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synced 2024-11-19 11:14:41 +00:00
Remove signbit workaround
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7bebb3e128
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@ -278,10 +278,8 @@ struct dummy_int {
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};
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typedef std::numeric_limits<internal::dummy_int> fputil;
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// Dummy implementations of system functions such as signbit and ecvt called
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// if the latter are not available.
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inline dummy_int signbit(...) { return dummy_int(); }
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inline dummy_int _ecvt_s(...) { return dummy_int(); }
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// Dummy implementations of system functions called if the latter are not
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// available.
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inline dummy_int isinf(...) { return dummy_int(); }
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inline dummy_int _finite(...) { return dummy_int(); }
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inline dummy_int isnan(...) { return dummy_int(); }
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@ -321,7 +319,7 @@ namespace std {
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// Standard permits specialization of std::numeric_limits. This specialization
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// is used to resolve ambiguity between isinf and std::isinf in glibc:
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// https://gcc.gnu.org/bugzilla/show_bug.cgi?id=48891
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// and the same for isnan and signbit.
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// and the same for isnan.
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template <>
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class numeric_limits<fmt::internal::dummy_int> :
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public std::numeric_limits<int> {
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@ -345,19 +343,6 @@ class numeric_limits<fmt::internal::dummy_int> :
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return isnan(x) != 0;
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return _isnan(static_cast<double>(x)) != 0;
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}
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// Portable version of signbit.
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static bool isnegative(double x) {
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using namespace fmt::internal;
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if (const_check(sizeof(signbit(x)) != sizeof(fmt::internal::dummy_int)))
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return signbit(x) != 0;
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if (x < 0) return true;
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if (!isnotanumber(x)) return false;
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int dec = 0, sign = 0;
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char buffer[2]; // The buffer size must be >= 2 or _ecvt_s will fail.
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_ecvt_s(buffer, sizeof(buffer), x, 0, &dec, &sign);
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return sign != 0;
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}
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};
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} // namespace std
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@ -2862,9 +2847,9 @@ void basic_writer<Range>::write_double(T value, const format_specs &spec) {
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internal::handle_float_type_spec(handler.type, handler);
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char sign = 0;
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// Use isnegative instead of value < 0 because the latter is always
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// Use signbit instead of value < 0 because the latter is always
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// false for NaN.
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if (internal::fputil::isnegative(static_cast<double>(value))) {
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if (std::signbit(value)) {
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sign = '-';
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value = -value;
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} else if (spec.flag(SIGN_FLAG)) {
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@ -129,7 +129,7 @@ TEST(FormatTest, ArgConverter) {
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TEST(FormatTest, FormatNegativeNaN) {
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double nan = std::numeric_limits<double>::quiet_NaN();
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if (fmt::internal::fputil::isnegative(-nan))
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if (std::signbit(-nan))
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EXPECT_EQ("-nan", fmt::format("{}", -nan));
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else
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fmt::print("Warning: compiler doesn't handle negative NaN correctly");
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@ -138,7 +138,8 @@ TEST(FormatTest, FormatNegativeNaN) {
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TEST(FormatTest, StrError) {
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char *message = nullptr;
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char buffer[BUFFER_SIZE];
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EXPECT_ASSERT(fmt::safe_strerror(EDOM, message = nullptr, 0), "invalid buffer");
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EXPECT_ASSERT(fmt::safe_strerror(EDOM, message = nullptr, 0),
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"invalid buffer");
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EXPECT_ASSERT(fmt::safe_strerror(EDOM, message = buffer, 0),
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"invalid buffer");
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buffer[0] = 'x';
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@ -151,7 +152,7 @@ TEST(FormatTest, StrError) {
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#endif
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int result = fmt::safe_strerror(error_code, message = buffer, BUFFER_SIZE);
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EXPECT_EQ(0, result);
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EXPECT_EQ(result, 0);
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std::size_t message_size = std::strlen(message);
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EXPECT_GE(BUFFER_SIZE - 1u, message_size);
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EXPECT_EQ(get_system_error(error_code), message);
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