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alphaindex.h
25.29
KB
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2020-03-25 14:47
appendable.h
8.38
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2020-03-25 14:47
basictz.h
8.77
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2020-03-25 14:47
bms.h
8.68
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2020-03-25 14:47
bmsearch.h
7.33
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2020-03-25 14:47
brkiter.h
24.24
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2020-03-25 14:47
bytestream.h
9.16
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2020-03-25 14:47
bytestrie.h
19.19
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2020-03-25 14:47
bytestriebuilder.h
6.73
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2020-03-25 14:47
calendar.h
102.76
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2020-03-25 14:47
caniter.h
7.23
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2020-03-25 14:47
chariter.h
23.71
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2020-03-25 14:47
choicfmt.h
27.82
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2020-03-25 14:47
coleitr.h
12.69
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2020-03-25 14:47
coll.h
53.44
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2020-03-25 14:47
colldata.h
12.42
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2020-03-25 14:47
curramt.h
3.57
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2020-03-25 14:47
currpinf.h
6.93
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2020-03-25 14:47
currunit.h
2.99
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2020-03-25 14:47
datefmt.h
33.67
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2020-03-25 14:47
dbbi.h
966
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2020-03-25 14:47
dcfmtsym.h
14.91
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2020-03-25 14:47
decimfmt.h
97.38
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2020-03-25 14:47
docmain.h
6.28
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2020-03-25 14:47
dtfmtsym.h
30.27
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2020-03-25 14:47
dtintrv.h
3.65
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2020-03-25 14:47
dtitvfmt.h
39.24
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2020-03-25 14:47
dtitvinf.h
18.56
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2020-03-25 14:47
dtptngen.h
19.54
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2020-03-25 14:47
dtrule.h
8.51
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2020-03-25 14:47
enumset.h
1.8
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2020-03-25 14:47
errorcode.h
4.67
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2020-03-25 14:47
fieldpos.h
8.51
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2020-03-25 14:47
fmtable.h
22.09
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2020-03-25 14:47
format.h
12.33
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2020-03-25 14:47
fpositer.h
2.97
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2020-03-25 14:47
gender.h
3.02
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2020-03-25 14:47
gregocal.h
33.28
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2020-03-25 14:47
icudataver.h
990
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2020-03-25 14:47
icuplug.h
11.49
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2020-03-25 14:47
idna.h
12.68
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2020-03-25 14:47
listformatter.h
3.97
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2020-03-25 14:47
localpointer.h
9.13
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2020-03-25 14:47
locdspnm.h
7.14
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2020-03-25 14:47
locid.h
30.48
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2020-03-25 14:47
measfmt.h
1.94
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measunit.h
1.6
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measure.h
3.24
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messagepattern.h
33.6
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2020-03-25 14:47
msgfmt.h
43.59
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2020-03-25 14:47
normalizer2.h
28.34
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normlzr.h
29.26
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numfmt.h
43.59
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2020-03-25 14:47
numsys.h
5.37
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2020-03-25 14:47
parseerr.h
2.97
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parsepos.h
5.34
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platform.h
24.23
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2020-03-25 14:47
plurfmt.h
24.58
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plurrule.h
14.56
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2020-03-25 14:47
ptypes.h
3.36
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2020-03-25 14:47
putil.h
5.61
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rbbi.h
29.15
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rbnf.h
45.32
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rbtz.h
15.33
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2020-03-25 14:47
regex.h
83.1
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2020-03-25 14:47
rep.h
9.33
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resbund.h
17.89
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schriter.h
6.15
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2020-03-25 14:47
search.h
22.1
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2020-03-25 14:47
selfmt.h
14.13
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2020-03-25 14:47
simpletz.h
45.1
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2020-03-25 14:47
smpdtfmt.h
57.58
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2020-03-25 14:47
sortkey.h
10.98
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2020-03-25 14:47
std_string.h
783
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2020-03-25 14:47
strenum.h
9.92
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2020-03-25 14:47
stringpiece.h
6.38
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2020-03-25 14:47
stringtriebuilder.h
14.75
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2020-03-25 14:47
stsearch.h
21.76
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2020-03-25 14:47
symtable.h
4.1
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2020-03-25 14:47
tblcoll.h
34.23
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2020-03-25 14:47
timezone.h
37.28
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2020-03-25 14:47
tmunit.h
3.39
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2020-03-25 14:47
tmutamt.h
4.69
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2020-03-25 14:47
tmutfmt.h
8.51
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2020-03-25 14:47
translit.h
53.76
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2020-03-25 14:47
tzfmt.h
32.06
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2020-03-25 14:47
tznames.h
14.83
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2020-03-25 14:47
tzrule.h
35.21
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tztrans.h
5.96
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2020-03-25 14:47
ubidi.h
88.57
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2020-03-25 14:47
ubrk.h
19.13
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2020-03-25 14:47
ucal.h
50.49
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2020-03-25 14:47
ucasemap.h
16.45
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2020-03-25 14:47
ucat.h
5.25
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2020-03-25 14:47
uchar.h
115.43
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2020-03-25 14:47
ucharstrie.h
20.8
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2020-03-25 14:47
ucharstriebuilder.h
6.83
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2020-03-25 14:47
uchriter.h
12.82
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2020-03-25 14:47
uclean.h
10.38
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ucnv.h
82.6
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ucnv_cb.h
6.48
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ucnv_err.h
20.87
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ucnvsel.h
6.03
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ucol.h
57.93
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ucoleitr.h
12.25
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uconfig.h
10.79
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ucsdet.h
12.6
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ucurr.h
12.96
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udat.h
46.47
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udata.h
14.81
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udateintervalformat.h
6.5
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udatpg.h
23.24
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udisplaycontext.h
4.34
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uenum.h
7.79
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ugender.h
1.85
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uidna.h
32.81
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uiter.h
22.67
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uldnames.h
10.5
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uloc.h
44.07
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ulocdata.h
10.37
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umachine.h
10.23
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umisc.h
1.23
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umsg.h
24.12
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unifilt.h
3.52
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unifunct.h
3.87
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unimatch.h
5.93
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unirepl.h
3.21
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uniset.h
63.07
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unistr.h
164.33
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unorm.h
22.89
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unorm2.h
21.91
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unum.h
39.21
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uobject.h
12.21
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upluralrules.h
4.47
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uregex.h
71.47
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urename.h
120.88
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urep.h
5.27
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ures.h
35.92
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uscript.h
20.46
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usearch.h
36.09
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uset.h
39.45
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usetiter.h
9.38
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ushape.h
17.89
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uspoof.h
38.91
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usprep.h
8.02
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ustdio.h
37.05
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ustream.h
1.6
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ustring.h
73.01
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ustringtrie.h
3.04
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utext.h
57.97
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utf.h
7.64
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utf16.h
18.24
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utf32.h
653
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utf8.h
23.02
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utf_old.h
42.5
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utmscale.h
13.37
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utrace.h
13.09
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utrans.h
23.08
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utypes.h
30.72
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uvernum.h
5.53
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uversion.h
6.29
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vtzone.h
20.09
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2020-03-25 14:47
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/* ******************************************************************************* * Copyright (C) 1996-2011, International Business Machines Corporation and * others. All Rights Reserved. ******************************************************************************* */ #ifndef CANITER_H #define CANITER_H #include "unicode/utypes.h" #if !UCONFIG_NO_NORMALIZATION #include "unicode/uobject.h" #include "unicode/unistr.h" /** * \file * \brief C++ API: Canonical Iterator */ /** Should permutation skip characters with combining class zero * Should be either TRUE or FALSE. This is a compile time option * @stable ICU 2.4 */ #ifndef CANITER_SKIP_ZEROES #define CANITER_SKIP_ZEROES TRUE #endif U_NAMESPACE_BEGIN class Hashtable; class Normalizer2; class Normalizer2Impl; /** * This class allows one to iterate through all the strings that are canonically equivalent to a given * string. For example, here are some sample results: Results for: {LATIN CAPITAL LETTER A WITH RING ABOVE}{LATIN SMALL LETTER D}{COMBINING DOT ABOVE}{COMBINING CEDILLA} 1: \\u0041\\u030A\\u0064\\u0307\\u0327 = {LATIN CAPITAL LETTER A}{COMBINING RING ABOVE}{LATIN SMALL LETTER D}{COMBINING DOT ABOVE}{COMBINING CEDILLA} 2: \\u0041\\u030A\\u0064\\u0327\\u0307 = {LATIN CAPITAL LETTER A}{COMBINING RING ABOVE}{LATIN SMALL LETTER D}{COMBINING CEDILLA}{COMBINING DOT ABOVE} 3: \\u0041\\u030A\\u1E0B\\u0327 = {LATIN CAPITAL LETTER A}{COMBINING RING ABOVE}{LATIN SMALL LETTER D WITH DOT ABOVE}{COMBINING CEDILLA} 4: \\u0041\\u030A\\u1E11\\u0307 = {LATIN CAPITAL LETTER A}{COMBINING RING ABOVE}{LATIN SMALL LETTER D WITH CEDILLA}{COMBINING DOT ABOVE} 5: \\u00C5\\u0064\\u0307\\u0327 = {LATIN CAPITAL LETTER A WITH RING ABOVE}{LATIN SMALL LETTER D}{COMBINING DOT ABOVE}{COMBINING CEDILLA} 6: \\u00C5\\u0064\\u0327\\u0307 = {LATIN CAPITAL LETTER A WITH RING ABOVE}{LATIN SMALL LETTER D}{COMBINING CEDILLA}{COMBINING DOT ABOVE} 7: \\u00C5\\u1E0B\\u0327 = {LATIN CAPITAL LETTER A WITH RING ABOVE}{LATIN SMALL LETTER D WITH DOT ABOVE}{COMBINING CEDILLA} 8: \\u00C5\\u1E11\\u0307 = {LATIN CAPITAL LETTER A WITH RING ABOVE}{LATIN SMALL LETTER D WITH CEDILLA}{COMBINING DOT ABOVE} 9: \\u212B\\u0064\\u0307\\u0327 = {ANGSTROM SIGN}{LATIN SMALL LETTER D}{COMBINING DOT ABOVE}{COMBINING CEDILLA} 10: \\u212B\\u0064\\u0327\\u0307 = {ANGSTROM SIGN}{LATIN SMALL LETTER D}{COMBINING CEDILLA}{COMBINING DOT ABOVE} 11: \\u212B\\u1E0B\\u0327 = {ANGSTROM SIGN}{LATIN SMALL LETTER D WITH DOT ABOVE}{COMBINING CEDILLA} 12: \\u212B\\u1E11\\u0307 = {ANGSTROM SIGN}{LATIN SMALL LETTER D WITH CEDILLA}{COMBINING DOT ABOVE} *<br>Note: the code is intended for use with small strings, and is not suitable for larger ones, * since it has not been optimized for that situation. * Note, CanonicalIterator is not intended to be subclassed. * @author M. Davis * @author C++ port by V. Weinstein * @stable ICU 2.4 */ class U_COMMON_API CanonicalIterator : public UObject { public: /** * Construct a CanonicalIterator object * @param source string to get results for * @param status Fill-in parameter which receives the status of this operation. * @stable ICU 2.4 */ CanonicalIterator(const UnicodeString &source, UErrorCode &status); /** Destructor * Cleans pieces * @stable ICU 2.4 */ virtual ~CanonicalIterator(); /** * Gets the NFD form of the current source we are iterating over. * @return gets the source: NOTE: it is the NFD form of source * @stable ICU 2.4 */ UnicodeString getSource(); /** * Resets the iterator so that one can start again from the beginning. * @stable ICU 2.4 */ void reset(); /** * Get the next canonically equivalent string. * <br><b>Warning: The strings are not guaranteed to be in any particular order.</b> * @return the next string that is canonically equivalent. A bogus string is returned when * the iteration is done. * @stable ICU 2.4 */ UnicodeString next(); /** * Set a new source for this iterator. Allows object reuse. * @param newSource the source string to iterate against. This allows the same iterator to be used * while changing the source string, saving object creation. * @param status Fill-in parameter which receives the status of this operation. * @stable ICU 2.4 */ void setSource(const UnicodeString &newSource, UErrorCode &status); #ifndef U_HIDE_INTERNAL_API /** * Dumb recursive implementation of permutation. * TODO: optimize * @param source the string to find permutations for * @param skipZeros determine if skip zeros * @param result the results in a set. * @param status Fill-in parameter which receives the status of this operation. * @internal */ static void U_EXPORT2 permute(UnicodeString &source, UBool skipZeros, Hashtable *result, UErrorCode &status); #endif /* U_HIDE_INTERNAL_API */ /** * ICU "poor man's RTTI", returns a UClassID for this class. * * @stable ICU 2.2 */ static UClassID U_EXPORT2 getStaticClassID(); /** * ICU "poor man's RTTI", returns a UClassID for the actual class. * * @stable ICU 2.2 */ virtual UClassID getDynamicClassID() const; private: // ===================== PRIVATES ============================== // private default constructor CanonicalIterator(); /** * Copy constructor. Private for now. * @internal */ CanonicalIterator(const CanonicalIterator& other); /** * Assignment operator. Private for now. * @internal */ CanonicalIterator& operator=(const CanonicalIterator& other); // fields UnicodeString source; UBool done; // 2 dimensional array holds the pieces of the string with // their different canonically equivalent representations UnicodeString **pieces; int32_t pieces_length; int32_t *pieces_lengths; // current is used in iterating to combine pieces int32_t *current; int32_t current_length; // transient fields UnicodeString buffer; const Normalizer2 &nfd; const Normalizer2Impl &nfcImpl; // we have a segment, in NFD. Find all the strings that are canonically equivalent to it. UnicodeString *getEquivalents(const UnicodeString &segment, int32_t &result_len, UErrorCode &status); //private String[] getEquivalents(String segment) //Set getEquivalents2(String segment); Hashtable *getEquivalents2(Hashtable *fillinResult, const UChar *segment, int32_t segLen, UErrorCode &status); //Hashtable *getEquivalents2(const UnicodeString &segment, int32_t segLen, UErrorCode &status); /** * See if the decomposition of cp2 is at segment starting at segmentPos * (with canonical rearrangment!) * If so, take the remainder, and return the equivalents */ //Set extract(int comp, String segment, int segmentPos, StringBuffer buffer); Hashtable *extract(Hashtable *fillinResult, UChar32 comp, const UChar *segment, int32_t segLen, int32_t segmentPos, UErrorCode &status); //Hashtable *extract(UChar32 comp, const UnicodeString &segment, int32_t segLen, int32_t segmentPos, UErrorCode &status); void cleanPieces(); }; U_NAMESPACE_END #endif /* #if !UCONFIG_NO_NORMALIZATION */ #endif