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/python2.7/Demo/tkinter/guido
Viewing File: /usr/lib64/python2.7/Demo/tkinter/guido/sortvisu.py
#! /usr/bin/python2.7 """Sorting algorithms visualizer using Tkinter. This module is comprised of three ``components'': - an array visualizer with methods that implement basic sorting operations (compare, swap) as well as methods for ``annotating'' the sorting algorithm (e.g. to show the pivot element); - a number of sorting algorithms (currently quicksort, insertion sort, selection sort and bubble sort, as well as a randomization function), all using the array visualizer for its basic operations and with calls to its annotation methods; - and a ``driver'' class which can be used as a Grail applet or as a stand-alone application. """ from Tkinter import * from Canvas import Line, Rectangle import random XGRID = 10 YGRID = 10 WIDTH = 6 class Array: def __init__(self, master, data=None): self.master = master self.frame = Frame(self.master) self.frame.pack(fill=X) self.label = Label(self.frame) self.label.pack() self.canvas = Canvas(self.frame) self.canvas.pack() self.report = Label(self.frame) self.report.pack() self.left = Line(self.canvas, 0, 0, 0, 0) self.right = Line(self.canvas, 0, 0, 0, 0) self.pivot = Line(self.canvas, 0, 0, 0, 0) self.items = [] self.size = self.maxvalue = 0 if data: self.setdata(data) def setdata(self, data): olditems = self.items self.items = [] for item in olditems: item.delete() self.size = len(data) self.maxvalue = max(data) self.canvas.config(width=(self.size+1)*XGRID, height=(self.maxvalue+1)*YGRID) for i in range(self.size): self.items.append(ArrayItem(self, i, data[i])) self.reset("Sort demo, size %d" % self.size) speed = "normal" def setspeed(self, speed): self.speed = speed def destroy(self): self.frame.destroy() in_mainloop = 0 stop_mainloop = 0 def cancel(self): self.stop_mainloop = 1 if self.in_mainloop: self.master.quit() def step(self): if self.in_mainloop: self.master.quit() Cancelled = "Array.Cancelled" # Exception def wait(self, msecs): if self.speed == "fastest": msecs = 0 elif self.speed == "fast": msecs = msecs//10 elif self.speed == "single-step": msecs = 1000000000 if not self.stop_mainloop: self.master.update() id = self.master.after(msecs, self.master.quit) self.in_mainloop = 1 self.master.mainloop() self.master.after_cancel(id) self.in_mainloop = 0 if self.stop_mainloop: self.stop_mainloop = 0 self.message("Cancelled") raise Array.Cancelled def getsize(self): return self.size def show_partition(self, first, last): for i in range(self.size): item = self.items[i] if first <= i < last: item.item.config(fill='red') else: item.item.config(fill='orange') self.hide_left_right_pivot() def hide_partition(self): for i in range(self.size): item = self.items[i] item.item.config(fill='red') self.hide_left_right_pivot() def show_left(self, left): if not 0 <= left < self.size: self.hide_left() return x1, y1, x2, y2 = self.items[left].position() ## top, bot = HIRO self.left.coords([(x1-2, 0), (x1-2, 9999)]) self.master.update() def show_right(self, right): if not 0 <= right < self.size: self.hide_right() return x1, y1, x2, y2 = self.items[right].position() self.right.coords(((x2+2, 0), (x2+2, 9999))) self.master.update() def hide_left_right_pivot(self): self.hide_left() self.hide_right() self.hide_pivot() def hide_left(self): self.left.coords(((0, 0), (0, 0))) def hide_right(self): self.right.coords(((0, 0), (0, 0))) def show_pivot(self, pivot): x1, y1, x2, y2 = self.items[pivot].position() self.pivot.coords(((0, y1-2), (9999, y1-2))) def hide_pivot(self): self.pivot.coords(((0, 0), (0, 0))) def swap(self, i, j): if i == j: return self.countswap() item = self.items[i] other = self.items[j] self.items[i], self.items[j] = other, item item.swapwith(other) def compare(self, i, j): self.countcompare() item = self.items[i] other = self.items[j] return item.compareto(other) def reset(self, msg): self.ncompares = 0 self.nswaps = 0 self.message(msg) self.updatereport() self.hide_partition() def message(self, msg): self.label.config(text=msg) def countswap(self): self.nswaps = self.nswaps + 1 self.updatereport() def countcompare(self): self.ncompares = self.ncompares + 1 self.updatereport() def updatereport(self): text = "%d cmps, %d swaps" % (self.ncompares, self.nswaps) self.report.config(text=text) class ArrayItem: def __init__(self, array, index, value): self.array = array self.index = index self.value = value x1, y1, x2, y2 = self.position() self.item = Rectangle(array.canvas, x1, y1, x2, y2, fill='red', outline='black', width=1) self.item.bind('<Button-1>', self.mouse_down) self.item.bind('<Button1-Motion>', self.mouse_move) self.item.bind('<ButtonRelease-1>', self.mouse_up) def delete(self): item = self.item self.array = None self.item = None item.delete() def mouse_down(self, event): self.lastx = event.x self.lasty = event.y self.origx = event.x self.origy = event.y self.item.tkraise() def mouse_move(self, event): self.item.move(event.x - self.lastx, event.y - self.lasty) self.lastx = event.x self.lasty = event.y def mouse_up(self, event): i = self.nearestindex(event.x) if i >= self.array.getsize(): i = self.array.getsize() - 1 if i < 0: i = 0 other = self.array.items[i] here = self.index self.array.items[here], self.array.items[i] = other, self self.index = i x1, y1, x2, y2 = self.position() self.item.coords(((x1, y1), (x2, y2))) other.setindex(here) def setindex(self, index): nsteps = steps(self.index, index) if not nsteps: return if self.array.speed == "fastest": nsteps = 0 oldpts = self.position() self.index = index newpts = self.position() trajectory = interpolate(oldpts, newpts, nsteps) self.item.tkraise() for pts in trajectory: self.item.coords((pts[:2], pts[2:])) self.array.wait(50) def swapwith(self, other): nsteps = steps(self.index, other.index) if not nsteps: return if self.array.speed == "fastest": nsteps = 0 myoldpts = self.position() otheroldpts = other.position() self.index, other.index = other.index, self.index mynewpts = self.position() othernewpts = other.position() myfill = self.item['fill'] otherfill = other.item['fill'] self.item.config(fill='green') other.item.config(fill='yellow') self.array.master.update() if self.array.speed == "single-step": self.item.coords((mynewpts[:2], mynewpts[2:])) other.item.coords((othernewpts[:2], othernewpts[2:])) self.array.master.update() self.item.config(fill=myfill) other.item.config(fill=otherfill) self.array.wait(0) return mytrajectory = interpolate(myoldpts, mynewpts, nsteps) othertrajectory = interpolate(otheroldpts, othernewpts, nsteps) if self.value > other.value: self.item.tkraise() other.item.tkraise() else: other.item.tkraise() self.item.tkraise() try: for i in range(len(mytrajectory)): mypts = mytrajectory[i] otherpts = othertrajectory[i] self.item.coords((mypts[:2], mypts[2:])) other.item.coords((otherpts[:2], otherpts[2:])) self.array.wait(50) finally: mypts = mytrajectory[-1] otherpts = othertrajectory[-1] self.item.coords((mypts[:2], mypts[2:])) other.item.coords((otherpts[:2], otherpts[2:])) self.item.config(fill=myfill) other.item.config(fill=otherfill) def compareto(self, other): myfill = self.item['fill'] otherfill = other.item['fill'] outcome = cmp(self.value, other.value) if outcome < 0: myflash = 'white' otherflash = 'black' elif outcome > 0: myflash = 'black' otherflash = 'white' else: myflash = otherflash = 'grey' try: self.item.config(fill=myflash) other.item.config(fill=otherflash) self.array.wait(500) finally: self.item.config(fill=myfill) other.item.config(fill=otherfill) return outcome def position(self): x1 = (self.index+1)*XGRID - WIDTH//2 x2 = x1+WIDTH y2 = (self.array.maxvalue+1)*YGRID y1 = y2 - (self.value)*YGRID return x1, y1, x2, y2 def nearestindex(self, x): return int(round(float(x)/XGRID)) - 1 # Subroutines that don't need an object def steps(here, there): nsteps = abs(here - there) if nsteps <= 3: nsteps = nsteps * 3 elif nsteps <= 5: nsteps = nsteps * 2 elif nsteps > 10: nsteps = 10 return nsteps def interpolate(oldpts, newpts, n): if len(oldpts) != len(newpts): raise ValueError, "can't interpolate arrays of different length" pts = [0]*len(oldpts) res = [tuple(oldpts)] for i in range(1, n): for k in range(len(pts)): pts[k] = oldpts[k] + (newpts[k] - oldpts[k])*i//n res.append(tuple(pts)) res.append(tuple(newpts)) return res # Various (un)sorting algorithms def uniform(array): size = array.getsize() array.setdata([(size+1)//2] * size) array.reset("Uniform data, size %d" % size) def distinct(array): size = array.getsize() array.setdata(range(1, size+1)) array.reset("Distinct data, size %d" % size) def randomize(array): array.reset("Randomizing") n = array.getsize() for i in range(n): j = random.randint(0, n-1) array.swap(i, j) array.message("Randomized") def insertionsort(array): size = array.getsize() array.reset("Insertion sort") for i in range(1, size): j = i-1 while j >= 0: if array.compare(j, j+1) <= 0: break array.swap(j, j+1) j = j-1 array.message("Sorted") def selectionsort(array): size = array.getsize() array.reset("Selection sort") try: for i in range(size): array.show_partition(i, size) for j in range(i+1, size): if array.compare(i, j) > 0: array.swap(i, j) array.message("Sorted") finally: array.hide_partition() def bubblesort(array): size = array.getsize() array.reset("Bubble sort") for i in range(size): for j in range(1, size): if array.compare(j-1, j) > 0: array.swap(j-1, j) array.message("Sorted") def quicksort(array): size = array.getsize() array.reset("Quicksort") try: stack = [(0, size)] while stack: first, last = stack[-1] del stack[-1] array.show_partition(first, last) if last-first < 5: array.message("Insertion sort") for i in range(first+1, last): j = i-1 while j >= first: if array.compare(j, j+1) <= 0: break array.swap(j, j+1) j = j-1 continue array.message("Choosing pivot") j, i, k = first, (first+last)//2, last-1 if array.compare(k, i) < 0: array.swap(k, i) if array.compare(k, j) < 0: array.swap(k, j) if array.compare(j, i) < 0: array.swap(j, i) pivot = j array.show_pivot(pivot) array.message("Pivot at left of partition") array.wait(1000) left = first right = last while 1: array.message("Sweep right pointer") right = right-1 array.show_right(right) while right > first and array.compare(right, pivot) >= 0: right = right-1 array.show_right(right) array.message("Sweep left pointer") left = left+1 array.show_left(left) while left < last and array.compare(left, pivot) <= 0: left = left+1 array.show_left(left) if left > right: array.message("End of partition") break array.message("Swap items") array.swap(left, right) array.message("Swap pivot back") array.swap(pivot, right) n1 = right-first n2 = last-left if n1 > 1: stack.append((first, right)) if n2 > 1: stack.append((left, last)) array.message("Sorted") finally: array.hide_partition() def demosort(array): while 1: for alg in [quicksort, insertionsort, selectionsort, bubblesort]: randomize(array) alg(array) # Sort demo class -- usable as a Grail applet class SortDemo: def __init__(self, master, size=15): self.master = master self.size = size self.busy = 0 self.array = Array(self.master) self.botframe = Frame(master) self.botframe.pack(side=BOTTOM) self.botleftframe = Frame(self.botframe) self.botleftframe.pack(side=LEFT, fill=Y) self.botrightframe = Frame(self.botframe) self.botrightframe.pack(side=RIGHT, fill=Y) self.b_qsort = Button(self.botleftframe, text="Quicksort", command=self.c_qsort) self.b_qsort.pack(fill=X) self.b_isort = Button(self.botleftframe, text="Insertion sort", command=self.c_isort) self.b_isort.pack(fill=X) self.b_ssort = Button(self.botleftframe, text="Selection sort", command=self.c_ssort) self.b_ssort.pack(fill=X) self.b_bsort = Button(self.botleftframe, text="Bubble sort", command=self.c_bsort) self.b_bsort.pack(fill=X) # Terrible hack to overcome limitation of OptionMenu... class MyIntVar(IntVar): def __init__(self, master, demo): self.demo = demo IntVar.__init__(self, master) def set(self, value): IntVar.set(self, value) if str(value) != '0': self.demo.resize(value) self.v_size = MyIntVar(self.master, self) self.v_size.set(size) sizes = [1, 2, 3, 4] + range(5, 55, 5) if self.size not in sizes: sizes.append(self.size) sizes.sort() self.m_size = apply(OptionMenu, (self.botleftframe, self.v_size) + tuple(sizes)) self.m_size.pack(fill=X) self.v_speed = StringVar(self.master) self.v_speed.set("normal") self.m_speed = OptionMenu(self.botleftframe, self.v_speed, "single-step", "normal", "fast", "fastest") self.m_speed.pack(fill=X) self.b_step = Button(self.botleftframe, text="Step", command=self.c_step) self.b_step.pack(fill=X) self.b_randomize = Button(self.botrightframe, text="Randomize", command=self.c_randomize) self.b_randomize.pack(fill=X) self.b_uniform = Button(self.botrightframe, text="Uniform", command=self.c_uniform) self.b_uniform.pack(fill=X) self.b_distinct = Button(self.botrightframe, text="Distinct", command=self.c_distinct) self.b_distinct.pack(fill=X) self.b_demo = Button(self.botrightframe, text="Demo", command=self.c_demo) self.b_demo.pack(fill=X) self.b_cancel = Button(self.botrightframe, text="Cancel", command=self.c_cancel) self.b_cancel.pack(fill=X) self.b_cancel.config(state=DISABLED) self.b_quit = Button(self.botrightframe, text="Quit", command=self.c_quit) self.b_quit.pack(fill=X) def resize(self, newsize): if self.busy: self.master.bell() return self.size = newsize self.array.setdata(range(1, self.size+1)) def c_qsort(self): self.run(quicksort) def c_isort(self): self.run(insertionsort) def c_ssort(self): self.run(selectionsort) def c_bsort(self): self.run(bubblesort) def c_demo(self): self.run(demosort) def c_randomize(self): self.run(randomize) def c_uniform(self): self.run(uniform) def c_distinct(self): self.run(distinct) def run(self, func): if self.busy: self.master.bell() return self.busy = 1 self.array.setspeed(self.v_speed.get()) self.b_cancel.config(state=NORMAL) try: func(self.array) except Array.Cancelled: pass self.b_cancel.config(state=DISABLED) self.busy = 0 def c_cancel(self): if not self.busy: self.master.bell() return self.array.cancel() def c_step(self): if not self.busy: self.master.bell() return self.v_speed.set("single-step") self.array.setspeed("single-step") self.array.step() def c_quit(self): if self.busy: self.array.cancel() self.master.after_idle(self.master.quit) # Main program -- for stand-alone operation outside Grail def main(): root = Tk() demo = SortDemo(root) root.protocol('WM_DELETE_WINDOW', demo.c_quit) root.mainloop() if __name__ == '__main__': main()