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ThirdParty: Update included gtest
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+144
-53
@@ -42,11 +42,16 @@
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// defines Foo.
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#include "gtest/gtest-printers.h"
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#include <stdio.h>
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#include <cctype>
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#include <cstdint>
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#include <cwchar>
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#include <ostream> // NOLINT
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#include <string>
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#include <type_traits>
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#include "gtest/internal/gtest-port.h"
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#include "src/gtest-internal-inl.h"
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@@ -102,9 +107,19 @@ void PrintBytesInObjectToImpl(const unsigned char* obj_bytes, size_t count,
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*os << ">";
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}
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// Helpers for widening a character to char32_t. Since the standard does not
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// specify if char / wchar_t is signed or unsigned, it is important to first
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// convert it to the unsigned type of the same width before widening it to
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// char32_t.
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template <typename CharType>
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char32_t ToChar32(CharType in) {
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return static_cast<char32_t>(
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static_cast<typename std::make_unsigned<CharType>::type>(in));
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}
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} // namespace
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namespace internal2 {
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namespace internal {
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// Delegates to PrintBytesInObjectToImpl() to print the bytes in the
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// given object. The delegation simplifies the implementation, which
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@@ -116,10 +131,6 @@ void PrintBytesInObjectTo(const unsigned char* obj_bytes, size_t count,
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PrintBytesInObjectToImpl(obj_bytes, count, os);
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}
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} // namespace internal2
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namespace internal {
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// Depending on the value of a char (or wchar_t), we print it in one
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// of three formats:
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// - as is if it's a printable ASCII (e.g. 'a', '2', ' '),
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@@ -134,18 +145,15 @@ enum CharFormat {
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// Returns true if c is a printable ASCII character. We test the
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// value of c directly instead of calling isprint(), which is buggy on
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// Windows Mobile.
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inline bool IsPrintableAscii(wchar_t c) {
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return 0x20 <= c && c <= 0x7E;
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}
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inline bool IsPrintableAscii(char32_t c) { return 0x20 <= c && c <= 0x7E; }
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// Prints a wide or narrow char c as a character literal without the
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// quotes, escaping it when necessary; returns how c was formatted.
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// The template argument UnsignedChar is the unsigned version of Char,
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// which is the type of c.
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template <typename UnsignedChar, typename Char>
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// Prints c (of type char, char8_t, char16_t, char32_t, or wchar_t) as a
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// character literal without the quotes, escaping it when necessary; returns how
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// c was formatted.
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template <typename Char>
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static CharFormat PrintAsCharLiteralTo(Char c, ostream* os) {
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wchar_t w_c = static_cast<wchar_t>(c);
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switch (w_c) {
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const char32_t u_c = ToChar32(c);
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switch (u_c) {
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case L'\0':
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*os << "\\0";
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break;
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@@ -177,13 +185,12 @@ static CharFormat PrintAsCharLiteralTo(Char c, ostream* os) {
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*os << "\\v";
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break;
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default:
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if (IsPrintableAscii(w_c)) {
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if (IsPrintableAscii(u_c)) {
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*os << static_cast<char>(c);
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return kAsIs;
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} else {
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ostream::fmtflags flags = os->flags();
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*os << "\\x" << std::hex << std::uppercase
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<< static_cast<int>(static_cast<UnsignedChar>(c));
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*os << "\\x" << std::hex << std::uppercase << static_cast<int>(u_c);
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os->flags(flags);
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return kHexEscape;
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}
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@@ -191,9 +198,9 @@ static CharFormat PrintAsCharLiteralTo(Char c, ostream* os) {
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return kSpecialEscape;
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}
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// Prints a wchar_t c as if it's part of a string literal, escaping it when
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// Prints a char32_t c as if it's part of a string literal, escaping it when
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// necessary; returns how c was formatted.
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static CharFormat PrintAsStringLiteralTo(wchar_t c, ostream* os) {
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static CharFormat PrintAsStringLiteralTo(char32_t c, ostream* os) {
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switch (c) {
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case L'\'':
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*os << "'";
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@@ -202,26 +209,68 @@ static CharFormat PrintAsStringLiteralTo(wchar_t c, ostream* os) {
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*os << "\\\"";
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return kSpecialEscape;
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default:
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return PrintAsCharLiteralTo<wchar_t>(c, os);
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return PrintAsCharLiteralTo(c, os);
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}
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}
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static const char* GetCharWidthPrefix(char) {
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return "";
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}
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static const char* GetCharWidthPrefix(signed char) {
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return "";
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}
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static const char* GetCharWidthPrefix(unsigned char) {
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return "";
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}
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#ifdef __cpp_char8_t
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static const char* GetCharWidthPrefix(char8_t) {
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return "u8";
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}
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#endif
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static const char* GetCharWidthPrefix(char16_t) {
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return "u";
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}
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static const char* GetCharWidthPrefix(char32_t) {
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return "U";
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}
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static const char* GetCharWidthPrefix(wchar_t) {
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return "L";
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}
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// Prints a char c as if it's part of a string literal, escaping it when
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// necessary; returns how c was formatted.
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static CharFormat PrintAsStringLiteralTo(char c, ostream* os) {
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return PrintAsStringLiteralTo(
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static_cast<wchar_t>(static_cast<unsigned char>(c)), os);
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return PrintAsStringLiteralTo(ToChar32(c), os);
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}
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// Prints a wide or narrow character c and its code. '\0' is printed
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// as "'\\0'", other unprintable characters are also properly escaped
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// using the standard C++ escape sequence. The template argument
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// UnsignedChar is the unsigned version of Char, which is the type of c.
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template <typename UnsignedChar, typename Char>
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#ifdef __cpp_char8_t
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static CharFormat PrintAsStringLiteralTo(char8_t c, ostream* os) {
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return PrintAsStringLiteralTo(ToChar32(c), os);
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}
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#endif
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static CharFormat PrintAsStringLiteralTo(char16_t c, ostream* os) {
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return PrintAsStringLiteralTo(ToChar32(c), os);
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}
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static CharFormat PrintAsStringLiteralTo(wchar_t c, ostream* os) {
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return PrintAsStringLiteralTo(ToChar32(c), os);
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}
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// Prints a character c (of type char, char8_t, char16_t, char32_t, or wchar_t)
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// and its code. '\0' is printed as "'\\0'", other unprintable characters are
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// also properly escaped using the standard C++ escape sequence.
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template <typename Char>
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void PrintCharAndCodeTo(Char c, ostream* os) {
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// First, print c as a literal in the most readable form we can find.
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*os << ((sizeof(c) > 1) ? "L'" : "'");
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const CharFormat format = PrintAsCharLiteralTo<UnsignedChar>(c, os);
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*os << GetCharWidthPrefix(c) << "'";
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const CharFormat format = PrintAsCharLiteralTo(c, os);
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*os << "'";
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// To aid user debugging, we also print c's code in decimal, unless
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@@ -242,21 +291,21 @@ void PrintCharAndCodeTo(Char c, ostream* os) {
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*os << ")";
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}
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void PrintTo(unsigned char c, ::std::ostream* os) {
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PrintCharAndCodeTo<unsigned char>(c, os);
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}
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void PrintTo(signed char c, ::std::ostream* os) {
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PrintCharAndCodeTo<unsigned char>(c, os);
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}
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void PrintTo(unsigned char c, ::std::ostream* os) { PrintCharAndCodeTo(c, os); }
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void PrintTo(signed char c, ::std::ostream* os) { PrintCharAndCodeTo(c, os); }
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// Prints a wchar_t as a symbol if it is printable or as its internal
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// code otherwise and also as its code. L'\0' is printed as "L'\\0'".
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void PrintTo(wchar_t wc, ostream* os) {
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PrintCharAndCodeTo<wchar_t>(wc, os);
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void PrintTo(wchar_t wc, ostream* os) { PrintCharAndCodeTo(wc, os); }
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// TODO(dcheng): Consider making this delegate to PrintCharAndCodeTo() as well.
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void PrintTo(char32_t c, ::std::ostream* os) {
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*os << std::hex << "U+" << std::uppercase << std::setfill('0') << std::setw(4)
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<< static_cast<uint32_t>(c);
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}
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// Prints the given array of characters to the ostream. CharType must be either
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// char or wchar_t.
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// char, char8_t, char16_t, char32_t, or wchar_t.
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// The array starts at begin, the length is len, it may include '\0' characters
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// and may not be NUL-terminated.
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template <typename CharType>
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@@ -266,8 +315,8 @@ GTEST_ATTRIBUTE_NO_SANITIZE_HWADDRESS_
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GTEST_ATTRIBUTE_NO_SANITIZE_THREAD_
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static CharFormat PrintCharsAsStringTo(
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const CharType* begin, size_t len, ostream* os) {
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const char* const kQuoteBegin = sizeof(CharType) == 1 ? "\"" : "L\"";
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*os << kQuoteBegin;
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const char* const quote_prefix = GetCharWidthPrefix(*begin);
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*os << quote_prefix << "\"";
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bool is_previous_hex = false;
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CharFormat print_format = kAsIs;
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for (size_t index = 0; index < len; ++index) {
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@@ -276,7 +325,7 @@ static CharFormat PrintCharsAsStringTo(
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// Previous character is of '\x..' form and this character can be
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// interpreted as another hexadecimal digit in its number. Break string to
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// disambiguate.
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*os << "\" " << kQuoteBegin;
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*os << "\" " << quote_prefix << "\"";
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}
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is_previous_hex = PrintAsStringLiteralTo(cur, os) == kHexEscape;
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// Remember if any characters required hex escaping.
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@@ -322,22 +371,57 @@ void UniversalPrintArray(const char* begin, size_t len, ostream* os) {
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UniversalPrintCharArray(begin, len, os);
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}
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#ifdef __cpp_char8_t
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// Prints a (const) char8_t array of 'len' elements, starting at address
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// 'begin'.
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void UniversalPrintArray(const char8_t* begin, size_t len, ostream* os) {
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UniversalPrintCharArray(begin, len, os);
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}
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#endif
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// Prints a (const) char16_t array of 'len' elements, starting at address
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// 'begin'.
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void UniversalPrintArray(const char16_t* begin, size_t len, ostream* os) {
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UniversalPrintCharArray(begin, len, os);
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}
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// Prints a (const) char32_t array of 'len' elements, starting at address
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// 'begin'.
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void UniversalPrintArray(const char32_t* begin, size_t len, ostream* os) {
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UniversalPrintCharArray(begin, len, os);
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}
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// Prints a (const) wchar_t array of 'len' elements, starting at address
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// 'begin'.
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void UniversalPrintArray(const wchar_t* begin, size_t len, ostream* os) {
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UniversalPrintCharArray(begin, len, os);
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}
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// Prints the given C string to the ostream.
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void PrintTo(const char* s, ostream* os) {
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namespace {
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// Prints a null-terminated C-style string to the ostream.
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template <typename Char>
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void PrintCStringTo(const Char* s, ostream* os) {
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if (s == nullptr) {
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*os << "NULL";
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} else {
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*os << ImplicitCast_<const void*>(s) << " pointing to ";
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PrintCharsAsStringTo(s, strlen(s), os);
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PrintCharsAsStringTo(s, std::char_traits<Char>::length(s), os);
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}
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}
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} // anonymous namespace
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void PrintTo(const char* s, ostream* os) { PrintCStringTo(s, os); }
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#ifdef __cpp_char8_t
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void PrintTo(const char8_t* s, ostream* os) { PrintCStringTo(s, os); }
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#endif
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void PrintTo(const char16_t* s, ostream* os) { PrintCStringTo(s, os); }
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void PrintTo(const char32_t* s, ostream* os) { PrintCStringTo(s, os); }
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// MSVC compiler can be configured to define whar_t as a typedef
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// of unsigned short. Defining an overload for const wchar_t* in that case
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// would cause pointers to unsigned shorts be printed as wide strings,
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@@ -346,14 +430,7 @@ void PrintTo(const char* s, ostream* os) {
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// wchar_t is implemented as a native type.
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#if !defined(_MSC_VER) || defined(_NATIVE_WCHAR_T_DEFINED)
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// Prints the given wide C string to the ostream.
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void PrintTo(const wchar_t* s, ostream* os) {
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if (s == nullptr) {
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*os << "NULL";
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} else {
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*os << ImplicitCast_<const void*>(s) << " pointing to ";
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PrintCharsAsStringTo(s, wcslen(s), os);
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}
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}
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void PrintTo(const wchar_t* s, ostream* os) { PrintCStringTo(s, os); }
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#endif // wchar_t is native
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namespace {
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@@ -431,6 +508,20 @@ void PrintStringTo(const ::std::string& s, ostream* os) {
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}
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}
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#ifdef __cpp_char8_t
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void PrintU8StringTo(const ::std::u8string& s, ostream* os) {
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PrintCharsAsStringTo(s.data(), s.size(), os);
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}
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#endif
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void PrintU16StringTo(const ::std::u16string& s, ostream* os) {
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PrintCharsAsStringTo(s.data(), s.size(), os);
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}
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void PrintU32StringTo(const ::std::u32string& s, ostream* os) {
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PrintCharsAsStringTo(s.data(), s.size(), os);
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}
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#if GTEST_HAS_STD_WSTRING
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void PrintWideStringTo(const ::std::wstring& s, ostream* os) {
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PrintCharsAsStringTo(s.data(), s.size(), os);
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