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401 lines
14 KiB
C
401 lines
14 KiB
C
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/*
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*******************************************************************************
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*
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* Copyright (C) 1999-2004, International Business Machines
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* Corporation and others. All Rights Reserved.
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*
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*******************************************************************************
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* file name: utf.h
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* encoding: US-ASCII
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* tab size: 8 (not used)
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* indentation:4
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*
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* created on: 1999sep09
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* created by: Markus W. Scherer
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*/
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#ifndef BASE_THIRD_PARTY_ICU_ICU_UTF_H_
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#define BASE_THIRD_PARTY_ICU_ICU_UTF_H_
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#include <stdint.h>
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namespace base_icu {
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typedef int32_t UChar32;
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typedef uint16_t UChar;
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typedef int8_t UBool;
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// General ---------------------------------------------------------------------
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// from utf.h
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/**
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* This value is intended for sentinel values for APIs that
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* (take or) return single code points (UChar32).
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* It is outside of the Unicode code point range 0..0x10ffff.
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*
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* For example, a "done" or "error" value in a new API
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* could be indicated with CBU_SENTINEL.
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*
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* ICU APIs designed before ICU 2.4 usually define service-specific "done"
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* values, mostly 0xffff.
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* Those may need to be distinguished from
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* actual U+ffff text contents by calling functions like
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* CharacterIterator::hasNext() or UnicodeString::length().
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*
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* @return -1
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* @see UChar32
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* @stable ICU 2.4
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*/
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#define CBU_SENTINEL (-1)
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/**
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* Is this code point a Unicode noncharacter?
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* @param c 32-bit code point
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* @return TRUE or FALSE
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* @stable ICU 2.4
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*/
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#define CBU_IS_UNICODE_NONCHAR(c) \
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((c) >= 0xfdd0 && ((uint32_t)(c) <= 0xfdef || ((c)&0xfffe) == 0xfffe) && \
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(uint32_t)(c) <= 0x10ffff)
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/**
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* Is c a Unicode code point value (0..U+10ffff)
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* that can be assigned a character?
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*
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* Code points that are not characters include:
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* - single surrogate code points (U+d800..U+dfff, 2048 code points)
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* - the last two code points on each plane (U+__fffe and U+__ffff, 34 code points)
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* - U+fdd0..U+fdef (new with Unicode 3.1, 32 code points)
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* - the highest Unicode code point value is U+10ffff
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*
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* This means that all code points below U+d800 are character code points,
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* and that boundary is tested first for performance.
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*
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* @param c 32-bit code point
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* @return TRUE or FALSE
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* @stable ICU 2.4
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*/
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#define CBU_IS_UNICODE_CHAR(c) \
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((uint32_t)(c) < 0xd800 || \
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((uint32_t)(c) > 0xdfff && (uint32_t)(c) <= 0x10ffff && \
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!CBU_IS_UNICODE_NONCHAR(c)))
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/**
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* Is this code point a surrogate (U+d800..U+dfff)?
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* @param c 32-bit code point
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* @return TRUE or FALSE
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* @stable ICU 2.4
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*/
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#define CBU_IS_SURROGATE(c) (((c)&0xfffff800)==0xd800)
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/**
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* Assuming c is a surrogate code point (U_IS_SURROGATE(c)),
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* is it a lead surrogate?
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* @param c 32-bit code point
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* @return TRUE or FALSE
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* @stable ICU 2.4
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*/
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#define CBU_IS_SURROGATE_LEAD(c) (((c)&0x400)==0)
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// UTF-8 macros ----------------------------------------------------------------
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// from utf8.h
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extern const uint8_t utf8_countTrailBytes[256];
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/**
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* Count the trail bytes for a UTF-8 lead byte.
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* @internal
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*/
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#define CBU8_COUNT_TRAIL_BYTES(leadByte) \
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(base_icu::utf8_countTrailBytes[(uint8_t)leadByte])
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/**
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* Mask a UTF-8 lead byte, leave only the lower bits that form part of the code point value.
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* @internal
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*/
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#define CBU8_MASK_LEAD_BYTE(leadByte, countTrailBytes) ((leadByte)&=(1<<(6-(countTrailBytes)))-1)
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/**
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* Does this code unit (byte) encode a code point by itself (US-ASCII 0..0x7f)?
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* @param c 8-bit code unit (byte)
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* @return TRUE or FALSE
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* @stable ICU 2.4
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*/
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#define CBU8_IS_SINGLE(c) (((c)&0x80)==0)
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/**
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* Is this code unit (byte) a UTF-8 lead byte?
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* @param c 8-bit code unit (byte)
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* @return TRUE or FALSE
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* @stable ICU 2.4
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*/
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#define CBU8_IS_LEAD(c) ((uint8_t)((c)-0xc0) < 0x3e)
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/**
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* Is this code unit (byte) a UTF-8 trail byte?
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* @param c 8-bit code unit (byte)
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* @return TRUE or FALSE
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* @stable ICU 2.4
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*/
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#define CBU8_IS_TRAIL(c) (((c)&0xc0)==0x80)
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/**
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* How many code units (bytes) are used for the UTF-8 encoding
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* of this Unicode code point?
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* @param c 32-bit code point
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* @return 1..4, or 0 if c is a surrogate or not a Unicode code point
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* @stable ICU 2.4
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*/
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#define CBU8_LENGTH(c) \
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((uint32_t)(c) <= 0x7f \
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? 1 \
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: ((uint32_t)(c) <= 0x7ff \
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? 2 \
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: ((uint32_t)(c) <= 0xd7ff \
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? 3 \
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: ((uint32_t)(c) <= 0xdfff || (uint32_t)(c) > 0x10ffff \
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? 0 \
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: ((uint32_t)(c) <= 0xffff ? 3 : 4)))))
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/**
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* The maximum number of UTF-8 code units (bytes) per Unicode code point (U+0000..U+10ffff).
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* @return 4
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* @stable ICU 2.4
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*/
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#define CBU8_MAX_LENGTH 4
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/**
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* Function for handling "next code point" with error-checking.
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* @internal
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*/
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UChar32 utf8_nextCharSafeBody(const uint8_t* s,
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int32_t* pi,
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int32_t length,
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UChar32 c,
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UBool strict);
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/**
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* Get a code point from a string at a code point boundary offset,
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* and advance the offset to the next code point boundary.
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* (Post-incrementing forward iteration.)
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* "Safe" macro, checks for illegal sequences and for string boundaries.
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*
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* The offset may point to the lead byte of a multi-byte sequence,
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* in which case the macro will read the whole sequence.
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* If the offset points to a trail byte or an illegal UTF-8 sequence, then
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* c is set to a negative value.
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*
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* @param s const uint8_t * string
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* @param i string offset, i<length
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* @param length string length
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* @param c output UChar32 variable, set to <0 in case of an error
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* @see CBU8_NEXT_UNSAFE
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* @stable ICU 2.4
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*/
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#define CBU8_NEXT(s, i, length, c) \
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{ \
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(c) = (s)[(i)++]; \
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if (((uint8_t)(c)) >= 0x80) { \
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if (CBU8_IS_LEAD(c)) { \
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(c) = base_icu::utf8_nextCharSafeBody((const uint8_t*)s, &(i), \
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(int32_t)(length), c, -1); \
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} else { \
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(c) = CBU_SENTINEL; \
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} \
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} \
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}
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/**
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* Append a code point to a string, overwriting 1 to 4 bytes.
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* The offset points to the current end of the string contents
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* and is advanced (post-increment).
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* "Unsafe" macro, assumes a valid code point and sufficient space in the
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* string.
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* Otherwise, the result is undefined.
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*
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* @param s const uint8_t * string buffer
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* @param i string offset
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* @param c code point to append
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* @see CBU8_APPEND
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* @stable ICU 2.4
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*/
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#define CBU8_APPEND_UNSAFE(s, i, c) \
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{ \
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if ((uint32_t)(c) <= 0x7f) { \
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(s)[(i)++] = (uint8_t)(c); \
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} else { \
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if ((uint32_t)(c) <= 0x7ff) { \
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(s)[(i)++] = (uint8_t)(((c) >> 6) | 0xc0); \
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} else { \
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if ((uint32_t)(c) <= 0xffff) { \
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(s)[(i)++] = (uint8_t)(((c) >> 12) | 0xe0); \
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} else { \
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(s)[(i)++] = (uint8_t)(((c) >> 18) | 0xf0); \
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(s)[(i)++] = (uint8_t)((((c) >> 12) & 0x3f) | 0x80); \
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} \
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(s)[(i)++] = (uint8_t)((((c) >> 6) & 0x3f) | 0x80); \
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} \
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(s)[(i)++] = (uint8_t)(((c)&0x3f) | 0x80); \
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} \
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}
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// UTF-16 macros ---------------------------------------------------------------
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// from utf16.h
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/**
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* Does this code unit alone encode a code point (BMP, not a surrogate)?
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* @param c 16-bit code unit
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* @return TRUE or FALSE
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* @stable ICU 2.4
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*/
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#define CBU16_IS_SINGLE(c) !CBU_IS_SURROGATE(c)
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/**
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* Is this code unit a lead surrogate (U+d800..U+dbff)?
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* @param c 16-bit code unit
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* @return TRUE or FALSE
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* @stable ICU 2.4
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*/
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#define CBU16_IS_LEAD(c) (((c)&0xfffffc00)==0xd800)
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/**
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* Is this code unit a trail surrogate (U+dc00..U+dfff)?
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* @param c 16-bit code unit
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* @return TRUE or FALSE
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* @stable ICU 2.4
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*/
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#define CBU16_IS_TRAIL(c) (((c)&0xfffffc00)==0xdc00)
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/**
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* Is this code unit a surrogate (U+d800..U+dfff)?
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* @param c 16-bit code unit
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* @return TRUE or FALSE
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* @stable ICU 2.4
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*/
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#define CBU16_IS_SURROGATE(c) CBU_IS_SURROGATE(c)
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/**
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* Assuming c is a surrogate code point (U16_IS_SURROGATE(c)),
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* is it a lead surrogate?
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* @param c 16-bit code unit
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* @return TRUE or FALSE
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* @stable ICU 2.4
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*/
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#define CBU16_IS_SURROGATE_LEAD(c) (((c)&0x400)==0)
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/**
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* Helper constant for CBU16_GET_SUPPLEMENTARY.
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* @internal
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*/
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#define CBU16_SURROGATE_OFFSET ((0xd800<<10UL)+0xdc00-0x10000)
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/**
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* Get a supplementary code point value (U+10000..U+10ffff)
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* from its lead and trail surrogates.
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* The result is undefined if the input values are not
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* lead and trail surrogates.
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*
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* @param lead lead surrogate (U+d800..U+dbff)
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* @param trail trail surrogate (U+dc00..U+dfff)
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* @return supplementary code point (U+10000..U+10ffff)
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* @stable ICU 2.4
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*/
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#define CBU16_GET_SUPPLEMENTARY(lead, trail) \
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(((base_icu::UChar32)(lead)<<10UL)+(base_icu::UChar32)(trail)-CBU16_SURROGATE_OFFSET)
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/**
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* Get the lead surrogate (0xd800..0xdbff) for a
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* supplementary code point (0x10000..0x10ffff).
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* @param supplementary 32-bit code point (U+10000..U+10ffff)
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* @return lead surrogate (U+d800..U+dbff) for supplementary
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* @stable ICU 2.4
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*/
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#define CBU16_LEAD(supplementary) \
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(base_icu::UChar)(((supplementary)>>10)+0xd7c0)
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/**
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* Get the trail surrogate (0xdc00..0xdfff) for a
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* supplementary code point (0x10000..0x10ffff).
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* @param supplementary 32-bit code point (U+10000..U+10ffff)
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* @return trail surrogate (U+dc00..U+dfff) for supplementary
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* @stable ICU 2.4
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*/
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#define CBU16_TRAIL(supplementary) \
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(base_icu::UChar)(((supplementary)&0x3ff)|0xdc00)
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/**
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* How many 16-bit code units are used to encode this Unicode code point? (1 or 2)
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* The result is not defined if c is not a Unicode code point (U+0000..U+10ffff).
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* @param c 32-bit code point
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* @return 1 or 2
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* @stable ICU 2.4
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*/
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#define CBU16_LENGTH(c) ((uint32_t)(c) <= 0xffff ? 1 : 2)
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/**
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* The maximum number of 16-bit code units per Unicode code point (U+0000..U+10ffff).
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* @return 2
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* @stable ICU 2.4
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*/
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#define CBU16_MAX_LENGTH 2
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/**
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* Get a code point from a string at a code point boundary offset,
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* and advance the offset to the next code point boundary.
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* (Post-incrementing forward iteration.)
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* "Safe" macro, handles unpaired surrogates and checks for string boundaries.
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*
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* The offset may point to the lead surrogate unit
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* for a supplementary code point, in which case the macro will read
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* the following trail surrogate as well.
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* If the offset points to a trail surrogate or
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* to a single, unpaired lead surrogate, then that itself
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* will be returned as the code point.
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*
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* @param s const UChar * string
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* @param i string offset, i<length
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* @param length string length
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* @param c output UChar32 variable
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* @stable ICU 2.4
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*/
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#define CBU16_NEXT(s, i, length, c) \
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{ \
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(c) = (s)[(i)++]; \
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if (CBU16_IS_LEAD(c)) { \
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uint16_t __c2; \
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if ((i) < (length) && CBU16_IS_TRAIL(__c2 = (s)[(i)])) { \
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++(i); \
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(c) = CBU16_GET_SUPPLEMENTARY((c), __c2); \
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} \
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} \
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}
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/**
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* Append a code point to a string, overwriting 1 or 2 code units.
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* The offset points to the current end of the string contents
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* and is advanced (post-increment).
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* "Unsafe" macro, assumes a valid code point and sufficient space in the string.
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* Otherwise, the result is undefined.
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*
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* @param s const UChar * string buffer
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* @param i string offset
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* @param c code point to append
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* @see CBU16_APPEND
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* @stable ICU 2.4
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*/
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#define CBU16_APPEND_UNSAFE(s, i, c) \
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{ \
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if ((uint32_t)(c) <= 0xffff) { \
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(s)[(i)++] = (uint16_t)(c); \
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} else { \
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(s)[(i)++] = (uint16_t)(((c) >> 10) + 0xd7c0); \
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(s)[(i)++] = (uint16_t)(((c)&0x3ff) | 0xdc00); \
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} \
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}
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} // namesapce base_icu
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#endif // BASE_THIRD_PARTY_ICU_ICU_UTF_H_
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