[flang] Fix crash in HLFIR generation (#118399)
[llvm-project.git] / libcxx / include / __format / formatter_output.h
blobe1f1309cd2c532def4298e0a566bf9fcaaa277c2
1 // -*- C++ -*-
2 //===----------------------------------------------------------------------===//
3 //
4 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
5 // See https://llvm.org/LICENSE.txt for license information.
6 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
7 //
8 //===----------------------------------------------------------------------===//
10 #ifndef _LIBCPP___FORMAT_FORMATTER_OUTPUT_H
11 #define _LIBCPP___FORMAT_FORMATTER_OUTPUT_H
13 #include <__algorithm/ranges_copy.h>
14 #include <__algorithm/ranges_fill_n.h>
15 #include <__algorithm/ranges_transform.h>
16 #include <__bit/countl.h>
17 #include <__concepts/same_as.h>
18 #include <__config>
19 #include <__cstddef/ptrdiff_t.h>
20 #include <__cstddef/size_t.h>
21 #include <__format/buffer.h>
22 #include <__format/concepts.h>
23 #include <__format/formatter.h>
24 #include <__format/parser_std_format_spec.h>
25 #include <__format/unicode.h>
26 #include <__iterator/back_insert_iterator.h>
27 #include <__iterator/concepts.h>
28 #include <__iterator/iterator_traits.h>
29 #include <__memory/addressof.h>
30 #include <__memory/pointer_traits.h>
31 #include <__utility/move.h>
32 #include <__utility/unreachable.h>
33 #include <string_view>
35 #if !defined(_LIBCPP_HAS_NO_PRAGMA_SYSTEM_HEADER)
36 # pragma GCC system_header
37 #endif
39 _LIBCPP_PUSH_MACROS
40 #include <__undef_macros>
42 _LIBCPP_BEGIN_NAMESPACE_STD
44 #if _LIBCPP_STD_VER >= 20
46 namespace __formatter {
48 _LIBCPP_HIDE_FROM_ABI constexpr char __hex_to_upper(char __c) {
49 switch (__c) {
50 case 'a':
51 return 'A';
52 case 'b':
53 return 'B';
54 case 'c':
55 return 'C';
56 case 'd':
57 return 'D';
58 case 'e':
59 return 'E';
60 case 'f':
61 return 'F';
63 return __c;
66 struct _LIBCPP_EXPORTED_FROM_ABI __padding_size_result {
67 size_t __before_;
68 size_t __after_;
71 _LIBCPP_HIDE_FROM_ABI constexpr __padding_size_result
72 __padding_size(size_t __size, size_t __width, __format_spec::__alignment __align) {
73 _LIBCPP_ASSERT_INTERNAL(__width > __size, "don't call this function when no padding is required");
74 _LIBCPP_ASSERT_INTERNAL(
75 __align != __format_spec::__alignment::__zero_padding, "the caller should have handled the zero-padding");
77 size_t __fill = __width - __size;
78 switch (__align) {
79 case __format_spec::__alignment::__zero_padding:
80 __libcpp_unreachable();
82 case __format_spec::__alignment::__left:
83 return {0, __fill};
85 case __format_spec::__alignment::__center: {
86 // The extra padding is divided per [format.string.std]/3
87 // __before = floor(__fill, 2);
88 // __after = ceil(__fill, 2);
89 size_t __before = __fill / 2;
90 size_t __after = __fill - __before;
91 return {__before, __after};
93 case __format_spec::__alignment::__default:
94 case __format_spec::__alignment::__right:
95 return {__fill, 0};
97 __libcpp_unreachable();
100 /// Copy wrapper.
102 /// This uses a "mass output function" of __format::__output_buffer when possible.
103 template <__fmt_char_type _CharT, __fmt_char_type _OutCharT = _CharT>
104 _LIBCPP_HIDE_FROM_ABI auto
105 __copy(basic_string_view<_CharT> __str, output_iterator<const _OutCharT&> auto __out_it) -> decltype(__out_it) {
106 if constexpr (std::same_as<decltype(__out_it), std::back_insert_iterator<__format::__output_buffer<_OutCharT>>>) {
107 __out_it.__get_container()->__copy(__str);
108 return __out_it;
109 } else if constexpr (std::same_as<decltype(__out_it), typename __format::__retarget_buffer<_OutCharT>::__iterator>) {
110 __out_it.__buffer_->__copy(__str);
111 return __out_it;
112 } else {
113 return std::ranges::copy(__str, std::move(__out_it)).out;
117 template <contiguous_iterator _Iterator,
118 __fmt_char_type _CharT = typename iterator_traits<_Iterator>::value_type,
119 __fmt_char_type _OutCharT = _CharT>
120 _LIBCPP_HIDE_FROM_ABI auto
121 __copy(_Iterator __first, _Iterator __last, output_iterator<const _OutCharT&> auto __out_it) -> decltype(__out_it) {
122 return __formatter::__copy(basic_string_view{__first, __last}, std::move(__out_it));
125 template <contiguous_iterator _Iterator,
126 __fmt_char_type _CharT = typename iterator_traits<_Iterator>::value_type,
127 __fmt_char_type _OutCharT = _CharT>
128 _LIBCPP_HIDE_FROM_ABI auto
129 __copy(_Iterator __first, size_t __n, output_iterator<const _OutCharT&> auto __out_it) -> decltype(__out_it) {
130 return __formatter::__copy(basic_string_view{std::to_address(__first), __n}, std::move(__out_it));
133 /// Transform wrapper.
135 /// This uses a "mass output function" of __format::__output_buffer when possible.
136 template <contiguous_iterator _Iterator,
137 __fmt_char_type _CharT = typename iterator_traits<_Iterator>::value_type,
138 __fmt_char_type _OutCharT = _CharT,
139 class _UnaryOperation>
140 _LIBCPP_HIDE_FROM_ABI auto
141 __transform(_Iterator __first,
142 _Iterator __last,
143 output_iterator<const _OutCharT&> auto __out_it,
144 _UnaryOperation __operation) -> decltype(__out_it) {
145 if constexpr (std::same_as<decltype(__out_it), std::back_insert_iterator<__format::__output_buffer<_OutCharT>>>) {
146 __out_it.__get_container()->__transform(__first, __last, std::move(__operation));
147 return __out_it;
148 } else if constexpr (std::same_as<decltype(__out_it), typename __format::__retarget_buffer<_OutCharT>::__iterator>) {
149 __out_it.__buffer_->__transform(__first, __last, std::move(__operation));
150 return __out_it;
151 } else {
152 return std::ranges::transform(__first, __last, std::move(__out_it), __operation).out;
156 /// Fill wrapper.
158 /// This uses a "mass output function" of __format::__output_buffer when possible.
159 template <__fmt_char_type _CharT, output_iterator<const _CharT&> _OutIt>
160 _LIBCPP_HIDE_FROM_ABI _OutIt __fill(_OutIt __out_it, size_t __n, _CharT __value) {
161 if constexpr (std::same_as<decltype(__out_it), std::back_insert_iterator<__format::__output_buffer<_CharT>>>) {
162 __out_it.__get_container()->__fill(__n, __value);
163 return __out_it;
164 } else if constexpr (std::same_as<decltype(__out_it), typename __format::__retarget_buffer<_CharT>::__iterator>) {
165 __out_it.__buffer_->__fill(__n, __value);
166 return __out_it;
167 } else {
168 return std::ranges::fill_n(std::move(__out_it), __n, __value);
172 # if _LIBCPP_HAS_UNICODE
173 template <__fmt_char_type _CharT, output_iterator<const _CharT&> _OutIt>
174 requires(same_as<_CharT, char>)
175 _LIBCPP_HIDE_FROM_ABI _OutIt __fill(_OutIt __out_it, size_t __n, __format_spec::__code_point<_CharT> __value) {
176 std::size_t __bytes = std::countl_one(static_cast<unsigned char>(__value.__data[0]));
177 if (__bytes == 0)
178 return __formatter::__fill(std::move(__out_it), __n, __value.__data[0]);
180 for (size_t __i = 0; __i < __n; ++__i)
181 __out_it = __formatter::__copy(
182 std::addressof(__value.__data[0]), std::addressof(__value.__data[0]) + __bytes, std::move(__out_it));
183 return __out_it;
186 # if _LIBCPP_HAS_WIDE_CHARACTERS
187 template <__fmt_char_type _CharT, output_iterator<const _CharT&> _OutIt>
188 requires(same_as<_CharT, wchar_t> && sizeof(wchar_t) == 2)
189 _LIBCPP_HIDE_FROM_ABI _OutIt __fill(_OutIt __out_it, size_t __n, __format_spec::__code_point<_CharT> __value) {
190 if (!__unicode::__is_high_surrogate(__value.__data[0]))
191 return __formatter::__fill(std::move(__out_it), __n, __value.__data[0]);
193 for (size_t __i = 0; __i < __n; ++__i)
194 __out_it = __formatter::__copy(
195 std::addressof(__value.__data[0]), std::addressof(__value.__data[0]) + 2, std::move(__out_it));
196 return __out_it;
199 template <__fmt_char_type _CharT, output_iterator<const _CharT&> _OutIt>
200 requires(same_as<_CharT, wchar_t> && sizeof(wchar_t) == 4)
201 _LIBCPP_HIDE_FROM_ABI _OutIt __fill(_OutIt __out_it, size_t __n, __format_spec::__code_point<_CharT> __value) {
202 return __formatter::__fill(std::move(__out_it), __n, __value.__data[0]);
204 # endif // _LIBCPP_HAS_WIDE_CHARACTERS
205 # else // _LIBCPP_HAS_UNICODE
206 template <__fmt_char_type _CharT, output_iterator<const _CharT&> _OutIt>
207 _LIBCPP_HIDE_FROM_ABI _OutIt __fill(_OutIt __out_it, size_t __n, __format_spec::__code_point<_CharT> __value) {
208 return __formatter::__fill(std::move(__out_it), __n, __value.__data[0]);
210 # endif // _LIBCPP_HAS_UNICODE
212 /// Writes the input to the output with the required padding.
214 /// Since the output column width is specified the function can be used for
215 /// ASCII and Unicode output.
217 /// \pre \a __size <= \a __width. Using this function when this pre-condition
218 /// doesn't hold incurs an unwanted overhead.
220 /// \param __str The string to write.
221 /// \param __out_it The output iterator to write to.
222 /// \param __specs The parsed formatting specifications.
223 /// \param __size The (estimated) output column width. When the elements
224 /// to be written are ASCII the following condition holds
225 /// \a __size == \a __last - \a __first.
227 /// \returns An iterator pointing beyond the last element written.
229 /// \note The type of the elements in range [\a __first, \a __last) can differ
230 /// from the type of \a __specs. Integer output uses \c std::to_chars for its
231 /// conversion, which means the [\a __first, \a __last) always contains elements
232 /// of the type \c char.
233 template <class _CharT, class _ParserCharT>
234 _LIBCPP_HIDE_FROM_ABI auto
235 __write(basic_string_view<_CharT> __str,
236 output_iterator<const _CharT&> auto __out_it,
237 __format_spec::__parsed_specifications<_ParserCharT> __specs,
238 ptrdiff_t __size) -> decltype(__out_it) {
239 if (__size >= __specs.__width_)
240 return __formatter::__copy(__str, std::move(__out_it));
242 __padding_size_result __padding = __formatter::__padding_size(__size, __specs.__width_, __specs.__std_.__alignment_);
243 __out_it = __formatter::__fill(std::move(__out_it), __padding.__before_, __specs.__fill_);
244 __out_it = __formatter::__copy(__str, std::move(__out_it));
245 return __formatter::__fill(std::move(__out_it), __padding.__after_, __specs.__fill_);
248 template <contiguous_iterator _Iterator, class _ParserCharT>
249 _LIBCPP_HIDE_FROM_ABI auto
250 __write(_Iterator __first,
251 _Iterator __last,
252 output_iterator<const iter_value_t<_Iterator>&> auto __out_it,
253 __format_spec::__parsed_specifications<_ParserCharT> __specs,
254 ptrdiff_t __size) -> decltype(__out_it) {
255 _LIBCPP_ASSERT_VALID_INPUT_RANGE(__first <= __last, "Not a valid range");
256 return __formatter::__write(basic_string_view{__first, __last}, std::move(__out_it), __specs, __size);
259 /// \overload
261 /// Calls the function above where \a __size = \a __last - \a __first.
262 template <contiguous_iterator _Iterator, class _ParserCharT>
263 _LIBCPP_HIDE_FROM_ABI auto
264 __write(_Iterator __first,
265 _Iterator __last,
266 output_iterator<const iter_value_t<_Iterator>&> auto __out_it,
267 __format_spec::__parsed_specifications<_ParserCharT> __specs) -> decltype(__out_it) {
268 _LIBCPP_ASSERT_VALID_INPUT_RANGE(__first <= __last, "Not a valid range");
269 return __formatter::__write(__first, __last, std::move(__out_it), __specs, __last - __first);
272 template <contiguous_iterator _Iterator,
273 class _CharT = typename iterator_traits<_Iterator>::value_type,
274 class _ParserCharT,
275 class _UnaryOperation>
276 _LIBCPP_HIDE_FROM_ABI auto __write_transformed(
277 _Iterator __first,
278 _Iterator __last,
279 output_iterator<const _CharT&> auto __out_it,
280 __format_spec::__parsed_specifications<_ParserCharT> __specs,
281 _UnaryOperation __op) -> decltype(__out_it) {
282 _LIBCPP_ASSERT_VALID_INPUT_RANGE(__first <= __last, "Not a valid range");
284 ptrdiff_t __size = __last - __first;
285 if (__size >= __specs.__width_)
286 return __formatter::__transform(__first, __last, std::move(__out_it), __op);
288 __padding_size_result __padding = __formatter::__padding_size(__size, __specs.__width_, __specs.__alignment_);
289 __out_it = __formatter::__fill(std::move(__out_it), __padding.__before_, __specs.__fill_);
290 __out_it = __formatter::__transform(__first, __last, std::move(__out_it), __op);
291 return __formatter::__fill(std::move(__out_it), __padding.__after_, __specs.__fill_);
294 /// Writes a string using format's width estimation algorithm.
296 /// \pre !__specs.__has_precision()
298 /// \note When \c _LIBCPP_HAS_UNICODE is false the function assumes the input is ASCII.
299 template <class _CharT>
300 _LIBCPP_HIDE_FROM_ABI auto __write_string_no_precision(
301 basic_string_view<_CharT> __str,
302 output_iterator<const _CharT&> auto __out_it,
303 __format_spec::__parsed_specifications<_CharT> __specs) -> decltype(__out_it) {
304 _LIBCPP_ASSERT_INTERNAL(!__specs.__has_precision(), "use __write_string");
306 // No padding -> copy the string
307 if (!__specs.__has_width())
308 return __formatter::__copy(__str, std::move(__out_it));
310 // Note when the estimated width is larger than size there's no padding. So
311 // there's no reason to get the real size when the estimate is larger than or
312 // equal to the minimum field width.
313 size_t __size =
314 __format_spec::__estimate_column_width(__str, __specs.__width_, __format_spec::__column_width_rounding::__up)
315 .__width_;
316 return __formatter::__write(__str, std::move(__out_it), __specs, __size);
319 template <class _CharT>
320 _LIBCPP_HIDE_FROM_ABI int __truncate(basic_string_view<_CharT>& __str, int __precision) {
321 __format_spec::__column_width_result __result =
322 __format_spec::__estimate_column_width(__str, __precision, __format_spec::__column_width_rounding::__down);
323 __str = basic_string_view<_CharT>{__str.begin(), __result.__last_};
324 return __result.__width_;
327 } // namespace __formatter
329 #endif // _LIBCPP_STD_VER >= 20
331 _LIBCPP_END_NAMESPACE_STD
333 _LIBCPP_POP_MACROS
335 #endif // _LIBCPP___FORMAT_FORMATTER_OUTPUT_H