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// © 2016 and later: Unicode, Inc. and others.
// License & terms of use: http://www.unicode.org/copyright.html
/*
*******************************************************************************
*
*   Copyright (C) 1999-2015, International Business Machines
*   Corporation and others.  All Rights Reserved.
*
*******************************************************************************
*   file name:  utf8.h
*   encoding:   UTF-8
*   tab size:   8 (not used)
*   indentation:4
*
*   created on: 1999sep13
*   created by: Markus W. Scherer
*/

/**
 * \file
 * \brief C API: 8-bit Unicode handling macros
 * 
 * This file defines macros to deal with 8-bit Unicode (UTF-8) code units (bytes) and strings.
 *
 * For more information see utf.h and the ICU User Guide Strings chapter
 * (http://userguide.icu-project.org/strings).
 *
 * <em>Usage:</em>
 * ICU coding guidelines for if() statements should be followed when using these macros.
 * Compound statements (curly braces {}) must be used  for if-else-while... 
 * bodies and all macro statements should be terminated with semicolon.
 */

#ifndef __UTF8_H__
#define __UTF8_H__

#include "unicode/umachine.h"
#ifndef __UTF_H__
#   include "unicode/utf.h"
#endif

/* internal definitions ----------------------------------------------------- */

/**
 * Counts the trail bytes for a UTF-8 lead byte.
 * Returns 0 for 0..0xc1 as well as for 0xf5..0xff.
 * leadByte might be evaluated multiple times.
 *
 * This is internal since it is not meant to be called directly by external clients;
 * however it is called by public macros in this file and thus must remain stable.
 *
 * @param leadByte The first byte of a UTF-8 sequence. Must be 0..0xff.
 * @internal
 */
#define U8_COUNT_TRAIL_BYTES(leadByte) \
    (U8_IS_LEAD(leadByte) ? \
        ((uint8_t)(leadByte)>=0xe0)+((uint8_t)(leadByte)>=0xf0)+1 : 0)

/**
 * Counts the trail bytes for a UTF-8 lead byte of a valid UTF-8 sequence.
 * Returns 0 for 0..0xc1. Undefined for 0xf5..0xff.
 * leadByte might be evaluated multiple times.
 *
 * This is internal since it is not meant to be called directly by external clients;
 * however it is called by public macros in this file and thus must remain stable.
 *
 * @param leadByte The first byte of a UTF-8 sequence. Must be 0..0xff.
 * @internal
 */
#define U8_COUNT_TRAIL_BYTES_UNSAFE(leadByte) \
    (((uint8_t)(leadByte)>=0xc2)+((uint8_t)(leadByte)>=0xe0)+((uint8_t)(leadByte)>=0xf0))

/**
 * Mask a UTF-8 lead byte, leave only the lower bits that form part of the code point value.
 *
 * This is internal since it is not meant to be called directly by external clients;
 * however it is called by public macros in this file and thus must remain stable.
 * @internal
 */
#define U8_MASK_LEAD_BYTE(leadByte, countTrailBytes) ((leadByte)&=(1<<(6-(countTrailBytes)))-1)

/**
 * Internal bit vector for 3-byte UTF-8 validity check, for use in U8_IS_VALID_LEAD3_AND_T1.
 * Each bit indicates whether one lead byte + first trail byte pair starts a valid sequence.
 * Lead byte E0..EF bits 3..0 are used as byte index,
 * first trail byte bits 7..5 are used as bit index into that byte.
 * @see U8_IS_VALID_LEAD3_AND_T1
 * @internal
 */
#define U8_LEAD3_T1_BITS "\x20\x30\x30\x30\x30\x30\x30\x30\x30\x30\x30\x30\x30\x10\x30\x30"

/**
 * Internal 3-byte UTF-8 validity check.
 * Non-zero if lead byte E0..EF and first trail byte 00..FF start a valid sequence.
 * @internal
 */
#define U8_IS_VALID_LEAD3_AND_T1(lead, t1) (U8_LEAD3_T1_BITS[(lead)&0xf]&(1<<((uint8_t)(t1)>>5)))

/**
 * Internal bit vector for 4-byte UTF-8 validity check, for use in U8_IS_VALID_LEAD4_AND_T1.
 * Each bit indicates whether one lead byte + first trail byte pair starts a valid sequence.
 * First trail byte bits 7..4 are used as byte index,
 * lead byte F0..F4 bits 2..0 are used as bit index into that byte.
 * @see U8_IS_VALID_LEAD4_AND_T1
 * @internal
 */
#define U8_LEAD4_T1_BITS "\x00\x00\x00\x00\x00\x00\x00\x00\x1E\x0F\x0F\x0F\x00\x00\x00\x00"

/**
 * Internal 4-byte UTF-8 validity check.
 * Non-zero if lead byte F0..F4 and first trail byte 00..FF start a valid sequence.
 * @internal
 */
#define U8_IS_VALID_LEAD4_AND_T1(lead, t1) (U8_LEAD4_T1_BITS[(uint8_t)(t1)>>4]&(1<<((lead)&7)))

/**
 * Function for handling "next code point" with error-checking.
 *
 * This is internal since it is not meant to be called directly by external clients;
 * however it is U_STABLE (not U_INTERNAL) since it is called by public macros in this
 * file and thus must remain stable, and should not be hidden when other internal
 * functions are hidden (otherwise public macros would fail to compile).
 * @internal
 */
U_STABLE UChar32 U_EXPORT2
utf8_nextCharSafeBody(const uint8_t *s, int32_t *pi, int32_t length, UChar32 c, UBool strict);

/**
 * Function for handling "append code point" with error-checking.
 *
 * This is internal since it is not meant to be called directly by external clients;
 * however it is U_STABLE (not U_INTERNAL) since it is called by public macros in this
 * file and thus must remain stable, and should not be hidden when other internal
 * functions are hidden (otherwise public macros would fail to compile).
 * @internal
 */
U_STABLE int32_t U_EXPORT2
utf8_appendCharSafeBody(uint8_t *s, int32_t i, int32_t length, UChar32 c, UBool *pIsError);

/**
 * Function for handling "previous code point" with error-checking.
 *
 * This is internal since it is not meant to be called directly by external clients;
 * however it is U_STABLE (not U_INTERNAL) since it is called by public macros in this
 * file and thus must remain stable, and should not be hidden when other internal
 * functions are hidden (otherwise public macros would fail to compile).
 * @internal
 */
U_STABLE UChar32 U_EXPORT2
utf8_prevCharSafeBody(const uint8_t *s, int32_t start, int32_t *pi, UChar32 c, UBool strict);

/**
 * Function for handling "skip backward one code point" with error-checking.
 *
 * This is internal since it is not meant to be called directly by external clients;
 * however it is U_STABLE (not U_INTERNAL) since it is called by public macros in this
 * file and thus must remain stable, and should not be hidden when other internal
 * functions are hidden (otherwise public macros would fail to compile).
 * @internal
 */
U_STABLE int32_t U_EXPORT2
utf8_back1SafeBody(const uint8_t *s, int32_t start, int32_t i);

/* single-code point definitions -------------------------------------------- */

/**
 * Does this code unit (byte) encode a code point by itself (US-ASCII 0..0x7f)?
 * @param c 8-bit code unit (byte)
 * @return TRUE or FALSE
 * @stable ICU 2.4
 */
#define U8_IS_SINGLE(c) (((c)&0x80)==0)

/**
 * Is this code unit (byte) a UTF-8 lead byte? (0xC2..0xF4)
 * @param c 8-bit code unit (byte)
 * @return TRUE or FALSE
 * @stable ICU 2.4
 */
#define U8_IS_LEAD(c) ((uint8_t)((c)-0xc2)<=0x32)
// 0x32=0xf4-0xc2

/**
 * Is this code unit (byte) a UTF-8 trail byte? (0x80..0xBF)
 * @param c 8-bit code unit (byte)
 * @return TRUE or FALSE
 * @stable ICU 2.4
 */
#define U8_IS_TRAIL(c) ((int8_t)(c)<-0x40)

/**
 * How many code units (bytes) are used for the UTF-8 encoding
 * of this Unicode code point?
 * @param c 32-bit code point
 * @return 1..4, or 0 if c is a surrogate or not a Unicode code point
 * @stable ICU 2.4
 */
#define U8_LENGTH(c) \
    ((uint32_t)(c)<=0x7f ? 1 : \
        ((uint32_t)(c)<=0x7ff ? 2 : \
            ((uint32_t)(c)<=0xd7ff ? 3 : \
                ((uint32_t)(c)<=0xdfff || (uint32_t)(c)>0x10ffff ? 0 : \
                    ((uint32_t)(c)<=0xffff ? 3 : 4)\
                ) \
            ) \
        ) \
    )

/**
 * The maximum number of UTF-8 code units (bytes) per Unicode code point (U+0000..U+10ffff).
 * @return 4
 * @stable ICU 2.4
 */
#define U8_MAX_LENGTH 4

/**
 * Get a code point from a string at a random-access offset,
 * without changing the offset.
 * The offset may point to either the lead byte or one of the trail bytes
 * for a code point, in which case the macro will read all of the bytes
 * for the code point.
 * The result is undefined if the offset points to an illegal UTF-8
 * byte sequence.
 * Iteration through a string is more efficient with U8_NEXT_UNSAFE or U8_NEXT.
 *
 * @param s const uint8_t * string
 * @param i string offset
 * @param c output UChar32 variable
 * @see U8_GET
 * @stable ICU 2.4
 */
#define U8_GET_UNSAFE(s, i, c) UPRV_BLOCK_MACRO_BEGIN { \
    int32_t _u8_get_unsafe_index=(int32_t)(i); \
    U8_SET_CP_START_UNSAFE(s, _u8_get_unsafe_index); \
    U8_NEXT_UNSAFE(s, _u8_get_unsafe_index, c); \
} UPRV_BLOCK_MACRO_END

/**
 * Get a code point from a string at a random-access offset,
 * without changing the offset.
 * The offset may point to either the lead byte or one of the trail bytes
 * for a code point, in which case the macro will read all of the bytes
 * for the code point.
 *
 * The length can be negative for a NUL-terminated string.
 *
 * If the offset points to an illegal UTF-8 byte sequence, then
 * c is set to a negative value.
 * Iteration through a string is more efficient with U8_NEXT_UNSAFE or U8_NEXT.
 *
 * @param s const uint8_t * string
 * @param start int32_t starting string offset
 * @param i int32_t string offset, must be start<=i<length
 * @param length int32_t string length
 * @param c output UChar32 variable, set to <0 in case of an error
 * @see U8_GET_UNSAFE
 * @stable ICU 2.4
 */
#define U8_GET(s, start, i, length, c) UPRV_BLOCK_MACRO_BEGIN { \
    int32_t _u8_get_index=(i); \
    U8_SET_CP_START(s, start, _u8_get_index); \
    U8_NEXT(s, _u8_get_index, length, c); \
} UPRV_BLOCK_MACRO_END

/**
 * Get a code point from a string at a random-access offset,
 * without changing the offset.
 * The offset may point to either the lead byte or one of the trail bytes
 * for a code point, in which case the macro will read all of the bytes
 * for the code point.
 *
 * The length can be negative for a NUL-terminated string.
 *
 * If the offset points to an illegal UTF-8 byte sequence, then
 * c is set to U+FFFD.
 * Iteration through a string is more efficient with U8_NEXT_UNSAFE or U8_NEXT_OR_FFFD.
 *
 * This macro does not distinguish between a real U+FFFD in the text
 * and U+FFFD returned for an ill-formed sequence.
 * Use U8_GET() if that distinction is important.
 *
 * @param s const uint8_t * string
 * @param start int32_t starting string offset
 * @param i int32_t string offset, must be start<=i<length
 * @param length int32_t string length
 * @param c output UChar32 variable, set to U+FFFD in case of an error
 * @see U8_GET
 * @stable ICU 51
 */
#define U8_GET_OR_FFFD(s, start, i, length, c) UPRV_BLOCK_MACRO_BEGIN { \
    int32_t _u8_get_index=(i); \
    U8_SET_CP_START(s, start, _u8_get_index); \
    U8_NEXT_OR_FFFD(s, _u8_get_index, length, c); \
} UPRV_BLOCK_MACRO_END

/* definitions with forward iteration --------------------------------------- */

/**
 * Get a code point from a string at a code point boundary offset,
 * and advance the offset to the next code point boundary.
 * (Post-incrementing forward iteration.)
 * "Unsafe" macro, assumes well-formed UTF-8.
 *
 * The offset may point to the lead byte of a multi-byte sequence,
 * in which case the macro will read the whole sequence.
 * The result is undefined if the offset points to a trail byte
 * or an illegal UTF-8 sequence.
 *
 * @param s const uint8_t * string
 * @param i string offset
 * @param c output UChar32 variable
 * @see U8_NEXT
 * @stable ICU 2.4
 */
#define U8_NEXT_UNSAFE(s, i, c) UPRV_BLOCK_MACRO_BEGIN { \
    (c)=(uint8_t)(s)[(i)++]; \
    if(!U8_IS_SINGLE(c)) { \
        if((c)<0xe0) { \
            (c)=(((c)&0x1f)<<6)|((s)[(i)++]&0x3f); \
        } else if((c)<0xf0) { \
            /* no need for (c&0xf) because the upper bits are truncated after <<12 in the cast to (UChar) */ \
            (c)=(UChar)(((c)<<12)|(((s)[i]&0x3f)<<6)|((s)[(i)+1]&0x3f)); \
            (i)+=2; \
        } else { \
            (c)=(((c)&7)<<18)|(((s)[i]&0x3f)<<12)|(((s)[(i)+1]&0x3f)<<6)|((s)[(i)+2]&0x3f); \
            (i)+=3; \
        } \
    } \
} UPRV_BLOCK_MACRO_END

/**
 * Get a code point from a string at a code point boundary offset,
 * and advance the offset to the next code point boundary.
 * (Post-incrementing forward iteration.)
 * "Safe" macro, checks for illegal sequences and for string boundaries.
 *
 * The length can be negative for a NUL-terminated string.
 *
 * The offset may point to the lead byte of a multi-byte sequence,
 * in which case the macro will read the whole sequence.
 * If the offset points to a trail byte or an illegal UTF-8 sequence, then
 * c is set to a negative value.
 *
 * @param s const uint8_t * string
 * @param i int32_t string offset, must be i<length
 * @param length int32_t string length
 * @param c output UChar32 variable, set to <0 in case of an error
 * @see U8_NEXT_UNSAFE
 * @stable ICU 2.4
 */
#define U8_NEXT(s, i, length, c) U8_INTERNAL_NEXT_OR_SUB(s, i, length, c, U_SENTINEL)

/**
 * Get a code point from a string at a code point boundary offset,
 * and advance the offset to the next code point boundary.
 * (Post-incrementing forward iteration.)
 * "Safe" macro, checks for illegal sequences and for string boundaries.
 *
 * The length can be negative for a NUL-terminated string.
 *
 * The offset may point to the lead byte of a multi-byte sequence,
 * in which case the macro will read the whole sequence.
 * If the offset points to a trail byte or an illegal UTF-8 sequence, then
 * c is set to U+FFFD.
 *
 * This macro does not distinguish between a real U+FFFD in the text
 * and U+FFFD returned for an ill-formed sequence.
 * Use U8_NEXT() if that distinction is important.
 *
 * @param s const uint8_t * string
 * @param i int32_t string offset, must be i<length
 * @param length int32_t string length
 * @param c output UChar32 variable, set to U+FFFD in case of an error
 * @see U8_NEXT
 * @stable ICU 51
 */
#define U8_NEXT_OR_FFFD(s, i, length, c) U8_INTERNAL_NEXT_OR_SUB(s, i, length, c, 0xfffd)

/** @internal */
#define U8_INTERNAL_NEXT_OR_SUB(s, i, length, c, sub) UPRV_BLOCK_MACRO_BEGIN { \
    (c)=(uint8_t)(s)[(i)++]; \
    if(!U8_IS_SINGLE(c)) { \
        uint8_t __t = 0; \
        if((i)!=(length) && \
            /* fetch/validate/assemble all but last trail byte */ \
            ((c)>=0xe0 ? \
                ((c)<0xf0 ?  /* U+0800..U+FFFF except surrogates */ \
                    U8_LEAD3_T1_BITS[(c)&=0xf]&(1<<((__t=(s)[i])>>5)) && \
                    (__t&=0x3f, 1) \
                :  /* U+10000..U+10FFFF */ \
                    ((c)-=0xf0)<=4 && \
                    U8_LEAD4_T1_BITS[(__t=(s)[i])>>4]&(1<<(c)) && \
                    ((c)=((c)<<6)|(__t&0x3f), ++(i)!=(length)) && \
                    (__t=(s)[i]-0x80)<=0x3f) && \
                /* valid second-to-last trail byte */ \
                ((c)=((c)<<6)|__t, ++(i)!=(length)) \
            :  /* U+0080..U+07FF */ \
                (c)>=0xc2 && ((c)&=0x1f, 1)) && \
            /* last trail byte */ \
            (__t=(s)[i]-0x80)<=0x3f && \
            ((c)=((c)<<6)|__t, ++(i), 1)) { \
        } else { \
            (c)=(sub);  /* ill-formed*/ \
        } \
    } \
} UPRV_BLOCK_MACRO_END

/**
 * Append a code point to a string, overwriting 1 to 4 bytes.
 * The offset points to the current end of the string contents
 * and is advanced (post-increment).
 * "Unsafe" macro, assumes a valid code point and sufficient space in the string.
 * Otherwise, the result is undefined.
 *
 * @param s const uint8_t * string buffer
 * @param i string offset
 * @param c code point to append
 * @see U8_APPEND
 * @stable ICU 2.4
 */
#define U8_APPEND_UNSAFE(s, i, c) UPRV_BLOCK_MACRO_BEGIN { \
    uint32_t __uc=(c); \
    if(__uc<=0x7f) { \
        (s)[(i)++]=(uint8_t)__uc; \
    } else { \
        if(__uc<=0x7ff) { \
            (s)[(i)++]=(uint8_t)((__uc>>6)|0xc0); \
        } else { \
            if(__uc<=0xffff) { \
                (s)[(i)++]=(uint8_t)((__uc>>12)|0xe0); \
            } else { \
                (s)[(i)++]=(uint8_t)((__uc>>18)|0xf0); \
                (s)[(i)++]=(uint8_t)(((__uc>>12)&0x3f)|0x80); \
            } \
            (s)[(i)++]=(uint8_t)(((__uc>>6)&0x3f)|0x80); \
        } \
        (s)[(i)++]=(uint8_t)((__uc&0x3f)|0x80); \
    } \
} UPRV_BLOCK_MACRO_END

/**
 * Append a code point to a string, overwriting 1 to 4 bytes.
 * The offset points to the current end of the string contents
 * and is advanced (post-increment).
 * "Safe" macro, checks for a valid code point.
 * If a non-ASCII code point is written, checks for sufficient space in the string.
 * If the code point is not valid or trail bytes do not fit,
 * then isError is set to TRUE.
 *
 * @param s const uint8_t * string buffer
 * @param i int32_t string offset, must be i<capacity
 * @param capacity int32_t size of the string buffer
 * @param c UChar32 code point to append
 * @param isError output UBool set to TRUE if an error occurs, otherwise not modified
 * @see U8_APPEND_UNSAFE
 * @stable ICU 2.4
 */
#define U8_APPEND(s, i, capacity, c, isError) UPRV_BLOCK_MACRO_BEGIN { \
    uint32_t __uc=(c); \
    if(__uc<=0x7f) { \
        (s)[(i)++]=(uint8_t)__uc; \
    } else if(__uc<=0x7ff && (i)+1<(capacity)) { \
        (s)[(i)++]=(uint8_t)((__uc>>6)|0xc0); \
        (s)[(i)++]=(uint8_t)((__uc&0x3f)|0x80); \
    } else if((__uc<=0xd7ff || (0xe000<=__uc && __uc<=0xffff)) && (i)+2<(capacity)) { \
        (s)[(i)++]=(uint8_t)((__uc>>12)|0xe0); \
        (s)[(i)++]=(uint8_t)(((__uc>>6)&0x3f)|0x80); \
        (s)[(i)++]=(uint8_t)((__uc&0x3f)|0x80); \
    } else if(0xffff<__uc && __uc<=0x10ffff && (i)+3<(capacity)) { \
        (s)[(i)++]=(uint8_t)((__uc>>18)|0xf0); \
        (s)[(i)++]=(uint8_t)(((__uc>>12)&0x3f)|0x80); \
        (s)[(i)++]=(uint8_t)(((__uc>>6)&0x3f)|0x80); \
        (s)[(i)++]=(uint8_t)((__uc&0x3f)|0x80); \
    } else { \
        (isError)=TRUE; \
    } \
} UPRV_BLOCK_MACRO_END

/**
 * Advance the string offset from one code point boundary to the next.
 * (Post-incrementing iteration.)
 * "Unsafe" macro, assumes well-formed UTF-8.
 *
 * @param s const uint8_t * string
 * @param i string offset
 * @see U8_FWD_1
 * @stable ICU 2.4
 */
#define U8_FWD_1_UNSAFE(s, i) UPRV_BLOCK_MACRO_BEGIN { \
    (i)+=1+U8_COUNT_TRAIL_BYTES_UNSAFE((s)[i]); \
} UPRV_BLOCK_MACRO_END

/**
 * Advance the string offset from one code point boundary to the next.
 * (Post-incrementing iteration.)
 * "Safe" macro, checks for illegal sequences and for string boundaries.
 *
 * The length can be negative for a NUL-terminated string.
 *
 * @param s const uint8_t * string
 * @param i int32_t string offset, must be i<length
 * @param length int32_t string length
 * @see U8_FWD_1_UNSAFE
 * @stable ICU 2.4
 */
#define U8_FWD_1(s, i, length) UPRV_BLOCK_MACRO_BEGIN { \
    uint8_t __b=(s)[(i)++]; \
    if(U8_IS_LEAD(__b) && (i)!=(length)) { \
        uint8_t __t1=(s)[i]; \
        if((0xe0<=__b && __b<0xf0)) { \
            if(U8_IS_VALID_LEAD3_AND_T1(__b, __t1) && \
                    ++(i)!=(length) && U8_IS_TRAIL((s)[i])) { \
                ++(i); \
            } \
        } else if(__b<0xe0) { \
            if(U8_IS_TRAIL(__t1)) { \
                ++(i); \
            } \
        } else /* c>=0xf0 */ { \
            if(U8_IS_VALID_LEAD4_AND_T1(__b, __t1) && \
                    ++(i)!=(length) && U8_IS_TRAIL((s)[i]) && \
                    ++(i)!=(length) && U8_IS_TRAIL((s)[i])) { \
                ++(i); \
            } \
        } \
    } \
} UPRV_BLOCK_MACRO_END

/**
 * Advance the string offset from one code point boundary to the n-th next one,
 * i.e., move forward by n code points.
 * (Post-incrementing iteration.)
 * "Unsafe" macro, assumes well-formed UTF-8.
 *
 * @param s const uint8_t * string
 * @param i string offset
 * @param n number of code points to skip
 * @see U8_FWD_N
 * @stable ICU 2.4
 */
#define U8_FWD_N_UNSAFE(s, i, n) UPRV_BLOCK_MACRO_BEGIN { \
    int32_t __N=(n); \
    while(__N>0) { \
        U8_FWD_1_UNSAFE(s, i); \
        --__N; \
    } \
} UPRV_BLOCK_MACRO_END

/**
 * Advance the string offset from one code point boundary to the n-th next one,
 * i.e., move forward by n code points.
 * (Post-incrementing iteration.)
 * "Safe" macro, checks for illegal sequences and for string boundaries.
 *
 * The length can be negative for a NUL-terminated string.
 *
 * @param s const uint8_t * string
 * @param i int32_t string offset, must be i<length
 * @param length int32_t string length
 * @param n number of code points to skip
 * @see U8_FWD_N_UNSAFE
 * @stable ICU 2.4
 */
#define U8_FWD_N(s, i, length, n) UPRV_BLOCK_MACRO_BEGIN { \
    int32_t __N=(n); \
    while(__N>0 && ((i)<(length) || ((length)<0 && (s)[i]!=0))) { \
        U8_FWD_1(s, i, length); \
        --__N; \
    } \
} UPRV_BLOCK_MACRO_END

/**
 * Adjust a random-access offset to a code point boundary
 * at the start of a code point.
 * If the offset points to a UTF-8 trail byte,
 * then the offset is moved backward to the corresponding lead byte.
 * Otherwise, it is not modified.
 * "Unsafe" macro, assumes well-formed UTF-8.
 *
 * @param s const uint8_t * string
 * @param i string offset
 * @see U8_SET_CP_START
 * @stable ICU 2.4
 */
#define U8_SET_CP_START_UNSAFE(s, i) UPRV_BLOCK_MACRO_BEGIN { \
    while(U8_IS_TRAIL((s)[i])) { --(i); } \
} UPRV_BLOCK_MACRO_END

/**
 * Adjust a random-access offset to a code point boundary
 * at the start of a code point.
 * If the offset points to a UTF-8 trail byte,
 * then the offset is moved backward to the corresponding lead byte.
 * Otherwise, it is not modified.
 *
 * "Safe" macro, checks for illegal sequences and for string boundaries.
 * Unlike U8_TRUNCATE_IF_INCOMPLETE(), this macro always reads s[i].
 *
 * @param s const uint8_t * string
 * @param start int32_t starting string offset (usually 0)
 * @param i int32_t string offset, must be start<=i
 * @see U8_SET_CP_START_UNSAFE
 * @see U8_TRUNCATE_IF_INCOMPLETE
 * @stable ICU 2.4
 */
#define U8_SET_CP_START(s, start, i) UPRV_BLOCK_MACRO_BEGIN { \
    if(U8_IS_TRAIL((s)[(i)])) { \
        (i)=utf8_back1SafeBody(s, start, (i)); \
    } \
} UPRV_BLOCK_MACRO_END

/**
 * If the string ends with a UTF-8 byte sequence that is valid so far
 * but incomplete, then reduce the length of the string to end before
 * the lead byte of that incomplete sequence.
 * For example, if the string ends with E1 80, the length is reduced by 2.
 *
 * In all other cases (the string ends with a complete sequence, or it is not
 * possible for any further trail byte to extend the trailing sequence)
 * the length remains unchanged.
 *
 * Useful for processing text split across multiple buffers
 * (save the incomplete sequence for later)
 * and for optimizing iteration
 * (check for string length only once per character).
 *
 * "Safe" macro, checks for illegal sequences and for string boundaries.
 * Unlike U8_SET_CP_START(), this macro never reads s[length].
 *
 * (In UTF-16, simply check for U16_IS_LEAD(last code unit).)
 *
 * @param s const uint8_t * string
 * @param start int32_t starting string offset (usually 0)
 * @param length int32_t string length (usually start<=length)
 * @see U8_SET_CP_START
 * @stable ICU 61
 */
#define U8_TRUNCATE_IF_INCOMPLETE(s, start, length) UPRV_BLOCK_MACRO_BEGIN { \
    if((length)>(start)) { \
        uint8_t __b1=s[(length)-1]; \
        if(U8_IS_SINGLE(__b1)) { \
            /* common ASCII character */ \
        } else if(U8_IS_LEAD(__b1)) { \
            --(length); \
        } else if(U8_IS_TRAIL(__b1) && ((length)-2)>=(start)) { \
            uint8_t __b2=s[(length)-2]; \
            if(0xe0<=__b2 && __b2<=0xf4) { \
                if(__b2<0xf0 ? U8_IS_VALID_LEAD3_AND_T1(__b2, __b1) : \
                        U8_IS_VALID_LEAD4_AND_T1(__b2, __b1)) { \
                    (length)-=2; \
                } \
            } else if(U8_IS_TRAIL(__b2) && ((length)-3)>=(start)) { \
                uint8_t __b3=s[(length)-3]; \
                if(0xf0<=__b3 && __b3<=0xf4 && U8_IS_VALID_LEAD4_AND_T1(__b3, __b2)) { \
                    (length)-=3; \
                } \
            } \
        } \
    } \
} UPRV_BLOCK_MACRO_END

/* definitions with backward iteration -------------------------------------- */

/**
 * Move the string offset from one code point boundary to the previous one
 * and get the code point between them.
 * (Pre-decrementing backward iteration.)
 * "Unsafe" macro, assumes well-formed UTF-8.
 *
 * The input offset may be the same as the string length.
 * If the offset is behind a multi-byte sequence, then the macro will read
 * the whole sequence.
 * If the offset is behind a lead byte, then that itself
 * will be returned as the code point.
 * The result is undefined if the offset is behind an illegal UTF-8 sequence.
 *
 * @param s const uint8_t * string
 * @param i string offset
 * @param c output UChar32 variable
 * @see U8_PREV
 * @stable ICU 2.4
 */
#define U8_PREV_UNSAFE(s, i, c) UPRV_BLOCK_MACRO_BEGIN { \
    (c)=(uint8_t)(s)[--(i)]; \
    if(U8_IS_TRAIL(c)) { \
        uint8_t __b, __count=1, __shift=6; \
\
        /* c is a trail byte */ \
        (c)&=0x3f; \
        for(;;) { \
            __b=(s)[--(i)]; \
            if(__b>=0xc0) { \
                U8_MASK_LEAD_BYTE(__b, __count); \
                (c)|=(UChar32)__b<<__shift; \
                break; \
            } else { \
                (c)|=(UChar32)(__b&0x3f)<<__shift; \
                ++__count; \
                __shift+=6; \
            } \
        } \
    } \
} UPRV_BLOCK_MACRO_END

/**
 * Move the string offset from one code point boundary to the previous one
 * and get the code point between them.
 * (Pre-decrementing backward iteration.)
 * "Safe" macro, checks for illegal sequences and for string boundaries.
 *
 * The input offset may be the same as the string length.
 * If the offset is behind a multi-byte sequence, then the macro will read
 * the whole sequence.
 * If the offset is behind a lead byte, then that itself
 * will be returned as the code point.
 * If the offset is behind an illegal UTF-8 sequence, then c is set to a negative value.
 *
 * @param s const uint8_t * string
 * @param start int32_t starting string offset (usually 0)
 * @param i int32_t string offset, must be start<i
 * @param c output UChar32 variable, set to <0 in case of an error
 * @see U8_PREV_UNSAFE
 * @stable ICU 2.4
 */
#define U8_PREV(s, start, i, c) UPRV_BLOCK_MACRO_BEGIN { \
    (c)=(uint8_t)(s)[--(i)]; \
    if(!U8_IS_SINGLE(c)) { \
        (c)=utf8_prevCharSafeBody((const uint8_t *)s, start, &(i), c, -1); \
    } \
} UPRV_BLOCK_MACRO_END

/**
 * Move the string offset from one code point boundary to the previous one
 * and get the code point between them.
 * (Pre-decrementing backward iteration.)
 * "Safe" macro, checks for illegal sequences and for string boundaries.
 *
 * The input offset may be the same as the string length.
 * If the offset is behind a multi-byte sequence, then the macro will read
 * the whole sequence.
 * If the offset is behind a lead byte, then that itself
 * will be returned as the code point.
 * If the offset is behind an illegal UTF-8 sequence, then c is set to U+FFFD.
 *
 * This macro does not distinguish between a real U+FFFD in the text
 * and U+FFFD returned for an ill-formed sequence.
 * Use U8_PREV() if that distinction is important.
 *
 * @param s const uint8_t * string
 * @param start int32_t starting string offset (usually 0)
 * @param i int32_t string offset, must be start<i
 * @param c output UChar32 variable, set to U+FFFD in case of an error
 * @see U8_PREV
 * @stable ICU 51
 */
#define U8_PREV_OR_FFFD(s, start, i, c) UPRV_BLOCK_MACRO_BEGIN { \
    (c)=(uint8_t)(s)[--(i)]; \
    if(!U8_IS_SINGLE(c)) { \
        (c)=utf8_prevCharSafeBody((const uint8_t *)s, start, &(i), c, -3); \
    } \
} UPRV_BLOCK_MACRO_END

/**
 * Move the string offset from one code point boundary to the previous one.
 * (Pre-decrementing backward iteration.)
 * The input offset may be the same as the string length.
 * "Unsafe" macro, assumes well-formed UTF-8.
 *
 * @param s const uint8_t * string
 * @param i string offset
 * @see U8_BACK_1
 * @stable ICU 2.4
 */
#define U8_BACK_1_UNSAFE(s, i) UPRV_BLOCK_MACRO_BEGIN { \
    while(U8_IS_TRAIL((s)[--(i)])) {} \
} UPRV_BLOCK_MACRO_END

/**
 * Move the string offset from one code point boundary to the previous one.
 * (Pre-decrementing backward iteration.)
 * The input offset may be the same as the string length.
 * "Safe" macro, checks for illegal sequences and for string boundaries.
 *
 * @param s const uint8_t * string
 * @param start int32_t starting string offset (usually 0)
 * @param i int32_t string offset, must be start<i
 * @see U8_BACK_1_UNSAFE
 * @stable ICU 2.4
 */
#define U8_BACK_1(s, start, i) UPRV_BLOCK_MACRO_BEGIN { \
    if(U8_IS_TRAIL((s)[--(i)])) { \
        (i)=utf8_back1SafeBody(s, start, (i)); \
    } \
} UPRV_BLOCK_MACRO_END

/**
 * Move the string offset from one code point boundary to the n-th one before it,
 * i.e., move backward by n code points.
 * (Pre-decrementing backward iteration.)
 * The input offset may be the same as the string length.
 * "Unsafe" macro, assumes well-formed UTF-8.
 *
 * @param s const uint8_t * string
 * @param i string offset
 * @param n number of code points to skip
 * @see U8_BACK_N
 * @stable ICU 2.4
 */
#define U8_BACK_N_UNSAFE(s, i, n) UPRV_BLOCK_MACRO_BEGIN { \
    int32_t __N=(n); \
    while(__N>0) { \
        U8_BACK_1_UNSAFE(s, i); \
        --__N; \
    } \
} UPRV_BLOCK_MACRO_END

/**
 * Move the string offset from one code point boundary to the n-th one before it,
 * i.e., move backward by n code points.
 * (Pre-decrementing backward iteration.)
 * The input offset may be the same as the string length.
 * "Safe" macro, checks for illegal sequences and for string boundaries.
 *
 * @param s const uint8_t * string
 * @param start int32_t index of the start of the string
 * @param i int32_t string offset, must be start<i
 * @param n number of code points to skip
 * @see U8_BACK_N_UNSAFE
 * @stable ICU 2.4
 */
#define U8_BACK_N(s, start, i, n) UPRV_BLOCK_MACRO_BEGIN { \
    int32_t __N=(n); \
    while(__N>0 && (i)>(start)) { \
        U8_BACK_1(s, start, i); \
        --__N; \
    } \
} UPRV_BLOCK_MACRO_END

/**
 * Adjust a random-access offset to a code point boundary after a code point.
 * If the offset is behind a partial multi-byte sequence,
 * then the offset is incremented to behind the whole sequence.
 * Otherwise, it is not modified.
 * The input offset may be the same as the string length.
 * "Unsafe" macro, assumes well-formed UTF-8.
 *
 * @param s const uint8_t * string
 * @param i string offset
 * @see U8_SET_CP_LIMIT
 * @stable ICU 2.4
 */
#define U8_SET_CP_LIMIT_UNSAFE(s, i) UPRV_BLOCK_MACRO_BEGIN { \
    U8_BACK_1_UNSAFE(s, i); \
    U8_FWD_1_UNSAFE(s, i); \
} UPRV_BLOCK_MACRO_END

/**
 * Adjust a random-access offset to a code point boundary after a code point.
 * If the offset is behind a partial multi-byte sequence,
 * then the offset is incremented to behind the whole sequence.
 * Otherwise, it is not modified.
 * The input offset may be the same as the string length.
 * "Safe" macro, checks for illegal sequences and for string boundaries.
 *
 * The length can be negative for a NUL-terminated string.
 *
 * @param s const uint8_t * string
 * @param start int32_t starting string offset (usually 0)
 * @param i int32_t string offset, must be start<=i<=length
 * @param length int32_t string length
 * @see U8_SET_CP_LIMIT_UNSAFE
 * @stable ICU 2.4
 */
#define U8_SET_CP_LIMIT(s, start, i, length) UPRV_BLOCK_MACRO_BEGIN { \
    if((start)<(i) && ((i)<(length) || (length)<0)) { \
        U8_BACK_1(s, start, i); \
        U8_FWD_1(s, i, length); \
    } \
} UPRV_BLOCK_MACRO_END

#endif

Filemanager

Name Type Size Permission Actions
alphaindex.h File 26.48 KB 0644
appendable.h File 8.49 KB 0644
basictz.h File 9.15 KB 0644
brkiter.h File 27.8 KB 0644
bytestream.h File 9.6 KB 0644
bytestrie.h File 20.77 KB 0644
bytestriebuilder.h File 7.08 KB 0644
calendar.h File 105.74 KB 0644
caniter.h File 7.43 KB 0644
casemap.h File 25.33 KB 0644
char16ptr.h File 7.22 KB 0644
chariter.h File 24.05 KB 0644
choicfmt.h File 23.91 KB 0644
coleitr.h File 13.76 KB 0644
coll.h File 56.23 KB 0644
compactdecimalformat.h File 6.88 KB 0644
curramt.h File 3.76 KB 0644
currpinf.h File 7.3 KB 0644
currunit.h File 4.05 KB 0644
datefmt.h File 40.67 KB 0644
dbbi.h File 1.19 KB 0644
dcfmtsym.h File 20.13 KB 0644
decimfmt.h File 87.38 KB 0644
docmain.h File 6.97 KB 0644
dtfmtsym.h File 37.7 KB 0644
dtintrv.h File 3.84 KB 0644
dtitvfmt.h File 46.63 KB 0644
dtitvinf.h File 18.51 KB 0644
dtptngen.h File 25.08 KB 0644
dtrule.h File 8.68 KB 0644
edits.h File 20.74 KB 0644
enumset.h File 2.08 KB 0644
errorcode.h File 4.84 KB 0644
fieldpos.h File 8.69 KB 0644
filteredbrk.h File 5.37 KB 0644
fmtable.h File 24.42 KB 0644
format.h File 12.5 KB 0644
formattedvalue.h File 10.27 KB 0644
fpositer.h File 3.04 KB 0644
gender.h File 3.33 KB 0644
gregocal.h File 31.71 KB 0644
icudataver.h File 1.03 KB 0644
icuplug.h File 11.88 KB 0644
idna.h File 12.7 KB 0644
listformatter.h File 9.47 KB 0644
localebuilder.h File 11.27 KB 0644
localematcher.h File 22.5 KB 0644
localpointer.h File 19.69 KB 0644
locdspnm.h File 7.12 KB 0644
locid.h File 47.4 KB 0644
measfmt.h File 11.33 KB 0644
measunit.h File 93.31 KB 0644
measure.h File 4.32 KB 0644
messagepattern.h File 33.71 KB 0644
msgfmt.h File 44.11 KB 0644
normalizer2.h File 34.03 KB 0644
normlzr.h File 30.94 KB 0644
nounit.h File 2.69 KB 0644
numberformatter.h File 86.31 KB 0644
numberrangeformatter.h File 30.14 KB 0644
numfmt.h File 49.81 KB 0644
numsys.h File 7.19 KB 0644
parseerr.h File 3.08 KB 0644
parsepos.h File 5.56 KB 0644
platform.h File 28.08 KB 0644
plurfmt.h File 25.2 KB 0644
plurrule.h File 18.39 KB 0644
ptypes.h File 3.49 KB 0644
putil.h File 6.33 KB 0644
rbbi.h File 26.58 KB 0644
rbnf.h File 48.73 KB 0644
rbtz.h File 15.6 KB 0644
regex.h File 84.36 KB 0644
region.h File 9.18 KB 0644
reldatefmt.h File 22.62 KB 0644
rep.h File 9.37 KB 0644
resbund.h File 18.07 KB 0644
schriter.h File 6.32 KB 0644
scientificnumberformatter.h File 6.4 KB 0644
search.h File 22.22 KB 0644
selfmt.h File 14.3 KB 0644
simpleformatter.h File 12.59 KB 0644
simpletz.h File 45.44 KB 0644
smpdtfmt.h File 70.97 KB 0644
sortkey.h File 11.18 KB 0644
std_string.h File 1.05 KB 0644
strenum.h File 9.92 KB 0644
stringoptions.h File 5.79 KB 0644
stringpiece.h File 7.38 KB 0644
stringtriebuilder.h File 15.33 KB 0644
stsearch.h File 21.3 KB 0644
symtable.h File 4.27 KB 0644
tblcoll.h File 36.61 KB 0644
timezone.h File 41.02 KB 0644
tmunit.h File 3.38 KB 0644
tmutamt.h File 4.9 KB 0644
tmutfmt.h File 7.85 KB 0644
translit.h File 65.82 KB 0644
tzfmt.h File 42.89 KB 0644
tznames.h File 16.85 KB 0644
tzrule.h File 35.37 KB 0644
tztrans.h File 6.12 KB 0644
ubidi.h File 89.56 KB 0644
ubiditransform.h File 12.65 KB 0644
ubrk.h File 23.97 KB 0644
ucal.h File 56.9 KB 0644
ucasemap.h File 15.18 KB 0644
ucat.h File 5.36 KB 0644
uchar.h File 140.56 KB 0644
ucharstrie.h File 22.58 KB 0644
ucharstriebuilder.h File 7.21 KB 0644
uchriter.h File 13.2 KB 0644
uclean.h File 11.21 KB 0644
ucnv.h File 83.09 KB 0644
ucnv_cb.h File 6.59 KB 0644
ucnv_err.h File 20.99 KB 0644
ucnvsel.h File 6.14 KB 0644
ucol.h File 61.46 KB 0644
ucoleitr.h File 9.46 KB 0644
uconfig.h File 12.07 KB 0644
ucpmap.h File 5.53 KB 0644
ucptrie.h File 22.46 KB 0644
ucsdet.h File 14.67 KB 0644
ucurr.h File 16.12 KB 0644
udat.h File 60.88 KB 0644
udata.h File 15.56 KB 0644
udateintervalformat.h File 10.03 KB 0644
udatpg.h File 26.01 KB 0644
udisplaycontext.h File 5.89 KB 0644
uenum.h File 7.78 KB 0644
ufieldpositer.h File 4.36 KB 0644
uformattable.h File 10.94 KB 0644
uformattedvalue.h File 12.14 KB 0644
ugender.h File 2 KB 0644
uidna.h File 33.37 KB 0644
uiter.h File 22.77 KB 0644
uldnames.h File 10.45 KB 0644
ulistformatter.h File 8.83 KB 0644
uloc.h File 52.54 KB 0644
ulocdata.h File 11.26 KB 0644
umachine.h File 14.53 KB 0644
umisc.h File 1.33 KB 0644
umsg.h File 24.23 KB 0644
umutablecptrie.h File 8.24 KB 0644
unifilt.h File 3.96 KB 0644
unifunct.h File 4.04 KB 0644
unimatch.h File 6.1 KB 0644
unirepl.h File 3.38 KB 0644
uniset.h File 64.9 KB 0644
unistr.h File 170.43 KB 0644
unorm.h File 20.52 KB 0644
unorm2.h File 24.66 KB 0644
unum.h File 53.62 KB 0644
unumberformatter.h File 25.36 KB 0644
unumsys.h File 7.21 KB 0644
uobject.h File 10.68 KB 0644
upluralrules.h File 7.88 KB 0644
uregex.h File 72.05 KB 0644
uregion.h File 9.84 KB 0644
ureldatefmt.h File 17.26 KB 0644
urename.h File 130.97 KB 0644
urep.h File 5.38 KB 0644
ures.h File 36.54 KB 0644
uscript.h File 26.87 KB 0644
usearch.h File 38.12 KB 0644
uset.h File 40 KB 0644
usetiter.h File 9.55 KB 0644
ushape.h File 18 KB 0644
uspoof.h File 65.9 KB 0644
usprep.h File 8.14 KB 0644
ustdio.h File 38.54 KB 0644
ustream.h File 1.89 KB 0644
ustring.h File 72.47 KB 0644
ustringtrie.h File 3.15 KB 0644
utext.h File 58.13 KB 0644
utf.h File 7.86 KB 0644
utf16.h File 23.32 KB 0644
utf32.h File 763 B 0644
utf8.h File 30.96 KB 0644
utf_old.h File 45.83 KB 0644
utmscale.h File 13.78 KB 0644
utrace.h File 15.73 KB 0644
utrans.h File 25.52 KB 0644
utypes.h File 30.74 KB 0644
uvernum.h File 6.67 KB 0644
uversion.h File 6 KB 0644
vtzone.h File 20.3 KB 0644