45#ifdef GTEST_HAS_DEATH_TEST
48#include <crt_externs.h>
61#ifdef GTEST_OS_WINDOWS
72#ifdef GTEST_OS_FUCHSIA
73#include <lib/fdio/fd.h>
74#include <lib/fdio/io.h>
75#include <lib/fdio/spawn.h>
76#include <lib/zx/channel.h>
77#include <lib/zx/port.h>
78#include <lib/zx/process.h>
79#include <lib/zx/socket.h>
80#include <zircon/processargs.h>
81#include <zircon/syscalls.h>
82#include <zircon/syscalls/policy.h>
83#include <zircon/syscalls/port.h>
109 "Indicates how to run a death test in a forked child process: "
110 "\"threadsafe\" (child process re-executes the test binary "
111 "from the beginning, running only the specific death test) or "
112 "\"fast\" (child process runs the death test immediately "
118 "Instructs to use fork()/_exit() instead of clone() in death tests. "
119 "Ignored and always uses fork() on POSIX systems where clone() is not "
120 "implemented. Useful when running under valgrind or similar tools if "
121 "those do not support clone(). Valgrind 3.3.1 will just fail if "
122 "it sees an unsupported combination of clone() flags. "
123 "It is not recommended to use this flag w/o valgrind though it will "
124 "work in 99% of the cases. Once valgrind is fixed, this flag will "
125 "most likely be removed.");
128 internal_run_death_test,
"",
129 "Indicates the file, line number, temporal index of "
130 "the single death test to run, and a file descriptor to "
131 "which a success code may be sent, all separated by "
132 "the '|' characters. This flag is specified if and only if the "
133 "current process is a sub-process launched for running a thread-safe "
134 "death test. FOR INTERNAL USE ONLY.");
138#ifdef GTEST_HAS_DEATH_TEST
144#if !defined(GTEST_OS_WINDOWS) && !defined(GTEST_OS_FUCHSIA)
145static bool g_in_fast_death_test_child =
false;
153bool InDeathTestChild() {
154#if defined(GTEST_OS_WINDOWS) || defined(GTEST_OS_FUCHSIA)
165 return g_in_fast_death_test_child;
172ExitedWithCode::ExitedWithCode(
int exit_code) : exit_code_(exit_code) {}
175bool ExitedWithCode::operator()(
int exit_status)
const {
176#if defined(GTEST_OS_WINDOWS) || defined(GTEST_OS_FUCHSIA)
178 return exit_status == exit_code_;
182 return WIFEXITED(exit_status) && WEXITSTATUS(exit_status) == exit_code_;
187#if !defined(GTEST_OS_WINDOWS) && !defined(GTEST_OS_FUCHSIA)
189KilledBySignal::KilledBySignal(
int signum) : signum_(signum) {}
192bool KilledBySignal::operator()(
int exit_status)
const {
193#if defined(GTEST_KILLED_BY_SIGNAL_OVERRIDE_)
196 if (GTEST_KILLED_BY_SIGNAL_OVERRIDE_(signum_, exit_status, &result)) {
201 return WIFSIGNALED(exit_status) && WTERMSIG(exit_status) == signum_;
211static std::string ExitSummary(
int exit_code) {
214#if defined(GTEST_OS_WINDOWS) || defined(GTEST_OS_FUCHSIA)
216 m <<
"Exited with exit status " << exit_code;
220 if (WIFEXITED(exit_code)) {
221 m <<
"Exited with exit status " << WEXITSTATUS(exit_code);
222 }
else if (WIFSIGNALED(exit_code)) {
223 m <<
"Terminated by signal " << WTERMSIG(exit_code);
226 if (WCOREDUMP(exit_code)) {
227 m <<
" (core dumped)";
232 return m.GetString();
237bool ExitedUnsuccessfully(
int exit_status) {
238 return !ExitedWithCode(0)(exit_status);
241#if !defined(GTEST_OS_WINDOWS) && !defined(GTEST_OS_FUCHSIA)
246static std::string DeathTestThreadWarning(
size_t thread_count) {
248 msg <<
"Death tests use fork(), which is unsafe particularly"
249 <<
" in a threaded context. For this test, " <<
GTEST_NAME_ <<
" ";
250 if (thread_count == 0) {
251 msg <<
"couldn't detect the number of threads.";
253 msg <<
"detected " << thread_count <<
" threads.";
256 "https://github.com/google/googletest/blob/main/docs/"
257 "advanced.md#death-tests-and-threads"
258 <<
" for more explanation and suggested solutions, especially if"
259 <<
" this is the last message you see before your test times out.";
260 return msg.GetString();
265static const char kDeathTestLived =
'L';
266static const char kDeathTestReturned =
'R';
267static const char kDeathTestThrew =
'T';
268static const char kDeathTestInternalError =
'I';
270#ifdef GTEST_OS_FUCHSIA
273static const int kFuchsiaReadPipeFd = 3;
284enum DeathTestOutcome { IN_PROGRESS, DIED, LIVED, RETURNED, THREW };
291[[noreturn]]
static void DeathTestAbort(
const std::string& message) {
295 const InternalRunDeathTestFlag*
const flag =
296 GetUnitTestImpl()->internal_run_death_test_flag();
297 if (flag !=
nullptr) {
299 fputc(kDeathTestInternalError, parent);
300 fprintf(parent,
"%s",
message.c_str());
304 fprintf(stderr,
"%s",
message.c_str());
312#define GTEST_DEATH_TEST_CHECK_(expression) \
314 if (!::testing::internal::IsTrue(expression)) { \
315 DeathTestAbort(::std::string("CHECK failed: File ") + __FILE__ + \
317 ::testing::internal::StreamableToString(__LINE__) + \
318 ": " + #expression); \
320 } while (::testing::internal::AlwaysFalse())
329#define GTEST_DEATH_TEST_CHECK_SYSCALL_(expression) \
333 gtest_retval = (expression); \
334 } while (gtest_retval == -1 && errno == EINTR); \
335 if (gtest_retval == -1) { \
336 DeathTestAbort(::std::string("CHECK failed: File ") + __FILE__ + \
338 ::testing::internal::StreamableToString(__LINE__) + \
339 ": " + #expression + " != -1"); \
341 } while (::testing::internal::AlwaysFalse())
344std::string GetLastErrnoDescription() {
352static void FailFromInternalError(
int fd) {
358 while ((num_read =
posix::Read(fd, buffer, 255)) > 0) {
359 buffer[num_read] =
'\0';
362 }
while (num_read == -1 && errno == EINTR);
367 const int last_error = errno;
368 GTEST_LOG_(FATAL) <<
"Error while reading death test internal: "
369 << GetLastErrnoDescription() <<
" [" << last_error <<
"]";
375DeathTest::DeathTest() {
376 TestInfo*
const info = GetUnitTestImpl()->current_test_info();
377 if (info ==
nullptr) {
379 "Cannot run a death test outside of a TEST or "
386bool DeathTest::Create(
const char* statement,
387 Matcher<const std::string&> matcher,
const char* file,
388 int line, DeathTest** test) {
389 return GetUnitTestImpl()->death_test_factory()->Create(
390 statement, std::move(matcher), file, line, test);
393const char* DeathTest::LastMessage() {
394 return last_death_test_message_.c_str();
397void DeathTest::set_last_death_test_message(
const std::string& message) {
398 last_death_test_message_ =
message;
401std::string DeathTest::last_death_test_message_;
404class DeathTestImpl :
public DeathTest {
406 DeathTestImpl(
const char* a_statement, Matcher<const std::string&> matcher)
407 : statement_(a_statement),
408 matcher_(
std::move(matcher)),
411 outcome_(IN_PROGRESS),
416 ~DeathTestImpl()
override { GTEST_DEATH_TEST_CHECK_(read_fd_ == -1); }
418 void Abort(AbortReason reason)
override;
419 bool Passed(
bool status_ok)
override;
421 const char* statement()
const {
return statement_; }
422 bool spawned()
const {
return spawned_; }
423 void set_spawned(
bool is_spawned) { spawned_ = is_spawned; }
424 int status()
const {
return status_; }
425 void set_status(
int a_status) { status_ = a_status; }
426 DeathTestOutcome outcome()
const {
return outcome_; }
427 void set_outcome(DeathTestOutcome an_outcome) { outcome_ = an_outcome; }
428 int read_fd()
const {
return read_fd_; }
429 void set_read_fd(
int fd) { read_fd_ = fd; }
430 int write_fd()
const {
return write_fd_; }
431 void set_write_fd(
int fd) { write_fd_ = fd; }
437 void ReadAndInterpretStatusByte();
440 virtual std::string GetErrorLogs();
445 const char*
const statement_;
447 Matcher<const std::string&> matcher_;
453 DeathTestOutcome outcome_;
468void DeathTestImpl::ReadAndInterpretStatusByte() {
478 }
while (bytes_read == -1 && errno == EINTR);
480 if (bytes_read == 0) {
482 }
else if (bytes_read == 1) {
484 case kDeathTestReturned:
485 set_outcome(RETURNED);
487 case kDeathTestThrew:
490 case kDeathTestLived:
493 case kDeathTestInternalError:
494 FailFromInternalError(read_fd());
497 GTEST_LOG_(FATAL) <<
"Death test child process reported "
498 <<
"unexpected status byte ("
499 <<
static_cast<unsigned int>(flag) <<
")";
502 GTEST_LOG_(FATAL) <<
"Read from death test child process failed: "
503 << GetLastErrnoDescription();
505 GTEST_DEATH_TEST_CHECK_SYSCALL_(
posix::Close(read_fd()));
509std::string DeathTestImpl::GetErrorLogs() {
return GetCapturedStderr(); }
515void DeathTestImpl::Abort(AbortReason reason) {
519 const char status_ch = reason == TEST_DID_NOT_DIE ? kDeathTestLived
520 : reason == TEST_THREW_EXCEPTION ? kDeathTestThrew
521 : kDeathTestReturned;
523 GTEST_DEATH_TEST_CHECK_SYSCALL_(
posix::Write(write_fd(), &status_ch, 1));
538static ::std::string FormatDeathTestOutput(const ::std::string& output) {
540 for (
size_t at = 0;;) {
541 const size_t line_end =
output.find(
'\n', at);
543 if (line_end == ::std::string::npos) {
547 ret +=
output.substr(at, line_end + 1 - at);
574bool DeathTestImpl::Passed(
bool status_ok) {
575 if (!spawned())
return false;
577 const std::string error_message = GetErrorLogs();
579 bool success =
false;
582 buffer <<
"Death test: " << statement() <<
"\n";
585 buffer <<
" Result: failed to die.\n"
587 << FormatDeathTestOutput(error_message);
590 buffer <<
" Result: threw an exception.\n"
592 << FormatDeathTestOutput(error_message);
595 buffer <<
" Result: illegal return in test statement.\n"
597 << FormatDeathTestOutput(error_message);
601 if (matcher_.Matches(error_message)) {
604 std::ostringstream stream;
605 matcher_.DescribeTo(&stream);
606 buffer <<
" Result: died but not with expected error.\n"
607 <<
" Expected: " << stream.str() <<
"\n"
609 << FormatDeathTestOutput(error_message);
612 buffer <<
" Result: died but not with expected exit code:\n"
613 <<
" " << ExitSummary(status()) <<
"\n"
615 << FormatDeathTestOutput(error_message);
621 <<
"DeathTest::Passed somehow called before conclusion of test";
624 DeathTest::set_last_death_test_message(buffer.GetString());
628#ifndef GTEST_OS_WINDOWS
631static std::unique_ptr<char*[]> CreateArgvFromArgs(
632 std::vector<std::string>& args) {
633 auto result = std::make_unique<char*[]>(args.size() + 1);
634 for (
size_t i = 0;
i < args.size(); ++
i) {
635 result[
i] = &args[
i][0];
637 result[args.size()] =
nullptr;
642#ifdef GTEST_OS_WINDOWS
671class WindowsDeathTest :
public DeathTestImpl {
673 WindowsDeathTest(
const char* a_statement, Matcher<const std::string&> matcher,
674 const char* file,
int line)
675 : DeathTestImpl(a_statement,
std::move(matcher)),
681 virtual TestRole AssumeRole();
685 const char*
const file_;
689 AutoHandle write_handle_;
691 AutoHandle child_handle_;
696 AutoHandle event_handle_;
702int WindowsDeathTest::Wait() {
703 if (!spawned())
return 0;
707 const HANDLE wait_handles[2] = {child_handle_.Get(), event_handle_.Get()};
708 switch (::WaitForMultipleObjects(2, wait_handles,
712 case WAIT_OBJECT_0 + 1:
715 GTEST_DEATH_TEST_CHECK_(
false);
720 write_handle_.Reset();
721 event_handle_.Reset();
723 ReadAndInterpretStatusByte();
729 GTEST_DEATH_TEST_CHECK_(WAIT_OBJECT_0 ==
730 ::WaitForSingleObject(child_handle_.Get(), INFINITE));
732 GTEST_DEATH_TEST_CHECK_(
733 ::GetExitCodeProcess(child_handle_.Get(), &status_code) != FALSE);
734 child_handle_.Reset();
735 set_status(
static_cast<int>(status_code));
744DeathTest::TestRole WindowsDeathTest::AssumeRole() {
745 const UnitTestImpl*
const impl = GetUnitTestImpl();
746 const InternalRunDeathTestFlag*
const flag =
747 impl->internal_run_death_test_flag();
748 const TestInfo*
const info = impl->current_test_info();
749 const int death_test_index = info->result()->death_test_count();
751 if (flag !=
nullptr) {
754 set_write_fd(flag->write_fd());
760 SECURITY_ATTRIBUTES handles_are_inheritable = {
sizeof(SECURITY_ATTRIBUTES),
762 HANDLE read_handle, write_handle;
763 GTEST_DEATH_TEST_CHECK_(::CreatePipe(&read_handle, &write_handle,
764 &handles_are_inheritable,
768 ::_open_osfhandle(
reinterpret_cast<intptr_t
>(read_handle), O_RDONLY));
769 write_handle_.Reset(write_handle);
770 event_handle_.Reset(::CreateEvent(
771 &handles_are_inheritable,
775 GTEST_DEATH_TEST_CHECK_(event_handle_.Get() !=
nullptr);
777 "filter=" + info->test_suite_name() +
"." +
779 const std::string internal_flag =
781 "internal_run_death_test=" + file_ +
"|" + StreamableToString(line_) +
782 "|" + StreamableToString(death_test_index) +
"|" +
783 StreamableToString(
static_cast<unsigned int>(::GetCurrentProcessId())) +
787 "|" + StreamableToString(
reinterpret_cast<size_t>(write_handle)) +
"|" +
788 StreamableToString(
reinterpret_cast<size_t>(event_handle_.Get()));
790 char executable_path[_MAX_PATH + 1];
791 GTEST_DEATH_TEST_CHECK_(_MAX_PATH + 1 != ::GetModuleFileNameA(
nullptr,
795 std::string command_line = std::string(::GetCommandLineA()) +
" " +
796 filter_flag +
" \"" + internal_flag +
"\"";
798 DeathTest::set_last_death_test_message(
"");
805 STARTUPINFOA startup_info;
806 memset(&startup_info, 0,
sizeof(STARTUPINFO));
807 startup_info.dwFlags = STARTF_USESTDHANDLES;
808 startup_info.hStdInput = ::GetStdHandle(STD_INPUT_HANDLE);
809 startup_info.hStdOutput = ::GetStdHandle(STD_OUTPUT_HANDLE);
810 startup_info.hStdError = ::GetStdHandle(STD_ERROR_HANDLE);
812 PROCESS_INFORMATION process_info;
813 GTEST_DEATH_TEST_CHECK_(
815 executable_path,
const_cast<char*
>(command_line.c_str()),
821 UnitTest::GetInstance()->original_working_dir(), &startup_info,
822 &process_info) != FALSE);
823 child_handle_.Reset(process_info.hProcess);
824 ::CloseHandle(process_info.hThread);
829#elif defined(GTEST_OS_FUCHSIA)
831class FuchsiaDeathTest :
public DeathTestImpl {
833 FuchsiaDeathTest(
const char* a_statement, Matcher<const std::string&> matcher,
834 const char* file,
int line)
835 : DeathTestImpl(a_statement,
std::move(matcher)),
841 TestRole AssumeRole()
override;
842 std::string GetErrorLogs()
override;
846 const char*
const file_;
850 std::string captured_stderr_;
852 zx::process child_process_;
853 zx::channel exception_channel_;
854 zx::socket stderr_socket_;
860int FuchsiaDeathTest::Wait() {
861 const int kProcessKey = 0;
862 const int kSocketKey = 1;
863 const int kExceptionKey = 2;
865 if (!spawned())
return 0;
868 zx_status_t status_zx;
870 status_zx = zx::port::create(0, &port);
871 GTEST_DEATH_TEST_CHECK_(status_zx == ZX_OK);
875 child_process_.wait_async(port, kProcessKey, ZX_PROCESS_TERMINATED, 0);
876 GTEST_DEATH_TEST_CHECK_(status_zx == ZX_OK);
879 status_zx = stderr_socket_.wait_async(
880 port, kSocketKey, ZX_SOCKET_READABLE | ZX_SOCKET_PEER_CLOSED, 0);
881 GTEST_DEATH_TEST_CHECK_(status_zx == ZX_OK);
884 status_zx = exception_channel_.wait_async(port, kExceptionKey,
885 ZX_CHANNEL_READABLE, 0);
886 GTEST_DEATH_TEST_CHECK_(status_zx == ZX_OK);
888 bool process_terminated =
false;
889 bool socket_closed =
false;
891 zx_port_packet_t packet = {};
892 status_zx = port.wait(zx::time::infinite(), &packet);
893 GTEST_DEATH_TEST_CHECK_(status_zx == ZX_OK);
895 if (packet.key == kExceptionKey) {
899 status_zx = child_process_.kill();
900 GTEST_DEATH_TEST_CHECK_(status_zx == ZX_OK);
901 }
else if (packet.key == kProcessKey) {
903 GTEST_DEATH_TEST_CHECK_(ZX_PKT_IS_SIGNAL_ONE(packet.type));
904 GTEST_DEATH_TEST_CHECK_(packet.signal.observed & ZX_PROCESS_TERMINATED);
905 process_terminated =
true;
906 }
else if (packet.key == kSocketKey) {
907 GTEST_DEATH_TEST_CHECK_(ZX_PKT_IS_SIGNAL_ONE(packet.type));
908 if (packet.signal.observed & ZX_SOCKET_READABLE) {
910 constexpr size_t kBufferSize = 1024;
912 size_t old_length = captured_stderr_.length();
913 size_t bytes_read = 0;
914 captured_stderr_.resize(old_length + kBufferSize);
916 stderr_socket_.read(0, &captured_stderr_.front() + old_length,
917 kBufferSize, &bytes_read);
918 captured_stderr_.resize(old_length + bytes_read);
919 }
while (status_zx == ZX_OK);
920 if (status_zx == ZX_ERR_PEER_CLOSED) {
921 socket_closed =
true;
923 GTEST_DEATH_TEST_CHECK_(status_zx == ZX_ERR_SHOULD_WAIT);
924 status_zx = stderr_socket_.wait_async(
925 port, kSocketKey, ZX_SOCKET_READABLE | ZX_SOCKET_PEER_CLOSED, 0);
926 GTEST_DEATH_TEST_CHECK_(status_zx == ZX_OK);
929 GTEST_DEATH_TEST_CHECK_(packet.signal.observed & ZX_SOCKET_PEER_CLOSED);
930 socket_closed =
true;
933 }
while (!process_terminated && !socket_closed);
935 ReadAndInterpretStatusByte();
937 zx_info_process_t buffer;
938 status_zx = child_process_.get_info(ZX_INFO_PROCESS, &buffer,
sizeof(buffer),
940 GTEST_DEATH_TEST_CHECK_(status_zx == ZX_OK);
942 GTEST_DEATH_TEST_CHECK_(buffer.flags & ZX_INFO_PROCESS_FLAG_EXITED);
943 set_status(
static_cast<int>(buffer.return_code));
952DeathTest::TestRole FuchsiaDeathTest::AssumeRole() {
953 const UnitTestImpl*
const impl = GetUnitTestImpl();
954 const InternalRunDeathTestFlag*
const flag =
955 impl->internal_run_death_test_flag();
956 const TestInfo*
const info = impl->current_test_info();
957 const int death_test_index = info->result()->death_test_count();
959 if (flag !=
nullptr) {
962 set_write_fd(kFuchsiaReadPipeFd);
971 "filter=" + info->test_suite_name() +
"." +
975 "|" + StreamableToString(line_) +
"|" +
976 StreamableToString(death_test_index);
978 std::vector<std::string> args = GetInjectableArgvs();
979 args.push_back(filter_flag);
980 args.push_back(internal_flag);
984 zx_handle_t child_pipe_handle;
986 status = fdio_pipe_half(&child_pipe_fd, &child_pipe_handle);
987 GTEST_DEATH_TEST_CHECK_(status == ZX_OK);
988 set_read_fd(child_pipe_fd);
991 fdio_spawn_action_t spawn_actions[2] = {};
992 fdio_spawn_action_t* add_handle_action = &spawn_actions[0];
993 add_handle_action->action = FDIO_SPAWN_ACTION_ADD_HANDLE;
994 add_handle_action->h.id = PA_HND(PA_FD, kFuchsiaReadPipeFd);
995 add_handle_action->h.handle = child_pipe_handle;
998 zx::socket stderr_producer_socket;
999 status = zx::socket::create(0, &stderr_producer_socket, &stderr_socket_);
1000 GTEST_DEATH_TEST_CHECK_(status >= 0);
1001 int stderr_producer_fd = -1;
1003 fdio_fd_create(stderr_producer_socket.release(), &stderr_producer_fd);
1004 GTEST_DEATH_TEST_CHECK_(status >= 0);
1007 GTEST_DEATH_TEST_CHECK_(fcntl(stderr_producer_fd, F_SETFL, 0) == 0);
1009 fdio_spawn_action_t* add_stderr_action = &spawn_actions[1];
1010 add_stderr_action->action = FDIO_SPAWN_ACTION_CLONE_FD;
1011 add_stderr_action->fd.local_fd = stderr_producer_fd;
1012 add_stderr_action->fd.target_fd = STDERR_FILENO;
1015 zx_handle_t child_job = ZX_HANDLE_INVALID;
1016 status = zx_job_create(zx_job_default(), 0, &child_job);
1017 GTEST_DEATH_TEST_CHECK_(status == ZX_OK);
1018 zx_policy_basic_t policy;
1019 policy.condition = ZX_POL_NEW_ANY;
1020 policy.policy = ZX_POL_ACTION_ALLOW;
1021 status = zx_job_set_policy(child_job, ZX_JOB_POL_RELATIVE, ZX_JOB_POL_BASIC,
1023 GTEST_DEATH_TEST_CHECK_(status == ZX_OK);
1027 status = zx_task_create_exception_channel(
1028 child_job, 0, exception_channel_.reset_and_get_address());
1029 GTEST_DEATH_TEST_CHECK_(status == ZX_OK);
1037 std::unique_ptr<char*[]> argv = CreateArgvFromArgs(args);
1038 status = fdio_spawn_etc(child_job, FDIO_SPAWN_CLONE_ALL, argv[0], argv.get(),
1039 nullptr, 2, spawn_actions,
1040 child_process_.reset_and_get_address(),
nullptr);
1041 GTEST_DEATH_TEST_CHECK_(status == ZX_OK);
1044 return OVERSEE_TEST;
1047std::string FuchsiaDeathTest::GetErrorLogs() {
return captured_stderr_; }
1054class ForkingDeathTest :
public DeathTestImpl {
1056 ForkingDeathTest(
const char* statement, Matcher<const std::string&> matcher);
1059 int Wait()
override;
1062 void set_child_pid(pid_t child_pid) { child_pid_ = child_pid; }
1070ForkingDeathTest::ForkingDeathTest(
const char* a_statement,
1071 Matcher<const std::string&> matcher)
1072 : DeathTestImpl(a_statement,
std::move(matcher)), child_pid_(-1) {}
1077int ForkingDeathTest::Wait() {
1078 if (!spawned())
return 0;
1080 ReadAndInterpretStatusByte();
1083 GTEST_DEATH_TEST_CHECK_SYSCALL_(waitpid(child_pid_, &status_value, 0));
1084 set_status(status_value);
1085 return status_value;
1090class NoExecDeathTest :
public ForkingDeathTest {
1092 NoExecDeathTest(
const char* a_statement, Matcher<const std::string&> matcher)
1093 : ForkingDeathTest(a_statement,
std::move(matcher)) {}
1094 TestRole AssumeRole()
override;
1099DeathTest::TestRole NoExecDeathTest::AssumeRole() {
1101 if (thread_count != 1) {
1102 GTEST_LOG_(WARNING) << DeathTestThreadWarning(thread_count);
1106 GTEST_DEATH_TEST_CHECK_(pipe(pipe_fd) != -1);
1108 DeathTest::set_last_death_test_message(
"");
1119 const pid_t child_pid = fork();
1120 GTEST_DEATH_TEST_CHECK_(child_pid != -1);
1121 set_child_pid(child_pid);
1122 if (child_pid == 0) {
1123 GTEST_DEATH_TEST_CHECK_SYSCALL_(close(pipe_fd[0]));
1124 set_write_fd(pipe_fd[1]);
1131 GetUnitTestImpl()->listeners()->SuppressEventForwarding(
true);
1132 g_in_fast_death_test_child =
true;
1133 return EXECUTE_TEST;
1135 GTEST_DEATH_TEST_CHECK_SYSCALL_(close(pipe_fd[1]));
1136 set_read_fd(pipe_fd[0]);
1138 return OVERSEE_TEST;
1145class ExecDeathTest :
public ForkingDeathTest {
1147 ExecDeathTest(
const char* a_statement, Matcher<const std::string&> matcher,
1148 const char* file,
int line)
1149 : ForkingDeathTest(a_statement,
std::move(matcher)),
1152 TestRole AssumeRole()
override;
1155 static ::std::vector<std::string> GetArgvsForDeathTestChildProcess() {
1156 ::std::vector<std::string> args = GetInjectableArgvs();
1157#if defined(GTEST_EXTRA_DEATH_TEST_COMMAND_LINE_ARGS_)
1158 ::std::vector<std::string> extra_args =
1159 GTEST_EXTRA_DEATH_TEST_COMMAND_LINE_ARGS_();
1160 args.insert(args.end(), extra_args.begin(), extra_args.end());
1165 const char*
const file_;
1172struct ExecDeathTestArgs {
1183static int ExecDeathTestChildMain(
void* child_arg) {
1184 ExecDeathTestArgs*
const args =
static_cast<ExecDeathTestArgs*
>(child_arg);
1185 GTEST_DEATH_TEST_CHECK_SYSCALL_(close(args->close_fd));
1190 const char*
const original_dir =
1191 UnitTest::GetInstance()->original_working_dir();
1193 if (chdir(original_dir) != 0) {
1194 DeathTestAbort(std::string(
"chdir(\"") + original_dir +
1195 "\") failed: " + GetLastErrnoDescription());
1196 return EXIT_FAILURE;
1204 execv(args->argv[0], args->argv);
1205 DeathTestAbort(std::string(
"execv(") + args->argv[0] +
", ...) in " +
1206 original_dir +
" failed: " + GetLastErrnoDescription());
1207 return EXIT_FAILURE;
1221static void StackLowerThanAddress(
const void* ptr,
1231static void StackLowerThanAddress(
const void* ptr,
bool* result) {
1233 *result = std::less<const void*>()(&dummy, ptr);
1239static bool StackGrowsDown() {
1242 StackLowerThanAddress(&dummy, &result);
1254static pid_t ExecDeathTestSpawnChild(
char*
const* argv,
int close_fd) {
1255 ExecDeathTestArgs args = {argv, close_fd};
1256 pid_t child_pid = -1;
1261 const int cwd_fd = open(
".", O_RDONLY);
1262 GTEST_DEATH_TEST_CHECK_(cwd_fd != -1);
1263 GTEST_DEATH_TEST_CHECK_SYSCALL_(fcntl(cwd_fd, F_SETFD, FD_CLOEXEC));
1267 const char*
const original_dir =
1268 UnitTest::GetInstance()->original_working_dir();
1270 if (chdir(original_dir) != 0) {
1271 DeathTestAbort(std::string(
"chdir(\"") + original_dir +
1272 "\") failed: " + GetLastErrnoDescription());
1273 return EXIT_FAILURE;
1278 GTEST_DEATH_TEST_CHECK_SYSCALL_(fd_flags = fcntl(close_fd, F_GETFD));
1279 GTEST_DEATH_TEST_CHECK_SYSCALL_(
1280 fcntl(close_fd, F_SETFD, fd_flags | FD_CLOEXEC));
1281 struct inheritance inherit = {0};
1283 child_pid = spawn(args.argv[0], 0,
nullptr, &inherit, args.argv, environ);
1285 GTEST_DEATH_TEST_CHECK_(fchdir(cwd_fd) != -1);
1286 GTEST_DEATH_TEST_CHECK_SYSCALL_(close(cwd_fd));
1289#ifdef GTEST_OS_LINUX
1293 struct sigaction saved_sigprof_action;
1294 struct sigaction ignore_sigprof_action;
1295 memset(&ignore_sigprof_action, 0,
sizeof(ignore_sigprof_action));
1296 sigemptyset(&ignore_sigprof_action.sa_mask);
1297 ignore_sigprof_action.sa_handler = SIG_IGN;
1298 GTEST_DEATH_TEST_CHECK_SYSCALL_(
1299 sigaction(SIGPROF, &ignore_sigprof_action, &saved_sigprof_action));
1306 static const bool stack_grows_down = StackGrowsDown();
1307 const auto stack_size =
static_cast<size_t>(getpagesize() * 2);
1309 void*
const stack = mmap(
nullptr, stack_size, PROT_READ | PROT_WRITE,
1310 MAP_ANON | MAP_PRIVATE, -1, 0);
1311 GTEST_DEATH_TEST_CHECK_(stack != MAP_FAILED);
1319 const size_t kMaxStackAlignment = 64;
1320 void*
const stack_top =
1321 static_cast<char*
>(stack) +
1322 (stack_grows_down ? stack_size - kMaxStackAlignment : 0);
1323 GTEST_DEATH_TEST_CHECK_(
1324 static_cast<size_t>(stack_size) > kMaxStackAlignment &&
1325 reinterpret_cast<uintptr_t
>(stack_top) % kMaxStackAlignment == 0);
1327 child_pid = clone(&ExecDeathTestChildMain, stack_top, SIGCHLD, &args);
1329 GTEST_DEATH_TEST_CHECK_(munmap(stack, stack_size) != -1);
1332 const bool use_fork =
true;
1335 if (use_fork && (child_pid = fork()) == 0) {
1336 _exit(ExecDeathTestChildMain(&args));
1339#ifdef GTEST_OS_LINUX
1340 GTEST_DEATH_TEST_CHECK_SYSCALL_(
1341 sigaction(SIGPROF, &saved_sigprof_action,
nullptr));
1344 GTEST_DEATH_TEST_CHECK_(child_pid != -1);
1352DeathTest::TestRole ExecDeathTest::AssumeRole() {
1353 const UnitTestImpl*
const impl = GetUnitTestImpl();
1354 const InternalRunDeathTestFlag*
const flag =
1355 impl->internal_run_death_test_flag();
1356 const TestInfo*
const info = impl->current_test_info();
1357 const int death_test_index = info->result()->death_test_count();
1359 if (flag !=
nullptr) {
1360 set_write_fd(flag->write_fd());
1361 return EXECUTE_TEST;
1365 GTEST_DEATH_TEST_CHECK_(pipe(pipe_fd) != -1);
1368 GTEST_DEATH_TEST_CHECK_(fcntl(pipe_fd[1], F_SETFD, 0) != -1);
1371 "filter=" + info->test_suite_name() +
"." +
1374 "internal_run_death_test=" + file_ +
"|" +
1375 StreamableToString(line_) +
"|" +
1376 StreamableToString(death_test_index) +
"|" +
1377 StreamableToString(pipe_fd[1]);
1378 std::vector<std::string> args = GetArgvsForDeathTestChildProcess();
1379 args.push_back(filter_flag);
1380 args.push_back(internal_flag);
1382 DeathTest::set_last_death_test_message(
"");
1389 std::unique_ptr<char*[]> argv = CreateArgvFromArgs(args);
1390 const pid_t child_pid = ExecDeathTestSpawnChild(argv.get(), pipe_fd[0]);
1391 GTEST_DEATH_TEST_CHECK_SYSCALL_(close(pipe_fd[1]));
1392 set_child_pid(child_pid);
1393 set_read_fd(pipe_fd[0]);
1395 return OVERSEE_TEST;
1405bool DefaultDeathTestFactory::Create(
const char* statement,
1406 Matcher<const std::string&> matcher,
1407 const char* file,
int line,
1409 UnitTestImpl*
const impl = GetUnitTestImpl();
1410 const InternalRunDeathTestFlag*
const flag =
1411 impl->internal_run_death_test_flag();
1412 const int death_test_index =
1413 impl->current_test_info()->increment_death_test_count();
1415 if (flag !=
nullptr) {
1416 if (death_test_index > flag->index()) {
1417 DeathTest::set_last_death_test_message(
1418 "Death test count (" + StreamableToString(death_test_index) +
1419 ") somehow exceeded expected maximum (" +
1420 StreamableToString(flag->index()) +
")");
1424 if (!(flag->file() == file && flag->line() == line &&
1425 flag->index() == death_test_index)) {
1431#ifdef GTEST_OS_WINDOWS
1435 *test =
new WindowsDeathTest(statement, std::move(matcher), file, line);
1438#elif defined(GTEST_OS_FUCHSIA)
1442 *test =
new FuchsiaDeathTest(statement, std::move(matcher), file, line);
1448 *test =
new ExecDeathTest(statement, std::move(matcher), file, line);
1450 *test =
new NoExecDeathTest(statement, std::move(matcher));
1456 DeathTest::set_last_death_test_message(
"Unknown death test style \"" +
1465#ifdef GTEST_OS_WINDOWS
1469static int GetStatusFileDescriptor(
unsigned int parent_process_id,
1470 size_t write_handle_as_size_t,
1471 size_t event_handle_as_size_t) {
1472 AutoHandle parent_process_handle(::OpenProcess(PROCESS_DUP_HANDLE,
1474 parent_process_id));
1475 if (parent_process_handle.Get() == INVALID_HANDLE_VALUE) {
1476 DeathTestAbort(
"Unable to open parent process " +
1477 StreamableToString(parent_process_id));
1482 const HANDLE write_handle =
reinterpret_cast<HANDLE
>(write_handle_as_size_t);
1483 HANDLE dup_write_handle;
1488 if (!::DuplicateHandle(parent_process_handle.Get(), write_handle,
1489 ::GetCurrentProcess(), &dup_write_handle,
1493 DUPLICATE_SAME_ACCESS)) {
1494 DeathTestAbort(
"Unable to duplicate the pipe handle " +
1495 StreamableToString(write_handle_as_size_t) +
1496 " from the parent process " +
1497 StreamableToString(parent_process_id));
1500 const HANDLE event_handle =
reinterpret_cast<HANDLE
>(event_handle_as_size_t);
1501 HANDLE dup_event_handle;
1503 if (!::DuplicateHandle(parent_process_handle.Get(), event_handle,
1504 ::GetCurrentProcess(), &dup_event_handle, 0x0, FALSE,
1505 DUPLICATE_SAME_ACCESS)) {
1506 DeathTestAbort(
"Unable to duplicate the event handle " +
1507 StreamableToString(event_handle_as_size_t) +
1508 " from the parent process " +
1509 StreamableToString(parent_process_id));
1512 const int write_fd =
1513 ::_open_osfhandle(
reinterpret_cast<intptr_t
>(dup_write_handle), O_APPEND);
1514 if (write_fd == -1) {
1515 DeathTestAbort(
"Unable to convert pipe handle " +
1516 StreamableToString(write_handle_as_size_t) +
1517 " to a file descriptor");
1522 ::SetEvent(dup_event_handle);
1531InternalRunDeathTestFlag* ParseInternalRunDeathTestFlag() {
1532 if (
GTEST_FLAG_GET(internal_run_death_test).empty())
return nullptr;
1538 ::std::vector< ::std::string> fields;
1542#ifdef GTEST_OS_WINDOWS
1544 unsigned int parent_process_id = 0;
1545 size_t write_handle_as_size_t = 0;
1546 size_t event_handle_as_size_t = 0;
1548 if (fields.size() != 6 || !ParseNaturalNumber(fields[1], &line) ||
1549 !ParseNaturalNumber(fields[2], &index) ||
1550 !ParseNaturalNumber(fields[3], &parent_process_id) ||
1551 !ParseNaturalNumber(fields[4], &write_handle_as_size_t) ||
1552 !ParseNaturalNumber(fields[5], &event_handle_as_size_t)) {
1553 DeathTestAbort(
"Bad --gtest_internal_run_death_test flag: " +
1556 write_fd = GetStatusFileDescriptor(parent_process_id, write_handle_as_size_t,
1557 event_handle_as_size_t);
1559#elif defined(GTEST_OS_FUCHSIA)
1561 if (fields.size() != 3 || !ParseNaturalNumber(fields[1], &line) ||
1562 !ParseNaturalNumber(fields[2], &index)) {
1563 DeathTestAbort(
"Bad --gtest_internal_run_death_test flag: " +
1569 if (fields.size() != 4 || !ParseNaturalNumber(fields[1], &line) ||
1570 !ParseNaturalNumber(fields[2], &index) ||
1571 !ParseNaturalNumber(fields[3], &write_fd)) {
1572 DeathTestAbort(
"Bad --gtest_internal_run_death_test flag: " +
1578 return new InternalRunDeathTestFlag(fields[0], line, index, write_fd);
int i
Definition gmock-matchers-comparisons_test.cc:603
#define GTEST_FLAG_PREFIX_
Definition gtest-port.h:331
#define GTEST_NAME_
Definition gtest-port.h:334
#define GTEST_DEFINE_bool_(name, default_val, doc)
Definition gtest-port.h:2258
#define GTEST_DEFAULT_DEATH_TEST_STYLE
Definition gtest-port.h:846
#define GTEST_ATTRIBUTE_NO_SANITIZE_HWADDRESS_
Definition gtest-port.h:898
#define GTEST_DEFINE_string_(name, default_val, doc)
Definition gtest-port.h:2268
#define GTEST_LOG_(severity)
Definition gtest-port.h:1053
#define GTEST_NO_INLINE_
Definition gtest-port.h:853
#define GTEST_CHECK_(condition)
Definition gtest-port.h:1078
#define GTEST_FLAG_GET(name)
Definition gtest-port.h:2293
#define GTEST_ATTRIBUTE_NO_SANITIZE_ADDRESS_
Definition gtest-port.h:889
environ
Definition gmock_leak_test.py:41
output
Definition gmock_output_test.py:182
str message
Definition googletest-output-test.py:377
int Close(int fd)
Definition gtest-port.h:2114
int Read(int fd, void *buf, unsigned int count)
Definition gtest-port.h:2108
void Abort()
Definition gtest-port.h:2147
const char * StrError(int errnum)
Definition gtest-port.h:2119
FILE * FDOpen(int fd, const char *mode)
Definition gtest-port.h:2104
int Write(int fd, const void *buf, unsigned int count)
Definition gtest-port.h:2111
void LogToStderr()
Definition gtest-port.h:1058
void FlushInfoLog()
Definition gtest-port.h:1059
GTEST_API_ size_t GetThreadCount()
Definition gtest-port.cc:265
bool BoolFromGTestEnv(const char *flag, bool default_val)
Definition gtest-port.cc:1324
const char * StringFromGTestEnv(const char *flag, const char *default_val)
Definition gtest-port.cc:1381
const char kInternalRunDeathTestFlag[]
Definition gtest-death-test-internal.h:58
void SplitString(const ::std::string &str, char delimiter, ::std::vector<::std::string > *dest)
Definition gmock-actions.h:151
static const char kDefaultDeathTestStyle[]
Definition gtest-death-test.cc:101