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shiqiane35fdd92008-12-10 05:08:54 +00001// Copyright 2007, Google Inc.
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29//
30// Author: wan@google.com (Zhanyong Wan)
31
32// Google Mock - a framework for writing C++ mock classes.
33//
34// This file tests the built-in actions.
35
zhanyong.wan53e08c42010-09-14 05:38:21 +000036#include "gmock/gmock-actions.h"
shiqiane35fdd92008-12-10 05:08:54 +000037#include <algorithm>
38#include <iterator>
39#include <string>
zhanyong.wan53e08c42010-09-14 05:38:21 +000040#include "gmock/gmock.h"
41#include "gmock/internal/gmock-port.h"
42#include "gtest/gtest.h"
43#include "gtest/gtest-spi.h"
shiqiane35fdd92008-12-10 05:08:54 +000044
45namespace {
46
47using ::std::tr1::get;
48using ::std::tr1::make_tuple;
49using ::std::tr1::tuple;
50using ::std::tr1::tuple_element;
51using testing::internal::BuiltInDefaultValue;
52using testing::internal::Int64;
53using testing::internal::UInt64;
54// This list should be kept sorted.
55using testing::_;
56using testing::Action;
57using testing::ActionInterface;
58using testing::Assign;
zhanyong.wana18423e2009-07-22 23:58:19 +000059using testing::ByRef;
shiqiane35fdd92008-12-10 05:08:54 +000060using testing::DefaultValue;
61using testing::DoDefault;
62using testing::IgnoreResult;
63using testing::Invoke;
64using testing::InvokeWithoutArgs;
65using testing::MakePolymorphicAction;
66using testing::Ne;
67using testing::PolymorphicAction;
68using testing::Return;
69using testing::ReturnNull;
70using testing::ReturnRef;
zhanyong.wane3bd0982010-07-03 00:16:42 +000071using testing::ReturnRefOfCopy;
zhanyong.wan59214832010-10-05 05:58:51 +000072using testing::SetArgPointee;
shiqiane35fdd92008-12-10 05:08:54 +000073using testing::SetArgumentPointee;
zhanyong.wan5b5d62f2009-03-11 23:37:56 +000074
zhanyong.wanf7af24c2009-09-24 21:17:24 +000075#if !GTEST_OS_WINDOWS_MOBILE
shiqiane35fdd92008-12-10 05:08:54 +000076using testing::SetErrnoAndReturn;
zhanyong.wanf7af24c2009-09-24 21:17:24 +000077#endif
shiqiane35fdd92008-12-10 05:08:54 +000078
zhanyong.wan02f71062010-05-10 17:14:29 +000079#if GTEST_HAS_PROTOBUF_
shiqiane35fdd92008-12-10 05:08:54 +000080using testing::internal::TestMessage;
zhanyong.wan02f71062010-05-10 17:14:29 +000081#endif // GTEST_HAS_PROTOBUF_
shiqiane35fdd92008-12-10 05:08:54 +000082
83// Tests that BuiltInDefaultValue<T*>::Get() returns NULL.
84TEST(BuiltInDefaultValueTest, IsNullForPointerTypes) {
85 EXPECT_TRUE(BuiltInDefaultValue<int*>::Get() == NULL);
86 EXPECT_TRUE(BuiltInDefaultValue<const char*>::Get() == NULL);
87 EXPECT_TRUE(BuiltInDefaultValue<void*>::Get() == NULL);
88}
89
zhanyong.wan5b95fa72009-01-27 22:28:45 +000090// Tests that BuiltInDefaultValue<T*>::Exists() return true.
91TEST(BuiltInDefaultValueTest, ExistsForPointerTypes) {
92 EXPECT_TRUE(BuiltInDefaultValue<int*>::Exists());
93 EXPECT_TRUE(BuiltInDefaultValue<const char*>::Exists());
94 EXPECT_TRUE(BuiltInDefaultValue<void*>::Exists());
95}
96
shiqiane35fdd92008-12-10 05:08:54 +000097// Tests that BuiltInDefaultValue<T>::Get() returns 0 when T is a
98// built-in numeric type.
99TEST(BuiltInDefaultValueTest, IsZeroForNumericTypes) {
zhanyong.wan32de5f52009-12-23 00:13:23 +0000100 EXPECT_EQ(0U, BuiltInDefaultValue<unsigned char>::Get());
shiqiane35fdd92008-12-10 05:08:54 +0000101 EXPECT_EQ(0, BuiltInDefaultValue<signed char>::Get());
102 EXPECT_EQ(0, BuiltInDefaultValue<char>::Get());
zhanyong.wan95b12332009-09-25 18:55:50 +0000103#if GMOCK_HAS_SIGNED_WCHAR_T_
zhanyong.wan32de5f52009-12-23 00:13:23 +0000104 EXPECT_EQ(0U, BuiltInDefaultValue<unsigned wchar_t>::Get());
shiqiane35fdd92008-12-10 05:08:54 +0000105 EXPECT_EQ(0, BuiltInDefaultValue<signed wchar_t>::Get());
zhanyong.wan95b12332009-09-25 18:55:50 +0000106#endif
107#if GMOCK_WCHAR_T_IS_NATIVE_
shiqiane35fdd92008-12-10 05:08:54 +0000108 EXPECT_EQ(0, BuiltInDefaultValue<wchar_t>::Get());
zhanyong.wan95b12332009-09-25 18:55:50 +0000109#endif
zhanyong.wan32de5f52009-12-23 00:13:23 +0000110 EXPECT_EQ(0U, BuiltInDefaultValue<unsigned short>::Get()); // NOLINT
shiqiane35fdd92008-12-10 05:08:54 +0000111 EXPECT_EQ(0, BuiltInDefaultValue<signed short>::Get()); // NOLINT
112 EXPECT_EQ(0, BuiltInDefaultValue<short>::Get()); // NOLINT
zhanyong.wan32de5f52009-12-23 00:13:23 +0000113 EXPECT_EQ(0U, BuiltInDefaultValue<unsigned int>::Get());
shiqiane35fdd92008-12-10 05:08:54 +0000114 EXPECT_EQ(0, BuiltInDefaultValue<signed int>::Get());
115 EXPECT_EQ(0, BuiltInDefaultValue<int>::Get());
zhanyong.wan32de5f52009-12-23 00:13:23 +0000116 EXPECT_EQ(0U, BuiltInDefaultValue<unsigned long>::Get()); // NOLINT
shiqiane35fdd92008-12-10 05:08:54 +0000117 EXPECT_EQ(0, BuiltInDefaultValue<signed long>::Get()); // NOLINT
118 EXPECT_EQ(0, BuiltInDefaultValue<long>::Get()); // NOLINT
zhanyong.wan32de5f52009-12-23 00:13:23 +0000119 EXPECT_EQ(0U, BuiltInDefaultValue<UInt64>::Get());
shiqiane35fdd92008-12-10 05:08:54 +0000120 EXPECT_EQ(0, BuiltInDefaultValue<Int64>::Get());
121 EXPECT_EQ(0, BuiltInDefaultValue<float>::Get());
122 EXPECT_EQ(0, BuiltInDefaultValue<double>::Get());
123}
124
zhanyong.wan5b95fa72009-01-27 22:28:45 +0000125// Tests that BuiltInDefaultValue<T>::Exists() returns true when T is a
126// built-in numeric type.
127TEST(BuiltInDefaultValueTest, ExistsForNumericTypes) {
128 EXPECT_TRUE(BuiltInDefaultValue<unsigned char>::Exists());
129 EXPECT_TRUE(BuiltInDefaultValue<signed char>::Exists());
130 EXPECT_TRUE(BuiltInDefaultValue<char>::Exists());
zhanyong.wan95b12332009-09-25 18:55:50 +0000131#if GMOCK_HAS_SIGNED_WCHAR_T_
zhanyong.wan5b95fa72009-01-27 22:28:45 +0000132 EXPECT_TRUE(BuiltInDefaultValue<unsigned wchar_t>::Exists());
133 EXPECT_TRUE(BuiltInDefaultValue<signed wchar_t>::Exists());
zhanyong.wan95b12332009-09-25 18:55:50 +0000134#endif
135#if GMOCK_WCHAR_T_IS_NATIVE_
zhanyong.wan5b95fa72009-01-27 22:28:45 +0000136 EXPECT_TRUE(BuiltInDefaultValue<wchar_t>::Exists());
zhanyong.wan95b12332009-09-25 18:55:50 +0000137#endif
zhanyong.wan5b95fa72009-01-27 22:28:45 +0000138 EXPECT_TRUE(BuiltInDefaultValue<unsigned short>::Exists()); // NOLINT
139 EXPECT_TRUE(BuiltInDefaultValue<signed short>::Exists()); // NOLINT
140 EXPECT_TRUE(BuiltInDefaultValue<short>::Exists()); // NOLINT
141 EXPECT_TRUE(BuiltInDefaultValue<unsigned int>::Exists());
142 EXPECT_TRUE(BuiltInDefaultValue<signed int>::Exists());
143 EXPECT_TRUE(BuiltInDefaultValue<int>::Exists());
144 EXPECT_TRUE(BuiltInDefaultValue<unsigned long>::Exists()); // NOLINT
145 EXPECT_TRUE(BuiltInDefaultValue<signed long>::Exists()); // NOLINT
146 EXPECT_TRUE(BuiltInDefaultValue<long>::Exists()); // NOLINT
147 EXPECT_TRUE(BuiltInDefaultValue<UInt64>::Exists());
148 EXPECT_TRUE(BuiltInDefaultValue<Int64>::Exists());
149 EXPECT_TRUE(BuiltInDefaultValue<float>::Exists());
150 EXPECT_TRUE(BuiltInDefaultValue<double>::Exists());
151}
152
shiqiane35fdd92008-12-10 05:08:54 +0000153// Tests that BuiltInDefaultValue<bool>::Get() returns false.
154TEST(BuiltInDefaultValueTest, IsFalseForBool) {
155 EXPECT_FALSE(BuiltInDefaultValue<bool>::Get());
156}
157
zhanyong.wan5b95fa72009-01-27 22:28:45 +0000158// Tests that BuiltInDefaultValue<bool>::Exists() returns true.
159TEST(BuiltInDefaultValueTest, BoolExists) {
160 EXPECT_TRUE(BuiltInDefaultValue<bool>::Exists());
161}
162
shiqiane35fdd92008-12-10 05:08:54 +0000163// Tests that BuiltInDefaultValue<T>::Get() returns "" when T is a
164// string type.
165TEST(BuiltInDefaultValueTest, IsEmptyStringForString) {
166#if GTEST_HAS_GLOBAL_STRING
167 EXPECT_EQ("", BuiltInDefaultValue< ::string>::Get());
168#endif // GTEST_HAS_GLOBAL_STRING
169
shiqiane35fdd92008-12-10 05:08:54 +0000170 EXPECT_EQ("", BuiltInDefaultValue< ::std::string>::Get());
shiqiane35fdd92008-12-10 05:08:54 +0000171}
172
zhanyong.wan5b95fa72009-01-27 22:28:45 +0000173// Tests that BuiltInDefaultValue<T>::Exists() returns true when T is a
174// string type.
175TEST(BuiltInDefaultValueTest, ExistsForString) {
176#if GTEST_HAS_GLOBAL_STRING
177 EXPECT_TRUE(BuiltInDefaultValue< ::string>::Exists());
178#endif // GTEST_HAS_GLOBAL_STRING
179
zhanyong.wan5b95fa72009-01-27 22:28:45 +0000180 EXPECT_TRUE(BuiltInDefaultValue< ::std::string>::Exists());
zhanyong.wan5b95fa72009-01-27 22:28:45 +0000181}
182
shiqiane35fdd92008-12-10 05:08:54 +0000183// Tests that BuiltInDefaultValue<const T>::Get() returns the same
184// value as BuiltInDefaultValue<T>::Get() does.
185TEST(BuiltInDefaultValueTest, WorksForConstTypes) {
186 EXPECT_EQ("", BuiltInDefaultValue<const std::string>::Get());
187 EXPECT_EQ(0, BuiltInDefaultValue<const int>::Get());
188 EXPECT_TRUE(BuiltInDefaultValue<char* const>::Get() == NULL);
189 EXPECT_FALSE(BuiltInDefaultValue<const bool>::Get());
190}
191
192// Tests that BuiltInDefaultValue<T>::Get() aborts the program with
193// the correct error message when T is a user-defined type.
194struct UserType {
195 UserType() : value(0) {}
196
197 int value;
198};
199
zhanyong.wan5b95fa72009-01-27 22:28:45 +0000200TEST(BuiltInDefaultValueTest, UserTypeHasNoDefault) {
201 EXPECT_FALSE(BuiltInDefaultValue<UserType>::Exists());
202}
203
shiqiane35fdd92008-12-10 05:08:54 +0000204// Tests that BuiltInDefaultValue<T&>::Get() aborts the program.
205TEST(BuiltInDefaultValueDeathTest, IsUndefinedForReferences) {
zhanyong.wan04d6ed82009-09-11 07:01:08 +0000206 EXPECT_DEATH_IF_SUPPORTED({
shiqiane35fdd92008-12-10 05:08:54 +0000207 BuiltInDefaultValue<int&>::Get();
208 }, "");
zhanyong.wan04d6ed82009-09-11 07:01:08 +0000209 EXPECT_DEATH_IF_SUPPORTED({
shiqiane35fdd92008-12-10 05:08:54 +0000210 BuiltInDefaultValue<const char&>::Get();
211 }, "");
212}
213
214TEST(BuiltInDefaultValueDeathTest, IsUndefinedForUserTypes) {
zhanyong.wan04d6ed82009-09-11 07:01:08 +0000215 EXPECT_DEATH_IF_SUPPORTED({
shiqiane35fdd92008-12-10 05:08:54 +0000216 BuiltInDefaultValue<UserType>::Get();
217 }, "");
218}
219
shiqiane35fdd92008-12-10 05:08:54 +0000220// Tests that DefaultValue<T>::IsSet() is false initially.
221TEST(DefaultValueTest, IsInitiallyUnset) {
222 EXPECT_FALSE(DefaultValue<int>::IsSet());
223 EXPECT_FALSE(DefaultValue<const UserType>::IsSet());
224}
225
226// Tests that DefaultValue<T> can be set and then unset.
227TEST(DefaultValueTest, CanBeSetAndUnset) {
zhanyong.wan5b95fa72009-01-27 22:28:45 +0000228 EXPECT_TRUE(DefaultValue<int>::Exists());
229 EXPECT_FALSE(DefaultValue<const UserType>::Exists());
230
shiqiane35fdd92008-12-10 05:08:54 +0000231 DefaultValue<int>::Set(1);
232 DefaultValue<const UserType>::Set(UserType());
233
234 EXPECT_EQ(1, DefaultValue<int>::Get());
235 EXPECT_EQ(0, DefaultValue<const UserType>::Get().value);
236
zhanyong.wan5b95fa72009-01-27 22:28:45 +0000237 EXPECT_TRUE(DefaultValue<int>::Exists());
238 EXPECT_TRUE(DefaultValue<const UserType>::Exists());
239
shiqiane35fdd92008-12-10 05:08:54 +0000240 DefaultValue<int>::Clear();
241 DefaultValue<const UserType>::Clear();
242
243 EXPECT_FALSE(DefaultValue<int>::IsSet());
244 EXPECT_FALSE(DefaultValue<const UserType>::IsSet());
zhanyong.wan5b95fa72009-01-27 22:28:45 +0000245
246 EXPECT_TRUE(DefaultValue<int>::Exists());
247 EXPECT_FALSE(DefaultValue<const UserType>::Exists());
shiqiane35fdd92008-12-10 05:08:54 +0000248}
249
250// Tests that DefaultValue<T>::Get() returns the
251// BuiltInDefaultValue<T>::Get() when DefaultValue<T>::IsSet() is
252// false.
253TEST(DefaultValueDeathTest, GetReturnsBuiltInDefaultValueWhenUnset) {
254 EXPECT_FALSE(DefaultValue<int>::IsSet());
zhanyong.wan5b95fa72009-01-27 22:28:45 +0000255 EXPECT_TRUE(DefaultValue<int>::Exists());
shiqiane35fdd92008-12-10 05:08:54 +0000256 EXPECT_FALSE(DefaultValue<UserType>::IsSet());
zhanyong.wan5b95fa72009-01-27 22:28:45 +0000257 EXPECT_FALSE(DefaultValue<UserType>::Exists());
shiqiane35fdd92008-12-10 05:08:54 +0000258
259 EXPECT_EQ(0, DefaultValue<int>::Get());
260
zhanyong.wan04d6ed82009-09-11 07:01:08 +0000261 EXPECT_DEATH_IF_SUPPORTED({
shiqiane35fdd92008-12-10 05:08:54 +0000262 DefaultValue<UserType>::Get();
263 }, "");
shiqiane35fdd92008-12-10 05:08:54 +0000264}
265
266// Tests that DefaultValue<void>::Get() returns void.
267TEST(DefaultValueTest, GetWorksForVoid) {
268 return DefaultValue<void>::Get();
269}
270
271// Tests using DefaultValue with a reference type.
272
273// Tests that DefaultValue<T&>::IsSet() is false initially.
274TEST(DefaultValueOfReferenceTest, IsInitiallyUnset) {
275 EXPECT_FALSE(DefaultValue<int&>::IsSet());
276 EXPECT_FALSE(DefaultValue<UserType&>::IsSet());
277}
278
zhanyong.wan5b95fa72009-01-27 22:28:45 +0000279// Tests that DefaultValue<T&>::Exists is false initiallly.
280TEST(DefaultValueOfReferenceTest, IsInitiallyNotExisting) {
281 EXPECT_FALSE(DefaultValue<int&>::Exists());
282 EXPECT_FALSE(DefaultValue<UserType&>::Exists());
283}
284
shiqiane35fdd92008-12-10 05:08:54 +0000285// Tests that DefaultValue<T&> can be set and then unset.
286TEST(DefaultValueOfReferenceTest, CanBeSetAndUnset) {
287 int n = 1;
288 DefaultValue<const int&>::Set(n);
289 UserType u;
290 DefaultValue<UserType&>::Set(u);
291
zhanyong.wan5b95fa72009-01-27 22:28:45 +0000292 EXPECT_TRUE(DefaultValue<const int&>::Exists());
293 EXPECT_TRUE(DefaultValue<UserType&>::Exists());
294
shiqiane35fdd92008-12-10 05:08:54 +0000295 EXPECT_EQ(&n, &(DefaultValue<const int&>::Get()));
296 EXPECT_EQ(&u, &(DefaultValue<UserType&>::Get()));
297
298 DefaultValue<const int&>::Clear();
299 DefaultValue<UserType&>::Clear();
300
zhanyong.wan5b95fa72009-01-27 22:28:45 +0000301 EXPECT_FALSE(DefaultValue<const int&>::Exists());
302 EXPECT_FALSE(DefaultValue<UserType&>::Exists());
303
shiqiane35fdd92008-12-10 05:08:54 +0000304 EXPECT_FALSE(DefaultValue<const int&>::IsSet());
305 EXPECT_FALSE(DefaultValue<UserType&>::IsSet());
306}
307
308// Tests that DefaultValue<T&>::Get() returns the
309// BuiltInDefaultValue<T&>::Get() when DefaultValue<T&>::IsSet() is
310// false.
311TEST(DefaultValueOfReferenceDeathTest, GetReturnsBuiltInDefaultValueWhenUnset) {
312 EXPECT_FALSE(DefaultValue<int&>::IsSet());
313 EXPECT_FALSE(DefaultValue<UserType&>::IsSet());
314
zhanyong.wan04d6ed82009-09-11 07:01:08 +0000315 EXPECT_DEATH_IF_SUPPORTED({
shiqiane35fdd92008-12-10 05:08:54 +0000316 DefaultValue<int&>::Get();
317 }, "");
zhanyong.wan04d6ed82009-09-11 07:01:08 +0000318 EXPECT_DEATH_IF_SUPPORTED({
shiqiane35fdd92008-12-10 05:08:54 +0000319 DefaultValue<UserType>::Get();
320 }, "");
shiqiane35fdd92008-12-10 05:08:54 +0000321}
322
323// Tests that ActionInterface can be implemented by defining the
324// Perform method.
325
326typedef int MyFunction(bool, int);
327
328class MyActionImpl : public ActionInterface<MyFunction> {
329 public:
330 virtual int Perform(const tuple<bool, int>& args) {
331 return get<0>(args) ? get<1>(args) : 0;
332 }
333};
334
335TEST(ActionInterfaceTest, CanBeImplementedByDefiningPerform) {
336 MyActionImpl my_action_impl;
zhanyong.waned6c9272011-02-23 19:39:27 +0000337 (void)my_action_impl;
shiqiane35fdd92008-12-10 05:08:54 +0000338}
339
340TEST(ActionInterfaceTest, MakeAction) {
341 Action<MyFunction> action = MakeAction(new MyActionImpl);
342
343 // When exercising the Perform() method of Action<F>, we must pass
344 // it a tuple whose size and type are compatible with F's argument
345 // types. For example, if F is int(), then Perform() takes a
346 // 0-tuple; if F is void(bool, int), then Perform() takes a
347 // tuple<bool, int>, and so on.
348 EXPECT_EQ(5, action.Perform(make_tuple(true, 5)));
349}
350
351// Tests that Action<F> can be contructed from a pointer to
352// ActionInterface<F>.
353TEST(ActionTest, CanBeConstructedFromActionInterface) {
354 Action<MyFunction> action(new MyActionImpl);
355}
356
357// Tests that Action<F> delegates actual work to ActionInterface<F>.
358TEST(ActionTest, DelegatesWorkToActionInterface) {
359 const Action<MyFunction> action(new MyActionImpl);
360
361 EXPECT_EQ(5, action.Perform(make_tuple(true, 5)));
362 EXPECT_EQ(0, action.Perform(make_tuple(false, 1)));
363}
364
365// Tests that Action<F> can be copied.
366TEST(ActionTest, IsCopyable) {
367 Action<MyFunction> a1(new MyActionImpl);
368 Action<MyFunction> a2(a1); // Tests the copy constructor.
369
370 // a1 should continue to work after being copied from.
371 EXPECT_EQ(5, a1.Perform(make_tuple(true, 5)));
372 EXPECT_EQ(0, a1.Perform(make_tuple(false, 1)));
373
374 // a2 should work like the action it was copied from.
375 EXPECT_EQ(5, a2.Perform(make_tuple(true, 5)));
376 EXPECT_EQ(0, a2.Perform(make_tuple(false, 1)));
377
378 a2 = a1; // Tests the assignment operator.
379
380 // a1 should continue to work after being copied from.
381 EXPECT_EQ(5, a1.Perform(make_tuple(true, 5)));
382 EXPECT_EQ(0, a1.Perform(make_tuple(false, 1)));
383
384 // a2 should work like the action it was copied from.
385 EXPECT_EQ(5, a2.Perform(make_tuple(true, 5)));
386 EXPECT_EQ(0, a2.Perform(make_tuple(false, 1)));
387}
388
389// Tests that an Action<From> object can be converted to a
390// compatible Action<To> object.
391
392class IsNotZero : public ActionInterface<bool(int)> { // NOLINT
393 public:
394 virtual bool Perform(const tuple<int>& arg) {
395 return get<0>(arg) != 0;
396 }
397};
398
zhanyong.wan95b12332009-09-25 18:55:50 +0000399#if !GTEST_OS_SYMBIAN
400// Compiling this test on Nokia's Symbian compiler fails with:
401// 'Result' is not a member of class 'testing::internal::Function<int>'
402// (point of instantiation: '@unnamed@gmock_actions_test_cc@::
403// ActionTest_CanBeConvertedToOtherActionType_Test::TestBody()')
404// with no obvious fix.
shiqiane35fdd92008-12-10 05:08:54 +0000405TEST(ActionTest, CanBeConvertedToOtherActionType) {
406 const Action<bool(int)> a1(new IsNotZero); // NOLINT
407 const Action<int(char)> a2 = Action<int(char)>(a1); // NOLINT
408 EXPECT_EQ(1, a2.Perform(make_tuple('a')));
409 EXPECT_EQ(0, a2.Perform(make_tuple('\0')));
410}
zhanyong.wan95b12332009-09-25 18:55:50 +0000411#endif // !GTEST_OS_SYMBIAN
shiqiane35fdd92008-12-10 05:08:54 +0000412
413// The following two classes are for testing MakePolymorphicAction().
414
415// Implements a polymorphic action that returns the second of the
416// arguments it receives.
417class ReturnSecondArgumentAction {
418 public:
419 // We want to verify that MakePolymorphicAction() can work with a
420 // polymorphic action whose Perform() method template is either
421 // const or not. This lets us verify the non-const case.
422 template <typename Result, typename ArgumentTuple>
423 Result Perform(const ArgumentTuple& args) { return get<1>(args); }
424};
425
426// Implements a polymorphic action that can be used in a nullary
427// function to return 0.
428class ReturnZeroFromNullaryFunctionAction {
429 public:
430 // For testing that MakePolymorphicAction() works when the
431 // implementation class' Perform() method template takes only one
432 // template parameter.
433 //
434 // We want to verify that MakePolymorphicAction() can work with a
435 // polymorphic action whose Perform() method template is either
436 // const or not. This lets us verify the const case.
437 template <typename Result>
438 Result Perform(const tuple<>&) const { return 0; }
439};
440
441// These functions verify that MakePolymorphicAction() returns a
442// PolymorphicAction<T> where T is the argument's type.
443
444PolymorphicAction<ReturnSecondArgumentAction> ReturnSecondArgument() {
445 return MakePolymorphicAction(ReturnSecondArgumentAction());
446}
447
448PolymorphicAction<ReturnZeroFromNullaryFunctionAction>
449ReturnZeroFromNullaryFunction() {
450 return MakePolymorphicAction(ReturnZeroFromNullaryFunctionAction());
451}
452
453// Tests that MakePolymorphicAction() turns a polymorphic action
454// implementation class into a polymorphic action.
455TEST(MakePolymorphicActionTest, ConstructsActionFromImpl) {
456 Action<int(bool, int, double)> a1 = ReturnSecondArgument(); // NOLINT
457 EXPECT_EQ(5, a1.Perform(make_tuple(false, 5, 2.0)));
458}
459
460// Tests that MakePolymorphicAction() works when the implementation
461// class' Perform() method template has only one template parameter.
462TEST(MakePolymorphicActionTest, WorksWhenPerformHasOneTemplateParameter) {
463 Action<int()> a1 = ReturnZeroFromNullaryFunction();
464 EXPECT_EQ(0, a1.Perform(make_tuple()));
465
466 Action<void*()> a2 = ReturnZeroFromNullaryFunction();
467 EXPECT_TRUE(a2.Perform(make_tuple()) == NULL);
468}
469
470// Tests that Return() works as an action for void-returning
471// functions.
472TEST(ReturnTest, WorksForVoid) {
473 const Action<void(int)> ret = Return(); // NOLINT
474 return ret.Perform(make_tuple(1));
475}
476
477// Tests that Return(v) returns v.
478TEST(ReturnTest, ReturnsGivenValue) {
479 Action<int()> ret = Return(1); // NOLINT
480 EXPECT_EQ(1, ret.Perform(make_tuple()));
481
482 ret = Return(-5);
483 EXPECT_EQ(-5, ret.Perform(make_tuple()));
484}
485
486// Tests that Return("string literal") works.
487TEST(ReturnTest, AcceptsStringLiteral) {
488 Action<const char*()> a1 = Return("Hello");
489 EXPECT_STREQ("Hello", a1.Perform(make_tuple()));
490
491 Action<std::string()> a2 = Return("world");
492 EXPECT_EQ("world", a2.Perform(make_tuple()));
493}
494
495// Tests that Return(v) is covaraint.
496
497struct Base {
498 bool operator==(const Base&) { return true; }
499};
500
501struct Derived : public Base {
502 bool operator==(const Derived&) { return true; }
503};
504
505TEST(ReturnTest, IsCovariant) {
506 Base base;
507 Derived derived;
508 Action<Base*()> ret = Return(&base);
509 EXPECT_EQ(&base, ret.Perform(make_tuple()));
510
511 ret = Return(&derived);
512 EXPECT_EQ(&derived, ret.Perform(make_tuple()));
513}
514
vladloseva070cbd2009-11-18 00:09:28 +0000515// Tests that the type of the value passed into Return is converted into T
516// when the action is cast to Action<T(...)> rather than when the action is
517// performed. See comments on testing::internal::ReturnAction in
518// gmock-actions.h for more information.
519class FromType {
520 public:
jgm79a367e2012-04-10 16:02:11 +0000521 explicit FromType(bool* is_converted) : converted_(is_converted) {}
vladloseva070cbd2009-11-18 00:09:28 +0000522 bool* converted() const { return converted_; }
523
524 private:
525 bool* const converted_;
zhanyong.wan32de5f52009-12-23 00:13:23 +0000526
527 GTEST_DISALLOW_ASSIGN_(FromType);
vladloseva070cbd2009-11-18 00:09:28 +0000528};
529
530class ToType {
531 public:
jgm79a367e2012-04-10 16:02:11 +0000532 // Must allow implicit conversion due to use in ImplicitCast_<T>.
533 ToType(const FromType& x) { *x.converted() = true; } // NOLINT
vladloseva070cbd2009-11-18 00:09:28 +0000534};
535
536TEST(ReturnTest, ConvertsArgumentWhenConverted) {
537 bool converted = false;
538 FromType x(&converted);
539 Action<ToType()> action(Return(x));
540 EXPECT_TRUE(converted) << "Return must convert its argument in its own "
541 << "conversion operator.";
542 converted = false;
543 action.Perform(tuple<>());
544 EXPECT_FALSE(converted) << "Action must NOT convert its argument "
jgm79a367e2012-04-10 16:02:11 +0000545 << "when performed.";
vladloseva070cbd2009-11-18 00:09:28 +0000546}
547
vladloseva070cbd2009-11-18 00:09:28 +0000548class DestinationType {};
549
550class SourceType {
551 public:
552 // Note: a non-const typecast operator.
553 operator DestinationType() { return DestinationType(); }
554};
555
556TEST(ReturnTest, CanConvertArgumentUsingNonConstTypeCastOperator) {
557 SourceType s;
558 Action<DestinationType()> action(Return(s));
559}
vladloseva070cbd2009-11-18 00:09:28 +0000560
shiqiane35fdd92008-12-10 05:08:54 +0000561// Tests that ReturnNull() returns NULL in a pointer-returning function.
562TEST(ReturnNullTest, WorksInPointerReturningFunction) {
563 const Action<int*()> a1 = ReturnNull();
564 EXPECT_TRUE(a1.Perform(make_tuple()) == NULL);
565
566 const Action<const char*(bool)> a2 = ReturnNull(); // NOLINT
567 EXPECT_TRUE(a2.Perform(make_tuple(true)) == NULL);
568}
569
570// Tests that ReturnRef(v) works for reference types.
571TEST(ReturnRefTest, WorksForReference) {
572 const int n = 0;
573 const Action<const int&(bool)> ret = ReturnRef(n); // NOLINT
574
575 EXPECT_EQ(&n, &ret.Perform(make_tuple(true)));
576}
577
578// Tests that ReturnRef(v) is covariant.
579TEST(ReturnRefTest, IsCovariant) {
580 Base base;
581 Derived derived;
582 Action<Base&()> a = ReturnRef(base);
583 EXPECT_EQ(&base, &a.Perform(make_tuple()));
584
585 a = ReturnRef(derived);
586 EXPECT_EQ(&derived, &a.Perform(make_tuple()));
587}
588
zhanyong.wane3bd0982010-07-03 00:16:42 +0000589// Tests that ReturnRefOfCopy(v) works for reference types.
590TEST(ReturnRefOfCopyTest, WorksForReference) {
591 int n = 42;
592 const Action<const int&()> ret = ReturnRefOfCopy(n);
593
594 EXPECT_NE(&n, &ret.Perform(make_tuple()));
595 EXPECT_EQ(42, ret.Perform(make_tuple()));
596
597 n = 43;
598 EXPECT_NE(&n, &ret.Perform(make_tuple()));
599 EXPECT_EQ(42, ret.Perform(make_tuple()));
600}
601
602// Tests that ReturnRefOfCopy(v) is covariant.
603TEST(ReturnRefOfCopyTest, IsCovariant) {
604 Base base;
605 Derived derived;
606 Action<Base&()> a = ReturnRefOfCopy(base);
607 EXPECT_NE(&base, &a.Perform(make_tuple()));
608
609 a = ReturnRefOfCopy(derived);
610 EXPECT_NE(&derived, &a.Perform(make_tuple()));
611}
612
shiqiane35fdd92008-12-10 05:08:54 +0000613// Tests that DoDefault() does the default action for the mock method.
614
615class MyClass {};
616
617class MockClass {
618 public:
zhanyong.wan32de5f52009-12-23 00:13:23 +0000619 MockClass() {}
620
shiqiane35fdd92008-12-10 05:08:54 +0000621 MOCK_METHOD1(IntFunc, int(bool flag)); // NOLINT
622 MOCK_METHOD0(Foo, MyClass());
zhanyong.wan32de5f52009-12-23 00:13:23 +0000623
624 private:
625 GTEST_DISALLOW_COPY_AND_ASSIGN_(MockClass);
shiqiane35fdd92008-12-10 05:08:54 +0000626};
627
628// Tests that DoDefault() returns the built-in default value for the
629// return type by default.
630TEST(DoDefaultTest, ReturnsBuiltInDefaultValueByDefault) {
631 MockClass mock;
632 EXPECT_CALL(mock, IntFunc(_))
633 .WillOnce(DoDefault());
634 EXPECT_EQ(0, mock.IntFunc(true));
635}
636
zhanyong.wanedd4ab42013-02-28 22:58:51 +0000637// Tests that DoDefault() throws (when exceptions are enabled) or aborts
638// the process when there is no built-in default value for the return type.
shiqiane35fdd92008-12-10 05:08:54 +0000639TEST(DoDefaultDeathTest, DiesForUnknowType) {
640 MockClass mock;
641 EXPECT_CALL(mock, Foo())
642 .WillRepeatedly(DoDefault());
zhanyong.wanedd4ab42013-02-28 22:58:51 +0000643#if GTEST_HAS_EXCEPTIONS
644 EXPECT_ANY_THROW(mock.Foo());
645#else
zhanyong.wan04d6ed82009-09-11 07:01:08 +0000646 EXPECT_DEATH_IF_SUPPORTED({
shiqiane35fdd92008-12-10 05:08:54 +0000647 mock.Foo();
648 }, "");
zhanyong.wanedd4ab42013-02-28 22:58:51 +0000649#endif
shiqiane35fdd92008-12-10 05:08:54 +0000650}
651
652// Tests that using DoDefault() inside a composite action leads to a
653// run-time error.
654
zhanyong.wan32de5f52009-12-23 00:13:23 +0000655void VoidFunc(bool /* flag */) {}
shiqiane35fdd92008-12-10 05:08:54 +0000656
657TEST(DoDefaultDeathTest, DiesIfUsedInCompositeAction) {
658 MockClass mock;
659 EXPECT_CALL(mock, IntFunc(_))
660 .WillRepeatedly(DoAll(Invoke(VoidFunc),
661 DoDefault()));
662
663 // Ideally we should verify the error message as well. Sadly,
664 // EXPECT_DEATH() can only capture stderr, while Google Mock's
665 // errors are printed on stdout. Therefore we have to settle for
666 // not verifying the message.
zhanyong.wan04d6ed82009-09-11 07:01:08 +0000667 EXPECT_DEATH_IF_SUPPORTED({
shiqiane35fdd92008-12-10 05:08:54 +0000668 mock.IntFunc(true);
669 }, "");
670}
671
shiqiane35fdd92008-12-10 05:08:54 +0000672// Tests that DoDefault() returns the default value set by
673// DefaultValue<T>::Set() when it's not overriden by an ON_CALL().
674TEST(DoDefaultTest, ReturnsUserSpecifiedPerTypeDefaultValueWhenThereIsOne) {
675 DefaultValue<int>::Set(1);
676 MockClass mock;
677 EXPECT_CALL(mock, IntFunc(_))
678 .WillOnce(DoDefault());
679 EXPECT_EQ(1, mock.IntFunc(false));
680 DefaultValue<int>::Clear();
681}
682
683// Tests that DoDefault() does the action specified by ON_CALL().
684TEST(DoDefaultTest, DoesWhatOnCallSpecifies) {
685 MockClass mock;
686 ON_CALL(mock, IntFunc(_))
687 .WillByDefault(Return(2));
688 EXPECT_CALL(mock, IntFunc(_))
689 .WillOnce(DoDefault());
690 EXPECT_EQ(2, mock.IntFunc(false));
691}
692
693// Tests that using DoDefault() in ON_CALL() leads to a run-time failure.
694TEST(DoDefaultTest, CannotBeUsedInOnCall) {
695 MockClass mock;
696 EXPECT_NONFATAL_FAILURE({ // NOLINT
697 ON_CALL(mock, IntFunc(_))
698 .WillByDefault(DoDefault());
699 }, "DoDefault() cannot be used in ON_CALL()");
700}
701
zhanyong.wan59214832010-10-05 05:58:51 +0000702// Tests that SetArgPointee<N>(v) sets the variable pointed to by
703// the N-th (0-based) argument to v.
704TEST(SetArgPointeeTest, SetsTheNthPointee) {
705 typedef void MyFunction(bool, int*, char*);
706 Action<MyFunction> a = SetArgPointee<1>(2);
707
708 int n = 0;
709 char ch = '\0';
710 a.Perform(make_tuple(true, &n, &ch));
711 EXPECT_EQ(2, n);
712 EXPECT_EQ('\0', ch);
713
714 a = SetArgPointee<2>('a');
715 n = 0;
716 ch = '\0';
717 a.Perform(make_tuple(true, &n, &ch));
718 EXPECT_EQ(0, n);
719 EXPECT_EQ('a', ch);
720}
721
zhanyong.wanfc8c6c42011-03-09 01:18:08 +0000722#if !((GTEST_GCC_VER_ && GTEST_GCC_VER_ < 40000) || GTEST_OS_SYMBIAN)
zhanyong.wana684b5a2010-12-02 23:30:50 +0000723// Tests that SetArgPointee<N>() accepts a string literal.
zhanyong.wanfc8c6c42011-03-09 01:18:08 +0000724// GCC prior to v4.0 and the Symbian compiler do not support this.
zhanyong.wana684b5a2010-12-02 23:30:50 +0000725TEST(SetArgPointeeTest, AcceptsStringLiteral) {
zhanyong.wanfc8c6c42011-03-09 01:18:08 +0000726 typedef void MyFunction(std::string*, const char**);
727 Action<MyFunction> a = SetArgPointee<0>("hi");
zhanyong.wana684b5a2010-12-02 23:30:50 +0000728 std::string str;
729 const char* ptr = NULL;
zhanyong.wanfc8c6c42011-03-09 01:18:08 +0000730 a.Perform(make_tuple(&str, &ptr));
zhanyong.wana684b5a2010-12-02 23:30:50 +0000731 EXPECT_EQ("hi", str);
732 EXPECT_TRUE(ptr == NULL);
733
zhanyong.wanfc8c6c42011-03-09 01:18:08 +0000734 a = SetArgPointee<1>("world");
zhanyong.wana684b5a2010-12-02 23:30:50 +0000735 str = "";
zhanyong.wanfc8c6c42011-03-09 01:18:08 +0000736 a.Perform(make_tuple(&str, &ptr));
zhanyong.wana684b5a2010-12-02 23:30:50 +0000737 EXPECT_EQ("", str);
738 EXPECT_STREQ("world", ptr);
739}
740
zhanyong.wanfc8c6c42011-03-09 01:18:08 +0000741TEST(SetArgPointeeTest, AcceptsWideStringLiteral) {
742 typedef void MyFunction(const wchar_t**);
743 Action<MyFunction> a = SetArgPointee<0>(L"world");
744 const wchar_t* ptr = NULL;
745 a.Perform(make_tuple(&ptr));
746 EXPECT_STREQ(L"world", ptr);
747
748# if GTEST_HAS_STD_WSTRING
749
750 typedef void MyStringFunction(std::wstring*);
751 Action<MyStringFunction> a2 = SetArgPointee<0>(L"world");
752 std::wstring str = L"";
753 a2.Perform(make_tuple(&str));
754 EXPECT_EQ(L"world", str);
755
756# endif
757}
758#endif
759
zhanyong.wana684b5a2010-12-02 23:30:50 +0000760// Tests that SetArgPointee<N>() accepts a char pointer.
761TEST(SetArgPointeeTest, AcceptsCharPointer) {
762 typedef void MyFunction(bool, std::string*, const char**);
763 const char* const hi = "hi";
764 Action<MyFunction> a = SetArgPointee<1>(hi);
765 std::string str;
766 const char* ptr = NULL;
767 a.Perform(make_tuple(true, &str, &ptr));
768 EXPECT_EQ("hi", str);
769 EXPECT_TRUE(ptr == NULL);
770
771 char world_array[] = "world";
772 char* const world = world_array;
773 a = SetArgPointee<2>(world);
774 str = "";
775 a.Perform(make_tuple(true, &str, &ptr));
776 EXPECT_EQ("", str);
777 EXPECT_EQ(world, ptr);
778}
779
zhanyong.wanfc8c6c42011-03-09 01:18:08 +0000780TEST(SetArgPointeeTest, AcceptsWideCharPointer) {
781 typedef void MyFunction(bool, const wchar_t**);
782 const wchar_t* const hi = L"hi";
783 Action<MyFunction> a = SetArgPointee<1>(hi);
784 const wchar_t* ptr = NULL;
785 a.Perform(make_tuple(true, &ptr));
786 EXPECT_EQ(hi, ptr);
787
788# if GTEST_HAS_STD_WSTRING
789
790 typedef void MyStringFunction(bool, std::wstring*);
791 wchar_t world_array[] = L"world";
792 wchar_t* const world = world_array;
793 Action<MyStringFunction> a2 = SetArgPointee<1>(world);
794 std::wstring str;
795 a2.Perform(make_tuple(true, &str));
796 EXPECT_EQ(world_array, str);
797# endif
798}
799
zhanyong.wan59214832010-10-05 05:58:51 +0000800#if GTEST_HAS_PROTOBUF_
801
802// Tests that SetArgPointee<N>(proto_buffer) sets the v1 protobuf
803// variable pointed to by the N-th (0-based) argument to proto_buffer.
804TEST(SetArgPointeeTest, SetsTheNthPointeeOfProtoBufferType) {
805 TestMessage* const msg = new TestMessage;
806 msg->set_member("yes");
807 TestMessage orig_msg;
808 orig_msg.CopyFrom(*msg);
809
810 Action<void(bool, TestMessage*)> a = SetArgPointee<1>(*msg);
811 // SetArgPointee<N>(proto_buffer) makes a copy of proto_buffer
812 // s.t. the action works even when the original proto_buffer has
813 // died. We ensure this behavior by deleting msg before using the
814 // action.
815 delete msg;
816
817 TestMessage dest;
818 EXPECT_FALSE(orig_msg.Equals(dest));
819 a.Perform(make_tuple(true, &dest));
820 EXPECT_TRUE(orig_msg.Equals(dest));
821}
822
823// Tests that SetArgPointee<N>(proto_buffer) sets the
824// ::ProtocolMessage variable pointed to by the N-th (0-based)
825// argument to proto_buffer.
826TEST(SetArgPointeeTest, SetsTheNthPointeeOfProtoBufferBaseType) {
827 TestMessage* const msg = new TestMessage;
828 msg->set_member("yes");
829 TestMessage orig_msg;
830 orig_msg.CopyFrom(*msg);
831
832 Action<void(bool, ::ProtocolMessage*)> a = SetArgPointee<1>(*msg);
833 // SetArgPointee<N>(proto_buffer) makes a copy of proto_buffer
834 // s.t. the action works even when the original proto_buffer has
835 // died. We ensure this behavior by deleting msg before using the
836 // action.
837 delete msg;
838
839 TestMessage dest;
840 ::ProtocolMessage* const dest_base = &dest;
841 EXPECT_FALSE(orig_msg.Equals(dest));
842 a.Perform(make_tuple(true, dest_base));
843 EXPECT_TRUE(orig_msg.Equals(dest));
844}
845
846// Tests that SetArgPointee<N>(proto2_buffer) sets the v2
847// protobuf variable pointed to by the N-th (0-based) argument to
848// proto2_buffer.
849TEST(SetArgPointeeTest, SetsTheNthPointeeOfProto2BufferType) {
850 using testing::internal::FooMessage;
851 FooMessage* const msg = new FooMessage;
852 msg->set_int_field(2);
853 msg->set_string_field("hi");
854 FooMessage orig_msg;
855 orig_msg.CopyFrom(*msg);
856
857 Action<void(bool, FooMessage*)> a = SetArgPointee<1>(*msg);
858 // SetArgPointee<N>(proto2_buffer) makes a copy of
859 // proto2_buffer s.t. the action works even when the original
860 // proto2_buffer has died. We ensure this behavior by deleting msg
861 // before using the action.
862 delete msg;
863
864 FooMessage dest;
865 dest.set_int_field(0);
866 a.Perform(make_tuple(true, &dest));
867 EXPECT_EQ(2, dest.int_field());
868 EXPECT_EQ("hi", dest.string_field());
869}
870
871// Tests that SetArgPointee<N>(proto2_buffer) sets the
872// proto2::Message variable pointed to by the N-th (0-based) argument
873// to proto2_buffer.
874TEST(SetArgPointeeTest, SetsTheNthPointeeOfProto2BufferBaseType) {
875 using testing::internal::FooMessage;
876 FooMessage* const msg = new FooMessage;
877 msg->set_int_field(2);
878 msg->set_string_field("hi");
879 FooMessage orig_msg;
880 orig_msg.CopyFrom(*msg);
881
882 Action<void(bool, ::proto2::Message*)> a = SetArgPointee<1>(*msg);
883 // SetArgPointee<N>(proto2_buffer) makes a copy of
884 // proto2_buffer s.t. the action works even when the original
885 // proto2_buffer has died. We ensure this behavior by deleting msg
886 // before using the action.
887 delete msg;
888
889 FooMessage dest;
890 dest.set_int_field(0);
891 ::proto2::Message* const dest_base = &dest;
892 a.Perform(make_tuple(true, dest_base));
893 EXPECT_EQ(2, dest.int_field());
894 EXPECT_EQ("hi", dest.string_field());
895}
896
897#endif // GTEST_HAS_PROTOBUF_
898
shiqiane35fdd92008-12-10 05:08:54 +0000899// Tests that SetArgumentPointee<N>(v) sets the variable pointed to by
900// the N-th (0-based) argument to v.
901TEST(SetArgumentPointeeTest, SetsTheNthPointee) {
902 typedef void MyFunction(bool, int*, char*);
903 Action<MyFunction> a = SetArgumentPointee<1>(2);
904
905 int n = 0;
906 char ch = '\0';
907 a.Perform(make_tuple(true, &n, &ch));
908 EXPECT_EQ(2, n);
909 EXPECT_EQ('\0', ch);
910
911 a = SetArgumentPointee<2>('a');
912 n = 0;
913 ch = '\0';
914 a.Perform(make_tuple(true, &n, &ch));
915 EXPECT_EQ(0, n);
916 EXPECT_EQ('a', ch);
917}
918
zhanyong.wan02f71062010-05-10 17:14:29 +0000919#if GTEST_HAS_PROTOBUF_
shiqiane35fdd92008-12-10 05:08:54 +0000920
zhanyong.wanc6a41232009-05-13 23:38:40 +0000921// Tests that SetArgumentPointee<N>(proto_buffer) sets the v1 protobuf
922// variable pointed to by the N-th (0-based) argument to proto_buffer.
shiqiane35fdd92008-12-10 05:08:54 +0000923TEST(SetArgumentPointeeTest, SetsTheNthPointeeOfProtoBufferType) {
shiqiane35fdd92008-12-10 05:08:54 +0000924 TestMessage* const msg = new TestMessage;
925 msg->set_member("yes");
926 TestMessage orig_msg;
927 orig_msg.CopyFrom(*msg);
928
zhanyong.wanc6a41232009-05-13 23:38:40 +0000929 Action<void(bool, TestMessage*)> a = SetArgumentPointee<1>(*msg);
shiqiane35fdd92008-12-10 05:08:54 +0000930 // SetArgumentPointee<N>(proto_buffer) makes a copy of proto_buffer
931 // s.t. the action works even when the original proto_buffer has
932 // died. We ensure this behavior by deleting msg before using the
933 // action.
934 delete msg;
935
936 TestMessage dest;
937 EXPECT_FALSE(orig_msg.Equals(dest));
938 a.Perform(make_tuple(true, &dest));
939 EXPECT_TRUE(orig_msg.Equals(dest));
940}
941
zhanyong.wanc6a41232009-05-13 23:38:40 +0000942// Tests that SetArgumentPointee<N>(proto_buffer) sets the
943// ::ProtocolMessage variable pointed to by the N-th (0-based)
944// argument to proto_buffer.
945TEST(SetArgumentPointeeTest, SetsTheNthPointeeOfProtoBufferBaseType) {
946 TestMessage* const msg = new TestMessage;
947 msg->set_member("yes");
948 TestMessage orig_msg;
949 orig_msg.CopyFrom(*msg);
950
951 Action<void(bool, ::ProtocolMessage*)> a = SetArgumentPointee<1>(*msg);
952 // SetArgumentPointee<N>(proto_buffer) makes a copy of proto_buffer
953 // s.t. the action works even when the original proto_buffer has
954 // died. We ensure this behavior by deleting msg before using the
955 // action.
956 delete msg;
957
958 TestMessage dest;
959 ::ProtocolMessage* const dest_base = &dest;
960 EXPECT_FALSE(orig_msg.Equals(dest));
961 a.Perform(make_tuple(true, dest_base));
962 EXPECT_TRUE(orig_msg.Equals(dest));
963}
964
965// Tests that SetArgumentPointee<N>(proto2_buffer) sets the v2
966// protobuf variable pointed to by the N-th (0-based) argument to
967// proto2_buffer.
shiqiane35fdd92008-12-10 05:08:54 +0000968TEST(SetArgumentPointeeTest, SetsTheNthPointeeOfProto2BufferType) {
969 using testing::internal::FooMessage;
shiqiane35fdd92008-12-10 05:08:54 +0000970 FooMessage* const msg = new FooMessage;
971 msg->set_int_field(2);
972 msg->set_string_field("hi");
973 FooMessage orig_msg;
974 orig_msg.CopyFrom(*msg);
975
zhanyong.wanc6a41232009-05-13 23:38:40 +0000976 Action<void(bool, FooMessage*)> a = SetArgumentPointee<1>(*msg);
shiqiane35fdd92008-12-10 05:08:54 +0000977 // SetArgumentPointee<N>(proto2_buffer) makes a copy of
978 // proto2_buffer s.t. the action works even when the original
979 // proto2_buffer has died. We ensure this behavior by deleting msg
980 // before using the action.
981 delete msg;
982
983 FooMessage dest;
984 dest.set_int_field(0);
985 a.Perform(make_tuple(true, &dest));
986 EXPECT_EQ(2, dest.int_field());
987 EXPECT_EQ("hi", dest.string_field());
988}
989
zhanyong.wanc6a41232009-05-13 23:38:40 +0000990// Tests that SetArgumentPointee<N>(proto2_buffer) sets the
991// proto2::Message variable pointed to by the N-th (0-based) argument
992// to proto2_buffer.
993TEST(SetArgumentPointeeTest, SetsTheNthPointeeOfProto2BufferBaseType) {
994 using testing::internal::FooMessage;
995 FooMessage* const msg = new FooMessage;
996 msg->set_int_field(2);
997 msg->set_string_field("hi");
998 FooMessage orig_msg;
999 orig_msg.CopyFrom(*msg);
1000
1001 Action<void(bool, ::proto2::Message*)> a = SetArgumentPointee<1>(*msg);
1002 // SetArgumentPointee<N>(proto2_buffer) makes a copy of
1003 // proto2_buffer s.t. the action works even when the original
1004 // proto2_buffer has died. We ensure this behavior by deleting msg
1005 // before using the action.
1006 delete msg;
1007
1008 FooMessage dest;
1009 dest.set_int_field(0);
1010 ::proto2::Message* const dest_base = &dest;
1011 a.Perform(make_tuple(true, dest_base));
1012 EXPECT_EQ(2, dest.int_field());
1013 EXPECT_EQ("hi", dest.string_field());
1014}
1015
zhanyong.wan02f71062010-05-10 17:14:29 +00001016#endif // GTEST_HAS_PROTOBUF_
shiqiane35fdd92008-12-10 05:08:54 +00001017
shiqiane35fdd92008-12-10 05:08:54 +00001018// Sample functions and functors for testing Invoke() and etc.
1019int Nullary() { return 1; }
1020
1021class NullaryFunctor {
1022 public:
1023 int operator()() { return 2; }
1024};
1025
1026bool g_done = false;
1027void VoidNullary() { g_done = true; }
1028
1029class VoidNullaryFunctor {
1030 public:
1031 void operator()() { g_done = true; }
1032};
1033
shiqiane35fdd92008-12-10 05:08:54 +00001034class Foo {
1035 public:
1036 Foo() : value_(123) {}
1037
1038 int Nullary() const { return value_; }
zhanyong.wan29be9232013-03-01 06:53:35 +00001039
shiqiane35fdd92008-12-10 05:08:54 +00001040 private:
1041 int value_;
1042};
1043
1044// Tests InvokeWithoutArgs(function).
1045TEST(InvokeWithoutArgsTest, Function) {
1046 // As an action that takes one argument.
1047 Action<int(int)> a = InvokeWithoutArgs(Nullary); // NOLINT
1048 EXPECT_EQ(1, a.Perform(make_tuple(2)));
1049
1050 // As an action that takes two arguments.
zhanyong.wan32de5f52009-12-23 00:13:23 +00001051 Action<int(int, double)> a2 = InvokeWithoutArgs(Nullary); // NOLINT
shiqiane35fdd92008-12-10 05:08:54 +00001052 EXPECT_EQ(1, a2.Perform(make_tuple(2, 3.5)));
1053
1054 // As an action that returns void.
1055 Action<void(int)> a3 = InvokeWithoutArgs(VoidNullary); // NOLINT
1056 g_done = false;
1057 a3.Perform(make_tuple(1));
1058 EXPECT_TRUE(g_done);
1059}
1060
1061// Tests InvokeWithoutArgs(functor).
1062TEST(InvokeWithoutArgsTest, Functor) {
1063 // As an action that takes no argument.
1064 Action<int()> a = InvokeWithoutArgs(NullaryFunctor()); // NOLINT
1065 EXPECT_EQ(2, a.Perform(make_tuple()));
1066
1067 // As an action that takes three arguments.
zhanyong.wan32de5f52009-12-23 00:13:23 +00001068 Action<int(int, double, char)> a2 = // NOLINT
shiqiane35fdd92008-12-10 05:08:54 +00001069 InvokeWithoutArgs(NullaryFunctor());
1070 EXPECT_EQ(2, a2.Perform(make_tuple(3, 3.5, 'a')));
1071
1072 // As an action that returns void.
1073 Action<void()> a3 = InvokeWithoutArgs(VoidNullaryFunctor());
1074 g_done = false;
1075 a3.Perform(make_tuple());
1076 EXPECT_TRUE(g_done);
1077}
1078
1079// Tests InvokeWithoutArgs(obj_ptr, method).
1080TEST(InvokeWithoutArgsTest, Method) {
1081 Foo foo;
1082 Action<int(bool, char)> a = // NOLINT
1083 InvokeWithoutArgs(&foo, &Foo::Nullary);
1084 EXPECT_EQ(123, a.Perform(make_tuple(true, 'a')));
1085}
1086
1087// Tests using IgnoreResult() on a polymorphic action.
1088TEST(IgnoreResultTest, PolymorphicAction) {
1089 Action<void(int)> a = IgnoreResult(Return(5)); // NOLINT
1090 a.Perform(make_tuple(1));
1091}
1092
1093// Tests using IgnoreResult() on a monomorphic action.
1094
1095int ReturnOne() {
1096 g_done = true;
1097 return 1;
1098}
1099
1100TEST(IgnoreResultTest, MonomorphicAction) {
1101 g_done = false;
1102 Action<void()> a = IgnoreResult(Invoke(ReturnOne));
1103 a.Perform(make_tuple());
1104 EXPECT_TRUE(g_done);
1105}
1106
1107// Tests using IgnoreResult() on an action that returns a class type.
1108
zhanyong.wan32de5f52009-12-23 00:13:23 +00001109MyClass ReturnMyClass(double /* x */) {
shiqiane35fdd92008-12-10 05:08:54 +00001110 g_done = true;
1111 return MyClass();
1112}
1113
1114TEST(IgnoreResultTest, ActionReturningClass) {
1115 g_done = false;
1116 Action<void(int)> a = IgnoreResult(Invoke(ReturnMyClass)); // NOLINT
1117 a.Perform(make_tuple(2));
1118 EXPECT_TRUE(g_done);
1119}
1120
1121TEST(AssignTest, Int) {
1122 int x = 0;
1123 Action<void(int)> a = Assign(&x, 5);
1124 a.Perform(make_tuple(0));
1125 EXPECT_EQ(5, x);
1126}
1127
1128TEST(AssignTest, String) {
1129 ::std::string x;
1130 Action<void(void)> a = Assign(&x, "Hello, world");
1131 a.Perform(make_tuple());
1132 EXPECT_EQ("Hello, world", x);
1133}
1134
1135TEST(AssignTest, CompatibleTypes) {
1136 double x = 0;
1137 Action<void(int)> a = Assign(&x, 5);
1138 a.Perform(make_tuple(0));
1139 EXPECT_DOUBLE_EQ(5, x);
1140}
1141
zhanyong.wanf7af24c2009-09-24 21:17:24 +00001142#if !GTEST_OS_WINDOWS_MOBILE
zhanyong.wan5b5d62f2009-03-11 23:37:56 +00001143
shiqiane35fdd92008-12-10 05:08:54 +00001144class SetErrnoAndReturnTest : public testing::Test {
1145 protected:
1146 virtual void SetUp() { errno = 0; }
1147 virtual void TearDown() { errno = 0; }
1148};
1149
1150TEST_F(SetErrnoAndReturnTest, Int) {
1151 Action<int(void)> a = SetErrnoAndReturn(ENOTTY, -5);
1152 EXPECT_EQ(-5, a.Perform(make_tuple()));
1153 EXPECT_EQ(ENOTTY, errno);
1154}
1155
1156TEST_F(SetErrnoAndReturnTest, Ptr) {
1157 int x;
1158 Action<int*(void)> a = SetErrnoAndReturn(ENOTTY, &x);
1159 EXPECT_EQ(&x, a.Perform(make_tuple()));
1160 EXPECT_EQ(ENOTTY, errno);
1161}
1162
1163TEST_F(SetErrnoAndReturnTest, CompatibleTypes) {
1164 Action<double()> a = SetErrnoAndReturn(EINVAL, 5);
1165 EXPECT_DOUBLE_EQ(5.0, a.Perform(make_tuple()));
1166 EXPECT_EQ(EINVAL, errno);
1167}
1168
zhanyong.wanf7af24c2009-09-24 21:17:24 +00001169#endif // !GTEST_OS_WINDOWS_MOBILE
zhanyong.wan5b5d62f2009-03-11 23:37:56 +00001170
zhanyong.wana18423e2009-07-22 23:58:19 +00001171// Tests ByRef().
1172
1173// Tests that ReferenceWrapper<T> is copyable.
1174TEST(ByRefTest, IsCopyable) {
1175 const std::string s1 = "Hi";
1176 const std::string s2 = "Hello";
1177
jgm79a367e2012-04-10 16:02:11 +00001178 ::testing::internal::ReferenceWrapper<const std::string> ref_wrapper =
1179 ByRef(s1);
zhanyong.wana18423e2009-07-22 23:58:19 +00001180 const std::string& r1 = ref_wrapper;
1181 EXPECT_EQ(&s1, &r1);
1182
1183 // Assigns a new value to ref_wrapper.
1184 ref_wrapper = ByRef(s2);
1185 const std::string& r2 = ref_wrapper;
1186 EXPECT_EQ(&s2, &r2);
1187
jgm79a367e2012-04-10 16:02:11 +00001188 ::testing::internal::ReferenceWrapper<const std::string> ref_wrapper1 =
1189 ByRef(s1);
zhanyong.wana18423e2009-07-22 23:58:19 +00001190 // Copies ref_wrapper1 to ref_wrapper.
1191 ref_wrapper = ref_wrapper1;
1192 const std::string& r3 = ref_wrapper;
1193 EXPECT_EQ(&s1, &r3);
1194}
1195
1196// Tests using ByRef() on a const value.
1197TEST(ByRefTest, ConstValue) {
1198 const int n = 0;
1199 // int& ref = ByRef(n); // This shouldn't compile - we have a
1200 // negative compilation test to catch it.
1201 const int& const_ref = ByRef(n);
1202 EXPECT_EQ(&n, &const_ref);
1203}
1204
1205// Tests using ByRef() on a non-const value.
1206TEST(ByRefTest, NonConstValue) {
1207 int n = 0;
1208
1209 // ByRef(n) can be used as either an int&,
1210 int& ref = ByRef(n);
1211 EXPECT_EQ(&n, &ref);
1212
1213 // or a const int&.
1214 const int& const_ref = ByRef(n);
1215 EXPECT_EQ(&n, &const_ref);
1216}
1217
1218// Tests explicitly specifying the type when using ByRef().
1219TEST(ByRefTest, ExplicitType) {
1220 int n = 0;
1221 const int& r1 = ByRef<const int>(n);
1222 EXPECT_EQ(&n, &r1);
1223
1224 // ByRef<char>(n); // This shouldn't compile - we have a negative
1225 // compilation test to catch it.
1226
1227 Derived d;
1228 Derived& r2 = ByRef<Derived>(d);
1229 EXPECT_EQ(&d, &r2);
1230
1231 const Derived& r3 = ByRef<const Derived>(d);
1232 EXPECT_EQ(&d, &r3);
1233
1234 Base& r4 = ByRef<Base>(d);
1235 EXPECT_EQ(&d, &r4);
1236
1237 const Base& r5 = ByRef<const Base>(d);
1238 EXPECT_EQ(&d, &r5);
1239
1240 // The following shouldn't compile - we have a negative compilation
1241 // test for it.
1242 //
1243 // Base b;
1244 // ByRef<Derived>(b);
1245}
1246
1247// Tests that Google Mock prints expression ByRef(x) as a reference to x.
1248TEST(ByRefTest, PrintsCorrectly) {
1249 int n = 42;
1250 ::std::stringstream expected, actual;
1251 testing::internal::UniversalPrinter<const int&>::Print(n, &expected);
1252 testing::internal::UniversalPrint(ByRef(n), &actual);
1253 EXPECT_EQ(expected.str(), actual.str());
1254}
1255
shiqiane35fdd92008-12-10 05:08:54 +00001256} // Unnamed namespace