340 lines
		
	
	
		
			12 KiB
		
	
	
	
		
			C++
		
	
	
	
			
		
		
	
	
			340 lines
		
	
	
		
			12 KiB
		
	
	
	
		
			C++
		
	
	
	
// -*- C++ -*-
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//===----------------------------------------------------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#ifndef _LIBCPP___FORMAT_UNICODE_H
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#define _LIBCPP___FORMAT_UNICODE_H
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#include <__assert>
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#include <__config>
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#include <__format/extended_grapheme_cluster_table.h>
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#include <__utility/unreachable.h>
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#include <bit>
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#if !defined(_LIBCPP_HAS_NO_PRAGMA_SYSTEM_HEADER)
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#  pragma GCC system_header
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#endif
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_LIBCPP_BEGIN_NAMESPACE_STD
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#if _LIBCPP_STD_VER > 17
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#  ifndef _LIBCPP_HAS_NO_UNICODE
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/// Implements the grapheme cluster boundary rules
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///
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/// These rules are used to implement format's width estimation as stated in
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/// [format.string.std]/11
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///
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/// The Standard refers to UAX \#29 for Unicode 12.0.0
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/// https://www.unicode.org/reports/tr29/#Grapheme_Cluster_Boundary_Rules
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///
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/// The data tables used are
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/// https://www.unicode.org/Public/UCD/latest/ucd/auxiliary/GraphemeBreakProperty.txt
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/// https://www.unicode.org/Public/UCD/latest/ucd/emoji/emoji-data.txt
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/// https://www.unicode.org/Public/UCD/latest/ucd/auxiliary/GraphemeBreakTest.txt (for testing only)
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namespace __unicode {
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inline constexpr char32_t __replacement_character = U'\ufffd';
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_LIBCPP_HIDE_FROM_ABI constexpr bool __is_continuation(const char* __char, int __count) {
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  do {
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    if ((*__char & 0b1000'0000) != 0b1000'0000)
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      return false;
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    --__count;
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    ++__char;
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  } while (__count);
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  return true;
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}
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/// Helper class to extract a code unit from a Unicode character range.
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///
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/// The stored range is a view. There are multiple specialization for different
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/// character types.
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template <class _CharT>
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class __code_point_view;
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/// UTF-8 specialization.
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template <>
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class __code_point_view<char> {
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public:
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  _LIBCPP_HIDE_FROM_ABI constexpr explicit __code_point_view(const char* __first, const char* __last)
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      : __first_(__first), __last_(__last) {}
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  _LIBCPP_HIDE_FROM_ABI constexpr bool __at_end() const noexcept { return __first_ == __last_; }
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  _LIBCPP_HIDE_FROM_ABI constexpr const char* __position() const noexcept { return __first_; }
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  _LIBCPP_HIDE_FROM_ABI constexpr char32_t __consume() noexcept {
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    _LIBCPP_ASSERT(__first_ != __last_, "can't move beyond the end of input");
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    // Based on the number of leading 1 bits the number of code units in the
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    // code point can be determined. See
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    // https://en.wikipedia.org/wiki/UTF-8#Encoding
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    switch (_VSTD::countl_one(static_cast<unsigned char>(*__first_))) {
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    case 0:
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      return *__first_++;
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    case 2:
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      if (__last_ - __first_ < 2 || !__unicode::__is_continuation(__first_ + 1, 1)) [[unlikely]]
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        break;
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      else {
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        char32_t __value = static_cast<unsigned char>(*__first_++) & 0x1f;
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        __value <<= 6;
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        __value |= static_cast<unsigned char>(*__first_++) & 0x3f;
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        return __value;
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      }
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    case 3:
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      if (__last_ - __first_ < 3 || !__unicode::__is_continuation(__first_ + 1, 2)) [[unlikely]]
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        break;
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      else {
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        char32_t __value = static_cast<unsigned char>(*__first_++) & 0x0f;
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        __value <<= 6;
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        __value |= static_cast<unsigned char>(*__first_++) & 0x3f;
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        __value <<= 6;
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        __value |= static_cast<unsigned char>(*__first_++) & 0x3f;
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        return __value;
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      }
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    case 4:
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      if (__last_ - __first_ < 4 || !__unicode::__is_continuation(__first_ + 1, 3)) [[unlikely]]
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        break;
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      else {
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        char32_t __value = static_cast<unsigned char>(*__first_++) & 0x07;
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        __value <<= 6;
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        __value |= static_cast<unsigned char>(*__first_++) & 0x3f;
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        __value <<= 6;
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        __value |= static_cast<unsigned char>(*__first_++) & 0x3f;
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        __value <<= 6;
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        __value |= static_cast<unsigned char>(*__first_++) & 0x3f;
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        return __value;
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      }
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    }
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    // An invalid number of leading ones can be garbage or a code unit in the
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    // middle of a code point. By consuming one code unit the parser may get
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    // "in sync" after a few code units.
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    ++__first_;
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    return __replacement_character;
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  }
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private:
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  const char* __first_;
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  const char* __last_;
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};
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#    ifndef TEST_HAS_NO_WIDE_CHARACTERS
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/// This specialization depends on the size of wchar_t
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/// - 2 UTF-16 (for example Windows and AIX)
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/// - 4 UTF-32 (for example Linux)
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template <>
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class __code_point_view<wchar_t> {
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public:
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  _LIBCPP_HIDE_FROM_ABI constexpr explicit __code_point_view(const wchar_t* __first, const wchar_t* __last)
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      : __first_(__first), __last_(__last) {}
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  _LIBCPP_HIDE_FROM_ABI constexpr const wchar_t* __position() const noexcept { return __first_; }
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  _LIBCPP_HIDE_FROM_ABI constexpr bool __at_end() const noexcept { return __first_ == __last_; }
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  _LIBCPP_HIDE_FROM_ABI constexpr char32_t __consume() noexcept {
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    _LIBCPP_ASSERT(__first_ != __last_, "can't move beyond the end of input");
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    if constexpr (sizeof(wchar_t) == 2) {
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      char32_t __result = *__first_++;
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      // Is the code unit part of a surrogate pair? See
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      // https://en.wikipedia.org/wiki/UTF-16#U+D800_to_U+DFFF
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      if (__result >= 0xd800 && __result <= 0xDfff) {
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        // Malformed Unicode.
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        if (__first_ == __last_) [[unlikely]]
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          return __replacement_character;
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        __result -= 0xd800;
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        __result <<= 10;
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        __result += *__first_++ - 0xdc00;
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        __result += 0x10000;
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      }
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      return __result;
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    } else if constexpr (sizeof(wchar_t) == 4) {
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      char32_t __result = *__first_++;
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      if (__result > 0x10FFFF) [[unlikely]]
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        return __replacement_character;
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      return __result;
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    } else {
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      // TODO FMT P2593R0 Use static_assert(false, "sizeof(wchar_t) has a not implemented value");
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      _LIBCPP_ASSERT(sizeof(wchar_t) == 0, "sizeof(wchar_t) has a not implemented value");
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      __libcpp_unreachable();
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    }
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  }
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private:
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  const wchar_t* __first_;
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  const wchar_t* __last_;
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};
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#    endif
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_LIBCPP_HIDE_FROM_ABI constexpr bool __at_extended_grapheme_cluster_break(
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    bool& __ri_break_allowed,
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    bool __has_extened_pictographic,
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    __extended_grapheme_custer_property_boundary::__property __prev,
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    __extended_grapheme_custer_property_boundary::__property __next) {
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  using __extended_grapheme_custer_property_boundary::__property;
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  __has_extened_pictographic |= __prev == __property::__Extended_Pictographic;
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  // https://www.unicode.org/reports/tr29/tr29-39.html#Grapheme_Cluster_Boundary_Rules
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  // *** Break at the start and end of text, unless the text is empty. ***
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  _LIBCPP_ASSERT(__prev != __property::__sot, "should be handled in the constructor"); // GB1
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  _LIBCPP_ASSERT(__prev != __property::__eot, "should be handled by our caller");      // GB2
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  // *** Do not break between a CR and LF. Otherwise, break before and after controls. ***
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  if (__prev == __property::__CR && __next == __property::__LF) // GB3
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    return false;
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  if (__prev == __property::__Control || __prev == __property::__CR || __prev == __property::__LF) // GB4
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    return true;
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  if (__next == __property::__Control || __next == __property::__CR || __next == __property::__LF) // GB5
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    return true;
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  // *** Do not break Hangul syllable sequences. ***
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  if (__prev == __property::__L &&
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      (__next == __property::__L || __next == __property::__V || __next == __property::__LV ||
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       __next == __property::__LVT)) // GB6
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    return false;
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  if ((__prev == __property::__LV || __prev == __property::__V) &&
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      (__next == __property::__V || __next == __property::__T)) // GB7
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    return false;
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  if ((__prev == __property::__LVT || __prev == __property::__T) && __next == __property::__T) // GB8
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    return false;
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  // *** Do not break before extending characters or ZWJ. ***
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  if (__next == __property::__Extend || __next == __property::__ZWJ)
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    return false; // GB9
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  // *** Do not break before SpacingMarks, or after Prepend characters. ***
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  if (__next == __property::__SpacingMark) // GB9a
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    return false;
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  if (__prev == __property::__Prepend) // GB9b
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    return false;
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  // *** Do not break within emoji modifier sequences or emoji zwj sequences. ***
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  // GB11 \p{Extended_Pictographic} Extend* ZWJ x \p{Extended_Pictographic}
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  //
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  // Note that several parts of this rule are matched by GB9: Any x (Extend | ZWJ)
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  // - \p{Extended_Pictographic} x Extend
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  // - Extend x Extend
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  // - \p{Extended_Pictographic} x ZWJ
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  // - Extend x ZWJ
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  //
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  // So the only case left to test is
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  // - \p{Extended_Pictographic}' x ZWJ x \p{Extended_Pictographic}
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  //   where  \p{Extended_Pictographic}' is stored in __has_extened_pictographic
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  if (__has_extened_pictographic && __prev == __property::__ZWJ && __next == __property::__Extended_Pictographic)
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    return false;
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  // *** Do not break within emoji flag sequences ***
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  // That is, do not break between regional indicator (RI) symbols if there
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  // is an odd number of RI characters before the break point.
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  if (__prev == __property::__Regional_Indicator && __next == __property::__Regional_Indicator) { // GB12 + GB13
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    __ri_break_allowed = !__ri_break_allowed;
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    if (__ri_break_allowed)
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      return true;
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    return false;
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  }
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  // *** Otherwise, break everywhere. ***
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  return true; // GB999
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}
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/// Helper class to extract an extended grapheme cluster from a Unicode character range.
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///
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/// This function is used to determine the column width of an extended grapheme
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/// cluster. In order to do that only the first code point is evaluated.
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/// Therefore only this code point is extracted.
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template <class _CharT>
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class __extended_grapheme_cluster_view {
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public:
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  _LIBCPP_HIDE_FROM_ABI constexpr explicit __extended_grapheme_cluster_view(const _CharT* __first, const _CharT* __last)
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      : __code_point_view_(__first, __last),
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        __next_code_point_(__code_point_view_.__consume()),
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        __next_prop_(__extended_grapheme_custer_property_boundary::__get_property(__next_code_point_)) {}
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  struct __cluster {
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    /// The first code point of the extended grapheme cluster.
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    ///
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    /// The first code point is used to estimate the width of the extended
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    /// grapheme cluster.
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    char32_t __code_point_;
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    /// Points one beyond the last code unit in the extended grapheme cluster.
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    ///
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    /// It's expected the caller has the start position and thus can determine
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    /// the code unit range of the extended grapheme cluster.
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    const _CharT* __last_;
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  };
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  _LIBCPP_HIDE_FROM_ABI constexpr __cluster __consume() {
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    _LIBCPP_ASSERT(
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        __next_prop_ != __extended_grapheme_custer_property_boundary::__property::__eot,
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        "can't move beyond the end of input");
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    char32_t __code_point = __next_code_point_;
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    if (!__code_point_view_.__at_end())
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      return {__code_point, __get_break()};
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    __next_prop_ = __extended_grapheme_custer_property_boundary::__property::__eot;
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    return {__code_point, __code_point_view_.__position()};
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  }
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private:
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  __code_point_view<_CharT> __code_point_view_;
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  char32_t __next_code_point_;
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  __extended_grapheme_custer_property_boundary::__property __next_prop_;
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  _LIBCPP_HIDE_FROM_ABI constexpr const _CharT* __get_break() {
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    bool __ri_break_allowed         = true;
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    bool __has_extened_pictographic = false;
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    while (true) {
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      const _CharT* __result                                          = __code_point_view_.__position();
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      __extended_grapheme_custer_property_boundary::__property __prev = __next_prop_;
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      if (__code_point_view_.__at_end()) {
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        __next_prop_ = __extended_grapheme_custer_property_boundary::__property::__eot;
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        return __result;
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      }
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      __next_code_point_ = __code_point_view_.__consume();
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      __next_prop_       = __extended_grapheme_custer_property_boundary::__get_property(__next_code_point_);
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      __has_extened_pictographic |=
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          __prev == __extended_grapheme_custer_property_boundary::__property::__Extended_Pictographic;
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      if (__at_extended_grapheme_cluster_break(__ri_break_allowed, __has_extened_pictographic, __prev, __next_prop_))
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        return __result;
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    }
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  }
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};
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} // namespace __unicode
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#  endif //  _LIBCPP_HAS_NO_UNICODE
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#endif //_LIBCPP_STD_VER > 17
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_LIBCPP_END_NAMESPACE_STD
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#endif // _LIBCPP___FORMAT_UNICODE_H
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