Fixes the "ambiguous overload" compiler error when a mock function takes an argument that supports streaming to basic_ostream<C, T>.
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@ -116,8 +116,19 @@ class TypeWithoutFormatter<T, true> {
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// to simplify the implementation, as much code in 'internal' needs to
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// use << in STL, which would conflict with our own << were it defined
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// in 'internal'.
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template <typename T>
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::std::ostream& operator<<(::std::ostream& os, const T& x) {
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//
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// Note that this operator<< takes a generic std::basic_ostream<Char,
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// CharTraits> type instead of the more restricted std::ostream. If
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// we define it to take an std::ostream instead, we'll get an
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// "ambiguous overloads" compiler error when trying to print a type
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// Foo that supports streaming to std::basic_ostream<Char,
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// CharTraits>, as the compiler cannot tell whether
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// operator<<(std::ostream&, const T&) or
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// operator<<(std::basic_stream<Char, CharTraits>, const Foo&) is more
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// specific.
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template <typename Char, typename CharTraits, typename T>
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::std::basic_ostream<Char, CharTraits>& operator<<(
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::std::basic_ostream<Char, CharTraits>& os, const T& x) {
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TypeWithoutFormatter<T, ::testing::internal::IsAProtocolMessage<T>::value>::
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PrintValue(x, &os);
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return os;
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@ -597,6 +597,64 @@ TEST(PrintWideStringTest, StringInStdNamespace) {
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}
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#endif // GTEST_HAS_STD_WSTRING
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// Tests printing types that support generic streaming (i.e. streaming
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// to std::basic_ostream<Char, CharTraits> for any valid Char and
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// CharTraits types).
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// Tests printing a non-template type that supports generic streaming.
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class AllowsGenericStreaming {};
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template <typename Char, typename CharTraits>
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std::basic_ostream<Char, CharTraits>& operator<<(
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std::basic_ostream<Char, CharTraits>& os,
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const AllowsGenericStreaming& a) {
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return os << "AllowsGenericStreaming";
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}
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TEST(PrintTypeWithGenericStreamingTest, NonTemplateType) {
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AllowsGenericStreaming a;
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EXPECT_EQ("AllowsGenericStreaming", Print(a));
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}
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// Tests printing a template type that supports generic streaming.
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template <typename T>
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class AllowsGenericStreamingTemplate {};
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template <typename Char, typename CharTraits, typename T>
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std::basic_ostream<Char, CharTraits>& operator<<(
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std::basic_ostream<Char, CharTraits>& os,
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const AllowsGenericStreamingTemplate<T>& a) {
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return os << "AllowsGenericStreamingTemplate";
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}
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TEST(PrintTypeWithGenericStreamingTest, TemplateType) {
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AllowsGenericStreamingTemplate<int> a;
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EXPECT_EQ("AllowsGenericStreamingTemplate", Print(a));
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}
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// Tests printing a type that supports generic streaming and can be
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// implicitly converted to another printable type.
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template <typename T>
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class AllowsGenericStreamingAndImplicitConversionTemplate {
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public:
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operator bool() const { return false; }
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};
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template <typename Char, typename CharTraits, typename T>
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std::basic_ostream<Char, CharTraits>& operator<<(
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std::basic_ostream<Char, CharTraits>& os,
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const AllowsGenericStreamingAndImplicitConversionTemplate<T>& a) {
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return os << "AllowsGenericStreamingAndImplicitConversionTemplate";
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}
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TEST(PrintTypeWithGenericStreamingTest, TypeImplicitlyConvertible) {
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AllowsGenericStreamingAndImplicitConversionTemplate<int> a;
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EXPECT_EQ("AllowsGenericStreamingAndImplicitConversionTemplate", Print(a));
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}
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// Tests printing STL containers.
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TEST(PrintStlContainerTest, EmptyDeque) {
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