mirror of
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ThirdParty: Update included gtest
This commit is contained in:
+385
-284
@@ -97,10 +97,11 @@
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// GOOGLETEST_CM0001 DO NOT DELETE
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#ifndef GTEST_INCLUDE_GTEST_GTEST_PRINTERS_H_
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#define GTEST_INCLUDE_GTEST_GTEST_PRINTERS_H_
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#ifndef GOOGLETEST_INCLUDE_GTEST_GTEST_PRINTERS_H_
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#define GOOGLETEST_INCLUDE_GTEST_GTEST_PRINTERS_H_
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#include <functional>
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#include <memory>
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#include <ostream> // NOLINT
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#include <sstream>
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#include <string>
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@@ -108,64 +109,124 @@
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#include <type_traits>
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#include <utility>
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#include <vector>
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#include "gtest/internal/gtest-internal.h"
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#include "gtest/internal/gtest-port.h"
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#if GTEST_HAS_ABSL
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#include "absl/strings/string_view.h"
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#include "absl/types/optional.h"
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#include "absl/types/variant.h"
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#endif // GTEST_HAS_ABSL
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namespace testing {
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// Definitions in the 'internal' and 'internal2' name spaces are
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// subject to change without notice. DO NOT USE THEM IN USER CODE!
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namespace internal2 {
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// Definitions in the internal* namespaces are subject to change without notice.
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// DO NOT USE THEM IN USER CODE!
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namespace internal {
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// Prints the given number of bytes in the given object to the given
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// ostream.
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GTEST_API_ void PrintBytesInObjectTo(const unsigned char* obj_bytes,
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size_t count,
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::std::ostream* os);
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template <typename T>
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void UniversalPrint(const T& value, ::std::ostream* os);
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// For selecting which printer to use when a given type has neither <<
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// nor PrintTo().
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enum TypeKind {
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kProtobuf, // a protobuf type
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kConvertibleToInteger, // a type implicitly convertible to BiggestInt
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// (e.g. a named or unnamed enum type)
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#if GTEST_HAS_ABSL
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kConvertibleToStringView, // a type implicitly convertible to
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// absl::string_view
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#endif
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kOtherType // anything else
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};
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// Used to print an STL-style container when the user doesn't define
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// a PrintTo() for it.
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struct ContainerPrinter {
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template <typename T,
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typename = typename std::enable_if<
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(sizeof(IsContainerTest<T>(0)) == sizeof(IsContainer)) &&
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!IsRecursiveContainer<T>::value>::type>
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static void PrintValue(const T& container, std::ostream* os) {
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const size_t kMaxCount = 32; // The maximum number of elements to print.
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*os << '{';
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size_t count = 0;
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for (auto&& elem : container) {
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if (count > 0) {
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*os << ',';
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if (count == kMaxCount) { // Enough has been printed.
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*os << " ...";
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break;
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}
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}
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*os << ' ';
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// We cannot call PrintTo(elem, os) here as PrintTo() doesn't
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// handle `elem` being a native array.
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internal::UniversalPrint(elem, os);
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++count;
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}
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// TypeWithoutFormatter<T, kTypeKind>::PrintValue(value, os) is called
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// by the universal printer to print a value of type T when neither
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// operator<< nor PrintTo() is defined for T, where kTypeKind is the
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// "kind" of T as defined by enum TypeKind.
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template <typename T, TypeKind kTypeKind>
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class TypeWithoutFormatter {
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public:
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// This default version is called when kTypeKind is kOtherType.
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static void PrintValue(const T& value, ::std::ostream* os) {
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PrintBytesInObjectTo(
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static_cast<const unsigned char*>(
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reinterpret_cast<const void*>(std::addressof(value))),
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sizeof(value), os);
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if (count > 0) {
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*os << ' ';
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}
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*os << '}';
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}
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};
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// We print a protobuf using its ShortDebugString() when the string
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// doesn't exceed this many characters; otherwise we print it using
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// DebugString() for better readability.
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const size_t kProtobufOneLinerMaxLength = 50;
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// Used to print a pointer that is neither a char pointer nor a member
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// pointer, when the user doesn't define PrintTo() for it. (A member
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// variable pointer or member function pointer doesn't really point to
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// a location in the address space. Their representation is
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// implementation-defined. Therefore they will be printed as raw
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// bytes.)
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struct FunctionPointerPrinter {
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template <typename T, typename = typename std::enable_if<
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std::is_function<T>::value>::type>
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static void PrintValue(T* p, ::std::ostream* os) {
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if (p == nullptr) {
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*os << "NULL";
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} else {
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// T is a function type, so '*os << p' doesn't do what we want
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// (it just prints p as bool). We want to print p as a const
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// void*.
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*os << reinterpret_cast<const void*>(p);
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}
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}
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};
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template <typename T>
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class TypeWithoutFormatter<T, kProtobuf> {
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public:
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struct PointerPrinter {
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template <typename T>
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static void PrintValue(T* p, ::std::ostream* os) {
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if (p == nullptr) {
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*os << "NULL";
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} else {
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// T is not a function type. We just call << to print p,
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// relying on ADL to pick up user-defined << for their pointer
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// types, if any.
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*os << p;
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}
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}
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};
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namespace internal_stream_operator_without_lexical_name_lookup {
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// The presence of an operator<< here will terminate lexical scope lookup
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// straight away (even though it cannot be a match because of its argument
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// types). Thus, the two operator<< calls in StreamPrinter will find only ADL
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// candidates.
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struct LookupBlocker {};
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void operator<<(LookupBlocker, LookupBlocker);
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struct StreamPrinter {
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template <typename T,
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// Don't accept member pointers here. We'd print them via implicit
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// conversion to bool, which isn't useful.
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typename = typename std::enable_if<
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!std::is_member_pointer<T>::value>::type,
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// Only accept types for which we can find a streaming operator via
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// ADL (possibly involving implicit conversions).
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typename = decltype(std::declval<std::ostream&>()
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<< std::declval<const T&>())>
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static void PrintValue(const T& value, ::std::ostream* os) {
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// Call streaming operator found by ADL, possibly with implicit conversions
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// of the arguments.
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*os << value;
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}
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};
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} // namespace internal_stream_operator_without_lexical_name_lookup
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struct ProtobufPrinter {
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// We print a protobuf using its ShortDebugString() when the string
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// doesn't exceed this many characters; otherwise we print it using
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// DebugString() for better readability.
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static const size_t kProtobufOneLinerMaxLength = 50;
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template <typename T,
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typename = typename std::enable_if<
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internal::HasDebugStringAndShortDebugString<T>::value>::type>
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static void PrintValue(const T& value, ::std::ostream* os) {
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std::string pretty_str = value.ShortDebugString();
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if (pretty_str.length() > kProtobufOneLinerMaxLength) {
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@@ -175,9 +236,7 @@ class TypeWithoutFormatter<T, kProtobuf> {
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}
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};
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template <typename T>
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class TypeWithoutFormatter<T, kConvertibleToInteger> {
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public:
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struct ConvertibleToIntegerPrinter {
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// Since T has no << operator or PrintTo() but can be implicitly
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// converted to BiggestInt, we print it as a BiggestInt.
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//
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@@ -185,113 +244,74 @@ class TypeWithoutFormatter<T, kConvertibleToInteger> {
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// case printing it as an integer is the desired behavior. In case
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// T is not an enum, printing it as an integer is the best we can do
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// given that it has no user-defined printer.
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static void PrintValue(const T& value, ::std::ostream* os) {
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const internal::BiggestInt kBigInt = value;
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*os << kBigInt;
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static void PrintValue(internal::BiggestInt value, ::std::ostream* os) {
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*os << value;
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}
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};
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#if GTEST_HAS_ABSL
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template <typename T>
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class TypeWithoutFormatter<T, kConvertibleToStringView> {
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public:
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// Since T has neither operator<< nor PrintTo() but can be implicitly
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// converted to absl::string_view, we print it as a absl::string_view.
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//
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// Note: the implementation is further below, as it depends on
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// internal::PrintTo symbol which is defined later in the file.
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static void PrintValue(const T& value, ::std::ostream* os);
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struct ConvertibleToStringViewPrinter {
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#if GTEST_INTERNAL_HAS_STRING_VIEW
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static void PrintValue(internal::StringView value, ::std::ostream* os) {
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internal::UniversalPrint(value, os);
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}
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#endif
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};
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#endif
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// Prints the given value to the given ostream. If the value is a
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// protocol message, its debug string is printed; if it's an enum or
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// of a type implicitly convertible to BiggestInt, it's printed as an
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// integer; otherwise the bytes in the value are printed. This is
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// what UniversalPrinter<T>::Print() does when it knows nothing about
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// type T and T has neither << operator nor PrintTo().
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//
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// A user can override this behavior for a class type Foo by defining
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// a << operator in the namespace where Foo is defined.
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//
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// We put this operator in namespace 'internal2' instead of 'internal'
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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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//
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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, (internal::IsAProtocolMessage<T>::value
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? kProtobuf
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: std::is_convertible<
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const T&, internal::BiggestInt>::value
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? kConvertibleToInteger
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:
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#if GTEST_HAS_ABSL
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std::is_convertible<
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const T&, absl::string_view>::value
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? kConvertibleToStringView
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:
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#endif
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kOtherType)>::PrintValue(x, &os);
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return os;
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}
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} // namespace internal2
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} // namespace testing
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// Prints the given number of bytes in the given object to the given
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// ostream.
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GTEST_API_ void PrintBytesInObjectTo(const unsigned char* obj_bytes,
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size_t count,
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::std::ostream* os);
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struct RawBytesPrinter {
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// SFINAE on `sizeof` to make sure we have a complete type.
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template <typename T, size_t = sizeof(T)>
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static void PrintValue(const T& value, ::std::ostream* os) {
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PrintBytesInObjectTo(
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static_cast<const unsigned char*>(
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// Load bearing cast to void* to support iOS
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reinterpret_cast<const void*>(std::addressof(value))),
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sizeof(value), os);
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}
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};
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// This namespace MUST NOT BE NESTED IN ::testing, or the name look-up
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// magic needed for implementing UniversalPrinter won't work.
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namespace testing_internal {
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struct FallbackPrinter {
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template <typename T>
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static void PrintValue(const T&, ::std::ostream* os) {
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*os << "(incomplete type)";
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}
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};
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// Used to print a value that is not an STL-style container when the
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// user doesn't define PrintTo() for it.
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// Try every printer in order and return the first one that works.
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template <typename T, typename E, typename Printer, typename... Printers>
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struct FindFirstPrinter : FindFirstPrinter<T, E, Printers...> {};
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template <typename T, typename Printer, typename... Printers>
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struct FindFirstPrinter<
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T, decltype(Printer::PrintValue(std::declval<const T&>(), nullptr)),
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Printer, Printers...> {
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using type = Printer;
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};
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// Select the best printer in the following order:
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// - Print containers (they have begin/end/etc).
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// - Print function pointers.
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// - Print object pointers.
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// - Use the stream operator, if available.
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// - Print protocol buffers.
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// - Print types convertible to BiggestInt.
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// - Print types convertible to StringView, if available.
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// - Fallback to printing the raw bytes of the object.
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template <typename T>
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void DefaultPrintNonContainerTo(const T& value, ::std::ostream* os) {
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// With the following statement, during unqualified name lookup,
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// testing::internal2::operator<< appears as if it was declared in
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// the nearest enclosing namespace that contains both
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// ::testing_internal and ::testing::internal2, i.e. the global
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// namespace. For more details, refer to the C++ Standard section
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// 7.3.4-1 [namespace.udir]. This allows us to fall back onto
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// testing::internal2::operator<< in case T doesn't come with a <<
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// operator.
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//
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// We cannot write 'using ::testing::internal2::operator<<;', which
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// gcc 3.3 fails to compile due to a compiler bug.
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using namespace ::testing::internal2; // NOLINT
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// Assuming T is defined in namespace foo, in the next statement,
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// the compiler will consider all of:
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//
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// 1. foo::operator<< (thanks to Koenig look-up),
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// 2. ::operator<< (as the current namespace is enclosed in ::),
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// 3. testing::internal2::operator<< (thanks to the using statement above).
|
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//
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// The operator<< whose type matches T best will be picked.
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//
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// We deliberately allow #2 to be a candidate, as sometimes it's
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// impossible to define #1 (e.g. when foo is ::std, defining
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// anything in it is undefined behavior unless you are a compiler
|
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// vendor.).
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*os << value;
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void PrintWithFallback(const T& value, ::std::ostream* os) {
|
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using Printer = typename FindFirstPrinter<
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T, void, ContainerPrinter, FunctionPointerPrinter, PointerPrinter,
|
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internal_stream_operator_without_lexical_name_lookup::StreamPrinter,
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ProtobufPrinter, ConvertibleToIntegerPrinter,
|
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ConvertibleToStringViewPrinter, RawBytesPrinter, FallbackPrinter>::type;
|
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Printer::PrintValue(value, os);
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}
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|
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} // namespace testing_internal
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namespace testing {
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namespace internal {
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// FormatForComparison<ToPrint, OtherOperand>::Format(value) formats a
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// value of type ToPrint that is an operand of a comparison assertion
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// (e.g. ASSERT_EQ). OtherOperand is the type of the other operand in
|
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@@ -340,6 +360,14 @@ GTEST_IMPL_FORMAT_C_STRING_AS_POINTER_(char);
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GTEST_IMPL_FORMAT_C_STRING_AS_POINTER_(const char);
|
||||
GTEST_IMPL_FORMAT_C_STRING_AS_POINTER_(wchar_t);
|
||||
GTEST_IMPL_FORMAT_C_STRING_AS_POINTER_(const wchar_t);
|
||||
#ifdef __cpp_char8_t
|
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GTEST_IMPL_FORMAT_C_STRING_AS_POINTER_(char8_t);
|
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GTEST_IMPL_FORMAT_C_STRING_AS_POINTER_(const char8_t);
|
||||
#endif
|
||||
GTEST_IMPL_FORMAT_C_STRING_AS_POINTER_(char16_t);
|
||||
GTEST_IMPL_FORMAT_C_STRING_AS_POINTER_(const char16_t);
|
||||
GTEST_IMPL_FORMAT_C_STRING_AS_POINTER_(char32_t);
|
||||
GTEST_IMPL_FORMAT_C_STRING_AS_POINTER_(const char32_t);
|
||||
|
||||
#undef GTEST_IMPL_FORMAT_C_STRING_AS_POINTER_
|
||||
|
||||
@@ -357,6 +385,14 @@ GTEST_IMPL_FORMAT_C_STRING_AS_POINTER_(const wchar_t);
|
||||
|
||||
GTEST_IMPL_FORMAT_C_STRING_AS_STRING_(char, ::std::string);
|
||||
GTEST_IMPL_FORMAT_C_STRING_AS_STRING_(const char, ::std::string);
|
||||
#ifdef __cpp_char8_t
|
||||
GTEST_IMPL_FORMAT_C_STRING_AS_STRING_(char8_t, ::std::u8string);
|
||||
GTEST_IMPL_FORMAT_C_STRING_AS_STRING_(const char8_t, ::std::u8string);
|
||||
#endif
|
||||
GTEST_IMPL_FORMAT_C_STRING_AS_STRING_(char16_t, ::std::u16string);
|
||||
GTEST_IMPL_FORMAT_C_STRING_AS_STRING_(const char16_t, ::std::u16string);
|
||||
GTEST_IMPL_FORMAT_C_STRING_AS_STRING_(char32_t, ::std::u32string);
|
||||
GTEST_IMPL_FORMAT_C_STRING_AS_STRING_(const char32_t, ::std::u32string);
|
||||
|
||||
#if GTEST_HAS_STD_WSTRING
|
||||
GTEST_IMPL_FORMAT_C_STRING_AS_STRING_(wchar_t, ::std::wstring);
|
||||
@@ -389,85 +425,6 @@ std::string FormatForComparisonFailureMessage(
|
||||
template <typename T>
|
||||
class UniversalPrinter;
|
||||
|
||||
template <typename T>
|
||||
void UniversalPrint(const T& value, ::std::ostream* os);
|
||||
|
||||
enum DefaultPrinterType {
|
||||
kPrintContainer,
|
||||
kPrintPointer,
|
||||
kPrintFunctionPointer,
|
||||
kPrintOther,
|
||||
};
|
||||
template <DefaultPrinterType type> struct WrapPrinterType {};
|
||||
|
||||
// Used to print an STL-style container when the user doesn't define
|
||||
// a PrintTo() for it.
|
||||
template <typename C>
|
||||
void DefaultPrintTo(WrapPrinterType<kPrintContainer> /* dummy */,
|
||||
const C& container, ::std::ostream* os) {
|
||||
const size_t kMaxCount = 32; // The maximum number of elements to print.
|
||||
*os << '{';
|
||||
size_t count = 0;
|
||||
for (typename C::const_iterator it = container.begin();
|
||||
it != container.end(); ++it, ++count) {
|
||||
if (count > 0) {
|
||||
*os << ',';
|
||||
if (count == kMaxCount) { // Enough has been printed.
|
||||
*os << " ...";
|
||||
break;
|
||||
}
|
||||
}
|
||||
*os << ' ';
|
||||
// We cannot call PrintTo(*it, os) here as PrintTo() doesn't
|
||||
// handle *it being a native array.
|
||||
internal::UniversalPrint(*it, os);
|
||||
}
|
||||
|
||||
if (count > 0) {
|
||||
*os << ' ';
|
||||
}
|
||||
*os << '}';
|
||||
}
|
||||
|
||||
// Used to print a pointer that is neither a char pointer nor a member
|
||||
// pointer, when the user doesn't define PrintTo() for it. (A member
|
||||
// variable pointer or member function pointer doesn't really point to
|
||||
// a location in the address space. Their representation is
|
||||
// implementation-defined. Therefore they will be printed as raw
|
||||
// bytes.)
|
||||
template <typename T>
|
||||
void DefaultPrintTo(WrapPrinterType<kPrintPointer> /* dummy */,
|
||||
T* p, ::std::ostream* os) {
|
||||
if (p == nullptr) {
|
||||
*os << "NULL";
|
||||
} else {
|
||||
// T is not a function type. We just call << to print p,
|
||||
// relying on ADL to pick up user-defined << for their pointer
|
||||
// types, if any.
|
||||
*os << p;
|
||||
}
|
||||
}
|
||||
template <typename T>
|
||||
void DefaultPrintTo(WrapPrinterType<kPrintFunctionPointer> /* dummy */,
|
||||
T* p, ::std::ostream* os) {
|
||||
if (p == nullptr) {
|
||||
*os << "NULL";
|
||||
} else {
|
||||
// T is a function type, so '*os << p' doesn't do what we want
|
||||
// (it just prints p as bool). We want to print p as a const
|
||||
// void*.
|
||||
*os << reinterpret_cast<const void*>(p);
|
||||
}
|
||||
}
|
||||
|
||||
// Used to print a non-container, non-pointer value when the user
|
||||
// doesn't define PrintTo() for it.
|
||||
template <typename T>
|
||||
void DefaultPrintTo(WrapPrinterType<kPrintOther> /* dummy */,
|
||||
const T& value, ::std::ostream* os) {
|
||||
::testing_internal::DefaultPrintNonContainerTo(value, os);
|
||||
}
|
||||
|
||||
// Prints the given value using the << operator if it has one;
|
||||
// otherwise prints the bytes in it. This is what
|
||||
// UniversalPrinter<T>::Print() does when PrintTo() is not specialized
|
||||
@@ -481,36 +438,7 @@ void DefaultPrintTo(WrapPrinterType<kPrintOther> /* dummy */,
|
||||
// wants).
|
||||
template <typename T>
|
||||
void PrintTo(const T& value, ::std::ostream* os) {
|
||||
// DefaultPrintTo() is overloaded. The type of its first argument
|
||||
// determines which version will be picked.
|
||||
//
|
||||
// Note that we check for container types here, prior to we check
|
||||
// for protocol message types in our operator<<. The rationale is:
|
||||
//
|
||||
// For protocol messages, we want to give people a chance to
|
||||
// override Google Mock's format by defining a PrintTo() or
|
||||
// operator<<. For STL containers, other formats can be
|
||||
// incompatible with Google Mock's format for the container
|
||||
// elements; therefore we check for container types here to ensure
|
||||
// that our format is used.
|
||||
//
|
||||
// Note that MSVC and clang-cl do allow an implicit conversion from
|
||||
// pointer-to-function to pointer-to-object, but clang-cl warns on it.
|
||||
// So don't use ImplicitlyConvertible if it can be helped since it will
|
||||
// cause this warning, and use a separate overload of DefaultPrintTo for
|
||||
// function pointers so that the `*os << p` in the object pointer overload
|
||||
// doesn't cause that warning either.
|
||||
DefaultPrintTo(
|
||||
WrapPrinterType <
|
||||
(sizeof(IsContainerTest<T>(0)) == sizeof(IsContainer)) &&
|
||||
!IsRecursiveContainer<T>::value
|
||||
? kPrintContainer
|
||||
: !std::is_pointer<T>::value
|
||||
? kPrintOther
|
||||
: std::is_function<typename std::remove_pointer<T>::type>::value
|
||||
? kPrintFunctionPointer
|
||||
: kPrintPointer > (),
|
||||
value, os);
|
||||
internal::PrintWithFallback(value, os);
|
||||
}
|
||||
|
||||
// The following list of PrintTo() overloads tells
|
||||
@@ -541,6 +469,16 @@ inline void PrintTo(bool x, ::std::ostream* os) {
|
||||
// is implemented as an unsigned type.
|
||||
GTEST_API_ void PrintTo(wchar_t wc, ::std::ostream* os);
|
||||
|
||||
GTEST_API_ void PrintTo(char32_t c, ::std::ostream* os);
|
||||
inline void PrintTo(char16_t c, ::std::ostream* os) {
|
||||
PrintTo(ImplicitCast_<char32_t>(c), os);
|
||||
}
|
||||
#ifdef __cpp_char8_t
|
||||
inline void PrintTo(char8_t c, ::std::ostream* os) {
|
||||
PrintTo(ImplicitCast_<char32_t>(c), os);
|
||||
}
|
||||
#endif
|
||||
|
||||
// Overloads for C strings.
|
||||
GTEST_API_ void PrintTo(const char* s, ::std::ostream* os);
|
||||
inline void PrintTo(char* s, ::std::ostream* os) {
|
||||
@@ -561,6 +499,23 @@ inline void PrintTo(const unsigned char* s, ::std::ostream* os) {
|
||||
inline void PrintTo(unsigned char* s, ::std::ostream* os) {
|
||||
PrintTo(ImplicitCast_<const void*>(s), os);
|
||||
}
|
||||
#ifdef __cpp_char8_t
|
||||
// Overloads for u8 strings.
|
||||
GTEST_API_ void PrintTo(const char8_t* s, ::std::ostream* os);
|
||||
inline void PrintTo(char8_t* s, ::std::ostream* os) {
|
||||
PrintTo(ImplicitCast_<const char8_t*>(s), os);
|
||||
}
|
||||
#endif
|
||||
// Overloads for u16 strings.
|
||||
GTEST_API_ void PrintTo(const char16_t* s, ::std::ostream* os);
|
||||
inline void PrintTo(char16_t* s, ::std::ostream* os) {
|
||||
PrintTo(ImplicitCast_<const char16_t*>(s), os);
|
||||
}
|
||||
// Overloads for u32 strings.
|
||||
GTEST_API_ void PrintTo(const char32_t* s, ::std::ostream* os);
|
||||
inline void PrintTo(char32_t* s, ::std::ostream* os) {
|
||||
PrintTo(ImplicitCast_<const char32_t*>(s), os);
|
||||
}
|
||||
|
||||
// MSVC can be configured to define wchar_t as a typedef of unsigned
|
||||
// short. It defines _NATIVE_WCHAR_T_DEFINED when wchar_t is a native
|
||||
@@ -595,6 +550,26 @@ inline void PrintTo(const ::std::string& s, ::std::ostream* os) {
|
||||
PrintStringTo(s, os);
|
||||
}
|
||||
|
||||
// Overloads for ::std::u8string
|
||||
#ifdef __cpp_char8_t
|
||||
GTEST_API_ void PrintU8StringTo(const ::std::u8string& s, ::std::ostream* os);
|
||||
inline void PrintTo(const ::std::u8string& s, ::std::ostream* os) {
|
||||
PrintU8StringTo(s, os);
|
||||
}
|
||||
#endif
|
||||
|
||||
// Overloads for ::std::u16string
|
||||
GTEST_API_ void PrintU16StringTo(const ::std::u16string& s, ::std::ostream* os);
|
||||
inline void PrintTo(const ::std::u16string& s, ::std::ostream* os) {
|
||||
PrintU16StringTo(s, os);
|
||||
}
|
||||
|
||||
// Overloads for ::std::u32string
|
||||
GTEST_API_ void PrintU32StringTo(const ::std::u32string& s, ::std::ostream* os);
|
||||
inline void PrintTo(const ::std::u32string& s, ::std::ostream* os) {
|
||||
PrintU32StringTo(s, os);
|
||||
}
|
||||
|
||||
// Overloads for ::std::wstring.
|
||||
#if GTEST_HAS_STD_WSTRING
|
||||
GTEST_API_ void PrintWideStringTo(const ::std::wstring&s, ::std::ostream* os);
|
||||
@@ -603,12 +578,12 @@ inline void PrintTo(const ::std::wstring& s, ::std::ostream* os) {
|
||||
}
|
||||
#endif // GTEST_HAS_STD_WSTRING
|
||||
|
||||
#if GTEST_HAS_ABSL
|
||||
// Overload for absl::string_view.
|
||||
inline void PrintTo(absl::string_view sp, ::std::ostream* os) {
|
||||
#if GTEST_INTERNAL_HAS_STRING_VIEW
|
||||
// Overload for internal::StringView.
|
||||
inline void PrintTo(internal::StringView sp, ::std::ostream* os) {
|
||||
PrintTo(::std::string(sp), os);
|
||||
}
|
||||
#endif // GTEST_HAS_ABSL
|
||||
#endif // GTEST_INTERNAL_HAS_STRING_VIEW
|
||||
|
||||
inline void PrintTo(std::nullptr_t, ::std::ostream* os) { *os << "(nullptr)"; }
|
||||
|
||||
@@ -617,6 +592,43 @@ void PrintTo(std::reference_wrapper<T> ref, ::std::ostream* os) {
|
||||
UniversalPrinter<T&>::Print(ref.get(), os);
|
||||
}
|
||||
|
||||
inline const void* VoidifyPointer(const void* p) { return p; }
|
||||
inline const void* VoidifyPointer(volatile const void* p) {
|
||||
return const_cast<const void*>(p);
|
||||
}
|
||||
|
||||
template <typename T, typename Ptr>
|
||||
void PrintSmartPointer(const Ptr& ptr, std::ostream* os, char) {
|
||||
if (ptr == nullptr) {
|
||||
*os << "(nullptr)";
|
||||
} else {
|
||||
// We can't print the value. Just print the pointer..
|
||||
*os << "(" << (VoidifyPointer)(ptr.get()) << ")";
|
||||
}
|
||||
}
|
||||
template <typename T, typename Ptr,
|
||||
typename = typename std::enable_if<!std::is_void<T>::value &&
|
||||
!std::is_array<T>::value>::type>
|
||||
void PrintSmartPointer(const Ptr& ptr, std::ostream* os, int) {
|
||||
if (ptr == nullptr) {
|
||||
*os << "(nullptr)";
|
||||
} else {
|
||||
*os << "(ptr = " << (VoidifyPointer)(ptr.get()) << ", value = ";
|
||||
UniversalPrinter<T>::Print(*ptr, os);
|
||||
*os << ")";
|
||||
}
|
||||
}
|
||||
|
||||
template <typename T, typename D>
|
||||
void PrintTo(const std::unique_ptr<T, D>& ptr, std::ostream* os) {
|
||||
(PrintSmartPointer<T>)(ptr, os, 0);
|
||||
}
|
||||
|
||||
template <typename T>
|
||||
void PrintTo(const std::shared_ptr<T>& ptr, std::ostream* os) {
|
||||
(PrintSmartPointer<T>)(ptr, os, 0);
|
||||
}
|
||||
|
||||
// Helper function for printing a tuple. T must be instantiated with
|
||||
// a tuple type.
|
||||
template <typename T>
|
||||
@@ -682,14 +694,46 @@ class UniversalPrinter {
|
||||
GTEST_DISABLE_MSC_WARNINGS_POP_()
|
||||
};
|
||||
|
||||
#if GTEST_HAS_ABSL
|
||||
// Remove any const-qualifiers before passing a type to UniversalPrinter.
|
||||
template <typename T>
|
||||
class UniversalPrinter<const T> : public UniversalPrinter<T> {};
|
||||
|
||||
// Printer for absl::optional
|
||||
#if GTEST_INTERNAL_HAS_ANY
|
||||
|
||||
// Printer for std::any / absl::any
|
||||
|
||||
template <>
|
||||
class UniversalPrinter<Any> {
|
||||
public:
|
||||
static void Print(const Any& value, ::std::ostream* os) {
|
||||
if (value.has_value()) {
|
||||
*os << "value of type " << GetTypeName(value);
|
||||
} else {
|
||||
*os << "no value";
|
||||
}
|
||||
}
|
||||
|
||||
private:
|
||||
static std::string GetTypeName(const Any& value) {
|
||||
#if GTEST_HAS_RTTI
|
||||
return internal::GetTypeName(value.type());
|
||||
#else
|
||||
static_cast<void>(value); // possibly unused
|
||||
return "<unknown_type>";
|
||||
#endif // GTEST_HAS_RTTI
|
||||
}
|
||||
};
|
||||
|
||||
#endif // GTEST_INTERNAL_HAS_ANY
|
||||
|
||||
#if GTEST_INTERNAL_HAS_OPTIONAL
|
||||
|
||||
// Printer for std::optional / absl::optional
|
||||
|
||||
template <typename T>
|
||||
class UniversalPrinter<::absl::optional<T>> {
|
||||
class UniversalPrinter<Optional<T>> {
|
||||
public:
|
||||
static void Print(const ::absl::optional<T>& value, ::std::ostream* os) {
|
||||
static void Print(const Optional<T>& value, ::std::ostream* os) {
|
||||
*os << '(';
|
||||
if (!value) {
|
||||
*os << "nullopt";
|
||||
@@ -700,14 +744,22 @@ class UniversalPrinter<::absl::optional<T>> {
|
||||
}
|
||||
};
|
||||
|
||||
// Printer for absl::variant
|
||||
#endif // GTEST_INTERNAL_HAS_OPTIONAL
|
||||
|
||||
#if GTEST_INTERNAL_HAS_VARIANT
|
||||
|
||||
// Printer for std::variant / absl::variant
|
||||
|
||||
template <typename... T>
|
||||
class UniversalPrinter<::absl::variant<T...>> {
|
||||
class UniversalPrinter<Variant<T...>> {
|
||||
public:
|
||||
static void Print(const ::absl::variant<T...>& value, ::std::ostream* os) {
|
||||
static void Print(const Variant<T...>& value, ::std::ostream* os) {
|
||||
*os << '(';
|
||||
absl::visit(Visitor{os}, value);
|
||||
#if GTEST_HAS_ABSL
|
||||
absl::visit(Visitor{os, value.index()}, value);
|
||||
#else
|
||||
std::visit(Visitor{os, value.index()}, value);
|
||||
#endif // GTEST_HAS_ABSL
|
||||
*os << ')';
|
||||
}
|
||||
|
||||
@@ -715,14 +767,16 @@ class UniversalPrinter<::absl::variant<T...>> {
|
||||
struct Visitor {
|
||||
template <typename U>
|
||||
void operator()(const U& u) const {
|
||||
*os << "'" << GetTypeName<U>() << "' with value ";
|
||||
*os << "'" << GetTypeName<U>() << "(index = " << index
|
||||
<< ")' with value ";
|
||||
UniversalPrint(u, os);
|
||||
}
|
||||
::std::ostream* os;
|
||||
std::size_t index;
|
||||
};
|
||||
};
|
||||
|
||||
#endif // GTEST_HAS_ABSL
|
||||
#endif // GTEST_INTERNAL_HAS_VARIANT
|
||||
|
||||
// UniversalPrintArray(begin, len, os) prints an array of 'len'
|
||||
// elements, starting at address 'begin'.
|
||||
@@ -751,6 +805,20 @@ void UniversalPrintArray(const T* begin, size_t len, ::std::ostream* os) {
|
||||
GTEST_API_ void UniversalPrintArray(
|
||||
const char* begin, size_t len, ::std::ostream* os);
|
||||
|
||||
#ifdef __cpp_char8_t
|
||||
// This overload prints a (const) char8_t array compactly.
|
||||
GTEST_API_ void UniversalPrintArray(const char8_t* begin, size_t len,
|
||||
::std::ostream* os);
|
||||
#endif
|
||||
|
||||
// This overload prints a (const) char16_t array compactly.
|
||||
GTEST_API_ void UniversalPrintArray(const char16_t* begin, size_t len,
|
||||
::std::ostream* os);
|
||||
|
||||
// This overload prints a (const) char32_t array compactly.
|
||||
GTEST_API_ void UniversalPrintArray(const char32_t* begin, size_t len,
|
||||
::std::ostream* os);
|
||||
|
||||
// This overload prints a (const) wchar_t array compactly.
|
||||
GTEST_API_ void UniversalPrintArray(
|
||||
const wchar_t* begin, size_t len, ::std::ostream* os);
|
||||
@@ -823,12 +891,55 @@ class UniversalTersePrinter<const char*> {
|
||||
}
|
||||
};
|
||||
template <>
|
||||
class UniversalTersePrinter<char*> {
|
||||
class UniversalTersePrinter<char*> : public UniversalTersePrinter<const char*> {
|
||||
};
|
||||
|
||||
#ifdef __cpp_char8_t
|
||||
template <>
|
||||
class UniversalTersePrinter<const char8_t*> {
|
||||
public:
|
||||
static void Print(char* str, ::std::ostream* os) {
|
||||
UniversalTersePrinter<const char*>::Print(str, os);
|
||||
static void Print(const char8_t* str, ::std::ostream* os) {
|
||||
if (str == nullptr) {
|
||||
*os << "NULL";
|
||||
} else {
|
||||
UniversalPrint(::std::u8string(str), os);
|
||||
}
|
||||
}
|
||||
};
|
||||
template <>
|
||||
class UniversalTersePrinter<char8_t*>
|
||||
: public UniversalTersePrinter<const char8_t*> {};
|
||||
#endif
|
||||
|
||||
template <>
|
||||
class UniversalTersePrinter<const char16_t*> {
|
||||
public:
|
||||
static void Print(const char16_t* str, ::std::ostream* os) {
|
||||
if (str == nullptr) {
|
||||
*os << "NULL";
|
||||
} else {
|
||||
UniversalPrint(::std::u16string(str), os);
|
||||
}
|
||||
}
|
||||
};
|
||||
template <>
|
||||
class UniversalTersePrinter<char16_t*>
|
||||
: public UniversalTersePrinter<const char16_t*> {};
|
||||
|
||||
template <>
|
||||
class UniversalTersePrinter<const char32_t*> {
|
||||
public:
|
||||
static void Print(const char32_t* str, ::std::ostream* os) {
|
||||
if (str == nullptr) {
|
||||
*os << "NULL";
|
||||
} else {
|
||||
UniversalPrint(::std::u32string(str), os);
|
||||
}
|
||||
}
|
||||
};
|
||||
template <>
|
||||
class UniversalTersePrinter<char32_t*>
|
||||
: public UniversalTersePrinter<const char32_t*> {};
|
||||
|
||||
#if GTEST_HAS_STD_WSTRING
|
||||
template <>
|
||||
@@ -901,16 +1012,6 @@ Strings UniversalTersePrintTupleFieldsToStrings(const Tuple& value) {
|
||||
|
||||
} // namespace internal
|
||||
|
||||
#if GTEST_HAS_ABSL
|
||||
namespace internal2 {
|
||||
template <typename T>
|
||||
void TypeWithoutFormatter<T, kConvertibleToStringView>::PrintValue(
|
||||
const T& value, ::std::ostream* os) {
|
||||
internal::PrintTo(absl::string_view(value), os);
|
||||
}
|
||||
} // namespace internal2
|
||||
#endif
|
||||
|
||||
template <typename T>
|
||||
::std::string PrintToString(const T& value) {
|
||||
::std::stringstream ss;
|
||||
@@ -925,4 +1026,4 @@ template <typename T>
|
||||
// declarations from this file.
|
||||
#include "gtest/internal/custom/gtest-printers.h"
|
||||
|
||||
#endif // GTEST_INCLUDE_GTEST_GTEST_PRINTERS_H_
|
||||
#endif // GOOGLETEST_INCLUDE_GTEST_GTEST_PRINTERS_H_
|
||||
|
||||
Reference in New Issue
Block a user