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%!PS-Adobe-2.0 %%Creator: dvips(k) 5.991 Copyright 2011 Radical Eye Software %%Title: arXiv:1206.3580v1 [physics.gen-ph] 13 Jun 2012 %%CreationDate: Fri Dec 15 00:20:45 2017 %%Pages: 12 %%PageOrder: Ascend %%BoundingBox: 0 0 612 792 %%DocumentPaperSizes: Letter %%EndComments %DVIPSWebPage: (www.radicaleye.com) %DVIPSCommandLine: dvips -R2 -P pk -z T-tachyon.dvi -o %DVIPSParameters: dpi=600, compressed %DVIPSSource: TeX output 2017.12.15:0020 %%BeginProcSet: texc.pro 0 0 %! /TeXDict 300 dict def TeXDict begin/N{def}def/B{bind def}N/S{exch}N/X{S N}B/A{dup}B/TR{translate}N/isls false N/vsize 11 72 mul N/hsize 8.5 72 mul N/landplus90{false}def/@rigin{isls{[0 landplus90{1 -1}{-1 1}ifelse 0 0 0]concat}if 72 Resolution div 72 VResolution div neg scale isls{ landplus90{VResolution 72 div vsize mul 0 exch}{Resolution -72 div hsize mul 0}ifelse TR}if Resolution VResolution vsize -72 div 1 add mul TR[ matrix currentmatrix{A A round sub abs 0.00001 lt{round}if}forall round exch round exch]setmatrix}N/@landscape{/isls true N}B/@manualfeed{ statusdict/manualfeed true put}B/@copies{/#copies X}B/FMat[1 0 0 -1 0 0] N/FBB[0 0 0 0]N/nn 0 N/IEn 0 N/ctr 0 N/df-tail{/nn 8 dict N nn begin /FontType 3 N/FontMatrix fntrx N/FontBBox FBB N string/base X array /BitMaps X/BuildChar{CharBuilder}N/Encoding IEn N end A{/foo setfont}2 array copy cvx N load 0 nn put/ctr 0 N[}B/sf 0 N/df{/sf 1 N/fntrx FMat N df-tail}B/dfs{div/sf X/fntrx[sf 0 0 sf neg 0 0]N df-tail}B/E{pop nn A definefont setfont}B/Cw{Cd A length 5 sub get}B/Ch{Cd A length 4 sub get }B/Cx{128 Cd A length 3 sub get sub}B/Cy{Cd A length 2 sub get 127 sub} B/Cdx{Cd A length 1 sub get}B/Ci{Cd A type/stringtype ne{ctr get/ctr ctr 1 add N}if}B/id 0 N/rw 0 N/rc 0 N/gp 0 N/cp 0 N/G 0 N/CharBuilder{save 3 1 roll S A/base get 2 index get S/BitMaps get S get/Cd X pop/ctr 0 N Cdx 0 Cx Cy Ch sub Cx Cw add Cy setcachedevice Cw Ch true[1 0 0 -1 -.1 Cx sub Cy .1 sub]/id Ci N/rw Cw 7 add 8 idiv string N/rc 0 N/gp 0 N/cp 0 N{ rc 0 ne{rc 1 sub/rc X rw}{G}ifelse}imagemask restore}B/G{{id gp get/gp gp 1 add N A 18 mod S 18 idiv pl S get exec}loop}B/adv{cp add/cp X}B /chg{rw cp id gp 4 index getinterval putinterval A gp add/gp X adv}B/nd{ /cp 0 N rw exit}B/lsh{rw cp 2 copy get A 0 eq{pop 1}{A 255 eq{pop 254}{ A A add 255 and S 1 and or}ifelse}ifelse put 1 adv}B/rsh{rw cp 2 copy get A 0 eq{pop 128}{A 255 eq{pop 127}{A 2 idiv S 128 and or}ifelse} ifelse put 1 adv}B/clr{rw cp 2 index string putinterval adv}B/set{rw cp fillstr 0 4 index getinterval putinterval adv}B/fillstr 18 string 0 1 17 {2 copy 255 put pop}for N/pl[{adv 1 chg}{adv 1 chg nd}{1 add chg}{1 add chg nd}{adv lsh}{adv lsh nd}{adv rsh}{adv rsh nd}{1 add adv}{/rc X nd}{ 1 add set}{1 add clr}{adv 2 chg}{adv 2 chg nd}{pop nd}]A{bind pop} forall N/D{/cc X A type/stringtype ne{]}if nn/base get cc ctr put nn /BitMaps get S ctr S sf 1 ne{A A length 1 sub A 2 index S get sf div put }if put/ctr ctr 1 add N}B/I{cc 1 add D}B/bop{userdict/bop-hook known{ bop-hook}if/SI save N @rigin 0 0 moveto/V matrix currentmatrix A 1 get A mul exch 0 get A mul add .99 lt{/QV}{/RV}ifelse load def pop pop}N/eop{ SI restore userdict/eop-hook known{eop-hook}if showpage}N/@start{ userdict/start-hook known{start-hook}if pop/VResolution X/Resolution X 1000 div/DVImag X/IEn 256 array N 2 string 0 1 255{IEn S A 360 add 36 4 index cvrs cvn put}for pop 65781.76 div/vsize X 65781.76 div/hsize X}N /dir 0 def/dyy{/dir 0 def}B/dyt{/dir 1 def}B/dty{/dir 2 def}B/dtt{/dir 3 def}B/p{dir 2 eq{-90 rotate show 90 rotate}{dir 3 eq{-90 rotate show 90 rotate}{show}ifelse}ifelse}N/RMat[1 0 0 -1 0 0]N/BDot 260 string N/Rx 0 N/Ry 0 N/V{}B/RV/v{/Ry X/Rx X V}B statusdict begin/product where{pop false[(Display)(NeXT)(LaserWriter 16/600)]{A length product length le{A length product exch 0 exch getinterval eq{pop true exit}if}{pop}ifelse} forall}{false}ifelse end{{gsave TR -.1 .1 TR 1 1 scale Rx Ry false RMat{ BDot}imagemask grestore}}{{gsave TR -.1 .1 TR Rx Ry scale 1 1 false RMat {BDot}imagemask grestore}}ifelse B/QV{gsave newpath transform round exch round exch itransform moveto Rx 0 rlineto 0 Ry neg rlineto Rx neg 0 rlineto fill grestore}B/a{moveto}B/delta 0 N/tail{A/delta X 0 rmoveto}B /M{S p delta add tail}B/b{S p tail}B/c{-4 M}B/d{-3 M}B/e{-2 M}B/f{-1 M} B/g{0 M}B/h{1 M}B/i{2 M}B/j{3 M}B/k{4 M}B/w{0 rmoveto}B/l{p -4 w}B/m{p -3 w}B/n{p -2 w}B/o{p -1 w}B/q{p 1 w}B/r{p 2 w}B/s{p 3 w}B/t{p 4 w}B/x{ 0 S rmoveto}B/y{3 2 roll p a}B/bos{/SS save N}B/eos{SS restore}B end %%EndProcSet %%BeginProcSet: special.pro 0 0 %! 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Fl(\032)1330 3843 y Fj(m)1424 3828 y Fm(and)f Fl(P)1672 3843 y Fj(m)1766 3828 y Fm(are)g(the)g (matter)f(energy)i(densit)m(y)g(and)f(pressure)i(resp)s(ec-)0 3949 y(tiv)m(ely)-8 b(,)33 b(satisfying)g(the)h(equation)53 b(_)-47 b Fl(\032)1342 3964 y Fj(m)1431 3949 y Fm(+)23 b(3)p Fl(H)8 b Fm(\(1)22 b(+)g Fl(!)1936 3964 y Fj(m)2003 3949 y Fm(\))p Fl(\032)2091 3964 y Fj(m)2187 3949 y Fm(=)29 b(0,)k(with)g Fl(!)2685 3964 y Fj(m)2781 3949 y Fm(=)2896 3910 y Fj(P)2941 3918 y Fg(m)p 2896 3926 104 4 v 2900 3983 a Fj(\032)2936 3991 y Fg(m)3042 3949 y Fm(the)h(matter)f(equation) 0 4069 y(of)g(state)h(parameter.)46 b(The)34 b(e\013ectiv)m(e)g(energy) h(densit)m(y)f(and)g(pressure)h(of)e(tac)m(h)m(y)m(onic)i(teleparallel) 30 b(dark)0 4190 y(energy)k(are)e(giv)m(en)h(b)m(y)-8 b(,)1382 4359 y SDict begin H.S end 1382 4359 a 1382 4359 a SDict begin 14.5 H.A end 1382 4359 a 1382 4359 a SDict begin [/View [/XYZ H.V]/Dest (equation.2.11) cvn /DEST pdfmark end 1382 4359 a Fl(\032)1432 4374 y Fj(\036)1506 4359 y Fm(=)1698 4292 y Fl(V)21 b Fm(\()p Fl(\036)p Fm(\))p 1620 4336 368 4 v 1620 4356 a Fi(q)p 1720 4356 268 4 v 127 x Fm(1)h Fk(\000)1914 4457 y Fm(_)1890 4483 y Fl(\036)1948 4454 y Fs(2)2019 4359 y Fk(\000)h Fm(6)p Fl(H)2257 4318 y Fs(2)2296 4359 y Fl(f)11 b Fm(\()p Fl(\036)p Fm(\))p Fl(;)1208 b Fm(\(11\))0 4651 y(and)454 4798 y SDict begin H.S end 454 4798 a 454 4798 a SDict begin 14.5 H.A end 454 4798 a 454 4798 a SDict begin [/View [/XYZ H.V]/Dest (equation.2.12) cvn /DEST pdfmark end 454 4798 a Fl(P)517 4813 y Fj(\036)591 4798 y Fm(=)27 b Fk(\000)p Fl(V)22 b Fm(\()p Fl(\036)p Fm(\))984 4667 y Fi(q)p 1084 4667 268 4 v 131 x Fm(1)g Fk(\000)1278 4772 y Fm(_)1254 4798 y Fl(\036)1312 4770 y Fs(2)1373 4798 y Fm(+)g(2)1520 4718 y Fi(\000)1566 4798 y Fm(3)p Fl(H)1704 4757 y Fs(2)1765 4798 y Fm(+)g(2)1948 4773 y(_)1912 4798 y Fl(H)2000 4718 y Fi(\001)2046 4798 y Fl(f)11 b Fm(\()p Fl(\036)p Fm(\))21 b(+)h(2)p Fl(H)8 b(f)2555 4757 y Ff(0)2578 4798 y Fm(\()p Fl(\036)p Fm(\))2735 4772 y(_)2712 4798 y Fl(\036)2769 4718 y Fi(\000)2815 4798 y Fm(1)21 b(+)3153 4731 y(1)p 2993 4776 368 4 v 2993 4795 a Fi(q)p 3093 4795 268 4 v 127 x Fm(1)h Fk(\000)3287 4896 y Fm(_)3264 4922 y Fl(\036)3322 4893 y Fs(2)3371 4718 y Fi(\001)3416 4798 y Fl(;)281 b Fm(\(12\))0 5090 y(where)32 b(a)d(prime)h(denotes)h(deriv)-5 b(ativ)m(e)30 b(with)g(resp)s(ect)h(to)f Fl(\036)p Fm(.)43 b(Note)30 b(that)g(for)g(a)g(FR)-11 b(W)30 b(univ)m(erse)i(it)d(is)h (easy)0 5210 y(to)i(\014nd)h Fl(T)42 b Fm(=)27 b Fk(\000)p Fm(6)p Fl(H)731 5174 y Fs(2)770 5210 y Fm(.)0 5331 y(The)34 b(equation)e(of)g(motion)f(of)h(the)h(scalar)f(\014eld)g(in)g(FR)-11 b(W)32 b(bac)m(kground)i(\(8\))e(reads)1090 5594 y SDict begin H.S end 1090 5594 a 1090 5594 a SDict begin 14.5 H.A end 1090 5594 a 1090 5594 a SDict begin [/View [/XYZ H.V]/Dest (equation.2.13) cvn /DEST pdfmark end 1090 5594 a 1217 5500 a Fm(\177)1205 5527 y Fl(\036)p 1100 5571 268 4 v 1100 5676 a Fm(1)22 b Fk(\000)1294 5649 y Fm(_)1270 5676 y Fl(\036)1328 5647 y Fs(2)1400 5594 y Fm(+)g(3)p Fl(H)1658 5568 y Fm(_)1636 5594 y Fl(\036)f Fm(+)1823 5527 y Fl(V)1901 5491 y Ff(0)1925 5527 y Fm(\()p Fl(\036)p Fm(\))p 1823 5571 236 4 v 1835 5662 a Fl(V)g Fm(\()p Fl(\036)p Fm(\))2090 5594 y(+)2198 5527 y(6)p Fl(H)2336 5491 y Fs(2)2375 5527 y Fl(f)2434 5491 y Ff(0)2457 5527 y Fm(\()p Fl(\036)p Fm(\))p 2198 5571 393 4 v 2288 5662 a Fl(V)h Fm(\()p Fl(\036)p Fm(\))2628 5594 y(=)28 b(0)p Fl(:)916 b Fm(\(13\))p Black 1924 5894 a(5)p Black eop end end %%Page: 6 6 TeXDict begin HPSdict begin 6 5 bop 0 0 a SDict begin /product where{pop product(Distiller)search{pop pop pop version(.)search{exch pop exch pop(3011)eq{gsave newpath 0 0 moveto closepath clip/Courier findfont 10 scalefont setfont 72 72 moveto(.)show grestore}if}{pop}ifelse}{pop}ifelse}if end 0 0 a 324 133 a SDict begin H.S end 324 133 a 324 133 a SDict begin H.R end 324 133 a 324 133 a SDict begin [/View [/XYZ H.V]/Dest (page.6) cvn /DEST pdfmark end 324 133 a Black Black 0 548 a Fm(In)33 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Fi(\020)1000 3668 y Fl(V)21 b Fm(\()p Fl(\036)p Fm(\))1235 3642 y(_)1212 3668 y Fl(\036)p 951 3712 368 4 v 951 3732 a Fi(q)p 1051 3732 268 4 v 127 x Fm(1)h Fk(\000)1245 3833 y Fm(_)1221 3859 y Fl(\036)1279 3830 y Fs(2)1350 3735 y Fm(+)g(2)p Fl(H)8 b(f)1645 3694 y Ff(0)1668 3735 y Fm(\()p Fl(\036)p Fm(\))1802 3655 y Fi(\000)1847 3735 y Fm(1)22 b(+)2185 3668 y(1)p 2026 3712 368 4 v 2026 3732 a Fi(q)p 2126 3732 268 4 v 127 x Fm(1)f Fk(\000)2320 3833 y Fm(_)2296 3859 y Fl(\036)2354 3830 y Fs(2)2403 3655 y Fi(\001)2449 3625 y(\021)2536 3735 y Fm(=)28 b Fk(\000)p Fm(4)2802 3710 y(_)2766 3735 y Fl(H)7 b(f)k Fm(\()p Fl(\036)p Fm(\))p Fl(:)650 b Fm(\(17\))0 4088 y(Moreo)m(v)m(er,)34 b(in)e(order)h(to)f Fl(!)1004 4103 y Fj(\036)1083 4088 y Fm(crosses)i(the)f(phan)m(tom)g(divide)f(line,)f (w)m(e)j(ha)m(v)m(e)g(to)e(c)m(hec)m(k)3257 4049 y Fj(d)p 3244 4065 62 4 v 3244 4122 a(dt)3316 4088 y Fm(\()p Fl(\032)3404 4103 y Fj(\036)3472 4088 y Fm(+)22 b Fl(P)3633 4103 y Fj(\036)3679 4088 y Fm(\))28 b Fk(6)p Fm(=)g(0)0 4208 y(at)k(the)h(crossing)g(p)s(oin)m(t,)114 4415 y Fl(d)p 97 4460 86 4 v 97 4551 a(dt)193 4483 y Fm(\()p Fl(\032)281 4498 y Fj(\036)349 4483 y Fm(+)22 b Fl(P)510 4498 y Fj(\036)556 4483 y Fm(\))28 b(=)764 4415 y Fl(V)22 b Fm(\()p Fl(\036)p Fm(\))1000 4389 y(_)977 4415 y Fl(\036)1035 4379 y Fs(3)p 735 4460 368 4 v 735 4480 a Fi(q)p 835 4480 268 4 v 126 x Fm(1)g Fk(\000)1029 4580 y Fm(_)1005 4606 y Fl(\036)1063 4578 y Fs(2)1135 4483 y Fm(+)1243 4415 y(2)p Fl(V)f Fm(\()p Fl(\036)p Fm(\))1527 4389 y(_)1504 4415 y Fl(\036)1574 4389 y Fm(\177)1561 4415 y Fl(\036)p 1243 4460 377 4 v 1248 4480 a Fi(q)p 1347 4480 268 4 v 1347 4606 a Fm(1)h Fk(\000)1541 4580 y Fm(_)1517 4606 y Fl(\036)1575 4578 y Fs(2)1651 4483 y Fm(+)1782 4415 y Fl(V)g Fm(\()p Fl(\036)p Fm(\))2018 4389 y(_)1995 4415 y Fl(\036)2053 4379 y Fs(3)2104 4389 y Fm(\177)2092 4415 y Fl(\036)p 1759 4460 414 4 v 1759 4509 a Fi(\000)1805 4589 y Fm(1)g Fk(\000)1999 4563 y Fm(_)1975 4589 y Fl(\036)2033 4561 y Fs(2)2073 4509 y Fi(\001)2128 4504 y Fh(3)p 2128 4516 31 3 v 2128 4557 a(2)2205 4483 y Fm(+)g(4)2377 4458 y(\177)2352 4483 y Fl(H)7 b(f)k Fm(\()p Fl(\036)p Fm(\))22 b(+)g(2)2838 4458 y(_)2802 4483 y Fl(H)7 b(f)2949 4442 y Ff(0)2972 4483 y Fm(\()p Fl(\036)p Fm(\))3129 4456 y(_)3106 4483 y Fl(\036)3163 4402 y Fi(\000)3209 4483 y Fm(3)22 b(+)3547 4415 y(1)p 3388 4460 368 4 v 3388 4480 a Fi(q)p 3487 4480 268 4 v 3487 4606 a Fm(1)g Fk(\000)3681 4580 y Fm(_)3658 4606 y Fl(\036)3716 4578 y Fs(2)3765 4402 y Fi(\001)723 4924 y SDict begin H.S end 723 4924 a 723 4924 a SDict begin 14.5 H.A end 723 4924 a 723 4924 a SDict begin [/View [/XYZ H.V]/Dest (equation.3.18) cvn /DEST pdfmark end 723 4924 a 22 w Fm(+)g(2)p Fl(H)981 4754 y Fi(")1038 4924 y Fl(f)1097 4883 y Ff(0)1120 4924 y Fm(\()p Fl(\036)p Fm(\))1267 4898 y(\177)1254 4924 y Fl(\036)1312 4844 y Fi(\000)1357 4924 y Fm(1)g(+)1711 4857 y(1)p 1536 4902 399 4 v 1536 5010 a(\(1)g Fk(\000)1768 4983 y Fm(_)1745 5010 y Fl(\036)1803 4981 y Fs(2)1842 5010 y 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0 siz box Q} def /fdiamond {xys q xv yv translate 45 rotate 0 0 siz fbox Q} def /triup {xys q xv yv translate 180 rotate 0 0 siz tridn Q} def /ftriup {xys q xv yv translate 180 rotate 0 0 siz ftridn Q} def % Define the composite fonts used to print Unicode strings. % Undefine particular values in an encoding array. /vg&undef { {exch dup 3 -1 roll /.notdef put} forall } def /vg&redef { {3 -1 roll dup 4 2 roll put} forall } def % usage: key encoding basefontname vg&newbasefont font /vg&newbasefont { findfont dup length dict copy begin currentdict /FID undef /Encoding exch def dup /FontName exch def currentdict end definefont } def % usage: key encoding basefontname vg&newskewedbasefont font /vg&newskewedbasefont { findfont dup length dict copy begin currentdict /FID undef /Encoding exch def dup /FontName exch def exch FontMatrix exch matrix concatmatrix /FontMatrix exch def currentdict end definefont } def % usage: basekey suffix vg&nconcat name /vg&nconcat { 2 {dup length string cvs exch} repeat dup length 3 -1 roll dup length 3 -1 roll add string dup 0 4 -1 roll dup length 5 1 roll putinterval dup 4 -2 roll exch putinterval cvn } def %usage: fontname vg&skewmatrix matrix /vg&skewmatrix { findfont dup /FontInfo known { /FontInfo get dup /ItalicAngle known { [ 1 0 4 -1 roll /ItalicAngle get neg dup sin exch cos div 1 0 0 ] } {pop matrix} ifelse } {pop matrix} ifelse } def % usage: newfontname basefontname vg&newcompositefont -- /vg&newcompositefont { /vg&fstyle exch def /vg&bfont exch def /vg&fname exch def << /FontStyleBits vg&fstyle /FontType 0 /FontMatrix matrix /FontName vg&fname /FMapType 2 /Encoding [ 0 1 255 {pop 6} for ] dup 16#00 0 put % Latin dup 16#03 1 put % Greek dup 16#20 2 put % Punctuation dup 16#21 3 put % Arrows dup 16#22 4 put % MathOps dup 16#27 5 put % Dingbats /FDepVector [ vg&bfont /-UC-Latin vg&nconcat UCLatinEncoding vg&bfont vg&newbasefont vg&bfont vg&skewmatrix vg&bfont /-UC-Greek vg&nconcat UCGreekEncoding /Symbol vg&newskewedbasefont vg&bfont /-UC-Punctuation vg&nconcat UCPunctuationEncoding vg&bfont vg&newbasefont /Arrows-UC findfont /MathOps-UC findfont /Dingbats-UC findfont /Undefined-UC findfont ] >> vg&fname exch definefont pop } def % Null encoding vector (all elements set to .notdef) /NullEncoding [ 256 {/.notdef} repeat ] def % Unicode Latin encoding (unicode codes \u0000-\u00ff) /UCLatinEncoding ISOLatin1Encoding dup length array copy dup 16#60 /grave put [ 16#90 16#91 16#92 16#93 16#94 16#95 16#96 16#97 16#98 16#9a 16#9b 16#9d 16#9e 16#9f ] vg&undef def % Unicode Greek encoding (unicode codes \u0370-\u03ff) /UCGreekEncoding NullEncoding dup length array copy << 16#91 /Alpha 16#92 /Beta 16#93 /Gamma 16#94 /Delta 16#95 /Epsilon 16#96 /Zeta 16#97 /Eta 16#98 /Theta 16#99 /Iota 16#9a /Kappa 16#9b /Lambda 16#9c /Mu 16#9d /Nu 16#9e /Xi 16#9f /Omicron 16#a0 /Pi 16#a1 /Rho 16#a3 /Sigma 16#a4 /Tau 16#a5 /Upsilon 16#a6 /Phi 16#a7 /Chi 16#a8 /Psi 16#a9 /Omega 16#b1 /alpha 16#b2 /beta 16#b3 /gamma 16#b4 /delta 16#b5 /epsilon 16#b6 /zeta 16#b7 /eta 16#b8 /theta 16#b9 /iota 16#ba /kappa 16#bb /lambda 16#bc /mu 16#bd /nu 16#be /xi 16#bf /omicron 16#c0 /pi 16#c1 /rho 16#c2 /sigma1 16#c3 /sigma 16#c4 /tau 16#c5 /upsilon 16#c6 /phi1 16#c7 /chi 16#c8 /psi 16#c9 /omega 16#7e /semicolon 16#87 /dotmath 16#d1 /theta1 16#d2 /Upsilon1 16#d5 /phi 16#d6 /omega1 >> vg&redef def % Unicode punctuation encoding (unicode codes \u2000-\u206f) /UCPunctuationEncoding NullEncoding dup length array copy << 16#10 /hyphen 16#11 /hyphen 16#12 /endash 16#13 /emdash 16#18 /quoteleft 16#19 /quoteright 16#1a /quotesinglbase 16#1b /quotesingle 16#1c /quotedblleft 16#1d /quotedblright 16#1e /quotedblbase 16#1f /quotedbl 16#20 /dagger 16#21 /daggerdbl 16#22 /bullet 16#24 /period 16#26 /ellipsis 16#27 /periodcentered 16#30 /perthousand 16#44 /fraction 16#70 /zerosuperior 16#74 /foursuperior 16#75 /fivesuperior 16#76 /sixsuperior 16#77 /sevensuperior 16#78 /eightsuperior 16#79 /ninesuperior 16#7b /hyphensuperior 16#7d /parenleftsuperior 16#7e /parenrightsuperior 16#80 /zeroinferior 16#84 /fourinferior 16#85 /fiveinferior 16#81 /oneinferior 16#82 /twoinferior 16#83 /threeinferior 16#86 /sixinferior 16#87 /seveninferior 16#88 /eightinferior 16#89 /nineinferior 16#8b /hypheninferior 16#8d /parenleftinferior 16#8e /parenrightinferior >> vg&redef def % Unicode mathematical operators encoding (unicode codes \u2200-\u22ff) /UCMathOpsEncoding NullEncoding dup length array copy << 16#00 /universal 16#02 /partialdiff 16#03 /existential 16#05 /emptyset 16#06 /Delta 16#07 /gradient 16#08 /element 16#09 /notelement 16#0b /suchthat 16#0f /product 16#11 /summation 16#12 /minus 16#15 /fraction 16#17 /asteriskmath 16#19 /bullet 16#1a /radical 16#1d /proportional 16#1e /infinity 16#20 /angle 16#23 /bar 16#27 /logicaland 16#28 /logicalor 16#29 /intersection 16#2a /union 16#2b /integral 16#34 /therefore 16#36 /colon 16#3c /similar 16#45 /congruent 16#48 /approxequal 16#60 /notequal 16#61 /equivalence 16#64 /lessequal 16#65 /greaterequal 16#82 /propersubset 16#83 /propersuperset 16#86 /reflexsubset 16#87 /reflexsuperset 16#95 /circleplus 16#97 /circlemultiply 16#a5 /perpendicular 16#03 /existential 16#c0 /logicaland 16#c1 /logicalor 16#c2 /intersection 16#c3 /union 16#c4 /diamond 16#c5 /dotmath >> vg&redef def % Unicode arrows encoding (unicode codes \u2190-\u21ff) % Also includes those "Letterlike" unicode characters % which are available in the symbol font. (unicode codes \u2100-\u214f) /UCArrowsEncoding NullEncoding dup length array copy << 16#11 /Ifraktur 16#1c /Rfraktur 16#22 /trademarkserif 16#35 /aleph 16#90 /arrowleft 16#91 /arrowup 16#92 /arrowright 16#93 /arrowdown 16#94 /arrowboth 16#d0 /arrowdblleft 16#d1 /arrowdblup 16#d2 /arrowdblright 16#d3 /arrowdbldown 16#d4 /arrowdblboth >> vg&redef def /ZapfDingbats findfont /Encoding get dup length array copy /UCDingbatsEncoding exch def 16#20 1 16#7f { dup 16#20 sub exch UCDingbatsEncoding exch get UCDingbatsEncoding 3 1 roll put } for 16#a0 1 16#ff { dup 16#40 sub exch UCDingbatsEncoding exch get UCDingbatsEncoding 3 1 roll put } for UCDingbatsEncoding [ 16#c0 1 16#ff {} for ] vg&undef [ 16#00 16#05 16#0a 16#0b 16#28 16#4c 16#4e 16#53 16#54 16#55 16#57 16#5f 16#60 16#68 16#69 16#6a 16#6b 16#6c 16#6d 16#6e 16#6f 16#70 16#71 16#72 16#73 16#74 16#75 16#95 16#96 16#97 16#b0 16#bf ] vg&undef pop % Define the base fonts which don't change. /Undefined-UC NullEncoding /Helvetica vg&newbasefont pop /MathOps-UC UCMathOpsEncoding /Symbol vg&newbasefont pop /Arrows-UC UCArrowsEncoding /Symbol vg&newbasefont pop /Dingbats-UC UCDingbatsEncoding /ZapfDingbats vg&newbasefont pop % Make the SansSerif composite fonts. /SansSerif /Helvetica 16#00 vg&newcompositefont /SansSerif-Bold /Helvetica-Bold 16#01 vg&newcompositefont /SansSerif-Italic /Helvetica-Oblique 16#02 vg&newcompositefont /SansSerif-BoldItalic /Helvetica-BoldOblique 16#03 vg&newcompositefont % Make the Serif composite fonts. /Serif /Times-Roman 16#00 vg&newcompositefont /Serif-Bold /Times-Bold 16#01 vg&newcompositefont /Serif-Italic /Times-Italic 16#02 vg&newcompositefont /Serif-BoldItalic /Times-BoldItalic 16#03 vg&newcompositefont % Make the Monospaced composite fonts. /Monospaced /Courier 16#00 vg&newcompositefont /Monospaced-Bold /Courier-Bold 16#01 vg&newcompositefont /Monospaced-Italic /Courier-Oblique 16#02 vg&newcompositefont /Monospaced-BoldItalic /Courier-BoldOblique 16#03 vg&newcompositefont % Make the Dialog composite fonts. /Dialog /Helvetica 16#00 vg&newcompositefont /Dialog-Bold /Helvetica-Bold 16#01 vg&newcompositefont /Dialog-Italic /Helvetica-Oblique 16#02 vg&newcompositefont /Dialog-BoldItalic /Helvetica-BoldOblique 16#03 vg&newcompositefont % Make the DialogInput composite fonts. /DialogInput /Helvetica 16#00 vg&newcompositefont /DialogInput-Bold /Helvetica-Bold 16#01 vg&newcompositefont /DialogInput-Italic /Helvetica-Oblique 16#02 vg&newcompositefont /DialogInput-BoldItalic /Helvetica-BoldOblique 16#03 vg&newcompositefont % Make the Typewriter composite fonts (JDK 1.1 only). /Typewriter /Courier 16#00 vg&newcompositefont /Typewriter-Bold /Courier-Bold 16#01 vg&newcompositefont /Typewriter-Italic /Courier-Oblique 16#02 vg&newcompositefont /Typewriter-BoldItalic /Courier-BoldOblique 16#03 vg&newcompositefont /cfontH { dup /fontsize exch def /SansSerif exch sf /vg&fontstyles [{cfontH} {cfontHB} {cfontHI} {cfontHBI}] def } def /cfontHB { dup /fontsize exch def /SansSerif-Bold exch sf /vg&fontstyles [{cfontH} {cfontHB} {cfontHI} {cfontHBI}] def } def /cfontHI { dup /fontsize exch def /SansSerif-Italic exch sf /vg&fontstyles [{cfontH} {cfontHB} {cfontHI} {cfontHBI}] def } def /cfontHBI { dup /fontsize exch def /SansSerif-BoldItalic exch sf /vg&fontstyles [{cfontH} {cfontHB} {cfontHI} {cfontHBI}] def } def /cfontT { dup /fontsize exch def /Serif exch sf /vg&fontstyles [{cfontT} {cfontTB} {cfontTI} {cfontTBI}] def } def /cfontTB { dup /fontsize exch def /Serif-Bold exch sf /vg&fontstyles [{cfontT} {cfontTB} {cfontTI} {cfontTBI}] def } def /cfontTI { dup /fontsize exch def /Serif-Italic exch sf /vg&fontstyles [{cfontT} {cfontTB} {cfontTI} {cfontTBI}] def } def /cfontTBI { dup /fontsize exch def /Serif-BoldItalic exch sf /vg&fontstyles [{cfontT} {cfontTB} {cfontTI} {cfontTBI}] def } def /cfontC { dup /fontsize exch def /Typewriter exch sf /vg&fontstyles [{cfontC} {cfontCB} {cfontCI} {cfontCBI}] def } def /cfontCB { dup /fontsize exch def /Typewriter-Bold exch sf /vg&fontstyles [{cfontC} {cfontCB} {cfontCI} {cfontCBI}] def } def /cfontCI { dup /fontsize exch def /Typewriter-Italic exch sf /vg&fontstyles [{cfontC} {cfontCB} {cfontCI} {cfontCBI}] def } def /cfontCBI { dup /fontsize exch def /Typewriter-BoldItalic exch sf /vg&fontstyles [{cfontC} {cfontCB} {cfontCI} {cfontCBI}] def } def % Darken or lighten the current color. /darken {0.7 exch exp 3 copy q 4 -1 roll vg&C currentrgbcolor 3 {4 -2 roll mul} repeat 3 array astore Q} def /displayColorMap << /Cr [1.00 0.00 0.00] /Cg [0.00 1.00 0.00] /Cb [0.00 0.00 1.00] /Cc [1.00 0.00 0.00 0.00] /Cm [0.00 1.00 0.00 0.00] /Cy [0.00 0.00 1.00 0.00] /Co [1.00 0.78 0.00] /Cp [1.00 0.67 0.67] /Cw [1 ] /Cgrl [0.75] /Cgr [0.50] /Cgrd [0.25] /Ck [0 ] /CGr [1.00 0.00 0.00] /CGg [0.00 1.00 0.00] /CGb [0.00 0.00 1.00] /CGc [1.00 0.00 0.00 0.00] /CGm [0.00 1.00 0.00 0.00] /CGy [0.00 0.00 1.00 0.00] /CGo [1.00 0.78 0.00] /CGp [1.00 0.67 0.67] /CGw [1 ] /CGgrl [0.75] /CGgr [0.50] /CGgrd [0.25] /CGk [0 ] /CIr [1.00 0.00 0.00] /CIg [0.00 1.00 0.00] /CIb [0.00 0.00 1.00] /CIc [1.00 0.00 0.00 0.00] /CIm [0.00 1.00 0.00 0.00] /CIy [0.00 0.00 1.00 0.00] /CIo [1.00 0.78 0.00] /CIp [1.00 0.67 0.67] /CIw [1 ] /CIgrl [0.75] /CIgr [0.50] /CIgrd [0.25] /CIk [0 ] >> def /printColorMap << /Cr [1.00 0.33 0.33] /Cg [0.33 1.00 0.33] /Cb [0.33 0.33 1.00] /Cc [1.00 0.00 0.00 0.00] /Cm [0.00 1.00 0.00 0.00] /Cy [0.00 0.00 1.00 0.00] /Co [1.00 0.78 0.00] /Cp [1.00 0.67 0.67] /Cw [1 ] /Cgrl [0.75] /Cgr [0.50] /Cgrd [0.25] /Ck [0 ] /CGr [1.00 0.33 0.33] /CGg [0.33 1.00 0.33] /CGb [0.33 0.33 1.00] /CGc [1.00 0.00 0.00 0.00] /CGm [0.00 1.00 0.00 0.00] /CGy [0.00 0.00 1.00 0.00] /CGo [1.00 0.78 0.00] /CGp [1.00 0.67 0.67] /CGw [1 ] /CGgrl [0.75] /CGgr [0.50] /CGgrd [0.25] /CGk [0 ] /CIr [1.00 0.33 0.33] /CIg [0.33 1.00 0.33] /CIb [0.33 0.33 1.00] /CIc [1.00 0.00 0.00 0.00] /CIm [0.00 1.00 0.00 0.00] /CIy [0.00 0.00 1.00 0.00] /CIo [1.00 0.78 0.00] /CIp [1.00 0.67 0.67] /CIw [1 ] /CIgrl [0.75] /CIgr [0.50] /CIgrd [0.25] /CIk [0 ] >> def /grayColorMap << /Cr [0 ] /Cg [0 ] /Cb [0 ] /Cc [0 ] /Cm [0 ] /Cy [0 ] /Co [0 ] /Cp [0 ] /Cw [0 ] /Cgrl [0 ] /Cgr [0 ] /Cgrd [0 ] /Ck [0 ] /CGr [0.75] /CGg [1 ] /CGb [0.50] /CGc [0.75] /CGm [0.50] /CGy [1 ] /CGo [0.75] /CGp [1 ] /CGw [0 ] /CGgrl [0.25] /CGgr [0.50] /CGgrd [0.75] /CGk [1 ] /CIr [1 ] /CIg [1 ] /CIb [1 ] /CIc [1 ] /CIm [1 ] /CIy [1 ] /CIo [1 ] /CIp [1 ] /CIw [1 ] /CIgrl [1 ] /CIgr [1 ] /CIgrd [1 ] /CIk [1 ] >> def /bwColorMap << /Cr [0 ] /Cg [0 ] /Cb [0 ] /Cc [0 ] /Cm [0 ] /Cy [0 ] /Co [0 ] /Cp [0 ] /Cw [0 ] /Cgrl [0 ] /Cgr [0 ] /Cgrd [0 ] /Ck [0 ] /CGr [1 ] /CGg [1 ] /CGb [1 ] /CGc [1 ] /CGm [1 ] /CGy [1 ] /CGo [1 ] /CGp [1 ] /CGw [0 ] /CGgrl [1 ] /CGgr [1 ] /CGgrd [1 ] /CGk [1 ] /CIr [1 ] /CIg [1 ] /CIb [1 ] /CIc [1 ] /CIm [1 ] /CIy [1 ] /CIo [1 ] /CIp [1 ] /CIw [1 ] /CIgrl [1 ] /CIgr [1 ] /CIgrd [1 ] /CIk [1 ] >> def % % The following routines handle the alignment of and printing of % tagged strings. % % Predefine the bounding box values. /bbllx 0 def /bblly 0 def /bburx 0 def /bbury 0 def % This routine pops the first unicode character off of a string and returns % the remainder of the string, the character code of first character, % and a "true" if the string was non-zero length. % <string> popfirst <remaining string> <true> % <null string> popfirst <false> /popfirst { dup length 1 gt {dup 0 get /vg&fbyte exch def dup 1 get /vg&cbyte exch def dup length 2 sub 2 exch getinterval true} {pop false} ifelse } def % This routine shows a single unicode character given the font and % character codes. % <font code> <char code> unicharshow -- /unicharshow { 2 string dup 0 5 -1 roll put dup 1 4 -1 roll put internalshow } def % This is an internal routine to alternate between determining the % bounding box for stringsize and showing the string for recshow. % <string> internalshow -- /internalshow {show} def % This is an internal routine to alternate between determining the % bounding box for stringsize and stroking various ornaments. % <string> internalstroke -- /internalstroke {S} def % Sets up internalshow to use the null device to determine string size. % -- nullinternalshow -- /nullinternalshow {/internalshow {false charpath flattenpath pathbbox updatebbox} def} def % Sets up internalstroke to use the null device to determine string size. % -- nullinternalstroke -- /nullinternalstroke { /internalstroke {flattenpath pathbbox updatebbox} def} def % This routine tests to see if the character code matches the first % character of a string. % <char code> <string> testchar <char code> <true or false> /testchar {exch dup 3 -1 roll 0 get eq} def % Raise the text baseline for superscripts. % -- raise -- /raise { 0 fontsize 2 div rmoveto /fontsize fontsize 2 mul 3 div def currentfont /FontName get fontsize sf } def % Un-raise the text baseline for superscripts. % -- unraise -- /unraise { /fontsize fontsize 1.5 mul def 0 fontsize 2 div neg rmoveto } def % Lower the text baseline for subscripts. % -- lower -- /lower { 0 fontsize 3 div neg rmoveto /fontsize fontsize 2 mul 3 div def currentfont /FontName get fontsize sf } def % Un-lower the text baseline for subscripts. % -- unlower -- /unlower { /fontsize fontsize 1.5 mul def 0 fontsize 3 div rmoveto } def % Compare the top two elements on the stack and leave only the % larger one. /maxval {2 copy gt {pop} {exch pop} ifelse} def % Tokenize a string. Do not use the usual PostScript token because % parentheses will not be interpreted correctly because of rescanning % of the string. /vg&token {/vg&string exch def /vg&index -1 def /vg&level 0 def 0 2 vg&string length 2 sub { dup dup 1 add exch vg&string exch get 8 bitshift vg&string 3 -1 roll get or dup 16#f0fe eq {pop 1}{16#f0ff eq {-1}{0} ifelse} ifelse /vg&level exch vg&level add def vg&level 0 eq {/vg&index exch def exit} if pop } for vg&index 0 ge { vg&string vg&index 2 add dup vg&string length exch sub getinterval vg&index 2 gt {vg&string 2 vg&index 2 sub getinterval}{()} ifelse true} {false} ifelse } bind def % Recursively show an unicode string. % <string> recshow -- /recshow { popfirst { % Test to see if this is a string attribute. vg&fbyte 16#f0 and 16#e0 eq { q % Font style. currentfont dup /FontStyleBits known {/FontStyleBits get}{pop 0} ifelse vg&cbyte or vg&fontstyles exch get fontsize exch exec vg&token pop recshow currentpoint Q m recshow } { vg&fbyte 16#F8 and 16#F0 eq { % Superscript and/or subscript. vg&cbyte 16#00 eq { vg&token pop exch vg&token pop 3 -1 roll q raise recshow unraise currentpoint pop Q exch q lower recshow unlower currentpoint pop Q maxval currentpoint exch pop m recshow } if % Strikeout. vg&cbyte 16#01 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J vg&underline vg&uthick w currentpoint 4 -2 roll fontsize 3 div add moveto fontsize 3 div add lineto internalstroke Q recshow} if % Underline. vg&cbyte 16#02 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J vg&underline vg&uthick w currentpoint 4 -2 roll vg&uoffset add moveto vg&uoffset add lineto internalstroke Q recshow} if % Dashed underline. vg&cbyte 16#03 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J [ vg&uthick 5 mul vg&uthick 2 mul] 0 d vg&underline vg&uthick w currentpoint 4 -2 roll vg&uoffset add moveto vg&uoffset add lineto internalstroke Q recshow} if % Dotted underline. vg&cbyte 16#04 eq { vg&token pop currentpoint 3 -1 roll recshow q 1 J [ 0 vg&uthick 3 mul] 0 d vg&underline vg&uthick w currentpoint 4 -2 roll vg&uoffset add moveto vg&uoffset add lineto internalstroke Q recshow} if % Thick underline. vg&cbyte 16#05 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J vg&underline vg&uthick 2 mul w currentpoint 4 -2 roll vg&uoffset vg&uthick 2 div sub add moveto vg&uoffset vg&uthick 2 div sub add lineto internalstroke Q recshow} if % Gray thick underline. vg&cbyte 16#06 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J vg&underline vg&uthick 2 mul w 0.5 setgray currentpoint 4 -2 roll vg&uoffset vg&uthick 2 div sub add moveto vg&uoffset vg&uthick 2 div sub add lineto internalstroke Q recshow} if % Overbar. vg&cbyte 16#07 eq { vg&token pop dup stringsize relative 4 1 roll pop pop exch 3 -1 roll recshow q 0 J vg&underline vg&uthick w vg&uoffset neg add dup currentpoint pop exch m l internalstroke Q recshow} if } { vg&fbyte vg&cbyte unicharshow recshow } ifelse } ifelse } if } def % Get the underline position and thickness from the current font. /vg&underline { currentfont dup /FontType get 0 eq {/FDepVector get 0 get} if dup dup /FontInfo known { /FontInfo get dup dup /UnderlinePosition known { /UnderlinePosition get /vg&uoffset exch def } { pop /vg&uoffset 0 def } ifelse dup /UnderlineThickness known { /UnderlineThickness get /vg&uthick exch def } { pop /vg&uthick 0 def } ifelse } { pop /vg&uoffset 0 def /vg&uthick 0 def } ifelse /FontMatrix get currentfont dup /FontType get 0 eq {/FontMatrix get matrix concatmatrix}{pop} ifelse dup 0 vg&uoffset 3 -1 roll transform /vg&uoffset exch def pop 0 vg&uthick 3 -1 roll transform /vg&uthick exch def pop } def % Make a frame with the coordinates on the stack. % <llx> <lly> <urx> <ury> frame -- /frame {4 copy m 3 1 roll exch l 4 -2 roll l l h} def % Resets the accumulated bounding box to a degenerate box at the % current point. % -- resetbbox -- /resetbbox { currentpoint 2 copy /bbury exch def /bburx exch def /bblly exch def /bbllx exch def } def % Update the accumulated bounding box. % <llx'> <lly'> <urx'> <ury'> updatebbox -- /updatebbox { dup bbury gt {/bbury exch def} {pop} ifelse dup bburx gt {/bburx exch def} {pop} ifelse dup bblly lt {/bblly exch def} {pop} ifelse dup bbllx lt {/bbllx exch def} {pop} ifelse } def % Set the bounding box to the values on the stack. % <llx'> <lly'> <urx'> <ury'> updatebbox -- /restorebbox { /bbury exch def /bburx exch def /bblly exch def /bbllx exch def } def % Push the accumulated bounding box onto the stack. % -- pushbbox <llx> <lly> <urx> <ury> /pushbbox {bbllx bblly bburx bbury} def % Make the relative bounding box relative to the currentpoint. % <llx'> <lly'> <urx'> <ury'> inflate <llx> <lly> <urx> <ury> /inflate { 2 {fontsize 0.2 mul add 4 1 roll} repeat 2 {fontsize 0.2 mul sub 4 1 roll} repeat } def % Make the relative bounding box relative to the currentpoint. % <llx'> <lly'> <urx'> <ury'> relative <llx> <lly> <urx> <ury> /relative { currentpoint 3 -1 roll add 3 1 roll add exch 4 2 roll currentpoint 3 -1 roll add 3 1 roll add exch 4 2 roll } def % Returns the size of a string appropriate for recshow. % <string> stringsize <llx> <lly> <urx> <ury> /stringsize { pushbbox /internalshow load /internalstroke load 7 -1 roll q nulldevice 0 0 m nullinternalshow nullinternalstroke resetbbox recshow /internalstroke exch def /internalshow exch def pushbbox 8 -4 roll restorebbox Q } def % Calculate values for string positioning. /calcval {4 copy 3 -1 roll sub /widy exch def sub neg /widx exch def pop pop /dy exch def /dx exch def} def % Utilities to position a string. % First letter (U=upper, C=center, B=baseline, L=lower) % Second letter (L=left, C=center, R=right) /align [ {calcval dx neg widy dy add neg rmoveto} % UL {calcval dx neg widy 2 div dy add neg rmoveto} % CL {calcval dx neg 0 rmoveto} % BL {calcval dx neg dy neg rmoveto} % LL {calcval widx dx add neg widy dy add neg rmoveto} % UR {calcval widx dx add neg widy 2 div dy add neg rmoveto} % CR {calcval widx dx add neg 0 rmoveto} % BR {calcval widx dx add neg dy neg rmoveto} % LR {calcval widx 2 div dx add neg widy dy add neg rmoveto} % UC {calcval widx 2 div dx add neg widy 2 div dy add neg rmoveto} % CC {calcval widx 2 div dx add neg 0 rmoveto} % BC {calcval widx 2 div dx add neg dy neg rmoveto} % LC ] def /vg&str {m q 1 -1 scale dup stringsize 4 copy align 11 -1 roll get exec q inflate relative frame exch exec Q recshow Q} def end /procDict exch def %%EndProlog %%BeginSetup save procDict begin printColorMap begin 595 791 setpagesize 20 20 20 20 setmargins 0 0 setorigin 400 400 setsize fittopage portrait imagescale cliptobounds setbasematrix /Helvetica 10 sf defaultGraphicsState %%EndSetup 0 0 0 RG [ 1.00000 0 0 1.00000 0 0 ] defaultmatrix matrix concatmatrix setmatrix cliprestore 1.00000 1.00000 1.00000 RG newpath 0 0 m 400.000 0 l 400.000 400.000 l 0 400.000 l 0 0 l h f 0 0 0 RG 0 J 1 j [ 1.00000 0 0 1.00000 0 0 ] concat [ 1.00000 0 0 1.00000 0 0 ] concat q [ 1.00000 0 0 1.00000 5.00000 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12.4349 50.2187 13.1770 50.2187 13.9062 c h f Q [ 1.00000 0 0 1.00000 5.00000 5.00000 ] concat Q Q Q Q cliprestore 0 0 400 400 rc [ 1.00000 0 0 1.00000 0 0 ] concat [ 1.00000 0 0 1.00000 0 0 ] concat cliprestore 2 J 0 j end end restore showpage %%Trailer %%EOF %%EndDocument @endspecial 2008 x @beginspecial 0 @angle 30 @hscale 30 @vscale 240 @hoffset 1 @voffset @setspecial %%BeginDocument: omega2.eps %!PS-Adobe-3.0 EPSF-3.0 %%BoundingBox: 20 118 575 673 %%Creator: FreeHEP Graphics2D Driver %%Producer: com.maplesoft.mathdoc.view.plot.paint.PlotPSGraphics2D Revision: 12753 %%For: %%Title: %%CreationDate: Friday, October 21, 2011 9:58:56 PM IRST %%LanguageLevel: 3 %%EndComments %%BeginProlog 100 dict dup begin % % File: org/freehep/graphicsio.ps/PSProlog.txt % Author: Charles Loomis % % Redefinitions which save some space in the output file. These are also % the same as the PDF operators. /q {gsave} def /Q {grestore} def /n {newpath} def /m {moveto} def /l {lineto} def /c {curveto} def /h {closepath} def /re {4 -2 roll moveto dup 0 exch rlineto exch 0 rlineto neg 0 exch rlineto closepath} def /f {fill} def /f* {eofill} def /F {gsave vg&FC fill grestore} def /F* {gsave vg&FC eofill grestore} def /s {closepath stroke} def /S {stroke} def /b {closepath gsave vg&FC fill grestore gsave stroke grestore newpath} def /B {gsave vg&FC fill grestore gsave stroke grestore newpath} def /b* {closepath gsave vg&FC eofill grestore gsave stroke grestore newpath} def /B* {gsave vg&FC eofill grestore gsave stroke grestore newpath} def /g {1 array astore /vg&fcolor exch def} def /G {setgray} def /k {4 array astore /vg&fcolor exch def} def /K {setcmykcolor} def /rg {3 array astore /vg&fcolor exch def} def /RG {setrgbcolor} def % Initialize the fill color. 0 0 0 rg /vg&FC {mark vg&fcolor aload pop counttomark 1 eq {G} if counttomark 3 eq {RG} if counttomark 4 eq {K} if cleartomark } def /vg&DFC {/vg&fcolor exch def} def /vg&C {mark exch aload pop counttomark 1 eq {G} if counttomark 3 eq {RG} if counttomark 4 eq {K} if cleartomark } def /w {setlinewidth} def /j {setlinejoin} def /J {setlinecap} def /M {setmiterlimit} def /d {setdash} def /i {setflat} def /W {clip} def /W* {eoclip} def % Setup the default graphics state. % (black; 1 pt. linewidth; miter join; butt-ends; solid) /defaultGraphicsState {0 g 1 w 0 j 0 J [] 0 d} def % Emulation of the rectangle operators for PostScript implementations % which do not implement all Level 2 features. This is an INCOMPLETE % emulation; only the "x y width height rect..." form is emulated. /*rf {gsave newpath re fill grestore} def /*rs {gsave newpath re stroke grestore} def /*rc {newpath re clip} def /rf /rectfill where {pop /rectfill}{/*rf} ifelse load def /rs /rectstroke where {pop /rectstroke}{/*rs} ifelse load def /rc /rectclip where {pop /rectclip}{/*rc} ifelse load def % Emulation of the selectfont operator. This includes a 20% increase in % the fontsize which is necessary to get sizes similar to the Java fonts. /*sf {exch findfont exch dup type /arraytype eq {makefont}{scalefont} ifelse setfont} bind def /sf /selectfont where {pop {1.2 mul selectfont}}{{1.2 mul *sf}} ifelse def % Special version of stroke which allows the dash pattern to continue % across path segments. (This may be needed for PostScript although % modern printers seem to do this correctly.) /vg&stroke { currentdash pop length 0 eq {stroke} { currentdash /vg&doffset exch def pop flattenpath {m vg&resetdash} {2 copy currentpoint 3 -1 roll sub dup mul 3 1 roll sub dup mul add sqrt 3 1 roll l currentdash 3 -1 roll add setdash} {} {h vg&resetdash} pathforall stroke vg&resetdash } ifelse } def /vg&resetdash {currentdash pop vg&doffset setdash} def % Initialize variables for safety. /delta 0 def /xv 0 def /yv 0 def /width 0 def /height 0 def % Initialize to portrait INTERNATIONAL (Letter-height, A4-width) page. /pw 595 def /ph 791 def /po true def /ftp false def % Initialize margins to 20 points. /ml 20 def /mr 20 def /mt 20 def /mb 20 def % Temporary matrices. /smatrix 0 def /nmatrix 0 def % set page size (usage: <page width><page height> setpagesize) /setpagesize {/ph exch def /pw exch def} def % set page orientation (usage: portrait or landscape) /portrait {/po true def} def /landscape {/po false def} def % force natural size for image (usage: naturalsize) /naturalsize {/ftp false def} def % resize image to fill page (usage: fittopage) /fittopage {/ftp true def} def % set margins of the page (usage: <left><bottom><top><right> setmargins) /setmargins {/mr exch def /mt exch def /mb exch def /ml exch def} def % set the graphic's size (usage: <width><height> setsize) /setsize {/gh exch def /gw exch def} def % set the graphic's origin (usage: <x0><y0> setorigin) /setorigin {/gy exch def /gx exch def} def % calculate image center /imagecenter {pw ml sub mr sub 2 div ml add ph mt sub mb sub 2 div mb add} def % calculate the necessary scaling /imagescale {po {gw}{gh} ifelse pw ml sub mr sub div po {gh}{gw} ifelse ph mt sub mb sub div 2 copy lt {exch} if pop ftp not {1 2 copy lt {exch} if pop} if 1 exch div /sfactor exch def /gw gw sfactor mul def /gh gh sfactor mul def} def % calculate image origin /imageorigin {pw ml sub mr sub 2 div ml add po {gw}{gh} ifelse 2 div sub ph mt sub mb sub 2 div mb add po {gh}{gw} ifelse 2 div po {add}{sub} ifelse} def % calculate the clipping origin /cliporigin {pw ml sub mr sub 2 div ml add po {gw}{gh} ifelse 2 div sub floor ph mt sub mb sub 2 div mb add po {gh}{gw} ifelse 2 div sub floor} def % Set the clipping region to the bounding box. /cliptobounds {cliporigin po {gw}{gh} ifelse 1 add po {gh}{gw} ifelse 1 add rc} def % set the base transformation matrix (usage: setbasematrix) /setbasematrix {imageorigin translate po {0}{90} ifelse rotate sfactor sfactor neg scale /defaultmatrix matrix currentmatrix def} def % The lower-right bias in drawing 1 pt. wide lines. /bias {q 0.5 0.5 translate} def /unbias {Q} def % Draw a line. (x0 y0 x1 y1 line) /L {bias n m l S unbias} def % Polyline primitive. /polyline {n m 1 exch 1 exch {pop currentfile token pop currentfile token pop l} for } def % Draw a polyline (n x0 y0 OPL x1 y1 x2 y2 ... ... xn yn) /OPL {bias polyline S unbias} def % Draw a closed polyline (n x0 y0 CPL x1 y1 x2 y2 ... ... xn yn) /CPL {bias polyline s unbias} def % Draw a filled polyline (n x0 y0 FPL x1 y1 x2 y2 ... ... xn yn) /FPL {polyline h f*} def % Draw an oval. (x y w h OVL) /OVL {matrix currentmatrix /smatrix exch def /height exch def /width exch def /yv exch def /xv exch def width 2 div xv add height 2 div yv add translate width currentlinewidth sub 2 div height currentlinewidth sub 2 div neg scale n 0 0 1 5 -2 roll arc smatrix setmatrix S} def % Draw a filled oval. (x y w h FOVL) /FOVL {matrix currentmatrix /smatrix exch def /height exch def /width exch def /yv exch def /xv exch def width 2 div xv add height 2 div yv add translate width 2 div height 2 div neg scale n 0 0 m 0 0 1 5 -2 roll arc h smatrix setmatrix f} def % Draw a rounded rectangle. (x y w h arcwidth archeight RREC) /RREC {matrix currentmatrix /smatrix exch def 2 div /ah exch def 2 div /aw exch def /height exch def /width exch def /yv exch def /xv exch def aw ah scale matrix currentmatrix /nmatrix exch def smatrix setmatrix n xv width add aw sub yv m nmatrix setmatrix currentpoint exch 1 add exch currentpoint 1 add exch 1 add exch 1 arct smatrix setmatrix xv width add yv height add ah sub l nmatrix setmatrix currentpoint 1 add currentpoint exch 1 sub exch 1 add 1 arct smatrix setmatrix xv aw add yv height add l nmatrix setmatrix currentpoint exch 1 sub exch currentpoint exch 1 sub exch 1 sub 1 arct smatrix setmatrix xv yv ah add l nmatrix setmatrix currentpoint 1 sub currentpoint exch 1 add exch 1 sub 1 arct smatrix setmatrix s} def % Draw a filled rounded rectangle. (x y w h arcwidth archeight FRREC) /FRREC{matrix currentmatrix /smatrix exch def 2 div /ah exch def 2 div /aw exch def /height exch def /width exch def /yv exch def /xv exch def aw ah scale matrix currentmatrix /nmatrix exch def smatrix setmatrix n xv width add aw sub yv m nmatrix setmatrix currentpoint exch 1 add exch currentpoint 1 add exch 1 add exch 1 arct smatrix setmatrix xv width add yv height add ah sub l nmatrix setmatrix currentpoint 1 add currentpoint exch 1 sub exch 1 add 1 arct smatrix setmatrix xv aw add yv height add l nmatrix setmatrix currentpoint exch 1 sub exch currentpoint exch 1 sub exch 1 sub 1 arct smatrix setmatrix xv yv ah add l nmatrix setmatrix currentpoint 1 sub currentpoint exch 1 add exch 1 sub 1 arct smatrix setmatrix h f} def % Draw a string. (string x y STR) /STR {q m 1 -1 scale recshow Q} def % Define basic plot symbols. /xys {/siz exch def /yv exch def /xv exch def} def /hline {xys n xv siz 2. div sub yv m siz 0 rlineto S} def /vline {xys n xv yv siz 2. div sub m 0 siz rlineto S} def /plus {xys n xv yv siz 2. div sub m 0 siz rlineto xv siz 2. div sub yv m siz 0 rlineto S} def /dot {n 2. div 0 360 arc s} def /fdot {n 2. div 0 360 arc h f} def /box {xys n xv siz 2 sqrt div 2 div sub yv siz 2 sqrt div 2 div sub siz 2 sqrt div dup rs} def /fbox {xys n xv siz 2 sqrt div 2 div sub yv siz 2 sqrt div 2 div sub siz 2 sqrt div dup rf} def /tridn{xys n xv yv siz 3 sqrt div add m siz 2. div neg 3 sqrt 2. div siz mul neg rlineto siz 0 rlineto s} def /ftridn{xys n xv yv siz 3 sqrt div add m siz 2. div neg 3 sqrt 2. div siz mul neg rlineto siz 0 rlineto h f} def % Symbols defined in terms of the others. /star {3 copy cross plus} def /cross {xys q xv yv translate 45 rotate 0 0 siz plus Q} def /diamond {xys q xv yv translate 45 rotate 0 0 siz box Q} def /fdiamond {xys q xv yv translate 45 rotate 0 0 siz fbox Q} def /triup {xys q xv yv translate 180 rotate 0 0 siz tridn Q} def /ftriup {xys q xv yv translate 180 rotate 0 0 siz ftridn Q} def % Define the composite fonts used to print Unicode strings. % Undefine particular values in an encoding array. /vg&undef { {exch dup 3 -1 roll /.notdef put} forall } def /vg&redef { {3 -1 roll dup 4 2 roll put} forall } def % usage: key encoding basefontname vg&newbasefont font /vg&newbasefont { findfont dup length dict copy begin currentdict /FID undef /Encoding exch def dup /FontName exch def currentdict end definefont } def % usage: key encoding basefontname vg&newskewedbasefont font /vg&newskewedbasefont { findfont dup length dict copy begin currentdict /FID undef /Encoding exch def dup /FontName exch def exch FontMatrix exch matrix concatmatrix /FontMatrix exch def currentdict end definefont } def % usage: basekey suffix vg&nconcat name /vg&nconcat { 2 {dup length string cvs exch} repeat dup length 3 -1 roll dup length 3 -1 roll add string dup 0 4 -1 roll dup length 5 1 roll putinterval dup 4 -2 roll exch putinterval cvn } def %usage: fontname vg&skewmatrix matrix /vg&skewmatrix { findfont dup /FontInfo known { /FontInfo get dup /ItalicAngle known { [ 1 0 4 -1 roll /ItalicAngle get neg dup sin exch cos div 1 0 0 ] } {pop matrix} ifelse } {pop matrix} ifelse } def % usage: newfontname basefontname vg&newcompositefont -- /vg&newcompositefont { /vg&fstyle exch def /vg&bfont exch def /vg&fname exch def << /FontStyleBits vg&fstyle /FontType 0 /FontMatrix matrix /FontName vg&fname /FMapType 2 /Encoding [ 0 1 255 {pop 6} for ] dup 16#00 0 put % Latin dup 16#03 1 put % Greek dup 16#20 2 put % Punctuation dup 16#21 3 put % Arrows dup 16#22 4 put % MathOps dup 16#27 5 put % Dingbats /FDepVector [ vg&bfont /-UC-Latin vg&nconcat UCLatinEncoding vg&bfont vg&newbasefont vg&bfont vg&skewmatrix vg&bfont /-UC-Greek vg&nconcat UCGreekEncoding /Symbol vg&newskewedbasefont vg&bfont /-UC-Punctuation vg&nconcat UCPunctuationEncoding vg&bfont vg&newbasefont /Arrows-UC findfont /MathOps-UC findfont /Dingbats-UC findfont /Undefined-UC findfont ] >> vg&fname exch definefont pop } def % Null encoding vector (all elements set to .notdef) /NullEncoding [ 256 {/.notdef} repeat ] def % Unicode Latin encoding (unicode codes \u0000-\u00ff) /UCLatinEncoding ISOLatin1Encoding dup length array copy dup 16#60 /grave put [ 16#90 16#91 16#92 16#93 16#94 16#95 16#96 16#97 16#98 16#9a 16#9b 16#9d 16#9e 16#9f ] vg&undef def % Unicode Greek encoding (unicode codes \u0370-\u03ff) /UCGreekEncoding NullEncoding dup length array copy << 16#91 /Alpha 16#92 /Beta 16#93 /Gamma 16#94 /Delta 16#95 /Epsilon 16#96 /Zeta 16#97 /Eta 16#98 /Theta 16#99 /Iota 16#9a /Kappa 16#9b /Lambda 16#9c /Mu 16#9d /Nu 16#9e /Xi 16#9f /Omicron 16#a0 /Pi 16#a1 /Rho 16#a3 /Sigma 16#a4 /Tau 16#a5 /Upsilon 16#a6 /Phi 16#a7 /Chi 16#a8 /Psi 16#a9 /Omega 16#b1 /alpha 16#b2 /beta 16#b3 /gamma 16#b4 /delta 16#b5 /epsilon 16#b6 /zeta 16#b7 /eta 16#b8 /theta 16#b9 /iota 16#ba /kappa 16#bb /lambda 16#bc /mu 16#bd /nu 16#be /xi 16#bf /omicron 16#c0 /pi 16#c1 /rho 16#c2 /sigma1 16#c3 /sigma 16#c4 /tau 16#c5 /upsilon 16#c6 /phi1 16#c7 /chi 16#c8 /psi 16#c9 /omega 16#7e /semicolon 16#87 /dotmath 16#d1 /theta1 16#d2 /Upsilon1 16#d5 /phi 16#d6 /omega1 >> vg&redef def % Unicode punctuation encoding (unicode codes \u2000-\u206f) /UCPunctuationEncoding NullEncoding dup length array copy << 16#10 /hyphen 16#11 /hyphen 16#12 /endash 16#13 /emdash 16#18 /quoteleft 16#19 /quoteright 16#1a /quotesinglbase 16#1b /quotesingle 16#1c /quotedblleft 16#1d /quotedblright 16#1e /quotedblbase 16#1f /quotedbl 16#20 /dagger 16#21 /daggerdbl 16#22 /bullet 16#24 /period 16#26 /ellipsis 16#27 /periodcentered 16#30 /perthousand 16#44 /fraction 16#70 /zerosuperior 16#74 /foursuperior 16#75 /fivesuperior 16#76 /sixsuperior 16#77 /sevensuperior 16#78 /eightsuperior 16#79 /ninesuperior 16#7b /hyphensuperior 16#7d /parenleftsuperior 16#7e /parenrightsuperior 16#80 /zeroinferior 16#84 /fourinferior 16#85 /fiveinferior 16#81 /oneinferior 16#82 /twoinferior 16#83 /threeinferior 16#86 /sixinferior 16#87 /seveninferior 16#88 /eightinferior 16#89 /nineinferior 16#8b /hypheninferior 16#8d /parenleftinferior 16#8e /parenrightinferior >> vg&redef def % Unicode mathematical operators encoding (unicode codes \u2200-\u22ff) /UCMathOpsEncoding NullEncoding dup length array copy << 16#00 /universal 16#02 /partialdiff 16#03 /existential 16#05 /emptyset 16#06 /Delta 16#07 /gradient 16#08 /element 16#09 /notelement 16#0b /suchthat 16#0f /product 16#11 /summation 16#12 /minus 16#15 /fraction 16#17 /asteriskmath 16#19 /bullet 16#1a /radical 16#1d /proportional 16#1e /infinity 16#20 /angle 16#23 /bar 16#27 /logicaland 16#28 /logicalor 16#29 /intersection 16#2a /union 16#2b /integral 16#34 /therefore 16#36 /colon 16#3c /similar 16#45 /congruent 16#48 /approxequal 16#60 /notequal 16#61 /equivalence 16#64 /lessequal 16#65 /greaterequal 16#82 /propersubset 16#83 /propersuperset 16#86 /reflexsubset 16#87 /reflexsuperset 16#95 /circleplus 16#97 /circlemultiply 16#a5 /perpendicular 16#03 /existential 16#c0 /logicaland 16#c1 /logicalor 16#c2 /intersection 16#c3 /union 16#c4 /diamond 16#c5 /dotmath >> vg&redef def % Unicode arrows encoding (unicode codes \u2190-\u21ff) % Also includes those "Letterlike" unicode characters % which are available in the symbol font. (unicode codes \u2100-\u214f) /UCArrowsEncoding NullEncoding dup length array copy << 16#11 /Ifraktur 16#1c /Rfraktur 16#22 /trademarkserif 16#35 /aleph 16#90 /arrowleft 16#91 /arrowup 16#92 /arrowright 16#93 /arrowdown 16#94 /arrowboth 16#d0 /arrowdblleft 16#d1 /arrowdblup 16#d2 /arrowdblright 16#d3 /arrowdbldown 16#d4 /arrowdblboth >> vg&redef def /ZapfDingbats findfont /Encoding get dup length array copy /UCDingbatsEncoding exch def 16#20 1 16#7f { dup 16#20 sub exch UCDingbatsEncoding exch get UCDingbatsEncoding 3 1 roll put } for 16#a0 1 16#ff { dup 16#40 sub exch UCDingbatsEncoding exch get UCDingbatsEncoding 3 1 roll put } for UCDingbatsEncoding [ 16#c0 1 16#ff {} for ] vg&undef [ 16#00 16#05 16#0a 16#0b 16#28 16#4c 16#4e 16#53 16#54 16#55 16#57 16#5f 16#60 16#68 16#69 16#6a 16#6b 16#6c 16#6d 16#6e 16#6f 16#70 16#71 16#72 16#73 16#74 16#75 16#95 16#96 16#97 16#b0 16#bf ] vg&undef pop % Define the base fonts which don't change. /Undefined-UC NullEncoding /Helvetica vg&newbasefont pop /MathOps-UC UCMathOpsEncoding /Symbol vg&newbasefont pop /Arrows-UC UCArrowsEncoding /Symbol vg&newbasefont pop /Dingbats-UC UCDingbatsEncoding /ZapfDingbats vg&newbasefont pop % Make the SansSerif composite fonts. /SansSerif /Helvetica 16#00 vg&newcompositefont /SansSerif-Bold /Helvetica-Bold 16#01 vg&newcompositefont /SansSerif-Italic /Helvetica-Oblique 16#02 vg&newcompositefont /SansSerif-BoldItalic /Helvetica-BoldOblique 16#03 vg&newcompositefont % Make the Serif composite fonts. /Serif /Times-Roman 16#00 vg&newcompositefont /Serif-Bold /Times-Bold 16#01 vg&newcompositefont /Serif-Italic /Times-Italic 16#02 vg&newcompositefont /Serif-BoldItalic /Times-BoldItalic 16#03 vg&newcompositefont % Make the Monospaced composite fonts. /Monospaced /Courier 16#00 vg&newcompositefont /Monospaced-Bold /Courier-Bold 16#01 vg&newcompositefont /Monospaced-Italic /Courier-Oblique 16#02 vg&newcompositefont /Monospaced-BoldItalic /Courier-BoldOblique 16#03 vg&newcompositefont % Make the Dialog composite fonts. /Dialog /Helvetica 16#00 vg&newcompositefont /Dialog-Bold /Helvetica-Bold 16#01 vg&newcompositefont /Dialog-Italic /Helvetica-Oblique 16#02 vg&newcompositefont /Dialog-BoldItalic /Helvetica-BoldOblique 16#03 vg&newcompositefont % Make the DialogInput composite fonts. /DialogInput /Helvetica 16#00 vg&newcompositefont /DialogInput-Bold /Helvetica-Bold 16#01 vg&newcompositefont /DialogInput-Italic /Helvetica-Oblique 16#02 vg&newcompositefont /DialogInput-BoldItalic /Helvetica-BoldOblique 16#03 vg&newcompositefont % Make the Typewriter composite fonts (JDK 1.1 only). /Typewriter /Courier 16#00 vg&newcompositefont /Typewriter-Bold /Courier-Bold 16#01 vg&newcompositefont /Typewriter-Italic /Courier-Oblique 16#02 vg&newcompositefont /Typewriter-BoldItalic /Courier-BoldOblique 16#03 vg&newcompositefont /cfontH { dup /fontsize exch def /SansSerif exch sf /vg&fontstyles [{cfontH} {cfontHB} {cfontHI} {cfontHBI}] def } def /cfontHB { dup /fontsize exch def /SansSerif-Bold exch sf /vg&fontstyles [{cfontH} {cfontHB} {cfontHI} {cfontHBI}] def } def /cfontHI { dup /fontsize exch def /SansSerif-Italic exch sf /vg&fontstyles [{cfontH} {cfontHB} {cfontHI} {cfontHBI}] def } def /cfontHBI { dup /fontsize exch def /SansSerif-BoldItalic exch sf /vg&fontstyles [{cfontH} {cfontHB} {cfontHI} {cfontHBI}] def } def /cfontT { dup /fontsize exch def /Serif exch sf /vg&fontstyles [{cfontT} {cfontTB} {cfontTI} {cfontTBI}] def } def /cfontTB { dup /fontsize exch def /Serif-Bold exch sf /vg&fontstyles [{cfontT} {cfontTB} {cfontTI} {cfontTBI}] def } def /cfontTI { dup /fontsize exch def /Serif-Italic exch sf /vg&fontstyles [{cfontT} {cfontTB} {cfontTI} {cfontTBI}] def } def /cfontTBI { dup /fontsize exch def /Serif-BoldItalic exch sf /vg&fontstyles [{cfontT} {cfontTB} {cfontTI} {cfontTBI}] def } def /cfontC { dup /fontsize exch def /Typewriter exch sf /vg&fontstyles [{cfontC} {cfontCB} {cfontCI} {cfontCBI}] def } def /cfontCB { dup /fontsize exch def /Typewriter-Bold exch sf /vg&fontstyles [{cfontC} {cfontCB} {cfontCI} {cfontCBI}] def } def /cfontCI { dup /fontsize exch def /Typewriter-Italic exch sf /vg&fontstyles [{cfontC} {cfontCB} {cfontCI} {cfontCBI}] def } def /cfontCBI { dup /fontsize exch def /Typewriter-BoldItalic exch sf /vg&fontstyles [{cfontC} {cfontCB} {cfontCI} {cfontCBI}] def } def % Darken or lighten the current color. /darken {0.7 exch exp 3 copy q 4 -1 roll vg&C currentrgbcolor 3 {4 -2 roll mul} repeat 3 array astore Q} def /displayColorMap << /Cr [1.00 0.00 0.00] /Cg [0.00 1.00 0.00] /Cb [0.00 0.00 1.00] /Cc [1.00 0.00 0.00 0.00] /Cm [0.00 1.00 0.00 0.00] /Cy [0.00 0.00 1.00 0.00] /Co [1.00 0.78 0.00] /Cp [1.00 0.67 0.67] /Cw [1 ] /Cgrl [0.75] /Cgr [0.50] /Cgrd [0.25] /Ck [0 ] /CGr [1.00 0.00 0.00] /CGg [0.00 1.00 0.00] /CGb [0.00 0.00 1.00] /CGc [1.00 0.00 0.00 0.00] /CGm [0.00 1.00 0.00 0.00] /CGy [0.00 0.00 1.00 0.00] /CGo [1.00 0.78 0.00] /CGp [1.00 0.67 0.67] /CGw [1 ] /CGgrl [0.75] /CGgr [0.50] /CGgrd [0.25] /CGk [0 ] /CIr [1.00 0.00 0.00] /CIg [0.00 1.00 0.00] /CIb [0.00 0.00 1.00] /CIc [1.00 0.00 0.00 0.00] /CIm [0.00 1.00 0.00 0.00] /CIy [0.00 0.00 1.00 0.00] /CIo [1.00 0.78 0.00] /CIp [1.00 0.67 0.67] /CIw [1 ] /CIgrl [0.75] /CIgr [0.50] /CIgrd [0.25] /CIk [0 ] >> def /printColorMap << /Cr [1.00 0.33 0.33] /Cg [0.33 1.00 0.33] /Cb [0.33 0.33 1.00] /Cc [1.00 0.00 0.00 0.00] /Cm [0.00 1.00 0.00 0.00] /Cy [0.00 0.00 1.00 0.00] /Co [1.00 0.78 0.00] /Cp [1.00 0.67 0.67] /Cw [1 ] /Cgrl [0.75] /Cgr [0.50] /Cgrd [0.25] /Ck [0 ] /CGr [1.00 0.33 0.33] /CGg [0.33 1.00 0.33] /CGb [0.33 0.33 1.00] /CGc [1.00 0.00 0.00 0.00] /CGm [0.00 1.00 0.00 0.00] /CGy [0.00 0.00 1.00 0.00] /CGo [1.00 0.78 0.00] /CGp [1.00 0.67 0.67] /CGw [1 ] /CGgrl [0.75] /CGgr [0.50] /CGgrd [0.25] /CGk [0 ] /CIr [1.00 0.33 0.33] /CIg [0.33 1.00 0.33] /CIb [0.33 0.33 1.00] /CIc [1.00 0.00 0.00 0.00] /CIm [0.00 1.00 0.00 0.00] /CIy [0.00 0.00 1.00 0.00] /CIo [1.00 0.78 0.00] /CIp [1.00 0.67 0.67] /CIw [1 ] /CIgrl [0.75] /CIgr [0.50] /CIgrd [0.25] /CIk [0 ] >> def /grayColorMap << /Cr [0 ] /Cg [0 ] /Cb [0 ] /Cc [0 ] /Cm [0 ] /Cy [0 ] /Co [0 ] /Cp [0 ] /Cw [0 ] /Cgrl [0 ] /Cgr [0 ] /Cgrd [0 ] /Ck [0 ] /CGr [0.75] /CGg [1 ] /CGb [0.50] /CGc [0.75] /CGm [0.50] /CGy [1 ] /CGo [0.75] /CGp [1 ] /CGw [0 ] /CGgrl [0.25] /CGgr [0.50] /CGgrd [0.75] /CGk [1 ] /CIr [1 ] /CIg [1 ] /CIb [1 ] /CIc [1 ] /CIm [1 ] /CIy [1 ] /CIo [1 ] /CIp [1 ] /CIw [1 ] /CIgrl [1 ] /CIgr [1 ] /CIgrd [1 ] /CIk [1 ] >> def /bwColorMap << /Cr [0 ] /Cg [0 ] /Cb [0 ] /Cc [0 ] /Cm [0 ] /Cy [0 ] /Co [0 ] /Cp [0 ] /Cw [0 ] /Cgrl [0 ] /Cgr [0 ] /Cgrd [0 ] /Ck [0 ] /CGr [1 ] /CGg [1 ] /CGb [1 ] /CGc [1 ] /CGm [1 ] /CGy [1 ] /CGo [1 ] /CGp [1 ] /CGw [0 ] /CGgrl [1 ] /CGgr [1 ] /CGgrd [1 ] /CGk [1 ] /CIr [1 ] /CIg [1 ] /CIb [1 ] /CIc [1 ] /CIm [1 ] /CIy [1 ] /CIo [1 ] /CIp [1 ] /CIw [1 ] /CIgrl [1 ] /CIgr [1 ] /CIgrd [1 ] /CIk [1 ] >> def % % The following routines handle the alignment of and printing of % tagged strings. % % Predefine the bounding box values. /bbllx 0 def /bblly 0 def /bburx 0 def /bbury 0 def % This routine pops the first unicode character off of a string and returns % the remainder of the string, the character code of first character, % and a "true" if the string was non-zero length. % <string> popfirst <remaining string> <true> % <null string> popfirst <false> /popfirst { dup length 1 gt {dup 0 get /vg&fbyte exch def dup 1 get /vg&cbyte exch def dup length 2 sub 2 exch getinterval true} {pop false} ifelse } def % This routine shows a single unicode character given the font and % character codes. % <font code> <char code> unicharshow -- /unicharshow { 2 string dup 0 5 -1 roll put dup 1 4 -1 roll put internalshow } def % This is an internal routine to alternate between determining the % bounding box for stringsize and showing the string for recshow. % <string> internalshow -- /internalshow {show} def % This is an internal routine to alternate between determining the % bounding box for stringsize and stroking various ornaments. % <string> internalstroke -- /internalstroke {S} def % Sets up internalshow to use the null device to determine string size. % -- nullinternalshow -- /nullinternalshow {/internalshow {false charpath flattenpath pathbbox updatebbox} def} def % Sets up internalstroke to use the null device to determine string size. % -- nullinternalstroke -- /nullinternalstroke { /internalstroke {flattenpath pathbbox updatebbox} def} def % This routine tests to see if the character code matches the first % character of a string. % <char code> <string> testchar <char code> <true or false> /testchar {exch dup 3 -1 roll 0 get eq} def % Raise the text baseline for superscripts. % -- raise -- /raise { 0 fontsize 2 div rmoveto /fontsize fontsize 2 mul 3 div def currentfont /FontName get fontsize sf } def % Un-raise the text baseline for superscripts. % -- unraise -- /unraise { /fontsize fontsize 1.5 mul def 0 fontsize 2 div neg rmoveto } def % Lower the text baseline for subscripts. % -- lower -- /lower { 0 fontsize 3 div neg rmoveto /fontsize fontsize 2 mul 3 div def currentfont /FontName get fontsize sf } def % Un-lower the text baseline for subscripts. % -- unlower -- /unlower { /fontsize fontsize 1.5 mul def 0 fontsize 3 div rmoveto } def % Compare the top two elements on the stack and leave only the % larger one. /maxval {2 copy gt {pop} {exch pop} ifelse} def % Tokenize a string. Do not use the usual PostScript token because % parentheses will not be interpreted correctly because of rescanning % of the string. /vg&token {/vg&string exch def /vg&index -1 def /vg&level 0 def 0 2 vg&string length 2 sub { dup dup 1 add exch vg&string exch get 8 bitshift vg&string 3 -1 roll get or dup 16#f0fe eq {pop 1}{16#f0ff eq {-1}{0} ifelse} ifelse /vg&level exch vg&level add def vg&level 0 eq {/vg&index exch def exit} if pop } for vg&index 0 ge { vg&string vg&index 2 add dup vg&string length exch sub getinterval vg&index 2 gt {vg&string 2 vg&index 2 sub getinterval}{()} ifelse true} {false} ifelse } bind def % Recursively show an unicode string. % <string> recshow -- /recshow { popfirst { % Test to see if this is a string attribute. vg&fbyte 16#f0 and 16#e0 eq { q % Font style. currentfont dup /FontStyleBits known {/FontStyleBits get}{pop 0} ifelse vg&cbyte or vg&fontstyles exch get fontsize exch exec vg&token pop recshow currentpoint Q m recshow } { vg&fbyte 16#F8 and 16#F0 eq { % Superscript and/or subscript. vg&cbyte 16#00 eq { vg&token pop exch vg&token pop 3 -1 roll q raise recshow unraise currentpoint pop Q exch q lower recshow unlower currentpoint pop Q maxval currentpoint exch pop m recshow } if % Strikeout. vg&cbyte 16#01 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J vg&underline vg&uthick w currentpoint 4 -2 roll fontsize 3 div add moveto fontsize 3 div add lineto internalstroke Q recshow} if % Underline. vg&cbyte 16#02 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J vg&underline vg&uthick w currentpoint 4 -2 roll vg&uoffset add moveto vg&uoffset add lineto internalstroke Q recshow} if % Dashed underline. vg&cbyte 16#03 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J [ vg&uthick 5 mul vg&uthick 2 mul] 0 d vg&underline vg&uthick w currentpoint 4 -2 roll vg&uoffset add moveto vg&uoffset add lineto internalstroke Q recshow} if % Dotted underline. vg&cbyte 16#04 eq { vg&token pop currentpoint 3 -1 roll recshow q 1 J [ 0 vg&uthick 3 mul] 0 d vg&underline vg&uthick w currentpoint 4 -2 roll vg&uoffset add moveto vg&uoffset add lineto internalstroke Q recshow} if % Thick underline. vg&cbyte 16#05 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J vg&underline vg&uthick 2 mul w currentpoint 4 -2 roll vg&uoffset vg&uthick 2 div sub add moveto vg&uoffset vg&uthick 2 div sub add lineto internalstroke Q recshow} if % Gray thick underline. vg&cbyte 16#06 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J vg&underline vg&uthick 2 mul w 0.5 setgray currentpoint 4 -2 roll vg&uoffset vg&uthick 2 div sub add moveto vg&uoffset vg&uthick 2 div sub add lineto internalstroke Q recshow} if % Overbar. vg&cbyte 16#07 eq { vg&token pop dup stringsize relative 4 1 roll pop pop exch 3 -1 roll recshow q 0 J vg&underline vg&uthick w vg&uoffset neg add dup currentpoint pop exch m l internalstroke Q recshow} if } { vg&fbyte vg&cbyte unicharshow recshow } ifelse } ifelse } if } def % Get the underline position and thickness from the current font. /vg&underline { currentfont dup /FontType get 0 eq {/FDepVector get 0 get} if dup dup /FontInfo known { /FontInfo get dup dup /UnderlinePosition known { /UnderlinePosition get /vg&uoffset exch def } { pop /vg&uoffset 0 def } ifelse dup /UnderlineThickness known { /UnderlineThickness get /vg&uthick exch def } { pop /vg&uthick 0 def } ifelse } { pop /vg&uoffset 0 def /vg&uthick 0 def } ifelse /FontMatrix get currentfont dup /FontType get 0 eq {/FontMatrix get matrix concatmatrix}{pop} ifelse dup 0 vg&uoffset 3 -1 roll transform /vg&uoffset exch def pop 0 vg&uthick 3 -1 roll transform /vg&uthick exch def pop } def % Make a frame with the coordinates on the stack. % <llx> <lly> <urx> <ury> frame -- /frame {4 copy m 3 1 roll exch l 4 -2 roll l l h} def % Resets the accumulated bounding box to a degenerate box at the % current point. % -- resetbbox -- /resetbbox { currentpoint 2 copy /bbury exch def /bburx exch def /bblly exch def /bbllx exch def } def % Update the accumulated bounding box. % <llx'> <lly'> <urx'> <ury'> updatebbox -- /updatebbox { dup bbury gt {/bbury exch def} {pop} ifelse dup bburx gt {/bburx exch def} {pop} ifelse dup bblly lt {/bblly exch def} {pop} ifelse dup bbllx lt {/bbllx exch def} {pop} ifelse } def % Set the bounding box to the values on the stack. % <llx'> <lly'> <urx'> <ury'> updatebbox -- /restorebbox { /bbury exch def /bburx exch def /bblly exch def /bbllx exch def } def % Push the accumulated bounding box onto the stack. % -- pushbbox <llx> <lly> <urx> <ury> /pushbbox {bbllx bblly bburx bbury} def % Make the relative bounding box relative to the currentpoint. % <llx'> <lly'> <urx'> <ury'> inflate <llx> <lly> <urx> <ury> /inflate { 2 {fontsize 0.2 mul add 4 1 roll} repeat 2 {fontsize 0.2 mul sub 4 1 roll} repeat } def % Make the relative bounding box relative to the currentpoint. % <llx'> <lly'> <urx'> <ury'> relative <llx> <lly> <urx> <ury> /relative { currentpoint 3 -1 roll add 3 1 roll add exch 4 2 roll currentpoint 3 -1 roll add 3 1 roll add exch 4 2 roll } def % Returns the size of a string appropriate for recshow. % <string> stringsize <llx> <lly> <urx> <ury> /stringsize { pushbbox /internalshow load /internalstroke load 7 -1 roll q nulldevice 0 0 m nullinternalshow nullinternalstroke resetbbox recshow /internalstroke exch def /internalshow exch def pushbbox 8 -4 roll restorebbox Q } def % Calculate values for string positioning. /calcval {4 copy 3 -1 roll sub /widy exch def sub neg /widx exch def pop pop /dy exch def /dx exch def} def % Utilities to position a string. % First letter (U=upper, C=center, B=baseline, L=lower) % Second letter (L=left, C=center, R=right) /align [ {calcval dx neg widy dy add neg rmoveto} % UL {calcval dx neg widy 2 div dy add neg rmoveto} % CL {calcval dx neg 0 rmoveto} % BL {calcval dx neg dy neg rmoveto} % LL {calcval widx dx add neg widy dy add neg rmoveto} % UR {calcval widx dx add neg widy 2 div dy add neg rmoveto} % CR {calcval widx dx add 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These are also % the same as the PDF operators. /q {gsave} def /Q {grestore} def /n {newpath} def /m {moveto} def /l {lineto} def /c {curveto} def /h {closepath} def /re {4 -2 roll moveto dup 0 exch rlineto exch 0 rlineto neg 0 exch rlineto closepath} def /f {fill} def /f* {eofill} def /F {gsave vg&FC fill grestore} def /F* {gsave vg&FC eofill grestore} def /s {closepath stroke} def /S {stroke} def /b {closepath gsave vg&FC fill grestore gsave stroke grestore newpath} def /B {gsave vg&FC fill grestore gsave stroke grestore newpath} def /b* {closepath gsave vg&FC eofill grestore gsave stroke grestore newpath} def /B* {gsave vg&FC eofill grestore gsave stroke grestore newpath} def /g {1 array astore /vg&fcolor exch def} def /G {setgray} def /k {4 array astore /vg&fcolor exch def} def /K {setcmykcolor} def /rg {3 array astore /vg&fcolor exch def} def /RG {setrgbcolor} def % Initialize the fill color. 0 0 0 rg /vg&FC {mark vg&fcolor aload pop counttomark 1 eq {G} if counttomark 3 eq {RG} if counttomark 4 eq {K} if cleartomark } def /vg&DFC {/vg&fcolor exch def} def /vg&C {mark exch aload pop counttomark 1 eq {G} if counttomark 3 eq {RG} if counttomark 4 eq {K} if cleartomark } def /w {setlinewidth} def /j {setlinejoin} def /J {setlinecap} def /M {setmiterlimit} def /d {setdash} def /i {setflat} def /W {clip} def /W* {eoclip} def % Setup the default graphics state. % (black; 1 pt. linewidth; miter join; butt-ends; solid) /defaultGraphicsState {0 g 1 w 0 j 0 J [] 0 d} def % Emulation of the rectangle operators for PostScript implementations % which do not implement all Level 2 features. This is an INCOMPLETE % emulation; only the "x y width height rect..." form is emulated. /*rf {gsave newpath re fill grestore} def /*rs {gsave newpath re stroke grestore} def /*rc {newpath re clip} def /rf /rectfill where {pop /rectfill}{/*rf} ifelse load def /rs /rectstroke where {pop /rectstroke}{/*rs} ifelse load def /rc /rectclip where {pop /rectclip}{/*rc} ifelse load def % Emulation of the selectfont operator. This includes a 20% increase in % the fontsize which is necessary to get sizes similar to the Java fonts. /*sf {exch findfont exch dup type /arraytype eq {makefont}{scalefont} ifelse setfont} bind def /sf /selectfont where {pop {1.2 mul selectfont}}{{1.2 mul *sf}} ifelse def % Special version of stroke which allows the dash pattern to continue % across path segments. (This may be needed for PostScript although % modern printers seem to do this correctly.) /vg&stroke { currentdash pop length 0 eq {stroke} { currentdash /vg&doffset exch def pop flattenpath {m vg&resetdash} {2 copy currentpoint 3 -1 roll sub dup mul 3 1 roll sub dup mul add sqrt 3 1 roll l currentdash 3 -1 roll add setdash} {} {h vg&resetdash} pathforall stroke vg&resetdash } ifelse } def /vg&resetdash {currentdash pop vg&doffset setdash} def % Initialize variables for safety. /delta 0 def /xv 0 def /yv 0 def /width 0 def /height 0 def % Initialize to portrait INTERNATIONAL (Letter-height, A4-width) page. /pw 595 def /ph 791 def /po true def /ftp false def % Initialize margins to 20 points. /ml 20 def /mr 20 def /mt 20 def /mb 20 def % Temporary matrices. /smatrix 0 def /nmatrix 0 def % set page size (usage: <page width><page height> setpagesize) /setpagesize {/ph exch def /pw exch def} def % set page orientation (usage: portrait or landscape) /portrait {/po true def} def /landscape {/po false def} def % force natural size for image (usage: naturalsize) /naturalsize {/ftp false def} def % resize image to fill page (usage: fittopage) /fittopage {/ftp true def} def % set margins of the page (usage: <left><bottom><top><right> setmargins) /setmargins {/mr exch def /mt exch def /mb exch def /ml exch def} def % set the graphic's size (usage: <width><height> setsize) /setsize {/gh exch def /gw exch def} def % set the graphic's origin (usage: <x0><y0> setorigin) /setorigin {/gy exch def /gx exch def} def % calculate image center /imagecenter {pw ml sub mr sub 2 div ml add ph mt sub mb sub 2 div mb add} def % calculate the necessary scaling /imagescale {po {gw}{gh} ifelse pw ml sub mr sub div po {gh}{gw} ifelse ph mt sub mb sub div 2 copy lt {exch} if pop ftp not {1 2 copy lt {exch} if pop} if 1 exch div /sfactor exch def /gw gw sfactor mul def /gh gh sfactor mul def} def % calculate image origin /imageorigin {pw ml sub mr sub 2 div ml add po {gw}{gh} ifelse 2 div sub ph mt sub mb sub 2 div mb add po {gh}{gw} ifelse 2 div po {add}{sub} ifelse} def % calculate the clipping origin /cliporigin {pw ml sub mr sub 2 div ml add po {gw}{gh} ifelse 2 div sub floor ph mt sub mb sub 2 div mb add po {gh}{gw} ifelse 2 div sub floor} def % Set the clipping region to the bounding box. /cliptobounds {cliporigin po {gw}{gh} ifelse 1 add po {gh}{gw} ifelse 1 add rc} def % set the base transformation matrix (usage: setbasematrix) /setbasematrix {imageorigin translate po {0}{90} ifelse rotate sfactor sfactor neg scale /defaultmatrix matrix currentmatrix def} def % The lower-right bias in drawing 1 pt. wide lines. /bias {q 0.5 0.5 translate} def /unbias {Q} def % Draw a line. (x0 y0 x1 y1 line) /L {bias n m l S unbias} def % Polyline primitive. /polyline {n m 1 exch 1 exch {pop currentfile token pop currentfile token pop l} for } def % Draw a polyline (n x0 y0 OPL x1 y1 x2 y2 ... ... xn yn) /OPL {bias polyline S unbias} def % Draw a closed polyline (n x0 y0 CPL x1 y1 x2 y2 ... ... xn yn) /CPL {bias polyline s unbias} def % Draw a filled polyline (n x0 y0 FPL x1 y1 x2 y2 ... ... xn yn) /FPL {polyline h f*} def % Draw an oval. (x y w h OVL) /OVL {matrix currentmatrix /smatrix exch def /height exch def /width exch def /yv exch def /xv exch def width 2 div xv add height 2 div yv add translate width currentlinewidth sub 2 div height currentlinewidth sub 2 div neg scale n 0 0 1 5 -2 roll arc smatrix setmatrix S} def % Draw a filled oval. (x y w h FOVL) /FOVL {matrix currentmatrix /smatrix exch def /height exch def /width exch def /yv exch def /xv exch def width 2 div xv add height 2 div yv add translate width 2 div height 2 div neg scale n 0 0 m 0 0 1 5 -2 roll arc h smatrix setmatrix f} def % Draw a rounded rectangle. (x y w h arcwidth archeight RREC) /RREC {matrix currentmatrix /smatrix exch def 2 div /ah exch def 2 div /aw exch def /height exch def /width exch def /yv exch def /xv exch def aw ah scale matrix currentmatrix /nmatrix exch def smatrix setmatrix n xv width add aw sub yv m nmatrix setmatrix currentpoint exch 1 add exch currentpoint 1 add exch 1 add exch 1 arct smatrix setmatrix xv width add yv height add ah sub l nmatrix setmatrix currentpoint 1 add currentpoint exch 1 sub exch 1 add 1 arct smatrix setmatrix xv aw add yv height add l nmatrix setmatrix currentpoint exch 1 sub exch currentpoint exch 1 sub exch 1 sub 1 arct smatrix setmatrix xv yv ah add l nmatrix setmatrix currentpoint 1 sub currentpoint exch 1 add exch 1 sub 1 arct smatrix setmatrix s} def % Draw a filled rounded rectangle. (x y w h arcwidth archeight FRREC) /FRREC{matrix currentmatrix /smatrix exch def 2 div /ah exch def 2 div /aw exch def /height exch def /width exch def /yv exch def /xv exch def aw ah scale matrix currentmatrix /nmatrix exch def smatrix setmatrix n xv width add aw sub yv m nmatrix setmatrix currentpoint exch 1 add exch currentpoint 1 add exch 1 add exch 1 arct smatrix setmatrix xv width add yv height add ah sub l nmatrix setmatrix currentpoint 1 add currentpoint exch 1 sub exch 1 add 1 arct smatrix setmatrix xv aw add yv height add l nmatrix setmatrix currentpoint exch 1 sub exch currentpoint exch 1 sub exch 1 sub 1 arct smatrix setmatrix xv yv ah add l nmatrix setmatrix currentpoint 1 sub currentpoint exch 1 add exch 1 sub 1 arct smatrix setmatrix h f} def % Draw a string. (string x y STR) /STR {q m 1 -1 scale recshow Q} def % Define basic plot symbols. /xys {/siz exch def /yv exch def /xv exch def} def /hline {xys n xv siz 2. div sub yv m siz 0 rlineto S} def /vline {xys n xv yv siz 2. div sub m 0 siz rlineto S} def /plus {xys n xv yv siz 2. div sub m 0 siz rlineto xv siz 2. div sub yv m siz 0 rlineto S} def /dot {n 2. div 0 360 arc s} def /fdot {n 2. div 0 360 arc h f} def /box {xys n xv siz 2 sqrt div 2 div sub yv siz 2 sqrt div 2 div sub siz 2 sqrt div dup rs} def /fbox {xys n xv siz 2 sqrt div 2 div sub yv siz 2 sqrt div 2 div sub siz 2 sqrt div dup rf} def /tridn{xys n xv yv siz 3 sqrt div add m siz 2. div neg 3 sqrt 2. div siz mul neg rlineto siz 0 rlineto s} def /ftridn{xys n xv yv siz 3 sqrt div add m siz 2. div neg 3 sqrt 2. div siz mul neg rlineto siz 0 rlineto h f} def % Symbols defined in terms of the others. /star {3 copy cross plus} def /cross {xys q xv yv translate 45 rotate 0 0 siz plus Q} def /diamond {xys q xv yv translate 45 rotate 0 0 siz box Q} def /fdiamond {xys q xv yv translate 45 rotate 0 0 siz fbox Q} def /triup {xys q xv yv translate 180 rotate 0 0 siz tridn Q} def /ftriup {xys q xv yv translate 180 rotate 0 0 siz ftridn Q} def % Define the composite fonts used to print Unicode strings. % Undefine particular values in an encoding array. /vg&undef { {exch dup 3 -1 roll /.notdef put} forall } def /vg&redef { {3 -1 roll dup 4 2 roll put} forall } def % usage: key encoding basefontname vg&newbasefont font /vg&newbasefont { findfont dup length dict copy begin currentdict /FID undef /Encoding exch def dup /FontName exch def currentdict end definefont } def % usage: key encoding basefontname vg&newskewedbasefont font /vg&newskewedbasefont { findfont dup length dict copy begin currentdict /FID undef /Encoding exch def dup /FontName exch def exch FontMatrix exch matrix concatmatrix /FontMatrix exch def currentdict end definefont } def % usage: basekey suffix vg&nconcat name /vg&nconcat { 2 {dup length string cvs exch} repeat dup length 3 -1 roll dup length 3 -1 roll add string dup 0 4 -1 roll dup length 5 1 roll putinterval dup 4 -2 roll exch putinterval cvn } def %usage: fontname vg&skewmatrix matrix /vg&skewmatrix { findfont dup /FontInfo known { /FontInfo get dup /ItalicAngle known { [ 1 0 4 -1 roll /ItalicAngle get neg dup sin exch cos div 1 0 0 ] } {pop matrix} ifelse } {pop matrix} ifelse } def % usage: newfontname basefontname vg&newcompositefont -- /vg&newcompositefont { /vg&fstyle exch def /vg&bfont exch def /vg&fname exch def << /FontStyleBits vg&fstyle /FontType 0 /FontMatrix matrix /FontName vg&fname /FMapType 2 /Encoding [ 0 1 255 {pop 6} for ] dup 16#00 0 put % Latin dup 16#03 1 put % Greek dup 16#20 2 put % Punctuation dup 16#21 3 put % Arrows dup 16#22 4 put % MathOps dup 16#27 5 put % Dingbats /FDepVector [ vg&bfont /-UC-Latin vg&nconcat UCLatinEncoding vg&bfont vg&newbasefont vg&bfont vg&skewmatrix vg&bfont /-UC-Greek vg&nconcat UCGreekEncoding /Symbol vg&newskewedbasefont vg&bfont /-UC-Punctuation vg&nconcat UCPunctuationEncoding vg&bfont vg&newbasefont /Arrows-UC findfont /MathOps-UC findfont /Dingbats-UC findfont /Undefined-UC findfont ] >> vg&fname exch definefont pop } def % Null encoding vector (all elements set to .notdef) /NullEncoding [ 256 {/.notdef} repeat ] def % Unicode Latin encoding (unicode codes \u0000-\u00ff) /UCLatinEncoding ISOLatin1Encoding dup length array copy dup 16#60 /grave put [ 16#90 16#91 16#92 16#93 16#94 16#95 16#96 16#97 16#98 16#9a 16#9b 16#9d 16#9e 16#9f ] vg&undef def % Unicode Greek encoding (unicode codes \u0370-\u03ff) /UCGreekEncoding NullEncoding dup length array copy << 16#91 /Alpha 16#92 /Beta 16#93 /Gamma 16#94 /Delta 16#95 /Epsilon 16#96 /Zeta 16#97 /Eta 16#98 /Theta 16#99 /Iota 16#9a /Kappa 16#9b /Lambda 16#9c /Mu 16#9d /Nu 16#9e /Xi 16#9f /Omicron 16#a0 /Pi 16#a1 /Rho 16#a3 /Sigma 16#a4 /Tau 16#a5 /Upsilon 16#a6 /Phi 16#a7 /Chi 16#a8 /Psi 16#a9 /Omega 16#b1 /alpha 16#b2 /beta 16#b3 /gamma 16#b4 /delta 16#b5 /epsilon 16#b6 /zeta 16#b7 /eta 16#b8 /theta 16#b9 /iota 16#ba /kappa 16#bb /lambda 16#bc /mu 16#bd /nu 16#be /xi 16#bf /omicron 16#c0 /pi 16#c1 /rho 16#c2 /sigma1 16#c3 /sigma 16#c4 /tau 16#c5 /upsilon 16#c6 /phi1 16#c7 /chi 16#c8 /psi 16#c9 /omega 16#7e /semicolon 16#87 /dotmath 16#d1 /theta1 16#d2 /Upsilon1 16#d5 /phi 16#d6 /omega1 >> vg&redef def % Unicode punctuation encoding (unicode codes \u2000-\u206f) /UCPunctuationEncoding NullEncoding dup length array copy << 16#10 /hyphen 16#11 /hyphen 16#12 /endash 16#13 /emdash 16#18 /quoteleft 16#19 /quoteright 16#1a /quotesinglbase 16#1b /quotesingle 16#1c /quotedblleft 16#1d /quotedblright 16#1e /quotedblbase 16#1f /quotedbl 16#20 /dagger 16#21 /daggerdbl 16#22 /bullet 16#24 /period 16#26 /ellipsis 16#27 /periodcentered 16#30 /perthousand 16#44 /fraction 16#70 /zerosuperior 16#74 /foursuperior 16#75 /fivesuperior 16#76 /sixsuperior 16#77 /sevensuperior 16#78 /eightsuperior 16#79 /ninesuperior 16#7b /hyphensuperior 16#7d /parenleftsuperior 16#7e /parenrightsuperior 16#80 /zeroinferior 16#84 /fourinferior 16#85 /fiveinferior 16#81 /oneinferior 16#82 /twoinferior 16#83 /threeinferior 16#86 /sixinferior 16#87 /seveninferior 16#88 /eightinferior 16#89 /nineinferior 16#8b /hypheninferior 16#8d /parenleftinferior 16#8e /parenrightinferior >> vg&redef def % Unicode mathematical operators encoding (unicode codes \u2200-\u22ff) /UCMathOpsEncoding NullEncoding dup length array copy << 16#00 /universal 16#02 /partialdiff 16#03 /existential 16#05 /emptyset 16#06 /Delta 16#07 /gradient 16#08 /element 16#09 /notelement 16#0b /suchthat 16#0f /product 16#11 /summation 16#12 /minus 16#15 /fraction 16#17 /asteriskmath 16#19 /bullet 16#1a /radical 16#1d /proportional 16#1e /infinity 16#20 /angle 16#23 /bar 16#27 /logicaland 16#28 /logicalor 16#29 /intersection 16#2a /union 16#2b /integral 16#34 /therefore 16#36 /colon 16#3c /similar 16#45 /congruent 16#48 /approxequal 16#60 /notequal 16#61 /equivalence 16#64 /lessequal 16#65 /greaterequal 16#82 /propersubset 16#83 /propersuperset 16#86 /reflexsubset 16#87 /reflexsuperset 16#95 /circleplus 16#97 /circlemultiply 16#a5 /perpendicular 16#03 /existential 16#c0 /logicaland 16#c1 /logicalor 16#c2 /intersection 16#c3 /union 16#c4 /diamond 16#c5 /dotmath >> vg&redef def % Unicode arrows encoding (unicode codes \u2190-\u21ff) % Also includes those "Letterlike" unicode characters % which are available in the symbol font. (unicode codes \u2100-\u214f) /UCArrowsEncoding NullEncoding dup length array copy << 16#11 /Ifraktur 16#1c /Rfraktur 16#22 /trademarkserif 16#35 /aleph 16#90 /arrowleft 16#91 /arrowup 16#92 /arrowright 16#93 /arrowdown 16#94 /arrowboth 16#d0 /arrowdblleft 16#d1 /arrowdblup 16#d2 /arrowdblright 16#d3 /arrowdbldown 16#d4 /arrowdblboth >> vg&redef def /ZapfDingbats findfont /Encoding get dup length array copy /UCDingbatsEncoding exch def 16#20 1 16#7f { dup 16#20 sub exch UCDingbatsEncoding exch get UCDingbatsEncoding 3 1 roll put } for 16#a0 1 16#ff { dup 16#40 sub exch UCDingbatsEncoding exch get UCDingbatsEncoding 3 1 roll put } for UCDingbatsEncoding [ 16#c0 1 16#ff {} for ] vg&undef [ 16#00 16#05 16#0a 16#0b 16#28 16#4c 16#4e 16#53 16#54 16#55 16#57 16#5f 16#60 16#68 16#69 16#6a 16#6b 16#6c 16#6d 16#6e 16#6f 16#70 16#71 16#72 16#73 16#74 16#75 16#95 16#96 16#97 16#b0 16#bf ] vg&undef pop % Define the base fonts which don't change. /Undefined-UC NullEncoding /Helvetica vg&newbasefont pop /MathOps-UC UCMathOpsEncoding /Symbol vg&newbasefont pop /Arrows-UC UCArrowsEncoding /Symbol vg&newbasefont pop /Dingbats-UC UCDingbatsEncoding /ZapfDingbats vg&newbasefont pop % Make the SansSerif composite fonts. /SansSerif /Helvetica 16#00 vg&newcompositefont /SansSerif-Bold /Helvetica-Bold 16#01 vg&newcompositefont /SansSerif-Italic /Helvetica-Oblique 16#02 vg&newcompositefont /SansSerif-BoldItalic /Helvetica-BoldOblique 16#03 vg&newcompositefont % Make the Serif composite fonts. /Serif /Times-Roman 16#00 vg&newcompositefont /Serif-Bold /Times-Bold 16#01 vg&newcompositefont /Serif-Italic /Times-Italic 16#02 vg&newcompositefont /Serif-BoldItalic /Times-BoldItalic 16#03 vg&newcompositefont % Make the Monospaced composite fonts. /Monospaced /Courier 16#00 vg&newcompositefont /Monospaced-Bold /Courier-Bold 16#01 vg&newcompositefont /Monospaced-Italic /Courier-Oblique 16#02 vg&newcompositefont /Monospaced-BoldItalic /Courier-BoldOblique 16#03 vg&newcompositefont % Make the Dialog composite fonts. /Dialog /Helvetica 16#00 vg&newcompositefont /Dialog-Bold /Helvetica-Bold 16#01 vg&newcompositefont /Dialog-Italic /Helvetica-Oblique 16#02 vg&newcompositefont /Dialog-BoldItalic /Helvetica-BoldOblique 16#03 vg&newcompositefont % Make the DialogInput composite fonts. /DialogInput /Helvetica 16#00 vg&newcompositefont /DialogInput-Bold /Helvetica-Bold 16#01 vg&newcompositefont /DialogInput-Italic /Helvetica-Oblique 16#02 vg&newcompositefont /DialogInput-BoldItalic /Helvetica-BoldOblique 16#03 vg&newcompositefont % Make the Typewriter composite fonts (JDK 1.1 only). /Typewriter /Courier 16#00 vg&newcompositefont /Typewriter-Bold /Courier-Bold 16#01 vg&newcompositefont /Typewriter-Italic /Courier-Oblique 16#02 vg&newcompositefont /Typewriter-BoldItalic /Courier-BoldOblique 16#03 vg&newcompositefont /cfontH { dup /fontsize exch def /SansSerif exch sf /vg&fontstyles [{cfontH} {cfontHB} {cfontHI} {cfontHBI}] def } def /cfontHB { dup /fontsize exch def /SansSerif-Bold exch sf /vg&fontstyles [{cfontH} {cfontHB} {cfontHI} {cfontHBI}] def } def /cfontHI { dup /fontsize exch def /SansSerif-Italic exch sf /vg&fontstyles [{cfontH} {cfontHB} {cfontHI} {cfontHBI}] def } def /cfontHBI { dup /fontsize exch def /SansSerif-BoldItalic exch sf /vg&fontstyles [{cfontH} {cfontHB} {cfontHI} {cfontHBI}] def } def /cfontT { dup /fontsize exch def /Serif exch sf /vg&fontstyles [{cfontT} {cfontTB} {cfontTI} {cfontTBI}] def } def /cfontTB { dup /fontsize exch def /Serif-Bold exch sf /vg&fontstyles [{cfontT} {cfontTB} {cfontTI} {cfontTBI}] def } def /cfontTI { dup /fontsize exch def /Serif-Italic exch sf /vg&fontstyles [{cfontT} {cfontTB} {cfontTI} {cfontTBI}] def } def /cfontTBI { dup /fontsize exch def /Serif-BoldItalic exch sf /vg&fontstyles [{cfontT} {cfontTB} {cfontTI} {cfontTBI}] def } def /cfontC { dup /fontsize exch def /Typewriter exch sf /vg&fontstyles [{cfontC} {cfontCB} {cfontCI} {cfontCBI}] def } def /cfontCB { dup /fontsize exch def /Typewriter-Bold exch sf /vg&fontstyles [{cfontC} {cfontCB} {cfontCI} {cfontCBI}] def } def /cfontCI { dup /fontsize exch def /Typewriter-Italic exch sf /vg&fontstyles [{cfontC} {cfontCB} {cfontCI} {cfontCBI}] def } def /cfontCBI { dup /fontsize exch def /Typewriter-BoldItalic exch sf /vg&fontstyles [{cfontC} {cfontCB} {cfontCI} {cfontCBI}] def } def % Darken or lighten the current color. /darken {0.7 exch exp 3 copy q 4 -1 roll vg&C currentrgbcolor 3 {4 -2 roll mul} repeat 3 array astore Q} def /displayColorMap << /Cr [1.00 0.00 0.00] /Cg [0.00 1.00 0.00] /Cb [0.00 0.00 1.00] /Cc [1.00 0.00 0.00 0.00] /Cm [0.00 1.00 0.00 0.00] /Cy [0.00 0.00 1.00 0.00] /Co [1.00 0.78 0.00] /Cp [1.00 0.67 0.67] /Cw [1 ] /Cgrl [0.75] /Cgr [0.50] /Cgrd [0.25] /Ck [0 ] /CGr [1.00 0.00 0.00] /CGg [0.00 1.00 0.00] /CGb [0.00 0.00 1.00] /CGc [1.00 0.00 0.00 0.00] /CGm [0.00 1.00 0.00 0.00] /CGy [0.00 0.00 1.00 0.00] /CGo [1.00 0.78 0.00] /CGp [1.00 0.67 0.67] /CGw [1 ] /CGgrl [0.75] /CGgr [0.50] /CGgrd [0.25] /CGk [0 ] /CIr [1.00 0.00 0.00] /CIg [0.00 1.00 0.00] /CIb [0.00 0.00 1.00] /CIc [1.00 0.00 0.00 0.00] /CIm [0.00 1.00 0.00 0.00] /CIy [0.00 0.00 1.00 0.00] /CIo [1.00 0.78 0.00] /CIp [1.00 0.67 0.67] /CIw [1 ] /CIgrl [0.75] /CIgr [0.50] /CIgrd [0.25] /CIk [0 ] >> def /printColorMap << /Cr [1.00 0.33 0.33] /Cg [0.33 1.00 0.33] /Cb [0.33 0.33 1.00] /Cc [1.00 0.00 0.00 0.00] /Cm [0.00 1.00 0.00 0.00] /Cy [0.00 0.00 1.00 0.00] /Co [1.00 0.78 0.00] /Cp [1.00 0.67 0.67] /Cw [1 ] /Cgrl [0.75] /Cgr [0.50] /Cgrd [0.25] /Ck [0 ] /CGr [1.00 0.33 0.33] /CGg [0.33 1.00 0.33] /CGb [0.33 0.33 1.00] /CGc [1.00 0.00 0.00 0.00] /CGm [0.00 1.00 0.00 0.00] /CGy [0.00 0.00 1.00 0.00] /CGo [1.00 0.78 0.00] /CGp [1.00 0.67 0.67] /CGw [1 ] /CGgrl [0.75] /CGgr [0.50] /CGgrd [0.25] /CGk [0 ] /CIr [1.00 0.33 0.33] /CIg [0.33 1.00 0.33] /CIb [0.33 0.33 1.00] /CIc [1.00 0.00 0.00 0.00] /CIm [0.00 1.00 0.00 0.00] /CIy [0.00 0.00 1.00 0.00] /CIo [1.00 0.78 0.00] /CIp [1.00 0.67 0.67] /CIw [1 ] /CIgrl [0.75] /CIgr [0.50] /CIgrd [0.25] /CIk [0 ] >> def /grayColorMap << /Cr [0 ] /Cg [0 ] /Cb [0 ] /Cc [0 ] /Cm [0 ] /Cy [0 ] /Co [0 ] /Cp [0 ] /Cw [0 ] /Cgrl [0 ] /Cgr [0 ] /Cgrd [0 ] /Ck [0 ] /CGr [0.75] /CGg [1 ] /CGb [0.50] /CGc [0.75] /CGm [0.50] /CGy [1 ] /CGo [0.75] /CGp [1 ] /CGw [0 ] /CGgrl [0.25] /CGgr [0.50] /CGgrd [0.75] /CGk [1 ] /CIr [1 ] /CIg [1 ] /CIb [1 ] /CIc [1 ] /CIm [1 ] /CIy [1 ] /CIo [1 ] /CIp [1 ] /CIw [1 ] /CIgrl [1 ] /CIgr [1 ] /CIgrd [1 ] /CIk [1 ] >> def /bwColorMap << /Cr [0 ] /Cg [0 ] /Cb [0 ] /Cc [0 ] /Cm [0 ] /Cy [0 ] /Co [0 ] /Cp [0 ] /Cw [0 ] /Cgrl [0 ] /Cgr [0 ] /Cgrd [0 ] /Ck [0 ] /CGr [1 ] /CGg [1 ] /CGb [1 ] /CGc [1 ] /CGm [1 ] /CGy [1 ] /CGo [1 ] /CGp [1 ] /CGw [0 ] /CGgrl [1 ] /CGgr [1 ] /CGgrd [1 ] /CGk [1 ] /CIr [1 ] /CIg [1 ] /CIb [1 ] /CIc [1 ] /CIm [1 ] /CIy [1 ] /CIo [1 ] /CIp [1 ] /CIw [1 ] /CIgrl [1 ] /CIgr [1 ] /CIgrd [1 ] /CIk [1 ] >> def % % The following routines handle the alignment of and printing of % tagged strings. % % Predefine the bounding box values. /bbllx 0 def /bblly 0 def /bburx 0 def /bbury 0 def % This routine pops the first unicode character off of a string and returns % the remainder of the string, the character code of first character, % and a "true" if the string was non-zero length. % <string> popfirst <remaining string> <true> % <null string> popfirst <false> /popfirst { dup length 1 gt {dup 0 get /vg&fbyte exch def dup 1 get /vg&cbyte exch def dup length 2 sub 2 exch getinterval true} {pop false} ifelse } def % This routine shows a single unicode character given the font and % character codes. % <font code> <char code> unicharshow -- /unicharshow { 2 string dup 0 5 -1 roll put dup 1 4 -1 roll put internalshow } def % This is an internal routine to alternate between determining the % bounding box for stringsize and showing the string for recshow. % <string> internalshow -- /internalshow {show} def % This is an internal routine to alternate between determining the % bounding box for stringsize and stroking various ornaments. % <string> internalstroke -- /internalstroke {S} def % Sets up internalshow to use the null device to determine string size. % -- nullinternalshow -- /nullinternalshow {/internalshow {false charpath flattenpath pathbbox updatebbox} def} def % Sets up internalstroke to use the null device to determine string size. % -- nullinternalstroke -- /nullinternalstroke { /internalstroke {flattenpath pathbbox updatebbox} def} def % This routine tests to see if the character code matches the first % character of a string. % <char code> <string> testchar <char code> <true or false> /testchar {exch dup 3 -1 roll 0 get eq} def % Raise the text baseline for superscripts. % -- raise -- /raise { 0 fontsize 2 div rmoveto /fontsize fontsize 2 mul 3 div def currentfont /FontName get fontsize sf } def % Un-raise the text baseline for superscripts. % -- unraise -- /unraise { /fontsize fontsize 1.5 mul def 0 fontsize 2 div neg rmoveto } def % Lower the text baseline for subscripts. % -- lower -- /lower { 0 fontsize 3 div neg rmoveto /fontsize fontsize 2 mul 3 div def currentfont /FontName get fontsize sf } def % Un-lower the text baseline for subscripts. % -- unlower -- /unlower { /fontsize fontsize 1.5 mul def 0 fontsize 3 div rmoveto } def % Compare the top two elements on the stack and leave only the % larger one. /maxval {2 copy gt {pop} {exch pop} ifelse} def % Tokenize a string. Do not use the usual PostScript token because % parentheses will not be interpreted correctly because of rescanning % of the string. /vg&token {/vg&string exch def /vg&index -1 def /vg&level 0 def 0 2 vg&string length 2 sub { dup dup 1 add exch vg&string exch get 8 bitshift vg&string 3 -1 roll get or dup 16#f0fe eq {pop 1}{16#f0ff eq {-1}{0} ifelse} ifelse /vg&level exch vg&level add def vg&level 0 eq {/vg&index exch def exit} if pop } for vg&index 0 ge { vg&string vg&index 2 add dup vg&string length exch sub getinterval vg&index 2 gt {vg&string 2 vg&index 2 sub getinterval}{()} ifelse true} {false} ifelse } bind def % Recursively show an unicode string. % <string> recshow -- /recshow { popfirst { % Test to see if this is a string attribute. vg&fbyte 16#f0 and 16#e0 eq { q % Font style. currentfont dup /FontStyleBits known {/FontStyleBits get}{pop 0} ifelse vg&cbyte or vg&fontstyles exch get fontsize exch exec vg&token pop recshow currentpoint Q m recshow } { vg&fbyte 16#F8 and 16#F0 eq { % Superscript and/or subscript. vg&cbyte 16#00 eq { vg&token pop exch vg&token pop 3 -1 roll q raise recshow unraise currentpoint pop Q exch q lower recshow unlower currentpoint pop Q maxval currentpoint exch pop m recshow } if % Strikeout. vg&cbyte 16#01 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J vg&underline vg&uthick w currentpoint 4 -2 roll fontsize 3 div add moveto fontsize 3 div add lineto internalstroke Q recshow} if % Underline. vg&cbyte 16#02 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J vg&underline vg&uthick w currentpoint 4 -2 roll vg&uoffset add moveto vg&uoffset add lineto internalstroke Q recshow} if % Dashed underline. vg&cbyte 16#03 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J [ vg&uthick 5 mul vg&uthick 2 mul] 0 d vg&underline vg&uthick w currentpoint 4 -2 roll vg&uoffset add moveto vg&uoffset add lineto internalstroke Q recshow} if % Dotted underline. vg&cbyte 16#04 eq { vg&token pop currentpoint 3 -1 roll recshow q 1 J [ 0 vg&uthick 3 mul] 0 d vg&underline vg&uthick w currentpoint 4 -2 roll vg&uoffset add moveto vg&uoffset add lineto internalstroke Q recshow} if % Thick underline. vg&cbyte 16#05 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J vg&underline vg&uthick 2 mul w currentpoint 4 -2 roll vg&uoffset vg&uthick 2 div sub add moveto vg&uoffset vg&uthick 2 div sub add lineto internalstroke Q recshow} if % Gray thick underline. vg&cbyte 16#06 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J vg&underline vg&uthick 2 mul w 0.5 setgray currentpoint 4 -2 roll vg&uoffset vg&uthick 2 div sub add moveto vg&uoffset vg&uthick 2 div sub add lineto internalstroke Q recshow} if % Overbar. vg&cbyte 16#07 eq { vg&token pop dup stringsize relative 4 1 roll pop pop exch 3 -1 roll recshow q 0 J vg&underline vg&uthick w vg&uoffset neg add dup currentpoint pop exch m l internalstroke Q recshow} if } { vg&fbyte vg&cbyte unicharshow recshow } ifelse } ifelse } if } def % Get the underline position and thickness from the current font. /vg&underline { currentfont dup /FontType get 0 eq {/FDepVector get 0 get} if dup dup /FontInfo known { /FontInfo get dup dup /UnderlinePosition known { /UnderlinePosition get /vg&uoffset exch def } { pop /vg&uoffset 0 def } ifelse dup /UnderlineThickness known { /UnderlineThickness get /vg&uthick exch def } { pop /vg&uthick 0 def } ifelse } { pop /vg&uoffset 0 def /vg&uthick 0 def } ifelse /FontMatrix get currentfont dup /FontType get 0 eq {/FontMatrix get matrix concatmatrix}{pop} ifelse dup 0 vg&uoffset 3 -1 roll transform /vg&uoffset exch def pop 0 vg&uthick 3 -1 roll transform /vg&uthick exch def pop } def % Make a frame with the coordinates on the stack. % <llx> <lly> <urx> <ury> frame -- /frame {4 copy m 3 1 roll exch l 4 -2 roll l l h} def % Resets the accumulated bounding box to a degenerate box at the % current point. % -- resetbbox -- /resetbbox { currentpoint 2 copy /bbury exch def /bburx exch def /bblly exch def /bbllx exch def } def % Update the accumulated bounding box. % <llx'> <lly'> <urx'> <ury'> updatebbox -- /updatebbox { dup bbury gt {/bbury exch def} {pop} ifelse dup bburx gt {/bburx exch def} {pop} ifelse dup bblly lt {/bblly exch def} {pop} ifelse dup bbllx lt {/bbllx exch def} {pop} ifelse } def % Set the bounding box to the values on the stack. % <llx'> <lly'> <urx'> <ury'> updatebbox -- /restorebbox { /bbury exch def /bburx exch def /bblly exch def /bbllx exch def } def % Push the accumulated bounding box onto the stack. % -- pushbbox <llx> <lly> <urx> <ury> /pushbbox {bbllx bblly bburx bbury} def % Make the relative bounding box relative to the currentpoint. % <llx'> <lly'> <urx'> <ury'> inflate <llx> <lly> <urx> <ury> /inflate { 2 {fontsize 0.2 mul add 4 1 roll} repeat 2 {fontsize 0.2 mul sub 4 1 roll} repeat } def % Make the relative bounding box relative to the currentpoint. % <llx'> <lly'> <urx'> <ury'> relative <llx> <lly> <urx> <ury> /relative { currentpoint 3 -1 roll add 3 1 roll add exch 4 2 roll currentpoint 3 -1 roll add 3 1 roll add exch 4 2 roll } def % Returns the size of a string appropriate for recshow. % <string> stringsize <llx> <lly> <urx> <ury> /stringsize { pushbbox /internalshow load /internalstroke load 7 -1 roll q nulldevice 0 0 m nullinternalshow nullinternalstroke resetbbox recshow /internalstroke exch def /internalshow exch def pushbbox 8 -4 roll restorebbox Q } def % Calculate values for string positioning. /calcval {4 copy 3 -1 roll sub /widy exch def sub neg /widx exch def pop pop /dy exch def /dx exch def} def % Utilities to position a string. % First letter (U=upper, C=center, B=baseline, L=lower) % Second letter (L=left, C=center, R=right) /align [ {calcval dx neg widy dy add neg rmoveto} % UL {calcval dx neg widy 2 div dy add neg rmoveto} % CL {calcval dx neg 0 rmoveto} % BL {calcval dx neg dy neg rmoveto} % LL {calcval widx dx add neg widy dy add neg rmoveto} % UR {calcval widx dx add neg widy 2 div dy add neg rmoveto} % CR {calcval widx dx add 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102.390 l 53.6406 102.390 l h f Q [ 1.00000 0 0 1.00000 5.00000 5.00000 ] concat Q q newpath 58.0000 8.01577 m 52.8000 8.01577 l S [ 1.00000 0 0 1.00000 -5.00000 -5.00000 ] concat q newpath 43.5312 10.2343 m 45.6250 9.21875 l 45.8281 9.21875 l 45.8281 16.4843 l 45.8281 16.9635 45.8489 17.2630 45.8906 17.3828 c 45.9322 17.5026 46.0156 17.5937 46.1406 17.6562 c 46.2656 17.7187 46.5208 17.7552 46.9062 17.7656 c 46.9062 18.0000 l 43.6718 18.0000 l 43.6718 17.7656 l 44.0781 17.7552 44.3411 17.7187 44.4609 17.6562 c 44.5807 17.5937 44.6640 17.5104 44.7109 17.4062 c 44.7578 17.3020 44.7812 16.9947 44.7812 16.4843 c 44.7812 11.8437 l 44.7812 11.2083 44.7604 10.8020 44.7187 10.6250 c 44.6875 10.4895 44.6328 10.3906 44.5546 10.3281 c 44.4765 10.2656 44.3802 10.2343 44.2656 10.2343 c 44.1093 10.2343 43.8958 10.3020 43.6250 10.4375 c 43.5312 10.2343 l h 48.9687 13.7500 m 48.9687 12.7708 49.1171 11.9244 49.4140 11.2109 c 49.7109 10.4974 50.1041 9.96875 50.5937 9.62500 c 50.9791 9.35416 51.3750 9.21875 51.7812 9.21875 c 52.4375 9.21875 53.0260 9.55208 53.5468 10.2187 c 54.2031 11.0520 54.5312 12.1822 54.5312 13.6093 c 54.5312 14.6093 54.3880 15.4583 54.1015 16.1562 c 53.8151 16.8541 53.4479 17.3619 53.0000 17.6796 c 52.5520 17.9974 52.1250 18.1562 51.7187 18.1562 c 50.8958 18.1562 50.2083 17.6718 49.6562 16.7031 c 49.1979 15.8802 48.9687 14.8958 48.9687 13.7500 c h 50.2187 13.9062 m 50.2187 15.0937 50.3645 16.0625 50.6562 16.8125 c 50.8958 17.4375 51.2552 17.7500 51.7343 17.7500 c 51.9635 17.7500 52.2005 17.6484 52.4453 17.4453 c 52.6901 17.2421 52.8750 16.8958 53.0000 16.4062 c 53.1979 15.6875 53.2968 14.6614 53.2968 13.3281 c 53.2968 12.3489 53.1927 11.5312 52.9843 10.8750 c 52.8385 10.3854 52.6406 10.0416 52.3906 9.84375 c 52.2239 9.70833 52.0156 9.64062 51.7656 9.64062 c 51.4843 9.64062 51.2291 9.76562 51.0000 10.0156 c 50.6979 10.3697 50.4921 10.9244 50.3828 11.6796 c 50.2734 12.4349 50.2187 13.1770 50.2187 13.9062 c h f Q [ 1.00000 0 0 1.00000 5.00000 5.00000 ] concat Q Q Q Q cliprestore 0 0 400 400 rc [ 1.00000 0 0 1.00000 0 0 ] concat [ 1.00000 0 0 1.00000 0 0 ] concat cliprestore 2 J 0 j end end restore showpage %%Trailer %%EOF %%EndDocument @endspecial 1654 x @beginspecial 0 @angle 30 @hscale 30 @vscale 240 @hoffset -22 @voffset @setspecial %%BeginDocument: omega22.eps %!PS-Adobe-3.0 EPSF-3.0 %%BoundingBox: 20 118 575 673 %%Creator: FreeHEP Graphics2D Driver %%Producer: com.maplesoft.mathdoc.view.plot.paint.PlotPSGraphics2D Revision: 12753 %%For: %%Title: %%CreationDate: Saturday, October 22, 2011 10:56:07 AM IRST %%LanguageLevel: 3 %%EndComments %%BeginProlog 100 dict dup begin % % File: org/freehep/graphicsio.ps/PSProlog.txt % Author: Charles Loomis % % Redefinitions which save some space in the output file. These are also % the same as the PDF operators. /q {gsave} def /Q {grestore} def /n {newpath} def /m {moveto} def /l {lineto} def /c {curveto} def /h {closepath} def /re {4 -2 roll moveto dup 0 exch rlineto exch 0 rlineto neg 0 exch rlineto closepath} def /f {fill} def /f* {eofill} def /F {gsave vg&FC fill grestore} def /F* {gsave vg&FC eofill grestore} def /s {closepath stroke} def /S {stroke} def /b {closepath gsave vg&FC fill grestore gsave stroke grestore newpath} def /B {gsave vg&FC fill grestore gsave stroke grestore newpath} def /b* {closepath gsave vg&FC eofill grestore gsave stroke grestore newpath} def /B* {gsave vg&FC eofill grestore gsave stroke grestore newpath} def /g {1 array astore /vg&fcolor exch def} def /G {setgray} def /k {4 array astore /vg&fcolor exch def} def /K {setcmykcolor} def /rg {3 array astore /vg&fcolor exch def} def /RG {setrgbcolor} def % Initialize the fill color. 0 0 0 rg /vg&FC {mark vg&fcolor aload pop counttomark 1 eq {G} if counttomark 3 eq {RG} if counttomark 4 eq {K} if cleartomark } def /vg&DFC {/vg&fcolor exch def} def /vg&C {mark exch aload pop counttomark 1 eq {G} if counttomark 3 eq {RG} if counttomark 4 eq {K} if cleartomark } def /w {setlinewidth} def /j {setlinejoin} def /J {setlinecap} def /M {setmiterlimit} def /d {setdash} def /i {setflat} def /W {clip} def /W* {eoclip} def % Setup the default graphics state. % (black; 1 pt. linewidth; miter join; butt-ends; solid) /defaultGraphicsState {0 g 1 w 0 j 0 J [] 0 d} def % Emulation of the rectangle operators for PostScript implementations % which do not implement all Level 2 features. This is an INCOMPLETE % emulation; only the "x y width height rect..." form is emulated. /*rf {gsave newpath re fill grestore} def /*rs {gsave newpath re stroke grestore} def /*rc {newpath re clip} def /rf /rectfill where {pop /rectfill}{/*rf} ifelse load def /rs /rectstroke where {pop /rectstroke}{/*rs} ifelse load def /rc /rectclip where {pop /rectclip}{/*rc} ifelse load def % Emulation of the selectfont operator. This includes a 20% increase in % the fontsize which is necessary to get sizes similar to the Java fonts. /*sf {exch findfont exch dup type /arraytype eq {makefont}{scalefont} ifelse setfont} bind def /sf /selectfont where {pop {1.2 mul selectfont}}{{1.2 mul *sf}} ifelse def % Special version of stroke which allows the dash pattern to continue % across path segments. (This may be needed for PostScript although % modern printers seem to do this correctly.) /vg&stroke { currentdash pop length 0 eq {stroke} { currentdash /vg&doffset exch def pop flattenpath {m vg&resetdash} {2 copy currentpoint 3 -1 roll sub dup mul 3 1 roll sub dup mul add sqrt 3 1 roll l currentdash 3 -1 roll add setdash} {} {h vg&resetdash} pathforall stroke vg&resetdash } ifelse } def /vg&resetdash {currentdash pop vg&doffset setdash} def % Initialize variables for safety. /delta 0 def /xv 0 def /yv 0 def /width 0 def /height 0 def % Initialize to portrait INTERNATIONAL (Letter-height, A4-width) page. /pw 595 def /ph 791 def /po true def /ftp false def % Initialize margins to 20 points. /ml 20 def /mr 20 def /mt 20 def /mb 20 def % Temporary matrices. /smatrix 0 def /nmatrix 0 def % set page size (usage: <page width><page height> setpagesize) /setpagesize {/ph exch def /pw exch def} def % set page orientation (usage: portrait or landscape) /portrait {/po true def} def /landscape {/po false def} def % force natural size for image (usage: naturalsize) /naturalsize {/ftp false def} def % resize image to fill page (usage: fittopage) /fittopage {/ftp true def} def % set margins of the page (usage: <left><bottom><top><right> setmargins) /setmargins {/mr exch def /mt exch def /mb exch def /ml exch def} def % set the graphic's size (usage: <width><height> setsize) /setsize {/gh exch def /gw exch def} def % set the graphic's origin (usage: <x0><y0> setorigin) /setorigin {/gy exch def /gx exch def} def % calculate image center /imagecenter {pw ml sub mr sub 2 div ml add ph mt sub mb sub 2 div mb add} def % calculate the necessary scaling /imagescale {po {gw}{gh} ifelse pw ml sub mr sub div po {gh}{gw} ifelse ph mt sub mb sub div 2 copy lt {exch} if pop ftp not {1 2 copy lt {exch} if pop} if 1 exch div /sfactor exch def /gw gw sfactor mul def /gh gh sfactor mul def} def % calculate image origin /imageorigin {pw ml sub mr sub 2 div ml add po {gw}{gh} ifelse 2 div sub ph mt sub mb sub 2 div mb add po {gh}{gw} ifelse 2 div po {add}{sub} ifelse} def % calculate the clipping origin /cliporigin {pw ml sub mr sub 2 div ml add po {gw}{gh} ifelse 2 div sub floor ph mt sub mb sub 2 div mb add po {gh}{gw} ifelse 2 div sub floor} def % Set the clipping region to the bounding box. /cliptobounds {cliporigin po {gw}{gh} ifelse 1 add po {gh}{gw} ifelse 1 add rc} def % set the base transformation matrix (usage: setbasematrix) /setbasematrix {imageorigin translate po {0}{90} ifelse rotate sfactor sfactor neg scale /defaultmatrix matrix currentmatrix def} def % The lower-right bias in drawing 1 pt. wide lines. /bias {q 0.5 0.5 translate} def /unbias {Q} def % Draw a line. (x0 y0 x1 y1 line) /L {bias n m l S unbias} def % Polyline primitive. /polyline {n m 1 exch 1 exch {pop currentfile token pop currentfile token pop l} for } def % Draw a polyline (n x0 y0 OPL x1 y1 x2 y2 ... ... xn yn) /OPL {bias polyline S unbias} def % Draw a closed polyline (n x0 y0 CPL x1 y1 x2 y2 ... ... xn yn) /CPL {bias polyline s unbias} def % Draw a filled polyline (n x0 y0 FPL x1 y1 x2 y2 ... ... xn yn) /FPL {polyline h f*} def % Draw an oval. (x y w h OVL) /OVL {matrix currentmatrix /smatrix exch def /height exch def /width exch def /yv exch def /xv exch def width 2 div xv add height 2 div yv add translate width currentlinewidth sub 2 div height currentlinewidth sub 2 div neg scale n 0 0 1 5 -2 roll arc smatrix setmatrix S} def % Draw a filled oval. (x y w h FOVL) /FOVL {matrix currentmatrix /smatrix exch def /height exch def /width exch def /yv exch def /xv exch def width 2 div xv add height 2 div yv add translate width 2 div height 2 div neg scale n 0 0 m 0 0 1 5 -2 roll arc h smatrix setmatrix f} def % Draw a rounded rectangle. (x y w h arcwidth archeight RREC) /RREC {matrix currentmatrix /smatrix exch def 2 div /ah exch def 2 div /aw exch def /height exch def /width exch def /yv exch def /xv exch def aw ah scale matrix currentmatrix /nmatrix exch def smatrix setmatrix n xv width add aw sub yv m nmatrix setmatrix currentpoint exch 1 add exch currentpoint 1 add exch 1 add exch 1 arct smatrix setmatrix xv width add yv height add ah sub l nmatrix setmatrix currentpoint 1 add currentpoint exch 1 sub exch 1 add 1 arct smatrix setmatrix xv aw add yv height add l nmatrix setmatrix currentpoint exch 1 sub exch currentpoint exch 1 sub exch 1 sub 1 arct smatrix setmatrix xv yv ah add l nmatrix setmatrix currentpoint 1 sub currentpoint exch 1 add exch 1 sub 1 arct smatrix setmatrix s} def % Draw a filled rounded rectangle. (x y w h arcwidth archeight FRREC) /FRREC{matrix currentmatrix /smatrix exch def 2 div /ah exch def 2 div /aw exch def /height exch def /width exch def /yv exch def /xv exch def aw ah scale matrix currentmatrix /nmatrix exch def smatrix setmatrix n xv width add aw sub yv m nmatrix setmatrix currentpoint exch 1 add exch currentpoint 1 add exch 1 add exch 1 arct smatrix setmatrix xv width add yv height add ah sub l nmatrix setmatrix currentpoint 1 add currentpoint exch 1 sub exch 1 add 1 arct smatrix setmatrix xv aw add yv height add l nmatrix setmatrix currentpoint exch 1 sub exch currentpoint exch 1 sub exch 1 sub 1 arct smatrix setmatrix xv yv ah add l nmatrix setmatrix currentpoint 1 sub currentpoint exch 1 add exch 1 sub 1 arct smatrix setmatrix h f} def % Draw a string. (string x y STR) /STR {q m 1 -1 scale recshow Q} def % Define basic plot symbols. /xys {/siz exch def /yv exch def /xv exch def} def /hline {xys n xv siz 2. div sub yv m siz 0 rlineto S} def /vline {xys n xv yv siz 2. div sub m 0 siz rlineto S} def /plus {xys n xv yv siz 2. div sub m 0 siz rlineto xv siz 2. div sub yv m siz 0 rlineto S} def /dot {n 2. div 0 360 arc s} def /fdot {n 2. div 0 360 arc h f} def /box {xys n xv siz 2 sqrt div 2 div sub yv siz 2 sqrt div 2 div sub siz 2 sqrt div dup rs} def /fbox {xys n xv siz 2 sqrt div 2 div sub yv siz 2 sqrt div 2 div sub siz 2 sqrt div dup rf} def /tridn{xys n xv yv siz 3 sqrt div add m siz 2. div neg 3 sqrt 2. div siz mul neg rlineto siz 0 rlineto s} def /ftridn{xys n xv yv siz 3 sqrt div add m siz 2. div neg 3 sqrt 2. div siz mul neg rlineto siz 0 rlineto h f} def % Symbols defined in terms of the others. /star {3 copy cross plus} def /cross {xys q xv yv translate 45 rotate 0 0 siz plus Q} def /diamond {xys q xv yv translate 45 rotate 0 0 siz box Q} def /fdiamond {xys q xv yv translate 45 rotate 0 0 siz fbox Q} def /triup {xys q xv yv translate 180 rotate 0 0 siz tridn Q} def /ftriup {xys q xv yv translate 180 rotate 0 0 siz ftridn Q} def % Define the composite fonts used to print Unicode strings. % Undefine particular values in an encoding array. /vg&undef { {exch dup 3 -1 roll /.notdef put} forall } def /vg&redef { {3 -1 roll dup 4 2 roll put} forall } def % usage: key encoding basefontname vg&newbasefont font /vg&newbasefont { findfont dup length dict copy begin currentdict /FID undef /Encoding exch def dup /FontName exch def currentdict end definefont } def % usage: key encoding basefontname vg&newskewedbasefont font /vg&newskewedbasefont { findfont dup length dict copy begin currentdict /FID undef /Encoding exch def dup /FontName exch def exch FontMatrix exch matrix concatmatrix /FontMatrix exch def currentdict end definefont } def % usage: basekey suffix vg&nconcat name /vg&nconcat { 2 {dup length string cvs exch} repeat dup length 3 -1 roll dup length 3 -1 roll add string dup 0 4 -1 roll dup length 5 1 roll putinterval dup 4 -2 roll exch putinterval cvn } def %usage: fontname vg&skewmatrix matrix /vg&skewmatrix { findfont dup /FontInfo known { /FontInfo get dup /ItalicAngle known { [ 1 0 4 -1 roll /ItalicAngle get neg dup sin exch cos div 1 0 0 ] } {pop matrix} ifelse } {pop matrix} ifelse } def % usage: newfontname basefontname vg&newcompositefont -- /vg&newcompositefont { /vg&fstyle exch def /vg&bfont exch def /vg&fname exch def << /FontStyleBits vg&fstyle /FontType 0 /FontMatrix matrix /FontName vg&fname /FMapType 2 /Encoding [ 0 1 255 {pop 6} for ] dup 16#00 0 put % Latin dup 16#03 1 put % Greek dup 16#20 2 put % Punctuation dup 16#21 3 put % Arrows dup 16#22 4 put % MathOps dup 16#27 5 put % Dingbats /FDepVector [ vg&bfont /-UC-Latin vg&nconcat UCLatinEncoding vg&bfont vg&newbasefont vg&bfont vg&skewmatrix vg&bfont /-UC-Greek vg&nconcat UCGreekEncoding /Symbol vg&newskewedbasefont vg&bfont /-UC-Punctuation vg&nconcat UCPunctuationEncoding vg&bfont vg&newbasefont /Arrows-UC findfont /MathOps-UC findfont /Dingbats-UC findfont /Undefined-UC findfont ] >> vg&fname exch definefont pop } def % Null encoding vector (all elements set to .notdef) /NullEncoding [ 256 {/.notdef} repeat ] def % Unicode Latin encoding (unicode codes \u0000-\u00ff) /UCLatinEncoding ISOLatin1Encoding dup length array copy dup 16#60 /grave put [ 16#90 16#91 16#92 16#93 16#94 16#95 16#96 16#97 16#98 16#9a 16#9b 16#9d 16#9e 16#9f ] vg&undef def % Unicode Greek encoding (unicode codes \u0370-\u03ff) /UCGreekEncoding NullEncoding dup length array copy << 16#91 /Alpha 16#92 /Beta 16#93 /Gamma 16#94 /Delta 16#95 /Epsilon 16#96 /Zeta 16#97 /Eta 16#98 /Theta 16#99 /Iota 16#9a /Kappa 16#9b /Lambda 16#9c /Mu 16#9d /Nu 16#9e /Xi 16#9f /Omicron 16#a0 /Pi 16#a1 /Rho 16#a3 /Sigma 16#a4 /Tau 16#a5 /Upsilon 16#a6 /Phi 16#a7 /Chi 16#a8 /Psi 16#a9 /Omega 16#b1 /alpha 16#b2 /beta 16#b3 /gamma 16#b4 /delta 16#b5 /epsilon 16#b6 /zeta 16#b7 /eta 16#b8 /theta 16#b9 /iota 16#ba /kappa 16#bb /lambda 16#bc /mu 16#bd /nu 16#be /xi 16#bf /omicron 16#c0 /pi 16#c1 /rho 16#c2 /sigma1 16#c3 /sigma 16#c4 /tau 16#c5 /upsilon 16#c6 /phi1 16#c7 /chi 16#c8 /psi 16#c9 /omega 16#7e /semicolon 16#87 /dotmath 16#d1 /theta1 16#d2 /Upsilon1 16#d5 /phi 16#d6 /omega1 >> vg&redef def % Unicode punctuation encoding (unicode codes \u2000-\u206f) /UCPunctuationEncoding NullEncoding dup length array copy << 16#10 /hyphen 16#11 /hyphen 16#12 /endash 16#13 /emdash 16#18 /quoteleft 16#19 /quoteright 16#1a /quotesinglbase 16#1b /quotesingle 16#1c /quotedblleft 16#1d /quotedblright 16#1e /quotedblbase 16#1f /quotedbl 16#20 /dagger 16#21 /daggerdbl 16#22 /bullet 16#24 /period 16#26 /ellipsis 16#27 /periodcentered 16#30 /perthousand 16#44 /fraction 16#70 /zerosuperior 16#74 /foursuperior 16#75 /fivesuperior 16#76 /sixsuperior 16#77 /sevensuperior 16#78 /eightsuperior 16#79 /ninesuperior 16#7b /hyphensuperior 16#7d /parenleftsuperior 16#7e /parenrightsuperior 16#80 /zeroinferior 16#84 /fourinferior 16#85 /fiveinferior 16#81 /oneinferior 16#82 /twoinferior 16#83 /threeinferior 16#86 /sixinferior 16#87 /seveninferior 16#88 /eightinferior 16#89 /nineinferior 16#8b /hypheninferior 16#8d /parenleftinferior 16#8e /parenrightinferior >> vg&redef def % Unicode mathematical operators encoding (unicode codes \u2200-\u22ff) /UCMathOpsEncoding NullEncoding dup length array copy << 16#00 /universal 16#02 /partialdiff 16#03 /existential 16#05 /emptyset 16#06 /Delta 16#07 /gradient 16#08 /element 16#09 /notelement 16#0b /suchthat 16#0f /product 16#11 /summation 16#12 /minus 16#15 /fraction 16#17 /asteriskmath 16#19 /bullet 16#1a /radical 16#1d /proportional 16#1e /infinity 16#20 /angle 16#23 /bar 16#27 /logicaland 16#28 /logicalor 16#29 /intersection 16#2a /union 16#2b /integral 16#34 /therefore 16#36 /colon 16#3c /similar 16#45 /congruent 16#48 /approxequal 16#60 /notequal 16#61 /equivalence 16#64 /lessequal 16#65 /greaterequal 16#82 /propersubset 16#83 /propersuperset 16#86 /reflexsubset 16#87 /reflexsuperset 16#95 /circleplus 16#97 /circlemultiply 16#a5 /perpendicular 16#03 /existential 16#c0 /logicaland 16#c1 /logicalor 16#c2 /intersection 16#c3 /union 16#c4 /diamond 16#c5 /dotmath >> vg&redef def % Unicode arrows encoding (unicode codes \u2190-\u21ff) % Also includes those "Letterlike" unicode characters % which are available in the symbol font. (unicode codes \u2100-\u214f) /UCArrowsEncoding NullEncoding dup length array copy << 16#11 /Ifraktur 16#1c /Rfraktur 16#22 /trademarkserif 16#35 /aleph 16#90 /arrowleft 16#91 /arrowup 16#92 /arrowright 16#93 /arrowdown 16#94 /arrowboth 16#d0 /arrowdblleft 16#d1 /arrowdblup 16#d2 /arrowdblright 16#d3 /arrowdbldown 16#d4 /arrowdblboth >> vg&redef def /ZapfDingbats findfont /Encoding get dup length array copy /UCDingbatsEncoding exch def 16#20 1 16#7f { dup 16#20 sub exch UCDingbatsEncoding exch get UCDingbatsEncoding 3 1 roll put } for 16#a0 1 16#ff { dup 16#40 sub exch UCDingbatsEncoding exch get UCDingbatsEncoding 3 1 roll put } for UCDingbatsEncoding [ 16#c0 1 16#ff {} for ] vg&undef [ 16#00 16#05 16#0a 16#0b 16#28 16#4c 16#4e 16#53 16#54 16#55 16#57 16#5f 16#60 16#68 16#69 16#6a 16#6b 16#6c 16#6d 16#6e 16#6f 16#70 16#71 16#72 16#73 16#74 16#75 16#95 16#96 16#97 16#b0 16#bf ] vg&undef pop % Define the base fonts which don't change. /Undefined-UC NullEncoding /Helvetica vg&newbasefont pop /MathOps-UC UCMathOpsEncoding /Symbol vg&newbasefont pop /Arrows-UC UCArrowsEncoding /Symbol vg&newbasefont pop /Dingbats-UC UCDingbatsEncoding /ZapfDingbats vg&newbasefont pop % Make the SansSerif composite fonts. /SansSerif /Helvetica 16#00 vg&newcompositefont /SansSerif-Bold /Helvetica-Bold 16#01 vg&newcompositefont /SansSerif-Italic /Helvetica-Oblique 16#02 vg&newcompositefont /SansSerif-BoldItalic /Helvetica-BoldOblique 16#03 vg&newcompositefont % Make the Serif composite fonts. /Serif /Times-Roman 16#00 vg&newcompositefont /Serif-Bold /Times-Bold 16#01 vg&newcompositefont /Serif-Italic /Times-Italic 16#02 vg&newcompositefont /Serif-BoldItalic /Times-BoldItalic 16#03 vg&newcompositefont % Make the Monospaced composite fonts. /Monospaced /Courier 16#00 vg&newcompositefont /Monospaced-Bold /Courier-Bold 16#01 vg&newcompositefont /Monospaced-Italic /Courier-Oblique 16#02 vg&newcompositefont /Monospaced-BoldItalic /Courier-BoldOblique 16#03 vg&newcompositefont % Make the Dialog composite fonts. /Dialog /Helvetica 16#00 vg&newcompositefont /Dialog-Bold /Helvetica-Bold 16#01 vg&newcompositefont /Dialog-Italic /Helvetica-Oblique 16#02 vg&newcompositefont /Dialog-BoldItalic /Helvetica-BoldOblique 16#03 vg&newcompositefont % Make the DialogInput composite fonts. /DialogInput /Helvetica 16#00 vg&newcompositefont /DialogInput-Bold /Helvetica-Bold 16#01 vg&newcompositefont /DialogInput-Italic /Helvetica-Oblique 16#02 vg&newcompositefont /DialogInput-BoldItalic /Helvetica-BoldOblique 16#03 vg&newcompositefont % Make the Typewriter composite fonts (JDK 1.1 only). /Typewriter /Courier 16#00 vg&newcompositefont /Typewriter-Bold /Courier-Bold 16#01 vg&newcompositefont /Typewriter-Italic /Courier-Oblique 16#02 vg&newcompositefont /Typewriter-BoldItalic /Courier-BoldOblique 16#03 vg&newcompositefont /cfontH { dup /fontsize exch def /SansSerif exch sf /vg&fontstyles [{cfontH} {cfontHB} {cfontHI} {cfontHBI}] def } def /cfontHB { dup /fontsize exch def /SansSerif-Bold exch sf /vg&fontstyles [{cfontH} {cfontHB} {cfontHI} {cfontHBI}] def } def /cfontHI { dup /fontsize exch def /SansSerif-Italic exch sf /vg&fontstyles [{cfontH} {cfontHB} {cfontHI} {cfontHBI}] def } def /cfontHBI { dup /fontsize exch def /SansSerif-BoldItalic exch sf /vg&fontstyles [{cfontH} {cfontHB} {cfontHI} {cfontHBI}] def } def /cfontT { dup /fontsize exch def /Serif exch sf /vg&fontstyles [{cfontT} {cfontTB} {cfontTI} {cfontTBI}] def } def /cfontTB { dup /fontsize exch def /Serif-Bold exch sf /vg&fontstyles [{cfontT} {cfontTB} {cfontTI} {cfontTBI}] def } def /cfontTI { dup /fontsize exch def /Serif-Italic exch sf /vg&fontstyles [{cfontT} {cfontTB} {cfontTI} {cfontTBI}] def } def /cfontTBI { dup /fontsize exch def /Serif-BoldItalic exch sf /vg&fontstyles [{cfontT} {cfontTB} {cfontTI} {cfontTBI}] def } def /cfontC { dup /fontsize exch def /Typewriter exch sf /vg&fontstyles [{cfontC} {cfontCB} {cfontCI} {cfontCBI}] def } def /cfontCB { dup /fontsize exch def /Typewriter-Bold exch sf /vg&fontstyles [{cfontC} {cfontCB} {cfontCI} {cfontCBI}] def } def /cfontCI { dup /fontsize exch def /Typewriter-Italic exch sf /vg&fontstyles [{cfontC} {cfontCB} {cfontCI} {cfontCBI}] def } def /cfontCBI { dup /fontsize exch def /Typewriter-BoldItalic exch sf /vg&fontstyles [{cfontC} {cfontCB} {cfontCI} {cfontCBI}] def } def % Darken or lighten the current color. /darken {0.7 exch exp 3 copy q 4 -1 roll vg&C currentrgbcolor 3 {4 -2 roll mul} repeat 3 array astore Q} def /displayColorMap << /Cr [1.00 0.00 0.00] /Cg [0.00 1.00 0.00] /Cb [0.00 0.00 1.00] /Cc [1.00 0.00 0.00 0.00] /Cm [0.00 1.00 0.00 0.00] /Cy [0.00 0.00 1.00 0.00] /Co [1.00 0.78 0.00] /Cp [1.00 0.67 0.67] /Cw [1 ] /Cgrl [0.75] /Cgr [0.50] /Cgrd [0.25] /Ck [0 ] /CGr [1.00 0.00 0.00] /CGg [0.00 1.00 0.00] /CGb [0.00 0.00 1.00] /CGc [1.00 0.00 0.00 0.00] /CGm [0.00 1.00 0.00 0.00] /CGy [0.00 0.00 1.00 0.00] /CGo [1.00 0.78 0.00] /CGp [1.00 0.67 0.67] /CGw [1 ] /CGgrl [0.75] /CGgr [0.50] /CGgrd [0.25] /CGk [0 ] /CIr [1.00 0.00 0.00] /CIg [0.00 1.00 0.00] /CIb [0.00 0.00 1.00] /CIc [1.00 0.00 0.00 0.00] /CIm [0.00 1.00 0.00 0.00] /CIy [0.00 0.00 1.00 0.00] /CIo [1.00 0.78 0.00] /CIp [1.00 0.67 0.67] /CIw [1 ] /CIgrl [0.75] /CIgr [0.50] /CIgrd [0.25] /CIk [0 ] >> def /printColorMap << /Cr [1.00 0.33 0.33] /Cg [0.33 1.00 0.33] /Cb [0.33 0.33 1.00] /Cc [1.00 0.00 0.00 0.00] /Cm [0.00 1.00 0.00 0.00] /Cy [0.00 0.00 1.00 0.00] /Co [1.00 0.78 0.00] /Cp [1.00 0.67 0.67] /Cw [1 ] /Cgrl [0.75] /Cgr [0.50] /Cgrd [0.25] /Ck [0 ] /CGr [1.00 0.33 0.33] /CGg [0.33 1.00 0.33] /CGb [0.33 0.33 1.00] /CGc [1.00 0.00 0.00 0.00] /CGm [0.00 1.00 0.00 0.00] /CGy [0.00 0.00 1.00 0.00] /CGo [1.00 0.78 0.00] /CGp [1.00 0.67 0.67] /CGw [1 ] /CGgrl [0.75] /CGgr [0.50] /CGgrd [0.25] /CGk [0 ] /CIr [1.00 0.33 0.33] /CIg [0.33 1.00 0.33] /CIb [0.33 0.33 1.00] /CIc [1.00 0.00 0.00 0.00] /CIm [0.00 1.00 0.00 0.00] /CIy [0.00 0.00 1.00 0.00] /CIo [1.00 0.78 0.00] /CIp [1.00 0.67 0.67] /CIw [1 ] /CIgrl [0.75] /CIgr [0.50] /CIgrd [0.25] /CIk [0 ] >> def /grayColorMap << /Cr [0 ] /Cg [0 ] /Cb [0 ] /Cc [0 ] /Cm [0 ] /Cy [0 ] /Co [0 ] /Cp [0 ] /Cw [0 ] /Cgrl [0 ] /Cgr [0 ] /Cgrd [0 ] /Ck [0 ] /CGr [0.75] /CGg [1 ] /CGb [0.50] /CGc [0.75] /CGm [0.50] /CGy [1 ] /CGo [0.75] /CGp [1 ] /CGw [0 ] /CGgrl [0.25] /CGgr [0.50] /CGgrd [0.75] /CGk [1 ] /CIr [1 ] /CIg [1 ] /CIb [1 ] /CIc [1 ] /CIm [1 ] /CIy [1 ] /CIo [1 ] /CIp [1 ] /CIw [1 ] /CIgrl [1 ] /CIgr [1 ] /CIgrd [1 ] /CIk [1 ] >> def /bwColorMap << /Cr [0 ] /Cg [0 ] /Cb [0 ] /Cc [0 ] /Cm [0 ] /Cy [0 ] /Co [0 ] /Cp [0 ] /Cw [0 ] /Cgrl [0 ] /Cgr [0 ] /Cgrd [0 ] /Ck [0 ] /CGr [1 ] /CGg [1 ] /CGb [1 ] /CGc [1 ] /CGm [1 ] /CGy [1 ] /CGo [1 ] /CGp [1 ] /CGw [0 ] /CGgrl [1 ] /CGgr [1 ] /CGgrd [1 ] /CGk [1 ] /CIr [1 ] /CIg [1 ] /CIb [1 ] /CIc [1 ] /CIm [1 ] /CIy [1 ] /CIo [1 ] /CIp [1 ] /CIw [1 ] /CIgrl [1 ] /CIgr [1 ] /CIgrd [1 ] /CIk [1 ] >> def % % The following routines handle the alignment of and printing of % tagged strings. % % Predefine the bounding box values. /bbllx 0 def /bblly 0 def /bburx 0 def /bbury 0 def % This routine pops the first unicode character off of a string and returns % the remainder of the string, the character code of first character, % and a "true" if the string was non-zero length. % <string> popfirst <remaining string> <true> % <null string> popfirst <false> /popfirst { dup length 1 gt {dup 0 get /vg&fbyte exch def dup 1 get /vg&cbyte exch def dup length 2 sub 2 exch getinterval true} {pop false} ifelse } def % This routine shows a single unicode character given the font and % character codes. % <font code> <char code> unicharshow -- /unicharshow { 2 string dup 0 5 -1 roll put dup 1 4 -1 roll put internalshow } def % This is an internal routine to alternate between determining the % bounding box for stringsize and showing the string for recshow. % <string> internalshow -- /internalshow {show} def % This is an internal routine to alternate between determining the % bounding box for stringsize and stroking various ornaments. % <string> internalstroke -- /internalstroke {S} def % Sets up internalshow to use the null device to determine string size. % -- nullinternalshow -- /nullinternalshow {/internalshow {false charpath flattenpath pathbbox updatebbox} def} def % Sets up internalstroke to use the null device to determine string size. % -- nullinternalstroke -- /nullinternalstroke { /internalstroke {flattenpath pathbbox updatebbox} def} def % This routine tests to see if the character code matches the first % character of a string. % <char code> <string> testchar <char code> <true or false> /testchar {exch dup 3 -1 roll 0 get eq} def % Raise the text baseline for superscripts. % -- raise -- /raise { 0 fontsize 2 div rmoveto /fontsize fontsize 2 mul 3 div def currentfont /FontName get fontsize sf } def % Un-raise the text baseline for superscripts. % -- unraise -- /unraise { /fontsize fontsize 1.5 mul def 0 fontsize 2 div neg rmoveto } def % Lower the text baseline for subscripts. % -- lower -- /lower { 0 fontsize 3 div neg rmoveto /fontsize fontsize 2 mul 3 div def currentfont /FontName get fontsize sf } def % Un-lower the text baseline for subscripts. % -- unlower -- /unlower { /fontsize fontsize 1.5 mul def 0 fontsize 3 div rmoveto } def % Compare the top two elements on the stack and leave only the % larger one. /maxval {2 copy gt {pop} {exch pop} ifelse} def % Tokenize a string. Do not use the usual PostScript token because % parentheses will not be interpreted correctly because of rescanning % of the string. /vg&token {/vg&string exch def /vg&index -1 def /vg&level 0 def 0 2 vg&string length 2 sub { dup dup 1 add exch vg&string exch get 8 bitshift vg&string 3 -1 roll get or dup 16#f0fe eq {pop 1}{16#f0ff eq {-1}{0} ifelse} ifelse /vg&level exch vg&level add def vg&level 0 eq {/vg&index exch def exit} if pop } for vg&index 0 ge { vg&string vg&index 2 add dup vg&string length exch sub getinterval vg&index 2 gt {vg&string 2 vg&index 2 sub getinterval}{()} ifelse true} {false} ifelse } bind def % Recursively show an unicode string. % <string> recshow -- /recshow { popfirst { % Test to see if this is a string attribute. vg&fbyte 16#f0 and 16#e0 eq { q % Font style. currentfont dup /FontStyleBits known {/FontStyleBits get}{pop 0} ifelse vg&cbyte or vg&fontstyles exch get fontsize exch exec vg&token pop recshow currentpoint Q m recshow } { vg&fbyte 16#F8 and 16#F0 eq { % Superscript and/or subscript. vg&cbyte 16#00 eq { vg&token pop exch vg&token pop 3 -1 roll q raise recshow unraise currentpoint pop Q exch q lower recshow unlower currentpoint pop Q maxval currentpoint exch pop m recshow } if % Strikeout. vg&cbyte 16#01 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J vg&underline vg&uthick w currentpoint 4 -2 roll fontsize 3 div add moveto fontsize 3 div add lineto internalstroke Q recshow} if % Underline. vg&cbyte 16#02 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J vg&underline vg&uthick w currentpoint 4 -2 roll vg&uoffset add moveto vg&uoffset add lineto internalstroke Q recshow} if % Dashed underline. vg&cbyte 16#03 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J [ vg&uthick 5 mul vg&uthick 2 mul] 0 d vg&underline vg&uthick w currentpoint 4 -2 roll vg&uoffset add moveto vg&uoffset add lineto internalstroke Q recshow} if % Dotted underline. vg&cbyte 16#04 eq { vg&token pop currentpoint 3 -1 roll recshow q 1 J [ 0 vg&uthick 3 mul] 0 d vg&underline vg&uthick w currentpoint 4 -2 roll vg&uoffset add moveto vg&uoffset add lineto internalstroke Q recshow} if % Thick underline. vg&cbyte 16#05 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J vg&underline vg&uthick 2 mul w currentpoint 4 -2 roll vg&uoffset vg&uthick 2 div sub add moveto vg&uoffset vg&uthick 2 div sub add lineto internalstroke Q recshow} if % Gray thick underline. vg&cbyte 16#06 eq { vg&token pop currentpoint 3 -1 roll recshow q 0 J vg&underline vg&uthick 2 mul w 0.5 setgray currentpoint 4 -2 roll vg&uoffset vg&uthick 2 div sub add moveto vg&uoffset vg&uthick 2 div sub add lineto internalstroke Q recshow} if % Overbar. vg&cbyte 16#07 eq { vg&token pop dup stringsize relative 4 1 roll pop pop exch 3 -1 roll recshow q 0 J vg&underline vg&uthick w vg&uoffset neg add dup currentpoint pop exch m l internalstroke Q recshow} if } { vg&fbyte vg&cbyte unicharshow recshow } ifelse } ifelse } if } def % Get the underline position and thickness from the current font. /vg&underline { currentfont dup /FontType get 0 eq {/FDepVector get 0 get} if dup dup /FontInfo known { /FontInfo get dup dup /UnderlinePosition known { /UnderlinePosition get /vg&uoffset exch def } { pop /vg&uoffset 0 def } ifelse dup /UnderlineThickness known { /UnderlineThickness get /vg&uthick exch def } { pop /vg&uthick 0 def } ifelse } { pop /vg&uoffset 0 def /vg&uthick 0 def } ifelse /FontMatrix get currentfont dup /FontType get 0 eq {/FontMatrix get matrix concatmatrix}{pop} ifelse dup 0 vg&uoffset 3 -1 roll transform /vg&uoffset exch def pop 0 vg&uthick 3 -1 roll transform /vg&uthick exch def pop } def % Make a frame with the coordinates on the stack. % <llx> <lly> <urx> <ury> frame -- /frame {4 copy m 3 1 roll exch l 4 -2 roll l l h} def % Resets the accumulated bounding box to a degenerate box at the % current point. % -- resetbbox -- /resetbbox { currentpoint 2 copy /bbury exch def /bburx exch def /bblly exch def /bbllx exch def } def % Update the accumulated bounding box. % <llx'> <lly'> <urx'> <ury'> updatebbox -- /updatebbox { dup bbury gt {/bbury exch def} {pop} ifelse dup bburx gt {/bburx exch def} {pop} ifelse dup bblly lt {/bblly exch def} {pop} ifelse dup bbllx lt {/bbllx exch def} {pop} ifelse } def % Set the bounding box to the values on the stack. % <llx'> <lly'> <urx'> <ury'> updatebbox -- /restorebbox { /bbury exch def /bburx exch def /bblly exch def /bbllx exch def } def % Push the accumulated bounding box onto the stack. % -- pushbbox <llx> <lly> <urx> <ury> /pushbbox {bbllx bblly bburx bbury} def % Make the relative bounding box relative to the currentpoint. % <llx'> <lly'> <urx'> <ury'> inflate <llx> <lly> <urx> <ury> /inflate { 2 {fontsize 0.2 mul add 4 1 roll} repeat 2 {fontsize 0.2 mul sub 4 1 roll} repeat } def % Make the relative bounding box relative to the currentpoint. % <llx'> <lly'> <urx'> <ury'> relative <llx> <lly> <urx> <ury> /relative { currentpoint 3 -1 roll add 3 1 roll add exch 4 2 roll currentpoint 3 -1 roll add 3 1 roll add exch 4 2 roll } def % Returns the size of a string appropriate for recshow. % <string> stringsize <llx> <lly> <urx> <ury> /stringsize { pushbbox /internalshow load /internalstroke load 7 -1 roll q nulldevice 0 0 m nullinternalshow nullinternalstroke resetbbox recshow /internalstroke exch def /internalshow exch def pushbbox 8 -4 roll restorebbox Q } def % Calculate values for string positioning. /calcval {4 copy 3 -1 roll sub /widy exch def sub neg /widx exch def pop pop /dy exch def /dx exch def} def % Utilities to position a string. % First letter (U=upper, C=center, B=baseline, L=lower) % Second letter (L=left, C=center, R=right) /align [ {calcval dx neg widy dy add neg rmoveto} % UL {calcval dx neg widy 2 div dy add neg rmoveto} % CL {calcval dx neg 0 rmoveto} % BL {calcval dx neg dy neg rmoveto} % LL {calcval widx dx add neg widy dy add neg rmoveto} % UR {calcval widx dx add neg widy 2 div dy add neg rmoveto} % CR {calcval widx dx add 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