool result = false;
  EXPECT_NONFATAL_FAILURE(result = a.Binary(0, 0),
                          "Mock function called more times than expected");
  EXPECT_TRUE(result);

  // When there is no ON_CALL(), the default value for the return type
  // should be returned.
  MockB b;
1144
  EXPECT_CALL(b, DoB(0)).Description("DoB Method").Times(0);
1145
  int n = -1;
1146
1147
1148
  EXPECT_NONFATAL_FAILURE(
      n = b.DoB(0),
      "Mock function \"DoB Method\" called more times than expected");
1149
1150
1151
1152
1153
1154
1155
  EXPECT_EQ(0, n);
}

// Tests that when a void function is called too many times,
// the failure message contains the argument values.
TEST(ExcessiveCallTest, GeneratesFailureForVoidFunction) {
  MockA a;
1156
  EXPECT_CALL(a, DoA(_)).Description("DoA Method").Times(0);
1157
1158
  EXPECT_NONFATAL_FAILURE(
      a.DoA(9),
1159
1160
      "Mock function \"DoA Method\" called more times than expected - "
      "returning directly.\n"
1161
1162
1163
1164
1165
1166
1167
1168
1169
1170
1171
1172
1173
1174
1175
1176
1177
1178
1179
1180
1181
1182
1183
1184
1185
1186
1187
1188
1189
1190
1191
1192
      "    Function call: DoA(9)\n"
      "         Expected: to be never called\n"
      "           Actual: called once - over-saturated and active");
}

// Tests that when a non-void function is called too many times, the
// failure message contains the argument values and the return value.
TEST(ExcessiveCallTest, GeneratesFailureForNonVoidFunction) {
  MockB b;
  EXPECT_CALL(b, DoB(_));
  b.DoB(1);
  EXPECT_NONFATAL_FAILURE(
      b.DoB(2),
      "Mock function called more times than expected - "
      "returning default value.\n"
      "    Function call: DoB(2)\n"
      "          Returns: 0\n"
      "         Expected: to be called once\n"
      "           Actual: called twice - over-saturated and active");
}

// Tests using sequences.

TEST(InSequenceTest, AllExpectationInScopeAreInSequence) {
  MockA a;
  {
    InSequence dummy;

    EXPECT_CALL(a, DoA(1));
    EXPECT_CALL(a, DoA(2));
  }

1193
1194
1195
1196
1197
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        a.DoA(2);
      },
      "Unexpected mock function call");
1198
1199
1200
1201
1202
1203
1204
1205
1206
1207
1208
1209
1210
1211
1212
1213
1214
1215
1216

  a.DoA(1);
  a.DoA(2);
}

TEST(InSequenceTest, NestedInSequence) {
  MockA a;
  {
    InSequence dummy;

    EXPECT_CALL(a, DoA(1));
    {
      InSequence dummy2;

      EXPECT_CALL(a, DoA(2));
      EXPECT_CALL(a, DoA(3));
    }
  }

1217
1218
1219
1220
1221
1222
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        a.DoA(1);
        a.DoA(3);
      },
      "Unexpected mock function call");
1223
1224
1225
1226
1227
1228
1229
1230
1231
1232
1233
1234
1235
1236
1237

  a.DoA(2);
  a.DoA(3);
}

TEST(InSequenceTest, ExpectationsOutOfScopeAreNotAffected) {
  MockA a;
  {
    InSequence dummy;

    EXPECT_CALL(a, DoA(1));
    EXPECT_CALL(a, DoA(2));
  }
  EXPECT_CALL(a, DoA(3));

1238
1239
1240
1241
1242
  EXPECT_NONFATAL_FAILURE(
      {  // NOLINT
        a.DoA(2);
      },
      "Unexpected mock function call");
1243
1244
1245
1246
1247
1248
1249
1250
1251
1252
1253
1254
1255

  a.DoA(3);
  a.DoA(1);
  a.DoA(2);
}

// Tests that any order is allowed when no sequence is used.
TEST(SequenceTest, AnyOrderIsOkByDefault) {
  {
    MockA a;
    MockB b;

    EXPECT_CALL(a, DoA(1));
1256
    EXPECT_CALL(b, DoB()).Times(AnyNumber());
1257
1258
1259
1260
1261
1262
1263
1264
1265
1266

    a.DoA(1);
    b.DoB();
  }

  {  // NOLINT
    MockA a;
    MockB b;

    EXPECT_CALL(a, DoA(1));
1267
    EXPECT_CALL(b, DoB()).Times(AnyNumber());
1268
1269
1270
1271
1272
1273
1274
1275

    b.DoB();
    a.DoA(1);
  }
}

// Tests that the calls must be in strict order when a complete order
// is specified.
1276
TEST(SequenceTest, CallsMustBeInStrictOrderWhenSaidSo1) {
1277
  MockA a;
1278
  ON_CALL(a, ReturnResult(_)).WillByDefault(Return(Result()));
1279

1280
  Sequence s;
1281
1282
1283
  EXPECT_CALL(a, ReturnResult(1)).InSequence(s);
  EXPECT_CALL(a, ReturnResult(2)).InSequence(s);
  EXPECT_CALL(a, ReturnResult(3)).InSequence(s);
1284

1285
  a.ReturnResult(1);
1286

1287
1288
  // May only be called after a.ReturnResult(2).
  EXPECT_NONFATAL_FAILURE(a.ReturnResult(3), "Unexpected mock function call");
1289
1290
1291
1292
1293

  a.ReturnResult(2);
  a.ReturnResult(3);
}

1294
1295
1296
// Tests that the calls must be in strict order when a complete order
// is specified.
TEST(SequenceTest, CallsMustBeInStrictOrderWhenSaidSo2) {
1297
  MockA a;
1298
  ON_CALL(a, ReturnResult(_)).WillByDefault(Return(Result()));
1299

1300
  Sequence s;
1301
1302
  EXPECT_CALL(a, ReturnResult(1)).InSequence(s);
  EXPECT_CALL(a, ReturnResult(2)).InSequence(s);
1303

1304
1305
  // May only be called after a.ReturnResult(1).
  EXPECT_NONFATAL_FAILURE(a.ReturnResult(2), "Unexpected mock function call");
1306

1307
1308
1309
  a.ReturnResult(1);
  a.ReturnResult(2);
}
1310

1311
1312
1313
1314
// Tests specifying a DAG using multiple sequences.
class PartialOrderTest : public testing::Test {
 protected:
  PartialOrderTest() {
1315
    ON_CALL(a_, ReturnResult(_)).WillByDefault(Return(Result()));
1316

1317
1318
1319
1320
1321
1322
    // Specifies this partial ordering:
    //
    // a.ReturnResult(1) ==>
    //                       a.ReturnResult(2) * n  ==>  a.ReturnResult(3)
    // b.DoB() * 2       ==>
    Sequence x, y;
1323
1324
1325
1326
    EXPECT_CALL(a_, ReturnResult(1)).InSequence(x);
    EXPECT_CALL(b_, DoB()).Times(2).InSequence(y);
    EXPECT_CALL(a_, ReturnResult(2)).Times(AnyNumber()).InSequence(x, y);
    EXPECT_CALL(a_, ReturnResult(3)).InSequence(x);
1327
  }
1328

1329
1330
1331
  MockA a_;
  MockB b_;
};
1332

1333
1334
1335
TEST_F(PartialOrderTest, CallsMustConformToSpecifiedDag1) {
  a_.ReturnResult(1);
  b_.DoB();
1336

1337
1338
  // May only be called after the second DoB().
  EXPECT_NONFATAL_FAILURE(a_.ReturnResult(2), "Unexpected mock function call");
1339

1340
1341
1342
1343
1344
1345
1346
1347
1348
1349
1350
1351
1352
1353
1354
1355
1356
1357
1358
1359
1360
1361
1362
1363
1364
1365
1366
1367
1368
1369
1370
1371
  b_.DoB();
  a_.ReturnResult(3);
}

TEST_F(PartialOrderTest, CallsMustConformToSpecifiedDag2) {
  // May only be called after ReturnResult(1).
  EXPECT_NONFATAL_FAILURE(a_.ReturnResult(2), "Unexpected mock function call");

  a_.ReturnResult(1);
  b_.DoB();
  b_.DoB();
  a_.ReturnResult(3);
}

TEST_F(PartialOrderTest, CallsMustConformToSpecifiedDag3) {
  // May only be called last.
  EXPECT_NONFATAL_FAILURE(a_.ReturnResult(3), "Unexpected mock function call");

  a_.ReturnResult(1);
  b_.DoB();
  b_.DoB();
  a_.ReturnResult(3);
}

TEST_F(PartialOrderTest, CallsMustConformToSpecifiedDag4) {
  a_.ReturnResult(1);
  b_.DoB();
  b_.DoB();
  a_.ReturnResult(3);

  // May only be called before ReturnResult(3).
  EXPECT_NONFATAL_FAILURE(a_.ReturnResult(2), "Unexpected mock function call");
1372
1373
1374
1375
1376
1377
}

TEST(SequenceTest, Retirement) {
  MockA a;
  Sequence s;

1378
1379
1380
  EXPECT_CALL(a, DoA(1)).InSequence(s);
  EXPECT_CALL(a, DoA(_)).InSequence(s).RetiresOnSaturation();
  EXPECT_CALL(a, DoA(1)).InSequence(s);
1381
1382
1383
1384
1385
1386

  a.DoA(1);
  a.DoA(2);
  a.DoA(1);
}

1387
1388
1389
1390
1391
// Tests Expectation.

TEST(ExpectationTest, ConstrutorsWork) {
  MockA a;
  Expectation e1;  // Default ctor.
1392
1393
1394
1395
1396
1397
1398
1399
1400
1401
1402
1403
1404
1405
1406

  // Ctor from various forms of EXPECT_CALL.
  Expectation e2 = EXPECT_CALL(a, DoA(2));
  Expectation e3 = EXPECT_CALL(a, DoA(3)).With(_);
  {
    Sequence s;
    Expectation e4 = EXPECT_CALL(a, DoA(4)).Times(1);
    Expectation e5 = EXPECT_CALL(a, DoA(5)).InSequence(s);
  }
  Expectation e6 = EXPECT_CALL(a, DoA(6)).After(e2);
  Expectation e7 = EXPECT_CALL(a, DoA(7)).WillOnce(Return());
  Expectation e8 = EXPECT_CALL(a, DoA(8)).WillRepeatedly(Return());
  Expectation e9 = EXPECT_CALL(a, DoA(9)).RetiresOnSaturation();

  Expectation e10 = e2;  // Copy ctor.
1407
1408

  EXPECT_THAT(e1, Ne(e2));
1409
1410
1411
1412
1413
1414
1415
1416
1417
1418
  EXPECT_THAT(e2, Eq(e10));

  a.DoA(2);
  a.DoA(3);
  a.DoA(4);
  a.DoA(5);
  a.DoA(6);
  a.DoA(7);
  a.DoA(8);
  a.DoA(9);
1419
1420
1421
1422
1423
1424
1425
1426
1427
1428
1429
1430
1431
1432
1433
1434
1435
1436
1437
1438
1439
1440
1441
1442
1443
1444
}

TEST(ExpectationTest, AssignmentWorks) {
  MockA a;
  Expectation e1;
  Expectation e2 = EXPECT_CALL(a, DoA(1));

  EXPECT_THAT(e1, Ne(e2));

  e1 = e2;
  EXPECT_THAT(e1, Eq(e2));

  a.DoA(1);
}

// Tests ExpectationSet.

TEST(ExpectationSetTest, MemberTypesAreCorrect) {
  ::testing::StaticAssertTypeEq<Expectation, ExpectationSet::value_type>();
}

TEST(ExpectationSetTest, ConstructorsWork) {
  MockA a;

  Expectation e1;
  const Expectation e2;
1445
  ExpectationSet es1;                           // Default ctor.
1446
  ExpectationSet es2 = EXPECT_CALL(a, DoA(1));  // Ctor from EXPECT_CALL.
1447
1448
1449
1450
  ExpectationSet es3 = e1;                      // Ctor from Expectation.
  ExpectationSet es4(e1);    // Ctor from Expectation; alternative syntax.
  ExpectationSet es5 = e2;   // Ctor from const Expectation.
  ExpectationSet es6(e2);    // Ctor from const Expectation; alternative syntax.
1451
1452
1453
1454
1455
1456
1457
1458
1459
1460
1461
1462
1463
1464
1465
1466
1467
1468
1469
1470
1471
1472
1473
1474
1475
1476
1477
1478
1479
1480
1481
1482
1483
1484
1485
1486
1487
1488
1489
1490
1491
1492
1493
1494
1495
1496
1497
1498
1499
1500
1501
1502
1503
1504
1505
1506
1507
1508
1509
1510
1511
1512
1513
1514
  ExpectationSet es7 = es2;  // Copy ctor.

  EXPECT_EQ(0, es1.size());
  EXPECT_EQ(1, es2.size());
  EXPECT_EQ(1, es3.size());
  EXPECT_EQ(1, es4.size());
  EXPECT_EQ(1, es5.size());
  EXPECT_EQ(1, es6.size());
  EXPECT_EQ(1, es7.size());

  EXPECT_THAT(es3, Ne(es2));
  EXPECT_THAT(es4, Eq(es3));
  EXPECT_THAT(es5, Eq(es4));
  EXPECT_THAT(es6, Eq(es5));
  EXPECT_THAT(es7, Eq(es2));
  a.DoA(1);
}

TEST(ExpectationSetTest, AssignmentWorks) {
  ExpectationSet es1;
  ExpectationSet es2 = Expectation();

  es1 = es2;
  EXPECT_EQ(1, es1.size());
  EXPECT_THAT(*(es1.begin()), Eq(Expectation()));
  EXPECT_THAT(es1, Eq(es2));
}

TEST(ExpectationSetTest, InsertionWorks) {
  ExpectationSet es1;
  Expectation e1;
  es1 += e1;
  EXPECT_EQ(1, es1.size());
  EXPECT_THAT(*(es1.begin()), Eq(e1));

  MockA a;
  Expectation e2 = EXPECT_CALL(a, DoA(1));
  es1 += e2;
  EXPECT_EQ(2, es1.size());

  ExpectationSet::const_iterator it1 = es1.begin();
  ExpectationSet::const_iterator it2 = it1;
  ++it2;
  EXPECT_TRUE(*it1 == e1 || *it2 == e1);  // e1 must be in the set.
  EXPECT_TRUE(*it1 == e2 || *it2 == e2);  // e2 must be in the set too.
  a.DoA(1);
}

TEST(ExpectationSetTest, SizeWorks) {
  ExpectationSet es;
  EXPECT_EQ(0, es.size());

  es += Expectation();
  EXPECT_EQ(1, es.size());

  MockA a;
  es += EXPECT_CALL(a, DoA(1));
  EXPECT_EQ(2, es.size());

  a.DoA(1);
}

TEST(ExpectationSetTest, IsEnumerable) {
  ExpectationSet es;
1515
  EXPECT_TRUE(es.begin() == es.end());
1516
1517
1518

  es += Expectation();
  ExpectationSet::const_iterator it = es.begin();
1519
  EXPECT_TRUE(it != es.end());
1520
1521
  EXPECT_THAT(*it, Eq(Expectation()));
  ++it;
1522
  EXPECT_TRUE(it == es.end());
1523
1524
1525
1526
1527
1528
1529
1530
1531
}

// Tests the .After() clause.

TEST(AfterTest, SucceedsWhenPartialOrderIsSatisfied) {
  MockA a;
  ExpectationSet es;
  es += EXPECT_CALL(a, DoA(1));
  es += EXPECT_CALL(a, DoA(2));
1532
  EXPECT_CALL(a, DoA(3)).After(es);
1533
1534
1535
1536
1537
1538
1539
1540
1541
1542
1543
1544

  a.DoA(1);
  a.DoA(2);
  a.DoA(3);
}

TEST(AfterTest, SucceedsWhenTotalOrderIsSatisfied) {
  MockA a;
  MockB b;
  // The following also verifies that const Expectation objects work
  // too.  Do not remove the const modifiers.
  const Expectation e1 = EXPECT_CALL(a, DoA(1));
1545
  const Expectation e2 = EXPECT_CALL(b, DoB()).Times(2).After(e1);
1546
1547
1548
1549
1550
1551
1552
1553
  EXPECT_CALL(a, DoA(2)).After(e2);

  a.DoA(1);
  b.DoB();
  b.DoB();
  a.DoA(2);
}

1554
1555
// Calls must be in strict order when specified so using .After().
TEST(AfterTest, CallsMustBeInStrictOrderWhenSpecifiedSo1) {
1556
1557
  MockA a;
  MockB b;
1558
1559
1560

  // Define ordering:
  //   a.DoA(1) ==> b.DoB() ==> a.DoA(2)
1561
  Expectation e1 = EXPECT_CALL(a, DoA(1));
1562
1563
  Expectation e2 = EXPECT_CALL(b, DoB()).After(e1);
  EXPECT_CALL(a, DoA(2)).After(e2);
1564
1565

  a.DoA(1);
1566
1567
1568

  // May only be called after DoB().
  EXPECT_NONFATAL_FAILURE(a.DoA(2), "Unexpected mock function call");
1569
1570

  b.DoB();
1571
1572
1573
1574
1575
1576
1577
  a.DoA(2);
}

// Calls must be in strict order when specified so using .After().
TEST(AfterTest, CallsMustBeInStrictOrderWhenSpecifiedSo2) {
  MockA a;
  MockB b;
1578

1579
1580
1581
  // Define ordering:
  //   a.DoA(1) ==> b.DoB() * 2 ==> a.DoA(2)
  Expectation e1 = EXPECT_CALL(a, DoA(1));
1582
1583
  Expectation e2 = EXPECT_CALL(b, DoB()).Times(2).After(e1);
  EXPECT_CALL(a, DoA(2)).After(e2);
1584
1585

  a.DoA(1);
1586
  b.DoB();
1587
1588
1589
1590
1591
1592

  // May only be called after the second DoB().
  EXPECT_NONFATAL_FAILURE(a.DoA(2), "Unexpected mock function call");

  b.DoB();
  a.DoA(2);
1593
1594
1595
}

// Calls must satisfy the partial order when specified so.
1596
TEST(AfterTest, CallsMustSatisfyPartialOrderWhenSpecifiedSo) {
1597
  MockA a;
1598
  ON_CALL(a, ReturnResult(_)).WillByDefault(Return(Result()));
1599
1600
1601
1602

  // Define ordering:
  //   a.DoA(1) ==>
  //   a.DoA(2) ==> a.ReturnResult(3)
1603
1604
  Expectation e = EXPECT_CALL(a, DoA(1));
  const ExpectationSet es = EXPECT_CALL(a, DoA(2));
1605
  EXPECT_CALL(a, ReturnResult(3)).After(e, es);
1606

1607
1608
  // May only be called last.
  EXPECT_NONFATAL_FAILURE(a.ReturnResult(3), "Unexpected mock function call");
1609
1610
1611
1612
1613
1614

  a.DoA(2);
  a.DoA(1);
  a.ReturnResult(3);
}

1615
1616
1617
1618
1619
1620
1621
1622
1623
// Calls must satisfy the partial order when specified so.
TEST(AfterTest, CallsMustSatisfyPartialOrderWhenSpecifiedSo2) {
  MockA a;

  // Define ordering:
  //   a.DoA(1) ==>
  //   a.DoA(2) ==> a.DoA(3)
  Expectation e = EXPECT_CALL(a, DoA(1));
  const ExpectationSet es = EXPECT_CALL(a, DoA(2));
1624
  EXPECT_CALL(a, DoA(3)).After(e, es);
1625
1626
1627
1628
1629
1630
1631
1632
1633
1634

  a.DoA(2);

  // May only be called last.
  EXPECT_NONFATAL_FAILURE(a.DoA(3), "Unexpected mock function call");

  a.DoA(1);
  a.DoA(3);
}

1635
// .After() can be combined with .InSequence().
1636
TEST(AfterTest, CanBeUsedWithInSequence) {
1637
1638
1639
1640
  MockA a;
  Sequence s;
  Expectation e = EXPECT_CALL(a, DoA(1));
  EXPECT_CALL(a, DoA(2)).InSequence(s);
1641
  EXPECT_CALL(a, DoA(3)).InSequence(s).After(e);
1642
1643

  a.DoA(1);
1644
1645
1646

  // May only be after DoA(2).
  EXPECT_NONFATAL_FAILURE(a.DoA(3), "Unexpected mock function call");
1647
1648

  a.DoA(2);
1649
  a.DoA(3);
1650
1651
1652
1653
1654
1655
1656
1657
}

// .After() can be called multiple times.
TEST(AfterTest, CanBeCalledManyTimes) {
  MockA a;
  Expectation e1 = EXPECT_CALL(a, DoA(1));
  Expectation e2 = EXPECT_CALL(a, DoA(2));
  Expectation e3 = EXPECT_CALL(a, DoA(3));
1658
  EXPECT_CALL(a, DoA(4)).After(e1).After(e2).After(e3);
1659
1660
1661
1662
1663
1664
1665
1666
1667
1668
1669
1670
1671
1672
1673

  a.DoA(3);
  a.DoA(1);
  a.DoA(2);
  a.DoA(4);
}

// .After() accepts up to 5 arguments.
TEST(AfterTest, AcceptsUpToFiveArguments) {
  MockA a;
  Expectation e1 = EXPECT_CALL(a, DoA(1));
  Expectation e2 = EXPECT_CALL(a, DoA(2));
  Expectation e3 = EXPECT_CALL(a, DoA(3));
  ExpectationSet es1 = EXPECT_CALL(a, DoA(4));
  ExpectationSet es2 = EXPECT_CALL(a, DoA(5));
1674
  EXPECT_CALL(a, DoA(6)).After(e1, e2, e3, es1, es2);
1675
1676
1677
1678
1679
1680
1681
1682
1683
1684
1685
1686

  a.DoA(5);
  a.DoA(2);
  a.DoA(4);
  a.DoA(1);
  a.DoA(3);
  a.DoA(6);
}

// .After() allows input to contain duplicated Expectations.
TEST(AfterTest, AcceptsDuplicatedInput) {
  MockA a;
1687
  ON_CALL(a, ReturnResult(_)).WillByDefault(Return(Result()));
1688
1689
1690
1691

  // Define ordering:
  //   DoA(1) ==>
  //   DoA(2) ==> ReturnResult(3)
1692
1693
1694
1695
1696
  Expectation e1 = EXPECT_CALL(a, DoA(1));
  Expectation e2 = EXPECT_CALL(a, DoA(2));
  ExpectationSet es;
  es += e1;
  es += e2;
1697
  EXPECT_CALL(a, ReturnResult(3)).After(e1, e2, es, e1);
1698
1699

  a.DoA(1);
1700
1701
1702

  // May only be after DoA(2).
  EXPECT_NONFATAL_FAILURE(a.ReturnResult(3), "Unexpected mock function call");
1703
1704
1705
1706
1707
1708
1709
1710
1711
1712
1713

  a.DoA(2);
  a.ReturnResult(3);
}

// An Expectation added to an ExpectationSet after it has been used in
// an .After() has no effect.
TEST(AfterTest, ChangesToExpectationSetHaveNoEffectAfterwards) {
  MockA a;
  ExpectationSet es1 = EXPECT_CALL(a, DoA(1));
  Expectation e2 = EXPECT_CALL(a, DoA(2));
1714
  EXPECT_CALL(a, DoA(3)).After(es1);
1715
1716
1717
1718
1719
1720
1721
  es1 += e2;

  a.DoA(1);
  a.DoA(3);
  a.DoA(2);
}

1722
1723
1724
1725
1726
1727
1728
1729
1730
1731
1732
// Tests that Google Mock correctly handles calls to mock functions
// after a mock object owning one of their pre-requisites has died.

// Tests that calls that satisfy the original spec are successful.
TEST(DeletingMockEarlyTest, Success1) {
  MockB* const b1 = new MockB;
  MockA* const a = new MockA;
  MockB* const b2 = new MockB;

  {
    InSequence dummy;
1733
    EXPECT_CALL(*b1, DoB(_)).WillOnce(Return(1));
1734
1735
1736
    EXPECT_CALL(*a, Binary(_, _))
        .Times(AnyNumber())
        .WillRepeatedly(Return(true));
1737
    EXPECT_CALL(*b2, DoB(_)).Times(AnyNumber()).WillRepeatedly(Return(2));
1738
1739
1740
1741
1742
1743
1744
1745
1746
1747
1748
1749
1750
1751
1752
1753
1754
1755
1756
1757
  }

  EXPECT_EQ(1, b1->DoB(1));
  delete b1;
  // a's pre-requisite has died.
  EXPECT_TRUE(a->Binary(0, 1));
  delete b2;
  // a's successor has died.
  EXPECT_TRUE(a->Binary(1, 2));
  delete a;
}

// Tests that calls that satisfy the original spec are successful.
TEST(DeletingMockEarlyTest, Success2) {
  MockB* const b1 = new MockB;
  MockA* const a = new MockA;
  MockB* const b2 = new MockB;

  {
    InSequence dummy;
1758
1759
1760
    EXPECT_CALL(*b1, DoB(_)).WillOnce(Return(1));
    EXPECT_CALL(*a, Binary(_, _)).Times(AnyNumber());
    EXPECT_CALL(*b2, DoB(_)).Times(AnyNumber()).WillRepeatedly(Return(2));
1761
1762
1763
1764
1765
1766
1767
1768
1769
  }

  delete a;  // a is trivially satisfied.
  EXPECT_EQ(1, b1->DoB(1));
  EXPECT_EQ(2, b2->DoB(2));
  delete b1;
  delete b2;
}

1770
1771
// Tests that it's OK to delete a mock object itself in its action.

1772
1773
// Suppresses warning on unreferenced formal parameter in MSVC with
// -W4.
1774
GTEST_DISABLE_MSC_WARNINGS_PUSH_(4100)
1775

1776
1777
ACTION_P(Delete, ptr) { delete ptr; }

1778
GTEST_DISABLE_MSC_WARNINGS_POP_()  // 4100
1779

1780
1781
1782
1783
1784
1785
1786
1787
TEST(DeletingMockEarlyTest, CanDeleteSelfInActionReturningVoid) {
  MockA* const a = new MockA;
  EXPECT_CALL(*a, DoA(_)).WillOnce(Delete(a));
  a->DoA(42);  // This will cause a to be deleted.
}

TEST(DeletingMockEarlyTest, CanDeleteSelfInActionReturningValue) {
  MockA* const a = new MockA;
1788
  EXPECT_CALL(*a, ReturnResult(_)).WillOnce(DoAll(Delete(a), Return(Result())));
1789
1790
1791
1792
  a->ReturnResult(42);  // This will cause a to be deleted.
}

// Tests that calls that violate the original spec yield failures.
1793
1794
1795
1796
1797
1798
1799
TEST(DeletingMockEarlyTest, Failure1) {
  MockB* const b1 = new MockB;
  MockA* const a = new MockA;
  MockB* const b2 = new MockB;

  {
    InSequence dummy;
1800
1801
1802
    EXPECT_CALL(*b1, DoB(_)).WillOnce(Return(1));
    EXPECT_CALL(*a, Binary(_, _)).Times(AnyNumber());
    EXPECT_CALL(*b2, DoB(_)).Times(AnyNumber()).WillRepeatedly(Return(2));
1803
1804
1805
  }

  delete a;  // a is trivially satisfied.
1806
  EXPECT_NONFATAL_FAILURE({ b2->DoB(2); }, "Unexpected mock function call");
1807
1808
1809
1810
1811
  EXPECT_EQ(1, b1->DoB(1));
  delete b1;
  delete b2;
}

1812
// Tests that calls that violate the original spec yield failures.
1813
1814
1815
1816
1817
1818
1819
1820
TEST(DeletingMockEarlyTest, Failure2) {
  MockB* const b1 = new MockB;
  MockA* const a = new MockA;
  MockB* const b2 = new MockB;

  {
    InSequence dummy;
    EXPECT_CALL(*b1, DoB(_));
1821
1822
    EXPECT_CALL(*a, Binary(_, _)).Times(AnyNumber());
    EXPECT_CALL(*b2, DoB(_)).Times(AnyNumber());
1823
1824
  }

1825
1826
1827
  EXPECT_NONFATAL_FAILURE(delete b1, "Actual: never called");
  EXPECT_NONFATAL_FAILURE(a->Binary(0, 1), "Unexpected mock function call");
  EXPECT_NONFATAL_FAILURE(b2->DoB(1), "Unexpected mock function call");
1828
1829
1830
1831
1832
1833
  delete a;
  delete b2;
}

class EvenNumberCardinality : public CardinalityInterface {
 public:
1834
1835
  // Returns true if and only if call_count calls will satisfy this
  // cardinality.
Abseil Team's avatar
Abseil Team committed
1836
  bool IsSatisfiedByCallCount(int call_count) const override {
1837
1838
1839
    return call_count % 2 == 0;
  }

1840
1841
  // Returns true if and only if call_count calls will saturate this
  // cardinality.
Abseil Team's avatar
Abseil Team committed
1842
  bool IsSaturatedByCallCount(int /* call_count */) const override {
1843
1844
    return false;
  }
1845
1846

  // Describes self to an ostream.
Abseil Team's avatar
Abseil Team committed
1847
  void DescribeTo(::std::ostream* os) const override {
1848
1849
1850
1851
    *os << "called even number of times";
  }
};

1852
Cardinality EvenNumber() { return Cardinality(new EvenNumberCardinality); }
1853
1854
1855
1856
1857
1858

TEST(ExpectationBaseTest,
     AllPrerequisitesAreSatisfiedWorksForNonMonotonicCardinality) {
  MockA* a = new MockA;
  Sequence s;

1859
1860
1861
  EXPECT_CALL(*a, DoA(1)).Times(EvenNumber()).InSequence(s);
  EXPECT_CALL(*a, DoA(2)).Times(AnyNumber()).InSequence(s);
  EXPECT_CALL(*a, DoA(3)).Times(AnyNumber());
1862
1863
1864
1865
1866
1867
1868
1869
1870
1871

  a->DoA(3);
  a->DoA(1);
  EXPECT_NONFATAL_FAILURE(a->DoA(2), "Unexpected mock function call");
  EXPECT_NONFATAL_FAILURE(delete a, "to be called even number of times");
}

// The following tests verify the message generated when a mock
// function is called.

1872
struct Printable {};
1873
1874
1875
1876
1877
1878
1879
1880
1881
1882
1883
1884

inline void operator<<(::std::ostream& os, const Printable&) {
  os << "Printable";
}

struct Unprintable {
  Unprintable() : value(0) {}
  int value;
};

class MockC {
 public:
1885
  MockC() = default;
1886

1887
  MOCK_METHOD6(VoidMethod, void(bool cond, int n, std::string s, void* p,
1888
1889
                                const Printable& x, Unprintable y));
  MOCK_METHOD0(NonVoidMethod, int());  // NOLINT
1890
1891

 private:
1892
1893
  MockC(const MockC&) = delete;
  MockC& operator=(const MockC&) = delete;
1894
1895
};

1896
1897
1898
class VerboseFlagPreservingFixture : public testing::Test {
 protected:
  VerboseFlagPreservingFixture()
Abseil Team's avatar
Abseil Team committed
1899
      : saved_verbose_flag_(GMOCK_FLAG_GET(verbose)) {}
1900

Abseil Team's avatar
Abseil Team committed
1901
  ~VerboseFlagPreservingFixture() override {
Abseil Team's avatar
Abseil Team committed
1902
    GMOCK_FLAG_SET(verbose, saved_verbose_flag_);
Abseil Team's avatar
Abseil Team committed
1903
  }
1904
1905

 private:
1906
  const std::string saved_verbose_flag_;
1907

1908
1909
1910
  VerboseFlagPreservingFixture(const VerboseFlagPreservingFixture&) = delete;
  VerboseFlagPreservingFixture& operator=(const VerboseFlagPreservingFixture&) =
      delete;
1911
1912
};

1913
#if GTEST_HAS_STREAM_REDIRECTION
1914

1915
// Tests that an uninteresting mock function call on a naggy mock
1916
1917
// generates a warning without the stack trace when
// --gmock_verbose=warning is specified.
1918
TEST(FunctionCallMessageTest,
1919
     UninterestingCallOnNaggyMockGeneratesNoStackTraceWhenVerboseWarning) {
Abseil Team's avatar
Abseil Team committed
1920
  GMOCK_FLAG_SET(verbose, kWarningVerbosity);
1921
1922
  NaggyMock<MockC> c;
  CaptureStdout();
1923
  c.VoidMethod(false, 5, "Hi", nullptr, Printable(), Unprintable());
1924
1925
1926
1927
1928
1929
1930
1931
1932
1933
  const std::string output = GetCapturedStdout();
  EXPECT_PRED_FORMAT2(IsSubstring, "GMOCK WARNING", output);
  EXPECT_PRED_FORMAT2(IsNotSubstring, "Stack trace:", output);
}

// Tests that an uninteresting mock function call on a naggy mock
// generates a warning containing the stack trace when
// --gmock_verbose=info is specified.
TEST(FunctionCallMessageTest,
     UninterestingCallOnNaggyMockGeneratesFyiWithStackTraceWhenVerboseInfo) {
Abseil Team's avatar
Abseil Team committed
1934
  GMOCK_FLAG_SET(verbose, kInfoVerbosity);
1935
  NaggyMock<MockC> c;
1936
  CaptureStdout();
1937
  c.VoidMethod(false, 5, "Hi", nullptr, Printable(), Unprintable());
1938
  const std::string output = GetCapturedStdout();
1939
1940
  EXPECT_PRED_FORMAT2(IsSubstring, "GMOCK WARNING", output);
  EXPECT_PRED_FORMAT2(IsSubstring, "Stack trace:", output);
1941

1942
#ifndef NDEBUG
1943

1944
1945
1946
1947
1948
  // We check the stack trace content in dbg-mode only, as opt-mode
  // may inline the call we are interested in seeing.

  // Verifies that a void mock function's name appears in the stack
  // trace.
1949
  EXPECT_PRED_FORMAT2(IsSubstring, "VoidMethod(", output);
1950
1951
1952

  // Verifies that a non-void mock function's name appears in the
  // stack trace.
1953
  CaptureStdout();
1954
  c.NonVoidMethod();
1955
  const std::string output2 = GetCapturedStdout();
1956
  EXPECT_PRED_FORMAT2(IsSubstring, "NonVoidMethod(", output2);
1957

1958
#endif  // NDEBUG
1959
1960
}

1961
1962
1963
1964
// Tests that an uninteresting mock function call on a naggy mock
// causes the function arguments and return value to be printed.
TEST(FunctionCallMessageTest,
     UninterestingCallOnNaggyMockPrintsArgumentsAndReturnValue) {
1965
  // A non-void mock function.
1966
  NaggyMock<MockB> b;
1967
  CaptureStdout();
1968
  b.DoB();
1969
  const std::string output1 = GetCapturedStdout();
1970
1971
1972
1973
  EXPECT_PRED_FORMAT2(
      IsSubstring,
      "Uninteresting mock function call - returning default value.\n"
      "    Function call: DoB()\n"
1974
1975
      "          Returns: 0\n",
      output1.c_str());
1976
1977
1978
  // Makes sure the return value is printed.

  // A void mock function.
1979
  NaggyMock<MockC> c;
1980
  CaptureStdout();
1981
  c.VoidMethod(false, 5, "Hi", nullptr, Printable(), Unprintable());
1982
  const std::string output2 = GetCapturedStdout();
1983
1984
1985
1986
1987
1988
  EXPECT_THAT(
      output2.c_str(),
      ContainsRegex("Uninteresting mock function call - returning directly\\.\n"
                    "    Function call: VoidMethod"
                    "\\(false, 5, \"Hi\", NULL, @.+ "
                    "Printable, 4-byte object <00-00 00-00>\\)"));
1989
1990
1991
1992
1993
  // A void function has no return value to print.
}

// Tests how the --gmock_verbose flag affects Google Mock's output.

1994
class GMockVerboseFlagTest : public VerboseFlagPreservingFixture {
1995
1996
1997
1998
1999
 public:
  // Verifies that the given Google Mock output is correct.  (When
  // should_print is true, the output should match the given regex and
  // contain the given function name in the stack trace.  When it's
  // false, the output should be empty.)
2000
  void VerifyOutput(const std::string& output, bool should_print,
2001
2002
                    const std::string& expected_substring,
                    const std::string& function_name) {
2003
    if (should_print) {
2004
      EXPECT_THAT(output.c_str(), HasSubstr(expected_substring));
2005
#ifndef NDEBUG
2006
2007
      // We check the stack trace content in dbg-mode only, as opt-mode
      // may inline the call we are interested in seeing.
2008
      EXPECT_THAT(output.c_str(), HasSubstr(function_name));
2009
#else
2010
2011
      // Suppresses 'unused function parameter' warnings.
      static_cast<void>(function_name);
2012
#endif  // NDEBUG
2013
    } else {
2014
      EXPECT_STREQ("", output.c_str());
2015
2016
2017
2018
2019
2020
2021
    }
  }

  // Tests how the flag affects expected calls.
  void TestExpectedCall(bool should_print) {
    MockA a;
    EXPECT_CALL(a, DoA(5));
2022
    EXPECT_CALL(a, Binary(_, 1)).WillOnce(Return(true));
2023
2024

    // A void-returning function.
2025
    CaptureStdout();
2026
    a.DoA(5);
2027
2028
2029
2030
2031
    VerifyOutput(GetCapturedStdout(), should_print,
                 "Mock function call matches EXPECT_CALL(a, DoA(5))...\n"
                 "    Function call: DoA(5)\n"
                 "Stack trace:\n",
                 "DoA");
2032
2033

    // A non-void-returning function.
2034
    CaptureStdout();
2035
    a.Binary(2, 1);
2036
2037
2038
2039
2040
2041
    VerifyOutput(GetCapturedStdout(), should_print,
                 "Mock function call matches EXPECT_CALL(a, Binary(_, 1))...\n"
                 "    Function call: Binary(2, 1)\n"
                 "          Returns: true\n"
                 "Stack trace:\n",
                 "Binary");
2042
2043
  }

2044
2045
2046
  // Tests how the flag affects uninteresting calls on a naggy mock.
  void TestUninterestingCallOnNaggyMock(bool should_print) {
    NaggyMock<MockA> a;
2047
    const std::string note =
2048
2049
2050
        "NOTE: You can safely ignore the above warning unless this "
        "call should not happen.  Do not suppress it by blindly adding "
        "an EXPECT_CALL() if you don't mean to enforce the call.  "
Gennadiy Civil's avatar
 
Gennadiy Civil committed
2051
        "See "
assafpr's avatar
assafpr committed
2052
        "https://github.com/google/googletest/blob/main/docs/"
Abseil Team's avatar
Abseil Team committed
2053
        "gmock_cook_book.md#"
2054
        "knowing-when-to-expect-useoncall for details.";
2055
2056

    // A void-returning function.
2057
    CaptureStdout();
2058
    a.DoA(5);
2059
2060
2061
2062
2063
2064
    VerifyOutput(GetCapturedStdout(), should_print,
                 "\nGMOCK WARNING:\n"
                 "Uninteresting mock function call - returning directly.\n"
                 "    Function call: DoA(5)\n" +
                     note,
                 "DoA");
2065
2066

    // A non-void-returning function.
2067
    CaptureStdout();
2068
    a.Binary(2, 1);
2069
2070
2071
2072
2073
2074
2075
    VerifyOutput(GetCapturedStdout(), should_print,
                 "\nGMOCK WARNING:\n"
                 "Uninteresting mock function call - returning default value.\n"
                 "    Function call: Binary(2, 1)\n"
                 "          Returns: false\n" +
                     note,
                 "Binary");
2076
2077
2078
2079
2080
2081
  }
};

// Tests that --gmock_verbose=info causes both expected and
// uninteresting calls to be reported.
TEST_F(GMockVerboseFlagTest, Info) {
Abseil Team's avatar
Abseil Team committed
2082
  GMOCK_FLAG_SET(verbose, kInfoVerbosity);
2083
  TestExpectedCall(true);
2084
  TestUninterestingCallOnNaggyMock(true);
2085
2086
2087
2088
2089
}

// Tests that --gmock_verbose=warning causes uninteresting calls to be
// reported.
TEST_F(GMockVerboseFlagTest, Warning) {
Abseil Team's avatar
Abseil Team committed
2090
  GMOCK_FLAG_SET(verbose, kWarningVerbosity);
2091
  TestExpectedCall(false);
2092
  TestUninterestingCallOnNaggyMock(true);
2093
2094
2095
2096
2097
}

// Tests that --gmock_verbose=warning causes neither expected nor
// uninteresting calls to be reported.
TEST_F(GMockVerboseFlagTest, Error) {
Abseil Team's avatar
Abseil Team committed
2098
  GMOCK_FLAG_SET(verbose, kErrorVerbosity);
2099
  TestExpectedCall(false);
2100
  TestUninterestingCallOnNaggyMock(false);
2101
2102
2103
2104
2105
}

// Tests that --gmock_verbose=SOME_INVALID_VALUE has the same effect
// as --gmock_verbose=warning.
TEST_F(GMockVerboseFlagTest, InvalidFlagIsTreatedAsWarning) {
Abseil Team's avatar
Abseil Team committed
2106
  GMOCK_FLAG_SET(verbose, "invalid");  // Treated as "warning".
2107
  TestExpectedCall(false);
2108
  TestUninterestingCallOnNaggyMock(true);
2109
2110
}

2111
#endif  // GTEST_HAS_STREAM_REDIRECTION
2112

2113
2114
2115
2116
2117
2118
2119
2120
2121
2122
2123
2124
// A helper class that generates a failure when printed.  We use it to
// ensure that Google Mock doesn't print a value (even to an internal
// buffer) when it is not supposed to do so.
class PrintMeNot {};

void PrintTo(PrintMeNot /* dummy */, ::std::ostream* /* os */) {
  ADD_FAILURE() << "Google Mock is printing a value that shouldn't be "
                << "printed even to an internal buffer.";
}

class LogTestHelper {
 public:
2125
  LogTestHelper() = default;
2126

2127
  MOCK_METHOD1(Foo, PrintMeNot(PrintMeNot));
2128
2129

 private:
2130
2131
  LogTestHelper(const LogTestHelper&) = delete;
  LogTestHelper& operator=(const LogTestHelper&) = delete;
2132
2133
};

2134
class GMockLogTest : public VerboseFlagPreservingFixture {
2135
2136
2137
2138
2139
 protected:
  LogTestHelper helper_;
};

TEST_F(GMockLogTest, DoesNotPrintGoodCallInternallyIfVerbosityIsWarning) {
Abseil Team's avatar
Abseil Team committed
2140
  GMOCK_FLAG_SET(verbose, kWarningVerbosity);
2141
  EXPECT_CALL(helper_, Foo(_)).WillOnce(Return(PrintMeNot()));
2142
2143
2144
2145
  helper_.Foo(PrintMeNot());  // This is an expected call.
}

TEST_F(GMockLogTest, DoesNotPrintGoodCallInternallyIfVerbosityIsError) {
Abseil Team's avatar
Abseil Team committed
2146
  GMOCK_FLAG_SET(verbose, kErrorVerbosity);
2147
  EXPECT_CALL(helper_, Foo(_)).WillOnce(Return(PrintMeNot()));
2148
2149
2150
2151
  helper_.Foo(PrintMeNot());  // This is an expected call.
}

TEST_F(GMockLogTest, DoesNotPrintWarningInternallyIfVerbosityIsError) {
Abseil Team's avatar
Abseil Team committed
2152
  GMOCK_FLAG_SET(verbose, kErrorVerbosity);
2153
  ON_CALL(helper_, Foo(_)).WillByDefault(Return(PrintMeNot()));
2154
2155
2156
2157
2158
  helper_.Foo(PrintMeNot());  // This should generate a warning.
}

// Tests Mock::AllowLeak().

2159
2160
2161
2162
2163
2164
2165
2166
2167
2168
2169
2170
2171
2172
2173
2174
2175
2176
2177
2178
2179
2180
2181
2182
2183
2184
2185
2186
2187
2188
2189
2190
2191
2192
2193
2194
2195
TEST(AllowLeakTest, AllowsLeakingUnusedMockObject) {
  MockA* a = new MockA;
  Mock::AllowLeak(a);
}

TEST(AllowLeakTest, CanBeCalledBeforeOnCall) {
  MockA* a = new MockA;
  Mock::AllowLeak(a);
  ON_CALL(*a, DoA(_)).WillByDefault(Return());
  a->DoA(0);
}

TEST(AllowLeakTest, CanBeCalledAfterOnCall) {
  MockA* a = new MockA;
  ON_CALL(*a, DoA(_)).WillByDefault(Return());
  Mock::AllowLeak(a);
}

TEST(AllowLeakTest, CanBeCalledBeforeExpectCall) {
  MockA* a = new MockA;
  Mock::AllowLeak(a);
  EXPECT_CALL(*a, DoA(_));
  a->DoA(0);
}

TEST(AllowLeakTest, CanBeCalledAfterExpectCall) {
  MockA* a = new MockA;
  EXPECT_CALL(*a, DoA(_)).Times(AnyNumber());
  Mock::AllowLeak(a);
}

TEST(AllowLeakTest, WorksWhenBothOnCallAndExpectCallArePresent) {
  MockA* a = new MockA;
  ON_CALL(*a, DoA(_)).WillByDefault(Return());
  EXPECT_CALL(*a, DoA(_)).Times(AnyNumber());
  Mock::AllowLeak(a);
}
2196
2197
2198
2199
2200
2201
2202
2203
2204
2205
2206
2207
2208
2209
2210
2211
2212
2213

// Tests that we can verify and clear a mock object's expectations
// when none of its methods has expectations.
TEST(VerifyAndClearExpectationsTest, NoMethodHasExpectations) {
  MockB b;
  ASSERT_TRUE(Mock::VerifyAndClearExpectations(&b));

  // There should be no expectations on the methods now, so we can
  // freely call them.
  EXPECT_EQ(0, b.DoB());
  EXPECT_EQ(0, b.DoB(1));
}

// Tests that we can verify and clear a mock object's expectations
// when some, but not all, of its methods have expectations *and* the
// verification succeeds.
TEST(VerifyAndClearExpectationsTest, SomeMethodsHaveExpectationsAndSucceed) {
  MockB b;
2214
  EXPECT_CALL(b, DoB()).WillOnce(Return(1));
2215
2216
2217
2218
2219
2220
2221
2222
2223
2224
2225
2226
2227
2228
  b.DoB();
  ASSERT_TRUE(Mock::VerifyAndClearExpectations(&b));

  // There should be no expectations on the methods now, so we can
  // freely call them.
  EXPECT_EQ(0, b.DoB());
  EXPECT_EQ(0, b.DoB(1));
}

// Tests that we can verify and clear a mock object's expectations
// when some, but not all, of its methods have expectations *and* the
// verification fails.
TEST(VerifyAndClearExpectationsTest, SomeMethodsHaveExpectationsAndFail) {
  MockB b;
2229
  EXPECT_CALL(b, DoB()).WillOnce(Return(1));
2230
  bool result = true;
2231
2232
2233
2234
2235
2236
2237
2238
2239
2240
2241
2242
2243
2244
  EXPECT_NONFATAL_FAILURE(result = Mock::VerifyAndClearExpectations(&b),
                          "Actual: never called");
  ASSERT_FALSE(result);

  // There should be no expectations on the methods now, so we can
  // freely call them.
  EXPECT_EQ(0, b.DoB());
  EXPECT_EQ(0, b.DoB(1));
}

// Tests that we can verify and clear a mock object's expectations
// when all of its methods have expectations.
TEST(VerifyAndClearExpectationsTest, AllMethodsHaveExpectations) {
  MockB b;
2245
2246
  EXPECT_CALL(b, DoB()).WillOnce(Return(1));
  EXPECT_CALL(b, DoB(_)).WillOnce(Return(2));
2247
2248
2249
2250
2251
2252
2253
2254
2255
2256
2257
2258
2259
2260
  b.DoB();
  b.DoB(1);
  ASSERT_TRUE(Mock::VerifyAndClearExpectations(&b));

  // There should be no expectations on the methods now, so we can
  // freely call them.
  EXPECT_EQ(0, b.DoB());
  EXPECT_EQ(0, b.DoB(1));
}

// Tests that we can verify and clear a mock object's expectations
// when a method has more than one expectation.
TEST(VerifyAndClearExpectationsTest, AMethodHasManyExpectations) {
  MockB b;
2261
2262
  EXPECT_CALL(b, DoB(0)).WillOnce(Return(1));
  EXPECT_CALL(b, DoB(_)).WillOnce(Return(2));
2263
  b.DoB(1);
2264
  bool result = true;
2265
2266
2267
2268
2269
2270
2271
2272
2273
2274
2275
2276
2277
2278
2279
2280
2281
2282
  EXPECT_NONFATAL_FAILURE(result = Mock::VerifyAndClearExpectations(&b),
                          "Actual: never called");
  ASSERT_FALSE(result);

  // There should be no expectations on the methods now, so we can
  // freely call them.
  EXPECT_EQ(0, b.DoB());
  EXPECT_EQ(0, b.DoB(1));
}

// Tests that we can call VerifyAndClearExpectations() on the same
// mock object multiple times.
TEST(VerifyAndClearExpectationsTest, CanCallManyTimes) {
  MockB b;
  EXPECT_CALL(b, DoB());
  b.DoB();
  Mock::VerifyAndClearExpectations(&b);

2283
  EXPECT_CALL(b, DoB(_)).WillOnce(Return(1));
2284
2285
2286
2287
2288
2289
2290
2291
2292
2293
2294
2295
2296
2297
2298
2299
2300
2301
2302
2303
2304
2305
2306
  b.DoB(1);
  Mock::VerifyAndClearExpectations(&b);
  Mock::VerifyAndClearExpectations(&b);

  // There should be no expectations on the methods now, so we can
  // freely call them.
  EXPECT_EQ(0, b.DoB());
  EXPECT_EQ(0, b.DoB(1));
}

// Tests that we can clear a mock object's default actions when none
// of its methods has default actions.
TEST(VerifyAndClearTest, NoMethodHasDefaultActions) {
  MockB b;
  // If this crashes or generates a failure, the test will catch it.
  Mock::VerifyAndClear(&b);
  EXPECT_EQ(0, b.DoB());
}

// Tests that we can clear a mock object's default actions when some,
// but not all of its methods have default actions.
TEST(VerifyAndClearTest, SomeMethodsHaveDefaultActions) {
  MockB b;
2307
  ON_CALL(b, DoB()).WillByDefault(Return(1));
2308
2309
2310
2311
2312
2313
2314
2315
2316
2317
2318

  Mock::VerifyAndClear(&b);

  // Verifies that the default action of int DoB() was removed.
  EXPECT_EQ(0, b.DoB());
}

// Tests that we can clear a mock object's default actions when all of
// its methods have default actions.
TEST(VerifyAndClearTest, AllMethodsHaveDefaultActions) {
  MockB b;
2319
2320
  ON_CALL(b, DoB()).WillByDefault(Return(1));
  ON_CALL(b, DoB(_)).WillByDefault(Return(2));
2321
2322
2323
2324
2325
2326
2327
2328
2329
2330
2331
2332
2333
2334

  Mock::VerifyAndClear(&b);

  // Verifies that the default action of int DoB() was removed.
  EXPECT_EQ(0, b.DoB());

  // Verifies that the default action of int DoB(int) was removed.
  EXPECT_EQ(0, b.DoB(0));
}

// Tests that we can clear a mock object's default actions when a
// method has more than one ON_CALL() set on it.
TEST(VerifyAndClearTest, AMethodHasManyDefaultActions) {
  MockB b;
2335
2336
  ON_CALL(b, DoB(0)).WillByDefault(Return(1));
  ON_CALL(b, DoB(_)).WillByDefault(Return(2));
2337
2338
2339
2340
2341
2342
2343
2344
2345
2346
2347
2348
2349

  Mock::VerifyAndClear(&b);

  // Verifies that the default actions (there are two) of int DoB(int)
  // were removed.
  EXPECT_EQ(0, b.DoB(0));
  EXPECT_EQ(0, b.DoB(1));
}

// Tests that we can call VerifyAndClear() on a mock object multiple
// times.
TEST(VerifyAndClearTest, CanCallManyTimes) {
  MockB b;
2350
  ON_CALL(b, DoB()).WillByDefault(Return(1));
2351
2352
2353
  Mock::VerifyAndClear(&b);
  Mock::VerifyAndClear(&b);

2354
  ON_CALL(b, DoB(_)).WillByDefault(Return(1));
2355
2356
2357
2358
2359
2360
2361
2362
2363
  Mock::VerifyAndClear(&b);

  EXPECT_EQ(0, b.DoB());
  EXPECT_EQ(0, b.DoB(1));
}

// Tests that VerifyAndClear() works when the verification succeeds.
TEST(VerifyAndClearTest, Success) {
  MockB b;
2364
2365
  ON_CALL(b, DoB()).WillByDefault(Return(1));
  EXPECT_CALL(b, DoB(1)).WillOnce(Return(2));
2366
2367
2368
2369
2370
2371
2372
2373
2374
2375
2376
2377
2378
2379

  b.DoB();
  b.DoB(1);
  ASSERT_TRUE(Mock::VerifyAndClear(&b));

  // There should be no expectations on the methods now, so we can
  // freely call them.
  EXPECT_EQ(0, b.DoB());
  EXPECT_EQ(0, b.DoB(1));
}

// Tests that VerifyAndClear() works when the verification fails.
TEST(VerifyAndClearTest, Failure) {
  MockB b;
2380
2381
  ON_CALL(b, DoB(_)).WillByDefault(Return(1));
  EXPECT_CALL(b, DoB()).WillOnce(Return(2));
2382
2383

  b.DoB(1);
2384
  bool result = true;
2385
2386
2387
2388
2389
2390
2391
2392
2393
2394
2395
2396
2397
2398
  EXPECT_NONFATAL_FAILURE(result = Mock::VerifyAndClear(&b),
                          "Actual: never called");
  ASSERT_FALSE(result);

  // There should be no expectations on the methods now, so we can
  // freely call them.
  EXPECT_EQ(0, b.DoB());
  EXPECT_EQ(0, b.DoB(1));
}

// Tests that VerifyAndClear() works when the default actions and
// expectations are set on a const mock object.
TEST(VerifyAndClearTest, Const) {
  MockB b;
2399
  ON_CALL(Const(b), DoB()).WillByDefault(Return(1));
2400

2401
  EXPECT_CALL(Const(b), DoB()).WillOnce(DoDefault()).WillOnce(Return(2));
2402
2403
2404
2405
2406
2407
2408
2409
2410
2411
2412
2413
2414
2415
2416

  b.DoB();
  b.DoB();
  ASSERT_TRUE(Mock::VerifyAndClear(&b));

  // There should be no expectations on the methods now, so we can
  // freely call them.
  EXPECT_EQ(0, b.DoB());
  EXPECT_EQ(0, b.DoB(1));
}

// Tests that we can set default actions and expectations on a mock
// object after VerifyAndClear() has been called on it.
TEST(VerifyAndClearTest, CanSetDefaultActionsAndExpectationsAfterwards) {
  MockB b;
2417
2418
  ON_CALL(b, DoB()).WillByDefault(Return(1));
  EXPECT_CALL(b, DoB(_)).WillOnce(Return(2));
2419
2420
2421
2422
  b.DoB(1);

  Mock::VerifyAndClear(&b);

2423
2424
  EXPECT_CALL(b, DoB()).WillOnce(Return(3));
  ON_CALL(b, DoB(_)).WillByDefault(Return(4));
2425
2426
2427
2428
2429
2430
2431
2432
2433
2434
2435
2436

  EXPECT_EQ(3, b.DoB());
  EXPECT_EQ(4, b.DoB(1));
}

// Tests that calling VerifyAndClear() on one mock object does not
// affect other mock objects (either of the same type or not).
TEST(VerifyAndClearTest, DoesNotAffectOtherMockObjects) {
  MockA a;
  MockB b1;
  MockB b2;

2437
2438
  ON_CALL(a, Binary(_, _)).WillByDefault(Return(true));
  EXPECT_CALL(a, Binary(_, _)).WillOnce(DoDefault()).WillOnce(Return(false));
2439

2440
2441
  ON_CALL(b1, DoB()).WillByDefault(Return(1));
  EXPECT_CALL(b1, DoB(_)).WillOnce(Return(2));
2442

2443
  ON_CALL(b2, DoB()).WillByDefault(Return(3));
2444
2445
2446
2447
2448
2449
2450
2451
2452
2453
2454
2455
2456
2457
  EXPECT_CALL(b2, DoB(_));

  b2.DoB(0);
  Mock::VerifyAndClear(&b2);

  // Verifies that the default actions and expectations of a and b1
  // are still in effect.
  EXPECT_TRUE(a.Binary(0, 0));
  EXPECT_FALSE(a.Binary(0, 0));

  EXPECT_EQ(1, b1.DoB());
  EXPECT_EQ(2, b1.DoB(0));
}

2458
2459
TEST(VerifyAndClearTest,
     DestroyingChainedMocksDoesNotDeadlockThroughExpectations) {
misterg's avatar
misterg committed
2460
  std::shared_ptr<MockA> a(new MockA);
2461
2462
2463
2464
2465
2466
2467
2468
2469
2470
2471
2472
2473
2474
2475
2476
2477
2478
2479
  ReferenceHoldingMock test_mock;

  // EXPECT_CALL stores a reference to a inside test_mock.
  EXPECT_CALL(test_mock, AcceptReference(_))
      .WillRepeatedly(SetArgPointee<0>(a));

  // Throw away the reference to the mock that we have in a. After this, the
  // only reference to it is stored by test_mock.
  a.reset();

  // When test_mock goes out of scope, it destroys the last remaining reference
  // to the mock object originally pointed to by a. This will cause the MockA
  // destructor to be called from inside the ReferenceHoldingMock destructor.
  // The state of all mocks is protected by a single global lock, but there
  // should be no deadlock.
}

TEST(VerifyAndClearTest,
     DestroyingChainedMocksDoesNotDeadlockThroughDefaultAction) {
misterg's avatar
misterg committed
2480
  std::shared_ptr<MockA> a(new MockA);
2481
2482
2483
  ReferenceHoldingMock test_mock;

  // ON_CALL stores a reference to a inside test_mock.
2484
  ON_CALL(test_mock, AcceptReference(_)).WillByDefault(SetArgPointee<0>(a));
2485
2486
2487
2488
2489
2490
2491
2492
2493
2494
2495
2496

  // Throw away the reference to the mock that we have in a. After this, the
  // only reference to it is stored by test_mock.
  a.reset();

  // When test_mock goes out of scope, it destroys the last remaining reference
  // to the mock object originally pointed to by a. This will cause the MockA
  // destructor to be called from inside the ReferenceHoldingMock destructor.
  // The state of all mocks is protected by a single global lock, but there
  // should be no deadlock.
}

2497
2498
2499
2500
2501
// Tests that a mock function's action can call a mock function
// (either the same function or a different one) either as an explicit
// action or as a default action without causing a dead lock.  It
// verifies that the action is not performed inside the critical
// section.
vladlosev's avatar
vladlosev committed
2502
2503
2504
TEST(SynchronizationTest, CanCallMockMethodInAction) {
  MockA a;
  MockC c;
2505
2506
  ON_CALL(a, DoA(_)).WillByDefault(
      IgnoreResult(InvokeWithoutArgs(&c, &MockC::NonVoidMethod)));
vladlosev's avatar
vladlosev committed
2507
2508
2509
2510
2511
  EXPECT_CALL(a, DoA(1));
  EXPECT_CALL(a, DoA(1))
      .WillOnce(Invoke(&a, &MockA::DoA))
      .RetiresOnSaturation();
  EXPECT_CALL(c, NonVoidMethod());
2512

vladlosev's avatar
vladlosev committed
2513
2514
2515
2516
2517
  a.DoA(1);
  // This will match the second EXPECT_CALL() and trigger another a.DoA(1),
  // which will in turn match the first EXPECT_CALL() and trigger a call to
  // c.NonVoidMethod() that was specified by the ON_CALL() since the first
  // EXPECT_CALL() did not specify an action.
2518
2519
}

2520
2521
2522
2523
2524
2525
2526
2527
2528
2529
2530
2531
2532
2533
2534
2535
2536
2537
2538
2539
2540
2541
2542
2543
2544
2545
2546
2547
2548
2549
2550
2551
2552
2553
2554
2555
2556
2557
2558
2559
2560
2561
2562
2563
2564
2565
2566
2567
2568
2569
2570
2571
2572
2573
2574
2575
2576
2577
2578
2579
2580
2581
2582
2583
2584
2585
2586
2587
2588
TEST(ParameterlessExpectationsTest, CanSetExpectationsWithoutMatchers) {
  MockA a;
  int do_a_arg0 = 0;
  ON_CALL(a, DoA).WillByDefault(SaveArg<0>(&do_a_arg0));
  int do_a_47_arg0 = 0;
  ON_CALL(a, DoA(47)).WillByDefault(SaveArg<0>(&do_a_47_arg0));

  a.DoA(17);
  EXPECT_THAT(do_a_arg0, 17);
  EXPECT_THAT(do_a_47_arg0, 0);
  a.DoA(47);
  EXPECT_THAT(do_a_arg0, 17);
  EXPECT_THAT(do_a_47_arg0, 47);

  ON_CALL(a, Binary).WillByDefault(Return(true));
  ON_CALL(a, Binary(_, 14)).WillByDefault(Return(false));
  EXPECT_THAT(a.Binary(14, 17), true);
  EXPECT_THAT(a.Binary(17, 14), false);
}

TEST(ParameterlessExpectationsTest, CanSetExpectationsForOverloadedMethods) {
  MockB b;
  ON_CALL(b, DoB()).WillByDefault(Return(9));
  ON_CALL(b, DoB(5)).WillByDefault(Return(11));

  EXPECT_THAT(b.DoB(), 9);
  EXPECT_THAT(b.DoB(1), 0);  // default value
  EXPECT_THAT(b.DoB(5), 11);
}

struct MockWithConstMethods {
 public:
  MOCK_CONST_METHOD1(Foo, int(int));
  MOCK_CONST_METHOD2(Bar, int(int, const char*));
};

TEST(ParameterlessExpectationsTest, CanSetExpectationsForConstMethods) {
  MockWithConstMethods mock;
  ON_CALL(mock, Foo).WillByDefault(Return(7));
  ON_CALL(mock, Bar).WillByDefault(Return(33));

  EXPECT_THAT(mock.Foo(17), 7);
  EXPECT_THAT(mock.Bar(27, "purple"), 33);
}

class MockConstOverload {
 public:
  MOCK_METHOD1(Overloaded, int(int));
  MOCK_CONST_METHOD1(Overloaded, int(int));
};

TEST(ParameterlessExpectationsTest,
     CanSetExpectationsForConstOverloadedMethods) {
  MockConstOverload mock;
  ON_CALL(mock, Overloaded(_)).WillByDefault(Return(7));
  ON_CALL(mock, Overloaded(5)).WillByDefault(Return(9));
  ON_CALL(Const(mock), Overloaded(5)).WillByDefault(Return(11));
  ON_CALL(Const(mock), Overloaded(7)).WillByDefault(Return(13));

  EXPECT_THAT(mock.Overloaded(1), 7);
  EXPECT_THAT(mock.Overloaded(5), 9);
  EXPECT_THAT(mock.Overloaded(7), 7);

  const MockConstOverload& const_mock = mock;
  EXPECT_THAT(const_mock.Overloaded(1), 0);
  EXPECT_THAT(const_mock.Overloaded(5), 11);
  EXPECT_THAT(const_mock.Overloaded(7), 13);
}

2589
}  // namespace
2590
}  // namespace testing
2591

2592
int main(int argc, char** argv) {
2593
2594
2595
  testing::InitGoogleMock(&argc, argv);
  // Ensures that the tests pass no matter what value of
  // --gmock_catch_leaked_mocks and --gmock_verbose the user specifies.
Abseil Team's avatar
Abseil Team committed
2596
2597
  GMOCK_FLAG_SET(catch_leaked_mocks, true);
  GMOCK_FLAG_SET(verbose, testing::internal::kWarningVerbosity);
2598
2599
2600

  return RUN_ALL_TESTS();
}