29#ifndef _GLIBCXX_FORMAT
30#define _GLIBCXX_FORMAT 1
33#pragma GCC system_header
38#define __glibcxx_want_format
39#define __glibcxx_want_format_ranges
40#define __glibcxx_want_format_uchar
41#define __glibcxx_want_constexpr_exceptions
44#ifdef __cpp_lib_format
66#if !__has_builtin(__builtin_toupper)
70#pragma GCC diagnostic push
71#pragma GCC diagnostic ignored "-Wpedantic"
72#pragma GCC diagnostic ignored "-Wc++23-extensions"
74namespace std _GLIBCXX_VISIBILITY(default)
76_GLIBCXX_BEGIN_NAMESPACE_VERSION
79 template<
typename _CharT,
typename... _Args>
struct basic_format_string;
89 template<
typename _CharT>
91 _Widen(
const char* __narrow,
const wchar_t* __wide)
93 if constexpr (is_same_v<_CharT, wchar_t>)
98#define _GLIBCXX_WIDEN_(C, S) ::std::__format::_Widen<C>(S, L##S)
99#define _GLIBCXX_WIDEN(S) _GLIBCXX_WIDEN_(_CharT, S)
102 template<
typename _CharT>
103 constexpr size_t __stackbuf_size = 32 *
sizeof(
void*) /
sizeof(_CharT);
106 template<
typename _CharT>
class _Sink;
107 template<
typename _CharT>
class _Fixedbuf_sink;
108 template<
typename _Out,
typename _CharT>
class _Padding_sink;
109 template<
typename _Out,
typename _CharT>
class _Escaping_sink;
112 template<
typename _CharT>
116 template<
typename _CharT>
120 template<
typename _CharT>
122 {
using type = _Drop_iter<_CharT>; };
124 template<
typename _CharT>
125 using __format_context = basic_format_context<_Sink_iter<_CharT>, _CharT>;
127 template<
typename _CharT>
128 struct _Dynamic_format_string
130 [[__gnu__::__always_inline__]]
131 _Dynamic_format_string(basic_string_view<_CharT> __s) noexcept
134 _Dynamic_format_string(
const _Dynamic_format_string&) =
delete;
135 void operator=(
const _Dynamic_format_string&) =
delete;
138 basic_string_view<_CharT> _M_str;
140 template<
typename,
typename...>
friend struct std::basic_format_string;
146 using format_context = __format::__format_context<char>;
147#ifdef _GLIBCXX_USE_WCHAR_T
148 using wformat_context = __format::__format_context<wchar_t>;
152 template<
typename _Context>
class basic_format_args;
153 using format_args = basic_format_args<format_context>;
154#ifdef _GLIBCXX_USE_WCHAR_T
155 using wformat_args = basic_format_args<wformat_context>;
160 template<
typename _Context>
161 class basic_format_arg;
167 template<
typename _CharT,
typename... _Args>
168 struct basic_format_string
170 template<
typename _Tp>
171 requires convertible_to<const _Tp&, basic_string_view<_CharT>>
173 basic_format_string(
const _Tp& __s);
175 [[__gnu__::__always_inline__]]
176 basic_format_string(__format::_Dynamic_format_string<_CharT> __s) noexcept
180 [[__gnu__::__always_inline__]]
181 constexpr basic_string_view<_CharT>
186 basic_string_view<_CharT> _M_str;
189 template<
typename... _Args>
190 using format_string = basic_format_string<char, type_identity_t<_Args>...>;
192#ifdef _GLIBCXX_USE_WCHAR_T
193 template<
typename... _Args>
195 = basic_format_string<wchar_t, type_identity_t<_Args>...>;
198#if __cpp_lib_format >= 202603L
199 [[__gnu__::__always_inline__]]
200 inline __format::_Dynamic_format_string<char>
201 dynamic_format(string_view __fmt)
noexcept
204#ifdef _GLIBCXX_USE_WCHAR_T
205 [[__gnu__::__always_inline__]]
206 inline __format::_Dynamic_format_string<wchar_t>
207 dynamic_format(wstring_view __fmt)
noexcept
215 template<
typename _Tp,
typename _CharT>
218 formatter() =
delete;
219 formatter(
const formatter&) =
delete;
220 formatter& operator=(
const formatter&) =
delete;
223#if __cpp_lib_constexpr_exceptions >= 202502L
224#define _GLIBCXX_CONSTEXPR_FORMAT_ERROR constexpr
226#define _GLIBCXX_CONSTEXPR_FORMAT_ERROR
233 _GLIBCXX_CONSTEXPR_FORMAT_ERROR
explicit format_error(
const string& __what)
234 : runtime_error(__what) { }
235 _GLIBCXX_CONSTEXPR_FORMAT_ERROR
explicit format_error(
const char* __what)
236 : runtime_error(__what) { }
242 __throw_format_error(
const char* __what)
243 { _GLIBCXX_THROW_OR_ABORT(format_error(__what)); }
245#undef _GLIBCXX_CONSTEXPR_FORMAT_ERROR
253 __unmatched_left_brace_in_format_string()
254 { __throw_format_error(
"format error: unmatched '{' in format string"); }
258 __unmatched_right_brace_in_format_string()
259 { __throw_format_error(
"format error: unmatched '}' in format string"); }
263 __conflicting_indexing_in_format_string()
264 { __throw_format_error(
"format error: conflicting indexing style in format string"); }
268 __invalid_arg_id_in_format_string()
269 { __throw_format_error(
"format error: invalid arg-id in format string"); }
273 __failed_to_parse_format_spec()
274 { __throw_format_error(
"format error: failed to parse format-spec"); }
276 template<
typename _CharT>
class _Scanner;
282 template<
typename _CharT>
class basic_format_parse_context;
283 using format_parse_context = basic_format_parse_context<char>;
284#ifdef _GLIBCXX_USE_WCHAR_T
285 using wformat_parse_context = basic_format_parse_context<wchar_t>;
288 template<
typename _CharT>
289 class basic_format_parse_context
292 using char_type = _CharT;
293 using const_iterator =
typename basic_string_view<_CharT>::const_iterator;
294 using iterator = const_iterator;
297 basic_format_parse_context(basic_string_view<_CharT> __fmt) noexcept
298 : _M_begin(__fmt.begin()), _M_end(__fmt.end())
301 basic_format_parse_context(
const basic_format_parse_context&) =
delete;
302 void operator=(
const basic_format_parse_context&) =
delete;
304 constexpr const_iterator begin() const noexcept {
return _M_begin; }
305 constexpr const_iterator end() const noexcept {
return _M_end; }
308 advance_to(const_iterator __it)
noexcept
314 if (_M_indexing == _Manual)
315 __format::__conflicting_indexing_in_format_string();
320 if (std::is_constant_evaluated())
321 if (_M_next_arg_id == _M_num_args)
322 __format::__invalid_arg_id_in_format_string();
323 return _M_next_arg_id++;
327 check_arg_id(
size_t __id)
329 if (_M_indexing == _Auto)
330 __format::__conflicting_indexing_in_format_string();
331 _M_indexing = _Manual;
333 if (std::is_constant_evaluated())
334 if (__id >= _M_num_args)
335 __format::__invalid_arg_id_in_format_string();
338#if __cpp_lib_format >= 202305L
339 template<
typename... _Ts>
341 check_dynamic_spec(
size_t __id)
noexcept
343 static_assert(__valid_types_for_check_dynamic_spec<_Ts...>(),
344 "template arguments for check_dynamic_spec<Ts...>(id) "
345 "must be unique and must be one of the allowed types");
347 __check_dynamic_spec<_Ts...>(__id);
352 check_dynamic_spec_integral(
size_t __id)
noexcept
355 __check_dynamic_spec<int, unsigned,
long long,
356 unsigned long long>(__id);
361 check_dynamic_spec_string(
size_t __id)
noexcept
364 __check_dynamic_spec<const _CharT*, basic_string_view<_CharT>>(__id);
370 template<
typename _Tp,
typename... _Ts>
371 static constexpr bool __once = (is_same_v<_Tp, _Ts> + ...) == 1;
373 template<
typename... _Ts>
375 __valid_types_for_check_dynamic_spec()
379 if constexpr (
sizeof...(_Ts) == 0)
388 = __once<bool, _Ts...>
389 + __once<char_type, _Ts...>
390 + __once<int, _Ts...>
391 + __once<
unsigned int, _Ts...>
392 + __once<
long long int, _Ts...>
393 + __once<
unsigned long long int, _Ts...>
394 + __once<float, _Ts...>
395 + __once<double, _Ts...>
396 + __once<
long double, _Ts...>
397 + __once<
const char_type*, _Ts...>
398 + __once<basic_string_view<char_type>, _Ts...>
399 + __once<
const void*, _Ts...>;
400 return __sum ==
sizeof...(_Ts);
404 template<
typename... _Ts>
406 __check_dynamic_spec(
size_t __id)
noexcept;
409 static void __invalid_dynamic_spec(
const char*);
411 friend __format::_Scanner<_CharT>;
416 basic_format_parse_context(basic_string_view<_CharT> __fmt,
417 size_t __num_args) noexcept
418 : _M_begin(__fmt.begin()), _M_end(__fmt.end()), _M_num_args(__num_args)
424 enum _Indexing { _Unknown, _Manual, _Auto };
425 _Indexing _M_indexing = _Unknown;
426 size_t _M_next_arg_id = 0;
427 size_t _M_num_args = 0;
431 template<
typename _Tp,
template<
typename...>
class _Class>
432 constexpr bool __is_specialization_of =
false;
433 template<
template<
typename...>
class _Class,
typename... _Args>
434 constexpr bool __is_specialization_of<_Class<_Args...>, _Class> =
true;
439 template<
typename _CharT>
440 constexpr pair<unsigned short, const _CharT*>
441 __parse_integer(
const _CharT* __first,
const _CharT* __last)
443 if (__first == __last)
444 __builtin_unreachable();
446 if constexpr (is_same_v<_CharT, char>)
448 const auto __start = __first;
449 unsigned short __val = 0;
451 if (__detail::__from_chars_alnum<true>(__first, __last, __val, 10)
452 && __first != __start) [[likely]]
453 return {__val, __first};
457 constexpr int __n = 32;
459 for (
int __i = 0; __i < __n && (__first + __i) != __last; ++__i)
460 __buf[__i] = __first[__i];
461 auto [__v, __ptr] = __format::__parse_integer(__buf, __buf + __n);
462 if (__ptr) [[likely]]
463 return {__v, __first + (__ptr - __buf)};
468 template<
typename _CharT>
469 constexpr pair<unsigned short, const _CharT*>
470 __parse_arg_id(
const _CharT* __first,
const _CharT* __last)
472 if (__first == __last)
473 __builtin_unreachable();
476 return {0, __first + 1};
478 if (
'1' <= *__first && *__first <=
'9')
480 const unsigned short __id = *__first -
'0';
481 const auto __next = __first + 1;
483 if (__next == __last || !(
'0' <= *__next && *__next <=
'9'))
484 return {__id, __next};
486 return __format::__parse_integer(__first, __last);
491 enum class _Pres_type :
unsigned char {
495 _Pres_c = 2, _Pres_x, _Pres_X, _Pres_d, _Pres_o, _Pres_b, _Pres_B,
497 _Pres_g = 1, _Pres_G, _Pres_a, _Pres_A, _Pres_e, _Pres_E, _Pres_f, _Pres_F,
501 using enum _Pres_type;
503 enum class _Sign :
unsigned char {
511 enum _WidthPrec :
unsigned char {
516 using enum _WidthPrec;
518 template<
typename _Context>
520 __int_from_arg(
const basic_format_arg<_Context>& __arg);
522 constexpr bool __is_digit(
char __c)
523 {
return std::__detail::__from_chars_alnum_to_val(__c) < 10; }
525 constexpr bool __is_xdigit(
char __c)
526 {
return std::__detail::__from_chars_alnum_to_val(__c) < 16; }
533 template<
typename _CharT>
534 struct _Spec : _SpecBase
536 unsigned short _M_width;
537 unsigned short _M_prec;
538 char32_t _M_fill =
' ';
542 unsigned _M_localized : 1;
543 unsigned _M_zero_fill : 1;
544 _WidthPrec _M_width_kind : 2;
545 _WidthPrec _M_prec_kind : 2;
546 unsigned _M_debug : 1;
547 _Pres_type _M_type : 4;
548 unsigned _M_reserved : 8;
552 using iterator =
typename basic_string_view<_CharT>::iterator;
554 static constexpr _Align
555 _S_align(_CharT __c)
noexcept
559 case '<':
return _Align_left;
560 case '>':
return _Align_right;
561 case '^':
return _Align_centre;
562 default:
return _Align_default;
568 _M_parse_fill_and_align(iterator __first, iterator __last)
noexcept
569 {
return _M_parse_fill_and_align(__first, __last,
"{"); }
573 _M_parse_fill_and_align(iterator __first, iterator __last, string_view __not_fill)
noexcept
575 for (
char __c : __not_fill)
576 if (*__first ==
static_cast<_CharT
>(__c))
579 using namespace __unicode;
580 if constexpr (__literal_encoding_is_unicode<_CharT>())
583 _Utf32_view<ranges::subrange<iterator>> __uv({__first, __last});
586 auto __beg = __uv.begin();
587 char32_t __c = *__beg++;
588 if (__is_scalar_value(__c))
589 if (
auto __next = __beg.base(); __next != __last)
590 if (_Align __align = _S_align(*__next); __align != _Align_default)
598 else if (__last - __first >= 2)
599 if (_Align __align = _S_align(__first[1]); __align != _Align_default)
606 if (_Align __align = _S_align(__first[0]); __align != _Align_default)
615 static constexpr _Sign
616 _S_sign(_CharT __c)
noexcept
620 case '+':
return _Sign_plus;
621 case '-':
return _Sign_minus;
622 case ' ':
return _Sign_space;
623 default:
return _Sign_default;
629 _M_parse_sign(iterator __first, iterator)
noexcept
631 if (_Sign __sign = _S_sign(*__first); __sign != _Sign_default)
641 _M_parse_alternate_form(iterator __first, iterator)
noexcept
653 _M_parse_zero_fill(iterator __first, iterator )
noexcept
664 static constexpr iterator
665 _S_parse_width_or_precision(iterator __first, iterator __last,
666 unsigned short& __val,
bool& __arg_id,
667 basic_format_parse_context<_CharT>& __pc)
669 if (__format::__is_digit(*__first))
671 auto [__v, __ptr] = __format::__parse_integer(__first, __last);
673 __throw_format_error(
"format error: invalid width or precision "
678 else if (*__first ==
'{')
682 if (__first == __last)
683 __format::__unmatched_left_brace_in_format_string();
685 __val = __pc.next_arg_id();
688 auto [__v, __ptr] = __format::__parse_arg_id(__first, __last);
689 if (__ptr ==
nullptr || __ptr == __last || *__ptr !=
'}')
690 __format::__invalid_arg_id_in_format_string();
692 __pc.check_arg_id(__v);
695#if __cpp_lib_format >= 202305L
696 __pc.check_dynamic_spec_integral(__val);
705 _M_parse_width(iterator __first, iterator __last,
706 basic_format_parse_context<_CharT>& __pc)
708 bool __arg_id =
false;
710 __throw_format_error(
"format error: width must be non-zero in "
712 auto __next = _S_parse_width_or_precision(__first, __last, _M_width,
714 if (__next != __first)
715 _M_width_kind = __arg_id ? _WP_from_arg : _WP_value;
721 _M_parse_precision(iterator __first, iterator __last,
722 basic_format_parse_context<_CharT>& __pc)
724 if (__first[0] !=
'.')
727 iterator __next = ++__first;
728 bool __arg_id =
false;
729 if (__next != __last)
730 __next = _S_parse_width_or_precision(__first, __last, _M_prec,
732 if (__next == __first)
733 __throw_format_error(
"format error: missing precision after '.' in "
735 _M_prec_kind = __arg_id ? _WP_from_arg : _WP_value;
741 _M_parse_locale(iterator __first, iterator )
noexcept
751 template<
typename _Context>
753 _M_get_width(_Context& __ctx)
const
756 if (_M_width_kind == _WP_value)
758 else if (_M_width_kind == _WP_from_arg)
759 __width = __format::__int_from_arg(__ctx.arg(_M_width));
763 template<
typename _Context>
765 _M_get_precision(_Context& __ctx)
const
768 if (_M_prec_kind == _WP_value)
770 else if (_M_prec_kind == _WP_from_arg)
771 __prec = __format::__int_from_arg(__ctx.arg(_M_prec));
776 template<
typename _Int>
778 __put_sign(_Int __i, _Sign __sign,
char* __dest)
noexcept
782 else if (__sign == _Sign_plus)
784 else if (__sign == _Sign_space)
792 template<
typename _Out,
typename _CharT>
793 requires output_iterator<_Out, const _CharT&>
795 __write(_Out __out, basic_string_view<_CharT> __str)
797 if constexpr (is_same_v<_Out, _Sink_iter<_CharT>>)
803 for (_CharT __c : __str)
810 template<
typename _Out,
typename _CharT>
812 __write_padded(_Out __out, basic_string_view<_CharT> __str,
813 _Align __align,
size_t __nfill,
char32_t __fill_char)
815 const size_t __buflen = 0x20;
816 _CharT __padding_chars[__buflen];
817 __padding_chars[0] = _CharT();
818 basic_string_view<_CharT> __padding{__padding_chars, __buflen};
820 auto __pad = [&__padding] (
size_t __n, _Out& __o) {
823 while (__n > __padding.size())
825 __o = __format::__write(
std::move(__o), __padding);
826 __n -= __padding.size();
829 __o = __format::__write(
std::move(__o), __padding.substr(0, __n));
832 size_t __l, __r, __max;
833 if (__align == _Align_centre)
836 __r = __l + (__nfill & 1);
839 else if (__align == _Align_right)
852 using namespace __unicode;
853 if constexpr (__literal_encoding_is_unicode<_CharT>())
854 if (!__is_single_code_unit<_CharT>(__fill_char)) [[unlikely]]
857 const char32_t __arr[1]{ __fill_char };
858 _Utf_view<_CharT, span<const char32_t, 1>> __v(__arr);
859 basic_string<_CharT> __padstr(__v.begin(), __v.end());
860 __padding = __padstr;
862 __out = __format::__write(
std::move(__out), __padding);
863 __out = __format::__write(
std::move(__out), __str);
865 __out = __format::__write(
std::move(__out), __padding);
869 if (__max < __buflen)
870 __padding.remove_suffix(__buflen - __max);
874 char_traits<_CharT>::assign(__padding_chars, __max, __fill_char);
876 __out = __format::__write(
std::move(__out), __str);
884 template<
typename _CharT,
typename _Out>
886 __write_padded_as_spec(basic_string_view<type_identity_t<_CharT>> __str,
887 size_t __estimated_width,
888 basic_format_context<_Out, _CharT>& __fc,
889 const _Spec<_CharT>& __spec,
890 _Align __align = _Align_left)
892 size_t __width = __spec._M_get_width(__fc);
894 if (__width <= __estimated_width)
895 return __format::__write(__fc.out(), __str);
897 const size_t __nfill = __width - __estimated_width;
899 if (__spec._M_align != _Align_default)
900 __align = __spec._M_align;
902 return __format::__write_padded(__fc.out(), __str, __align, __nfill,
906 template<
typename _CharT>
908 __truncate(basic_string_view<_CharT>& __s,
size_t __prec)
910 if constexpr (__unicode::__literal_encoding_is_unicode<_CharT>())
912 if (__prec != (
size_t)-1)
913 return __unicode::__truncate(__s, __prec);
915 return __unicode::__field_width(__s);
919 __s = __s.substr(0, __prec);
924 enum class _Term_char :
unsigned char {
929 using enum _Term_char;
931 template<
typename _CharT>
934 using _Str_view = basic_string_view<_CharT>;
938 {
return _GLIBCXX_WIDEN(
"\t\\t\n\\n\r\\r\\\\\\\"\\\"'\\'\\u\\x"); }
942 {
return _S_all().substr(0, 3); }
945 _Str_view _S_newline()
946 {
return _S_all().substr(3, 3); }
949 _Str_view _S_return()
950 {
return _S_all().substr(6, 3); }
953 _Str_view _S_bslash()
954 {
return _S_all().substr(9, 3); }
958 {
return _S_all().substr(12, 3); }
962 {
return _S_all().substr(15, 3); }
966 {
return _S_all().substr(18, 2); }
970 {
return _S_all().substr(20, 2); }
973 _Str_view _S_term(_Term_char __term)
980 return _S_quote().substr(0, 1);
982 return _S_apos().substr(0, 1);
984 __builtin_unreachable();
988 template<
typename _CharT>
991 using _Str_view = basic_string_view<_CharT>;
995 {
return _GLIBCXX_WIDEN(
"[]{}(), : "); }
998 _Str_view _S_squares()
999 {
return _S_all().substr(0, 2); }
1002 _Str_view _S_braces()
1003 {
return _S_all().substr(2, 2); }
1006 _Str_view _S_parens()
1007 {
return _S_all().substr(4, 2); }
1010 _Str_view _S_comma()
1011 {
return _S_all().substr(6, 2); }
1014 _Str_view _S_colon()
1015 {
return _S_all().substr(8, 2); }
1018 template<
typename _CharT>
1019 constexpr bool __should_escape_ascii(_CharT __c, _Term_char __term)
1021 using _Esc = _Escapes<_CharT>;
1024 case _Esc::_S_tab()[0]:
1025 case _Esc::_S_newline()[0]:
1026 case _Esc::_S_return()[0]:
1027 case _Esc::_S_bslash()[0]:
1029 case _Esc::_S_quote()[0]:
1030 return __term == _Term_quote;
1031 case _Esc::_S_apos()[0]:
1032 return __term == _Term_apos;
1034 return (__c >= 0 && __c < 0x20) || __c == 0x7f;
1039 constexpr bool __should_escape_unicode(
char32_t __c,
bool __prev_esc)
1041 if (__unicode::__should_escape_category(__c))
1045 return __unicode::__grapheme_cluster_break_property(__c)
1046 == __unicode::_Gcb_property::_Gcb_Extend;
1049 using uint_least32_t = __UINT_LEAST32_TYPE__;
1050 template<
typename _Out,
typename _CharT>
1052 __write_escape_seq(_Out __out, uint_least32_t __val,
1053 basic_string_view<_CharT> __prefix)
1055 constexpr size_t __max = 8;
1057 const string_view __narrow(
1059 std::__to_chars_i<uint_least32_t>(__buf, __buf + __max, __val, 16).ptr);
1061 __out = __format::__write(__out, __prefix);
1062 *__out = _Separators<_CharT>::_S_braces()[0];
1064 if constexpr (is_same_v<char, _CharT>)
1065 __out = __format::__write(__out, __narrow);
1066#ifdef _GLIBCXX_USE_WCHAR_T
1069 wchar_t __wbuf[__max];
1070 const size_t __n = __narrow.size();
1071 std::__to_wstring_numeric(__narrow.data(), __n, __wbuf);
1072 __out = __format::__write(__out, wstring_view(__wbuf, __n));
1075 *__out = _Separators<_CharT>::_S_braces()[1];
1079 template<
typename _Out,
typename _CharT>
1081 __write_escape_seqs(_Out __out, basic_string_view<_CharT> __units)
1083 using _UChar = make_unsigned_t<_CharT>;
1084 for (_CharT __c : __units)
1085 __out = __format::__write_escape_seq(
1086 __out,
static_cast<_UChar
>(__c), _Escapes<_CharT>::_S_x());
1090 template<
typename _Out,
typename _CharT>
1092 __write_escaped_char(_Out __out, _CharT __c)
1094 using _UChar = make_unsigned_t<_CharT>;
1095 using _Esc = _Escapes<_CharT>;
1098 case _Esc::_S_tab()[0]:
1099 return __format::__write(__out, _Esc::_S_tab().substr(1, 2));
1100 case _Esc::_S_newline()[0]:
1101 return __format::__write(__out, _Esc::_S_newline().substr(1, 2));
1102 case _Esc::_S_return()[0]:
1103 return __format::__write(__out, _Esc::_S_return().substr(1, 2));
1104 case _Esc::_S_bslash()[0]:
1105 return __format::__write(__out, _Esc::_S_bslash().substr(1, 2));
1106 case _Esc::_S_quote()[0]:
1107 return __format::__write(__out, _Esc::_S_quote().substr(1, 2));
1108 case _Esc::_S_apos()[0]:
1109 return __format::__write(__out, _Esc::_S_apos().substr(1, 2));
1111 return __format::__write_escape_seq(
1112 __out,
static_cast<_UChar
>(__c), _Esc::_S_u());
1116 template<
typename _CharT,
typename _Out>
1118 __write_escaped_ascii(_Out __out,
1119 basic_string_view<_CharT> __str,
1122 using _Str_view = basic_string_view<_CharT>;
1123 auto __first = __str.begin();
1124 auto const __last = __str.end();
1125 while (__first != __last)
1127 auto __print = __first;
1129 while (__print != __last
1130 && !__format::__should_escape_ascii(*__print, __term))
1133 if (__print != __first)
1134 __out = __format::__write(__out, _Str_view(__first, __print));
1136 if (__print == __last)
1140 __out = __format::__write_escaped_char(__out, *__first);
1146 template<
typename _CharT,
typename _Out>
1148 __write_escaped_unicode_part(_Out __out, basic_string_view<_CharT>& __str,
1149 bool& __prev_esc, _Term_char __term)
1151 using _Str_view = basic_string_view<_CharT>;
1152 using _Esc = _Escapes<_CharT>;
1154 static constexpr char32_t __replace = U
'\uFFFD';
1155 static constexpr _Str_view __replace_rep = []
1158 if constexpr (is_same_v<char, _CharT>)
1159 return "\xEF\xBF\xBD";
1164 __unicode::_Utf_view<char32_t, _Str_view> __v(
std::move(__str));
1167 auto __first = __v.begin();
1168 auto const __last = __v.end();
1169 while (__first != __last)
1171 bool __esc_ascii =
false;
1172 bool __esc_unicode =
false;
1173 bool __esc_replace =
false;
1174 auto __should_escape = [&](
auto const& __it)
1178 = __format::__should_escape_ascii(*__it.base(), __term);
1179 if (__format::__should_escape_unicode(*__it, __prev_esc))
1180 return __esc_unicode =
true;
1181 if (*__it == __replace)
1183 _Str_view __units(__it.base(), __it._M_units());
1184 return __esc_replace = (__units != __replace_rep);
1189 auto __print = __first;
1190 while (__print != __last && !__should_escape(__print))
1196 if (__print != __first)
1197 __out = __format::__write(__out, _Str_view(__first.base(), __print.base()));
1199 if (__print == __last)
1204 __out = __format::__write_escaped_char(__out, *__first.base());
1205 else if (__esc_unicode)
1206 __out = __format::__write_escape_seq(__out, *__first, _Esc::_S_u());
1208 else if (_Str_view __units(__first.base(), __first._M_units());
1209 __units.end() != __last.base())
1210 __out = __format::__write_escape_seqs(__out, __units);
1224 template<
typename _CharT,
typename _Out>
1226 __write_escaped_unicode(_Out __out, basic_string_view<_CharT> __str,
1229 bool __prev_escape =
true;
1230 __out = __format::__write_escaped_unicode_part(__out, __str,
1231 __prev_escape, __term);
1232 __out = __format::__write_escape_seqs(__out, __str);
1236 template<
typename _CharT,
typename _Out>
1238 __write_escaped(_Out __out, basic_string_view<_CharT> __str, _Term_char __term)
1240 __out = __format::__write(__out, _Escapes<_CharT>::_S_term(__term));
1242 if constexpr (__unicode::__literal_encoding_is_unicode<_CharT>())
1243 __out = __format::__write_escaped_unicode(__out, __str, __term);
1244 else if constexpr (is_same_v<char, _CharT>
1245 && __unicode::__literal_encoding_is_extended_ascii())
1246 __out = __format::__write_escaped_ascii(__out, __str, __term);
1249 __out = __format::__write_escaped_ascii(__out, __str, __term);
1251 return __format::__write(__out, _Escapes<_CharT>::_S_term(__term));
1255 struct _Optional_locale
1257 [[__gnu__::__always_inline__]]
1258 _Optional_locale() : _M_dummy(), _M_hasval(false) { }
1260 _Optional_locale(
const locale& __loc) noexcept
1261 : _M_loc(__loc), _M_hasval(
true)
1264 _Optional_locale(
const _Optional_locale& __l) noexcept
1265 : _M_dummy(), _M_hasval(__l._M_hasval)
1268 std::construct_at(&_M_loc, __l._M_loc);
1272 operator=(
const _Optional_locale& __l)
noexcept
1277 _M_loc = __l._M_loc;
1284 else if (__l._M_hasval)
1286 std::construct_at(&_M_loc, __l._M_loc);
1292 ~_Optional_locale() {
if (_M_hasval) _M_loc.~locale(); }
1295 operator=(locale&& __loc)
noexcept
1301 std::construct_at(&_M_loc,
std::move(__loc));
1312 std::construct_at(&_M_loc);
1318 bool has_value() const noexcept {
return _M_hasval; }
1321 char _M_dummy =
'\0';
1324 bool _M_hasval =
false;
1327 template<__
char _CharT>
1328 struct __formatter_str
1330 __formatter_str() =
default;
1333 __formatter_str(_Spec<_CharT> __spec) noexcept
1337 constexpr typename basic_format_parse_context<_CharT>::iterator
1338 parse(basic_format_parse_context<_CharT>& __pc)
1340 auto __first = __pc.begin();
1341 const auto __last = __pc.end();
1342 _Spec<_CharT> __spec{};
1344 auto __finalize = [
this, &__spec] {
1348 auto __finished = [&] {
1349 if (__first == __last || *__first ==
'}')
1360 __first = __spec._M_parse_fill_and_align(__first, __last);
1364 __first = __spec._M_parse_width(__first, __last, __pc);
1368 __first = __spec._M_parse_precision(__first, __last, __pc);
1372 if (*__first ==
's')
1374 __spec._M_type = _Pres_s;
1377#if __glibcxx_format_ranges
1378 else if (*__first ==
'?')
1380 __spec._M_debug =
true;
1388 __format::__failed_to_parse_format_spec();
1391 template<
typename _Out>
1393 format(basic_string_view<_CharT> __s,
1394 basic_format_context<_Out, _CharT>& __fc)
const
1396 if (_M_spec._M_debug)
1397 return _M_format_escaped(__s, __fc);
1399 if (_M_spec._M_width_kind == _WP_none
1400 && _M_spec._M_prec_kind == _WP_none)
1401 return __format::__write(__fc.out(), __s);
1403 const size_t __maxwidth = _M_spec._M_get_precision(__fc);
1404 const size_t __width = __format::__truncate(__s, __maxwidth);
1405 return __format::__write_padded_as_spec(__s, __width, __fc, _M_spec);
1408 template<
typename _Out>
1410 _M_format_escaped(basic_string_view<_CharT> __s,
1411 basic_format_context<_Out, _CharT>& __fc)
const
1413 const size_t __padwidth = _M_spec._M_get_width(__fc);
1414 if (__padwidth == 0 && _M_spec._M_prec_kind == _WP_none)
1415 return __format::__write_escaped(__fc.out(), __s, _Term_quote);
1417 const size_t __maxwidth = _M_spec._M_get_precision(__fc);
1418 const size_t __width = __truncate(__s, __maxwidth);
1420 if (__padwidth <= __width && _M_spec._M_prec_kind == _WP_none)
1421 return __format::__write_escaped(__fc.out(), __s, _Term_quote);
1426 _Padding_sink<_Out, _CharT> __sink(__fc.out(), __padwidth, __maxwidth);
1427 __format::__write_escaped(__sink.out(), __s, _Term_quote);
1428 return __sink._M_finish(_M_spec._M_align, _M_spec._M_fill);
1431#if __glibcxx_format_ranges
1432 template<ranges::input_range _Rg,
typename _Out>
1433 requires same_as<remove_cvref_t<ranges::range_reference_t<_Rg>>, _CharT>
1435 _M_format_range(_Rg&& __rg, basic_format_context<_Out, _CharT>& __fc)
const
1437 using _Range = remove_reference_t<_Rg>;
1438 using _String_view = basic_string_view<_CharT>;
1439 if constexpr (!is_lvalue_reference_v<_Rg>)
1440 return _M_format_range<_Range&>(__rg, __fc);
1441 else if constexpr (!is_const_v<_Range>
1442 && __simply_formattable_range<_Range, _CharT>)
1443 return _M_format_range<const _Range&>(__rg, __fc);
1444 else if constexpr (ranges::contiguous_range<_Rg>)
1446 _String_view __str(ranges::data(__rg),
1447 size_t(ranges::distance(__rg)));
1448 return format(__str, __fc);
1452 auto __handle_debug = [
this, &__rg]<
typename _NOut>(_NOut __nout)
1454 if (!_M_spec._M_debug)
1455 return ranges::copy(__rg,
std::move(__nout)).out;
1457 _Escaping_sink<_NOut, _CharT>
1459 ranges::copy(__rg, __sink.out());
1460 return __sink._M_finish();
1463 const size_t __padwidth = _M_spec._M_get_width(__fc);
1464 if (__padwidth == 0 && _M_spec._M_prec_kind == _WP_none)
1465 return __handle_debug(__fc.out());
1467 _Padding_sink<_Out, _CharT>
1468 __sink(__fc.out(), __padwidth, _M_spec._M_get_precision(__fc));
1469 __handle_debug(__sink.out());
1470 return __sink._M_finish(_M_spec._M_align, _M_spec._M_fill);
1475 set_debug_format() noexcept
1476 { _M_spec._M_debug =
true; }
1480 _Spec<_CharT> _M_spec{};
1483 template<__
char _CharT>
1484 struct __formatter_int
1488 static constexpr _Pres_type _AsInteger = _Pres_d;
1489 static constexpr _Pres_type _AsBool = _Pres_s;
1490 static constexpr _Pres_type _AsChar = _Pres_c;
1492 __formatter_int() =
default;
1495 __formatter_int(_Spec<_CharT> __spec) noexcept
1498 if (_M_spec._M_type == _Pres_none)
1499 _M_spec._M_type = _Pres_d;
1502 constexpr typename basic_format_parse_context<_CharT>::iterator
1503 _M_do_parse(basic_format_parse_context<_CharT>& __pc, _Pres_type __type)
1505 _Spec<_CharT> __spec{};
1506 __spec._M_type = __type;
1508 const auto __last = __pc.end();
1509 auto __first = __pc.begin();
1511 auto __finalize = [
this, &__spec] {
1515 auto __finished = [&] {
1516 if (__first == __last || *__first ==
'}')
1527 __first = __spec._M_parse_fill_and_align(__first, __last);
1531 __first = __spec._M_parse_sign(__first, __last);
1535 __first = __spec._M_parse_alternate_form(__first, __last);
1539 __first = __spec._M_parse_zero_fill(__first, __last);
1543 __first = __spec._M_parse_width(__first, __last, __pc);
1547 __first = __spec._M_parse_locale(__first, __last);
1554 __spec._M_type = _Pres_b;
1558 __spec._M_type = _Pres_B;
1564 if (__type != _AsBool)
1566 __spec._M_type = _Pres_c;
1571 __spec._M_type = _Pres_d;
1575 __spec._M_type = _Pres_o;
1579 __spec._M_type = _Pres_x;
1583 __spec._M_type = _Pres_X;
1587 if (__type == _AsBool)
1589 __spec._M_type = _Pres_s;
1593#if __glibcxx_format_ranges
1595 if (__type == _AsChar)
1597 __spec._M_debug =
true;
1607 __format::__failed_to_parse_format_spec();
1610 template<
typename _Tp>
1611 constexpr typename basic_format_parse_context<_CharT>::iterator
1612 _M_parse(basic_format_parse_context<_CharT>& __pc)
1614 if constexpr (is_same_v<_Tp, bool>)
1616 auto __end = _M_do_parse(__pc, _AsBool);
1617 if (_M_spec._M_type == _Pres_s)
1618 if (_M_spec._M_sign != _Sign_default || _M_spec._M_alt
1619 || _M_spec._M_zero_fill)
1620 __throw_format_error(
"format error: format-spec contains "
1621 "invalid formatting options for "
1625 else if constexpr (__char<_Tp>)
1627 auto __end = _M_do_parse(__pc, _AsChar);
1628 if (_M_spec._M_type == _Pres_c)
1629 if (_M_spec._M_sign != _Sign_default || _M_spec._M_alt
1630 || _M_spec._M_zero_fill
1632 __throw_format_error(
"format error: format-spec contains "
1633 "invalid formatting options for "
1638 return _M_do_parse(__pc, _AsInteger);
1641 template<
typename _Int,
typename _Out>
1642 typename basic_format_context<_Out, _CharT>::iterator
1643 format(_Int __i, basic_format_context<_Out, _CharT>& __fc)
const
1645 if (_M_spec._M_type == _Pres_c)
1646 return _M_format_character(_S_to_character(__i), __fc);
1648 constexpr size_t __buf_size =
sizeof(_Int) * __CHAR_BIT__ + 3;
1649 char __buf[__buf_size];
1650 to_chars_result __res{};
1652 string_view __base_prefix;
1653 make_unsigned_t<_Int> __u;
1655 __u = -
static_cast<make_unsigned_t<_Int>
>(__i);
1659 char* __start = __buf + 3;
1660 char*
const __end = __buf +
sizeof(__buf);
1661 char*
const __start_digits = __start;
1663 switch (_M_spec._M_type)
1667 __base_prefix = _M_spec._M_type == _Pres_b ?
"0b" :
"0B";
1668 __res = to_chars(__start, __end, __u, 2);
1672 return _M_format_character(_S_to_character(__i), __fc);
1679 __res = to_chars(__start, __end, __u, 10);
1683 __base_prefix =
"0";
1684 __res = to_chars(__start, __end, __u, 8);
1688 __base_prefix = _M_spec._M_type == _Pres_x ?
"0x" :
"0X";
1689 __res = to_chars(__start, __end, __u, 16);
1690 if (_M_spec._M_type == _Pres_X)
1691 for (
auto __p = __start; __p != __res.ptr; ++__p)
1692#
if __has_builtin(__builtin_toupper)
1693 *__p = __builtin_toupper(*__p);
1700 if (_M_spec._M_alt && __base_prefix.size())
1702 __start -= __base_prefix.size();
1703 __builtin_memcpy(__start, __base_prefix.data(),
1704 __base_prefix.size());
1706 __start = __format::__put_sign(__i, _M_spec._M_sign, __start - 1);
1708 string_view __narrow_str(__start, __res.ptr - __start);
1709 size_t __prefix_len = __start_digits - __start;
1710 if constexpr (is_same_v<char, _CharT>)
1711 return _M_format_int(__narrow_str, __prefix_len, __fc);
1712#ifdef _GLIBCXX_USE_WCHAR_T
1715 _CharT __wbuf[__buf_size];
1716 size_t __n = __narrow_str.size();
1719 std::__to_wstring_numeric(__narrow_str.data(), __n, __wbuf);
1720 return _M_format_int(basic_string_view<_CharT>(__wbuf, __n),
1721 __prefix_len, __fc);
1726 template<
typename _Out>
1727 typename basic_format_context<_Out, _CharT>::iterator
1728 format(
bool __i, basic_format_context<_Out, _CharT>& __fc)
const
1730 if (_M_spec._M_type == _Pres_c)
1731 return _M_format_character(
static_cast<unsigned char>(__i), __fc);
1732 if (_M_spec._M_type != _Pres_s)
1733 return format(
static_cast<unsigned char>(__i), __fc);
1735 basic_string<_CharT> __s;
1737 if (_M_spec._M_localized) [[unlikely]]
1740 __s = __i ? __np.truename() : __np.falsename();
1741 __est_width = __s.size();
1745 if constexpr (is_same_v<char, _CharT>)
1746 __s = __i ?
"true" :
"false";
1748 __s = __i ? L
"true" : L
"false";
1749 __est_width = __s.size();
1752 return __format::__write_padded_as_spec(__s, __est_width, __fc,
1756 template<
typename _Out>
1757 typename basic_format_context<_Out, _CharT>::iterator
1758 _M_format_character(_CharT __c,
1759 basic_format_context<_Out, _CharT>& __fc)
const
1761 basic_string_view<_CharT> __in(&__c, 1u);
1762 size_t __width = 1u;
1764 if constexpr (
sizeof(_CharT) > 1u &&
1765 __unicode::__literal_encoding_is_unicode<_CharT>())
1766 __width = __unicode::__field_width(__c);
1768 if (!_M_spec._M_debug)
1769 return __format::__write_padded_as_spec(__in, __width,
1773 if (_M_spec._M_get_width(__fc) <= __width)
1774 return __format::__write_escaped(__fc.out(), __in, _Term_apos);
1777 _Fixedbuf_sink<_CharT> __sink(__buf);
1778 __format::__write_escaped(__sink.out(), __in, _Term_apos);
1780 __in = __sink.view();
1781 if (__in[1] == _Escapes<_CharT>::_S_bslash()[0])
1782 __width = __in.size();
1783 return __format::__write_padded_as_spec(__in, __width,
1787 template<
typename _Int>
1789 _S_to_character(_Int __i)
1792 if constexpr (is_signed_v<_Int> == is_signed_v<_CharT>)
1794 if (_Traits::__min <= __i && __i <= _Traits::__max)
1795 return static_cast<_CharT
>(__i);
1797 else if constexpr (is_signed_v<_Int>)
1799 if (__i >= 0 && make_unsigned_t<_Int>(__i) <= _Traits::__max)
1800 return static_cast<_CharT
>(__i);
1802 else if (__i <= make_unsigned_t<_CharT>(_Traits::__max))
1803 return static_cast<_CharT
>(__i);
1804 __throw_format_error(
"format error: integer not representable as "
1808 template<
typename _Out>
1809 typename basic_format_context<_Out, _CharT>::iterator
1810 _M_format_int(basic_string_view<_CharT> __str,
size_t __prefix_len,
1811 basic_format_context<_Out, _CharT>& __fc)
const
1813 size_t __width = _M_spec._M_get_width(__fc);
1814 if (_M_spec._M_localized)
1816 const auto& __l = __fc.locale();
1817 if (__l.name() !=
"C")
1819 auto& __np = use_facet<numpunct<_CharT>>(__l);
1820 string __grp = __np.grouping();
1823 size_t __n = __str.size() - __prefix_len;
1824 auto __p = (_CharT*)__builtin_alloca(2 * __n
1827 auto __s = __str.data();
1828 char_traits<_CharT>::copy(__p, __s, __prefix_len);
1829 __s += __prefix_len;
1830 auto __end = std::__add_grouping(__p + __prefix_len,
1831 __np.thousands_sep(),
1835 __str = {__p, size_t(__end - __p)};
1840 if (__width <= __str.size())
1841 return __format::__write(__fc.out(), __str);
1843 char32_t __fill_char = _M_spec._M_fill;
1844 _Align __align = _M_spec._M_align;
1846 size_t __nfill = __width - __str.size();
1847 auto __out = __fc.out();
1848 if (__align == _Align_default)
1850 __align = _Align_right;
1851 if (_M_spec._M_zero_fill)
1853 __fill_char = _CharT(
'0');
1855 if (__prefix_len != 0)
1857 __out = __format::__write(
std::move(__out),
1858 __str.substr(0, __prefix_len));
1859 __str.remove_prefix(__prefix_len);
1863 __fill_char = _CharT(
' ');
1865 return __format::__write_padded(
std::move(__out), __str,
1866 __align, __nfill, __fill_char);
1869 _Spec<_CharT> _M_spec{};
1872#ifdef __BFLT16_DIG__
1873 using __bflt16_t =
decltype(0.0bf16);
1884#undef _GLIBCXX_FORMAT_F128
1886#ifdef _GLIBCXX_LONG_DOUBLE_ALT128_COMPAT
1889 using __flt128_t = __ieee128;
1890# define _GLIBCXX_FORMAT_F128 1
1892#ifdef __LONG_DOUBLE_IEEE128__
1896 to_chars(
char*,
char*, __ibm128)
noexcept
1897 __asm(
"_ZSt8to_charsPcS_e");
1900 to_chars(
char*,
char*, __ibm128, chars_format)
noexcept
1901 __asm(
"_ZSt8to_charsPcS_eSt12chars_format");
1904 to_chars(
char*,
char*, __ibm128, chars_format,
int)
noexcept
1905 __asm(
"_ZSt8to_charsPcS_eSt12chars_formati");
1906#elif __cplusplus == 202002L
1908 to_chars(
char*,
char*, __ieee128)
noexcept
1909 __asm(
"_ZSt8to_charsPcS_u9__ieee128");
1912 to_chars(
char*,
char*, __ieee128, chars_format)
noexcept
1913 __asm(
"_ZSt8to_charsPcS_u9__ieee128St12chars_format");
1916 to_chars(
char*,
char*, __ieee128, chars_format,
int)
noexcept
1917 __asm(
"_ZSt8to_charsPcS_u9__ieee128St12chars_formati");
1920#elif defined _GLIBCXX_LDOUBLE_IS_IEEE_BINARY128
1923 using __flt128_t =
long double;
1924# define _GLIBCXX_FORMAT_F128 2
1926#elif __FLT128_DIG__ && defined(_GLIBCXX_HAVE_FLOAT128_MATH)
1929 using __flt128_t = _Float128;
1930# define _GLIBCXX_FORMAT_F128 3
1932# if __cplusplus == 202002L
1936 to_chars(
char*,
char*, _Float128)
noexcept
1937# if _GLIBCXX_INLINE_VERSION
1938 __asm(
"_ZNSt3__88to_charsEPcS0_DF128_");
1940 __asm(
"_ZSt8to_charsPcS_DF128_");
1944 to_chars(
char*,
char*, _Float128, chars_format)
noexcept
1945# if _GLIBCXX_INLINE_VERSION
1946 __asm(
"_ZNSt3__88to_charsEPcS0_DF128_NS_12chars_formatE");
1948 __asm(
"_ZSt8to_charsPcS_DF128_St12chars_format");
1952 to_chars(
char*,
char*, _Float128, chars_format,
int)
noexcept
1953# if _GLIBCXX_INLINE_VERSION
1954 __asm(
"_ZNSt3__88to_charsEPcS0_DF128_NS_12chars_formatEi");
1956 __asm(
"_ZSt8to_charsPcS_DF128_St12chars_formati");
1961 using std::to_chars;
1964 template<
typename _Tp>
1965 concept __formattable_float
1966 = is_same_v<remove_cv_t<_Tp>, _Tp> &&
requires (_Tp __t,
char* __p)
1967 { __format::to_chars(__p, __p, __t, chars_format::scientific, 6); };
1969 template<__
char _CharT>
1970 struct __formatter_fp
1972 constexpr typename basic_format_parse_context<_CharT>::iterator
1973 parse(basic_format_parse_context<_CharT>& __pc)
1975 _Spec<_CharT> __spec{};
1976 const auto __last = __pc.end();
1977 auto __first = __pc.begin();
1979 auto __finalize = [
this, &__spec] {
1983 auto __finished = [&] {
1984 if (__first == __last || *__first ==
'}')
1995 __first = __spec._M_parse_fill_and_align(__first, __last);
1999 __first = __spec._M_parse_sign(__first, __last);
2003 __first = __spec._M_parse_alternate_form(__first, __last);
2007 __first = __spec._M_parse_zero_fill(__first, __last);
2011 if (__first[0] !=
'.')
2013 __first = __spec._M_parse_width(__first, __last, __pc);
2018 __first = __spec._M_parse_precision(__first, __last, __pc);
2022 __first = __spec._M_parse_locale(__first, __last);
2029 __spec._M_type = _Pres_a;
2033 __spec._M_type = _Pres_A;
2037 __spec._M_type = _Pres_e;
2041 __spec._M_type = _Pres_E;
2045 __spec._M_type = _Pres_f;
2049 __spec._M_type = _Pres_F;
2053 __spec._M_type = _Pres_g;
2057 __spec._M_type = _Pres_G;
2065 __format::__failed_to_parse_format_spec();
2068 template<
typename _Fp,
typename _Out>
2069 typename basic_format_context<_Out, _CharT>::iterator
2070 format(_Fp __v, basic_format_context<_Out, _CharT>& __fc)
const
2074 to_chars_result __res{};
2077 bool __use_prec = _M_spec._M_prec_kind != _WP_none;
2079 __prec = _M_spec._M_get_precision(__fc);
2082 bool __upper =
false;
2083 bool __trailing_zeros =
false;
2085 size_t __offset = 1;
2087 switch (_M_spec._M_type)
2090 if (__builtin_isfinite(__v))
2096 __fmt = chars_format::hex;
2099 if (__builtin_isfinite(__v))
2104 __fmt = chars_format::hex;
2112 __fmt = chars_format::scientific;
2119 __fmt = chars_format::fixed;
2126 __trailing_zeros =
true;
2128 __fmt = chars_format::general;
2133 __fmt = chars_format::general;
2137 char* __start = __buf + __offset;
2138 char* __end = __buf +
sizeof(__buf);
2141 auto __to_chars = [&](
char* __b,
char* __e) {
2143 return __format::to_chars(__b, __e, __v, __fmt, __prec);
2144 else if (__fmt != chars_format{})
2145 return __format::to_chars(__b, __e, __v, __fmt);
2147 return __format::to_chars(__b, __e, __v);
2151 __res = __to_chars(__start, __end);
2153 if (__builtin_expect(__res.ec == errc::value_too_large, 0))
2157 size_t __guess = 7 + __offset + __prec;
2158 if (__fmt == chars_format::fixed)
2160 if constexpr (is_same_v<_Fp, float> || is_same_v<_Fp, double>
2161 || is_same_v<_Fp, long double>)
2166 if constexpr (is_same_v<_Fp, float>)
2167 __builtin_frexpf(__v, &__exp);
2168 else if constexpr (is_same_v<_Fp, double>)
2169 __builtin_frexp(__v, &__exp);
2170 else if constexpr (is_same_v<_Fp, long double>)
2171 __builtin_frexpl(__v, &__exp);
2173 __guess += 1U + __exp * 4004U / 13301U;
2176 __guess += numeric_limits<_Fp>::max_exponent10;
2178 if (__guess <=
sizeof(__buf)) [[unlikely]]
2179 __guess =
sizeof(__buf) * 2;
2188 auto __overwrite = [&__to_chars, &__res, __offset] (
char* __p,
size_t __n)
2190 __res = __to_chars(__p + __offset, __p + __n - __offset);
2191 return __res.ec == errc{} ? __res.ptr - __p : 0;
2196 __start = __dynbuf.
data() + __offset;
2197 __end = __dynbuf.
data() + __dynbuf.
size();
2199 while (__builtin_expect(__res.ec == errc::value_too_large, 0));
2205 if (__builtin_signbit(__v))
2206 ranges::copy(string_view(
"-0x"), __start);
2208 ranges::copy(string_view(
"0x"), __start);
2214 for (
char* __p = __start; __p != __res.ptr; ++__p)
2219 if (!__builtin_signbit(__v))
2221 if (_M_spec._M_sign == _Sign_plus)
2223 else if (_M_spec._M_sign == _Sign_space)
2229 string_view __narrow_str(__start, __res.ptr - __start);
2233 if (_M_spec._M_alt && __builtin_isfinite(__v))
2235 string_view __s = __narrow_str;
2239 size_t __d = __s.find(
'.');
2240 if (__d != __s.npos)
2242 __p = __s.find(__expc, __d + 1);
2243 if (__p == __s.npos)
2247 if (__trailing_zeros)
2250 if (__s[__offset] !=
'0')
2252 __sigfigs = __p - __offset - 1;
2257 __sigfigs = __p - __s.find_first_not_of(
'0', __d + 1);
2262 __p = __s.find(__expc);
2263 if (__p == __s.npos)
2266 __sigfigs = __d - __offset;
2269 if (__trailing_zeros && __prec != 0)
2274 __z = __prec - __sigfigs;
2277 if (
size_t __extras =
int(__d == __p) + __z)
2279 if (__dynbuf.
empty() && __extras <=
size_t(__end - __res.ptr))
2283 __builtin_memmove(__start + __p + __extras,
2287 __start[__p++] =
'.';
2288 __builtin_memset(__start + __p,
'0', __z);
2289 __narrow_str = {__s.data(), __s.size() + __extras};
2293 __dynbuf.
reserve(__s.size() + __extras);
2294 if (__dynbuf.
empty())
2296 __dynbuf = __s.
substr(0, __p);
2300 __dynbuf.
append(__z,
'0');
2301 __dynbuf.
append(__s.substr(__p));
2305 __dynbuf.
insert(__p, __extras,
'0');
2307 __dynbuf[__p] =
'.';
2309 __narrow_str = __dynbuf;
2314 basic_string<_CharT> __wstr;
2315 basic_string_view<_CharT> __str;
2316 if constexpr (is_same_v<_CharT, char>)
2317 __str = __narrow_str;
2318#ifdef _GLIBCXX_USE_WCHAR_T
2323 __wstr = std::__to_wstring_numeric(__narrow_str);
2328 if (_M_spec._M_localized && __builtin_isfinite(__v))
2330 auto __s = _M_localize(__str, __expc, __offset, __fc.locale());
2335 size_t __width = _M_spec._M_get_width(__fc);
2337 if (__width <= __str.size())
2338 return __format::__write(__fc.out(), __str);
2340 char32_t __fill_char = _M_spec._M_fill;
2341 _Align __align = _M_spec._M_align;
2343 size_t __nfill = __width - __str.size();
2344 auto __out = __fc.out();
2345 if (__align == _Align_default)
2347 __align = _Align_right;
2348 if (_M_spec._M_zero_fill && __builtin_isfinite(__v))
2350 __fill_char = _CharT(
'0');
2353 __out = __format::__write(__out, __str.substr(0, __offset));
2354 __str.remove_prefix(__offset);
2358 __fill_char = _CharT(
' ');
2360 return __format::__write_padded(
std::move(__out), __str,
2361 __align, __nfill, __fill_char);
2365 basic_string<_CharT>
2366 _M_localize(basic_string_view<_CharT> __str,
char __expc,
2367 int __offset,
const locale& __loc)
const
2369 basic_string<_CharT> __lstr;
2371 if (__loc == locale::classic())
2374 const auto& __np = use_facet<numpunct<_CharT>>(__loc);
2375 const _CharT __point = __np.decimal_point();
2376 const string __grp = __np.grouping();
2378 _CharT __dot, __exp;
2379 if constexpr (is_same_v<_CharT, char>)
2402 __builtin_unreachable();
2406 if (__grp.empty() && __point == __dot)
2409 size_t __d = __str.find(__dot);
2410 size_t __e = min(__d, __str.find(__exp));
2411 if (__e == __str.npos)
2413 const size_t __r = __str.size() - __e;
2414 auto __overwrite = [&](_CharT* __p, size_t) {
2416 ranges::copy_n(__str.data(), __offset, __p);
2418 auto __end = std::__add_grouping(__p + __offset, __np.thousands_sep(),
2419 __grp.data(), __grp.size(),
2420 __str.data() + __offset,
2421 __str.data() + __e);
2424 if (__d != __str.npos)
2430 const size_t __rlen = __str.size() - __e;
2432 char_traits<_CharT>::copy(__end, __str.data() + __e, __rlen);
2435 return (__end - __p);
2437 __lstr.__resize_and_overwrite(__e * 2 + __r, __overwrite);
2441 _Spec<_CharT> _M_spec{};
2444 template<__format::__
char _CharT>
2445 struct __formatter_ptr
2448 __formatter_ptr() noexcept
2451 _M_spec._M_type = _Pres_x;
2452 _M_spec._M_alt =
true;
2456 __formatter_ptr(_Spec<_CharT> __spec) noexcept
2458 { _M_set_default(); }
2460 constexpr typename basic_format_parse_context<_CharT>::iterator
2461 parse(basic_format_parse_context<_CharT>& __pc)
2463 __format::_Spec<_CharT> __spec{};
2464 const auto __last = __pc.end();
2465 auto __first = __pc.begin();
2467 auto __finalize = [
this, &__spec] {
2472 auto __finished = [&] {
2473 if (__first == __last || *__first ==
'}')
2484 __first = __spec._M_parse_fill_and_align(__first, __last);
2490#if __glibcxx_format >= 202304L
2491 __first = __spec._M_parse_zero_fill(__first, __last);
2496 __first = __spec._M_parse_width(__first, __last, __pc);
2500 if (*__first ==
'p')
2502 __spec._M_type = _Pres_x;
2503 __spec._M_alt =
true;
2506#if __glibcxx_format >= 202304L
2507 else if (*__first ==
'P')
2509 __spec._M_type = _Pres_X;
2510 __spec._M_alt =
true;
2518 __format::__failed_to_parse_format_spec();
2521 template<
typename _Out>
2522 typename basic_format_context<_Out, _CharT>::iterator
2523 format(
const void* __v, basic_format_context<_Out, _CharT>& __fc)
const
2525 auto __u =
reinterpret_cast<__UINTPTR_TYPE__
>(__v);
2526 return __formatter_int<_CharT>(_M_spec).format(__u, __fc);
2530 [[__gnu__::__always_inline__]]
2534 if (_M_spec._M_type == _Pres_none)
2536 _M_spec._M_type = _Pres_x;
2537 _M_spec._M_alt =
true;
2541 __format::_Spec<_CharT> _M_spec;
2548 template<__format::__
char _CharT>
2549 struct formatter<_CharT, _CharT>
2551 formatter() =
default;
2553 constexpr typename basic_format_parse_context<_CharT>::iterator
2554 parse(basic_format_parse_context<_CharT>& __pc)
2556 return _M_f.template _M_parse<_CharT>(__pc);
2559 template<
typename _Out>
2560 typename basic_format_context<_Out, _CharT>::iterator
2561 format(_CharT __u, basic_format_context<_Out, _CharT>& __fc)
const
2563 if (_M_f._M_spec._M_type == __format::_Pres_c)
2564 return _M_f._M_format_character(__u, __fc);
2566 return _M_f.format(
static_cast<make_unsigned_t<_CharT>
>(__u), __fc);
2569#if __glibcxx_format_ranges
2571 set_debug_format() noexcept
2572 { _M_f._M_spec._M_debug =
true; }
2576 __format::__formatter_int<_CharT> _M_f;
2579#if __glibcxx_print >= 202403L
2580 template<__format::__
char _CharT>
2581 constexpr bool enable_nonlocking_formatter_optimization<_CharT> =
true;
2584#ifdef _GLIBCXX_USE_WCHAR_T
2587 struct formatter<char, wchar_t>
2589 formatter() =
default;
2591 constexpr typename basic_format_parse_context<wchar_t>::iterator
2592 parse(basic_format_parse_context<wchar_t>& __pc)
2594 return _M_f._M_parse<
char>(__pc);
2597 template<
typename _Out>
2598 typename basic_format_context<_Out, wchar_t>::iterator
2599 format(
char __u, basic_format_context<_Out, wchar_t>& __fc)
const
2601 if (_M_f._M_spec._M_type == __format::_Pres_c)
2602 return _M_f._M_format_character(__u, __fc);
2604 return _M_f.format(
static_cast<unsigned char>(__u), __fc);
2607#if __glibcxx_format_ranges
2609 set_debug_format() noexcept
2610 { _M_f._M_spec._M_debug =
true; }
2614 __format::__formatter_int<wchar_t> _M_f;
2621 template<__format::__
char _CharT>
2622 struct formatter<_CharT*, _CharT>
2624 formatter() =
default;
2626 [[__gnu__::__always_inline__]]
2627 constexpr typename basic_format_parse_context<_CharT>::iterator
2628 parse(basic_format_parse_context<_CharT>& __pc)
2629 {
return _M_f.parse(__pc); }
2631 template<
typename _Out>
2632 [[__gnu__::__nonnull__]]
2633 typename basic_format_context<_Out, _CharT>::iterator
2634 format(_CharT* __u, basic_format_context<_Out, _CharT>& __fc)
const
2635 {
return _M_f.format(__u, __fc); }
2637#if __glibcxx_format_ranges
2638 constexpr void set_debug_format() noexcept { _M_f.set_debug_format(); }
2642 __format::__formatter_str<_CharT> _M_f;
2645#if __glibcxx_print >= 202403L
2646 template<__format::__
char _CharT>
2647 constexpr bool enable_nonlocking_formatter_optimization<_CharT*> =
true;
2650 template<__format::__
char _CharT>
2651 struct formatter<const _CharT*, _CharT>
2653 formatter() =
default;
2655 [[__gnu__::__always_inline__]]
2656 constexpr typename basic_format_parse_context<_CharT>::iterator
2657 parse(basic_format_parse_context<_CharT>& __pc)
2658 {
return _M_f.parse(__pc); }
2660 template<
typename _Out>
2661 [[__gnu__::__nonnull__]]
2662 typename basic_format_context<_Out, _CharT>::iterator
2663 format(
const _CharT* __u,
2664 basic_format_context<_Out, _CharT>& __fc)
const
2665 {
return _M_f.format(__u, __fc); }
2667#if __glibcxx_format_ranges
2668 constexpr void set_debug_format() noexcept { _M_f.set_debug_format(); }
2672 __format::__formatter_str<_CharT> _M_f;
2675#if __glibcxx_print >= 202403L
2676 template<__format::__
char _CharT>
2678 enable_nonlocking_formatter_optimization<const _CharT*> =
true;
2681 template<__format::__
char _CharT,
size_t _Nm>
2682 struct formatter<_CharT[_Nm], _CharT>
2684 formatter() =
default;
2686 [[__gnu__::__always_inline__]]
2687 constexpr typename basic_format_parse_context<_CharT>::iterator
2688 parse(basic_format_parse_context<_CharT>& __pc)
2689 {
return _M_f.parse(__pc); }
2691 template<
typename _Out>
2692 typename basic_format_context<_Out, _CharT>::iterator
2693 format(
const _CharT (&__u)[_Nm],
2694 basic_format_context<_Out, _CharT>& __fc)
const
2695 {
return _M_f.format({__u, _Nm}, __fc); }
2697#if __glibcxx_format_ranges
2698 constexpr void set_debug_format() noexcept { _M_f.set_debug_format(); }
2702 __format::__formatter_str<_CharT> _M_f;
2705#if __glibcxx_print >= 202403L
2706 template<__format::__
char _CharT,
size_t _Nm>
2707 constexpr bool enable_nonlocking_formatter_optimization<_CharT[_Nm]> =
true;
2710 template<
typename _Traits,
typename _Alloc>
2711 struct formatter<
basic_string<char, _Traits, _Alloc>, char>
2713 formatter() =
default;
2715 [[__gnu__::__always_inline__]]
2716 constexpr typename basic_format_parse_context<char>::iterator
2717 parse(basic_format_parse_context<char>& __pc)
2718 {
return _M_f.parse(__pc); }
2720 template<
typename _Out>
2721 typename basic_format_context<_Out, char>::iterator
2722 format(
const basic_string<char, _Traits, _Alloc>& __u,
2723 basic_format_context<_Out, char>& __fc)
const
2724 {
return _M_f.format(__u, __fc); }
2726#if __glibcxx_format_ranges
2727 constexpr void set_debug_format() noexcept { _M_f.set_debug_format(); }
2731 __format::__formatter_str<char> _M_f;
2734#if __glibcxx_print >= 202403L
2735 template<
typename _Tr,
typename _Alloc>
2737 enable_nonlocking_formatter_optimization<basic_string<char, _Tr, _Alloc>>
2741#ifdef _GLIBCXX_USE_WCHAR_T
2742 template<
typename _Traits,
typename _Alloc>
2743 struct formatter<
basic_string<wchar_t, _Traits, _Alloc>, wchar_t>
2745 formatter() =
default;
2747 [[__gnu__::__always_inline__]]
2748 constexpr typename basic_format_parse_context<wchar_t>::iterator
2749 parse(basic_format_parse_context<wchar_t>& __pc)
2750 {
return _M_f.parse(__pc); }
2752 template<
typename _Out>
2753 typename basic_format_context<_Out, wchar_t>::iterator
2754 format(
const basic_string<wchar_t, _Traits, _Alloc>& __u,
2755 basic_format_context<_Out, wchar_t>& __fc)
const
2756 {
return _M_f.format(__u, __fc); }
2758#if __glibcxx_format_ranges
2759 constexpr void set_debug_format() noexcept { _M_f.set_debug_format(); }
2763 __format::__formatter_str<wchar_t> _M_f;
2766#if __glibcxx_print >= 202403L
2767 template<
typename _Tr,
typename _Alloc>
2769 enable_nonlocking_formatter_optimization<basic_string<wchar_t, _Tr, _Alloc>>
2775 template<
typename _Traits>
2778 formatter() =
default;
2780 [[__gnu__::__always_inline__]]
2781 constexpr typename basic_format_parse_context<char>::iterator
2782 parse(basic_format_parse_context<char>& __pc)
2783 {
return _M_f.parse(__pc); }
2785 template<
typename _Out>
2786 typename basic_format_context<_Out, char>::iterator
2787 format(basic_string_view<char, _Traits> __u,
2788 basic_format_context<_Out, char>& __fc)
const
2789 {
return _M_f.format(__u, __fc); }
2791#if __glibcxx_format_ranges
2792 constexpr void set_debug_format() noexcept { _M_f.set_debug_format(); }
2796 __format::__formatter_str<char> _M_f;
2799#if __glibcxx_print >= 202403L
2800 template<
typename _Tr>
2802 enable_nonlocking_formatter_optimization<basic_string_view<char, _Tr>>
2806#ifdef _GLIBCXX_USE_WCHAR_T
2807 template<
typename _Traits>
2810 formatter() =
default;
2812 [[__gnu__::__always_inline__]]
2813 constexpr typename basic_format_parse_context<wchar_t>::iterator
2814 parse(basic_format_parse_context<wchar_t>& __pc)
2815 {
return _M_f.parse(__pc); }
2817 template<
typename _Out>
2818 typename basic_format_context<_Out, wchar_t>::iterator
2819 format(basic_string_view<wchar_t, _Traits> __u,
2820 basic_format_context<_Out, wchar_t>& __fc)
const
2821 {
return _M_f.format(__u, __fc); }
2823#if __glibcxx_format_ranges
2824 constexpr void set_debug_format() noexcept { _M_f.set_debug_format(); }
2828 __format::__formatter_str<wchar_t> _M_f;
2831#if __glibcxx_print >= 202403L
2832 template<
typename _Tr>
2834 enable_nonlocking_formatter_optimization<basic_string_view<wchar_t, _Tr>>
2845 template<
typename _Tp>
2846 constexpr bool __is_formattable_integer = __is_integer<_Tp>::__value;
2848#if defined __SIZEOF_INT128__
2849 template<>
inline constexpr bool __is_formattable_integer<__int128> =
true;
2850 template<>
inline constexpr bool __is_formattable_integer<unsigned __int128>
2854 template<>
inline constexpr bool __is_formattable_integer<char> =
false;
2855 template<>
inline constexpr bool __is_formattable_integer<wchar_t> =
false;
2856#ifdef _GLIBCXX_USE_CHAR8_T
2857 template<>
inline constexpr bool __is_formattable_integer<char8_t> =
false;
2859 template<>
inline constexpr bool __is_formattable_integer<char16_t> =
false;
2860 template<>
inline constexpr bool __is_formattable_integer<char32_t> =
false;
2862 template<
typename _Tp>
2863 concept __formattable_integer = __is_formattable_integer<_Tp>;
2868 template<__format::__formattable_
integer _Tp, __format::__
char _CharT>
2869 struct formatter<_Tp, _CharT>
2871 formatter() =
default;
2873 [[__gnu__::__always_inline__]]
2874 constexpr typename basic_format_parse_context<_CharT>::iterator
2875 parse(basic_format_parse_context<_CharT>& __pc)
2877 return _M_f.template _M_parse<_Tp>(__pc);
2880 template<
typename _Out>
2881 typename basic_format_context<_Out, _CharT>::iterator
2882 format(_Tp __u, basic_format_context<_Out, _CharT>& __fc)
const
2883 {
return _M_f.format(__u, __fc); }
2886 __format::__formatter_int<_CharT> _M_f;
2889#if __glibcxx_print >= 202403L
2890 template<__format::__formattable_
integer _Tp>
2892 enable_nonlocking_formatter_optimization<_Tp> =
true;
2895#if defined __glibcxx_to_chars
2897 template<__format::__formattable_
float _Tp, __format::__
char _CharT>
2898 struct formatter<_Tp, _CharT>
2900 formatter() =
default;
2902 [[__gnu__::__always_inline__]]
2903 constexpr typename basic_format_parse_context<_CharT>::iterator
2904 parse(basic_format_parse_context<_CharT>& __pc)
2905 {
return _M_f.parse(__pc); }
2907 template<
typename _Out>
2908 typename basic_format_context<_Out, _CharT>::iterator
2909 format(_Tp __u, basic_format_context<_Out, _CharT>& __fc)
const
2910 {
return _M_f.format(__u, __fc); }
2913 __format::__formatter_fp<_CharT> _M_f;
2916#if __glibcxx_print >= 202403L
2917 template<__format::__formattable_
float _Tp>
2919 enable_nonlocking_formatter_optimization<_Tp> =
true;
2922#if __LDBL_MANT_DIG__ == __DBL_MANT_DIG__
2924 template<__format::__
char _CharT>
2925 struct formatter<long double, _CharT>
2927 formatter() =
default;
2929 [[__gnu__::__always_inline__]]
2930 constexpr typename basic_format_parse_context<_CharT>::iterator
2931 parse(basic_format_parse_context<_CharT>& __pc)
2932 {
return _M_f.parse(__pc); }
2934 template<
typename _Out>
2935 typename basic_format_context<_Out, _CharT>::iterator
2936 format(
long double __u, basic_format_context<_Out, _CharT>& __fc)
const
2937 {
return _M_f.format((
double)__u, __fc); }
2940 __format::__formatter_fp<_CharT> _M_f;
2944#if defined(__STDCPP_FLOAT16_T__) && defined(_GLIBCXX_FLOAT_IS_IEEE_BINARY32)
2946 template<__format::__
char _CharT>
2947 struct formatter<_Float16, _CharT>
2949 formatter() =
default;
2951 [[__gnu__::__always_inline__]]
2952 constexpr typename basic_format_parse_context<_CharT>::iterator
2953 parse(basic_format_parse_context<_CharT>& __pc)
2954 {
return _M_f.parse(__pc); }
2956 template<
typename _Out>
2957 typename basic_format_context<_Out, _CharT>::iterator
2958 format(_Float16 __u, basic_format_context<_Out, _CharT>& __fc)
const
2959 {
return _M_f.format((
float)__u, __fc); }
2962 __format::__formatter_fp<_CharT> _M_f;
2966#if defined(__FLT32_DIG__) && defined(_GLIBCXX_FLOAT_IS_IEEE_BINARY32)
2968 template<__format::__
char _CharT>
2969 struct formatter<_Float32, _CharT>
2971 formatter() =
default;
2973 [[__gnu__::__always_inline__]]
2974 constexpr typename basic_format_parse_context<_CharT>::iterator
2975 parse(basic_format_parse_context<_CharT>& __pc)
2976 {
return _M_f.parse(__pc); }
2978 template<
typename _Out>
2979 typename basic_format_context<_Out, _CharT>::iterator
2980 format(_Float32 __u, basic_format_context<_Out, _CharT>& __fc)
const
2981 {
return _M_f.format((
float)__u, __fc); }
2984 __format::__formatter_fp<_CharT> _M_f;
2988#if defined(__FLT64_DIG__) && defined(_GLIBCXX_DOUBLE_IS_IEEE_BINARY64)
2990 template<__format::__
char _CharT>
2991 struct formatter<_Float64, _CharT>
2993 formatter() =
default;
2995 [[__gnu__::__always_inline__]]
2996 constexpr typename basic_format_parse_context<_CharT>::iterator
2997 parse(basic_format_parse_context<_CharT>& __pc)
2998 {
return _M_f.parse(__pc); }
3000 template<
typename _Out>
3001 typename basic_format_context<_Out, _CharT>::iterator
3002 format(_Float64 __u, basic_format_context<_Out, _CharT>& __fc)
const
3003 {
return _M_f.format((
double)__u, __fc); }
3006 __format::__formatter_fp<_CharT> _M_f;
3010#if defined(__FLT128_DIG__) && _GLIBCXX_FORMAT_F128
3012 template<__format::__
char _CharT>
3013 struct formatter<_Float128, _CharT>
3015 formatter() =
default;
3017 [[__gnu__::__always_inline__]]
3018 constexpr typename basic_format_parse_context<_CharT>::iterator
3019 parse(basic_format_parse_context<_CharT>& __pc)
3020 {
return _M_f.parse(__pc); }
3022 template<
typename _Out>
3023 typename basic_format_context<_Out, _CharT>::iterator
3024 format(_Float128 __u, basic_format_context<_Out, _CharT>& __fc)
const
3025 {
return _M_f.format((__format::__flt128_t)__u, __fc); }
3028 __format::__formatter_fp<_CharT> _M_f;
3032#if defined(__SIZEOF_FLOAT128__) && _GLIBCXX_FORMAT_F128 == 2
3035 template<__format::__
char _CharT>
3036 struct formatter<__float128, _CharT>
3038 formatter() =
default;
3040 [[__gnu__::__always_inline__]]
3041 constexpr typename basic_format_parse_context<_CharT>::iterator
3042 parse(basic_format_parse_context<_CharT>& __pc)
3043 {
return _M_f.parse(__pc); }
3045 template<
typename _Out>
3046 typename basic_format_context<_Out, _CharT>::iterator
3047 format(__float128 __u, basic_format_context<_Out, _CharT>& __fc)
const
3048 {
return _M_f.format((__format::__flt128_t)__u, __fc); }
3051 __format::__formatter_fp<_CharT> _M_f;
3055#if defined(__STDCPP_BFLOAT16_T__) && defined(_GLIBCXX_FLOAT_IS_IEEE_BINARY32)
3057 template<__format::__
char _CharT>
3058 struct formatter<__format::__bflt16_t, _CharT>
3060 formatter() =
default;
3062 [[__gnu__::__always_inline__]]
3063 constexpr typename basic_format_parse_context<_CharT>::iterator
3064 parse(basic_format_parse_context<_CharT>& __pc)
3065 {
return _M_f.parse(__pc); }
3067 template<
typename _Out>
3068 typename basic_format_context<_Out, _CharT>::iterator
3069 format(__gnu_cxx::__bfloat16_t __u,
3070 basic_format_context<_Out, _CharT>& __fc)
const
3071 {
return _M_f.format((
float)__u, __fc); }
3074 __format::__formatter_fp<_CharT> _M_f;
3082 template<__format::__
char _CharT>
3083 struct formatter<const void*, _CharT>
3085 formatter() =
default;
3087 constexpr typename basic_format_parse_context<_CharT>::iterator
3088 parse(basic_format_parse_context<_CharT>& __pc)
3089 {
return _M_f.parse(__pc); }
3091 template<
typename _Out>
3092 typename basic_format_context<_Out, _CharT>::iterator
3093 format(
const void* __v, basic_format_context<_Out, _CharT>& __fc)
const
3094 {
return _M_f.format(__v, __fc); }
3097 __format::__formatter_ptr<_CharT> _M_f;
3100#if __glibcxx_print >= 202403L
3102 inline constexpr bool
3103 enable_nonlocking_formatter_optimization<const void*> =
true;
3106 template<__format::__
char _CharT>
3107 struct formatter<void*, _CharT>
3109 formatter() =
default;
3111 [[__gnu__::__always_inline__]]
3112 constexpr typename basic_format_parse_context<_CharT>::iterator
3113 parse(basic_format_parse_context<_CharT>& __pc)
3114 {
return _M_f.parse(__pc); }
3116 template<
typename _Out>
3117 typename basic_format_context<_Out, _CharT>::iterator
3118 format(
void* __v, basic_format_context<_Out, _CharT>& __fc)
const
3119 {
return _M_f.format(__v, __fc); }
3122 __format::__formatter_ptr<_CharT> _M_f;
3125#if __glibcxx_print >= 202403l
3127 inline constexpr bool
3128 enable_nonlocking_formatter_optimization<void*> =
true;
3131 template<__format::__
char _CharT>
3132 struct formatter<nullptr_t, _CharT>
3134 formatter() =
default;
3136 [[__gnu__::__always_inline__]]
3137 constexpr typename basic_format_parse_context<_CharT>::iterator
3138 parse(basic_format_parse_context<_CharT>& __pc)
3139 {
return _M_f.parse(__pc); }
3141 template<
typename _Out>
3142 typename basic_format_context<_Out, _CharT>::iterator
3143 format(nullptr_t, basic_format_context<_Out, _CharT>& __fc)
const
3144 {
return _M_f.format(
nullptr, __fc); }
3147 __format::__formatter_ptr<_CharT> _M_f;
3151#if __glibcxx_print >= 202403L
3153 inline constexpr bool
3154 enable_nonlocking_formatter_optimization<nullptr_t> =
true;
3157#if defined _GLIBCXX_USE_WCHAR_T && __glibcxx_format_ranges
3161 struct __formatter_disabled
3163 __formatter_disabled() =
delete;
3164 __formatter_disabled(
const __formatter_disabled&) =
delete;
3165 __formatter_disabled& operator=(
const __formatter_disabled&) =
delete;
3169 struct formatter<char*,
wchar_t>
3170 :
private __formatter_disabled { };
3172 struct formatter<const char*,
wchar_t>
3173 :
private __formatter_disabled { };
3174 template<
size_t _Nm>
3175 struct formatter<char[_Nm], wchar_t>
3176 :
private __formatter_disabled { };
3177 template<
class _Traits,
class _Allocator>
3178 struct formatter<
basic_string<char, _Traits, _Allocator>, wchar_t>
3179 :
private __formatter_disabled { };
3180 template<
class _Traits>
3182 :
private __formatter_disabled { };
3187 template<
typename _Out>
3188 struct format_to_n_result
3191 iter_difference_t<_Out> size;
3194_GLIBCXX_BEGIN_NAMESPACE_CONTAINER
3195template<
typename,
typename>
class vector;
3196_GLIBCXX_END_NAMESPACE_CONTAINER
3201 template<
typename _CharT>
3205 using iterator_category = output_iterator_tag;
3206 using value_type = void;
3207 using difference_type = ptrdiff_t;
3208 using pointer = void;
3209 using reference = void;
3211 _Drop_iter() =
default;
3212 _Drop_iter(
const _Drop_iter&) =
default;
3213 _Drop_iter& operator=(
const _Drop_iter&) =
default;
3215 [[__gnu__::__always_inline__]]
3216 constexpr _Drop_iter&
3217 operator=(_CharT __c)
3220 [[__gnu__::__always_inline__]]
3221 constexpr _Drop_iter&
3222 operator=(basic_string_view<_CharT> __s)
3225 [[__gnu__::__always_inline__]]
3226 constexpr _Drop_iter&
3229 [[__gnu__::__always_inline__]]
3230 constexpr _Drop_iter&
3231 operator++() {
return *
this; }
3233 [[__gnu__::__always_inline__]]
3234 constexpr _Drop_iter
3235 operator++(
int) {
return *
this; }
3238 template<
typename _CharT>
3241 _Sink<_CharT>* _M_sink =
nullptr;
3244 using iterator_category = output_iterator_tag;
3245 using value_type = void;
3246 using difference_type = ptrdiff_t;
3247 using pointer = void;
3248 using reference = void;
3250 _Sink_iter() =
default;
3251 _Sink_iter(
const _Sink_iter&) =
default;
3252 _Sink_iter& operator=(
const _Sink_iter&) =
default;
3254 [[__gnu__::__always_inline__]]
3256 _Sink_iter(_Sink<_CharT>& __sink) : _M_sink(std::
addressof(__sink)) { }
3258 [[__gnu__::__always_inline__]]
3259 constexpr _Sink_iter&
3260 operator=(_CharT __c)
3262 _M_sink->_M_write(__c);
3266 [[__gnu__::__always_inline__]]
3267 constexpr _Sink_iter&
3268 operator=(basic_string_view<_CharT> __s)
3270 _M_sink->_M_write(__s);
3274 [[__gnu__::__always_inline__]]
3275 constexpr _Sink_iter&
3278 [[__gnu__::__always_inline__]]
3279 constexpr _Sink_iter&
3280 operator++() {
return *
this; }
3282 [[__gnu__::__always_inline__]]
3283 constexpr _Sink_iter
3284 operator++(
int) {
return *
this; }
3287 _M_reserve(
size_t __n)
const
3288 {
return _M_sink->_M_reserve(__n); }
3291 _M_discarding()
const
3292 {
return _M_sink->_M_discarding(); }
3298 template<
typename _CharT>
3301 friend class _Sink_iter<_CharT>;
3303 span<_CharT> _M_span;
3304 typename span<_CharT>::iterator _M_next;
3310 virtual void _M_overflow() = 0;
3314 [[__gnu__::__always_inline__]]
3316 _Sink(span<_CharT> __span) noexcept
3317 : _M_span(__span), _M_next(__span.begin())
3321 [[__gnu__::__always_inline__]]
3323 _M_used() const noexcept
3324 {
return _M_span.first(_M_next - _M_span.begin()); }
3327 [[__gnu__::__always_inline__]]
3328 constexpr span<_CharT>
3329 _M_unused() const noexcept
3330 {
return _M_span.subspan(_M_next - _M_span.begin()); }
3333 [[__gnu__::__always_inline__]]
3335 _M_rewind() noexcept
3336 { _M_next = _M_span.begin(); }
3340 _M_reset(span<_CharT> __s,
size_t __pos = 0) noexcept
3343 _M_next = __s.begin() + __pos;
3348 _M_write(_CharT __c)
3351 if (_M_next - _M_span.begin() == std::ssize(_M_span)) [[unlikely]]
3356 _M_write(basic_string_view<_CharT> __s)
3358 span __to = _M_unused();
3359 while (__to.size() <= __s.size())
3361 __s.copy(__to.data(), __to.size());
3362 _M_next += __to.size();
3363 __s.remove_prefix(__to.size());
3369 __s.copy(__to.data(), __s.size());
3370 _M_next += __s.size();
3379 explicit operator bool() const noexcept {
return _M_sink; }
3381 _CharT* get() const noexcept {
return _M_sink->_M_next.operator->(); }
3383 void _M_bump(
size_t __n) { _M_sink->_M_bump(__n); }
3391 virtual _Reservation
3392 _M_reserve(
size_t __n)
3394 if (__n <= _M_unused().size())
3397 if (__n <= _M_span.size())
3400 if (__n <= _M_unused().size())
3414 _M_discarding()
const
3418 _Sink(
const _Sink&) =
delete;
3419 _Sink& operator=(
const _Sink&) =
delete;
3421 [[__gnu__::__always_inline__]]
3422 constexpr _Sink_iter<_CharT>
3424 {
return _Sink_iter<_CharT>(*
this); }
3428 template<
typename _CharT>
3429 class _Fixedbuf_sink final :
public _Sink<_CharT>
3432 _M_overflow()
override
3434 __glibcxx_assert(
false);
3439 [[__gnu__::__always_inline__]]
3441 _Fixedbuf_sink(span<_CharT> __buf)
3442 : _Sink<_CharT>(__buf)
3445 constexpr basic_string_view<_CharT>
3448 auto __s = this->_M_used();
3449 return basic_string_view<_CharT>(__s.data(), __s.size());
3454 template<
typename _CharT>
3455 class _Buf_sink :
public _Sink<_CharT>
3458 _CharT _M_buf[__stackbuf_size<_CharT>];
3460 [[__gnu__::__always_inline__]]
3462 _Buf_sink() noexcept
3463 : _Sink<_CharT>(_M_buf)
3467 using _GLIBCXX_STD_C::vector;
3471 template<
typename _Seq>
3472 class _Seq_sink :
public _Buf_sink<typename _Seq::value_type>
3474 using _CharT =
typename _Seq::value_type;
3480 _M_overflow()
override
3482 auto __s = this->_M_used();
3483 if (__s.empty()) [[unlikely]]
3487 _GLIBCXX_DEBUG_ASSERT(__s.data() != _M_seq.data());
3489 if constexpr (__is_specialization_of<_Seq, basic_string>)
3490 _M_seq.append(__s.data(), __s.size());
3492 _M_seq.insert(_M_seq.end(), __s.begin(), __s.end());
3498 typename _Sink<_CharT>::_Reservation
3499 _M_reserve(
size_t __n)
override
3508 if constexpr (__is_specialization_of<_Seq, basic_string>
3509 || __is_specialization_of<_Seq, vector>)
3512 if (this->_M_used().size()) [[unlikely]]
3513 _Seq_sink::_M_overflow();
3516 const auto __sz = _M_seq.size();
3517 if constexpr (is_same_v<string, _Seq> || is_same_v<wstring, _Seq>)
3518 _M_seq.__resize_and_overwrite(__sz + __n,
3519 [](
auto,
auto __n2) {
3523 _M_seq.resize(__sz + __n);
3527 this->_M_reset(_M_seq, __sz);
3531 return _Sink<_CharT>::_M_reserve(__n);
3535 _M_bump(
size_t __n)
override
3537 if constexpr (__is_specialization_of<_Seq, basic_string>
3538 || __is_specialization_of<_Seq, vector>)
3540 auto __s = this->_M_used();
3541 _GLIBCXX_DEBUG_ASSERT(__s.data() == _M_seq.data());
3543 _M_seq.resize(__s.size() + __n);
3545 this->_M_reset(this->_M_buf);
3549 void _M_trim(span<const _CharT> __s)
3550 requires __is_specialization_of<_Seq, basic_string>
3552 _GLIBCXX_DEBUG_ASSERT(__s.data() == this->_M_buf
3553 || __s.data() == _M_seq.data());
3554 if (__s.data() == _M_seq.data())
3555 _M_seq.resize(__s.size());
3557 this->_M_reset(this->_M_buf, __s.size());
3564 [[__gnu__::__always_inline__]]
3565 _Seq_sink() noexcept(is_nothrow_default_constructible_v<_Seq>)
3568 _Seq_sink(_Seq&& __s)
noexcept(is_nothrow_move_constructible_v<_Seq>)
3569 : _M_seq(std::move(__s))
3572 using _Sink<_CharT>::out;
3577 if (this->_M_used().size() != 0)
3578 _Seq_sink::_M_overflow();
3587 auto __s = this->_M_used();
3590 if (__s.size() != 0)
3591 _Seq_sink::_M_overflow();
3597 basic_string_view<_CharT>
3600 auto __span = _M_span();
3601 return basic_string_view<_CharT>(__span.data(), __span.size());
3605 template<
typename _CharT,
typename _Alloc = allocator<_CharT>>
3607 = _Seq_sink<basic_string<_CharT, char_traits<_CharT>, _Alloc>>;
3613 template<
typename _CharT,
typename _OutIter>
3614 class _Iter_sink :
public _Buf_sink<_CharT>
3617 iter_difference_t<_OutIter> _M_max;
3620 size_t _M_count = 0;
3623 _M_overflow()
override
3625 auto __s = this->_M_used();
3627 _M_out = ranges::copy(__s,
std::move(_M_out)).out;
3628 else if (_M_count <
static_cast<size_t>(_M_max))
3630 auto __max = _M_max - _M_count;
3631 span<_CharT> __first;
3632 if (__max < __s.size())
3633 __first = __s.first(
static_cast<size_t>(__max));
3636 _M_out = ranges::copy(__first,
std::move(_M_out)).out;
3639 _M_count += __s.size();
3643 _M_discarding()
const override
3651 [[__gnu__::__always_inline__]]
3653 _Iter_sink(_OutIter __out, iter_difference_t<_OutIter> __max = -1)
3654 : _M_out(std::move(__out)), _M_max(__max)
3657 using _Sink<_CharT>::out;
3659 format_to_n_result<_OutIter>
3662 if (this->_M_used().size() != 0)
3663 _Iter_sink::_M_overflow();
3664 iter_difference_t<_OutIter> __count(_M_count);
3676 template<
typename _CharT>
3677 class _Ptr_sink :
public _Sink<_CharT>
3679 static constexpr size_t _S_no_limit = size_t(-1);
3683 size_t _M_count = 0;
3689 _M_overflow()
override
3691 if (this->_M_unused().size() != 0)
3694 auto __s = this->_M_used();
3696 if (_M_max != _S_no_limit)
3698 _M_count += __s.size();
3702 this->_M_reset(this->_M_buf);
3708 _M_rebuf(__s.data(), __s.size() + 1024, __s.size());
3713 _M_discarding()
const override
3720 typename _Sink<_CharT>::_Reservation
3721 _M_reserve(
size_t __n)
final
3723 auto __avail = this->_M_unused();
3724 if (__n > __avail.size())
3726 if (_M_max != _S_no_limit)
3729 auto __s = this->_M_used();
3730 _M_rebuf(__s.data(), __s.size() + __n, __s.size());
3736 template<
typename _IterDifference>
3738 _S_trim_max(_IterDifference __max)
3742 if constexpr (!is_integral_v<_IterDifference> ||
sizeof(__max) >
sizeof(size_t))
3744 if (_IterDifference((
size_t)-1) < __max)
3746 return size_t(__max);
3749 [[__gnu__::__always_inline__]]
3751 _M_rebuf(_CharT* __ptr,
size_t __total,
size_t __inuse = 0)
3753 std::span<_CharT> __span(__ptr, __total);
3754 this->_M_reset(__span, __inuse);
3759 _Ptr_sink(_CharT* __ptr,
size_t __n = _S_no_limit) noexcept
3760 : _Sink<_CharT>(_M_buf), _M_max(__n)
3764 else if (__n != _S_no_limit)
3765 _M_rebuf(__ptr, __n);
3766#if __has_builtin(__builtin_dynamic_object_size)
3767 else if (
size_t __bytes = __builtin_dynamic_object_size(__ptr, 2))
3768 _M_rebuf(__ptr, __bytes /
sizeof(_CharT));
3773 const auto __off =
reinterpret_cast<__UINTPTR_TYPE__
>(__ptr) % 1024;
3774 __n = (1024 - __off) /
sizeof(_CharT);
3775 if (__n > 0) [[likely]]
3776 _M_rebuf(__ptr, __n);
3782 template<contiguous_iterator _OutIter>
3784 _Ptr_sink(_OutIter __out, iter_difference_t<_OutIter> __n = -1)
3785 : _Ptr_sink(std::
to_address(__out), _S_trim_max(__n))
3788 template<contiguous_iterator _OutIter>
3789 format_to_n_result<_OutIter>
3790 _M_finish(_OutIter __first)
const
3792 auto __s = this->_M_used();
3793 if (__s.data() == _M_buf)
3796 iter_difference_t<_OutIter> __m(_M_max);
3797 iter_difference_t<_OutIter> __count(_M_count + __s.size());
3798 return { __first + __m, __count };
3802 iter_difference_t<_OutIter> __count(__s.size());
3803 return { __first + __count, __count };
3808 template<
typename _CharT,
typename _OutIter>
3809 concept __contiguous_char_iter
3810 = contiguous_iterator<_OutIter>
3811 && same_as<iter_value_t<_OutIter>, _CharT>;
3822 template<
typename _Out,
typename _CharT>
3823 class _Padding_sink :
public _Str_sink<_CharT>
3828 size_t _M_printwidth;
3830 [[__gnu__::__always_inline__]]
3833 {
return _M_printwidth >= _M_maxwidth; }
3835 [[__gnu__::__always_inline__]]
3837 _M_buffering()
const
3839 if (_M_printwidth < _M_padwidth)
3841 if (_M_maxwidth != (
size_t)-1)
3842 return _M_printwidth < _M_maxwidth;
3847 _M_sync_discarding()
3849 if constexpr (is_same_v<_Out, _Sink_iter<_CharT>>)
3850 if (_M_out._M_discarding())
3851 _M_maxwidth = _M_printwidth;
3857 span<_CharT> __new = this->_M_used();
3858 basic_string_view<_CharT> __str(__new.data(), __new.size());
3859 _M_out = __format::__write(
std::move(_M_out), __str);
3860 _M_sync_discarding();
3867 auto __str = this->view();
3869 _M_printwidth = __format::__truncate(__str, _M_maxwidth);
3871 this->_M_trim(__str);
3877 if (_M_printwidth >= _M_padwidth)
3879 _M_out = __format::__write(
std::move(_M_out), __str);
3880 _M_sync_discarding();
3885 _Str_sink<_CharT>::_M_overflow();
3888 this->_M_reset(this->_M_buf);
3893 _M_update(
size_t __new)
3895 _M_printwidth += __new;
3897 if (_M_printwidth >= _M_padwidth || _M_printwidth >= _M_maxwidth)
3898 return _M_force_update();
3903 _M_overflow()
override
3909 else if (!_M_buffering())
3913 else if (_M_update(this->_M_used().size()))
3914 _Str_sink<_CharT>::_M_overflow();
3918 _M_discarding()
const override
3919 {
return _M_ignoring(); }
3921 typename _Sink<_CharT>::_Reservation
3922 _M_reserve(
size_t __n)
override
3927 else if constexpr (is_same_v<_Out, _Sink_iter<_CharT>>)
3928 if (!_M_buffering())
3931 if (!this->_M_used().empty())
3934 if (
auto __reserved = _M_out._M_reserve(__n))
3937 return _Sink<_CharT>::_M_reserve(__n);
3941 _M_bump(
size_t __n)
override
3948 _Sink<_CharT>::_M_bump(__n);
3954 [[__gnu__::__always_inline__]]
3956 _Padding_sink(_Out __out,
size_t __padwidth,
size_t __maxwidth)
3957 : _M_padwidth(__padwidth), _M_maxwidth(__maxwidth),
3958 _M_out(std::move(__out)), _M_printwidth(0)
3959 { _M_sync_discarding(); }
3961 [[__gnu__::__always_inline__]]
3963 _Padding_sink(_Out __out,
size_t __padwidth)
3964 : _Padding_sink(std::move(__out), __padwidth, (size_t)-1)
3968 _M_finish(_Align __align,
char32_t __fill_char)
3971 if (
auto __rem = this->_M_used().size())
3975 else if (!_M_buffering())
3981 if (!_M_buffering() || !_M_force_update())
3983 if (_M_printwidth >= _M_padwidth)
3986 const auto __str = this->view();
3987 if (_M_printwidth >= _M_padwidth)
3988 return __format::__write(
std::move(_M_out), __str);
3990 const size_t __nfill = _M_padwidth - _M_printwidth;
3991 return __format::__write_padded(
std::move(_M_out), __str,
3992 __align, __nfill, __fill_char);
3996 template<
typename _Out,
typename _CharT>
3997 class _Escaping_sink :
public _Buf_sink<_CharT>
3999 using _Esc = _Escapes<_CharT>;
4002 _Term_char _M_term : 2;
4003 unsigned _M_prev_escape : 1;
4004 unsigned _M_out_discards : 1;
4007 _M_sync_discarding()
4009 if constexpr (is_same_v<_Out, _Sink_iter<_CharT>>)
4010 _M_out_discards = _M_out._M_discarding();
4016 span<_CharT> __bytes = this->_M_used();
4017 basic_string_view<_CharT> __str(__bytes.data(), __bytes.size());
4020 if constexpr (__unicode::__literal_encoding_is_unicode<_CharT>())
4022 bool __prev_escape = _M_prev_escape;
4023 _M_out = __format::__write_escaped_unicode_part(
4024 std::move(_M_out), __str, __prev_escape, _M_term);
4025 _M_prev_escape = __prev_escape;
4027 __rem = __str.size();
4028 if (__rem > 0 && __str.data() != this->_M_buf) [[unlikely]]
4029 ranges::move(__str, this->_M_buf);
4032 _M_out = __format::__write_escaped_ascii(
4035 this->_M_reset(this->_M_buf, __rem);
4036 _M_sync_discarding();
4040 _M_overflow()
override
4042 if (_M_out_discards)
4049 _M_discarding()
const override
4050 {
return _M_out_discards; }
4053 [[__gnu__::__always_inline__]]
4055 _Escaping_sink(_Out __out, _Term_char __term)
4056 : _M_out(std::move(__out)), _M_term(__term),
4057 _M_prev_escape(true), _M_out_discards(false)
4059 _M_out = __format::__write(
std::move(_M_out), _Esc::_S_term(_M_term));
4060 _M_sync_discarding();
4066 if (_M_out_discards)
4069 if (!this->_M_used().empty())
4072 if constexpr (__unicode::__literal_encoding_is_unicode<_CharT>())
4073 if (
auto __rem = this->_M_used(); !__rem.empty())
4075 basic_string_view<_CharT> __str(__rem.data(), __rem.size());
4076 _M_out = __format::__write_escape_seqs(
std::move(_M_out), __str);
4079 return __format::__write(
std::move(_M_out), _Esc::_S_term(_M_term));
4083 enum class _Arg_t :
unsigned char {
4084 _Arg_none, _Arg_bool, _Arg_c, _Arg_i, _Arg_u, _Arg_ll, _Arg_ull,
4085 _Arg_flt, _Arg_dbl, _Arg_ldbl, _Arg_str, _Arg_sv, _Arg_ptr, _Arg_handle,
4086 _Arg_i128, _Arg_u128, _Arg_float128,
4087 _Arg_bf16, _Arg_f16, _Arg_f32, _Arg_f64,
4090#ifdef _GLIBCXX_LONG_DOUBLE_ALT128_COMPAT
4091 _Arg_ibm128 = _Arg_ldbl,
4092 _Arg_ieee128 = _Arg_float128,
4097 template<
typename _Context>
4100 using _CharT =
typename _Context::char_type;
4104 using _CharT =
typename _Context::char_type;
4105 using _Func = void(*)(basic_format_parse_context<_CharT>&,
4106 _Context&,
const void*);
4109 template<
typename _Tp>
4110 using __maybe_const_t
4111 = __conditional_t<__formattable_with<const _Tp, _Context>,
4114 template<
typename _Tq>
4116 _S_format(basic_format_parse_context<_CharT>& __parse_ctx,
4117 _Context& __format_ctx,
const void* __ptr)
4119 using _Td = remove_const_t<_Tq>;
4120 typename _Context::template formatter_type<_Td> __f;
4121 __parse_ctx.advance_to(__f.parse(__parse_ctx));
4122 _Tq& __val = *
const_cast<_Tq*
>(
static_cast<const _Td*
>(__ptr));
4123 __format_ctx.advance_to(__f.format(__val, __format_ctx));
4126 template<
typename _Tp>
4127 requires (!is_same_v<remove_cv_t<_Tp>, handle>)
4129 handle(_Tp& __val) noexcept
4130 : _M_ptr(__builtin_addressof(__val))
4131 , _M_func(&_S_format<__maybe_const_t<_Tp>>)
4134 friend class basic_format_arg<_Context>;
4137 handle(
const handle&) =
default;
4138 handle& operator=(
const handle&) =
default;
4140 [[__gnu__::__always_inline__]]
4142 format(basic_format_parse_context<_CharT>& __pc, _Context& __fc)
const
4143 { _M_func(__pc, __fc, this->_M_ptr); }
4158 unsigned long long _M_ull;
4161#ifndef _GLIBCXX_LONG_DOUBLE_ALT128_COMPAT
4162 long double _M_ldbl;
4165 __ieee128 _M_ieee128;
4167#ifdef __SIZEOF_FLOAT128__
4168 __float128 _M_float128;
4170 const _CharT* _M_str;
4171 basic_string_view<_CharT> _M_sv;
4174#ifdef __SIZEOF_INT128__
4176 unsigned __int128 _M_u128;
4178#ifdef __BFLT16_DIG__
4192 [[__gnu__::__always_inline__]]
4193 _Arg_value() : _M_none() { }
4196 template<
typename _Tp>
4197 _Arg_value(in_place_type_t<_Tp>, _Tp __val)
4198 { _S_get<_Tp>() = __val; }
4203 template<
typename _Tp,
typename _Self,
typename... _Value>
4204 [[__gnu__::__always_inline__]]
4206 _S_access(_Self& __u, _Value... __value)
noexcept
4208 static_assert(
sizeof...(_Value) <= 1);
4209 if constexpr (is_same_v<_Tp, bool>)
4210 return (__u._M_bool = ... = __value);
4211 else if constexpr (is_same_v<_Tp, _CharT>)
4212 return (__u._M_c = ... = __value);
4213 else if constexpr (is_same_v<_Tp, int>)
4214 return (__u._M_i = ... = __value);
4215 else if constexpr (is_same_v<_Tp, unsigned>)
4216 return (__u._M_u = ... = __value);
4217 else if constexpr (is_same_v<_Tp, long long>)
4218 return (__u._M_ll = ... = __value);
4219 else if constexpr (is_same_v<_Tp, unsigned long long>)
4220 return (__u._M_ull = ... = __value);
4221 else if constexpr (is_same_v<_Tp, float>)
4222 return (__u._M_flt = ... = __value);
4223 else if constexpr (is_same_v<_Tp, double>)
4224 return (__u._M_dbl = ... = __value);
4225#ifndef _GLIBCXX_LONG_DOUBLE_ALT128_COMPAT
4226 else if constexpr (is_same_v<_Tp, long double>)
4227 return (__u._M_ldbl = ... = __value);
4229 else if constexpr (is_same_v<_Tp, __ibm128>)
4230 return (__u._M_ibm128 = ... = __value);
4231 else if constexpr (is_same_v<_Tp, __ieee128>)
4232 return (__u._M_ieee128 = ... = __value);
4234#ifdef __SIZEOF_FLOAT128__
4235 else if constexpr (is_same_v<_Tp, __float128>)
4236 return (__u._M_float128 = ... = __value);
4238 else if constexpr (is_same_v<_Tp, const _CharT*>)
4239 return (__u._M_str = ... = __value);
4240 else if constexpr (is_same_v<_Tp, basic_string_view<_CharT>>)
4241 return (__u._M_sv = ... = __value);
4242 else if constexpr (is_same_v<_Tp, const void*>)
4243 return (__u._M_ptr = ... = __value);
4244#ifdef __SIZEOF_INT128__
4245 else if constexpr (is_same_v<_Tp, __int128>)
4246 return (__u._M_i128 = ... = __value);
4247 else if constexpr (is_same_v<_Tp, unsigned __int128>)
4248 return (__u._M_u128 = ... = __value);
4250#ifdef __BFLT16_DIG__
4251 else if constexpr (is_same_v<_Tp, __bflt16_t>)
4252 return (__u._M_bf16 = ... = __value);
4255 else if constexpr (is_same_v<_Tp, _Float16>)
4256 return (__u._M_f16 = ... = __value);
4259 else if constexpr (is_same_v<_Tp, _Float32>)
4260 return (__u._M_f32 = ... = __value);
4263 else if constexpr (is_same_v<_Tp, _Float64>)
4264 return (__u._M_f64 = ... = __value);
4266 else if constexpr (is_same_v<_Tp, handle>)
4267 return __u._M_handle;
4271 template<
typename _Tp>
4272 [[__gnu__::__always_inline__]]
4275 {
return _S_access<_Tp>(*
this); }
4277 template<
typename _Tp>
4278 [[__gnu__::__always_inline__]]
4280 _M_get() const noexcept
4281 {
return _S_access<_Tp>(*
this); }
4283 template<
typename _Tp>
4284 [[__gnu__::__always_inline__]]
4286 _M_set(_Tp __v)
noexcept
4289 if constexpr (is_same_v<_Tp, basic_string_view<_CharT>>)
4290 std::construct_at(&_M_sv, __v);
4291 else if constexpr (is_same_v<_Tp, handle>)
4292 std::construct_at(&_M_handle, __v);
4296 _S_access<_Tp>(*
this, __v);
4301 template<
typename _Context,
typename... _Args>
4304 template<
typename _Visitor,
typename _Ctx>
4305 decltype(
auto) __visit_format_arg(_Visitor&&, basic_format_arg<_Ctx>);
4307 template<
typename _Ch,
typename _Tp>
4309 __to_arg_t_enum() noexcept;
4313 template<typename _Context>
4314 class basic_format_arg
4316 using _CharT =
typename _Context::char_type;
4319 using handle = __format::_Arg_value<_Context>::handle;
4321 [[__gnu__::__always_inline__]]
4322 basic_format_arg() noexcept : _M_type(__format::_Arg_none) { }
4324 [[nodiscard,__gnu__::__always_inline__]]
4325 explicit operator bool() const noexcept
4326 {
return _M_type != __format::_Arg_none; }
4328#if __cpp_lib_format >= 202306L
4329 template<
typename _Visitor>
4331 visit(
this basic_format_arg __arg, _Visitor&& __vis)
4334 template<
typename _Res,
typename _Visitor>
4336 visit(
this basic_format_arg __arg, _Visitor&& __vis)
4341 template<
typename _Ctx>
4342 friend class basic_format_args;
4344 template<
typename _Ctx,
typename... _Args>
4345 friend class __format::_Arg_store;
4347 static_assert(is_trivially_copyable_v<__format::_Arg_value<_Context>>);
4349 __format::_Arg_value<_Context> _M_val;
4350 __format::_Arg_t _M_type;
4355 template<
typename _Tp>
4356 static consteval auto
4359 using _Td = remove_const_t<_Tp>;
4360 if constexpr (is_same_v<_Td, bool>)
4361 return type_identity<bool>();
4362 else if constexpr (is_same_v<_Td, _CharT>)
4363 return type_identity<_CharT>();
4364 else if constexpr (is_same_v<_Td, char> && is_same_v<_CharT, wchar_t>)
4365 return type_identity<_CharT>();
4366#ifdef __SIZEOF_INT128__
4367 else if constexpr (is_same_v<_Td, __int128>)
4368 return type_identity<__int128>();
4369 else if constexpr (is_same_v<_Td, unsigned __int128>)
4370 return type_identity<unsigned __int128>();
4372 else if constexpr (__is_signed_integer<_Td>::value)
4374 if constexpr (
sizeof(_Td) <=
sizeof(int))
4375 return type_identity<int>();
4376 else if constexpr (
sizeof(_Td) <=
sizeof(
long long))
4377 return type_identity<long long>();
4379 else if constexpr (__is_unsigned_integer<_Td>::value)
4381 if constexpr (
sizeof(_Td) <=
sizeof(unsigned))
4382 return type_identity<unsigned>();
4383 else if constexpr (
sizeof(_Td) <=
sizeof(
unsigned long long))
4384 return type_identity<unsigned long long>();
4386 else if constexpr (is_same_v<_Td, float>)
4387 return type_identity<float>();
4388 else if constexpr (is_same_v<_Td, double>)
4389 return type_identity<double>();
4390#ifndef _GLIBCXX_LONG_DOUBLE_ALT128_COMPAT
4391 else if constexpr (is_same_v<_Td, long double>)
4392 return type_identity<long double>();
4394 else if constexpr (is_same_v<_Td, __ibm128>)
4395 return type_identity<__ibm128>();
4396 else if constexpr (is_same_v<_Td, __ieee128>)
4397 return type_identity<__ieee128>();
4399#if defined(__SIZEOF_FLOAT128__) && _GLIBCXX_FORMAT_F128
4400 else if constexpr (is_same_v<_Td, __float128>)
4401 return type_identity<__float128>();
4403#if defined(__STDCPP_BFLOAT16_T__) && defined(_GLIBCXX_FLOAT_IS_IEEE_BINARY32)
4404 else if constexpr (is_same_v<_Td, __format::__bflt16_t>)
4405 return type_identity<__format::__bflt16_t>();
4407#if defined(__STDCPP_FLOAT16_T__) && defined(_GLIBCXX_FLOAT_IS_IEEE_BINARY32)
4408 else if constexpr (is_same_v<_Td, _Float16>)
4409 return type_identity<_Float16>();
4411#if defined(__FLT32_DIG__) && defined(_GLIBCXX_FLOAT_IS_IEEE_BINARY32)
4412 else if constexpr (is_same_v<_Td, _Float32>)
4413 return type_identity<_Float32>();
4415#if defined(__FLT64_DIG__) && defined(_GLIBCXX_DOUBLE_IS_IEEE_BINARY64)
4416 else if constexpr (is_same_v<_Td, _Float64>)
4417 return type_identity<_Float64>();
4419 else if constexpr (__is_specialization_of<_Td, basic_string_view>
4420 || __is_specialization_of<_Td, basic_string>)
4422 if constexpr (is_same_v<typename _Td::value_type, _CharT>)
4423 return type_identity<basic_string_view<_CharT>>();
4425 return type_identity<handle>();
4427 else if constexpr (is_same_v<decay_t<_Td>,
const _CharT*>)
4428 return type_identity<const _CharT*>();
4429 else if constexpr (is_same_v<decay_t<_Td>, _CharT*>)
4430 return type_identity<const _CharT*>();
4431 else if constexpr (is_void_v<remove_pointer_t<_Td>>)
4432 return type_identity<const void*>();
4433 else if constexpr (is_same_v<_Td, nullptr_t>)
4434 return type_identity<const void*>();
4436 return type_identity<handle>();
4440 template<
typename _Tp>
4441 using _Normalize =
typename decltype(_S_to_arg_type<_Tp>())::type;
4444 template<
typename _Tp>
4445 static consteval __format::_Arg_t
4448 using namespace __format;
4449 if constexpr (is_same_v<_Tp, bool>)
4451 else if constexpr (is_same_v<_Tp, _CharT>)
4453 else if constexpr (is_same_v<_Tp, int>)
4455 else if constexpr (is_same_v<_Tp, unsigned>)
4457 else if constexpr (is_same_v<_Tp, long long>)
4459 else if constexpr (is_same_v<_Tp, unsigned long long>)
4461 else if constexpr (is_same_v<_Tp, float>)
4463 else if constexpr (is_same_v<_Tp, double>)
4465#ifndef _GLIBCXX_LONG_DOUBLE_ALT128_COMPAT
4466 else if constexpr (is_same_v<_Tp, long double>)
4470 else if constexpr (is_same_v<_Tp, __ibm128>)
4472 else if constexpr (is_same_v<_Tp, __ieee128>)
4473 return _Arg_ieee128;
4475#if defined(__SIZEOF_FLOAT128__) && _GLIBCXX_FORMAT_F128
4476 else if constexpr (is_same_v<_Tp, __float128>)
4477 return _Arg_float128;
4479#if defined(__STDCPP_BFLOAT16_T__) && defined(_GLIBCXX_FLOAT_IS_IEEE_BINARY32)
4480 else if constexpr (is_same_v<_Tp, __format::__bflt16_t>)
4483#if defined(__STDCPP_FLOAT16_T__) && defined(_GLIBCXX_FLOAT_IS_IEEE_BINARY32)
4484 else if constexpr (is_same_v<_Tp, _Float16>)
4487#if defined(__FLT32_DIG__) && defined(_GLIBCXX_FLOAT_IS_IEEE_BINARY32)
4488 else if constexpr (is_same_v<_Tp, _Float32>)
4491#if defined(__FLT64_DIG__) && defined(_GLIBCXX_DOUBLE_IS_IEEE_BINARY64)
4492 else if constexpr (is_same_v<_Tp, _Float64>)
4495 else if constexpr (is_same_v<_Tp, const _CharT*>)
4497 else if constexpr (is_same_v<_Tp, basic_string_view<_CharT>>)
4499 else if constexpr (is_same_v<_Tp, const void*>)
4501#ifdef __SIZEOF_INT128__
4502 else if constexpr (is_same_v<_Tp, __int128>)
4504 else if constexpr (is_same_v<_Tp, unsigned __int128>)
4507 else if constexpr (is_same_v<_Tp, handle>)
4511 template<
typename _Tp>
4513 _M_set(_Tp __v)
noexcept
4515 _M_type = _S_to_enum<_Tp>();
4519 template<
typename _Tp>
4520 requires __format::__formattable_with<_Tp, _Context>
4522 basic_format_arg(_Tp& __v)
noexcept
4524 using _Td = _Normalize<_Tp>;
4525 if constexpr (is_same_v<_Td, basic_string_view<_CharT>>)
4526 _M_set(_Td{__v.data(), __v.size()});
4527 else if constexpr (is_same_v<remove_const_t<_Tp>,
char>
4528 && is_same_v<_CharT, wchar_t>)
4529 _M_set(
static_cast<_Td
>(
static_cast<unsigned char>(__v)));
4531 _M_set(
static_cast<_Td
>(__v));
4534 template<
typename _Ctx,
typename... _Argz>
4536 make_format_args(_Argz&...)
noexcept;
4538 template<
typename _Visitor,
typename _Ctx>
4539 friend decltype(
auto)
4540 visit_format_arg(_Visitor&& __vis, basic_format_arg<_Ctx>);
4542 template<
typename _Visitor,
typename _Ctx>
4543 friend decltype(
auto)
4544 __format::__visit_format_arg(_Visitor&&, basic_format_arg<_Ctx>);
4546 template<
typename _Ch,
typename _Tp>
4547 friend consteval __format::_Arg_t
4548 __format::__to_arg_t_enum() noexcept;
4550 [[__gnu__::__noinline__]]
4552 _M_handle_unrecognized() const;
4554 template<typename _Visitor>
4556 _M_visit(_Visitor&& __vis)
4560 using enum __format::_Arg_t;
4575#if __glibcxx_to_chars
4580#ifndef _GLIBCXX_LONG_DOUBLE_ALT128_COMPAT
4583#if defined(__SIZEOF_FLOAT128__) && _GLIBCXX_FORMAT_F128
4593#if defined(__STDCPP_BFLOAT16_T__) && defined(_GLIBCXX_FLOAT_IS_IEEE_BINARY32)
4597#if defined(__STDCPP_FLOAT16_T__) && defined(_GLIBCXX_FLOAT_IS_IEEE_BINARY32)
4601#if defined(__FLT32_DIG__) && defined(_GLIBCXX_FLOAT_IS_IEEE_BINARY32)
4605#if defined(__FLT64_DIG__) && defined(_GLIBCXX_DOUBLE_IS_IEEE_BINARY64)
4618#ifdef __SIZEOF_INT128__
4628 handle __h = _M_handle_unrecognized();
4633 template<
typename _Visitor>
4635 _M_visit_user(_Visitor&& __vis)
4637 return _M_visit([&__vis]<
typename _Tp>(_Tp& __val) ->
decltype(
auto)
4639 constexpr bool __user_facing = __is_one_of<_Tp,
4640 monostate, bool, _CharT,
4641 int,
unsigned int,
long long int,
unsigned long long int,
4642 float, double,
long double,
4643 const _CharT*, basic_string_view<_CharT>,
4644 const void*, handle>::value;
4645 if constexpr (__user_facing)
4656 template<
typename _Visitor,
typename _Context>
4657 _GLIBCXX26_DEPRECATED_SUGGEST(
"std::basic_format_arg::visit")
4658 inline decltype(auto)
4659 visit_format_arg(_Visitor&& __vis, basic_format_arg<_Context> __arg)
4665 template<
typename _Visitor,
typename _Ctx>
4666 inline decltype(
auto)
4667 __visit_format_arg(_Visitor&& __vis, basic_format_arg<_Ctx> __arg)
4670 struct _WidthPrecVisitor
4672 template<
typename _Tp>
4674 operator()(_Tp& __arg)
const
4676 if constexpr (is_same_v<_Tp, monostate>)
4677 __format::__invalid_arg_id_in_format_string();
4681 else if constexpr (
sizeof(_Tp) <=
sizeof(
long long))
4685 if constexpr (__is_unsigned_integer<_Tp>::value)
4687 else if constexpr (__is_signed_integer<_Tp>::value)
4691 __throw_format_error(
"format error: argument used for width or "
4692 "precision must be a non-negative integer");
4696#pragma GCC diagnostic push
4697#pragma GCC diagnostic ignored "-Wdeprecated-declarations"
4698 template<
typename _Context>
4700 __int_from_arg(
const basic_format_arg<_Context>& __arg)
4701 {
return __format::__visit_format_arg(_WidthPrecVisitor(), __arg); }
4704 template<
int _Bits,
size_t _Nm>
4706 __pack_arg_types(
const array<_Arg_t, _Nm>& __types)
4708 __UINT64_TYPE__ __packed_types = 0;
4709 for (
auto __i = __types.rbegin(); __i != __types.rend(); ++__i)
4710 __packed_types = (__packed_types << _Bits) | (
unsigned)*__i;
4711 return __packed_types;
4716 template<
typename _Context>
4717 class basic_format_args
4719 static constexpr int _S_packed_type_bits = 5;
4720 static constexpr int _S_packed_type_mask = 0b11111;
4721 static constexpr int _S_max_packed_args = 12;
4723 static_assert( (unsigned)__format::_Arg_max_ <= (1u << _S_packed_type_bits) );
4725 template<
typename... _Args>
4726 using _Store = __format::_Arg_store<_Context, _Args...>;
4728 template<
typename _Ctx,
typename... _Args>
4729 friend class __format::_Arg_store;
4731 using uint64_t = __UINT64_TYPE__;
4732 using _Format_arg = basic_format_arg<_Context>;
4733 using _Format_arg_val = __format::_Arg_value<_Context>;
4739 uint64_t _M_packed_size : 4;
4740 uint64_t _M_unpacked_size : 60;
4743 const _Format_arg_val* _M_values;
4744 const _Format_arg* _M_args;
4748 _M_size() const noexcept
4749 {
return _M_packed_size ? _M_packed_size : _M_unpacked_size; }
4751 typename __format::_Arg_t
4752 _M_type(
size_t __i)
const noexcept
4754 uint64_t __t = _M_unpacked_size >> (__i * _S_packed_type_bits);
4755 return static_cast<__format::_Arg_t
>(__t & _S_packed_type_mask);
4758 template<
typename _Ctx,
typename... _Args>
4760 make_format_args(_Args&...)
noexcept;
4763 template<
typename... _Args>
4764 static consteval array<__format::_Arg_t,
sizeof...(_Args)>
4766 {
return {_Format_arg::template _S_to_enum<_Args>()...}; }
4769 template<
typename... _Args>
4770 basic_format_args(
const _Store<_Args...>& __store)
noexcept;
4772 [[nodiscard,__gnu__::__always_inline__]]
4773 basic_format_arg<_Context>
4774 get(
size_t __i)
const noexcept
4776 basic_format_arg<_Context> __arg;
4777 if (__i < _M_packed_size)
4779 __arg._M_type = _M_type(__i);
4780 __arg._M_val = _M_values[__i];
4782 else if (_M_packed_size == 0 && __i < _M_unpacked_size)
4783 __arg = _M_args[__i];
4790 template<
typename _Context,
typename... _Args>
4791 basic_format_args(__format::_Arg_store<_Context, _Args...>)
4792 -> basic_format_args<_Context>;
4794 template<
typename _Context,
typename... _Args>
4796 make_format_args(_Args&... __fmt_args)
noexcept;
4799 template<
typename _Context,
typename... _Args>
4800 class __format::_Arg_store
4802 friend std::basic_format_args<_Context>;
4804 template<
typename _Ctx,
typename... _Argz>
4806#if _GLIBCXX_INLINE_VERSION
4809 make_format_args(_Argz&...)
noexcept;
4813 static constexpr bool _S_values_only
4814 =
sizeof...(_Args) <= basic_format_args<_Context>::_S_max_packed_args;
4817 = __conditional_t<_S_values_only,
4818 __format::_Arg_value<_Context>,
4819 basic_format_arg<_Context>>;
4821 _Element_t _M_args[
sizeof...(_Args)];
4823 template<
typename _Tp>
4825 _S_make_elt(_Tp& __v)
4827 using _Tq = remove_const_t<_Tp>;
4828 using _CharT =
typename _Context::char_type;
4829 static_assert(is_default_constructible_v<formatter<_Tq, _CharT>>,
4830 "std::formatter must be specialized for the type "
4831 "of each format arg");
4832 using __format::__formattable_with;
4833 if constexpr (is_const_v<_Tp>)
4834 if constexpr (!__formattable_with<_Tp, _Context>)
4835 if constexpr (__formattable_with<_Tq, _Context>)
4836 static_assert(__formattable_with<_Tp, _Context>,
4837 "format arg must be non-const because its "
4838 "std::formatter specialization has a "
4839 "non-const reference parameter");
4840 basic_format_arg<_Context> __arg(__v);
4841 if constexpr (_S_values_only)
4842 return __arg._M_val;
4847 template<
typename... _Tp>
4848 requires (
sizeof...(_Tp) ==
sizeof...(_Args))
4849 [[__gnu__::__always_inline__]]
4850 _Arg_store(_Tp&... __a) noexcept
4851 : _M_args{_S_make_elt(__a)...}
4855 template<
typename _Context>
4856 class __format::_Arg_store<_Context>
4859 template<
typename _Context>
4860 template<
typename... _Args>
4862 basic_format_args<_Context>::
4863 basic_format_args(
const _Store<_Args...>& __store)
noexcept
4865 if constexpr (
sizeof...(_Args) == 0)
4868 _M_unpacked_size = 0;
4871 else if constexpr (
sizeof...(_Args) <= _S_max_packed_args)
4874 _M_packed_size =
sizeof...(_Args);
4877 = __format::__pack_arg_types<_S_packed_type_bits>(_S_types_to_pack<_Args...>());
4879 _M_values = __store._M_args;
4886 _M_unpacked_size =
sizeof...(_Args);
4888 _M_args = __store._M_args;
4893 template<
typename _Context = format_context,
typename... _Args>
4894 [[nodiscard,__gnu__::__always_inline__]]
4896 make_format_args(_Args&... __fmt_args)
noexcept
4898 using _Fmt_arg = basic_format_arg<_Context>;
4899 using _Store = __format::_Arg_store<_Context,
typename _Fmt_arg::template
4900 _Normalize<_Args>...>;
4901 return _Store(__fmt_args...);
4904#ifdef _GLIBCXX_USE_WCHAR_T
4906 template<
typename... _Args>
4907 [[nodiscard,__gnu__::__always_inline__]]
4909 make_wformat_args(_Args&... __args)
noexcept
4910 {
return std::make_format_args<wformat_context>(__args...); }
4916 template<
typename _Out,
typename _CharT,
typename _Context>
4918 __do_vformat_to(_Out, basic_string_view<_CharT>,
4919 const basic_format_args<_Context>&,
4920 const locale* =
nullptr);
4922 template<
typename _CharT>
struct __formatter_chrono;
4940 template<
typename _Out,
typename _CharT>
4941 class basic_format_context
4943 static_assert( output_iterator<_Out, const _CharT&> );
4945 basic_format_args<basic_format_context> _M_args;
4947 __format::_Optional_locale _M_loc;
4949 basic_format_context(basic_format_args<basic_format_context> __args,
4951 : _M_args(__args), _M_out(std::move(__out))
4954 basic_format_context(basic_format_args<basic_format_context> __args,
4955 _Out __out,
const std::locale& __loc)
4956 : _M_args(__args), _M_out(std::move(__out)), _M_loc(__loc)
4962 basic_format_context(
const basic_format_context&) =
delete;
4963 basic_format_context& operator=(
const basic_format_context&) =
delete;
4965 template<
typename _Out2,
typename _CharT2,
typename _Context2>
4967 __format::__do_vformat_to(_Out2, basic_string_view<_CharT2>,
4968 const basic_format_args<_Context2>&,
4971 friend __format::__formatter_chrono<_CharT>;
4974 ~basic_format_context() =
default;
4976 using iterator = _Out;
4977 using char_type = _CharT;
4978 template<
typename _Tp>
4979 using formatter_type = formatter<_Tp, _CharT>;
4982 basic_format_arg<basic_format_context>
4983 arg(
size_t __id)
const noexcept
4984 {
return _M_args.get(__id); }
4987 std::locale locale() {
return _M_loc.value(); }
4990 iterator out() {
return std::move(_M_out); }
4992 void advance_to(iterator __it) { _M_out =
std::move(__it); }
4995#if _GLIBCXX_EXTERN_TEMPLATE
4998 extern template basic_format_arg<format_context>::handle
4999 basic_format_arg<format_context>::_M_handle_unrecognized()
const;
5000# ifdef _GLIBCXX_USE_WCHAR_T
5001 extern template basic_format_arg<wformat_context>::handle
5002 basic_format_arg<wformat_context>::_M_handle_unrecognized()
const;
5005 template<
typename _Context>
5006 typename basic_format_arg<_Context>::handle
5007 basic_format_arg<_Context>::_M_handle_unrecognized()
const
5012 __throw_format_error(
"format error: unrecognized argument type");
5024 template<
typename _CharT>
5027 using iterator =
typename basic_format_parse_context<_CharT>::iterator;
5029 struct _Parse_context : basic_format_parse_context<_CharT>
5031 using basic_format_parse_context<_CharT>::basic_format_parse_context;
5032 const _Arg_t* _M_types =
nullptr;
5036 _Scanner(basic_string_view<_CharT> __str,
size_t __nargs = (
size_t)-1)
5037 : _M_pc(__str, __nargs)
5040 constexpr iterator begin() const noexcept {
return _M_pc.begin(); }
5041 constexpr iterator end() const noexcept {
return _M_pc.end(); }
5046 basic_string_view<_CharT> __fmt = _M_fmt_str();
5048 if (__fmt.size() == 2 && __fmt[0] ==
'{' && __fmt[1] ==
'}')
5050 _M_pc.advance_to(begin() + 1);
5051 _M_format_arg(_M_pc.next_arg_id());
5055 size_t __lbr = __fmt.find(
'{');
5056 size_t __rbr = __fmt.find(
'}');
5058 while (__fmt.size())
5060 auto __cmp = __lbr <=> __rbr;
5064 _M_pc.advance_to(end());
5069 if (__lbr + 1 == __fmt.size()
5070 || (__rbr == __fmt.npos && __fmt[__lbr + 1] !=
'{'))
5071 __format::__unmatched_left_brace_in_format_string();
5072 const bool __is_escape = __fmt[__lbr + 1] ==
'{';
5073 iterator __last = begin() + __lbr + int(__is_escape);
5074 _M_on_chars(__last);
5075 _M_pc.advance_to(__last + 1);
5076 __fmt = _M_fmt_str();
5079 if (__rbr != __fmt.npos)
5081 __lbr = __fmt.find(
'{');
5085 _M_on_replacement_field();
5086 __fmt = _M_fmt_str();
5087 __lbr = __fmt.find(
'{');
5088 __rbr = __fmt.find(
'}');
5093 if (++__rbr == __fmt.size() || __fmt[__rbr] !=
'}')
5094 __format::__unmatched_right_brace_in_format_string();
5095 iterator __last = begin() + __rbr;
5096 _M_on_chars(__last);
5097 _M_pc.advance_to(__last + 1);
5098 __fmt = _M_fmt_str();
5099 if (__lbr != __fmt.npos)
5101 __rbr = __fmt.find(
'}');
5106 constexpr basic_string_view<_CharT>
5107 _M_fmt_str() const noexcept
5108 {
return {begin(), end()}; }
5110 constexpr virtual void _M_on_chars(iterator) { }
5112 constexpr void _M_on_replacement_field()
5114 auto __next = begin();
5118 __id = _M_pc.next_arg_id();
5119 else if (*__next ==
':')
5121 __id = _M_pc.next_arg_id();
5122 _M_pc.advance_to(++__next);
5126 auto [__i, __ptr] = __format::__parse_arg_id(begin(), end());
5127 if (!__ptr || !(*__ptr ==
'}' || *__ptr ==
':'))
5128 __format::__invalid_arg_id_in_format_string();
5129 _M_pc.check_arg_id(__id = __i);
5132 _M_pc.advance_to(++__ptr);
5135 _M_pc.advance_to(__ptr);
5137 _M_format_arg(__id);
5138 if (begin() == end() || *begin() !=
'}')
5139 __format::__unmatched_left_brace_in_format_string();
5140 _M_pc.advance_to(begin() + 1);
5143 constexpr virtual void _M_format_arg(
size_t __id) = 0;
5147 template<
typename _Out,
typename _CharT>
5148 class _Formatting_scanner :
public _Scanner<_CharT>
5151 _Formatting_scanner(basic_format_context<_Out, _CharT>& __fc,
5152 basic_string_view<_CharT> __str)
5153 : _Scanner<_CharT>(__str), _M_fc(__fc)
5157 basic_format_context<_Out, _CharT>& _M_fc;
5159 using iterator =
typename _Scanner<_CharT>::iterator;
5162 _M_on_chars(iterator __last)
override
5164 basic_string_view<_CharT> __str(this->begin(), __last);
5165 _M_fc.advance_to(__format::__write(_M_fc.out(), __str));
5169 _M_format_arg(
size_t __id)
override
5171 using _Context = basic_format_context<_Out, _CharT>;
5172 using handle =
typename basic_format_arg<_Context>::handle;
5174 __format::__visit_format_arg([
this](
auto& __arg) {
5176 using _Formatter =
typename _Context::template formatter_type<_Type>;
5177 if constexpr (is_same_v<_Type, monostate>)
5178 __format::__invalid_arg_id_in_format_string();
5179 else if constexpr (is_same_v<_Type, handle>)
5180 __arg.format(this->_M_pc, this->_M_fc);
5181 else if constexpr (is_default_constructible_v<_Formatter>)
5184 this->_M_pc.advance_to(__f.parse(this->_M_pc));
5185 this->_M_fc.advance_to(__f.format(__arg, this->_M_fc));
5188 static_assert(__format::__formattable_with<_Type, _Context>);
5189 }, _M_fc.arg(__id));
5193 template<
typename _CharT,
typename _Tp>
5195 __to_arg_t_enum() noexcept
5197 using _Context = __format::__format_context<_CharT>;
5198 using _Fmt_arg = basic_format_arg<_Context>;
5199 using _NormalizedTp =
typename _Fmt_arg::template _Normalize<_Tp>;
5200 return _Fmt_arg::template _S_to_enum<_NormalizedTp>();
5204 template<
typename _CharT,
typename... _Args>
5205 class _Checking_scanner :
public _Scanner<_CharT>
5208 (is_default_constructible_v<formatter<_Args, _CharT>> && ...),
5209 "std::formatter must be specialized for each type being formatted");
5213 _Checking_scanner(basic_string_view<_CharT> __str)
5214 : _Scanner<_CharT>(__str, sizeof...(_Args))
5216#if __cpp_lib_format >= 202305L
5217 this->_M_pc._M_types = _M_types.data();
5223 _M_format_arg(
size_t __id)
override
5225 if constexpr (
sizeof...(_Args) != 0)
5227 if (__id <
sizeof...(_Args))
5229 _M_parse_format_spec<_Args...>(__id);
5233 __builtin_unreachable();
5236 template<
typename _Tp,
typename... _OtherArgs>
5238 _M_parse_format_spec(
size_t __id)
5242 formatter<_Tp, _CharT> __f;
5243 this->_M_pc.advance_to(__f.parse(this->_M_pc));
5245 else if constexpr (
sizeof...(_OtherArgs) != 0)
5246 _M_parse_format_spec<_OtherArgs...>(__id - 1);
5248 __builtin_unreachable();
5251#if __cpp_lib_format >= 202305L
5252 array<_Arg_t,
sizeof...(_Args)>
5253 _M_types{ { __format::__to_arg_t_enum<_CharT, _Args>()... } };
5257 template<typename _CharT, unsigned = __unicode::__literal_encoding_is_unicode<_CharT>()>
5259 __do_vformat_to(_Sink_iter<_CharT> __out, basic_string_view<_CharT> __fmt,
5260 __format_context<_CharT>& __ctx)
5262 if constexpr (is_same_v<_CharT, char>)
5264 if (__fmt.size() == 2 && __fmt[0] ==
'{' && __fmt[1] ==
'}')
5266 bool __done =
false;
5267 __format::__visit_format_arg([&](
auto& __arg) {
5268 using _Tp = remove_cvref_t<
decltype(__arg)>;
5269 if constexpr (is_same_v<_Tp, bool>)
5271 size_t __len = 4 + !__arg;
5272 const char* __chars[] = {
"false",
"true" };
5273 if (
auto __res = __out._M_reserve(__len))
5275 __builtin_memcpy(__res.get(), __chars[__arg], __len);
5276 __res._M_bump(__len);
5280 else if constexpr (is_same_v<_Tp, char>)
5282 if (
auto __res = __out._M_reserve(1))
5284 *__res.get() = __arg;
5289 else if constexpr (is_integral_v<_Tp>)
5291 make_unsigned_t<_Tp> __uval;
5292 const bool __neg = __arg < 0;
5294 __uval = make_unsigned_t<_Tp>(~__arg) + 1u;
5297 const auto __n = __detail::__to_chars_len(__uval);
5298 if (
auto __res = __out._M_reserve(__n + __neg))
5300 auto __ptr = __res.get();
5302 __detail::__to_chars_10_impl(__ptr + (
int)__neg, __n,
5304 __res._M_bump(__n + __neg);
5308 else if constexpr (is_convertible_v<_Tp, string_view>)
5310 string_view __sv = __arg;
5311 if (
auto __res = __out._M_reserve(__sv.size()))
5313 __builtin_memcpy(__res.get(), __sv.data(), __sv.size());
5314 __res._M_bump(__sv.size());
5324 _Formatting_scanner<_Sink_iter<_CharT>, _CharT> __scanner(__ctx, __fmt);
5325 __scanner._M_scan();
5334#if __cplusplus <= 202002L && _GLIBCXX_EXTERN_TEMPLATE
5335 extern template _Sink_iter<char>
5336 __do_vformat_to<char, 1>(_Sink_iter<char>, string_view,
5338# ifdef _GLIBCXX_USE_WCHAR_T
5339 extern template _Sink_iter<wchar_t>
5340 __do_vformat_to<wchar_t, 1>(_Sink_iter<wchar_t>, wstring_view,
5345 template<
typename _Out,
typename _CharT,
typename _Context>
5347 __do_vformat_to(_Out __out, basic_string_view<_CharT> __fmt,
5348 const basic_format_args<_Context>& __args,
5349 const locale* __loc)
5351 if constexpr (is_same_v<_Out, _Sink_iter<_CharT>>)
5353 auto __ctx = __loc ==
nullptr
5354 ? _Context(__args, __out)
5355 : _Context(__args, __out, *__loc);
5356 return __format::__do_vformat_to(__out, __fmt, __ctx);
5358 else if constexpr (__contiguous_char_iter<_CharT, _Out>)
5360 _Ptr_sink<_CharT> __sink(__out);
5361 __format::__do_vformat_to(__sink.out(), __fmt, __args, __loc);
5362 return std::move(__sink)._M_finish(__out).out;
5366 _Iter_sink<_CharT, _Out> __sink(
std::move(__out));
5367 __format::__do_vformat_to(__sink.out(), __fmt, __args, __loc);
5368 return std::move(__sink)._M_finish().out;
5372 template<
typename _Out,
typename _CharT>
5373 inline format_to_n_result<_Out>
5374 __do_vformat_to_n(_Out __out, iter_difference_t<_Out> __n,
5375 basic_string_view<_CharT> __fmt,
5376 const type_identity_t<
5377 basic_format_args<__format_context<_CharT>>>& __args,
5378 const locale* __loc =
nullptr)
5380 if constexpr (__contiguous_char_iter<_CharT, _Out>)
5382 _Ptr_sink<_CharT> __sink(__out, __n);
5383 __format::__do_vformat_to(__sink.out(), __fmt, __args, __loc);
5384 return std::move(__sink)._M_finish(__out);
5388 _Iter_sink<_CharT, _Out> __sink(
std::move(__out), __n);
5389 __format::__do_vformat_to(__sink.out(), __fmt, __args, __loc);
5394#pragma GCC diagnostic pop
5399#if __cpp_lib_format >= 202305L
5402 template<
typename _CharT>
5403 template<
typename... _Ts>
5405 basic_format_parse_context<_CharT>::
5406 __check_dynamic_spec(
size_t __id)
noexcept
5408 if (__id >= _M_num_args)
5409 __format::__invalid_arg_id_in_format_string();
5410 if constexpr (
sizeof...(_Ts) != 0)
5412 using _Parse_ctx = __format::_Scanner<_CharT>::_Parse_context;
5413 auto __arg =
static_cast<_Parse_ctx*
>(
this)->_M_types[__id];
5414 __format::_Arg_t __types[] = {
5415 __format::__to_arg_t_enum<_CharT, _Ts>()...
5417 for (
auto __t : __types)
5421 __invalid_dynamic_spec(
"arg(id) type does not match");
5426 template<
typename _CharT,
typename... _Args>
5427 template<
typename _Tp>
5428 requires convertible_to<const _Tp&, basic_string_view<_CharT>>
5430 basic_format_string<_CharT, _Args...>::
5431 basic_format_string(
const _Tp& __s)
5434 __format::_Checking_scanner<_CharT, remove_cvref_t<_Args>...>
5436 __scanner._M_scan();
5441 template<
typename _Out>
requires output_iterator<_Out, const char&>
5442 [[__gnu__::__always_inline__]]
5444 vformat_to(_Out __out, string_view __fmt, format_args __args)
5445 {
return __format::__do_vformat_to(
std::move(__out), __fmt, __args); }
5447#ifdef _GLIBCXX_USE_WCHAR_T
5448 template<
typename _Out>
requires output_iterator<_Out, const wchar_t&>
5449 [[__gnu__::__always_inline__]]
5451 vformat_to(_Out __out, wstring_view __fmt, wformat_args __args)
5452 {
return __format::__do_vformat_to(
std::move(__out), __fmt, __args); }
5455 template<
typename _Out>
requires output_iterator<_Out, const char&>
5456 [[__gnu__::__always_inline__]]
5458 vformat_to(_Out __out,
const locale& __loc, string_view __fmt,
5461 return __format::__do_vformat_to(
std::move(__out), __fmt, __args, &__loc);
5464#ifdef _GLIBCXX_USE_WCHAR_T
5465 template<
typename _Out>
requires output_iterator<_Out, const wchar_t&>
5466 [[__gnu__::__always_inline__]]
5468 vformat_to(_Out __out,
const locale& __loc, wstring_view __fmt,
5469 wformat_args __args)
5471 return __format::__do_vformat_to(
std::move(__out), __fmt, __args, &__loc);
5477 vformat(string_view __fmt, format_args __args)
5479 __format::_Str_sink<char> __buf;
5480 std::vformat_to(__buf.out(), __fmt, __args);
5484#ifdef _GLIBCXX_USE_WCHAR_T
5487 vformat(wstring_view __fmt, wformat_args __args)
5489 __format::_Str_sink<wchar_t> __buf;
5490 std::vformat_to(__buf.out(), __fmt, __args);
5497 vformat(
const locale& __loc, string_view __fmt, format_args __args)
5499 __format::_Str_sink<char> __buf;
5500 std::vformat_to(__buf.out(), __loc, __fmt, __args);
5504#ifdef _GLIBCXX_USE_WCHAR_T
5507 vformat(
const locale& __loc, wstring_view __fmt, wformat_args __args)
5509 __format::_Str_sink<wchar_t> __buf;
5510 std::vformat_to(__buf.out(), __loc, __fmt, __args);
5515 template<
typename... _Args>
5518 format(format_string<_Args...> __fmt, _Args&&... __args)
5519 {
return std::vformat(__fmt.get(), std::make_format_args(__args...)); }
5521#ifdef _GLIBCXX_USE_WCHAR_T
5522 template<
typename... _Args>
5525 format(wformat_string<_Args...> __fmt, _Args&&... __args)
5526 {
return std::vformat(__fmt.get(), std::make_wformat_args(__args...)); }
5529 template<
typename... _Args>
5532 format(
const locale& __loc, format_string<_Args...> __fmt,
5535 return std::vformat(__loc, __fmt.get(),
5536 std::make_format_args(__args...));
5539#ifdef _GLIBCXX_USE_WCHAR_T
5540 template<
typename... _Args>
5543 format(
const locale& __loc, wformat_string<_Args...> __fmt,
5546 return std::vformat(__loc, __fmt.get(),
5547 std::make_wformat_args(__args...));
5551 template<
typename _Out,
typename... _Args>
5552 requires output_iterator<_Out, const char&>
5554 format_to(_Out __out, format_string<_Args...> __fmt, _Args&&... __args)
5556 return std::vformat_to(
std::move(__out), __fmt.get(),
5557 std::make_format_args(__args...));
5560#ifdef _GLIBCXX_USE_WCHAR_T
5561 template<
typename _Out,
typename... _Args>
5562 requires output_iterator<_Out, const wchar_t&>
5564 format_to(_Out __out, wformat_string<_Args...> __fmt, _Args&&... __args)
5566 return std::vformat_to(
std::move(__out), __fmt.get(),
5567 std::make_wformat_args(__args...));
5571 template<
typename _Out,
typename... _Args>
5572 requires output_iterator<_Out, const char&>
5574 format_to(_Out __out,
const locale& __loc, format_string<_Args...> __fmt,
5577 return std::vformat_to(
std::move(__out), __loc, __fmt.get(),
5578 std::make_format_args(__args...));
5581#ifdef _GLIBCXX_USE_WCHAR_T
5582 template<
typename _Out,
typename... _Args>
5583 requires output_iterator<_Out, const wchar_t&>
5585 format_to(_Out __out,
const locale& __loc, wformat_string<_Args...> __fmt,
5588 return std::vformat_to(
std::move(__out), __loc, __fmt.get(),
5589 std::make_wformat_args(__args...));
5593 template<
typename _Out,
typename... _Args>
5594 requires output_iterator<_Out, const char&>
5595 inline format_to_n_result<_Out>
5596 format_to_n(_Out __out, iter_difference_t<_Out> __n,
5597 format_string<_Args...> __fmt, _Args&&... __args)
5599 return __format::__do_vformat_to_n(
5601 std::make_format_args(__args...));
5604#ifdef _GLIBCXX_USE_WCHAR_T
5605 template<
typename _Out,
typename... _Args>
5606 requires output_iterator<_Out, const wchar_t&>
5607 inline format_to_n_result<_Out>
5608 format_to_n(_Out __out, iter_difference_t<_Out> __n,
5609 wformat_string<_Args...> __fmt, _Args&&... __args)
5611 return __format::__do_vformat_to_n(
5613 std::make_wformat_args(__args...));
5617 template<
typename _Out,
typename... _Args>
5618 requires output_iterator<_Out, const char&>
5619 inline format_to_n_result<_Out>
5620 format_to_n(_Out __out, iter_difference_t<_Out> __n,
const locale& __loc,
5621 format_string<_Args...> __fmt, _Args&&... __args)
5623 return __format::__do_vformat_to_n(
5625 std::make_format_args(__args...), &__loc);
5628#ifdef _GLIBCXX_USE_WCHAR_T
5629 template<
typename _Out,
typename... _Args>
5630 requires output_iterator<_Out, const wchar_t&>
5631 inline format_to_n_result<_Out>
5632 format_to_n(_Out __out, iter_difference_t<_Out> __n,
const locale& __loc,
5633 wformat_string<_Args...> __fmt, _Args&&... __args)
5635 return __format::__do_vformat_to_n(
5637 std::make_wformat_args(__args...), &__loc);
5645 template<
typename _CharT>
5646 class _Counting_sink final :
public _Ptr_sink<_CharT>
5649 _Counting_sink() : _Ptr_sink<_CharT>(nullptr, 0) { }
5651 [[__gnu__::__always_inline__]]
5654 {
return this->_M_count + this->_M_used().size(); }
5657 template<
typename _CharT>
5658 class _Counting_sink :
public _Buf_sink<_CharT>
5660 size_t _M_count = 0;
5663 _M_overflow()
override
5665 if (!std::is_constant_evaluated())
5666 _M_count += this->_M_used().size();
5671 _Counting_sink() =
default;
5673 [[__gnu__::__always_inline__]]
5677 _Counting_sink::_M_overflow();
5685 template<
typename... _Args>
5688 formatted_size(format_string<_Args...> __fmt, _Args&&... __args)
5690 __format::_Counting_sink<char> __buf;
5691 std::vformat_to(__buf.out(), __fmt.get(),
5692 std::make_format_args(__args...));
5693 return __buf.count();
5696#ifdef _GLIBCXX_USE_WCHAR_T
5697 template<
typename... _Args>
5700 formatted_size(wformat_string<_Args...> __fmt, _Args&&... __args)
5702 __format::_Counting_sink<wchar_t> __buf;
5703 std::vformat_to(__buf.out(), __fmt.get(),
5704 std::make_wformat_args(__args...));
5705 return __buf.count();
5709 template<
typename... _Args>
5712 formatted_size(
const locale& __loc, format_string<_Args...> __fmt,
5715 __format::_Counting_sink<char> __buf;
5716 std::vformat_to(__buf.out(), __loc, __fmt.get(),
5717 std::make_format_args(__args...));
5718 return __buf.count();
5721#ifdef _GLIBCXX_USE_WCHAR_T
5722 template<
typename... _Args>
5725 formatted_size(
const locale& __loc, wformat_string<_Args...> __fmt,
5728 __format::_Counting_sink<wchar_t> __buf;
5729 std::vformat_to(__buf.out(), __loc, __fmt.get(),
5730 std::make_wformat_args(__args...));
5731 return __buf.count();
5735#if __glibcxx_format_ranges
5737 template<typename _Tp>
5738 consteval range_format
5741 using _Ref = ranges::range_reference_t<_Tp>;
5742 if constexpr (is_same_v<remove_cvref_t<_Ref>, _Tp>)
5743 return range_format::disabled;
5744 else if constexpr (
requires {
typename _Tp::key_type; })
5746 if constexpr (
requires {
typename _Tp::mapped_type; })
5748 using _Up = remove_cvref_t<_Ref>;
5749 if constexpr (__is_pair<_Up>)
5750 return range_format::map;
5751 else if constexpr (__is_specialization_of<_Up, tuple>)
5752 if constexpr (tuple_size_v<_Up> == 2)
5753 return range_format::map;
5755 return range_format::set;
5758 return range_format::sequence;
5763 template<ranges::input_range _Rg>
requires same_as<_Rg, remove_cvref_t<_Rg>>
5764 constexpr range_format format_kind<_Rg> = __fmt_kind<_Rg>();
5769 template<
typename _CharT,
typename _Out,
typename _Callback>
5770 typename basic_format_context<_Out, _CharT>::iterator
5771 __format_padded(basic_format_context<_Out, _CharT>& __fc,
5772 const _Spec<_CharT>& __spec,
5775 if constexpr (is_same_v<_Out, _Drop_iter<_CharT>>)
5781 static_assert(is_same_v<_Out, _Sink_iter<_CharT>>);
5783 const size_t __padwidth = __spec._M_get_width(__fc);
5784 if (__padwidth == 0)
5785 return __call(__fc);
5789 _Restore_out(basic_format_context<_Sink_iter<_CharT>, _CharT>& __fc)
5790 : _M_ctx(std::
addressof(__fc)), _M_out(__fc.out())
5795 { _M_ctx =
nullptr; }
5800 _M_ctx->advance_to(_M_out);
5804 basic_format_context<_Sink_iter<_CharT>, _CharT>* _M_ctx;
5805 _Sink_iter<_CharT> _M_out;
5808 _Restore_out __restore(__fc);
5809 _Padding_sink<_Sink_iter<_CharT>, _CharT> __sink(__fc.out(), __padwidth);
5810 __fc.advance_to(__sink.out());
5812 __fc.advance_to(__sink._M_finish(__spec._M_align, __spec._M_fill));
5813 __restore._M_disarm();
5818 template<
size_t _Pos,
typename _Tp,
typename _CharT>
5819 struct __indexed_formatter_storage
5824 basic_format_parse_context<_CharT> __pc({});
5825 if (_M_formatter.parse(__pc) != __pc.end())
5826 __format::__failed_to_parse_format_spec();
5829 template<
typename _Out>
5831 _M_format(__maybe_const<_Tp, _CharT>& __elem,
5832 basic_format_context<_Out, _CharT>& __fc,
5833 basic_string_view<_CharT> __sep)
const
5835 if constexpr (_Pos != 0)
5836 __fc.advance_to(__format::__write(__fc.out(), __sep));
5837 __fc.advance_to(_M_formatter.format(__elem, __fc));
5840 [[__gnu__::__always_inline__]]
5844 if constexpr (__has_debug_format<formatter<_Tp, _CharT>>)
5845 _M_formatter.set_debug_format();
5849 formatter<_Tp, _CharT> _M_formatter;
5852 template<
typename _CharT,
typename... _Tps>
5853 class __tuple_formatter
5855 using _String_view = basic_string_view<_CharT>;
5856 using _Seps = __format::_Separators<_CharT>;
5860 set_separator(basic_string_view<_CharT> __sep)
noexcept
5864 set_brackets(basic_string_view<_CharT> __open,
5865 basic_string_view<_CharT> __close)
noexcept
5873 constexpr typename basic_format_parse_context<_CharT>::iterator
5874 parse(basic_format_parse_context<_CharT>& __pc)
5876 auto __first = __pc.begin();
5877 const auto __last = __pc.end();
5878 __format::_Spec<_CharT> __spec{};
5880 auto __finished = [&]
5882 if (__first != __last && *__first !=
'}')
5886 _M_felems._M_parse();
5887 _M_felems.set_debug_format();
5894 __first = __spec._M_parse_fill_and_align(__first, __last,
"{:");
5898 __first = __spec._M_parse_width(__first, __last, __pc);
5902 if (*__first ==
'n')
5905 _M_open = _M_close = _String_view();
5907 else if (*__first ==
'm')
5910 if constexpr (
sizeof...(_Tps) == 2)
5912 _M_sep = _Seps::_S_colon();
5913 _M_open = _M_close = _String_view();
5916 __throw_format_error(
"format error: 'm' specifier requires range"
5917 " of pair or tuple of two elements");
5923 __format::__failed_to_parse_format_spec();
5927 template<
typename _Tuple,
typename _Out,
size_t... _Ids>
5928 typename basic_format_context<_Out, _CharT>::iterator
5929 _M_format(_Tuple& __tuple, index_sequence<_Ids...>,
5930 basic_format_context<_Out, _CharT>& __fc)
const
5931 {
return _M_format_elems(std::get<_Ids>(__tuple)..., __fc); }
5933 template<
typename _Out>
5934 typename basic_format_context<_Out, _CharT>::iterator
5935 _M_format_elems(__maybe_const<_Tps, _CharT>&... __elems,
5936 basic_format_context<_Out, _CharT>& __fc)
const
5938 return __format::__format_padded(
5940 [
this, &__elems...](basic_format_context<_Out, _CharT>& __nfc)
5942 __nfc.advance_to(__format::__write(__nfc.out(), _M_open));
5943 _M_felems._M_format(__elems..., __nfc, _M_sep);
5944 return __format::__write(__nfc.out(), _M_close);
5949 template<
size_t... _Ids>
5950 struct __formatters_storage
5951 : __indexed_formatter_storage<_Ids, _Tps, _CharT>...
5953 template<
size_t _Id,
typename _Up>
5954 using _Base = __indexed_formatter_storage<_Id, _Up, _CharT>;
5959 (_Base<_Ids, _Tps>::_M_parse(), ...);
5962 template<
typename _Out>
5964 _M_format(__maybe_const<_Tps, _CharT>&... __elems,
5965 basic_format_context<_Out, _CharT>& __fc,
5966 _String_view __sep)
const
5968 (_Base<_Ids, _Tps>::_M_format(__elems, __fc, __sep), ...);
5974 (_Base<_Ids, _Tps>::set_debug_format(), ...);
5978 template<
size_t... _Ids>
5980 _S_create_storage(index_sequence<_Ids...>)
5981 -> __formatters_storage<_Ids...>;
5983 =
decltype(_S_create_storage(index_sequence_for<_Tps...>()));
5985 _Spec<_CharT> _M_spec{};
5986 _String_view _M_open = _Seps::_S_parens().substr(0, 1);
5987 _String_view _M_close = _Seps::_S_parens().substr(1, 1);
5988 _String_view _M_sep = _Seps::_S_comma();
5989 _Formatters _M_felems;
5992 template<
typename _Tp>
5993 concept __is_map_formattable
5994 = __is_pair<_Tp> || (__is_tuple_v<_Tp> && tuple_size_v<_Tp> == 2);
6000 template<__format::__
char _CharT, formattable<_CharT> _Fp,
6001 formattable<_CharT> _Sp>
6002 struct formatter<
pair<_Fp, _Sp>, _CharT>
6003 : __format::__tuple_formatter<_CharT, remove_cvref_t<_Fp>,
6004 remove_cvref_t<_Sp>>
6007 using __maybe_const_pair
6008 = __conditional_t<formattable<const _Fp, _CharT>
6009 && formattable<const _Sp, _CharT>,
6010 const pair<_Fp, _Sp>, pair<_Fp, _Sp>>;
6014 template<
typename _Out>
6015 typename basic_format_context<_Out, _CharT>::iterator
6016 format(__maybe_const_pair& __p,
6017 basic_format_context<_Out, _CharT>& __fc)
const
6018 {
return this->_M_format_elems(__p.first, __p.second, __fc); }
6021#if __glibcxx_print >= 202406L
6024 template<
typename _Fp,
typename _Sp>
6025 constexpr bool enable_nonlocking_formatter_optimization<pair<_Fp, _Sp>>
6026 = enable_nonlocking_formatter_optimization<remove_cvref_t<_Fp>>
6027 && enable_nonlocking_formatter_optimization<remove_cvref_t<_Sp>>;
6030 template<__format::__
char _CharT, formattable<_CharT>... _Tps>
6031 struct formatter<tuple<_Tps...>, _CharT>
6032 : __format::__tuple_formatter<_CharT, remove_cvref_t<_Tps>...>
6035 using __maybe_const_tuple
6036 = __conditional_t<(formattable<const _Tps, _CharT> && ...),
6037 const tuple<_Tps...>, tuple<_Tps...>>;
6041 template<
typename _Out>
6042 typename basic_format_context<_Out, _CharT>::iterator
6043 format(__maybe_const_tuple& __t,
6044 basic_format_context<_Out, _CharT>& __fc)
const
6045 {
return this->_M_format(__t, index_sequence_for<_Tps...>(), __fc); }
6048#if __glibcxx_print >= 202406L
6051 template<
typename... _Tps>
6052 constexpr bool enable_nonlocking_formatter_optimization<tuple<_Tps...>>
6053 = (enable_nonlocking_formatter_optimization<remove_cvref_t<_Tps>> && ...);
6057 template<
typename _Tp, __format::__
char _CharT>
6058 requires same_as<remove_cvref_t<_Tp>, _Tp> && formattable<_Tp, _CharT>
6059 class range_formatter
6061 using _String_view = basic_string_view<_CharT>;
6062 using _Seps = __format::_Separators<_CharT>;
6066 set_separator(basic_string_view<_CharT> __sep)
noexcept
6070 set_brackets(basic_string_view<_CharT> __open,
6071 basic_string_view<_CharT> __close)
noexcept
6077 constexpr formatter<_Tp, _CharT>&
6078 underlying() noexcept
6081 constexpr const formatter<_Tp, _CharT>&
6082 underlying() const noexcept
6087 constexpr typename basic_format_parse_context<_CharT>::iterator
6088 parse(basic_format_parse_context<_CharT>& __pc)
6090 auto __first = __pc.begin();
6091 const auto __last = __pc.end();
6092 __format::_Spec<_CharT> __spec{};
6093 bool __no_brace =
false;
6095 auto __finished = [&]
6096 {
return __first == __last || *__first ==
'}'; };
6098 auto __finalize = [&]
6104 auto __parse_val = [&](_String_view __nfs = _String_view())
6106 basic_format_parse_context<_CharT> __npc(__nfs);
6107 if (_M_fval.parse(__npc) != __npc.end())
6108 __format::__failed_to_parse_format_spec();
6109 if constexpr (__format::__has_debug_format<formatter<_Tp, _CharT>>)
6110 _M_fval.set_debug_format();
6111 return __finalize();
6115 return __parse_val();
6117 __first = __spec._M_parse_fill_and_align(__first, __last,
"{:");
6119 return __parse_val();
6121 __first = __spec._M_parse_width(__first, __last, __pc);
6123 return __parse_val();
6125 if (*__first ==
'?')
6128 __spec._M_debug =
true;
6129 if (__finished() || *__first !=
's')
6130 __throw_format_error(
"format error: '?' is allowed only in"
6131 " combination with 's'");
6134 if (*__first ==
's')
6137 if constexpr (same_as<_Tp, _CharT>)
6139 __spec._M_type = __format::_Pres_s;
6141 return __finalize();
6142 __throw_format_error(
"format error: element format specifier"
6143 " cannot be provided when 's' specifier is used");
6146 __throw_format_error(
"format error: 's' specifier requires"
6147 " range of character types");
6151 return __parse_val();
6153 if (*__first ==
'n')
6156 _M_open = _M_close = _String_view();
6161 return __parse_val();
6163 if (*__first ==
'm')
6165 _String_view __m(__first, 1);
6167 if constexpr (__format::__is_map_formattable<_Tp>)
6169 _M_sep = _Seps::_S_comma();
6172 _M_open = _Seps::_S_braces().substr(0, 1);
6173 _M_close = _Seps::_S_braces().substr(1, 1);
6176 return __parse_val(__m);
6177 __throw_format_error(
"format error: element format specifier"
6178 " cannot be provided when 'm' specifier is used");
6181 __throw_format_error(
"format error: 'm' specifier requires"
6182 " range of pairs or tuples of two elements");
6186 return __parse_val();
6188 if (*__first ==
':')
6190 __pc.advance_to(++__first);
6191 __first = _M_fval.parse(__pc);
6195 return __finalize();
6197 __format::__failed_to_parse_format_spec();
6202 template<ranges::input_range _Rg,
typename _Out>
6203 requires formattable<ranges::range_reference_t<_Rg>, _CharT> &&
6204 same_as<remove_cvref_t<ranges::range_reference_t<_Rg>>, _Tp>
6205 typename basic_format_context<_Out, _CharT>::iterator
6206 format(_Rg&& __rg, basic_format_context<_Out, _CharT>& __fc)
const
6208 using _Range = remove_reference_t<_Rg>;
6209 if constexpr (__format::__simply_formattable_range<_Range, _CharT>)
6210 return _M_format<const _Range>(__rg, __fc);
6212 return _M_format(__rg, __fc);
6216 template<ranges::input_range _Rg,
typename _Out>
6217 typename basic_format_context<_Out, _CharT>::iterator
6218 _M_format(_Rg& __rg, basic_format_context<_Out, _CharT>& __fc)
const
6220 if constexpr (same_as<_Tp, _CharT>)
6221 if (_M_spec._M_type == __format::_Pres_s)
6223 __format::__formatter_str __fstr(_M_spec);
6224 return __fstr._M_format_range(__rg, __fc);
6226 return __format::__format_padded(
6228 [
this, &__rg](basic_format_context<_Out, _CharT>& __nfc)
6229 {
return _M_format_elems(__rg, __nfc); });
6233 template<ranges::input_range _Rg,
typename _Out>
6234 typename basic_format_context<_Out, _CharT>::iterator
6235 _M_format_elems(_Rg& __rg,
6236 basic_format_context<_Out, _CharT>& __fc)
const
6238 auto __out = __format::__write(__fc.out(), _M_open);
6240 auto __first = ranges::begin(__rg);
6241 auto const __last = ranges::end(__rg);
6242 if (__first == __last)
6243 return __format::__write(__out, _M_close);
6245 __fc.advance_to(__out);
6246 __out = _M_fval.format(*__first, __fc);
6247 for (++__first; __first != __last; ++__first)
6249 __out = __format::__write(__out, _M_sep);
6250 __fc.advance_to(__out);
6251 __out = _M_fval.format(*__first, __fc);
6254 return __format::__write(__out, _M_close);
6257 __format::_Spec<_CharT> _M_spec{};
6258 _String_view _M_open = _Seps::_S_squares().substr(0, 1);
6259 _String_view _M_close = _Seps::_S_squares().substr(1, 1);
6260 _String_view _M_sep = _Seps::_S_comma();
6261 formatter<_Tp, _CharT> _M_fval;
6269 template<ranges::input_range _Rg, __format::__
char _CharT>
6270 requires (format_kind<_Rg> != range_format::disabled)
6271 && formattable<ranges::range_reference_t<_Rg>, _CharT>
6272 struct formatter<_Rg, _CharT>
6275 static const bool _S_range_format_is_string =
6276 (format_kind<_Rg> == range_format::string)
6277 || (format_kind<_Rg> == range_format::debug_string);
6278 using _Vt = remove_cvref_t<
6279 ranges::range_reference_t<
6280 __format::__maybe_const_range<_Rg, _CharT>>>;
6282 static consteval bool _S_is_correct()
6284 if constexpr (_S_range_format_is_string)
6285 static_assert(same_as<_Vt, _CharT>);
6289 static_assert(_S_is_correct());
6292 constexpr formatter() noexcept
6294 using _Seps = __format::_Separators<_CharT>;
6295 if constexpr (format_kind<_Rg> == range_format::map)
6297 static_assert(__format::__is_map_formattable<_Vt>);
6298 _M_under.set_brackets(_Seps::_S_braces().substr(0, 1),
6299 _Seps::_S_braces().substr(1, 1));
6300 _M_under.underlying().set_brackets({}, {});
6301 _M_under.underlying().set_separator(_Seps::_S_colon());
6303 else if constexpr (format_kind<_Rg> == range_format::set)
6304 _M_under.set_brackets(_Seps::_S_braces().substr(0, 1),
6305 _Seps::_S_braces().substr(1, 1));
6309 set_separator(basic_string_view<_CharT> __sep)
noexcept
6310 requires (format_kind<_Rg> == range_format::sequence)
6311 { _M_under.set_separator(__sep); }
6314 set_brackets(basic_string_view<_CharT> __open,
6315 basic_string_view<_CharT> __close)
noexcept
6316 requires (format_kind<_Rg> == range_format::sequence)
6317 { _M_under.set_brackets(__open, __close); }
6321 constexpr typename basic_format_parse_context<_CharT>::iterator
6322 parse(basic_format_parse_context<_CharT>& __pc)
6324 auto __res = _M_under.parse(__pc);
6325 if constexpr (format_kind<_Rg> == range_format::debug_string)
6326 _M_under.set_debug_format();
6332 template<
typename _Out>
6333 typename basic_format_context<_Out, _CharT>::iterator
6334 format(__format::__maybe_const_range<_Rg, _CharT>& __rg,
6335 basic_format_context<_Out, _CharT>& __fc)
const
6337 if constexpr (_S_range_format_is_string)
6338 return _M_under._M_format_range(__rg, __fc);
6340 return _M_under.format(__rg, __fc);
6344 using _Formatter_under
6345 = __conditional_t<_S_range_format_is_string,
6346 __format::__formatter_str<_CharT>,
6347 range_formatter<_Vt, _CharT>>;
6348 _Formatter_under _M_under;
6351#if __glibcxx_print >= 202406L
6352 template<ranges::input_range _Rg>
6353 requires (format_kind<_Rg> != range_format::disabled)
6354 constexpr bool enable_nonlocking_formatter_optimization<_Rg> =
false;
6358#undef _GLIBCXX_WIDEN
6360_GLIBCXX_END_NAMESPACE_VERSION
6363#pragma GCC diagnostic pop
constexpr complex< _Tp > operator*(const complex< _Tp > &__x, const complex< _Tp > &__y)
Return new complex value x times y.
_Tp arg(const complex< _Tp > &)
Return phase angle of z.
constexpr _Tp * to_address(_Tp *__ptr) noexcept
Obtain address referenced by a pointer to an object.
typename remove_reference< _Tp >::type remove_reference_t
Alias template for remove_reference.
pair(_T1, _T2) -> pair< _T1, _T2 >
Two pairs are equal iff their members are equal.
constexpr _Tp * addressof(_Tp &__r) noexcept
Returns the actual address of the object or function referenced by r, even in the presence of an over...
constexpr std::remove_reference< _Tp >::type && move(_Tp &&__t) noexcept
Convert a value to an rvalue.
constexpr _Tp && forward(typename std::remove_reference< _Tp >::type &__t) noexcept
Forward an lvalue.
const _Facet & use_facet(const locale &__loc)
Return a facet.
basic_string< char > string
A string of char.
ISO C++ entities toplevel namespace is std.
chars_format
floating-point format for primitive numerical conversion
_CharT toupper(_CharT __c, const locale &__loc)
Convenience interface to ctype.toupper(__c).
__numeric_traits_integer< _Tp > __int_traits
Convenience alias for __numeric_traits<integer-type>.
A non-owning reference to a string.
Managing sequences of characters and character-like objects.
constexpr size_type size() const noexcept
Returns the number of characters in the string, not including any null-termination.
constexpr void reserve(size_type __res_arg)
Attempt to preallocate enough memory for specified number of characters.
constexpr const _CharT * data() const noexcept
Return const pointer to contents.
constexpr basic_string substr(size_type __pos=0, size_type __n=npos) const
Get a substring.
constexpr void __resize_and_overwrite(size_type __n, _Operation __op)
Non-standard version of resize_and_overwrite for C++11 and above.
constexpr basic_string & append(const basic_string &__str)
Append a string to this string.
constexpr iterator insert(const_iterator __p, size_type __n, _CharT __c)
Insert multiple characters.
constexpr size_type capacity() const noexcept
constexpr bool empty() const noexcept
One of two subclasses of exception.
A standard container which offers fixed time access to individual elements in any order.