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hypocalcemia.eps
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hypocalcemia.eps
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%APL_DSC_Encoding: UTF8
%APLProducer: (Version 10.12.6 (Build 16G29) Quartz PS Context)
%%Title: (Unknown)
%%Creator: (Unknown)
%%CreationDate: (Unknown)
%%For: (Unknown)
%%DocumentData: Clean7Bit
%%LanguageLevel: 2
%%Pages: 1
%%BoundingBox: 0 0 148 116
%%EndComments
%%BeginProlog
%%BeginFile: cg-pdf.ps
%%Copyright: Copyright 2000-2004 Apple Computer Incorporated.
%%Copyright: All Rights Reserved.
currentpacking true setpacking
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pop pop pop % pop off the search results
true
}{
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(0)dup 0 4 -1 roll put
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{begin}forall
count userdict/cg_op_count get sub{pop}repeat
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dup ImageBandMask/readstring cvx
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counttomark 2 idiv
dup 2 add % leave room for imagetype and imagematrix
dict begin
{def} repeat
pop % remove mark
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currentdict dup/ImageMask known{ImageMask}{F}ifelse exch
% currentdict on stack
L3?{
dup/MaskedImage known
{
pop
<<
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/MaskDict
<< /ImageType 1
/Width Width
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/BitsPerComponent 1
/Decode [0 1]
currentdict/Interpolate known
{/Interpolate Interpolate}if
>>
>>
}if
}if
exch
{imagemask}{image}ifelse
end % pop imagedict from dict stack
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{cvr}stopped{cleartomark 0}{exch pop}ifelse
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exch t_array t_i get add exch moveto
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t_array t_i get add moveto
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% x y
t_array t_i 2 copy 1 add get 3 1 roll get
4 -1 roll add 3 1 roll add moveto
/t_i t_i 2 add store
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{
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{ % char
t_c 0 3 -1 roll put
currentpoint
t_c cply sop
cp_proc
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/sop/stroke ld % default sop is stroke. Done here so we don't bind in /base_charpath
% default sop is stroke
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L3? dup dup{save exch}if
% languagelevel2 ONLY code goes here
/Range 0 def
/DataSource 0 def
/val 0 def
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/mulRange 0 def
/d0 0 def
/r0 0 def
/di 0 def
/ri 0 def
/a0 0 def
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/r2 0 def
/dx 0 def
/Nsteps 0 def
/sh3tp 0 def
/ymax 0 def
/ymin 0 def
/xmax 0 def
/xmin 0 def
/setupFunEval % funDict -- % this calculates and sets up a function dict for evaulation.
{
begin
/nRange Range length 2 idiv store
/mulRange % precompute the range data needed to map a sample value from the table to a range value
% this data looks like [ range0mul range0min range1mul range1min ... rangeN-1mul rangeN-1min ]
[
0 1 nRange 1 sub
{ % index
2 mul/nDim2 xd % 2*dimension# we are dealing with
Range nDim2 get % ymin
Range nDim2 1 add get % ymin ymax
1 index sub % ymin (ymax-ymin)
% xmin = 0, xmax = 255 (2^bitspersample - 1)
255 div % ymin (ymax-ymin)/(xmax - xmin)
exch % (ymax-ymin)/(xmax - xmin) ymin
}for
]store
end
}bd
/FunEval % val1 fundict -> comp1 comp2 ... compN
{
begin
% the value passed in is the base index into the table
nRange mul /val xd % compute the actual index to the table
% since there are nRange entries per base index
0 1 nRange 1 sub
{
dup 2 mul/nDim2 xd % dim
val % base value to use to do our lookup
add DataSource exch get % lookedupval
mulRange nDim2 get mul % lookedupval*(ymax-ymin)/(xmax-xmin)
mulRange nDim2 1 add get % lookedupval*(ymax-ymin)/(xmax-xmin) ymin
add % interpolated result
}for % comp1 comp2 ... compN
end
}bd
/max % a b -> max(a, b)
{
2 copy lt
{exch pop}{pop}ifelse
}bd
/sh2
{ % emulation of shading type 2. Assumes shading dictionary is top dictionary on the dict stack
/Coords load aload pop % x0 y0 x1 y1
3 index 3 index translate % origin is now at beginning point of shading
% x0 y0 x1 y1
3 -1 roll sub % x0 x1 y1-y0
3 1 roll exch % y1-y0 x1 x0
sub % y1-y0 x1-x0
2 copy
dup mul exch dup mul add sqrt % length of segment between two points
dup
scale
atan % atan (dy/dx)
%dup (rotation angle = )print ==
rotate % now line between 0,0 and 1,0 is the line perpendicular to which the axial lines are drawn
/Function load setupFunEval % may need to setup function dictionary by calling setupFunEval
% this is now specific to axial shadings. Compute the maximum bounds to fill
clippath {pathbbox}stopped {0 0 0 0}if newpath % x0 y0 x1 y1
/ymax xs
/xmax xs
/ymin xs
/xmin xs
currentdict/Extend known
{
/Extend load 0 get
{
0/Function load FunEval sc % evaluate the function to get a color and set it
xmin ymin xmin abs ymax ymin sub rectfill
}if
}if
% paint the rects. The sampling frequency is that of our table
/Nsteps/Function load/Size get 0 get 1 sub store
/dx 1 Nsteps div store
gsave
/di ymax ymin sub store
/Function load
% loop Nsteps + 1 times, incrementing the index by 1 each time
0 1 Nsteps
{
1 index FunEval sc
0 ymin dx di rectfill
dx 0 translate
}for
pop % pop our function
grestore % origin is back to start point
currentdict/Extend known
{
/Extend load 1 get
{
Nsteps/Function load FunEval sc % last element
1 ymin xmax 1 sub abs ymax ymin sub rectfill
}if
}if
}bd
/shp % this paints our shape for shading type 3
{ % x1 r1 x0 r0 -
4 copy
% fill interior arc
dup 0 gt{
0 exch a1 a0 arc
}{
pop 0 moveto
}ifelse
dup 0 gt{
0 exch a0 a1 arcn
}{
pop 0 lineto
}ifelse
fill
% fill exterior arc
dup 0 gt{
0 exch a0 a1 arc
}{
pop 0 moveto
}ifelse
dup 0 gt{
0 exch a1 a0 arcn
}{
pop 0 lineto
}ifelse
fill
}bd
/calcmaxs
{ % calculate maximum distance vector from origin to corner points
% of bbox
xmin dup mul ymin dup mul add sqrt % (xmin2 + ymin2)
xmax dup mul ymin dup mul add sqrt % (xmax2 + ymin2)
xmin dup mul ymax dup mul add sqrt % (xmin2 + ymax2)
xmax dup mul ymax dup mul add sqrt % (xmax2 + ymax2)
max max max % maximum value
}bd
/sh3
{ % emulation of shading type 3. Assumes shading dictionary is top dictionary on the dict stack
/Coords load aload pop % x0 y0 r1 x1 y1 r2
5 index 5 index translate % origin is now at first circle origin
3 -1 roll 6 -1 roll sub % y0 r1 y1 r2 dx
3 -1 roll 5 -1 roll sub % r1 r2 dx dy
2 copy dup mul exch dup mul add sqrt
/dx xs % r1 r2 dx dy
2 copy 0 ne exch 0 ne or
{
% r1 r2 dx dy
exch atan rotate % we are now rotated so dy is zero and positive values of dx move us as expected
}{
pop pop
}ifelse
% r1 r2
/r2 xs
/r1 xs
/Function load
dup/Size get 0 get 1 sub % this is the size of our table minus 1
/Nsteps xs % at some point we should optimize this better so NSteps is based on needed steps for the device
setupFunEval % may need to setup function dictionary by calling setupFunEval
% determine the case:
% case 0: circle1 inside circle2
% case 1: circle 2 inside circle 1
% case 2: r1 = r2
% case 3: r1 != r2
dx r2 add r1 lt{
% circle 2 inside of circle 1
0
}{
dx r1 add r2 le
{ % circle 1 inside of circle 2
1
}{ % circles don't contain each other
r1 r2 eq
{ % equal
2
}{ % r1 != r2
3
}ifelse
}ifelse
}ifelse
/sh3tp xs % sh3tp has the number of our different cases
clippath {pathbbox}stopped {0 0 0 0}if
newpath % x0 y0 x1 y1
/ymax xs
/xmax xs
/ymin xs
/xmin xs
% Arc angle atan( sqrt((dx*dx + dy*dy) - dr*dr), dr)
dx dup mul r2 r1 sub dup mul sub dup 0 gt
{
sqrt r2 r1 sub atan
/a0 exch 180 exch sub store
/a1 a0 neg store
}{
pop
/a0 0 store
/a1 360 store
}ifelse
currentdict/Extend known
{
/Extend load 0 get r1 0 gt and % no need to extend if the radius of the first end is 0
{
0/Function load FunEval sc % evaluate the function to get a color and set it
% case 0: circle1 inside circle2
% case 1: circle 2 inside circle 1
% case 2: circles don't contain each other and r1 == r2
% case 3: circles don't contain each other and r1 != r2
{
{ % case 0
dx 0 r1 360 0 arcn
xmin ymin moveto
xmax ymin lineto
xmax ymax lineto
xmin ymax lineto
xmin ymin lineto
eofill % for the bigger radius we fill everything except our circle
}
{ % case 1
r1 0 gt{0 0 r1 0 360 arc fill}if
}
{ % case 2
% r1 == r2, extend 0
% r3 = r, x3 = -(abs(minx) + r), x1 = 0
% x(i+1) r(i+1) x(i) r(i) shp
0 r1 xmin abs r1 add neg r1 shp
}
{ % case 3
% no containment, r1 != r2
r2 r1 gt{ % the endpoint we are drawing is that with a circle of zero radius
% x(i+1) r(i+1) x(i) r(i) shp
0 r1
r1 neg r2 r1 sub div dx mul % this is point of beginning circle
0 % point of ending circle
shp % takes x(i+1) r(i+1) x(i) r(i)
}{ % the first circle is the bigger of the two
% we find a circle on our line which is outside the bbox in the
% negative direction
% x(i+1) r(i+1) x(i) r(i) shp
0 r1 calcmaxs % 0 r1 maxs
dup
% calculating xs: (-(maxs+r2)*x2)/(x2-(r1-r2))
r2 add dx mul dx r1 r2 sub sub div
neg % maxs xs'
exch 1 index % xs' maxs xs'
abs exch sub
shp
}ifelse
}
}sh3tp get exec % execute the extend at beginning proc for our shading type
}if
}if
% now do the shading
/d0 0 store
/r0 r1 store
/di dx Nsteps div store
/ri r2 r1 sub Nsteps div store
/Function load
0 1 Nsteps
{ % function t(i)
1 index FunEval sc
d0 di add r0 ri add d0 r0 shp
{
% fill interior arc
d0 0 r0 a1 a0 arc
d0 di add 0 r0 ri add a0 a1 arcn
fill
% fill exterior arc
d0 0 r0 a0 a1 arc
d0 di add 0 r0 ri add a1 a0 arcn
fill
}pop
% advance to next
/d0 d0 di add store
/r0 r0 ri add store
}for
pop % pop our function dict
% handle Extend
currentdict/Extend known
{
/Extend load 1 get r2 0 gt and % no need to extend if the radius of the last end is 0
{
Nsteps/Function load FunEval sc % last element
% case 0: circle1 inside circle2
% case 1: circle 2 inside circle 1
% case 2: circles don't contain each other and r1 == r2
% case 3: circles don't contain each other and r1 != r2
{
{
dx 0 r2 0 360 arc fill
}
{
dx 0 r2 360 0 arcn
xmin ymin moveto
xmax ymin lineto
xmax ymax lineto
xmin ymax lineto
xmin ymin lineto
eofill % for the bigger radius we fill everything except our circle
}
{ % r1 == r2, extend 1
% r3 = r, x3 = (abs(xmax) + r), x1 = dx
% x(i+1) r(i+1) x(i) r(i) shp
xmax abs r1 add r1 dx r1 shp
}
{ % no containment, r1 != r2
r2 r1 gt{
% we find a circle on our line which is outside the bbox in the
% positive direction
% x(i+1) r(i+1) x(i) r(i) shp
calcmaxs dup % maxs maxs
% calculating xs: ((maxs+r1)*x2)/(x2-(r2-r1))
r1 add dx mul dx r2 r1 sub sub div % maxs xs
exch 1 index % xs maxs xs
exch sub
dx r2
shp
}{ % the endpoint we are drawing is that with a circle of zero radius
% x(i+1) r(i+1) x(i) r(i) shp
r1 neg r2 r1 sub div dx mul % this is point of ending circle
0 % radius of ending circle
dx % point of starting circle
r2 % radius of starting circle
shp
}ifelse
}
}
sh3tp get exec % execute the extend at end proc for our shading type
}if
}if
}bd
/sh % emulation of shfill operator for type 2 and type 3 shadings based on type 0 functions
{ % shadingDict --
begin
/ShadingType load dup dup 2 eq exch 3 eq or
{ % shadingtype
gsave
newpath
/ColorSpace load scs
currentdict/BBox known
{
/BBox load aload pop % llx lly urx ury
2 index sub % llx lly urx ury-lly
3 index % llx lly urx ury-lly llx
3 -1 roll exch sub
exch rectclip
}if
2 eq
{sh2}{sh3}ifelse
grestore
}{
% shadingtype
pop
(DEBUG: shading type unimplemented\n)print flush
}ifelse
end
}bd
% end of language level 2 ONLY code
{restore}if not dup{save exch}if
% languagelevel3 ONLY code goes here
L3?{ % we do these loads conditionally or else they will fail on a level 2 printer
/sh/shfill ld
/csq/clipsave ld
/csQ/cliprestore ld
}if
{restore}if
%currentdict dup maxlength exch length sub (number of extra slots in md = )print == flush % *** how many entries are free
end
setpacking
% count 0 ne { pstack(***extras on stack during prolog execution***\n)print flush}if % *** BARK if anything is left on stack
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dup 33 /H put
dup 34 /y put
dup 35 /p put
dup 36 /o put
dup 37 /hyphen put
dup 38 /c put
dup 39 /a put
dup 40 /l put
dup 41 /e put
dup 42 /m put
dup 43 /i put
dup 44 /r put
dup 45 /t put
dup 46 /h put
dup 47 /d put
dup 48 /s put
dup 49 /P put
dup 50 /u put
dup 51 /V put
dup 52 /n put
dup 53 /space put
dup 54 /D put
dup 55 /fi put
dup 56 /R put
dup 57 /T put
dup 58 /F put
dup 59 /v put
dup 60 /w put
dup 61 /g put
dup 62 /two put
dup 63 /five put
dup 64 /O put
dup 65 /M put
dup 66 /C put
dup 67 /G put
dup 68 /S put
dup 69 /four put
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/u 33 def
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