GrPPI  1.0
Generic and Reusable Parallel Pattern Interface
cmake-build-debug/googletest-src/googletest/src/gtest-internal-inl.h
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29 
30 // Utility functions and classes used by the Google C++ testing framework.//
31 // This file contains purely Google Test's internal implementation. Please
32 // DO NOT #INCLUDE IT IN A USER PROGRAM.
33 
34 #ifndef GOOGLETEST_SRC_GTEST_INTERNAL_INL_H_
35 #define GOOGLETEST_SRC_GTEST_INTERNAL_INL_H_
36 
37 #ifndef _WIN32_WCE
38 # include <errno.h>
39 #endif // !_WIN32_WCE
40 #include <stddef.h>
41 #include <stdlib.h> // For strtoll/_strtoul64/malloc/free.
42 #include <string.h> // For memmove.
43 
44 #include <algorithm>
45 #include <cstdint>
46 #include <memory>
47 #include <string>
48 #include <vector>
49 
50 #include "gtest/internal/gtest-port.h"
51 
52 #if GTEST_CAN_STREAM_RESULTS_
53 # include <arpa/inet.h> // NOLINT
54 # include <netdb.h> // NOLINT
55 #endif
56 
57 #if GTEST_OS_WINDOWS
58 # include <windows.h> // NOLINT
59 #endif // GTEST_OS_WINDOWS
60 
61 #include "gtest/gtest.h"
62 #include "gtest/gtest-spi.h"
63 
65 /* class A needs to have dll-interface to be used by clients of class B */)
66 
67 namespace testing {
68 
69 // Declares the flags.
70 //
71 // We don't want the users to modify this flag in the code, but want
72 // Google Test's own unit tests to be able to access it. Therefore we
73 // declare it here as opposed to in gtest.h.
74 GTEST_DECLARE_bool_(death_test_use_fork);
75 
76 namespace internal {
77 
78 // The value of GetTestTypeId() as seen from within the Google Test
79 // library. This is solely for testing GetTestTypeId().
80 GTEST_API_ extern const TypeId kTestTypeIdInGoogleTest;
81 
82 // Names of the flags (needed for parsing Google Test flags).
83 const char kAlsoRunDisabledTestsFlag[] = "also_run_disabled_tests";
84 const char kBreakOnFailureFlag[] = "break_on_failure";
85 const char kCatchExceptionsFlag[] = "catch_exceptions";
86 const char kColorFlag[] = "color";
87 const char kFailFast[] = "fail_fast";
88 const char kFilterFlag[] = "filter";
89 const char kListTestsFlag[] = "list_tests";
90 const char kOutputFlag[] = "output";
91 const char kBriefFlag[] = "brief";
92 const char kPrintTimeFlag[] = "print_time";
93 const char kPrintUTF8Flag[] = "print_utf8";
94 const char kRandomSeedFlag[] = "random_seed";
95 const char kRepeatFlag[] = "repeat";
96 const char kShuffleFlag[] = "shuffle";
97 const char kStackTraceDepthFlag[] = "stack_trace_depth";
98 const char kStreamResultToFlag[] = "stream_result_to";
99 const char kThrowOnFailureFlag[] = "throw_on_failure";
100 const char kFlagfileFlag[] = "flagfile";
101 
102 // A valid random seed must be in [1, kMaxRandomSeed].
103 const int kMaxRandomSeed = 99999;
104 
105 // g_help_flag is true if and only if the --help flag or an equivalent form
106 // is specified on the command line.
107 GTEST_API_ extern bool g_help_flag;
108 
109 // Returns the current time in milliseconds.
110 GTEST_API_ TimeInMillis GetTimeInMillis();
111 
112 // Returns true if and only if Google Test should use colors in the output.
113 GTEST_API_ bool ShouldUseColor(bool stdout_is_tty);
114 
115 // Formats the given time in milliseconds as seconds.
116 GTEST_API_ std::string FormatTimeInMillisAsSeconds(TimeInMillis ms);
117 
118 // Converts the given time in milliseconds to a date string in the ISO 8601
119 // format, without the timezone information. N.B.: due to the use the
120 // non-reentrant localtime() function, this function is not thread safe. Do
121 // not use it in any code that can be called from multiple threads.
122 GTEST_API_ std::string FormatEpochTimeInMillisAsIso8601(TimeInMillis ms);
123 
124 // Parses a string for an Int32 flag, in the form of "--flag=value".
125 //
126 // On success, stores the value of the flag in *value, and returns
127 // true. On failure, returns false without changing *value.
128 GTEST_API_ bool ParseInt32Flag(
129  const char* str, const char* flag, int32_t* value);
130 
131 // Returns a random seed in range [1, kMaxRandomSeed] based on the
132 // given --gtest_random_seed flag value.
133 inline int GetRandomSeedFromFlag(int32_t random_seed_flag) {
134  const unsigned int raw_seed = (random_seed_flag == 0) ?
135  static_cast<unsigned int>(GetTimeInMillis()) :
136  static_cast<unsigned int>(random_seed_flag);
137 
138  // Normalizes the actual seed to range [1, kMaxRandomSeed] such that
139  // it's easy to type.
140  const int normalized_seed =
141  static_cast<int>((raw_seed - 1U) %
142  static_cast<unsigned int>(kMaxRandomSeed)) + 1;
143  return normalized_seed;
144 }
145 
146 // Returns the first valid random seed after 'seed'. The behavior is
147 // undefined if 'seed' is invalid. The seed after kMaxRandomSeed is
148 // considered to be 1.
149 inline int GetNextRandomSeed(int seed) {
150  GTEST_CHECK_(1 <= seed && seed <= kMaxRandomSeed)
151  << "Invalid random seed " << seed << " - must be in [1, "
152  << kMaxRandomSeed << "].";
153  const int next_seed = seed + 1;
154  return (next_seed > kMaxRandomSeed) ? 1 : next_seed;
155 }
156 
157 // This class saves the values of all Google Test flags in its c'tor, and
158 // restores them in its d'tor.
159 class GTestFlagSaver {
160  public:
161  // The c'tor.
162  GTestFlagSaver() {
163  also_run_disabled_tests_ = GTEST_FLAG(also_run_disabled_tests);
164  break_on_failure_ = GTEST_FLAG(break_on_failure);
165  catch_exceptions_ = GTEST_FLAG(catch_exceptions);
166  color_ = GTEST_FLAG(color);
167  death_test_style_ = GTEST_FLAG(death_test_style);
168  death_test_use_fork_ = GTEST_FLAG(death_test_use_fork);
169  fail_fast_ = GTEST_FLAG(fail_fast);
170  filter_ = GTEST_FLAG(filter);
171  internal_run_death_test_ = GTEST_FLAG(internal_run_death_test);
172  list_tests_ = GTEST_FLAG(list_tests);
173  output_ = GTEST_FLAG(output);
174  brief_ = GTEST_FLAG(brief);
175  print_time_ = GTEST_FLAG(print_time);
176  print_utf8_ = GTEST_FLAG(print_utf8);
177  random_seed_ = GTEST_FLAG(random_seed);
178  repeat_ = GTEST_FLAG(repeat);
179  shuffle_ = GTEST_FLAG(shuffle);
180  stack_trace_depth_ = GTEST_FLAG(stack_trace_depth);
181  stream_result_to_ = GTEST_FLAG(stream_result_to);
182  throw_on_failure_ = GTEST_FLAG(throw_on_failure);
183  }
184 
185  // The d'tor is not virtual. DO NOT INHERIT FROM THIS CLASS.
186  ~GTestFlagSaver() {
187  GTEST_FLAG(also_run_disabled_tests) = also_run_disabled_tests_;
188  GTEST_FLAG(break_on_failure) = break_on_failure_;
189  GTEST_FLAG(catch_exceptions) = catch_exceptions_;
190  GTEST_FLAG(color) = color_;
191  GTEST_FLAG(death_test_style) = death_test_style_;
192  GTEST_FLAG(death_test_use_fork) = death_test_use_fork_;
193  GTEST_FLAG(filter) = filter_;
194  GTEST_FLAG(fail_fast) = fail_fast_;
195  GTEST_FLAG(internal_run_death_test) = internal_run_death_test_;
196  GTEST_FLAG(list_tests) = list_tests_;
197  GTEST_FLAG(output) = output_;
198  GTEST_FLAG(brief) = brief_;
199  GTEST_FLAG(print_time) = print_time_;
200  GTEST_FLAG(print_utf8) = print_utf8_;
201  GTEST_FLAG(random_seed) = random_seed_;
202  GTEST_FLAG(repeat) = repeat_;
203  GTEST_FLAG(shuffle) = shuffle_;
204  GTEST_FLAG(stack_trace_depth) = stack_trace_depth_;
205  GTEST_FLAG(stream_result_to) = stream_result_to_;
206  GTEST_FLAG(throw_on_failure) = throw_on_failure_;
207  }
208 
209  private:
210  // Fields for saving the original values of flags.
211  bool also_run_disabled_tests_;
212  bool break_on_failure_;
213  bool catch_exceptions_;
214  std::string color_;
215  std::string death_test_style_;
216  bool death_test_use_fork_;
217  bool fail_fast_;
218  std::string filter_;
219  std::string internal_run_death_test_;
220  bool list_tests_;
221  std::string output_;
222  bool brief_;
223  bool print_time_;
224  bool print_utf8_;
225  int32_t random_seed_;
226  int32_t repeat_;
227  bool shuffle_;
228  int32_t stack_trace_depth_;
229  std::string stream_result_to_;
230  bool throw_on_failure_;
232 
233 // Converts a Unicode code point to a narrow string in UTF-8 encoding.
234 // code_point parameter is of type UInt32 because wchar_t may not be
235 // wide enough to contain a code point.
236 // If the code_point is not a valid Unicode code point
237 // (i.e. outside of Unicode range U+0 to U+10FFFF) it will be converted
238 // to "(Invalid Unicode 0xXXXXXXXX)".
239 GTEST_API_ std::string CodePointToUtf8(uint32_t code_point);
240 
241 // Converts a wide string to a narrow string in UTF-8 encoding.
242 // The wide string is assumed to have the following encoding:
243 // UTF-16 if sizeof(wchar_t) == 2 (on Windows, Cygwin)
244 // UTF-32 if sizeof(wchar_t) == 4 (on Linux)
245 // Parameter str points to a null-terminated wide string.
246 // Parameter num_chars may additionally limit the number
247 // of wchar_t characters processed. -1 is used when the entire string
248 // should be processed.
249 // If the string contains code points that are not valid Unicode code points
250 // (i.e. outside of Unicode range U+0 to U+10FFFF) they will be output
251 // as '(Invalid Unicode 0xXXXXXXXX)'. If the string is in UTF16 encoding
252 // and contains invalid UTF-16 surrogate pairs, values in those pairs
253 // will be encoded as individual Unicode characters from Basic Normal Plane.
254 GTEST_API_ std::string WideStringToUtf8(const wchar_t* str, int num_chars);
255 
256 // Reads the GTEST_SHARD_STATUS_FILE environment variable, and creates the file
257 // if the variable is present. If a file already exists at this location, this
258 // function will write over it. If the variable is present, but the file cannot
259 // be created, prints an error and exits.
260 void WriteToShardStatusFileIfNeeded();
261 
262 // Checks whether sharding is enabled by examining the relevant
263 // environment variable values. If the variables are present,
264 // but inconsistent (e.g., shard_index >= total_shards), prints
265 // an error and exits. If in_subprocess_for_death_test, sharding is
266 // disabled because it must only be applied to the original test
267 // process. Otherwise, we could filter out death tests we intended to execute.
268 GTEST_API_ bool ShouldShard(const char* total_shards_str,
269  const char* shard_index_str,
270  bool in_subprocess_for_death_test);
271 
272 // Parses the environment variable var as a 32-bit integer. If it is unset,
273 // returns default_val. If it is not a 32-bit integer, prints an error and
274 // and aborts.
275 GTEST_API_ int32_t Int32FromEnvOrDie(const char* env_var, int32_t default_val);
276 
277 // Given the total number of shards, the shard index, and the test id,
278 // returns true if and only if the test should be run on this shard. The test id
279 // is some arbitrary but unique non-negative integer assigned to each test
280 // method. Assumes that 0 <= shard_index < total_shards.
281 GTEST_API_ bool ShouldRunTestOnShard(
282  int total_shards, int shard_index, int test_id);
283 
284 // STL container utilities.
285 
286 // Returns the number of elements in the given container that satisfy
287 // the given predicate.
288 template <class Container, typename Predicate>
289 inline int CountIf(const Container& c, Predicate predicate) {
290  // Implemented as an explicit loop since std::count_if() in libCstd on
291  // Solaris has a non-standard signature.
292  int count = 0;
293  for (typename Container::const_iterator it = c.begin(); it != c.end(); ++it) {
294  if (predicate(*it))
295  ++count;
296  }
297  return count;
298 }
299 
300 // Applies a function/functor to each element in the container.
301 template <class Container, typename Functor>
302 void ForEach(const Container& c, Functor functor) {
303  std::for_each(c.begin(), c.end(), functor);
304 }
305 
306 // Returns the i-th element of the vector, or default_value if i is not
307 // in range [0, v.size()).
308 template <typename E>
309 inline E GetElementOr(const std::vector<E>& v, int i, E default_value) {
310  return (i < 0 || i >= static_cast<int>(v.size())) ? default_value
311  : v[static_cast<size_t>(i)];
312 }
313 
314 // Performs an in-place shuffle of a range of the vector's elements.
315 // 'begin' and 'end' are element indices as an STL-style range;
316 // i.e. [begin, end) are shuffled, where 'end' == size() means to
317 // shuffle to the end of the vector.
318 template <typename E>
319 void ShuffleRange(internal::Random* random, int begin, int end,
320  std::vector<E>* v) {
321  const int size = static_cast<int>(v->size());
322  GTEST_CHECK_(0 <= begin && begin <= size)
323  << "Invalid shuffle range start " << begin << ": must be in range [0, "
324  << size << "].";
325  GTEST_CHECK_(begin <= end && end <= size)
326  << "Invalid shuffle range finish " << end << ": must be in range ["
327  << begin << ", " << size << "].";
328 
329  // Fisher-Yates shuffle, from
330  // http://en.wikipedia.org/wiki/Fisher-Yates_shuffle
331  for (int range_width = end - begin; range_width >= 2; range_width--) {
332  const int last_in_range = begin + range_width - 1;
333  const int selected =
334  begin +
335  static_cast<int>(random->Generate(static_cast<uint32_t>(range_width)));
336  std::swap((*v)[static_cast<size_t>(selected)],
337  (*v)[static_cast<size_t>(last_in_range)]);
338  }
339 }
340 
341 // Performs an in-place shuffle of the vector's elements.
342 template <typename E>
343 inline void Shuffle(internal::Random* random, std::vector<E>* v) {
344  ShuffleRange(random, 0, static_cast<int>(v->size()), v);
345 }
346 
347 // A function for deleting an object. Handy for being used as a
348 // functor.
349 template <typename T>
350 static void Delete(T* x) {
351  delete x;
352 }
353 
354 // A predicate that checks the key of a TestProperty against a known key.
355 //
356 // TestPropertyKeyIs is copyable.
357 class TestPropertyKeyIs {
358  public:
359  // Constructor.
360  //
361  // TestPropertyKeyIs has NO default constructor.
362  explicit TestPropertyKeyIs(const std::string& key) : key_(key) {}
363 
364  // Returns true if and only if the test name of test property matches on key_.
365  bool operator()(const TestProperty& test_property) const {
366  return test_property.key() == key_;
367  }
368 
369  private:
370  std::string key_;
371 };
372 
373 // Class UnitTestOptions.
374 //
375 // This class contains functions for processing options the user
376 // specifies when running the tests. It has only static members.
377 //
378 // In most cases, the user can specify an option using either an
379 // environment variable or a command line flag. E.g. you can set the
380 // test filter using either GTEST_FILTER or --gtest_filter. If both
381 // the variable and the flag are present, the latter overrides the
382 // former.
383 class GTEST_API_ UnitTestOptions {
384  public:
385  // Functions for processing the gtest_output flag.
386 
387  // Returns the output format, or "" for normal printed output.
388  static std::string GetOutputFormat();
389 
390  // Returns the absolute path of the requested output file, or the
391  // default (test_detail.xml in the original working directory) if
392  // none was explicitly specified.
393  static std::string GetAbsolutePathToOutputFile();
394 
395  // Functions for processing the gtest_filter flag.
396 
397  // Returns true if and only if the user-specified filter matches the test
398  // suite name and the test name.
399  static bool FilterMatchesTest(const std::string& test_suite_name,
400  const std::string& test_name);
401 
402 #if GTEST_OS_WINDOWS
403  // Function for supporting the gtest_catch_exception flag.
404 
405  // Returns EXCEPTION_EXECUTE_HANDLER if Google Test should handle the
406  // given SEH exception, or EXCEPTION_CONTINUE_SEARCH otherwise.
407  // This function is useful as an __except condition.
408  static int GTestShouldProcessSEH(DWORD exception_code);
409 #endif // GTEST_OS_WINDOWS
410 
411  // Returns true if "name" matches the ':' separated list of glob-style
412  // filters in "filter".
413  static bool MatchesFilter(const std::string& name, const char* filter);
414 };
415 
416 // Returns the current application's name, removing directory path if that
417 // is present. Used by UnitTestOptions::GetOutputFile.
418 GTEST_API_ FilePath GetCurrentExecutableName();
419 
420 // The role interface for getting the OS stack trace as a string.
421 class OsStackTraceGetterInterface {
422  public:
423  OsStackTraceGetterInterface() {}
424  virtual ~OsStackTraceGetterInterface() {}
425 
426  // Returns the current OS stack trace as an std::string. Parameters:
427  //
428  // max_depth - the maximum number of stack frames to be included
429  // in the trace.
430  // skip_count - the number of top frames to be skipped; doesn't count
431  // against max_depth.
432  virtual std::string CurrentStackTrace(int max_depth, int skip_count) = 0;
433 
434  // UponLeavingGTest() should be called immediately before Google Test calls
435  // user code. It saves some information about the current stack that
436  // CurrentStackTrace() will use to find and hide Google Test stack frames.
437  virtual void UponLeavingGTest() = 0;
438 
439  // This string is inserted in place of stack frames that are part of
440  // Google Test's implementation.
441  static const char* const kElidedFramesMarker;
442 
443  private:
444  GTEST_DISALLOW_COPY_AND_ASSIGN_(OsStackTraceGetterInterface);
445 };
446 
447 // A working implementation of the OsStackTraceGetterInterface interface.
448 class OsStackTraceGetter : public OsStackTraceGetterInterface {
449  public:
450  OsStackTraceGetter() {}
451 
452  std::string CurrentStackTrace(int max_depth, int skip_count) override;
453  void UponLeavingGTest() override;
454 
455  private:
456 #if GTEST_HAS_ABSL
457  Mutex mutex_; // Protects all internal state.
458 
459  // We save the stack frame below the frame that calls user code.
460  // We do this because the address of the frame immediately below
461  // the user code changes between the call to UponLeavingGTest()
462  // and any calls to the stack trace code from within the user code.
463  void* caller_frame_ = nullptr;
464 #endif // GTEST_HAS_ABSL
465 
466  GTEST_DISALLOW_COPY_AND_ASSIGN_(OsStackTraceGetter);
467 };
468 
469 // Information about a Google Test trace point.
470 struct TraceInfo {
471  const char* file;
472  int line;
473  std::string message;
474 };
475 
476 // This is the default global test part result reporter used in UnitTestImpl.
477 // This class should only be used by UnitTestImpl.
478 class DefaultGlobalTestPartResultReporter
479  : public TestPartResultReporterInterface {
480  public:
481  explicit DefaultGlobalTestPartResultReporter(UnitTestImpl* unit_test);
482  // Implements the TestPartResultReporterInterface. Reports the test part
483  // result in the current test.
484  void ReportTestPartResult(const TestPartResult& result) override;
485 
486  private:
487  UnitTestImpl* const unit_test_;
488 
489  GTEST_DISALLOW_COPY_AND_ASSIGN_(DefaultGlobalTestPartResultReporter);
490 };
491 
492 // This is the default per thread test part result reporter used in
493 // UnitTestImpl. This class should only be used by UnitTestImpl.
494 class DefaultPerThreadTestPartResultReporter
495  : public TestPartResultReporterInterface {
496  public:
497  explicit DefaultPerThreadTestPartResultReporter(UnitTestImpl* unit_test);
498  // Implements the TestPartResultReporterInterface. The implementation just
499  // delegates to the current global test part result reporter of *unit_test_.
500  void ReportTestPartResult(const TestPartResult& result) override;
501 
502  private:
503  UnitTestImpl* const unit_test_;
504 
505  GTEST_DISALLOW_COPY_AND_ASSIGN_(DefaultPerThreadTestPartResultReporter);
506 };
507 
508 // The private implementation of the UnitTest class. We don't protect
509 // the methods under a mutex, as this class is not accessible by a
510 // user and the UnitTest class that delegates work to this class does
511 // proper locking.
512 class GTEST_API_ UnitTestImpl {
513  public:
514  explicit UnitTestImpl(UnitTest* parent);
515  virtual ~UnitTestImpl();
516 
517  // There are two different ways to register your own TestPartResultReporter.
518  // You can register your own repoter to listen either only for test results
519  // from the current thread or for results from all threads.
520  // By default, each per-thread test result repoter just passes a new
521  // TestPartResult to the global test result reporter, which registers the
522  // test part result for the currently running test.
523 
524  // Returns the global test part result reporter.
525  TestPartResultReporterInterface* GetGlobalTestPartResultReporter();
526 
527  // Sets the global test part result reporter.
528  void SetGlobalTestPartResultReporter(
529  TestPartResultReporterInterface* reporter);
530 
531  // Returns the test part result reporter for the current thread.
532  TestPartResultReporterInterface* GetTestPartResultReporterForCurrentThread();
533 
534  // Sets the test part result reporter for the current thread.
535  void SetTestPartResultReporterForCurrentThread(
536  TestPartResultReporterInterface* reporter);
537 
538  // Gets the number of successful test suites.
539  int successful_test_suite_count() const;
540 
541  // Gets the number of failed test suites.
542  int failed_test_suite_count() const;
543 
544  // Gets the number of all test suites.
545  int total_test_suite_count() const;
546 
547  // Gets the number of all test suites that contain at least one test
548  // that should run.
549  int test_suite_to_run_count() const;
550 
551  // Gets the number of successful tests.
552  int successful_test_count() const;
553 
554  // Gets the number of skipped tests.
555  int skipped_test_count() const;
556 
557  // Gets the number of failed tests.
558  int failed_test_count() const;
559 
560  // Gets the number of disabled tests that will be reported in the XML report.
561  int reportable_disabled_test_count() const;
562 
563  // Gets the number of disabled tests.
564  int disabled_test_count() const;
565 
566  // Gets the number of tests to be printed in the XML report.
567  int reportable_test_count() const;
568 
569  // Gets the number of all tests.
570  int total_test_count() const;
571 
572  // Gets the number of tests that should run.
573  int test_to_run_count() const;
574 
575  // Gets the time of the test program start, in ms from the start of the
576  // UNIX epoch.
577  TimeInMillis start_timestamp() const { return start_timestamp_; }
578 
579  // Gets the elapsed time, in milliseconds.
580  TimeInMillis elapsed_time() const { return elapsed_time_; }
581 
582  // Returns true if and only if the unit test passed (i.e. all test suites
583  // passed).
584  bool Passed() const { return !Failed(); }
585 
586  // Returns true if and only if the unit test failed (i.e. some test suite
587  // failed or something outside of all tests failed).
588  bool Failed() const {
589  return failed_test_suite_count() > 0 || ad_hoc_test_result()->Failed();
590  }
591 
592  // Gets the i-th test suite among all the test suites. i can range from 0 to
593  // total_test_suite_count() - 1. If i is not in that range, returns NULL.
594  const TestSuite* GetTestSuite(int i) const {
595  const int index = GetElementOr(test_suite_indices_, i, -1);
596  return index < 0 ? nullptr : test_suites_[static_cast<size_t>(i)];
597  }
598 
599  // Legacy API is deprecated but still available
600 #ifndef GTEST_REMOVE_LEGACY_TEST_CASEAPI_
601  const TestCase* GetTestCase(int i) const { return GetTestSuite(i); }
602 #endif // GTEST_REMOVE_LEGACY_TEST_CASEAPI_
603 
604  // Gets the i-th test suite among all the test suites. i can range from 0 to
605  // total_test_suite_count() - 1. If i is not in that range, returns NULL.
606  TestSuite* GetMutableSuiteCase(int i) {
607  const int index = GetElementOr(test_suite_indices_, i, -1);
608  return index < 0 ? nullptr : test_suites_[static_cast<size_t>(index)];
609  }
610 
611  // Provides access to the event listener list.
612  TestEventListeners* listeners() { return &listeners_; }
613 
614  // Returns the TestResult for the test that's currently running, or
615  // the TestResult for the ad hoc test if no test is running.
616  TestResult* current_test_result();
617 
618  // Returns the TestResult for the ad hoc test.
619  const TestResult* ad_hoc_test_result() const { return &ad_hoc_test_result_; }
620 
621  // Sets the OS stack trace getter.
622  //
623  // Does nothing if the input and the current OS stack trace getter
624  // are the same; otherwise, deletes the old getter and makes the
625  // input the current getter.
626  void set_os_stack_trace_getter(OsStackTraceGetterInterface* getter);
627 
628  // Returns the current OS stack trace getter if it is not NULL;
629  // otherwise, creates an OsStackTraceGetter, makes it the current
630  // getter, and returns it.
631  OsStackTraceGetterInterface* os_stack_trace_getter();
632 
633  // Returns the current OS stack trace as an std::string.
634  //
635  // The maximum number of stack frames to be included is specified by
636  // the gtest_stack_trace_depth flag. The skip_count parameter
637  // specifies the number of top frames to be skipped, which doesn't
638  // count against the number of frames to be included.
639  //
640  // For example, if Foo() calls Bar(), which in turn calls
641  // CurrentOsStackTraceExceptTop(1), Foo() will be included in the
642  // trace but Bar() and CurrentOsStackTraceExceptTop() won't.
643  std::string CurrentOsStackTraceExceptTop(int skip_count) GTEST_NO_INLINE_;
644 
645  // Finds and returns a TestSuite with the given name. If one doesn't
646  // exist, creates one and returns it.
647  //
648  // Arguments:
649  //
650  // test_suite_name: name of the test suite
651  // type_param: the name of the test's type parameter, or NULL if
652  // this is not a typed or a type-parameterized test.
653  // set_up_tc: pointer to the function that sets up the test suite
654  // tear_down_tc: pointer to the function that tears down the test suite
655  TestSuite* GetTestSuite(const char* test_suite_name, const char* type_param,
657  internal::TearDownTestSuiteFunc tear_down_tc);
658 
659 // Legacy API is deprecated but still available
660 #ifndef GTEST_REMOVE_LEGACY_TEST_CASEAPI_
661  TestCase* GetTestCase(const char* test_case_name, const char* type_param,
663  internal::TearDownTestSuiteFunc tear_down_tc) {
664  return GetTestSuite(test_case_name, type_param, set_up_tc, tear_down_tc);
665  }
666 #endif // GTEST_REMOVE_LEGACY_TEST_CASEAPI_
667 
668  // Adds a TestInfo to the unit test.
669  //
670  // Arguments:
671  //
672  // set_up_tc: pointer to the function that sets up the test suite
673  // tear_down_tc: pointer to the function that tears down the test suite
674  // test_info: the TestInfo object
675  void AddTestInfo(internal::SetUpTestSuiteFunc set_up_tc,
676  internal::TearDownTestSuiteFunc tear_down_tc,
677  TestInfo* test_info) {
678 #if GTEST_HAS_DEATH_TEST
679  // In order to support thread-safe death tests, we need to
680  // remember the original working directory when the test program
681  // was first invoked. We cannot do this in RUN_ALL_TESTS(), as
682  // the user may have changed the current directory before calling
683  // RUN_ALL_TESTS(). Therefore we capture the current directory in
684  // AddTestInfo(), which is called to register a TEST or TEST_F
685  // before main() is reached.
686  if (original_working_dir_.IsEmpty()) {
687  original_working_dir_.Set(FilePath::GetCurrentDir());
688  GTEST_CHECK_(!original_working_dir_.IsEmpty())
689  << "Failed to get the current working directory.";
690  }
691 #endif // GTEST_HAS_DEATH_TEST
692 
693  GetTestSuite(test_info->test_suite_name(), test_info->type_param(),
694  set_up_tc, tear_down_tc)
695  ->AddTestInfo(test_info);
696  }
697 
698  // Returns ParameterizedTestSuiteRegistry object used to keep track of
699  // value-parameterized tests and instantiate and register them.
700  internal::ParameterizedTestSuiteRegistry& parameterized_test_registry() {
701  return parameterized_test_registry_;
702  }
703 
704  std::set<std::string>* ignored_parameterized_test_suites() {
705  return &ignored_parameterized_test_suites_;
706  }
707 
708  // Returns TypeParameterizedTestSuiteRegistry object used to keep track of
709  // type-parameterized tests and instantiations of them.
710  internal::TypeParameterizedTestSuiteRegistry&
711  type_parameterized_test_registry() {
712  return type_parameterized_test_registry_;
713  }
714 
715  // Sets the TestSuite object for the test that's currently running.
716  void set_current_test_suite(TestSuite* a_current_test_suite) {
717  current_test_suite_ = a_current_test_suite;
718  }
719 
720  // Sets the TestInfo object for the test that's currently running. If
721  // current_test_info is NULL, the assertion results will be stored in
722  // ad_hoc_test_result_.
723  void set_current_test_info(TestInfo* a_current_test_info) {
724  current_test_info_ = a_current_test_info;
725  }
726 
727  // Registers all parameterized tests defined using TEST_P and
728  // INSTANTIATE_TEST_SUITE_P, creating regular tests for each test/parameter
729  // combination. This method can be called more then once; it has guards
730  // protecting from registering the tests more then once. If
731  // value-parameterized tests are disabled, RegisterParameterizedTests is
732  // present but does nothing.
733  void RegisterParameterizedTests();
734 
735  // Runs all tests in this UnitTest object, prints the result, and
736  // returns true if all tests are successful. If any exception is
737  // thrown during a test, this test is considered to be failed, but
738  // the rest of the tests will still be run.
739  bool RunAllTests();
740 
741  // Clears the results of all tests, except the ad hoc tests.
742  void ClearNonAdHocTestResult() {
743  ForEach(test_suites_, TestSuite::ClearTestSuiteResult);
744  }
745 
746  // Clears the results of ad-hoc test assertions.
747  void ClearAdHocTestResult() {
748  ad_hoc_test_result_.Clear();
749  }
750 
751  // Adds a TestProperty to the current TestResult object when invoked in a
752  // context of a test or a test suite, or to the global property set. If the
753  // result already contains a property with the same key, the value will be
754  // updated.
755  void RecordProperty(const TestProperty& test_property);
756 
757  enum ReactionToSharding {
758  HONOR_SHARDING_PROTOCOL,
759  IGNORE_SHARDING_PROTOCOL
760  };
761 
762  // Matches the full name of each test against the user-specified
763  // filter to decide whether the test should run, then records the
764  // result in each TestSuite and TestInfo object.
765  // If shard_tests == HONOR_SHARDING_PROTOCOL, further filters tests
766  // based on sharding variables in the environment.
767  // Returns the number of tests that should run.
768  int FilterTests(ReactionToSharding shard_tests);
769 
770  // Prints the names of the tests matching the user-specified filter flag.
771  void ListTestsMatchingFilter();
772 
773  const TestSuite* current_test_suite() const { return current_test_suite_; }
774  TestInfo* current_test_info() { return current_test_info_; }
775  const TestInfo* current_test_info() const { return current_test_info_; }
776 
777  // Returns the vector of environments that need to be set-up/torn-down
778  // before/after the tests are run.
779  std::vector<Environment*>& environments() { return environments_; }
780 
781  // Getters for the per-thread Google Test trace stack.
782  std::vector<TraceInfo>& gtest_trace_stack() {
783  return *(gtest_trace_stack_.pointer());
784  }
785  const std::vector<TraceInfo>& gtest_trace_stack() const {
786  return gtest_trace_stack_.get();
787  }
788 
789 #if GTEST_HAS_DEATH_TEST
790  void InitDeathTestSubprocessControlInfo() {
791  internal_run_death_test_flag_.reset(ParseInternalRunDeathTestFlag());
792  }
793  // Returns a pointer to the parsed --gtest_internal_run_death_test
794  // flag, or NULL if that flag was not specified.
795  // This information is useful only in a death test child process.
796  // Must not be called before a call to InitGoogleTest.
797  const InternalRunDeathTestFlag* internal_run_death_test_flag() const {
798  return internal_run_death_test_flag_.get();
799  }
800 
801  // Returns a pointer to the current death test factory.
802  internal::DeathTestFactory* death_test_factory() {
803  return death_test_factory_.get();
804  }
805 
806  void SuppressTestEventsIfInSubprocess();
807 
808  friend class ReplaceDeathTestFactory;
809 #endif // GTEST_HAS_DEATH_TEST
810 
811  // Initializes the event listener performing XML output as specified by
812  // UnitTestOptions. Must not be called before InitGoogleTest.
813  void ConfigureXmlOutput();
814 
815 #if GTEST_CAN_STREAM_RESULTS_
816  // Initializes the event listener for streaming test results to a socket.
817  // Must not be called before InitGoogleTest.
818  void ConfigureStreamingOutput();
819 #endif
820 
821  // Performs initialization dependent upon flag values obtained in
822  // ParseGoogleTestFlagsOnly. Is called from InitGoogleTest after the call to
823  // ParseGoogleTestFlagsOnly. In case a user neglects to call InitGoogleTest
824  // this function is also called from RunAllTests. Since this function can be
825  // called more than once, it has to be idempotent.
826  void PostFlagParsingInit();
827 
828  // Gets the random seed used at the start of the current test iteration.
829  int random_seed() const { return random_seed_; }
830 
831  // Gets the random number generator.
832  internal::Random* random() { return &random_; }
833 
834  // Shuffles all test suites, and the tests within each test suite,
835  // making sure that death tests are still run first.
836  void ShuffleTests();
837 
838  // Restores the test suites and tests to their order before the first shuffle.
839  void UnshuffleTests();
840 
841  // Returns the value of GTEST_FLAG(catch_exceptions) at the moment
842  // UnitTest::Run() starts.
843  bool catch_exceptions() const { return catch_exceptions_; }
844 
845  private:
846  friend class ::testing::UnitTest;
847 
848  // Used by UnitTest::Run() to capture the state of
849  // GTEST_FLAG(catch_exceptions) at the moment it starts.
850  void set_catch_exceptions(bool value) { catch_exceptions_ = value; }
851 
852  // The UnitTest object that owns this implementation object.
853  UnitTest* const parent_;
854 
855  // The working directory when the first TEST() or TEST_F() was
856  // executed.
857  internal::FilePath original_working_dir_;
858 
859  // The default test part result reporters.
860  DefaultGlobalTestPartResultReporter default_global_test_part_result_reporter_;
861  DefaultPerThreadTestPartResultReporter
862  default_per_thread_test_part_result_reporter_;
863 
864  // Points to (but doesn't own) the global test part result reporter.
865  TestPartResultReporterInterface* global_test_part_result_repoter_;
866 
867  // Protects read and write access to global_test_part_result_reporter_.
868  internal::Mutex global_test_part_result_reporter_mutex_;
869 
870  // Points to (but doesn't own) the per-thread test part result reporter.
871  internal::ThreadLocal<TestPartResultReporterInterface*>
872  per_thread_test_part_result_reporter_;
873 
874  // The vector of environments that need to be set-up/torn-down
875  // before/after the tests are run.
876  std::vector<Environment*> environments_;
877 
878  // The vector of TestSuites in their original order. It owns the
879  // elements in the vector.
880  std::vector<TestSuite*> test_suites_;
881 
882  // Provides a level of indirection for the test suite list to allow
883  // easy shuffling and restoring the test suite order. The i-th
884  // element of this vector is the index of the i-th test suite in the
885  // shuffled order.
886  std::vector<int> test_suite_indices_;
887 
888  // ParameterizedTestRegistry object used to register value-parameterized
889  // tests.
890  internal::ParameterizedTestSuiteRegistry parameterized_test_registry_;
891  internal::TypeParameterizedTestSuiteRegistry
892  type_parameterized_test_registry_;
893 
894  // The set holding the name of parameterized
895  // test suites that may go uninstantiated.
896  std::set<std::string> ignored_parameterized_test_suites_;
897 
898  // Indicates whether RegisterParameterizedTests() has been called already.
899  bool parameterized_tests_registered_;
900 
901  // Index of the last death test suite registered. Initially -1.
902  int last_death_test_suite_;
903 
904  // This points to the TestSuite for the currently running test. It
905  // changes as Google Test goes through one test suite after another.
906  // When no test is running, this is set to NULL and Google Test
907  // stores assertion results in ad_hoc_test_result_. Initially NULL.
908  TestSuite* current_test_suite_;
909 
910  // This points to the TestInfo for the currently running test. It
911  // changes as Google Test goes through one test after another. When
912  // no test is running, this is set to NULL and Google Test stores
913  // assertion results in ad_hoc_test_result_. Initially NULL.
914  TestInfo* current_test_info_;
915 
916  // Normally, a user only writes assertions inside a TEST or TEST_F,
917  // or inside a function called by a TEST or TEST_F. Since Google
918  // Test keeps track of which test is current running, it can
919  // associate such an assertion with the test it belongs to.
920  //
921  // If an assertion is encountered when no TEST or TEST_F is running,
922  // Google Test attributes the assertion result to an imaginary "ad hoc"
923  // test, and records the result in ad_hoc_test_result_.
924  TestResult ad_hoc_test_result_;
925 
926  // The list of event listeners that can be used to track events inside
927  // Google Test.
928  TestEventListeners listeners_;
929 
930  // The OS stack trace getter. Will be deleted when the UnitTest
931  // object is destructed. By default, an OsStackTraceGetter is used,
932  // but the user can set this field to use a custom getter if that is
933  // desired.
934  OsStackTraceGetterInterface* os_stack_trace_getter_;
935 
936  // True if and only if PostFlagParsingInit() has been called.
937  bool post_flag_parse_init_performed_;
938 
939  // The random number seed used at the beginning of the test run.
940  int random_seed_;
941 
942  // Our random number generator.
943  internal::Random random_;
944 
945  // The time of the test program start, in ms from the start of the
946  // UNIX epoch.
947  TimeInMillis start_timestamp_;
948 
949  // How long the test took to run, in milliseconds.
950  TimeInMillis elapsed_time_;
951 
952 #if GTEST_HAS_DEATH_TEST
953  // The decomposed components of the gtest_internal_run_death_test flag,
954  // parsed when RUN_ALL_TESTS is called.
955  std::unique_ptr<InternalRunDeathTestFlag> internal_run_death_test_flag_;
956  std::unique_ptr<internal::DeathTestFactory> death_test_factory_;
957 #endif // GTEST_HAS_DEATH_TEST
958 
959  // A per-thread stack of traces created by the SCOPED_TRACE() macro.
960  internal::ThreadLocal<std::vector<TraceInfo> > gtest_trace_stack_;
961 
962  // The value of GTEST_FLAG(catch_exceptions) at the moment RunAllTests()
963  // starts.
964  bool catch_exceptions_;
965 
966  GTEST_DISALLOW_COPY_AND_ASSIGN_(UnitTestImpl);
967 }; // class UnitTestImpl
968 
969 // Convenience function for accessing the global UnitTest
970 // implementation object.
971 inline UnitTestImpl* GetUnitTestImpl() {
972  return UnitTest::GetInstance()->impl();
973 }
974 
975 #if GTEST_USES_SIMPLE_RE
976 
977 // Internal helper functions for implementing the simple regular
978 // expression matcher.
979 GTEST_API_ bool IsInSet(char ch, const char* str);
980 GTEST_API_ bool IsAsciiDigit(char ch);
981 GTEST_API_ bool IsAsciiPunct(char ch);
982 GTEST_API_ bool IsRepeat(char ch);
983 GTEST_API_ bool IsAsciiWhiteSpace(char ch);
984 GTEST_API_ bool IsAsciiWordChar(char ch);
985 GTEST_API_ bool IsValidEscape(char ch);
986 GTEST_API_ bool AtomMatchesChar(bool escaped, char pattern, char ch);
987 GTEST_API_ bool ValidateRegex(const char* regex);
988 GTEST_API_ bool MatchRegexAtHead(const char* regex, const char* str);
989 GTEST_API_ bool MatchRepetitionAndRegexAtHead(
990  bool escaped, char ch, char repeat, const char* regex, const char* str);
991 GTEST_API_ bool MatchRegexAnywhere(const char* regex, const char* str);
992 
993 #endif // GTEST_USES_SIMPLE_RE
994 
995 // Parses the command line for Google Test flags, without initializing
996 // other parts of Google Test.
997 GTEST_API_ void ParseGoogleTestFlagsOnly(int* argc, char** argv);
998 GTEST_API_ void ParseGoogleTestFlagsOnly(int* argc, wchar_t** argv);
999 
1000 #if GTEST_HAS_DEATH_TEST
1001 
1002 // Returns the message describing the last system error, regardless of the
1003 // platform.
1004 GTEST_API_ std::string GetLastErrnoDescription();
1005 
1006 // Attempts to parse a string into a positive integer pointed to by the
1007 // number parameter. Returns true if that is possible.
1008 // GTEST_HAS_DEATH_TEST implies that we have ::std::string, so we can use
1009 // it here.
1010 template <typename Integer>
1011 bool ParseNaturalNumber(const ::std::string& str, Integer* number) {
1012  // Fail fast if the given string does not begin with a digit;
1013  // this bypasses strtoXXX's "optional leading whitespace and plus
1014  // or minus sign" semantics, which are undesirable here.
1015  if (str.empty() || !IsDigit(str[0])) {
1016  return false;
1017  }
1018  errno = 0;
1019 
1020  char* end;
1021  // BiggestConvertible is the largest integer type that system-provided
1022  // string-to-number conversion routines can return.
1023  using BiggestConvertible = unsigned long long; // NOLINT
1024 
1025  const BiggestConvertible parsed = strtoull(str.c_str(), &end, 10); // NOLINT
1026  const bool parse_success = *end == '\0' && errno == 0;
1027 
1028  GTEST_CHECK_(sizeof(Integer) <= sizeof(parsed));
1029 
1030  const Integer result = static_cast<Integer>(parsed);
1031  if (parse_success && static_cast<BiggestConvertible>(result) == parsed) {
1032  *number = result;
1033  return true;
1034  }
1035  return false;
1036 }
1037 #endif // GTEST_HAS_DEATH_TEST
1038 
1039 // TestResult contains some private methods that should be hidden from
1040 // Google Test user but are required for testing. This class allow our tests
1041 // to access them.
1042 //
1043 // This class is supplied only for the purpose of testing Google Test's own
1044 // constructs. Do not use it in user tests, either directly or indirectly.
1045 class TestResultAccessor {
1046  public:
1047  static void RecordProperty(TestResult* test_result,
1048  const std::string& xml_element,
1049  const TestProperty& property) {
1050  test_result->RecordProperty(xml_element, property);
1051  }
1052 
1053  static void ClearTestPartResults(TestResult* test_result) {
1054  test_result->ClearTestPartResults();
1055  }
1056 
1057  static const std::vector<testing::TestPartResult>& test_part_results(
1058  const TestResult& test_result) {
1059  return test_result.test_part_results();
1060  }
1061 };
1062 
1063 #if GTEST_CAN_STREAM_RESULTS_
1064 
1065 // Streams test results to the given port on the given host machine.
1066 class StreamingListener : public EmptyTestEventListener {
1067  public:
1068  // Abstract base class for writing strings to a socket.
1069  class AbstractSocketWriter {
1070  public:
1071  virtual ~AbstractSocketWriter() {}
1072 
1073  // Sends a string to the socket.
1074  virtual void Send(const std::string& message) = 0;
1075 
1076  // Closes the socket.
1077  virtual void CloseConnection() {}
1078 
1079  // Sends a string and a newline to the socket.
1080  void SendLn(const std::string& message) { Send(message + "\n"); }
1081  };
1082 
1083  // Concrete class for actually writing strings to a socket.
1084  class SocketWriter : public AbstractSocketWriter {
1085  public:
1086  SocketWriter(const std::string& host, const std::string& port)
1087  : sockfd_(-1), host_name_(host), port_num_(port) {
1088  MakeConnection();
1089  }
1090 
1091  ~SocketWriter() override {
1092  if (sockfd_ != -1)
1093  CloseConnection();
1094  }
1095 
1096  // Sends a string to the socket.
1097  void Send(const std::string& message) override {
1098  GTEST_CHECK_(sockfd_ != -1)
1099  << "Send() can be called only when there is a connection.";
1100 
1101  const auto len = static_cast<size_t>(message.length());
1102  if (write(sockfd_, message.c_str(), len) != static_cast<ssize_t>(len)) {
1103  GTEST_LOG_(WARNING)
1104  << "stream_result_to: failed to stream to "
1105  << host_name_ << ":" << port_num_;
1106  }
1107  }
1108 
1109  private:
1110  // Creates a client socket and connects to the server.
1111  void MakeConnection();
1112 
1113  // Closes the socket.
1114  void CloseConnection() override {
1115  GTEST_CHECK_(sockfd_ != -1)
1116  << "CloseConnection() can be called only when there is a connection.";
1117 
1118  close(sockfd_);
1119  sockfd_ = -1;
1120  }
1121 
1122  int sockfd_; // socket file descriptor
1123  const std::string host_name_;
1124  const std::string port_num_;
1125 
1126  GTEST_DISALLOW_COPY_AND_ASSIGN_(SocketWriter);
1127  }; // class SocketWriter
1128 
1129  // Escapes '=', '&', '%', and '\n' characters in str as "%xx".
1130  static std::string UrlEncode(const char* str);
1131 
1132  StreamingListener(const std::string& host, const std::string& port)
1133  : socket_writer_(new SocketWriter(host, port)) {
1134  Start();
1135  }
1136 
1137  explicit StreamingListener(AbstractSocketWriter* socket_writer)
1138  : socket_writer_(socket_writer) { Start(); }
1139 
1140  void OnTestProgramStart(const UnitTest& /* unit_test */) override {
1141  SendLn("event=TestProgramStart");
1142  }
1143 
1144  void OnTestProgramEnd(const UnitTest& unit_test) override {
1145  // Note that Google Test current only report elapsed time for each
1146  // test iteration, not for the entire test program.
1147  SendLn("event=TestProgramEnd&passed=" + FormatBool(unit_test.Passed()));
1148 
1149  // Notify the streaming server to stop.
1150  socket_writer_->CloseConnection();
1151  }
1152 
1153  void OnTestIterationStart(const UnitTest& /* unit_test */,
1154  int iteration) override {
1155  SendLn("event=TestIterationStart&iteration=" +
1156  StreamableToString(iteration));
1157  }
1158 
1159  void OnTestIterationEnd(const UnitTest& unit_test,
1160  int /* iteration */) override {
1161  SendLn("event=TestIterationEnd&passed=" +
1162  FormatBool(unit_test.Passed()) + "&elapsed_time=" +
1163  StreamableToString(unit_test.elapsed_time()) + "ms");
1164  }
1165 
1166  // Note that "event=TestCaseStart" is a wire format and has to remain
1167  // "case" for compatibilty
1168  void OnTestCaseStart(const TestCase& test_case) override {
1169  SendLn(std::string("event=TestCaseStart&name=") + test_case.name());
1170  }
1171 
1172  // Note that "event=TestCaseEnd" is a wire format and has to remain
1173  // "case" for compatibilty
1174  void OnTestCaseEnd(const TestCase& test_case) override {
1175  SendLn("event=TestCaseEnd&passed=" + FormatBool(test_case.Passed()) +
1176  "&elapsed_time=" + StreamableToString(test_case.elapsed_time()) +
1177  "ms");
1178  }
1179 
1180  void OnTestStart(const TestInfo& test_info) override {
1181  SendLn(std::string("event=TestStart&name=") + test_info.name());
1182  }
1183 
1184  void OnTestEnd(const TestInfo& test_info) override {
1185  SendLn("event=TestEnd&passed=" +
1186  FormatBool((test_info.result())->Passed()) +
1187  "&elapsed_time=" +
1188  StreamableToString((test_info.result())->elapsed_time()) + "ms");
1189  }
1190 
1191  void OnTestPartResult(const TestPartResult& test_part_result) override {
1192  const char* file_name = test_part_result.file_name();
1193  if (file_name == nullptr) file_name = "";
1194  SendLn("event=TestPartResult&file=" + UrlEncode(file_name) +
1195  "&line=" + StreamableToString(test_part_result.line_number()) +
1196  "&message=" + UrlEncode(test_part_result.message()));
1197  }
1198 
1199  private:
1200  // Sends the given message and a newline to the socket.
1201  void SendLn(const std::string& message) { socket_writer_->SendLn(message); }
1202 
1203  // Called at the start of streaming to notify the receiver what
1204  // protocol we are using.
1205  void Start() { SendLn("gtest_streaming_protocol_version=1.0"); }
1206 
1207  std::string FormatBool(bool value) { return value ? "1" : "0"; }
1208 
1209  const std::unique_ptr<AbstractSocketWriter> socket_writer_;
1210 
1211  GTEST_DISALLOW_COPY_AND_ASSIGN_(StreamingListener);
1212 }; // class StreamingListener
1213 
1214 #endif // GTEST_CAN_STREAM_RESULTS_
1215 
1216 } // namespace internal
1217 } // namespace testing
1218 
1220 
1221 #endif // GOOGLETEST_SRC_GTEST_INTERNAL_INL_H_
#define GTEST_DECLARE_bool_(name)
Definition: cmake-build-debug/googletest-src/googletest/include/gtest/internal/gtest-port.h:2198
#define GTEST_FLAG(name)
Definition: cmake-build-debug/googletest-src/googletest/include/gtest/internal/gtest-port.h:2187
#define GTEST_LOG_(severity)
Definition: cmake-build-debug/googletest-src/googletest/include/gtest/internal/gtest-port.h:980
#define GTEST_NO_INLINE_
Definition: cmake-build-debug/googletest-src/googletest/include/gtest/internal/gtest-port.h:786
#define GTEST_API_
Definition: cmake-build-debug/googletest-src/googletest/include/gtest/internal/gtest-port.h:775
#define GTEST_DISABLE_MSC_WARNINGS_POP_()
Definition: cmake-build-debug/googletest-src/googletest/include/gtest/internal/gtest-port.h:324
#define GTEST_CHECK_(condition)
Definition: cmake-build-debug/googletest-src/googletest/include/gtest/internal/gtest-port.h:1004
#define GTEST_ATTRIBUTE_UNUSED_
Definition: cmake-build-debug/googletest-src/googletest/include/gtest/internal/gtest-port.h:665
#define GTEST_DISALLOW_COPY_AND_ASSIGN_(type)
Definition: cmake-build-debug/googletest-src/googletest/include/gtest/internal/gtest-port.h:693
GTEST_DISABLE_MSC_WARNINGS_PUSH_(4251) namespace testing
Definition: cmake-build-debug/googletest-src/googletest/src/gtest-internal-inl.h:64
void(*)() SetUpTestSuiteFunc
Definition: cmake-build-debug/googletest-src/googletest/include/gtest/internal/gtest-internal.h:489
const void * TypeId
Definition: cmake-build-debug/googletest-src/googletest/include/gtest/internal/gtest-internal.h:417
bool IsDigit(char ch)
Definition: cmake-build-debug/googletest-src/googletest/include/gtest/internal/gtest-port.h:1924
std::string StreamableToString(const T &streamable)
Definition: cmake-build-debug/googletest-src/googletest/include/gtest/gtest-message.h:210
void(*)() TearDownTestSuiteFunc
Definition: cmake-build-debug/googletest-src/googletest/include/gtest/internal/gtest-internal.h:490
Definition: cmake-build-debug/googletest-src/googlemock/include/gmock/gmock-actions.h:154
internal::TimeInMillis TimeInMillis
Definition: cmake-build-debug/googletest-src/googletest/include/gtest/gtest.h:528