update gtest on windx64
This commit is contained in:
@@ -36,9 +36,11 @@
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#ifndef GTEST_INCLUDE_GTEST_INTERNAL_GTEST_DEATH_TEST_INTERNAL_H_
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#define GTEST_INCLUDE_GTEST_INTERNAL_GTEST_DEATH_TEST_INTERNAL_H_
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#include "gtest/gtest-matchers.h"
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#include "gtest/internal/gtest-internal.h"
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#include <stdio.h>
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#include <memory>
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namespace testing {
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namespace internal {
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@@ -78,7 +80,7 @@ class GTEST_API_ DeathTest {
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// argument is set. If the death test should be skipped, the pointer
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// is set to NULL; otherwise, it is set to the address of a new concrete
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// DeathTest object that controls the execution of the current test.
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static bool Create(const char* statement, const RE* regex,
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static bool Create(const char* statement, Matcher<const std::string&> matcher,
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const char* file, int line, DeathTest** test);
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DeathTest();
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virtual ~DeathTest() { }
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@@ -144,21 +146,44 @@ GTEST_DISABLE_MSC_WARNINGS_POP_() // 4251
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class DeathTestFactory {
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public:
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virtual ~DeathTestFactory() { }
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virtual bool Create(const char* statement, const RE* regex,
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const char* file, int line, DeathTest** test) = 0;
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virtual bool Create(const char* statement,
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Matcher<const std::string&> matcher, const char* file,
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int line, DeathTest** test) = 0;
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};
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// A concrete DeathTestFactory implementation for normal use.
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class DefaultDeathTestFactory : public DeathTestFactory {
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public:
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virtual bool Create(const char* statement, const RE* regex,
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const char* file, int line, DeathTest** test);
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bool Create(const char* statement, Matcher<const std::string&> matcher,
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const char* file, int line, DeathTest** test) override;
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};
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// Returns true if exit_status describes a process that was terminated
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// by a signal, or exited normally with a nonzero exit code.
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GTEST_API_ bool ExitedUnsuccessfully(int exit_status);
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// A string passed to EXPECT_DEATH (etc.) is caught by one of these overloads
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// and interpreted as a regex (rather than an Eq matcher) for legacy
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// compatibility.
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inline Matcher<const ::std::string&> MakeDeathTestMatcher(
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::testing::internal::RE regex) {
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return ContainsRegex(regex.pattern());
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}
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inline Matcher<const ::std::string&> MakeDeathTestMatcher(const char* regex) {
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return ContainsRegex(regex);
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}
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inline Matcher<const ::std::string&> MakeDeathTestMatcher(
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const ::std::string& regex) {
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return ContainsRegex(regex);
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}
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// If a Matcher<const ::std::string&> is passed to EXPECT_DEATH (etc.), it's
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// used directly.
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inline Matcher<const ::std::string&> MakeDeathTestMatcher(
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Matcher<const ::std::string&> matcher) {
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return matcher;
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}
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// Traps C++ exceptions escaping statement and reports them as test
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// failures. Note that trapping SEH exceptions is not implemented here.
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# if GTEST_HAS_EXCEPTIONS
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@@ -186,38 +211,38 @@ GTEST_API_ bool ExitedUnsuccessfully(int exit_status);
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// This macro is for implementing ASSERT_DEATH*, EXPECT_DEATH*,
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// ASSERT_EXIT*, and EXPECT_EXIT*.
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# define GTEST_DEATH_TEST_(statement, predicate, regex, fail) \
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GTEST_AMBIGUOUS_ELSE_BLOCKER_ \
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if (::testing::internal::AlwaysTrue()) { \
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const ::testing::internal::RE& gtest_regex = (regex); \
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::testing::internal::DeathTest* gtest_dt; \
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if (!::testing::internal::DeathTest::Create(#statement, >est_regex, \
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__FILE__, __LINE__, >est_dt)) { \
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goto GTEST_CONCAT_TOKEN_(gtest_label_, __LINE__); \
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} \
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if (gtest_dt != NULL) { \
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::testing::internal::scoped_ptr< ::testing::internal::DeathTest> \
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gtest_dt_ptr(gtest_dt); \
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switch (gtest_dt->AssumeRole()) { \
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case ::testing::internal::DeathTest::OVERSEE_TEST: \
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if (!gtest_dt->Passed(predicate(gtest_dt->Wait()))) { \
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goto GTEST_CONCAT_TOKEN_(gtest_label_, __LINE__); \
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} \
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break; \
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case ::testing::internal::DeathTest::EXECUTE_TEST: { \
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::testing::internal::DeathTest::ReturnSentinel \
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gtest_sentinel(gtest_dt); \
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GTEST_EXECUTE_DEATH_TEST_STATEMENT_(statement, gtest_dt); \
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gtest_dt->Abort(::testing::internal::DeathTest::TEST_DID_NOT_DIE); \
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break; \
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} \
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default: \
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break; \
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} \
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} \
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} else \
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GTEST_CONCAT_TOKEN_(gtest_label_, __LINE__): \
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fail(::testing::internal::DeathTest::LastMessage())
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#define GTEST_DEATH_TEST_(statement, predicate, regex_or_matcher, fail) \
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GTEST_AMBIGUOUS_ELSE_BLOCKER_ \
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if (::testing::internal::AlwaysTrue()) { \
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::testing::internal::DeathTest* gtest_dt; \
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if (!::testing::internal::DeathTest::Create( \
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#statement, \
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::testing::internal::MakeDeathTestMatcher(regex_or_matcher), \
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__FILE__, __LINE__, >est_dt)) { \
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goto GTEST_CONCAT_TOKEN_(gtest_label_, __LINE__); \
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} \
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if (gtest_dt != nullptr) { \
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std::unique_ptr< ::testing::internal::DeathTest> gtest_dt_ptr(gtest_dt); \
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switch (gtest_dt->AssumeRole()) { \
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case ::testing::internal::DeathTest::OVERSEE_TEST: \
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if (!gtest_dt->Passed(predicate(gtest_dt->Wait()))) { \
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goto GTEST_CONCAT_TOKEN_(gtest_label_, __LINE__); \
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} \
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break; \
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case ::testing::internal::DeathTest::EXECUTE_TEST: { \
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::testing::internal::DeathTest::ReturnSentinel gtest_sentinel( \
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gtest_dt); \
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GTEST_EXECUTE_DEATH_TEST_STATEMENT_(statement, gtest_dt); \
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gtest_dt->Abort(::testing::internal::DeathTest::TEST_DID_NOT_DIE); \
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break; \
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} \
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default: \
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break; \
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} \
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} \
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} else \
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GTEST_CONCAT_TOKEN_(gtest_label_, __LINE__) \
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: fail(::testing::internal::DeathTest::LastMessage())
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// The symbol "fail" here expands to something into which a message
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// can be streamed.
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@@ -226,14 +251,13 @@ GTEST_API_ bool ExitedUnsuccessfully(int exit_status);
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// must accept a streamed message even though the message is never printed.
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// The regex object is not evaluated, but it is used to prevent "unused"
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// warnings and to avoid an expression that doesn't compile in debug mode.
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#define GTEST_EXECUTE_STATEMENT_(statement, regex) \
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GTEST_AMBIGUOUS_ELSE_BLOCKER_ \
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if (::testing::internal::AlwaysTrue()) { \
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GTEST_SUPPRESS_UNREACHABLE_CODE_WARNING_BELOW_(statement); \
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} else if (!::testing::internal::AlwaysTrue()) { \
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const ::testing::internal::RE& gtest_regex = (regex); \
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static_cast<void>(gtest_regex); \
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} else \
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#define GTEST_EXECUTE_STATEMENT_(statement, regex_or_matcher) \
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GTEST_AMBIGUOUS_ELSE_BLOCKER_ \
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if (::testing::internal::AlwaysTrue()) { \
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GTEST_SUPPRESS_UNREACHABLE_CODE_WARNING_BELOW_(statement); \
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} else if (!::testing::internal::AlwaysTrue()) { \
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::testing::internal::MakeDeathTestMatcher(regex_or_matcher); \
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} else \
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::testing::Message()
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// A class representing the parsed contents of the
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@@ -110,7 +110,7 @@ class GTEST_API_ FilePath {
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const FilePath& base_name,
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const char* extension);
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// Returns true iff the path is "".
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// Returns true if and only if the path is "".
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bool IsEmpty() const { return pathname_.empty(); }
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// If input name has a trailing separator character, removes it and returns
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@@ -58,6 +58,7 @@
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#include <map>
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#include <set>
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#include <string>
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#include <type_traits>
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#include <vector>
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#include "gtest/gtest-message.h"
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@@ -79,7 +80,6 @@
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// Stringifies its argument.
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#define GTEST_STRINGIFY_(name) #name
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class ProtocolMessage;
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namespace proto2 { class Message; }
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namespace testing {
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@@ -91,7 +91,7 @@ class Message; // Represents a failure message.
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class Test; // Represents a test.
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class TestInfo; // Information about a test.
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class TestPartResult; // Result of a test part.
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class UnitTest; // A collection of test cases.
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class UnitTest; // A collection of test suites.
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template <typename T>
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::std::string PrintToString(const T& value);
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@@ -106,34 +106,22 @@ class UnitTestImpl; // Opaque implementation of UnitTest
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// stack trace.
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GTEST_API_ extern const char kStackTraceMarker[];
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// Two overloaded helpers for checking at compile time whether an
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// expression is a null pointer literal (i.e. NULL or any 0-valued
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// compile-time integral constant). Their return values have
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// different sizes, so we can use sizeof() to test which version is
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// picked by the compiler. These helpers have no implementations, as
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// we only need their signatures.
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//
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// Given IsNullLiteralHelper(x), the compiler will pick the first
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// version if x can be implicitly converted to Secret*, and pick the
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// second version otherwise. Since Secret is a secret and incomplete
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// type, the only expression a user can write that has type Secret* is
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// a null pointer literal. Therefore, we know that x is a null
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// pointer literal if and only if the first version is picked by the
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// compiler.
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char IsNullLiteralHelper(Secret* p);
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char (&IsNullLiteralHelper(...))[2]; // NOLINT
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// A compile-time bool constant that is true if and only if x is a
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// null pointer literal (i.e. NULL or any 0-valued compile-time
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// integral constant).
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#ifdef GTEST_ELLIPSIS_NEEDS_POD_
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// We lose support for NULL detection where the compiler doesn't like
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// passing non-POD classes through ellipsis (...).
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# define GTEST_IS_NULL_LITERAL_(x) false
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#else
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# define GTEST_IS_NULL_LITERAL_(x) \
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(sizeof(::testing::internal::IsNullLiteralHelper(x)) == 1)
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#endif // GTEST_ELLIPSIS_NEEDS_POD_
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// An IgnoredValue object can be implicitly constructed from ANY value.
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class IgnoredValue {
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struct Sink {};
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public:
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// This constructor template allows any value to be implicitly
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// converted to IgnoredValue. The object has no data member and
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// doesn't try to remember anything about the argument. We
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// deliberately omit the 'explicit' keyword in order to allow the
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// conversion to be implicit.
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// Disable the conversion if T already has a magical conversion operator.
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// Otherwise we get ambiguity.
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template <typename T,
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typename std::enable_if<!std::is_convertible<T, Sink>::value,
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int>::type = 0>
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IgnoredValue(const T& /* ignored */) {} // NOLINT(runtime/explicit)
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};
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// Appends the user-supplied message to the Google-Test-generated message.
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GTEST_API_ std::string AppendUserMessage(
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@@ -201,7 +189,7 @@ GTEST_API_ std::string DiffStrings(const std::string& left,
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// expected_value: "5"
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// actual_value: "6"
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//
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// The ignoring_case parameter is true iff the assertion is a
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// The ignoring_case parameter is true if and only if the assertion is a
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// *_STRCASEEQ*. When it's true, the string " (ignoring case)" will
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// be inserted into the message.
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GTEST_API_ AssertionResult EqFailure(const char* expected_expression,
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@@ -330,15 +318,15 @@ class FloatingPoint {
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// Returns the sign bit of this number.
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Bits sign_bit() const { return kSignBitMask & u_.bits_; }
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// Returns true iff this is NAN (not a number).
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// Returns true if and only if this is NAN (not a number).
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bool is_nan() const {
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// It's a NAN if the exponent bits are all ones and the fraction
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// bits are not entirely zeros.
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return (exponent_bits() == kExponentBitMask) && (fraction_bits() != 0);
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}
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// Returns true iff this number is at most kMaxUlps ULP's away from
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// rhs. In particular, this function:
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// Returns true if and only if this number is at most kMaxUlps ULP's away
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// from rhs. In particular, this function:
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//
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// - returns false if either number is (or both are) NAN.
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// - treats really large numbers as almost equal to infinity.
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@@ -409,7 +397,7 @@ typedef FloatingPoint<float> Float;
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typedef FloatingPoint<double> Double;
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// In order to catch the mistake of putting tests that use different
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// test fixture classes in the same test case, we need to assign
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// test fixture classes in the same test suite, we need to assign
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// unique IDs to fixture classes and compare them. The TypeId type is
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// used to hold such IDs. The user should treat TypeId as an opaque
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// type: the only operation allowed on TypeId values is to compare
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@@ -469,7 +457,7 @@ class TestFactoryBase {
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template <class TestClass>
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class TestFactoryImpl : public TestFactoryBase {
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public:
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virtual Test* CreateTest() { return new TestClass; }
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Test* CreateTest() override { return new TestClass; }
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};
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#if GTEST_OS_WINDOWS
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@@ -485,9 +473,9 @@ GTEST_API_ AssertionResult IsHRESULTFailure(const char* expr,
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#endif // GTEST_OS_WINDOWS
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// Types of SetUpTestCase() and TearDownTestCase() functions.
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typedef void (*SetUpTestCaseFunc)();
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typedef void (*TearDownTestCaseFunc)();
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// Types of SetUpTestSuite() and TearDownTestSuite() functions.
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using SetUpTestSuiteFunc = void (*)();
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using TearDownTestSuiteFunc = void (*)();
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struct CodeLocation {
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CodeLocation(const std::string& a_file, int a_line)
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@@ -497,12 +485,64 @@ struct CodeLocation {
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int line;
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};
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// Helper to identify which setup function for TestCase / TestSuite to call.
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// Only one function is allowed, either TestCase or TestSute but not both.
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// Utility functions to help SuiteApiResolver
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using SetUpTearDownSuiteFuncType = void (*)();
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inline SetUpTearDownSuiteFuncType GetNotDefaultOrNull(
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SetUpTearDownSuiteFuncType a, SetUpTearDownSuiteFuncType def) {
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return a == def ? nullptr : a;
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}
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template <typename T>
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// Note that SuiteApiResolver inherits from T because
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// SetUpTestSuite()/TearDownTestSuite() could be protected. Ths way
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// SuiteApiResolver can access them.
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struct SuiteApiResolver : T {
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// testing::Test is only forward declared at this point. So we make it a
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// dependend class for the compiler to be OK with it.
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using Test =
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typename std::conditional<sizeof(T) != 0, ::testing::Test, void>::type;
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static SetUpTearDownSuiteFuncType GetSetUpCaseOrSuite(const char* filename,
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int line_num) {
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SetUpTearDownSuiteFuncType test_case_fp =
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GetNotDefaultOrNull(&T::SetUpTestCase, &Test::SetUpTestCase);
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SetUpTearDownSuiteFuncType test_suite_fp =
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GetNotDefaultOrNull(&T::SetUpTestSuite, &Test::SetUpTestSuite);
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GTEST_CHECK_(!test_case_fp || !test_suite_fp)
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<< "Test can not provide both SetUpTestSuite and SetUpTestCase, please "
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"make sure there is only one present at "
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<< filename << ":" << line_num;
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return test_case_fp != nullptr ? test_case_fp : test_suite_fp;
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}
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static SetUpTearDownSuiteFuncType GetTearDownCaseOrSuite(const char* filename,
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int line_num) {
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SetUpTearDownSuiteFuncType test_case_fp =
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GetNotDefaultOrNull(&T::TearDownTestCase, &Test::TearDownTestCase);
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SetUpTearDownSuiteFuncType test_suite_fp =
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GetNotDefaultOrNull(&T::TearDownTestSuite, &Test::TearDownTestSuite);
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GTEST_CHECK_(!test_case_fp || !test_suite_fp)
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<< "Test can not provide both TearDownTestSuite and TearDownTestCase,"
|
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" please make sure there is only one present at"
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<< filename << ":" << line_num;
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||||
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return test_case_fp != nullptr ? test_case_fp : test_suite_fp;
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||||
}
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||||
};
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||||
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||||
// Creates a new TestInfo object and registers it with Google Test;
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// returns the created object.
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//
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// Arguments:
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//
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||||
// test_case_name: name of the test case
|
||||
// test_suite_name: name of the test suite
|
||||
// name: name of the test
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||||
// type_param the name of the test's type parameter, or NULL if
|
||||
// this is not a typed or a type-parameterized test.
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||||
@@ -510,21 +550,16 @@ struct CodeLocation {
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||||
// or NULL if this is not a type-parameterized test.
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||||
// code_location: code location where the test is defined
|
||||
// fixture_class_id: ID of the test fixture class
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||||
// set_up_tc: pointer to the function that sets up the test case
|
||||
// tear_down_tc: pointer to the function that tears down the test case
|
||||
// set_up_tc: pointer to the function that sets up the test suite
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||||
// tear_down_tc: pointer to the function that tears down the test suite
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// factory: pointer to the factory that creates a test object.
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// The newly created TestInfo instance will assume
|
||||
// ownership of the factory object.
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||||
GTEST_API_ TestInfo* MakeAndRegisterTestInfo(
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const char* test_case_name,
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const char* name,
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const char* type_param,
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||||
const char* value_param,
|
||||
CodeLocation code_location,
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||||
TypeId fixture_class_id,
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||||
SetUpTestCaseFunc set_up_tc,
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||||
TearDownTestCaseFunc tear_down_tc,
|
||||
TestFactoryBase* factory);
|
||||
const char* test_suite_name, const char* name, const char* type_param,
|
||||
const char* value_param, CodeLocation code_location,
|
||||
TypeId fixture_class_id, SetUpTestSuiteFunc set_up_tc,
|
||||
TearDownTestSuiteFunc tear_down_tc, TestFactoryBase* factory);
|
||||
|
||||
// If *pstr starts with the given prefix, modifies *pstr to be right
|
||||
// past the prefix and returns true; otherwise leaves *pstr unchanged
|
||||
@@ -536,19 +571,20 @@ GTEST_API_ bool SkipPrefix(const char* prefix, const char** pstr);
|
||||
GTEST_DISABLE_MSC_WARNINGS_PUSH_(4251 \
|
||||
/* class A needs to have dll-interface to be used by clients of class B */)
|
||||
|
||||
// State of the definition of a type-parameterized test case.
|
||||
class GTEST_API_ TypedTestCasePState {
|
||||
// State of the definition of a type-parameterized test suite.
|
||||
class GTEST_API_ TypedTestSuitePState {
|
||||
public:
|
||||
TypedTestCasePState() : registered_(false) {}
|
||||
TypedTestSuitePState() : registered_(false) {}
|
||||
|
||||
// Adds the given test name to defined_test_names_ and return true
|
||||
// if the test case hasn't been registered; otherwise aborts the
|
||||
// if the test suite hasn't been registered; otherwise aborts the
|
||||
// program.
|
||||
bool AddTestName(const char* file, int line, const char* case_name,
|
||||
const char* test_name) {
|
||||
if (registered_) {
|
||||
fprintf(stderr, "%s Test %s must be defined before "
|
||||
"REGISTER_TYPED_TEST_CASE_P(%s, ...).\n",
|
||||
fprintf(stderr,
|
||||
"%s Test %s must be defined before "
|
||||
"REGISTER_TYPED_TEST_SUITE_P(%s, ...).\n",
|
||||
FormatFileLocation(file, line).c_str(), test_name, case_name);
|
||||
fflush(stderr);
|
||||
posix::Abort();
|
||||
@@ -581,14 +617,19 @@ class GTEST_API_ TypedTestCasePState {
|
||||
RegisteredTestsMap registered_tests_;
|
||||
};
|
||||
|
||||
// Legacy API is deprecated but still available
|
||||
#ifndef GTEST_REMOVE_LEGACY_TEST_CASEAPI_
|
||||
using TypedTestCasePState = TypedTestSuitePState;
|
||||
#endif // GTEST_REMOVE_LEGACY_TEST_CASEAPI_
|
||||
|
||||
GTEST_DISABLE_MSC_WARNINGS_POP_() // 4251
|
||||
|
||||
// Skips to the first non-space char after the first comma in 'str';
|
||||
// returns NULL if no comma is found in 'str'.
|
||||
inline const char* SkipComma(const char* str) {
|
||||
const char* comma = strchr(str, ',');
|
||||
if (comma == NULL) {
|
||||
return NULL;
|
||||
if (comma == nullptr) {
|
||||
return nullptr;
|
||||
}
|
||||
while (IsSpace(*(++comma))) {}
|
||||
return comma;
|
||||
@@ -598,7 +639,7 @@ inline const char* SkipComma(const char* str) {
|
||||
// the entire string if it contains no comma.
|
||||
inline std::string GetPrefixUntilComma(const char* str) {
|
||||
const char* comma = strchr(str, ',');
|
||||
return comma == NULL ? str : std::string(str, comma);
|
||||
return comma == nullptr ? str : std::string(str, comma);
|
||||
}
|
||||
|
||||
// Splits a given string on a given delimiter, populating a given
|
||||
@@ -648,7 +689,7 @@ template <GTEST_TEMPLATE_ Fixture, class TestSel, typename Types>
|
||||
class TypeParameterizedTest {
|
||||
public:
|
||||
// 'index' is the index of the test in the type list 'Types'
|
||||
// specified in INSTANTIATE_TYPED_TEST_CASE_P(Prefix, TestCase,
|
||||
// specified in INSTANTIATE_TYPED_TEST_SUITE_P(Prefix, TestSuite,
|
||||
// Types). Valid values for 'index' are [0, N - 1] where N is the
|
||||
// length of Types.
|
||||
static bool Register(const char* prefix, const CodeLocation& code_location,
|
||||
@@ -663,13 +704,17 @@ class TypeParameterizedTest {
|
||||
// list.
|
||||
MakeAndRegisterTestInfo(
|
||||
(std::string(prefix) + (prefix[0] == '\0' ? "" : "/") + case_name +
|
||||
"/" + type_names[index])
|
||||
"/" + type_names[static_cast<size_t>(index)])
|
||||
.c_str(),
|
||||
StripTrailingSpaces(GetPrefixUntilComma(test_names)).c_str(),
|
||||
GetTypeName<Type>().c_str(),
|
||||
NULL, // No value parameter.
|
||||
code_location, GetTypeId<FixtureClass>(), TestClass::SetUpTestCase,
|
||||
TestClass::TearDownTestCase, new TestFactoryImpl<TestClass>);
|
||||
nullptr, // No value parameter.
|
||||
code_location, GetTypeId<FixtureClass>(),
|
||||
SuiteApiResolver<TestClass>::GetSetUpCaseOrSuite(
|
||||
code_location.file.c_str(), code_location.line),
|
||||
SuiteApiResolver<TestClass>::GetTearDownCaseOrSuite(
|
||||
code_location.file.c_str(), code_location.line),
|
||||
new TestFactoryImpl<TestClass>);
|
||||
|
||||
// Next, recurses (at compile time) with the tail of the type list.
|
||||
return TypeParameterizedTest<Fixture, TestSel,
|
||||
@@ -695,15 +740,15 @@ class TypeParameterizedTest<Fixture, TestSel, Types0> {
|
||||
}
|
||||
};
|
||||
|
||||
// TypeParameterizedTestCase<Fixture, Tests, Types>::Register()
|
||||
// TypeParameterizedTestSuite<Fixture, Tests, Types>::Register()
|
||||
// registers *all combinations* of 'Tests' and 'Types' with Google
|
||||
// Test. The return value is insignificant - we just need to return
|
||||
// something such that we can call this function in a namespace scope.
|
||||
template <GTEST_TEMPLATE_ Fixture, typename Tests, typename Types>
|
||||
class TypeParameterizedTestCase {
|
||||
class TypeParameterizedTestSuite {
|
||||
public:
|
||||
static bool Register(const char* prefix, CodeLocation code_location,
|
||||
const TypedTestCasePState* state, const char* case_name,
|
||||
const TypedTestSuitePState* state, const char* case_name,
|
||||
const char* test_names,
|
||||
const std::vector<std::string>& type_names =
|
||||
GenerateNames<DefaultNameGenerator, Types>()) {
|
||||
@@ -726,20 +771,20 @@ class TypeParameterizedTestCase {
|
||||
prefix, test_location, case_name, test_names, 0, type_names);
|
||||
|
||||
// Next, recurses (at compile time) with the tail of the test list.
|
||||
return TypeParameterizedTestCase<Fixture, typename Tests::Tail,
|
||||
Types>::Register(prefix, code_location,
|
||||
state, case_name,
|
||||
SkipComma(test_names),
|
||||
type_names);
|
||||
return TypeParameterizedTestSuite<Fixture, typename Tests::Tail,
|
||||
Types>::Register(prefix, code_location,
|
||||
state, case_name,
|
||||
SkipComma(test_names),
|
||||
type_names);
|
||||
}
|
||||
};
|
||||
|
||||
// The base case for the compile time recursion.
|
||||
template <GTEST_TEMPLATE_ Fixture, typename Types>
|
||||
class TypeParameterizedTestCase<Fixture, Templates0, Types> {
|
||||
class TypeParameterizedTestSuite<Fixture, Templates0, Types> {
|
||||
public:
|
||||
static bool Register(const char* /*prefix*/, const CodeLocation&,
|
||||
const TypedTestCasePState* /*state*/,
|
||||
const TypedTestSuitePState* /*state*/,
|
||||
const char* /*case_name*/, const char* /*test_names*/,
|
||||
const std::vector<std::string>& =
|
||||
std::vector<std::string>() /*type_names*/) {
|
||||
@@ -802,120 +847,16 @@ class GTEST_API_ Random {
|
||||
GTEST_DISALLOW_COPY_AND_ASSIGN_(Random);
|
||||
};
|
||||
|
||||
// Defining a variable of type CompileAssertTypesEqual<T1, T2> will cause a
|
||||
// compiler error iff T1 and T2 are different types.
|
||||
template <typename T1, typename T2>
|
||||
struct CompileAssertTypesEqual;
|
||||
|
||||
template <typename T>
|
||||
struct CompileAssertTypesEqual<T, T> {
|
||||
};
|
||||
|
||||
// Removes the reference from a type if it is a reference type,
|
||||
// otherwise leaves it unchanged. This is the same as
|
||||
// tr1::remove_reference, which is not widely available yet.
|
||||
template <typename T>
|
||||
struct RemoveReference { typedef T type; }; // NOLINT
|
||||
template <typename T>
|
||||
struct RemoveReference<T&> { typedef T type; }; // NOLINT
|
||||
|
||||
// A handy wrapper around RemoveReference that works when the argument
|
||||
// T depends on template parameters.
|
||||
#define GTEST_REMOVE_REFERENCE_(T) \
|
||||
typename ::testing::internal::RemoveReference<T>::type
|
||||
|
||||
// Removes const from a type if it is a const type, otherwise leaves
|
||||
// it unchanged. This is the same as tr1::remove_const, which is not
|
||||
// widely available yet.
|
||||
template <typename T>
|
||||
struct RemoveConst { typedef T type; }; // NOLINT
|
||||
template <typename T>
|
||||
struct RemoveConst<const T> { typedef T type; }; // NOLINT
|
||||
|
||||
// MSVC 8.0, Sun C++, and IBM XL C++ have a bug which causes the above
|
||||
// definition to fail to remove the const in 'const int[3]' and 'const
|
||||
// char[3][4]'. The following specialization works around the bug.
|
||||
template <typename T, size_t N>
|
||||
struct RemoveConst<const T[N]> {
|
||||
typedef typename RemoveConst<T>::type type[N];
|
||||
};
|
||||
|
||||
#if defined(_MSC_VER) && _MSC_VER < 1400
|
||||
// This is the only specialization that allows VC++ 7.1 to remove const in
|
||||
// 'const int[3] and 'const int[3][4]'. However, it causes trouble with GCC
|
||||
// and thus needs to be conditionally compiled.
|
||||
template <typename T, size_t N>
|
||||
struct RemoveConst<T[N]> {
|
||||
typedef typename RemoveConst<T>::type type[N];
|
||||
};
|
||||
#endif
|
||||
|
||||
// A handy wrapper around RemoveConst that works when the argument
|
||||
// T depends on template parameters.
|
||||
#define GTEST_REMOVE_CONST_(T) \
|
||||
typename ::testing::internal::RemoveConst<T>::type
|
||||
|
||||
// Turns const U&, U&, const U, and U all into U.
|
||||
#define GTEST_REMOVE_REFERENCE_AND_CONST_(T) \
|
||||
GTEST_REMOVE_CONST_(GTEST_REMOVE_REFERENCE_(T))
|
||||
|
||||
// ImplicitlyConvertible<From, To>::value is a compile-time bool
|
||||
// constant that's true iff type From can be implicitly converted to
|
||||
// type To.
|
||||
template <typename From, typename To>
|
||||
class ImplicitlyConvertible {
|
||||
private:
|
||||
// We need the following helper functions only for their types.
|
||||
// They have no implementations.
|
||||
|
||||
// MakeFrom() is an expression whose type is From. We cannot simply
|
||||
// use From(), as the type From may not have a public default
|
||||
// constructor.
|
||||
static typename AddReference<From>::type MakeFrom();
|
||||
|
||||
// These two functions are overloaded. Given an expression
|
||||
// Helper(x), the compiler will pick the first version if x can be
|
||||
// implicitly converted to type To; otherwise it will pick the
|
||||
// second version.
|
||||
//
|
||||
// The first version returns a value of size 1, and the second
|
||||
// version returns a value of size 2. Therefore, by checking the
|
||||
// size of Helper(x), which can be done at compile time, we can tell
|
||||
// which version of Helper() is used, and hence whether x can be
|
||||
// implicitly converted to type To.
|
||||
static char Helper(To);
|
||||
static char (&Helper(...))[2]; // NOLINT
|
||||
|
||||
// We have to put the 'public' section after the 'private' section,
|
||||
// or MSVC refuses to compile the code.
|
||||
public:
|
||||
#if defined(__BORLANDC__)
|
||||
// C++Builder cannot use member overload resolution during template
|
||||
// instantiation. The simplest workaround is to use its C++0x type traits
|
||||
// functions (C++Builder 2009 and above only).
|
||||
static const bool value = __is_convertible(From, To);
|
||||
#else
|
||||
// MSVC warns about implicitly converting from double to int for
|
||||
// possible loss of data, so we need to temporarily disable the
|
||||
// warning.
|
||||
GTEST_DISABLE_MSC_WARNINGS_PUSH_(4244)
|
||||
static const bool value =
|
||||
sizeof(Helper(ImplicitlyConvertible::MakeFrom())) == 1;
|
||||
GTEST_DISABLE_MSC_WARNINGS_POP_()
|
||||
#endif // __BORLANDC__
|
||||
};
|
||||
template <typename From, typename To>
|
||||
const bool ImplicitlyConvertible<From, To>::value;
|
||||
typename std::remove_const<typename std::remove_reference<T>::type>::type
|
||||
|
||||
// IsAProtocolMessage<T>::value is a compile-time bool constant that's
|
||||
// true iff T is type ProtocolMessage, proto2::Message, or a subclass
|
||||
// of those.
|
||||
// true if and only if T is type proto2::Message or a subclass of it.
|
||||
template <typename T>
|
||||
struct IsAProtocolMessage
|
||||
: public bool_constant<
|
||||
ImplicitlyConvertible<const T*, const ::ProtocolMessage*>::value ||
|
||||
ImplicitlyConvertible<const T*, const ::proto2::Message*>::value> {
|
||||
};
|
||||
std::is_convertible<const T*, const ::proto2::Message*>::value> {};
|
||||
|
||||
// When the compiler sees expression IsContainerTest<C>(0), if C is an
|
||||
// STL-style container class, the first overload of IsContainerTest
|
||||
@@ -942,7 +883,6 @@ struct IsAProtocolMessage
|
||||
// IsContainerTest(typename C::const_iterator*) and
|
||||
// IsContainerTest(...) doesn't work with Visual Age C++ and Sun C++.
|
||||
typedef int IsContainer;
|
||||
#if GTEST_LANG_CXX11
|
||||
template <class C,
|
||||
class Iterator = decltype(::std::declval<const C&>().begin()),
|
||||
class = decltype(::std::declval<const C&>().end()),
|
||||
@@ -952,14 +892,6 @@ template <class C,
|
||||
IsContainer IsContainerTest(int /* dummy */) {
|
||||
return 0;
|
||||
}
|
||||
#else
|
||||
template <class C>
|
||||
IsContainer IsContainerTest(int /* dummy */,
|
||||
typename C::iterator* /* it */ = NULL,
|
||||
typename C::const_iterator* /* const_it */ = NULL) {
|
||||
return 0;
|
||||
}
|
||||
#endif // GTEST_LANG_CXX11
|
||||
|
||||
typedef char IsNotContainer;
|
||||
template <class C>
|
||||
@@ -980,47 +912,30 @@ struct IsHashTable {
|
||||
static char test(...);
|
||||
|
||||
public:
|
||||
static const bool value = sizeof(test<T>(0, 0)) == sizeof(int);
|
||||
static const bool value = sizeof(test<T>(nullptr, nullptr)) == sizeof(int);
|
||||
};
|
||||
|
||||
template <typename T>
|
||||
const bool IsHashTable<T>::value;
|
||||
|
||||
template<typename T>
|
||||
struct VoidT {
|
||||
typedef void value_type;
|
||||
};
|
||||
|
||||
template <typename T, typename = void>
|
||||
struct HasValueType : false_type {};
|
||||
template <typename T>
|
||||
struct HasValueType<T, VoidT<typename T::value_type> > : true_type {
|
||||
};
|
||||
|
||||
template <typename C,
|
||||
bool = sizeof(IsContainerTest<C>(0)) == sizeof(IsContainer),
|
||||
bool = HasValueType<C>::value>
|
||||
bool = sizeof(IsContainerTest<C>(0)) == sizeof(IsContainer)>
|
||||
struct IsRecursiveContainerImpl;
|
||||
|
||||
template <typename C, bool HV>
|
||||
struct IsRecursiveContainerImpl<C, false, HV> : public false_type {};
|
||||
template <typename C>
|
||||
struct IsRecursiveContainerImpl<C, false> : public std::false_type {};
|
||||
|
||||
// Since the IsRecursiveContainerImpl depends on the IsContainerTest we need to
|
||||
// obey the same inconsistencies as the IsContainerTest, namely check if
|
||||
// something is a container is relying on only const_iterator in C++11 and
|
||||
// is relying on both const_iterator and iterator otherwise
|
||||
template <typename C>
|
||||
struct IsRecursiveContainerImpl<C, true, false> : public false_type {};
|
||||
|
||||
template <typename C>
|
||||
struct IsRecursiveContainerImpl<C, true, true> {
|
||||
#if GTEST_LANG_CXX11
|
||||
typedef typename IteratorTraits<typename C::const_iterator>::value_type
|
||||
value_type;
|
||||
#else
|
||||
typedef typename IteratorTraits<typename C::iterator>::value_type value_type;
|
||||
#endif
|
||||
typedef is_same<value_type, C> type;
|
||||
struct IsRecursiveContainerImpl<C, true> {
|
||||
using value_type = decltype(*std::declval<typename C::const_iterator>());
|
||||
using type =
|
||||
std::is_same<typename std::remove_const<
|
||||
typename std::remove_reference<value_type>::type>::type,
|
||||
C>;
|
||||
};
|
||||
|
||||
// IsRecursiveContainer<Type> is a unary compile-time predicate that
|
||||
@@ -1032,13 +947,6 @@ struct IsRecursiveContainerImpl<C, true, true> {
|
||||
template <typename C>
|
||||
struct IsRecursiveContainer : public IsRecursiveContainerImpl<C>::type {};
|
||||
|
||||
// EnableIf<condition>::type is void when 'Cond' is true, and
|
||||
// undefined when 'Cond' is false. To use SFINAE to make a function
|
||||
// overload only apply when a particular expression is true, add
|
||||
// "typename EnableIf<expression>::type* = 0" as the last parameter.
|
||||
template<bool> struct EnableIf;
|
||||
template<> struct EnableIf<true> { typedef void type; }; // NOLINT
|
||||
|
||||
// Utilities for native arrays.
|
||||
|
||||
// ArrayEq() compares two k-dimensional native arrays using the
|
||||
@@ -1161,10 +1069,9 @@ class NativeArray {
|
||||
}
|
||||
|
||||
private:
|
||||
enum {
|
||||
kCheckTypeIsNotConstOrAReference = StaticAssertTypeEqHelper<
|
||||
Element, GTEST_REMOVE_REFERENCE_AND_CONST_(Element)>::value
|
||||
};
|
||||
static_assert(!std::is_const<Element>::value, "Type must not be const");
|
||||
static_assert(!std::is_reference<Element>::value,
|
||||
"Type must not be a reference");
|
||||
|
||||
// Initializes this object with a copy of the input.
|
||||
void InitCopy(const Element* array, size_t a_size) {
|
||||
@@ -1189,6 +1096,139 @@ class NativeArray {
|
||||
GTEST_DISALLOW_ASSIGN_(NativeArray);
|
||||
};
|
||||
|
||||
// Backport of std::index_sequence.
|
||||
template <size_t... Is>
|
||||
struct IndexSequence {
|
||||
using type = IndexSequence;
|
||||
};
|
||||
|
||||
// Double the IndexSequence, and one if plus_one is true.
|
||||
template <bool plus_one, typename T, size_t sizeofT>
|
||||
struct DoubleSequence;
|
||||
template <size_t... I, size_t sizeofT>
|
||||
struct DoubleSequence<true, IndexSequence<I...>, sizeofT> {
|
||||
using type = IndexSequence<I..., (sizeofT + I)..., 2 * sizeofT>;
|
||||
};
|
||||
template <size_t... I, size_t sizeofT>
|
||||
struct DoubleSequence<false, IndexSequence<I...>, sizeofT> {
|
||||
using type = IndexSequence<I..., (sizeofT + I)...>;
|
||||
};
|
||||
|
||||
// Backport of std::make_index_sequence.
|
||||
// It uses O(ln(N)) instantiation depth.
|
||||
template <size_t N>
|
||||
struct MakeIndexSequence
|
||||
: DoubleSequence<N % 2 == 1, typename MakeIndexSequence<N / 2>::type,
|
||||
N / 2>::type {};
|
||||
|
||||
template <>
|
||||
struct MakeIndexSequence<0> : IndexSequence<> {};
|
||||
|
||||
// FIXME: This implementation of ElemFromList is O(1) in instantiation depth,
|
||||
// but it is O(N^2) in total instantiations. Not sure if this is the best
|
||||
// tradeoff, as it will make it somewhat slow to compile.
|
||||
template <typename T, size_t, size_t>
|
||||
struct ElemFromListImpl {};
|
||||
|
||||
template <typename T, size_t I>
|
||||
struct ElemFromListImpl<T, I, I> {
|
||||
using type = T;
|
||||
};
|
||||
|
||||
// Get the Nth element from T...
|
||||
// It uses O(1) instantiation depth.
|
||||
template <size_t N, typename I, typename... T>
|
||||
struct ElemFromList;
|
||||
|
||||
template <size_t N, size_t... I, typename... T>
|
||||
struct ElemFromList<N, IndexSequence<I...>, T...>
|
||||
: ElemFromListImpl<T, N, I>... {};
|
||||
|
||||
template <typename... T>
|
||||
class FlatTuple;
|
||||
|
||||
template <typename Derived, size_t I>
|
||||
struct FlatTupleElemBase;
|
||||
|
||||
template <typename... T, size_t I>
|
||||
struct FlatTupleElemBase<FlatTuple<T...>, I> {
|
||||
using value_type =
|
||||
typename ElemFromList<I, typename MakeIndexSequence<sizeof...(T)>::type,
|
||||
T...>::type;
|
||||
FlatTupleElemBase() = default;
|
||||
explicit FlatTupleElemBase(value_type t) : value(std::move(t)) {}
|
||||
value_type value;
|
||||
};
|
||||
|
||||
template <typename Derived, typename Idx>
|
||||
struct FlatTupleBase;
|
||||
|
||||
template <size_t... Idx, typename... T>
|
||||
struct FlatTupleBase<FlatTuple<T...>, IndexSequence<Idx...>>
|
||||
: FlatTupleElemBase<FlatTuple<T...>, Idx>... {
|
||||
using Indices = IndexSequence<Idx...>;
|
||||
FlatTupleBase() = default;
|
||||
explicit FlatTupleBase(T... t)
|
||||
: FlatTupleElemBase<FlatTuple<T...>, Idx>(std::move(t))... {}
|
||||
};
|
||||
|
||||
// Analog to std::tuple but with different tradeoffs.
|
||||
// This class minimizes the template instantiation depth, thus allowing more
|
||||
// elements that std::tuple would. std::tuple has been seen to require an
|
||||
// instantiation depth of more than 10x the number of elements in some
|
||||
// implementations.
|
||||
// FlatTuple and ElemFromList are not recursive and have a fixed depth
|
||||
// regardless of T...
|
||||
// MakeIndexSequence, on the other hand, it is recursive but with an
|
||||
// instantiation depth of O(ln(N)).
|
||||
template <typename... T>
|
||||
class FlatTuple
|
||||
: private FlatTupleBase<FlatTuple<T...>,
|
||||
typename MakeIndexSequence<sizeof...(T)>::type> {
|
||||
using Indices = typename FlatTuple::FlatTupleBase::Indices;
|
||||
|
||||
public:
|
||||
FlatTuple() = default;
|
||||
explicit FlatTuple(T... t) : FlatTuple::FlatTupleBase(std::move(t)...) {}
|
||||
|
||||
template <size_t I>
|
||||
const typename ElemFromList<I, Indices, T...>::type& Get() const {
|
||||
return static_cast<const FlatTupleElemBase<FlatTuple, I>*>(this)->value;
|
||||
}
|
||||
|
||||
template <size_t I>
|
||||
typename ElemFromList<I, Indices, T...>::type& Get() {
|
||||
return static_cast<FlatTupleElemBase<FlatTuple, I>*>(this)->value;
|
||||
}
|
||||
};
|
||||
|
||||
// Utility functions to be called with static_assert to induce deprecation
|
||||
// warnings.
|
||||
GTEST_INTERNAL_DEPRECATED(
|
||||
"INSTANTIATE_TEST_CASE_P is deprecated, please use "
|
||||
"INSTANTIATE_TEST_SUITE_P")
|
||||
constexpr bool InstantiateTestCase_P_IsDeprecated() { return true; }
|
||||
|
||||
GTEST_INTERNAL_DEPRECATED(
|
||||
"TYPED_TEST_CASE_P is deprecated, please use "
|
||||
"TYPED_TEST_SUITE_P")
|
||||
constexpr bool TypedTestCase_P_IsDeprecated() { return true; }
|
||||
|
||||
GTEST_INTERNAL_DEPRECATED(
|
||||
"TYPED_TEST_CASE is deprecated, please use "
|
||||
"TYPED_TEST_SUITE")
|
||||
constexpr bool TypedTestCaseIsDeprecated() { return true; }
|
||||
|
||||
GTEST_INTERNAL_DEPRECATED(
|
||||
"REGISTER_TYPED_TEST_CASE_P is deprecated, please use "
|
||||
"REGISTER_TYPED_TEST_SUITE_P")
|
||||
constexpr bool RegisterTypedTestCase_P_IsDeprecated() { return true; }
|
||||
|
||||
GTEST_INTERNAL_DEPRECATED(
|
||||
"INSTANTIATE_TYPED_TEST_CASE_P is deprecated, please use "
|
||||
"INSTANTIATE_TYPED_TEST_SUITE_P")
|
||||
constexpr bool InstantiateTypedTestCase_P_IsDeprecated() { return true; }
|
||||
|
||||
} // namespace internal
|
||||
} // namespace testing
|
||||
|
||||
@@ -1208,7 +1248,10 @@ class NativeArray {
|
||||
#define GTEST_SUCCESS_(message) \
|
||||
GTEST_MESSAGE_(message, ::testing::TestPartResult::kSuccess)
|
||||
|
||||
// Suppress MSVC warning 4702 (unreachable code) for the code following
|
||||
#define GTEST_SKIP_(message) \
|
||||
return GTEST_MESSAGE_(message, ::testing::TestPartResult::kSkip)
|
||||
|
||||
// Suppress MSVC warning 4072 (unreachable code) for the code following
|
||||
// statement if it returns or throws (or doesn't return or throw in some
|
||||
// situations).
|
||||
#define GTEST_SUPPRESS_UNREACHABLE_CODE_WARNING_BELOW_(statement) \
|
||||
@@ -1300,31 +1343,38 @@ class NativeArray {
|
||||
" Actual: it does.")
|
||||
|
||||
// Expands to the name of the class that implements the given test.
|
||||
#define GTEST_TEST_CLASS_NAME_(test_case_name, test_name) \
|
||||
test_case_name##_##test_name##_Test
|
||||
#define GTEST_TEST_CLASS_NAME_(test_suite_name, test_name) \
|
||||
test_suite_name##_##test_name##_Test
|
||||
|
||||
// Helper macro for defining tests.
|
||||
#define GTEST_TEST_(test_case_name, test_name, parent_class, parent_id)\
|
||||
class GTEST_TEST_CLASS_NAME_(test_case_name, test_name) : public parent_class {\
|
||||
public:\
|
||||
GTEST_TEST_CLASS_NAME_(test_case_name, test_name)() {}\
|
||||
private:\
|
||||
virtual void TestBody();\
|
||||
static ::testing::TestInfo* const test_info_ GTEST_ATTRIBUTE_UNUSED_;\
|
||||
GTEST_DISALLOW_COPY_AND_ASSIGN_(\
|
||||
GTEST_TEST_CLASS_NAME_(test_case_name, test_name));\
|
||||
};\
|
||||
\
|
||||
::testing::TestInfo* const GTEST_TEST_CLASS_NAME_(test_case_name, test_name)\
|
||||
::test_info_ =\
|
||||
::testing::internal::MakeAndRegisterTestInfo(\
|
||||
#test_case_name, #test_name, NULL, NULL, \
|
||||
::testing::internal::CodeLocation(__FILE__, __LINE__), \
|
||||
(parent_id), \
|
||||
parent_class::SetUpTestCase, \
|
||||
parent_class::TearDownTestCase, \
|
||||
new ::testing::internal::TestFactoryImpl<\
|
||||
GTEST_TEST_CLASS_NAME_(test_case_name, test_name)>);\
|
||||
void GTEST_TEST_CLASS_NAME_(test_case_name, test_name)::TestBody()
|
||||
#define GTEST_TEST_(test_suite_name, test_name, parent_class, parent_id) \
|
||||
static_assert(sizeof(GTEST_STRINGIFY_(test_suite_name)) > 1, \
|
||||
"test_suite_name must not be empty"); \
|
||||
static_assert(sizeof(GTEST_STRINGIFY_(test_name)) > 1, \
|
||||
"test_name must not be empty"); \
|
||||
class GTEST_TEST_CLASS_NAME_(test_suite_name, test_name) \
|
||||
: public parent_class { \
|
||||
public: \
|
||||
GTEST_TEST_CLASS_NAME_(test_suite_name, test_name)() {} \
|
||||
\
|
||||
private: \
|
||||
virtual void TestBody(); \
|
||||
static ::testing::TestInfo* const test_info_ GTEST_ATTRIBUTE_UNUSED_; \
|
||||
GTEST_DISALLOW_COPY_AND_ASSIGN_(GTEST_TEST_CLASS_NAME_(test_suite_name, \
|
||||
test_name)); \
|
||||
}; \
|
||||
\
|
||||
::testing::TestInfo* const GTEST_TEST_CLASS_NAME_(test_suite_name, \
|
||||
test_name)::test_info_ = \
|
||||
::testing::internal::MakeAndRegisterTestInfo( \
|
||||
#test_suite_name, #test_name, nullptr, nullptr, \
|
||||
::testing::internal::CodeLocation(__FILE__, __LINE__), (parent_id), \
|
||||
::testing::internal::SuiteApiResolver< \
|
||||
parent_class>::GetSetUpCaseOrSuite(__FILE__, __LINE__), \
|
||||
::testing::internal::SuiteApiResolver< \
|
||||
parent_class>::GetTearDownCaseOrSuite(__FILE__, __LINE__), \
|
||||
new ::testing::internal::TestFactoryImpl<GTEST_TEST_CLASS_NAME_( \
|
||||
test_suite_name, test_name)>); \
|
||||
void GTEST_TEST_CLASS_NAME_(test_suite_name, test_name)::TestBody()
|
||||
|
||||
#endif // GTEST_INCLUDE_GTEST_INTERNAL_GTEST_INTERNAL_H_
|
||||
|
||||
@@ -1,243 +0,0 @@
|
||||
// Copyright 2003 Google Inc.
|
||||
// All rights reserved.
|
||||
//
|
||||
// Redistribution and use in source and binary forms, with or without
|
||||
// modification, are permitted provided that the following conditions are
|
||||
// met:
|
||||
//
|
||||
// * Redistributions of source code must retain the above copyright
|
||||
// notice, this list of conditions and the following disclaimer.
|
||||
// * Redistributions in binary form must reproduce the above
|
||||
// copyright notice, this list of conditions and the following disclaimer
|
||||
// in the documentation and/or other materials provided with the
|
||||
// distribution.
|
||||
// * Neither the name of Google Inc. nor the names of its
|
||||
// contributors may be used to endorse or promote products derived from
|
||||
// this software without specific prior written permission.
|
||||
//
|
||||
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
|
||||
// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
|
||||
// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
|
||||
// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
|
||||
// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
|
||||
// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
|
||||
// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
|
||||
// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
|
||||
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
|
||||
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
|
||||
// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
|
||||
//
|
||||
// A "smart" pointer type with reference tracking. Every pointer to a
|
||||
// particular object is kept on a circular linked list. When the last pointer
|
||||
// to an object is destroyed or reassigned, the object is deleted.
|
||||
//
|
||||
// Used properly, this deletes the object when the last reference goes away.
|
||||
// There are several caveats:
|
||||
// - Like all reference counting schemes, cycles lead to leaks.
|
||||
// - Each smart pointer is actually two pointers (8 bytes instead of 4).
|
||||
// - Every time a pointer is assigned, the entire list of pointers to that
|
||||
// object is traversed. This class is therefore NOT SUITABLE when there
|
||||
// will often be more than two or three pointers to a particular object.
|
||||
// - References are only tracked as long as linked_ptr<> objects are copied.
|
||||
// If a linked_ptr<> is converted to a raw pointer and back, BAD THINGS
|
||||
// will happen (double deletion).
|
||||
//
|
||||
// A good use of this class is storing object references in STL containers.
|
||||
// You can safely put linked_ptr<> in a vector<>.
|
||||
// Other uses may not be as good.
|
||||
//
|
||||
// Note: If you use an incomplete type with linked_ptr<>, the class
|
||||
// *containing* linked_ptr<> must have a constructor and destructor (even
|
||||
// if they do nothing!).
|
||||
//
|
||||
// Bill Gibbons suggested we use something like this.
|
||||
//
|
||||
// Thread Safety:
|
||||
// Unlike other linked_ptr implementations, in this implementation
|
||||
// a linked_ptr object is thread-safe in the sense that:
|
||||
// - it's safe to copy linked_ptr objects concurrently,
|
||||
// - it's safe to copy *from* a linked_ptr and read its underlying
|
||||
// raw pointer (e.g. via get()) concurrently, and
|
||||
// - it's safe to write to two linked_ptrs that point to the same
|
||||
// shared object concurrently.
|
||||
// FIXME: rename this to safe_linked_ptr to avoid
|
||||
// confusion with normal linked_ptr.
|
||||
|
||||
// GOOGLETEST_CM0001 DO NOT DELETE
|
||||
|
||||
#ifndef GTEST_INCLUDE_GTEST_INTERNAL_GTEST_LINKED_PTR_H_
|
||||
#define GTEST_INCLUDE_GTEST_INTERNAL_GTEST_LINKED_PTR_H_
|
||||
|
||||
#include <stdlib.h>
|
||||
#include <assert.h>
|
||||
|
||||
#include "gtest/internal/gtest-port.h"
|
||||
|
||||
namespace testing {
|
||||
namespace internal {
|
||||
|
||||
// Protects copying of all linked_ptr objects.
|
||||
GTEST_API_ GTEST_DECLARE_STATIC_MUTEX_(g_linked_ptr_mutex);
|
||||
|
||||
// This is used internally by all instances of linked_ptr<>. It needs to be
|
||||
// a non-template class because different types of linked_ptr<> can refer to
|
||||
// the same object (linked_ptr<Superclass>(obj) vs linked_ptr<Subclass>(obj)).
|
||||
// So, it needs to be possible for different types of linked_ptr to participate
|
||||
// in the same circular linked list, so we need a single class type here.
|
||||
//
|
||||
// DO NOT USE THIS CLASS DIRECTLY YOURSELF. Use linked_ptr<T>.
|
||||
class linked_ptr_internal {
|
||||
public:
|
||||
// Create a new circle that includes only this instance.
|
||||
void join_new() {
|
||||
next_ = this;
|
||||
}
|
||||
|
||||
// Many linked_ptr operations may change p.link_ for some linked_ptr
|
||||
// variable p in the same circle as this object. Therefore we need
|
||||
// to prevent two such operations from occurring concurrently.
|
||||
//
|
||||
// Note that different types of linked_ptr objects can coexist in a
|
||||
// circle (e.g. linked_ptr<Base>, linked_ptr<Derived1>, and
|
||||
// linked_ptr<Derived2>). Therefore we must use a single mutex to
|
||||
// protect all linked_ptr objects. This can create serious
|
||||
// contention in production code, but is acceptable in a testing
|
||||
// framework.
|
||||
|
||||
// Join an existing circle.
|
||||
void join(linked_ptr_internal const* ptr)
|
||||
GTEST_LOCK_EXCLUDED_(g_linked_ptr_mutex) {
|
||||
MutexLock lock(&g_linked_ptr_mutex);
|
||||
|
||||
linked_ptr_internal const* p = ptr;
|
||||
while (p->next_ != ptr) {
|
||||
assert(p->next_ != this &&
|
||||
"Trying to join() a linked ring we are already in. "
|
||||
"Is GMock thread safety enabled?");
|
||||
p = p->next_;
|
||||
}
|
||||
p->next_ = this;
|
||||
next_ = ptr;
|
||||
}
|
||||
|
||||
// Leave whatever circle we're part of. Returns true if we were the
|
||||
// last member of the circle. Once this is done, you can join() another.
|
||||
bool depart()
|
||||
GTEST_LOCK_EXCLUDED_(g_linked_ptr_mutex) {
|
||||
MutexLock lock(&g_linked_ptr_mutex);
|
||||
|
||||
if (next_ == this) return true;
|
||||
linked_ptr_internal const* p = next_;
|
||||
while (p->next_ != this) {
|
||||
assert(p->next_ != next_ &&
|
||||
"Trying to depart() a linked ring we are not in. "
|
||||
"Is GMock thread safety enabled?");
|
||||
p = p->next_;
|
||||
}
|
||||
p->next_ = next_;
|
||||
return false;
|
||||
}
|
||||
|
||||
private:
|
||||
mutable linked_ptr_internal const* next_;
|
||||
};
|
||||
|
||||
template <typename T>
|
||||
class linked_ptr {
|
||||
public:
|
||||
typedef T element_type;
|
||||
|
||||
// Take over ownership of a raw pointer. This should happen as soon as
|
||||
// possible after the object is created.
|
||||
explicit linked_ptr(T* ptr = NULL) { capture(ptr); }
|
||||
~linked_ptr() { depart(); }
|
||||
|
||||
// Copy an existing linked_ptr<>, adding ourselves to the list of references.
|
||||
template <typename U> linked_ptr(linked_ptr<U> const& ptr) { copy(&ptr); }
|
||||
linked_ptr(linked_ptr const& ptr) { // NOLINT
|
||||
assert(&ptr != this);
|
||||
copy(&ptr);
|
||||
}
|
||||
|
||||
// Assignment releases the old value and acquires the new.
|
||||
template <typename U> linked_ptr& operator=(linked_ptr<U> const& ptr) {
|
||||
depart();
|
||||
copy(&ptr);
|
||||
return *this;
|
||||
}
|
||||
|
||||
linked_ptr& operator=(linked_ptr const& ptr) {
|
||||
if (&ptr != this) {
|
||||
depart();
|
||||
copy(&ptr);
|
||||
}
|
||||
return *this;
|
||||
}
|
||||
|
||||
// Smart pointer members.
|
||||
void reset(T* ptr = NULL) {
|
||||
depart();
|
||||
capture(ptr);
|
||||
}
|
||||
T* get() const { return value_; }
|
||||
T* operator->() const { return value_; }
|
||||
T& operator*() const { return *value_; }
|
||||
|
||||
bool operator==(T* p) const { return value_ == p; }
|
||||
bool operator!=(T* p) const { return value_ != p; }
|
||||
template <typename U>
|
||||
bool operator==(linked_ptr<U> const& ptr) const {
|
||||
return value_ == ptr.get();
|
||||
}
|
||||
template <typename U>
|
||||
bool operator!=(linked_ptr<U> const& ptr) const {
|
||||
return value_ != ptr.get();
|
||||
}
|
||||
|
||||
private:
|
||||
template <typename U>
|
||||
friend class linked_ptr;
|
||||
|
||||
T* value_;
|
||||
linked_ptr_internal link_;
|
||||
|
||||
void depart() {
|
||||
if (link_.depart()) delete value_;
|
||||
}
|
||||
|
||||
void capture(T* ptr) {
|
||||
value_ = ptr;
|
||||
link_.join_new();
|
||||
}
|
||||
|
||||
template <typename U> void copy(linked_ptr<U> const* ptr) {
|
||||
value_ = ptr->get();
|
||||
if (value_)
|
||||
link_.join(&ptr->link_);
|
||||
else
|
||||
link_.join_new();
|
||||
}
|
||||
};
|
||||
|
||||
template<typename T> inline
|
||||
bool operator==(T* ptr, const linked_ptr<T>& x) {
|
||||
return ptr == x.get();
|
||||
}
|
||||
|
||||
template<typename T> inline
|
||||
bool operator!=(T* ptr, const linked_ptr<T>& x) {
|
||||
return ptr != x.get();
|
||||
}
|
||||
|
||||
// A function to convert T* into linked_ptr<T>
|
||||
// Doing e.g. make_linked_ptr(new FooBarBaz<type>(arg)) is a shorter notation
|
||||
// for linked_ptr<FooBarBaz<type> >(new FooBarBaz<type>(arg))
|
||||
template <typename T>
|
||||
linked_ptr<T> make_linked_ptr(T* ptr) {
|
||||
return linked_ptr<T>(ptr);
|
||||
}
|
||||
|
||||
} // namespace internal
|
||||
} // namespace testing
|
||||
|
||||
#endif // GTEST_INCLUDE_GTEST_INTERNAL_GTEST_LINKED_PTR_H_
|
||||
File diff suppressed because it is too large
Load Diff
@@ -1,282 +0,0 @@
|
||||
$$ -*- mode: c++; -*-
|
||||
$var n = 50 $$ Maximum length of Values arguments we want to support.
|
||||
$var maxtuple = 10 $$ Maximum number of Combine arguments we want to support.
|
||||
// Copyright 2008 Google Inc.
|
||||
// All Rights Reserved.
|
||||
//
|
||||
// Redistribution and use in source and binary forms, with or without
|
||||
// modification, are permitted provided that the following conditions are
|
||||
// met:
|
||||
//
|
||||
// * Redistributions of source code must retain the above copyright
|
||||
// notice, this list of conditions and the following disclaimer.
|
||||
// * Redistributions in binary form must reproduce the above
|
||||
// copyright notice, this list of conditions and the following disclaimer
|
||||
// in the documentation and/or other materials provided with the
|
||||
// distribution.
|
||||
// * Neither the name of Google Inc. nor the names of its
|
||||
// contributors may be used to endorse or promote products derived from
|
||||
// this software without specific prior written permission.
|
||||
//
|
||||
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
|
||||
// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
|
||||
// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
|
||||
// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
|
||||
// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
|
||||
// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
|
||||
// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
|
||||
// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
|
||||
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
|
||||
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
|
||||
// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
|
||||
|
||||
|
||||
// Type and function utilities for implementing parameterized tests.
|
||||
// This file is generated by a SCRIPT. DO NOT EDIT BY HAND!
|
||||
//
|
||||
// Currently Google Test supports at most $n arguments in Values,
|
||||
// and at most $maxtuple arguments in Combine. Please contact
|
||||
// googletestframework@googlegroups.com if you need more.
|
||||
// Please note that the number of arguments to Combine is limited
|
||||
// by the maximum arity of the implementation of tuple which is
|
||||
// currently set at $maxtuple.
|
||||
|
||||
// GOOGLETEST_CM0001 DO NOT DELETE
|
||||
|
||||
#ifndef GTEST_INCLUDE_GTEST_INTERNAL_GTEST_PARAM_UTIL_GENERATED_H_
|
||||
#define GTEST_INCLUDE_GTEST_INTERNAL_GTEST_PARAM_UTIL_GENERATED_H_
|
||||
|
||||
#include "gtest/internal/gtest-param-util.h"
|
||||
#include "gtest/internal/gtest-port.h"
|
||||
|
||||
namespace testing {
|
||||
|
||||
// Forward declarations of ValuesIn(), which is implemented in
|
||||
// include/gtest/gtest-param-test.h.
|
||||
template <typename ForwardIterator>
|
||||
internal::ParamGenerator<
|
||||
typename ::testing::internal::IteratorTraits<ForwardIterator>::value_type>
|
||||
ValuesIn(ForwardIterator begin, ForwardIterator end);
|
||||
|
||||
template <typename T, size_t N>
|
||||
internal::ParamGenerator<T> ValuesIn(const T (&array)[N]);
|
||||
|
||||
template <class Container>
|
||||
internal::ParamGenerator<typename Container::value_type> ValuesIn(
|
||||
const Container& container);
|
||||
|
||||
namespace internal {
|
||||
|
||||
// Used in the Values() function to provide polymorphic capabilities.
|
||||
$range i 1..n
|
||||
$for i [[
|
||||
$range j 1..i
|
||||
|
||||
template <$for j, [[typename T$j]]>
|
||||
class ValueArray$i {
|
||||
public:
|
||||
$if i==1 [[explicit ]]ValueArray$i($for j, [[T$j v$j]]) : $for j, [[v$(j)_(v$j)]] {}
|
||||
|
||||
template <typename T>
|
||||
operator ParamGenerator<T>() const {
|
||||
const T array[] = {$for j, [[static_cast<T>(v$(j)_)]]};
|
||||
return ValuesIn(array);
|
||||
}
|
||||
|
||||
ValueArray$i(const ValueArray$i& other) : $for j, [[v$(j)_(other.v$(j)_)]] {}
|
||||
|
||||
private:
|
||||
// No implementation - assignment is unsupported.
|
||||
void operator=(const ValueArray$i& other);
|
||||
|
||||
$for j [[
|
||||
|
||||
const T$j v$(j)_;
|
||||
]]
|
||||
|
||||
};
|
||||
|
||||
]]
|
||||
|
||||
# if GTEST_HAS_COMBINE
|
||||
// INTERNAL IMPLEMENTATION - DO NOT USE IN USER CODE.
|
||||
//
|
||||
// Generates values from the Cartesian product of values produced
|
||||
// by the argument generators.
|
||||
//
|
||||
$range i 2..maxtuple
|
||||
$for i [[
|
||||
$range j 1..i
|
||||
$range k 2..i
|
||||
|
||||
template <$for j, [[typename T$j]]>
|
||||
class CartesianProductGenerator$i
|
||||
: public ParamGeneratorInterface< ::testing::tuple<$for j, [[T$j]]> > {
|
||||
public:
|
||||
typedef ::testing::tuple<$for j, [[T$j]]> ParamType;
|
||||
|
||||
CartesianProductGenerator$i($for j, [[const ParamGenerator<T$j>& g$j]])
|
||||
: $for j, [[g$(j)_(g$j)]] {}
|
||||
virtual ~CartesianProductGenerator$i() {}
|
||||
|
||||
virtual ParamIteratorInterface<ParamType>* Begin() const {
|
||||
return new Iterator(this, $for j, [[g$(j)_, g$(j)_.begin()]]);
|
||||
}
|
||||
virtual ParamIteratorInterface<ParamType>* End() const {
|
||||
return new Iterator(this, $for j, [[g$(j)_, g$(j)_.end()]]);
|
||||
}
|
||||
|
||||
private:
|
||||
class Iterator : public ParamIteratorInterface<ParamType> {
|
||||
public:
|
||||
Iterator(const ParamGeneratorInterface<ParamType>* base, $for j, [[
|
||||
|
||||
const ParamGenerator<T$j>& g$j,
|
||||
const typename ParamGenerator<T$j>::iterator& current$(j)]])
|
||||
: base_(base),
|
||||
$for j, [[
|
||||
|
||||
begin$(j)_(g$j.begin()), end$(j)_(g$j.end()), current$(j)_(current$j)
|
||||
]] {
|
||||
ComputeCurrentValue();
|
||||
}
|
||||
virtual ~Iterator() {}
|
||||
|
||||
virtual const ParamGeneratorInterface<ParamType>* BaseGenerator() const {
|
||||
return base_;
|
||||
}
|
||||
// Advance should not be called on beyond-of-range iterators
|
||||
// so no component iterators must be beyond end of range, either.
|
||||
virtual void Advance() {
|
||||
assert(!AtEnd());
|
||||
++current$(i)_;
|
||||
|
||||
$for k [[
|
||||
if (current$(i+2-k)_ == end$(i+2-k)_) {
|
||||
current$(i+2-k)_ = begin$(i+2-k)_;
|
||||
++current$(i+2-k-1)_;
|
||||
}
|
||||
|
||||
]]
|
||||
ComputeCurrentValue();
|
||||
}
|
||||
virtual ParamIteratorInterface<ParamType>* Clone() const {
|
||||
return new Iterator(*this);
|
||||
}
|
||||
virtual const ParamType* Current() const { return current_value_.get(); }
|
||||
virtual bool Equals(const ParamIteratorInterface<ParamType>& other) const {
|
||||
// Having the same base generator guarantees that the other
|
||||
// iterator is of the same type and we can downcast.
|
||||
GTEST_CHECK_(BaseGenerator() == other.BaseGenerator())
|
||||
<< "The program attempted to compare iterators "
|
||||
<< "from different generators." << std::endl;
|
||||
const Iterator* typed_other =
|
||||
CheckedDowncastToActualType<const Iterator>(&other);
|
||||
// We must report iterators equal if they both point beyond their
|
||||
// respective ranges. That can happen in a variety of fashions,
|
||||
// so we have to consult AtEnd().
|
||||
return (AtEnd() && typed_other->AtEnd()) ||
|
||||
($for j && [[
|
||||
|
||||
current$(j)_ == typed_other->current$(j)_
|
||||
]]);
|
||||
}
|
||||
|
||||
private:
|
||||
Iterator(const Iterator& other)
|
||||
: base_(other.base_), $for j, [[
|
||||
|
||||
begin$(j)_(other.begin$(j)_),
|
||||
end$(j)_(other.end$(j)_),
|
||||
current$(j)_(other.current$(j)_)
|
||||
]] {
|
||||
ComputeCurrentValue();
|
||||
}
|
||||
|
||||
void ComputeCurrentValue() {
|
||||
if (!AtEnd())
|
||||
current_value_.reset(new ParamType($for j, [[*current$(j)_]]));
|
||||
}
|
||||
bool AtEnd() const {
|
||||
// We must report iterator past the end of the range when either of the
|
||||
// component iterators has reached the end of its range.
|
||||
return
|
||||
$for j || [[
|
||||
|
||||
current$(j)_ == end$(j)_
|
||||
]];
|
||||
}
|
||||
|
||||
// No implementation - assignment is unsupported.
|
||||
void operator=(const Iterator& other);
|
||||
|
||||
const ParamGeneratorInterface<ParamType>* const base_;
|
||||
// begin[i]_ and end[i]_ define the i-th range that Iterator traverses.
|
||||
// current[i]_ is the actual traversing iterator.
|
||||
$for j [[
|
||||
|
||||
const typename ParamGenerator<T$j>::iterator begin$(j)_;
|
||||
const typename ParamGenerator<T$j>::iterator end$(j)_;
|
||||
typename ParamGenerator<T$j>::iterator current$(j)_;
|
||||
]]
|
||||
|
||||
linked_ptr<ParamType> current_value_;
|
||||
}; // class CartesianProductGenerator$i::Iterator
|
||||
|
||||
// No implementation - assignment is unsupported.
|
||||
void operator=(const CartesianProductGenerator$i& other);
|
||||
|
||||
|
||||
$for j [[
|
||||
const ParamGenerator<T$j> g$(j)_;
|
||||
|
||||
]]
|
||||
}; // class CartesianProductGenerator$i
|
||||
|
||||
|
||||
]]
|
||||
|
||||
// INTERNAL IMPLEMENTATION - DO NOT USE IN USER CODE.
|
||||
//
|
||||
// Helper classes providing Combine() with polymorphic features. They allow
|
||||
// casting CartesianProductGeneratorN<T> to ParamGenerator<U> if T is
|
||||
// convertible to U.
|
||||
//
|
||||
$range i 2..maxtuple
|
||||
$for i [[
|
||||
$range j 1..i
|
||||
|
||||
template <$for j, [[class Generator$j]]>
|
||||
class CartesianProductHolder$i {
|
||||
public:
|
||||
CartesianProductHolder$i($for j, [[const Generator$j& g$j]])
|
||||
: $for j, [[g$(j)_(g$j)]] {}
|
||||
template <$for j, [[typename T$j]]>
|
||||
operator ParamGenerator< ::testing::tuple<$for j, [[T$j]]> >() const {
|
||||
return ParamGenerator< ::testing::tuple<$for j, [[T$j]]> >(
|
||||
new CartesianProductGenerator$i<$for j, [[T$j]]>(
|
||||
$for j,[[
|
||||
|
||||
static_cast<ParamGenerator<T$j> >(g$(j)_)
|
||||
]]));
|
||||
}
|
||||
|
||||
private:
|
||||
// No implementation - assignment is unsupported.
|
||||
void operator=(const CartesianProductHolder$i& other);
|
||||
|
||||
|
||||
$for j [[
|
||||
const Generator$j g$(j)_;
|
||||
|
||||
]]
|
||||
}; // class CartesianProductHolder$i
|
||||
|
||||
]]
|
||||
|
||||
# endif // GTEST_HAS_COMBINE
|
||||
|
||||
} // namespace internal
|
||||
} // namespace testing
|
||||
|
||||
#endif // GTEST_INCLUDE_GTEST_INTERNAL_GTEST_PARAM_UTIL_GENERATED_H_
|
||||
@@ -37,18 +37,19 @@
|
||||
|
||||
#include <ctype.h>
|
||||
|
||||
#include <cassert>
|
||||
#include <iterator>
|
||||
#include <memory>
|
||||
#include <set>
|
||||
#include <tuple>
|
||||
#include <utility>
|
||||
#include <vector>
|
||||
|
||||
#include "gtest/internal/gtest-internal.h"
|
||||
#include "gtest/internal/gtest-linked_ptr.h"
|
||||
#include "gtest/internal/gtest-port.h"
|
||||
#include "gtest/gtest-printers.h"
|
||||
|
||||
namespace testing {
|
||||
|
||||
// Input to a parameterized test name generator, describing a test parameter.
|
||||
// Consists of the parameter value and the integer parameter index.
|
||||
template <class ParamType>
|
||||
@@ -72,13 +73,14 @@ struct PrintToStringParamName {
|
||||
namespace internal {
|
||||
|
||||
// INTERNAL IMPLEMENTATION - DO NOT USE IN USER CODE.
|
||||
//
|
||||
// Utility Functions
|
||||
|
||||
// Outputs a message explaining invalid registration of different
|
||||
// fixture class for the same test case. This may happen when
|
||||
// fixture class for the same test suite. This may happen when
|
||||
// TEST_P macro is used to define two tests with the same name
|
||||
// but in different namespaces.
|
||||
GTEST_API_ void ReportInvalidTestCaseType(const char* test_case_name,
|
||||
CodeLocation code_location);
|
||||
GTEST_API_ void ReportInvalidTestSuiteType(const char* test_suite_name,
|
||||
CodeLocation code_location);
|
||||
|
||||
template <typename> class ParamGeneratorInterface;
|
||||
template <typename> class ParamGenerator;
|
||||
@@ -153,7 +155,7 @@ class ParamIterator {
|
||||
private:
|
||||
friend class ParamGenerator<T>;
|
||||
explicit ParamIterator(ParamIteratorInterface<T>* impl) : impl_(impl) {}
|
||||
scoped_ptr<ParamIteratorInterface<T> > impl_;
|
||||
std::unique_ptr<ParamIteratorInterface<T> > impl_;
|
||||
};
|
||||
|
||||
// ParamGeneratorInterface<T> is the binary interface to access generators
|
||||
@@ -192,7 +194,7 @@ class ParamGenerator {
|
||||
iterator end() const { return iterator(impl_->End()); }
|
||||
|
||||
private:
|
||||
linked_ptr<const ParamGeneratorInterface<T> > impl_;
|
||||
std::shared_ptr<const ParamGeneratorInterface<T> > impl_;
|
||||
};
|
||||
|
||||
// Generates values from a range of two comparable values. Can be used to
|
||||
@@ -205,12 +207,12 @@ class RangeGenerator : public ParamGeneratorInterface<T> {
|
||||
RangeGenerator(T begin, T end, IncrementT step)
|
||||
: begin_(begin), end_(end),
|
||||
step_(step), end_index_(CalculateEndIndex(begin, end, step)) {}
|
||||
virtual ~RangeGenerator() {}
|
||||
~RangeGenerator() override {}
|
||||
|
||||
virtual ParamIteratorInterface<T>* Begin() const {
|
||||
ParamIteratorInterface<T>* Begin() const override {
|
||||
return new Iterator(this, begin_, 0, step_);
|
||||
}
|
||||
virtual ParamIteratorInterface<T>* End() const {
|
||||
ParamIteratorInterface<T>* End() const override {
|
||||
return new Iterator(this, end_, end_index_, step_);
|
||||
}
|
||||
|
||||
@@ -220,20 +222,20 @@ class RangeGenerator : public ParamGeneratorInterface<T> {
|
||||
Iterator(const ParamGeneratorInterface<T>* base, T value, int index,
|
||||
IncrementT step)
|
||||
: base_(base), value_(value), index_(index), step_(step) {}
|
||||
virtual ~Iterator() {}
|
||||
~Iterator() override {}
|
||||
|
||||
virtual const ParamGeneratorInterface<T>* BaseGenerator() const {
|
||||
const ParamGeneratorInterface<T>* BaseGenerator() const override {
|
||||
return base_;
|
||||
}
|
||||
virtual void Advance() {
|
||||
void Advance() override {
|
||||
value_ = static_cast<T>(value_ + step_);
|
||||
index_++;
|
||||
}
|
||||
virtual ParamIteratorInterface<T>* Clone() const {
|
||||
ParamIteratorInterface<T>* Clone() const override {
|
||||
return new Iterator(*this);
|
||||
}
|
||||
virtual const T* Current() const { return &value_; }
|
||||
virtual bool Equals(const ParamIteratorInterface<T>& other) const {
|
||||
const T* Current() const override { return &value_; }
|
||||
bool Equals(const ParamIteratorInterface<T>& other) const override {
|
||||
// Having the same base generator guarantees that the other
|
||||
// iterator is of the same type and we can downcast.
|
||||
GTEST_CHECK_(BaseGenerator() == other.BaseGenerator())
|
||||
@@ -290,12 +292,12 @@ class ValuesInIteratorRangeGenerator : public ParamGeneratorInterface<T> {
|
||||
template <typename ForwardIterator>
|
||||
ValuesInIteratorRangeGenerator(ForwardIterator begin, ForwardIterator end)
|
||||
: container_(begin, end) {}
|
||||
virtual ~ValuesInIteratorRangeGenerator() {}
|
||||
~ValuesInIteratorRangeGenerator() override {}
|
||||
|
||||
virtual ParamIteratorInterface<T>* Begin() const {
|
||||
ParamIteratorInterface<T>* Begin() const override {
|
||||
return new Iterator(this, container_.begin());
|
||||
}
|
||||
virtual ParamIteratorInterface<T>* End() const {
|
||||
ParamIteratorInterface<T>* End() const override {
|
||||
return new Iterator(this, container_.end());
|
||||
}
|
||||
|
||||
@@ -307,16 +309,16 @@ class ValuesInIteratorRangeGenerator : public ParamGeneratorInterface<T> {
|
||||
Iterator(const ParamGeneratorInterface<T>* base,
|
||||
typename ContainerType::const_iterator iterator)
|
||||
: base_(base), iterator_(iterator) {}
|
||||
virtual ~Iterator() {}
|
||||
~Iterator() override {}
|
||||
|
||||
virtual const ParamGeneratorInterface<T>* BaseGenerator() const {
|
||||
const ParamGeneratorInterface<T>* BaseGenerator() const override {
|
||||
return base_;
|
||||
}
|
||||
virtual void Advance() {
|
||||
void Advance() override {
|
||||
++iterator_;
|
||||
value_.reset();
|
||||
}
|
||||
virtual ParamIteratorInterface<T>* Clone() const {
|
||||
ParamIteratorInterface<T>* Clone() const override {
|
||||
return new Iterator(*this);
|
||||
}
|
||||
// We need to use cached value referenced by iterator_ because *iterator_
|
||||
@@ -326,12 +328,11 @@ class ValuesInIteratorRangeGenerator : public ParamGeneratorInterface<T> {
|
||||
// can advance iterator_ beyond the end of the range, and we cannot
|
||||
// detect that fact. The client code, on the other hand, is
|
||||
// responsible for not calling Current() on an out-of-range iterator.
|
||||
virtual const T* Current() const {
|
||||
if (value_.get() == NULL)
|
||||
value_.reset(new T(*iterator_));
|
||||
const T* Current() const override {
|
||||
if (value_.get() == nullptr) value_.reset(new T(*iterator_));
|
||||
return value_.get();
|
||||
}
|
||||
virtual bool Equals(const ParamIteratorInterface<T>& other) const {
|
||||
bool Equals(const ParamIteratorInterface<T>& other) const override {
|
||||
// Having the same base generator guarantees that the other
|
||||
// iterator is of the same type and we can downcast.
|
||||
GTEST_CHECK_(BaseGenerator() == other.BaseGenerator())
|
||||
@@ -354,9 +355,9 @@ class ValuesInIteratorRangeGenerator : public ParamGeneratorInterface<T> {
|
||||
// A cached value of *iterator_. We keep it here to allow access by
|
||||
// pointer in the wrapping iterator's operator->().
|
||||
// value_ needs to be mutable to be accessed in Current().
|
||||
// Use of scoped_ptr helps manage cached value's lifetime,
|
||||
// Use of std::unique_ptr helps manage cached value's lifetime,
|
||||
// which is bound by the lifespan of the iterator itself.
|
||||
mutable scoped_ptr<const T> value_;
|
||||
mutable std::unique_ptr<const T> value_;
|
||||
}; // class ValuesInIteratorRangeGenerator::Iterator
|
||||
|
||||
// No implementation - assignment is unsupported.
|
||||
@@ -376,25 +377,12 @@ std::string DefaultParamName(const TestParamInfo<ParamType>& info) {
|
||||
return name_stream.GetString();
|
||||
}
|
||||
|
||||
// INTERNAL IMPLEMENTATION - DO NOT USE IN USER CODE.
|
||||
//
|
||||
// Parameterized test name overload helpers, which help the
|
||||
// INSTANTIATE_TEST_CASE_P macro choose between the default parameterized
|
||||
// test name generator and user param name generator.
|
||||
template <class ParamType, class ParamNameGenFunctor>
|
||||
ParamNameGenFunctor GetParamNameGen(ParamNameGenFunctor func) {
|
||||
return func;
|
||||
}
|
||||
|
||||
template <class ParamType>
|
||||
struct ParamNameGenFunc {
|
||||
typedef std::string Type(const TestParamInfo<ParamType>&);
|
||||
};
|
||||
|
||||
template <class ParamType>
|
||||
typename ParamNameGenFunc<ParamType>::Type *GetParamNameGen() {
|
||||
return DefaultParamName;
|
||||
template <typename T = int>
|
||||
void TestNotEmpty() {
|
||||
static_assert(sizeof(T) == 0, "Empty arguments are not allowed.");
|
||||
}
|
||||
template <typename T = int>
|
||||
void TestNotEmpty(const T&) {}
|
||||
|
||||
// INTERNAL IMPLEMENTATION - DO NOT USE IN USER CODE.
|
||||
//
|
||||
@@ -406,7 +394,7 @@ class ParameterizedTestFactory : public TestFactoryBase {
|
||||
typedef typename TestClass::ParamType ParamType;
|
||||
explicit ParameterizedTestFactory(ParamType parameter) :
|
||||
parameter_(parameter) {}
|
||||
virtual Test* CreateTest() {
|
||||
Test* CreateTest() override {
|
||||
TestClass::SetParam(¶meter_);
|
||||
return new TestClass();
|
||||
}
|
||||
@@ -434,19 +422,19 @@ class TestMetaFactoryBase {
|
||||
// TestMetaFactory creates test factories for passing into
|
||||
// MakeAndRegisterTestInfo function. Since MakeAndRegisterTestInfo receives
|
||||
// ownership of test factory pointer, same factory object cannot be passed
|
||||
// into that method twice. But ParameterizedTestCaseInfo is going to call
|
||||
// into that method twice. But ParameterizedTestSuiteInfo is going to call
|
||||
// it for each Test/Parameter value combination. Thus it needs meta factory
|
||||
// creator class.
|
||||
template <class TestCase>
|
||||
template <class TestSuite>
|
||||
class TestMetaFactory
|
||||
: public TestMetaFactoryBase<typename TestCase::ParamType> {
|
||||
: public TestMetaFactoryBase<typename TestSuite::ParamType> {
|
||||
public:
|
||||
typedef typename TestCase::ParamType ParamType;
|
||||
using ParamType = typename TestSuite::ParamType;
|
||||
|
||||
TestMetaFactory() {}
|
||||
|
||||
virtual TestFactoryBase* CreateTestFactory(ParamType parameter) {
|
||||
return new ParameterizedTestFactory<TestCase>(parameter);
|
||||
TestFactoryBase* CreateTestFactory(ParamType parameter) override {
|
||||
return new ParameterizedTestFactory<TestSuite>(parameter);
|
||||
}
|
||||
|
||||
private:
|
||||
@@ -455,93 +443,93 @@ class TestMetaFactory
|
||||
|
||||
// INTERNAL IMPLEMENTATION - DO NOT USE IN USER CODE.
|
||||
//
|
||||
// ParameterizedTestCaseInfoBase is a generic interface
|
||||
// to ParameterizedTestCaseInfo classes. ParameterizedTestCaseInfoBase
|
||||
// ParameterizedTestSuiteInfoBase is a generic interface
|
||||
// to ParameterizedTestSuiteInfo classes. ParameterizedTestSuiteInfoBase
|
||||
// accumulates test information provided by TEST_P macro invocations
|
||||
// and generators provided by INSTANTIATE_TEST_CASE_P macro invocations
|
||||
// and generators provided by INSTANTIATE_TEST_SUITE_P macro invocations
|
||||
// and uses that information to register all resulting test instances
|
||||
// in RegisterTests method. The ParameterizeTestCaseRegistry class holds
|
||||
// a collection of pointers to the ParameterizedTestCaseInfo objects
|
||||
// in RegisterTests method. The ParameterizeTestSuiteRegistry class holds
|
||||
// a collection of pointers to the ParameterizedTestSuiteInfo objects
|
||||
// and calls RegisterTests() on each of them when asked.
|
||||
class ParameterizedTestCaseInfoBase {
|
||||
class ParameterizedTestSuiteInfoBase {
|
||||
public:
|
||||
virtual ~ParameterizedTestCaseInfoBase() {}
|
||||
virtual ~ParameterizedTestSuiteInfoBase() {}
|
||||
|
||||
// Base part of test case name for display purposes.
|
||||
virtual const std::string& GetTestCaseName() const = 0;
|
||||
// Base part of test suite name for display purposes.
|
||||
virtual const std::string& GetTestSuiteName() const = 0;
|
||||
// Test case id to verify identity.
|
||||
virtual TypeId GetTestCaseTypeId() const = 0;
|
||||
virtual TypeId GetTestSuiteTypeId() const = 0;
|
||||
// UnitTest class invokes this method to register tests in this
|
||||
// test case right before running them in RUN_ALL_TESTS macro.
|
||||
// This method should not be called more then once on any single
|
||||
// instance of a ParameterizedTestCaseInfoBase derived class.
|
||||
// test suite right before running them in RUN_ALL_TESTS macro.
|
||||
// This method should not be called more than once on any single
|
||||
// instance of a ParameterizedTestSuiteInfoBase derived class.
|
||||
virtual void RegisterTests() = 0;
|
||||
|
||||
protected:
|
||||
ParameterizedTestCaseInfoBase() {}
|
||||
ParameterizedTestSuiteInfoBase() {}
|
||||
|
||||
private:
|
||||
GTEST_DISALLOW_COPY_AND_ASSIGN_(ParameterizedTestCaseInfoBase);
|
||||
GTEST_DISALLOW_COPY_AND_ASSIGN_(ParameterizedTestSuiteInfoBase);
|
||||
};
|
||||
|
||||
// INTERNAL IMPLEMENTATION - DO NOT USE IN USER CODE.
|
||||
//
|
||||
// ParameterizedTestCaseInfo accumulates tests obtained from TEST_P
|
||||
// macro invocations for a particular test case and generators
|
||||
// obtained from INSTANTIATE_TEST_CASE_P macro invocations for that
|
||||
// test case. It registers tests with all values generated by all
|
||||
// ParameterizedTestSuiteInfo accumulates tests obtained from TEST_P
|
||||
// macro invocations for a particular test suite and generators
|
||||
// obtained from INSTANTIATE_TEST_SUITE_P macro invocations for that
|
||||
// test suite. It registers tests with all values generated by all
|
||||
// generators when asked.
|
||||
template <class TestCase>
|
||||
class ParameterizedTestCaseInfo : public ParameterizedTestCaseInfoBase {
|
||||
template <class TestSuite>
|
||||
class ParameterizedTestSuiteInfo : public ParameterizedTestSuiteInfoBase {
|
||||
public:
|
||||
// ParamType and GeneratorCreationFunc are private types but are required
|
||||
// for declarations of public methods AddTestPattern() and
|
||||
// AddTestCaseInstantiation().
|
||||
typedef typename TestCase::ParamType ParamType;
|
||||
// AddTestSuiteInstantiation().
|
||||
using ParamType = typename TestSuite::ParamType;
|
||||
// A function that returns an instance of appropriate generator type.
|
||||
typedef ParamGenerator<ParamType>(GeneratorCreationFunc)();
|
||||
typedef typename ParamNameGenFunc<ParamType>::Type ParamNameGeneratorFunc;
|
||||
using ParamNameGeneratorFunc = std::string(const TestParamInfo<ParamType>&);
|
||||
|
||||
explicit ParameterizedTestCaseInfo(
|
||||
const char* name, CodeLocation code_location)
|
||||
: test_case_name_(name), code_location_(code_location) {}
|
||||
explicit ParameterizedTestSuiteInfo(const char* name,
|
||||
CodeLocation code_location)
|
||||
: test_suite_name_(name), code_location_(code_location) {}
|
||||
|
||||
// Test case base name for display purposes.
|
||||
virtual const std::string& GetTestCaseName() const { return test_case_name_; }
|
||||
const std::string& GetTestSuiteName() const override {
|
||||
return test_suite_name_;
|
||||
}
|
||||
// Test case id to verify identity.
|
||||
virtual TypeId GetTestCaseTypeId() const { return GetTypeId<TestCase>(); }
|
||||
TypeId GetTestSuiteTypeId() const override { return GetTypeId<TestSuite>(); }
|
||||
// TEST_P macro uses AddTestPattern() to record information
|
||||
// about a single test in a LocalTestInfo structure.
|
||||
// test_case_name is the base name of the test case (without invocation
|
||||
// test_suite_name is the base name of the test suite (without invocation
|
||||
// prefix). test_base_name is the name of an individual test without
|
||||
// parameter index. For the test SequenceA/FooTest.DoBar/1 FooTest is
|
||||
// test case base name and DoBar is test base name.
|
||||
void AddTestPattern(const char* test_case_name,
|
||||
const char* test_base_name,
|
||||
// test suite base name and DoBar is test base name.
|
||||
void AddTestPattern(const char* test_suite_name, const char* test_base_name,
|
||||
TestMetaFactoryBase<ParamType>* meta_factory) {
|
||||
tests_.push_back(linked_ptr<TestInfo>(new TestInfo(test_case_name,
|
||||
test_base_name,
|
||||
meta_factory)));
|
||||
tests_.push_back(std::shared_ptr<TestInfo>(
|
||||
new TestInfo(test_suite_name, test_base_name, meta_factory)));
|
||||
}
|
||||
// INSTANTIATE_TEST_CASE_P macro uses AddGenerator() to record information
|
||||
// INSTANTIATE_TEST_SUITE_P macro uses AddGenerator() to record information
|
||||
// about a generator.
|
||||
int AddTestCaseInstantiation(const std::string& instantiation_name,
|
||||
GeneratorCreationFunc* func,
|
||||
ParamNameGeneratorFunc* name_func,
|
||||
const char* file, int line) {
|
||||
int AddTestSuiteInstantiation(const std::string& instantiation_name,
|
||||
GeneratorCreationFunc* func,
|
||||
ParamNameGeneratorFunc* name_func,
|
||||
const char* file, int line) {
|
||||
instantiations_.push_back(
|
||||
InstantiationInfo(instantiation_name, func, name_func, file, line));
|
||||
return 0; // Return value used only to run this method in namespace scope.
|
||||
}
|
||||
// UnitTest class invokes this method to register tests in this test case
|
||||
// test cases right before running tests in RUN_ALL_TESTS macro.
|
||||
// This method should not be called more then once on any single
|
||||
// instance of a ParameterizedTestCaseInfoBase derived class.
|
||||
// UnitTest has a guard to prevent from calling this method more then once.
|
||||
virtual void RegisterTests() {
|
||||
// UnitTest class invokes this method to register tests in this test suite
|
||||
// test suites right before running tests in RUN_ALL_TESTS macro.
|
||||
// This method should not be called more than once on any single
|
||||
// instance of a ParameterizedTestSuiteInfoBase derived class.
|
||||
// UnitTest has a guard to prevent from calling this method more than once.
|
||||
void RegisterTests() override {
|
||||
for (typename TestInfoContainer::iterator test_it = tests_.begin();
|
||||
test_it != tests_.end(); ++test_it) {
|
||||
linked_ptr<TestInfo> test_info = *test_it;
|
||||
std::shared_ptr<TestInfo> test_info = *test_it;
|
||||
for (typename InstantiationContainer::iterator gen_it =
|
||||
instantiations_.begin(); gen_it != instantiations_.end();
|
||||
++gen_it) {
|
||||
@@ -551,10 +539,10 @@ class ParameterizedTestCaseInfo : public ParameterizedTestCaseInfoBase {
|
||||
const char* file = gen_it->file;
|
||||
int line = gen_it->line;
|
||||
|
||||
std::string test_case_name;
|
||||
std::string test_suite_name;
|
||||
if ( !instantiation_name.empty() )
|
||||
test_case_name = instantiation_name + "/";
|
||||
test_case_name += test_info->test_case_base_name;
|
||||
test_suite_name = instantiation_name + "/";
|
||||
test_suite_name += test_info->test_suite_base_name;
|
||||
|
||||
size_t i = 0;
|
||||
std::set<std::string> test_param_names;
|
||||
@@ -577,39 +565,39 @@ class ParameterizedTestCaseInfo : public ParameterizedTestCaseInfoBase {
|
||||
|
||||
test_param_names.insert(param_name);
|
||||
|
||||
test_name_stream << test_info->test_base_name << "/" << param_name;
|
||||
if (!test_info->test_base_name.empty()) {
|
||||
test_name_stream << test_info->test_base_name << "/";
|
||||
}
|
||||
test_name_stream << param_name;
|
||||
MakeAndRegisterTestInfo(
|
||||
test_case_name.c_str(),
|
||||
test_name_stream.GetString().c_str(),
|
||||
NULL, // No type parameter.
|
||||
PrintToString(*param_it).c_str(),
|
||||
code_location_,
|
||||
GetTestCaseTypeId(),
|
||||
TestCase::SetUpTestCase,
|
||||
TestCase::TearDownTestCase,
|
||||
test_suite_name.c_str(), test_name_stream.GetString().c_str(),
|
||||
nullptr, // No type parameter.
|
||||
PrintToString(*param_it).c_str(), code_location_,
|
||||
GetTestSuiteTypeId(),
|
||||
SuiteApiResolver<TestSuite>::GetSetUpCaseOrSuite(file, line),
|
||||
SuiteApiResolver<TestSuite>::GetTearDownCaseOrSuite(file, line),
|
||||
test_info->test_meta_factory->CreateTestFactory(*param_it));
|
||||
} // for param_it
|
||||
} // for gen_it
|
||||
} // for test_it
|
||||
} // RegisterTests
|
||||
} // RegisterTests
|
||||
|
||||
private:
|
||||
// LocalTestInfo structure keeps information about a single test registered
|
||||
// with TEST_P macro.
|
||||
struct TestInfo {
|
||||
TestInfo(const char* a_test_case_base_name,
|
||||
const char* a_test_base_name,
|
||||
TestMetaFactoryBase<ParamType>* a_test_meta_factory) :
|
||||
test_case_base_name(a_test_case_base_name),
|
||||
test_base_name(a_test_base_name),
|
||||
test_meta_factory(a_test_meta_factory) {}
|
||||
TestInfo(const char* a_test_suite_base_name, const char* a_test_base_name,
|
||||
TestMetaFactoryBase<ParamType>* a_test_meta_factory)
|
||||
: test_suite_base_name(a_test_suite_base_name),
|
||||
test_base_name(a_test_base_name),
|
||||
test_meta_factory(a_test_meta_factory) {}
|
||||
|
||||
const std::string test_case_base_name;
|
||||
const std::string test_suite_base_name;
|
||||
const std::string test_base_name;
|
||||
const scoped_ptr<TestMetaFactoryBase<ParamType> > test_meta_factory;
|
||||
const std::unique_ptr<TestMetaFactoryBase<ParamType> > test_meta_factory;
|
||||
};
|
||||
typedef ::std::vector<linked_ptr<TestInfo> > TestInfoContainer;
|
||||
// Records data received from INSTANTIATE_TEST_CASE_P macros:
|
||||
using TestInfoContainer = ::std::vector<std::shared_ptr<TestInfo> >;
|
||||
// Records data received from INSTANTIATE_TEST_SUITE_P macros:
|
||||
// <Instantiation name, Sequence generator creation function,
|
||||
// Name generator function, Source file, Source line>
|
||||
struct InstantiationInfo {
|
||||
@@ -646,76 +634,247 @@ class ParameterizedTestCaseInfo : public ParameterizedTestCaseInfoBase {
|
||||
return true;
|
||||
}
|
||||
|
||||
const std::string test_case_name_;
|
||||
const std::string test_suite_name_;
|
||||
CodeLocation code_location_;
|
||||
TestInfoContainer tests_;
|
||||
InstantiationContainer instantiations_;
|
||||
|
||||
GTEST_DISALLOW_COPY_AND_ASSIGN_(ParameterizedTestCaseInfo);
|
||||
}; // class ParameterizedTestCaseInfo
|
||||
GTEST_DISALLOW_COPY_AND_ASSIGN_(ParameterizedTestSuiteInfo);
|
||||
}; // class ParameterizedTestSuiteInfo
|
||||
|
||||
// Legacy API is deprecated but still available
|
||||
#ifndef GTEST_REMOVE_LEGACY_TEST_CASEAPI_
|
||||
template <class TestCase>
|
||||
using ParameterizedTestCaseInfo = ParameterizedTestSuiteInfo<TestCase>;
|
||||
#endif // GTEST_REMOVE_LEGACY_TEST_CASEAPI_
|
||||
|
||||
// INTERNAL IMPLEMENTATION - DO NOT USE IN USER CODE.
|
||||
//
|
||||
// ParameterizedTestCaseRegistry contains a map of ParameterizedTestCaseInfoBase
|
||||
// classes accessed by test case names. TEST_P and INSTANTIATE_TEST_CASE_P
|
||||
// macros use it to locate their corresponding ParameterizedTestCaseInfo
|
||||
// descriptors.
|
||||
class ParameterizedTestCaseRegistry {
|
||||
// ParameterizedTestSuiteRegistry contains a map of
|
||||
// ParameterizedTestSuiteInfoBase classes accessed by test suite names. TEST_P
|
||||
// and INSTANTIATE_TEST_SUITE_P macros use it to locate their corresponding
|
||||
// ParameterizedTestSuiteInfo descriptors.
|
||||
class ParameterizedTestSuiteRegistry {
|
||||
public:
|
||||
ParameterizedTestCaseRegistry() {}
|
||||
~ParameterizedTestCaseRegistry() {
|
||||
for (TestCaseInfoContainer::iterator it = test_case_infos_.begin();
|
||||
it != test_case_infos_.end(); ++it) {
|
||||
delete *it;
|
||||
ParameterizedTestSuiteRegistry() {}
|
||||
~ParameterizedTestSuiteRegistry() {
|
||||
for (auto& test_suite_info : test_suite_infos_) {
|
||||
delete test_suite_info;
|
||||
}
|
||||
}
|
||||
|
||||
// Looks up or creates and returns a structure containing information about
|
||||
// tests and instantiations of a particular test case.
|
||||
template <class TestCase>
|
||||
ParameterizedTestCaseInfo<TestCase>* GetTestCasePatternHolder(
|
||||
const char* test_case_name,
|
||||
CodeLocation code_location) {
|
||||
ParameterizedTestCaseInfo<TestCase>* typed_test_info = NULL;
|
||||
for (TestCaseInfoContainer::iterator it = test_case_infos_.begin();
|
||||
it != test_case_infos_.end(); ++it) {
|
||||
if ((*it)->GetTestCaseName() == test_case_name) {
|
||||
if ((*it)->GetTestCaseTypeId() != GetTypeId<TestCase>()) {
|
||||
// tests and instantiations of a particular test suite.
|
||||
template <class TestSuite>
|
||||
ParameterizedTestSuiteInfo<TestSuite>* GetTestSuitePatternHolder(
|
||||
const char* test_suite_name, CodeLocation code_location) {
|
||||
ParameterizedTestSuiteInfo<TestSuite>* typed_test_info = nullptr;
|
||||
for (auto& test_suite_info : test_suite_infos_) {
|
||||
if (test_suite_info->GetTestSuiteName() == test_suite_name) {
|
||||
if (test_suite_info->GetTestSuiteTypeId() != GetTypeId<TestSuite>()) {
|
||||
// Complain about incorrect usage of Google Test facilities
|
||||
// and terminate the program since we cannot guaranty correct
|
||||
// test case setup and tear-down in this case.
|
||||
ReportInvalidTestCaseType(test_case_name, code_location);
|
||||
// test suite setup and tear-down in this case.
|
||||
ReportInvalidTestSuiteType(test_suite_name, code_location);
|
||||
posix::Abort();
|
||||
} else {
|
||||
// At this point we are sure that the object we found is of the same
|
||||
// type we are looking for, so we downcast it to that type
|
||||
// without further checks.
|
||||
typed_test_info = CheckedDowncastToActualType<
|
||||
ParameterizedTestCaseInfo<TestCase> >(*it);
|
||||
ParameterizedTestSuiteInfo<TestSuite> >(test_suite_info);
|
||||
}
|
||||
break;
|
||||
}
|
||||
}
|
||||
if (typed_test_info == NULL) {
|
||||
typed_test_info = new ParameterizedTestCaseInfo<TestCase>(
|
||||
test_case_name, code_location);
|
||||
test_case_infos_.push_back(typed_test_info);
|
||||
if (typed_test_info == nullptr) {
|
||||
typed_test_info = new ParameterizedTestSuiteInfo<TestSuite>(
|
||||
test_suite_name, code_location);
|
||||
test_suite_infos_.push_back(typed_test_info);
|
||||
}
|
||||
return typed_test_info;
|
||||
}
|
||||
void RegisterTests() {
|
||||
for (TestCaseInfoContainer::iterator it = test_case_infos_.begin();
|
||||
it != test_case_infos_.end(); ++it) {
|
||||
(*it)->RegisterTests();
|
||||
for (auto& test_suite_info : test_suite_infos_) {
|
||||
test_suite_info->RegisterTests();
|
||||
}
|
||||
}
|
||||
// Legacy API is deprecated but still available
|
||||
#ifndef GTEST_REMOVE_LEGACY_TEST_CASEAPI_
|
||||
template <class TestCase>
|
||||
ParameterizedTestCaseInfo<TestCase>* GetTestCasePatternHolder(
|
||||
const char* test_case_name, CodeLocation code_location) {
|
||||
return GetTestSuitePatternHolder<TestCase>(test_case_name, code_location);
|
||||
}
|
||||
|
||||
#endif // GTEST_REMOVE_LEGACY_TEST_CASEAPI_
|
||||
|
||||
private:
|
||||
using TestSuiteInfoContainer = ::std::vector<ParameterizedTestSuiteInfoBase*>;
|
||||
|
||||
TestSuiteInfoContainer test_suite_infos_;
|
||||
|
||||
GTEST_DISALLOW_COPY_AND_ASSIGN_(ParameterizedTestSuiteRegistry);
|
||||
};
|
||||
|
||||
} // namespace internal
|
||||
|
||||
// Forward declarations of ValuesIn(), which is implemented in
|
||||
// include/gtest/gtest-param-test.h.
|
||||
template <class Container>
|
||||
internal::ParamGenerator<typename Container::value_type> ValuesIn(
|
||||
const Container& container);
|
||||
|
||||
namespace internal {
|
||||
// Used in the Values() function to provide polymorphic capabilities.
|
||||
|
||||
template <typename... Ts>
|
||||
class ValueArray {
|
||||
public:
|
||||
ValueArray(Ts... v) : v_{std::move(v)...} {}
|
||||
|
||||
template <typename T>
|
||||
operator ParamGenerator<T>() const { // NOLINT
|
||||
return ValuesIn(MakeVector<T>(MakeIndexSequence<sizeof...(Ts)>()));
|
||||
}
|
||||
|
||||
private:
|
||||
typedef ::std::vector<ParameterizedTestCaseInfoBase*> TestCaseInfoContainer;
|
||||
template <typename T, size_t... I>
|
||||
std::vector<T> MakeVector(IndexSequence<I...>) const {
|
||||
return std::vector<T>{static_cast<T>(v_.template Get<I>())...};
|
||||
}
|
||||
|
||||
TestCaseInfoContainer test_case_infos_;
|
||||
FlatTuple<Ts...> v_;
|
||||
};
|
||||
|
||||
GTEST_DISALLOW_COPY_AND_ASSIGN_(ParameterizedTestCaseRegistry);
|
||||
template <typename... T>
|
||||
class CartesianProductGenerator
|
||||
: public ParamGeneratorInterface<::std::tuple<T...>> {
|
||||
public:
|
||||
typedef ::std::tuple<T...> ParamType;
|
||||
|
||||
CartesianProductGenerator(const std::tuple<ParamGenerator<T>...>& g)
|
||||
: generators_(g) {}
|
||||
~CartesianProductGenerator() override {}
|
||||
|
||||
ParamIteratorInterface<ParamType>* Begin() const override {
|
||||
return new Iterator(this, generators_, false);
|
||||
}
|
||||
ParamIteratorInterface<ParamType>* End() const override {
|
||||
return new Iterator(this, generators_, true);
|
||||
}
|
||||
|
||||
private:
|
||||
template <class I>
|
||||
class IteratorImpl;
|
||||
template <size_t... I>
|
||||
class IteratorImpl<IndexSequence<I...>>
|
||||
: public ParamIteratorInterface<ParamType> {
|
||||
public:
|
||||
IteratorImpl(const ParamGeneratorInterface<ParamType>* base,
|
||||
const std::tuple<ParamGenerator<T>...>& generators, bool is_end)
|
||||
: base_(base),
|
||||
begin_(std::get<I>(generators).begin()...),
|
||||
end_(std::get<I>(generators).end()...),
|
||||
current_(is_end ? end_ : begin_) {
|
||||
ComputeCurrentValue();
|
||||
}
|
||||
~IteratorImpl() override {}
|
||||
|
||||
const ParamGeneratorInterface<ParamType>* BaseGenerator() const override {
|
||||
return base_;
|
||||
}
|
||||
// Advance should not be called on beyond-of-range iterators
|
||||
// so no component iterators must be beyond end of range, either.
|
||||
void Advance() override {
|
||||
assert(!AtEnd());
|
||||
// Advance the last iterator.
|
||||
++std::get<sizeof...(T) - 1>(current_);
|
||||
// if that reaches end, propagate that up.
|
||||
AdvanceIfEnd<sizeof...(T) - 1>();
|
||||
ComputeCurrentValue();
|
||||
}
|
||||
ParamIteratorInterface<ParamType>* Clone() const override {
|
||||
return new IteratorImpl(*this);
|
||||
}
|
||||
|
||||
const ParamType* Current() const override { return current_value_.get(); }
|
||||
|
||||
bool Equals(const ParamIteratorInterface<ParamType>& other) const override {
|
||||
// Having the same base generator guarantees that the other
|
||||
// iterator is of the same type and we can downcast.
|
||||
GTEST_CHECK_(BaseGenerator() == other.BaseGenerator())
|
||||
<< "The program attempted to compare iterators "
|
||||
<< "from different generators." << std::endl;
|
||||
const IteratorImpl* typed_other =
|
||||
CheckedDowncastToActualType<const IteratorImpl>(&other);
|
||||
|
||||
// We must report iterators equal if they both point beyond their
|
||||
// respective ranges. That can happen in a variety of fashions,
|
||||
// so we have to consult AtEnd().
|
||||
if (AtEnd() && typed_other->AtEnd()) return true;
|
||||
|
||||
bool same = true;
|
||||
bool dummy[] = {
|
||||
(same = same && std::get<I>(current_) ==
|
||||
std::get<I>(typed_other->current_))...};
|
||||
(void)dummy;
|
||||
return same;
|
||||
}
|
||||
|
||||
private:
|
||||
template <size_t ThisI>
|
||||
void AdvanceIfEnd() {
|
||||
if (std::get<ThisI>(current_) != std::get<ThisI>(end_)) return;
|
||||
|
||||
bool last = ThisI == 0;
|
||||
if (last) {
|
||||
// We are done. Nothing else to propagate.
|
||||
return;
|
||||
}
|
||||
|
||||
constexpr size_t NextI = ThisI - (ThisI != 0);
|
||||
std::get<ThisI>(current_) = std::get<ThisI>(begin_);
|
||||
++std::get<NextI>(current_);
|
||||
AdvanceIfEnd<NextI>();
|
||||
}
|
||||
|
||||
void ComputeCurrentValue() {
|
||||
if (!AtEnd())
|
||||
current_value_ = std::make_shared<ParamType>(*std::get<I>(current_)...);
|
||||
}
|
||||
bool AtEnd() const {
|
||||
bool at_end = false;
|
||||
bool dummy[] = {
|
||||
(at_end = at_end || std::get<I>(current_) == std::get<I>(end_))...};
|
||||
(void)dummy;
|
||||
return at_end;
|
||||
}
|
||||
|
||||
const ParamGeneratorInterface<ParamType>* const base_;
|
||||
std::tuple<typename ParamGenerator<T>::iterator...> begin_;
|
||||
std::tuple<typename ParamGenerator<T>::iterator...> end_;
|
||||
std::tuple<typename ParamGenerator<T>::iterator...> current_;
|
||||
std::shared_ptr<ParamType> current_value_;
|
||||
};
|
||||
|
||||
using Iterator = IteratorImpl<typename MakeIndexSequence<sizeof...(T)>::type>;
|
||||
|
||||
std::tuple<ParamGenerator<T>...> generators_;
|
||||
};
|
||||
|
||||
template <class... Gen>
|
||||
class CartesianProductHolder {
|
||||
public:
|
||||
CartesianProductHolder(const Gen&... g) : generators_(g...) {}
|
||||
template <typename... T>
|
||||
operator ParamGenerator<::std::tuple<T...>>() const {
|
||||
return ParamGenerator<::std::tuple<T...>>(
|
||||
new CartesianProductGenerator<T...>(generators_));
|
||||
}
|
||||
|
||||
private:
|
||||
std::tuple<Gen...> generators_;
|
||||
};
|
||||
|
||||
} // namespace internal
|
||||
|
||||
@@ -38,14 +38,13 @@
|
||||
// Determines the platform on which Google Test is compiled.
|
||||
#ifdef __CYGWIN__
|
||||
# define GTEST_OS_CYGWIN 1
|
||||
#elif defined __SYMBIAN32__
|
||||
# define GTEST_OS_SYMBIAN 1
|
||||
# elif defined(__MINGW__) || defined(__MINGW32__) || defined(__MINGW64__)
|
||||
# define GTEST_OS_WINDOWS_MINGW 1
|
||||
# define GTEST_OS_WINDOWS 1
|
||||
#elif defined _WIN32
|
||||
# define GTEST_OS_WINDOWS 1
|
||||
# ifdef _WIN32_WCE
|
||||
# define GTEST_OS_WINDOWS_MOBILE 1
|
||||
# elif defined(__MINGW__) || defined(__MINGW32__)
|
||||
# define GTEST_OS_WINDOWS_MINGW 1
|
||||
# elif defined(WINAPI_FAMILY)
|
||||
# include <winapifamily.h>
|
||||
# if WINAPI_FAMILY_PARTITION(WINAPI_PARTITION_DESKTOP)
|
||||
@@ -65,15 +64,21 @@
|
||||
# else
|
||||
# define GTEST_OS_WINDOWS_DESKTOP 1
|
||||
# endif // _WIN32_WCE
|
||||
#elif defined __OS2__
|
||||
# define GTEST_OS_OS2 1
|
||||
#elif defined __APPLE__
|
||||
# define GTEST_OS_MAC 1
|
||||
# if TARGET_OS_IPHONE
|
||||
# define GTEST_OS_IOS 1
|
||||
# endif
|
||||
#elif defined __DragonFly__
|
||||
# define GTEST_OS_DRAGONFLY 1
|
||||
#elif defined __FreeBSD__
|
||||
# define GTEST_OS_FREEBSD 1
|
||||
#elif defined __Fuchsia__
|
||||
# define GTEST_OS_FUCHSIA 1
|
||||
#elif defined(__GLIBC__) && defined(__FreeBSD_kernel__)
|
||||
# define GTEST_OS_GNU_KFREEBSD 1
|
||||
#elif defined __linux__
|
||||
# define GTEST_OS_LINUX 1
|
||||
# if defined __ANDROID__
|
||||
@@ -95,6 +100,8 @@
|
||||
# define GTEST_OS_OPENBSD 1
|
||||
#elif defined __QNX__
|
||||
# define GTEST_OS_QNX 1
|
||||
#elif defined(__HAIKU__)
|
||||
#define GTEST_OS_HAIKU 1
|
||||
#endif // __CYGWIN__
|
||||
|
||||
#endif // GTEST_INCLUDE_GTEST_INTERNAL_GTEST_PORT_ARCH_H_
|
||||
|
||||
File diff suppressed because it is too large
Load Diff
@@ -94,7 +94,8 @@ class GTEST_API_ String {
|
||||
static const char* Utf16ToAnsi(LPCWSTR utf16_str);
|
||||
#endif
|
||||
|
||||
// Compares two C strings. Returns true iff they have the same content.
|
||||
// Compares two C strings. Returns true if and only if they have the same
|
||||
// content.
|
||||
//
|
||||
// Unlike strcmp(), this function can handle NULL argument(s). A
|
||||
// NULL C string is considered different to any non-NULL C string,
|
||||
@@ -107,16 +108,16 @@ class GTEST_API_ String {
|
||||
// returned.
|
||||
static std::string ShowWideCString(const wchar_t* wide_c_str);
|
||||
|
||||
// Compares two wide C strings. Returns true iff they have the same
|
||||
// content.
|
||||
// Compares two wide C strings. Returns true if and only if they have the
|
||||
// same content.
|
||||
//
|
||||
// Unlike wcscmp(), this function can handle NULL argument(s). A
|
||||
// NULL C string is considered different to any non-NULL C string,
|
||||
// including the empty string.
|
||||
static bool WideCStringEquals(const wchar_t* lhs, const wchar_t* rhs);
|
||||
|
||||
// Compares two C strings, ignoring case. Returns true iff they
|
||||
// have the same content.
|
||||
// Compares two C strings, ignoring case. Returns true if and only if
|
||||
// they have the same content.
|
||||
//
|
||||
// Unlike strcasecmp(), this function can handle NULL argument(s).
|
||||
// A NULL C string is considered different to any non-NULL C string,
|
||||
@@ -124,8 +125,8 @@ class GTEST_API_ String {
|
||||
static bool CaseInsensitiveCStringEquals(const char* lhs,
|
||||
const char* rhs);
|
||||
|
||||
// Compares two wide C strings, ignoring case. Returns true iff they
|
||||
// have the same content.
|
||||
// Compares two wide C strings, ignoring case. Returns true if and only if
|
||||
// they have the same content.
|
||||
//
|
||||
// Unlike wcscasecmp(), this function can handle NULL argument(s).
|
||||
// A NULL C string is considered different to any non-NULL wide C string,
|
||||
@@ -139,8 +140,8 @@ class GTEST_API_ String {
|
||||
static bool CaseInsensitiveWideCStringEquals(const wchar_t* lhs,
|
||||
const wchar_t* rhs);
|
||||
|
||||
// Returns true iff the given string ends with the given suffix, ignoring
|
||||
// case. Any string is considered to end with an empty suffix.
|
||||
// Returns true if and only if the given string ends with the given suffix,
|
||||
// ignoring case. Any string is considered to end with an empty suffix.
|
||||
static bool EndsWithCaseInsensitive(
|
||||
const std::string& str, const std::string& suffix);
|
||||
|
||||
@@ -150,6 +151,9 @@ class GTEST_API_ String {
|
||||
// Formats an int value as "%X".
|
||||
static std::string FormatHexInt(int value);
|
||||
|
||||
// Formats an int value as "%X".
|
||||
static std::string FormatHexUInt32(UInt32 value);
|
||||
|
||||
// Formats a byte as "%02X".
|
||||
static std::string FormatByte(unsigned char value);
|
||||
|
||||
|
||||
File diff suppressed because it is too large
Load Diff
@@ -1,348 +0,0 @@
|
||||
$$ -*- mode: c++; -*-
|
||||
$var n = 10 $$ Maximum number of tuple fields we want to support.
|
||||
$$ This meta comment fixes auto-indentation in Emacs. }}
|
||||
// Copyright 2009 Google Inc.
|
||||
// All Rights Reserved.
|
||||
//
|
||||
// Redistribution and use in source and binary forms, with or without
|
||||
// modification, are permitted provided that the following conditions are
|
||||
// met:
|
||||
//
|
||||
// * Redistributions of source code must retain the above copyright
|
||||
// notice, this list of conditions and the following disclaimer.
|
||||
// * Redistributions in binary form must reproduce the above
|
||||
// copyright notice, this list of conditions and the following disclaimer
|
||||
// in the documentation and/or other materials provided with the
|
||||
// distribution.
|
||||
// * Neither the name of Google Inc. nor the names of its
|
||||
// contributors may be used to endorse or promote products derived from
|
||||
// this software without specific prior written permission.
|
||||
//
|
||||
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
|
||||
// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
|
||||
// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
|
||||
// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
|
||||
// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
|
||||
// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
|
||||
// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
|
||||
// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
|
||||
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
|
||||
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
|
||||
// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
|
||||
|
||||
|
||||
// Implements a subset of TR1 tuple needed by Google Test and Google Mock.
|
||||
|
||||
// GOOGLETEST_CM0001 DO NOT DELETE
|
||||
|
||||
#ifndef GTEST_INCLUDE_GTEST_INTERNAL_GTEST_TUPLE_H_
|
||||
#define GTEST_INCLUDE_GTEST_INTERNAL_GTEST_TUPLE_H_
|
||||
|
||||
#include <utility> // For ::std::pair.
|
||||
|
||||
// The compiler used in Symbian has a bug that prevents us from declaring the
|
||||
// tuple template as a friend (it complains that tuple is redefined). This
|
||||
// bypasses the bug by declaring the members that should otherwise be
|
||||
// private as public.
|
||||
// Sun Studio versions < 12 also have the above bug.
|
||||
#if defined(__SYMBIAN32__) || (defined(__SUNPRO_CC) && __SUNPRO_CC < 0x590)
|
||||
# define GTEST_DECLARE_TUPLE_AS_FRIEND_ public:
|
||||
#else
|
||||
# define GTEST_DECLARE_TUPLE_AS_FRIEND_ \
|
||||
template <GTEST_$(n)_TYPENAMES_(U)> friend class tuple; \
|
||||
private:
|
||||
#endif
|
||||
|
||||
// Visual Studio 2010, 2012, and 2013 define symbols in std::tr1 that conflict
|
||||
// with our own definitions. Therefore using our own tuple does not work on
|
||||
// those compilers.
|
||||
#if defined(_MSC_VER) && _MSC_VER >= 1600 /* 1600 is Visual Studio 2010 */
|
||||
# error "gtest's tuple doesn't compile on Visual Studio 2010 or later. \
|
||||
GTEST_USE_OWN_TR1_TUPLE must be set to 0 on those compilers."
|
||||
#endif
|
||||
|
||||
|
||||
$range i 0..n-1
|
||||
$range j 0..n
|
||||
$range k 1..n
|
||||
// GTEST_n_TUPLE_(T) is the type of an n-tuple.
|
||||
#define GTEST_0_TUPLE_(T) tuple<>
|
||||
|
||||
$for k [[
|
||||
$range m 0..k-1
|
||||
$range m2 k..n-1
|
||||
#define GTEST_$(k)_TUPLE_(T) tuple<$for m, [[T##$m]]$for m2 [[, void]]>
|
||||
|
||||
]]
|
||||
|
||||
// GTEST_n_TYPENAMES_(T) declares a list of n typenames.
|
||||
|
||||
$for j [[
|
||||
$range m 0..j-1
|
||||
#define GTEST_$(j)_TYPENAMES_(T) $for m, [[typename T##$m]]
|
||||
|
||||
|
||||
]]
|
||||
|
||||
// In theory, defining stuff in the ::std namespace is undefined
|
||||
// behavior. We can do this as we are playing the role of a standard
|
||||
// library vendor.
|
||||
namespace std {
|
||||
namespace tr1 {
|
||||
|
||||
template <$for i, [[typename T$i = void]]>
|
||||
class tuple;
|
||||
|
||||
// Anything in namespace gtest_internal is Google Test's INTERNAL
|
||||
// IMPLEMENTATION DETAIL and MUST NOT BE USED DIRECTLY in user code.
|
||||
namespace gtest_internal {
|
||||
|
||||
// ByRef<T>::type is T if T is a reference; otherwise it's const T&.
|
||||
template <typename T>
|
||||
struct ByRef { typedef const T& type; }; // NOLINT
|
||||
template <typename T>
|
||||
struct ByRef<T&> { typedef T& type; }; // NOLINT
|
||||
|
||||
// A handy wrapper for ByRef.
|
||||
#define GTEST_BY_REF_(T) typename ::std::tr1::gtest_internal::ByRef<T>::type
|
||||
|
||||
// AddRef<T>::type is T if T is a reference; otherwise it's T&. This
|
||||
// is the same as tr1::add_reference<T>::type.
|
||||
template <typename T>
|
||||
struct AddRef { typedef T& type; }; // NOLINT
|
||||
template <typename T>
|
||||
struct AddRef<T&> { typedef T& type; }; // NOLINT
|
||||
|
||||
// A handy wrapper for AddRef.
|
||||
#define GTEST_ADD_REF_(T) typename ::std::tr1::gtest_internal::AddRef<T>::type
|
||||
|
||||
// A helper for implementing get<k>().
|
||||
template <int k> class Get;
|
||||
|
||||
// A helper for implementing tuple_element<k, T>. kIndexValid is true
|
||||
// iff k < the number of fields in tuple type T.
|
||||
template <bool kIndexValid, int kIndex, class Tuple>
|
||||
struct TupleElement;
|
||||
|
||||
|
||||
$for i [[
|
||||
template <GTEST_$(n)_TYPENAMES_(T)>
|
||||
struct TupleElement<true, $i, GTEST_$(n)_TUPLE_(T) > {
|
||||
typedef T$i type;
|
||||
};
|
||||
|
||||
|
||||
]]
|
||||
} // namespace gtest_internal
|
||||
|
||||
template <>
|
||||
class tuple<> {
|
||||
public:
|
||||
tuple() {}
|
||||
tuple(const tuple& /* t */) {}
|
||||
tuple& operator=(const tuple& /* t */) { return *this; }
|
||||
};
|
||||
|
||||
|
||||
$for k [[
|
||||
$range m 0..k-1
|
||||
template <GTEST_$(k)_TYPENAMES_(T)>
|
||||
class $if k < n [[GTEST_$(k)_TUPLE_(T)]] $else [[tuple]] {
|
||||
public:
|
||||
template <int k> friend class gtest_internal::Get;
|
||||
|
||||
tuple() : $for m, [[f$(m)_()]] {}
|
||||
|
||||
explicit tuple($for m, [[GTEST_BY_REF_(T$m) f$m]]) : [[]]
|
||||
$for m, [[f$(m)_(f$m)]] {}
|
||||
|
||||
tuple(const tuple& t) : $for m, [[f$(m)_(t.f$(m)_)]] {}
|
||||
|
||||
template <GTEST_$(k)_TYPENAMES_(U)>
|
||||
tuple(const GTEST_$(k)_TUPLE_(U)& t) : $for m, [[f$(m)_(t.f$(m)_)]] {}
|
||||
|
||||
$if k == 2 [[
|
||||
template <typename U0, typename U1>
|
||||
tuple(const ::std::pair<U0, U1>& p) : f0_(p.first), f1_(p.second) {}
|
||||
|
||||
]]
|
||||
|
||||
tuple& operator=(const tuple& t) { return CopyFrom(t); }
|
||||
|
||||
template <GTEST_$(k)_TYPENAMES_(U)>
|
||||
tuple& operator=(const GTEST_$(k)_TUPLE_(U)& t) {
|
||||
return CopyFrom(t);
|
||||
}
|
||||
|
||||
$if k == 2 [[
|
||||
template <typename U0, typename U1>
|
||||
tuple& operator=(const ::std::pair<U0, U1>& p) {
|
||||
f0_ = p.first;
|
||||
f1_ = p.second;
|
||||
return *this;
|
||||
}
|
||||
|
||||
]]
|
||||
|
||||
GTEST_DECLARE_TUPLE_AS_FRIEND_
|
||||
|
||||
template <GTEST_$(k)_TYPENAMES_(U)>
|
||||
tuple& CopyFrom(const GTEST_$(k)_TUPLE_(U)& t) {
|
||||
|
||||
$for m [[
|
||||
f$(m)_ = t.f$(m)_;
|
||||
|
||||
]]
|
||||
return *this;
|
||||
}
|
||||
|
||||
|
||||
$for m [[
|
||||
T$m f$(m)_;
|
||||
|
||||
]]
|
||||
};
|
||||
|
||||
|
||||
]]
|
||||
// 6.1.3.2 Tuple creation functions.
|
||||
|
||||
// Known limitations: we don't support passing an
|
||||
// std::tr1::reference_wrapper<T> to make_tuple(). And we don't
|
||||
// implement tie().
|
||||
|
||||
inline tuple<> make_tuple() { return tuple<>(); }
|
||||
|
||||
$for k [[
|
||||
$range m 0..k-1
|
||||
|
||||
template <GTEST_$(k)_TYPENAMES_(T)>
|
||||
inline GTEST_$(k)_TUPLE_(T) make_tuple($for m, [[const T$m& f$m]]) {
|
||||
return GTEST_$(k)_TUPLE_(T)($for m, [[f$m]]);
|
||||
}
|
||||
|
||||
]]
|
||||
|
||||
// 6.1.3.3 Tuple helper classes.
|
||||
|
||||
template <typename Tuple> struct tuple_size;
|
||||
|
||||
|
||||
$for j [[
|
||||
template <GTEST_$(j)_TYPENAMES_(T)>
|
||||
struct tuple_size<GTEST_$(j)_TUPLE_(T) > {
|
||||
static const int value = $j;
|
||||
};
|
||||
|
||||
|
||||
]]
|
||||
template <int k, class Tuple>
|
||||
struct tuple_element {
|
||||
typedef typename gtest_internal::TupleElement<
|
||||
k < (tuple_size<Tuple>::value), k, Tuple>::type type;
|
||||
};
|
||||
|
||||
#define GTEST_TUPLE_ELEMENT_(k, Tuple) typename tuple_element<k, Tuple >::type
|
||||
|
||||
// 6.1.3.4 Element access.
|
||||
|
||||
namespace gtest_internal {
|
||||
|
||||
|
||||
$for i [[
|
||||
template <>
|
||||
class Get<$i> {
|
||||
public:
|
||||
template <class Tuple>
|
||||
static GTEST_ADD_REF_(GTEST_TUPLE_ELEMENT_($i, Tuple))
|
||||
Field(Tuple& t) { return t.f$(i)_; } // NOLINT
|
||||
|
||||
template <class Tuple>
|
||||
static GTEST_BY_REF_(GTEST_TUPLE_ELEMENT_($i, Tuple))
|
||||
ConstField(const Tuple& t) { return t.f$(i)_; }
|
||||
};
|
||||
|
||||
|
||||
]]
|
||||
} // namespace gtest_internal
|
||||
|
||||
template <int k, GTEST_$(n)_TYPENAMES_(T)>
|
||||
GTEST_ADD_REF_(GTEST_TUPLE_ELEMENT_(k, GTEST_$(n)_TUPLE_(T)))
|
||||
get(GTEST_$(n)_TUPLE_(T)& t) {
|
||||
return gtest_internal::Get<k>::Field(t);
|
||||
}
|
||||
|
||||
template <int k, GTEST_$(n)_TYPENAMES_(T)>
|
||||
GTEST_BY_REF_(GTEST_TUPLE_ELEMENT_(k, GTEST_$(n)_TUPLE_(T)))
|
||||
get(const GTEST_$(n)_TUPLE_(T)& t) {
|
||||
return gtest_internal::Get<k>::ConstField(t);
|
||||
}
|
||||
|
||||
// 6.1.3.5 Relational operators
|
||||
|
||||
// We only implement == and !=, as we don't have a need for the rest yet.
|
||||
|
||||
namespace gtest_internal {
|
||||
|
||||
// SameSizeTuplePrefixComparator<k, k>::Eq(t1, t2) returns true if the
|
||||
// first k fields of t1 equals the first k fields of t2.
|
||||
// SameSizeTuplePrefixComparator(k1, k2) would be a compiler error if
|
||||
// k1 != k2.
|
||||
template <int kSize1, int kSize2>
|
||||
struct SameSizeTuplePrefixComparator;
|
||||
|
||||
template <>
|
||||
struct SameSizeTuplePrefixComparator<0, 0> {
|
||||
template <class Tuple1, class Tuple2>
|
||||
static bool Eq(const Tuple1& /* t1 */, const Tuple2& /* t2 */) {
|
||||
return true;
|
||||
}
|
||||
};
|
||||
|
||||
template <int k>
|
||||
struct SameSizeTuplePrefixComparator<k, k> {
|
||||
template <class Tuple1, class Tuple2>
|
||||
static bool Eq(const Tuple1& t1, const Tuple2& t2) {
|
||||
return SameSizeTuplePrefixComparator<k - 1, k - 1>::Eq(t1, t2) &&
|
||||
::std::tr1::get<k - 1>(t1) == ::std::tr1::get<k - 1>(t2);
|
||||
}
|
||||
};
|
||||
|
||||
} // namespace gtest_internal
|
||||
|
||||
template <GTEST_$(n)_TYPENAMES_(T), GTEST_$(n)_TYPENAMES_(U)>
|
||||
inline bool operator==(const GTEST_$(n)_TUPLE_(T)& t,
|
||||
const GTEST_$(n)_TUPLE_(U)& u) {
|
||||
return gtest_internal::SameSizeTuplePrefixComparator<
|
||||
tuple_size<GTEST_$(n)_TUPLE_(T) >::value,
|
||||
tuple_size<GTEST_$(n)_TUPLE_(U) >::value>::Eq(t, u);
|
||||
}
|
||||
|
||||
template <GTEST_$(n)_TYPENAMES_(T), GTEST_$(n)_TYPENAMES_(U)>
|
||||
inline bool operator!=(const GTEST_$(n)_TUPLE_(T)& t,
|
||||
const GTEST_$(n)_TUPLE_(U)& u) { return !(t == u); }
|
||||
|
||||
// 6.1.4 Pairs.
|
||||
// Unimplemented.
|
||||
|
||||
} // namespace tr1
|
||||
} // namespace std
|
||||
|
||||
|
||||
$for j [[
|
||||
#undef GTEST_$(j)_TUPLE_
|
||||
|
||||
]]
|
||||
|
||||
|
||||
$for j [[
|
||||
#undef GTEST_$(j)_TYPENAMES_
|
||||
|
||||
]]
|
||||
|
||||
#undef GTEST_DECLARE_TUPLE_AS_FRIEND_
|
||||
#undef GTEST_BY_REF_
|
||||
#undef GTEST_ADD_REF_
|
||||
#undef GTEST_TUPLE_ELEMENT_
|
||||
|
||||
#endif // GTEST_INCLUDE_GTEST_INTERNAL_GTEST_TUPLE_H_
|
||||
@@ -31,12 +31,11 @@
|
||||
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
|
||||
// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
|
||||
|
||||
|
||||
// Type utilities needed for implementing typed and type-parameterized
|
||||
// tests. This file is generated by a SCRIPT. DO NOT EDIT BY HAND!
|
||||
//
|
||||
// Currently we support at most 50 types in a list, and at most 50
|
||||
// type-parameterized tests in one type-parameterized test case.
|
||||
// type-parameterized tests in one type-parameterized test suite.
|
||||
// Please contact googletestframework@googlegroups.com if you need
|
||||
// more.
|
||||
|
||||
@@ -89,7 +88,7 @@ std::string GetTypeName() {
|
||||
# if GTEST_HAS_CXXABI_H_
|
||||
using abi::__cxa_demangle;
|
||||
# endif // GTEST_HAS_CXXABI_H_
|
||||
char* const readable_name = __cxa_demangle(name, 0, 0, &status);
|
||||
char* const readable_name = __cxa_demangle(name, nullptr, nullptr, &status);
|
||||
const std::string name_str(status == 0 ? readable_name : name);
|
||||
free(readable_name);
|
||||
return CanonicalizeForStdLibVersioning(name_str);
|
||||
@@ -106,18 +105,6 @@ std::string GetTypeName() {
|
||||
|
||||
#if GTEST_HAS_TYPED_TEST || GTEST_HAS_TYPED_TEST_P
|
||||
|
||||
// AssertyTypeEq<T1, T2>::type is defined iff T1 and T2 are the same
|
||||
// type. This can be used as a compile-time assertion to ensure that
|
||||
// two types are equal.
|
||||
|
||||
template <typename T1, typename T2>
|
||||
struct AssertTypeEq;
|
||||
|
||||
template <typename T>
|
||||
struct AssertTypeEq<T, T> {
|
||||
typedef bool type;
|
||||
};
|
||||
|
||||
// A unique type used as the default value for the arguments of class
|
||||
// template Types. This allows us to simulate variadic templates
|
||||
// (e.g. Types<int>, Type<int, double>, and etc), which C++ doesn't
|
||||
@@ -3312,8 +3299,8 @@ struct Templates<T1, T2, T3, T4, T5, T6, T7, T8, T9, T10, T11, T12, T13, T14,
|
||||
};
|
||||
|
||||
// The TypeList template makes it possible to use either a single type
|
||||
// or a Types<...> list in TYPED_TEST_CASE() and
|
||||
// INSTANTIATE_TYPED_TEST_CASE_P().
|
||||
// or a Types<...> list in TYPED_TEST_SUITE() and
|
||||
// INSTANTIATE_TYPED_TEST_SUITE_P().
|
||||
|
||||
template <typename T>
|
||||
struct TypeList {
|
||||
|
||||
@@ -34,7 +34,7 @@ $var n = 50 $$ Maximum length of type lists we want to support.
|
||||
// tests. This file is generated by a SCRIPT. DO NOT EDIT BY HAND!
|
||||
//
|
||||
// Currently we support at most $n types in a list, and at most $n
|
||||
// type-parameterized tests in one type-parameterized test case.
|
||||
// type-parameterized tests in one type-parameterized test suite.
|
||||
// Please contact googletestframework@googlegroups.com if you need
|
||||
// more.
|
||||
|
||||
@@ -87,7 +87,7 @@ std::string GetTypeName() {
|
||||
# if GTEST_HAS_CXXABI_H_
|
||||
using abi::__cxa_demangle;
|
||||
# endif // GTEST_HAS_CXXABI_H_
|
||||
char* const readable_name = __cxa_demangle(name, 0, 0, &status);
|
||||
char* const readable_name = __cxa_demangle(name, nullptr, nullptr, &status);
|
||||
const std::string name_str(status == 0 ? readable_name : name);
|
||||
free(readable_name);
|
||||
return CanonicalizeForStdLibVersioning(name_str);
|
||||
@@ -104,18 +104,6 @@ std::string GetTypeName() {
|
||||
|
||||
#if GTEST_HAS_TYPED_TEST || GTEST_HAS_TYPED_TEST_P
|
||||
|
||||
// AssertyTypeEq<T1, T2>::type is defined iff T1 and T2 are the same
|
||||
// type. This can be used as a compile-time assertion to ensure that
|
||||
// two types are equal.
|
||||
|
||||
template <typename T1, typename T2>
|
||||
struct AssertTypeEq;
|
||||
|
||||
template <typename T>
|
||||
struct AssertTypeEq<T, T> {
|
||||
typedef bool type;
|
||||
};
|
||||
|
||||
// A unique type used as the default value for the arguments of class
|
||||
// template Types. This allows us to simulate variadic templates
|
||||
// (e.g. Types<int>, Type<int, double>, and etc), which C++ doesn't
|
||||
@@ -291,8 +279,8 @@ struct Templates<$for j, [[T$j]]$for k[[, NoneT]]> {
|
||||
]]
|
||||
|
||||
// The TypeList template makes it possible to use either a single type
|
||||
// or a Types<...> list in TYPED_TEST_CASE() and
|
||||
// INSTANTIATE_TYPED_TEST_CASE_P().
|
||||
// or a Types<...> list in TYPED_TEST_SUITE() and
|
||||
// INSTANTIATE_TYPED_TEST_SUITE_P().
|
||||
|
||||
template <typename T>
|
||||
struct TypeList {
|
||||
|
||||
Reference in New Issue
Block a user