// -*- C++ -*-
//===----------------------------------------------------------------------===//
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//===----------------------------------------------------------------------===//
// WARNING, this entire header is generated by
// utils/generate_width_estimation_table.py
// DO NOT MODIFY!
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#ifndef _LIBCPP___FORMAT_WIDTH_ESTIMATION_TABLE_H
#define _LIBCPP___FORMAT_WIDTH_ESTIMATION_TABLE_H
#include <__algorithm/ranges_upper_bound.h>
#include <__config>
#include <cstddef>
#include <cstdint>
#if !defined(_LIBCPP_HAS_NO_PRAGMA_SYSTEM_HEADER)
# pragma GCC system_header
#endif
_LIBCPP_BEGIN_NAMESPACE_STD
#if _LIBCPP_STD_VER >= 20
namespace __width_estimation_table {
/// The entries of the characters with an estimated width of 2.
///
/// Contains the entries for [format.string.std]/12
/// - Any code point with the East_Asian_Width="W" or East_Asian_Width="F"
/// Derived Extracted Property as described by UAX #44
/// - U+4DC0 - U+4DFF (Yijing Hexagram Symbols)
/// - U+1F300 - U+1F5FF (Miscellaneous Symbols and Pictographs)
/// - U+1F900 - U+1F9FF (Supplemental Symbols and Pictographs)
///
/// The data is generated from
/// - https://www.unicode.org/Public/UCD/latest/ucd/EastAsianWidth.txt
/// - The "overrides" in [format.string.std]/12
///
/// The format of EastAsianWidth.txt is two fields separated by a semicolon.
/// Field 0: Unicode code point value or range of code point values
/// Field 1: East_Asian_Width property, consisting of one of the following values:
/// "A", "F", "H", "N", "Na", "W"
/// - All code points, assigned or unassigned, that are not listed
/// explicitly are given the value "N".
/// - The unassigned code points in the following blocks default to "W":
/// CJK Unified Ideographs Extension A: U+3400..U+4DBF
/// CJK Unified Ideographs: U+4E00..U+9FFF
/// CJK Compatibility Ideographs: U+F900..U+FAFF
/// - All undesignated code points in Planes 2 and 3, whether inside or
/// outside of allocated blocks, default to "W":
/// Plane 2: U+20000..U+2FFFD
/// Plane 3: U+30000..U+3FFFD
///
/// The table is similar to the table
/// __extended_grapheme_custer_property_boundary::__entries
/// which explains the details of these classes. The only difference is this
/// table lacks a property, thus having more bits available for the size.
///
/// The maximum code point that has an estimated width of 2 is U+3FFFD. This
/// value can be encoded in 18 bits. Thus the upper 3 bits of the code point
/// are always 0. These 3 bits are used to enlarge the offset range. This
/// optimization reduces the table in Unicode 15 from 184 to 104 entries,
/// saving 320 bytes.
///
/// The data has 2 values:
/// - bits [0, 13] The size of the range, allowing 16384 elements.
/// - bits [14, 31] The lower bound code point of the range. The upper bound of
/// the range is lower bound + size.
_LIBCPP_HIDE_FROM_ABI inline constexpr uint32_t __entries[107] = {
0x0440005f /* 00001100 - 0000115f [ 96] */, //
0x08c68001 /* 0000231a - 0000231b [ 2] */, //
0x08ca4001 /* 00002329 - 0000232a [ 2] */, //
0x08fa4003 /* 000023e9 - 000023ec [ 4] */, //
0x08fc0000 /* 000023f0 - 000023f0 [ 1] */, //
0x08fcc000 /* 000023f3 - 000023f3 [ 1] */, //
0x097f4001 /* 000025fd - 000025fe [ 2] */, //
0x09850001 /* 00002614 - 00002615 [ 2] */, //
0x0992000b /* 00002648 - 00002653 [ 12] */, //
0x099fc000 /* 0000267f - 0000267f [ 1] */, //
0x09a4c000 /* 00002693 - 00002693 [ 1] */, //
0x09a84000 /* 000026a1 - 000026a1 [ 1] */, //
0x09aa8001 /* 000026aa - 000026ab [ 2] */, //
0x09af4001 /* 000026bd - 000026be [ 2] */, //
0x09b10001 /* 000026c4 - 000026c5 [ 2] */, //
0x09b38000 /* 000026ce - 000026ce [ 1] */, //
0x09b50000 /* 000026d4 - 000026d4 [ 1] */, //
0x09ba8000 /* 000026ea - 000026ea [ 1] */, //
0x09bc8001 /* 000026f2 - 000026f3 [ 2] */, //
0x09bd4000 /* 000026f5 - 000026f5 [ 1] */, //
0x09be8000 /* 000026fa - 000026fa [ 1] */, //
0x09bf4000 /* 000026fd - 000026fd [ 1] */, //
0x09c14000 /* 00002705 - 00002705 [ 1] */, //
0x09c28001 /* 0000270a - 0000270b [ 2] */, //
0x09ca0000 /* 00002728 - 00002728 [ 1] */, //
0x09d30000 /* 0000274c - 0000274c [ 1] */, //
0x09d38000 /* 0000274e - 0000274e [ 1] */, //
0x09d4c002 /* 00002753 - 00002755 [ 3] */, //
0x09d5c000 /* 00002757 - 00002757 [ 1] */, //
0x09e54002 /* 00002795 - 00002797 [ 3] */, //
0x09ec0000 /* 000027b0 - 000027b0 [ 1] */, //
0x09efc000 /* 000027bf - 000027bf [ 1] */, //
0x0ac6c001 /* 00002b1b - 00002b1c [ 2] */, //
0x0ad40000 /* 00002b50 - 00002b50 [ 1] */, //
0x0ad54000 /* 00002b55 - 00002b55 [ 1] */, //
0x0ba00019 /* 00002e80 - 00002e99 [ 26] */, //
0x0ba6c058 /* 00002e9b - 00002ef3 [ 89] */, //
0x0bc000d5 /* 00002f00 - 00002fd5 [ 214] */, //
0x0bfc004e /* 00002ff0 - 0000303e [ 79] */, //
0x0c104055 /* 00003041 - 00003096 [ 86] */, //
0x0c264066 /* 00003099 - 000030ff [ 103] */, //
0x0c41402a /* 00003105 - 0000312f [ 43] */, //
0x0c4c405d /* 00003131 - 0000318e [ 94] */, //
0x0c640053 /* 00003190 - 000031e3 [ 84] */, //
0x0c7bc02f /* 000031ef - 0000321e [ 48] */, //
0x0c880027 /* 00003220 - 00003247 [ 40] */, //
0x0c943fff /* 00003250 - 0000724f [16384] */, //
0x1c94323c /* 00007250 - 0000a48c [12861] */, //
0x29240036 /* 0000a490 - 0000a4c6 [ 55] */, //
0x2a58001c /* 0000a960 - 0000a97c [ 29] */, //
0x2b002ba3 /* 0000ac00 - 0000d7a3 [11172] */, //
0x3e4001ff /* 0000f900 - 0000faff [ 512] */, //
0x3f840009 /* 0000fe10 - 0000fe19 [ 10] */, //
0x3f8c0022 /* 0000fe30 - 0000fe52 [ 35] */, //
0x3f950012 /* 0000fe54 - 0000fe66 [ 19] */, //
0x3f9a0003 /* 0000fe68 - 0000fe6b [ 4] */, //
0x3fc0405f /* 0000ff01 - 0000ff60 [ 96] */, //
0x3ff80006 /* 0000ffe0 - 0000ffe6 [ 7] */, //
0x5bf80004 /* 00016fe0 - 00016fe4 [ 5] */, //
0x5bfc0001 /* 00016ff0 - 00016ff1 [ 2] */, //
0x5c0017f7 /* 00017000 - 000187f7 [ 6136] */, //
0x620004d5 /* 00018800 - 00018cd5 [ 1238] */, //
0x63400008 /* 00018d00 - 00018d08 [ 9] */, //
0x6bfc0003 /* 0001aff0 - 0001aff3 [ 4] */, //
0x6bfd4006 /* 0001aff5 - 0001affb [ 7] */, //
0x6bff4001 /* 0001affd - 0001affe [ 2] */, //
0x6c000122 /* 0001b000 - 0001b122 [ 291] */, //
0x6c4c8000 /* 0001b132 - 0001b132 [ 1] */, //
0x6c540002 /* 0001b150 - 0001b152 [ 3] */, //
0x6c554000 /* 0001b155 - 0001b155 [ 1] */, //
0x6c590003 /* 0001b164 - 0001b167 [ 4] */, //
0x6c5c018b /* 0001b170 - 0001b2fb [ 396] */, //
0x7c010000 /* 0001f004 - 0001f004 [ 1] */, //
0x7c33c000 /* 0001f0cf - 0001f0cf [ 1] */, //
0x7c638000 /* 0001f18e - 0001f18e [ 1] */, //
0x7c644009 /* 0001f191 - 0001f19a [ 10] */, //
0x7c800002 /* 0001f200 - 0001f202 [ 3] */, //
0x7c84002b /* 0001f210 - 0001f23b [ 44] */, //
0x7c900008 /* 0001f240 - 0001f248 [ 9] */, //
0x7c940001 /* 0001f250 - 0001f251 [ 2] */, //
0x7c980005 /* 0001f260 - 0001f265 [ 6] */, //
0x7cc0034f /* 0001f300 - 0001f64f [ 848] */, //
0x7da00045 /* 0001f680 - 0001f6c5 [ 70] */, //
0x7db30000 /* 0001f6cc - 0001f6cc [ 1] */, //
0x7db40002 /* 0001f6d0 - 0001f6d2 [ 3] */, //
0x7db54002 /* 0001f6d5 - 0001f6d7 [ 3] */, //
0x7db70003 /* 0001f6dc - 0001f6df [ 4] */, //
0x7dbac001 /* 0001f6eb - 0001f6ec [ 2] */, //
0x7dbd0008 /* 0001f6f4 - 0001f6fc [ 9] */, //
0x7df8000b /* 0001f7e0 - 0001f7eb [ 12] */, //
0x7dfc0000 /* 0001f7f0 - 0001f7f0 [ 1] */, //
0x7e4000ff /* 0001f900 - 0001f9ff [ 256] */, //
0x7e9c000c /* 0001fa70 - 0001fa7c [ 13] */, //
0x7ea00008 /* 0001fa80 - 0001fa88 [ 9] */, //
0x7ea4002d /* 0001fa90 - 0001fabd [ 46] */, //
0x7eafc006 /* 0001fabf - 0001fac5 [ 7] */, //
0x7eb3800d /* 0001face - 0001fadb [ 14] */, //
0x7eb80008 /* 0001fae0 - 0001fae8 [ 9] */, //
0x7ebc0008 /* 0001faf0 - 0001faf8 [ 9] */, //
0x80003fff /* 00020000 - 00023fff [16384] */, //
0x90003fff /* 00024000 - 00027fff [16384] */, //
0xa0003fff /* 00028000 - 0002bfff [16384] */, //
0xb0003ffd /* 0002c000 - 0002fffd [16382] */, //
0xc0003fff /* 00030000 - 00033fff [16384] */, //
0xd0003fff /* 00034000 - 00037fff [16384] */, //
0xe0003fff /* 00038000 - 0003bfff [16384] */, //
0xf0003ffd /* 0003c000 - 0003fffd [16382] */};
/// The upper bound entry of EastAsianWidth.txt.
///
/// Values greater than this value may have more than 18 significant bits.
/// They always have a width of 1. This property makes it possible to store
/// the table in its compact form.
inline constexpr uint32_t __table_upper_bound = 0x0003fffd;
/// Returns the estimated width of a Unicode code point.
///
/// \\pre The code point is a valid Unicode code point.
[[nodiscard]] _LIBCPP_HIDE_FROM_ABI constexpr int __estimated_width(const char32_t __code_point) noexcept {
// Since __table_upper_bound contains the unshifted range do the
// comparison without shifting.
if (__code_point > __table_upper_bound) [[unlikely]]
return 1;
// When the code-point is less than the first element in the table
// the lookup is quite expensive. Since quite some scripts are in
// that range, it makes sense to validate that first.
// The std_format_spec_string_unicode benchmark gives a measurable
// improvement.
if (__code_point < (__entries[0] >> 14))
return 1;
ptrdiff_t __i = std::ranges::upper_bound(__entries, (__code_point << 14) | 0x3fffu) - __entries;
if (__i == 0)
return 1;
--__i;
uint32_t __upper_bound = (__entries[__i] >> 14) + (__entries[__i] & 0x3fffu);
return 1 + (__code_point <= __upper_bound);
}
} // namespace __width_estimation_table
#endif // _LIBCPP_STD_VER >= 20
_LIBCPP_END_NAMESPACE_STD
#endif // _LIBCPP___FORMAT_WIDTH_ESTIMATION_TABLE_H