/usr/include/unicode
NameSizeModeActions
alphaindex.h271180644editdlrm
appendable.h86940644editdlrm
basictz.h94910644editdlrm
brkiter.h284640644editdlrm
bytestream.h110370644editdlrm
bytestrie.h212660644editdlrm
bytestriebuilder.h72480644editdlrm
calendar.h1082780644editdlrm
caniter.h76110644editdlrm
casemap.h259330644editdlrm
char16ptr.h73930644editdlrm
chariter.h246320644editdlrm
choicfmt.h244820644editdlrm
coleitr.h140940644editdlrm
coll.h575810644editdlrm
compactdecimalformat.h70470644editdlrm
curramt.h38510644editdlrm
currpinf.h74730644editdlrm
currunit.h40940644editdlrm
datefmt.h416410644editdlrm
dbbi.h12230644editdlrm
dcfmtsym.h208970644editdlrm
decimfmt.h892780644editdlrm
docmain.h71420644editdlrm
dtfmtsym.h386090644editdlrm
dtintrv.h39300644editdlrm
dtitvfmt.h476340644editdlrm
dtitvinf.h190640644editdlrm
dtptngen.h264190644editdlrm
dtrule.h88880644editdlrm
edits.h212370644editdlrm
enumset.h21300644editdlrm
errorcode.h49560644editdlrm
fieldpos.h88990644editdlrm
filteredbrk.h55010644editdlrm
fmtable.h250070644editdlrm
format.h128020644editdlrm
formattedvalue.h99870644editdlrm
fpositer.h31090644editdlrm
gender.h34080644editdlrm
gregocal.h324720644editdlrm
icudataver.h10510644editdlrm
icuplug.h121660644editdlrm
idna.h130000644editdlrm
listformatter.h94930644editdlrm
localebuilder.h115020644editdlrm
localematcher.h251470644editdlrm
localpointer.h198290644editdlrm
locdspnm.h72920644editdlrm
locid.h488210644editdlrm
measfmt.h116030644editdlrm
measunit.h975630644editdlrm
measure.h44230644editdlrm
messagepattern.h345210644editdlrm
msgfmt.h451680644editdlrm
normalizer2.h348510644editdlrm
normlzr.h316820644editdlrm
nounit.h27540644editdlrm
numberformatter.h862760644editdlrm
numberrangeformatter.h286170644editdlrm
numfmt.h509500644editdlrm
numsys.h75000644editdlrm
parseerr.h31550644editdlrm
parsepos.h56920644editdlrm
platform.h287510644editdlrm
plurfmt.h258000644editdlrm
plurrule.h187800644editdlrm
ptypes.h35770644editdlrm
putil.h64870644editdlrm
rbbi.h272180644editdlrm
rbnf.h498990644editdlrm
rbtz.h159790644editdlrm
regex.h863670644editdlrm
region.h94040644editdlrm
reldatefmt.h228010644editdlrm
rep.h95990644editdlrm
resbund.h185030644editdlrm
schriter.h64750644editdlrm
scientificnumberformatter.h65530644editdlrm
search.h227570644editdlrm
selfmt.h146430644editdlrm
simpleformatter.h128880644editdlrm
simpletz.h465270644editdlrm
smpdtfmt.h727130644editdlrm
sortkey.h114440644editdlrm
std_string.h10760644editdlrm
strenum.h101580644editdlrm
stringoptions.h59260644editdlrm
stringpiece.h105970644editdlrm
stringtriebuilder.h156980644editdlrm
stsearch.h218100644editdlrm
symtable.h43740644editdlrm
tblcoll.h374890644editdlrm
timezone.h420050644editdlrm
tmunit.h34610644editdlrm
tmutamt.h50150644editdlrm
tmutfmt.h80420644editdlrm
translit.h674000644editdlrm
tzfmt.h439160644editdlrm
tznames.h172520644editdlrm
tzrule.h362150644editdlrm
tztrans.h62710644editdlrm
ubidi.h917110644editdlrm
ubiditransform.h129500644editdlrm
ubrk.h245470644editdlrm
ucal.h582650644editdlrm
ucasemap.h155460644editdlrm
ucat.h54840644editdlrm
uchar.h1446300644editdlrm
ucharstrie.h231200644editdlrm
ucharstriebuilder.h73780644editdlrm
uchriter.h135210644editdlrm
uclean.h114740644editdlrm
ucnv.h850850644editdlrm
ucnvsel.h62830644editdlrm
ucnv_cb.h67480644editdlrm
ucnv_err.h214920644editdlrm
ucol.h629390644editdlrm
ucoleitr.h96840644editdlrm
uconfig.h123560644editdlrm
ucpmap.h56630644editdlrm
ucptrie.h230020644editdlrm
ucsdet.h150180644editdlrm
ucurr.h165070644editdlrm
udat.h628510644editdlrm
udata.h159300644editdlrm
udateintervalformat.h109950644editdlrm
udatpg.h274470644editdlrm
udisplaycontext.h60290644editdlrm
uenum.h79700644editdlrm
ufieldpositer.h44610644editdlrm
uformattable.h111980644editdlrm
uformattedvalue.h124130644editdlrm
ugender.h20520644editdlrm
uidna.h341690644editdlrm
uiter.h233190644editdlrm
uldnames.h107020644editdlrm
ulistformatter.h110860644editdlrm
uloc.h544320644editdlrm
ulocdata.h115330644editdlrm
umachine.h148840644editdlrm
umisc.h13650644editdlrm
umsg.h248120644editdlrm
umutablecptrie.h84350644editdlrm
unifilt.h40550644editdlrm
unifunct.h41410644editdlrm
unimatch.h62440644editdlrm
unirepl.h34640644editdlrm
uniset.h664590644editdlrm
unistr.h1745230644editdlrm
unorm.h210150644editdlrm
unorm2.h252540644editdlrm
unum.h547430644editdlrm
unumberformatter.h258240644editdlrm
unumsys.h73870644editdlrm
uobject.h109360644editdlrm
upluralrules.h80130644editdlrm
uregex.h737840644editdlrm
uregion.h100730644editdlrm
ureldatefmt.h174090644editdlrm
urename.h1344490644editdlrm
urep.h55070644editdlrm
ures.h374150644editdlrm
uscript.h278670644editdlrm
usearch.h390390644editdlrm
uset.h409580644editdlrm
usetiter.h97810644editdlrm
ushape.h184320644editdlrm
uspoof.h674800644editdlrm
usprep.h83310644editdlrm
ustdio.h394690644editdlrm
ustream.h19340644editdlrm
ustring.h742110644editdlrm
ustringtrie.h32240644editdlrm
utext.h595270644editdlrm
utf.h80460644editdlrm
utf8.h317000644editdlrm
utf16.h238780644editdlrm
utf32.h7630644editdlrm
utf_old.h469290644editdlrm
utmscale.h141130644editdlrm
utrace.h177060644editdlrm
utrans.h261300644editdlrm
utypes.h314810644editdlrm
uvernum.h68320644editdlrm
uversion.h61450644editdlrm
vtzone.h207840644editdlrm
Edit: /usr/include/unicode/utf8.h (31700B)
// © 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). * * Usage: * 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=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>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=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 i0 && ((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 start0) { \ 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 start0 && (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