home
***
CD-ROM
|
disk
|
FTP
|
other
***
search
/
MacWorld 1998 March
/
Macworld (1998-03) (Disk 1).dmg
/
Shareware World
/
Info
/
For Developers
/
GhostScript 5.10
/
MacGS-510
/
files
/
ps2epsi.ps
< prev
next >
Wrap
Text File
|
1997-09-30
|
8KB
|
254 lines
% Copyright (C) 1990, 1995, 1997 Aladdin Enterprises. All rights reserved.
%
% This file is part of Aladdin Ghostscript.
%
% Aladdin Ghostscript is distributed with NO WARRANTY OF ANY KIND. No author
% or distributor accepts any responsibility for the consequences of using it,
% or for whether it serves any particular purpose or works at all, unless he
% or she says so in writing. Refer to the Aladdin Ghostscript Free Public
% License (the "License") for full details.
%
% Every copy of Aladdin Ghostscript must include a copy of the License,
% normally in a plain ASCII text file named PUBLIC. The License grants you
% the right to copy, modify and redistribute Aladdin Ghostscript, but only
% under certain conditions described in the License. Among other things, the
% License requires that the copyright notice and this notice be preserved on
% all copies.
% Convert an arbitrary PostScript file to an EPSI file.
%
% Original version contributed by
% George Cameron <george@bio-medical-physics.aberdeen.ac.uk>
% Patched 7/26/95 by
% Greg P. Kochanski <gpk@bell-labs.com>
% to add many new DSC comments and make the comments conforming.
% Bug fix 9/29/97 by lpd <ghost@aladdin.com>: if the page size wasn't an
% exact multiple of 8 bits, an incorrect bounding box (or a rangecheck
% error) could occur.
% Please do not contact these users if you have questions. They no longer
% have the time, interest, or current expertise to keep this code working.
% If you find bugs, please send proposed fixes to ghost@aladdin.com.
%
% Initialize, and redefine copypage and showpage.
% ps2edict is defined in the pre-loaded code created by the ps2epsi script.
% /ps2edict 25 dict def
ps2edict begin
% The main procedure
/ps2epsi
{ % Open the file
outfile (w) file /epsifile exch def
% Get the device parameters
currentdevice getdeviceprops .dicttomark
/HWSize get aload pop
/devheight exch def
/devwidth exch def
matrix defaultmatrix
/devmatrix exch def
% Make a corresponding memory device
devmatrix devwidth devheight <ff 00>
makeimagedevice
/arraydevice exch def
arraydevice setdevice % (does an erasepage)
/rowwidth devwidth 7 add 8 idiv def
/row rowwidth string def
% Replace the definition of showpage
userdict /showpage { ps2edict begin epsipage end } bind put
userdict /setfont { ps2edict begin epsisetfont end } bind put
} def
/epsifontdict 100 dict def
/epsisetfont
{
% code here keeps a list of font names in dictionary epsifontdict
/tmpfont exch def
/tmpfontname tmpfont /FontName get def
epsifontdict tmpfontname known not { epsifontdict tmpfontname 0 put } if
epsifontdict tmpfontname
epsifontdict tmpfontname get 1 add put
tmpfont setfont
} bind def
% Get a scan line from the memory device, zeroing any bits beyond
% the device width.
/getscanline % <device> <y> <string> getscanline -
{
dup 4 1 roll copyscanlines pop
16#ff00 devwidth 7 and neg bitshift 255 and
dup 0 ne {
exch dup length 1 sub 2 copy get 4 -1 roll and put
} {
pop pop
} ifelse
} bind def
/margintest
{
{ dup arraydevice exch row getscanline
-1 0 1 rowwidth 1 sub
{ dup row exch get 0 ne { exit }{ pop } ifelse
} for
dup -1 ne { exch pop } if
-1 ne { exit } if pop
} for
} bind def
/epsiNameStr 200 string def
/epsiNpages 0 def
/epsiNpageStr 20 string def
/epsipage
{
/epsiNpages epsiNpages 1 add def
/loopcount devheight 1 sub def
% Find top margin
-1 0 1 loopcount margintest
dup -1 eq { (blank page!!\n) print quit }{ exch pop } ifelse
/tm exch def
% Find bottom margin
loopcount -1 0 margintest
/bm exch def
% Initialise limit variables
/loopcount rowwidth 1 sub def
/lm loopcount def /lmb 0 def
/rm 0 def /rmb 0 def
% Find left and right boundaries of image
tm 1 bm
{ % Get more data
arraydevice exch row getscanline
% Scan from left to find first non-zero element
% We save first the element, then the index
-1 0 1 loopcount
{ dup row exch get dup 0 ne { exch exit }{ pop pop } ifelse
} for
% If we found -1, row is blank ..
dup -1 ne
{ % Find the leftmost index
dup lm lt
% If the new index is less, we save index and element
{ /lm exch def /lmb exch def }
% If the index is equal, we or the bits together
{ lm eq { lmb or /lmb exch def }{ pop } ifelse
} ifelse
% Now find the rightmost index
loopcount -1 0
{ dup row exch get dup 0 ne { exch exit }{ pop pop } ifelse
} for
dup rm gt
% If the new index is greater, we save index and element
{ /rm exch def /rmb exch def }
% If the index is equal, or the bits
{ rm eq { rmb or /rmb exch def } { pop } ifelse
} ifelse
} if
pop
} for
% Now we find the real left & right bit positions
256 0 1 7
{ exch 2 div dup lmb le { pop exit }{ exch pop } ifelse
} for
/lmb exch def
1 7 -1 0
{ exch dup dup rmb and eq { pop exit }{ 2 mul exch pop } ifelse
} for
/rmb exch def
% Calculate the bounding box values
/llx lm 8 mul lmb add 1 sub def
/lly devheight bm sub 1 sub def
/urx rm 8 mul rmb add 1 add def
/ury devheight tm sub 1 add def
% Write out the magic string and bounding box information
epsifile (%!PS-Adobe-2.0 EPSF-1.2\n) writestring
epsifile epsititle writestring
epsifile epsicreator writestring
epsifile epsicrdt writestring
epsifile epsifor writestring
epsifile flushfile
% Write out the page count:
epsifile (%%Pages: ) writestring
epsifile epsiNpages epsiNpageStr cvs writestring
epsifile (\n) writestring
epsifile flushfile
% Write out the list of used fonts:
epsifile (%%DocumentFonts:) writestring
epsifontdict {
epsifile ( ) writestring
pop epsiNameStr cvs epsifile exch writestring
} forall
epsifile (\n) writestring
epsifile flushfile
epsifile (%%BoundingBox: ) writestring
epsifile llx write==only epsifile ( ) writestring
epsifile lly write==only epsifile ( ) writestring
epsifile urx write==only epsifile ( ) writestring
epsifile ury write==
epsifile (%%BeginPreview: ) writestring
epsifile urx llx sub 1 add write==only epsifile ( ) writestring
epsifile bm tm sub 1 add write==only epsifile ( 1 ) writestring
epsifile bm tm sub 1 add write==
epsifile flushfile
% Define character and bit widths for the output line buffer:
/cwidth rm lm sub 1 add 8 mul 7 add 8 idiv def
/bwidth cwidth 8 mul def
/owidth urx llx sub 1 add 7 add 8 idiv def
/out cwidth string def
% Create a 1-bit-high device for bitblt to align with the bbox
gsave
matrix cwidth 8 mul 1 <00 ff> makeimagedevice setdevice
% 'image' a zero string to clear the line device
bwidth 1 1 matrix cwidth string image
tm 1 bm
{ % Get a scan line interval from the array device
arraydevice exch row copyscanlines lm cwidth getinterval
lmb 0 gt
{ % 'image' it into the line device with the lmb offset
bwidth 1 1 [1 0 0 1 lmb 0] 5 -1 roll image
% Now we get the modified scan line
currentdevice 0 out copyscanlines 0 owidth getinterval
} if
% Write out the hex data
epsifile (% ) writestring
epsifile exch writehexstring
epsifile (\n) writestring
} for
epsifile (%%EndImage\n) writestring
epsifile (%%EndPreview\n) writestring
epsifile flushfile
grestore
erasepage initgraphics
DonePage 0 1 put
} bind def
(outfile) getenv
{ /outfile exch def
ps2epsi
/DonePage 1 string def
(%stdin) (r) file cvx execute0
DonePage 0 get 0 eq { showpage } if
} if
end
quit