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/share/doc/python3-docs/html/_sources/library
Viewing File: /usr/share/doc/python3-docs/html/_sources/library/operator.rst.txt
:mod:`operator` --- Standard operators as functions =================================================== .. module:: operator :synopsis: Functions corresponding to the standard operators. .. sectionauthor:: Skip Montanaro <skip@automatrix.com> **Source code:** :source:`Lib/operator.py` .. testsetup:: import operator from operator import itemgetter, iadd -------------- The :mod:`operator` module exports a set of efficient functions corresponding to the intrinsic operators of Python. For example, ``operator.add(x, y)`` is equivalent to the expression ``x+y``. Many function names are those used for special methods, without the double underscores. For backward compatibility, many of these have a variant with the double underscores kept. The variants without the double underscores are preferred for clarity. The functions fall into categories that perform object comparisons, logical operations, mathematical operations and sequence operations. The object comparison functions are useful for all objects, and are named after the rich comparison operators they support: .. function:: lt(a, b) le(a, b) eq(a, b) ne(a, b) ge(a, b) gt(a, b) __lt__(a, b) __le__(a, b) __eq__(a, b) __ne__(a, b) __ge__(a, b) __gt__(a, b) Perform "rich comparisons" between *a* and *b*. Specifically, ``lt(a, b)`` is equivalent to ``a < b``, ``le(a, b)`` is equivalent to ``a <= b``, ``eq(a, b)`` is equivalent to ``a == b``, ``ne(a, b)`` is equivalent to ``a != b``, ``gt(a, b)`` is equivalent to ``a > b`` and ``ge(a, b)`` is equivalent to ``a >= b``. Note that these functions can return any value, which may or may not be interpretable as a Boolean value. See :ref:`comparisons` for more information about rich comparisons. The logical operations are also generally applicable to all objects, and support truth tests, identity tests, and boolean operations: .. function:: not_(obj) __not__(obj) Return the outcome of :keyword:`not` *obj*. (Note that there is no :meth:`__not__` method for object instances; only the interpreter core defines this operation. The result is affected by the :meth:`__bool__` and :meth:`__len__` methods.) .. function:: truth(obj) Return :const:`True` if *obj* is true, and :const:`False` otherwise. This is equivalent to using the :class:`bool` constructor. .. function:: is_(a, b) Return ``a is b``. Tests object identity. .. function:: is_not(a, b) Return ``a is not b``. Tests object identity. The mathematical and bitwise operations are the most numerous: .. function:: abs(obj) __abs__(obj) Return the absolute value of *obj*. .. function:: add(a, b) __add__(a, b) Return ``a + b``, for *a* and *b* numbers. .. function:: and_(a, b) __and__(a, b) Return the bitwise and of *a* and *b*. .. function:: floordiv(a, b) __floordiv__(a, b) Return ``a // b``. .. function:: index(a) __index__(a) Return *a* converted to an integer. Equivalent to ``a.__index__()``. .. function:: inv(obj) invert(obj) __inv__(obj) __invert__(obj) Return the bitwise inverse of the number *obj*. This is equivalent to ``~obj``. .. function:: lshift(a, b) __lshift__(a, b) Return *a* shifted left by *b*. .. function:: mod(a, b) __mod__(a, b) Return ``a % b``. .. function:: mul(a, b) __mul__(a, b) Return ``a * b``, for *a* and *b* numbers. .. function:: matmul(a, b) __matmul__(a, b) Return ``a @ b``. .. versionadded:: 3.5 .. function:: neg(obj) __neg__(obj) Return *obj* negated (``-obj``). .. function:: or_(a, b) __or__(a, b) Return the bitwise or of *a* and *b*. .. function:: pos(obj) __pos__(obj) Return *obj* positive (``+obj``). .. function:: pow(a, b) __pow__(a, b) Return ``a ** b``, for *a* and *b* numbers. .. function:: rshift(a, b) __rshift__(a, b) Return *a* shifted right by *b*. .. function:: sub(a, b) __sub__(a, b) Return ``a - b``. .. function:: truediv(a, b) __truediv__(a, b) Return ``a / b`` where 2/3 is .66 rather than 0. This is also known as "true" division. .. function:: xor(a, b) __xor__(a, b) Return the bitwise exclusive or of *a* and *b*. Operations which work with sequences (some of them with mappings too) include: .. function:: concat(a, b) __concat__(a, b) Return ``a + b`` for *a* and *b* sequences. .. function:: contains(a, b) __contains__(a, b) Return the outcome of the test ``b in a``. Note the reversed operands. .. function:: countOf(a, b) Return the number of occurrences of *b* in *a*. .. function:: delitem(a, b) __delitem__(a, b) Remove the value of *a* at index *b*. .. function:: getitem(a, b) __getitem__(a, b) Return the value of *a* at index *b*. .. function:: indexOf(a, b) Return the index of the first of occurrence of *b* in *a*. .. function:: setitem(a, b, c) __setitem__(a, b, c) Set the value of *a* at index *b* to *c*. .. function:: length_hint(obj, default=0) Return an estimated length for the object *o*. First try to return its actual length, then an estimate using :meth:`object.__length_hint__`, and finally return the default value. .. versionadded:: 3.4 The :mod:`operator` module also defines tools for generalized attribute and item lookups. These are useful for making fast field extractors as arguments for :func:`map`, :func:`sorted`, :meth:`itertools.groupby`, or other functions that expect a function argument. .. function:: attrgetter(attr) attrgetter(*attrs) Return a callable object that fetches *attr* from its operand. If more than one attribute is requested, returns a tuple of attributes. The attribute names can also contain dots. For example: * After ``f = attrgetter('name')``, the call ``f(b)`` returns ``b.name``. * After ``f = attrgetter('name', 'date')``, the call ``f(b)`` returns ``(b.name, b.date)``. * After ``f = attrgetter('name.first', 'name.last')``, the call ``f(b)`` returns ``(b.name.first, b.name.last)``. Equivalent to:: def attrgetter(*items): if any(not isinstance(item, str) for item in items): raise TypeError('attribute name must be a string') if len(items) == 1: attr = items[0] def g(obj): return resolve_attr(obj, attr) else: def g(obj): return tuple(resolve_attr(obj, attr) for attr in items) return g def resolve_attr(obj, attr): for name in attr.split("."): obj = getattr(obj, name) return obj .. function:: itemgetter(item) itemgetter(*items) Return a callable object that fetches *item* from its operand using the operand's :meth:`__getitem__` method. If multiple items are specified, returns a tuple of lookup values. For example: * After ``f = itemgetter(2)``, the call ``f(r)`` returns ``r[2]``. * After ``g = itemgetter(2, 5, 3)``, the call ``g(r)`` returns ``(r[2], r[5], r[3])``. Equivalent to:: def itemgetter(*items): if len(items) == 1: item = items[0] def g(obj): return obj[item] else: def g(obj): return tuple(obj[item] for item in items) return g The items can be any type accepted by the operand's :meth:`__getitem__` method. Dictionaries accept any hashable value. Lists, tuples, and strings accept an index or a slice: >>> itemgetter(1)('ABCDEFG') 'B' >>> itemgetter(1,3,5)('ABCDEFG') ('B', 'D', 'F') >>> itemgetter(slice(2,None))('ABCDEFG') 'CDEFG' Example of using :func:`itemgetter` to retrieve specific fields from a tuple record: >>> inventory = [('apple', 3), ('banana', 2), ('pear', 5), ('orange', 1)] >>> getcount = itemgetter(1) >>> list(map(getcount, inventory)) [3, 2, 5, 1] >>> sorted(inventory, key=getcount) [('orange', 1), ('banana', 2), ('apple', 3), ('pear', 5)] .. function:: methodcaller(name[, args...]) Return a callable object that calls the method *name* on its operand. If additional arguments and/or keyword arguments are given, they will be given to the method as well. For example: * After ``f = methodcaller('name')``, the call ``f(b)`` returns ``b.name()``. * After ``f = methodcaller('name', 'foo', bar=1)``, the call ``f(b)`` returns ``b.name('foo', bar=1)``. Equivalent to:: def methodcaller(name, *args, **kwargs): def caller(obj): return getattr(obj, name)(*args, **kwargs) return caller .. _operator-map: Mapping Operators to Functions ------------------------------ This table shows how abstract operations correspond to operator symbols in the Python syntax and the functions in the :mod:`operator` module. +-----------------------+-------------------------+---------------------------------------+ | Operation | Syntax | Function | +=======================+=========================+=======================================+ | Addition | ``a + b`` | ``add(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Concatenation | ``seq1 + seq2`` | ``concat(seq1, seq2)`` | +-----------------------+-------------------------+---------------------------------------+ | Containment Test | ``obj in seq`` | ``contains(seq, obj)`` | +-----------------------+-------------------------+---------------------------------------+ | Division | ``a / b`` | ``truediv(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Division | ``a // b`` | ``floordiv(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Bitwise And | ``a & b`` | ``and_(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Bitwise Exclusive Or | ``a ^ b`` | ``xor(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Bitwise Inversion | ``~ a`` | ``invert(a)`` | +-----------------------+-------------------------+---------------------------------------+ | Bitwise Or | ``a | b`` | ``or_(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Exponentiation | ``a ** b`` | ``pow(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Identity | ``a is b`` | ``is_(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Identity | ``a is not b`` | ``is_not(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Indexed Assignment | ``obj[k] = v`` | ``setitem(obj, k, v)`` | +-----------------------+-------------------------+---------------------------------------+ | Indexed Deletion | ``del obj[k]`` | ``delitem(obj, k)`` | +-----------------------+-------------------------+---------------------------------------+ | Indexing | ``obj[k]`` | ``getitem(obj, k)`` | +-----------------------+-------------------------+---------------------------------------+ | Left Shift | ``a << b`` | ``lshift(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Modulo | ``a % b`` | ``mod(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Multiplication | ``a * b`` | ``mul(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Matrix Multiplication | ``a @ b`` | ``matmul(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Negation (Arithmetic) | ``- a`` | ``neg(a)`` | +-----------------------+-------------------------+---------------------------------------+ | Negation (Logical) | ``not a`` | ``not_(a)`` | +-----------------------+-------------------------+---------------------------------------+ | Positive | ``+ a`` | ``pos(a)`` | +-----------------------+-------------------------+---------------------------------------+ | Right Shift | ``a >> b`` | ``rshift(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Slice Assignment | ``seq[i:j] = values`` | ``setitem(seq, slice(i, j), values)`` | +-----------------------+-------------------------+---------------------------------------+ | Slice Deletion | ``del seq[i:j]`` | ``delitem(seq, slice(i, j))`` | +-----------------------+-------------------------+---------------------------------------+ | Slicing | ``seq[i:j]`` | ``getitem(seq, slice(i, j))`` | +-----------------------+-------------------------+---------------------------------------+ | String Formatting | ``s % obj`` | ``mod(s, obj)`` | +-----------------------+-------------------------+---------------------------------------+ | Subtraction | ``a - b`` | ``sub(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Truth Test | ``obj`` | ``truth(obj)`` | +-----------------------+-------------------------+---------------------------------------+ | Ordering | ``a < b`` | ``lt(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Ordering | ``a <= b`` | ``le(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Equality | ``a == b`` | ``eq(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Difference | ``a != b`` | ``ne(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Ordering | ``a >= b`` | ``ge(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ | Ordering | ``a > b`` | ``gt(a, b)`` | +-----------------------+-------------------------+---------------------------------------+ Inplace Operators ----------------- Many operations have an "in-place" version. Listed below are functions providing a more primitive access to in-place operators than the usual syntax does; for example, the :term:`statement` ``x += y`` is equivalent to ``x = operator.iadd(x, y)``. Another way to put it is to say that ``z = operator.iadd(x, y)`` is equivalent to the compound statement ``z = x; z += y``. In those examples, note that when an in-place method is called, the computation and assignment are performed in two separate steps. The in-place functions listed below only do the first step, calling the in-place method. The second step, assignment, is not handled. For immutable targets such as strings, numbers, and tuples, the updated value is computed, but not assigned back to the input variable: >>> a = 'hello' >>> iadd(a, ' world') 'hello world' >>> a 'hello' For mutable targets such as lists and dictionaries, the inplace method will perform the update, so no subsequent assignment is necessary: >>> s = ['h', 'e', 'l', 'l', 'o'] >>> iadd(s, [' ', 'w', 'o', 'r', 'l', 'd']) ['h', 'e', 'l', 'l', 'o', ' ', 'w', 'o', 'r', 'l', 'd'] >>> s ['h', 'e', 'l', 'l', 'o', ' ', 'w', 'o', 'r', 'l', 'd'] .. function:: iadd(a, b) __iadd__(a, b) ``a = iadd(a, b)`` is equivalent to ``a += b``. .. function:: iand(a, b) __iand__(a, b) ``a = iand(a, b)`` is equivalent to ``a &= b``. .. function:: iconcat(a, b) __iconcat__(a, b) ``a = iconcat(a, b)`` is equivalent to ``a += b`` for *a* and *b* sequences. .. function:: ifloordiv(a, b) __ifloordiv__(a, b) ``a = ifloordiv(a, b)`` is equivalent to ``a //= b``. .. function:: ilshift(a, b) __ilshift__(a, b) ``a = ilshift(a, b)`` is equivalent to ``a <<= b``. .. function:: imod(a, b) __imod__(a, b) ``a = imod(a, b)`` is equivalent to ``a %= b``. .. function:: imul(a, b) __imul__(a, b) ``a = imul(a, b)`` is equivalent to ``a *= b``. .. function:: imatmul(a, b) __imatmul__(a, b) ``a = imatmul(a, b)`` is equivalent to ``a @= b``. .. versionadded:: 3.5 .. function:: ior(a, b) __ior__(a, b) ``a = ior(a, b)`` is equivalent to ``a |= b``. .. function:: ipow(a, b) __ipow__(a, b) ``a = ipow(a, b)`` is equivalent to ``a **= b``. .. function:: irshift(a, b) __irshift__(a, b) ``a = irshift(a, b)`` is equivalent to ``a >>= b``. .. function:: isub(a, b) __isub__(a, b) ``a = isub(a, b)`` is equivalent to ``a -= b``. .. function:: itruediv(a, b) __itruediv__(a, b) ``a = itruediv(a, b)`` is equivalent to ``a /= b``. .. function:: ixor(a, b) __ixor__(a, b) ``a = ixor(a, b)`` is equivalent to ``a ^= b``.