PNG  IHDRQgAMA a cHRMz&u0`:pQ<bKGDgmIDATxwUﹻ& ^CX(J I@ "% (** BX +*i"]j(IH{~R)[~>h{}gy)I$Ij .I$I$ʊy@}x.: $I$Ii}VZPC)I$IF ^0ʐJ$I$Q^}{"r=OzI$gRZeC.IOvH eKX $IMpxsk.쒷/&r[޳<v| .I~)@$updYRa$I |M.e JaֶpSYR6j>h%IRز if&uJ)M$I vLi=H;7UJ,],X$I1AҒJ$ XY XzI@GNҥRT)E@;]K*Mw;#5_wOn~\ DC&$(A5 RRFkvIR}l!RytRl;~^ǷJj اy뷦BZJr&ӥ8Pjw~vnv X^(I;4R=P[3]J,]ȏ~:3?[ a&e)`e*P[4]T=Cq6R[ ~ޤrXR Հg(t_HZ-Hg M$ãmL5R uk*`%C-E6/%[t X.{8P9Z.vkXŐKjgKZHg(aK9ڦmKjѺm_ \#$5,)-  61eJ,5m| r'= &ڡd%-]J on Xm|{ RҞe $eڧY XYrԮ-a7RK6h>n$5AVڴi*ֆK)mѦtmr1p| q:흺,)Oi*ֺK)ܬ֦K-5r3>0ԔHjJئEZj,%re~/z%jVMڸmrt)3]J,T K֦OvԒgii*bKiNO~%PW0=dii2tJ9Jݕ{7"I P9JKTbu,%r"6RKU}Ij2HKZXJ,妝 XYrP ެ24c%i^IK|.H,%rb:XRl1X4Pe/`x&P8Pj28Mzsx2r\zRPz4J}yP[g=L) .Q[6RjWgp FIH*-`IMRaK9TXcq*I y[jE>cw%gLRԕiFCj-ďa`#e~I j,%r,)?[gp FI˨mnWX#>mʔ XA DZf9,nKҲzIZXJ,L#kiPz4JZF,I,`61%2s $,VOϚ2/UFJfy7K> X+6 STXIeJILzMfKm LRaK9%|4p9LwJI!`NsiazĔ)%- XMq>pk$-$Q2x#N ؎-QR}ᶦHZډ)J,l#i@yn3LN`;nڔ XuX5pF)m|^0(>BHF9(cզEerJI rg7 4I@z0\JIi䵙RR0s;$s6eJ,`n 䂦0a)S)A 1eJ,堌#635RIgpNHuTH_SԕqVe ` &S)>p;S$魁eKIuX`I4춒o}`m$1":PI<[v9^\pTJjriRŭ P{#{R2,`)e-`mgj~1ϣLKam7&U\j/3mJ,`F;M'䱀 .KR#)yhTq;pcK9(q!w?uRR,n.yw*UXj#\]ɱ(qv2=RqfB#iJmmL<]Y͙#$5 uTU7ӦXR+q,`I}qL'`6Kͷ6r,]0S$- [RKR3oiRE|nӦXR.(i:LDLTJjY%o:)6rxzҒqTJjh㞦I.$YR.ʼnGZ\ֿf:%55 I˼!6dKxm4E"mG_ s? .e*?LRfK9%q#uh$)i3ULRfK9yxm܌bj84$i1U^@Wbm4uJ,ҪA>_Ij?1v32[gLRD96oTaR׿N7%L2 NT,`)7&ƝL*꽙yp_$M2#AS,`)7$rkTA29_Iye"|/0t)$n XT2`YJ;6Jx".e<`$) PI$5V4]29SRI>~=@j]lp2`K9Jaai^" Ԋ29ORI%:XV5]JmN9]H;1UC39NI%Xe78t)a;Oi Ҙ>Xt"~G>_mn:%|~ޅ_+]$o)@ǀ{hgN;IK6G&rp)T2i୦KJuv*T=TOSV>(~D>dm,I*Ɛ:R#ۙNI%D>G.n$o;+#RR!.eU˽TRI28t)1LWϚ>IJa3oFbu&:tJ*(F7y0ZR ^p'Ii L24x| XRI%ۄ>S1]Jy[zL$adB7.eh4%%누>WETf+3IR:I3Xה)3אOۦSRO'ٺ)S}"qOr[B7ϙ.edG)^ETR"RtRݜh0}LFVӦDB^k_JDj\=LS(Iv─aTeZ%eUAM-0;~˃@i|l @S4y72>sX-vA}ϛBI!ݎߨWl*)3{'Y|iSlEڻ(5KtSI$Uv02,~ԩ~x;P4ցCrO%tyn425:KMlD ^4JRxSهF_}شJTS6uj+ﷸk$eZO%G*^V2u3EMj3k%)okI]dT)URKDS 7~m@TJR~荪fT"֛L \sM -0T KfJz+nإKr L&j()[E&I ߴ>e FW_kJR|!O:5/2跌3T-'|zX ryp0JS ~^F>-2< `*%ZFP)bSn"L :)+pʷf(pO3TMW$~>@~ū:TAIsV1}S2<%ޟM?@iT ,Eūoz%i~g|`wS(]oȤ8)$ ntu`өe`6yPl IzMI{ʣzʨ )IZ2= ld:5+請M$-ї;U>_gsY$ÁN5WzWfIZ)-yuXIfp~S*IZdt;t>KūKR|$#LcԀ+2\;kJ`]YǔM1B)UbG"IRߊ<xܾӔJ0Z='Y嵤 Leveg)$znV-º^3Ւof#0Tfk^Zs[*I꯳3{)ˬW4Ւ4 OdpbZRS|*I 55#"&-IvT&/윚Ye:i$ 9{LkuRe[I~_\ؠ%>GL$iY8 9ܕ"S`kS.IlC;Ҏ4x&>u_0JLr<J2(^$5L s=MgV ~,Iju> 7r2)^=G$1:3G< `J3~&IR% 6Tx/rIj3O< ʔ&#f_yXJiގNSz; Tx(i8%#4 ~AS+IjerIUrIj362v885+IjAhK__5X%nV%Iͳ-y|7XV2v4fzo_68"S/I-qbf; LkF)KSM$ Ms>K WNV}^`-큧32ŒVؙGdu,^^m%6~Nn&͓3ŒVZMsRpfEW%IwdǀLm[7W&bIRL@Q|)* i ImsIMmKmyV`i$G+R 0tV'!V)֏28vU7͒vHꦼtxꗞT ;S}7Mf+fIRHNZUkUx5SAJㄌ9MqμAIRi|j5)o*^'<$TwI1hEU^c_j?Е$%d`z cyf,XO IJnTgA UXRD }{H}^S,P5V2\Xx`pZ|Yk:$e ~ @nWL.j+ϝYb퇪bZ BVu)u/IJ_ 1[p.p60bC >|X91P:N\!5qUB}5a5ja `ubcVxYt1N0Zzl4]7­gKj]?4ϻ *[bg$)+À*x쳀ogO$~,5 زUS9 lq3+5mgw@np1sso Ӻ=|N6 /g(Wv7U;zωM=wk,0uTg_`_P`uz?2yI!b`kĸSo+Qx%!\οe|އԁKS-s6pu_(ֿ$i++T8=eY; צP+phxWQv*|p1. ά. XRkIQYP,drZ | B%wP|S5`~́@i޾ E;Չaw{o'Q?%iL{u D?N1BD!owPHReFZ* k_-~{E9b-~P`fE{AܶBJAFO wx6Rox5 K5=WwehS8 (JClJ~ p+Fi;ŗo+:bD#g(C"wA^ r.F8L;dzdIHUX݆ϞXg )IFqem%I4dj&ppT{'{HOx( Rk6^C٫O.)3:s(۳(Z?~ٻ89zmT"PLtw䥈5&b<8GZ-Y&K?e8,`I6e(֍xb83 `rzXj)F=l($Ij 2*(F?h(/9ik:I`m#p3MgLaKjc/U#n5S# m(^)=y=đx8ŬI[U]~SцA4p$-F i(R,7Cx;X=cI>{Km\ o(Tv2vx2qiiDJN,Ҏ!1f 5quBj1!8 rDFd(!WQl,gSkL1Bxg''՞^ǘ;pQ P(c_ IRujg(Wz bs#P­rz> k c&nB=q+ؔXn#r5)co*Ũ+G?7< |PQӣ'G`uOd>%Mctz# Ԫڞ&7CaQ~N'-P.W`Oedp03C!IZcIAMPUۀ5J<\u~+{9(FbbyAeBhOSܳ1 bÈT#ŠyDžs,`5}DC-`̞%r&ڙa87QWWp6e7 Rϫ/oY ꇅ Nܶըtc!LA T7V4Jsū I-0Pxz7QNF_iZgúWkG83 0eWr9 X]㾮݁#Jˢ C}0=3ݱtBi]_ &{{[/o[~ \q鯜00٩|cD3=4B_b RYb$óBRsf&lLX#M*C_L܄:gx)WΘsGSbuL rF$9';\4Ɍq'n[%p.Q`u hNb`eCQyQ|l_C>Lb꟟3hSb #xNxSs^ 88|Mz)}:](vbۢamŖ࿥ 0)Q7@0=?^k(*J}3ibkFn HjB׻NO z x}7p 0tfDX.lwgȔhԾŲ }6g E |LkLZteu+=q\Iv0쮑)QٵpH8/2?Σo>Jvppho~f>%bMM}\//":PTc(v9v!gոQ )UfVG+! 35{=x\2+ki,y$~A1iC6#)vC5^>+gǵ@1Hy٪7u;p psϰu/S <aʸGu'tD1ԝI<pg|6j'p:tպhX{o(7v],*}6a_ wXRk,O]Lܳ~Vo45rp"N5k;m{rZbΦ${#)`(Ŵg,;j%6j.pyYT?}-kBDc3qA`NWQū20/^AZW%NQ MI.X#P#,^Ebc&?XR tAV|Y.1!؅⨉ccww>ivl(JT~ u`ٵDm q)+Ri x/x8cyFO!/*!/&,7<.N,YDŽ&ܑQF1Bz)FPʛ?5d 6`kQձ λc؎%582Y&nD_$Je4>a?! ͨ|ȎWZSsv8 j(I&yj Jb5m?HWp=g}G3#|I,5v珿] H~R3@B[☉9Ox~oMy=J;xUVoj bUsl_35t-(ՃɼRB7U!qc+x4H_Qo֮$[GO<4`&č\GOc[.[*Af%mG/ ňM/r W/Nw~B1U3J?P&Y )`ѓZ1p]^l“W#)lWZilUQu`-m|xĐ,_ƪ|9i:_{*(3Gѧ}UoD+>m_?VPۅ15&}2|/pIOʵ> GZ9cmíتmnz)yߐbD >e}:) r|@R5qVSA10C%E_'^8cR7O;6[eKePGϦX7jb}OTGO^jn*媓7nGMC t,k31Rb (vyܴʭ!iTh8~ZYZp(qsRL ?b}cŨʊGO^!rPJO15MJ[c&~Z`"ѓޔH1C&^|Ш|rʼ,AwĴ?b5)tLU)F| &g٣O]oqSUjy(x<Ϳ3 .FSkoYg2 \_#wj{u'rQ>o;%n|F*O_L"e9umDds?.fuuQbIWz |4\0 sb;OvxOSs; G%T4gFRurj(֍ڑb uԖKDu1MK{1^ q; C=6\8FR艇!%\YÔU| 88m)֓NcLve C6z;o&X x59:q61Z(T7>C?gcļxѐ Z oo-08jہ x,`' ҔOcRlf~`jj".Nv+sM_]Zk g( UOPyεx%pUh2(@il0ݽQXxppx-NS( WO+轾 nFߢ3M<;z)FBZjciu/QoF 7R¥ ZFLF~#ȣߨ^<쩡ݛкvџ))ME>ώx4m#!-m!L;vv#~Y[đKmx9.[,UFS CVkZ +ߟrY٧IZd/ioi$%͝ب_ֶX3ܫhNU ZZgk=]=bbJS[wjU()*I =ώ:}-蹞lUj:1}MWm=̛ _ ¾,8{__m{_PVK^n3esw5ӫh#$-q=A̟> ,^I}P^J$qY~Q[ Xq9{#&T.^GVj__RKpn,b=`żY@^՝;z{paVKkQXj/)y TIc&F;FBG7wg ZZDG!x r_tƢ!}i/V=M/#nB8 XxЫ ^@CR<{䤭YCN)eKOSƟa $&g[i3.C6xrOc8TI;o hH6P&L{@q6[ Gzp^71j(l`J}]e6X☉#͕ ׈$AB1Vjh㭦IRsqFBjwQ_7Xk>y"N=MB0 ,C #o6MRc0|$)ف"1!ixY<B9mx `,tA>)5ػQ?jQ?cn>YZe Tisvh# GMމȇp:ԴVuږ8ɼH]C.5C!UV;F`mbBk LTMvPʍϤj?ԯ/Qr1NB`9s"s TYsz &9S%U԰> {<ؿSMxB|H\3@!U| k']$U+> |HHMLޢ?V9iD!-@x TIî%6Z*9X@HMW#?nN ,oe6?tQwڱ.]-y':mW0#!J82qFjH -`ѓ&M0u Uγmxϵ^-_\])@0Rt.8/?ٰCY]x}=sD3ojަЫNuS%U}ԤwHH>ڗjܷ_3gN q7[q2la*ArǓԖ+p8/RGM ]jacd(JhWko6ڎbj]i5Bj3+3!\j1UZLsLTv8HHmup<>gKMJj0@H%,W΃7R) ">c, xixј^ aܖ>H[i.UIHc U1=yW\=S*GR~)AF=`&2h`DzT󑓶J+?W+}C%P:|0H܆}-<;OC[~o.$~i}~HQ TvXΈr=b}$vizL4:ȰT|4~*!oXQR6Lk+#t/g lԁߖ[Jڶ_N$k*". xsxX7jRVbAAʯKҎU3)zSNN _'s?f)6X!%ssAkʱ>qƷb hg %n ~p1REGMHH=BJiy[<5 ǁJҖgKR*倳e~HUy)Ag,K)`Vw6bRR:qL#\rclK/$sh*$ 6덤 KԖc 3Z9=Ɣ=o>X Ώ"1 )a`SJJ6k(<c e{%kϊP+SL'TcMJWRm ŏ"w)qc ef꒵i?b7b('"2r%~HUS1\<(`1Wx9=8HY9m:X18bgD1u ~|H;K-Uep,, C1 RV.MR5άh,tWO8WC$ XRVsQS]3GJ|12 [vM :k#~tH30Rf-HYݺ-`I9%lIDTm\ S{]9gOڒMNCV\G*2JRŨ;Rҏ^ڽ̱mq1Eu?To3I)y^#jJw^Ńj^vvlB_⋌P4x>0$c>K†Aļ9s_VjTt0l#m>E-,,x,-W)سo&96RE XR.6bXw+)GAEvL)͞K4$p=Ũi_ѱOjb HY/+@θH9޼]Nԥ%n{ &zjT? Ty) s^ULlb,PiTf^<À] 62R^V7)S!nllS6~͝V}-=%* ʻ>G DnK<y&>LPy7'r=Hj 9V`[c"*^8HpcO8bnU`4JȪAƋ#1_\ XϘHPRgik(~G~0DAA_2p|J묭a2\NCr]M_0 ^T%e#vD^%xy-n}-E\3aS%yN!r_{ )sAw ڼp1pEAk~v<:`'ӭ^5 ArXOI驻T (dk)_\ PuA*BY]yB"l\ey hH*tbK)3 IKZ򹞋XjN n *n>k]X_d!ryBH ]*R 0(#'7 %es9??ښFC,ՁQPjARJ\Ρw K#jahgw;2$l*) %Xq5!U᢯6Re] |0[__64ch&_}iL8KEgҎ7 M/\`|.p,~`a=BR?xܐrQ8K XR2M8f ?`sgWS%" Ԉ 7R%$ N}?QL1|-эټwIZ%pvL3Hk>,ImgW7{E xPHx73RA @RS CC !\ȟ5IXR^ZxHл$Q[ŝ40 (>+ _C >BRt<,TrT {O/H+˟Pl6 I B)/VC<6a2~(XwV4gnXR ϱ5ǀHٻ?tw똤Eyxp{#WK qG%5],(0ӈH HZ])ג=K1j&G(FbM@)%I` XRg ʔ KZG(vP,<`[ Kn^ SJRsAʠ5xՅF`0&RbV tx:EaUE/{fi2;.IAwW8/tTxAGOoN?G}l L(n`Zv?pB8K_gI+ܗ #i?ޙ.) p$utc ~DžfՈEo3l/)I-U?aԅ^jxArA ΧX}DmZ@QLےbTXGd.^|xKHR{|ΕW_h] IJ`[G9{).y) 0X YA1]qp?p_k+J*Y@HI>^?gt.06Rn ,` ?);p pSF9ZXLBJPWjgQ|&)7! HjQt<| ؅W5 x W HIzYoVMGP Hjn`+\(dNW)F+IrS[|/a`K|ͻ0Hj{R,Q=\ (F}\WR)AgSG`IsnAR=|8$}G(vC$)s FBJ?]_u XRvύ6z ŨG[36-T9HzpW̞ú Xg큽=7CufzI$)ki^qk-) 0H*N` QZkk]/tnnsI^Gu't=7$ Z;{8^jB% IItRQS7[ϭ3 $_OQJ`7!]W"W,)Iy W AJA;KWG`IY{8k$I$^%9.^(`N|LJ%@$I}ֽp=FB*xN=gI?Q{٥4B)mw $Igc~dZ@G9K X?7)aK%݅K$IZ-`IpC U6$I\0>!9k} Xa IIS0H$I H ?1R.Чj:4~Rw@p$IrA*u}WjWFPJ$I➓/6#! LӾ+ X36x8J |+L;v$Io4301R20M I$-E}@,pS^ޟR[/s¹'0H$IKyfŸfVOπFT*a$I>He~VY/3R/)>d$I>28`Cjw,n@FU*9ttf$I~<;=/4RD~@ X-ѕzἱI$: ԍR a@b X{+Qxuq$IЛzo /~3\8ڒ4BN7$IҀj V]n18H$IYFBj3̵̚ja pp $Is/3R Ӻ-Yj+L;.0ŔI$Av? #!5"aʄj}UKmɽH$IjCYs?h$IDl843.v}m7UiI=&=0Lg0$I4: embe` eQbm0u? $IT!Sƍ'-sv)s#C0:XB2a w I$zbww{."pPzO =Ɔ\[ o($Iaw]`E).Kvi:L*#gР7[$IyGPI=@R 4yR~̮´cg I$I/<tPͽ hDgo 94Z^k盇΄8I56^W$I^0̜N?4*H`237}g+hxoq)SJ@p|` $I%>-hO0eO>\ԣNߌZD6R=K ~n($I$y3D>o4b#px2$yڪtzW~a $I~?x'BwwpH$IZݑnC㧄Pc_9sO gwJ=l1:mKB>Ab<4Lp$Ib o1ZQ@85b̍ S'F,Fe,^I$IjEdù{l4 8Ys_s Z8.x m"+{~?q,Z D!I$ϻ'|XhB)=…']M>5 rgotԎ 獽PH$IjIPhh)n#cÔqA'ug5qwU&rF|1E%I$%]!'3AFD/;Ck_`9 v!ٴtPV;x`'*bQa w I$Ix5 FC3D_~A_#O݆DvV?<qw+I$I{=Z8".#RIYyjǪ=fDl9%M,a8$I$Ywi[7ݍFe$s1ՋBVA?`]#!oz4zjLJo8$I$%@3jAa4(o ;p,,dya=F9ً[LSPH$IJYЉ+3> 5"39aZ<ñh!{TpBGkj}Sp $IlvF.F$I z< '\K*qq.f<2Y!S"-\I$IYwčjF$ w9 \ߪB.1v!Ʊ?+r:^!I$BϹB H"B;L'G[ 4U#5>੐)|#o0aڱ$I>}k&1`U#V?YsV x>{t1[I~D&(I$I/{H0fw"q"y%4 IXyE~M3 8XψL}qE$I[> nD?~sf ]o΁ cT6"?'_Ἣ $I>~.f|'!N?⟩0G KkXZE]ޡ;/&?k OۘH$IRۀwXӨ<7@PnS04aӶp.:@\IWQJ6sS%I$e5ڑv`3:x';wq_vpgHyXZ 3gЂ7{{EuԹn±}$I$8t;b|591nءQ"P6O5i }iR̈́%Q̄p!I䮢]O{H$IRϻ9s֧ a=`- aB\X0"+5"C1Hb?߮3x3&gşggl_hZ^,`5?ߎvĸ%̀M!OZC2#0x LJ0 Gw$I$I}<{Eb+y;iI,`ܚF:5ܛA8-O-|8K7s|#Z8a&><a&/VtbtLʌI$I$I$I$I$I$IRjDD%tEXtdate:create2022-05-31T04:40:26+00:00!Î%tEXtdate:modify2022-05-31T04:40:26+00:00|{2IENDB`Mini Shell

HOME


Mini Shell 1.0
DIR:/proc/self/root/opt/cpanel/ea-nodejs22/include/node/
Upload File :
Current File : //proc/self/root/opt/cpanel/ea-nodejs22/include/node/v8-local-handle.h
// Copyright 2021 the V8 project authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.

#ifndef INCLUDE_V8_LOCAL_HANDLE_H_
#define INCLUDE_V8_LOCAL_HANDLE_H_

#include <stddef.h>

#include <type_traits>
#include <vector>

#include "v8-handle-base.h"  // NOLINT(build/include_directory)
#include "v8-internal.h"     // NOLINT(build/include_directory)

namespace v8 {

template <class T>
class LocalBase;
template <class T>
class Local;
template <class T>
class LocalVector;
template <class F>
class MaybeLocal;

template <class T>
class Eternal;
template <class T>
class Global;

template <class T>
class NonCopyablePersistentTraits;
template <class T>
class PersistentBase;
template <class T, class M = NonCopyablePersistentTraits<T>>
class Persistent;

class TracedReferenceBase;
template <class T>
class BasicTracedReference;
template <class F>
class TracedReference;

class Boolean;
class Context;
class EscapableHandleScope;
template <class F>
class FunctionCallbackInfo;
class Isolate;
class Object;
template <class F1, class F2, class F3>
class PersistentValueMapBase;
template <class F1, class F2>
class PersistentValueVector;
class Primitive;
class Private;
template <class F>
class PropertyCallbackInfo;
template <class F>
class ReturnValue;
class String;
template <class F>
class Traced;
class TypecheckWitness;
class Utils;

namespace debug {
class ConsoleCallArguments;
}

namespace internal {
template <typename T>
class CustomArguments;
template <typename T>
class LocalUnchecked;
class SamplingHeapProfiler;
}  // namespace internal

namespace api_internal {
// Called when ToLocalChecked is called on an empty Local.
V8_EXPORT void ToLocalEmpty();
}  // namespace api_internal

/**
 * A stack-allocated class that governs a number of local handles.
 * After a handle scope has been created, all local handles will be
 * allocated within that handle scope until either the handle scope is
 * deleted or another handle scope is created.  If there is already a
 * handle scope and a new one is created, all allocations will take
 * place in the new handle scope until it is deleted.  After that,
 * new handles will again be allocated in the original handle scope.
 *
 * After the handle scope of a local handle has been deleted the
 * garbage collector will no longer track the object stored in the
 * handle and may deallocate it.  The behavior of accessing a handle
 * for which the handle scope has been deleted is undefined.
 */
class V8_EXPORT V8_NODISCARD HandleScope {
 public:
  explicit HandleScope(Isolate* isolate);

  ~HandleScope();

  /**
   * Counts the number of allocated handles.
   */
  static int NumberOfHandles(Isolate* isolate);

  V8_INLINE Isolate* GetIsolate() const {
    return reinterpret_cast<Isolate*>(i_isolate_);
  }

  HandleScope(const HandleScope&) = delete;
  void operator=(const HandleScope&) = delete;

  static internal::Address* CreateHandleForCurrentIsolate(
      internal::Address value);

 protected:
  V8_INLINE HandleScope() = default;

  void Initialize(Isolate* isolate);

  static internal::Address* CreateHandle(internal::Isolate* i_isolate,
                                         internal::Address value);

 private:
  // Declaring operator new and delete as deleted is not spec compliant.
  // Therefore declare them private instead to disable dynamic alloc
  void* operator new(size_t size);
  void* operator new[](size_t size);
  void operator delete(void*, size_t);
  void operator delete[](void*, size_t);

  internal::Isolate* i_isolate_;
  internal::Address* prev_next_;
  internal::Address* prev_limit_;
#ifdef V8_ENABLE_CHECKS
  int scope_level_ = 0;
#endif

  // LocalBase<T>::New uses CreateHandle with an Isolate* parameter.
  template <typename T>
  friend class LocalBase;

  // Object::GetInternalField and Context::GetEmbedderData use CreateHandle with
  // a HeapObject in their shortcuts.
  friend class Object;
  friend class Context;
};

/**
 * A base class for local handles.
 * Its implementation depends on whether direct local support is enabled.
 * When it is, a local handle contains a direct pointer to the referenced
 * object, otherwise it contains an indirect pointer.
 */
#ifdef V8_ENABLE_DIRECT_LOCAL

template <typename T>
class LocalBase : public api_internal::DirectHandleBase {
 protected:
  template <class F>
  friend class Local;

  V8_INLINE LocalBase() = default;

  V8_INLINE explicit LocalBase(internal::Address ptr) : DirectHandleBase(ptr) {}

  template <typename S>
  V8_INLINE LocalBase(const LocalBase<S>& other) : DirectHandleBase(other) {}

  V8_INLINE static LocalBase<T> New(Isolate* isolate, internal::Address value) {
    return LocalBase<T>(value);
  }

  V8_INLINE static LocalBase<T> New(Isolate* isolate, T* that) {
    return LocalBase<T>::New(isolate,
                             internal::ValueHelper::ValueAsAddress(that));
  }

  V8_INLINE static LocalBase<T> FromSlot(internal::Address* slot) {
    return LocalBase<T>(*slot);
  }
};

#else  // !V8_ENABLE_DIRECT_LOCAL

template <typename T>
class LocalBase : public api_internal::IndirectHandleBase {
 protected:
  template <class F>
  friend class Local;

  V8_INLINE LocalBase() = default;

  V8_INLINE explicit LocalBase(internal::Address* location)
      : IndirectHandleBase(location) {}

  template <typename S>
  V8_INLINE LocalBase(const LocalBase<S>& other) : IndirectHandleBase(other) {}

  V8_INLINE static LocalBase<T> New(Isolate* isolate, internal::Address value) {
    return LocalBase(HandleScope::CreateHandle(
        reinterpret_cast<internal::Isolate*>(isolate), value));
  }

  V8_INLINE static LocalBase<T> New(Isolate* isolate, T* that) {
    if (internal::ValueHelper::IsEmpty(that)) return LocalBase<T>();
    return LocalBase<T>::New(isolate,
                             internal::ValueHelper::ValueAsAddress(that));
  }

  V8_INLINE static LocalBase<T> FromSlot(internal::Address* slot) {
    return LocalBase<T>(slot);
  }
};

#endif  // V8_ENABLE_DIRECT_LOCAL

/**
 * An object reference managed by the v8 garbage collector.
 *
 * All objects returned from v8 have to be tracked by the garbage collector so
 * that it knows that the objects are still alive.  Also, because the garbage
 * collector may move objects, it is unsafe to point directly to an object.
 * Instead, all objects are stored in handles which are known by the garbage
 * collector and updated whenever an object moves.  Handles should always be
 * passed by value (except in cases like out-parameters) and they should never
 * be allocated on the heap.
 *
 * There are two types of handles: local and persistent handles.
 *
 * Local handles are light-weight and transient and typically used in local
 * operations.  They are managed by HandleScopes. That means that a HandleScope
 * must exist on the stack when they are created and that they are only valid
 * inside of the HandleScope active during their creation. For passing a local
 * handle to an outer HandleScope, an EscapableHandleScope and its Escape()
 * method must be used.
 *
 * Persistent handles can be used when storing objects across several
 * independent operations and have to be explicitly deallocated when they're no
 * longer used.
 *
 * It is safe to extract the object stored in the handle by dereferencing the
 * handle (for instance, to extract the Object* from a Local<Object>); the value
 * will still be governed by a handle behind the scenes and the same rules apply
 * to these values as to their handles.
 */
template <class T>
class V8_TRIVIAL_ABI Local : public LocalBase<T>,
#ifdef V8_ENABLE_LOCAL_OFF_STACK_CHECK
                             public api_internal::StackAllocated<true>
#else
                             public api_internal::StackAllocated<false>
#endif
{
 public:
  V8_INLINE Local() = default;

  template <class S>
  V8_INLINE Local(Local<S> that) : LocalBase<T>(that) {
    /**
     * This check fails when trying to convert between incompatible
     * handles. For example, converting from a Local<String> to a
     * Local<Number>.
     */
    static_assert(std::is_base_of<T, S>::value, "type check");
  }

  V8_INLINE T* operator->() const { return this->template value<T>(); }

  V8_INLINE T* operator*() const { return this->operator->(); }

  /**
   * Checks whether two handles are equal or different.
   * They are equal iff they are both empty or they are both non-empty and the
   * objects to which they refer are physically equal.
   *
   * If both handles refer to JS objects, this is the same as strict
   * non-equality. For primitives, such as numbers or strings, a `true` return
   * value does not indicate that the values aren't equal in the JavaScript
   * sense. Use `Value::StrictEquals()` to check primitives for equality.
   */

  template <class S>
  V8_INLINE bool operator==(const Local<S>& that) const {
    return internal::HandleHelper::EqualHandles(*this, that);
  }

  template <class S>
  V8_INLINE bool operator==(const PersistentBase<S>& that) const {
    return internal::HandleHelper::EqualHandles(*this, that);
  }

  template <class S>
  V8_INLINE bool operator!=(const Local<S>& that) const {
    return !operator==(that);
  }

  template <class S>
  V8_INLINE bool operator!=(const Persistent<S>& that) const {
    return !operator==(that);
  }

  /**
   * Cast a handle to a subclass, e.g. Local<Value> to Local<Object>.
   * This is only valid if the handle actually refers to a value of the
   * target type.
   */
  template <class S>
  V8_INLINE static Local<T> Cast(Local<S> that) {
#ifdef V8_ENABLE_CHECKS
    // If we're going to perform the type check then we have to check
    // that the handle isn't empty before doing the checked cast.
    if (that.IsEmpty()) return Local<T>();
    T::Cast(that.template value<S>());
#endif
    return Local<T>(LocalBase<T>(that));
  }

  /**
   * Calling this is equivalent to Local<S>::Cast().
   * In particular, this is only valid if the handle actually refers to a value
   * of the target type.
   */
  template <class S>
  V8_INLINE Local<S> As() const {
    return Local<S>::Cast(*this);
  }

  /**
   * Create a local handle for the content of another handle.
   * The referee is kept alive by the local handle even when
   * the original handle is destroyed/disposed.
   */
  V8_INLINE static Local<T> New(Isolate* isolate, Local<T> that) {
    return New(isolate, that.template value<T, true>());
  }

  V8_INLINE static Local<T> New(Isolate* isolate,
                                const PersistentBase<T>& that) {
    return New(isolate, that.template value<T, true>());
  }

  V8_INLINE static Local<T> New(Isolate* isolate,
                                const BasicTracedReference<T>& that) {
    return New(isolate, that.template value<T, true>());
  }

 private:
  friend class TracedReferenceBase;
  friend class Utils;
  template <class F>
  friend class Eternal;
  template <class F>
  friend class Global;
  template <class F>
  friend class Local;
  template <class F>
  friend class MaybeLocal;
  template <class F, class M>
  friend class Persistent;
  template <class F>
  friend class FunctionCallbackInfo;
  template <class F>
  friend class PropertyCallbackInfo;
  friend class String;
  friend class Object;
  friend class Context;
  friend class Isolate;
  friend class Private;
  template <class F>
  friend class internal::CustomArguments;
  friend Local<Primitive> Undefined(Isolate* isolate);
  friend Local<Primitive> Null(Isolate* isolate);
  friend Local<Boolean> True(Isolate* isolate);
  friend Local<Boolean> False(Isolate* isolate);
  friend class HandleScope;
  friend class EscapableHandleScope;
  friend class InternalEscapableScope;
  template <class F1, class F2, class F3>
  friend class PersistentValueMapBase;
  template <class F1, class F2>
  friend class PersistentValueVector;
  template <class F>
  friend class ReturnValue;
  template <class F>
  friend class Traced;
  friend class internal::SamplingHeapProfiler;
  friend class internal::HandleHelper;
  friend class debug::ConsoleCallArguments;
  friend class internal::LocalUnchecked<T>;

  explicit Local(no_checking_tag do_not_check)
      : LocalBase<T>(), StackAllocated(do_not_check) {}
  explicit Local(const Local<T>& other, no_checking_tag do_not_check)
      : LocalBase<T>(other), StackAllocated(do_not_check) {}

  V8_INLINE explicit Local(const LocalBase<T>& other) : LocalBase<T>(other) {}

  V8_INLINE static Local<T> FromSlot(internal::Address* slot) {
    return Local<T>(LocalBase<T>::FromSlot(slot));
  }

#ifdef V8_ENABLE_DIRECT_LOCAL
  friend class TypecheckWitness;

  V8_INLINE static Local<T> FromAddress(internal::Address ptr) {
    return Local<T>(LocalBase<T>(ptr));
  }
#endif  // V8_ENABLE_DIRECT_LOCAL

  V8_INLINE static Local<T> New(Isolate* isolate, internal::Address value) {
    return Local<T>(LocalBase<T>::New(isolate, value));
  }

  V8_INLINE static Local<T> New(Isolate* isolate, T* that) {
    return Local<T>(LocalBase<T>::New(isolate, that));
  }

  // Unsafe cast, should be avoided.
  template <class S>
  V8_INLINE Local<S> UnsafeAs() const {
    return Local<S>(LocalBase<S>(*this));
  }
};

namespace internal {
// A local variant that is suitable for off-stack allocation.
// Used internally by LocalVector<T>. Not to be used directly!
template <typename T>
class V8_TRIVIAL_ABI LocalUnchecked : public Local<T> {
 public:
  LocalUnchecked() : Local<T>(Local<T>::do_not_check) {}

#if defined(V8_ENABLE_LOCAL_OFF_STACK_CHECK) && V8_HAS_ATTRIBUTE_TRIVIAL_ABI
  // In this case, the check is also enforced in the copy constructor and we
  // need to suppress it.
  LocalUnchecked(const LocalUnchecked& other)
      : Local<T>(other, Local<T>::do_not_check) {}
  LocalUnchecked& operator=(const LocalUnchecked&) = default;
#endif

  // Implicit conversion from Local.
  LocalUnchecked(const Local<T>& other)  // NOLINT(runtime/explicit)
      : Local<T>(other, Local<T>::do_not_check) {}
};

#ifdef V8_ENABLE_DIRECT_LOCAL
// Off-stack allocated direct locals must be registered as strong roots.
// For off-stack indirect locals, this is not necessary.

template <typename T>
class StrongRootAllocator<LocalUnchecked<T>> : public StrongRootAllocatorBase {
 public:
  using value_type = LocalUnchecked<T>;
  static_assert(std::is_standard_layout_v<value_type>);
  static_assert(sizeof(value_type) == sizeof(Address));

  explicit StrongRootAllocator(Heap* heap) : StrongRootAllocatorBase(heap) {}
  explicit StrongRootAllocator(v8::Isolate* isolate)
      : StrongRootAllocatorBase(isolate) {}
  template <typename U>
  StrongRootAllocator(const StrongRootAllocator<U>& other) noexcept
      : StrongRootAllocatorBase(other) {}

  value_type* allocate(size_t n) {
    return reinterpret_cast<value_type*>(allocate_impl(n));
  }
  void deallocate(value_type* p, size_t n) noexcept {
    return deallocate_impl(reinterpret_cast<Address*>(p), n);
  }
};
#endif  // V8_ENABLE_DIRECT_LOCAL
}  // namespace internal

template <typename T>
class LocalVector {
 private:
  using element_type = internal::LocalUnchecked<T>;

#ifdef V8_ENABLE_DIRECT_LOCAL
  using allocator_type = internal::StrongRootAllocator<element_type>;

  static allocator_type make_allocator(Isolate* isolate) noexcept {
    return allocator_type(isolate);
  }
#else
  using allocator_type = std::allocator<element_type>;

  static allocator_type make_allocator(Isolate* isolate) noexcept {
    return allocator_type();
  }
#endif  // V8_ENABLE_DIRECT_LOCAL

  using vector_type = std::vector<element_type, allocator_type>;

 public:
  using value_type = Local<T>;
  using reference = value_type&;
  using const_reference = const value_type&;
  using size_type = size_t;
  using difference_type = ptrdiff_t;
  using iterator =
      internal::WrappedIterator<typename vector_type::iterator, Local<T>>;
  using const_iterator =
      internal::WrappedIterator<typename vector_type::const_iterator,
                                const Local<T>>;

  explicit LocalVector(Isolate* isolate) : backing_(make_allocator(isolate)) {}
  LocalVector(Isolate* isolate, size_t n)
      : backing_(n, make_allocator(isolate)) {}
  explicit LocalVector(Isolate* isolate, std::initializer_list<Local<T>> init)
      : backing_(make_allocator(isolate)) {
    if (init.size() == 0) return;
    backing_.reserve(init.size());
    backing_.insert(backing_.end(), init.begin(), init.end());
  }

  iterator begin() noexcept { return iterator(backing_.begin()); }
  const_iterator begin() const noexcept {
    return const_iterator(backing_.begin());
  }
  iterator end() noexcept { return iterator(backing_.end()); }
  const_iterator end() const noexcept { return const_iterator(backing_.end()); }

  size_t size() const noexcept { return backing_.size(); }
  bool empty() const noexcept { return backing_.empty(); }
  void reserve(size_t n) { backing_.reserve(n); }
  void shrink_to_fit() { backing_.shrink_to_fit(); }

  Local<T>& operator[](size_t n) { return backing_[n]; }
  const Local<T>& operator[](size_t n) const { return backing_[n]; }

  Local<T>& at(size_t n) { return backing_.at(n); }
  const Local<T>& at(size_t n) const { return backing_.at(n); }

  Local<T>& front() { return backing_.front(); }
  const Local<T>& front() const { return backing_.front(); }
  Local<T>& back() { return backing_.back(); }
  const Local<T>& back() const { return backing_.back(); }

  Local<T>* data() noexcept { return backing_.data(); }
  const Local<T>* data() const noexcept { return backing_.data(); }

  iterator insert(const_iterator pos, const Local<T>& value) {
    return iterator(backing_.insert(pos.base(), value));
  }

  template <typename InputIt>
  iterator insert(const_iterator pos, InputIt first, InputIt last) {
    return iterator(backing_.insert(pos.base(), first, last));
  }

  iterator insert(const_iterator pos, std::initializer_list<Local<T>> init) {
    return iterator(backing_.insert(pos.base(), init.begin(), init.end()));
  }

  LocalVector<T>& operator=(std::initializer_list<Local<T>> init) {
    backing_.clear();
    backing_.insert(backing_.end(), init.begin(), init.end());
    return *this;
  }

  void push_back(const Local<T>& x) { backing_.push_back(x); }
  void pop_back() { backing_.pop_back(); }
  void emplace_back(const Local<T>& x) { backing_.emplace_back(x); }

  void clear() noexcept { backing_.clear(); }
  void resize(size_t n) { backing_.resize(n); }
  void swap(LocalVector<T>& other) { backing_.swap(other.backing_); }

  friend bool operator==(const LocalVector<T>& x, const LocalVector<T>& y) {
    return x.backing_ == y.backing_;
  }
  friend bool operator!=(const LocalVector<T>& x, const LocalVector<T>& y) {
    return x.backing_ != y.backing_;
  }
  friend bool operator<(const LocalVector<T>& x, const LocalVector<T>& y) {
    return x.backing_ < y.backing_;
  }
  friend bool operator>(const LocalVector<T>& x, const LocalVector<T>& y) {
    return x.backing_ > y.backing_;
  }
  friend bool operator<=(const LocalVector<T>& x, const LocalVector<T>& y) {
    return x.backing_ <= y.backing_;
  }
  friend bool operator>=(const LocalVector<T>& x, const LocalVector<T>& y) {
    return x.backing_ >= y.backing_;
  }

 private:
  vector_type backing_;
};

#if !defined(V8_IMMINENT_DEPRECATION_WARNINGS)
// Handle is an alias for Local for historical reasons.
template <class T>
using Handle = Local<T>;
#endif

/**
 * A MaybeLocal<> is a wrapper around Local<> that enforces a check whether
 * the Local<> is empty before it can be used.
 *
 * If an API method returns a MaybeLocal<>, the API method can potentially fail
 * either because an exception is thrown, or because an exception is pending,
 * e.g. because a previous API call threw an exception that hasn't been caught
 * yet, or because a TerminateExecution exception was thrown. In that case, an
 * empty MaybeLocal is returned.
 */
template <class T>
class MaybeLocal {
 public:
  V8_INLINE MaybeLocal() : local_() {}
  template <class S>
  V8_INLINE MaybeLocal(Local<S> that) : local_(that) {}

  V8_INLINE bool IsEmpty() const { return local_.IsEmpty(); }

  /**
   * Converts this MaybeLocal<> to a Local<>. If this MaybeLocal<> is empty,
   * |false| is returned and |out| is assigned with nullptr.
   */
  template <class S>
  V8_WARN_UNUSED_RESULT V8_INLINE bool ToLocal(Local<S>* out) const {
    *out = local_;
    return !IsEmpty();
  }

  /**
   * Converts this MaybeLocal<> to a Local<>. If this MaybeLocal<> is empty,
   * V8 will crash the process.
   */
  V8_INLINE Local<T> ToLocalChecked() {
    if (V8_UNLIKELY(IsEmpty())) api_internal::ToLocalEmpty();
    return local_;
  }

  /**
   * Converts this MaybeLocal<> to a Local<>, using a default value if this
   * MaybeLocal<> is empty.
   */
  template <class S>
  V8_INLINE Local<S> FromMaybe(Local<S> default_value) const {
    return IsEmpty() ? default_value : Local<S>(local_);
  }

  /**
   * Cast a handle to a subclass, e.g. MaybeLocal<Value> to MaybeLocal<Object>.
   * This is only valid if the handle actually refers to a value of the target
   * type.
   */
  template <class S>
  V8_INLINE static MaybeLocal<T> Cast(MaybeLocal<S> that) {
#ifdef V8_ENABLE_CHECKS
    // If we're going to perform the type check then we have to check
    // that the handle isn't empty before doing the checked cast.
    if (that.IsEmpty()) return MaybeLocal<T>();
    T::Cast(that.local_.template value<S>());
#endif
    return MaybeLocal<T>(that.local_);
  }

  /**
   * Calling this is equivalent to MaybeLocal<S>::Cast().
   * In particular, this is only valid if the handle actually refers to a value
   * of the target type.
   */
  template <class S>
  V8_INLINE MaybeLocal<S> As() const {
    return MaybeLocal<S>::Cast(*this);
  }

 private:
  Local<T> local_;

  template <typename S>
  friend class MaybeLocal;
};

/**
 * A HandleScope which first allocates a handle in the current scope
 * which will be later filled with the escape value.
 */
class V8_EXPORT V8_NODISCARD EscapableHandleScopeBase : public HandleScope {
 public:
  explicit EscapableHandleScopeBase(Isolate* isolate);
  V8_INLINE ~EscapableHandleScopeBase() = default;

  EscapableHandleScopeBase(const EscapableHandleScopeBase&) = delete;
  void operator=(const EscapableHandleScopeBase&) = delete;
  void* operator new(size_t size) = delete;
  void* operator new[](size_t size) = delete;
  void operator delete(void*, size_t) = delete;
  void operator delete[](void*, size_t) = delete;

 protected:
  /**
   * Pushes the value into the previous scope and returns a handle to it.
   * Cannot be called twice.
   */
  internal::Address* EscapeSlot(internal::Address* escape_value);

 private:
  internal::Address* escape_slot_;
};

class V8_EXPORT V8_NODISCARD EscapableHandleScope
    : public EscapableHandleScopeBase {
 public:
  explicit EscapableHandleScope(Isolate* isolate)
      : EscapableHandleScopeBase(isolate) {}
  V8_INLINE ~EscapableHandleScope() = default;
  template <class T>
  V8_INLINE Local<T> Escape(Local<T> value) {
#ifdef V8_ENABLE_DIRECT_LOCAL
    return value;
#else
    if (value.IsEmpty()) return value;
    return Local<T>::FromSlot(EscapeSlot(value.slot()));
#endif
  }

  template <class T>
  V8_INLINE MaybeLocal<T> EscapeMaybe(MaybeLocal<T> value) {
    return Escape(value.FromMaybe(Local<T>()));
  }
};

/**
 * A SealHandleScope acts like a handle scope in which no handle allocations
 * are allowed. It can be useful for debugging handle leaks.
 * Handles can be allocated within inner normal HandleScopes.
 */
class V8_EXPORT V8_NODISCARD SealHandleScope {
 public:
  explicit SealHandleScope(Isolate* isolate);
  ~SealHandleScope();

  SealHandleScope(const SealHandleScope&) = delete;
  void operator=(const SealHandleScope&) = delete;
  void* operator new(size_t size) = delete;
  void* operator new[](size_t size) = delete;
  void operator delete(void*, size_t) = delete;
  void operator delete[](void*, size_t) = delete;

 private:
  internal::Isolate* const i_isolate_;
  internal::Address* prev_limit_;
  int prev_sealed_level_;
};

}  // namespace v8

#endif  // INCLUDE_V8_LOCAL_HANDLE_H_