PNG  IHDRX cHRMz&u0`:pQ<bKGD pHYsodtIME MeqIDATxw]Wug^Qd˶ 6`!N:!@xI~)%7%@Bh&`lnjVF29gΨ4E$|>cɚ{gk= %,a KX%,a KX%,a KX%,a KX%,a KX%,a KX%, b` ǟzeאfp]<!SJmɤY޲ڿ,%c ~ع9VH.!Ͳz&QynֺTkRR.BLHi٪:l;@(!MԴ=žI,:o&N'Kù\vRmJ雵֫AWic H@" !: Cé||]k-Ha oݜ:y F())u]aG7*JV@J415p=sZH!=!DRʯvɱh~V\}v/GKY$n]"X"}t@ xS76^[bw4dsce)2dU0 CkMa-U5tvLƀ~mlMwfGE/-]7XAƟ`׮g ewxwC4\[~7@O-Q( a*XGƒ{ ՟}$_y3tĐƤatgvێi|K=uVyrŲlLӪuܿzwk$m87k( `múcE)"@rK( z4$D; 2kW=Xb$V[Ru819קR~qloѱDyįݎ*mxw]y5e4K@ЃI0A D@"BDk_)N\8͜9dz"fK0zɿvM /.:2O{ Nb=M=7>??Zuo32 DLD@D| &+֎C #B8ַ`bOb $D#ͮҪtx]%`ES`Ru[=¾!@Od37LJ0!OIR4m]GZRJu$‡c=%~s@6SKy?CeIh:[vR@Lh | (BhAMy=݃  G"'wzn޺~8ԽSh ~T*A:xR[ܹ?X[uKL_=fDȊ؂p0}7=D$Ekq!/t.*2ʼnDbŞ}DijYaȲ(""6HA;:LzxQ‘(SQQ}*PL*fc\s `/d'QXW, e`#kPGZuŞuO{{wm[&NBTiiI0bukcA9<4@SӊH*؎4U/'2U5.(9JuDfrޱtycU%j(:RUbArLֺN)udA':uGQN"-"Is.*+k@ `Ojs@yU/ H:l;@yyTn}_yw!VkRJ4P)~y#)r,D =ě"Q]ci'%HI4ZL0"MJy 8A{ aN<8D"1#IJi >XjX֔#@>-{vN!8tRݻ^)N_╗FJEk]CT՟ YP:_|H1@ CBk]yKYp|og?*dGvzنzӴzjֺNkC~AbZƷ`.H)=!QͷVTT(| u78y֮}|[8-Vjp%2JPk[}ԉaH8Wpqhwr:vWª<}l77_~{s۴V+RCģ%WRZ\AqHifɤL36: #F:p]Bq/z{0CU6ݳEv_^k7'>sq*+kH%a`0ԣisqにtү04gVgW΂iJiS'3w.w}l6MC2uԯ|>JF5`fV5m`Y**Db1FKNttu]4ccsQNnex/87+}xaUW9y>ͯ骵G{䩓Գ3+vU}~jJ.NFRD7<aJDB1#ҳgSb,+CS?/ VG J?|?,2#M9}B)MiE+G`-wo߫V`fio(}S^4e~V4bHOYb"b#E)dda:'?}׮4繏`{7Z"uny-?ǹ;0MKx{:_pÚmFמ:F " .LFQLG)Q8qN q¯¯3wOvxDb\. BKD9_NN &L:4D{mm o^tֽ:q!ƥ}K+<"m78N< ywsard5+вz~mnG)=}lYݧNj'QJS{S :UYS-952?&O-:W}(!6Mk4+>A>j+i|<<|;ر^߉=HE|V#F)Emm#}/"y GII웻Jі94+v뾧xu~5C95~ūH>c@덉pʃ1/4-A2G%7>m;–Y,cyyaln" ?ƻ!ʪ<{~h~i y.zZB̃/,雋SiC/JFMmBH&&FAbϓO^tubbb_hZ{_QZ-sύodFgO(6]TJA˯#`۶ɟ( %$&+V'~hiYy>922 Wp74Zkq+Ovn錄c>8~GqܲcWꂎz@"1A.}T)uiW4="jJ2W7mU/N0gcqܗOO}?9/wìXžΏ0 >֩(V^Rh32!Hj5`;O28؇2#ݕf3 ?sJd8NJ@7O0 b־?lldщ̡&|9C.8RTWwxWy46ah嘦mh٤&l zCy!PY?: CJyв]dm4ǜҐR޻RլhX{FƯanшQI@x' ao(kUUuxW_Ñ줮[w8 FRJ(8˼)_mQ _!RJhm=!cVmm ?sFOnll6Qk}alY}; "baӌ~M0w,Ggw2W:G/k2%R,_=u`WU R.9T"v,<\Ik޽/2110Ӿxc0gyC&Ny޽JҢrV6N ``یeA16"J³+Rj*;BϜkZPJaÍ<Jyw:NP8/D$ 011z֊Ⱳ3ι֘k1V_"h!JPIΣ'ɜ* aEAd:ݺ>y<}Lp&PlRfTb1]o .2EW\ͮ]38؋rTJsǏP@芎sF\> P^+dYJLbJ C-xϐn> ι$nj,;Ǖa FU *择|h ~izť3ᤓ`K'-f tL7JK+vf2)V'-sFuB4i+m+@My=O҈0"|Yxoj,3]:cо3 $#uŘ%Y"y죯LebqtҢVzq¼X)~>4L׶m~[1_k?kxֺQ`\ |ٛY4Ѯr!)N9{56(iNq}O()Em]=F&u?$HypWUeB\k]JɩSع9 Zqg4ZĊo oMcjZBU]B\TUd34ݝ~:7ڶSUsB0Z3srx 7`:5xcx !qZA!;%͚7&P H<WL!džOb5kF)xor^aujƍ7 Ǡ8/p^(L>ὴ-B,{ۇWzֺ^k]3\EE@7>lYBȝR.oHnXO/}sB|.i@ɥDB4tcm,@ӣgdtJ!lH$_vN166L__'Z)y&kH;:,Y7=J 9cG) V\hjiE;gya~%ks_nC~Er er)muuMg2;֫R)Md) ,¶ 2-wr#F7<-BBn~_(o=KO㭇[Xv eN_SMgSҐ BS헃D%g_N:/pe -wkG*9yYSZS.9cREL !k}<4_Xs#FmҶ:7R$i,fi!~' # !6/S6y@kZkZcX)%5V4P]VGYq%H1!;e1MV<!ϐHO021Dp= HMs~~a)ަu7G^];git!Frl]H/L$=AeUvZE4P\.,xi {-~p?2b#amXAHq)MWǾI_r`S Hz&|{ +ʖ_= (YS(_g0a03M`I&'9vl?MM+m~}*xT۲(fY*V4x@29s{DaY"toGNTO+xCAO~4Ϳ;p`Ѫ:>Ҵ7K 3}+0 387x\)a"/E>qpWB=1 ¨"MP(\xp߫́A3+J] n[ʼnӼaTbZUWb={~2ooKױӰp(CS\S筐R*JغV&&"FA}J>G֐p1ٸbk7 ŘH$JoN <8s^yk_[;gy-;߉DV{c B yce% aJhDȶ 2IdйIB/^n0tNtџdcKj4϶v~- CBcgqx9= PJ) dMsjpYB] GD4RDWX +h{y`,3ꊕ$`zj*N^TP4L:Iz9~6s) Ga:?y*J~?OrMwP\](21sZUD ?ܟQ5Q%ggW6QdO+\@ ̪X'GxN @'4=ˋ+*VwN ne_|(/BDfj5(Dq<*tNt1х!MV.C0 32b#?n0pzj#!38}޴o1KovCJ`8ŗ_"]] rDUy޲@ Ȗ-;xџ'^Y`zEd?0„ DAL18IS]VGq\4o !swV7ˣι%4FѮ~}6)OgS[~Q vcYbL!wG3 7띸*E Pql8=jT\꘿I(z<[6OrR8ºC~ډ]=rNl[g|v TMTղb-o}OrP^Q]<98S¤!k)G(Vkwyqyr޽Nv`N/e p/~NAOk \I:G6]4+K;j$R:Mi #*[AȚT,ʰ,;N{HZTGMoּy) ]%dHء9Պ䠬|<45,\=[bƟ8QXeB3- &dҩ^{>/86bXmZ]]yޚN[(WAHL$YAgDKp=5GHjU&99v簪C0vygln*P)9^͞}lMuiH!̍#DoRBn9l@ xA/_v=ȺT{7Yt2N"4!YN`ae >Q<XMydEB`VU}u]嫇.%e^ánE87Mu\t`cP=AD/G)sI"@MP;)]%fH9'FNsj1pVhY&9=0pfuJ&gޤx+k:!r˭wkl03׼Ku C &ѓYt{.O.zҏ z}/tf_wEp2gvX)GN#I ݭ߽v/ .& и(ZF{e"=V!{zW`, ]+LGz"(UJp|j( #V4, 8B 0 9OkRrlɱl94)'VH9=9W|>PS['G(*I1==C<5"Pg+x'K5EMd؞Af8lG ?D FtoB[je?{k3zQ vZ;%Ɠ,]E>KZ+T/ EJxOZ1i #T<@ I}q9/t'zi(EMqw`mYkU6;[t4DPeckeM;H}_g pMww}k6#H㶏+b8雡Sxp)&C $@'b,fPߑt$RbJ'vznuS ~8='72_`{q纶|Q)Xk}cPz9p7O:'|G~8wx(a 0QCko|0ASD>Ip=4Q, d|F8RcU"/KM opKle M3#i0c%<7׿p&pZq[TR"BpqauIp$ 8~Ĩ!8Սx\ւdT>>Z40ks7 z2IQ}ItԀ<-%S⍤};zIb$I 5K}Q͙D8UguWE$Jh )cu4N tZl+[]M4k8֦Zeq֮M7uIqG 1==tLtR,ƜSrHYt&QP윯Lg' I,3@P'}'R˪e/%-Auv·ñ\> vDJzlӾNv5:|K/Jb6KI9)Zh*ZAi`?S {aiVDԲuy5W7pWeQJk֤#5&V<̺@/GH?^τZL|IJNvI:'P=Ϛt"¨=cud S Q.Ki0 !cJy;LJR;G{BJy޺[^8fK6)=yʊ+(k|&xQ2`L?Ȓ2@Mf 0C`6-%pKpm')c$׻K5[J*U[/#hH!6acB JA _|uMvDyk y)6OPYjœ50VT K}cǻP[ $:]4MEA.y)|B)cf-A?(e|lɉ#P9V)[9t.EiQPDѠ3ϴ;E:+Օ t ȥ~|_N2,ZJLt4! %ա]u {+=p.GhNcŞQI?Nd'yeh n7zi1DB)1S | S#ًZs2|Ɛy$F SxeX{7Vl.Src3E℃Q>b6G ўYCmtկ~=K0f(=LrAS GN'ɹ9<\!a`)֕y[uՍ[09` 9 +57ts6}b4{oqd+J5fa/,97J#6yν99mRWxJyѡyu_TJc`~W>l^q#Ts#2"nD1%fS)FU w{ܯ R{ ˎ󅃏џDsZSQS;LV;7 Od1&1n$ N /.q3~eNɪ]E#oM~}v֯FڦwyZ=<<>Xo稯lfMFV6p02|*=tV!c~]fa5Y^Q_WN|Vs 0ҘދU97OI'N2'8N֭fgg-}V%y]U4 峧p*91#9U kCac_AFңĪy뚇Y_AiuYyTTYЗ-(!JFLt›17uTozc. S;7A&&<ԋ5y;Ro+:' *eYJkWR[@F %SHWP 72k4 qLd'J "zB6{AC0ƁA6U.'F3:Ȅ(9ΜL;D]m8ڥ9}dU "v!;*13Rg^fJyShyy5auA?ɩGHRjo^]׽S)Fm\toy 4WQS@mE#%5ʈfFYDX ~D5Ϡ9tE9So_aU4?Ѽm%&c{n>.KW1Tlb}:j uGi(JgcYj0qn+>) %\!4{LaJso d||u//P_y7iRJ߬nHOy) l+@$($VFIQ9%EeKʈU. ia&FY̒mZ=)+qqoQn >L!qCiDB;Y<%} OgBxB!ØuG)WG9y(Ą{_yesuZmZZey'Wg#C~1Cev@0D $a@˲(.._GimA:uyw֬%;@!JkQVM_Ow:P.s\)ot- ˹"`B,e CRtaEUP<0'}r3[>?G8xU~Nqu;Wm8\RIkբ^5@k+5(By'L&'gBJ3ݶ!/㮻w҅ yqPWUg<e"Qy*167΃sJ\oz]T*UQ<\FԎ`HaNmڜ6DysCask8wP8y9``GJ9lF\G g's Nn͵MLN֪u$| /|7=]O)6s !ĴAKh]q_ap $HH'\1jB^s\|- W1:=6lJBqjY^LsPk""`]w)󭃈,(HC ?䔨Y$Sʣ{4Z+0NvQkhol6C.婧/u]FwiVjZka&%6\F*Ny#8O,22+|Db~d ~Çwc N:FuuCe&oZ(l;@ee-+Wn`44AMK➝2BRՈt7g*1gph9N) *"TF*R(#'88pm=}X]u[i7bEc|\~EMn}P瘊J)K.0i1M6=7'_\kaZ(Th{K*GJyytw"IO-PWJk)..axӝ47"89Cc7ĐBiZx 7m!fy|ϿF9CbȩV 9V-՛^pV̌ɄS#Bv4-@]Vxt-Z, &ֺ*diؠ2^VXbs֔Ìl.jQ]Y[47gj=幽ex)A0ip׳ W2[ᎇhuE^~q흙L} #-b۸oFJ_QP3r6jr+"nfzRJTUqoaۍ /$d8Mx'ݓ= OՃ| )$2mcM*cЙj}f };n YG w0Ia!1Q.oYfr]DyISaP}"dIӗթO67jqR ҊƐƈaɤGG|h;t]䗖oSv|iZqX)oalv;۩meEJ\!8=$4QU4Xo&VEĊ YS^E#d,yX_> ۘ-e\ "Wa6uLĜZi`aD9.% w~mB(02G[6y.773a7 /=o7D)$Z 66 $bY^\CuP. (x'"J60׿Y:Oi;F{w佩b+\Yi`TDWa~|VH)8q/=9!g߆2Y)?ND)%?Ǐ`k/sn:;O299yB=a[Ng 3˲N}vLNy;*?x?~L&=xyӴ~}q{qE*IQ^^ͧvü{Huu=R|>JyUlZV, B~/YF!Y\u_ݼF{_C)LD]m {H 0ihhadd nUkf3oٺCvE\)QJi+֥@tDJkB$1!Đr0XQ|q?d2) Ӣ_}qv-< FŊ߫%roppVBwü~JidY4:}L6M7f٬F "?71<2#?Jyy4뷢<_a7_=Q E=S1И/9{+93֮E{ǂw{))?maÆm(uLE#lïZ  ~d];+]h j?!|$F}*"4(v'8s<ŏUkm7^7no1w2ؗ}TrͿEk>p'8OB7d7R(A 9.*Mi^ͳ; eeUwS+C)uO@ =Sy]` }l8^ZzRXj[^iUɺ$tj))<sbDJfg=Pk_{xaKo1:-uyG0M ԃ\0Lvuy'ȱc2Ji AdyVgVh!{]/&}}ċJ#%d !+87<;qN޼Nفl|1N:8ya  8}k¾+-$4FiZYÔXk*I&'@iI99)HSh4+2G:tGhS^繿 Kتm0 вDk}֚+QT4;sC}rՅE,8CX-e~>G&'9xpW,%Fh,Ry56Y–hW-(v_,? ; qrBk4-V7HQ;ˇ^Gv1JVV%,ik;D_W!))+BoS4QsTM;gt+ndS-~:11Sgv!0qRVh!"Ȋ(̦Yl.]PQWgٳE'`%W1{ndΗBk|Ž7ʒR~,lnoa&:ü$ 3<a[CBݮwt"o\ePJ=Hz"_c^Z.#ˆ*x z̝grY]tdkP*:97YľXyBkD4N.C_[;F9`8& !AMO c `@BA& Ost\-\NX+Xp < !bj3C&QL+*&kAQ=04}cC!9~820G'PC9xa!w&bo_1 Sw"ܱ V )Yl3+ס2KoXOx]"`^WOy :3GO0g;%Yv㐫(R/r (s } u B &FeYZh0y> =2<Ϟc/ -u= c&׭,.0"g"7 6T!vl#sc>{u/Oh Bᾈ)۴74]x7 gMӒ"d]U)}" v4co[ ɡs 5Gg=XR14?5A}D "b{0$L .\4y{_fe:kVS\\O]c^W52LSBDM! C3Dhr̦RtArx4&agaN3Cf<Ԉp4~ B'"1@.b_/xQ} _߃҉/gٓ2Qkqp0շpZ2fԫYz< 4L.Cyυι1t@鎫Fe sYfsF}^ V}N<_`p)alٶ "(XEAVZ<)2},:Ir*#m_YӼ R%a||EƼIJ,,+f"96r/}0jE/)s)cjW#w'Sʯ5<66lj$a~3Kʛy 2:cZ:Yh))+a߭K::N,Q F'qB]={.]h85C9cr=}*rk?vwV렵ٸW Rs%}rNAkDv|uFLBkWY YkX מ|)1!$#3%y?pF<@<Rr0}: }\J [5FRxY<9"SQdE(Q*Qʻ)q1E0B_O24[U'],lOb ]~WjHޏTQ5Syu wq)xnw8~)c 쫬gٲߠ H% k5dƝk> kEj,0% b"vi2Wس_CuK)K{n|>t{P1򨾜j>'kEkƗBg*H%'_aY6Bn!TL&ɌOb{c`'d^{t\i^[uɐ[}q0lM˕G:‚4kb祔c^:?bpg… +37stH:0}en6x˟%/<]BL&* 5&fK9Mq)/iyqtA%kUe[ڛKN]Ě^,"`/ s[EQQm?|XJ߅92m]G.E΃ח U*Cn.j_)Tѧj̿30ڇ!A0=͜ar I3$C^-9#|pk!)?7.x9 @OO;WƝZBFU keZ75F6Tc6"ZȚs2y/1 ʵ:u4xa`C>6Rb/Yм)^=+~uRd`/|_8xbB0?Ft||Z\##|K 0>>zxv8۴吅q 8ĥ)"6>~\8:qM}#͚'ĉ#p\׶ l#bA?)|g g9|8jP(cr,BwV (WliVxxᡁ@0Okn;ɥh$_ckCgriv}>=wGzβ KkBɛ[˪ !J)h&k2%07δt}!d<9;I&0wV/ v 0<H}L&8ob%Hi|޶o&h1L|u֦y~󛱢8fٲUsւ)0oiFx2}X[zVYr_;N(w]_4B@OanC?gĦx>мgx>ΛToZoOMp>40>V Oy V9iq!4 LN,ˢu{jsz]|"R޻&'ƚ{53ўFu(<٪9:΋]B;)B>1::8;~)Yt|0(pw2N%&X,URBK)3\zz&}ax4;ǟ(tLNg{N|Ǽ\G#C9g$^\}p?556]/RP.90 k,U8/u776s ʪ_01چ|\N 0VV*3H鴃J7iI!wG_^ypl}r*jɤSR 5QN@ iZ#1ٰy;_\3\BQQ x:WJv츟ٯ$"@6 S#qe딇(/P( Dy~TOϻ<4:-+F`0||;Xl-"uw$Цi󼕝mKʩorz"mϺ$F:~E'ҐvD\y?Rr8_He@ e~O,T.(ފR*cY^m|cVR[8 JҡSm!ΆԨb)RHG{?MpqrmN>߶Y)\p,d#xۆWY*,l6]v0h15M˙MS8+EdI='LBJIH7_9{Caз*Lq,dt >+~ّeʏ?xԕ4bBAŚjﵫ!'\Ը$WNvKO}ӽmSşذqsOy?\[,d@'73'j%kOe`1.g2"e =YIzS2|zŐƄa\U,dP;jhhhaxǶ?КZ՚.q SE+XrbOu%\GتX(H,N^~]JyEZQKceTQ]VGYqnah;y$cQahT&QPZ*iZ8UQQM.qo/T\7X"u?Mttl2Xq(IoW{R^ ux*SYJ! 4S.Jy~ BROS[V|žKNɛP(L6V^|cR7i7nZW1Fd@ Ara{詑|(T*dN]Ko?s=@ |_EvF]׍kR)eBJc" MUUbY6`~V޴dJKß&~'d3i WWWWWW
Current Directory: /usr/lib64/perl5/vendor_perl/Unicode
Viewing File: /usr/lib64/perl5/vendor_perl/Unicode/Normalize.pm
package Unicode::Normalize; BEGIN { unless ('A' eq pack('U', 0x41)) { die "Unicode::Normalize cannot stringify a Unicode code point\n"; } unless (0x41 == unpack('U', 'A')) { die "Unicode::Normalize cannot get Unicode code point\n"; } } use 5.006; use strict; use warnings; use Carp; no warnings 'utf8'; our $VERSION = '1.25'; our $PACKAGE = __PACKAGE__; our @EXPORT = qw( NFC NFD NFKC NFKD ); our @EXPORT_OK = qw( normalize decompose reorder compose checkNFD checkNFKD checkNFC checkNFKC check getCanon getCompat getComposite getCombinClass isExclusion isSingleton isNonStDecomp isComp2nd isComp_Ex isNFD_NO isNFC_NO isNFC_MAYBE isNFKD_NO isNFKC_NO isNFKC_MAYBE FCD checkFCD FCC checkFCC composeContiguous splitOnLastStarter normalize_partial NFC_partial NFD_partial NFKC_partial NFKD_partial ); our %EXPORT_TAGS = ( all => [ @EXPORT, @EXPORT_OK ], normalize => [ @EXPORT, qw/normalize decompose reorder compose/ ], check => [ qw/checkNFD checkNFKD checkNFC checkNFKC check/ ], fast => [ qw/FCD checkFCD FCC checkFCC composeContiguous/ ], ); ## ## utilities for tests ## sub pack_U { return pack('U*', @_); } sub unpack_U { # The empty pack returns an empty UTF-8 string, so the effect is to force # the shifted parameter into being UTF-8. This allows this to work on # Perl 5.6, where there is no utf8::upgrade(). return unpack('U*', shift(@_).pack('U*')); } require Exporter; ##### The above part is common to XS and PP ##### our @ISA = qw(Exporter DynaLoader); require DynaLoader; bootstrap Unicode::Normalize $VERSION; ##### The below part is common to XS and PP ##### ## ## normalize ## sub FCD ($) { my $str = shift; return checkFCD($str) ? $str : NFD($str); } our %formNorm = ( NFC => \&NFC, C => \&NFC, NFD => \&NFD, D => \&NFD, NFKC => \&NFKC, KC => \&NFKC, NFKD => \&NFKD, KD => \&NFKD, FCD => \&FCD, FCC => \&FCC, ); sub normalize($$) { my $form = shift; my $str = shift; if (exists $formNorm{$form}) { return $formNorm{$form}->($str); } croak($PACKAGE."::normalize: invalid form name: $form"); } ## ## partial ## sub normalize_partial ($$) { if (exists $formNorm{$_[0]}) { my $n = normalize($_[0], $_[1]); my($p, $u) = splitOnLastStarter($n); $_[1] = $u; return $p; } croak($PACKAGE."::normalize_partial: invalid form name: $_[0]"); } sub NFD_partial ($) { return normalize_partial('NFD', $_[0]) } sub NFC_partial ($) { return normalize_partial('NFC', $_[0]) } sub NFKD_partial($) { return normalize_partial('NFKD',$_[0]) } sub NFKC_partial($) { return normalize_partial('NFKC',$_[0]) } ## ## check ## our %formCheck = ( NFC => \&checkNFC, C => \&checkNFC, NFD => \&checkNFD, D => \&checkNFD, NFKC => \&checkNFKC, KC => \&checkNFKC, NFKD => \&checkNFKD, KD => \&checkNFKD, FCD => \&checkFCD, FCC => \&checkFCC, ); sub check($$) { my $form = shift; my $str = shift; if (exists $formCheck{$form}) { return $formCheck{$form}->($str); } croak($PACKAGE."::check: invalid form name: $form"); } 1; __END__ =head1 NAME Unicode::Normalize - Unicode Normalization Forms =head1 SYNOPSIS (1) using function names exported by default: use Unicode::Normalize; $NFD_string = NFD($string); # Normalization Form D $NFC_string = NFC($string); # Normalization Form C $NFKD_string = NFKD($string); # Normalization Form KD $NFKC_string = NFKC($string); # Normalization Form KC (2) using function names exported on request: use Unicode::Normalize 'normalize'; $NFD_string = normalize('D', $string); # Normalization Form D $NFC_string = normalize('C', $string); # Normalization Form C $NFKD_string = normalize('KD', $string); # Normalization Form KD $NFKC_string = normalize('KC', $string); # Normalization Form KC =head1 DESCRIPTION Parameters: C<$string> is used as a string under character semantics (see F<perlunicode>). C<$code_point> should be an unsigned integer representing a Unicode code point. Note: Between XSUB and pure Perl, there is an incompatibility about the interpretation of C<$code_point> as a decimal number. XSUB converts C<$code_point> to an unsigned integer, but pure Perl does not. Do not use a floating point nor a negative sign in C<$code_point>. =head2 Normalization Forms =over 4 =item C<$NFD_string = NFD($string)> It returns the Normalization Form D (formed by canonical decomposition). =item C<$NFC_string = NFC($string)> It returns the Normalization Form C (formed by canonical decomposition followed by canonical composition). =item C<$NFKD_string = NFKD($string)> It returns the Normalization Form KD (formed by compatibility decomposition). =item C<$NFKC_string = NFKC($string)> It returns the Normalization Form KC (formed by compatibility decomposition followed by B<canonical> composition). =item C<$FCD_string = FCD($string)> If the given string is in FCD ("Fast C or D" form; cf. UTN #5), it returns the string without modification; otherwise it returns an FCD string. Note: FCD is not always unique, then plural forms may be equivalent each other. C<FCD()> will return one of these equivalent forms. =item C<$FCC_string = FCC($string)> It returns the FCC form ("Fast C Contiguous"; cf. UTN #5). Note: FCC is unique, as well as four normalization forms (NF*). =item C<$normalized_string = normalize($form_name, $string)> It returns the normalization form of C<$form_name>. As C<$form_name>, one of the following names must be given. 'C' or 'NFC' for Normalization Form C (UAX #15) 'D' or 'NFD' for Normalization Form D (UAX #15) 'KC' or 'NFKC' for Normalization Form KC (UAX #15) 'KD' or 'NFKD' for Normalization Form KD (UAX #15) 'FCD' for "Fast C or D" Form (UTN #5) 'FCC' for "Fast C Contiguous" (UTN #5) =back =head2 Decomposition and Composition =over 4 =item C<$decomposed_string = decompose($string [, $useCompatMapping])> It returns the concatenation of the decomposition of each character in the string. If the second parameter (a boolean) is omitted or false, the decomposition is canonical decomposition; if the second parameter (a boolean) is true, the decomposition is compatibility decomposition. The string returned is not always in NFD/NFKD. Reordering may be required. $NFD_string = reorder(decompose($string)); # eq. to NFD() $NFKD_string = reorder(decompose($string, TRUE)); # eq. to NFKD() =item C<$reordered_string = reorder($string)> It returns the result of reordering the combining characters according to Canonical Ordering Behavior. For example, when you have a list of NFD/NFKD strings, you can get the concatenated NFD/NFKD string from them, by saying $concat_NFD = reorder(join '', @NFD_strings); $concat_NFKD = reorder(join '', @NFKD_strings); =item C<$composed_string = compose($string)> It returns the result of canonical composition without applying any decomposition. For example, when you have a NFD/NFKD string, you can get its NFC/NFKC string, by saying $NFC_string = compose($NFD_string); $NFKC_string = compose($NFKD_string); =item C<($processed, $unprocessed) = splitOnLastStarter($normalized)> It returns two strings: the first one, C<$processed>, is a part before the last starter, and the second one, C<$unprocessed> is another part after the first part. A starter is a character having a combining class of zero (see UAX #15). Note that C<$processed> may be empty (when C<$normalized> contains no starter or starts with the last starter), and then C<$unprocessed> should be equal to the entire C<$normalized>. When you have a C<$normalized> string and an C<$unnormalized> string following it, a simple concatenation is wrong: $concat = $normalized . normalize($form, $unnormalized); # wrong! Instead of it, do like this: ($processed, $unprocessed) = splitOnLastStarter($normalized); $concat = $processed . normalize($form, $unprocessed.$unnormalized); C<splitOnLastStarter()> should be called with a pre-normalized parameter C<$normalized>, that is in the same form as C<$form> you want. If you have an array of C<@string> that should be concatenated and then normalized, you can do like this: my $result = ""; my $unproc = ""; foreach my $str (@string) { $unproc .= $str; my $n = normalize($form, $unproc); my($p, $u) = splitOnLastStarter($n); $result .= $p; $unproc = $u; } $result .= $unproc; # instead of normalize($form, join('', @string)) =item C<$processed = normalize_partial($form, $unprocessed)> A wrapper for the combination of C<normalize()> and C<splitOnLastStarter()>. Note that C<$unprocessed> will be modified as a side-effect. If you have an array of C<@string> that should be concatenated and then normalized, you can do like this: my $result = ""; my $unproc = ""; foreach my $str (@string) { $unproc .= $str; $result .= normalize_partial($form, $unproc); } $result .= $unproc; # instead of normalize($form, join('', @string)) =item C<$processed = NFD_partial($unprocessed)> It does like C<normalize_partial('NFD', $unprocessed)>. Note that C<$unprocessed> will be modified as a side-effect. =item C<$processed = NFC_partial($unprocessed)> It does like C<normalize_partial('NFC', $unprocessed)>. Note that C<$unprocessed> will be modified as a side-effect. =item C<$processed = NFKD_partial($unprocessed)> It does like C<normalize_partial('NFKD', $unprocessed)>. Note that C<$unprocessed> will be modified as a side-effect. =item C<$processed = NFKC_partial($unprocessed)> It does like C<normalize_partial('NFKC', $unprocessed)>. Note that C<$unprocessed> will be modified as a side-effect. =back =head2 Quick Check (see Annex 8, UAX #15; and F<DerivedNormalizationProps.txt>) The following functions check whether the string is in that normalization form. The result returned will be one of the following: YES The string is in that normalization form. NO The string is not in that normalization form. MAYBE Dubious. Maybe yes, maybe no. =over 4 =item C<$result = checkNFD($string)> It returns true (C<1>) if C<YES>; false (C<empty string>) if C<NO>. =item C<$result = checkNFC($string)> It returns true (C<1>) if C<YES>; false (C<empty string>) if C<NO>; C<undef> if C<MAYBE>. =item C<$result = checkNFKD($string)> It returns true (C<1>) if C<YES>; false (C<empty string>) if C<NO>. =item C<$result = checkNFKC($string)> It returns true (C<1>) if C<YES>; false (C<empty string>) if C<NO>; C<undef> if C<MAYBE>. =item C<$result = checkFCD($string)> It returns true (C<1>) if C<YES>; false (C<empty string>) if C<NO>. =item C<$result = checkFCC($string)> It returns true (C<1>) if C<YES>; false (C<empty string>) if C<NO>; C<undef> if C<MAYBE>. Note: If a string is not in FCD, it must not be in FCC. So C<checkFCC($not_FCD_string)> should return C<NO>. =item C<$result = check($form_name, $string)> It returns true (C<1>) if C<YES>; false (C<empty string>) if C<NO>; C<undef> if C<MAYBE>. As C<$form_name>, one of the following names must be given. 'C' or 'NFC' for Normalization Form C (UAX #15) 'D' or 'NFD' for Normalization Form D (UAX #15) 'KC' or 'NFKC' for Normalization Form KC (UAX #15) 'KD' or 'NFKD' for Normalization Form KD (UAX #15) 'FCD' for "Fast C or D" Form (UTN #5) 'FCC' for "Fast C Contiguous" (UTN #5) =back B<Note> In the cases of NFD, NFKD, and FCD, the answer must be either C<YES> or C<NO>. The answer C<MAYBE> may be returned in the cases of NFC, NFKC, and FCC. A C<MAYBE> string should contain at least one combining character or the like. For example, C<COMBINING ACUTE ACCENT> has the MAYBE_NFC/MAYBE_NFKC property. Both C<checkNFC("A\N{COMBINING ACUTE ACCENT}")> and C<checkNFC("B\N{COMBINING ACUTE ACCENT}")> will return C<MAYBE>. C<"A\N{COMBINING ACUTE ACCENT}"> is not in NFC (its NFC is C<"\N{LATIN CAPITAL LETTER A WITH ACUTE}">), while C<"B\N{COMBINING ACUTE ACCENT}"> is in NFC. If you want to check exactly, compare the string with its NFC/NFKC/FCC. if ($string eq NFC($string)) { # $string is exactly normalized in NFC; } else { # $string is not normalized in NFC; } if ($string eq NFKC($string)) { # $string is exactly normalized in NFKC; } else { # $string is not normalized in NFKC; } =head2 Character Data These functions are interface of character data used internally. If you want only to get Unicode normalization forms, you don't need call them yourself. =over 4 =item C<$canonical_decomposition = getCanon($code_point)> If the character is canonically decomposable (including Hangul Syllables), it returns the (full) canonical decomposition as a string. Otherwise it returns C<undef>. B<Note:> According to the Unicode standard, the canonical decomposition of the character that is not canonically decomposable is same as the character itself. =item C<$compatibility_decomposition = getCompat($code_point)> If the character is compatibility decomposable (including Hangul Syllables), it returns the (full) compatibility decomposition as a string. Otherwise it returns C<undef>. B<Note:> According to the Unicode standard, the compatibility decomposition of the character that is not compatibility decomposable is same as the character itself. =item C<$code_point_composite = getComposite($code_point_here, $code_point_next)> If two characters here and next (as code points) are composable (including Hangul Jamo/Syllables and Composition Exclusions), it returns the code point of the composite. If they are not composable, it returns C<undef>. =item C<$combining_class = getCombinClass($code_point)> It returns the combining class (as an integer) of the character. =item C<$may_be_composed_with_prev_char = isComp2nd($code_point)> It returns a boolean whether the character of the specified codepoint may be composed with the previous one in a certain composition (including Hangul Compositions, but excluding Composition Exclusions and Non-Starter Decompositions). =item C<$is_exclusion = isExclusion($code_point)> It returns a boolean whether the code point is a composition exclusion. =item C<$is_singleton = isSingleton($code_point)> It returns a boolean whether the code point is a singleton =item C<$is_non_starter_decomposition = isNonStDecomp($code_point)> It returns a boolean whether the code point has Non-Starter Decomposition. =item C<$is_Full_Composition_Exclusion = isComp_Ex($code_point)> It returns a boolean of the derived property Comp_Ex (Full_Composition_Exclusion). This property is generated from Composition Exclusions + Singletons + Non-Starter Decompositions. =item C<$NFD_is_NO = isNFD_NO($code_point)> It returns a boolean of the derived property NFD_NO (NFD_Quick_Check=No). =item C<$NFC_is_NO = isNFC_NO($code_point)> It returns a boolean of the derived property NFC_NO (NFC_Quick_Check=No). =item C<$NFC_is_MAYBE = isNFC_MAYBE($code_point)> It returns a boolean of the derived property NFC_MAYBE (NFC_Quick_Check=Maybe). =item C<$NFKD_is_NO = isNFKD_NO($code_point)> It returns a boolean of the derived property NFKD_NO (NFKD_Quick_Check=No). =item C<$NFKC_is_NO = isNFKC_NO($code_point)> It returns a boolean of the derived property NFKC_NO (NFKC_Quick_Check=No). =item C<$NFKC_is_MAYBE = isNFKC_MAYBE($code_point)> It returns a boolean of the derived property NFKC_MAYBE (NFKC_Quick_Check=Maybe). =back =head1 EXPORT C<NFC>, C<NFD>, C<NFKC>, C<NFKD>: by default. C<normalize> and other some functions: on request. =head1 CAVEATS =over 4 =item Perl's version vs. Unicode version Since this module refers to perl core's Unicode database in the directory F</lib/unicore> (or formerly F</lib/unicode>), the Unicode version of normalization implemented by this module depends on what has been compiled into your perl. The following table lists the default Unicode version that comes with various perl versions. (It is possible to change the Unicode version in any perl version to be any earlier Unicode version, so one could cause Unicode 3.2 to be used in any perl version starting with 5.8.0. See C<$Config{privlib}>/F<unicore/README.perl>. perl's version implemented Unicode version 5.6.1 3.0.1 5.7.2 3.1.0 5.7.3 3.1.1 (normalization is same as 3.1.0) 5.8.0 3.2.0 5.8.1-5.8.3 4.0.0 5.8.4-5.8.6 4.0.1 (normalization is same as 4.0.0) 5.8.7-5.8.8 4.1.0 5.10.0 5.0.0 5.8.9, 5.10.1 5.1.0 5.12.x 5.2.0 5.14.x 6.0.0 5.16.x 6.1.0 5.18.x 6.2.0 5.20.x 6.3.0 5.22.x 7.0.0 =item Correction of decomposition mapping In older Unicode versions, a small number of characters (all of which are CJK compatibility ideographs as far as they have been found) may have an erroneous decomposition mapping (see F<NormalizationCorrections.txt>). Anyhow, this module will neither refer to F<NormalizationCorrections.txt> nor provide any specific version of normalization. Therefore this module running on an older perl with an older Unicode database may use the erroneous decomposition mapping blindly conforming to the Unicode database. =item Revised definition of canonical composition In Unicode 4.1.0, the definition D2 of canonical composition (which affects NFC and NFKC) has been changed (see Public Review Issue #29 and recent UAX #15). This module has used the newer definition since the version 0.07 (Oct 31, 2001). This module will not support the normalization according to the older definition, even if the Unicode version implemented by perl is lower than 4.1.0. =back =head1 AUTHOR SADAHIRO Tomoyuki <SADAHIRO@cpan.org> Currently maintained by <perl5-porters@perl.org> Copyright(C) 2001-2012, SADAHIRO Tomoyuki. Japan. All rights reserved. =head1 LICENSE This module is free software; you can redistribute it and/or modify it under the same terms as Perl itself. =head1 SEE ALSO =over 4 =item http://www.unicode.org/reports/tr15/ Unicode Normalization Forms - UAX #15 =item http://www.unicode.org/Public/UNIDATA/CompositionExclusions.txt Composition Exclusion Table =item http://www.unicode.org/Public/UNIDATA/DerivedNormalizationProps.txt Derived Normalization Properties =item http://www.unicode.org/Public/UNIDATA/NormalizationCorrections.txt Normalization Corrections =item http://www.unicode.org/review/pr-29.html Public Review Issue #29: Normalization Issue =item http://www.unicode.org/notes/tn5/ Canonical Equivalence in Applications - UTN #5 =back =cut