xref: /plan9/sys/src/cmd/gs/src/devs.mak (revision 593dc095aefb2a85c828727bbfa9da139a49bdf4)
1#    Copyright (C) 1989, 2000-2004 artofcode LLC. All rights reserved.
2#
3# This software is provided AS-IS with no warranty, either express or
4# implied.
5#
6# This software is distributed under license and may not be copied,
7# modified or distributed except as expressly authorized under the terms
8# of the license contained in the file LICENSE in this distribution.
9#
10# For more information about licensing, please refer to
11# http://www.ghostscript.com/licensing/. For information on
12# commercial licensing, go to http://www.artifex.com/licensing/ or
13# contact Artifex Software, Inc., 101 Lucas Valley Road #110,
14# San Rafael, CA  94903, U.S.A., +1(415)492-9861.
15
16# $Id: devs.mak,v 1.140 2005/10/18 09:05:58 leonardo Exp $
17# makefile for Aladdin's device drivers.
18
19# Define the name of this makefile.
20DEVS_MAK=$(GLSRC)devs.mak
21
22# All device drivers depend on the following:
23GDEVH=$(gserrors_h) $(gx_h) $(gxdevice_h)
24GDEV=$(AK) $(ECHOGS_XE) $(GDEVH)
25
26###### --------------------------- Overview -------------------------- ######
27
28# It is possible to build Ghostscript with an arbitrary collection of device
29# drivers, although some drivers are supported only on a subset of the
30# target platforms.
31
32# The catalog in this file, devs.mak, lists all the drivers that were
33# written by Aladdin, or by people working closely with Aladdin, and for
34# which Aladdin is willing to take problem reports (although since
35# Ghostscript is provided with NO WARRANTY and NO SUPPORT, we can't promise
36# that we'll solve your problem).  Another file, contrib.mak, lists all the
37# drivers contributed by other people that are distributed by Aladdin with
38# Ghostscript.  Note in particular that all drivers for color inkjets and
39# other non-PostScript-capable color printers are in contrib.mak.
40
41# If you haven't configured Ghostscript before, or if you want to add a
42# driver that that isn't included in the catalogs (for which you have the
43# source code), we suggest you skip to the "End of catalog" below and read
44# the documentation there before continuing.
45
46###### --------------------------- Catalog -------------------------- ######
47
48# MS-DOS displays (note: not usable with Desqview/X):
49#   MS-DOS EGA and VGA:
50#	ega	EGA (640x350, 16-color)
51#	vga	VGA (640x480, 16-color)
52#   MS-DOS SuperVGA:
53# *	ali	SuperVGA using Avance Logic Inc. chipset, 256-color modes
54# *	atiw	ATI Wonder SuperVGA, 256-color modes
55# *	cirr	SuperVGA using Cirrus Logic CL-GD54XX chips, 256-color modes
56# *	s3vga	SuperVGA using S3 86C911 chip (e.g., Diamond Stealth board)
57#	svga16	Generic SuperVGA in 800x600, 16-color mode
58# *	tseng	SuperVGA using Tseng Labs ET3000/4000 chips, 256-color modes
59# *	tvga	SuperVGA using Trident chipset, 256-color modes
60#   ****** NOTE: The vesa device does not work with the Watcom (32-bit MS-DOS)
61#   ****** compiler or executable.
62#	vesa	SuperVGA with VESA standard API driver
63# Other displays:
64#	display   For use on any platform that supports DLLs
65#   MS Windows:
66#	mswindll  Microsoft Windows 3.1 DLL  [MS Windows only]
67#	mswinprn  Microsoft Windows 3.0, 3.1 DDB printer  [MS Windows only]
68#	mswinpr2  Microsoft Windows 3.0, 3.1 DIB printer  [MS Windows only]
69#   OS/2:
70# *	os2pm	OS/2 Presentation Manager   [OS/2 only]
71# *	os2dll	OS/2 DLL bitmap             [OS/2 only]
72# *	os2prn	OS/2 printer                [OS/2 only]
73#   Unix and VMS:
74#   ****** NOTE: For direct frame buffer addressing under SCO Unix or Xenix,
75#   ****** edit the definition of EGAVGA below.
76# *	lvga256  Linux vgalib, 256-color VGA modes  [Linux only]
77# +	vgalib	Linux vgalib, 16-color VGA modes   [Linux only]
78#	x11	X Windows version 11, release >=4   [Unix and VMS only]
79#	x11alpha  X Windows masquerading as a device with alpha capability
80#	x11cmyk  X Windows masquerading as a 1-bit-per-plane CMYK device
81#	x11cmyk2  X Windows as a 2-bit-per-plane CMYK device
82#	x11cmyk4  X Windows as a 4-bit-per-plane CMYK device
83#	x11cmyk8  X Windows as an 8-bit-per-plane CMYK device
84#	x11gray2  X Windows as a 2-bit gray-scale device
85#	x11gray4  X Windows as a 4-bit gray-scale device
86#	x11mono  X Windows masquerading as a black-and-white device
87#	x11rg16x  X Windows with G5/B5/R6 pixel layout for testing.
88#	x11rg32x  X Windows with G11/B10/R11 pixel layout for testing.
89# Printers:
90# +	atx23	Practical Automation ATX-23 label printer
91# +	atx24	Practical Automation ATX-24 label printer
92# +	atx38	Practical Automation ATX-38 label printer
93# +	deskjet  H-P DeskJet and DeskJet Plus
94#	djet500  H-P DeskJet 500; use -r600 for DJ 600 series
95# +	fs600	Kyocera FS-600 (600 dpi)
96# +	laserjet  H-P LaserJet
97# +	ljet2p	H-P LaserJet IId/IIp/III* with TIFF compression
98# +	ljet3	H-P LaserJet III* with Delta Row compression
99# +	ljet3d	H-P LaserJet IIID with duplex capability
100# +	ljet4	H-P LaserJet 4 (defaults to 600 dpi)
101# +	ljet4d	H-P LaserJet 4 (defaults to 600 dpi) with duplex
102# +	ljetplus  H-P LaserJet Plus
103#	lj5mono  H-P LaserJet 5 & 6 family (PCL XL), bitmap:
104#		see below for restrictions & advice
105#	lj5gray  H-P LaserJet 5 & 6 family, gray-scale bitmap;
106#		see below for restrictions & advice
107# *	lp2563	H-P 2563B line printer
108# *	oce9050  OCE 9050 printer
109#	(pxlmono) H-P black-and-white PCL XL printers (LaserJet 5 and 6 family)
110#	(pxlcolor) H-P color PCL XL printers (e.g. Color LaserJet 4500)
111# Fax file format:
112#   ****** NOTE: all of these drivers normally adjust the page size to match
113#   ****** one of the three CCITT standard sizes (U.S. letter with A4 width,
114#   ****** A4, or B4).  To suppress this, use -dAdjustWidth=0.
115#	faxg3	Group 3 fax, with EOLs but no header or EOD
116#	faxg32d  Group 3 2-D fax, with EOLs but no header or EOD
117#	faxg4	Group 4 fax, with EOLs but no header or EOD
118#	tiffcrle  TIFF "CCITT RLE 1-dim" (= Group 3 fax with no EOLs)
119#	tiffg3	TIFF Group 3 fax (with EOLs)
120#	tiffg32d  TIFF Group 3 2-D fax
121#	tiffg4	TIFF Group 4 fax
122# High-level file formats:
123#	epswrite  EPS output (like PostScript Distillery)
124#	pdfwrite  PDF output (like Adobe Acrobat Distiller)
125#	pswrite  PostScript output (like PostScript Distillery)
126#	pxlmono  Black-and-white PCL XL
127#	pxlcolor  Color PCL XL
128# Other raster file formats and devices:
129#	bit	Plain bits, monochrome
130#	bitrgb	Plain bits, RGB
131#	bitcmyk  Plain bits, CMYK
132#	bmpmono	Monochrome MS Windows .BMP file format
133#	bmpgray	8-bit gray .BMP file format
134#	bmpsep1	Separated 1-bit CMYK .BMP file format, primarily for testing
135#	bmpsep8	Separated 8-bit CMYK .BMP file format, primarily for testing
136#	bmp16	4-bit (EGA/VGA) .BMP file format
137#	bmp256	8-bit (256-color) .BMP file format
138#	bmp16m	24-bit .BMP file format
139#	bmp32b  32-bit pseudo-.BMP file format
140#	cgmmono  Monochrome (black-and-white) CGM -- LOW LEVEL OUTPUT ONLY
141#	cgm8	8-bit (256-color) CGM -- DITTO
142#	cgm24	24-bit color CGM -- DITTO
143#	jpeg	JPEG format, RGB output
144#	jpeggray  JPEG format, gray output
145#	jpegcmyk  JPEG format, cmyk output
146#	miff24	ImageMagick MIFF format, 24-bit direct color, RLE compressed
147#	pam	Portable Arbitrary Map file format
148#	pcxmono	PCX file format, monochrome (1-bit black and white)
149#	pcxgray	PCX file format, 8-bit gray scale
150#	pcx16	PCX file format, 4-bit planar (EGA/VGA) color
151#	pcx256	PCX file format, 8-bit chunky color
152#	pcx24b	PCX file format, 24-bit color (3 8-bit planes)
153#	pcxcmyk PCX file format, 4-bit chunky CMYK color
154#	pbm	Portable Bitmap (plain format)
155#	pbmraw	Portable Bitmap (raw format)
156#	pgm	Portable Graymap (plain format)
157#	pgmraw	Portable Graymap (raw format)
158#	pgnm	Portable Graymap (plain format), optimizing to PBM if possible
159#	pgnmraw	Portable Graymap (raw format), optimizing to PBM if possible
160#	pnm	Portable Pixmap (plain format) (RGB), optimizing to PGM or PBM
161#		 if possible
162#	pnmraw	Portable Pixmap (raw format) (RGB), optimizing to PGM or PBM
163#		 if possible
164#	ppm	Portable Pixmap (plain format) (RGB)
165#	ppmraw	Portable Pixmap (raw format) (RGB)
166#	pkm	Portable inKmap (plain format) (4-bit CMYK => RGB)
167#	pkmraw	Portable inKmap (raw format) (4-bit CMYK => RGB)
168#	pksm	Portable Separated map (plain format) (4-bit CMYK => 4 pages)
169#	pksmraw	Portable Separated map (raw format) (4-bit CMYK => 4 pages)
170# *	plan9bm  Plan 9 bitmap format
171#	pngmono	Monochrome Portable Network Graphics (PNG)
172#	pnggray	8-bit gray Portable Network Graphics (PNG)
173#	png16	4-bit color Portable Network Graphics (PNG)
174#	png256	8-bit color Portable Network Graphics (PNG)
175#	png16m	24-bit color Portable Network Graphics (PNG)
176#	pngalpha 32-bit RGBA color Portable Network Graphics (PNG)
177#	psmono	PostScript (Level 1) monochrome image
178#	psgray	PostScript (Level 1) 8-bit gray image
179#	psrgb	PostScript (Level 2) 24-bit color image
180#	tiffgray  TIFF 8-bit gray, no compression
181#	tiff12nc  TIFF 12-bit RGB, no compression
182#	tiff24nc  TIFF 24-bit RGB, no compression (NeXT standard format)
183#	tiff32nc  TIFF 32-bit CMYK
184#	tiffsep   Creates tiffgray for each colorant plus a CMYK composite
185#	tifflzw  TIFF LZW (tag = 5) (monochrome)
186#	tiffpack  TIFF PackBits (tag = 32773) (monochrome)
187
188# Note that MS Windows-specific drivers are defined in pcwin.mak, not here,
189# because they have special compilation requirements that require defining
190# parameter macros not relevant to other platforms; the OS/2-specific
191# drivers are there too, because they share some definitions.
192
193# User-contributed drivers marked with * require hardware or software
194# that is not available to Aladdin Enterprises.  Please contact the
195# original contributors, not Aladdin Enterprises, if you have questions.
196# Contact information appears in the driver entry below.
197#
198# Drivers marked with a + are maintained by Aladdin Enterprises with
199# the assistance of users, since Aladdin Enterprises doesn't have access to
200# the hardware for these either.
201
202# If you add drivers, it would be nice if you kept each list
203# in alphabetical order.
204
205###### ----------------------- End of catalog ----------------------- ######
206
207# As noted in gs.mak, DEVICE_DEVS and DEVICE_DEVS1..15 select the devices
208# that should be included in a given configuration.  By convention, these
209# are used as follows.  Each of these must be limited to about 6 devices
210# so as not to overflow the 120 character limit on MS-DOS command lines.
211#	DEVICE_DEVS - the default device, and any display devices.
212#	DEVICE_DEVS1 - additional display devices if needed.
213#	DEVICE_DEVS2 - dot matrix printers.
214#	DEVICE_DEVS3 - H-P monochrome printers.
215#	DEVICE_DEVS4 - H-P color printers.
216#	DEVICE_DEVS5 - additional inkjet printers if needed.
217#	DEVICE_DEVS6 - other ink-jet and laser printers.
218#	DEVICE_DEVS7 - fax file formats.
219#	DEVICE_DEVS8 - PCX file formats.
220#	DEVICE_DEVS9 - PBM/PGM/PPM file formats.
221#	DEVICE_DEVS10 - black-and-white TIFF file formats.
222#	DEVICE_DEVS11 - BMP and color TIFF file formats.
223#	DEVICE_DEVS12 - PostScript image and 'bit' file formats.
224#	DEVICE_DEVS13 - PNG file formats.
225#	DEVICE_DEVS14 - CGM, JPEG, and MIFF file formats.
226#	DEVICE_DEVS15 - high-level (PostScript and PDF) file formats.
227#	DEVICE_DEVS16 - additional high-level and utility drivers
228#	DEVICE_DEVS17 - (overflow for PC platforms)
229#	DEVICE_DEVS18 - (ditto)
230#	DEVICE_DEVS19 - (ditto)
231#	DEVICE_DEVS20 - (ditto)
232# Feel free to disregard this convention if it gets in your way.
233
234# If you want to add a new device driver, the examples below should be
235# enough of a guide to the correct form for the makefile rules.
236# Note that all drivers other than displays must include page.dev in their
237# dependencies and use $(SETPDEV) rather than $(SETDEV) in their rule bodies.
238
239# "Printer" drivers depend on the following:
240PDEVH=$(AK) $(gdevprn_h)
241
242# Define the header files for device drivers.  Every header file used by
243# more than one device driver family must be listed here.
244gdev8bcm_h=$(GLSRC)gdev8bcm.h
245gdevcbjc_h=$(GLSRC)gdevcbjc.h $(stream_h)
246gdevdcrd_h=$(GLSRC)gdevdcrd.h
247gsequivc_h=$(GLSRC)gsequivc.h
248gdevdevn_h=$(GLSRC)gdevdevn.h $(gsequivc_h)
249gdevpccm_h=$(GLSRC)gdevpccm.h
250gdevpcfb_h=$(GLSRC)gdevpcfb.h $(dos__h)
251gdevpcl_h=$(GLSRC)gdevpcl.h
252gdevpsu_h=$(GLSRC)gdevpsu.h
253gdevsvga_h=$(GLSRC)gdevsvga.h
254# Out of order
255gdevdljm_h=$(GLSRC)gdevdljm.h $(gdevpcl_h)
256
257###### ----------------------- Device support ----------------------- ######
258
259# Implement dynamic color management for 8-bit mapped color displays.
260$(GLOBJ)gdev8bcm.$(OBJ) : $(GLSRC)gdev8bcm.c $(AK)\
261 $(gx_h) $(gxdevice_h) $(gdev8bcm_h)
262	$(GLCC) $(GLO_)gdev8bcm.$(OBJ) $(C_) $(GLSRC)gdev8bcm.c
263
264# PC display color mapping
265$(GLOBJ)gdevpccm.$(OBJ) : $(GLSRC)gdevpccm.c $(AK)\
266 $(gx_h) $(gsmatrix_h) $(gxdevice_h) $(gdevpccm_h)
267	$(GLCC) $(GLO_)gdevpccm.$(OBJ) $(C_) $(GLSRC)gdevpccm.c
268
269# Generate Canon BJC command sequences.
270$(GLOBJ)gdevcbjc.$(OBJ) : $(GLSRC)gdevcbjc.c $(AK)\
271 $(std_h) $(stream_h) $(gdevcbjc_h)
272	$(GLCC) $(GLO_)gdevcbjc.$(OBJ) $(C_) $(GLSRC)gdevcbjc.c
273
274# Provide a sample device CRD.
275$(GLOBJ)gdevdcrd.$(OBJ) : $(GLSRC)gdevdcrd.c $(AK)\
276 $(math__h) $(memory__h) $(string__h)\
277 $(gscrd_h) $(gscrdp_h) $(gserrors_h) $(gsparam_h) $(gscspace_h)\
278 $(gx_h) $(gxdevcli_h) $(gdevdcrd_h)
279	$(GLCC) $(GLO_)gdevdcrd.$(OBJ) $(C_) $(GLSRC)gdevdcrd.c
280
281# Support for writing PostScript (high- or low-level).
282$(GLOBJ)gdevpsu.$(OBJ) : $(GLSRC)gdevpsu.c $(GX) $(GDEV) $(math__h) $(time__h)\
283 $(stat__h) $(unistd__h)\
284 $(gdevpsu_h) $(gscdefs_h) $(gxdevice_h)\
285 $(spprint_h) $(stream_h)
286	$(GLCC) $(GLO_)gdevpsu.$(OBJ) $(C_) $(GLSRC)gdevpsu.c
287
288###### ------------------- MS-DOS display devices ------------------- ######
289
290# There are really only three drivers: an EGA/VGA driver (4 bit-planes,
291# plane-addressed), a SuperVGA driver (8 bit-planes, byte addressed),
292# and a special driver for the S3 chip.
293
294### ----------------------- EGA and VGA displays ----------------------- ###
295
296# The shared MS-DOS makefile defines PCFBASM as either gdevegaa.$(OBJ)
297# or an empty string.
298
299$(GLOBJ)gdevegaa.$(OBJ) : $(GLSRC)gdevegaa.asm
300	$(GLCC) $(GLO_)gdevegaa.$(OBJ) $(C_) $(GLSRC)gdevegaa.c
301
302EGAVGA_DOS=$(GLOBJ)gdevevga.$(OBJ) $(GLOBJ)gdevpcfb.$(OBJ) $(GLOBJ)gdevpccm.$(OBJ) $(PCFBASM)
303EGAVGA_SCO=$(GLOBJ)gdevsco.$(OBJ) $(GLOBJ)gdevpcfb.$(OBJ) $(GLOBJ)gdevpccm.$(OBJ) $(PCFBASM)
304# NOTE: for direct frame buffer addressing under SCO Unix or Xenix,
305# change DOS to SCO in the following line.  Also, since SCO's /bin/as
306# does not support the "out" instructions, you must build the GNU
307# assembler and have it on your path as "as".
308EGAVGA=$(EGAVGA_DOS)
309
310#**************** $(CCD) gdevevga.c
311$(GLOBJ)gdevevga.$(OBJ) : $(GLSRC)gdevevga.c $(GDEV) $(memory__h) $(gdevpcfb_h)
312	$(GLCC) $(GLO_)gdevevga.$(OBJ) $(C_) $(GLSRC)gdevevga.c
313
314$(GLOBJ)gdevsco.$(OBJ) : $(GLSRC)gdevsco.c $(GDEV) $(memory__h) $(gdevpcfb_h)
315	$(GLCC) $(GLO_)gdevsco.$(OBJ) $(C_) $(GLSRC)gdevsco.c
316
317# Common code for MS-DOS and SCO.
318#**************** $(CCD) gdevpcfb.c
319$(GLOBJ)gdevpcfb.$(OBJ) : $(GLSRC)gdevpcfb.c $(GDEV) $(memory__h) $(gconfigv_h)\
320 $(gdevpccm_h) $(gdevpcfb_h) $(gsparam_h)
321	$(GLCC) $(GLO_)gdevpcfb.$(OBJ) $(C_) $(GLSRC)gdevpcfb.c
322
323# The EGA/VGA family includes EGA and VGA.  Many SuperVGAs in 800x600,
324# 16-color mode can share the same code; see the next section below.
325$(DD)ega.dev : $(DEVS_MAK) $(EGAVGA)
326	$(SETDEV) $(DD)ega $(EGAVGA)
327
328$(DD)vga.dev : $(DEVS_MAK) $(EGAVGA)
329	$(SETDEV) $(DD)vga $(EGAVGA)
330
331### ------------------------- SuperVGA displays ------------------------ ###
332
333# SuperVGA displays in 16-color, 800x600 mode are really just slightly
334# glorified VGA's, so we can handle them all with a single driver.
335# The way to select them on the command line is with
336#	-sDEVICE=svga16 -dDisplayMode=NNN
337# where NNN is the display mode in decimal.  See Use.htm for the modes
338# for some popular display chipsets.
339
340$(DD)svga16.dev : $(DEVS_MAK) $(EGAVGA)
341	$(SETDEV) $(DD)svga16 $(EGAVGA)
342
343# More capable SuperVGAs have a wide variety of slightly differing
344# interfaces, so we need a separate driver for each one.
345
346SVGA=$(GLOBJ)gdevsvga.$(OBJ) $(GLOBJ)gdevpccm.$(OBJ) $(PCFBASM)
347
348#**************** $(CCD) gdevsvga.c
349$(GLOBJ)gdevsvga.$(OBJ) : $(GLSRC)gdevsvga.c $(GDEV) $(memory__h) $(gconfigv_h)\
350 $(gsparam_h) $(gxarith_h) $(gdevpccm_h) $(gdevpcfb_h) $(gdevsvga_h)
351	$(GLCC) $(GLO_)gdevsvga.$(OBJ) $(C_) $(GLSRC)gdevsvga.c
352
353# The SuperVGA family includes: Avance Logic Inc., ATI Wonder, S3,
354# Trident, Tseng ET3000/4000, and VESA.
355
356$(DD)ali.dev : $(DEVS_MAK) $(SVGA)
357	$(SETDEV) $(DD)ali $(SVGA)
358
359$(DD)atiw.dev : $(DEVS_MAK) $(SVGA)
360	$(SETDEV) $(DD)atiw $(SVGA)
361
362$(DD)cirr.dev : $(DEVS_MAK) $(SVGA)
363	$(SETDEV) $(DD)cirr $(SVGA)
364
365$(DD)tseng.dev : $(DEVS_MAK) $(SVGA)
366	$(SETDEV) $(DD)tseng $(SVGA)
367
368$(DD)tvga.dev : $(DEVS_MAK) $(SVGA)
369	$(SETDEV) $(DD)tvga $(SVGA)
370
371$(DD)vesa.dev : $(DEVS_MAK) $(SVGA)
372	$(SETDEV) $(DD)vesa $(SVGA)
373
374# The S3 driver doesn't share much code with the others.
375
376s3vga_=$(GLOBJ)gdevs3ga.$(OBJ) $(GLOBJ)gdevsvga.$(OBJ) $(GLOBJ)gdevpccm.$(OBJ)
377$(DD)s3vga.dev : $(DEVS_MAK) $(SVGA) $(s3vga_)
378	$(SETDEV) $(DD)s3vga $(SVGA)
379	$(ADDMOD) $(DD)s3vga -obj $(s3vga_)
380
381#**************** $(CCD) gdevs3ga.c
382$(GLOBJ)gdevs3ga.$(OBJ) : $(GLSRC)gdevs3ga.c $(GDEV) $(gdevpcfb_h) $(gdevsvga_h)
383	$(GLCC) $(GLO_)gdevs3ga.$(OBJ) $(C_) $(GLSRC)gdevs3ga.c
384
385###### ----------------------- Other displays ------------------------ ######
386
387### ------------------ Display device for DLL platforms ----------------- ###
388
389display_=$(GLOBJ)gdevdsp.$(OBJ) $(GLOBJ)gdevpccm.$(OBJ) $(GLOBJ)gdevdevn.$(OBJ) \
390	 $(GLOBJ)gsequivc.$(OBJ) $(GLOBJ)gdevdcrd.$(OBJ)
391$(DD)display.dev : $(display_)
392	$(SETDEV) $(DD)display $(display_)
393
394$(GLOBJ)gdevdsp.$(OBJ) : $(GLSRC)gdevdsp.c $(string__h)\
395 $(gp_h) $(gpcheck_h) $(gdevpccm_h) $(gsparam_h) $(gsdevice_h)\
396 $(GDEVH) $(gxdevmem_h) $(gdevdevn_h) $(gsequivc_h) $(gdevdsp_h) $(gdevdsp2_h)
397	$(GLCC) $(GLO_)gdevdsp.$(OBJ) $(C_) $(GLSRC)gdevdsp.c
398
399
400### ---------------------- Linux PC with vgalib ------------------------- ###
401### Note: these drivers were contributed by users.                        ###
402### For questions about the lvga256 driver, please contact                ###
403###       Ludger Kunz (ludger.kunz@fernuni-hagen.de).                     ###
404### For questions about the vgalib driver, please contact                 ###
405###       Erik Talvola (talvola@gnu.ai.mit.edu).                          ###
406### Note that the vgalib device supports only 16-color VGA modes.         ###
407
408lvga256_=$(GLOBJ)gdevl256.$(OBJ)
409$(DD)lvga256.dev : $(DEVS_MAK) $(lvga256_)
410	$(SETDEV) $(DD)lvga256 $(lvga256_)
411	$(ADDMOD) $(DD)lvga256 -lib vga vgagl
412
413$(GLOBJ)gdevl256.$(OBJ) : $(GLSRC)gdevl256.c $(GDEV) $(memory__h)
414	$(GLCC) $(GLO_)gdevl256.$(OBJ) $(C_) $(GLSRC)gdevl256.c
415
416vgalib_=$(GLOBJ)gdevvglb.$(OBJ) $(GLOBJ)gdevpccm.$(OBJ)
417$(DD)vgalib.dev : $(DEVS_MAK) $(vgalib_)
418	$(SETDEV2) $(DD)vgalib $(vgalib_)
419	$(ADDMOD) $(DD)vgalib -lib vga
420
421$(GLOBJ)gdevvglb.$(OBJ) : $(GLSRC)gdevvglb.c $(GDEV) $(gdevpccm_h) $(gsparam_h)
422	$(GLCC) $(GLO_)gdevvglb.$(OBJ) $(C_) $(GLSRC)gdevvglb.c
423
424### -------------------------- The X11 device -------------------------- ###
425
426# Please note that Aladdin Enterprises does not support Ghostview.
427# For more information about Ghostview, please contact Tim Theisen
428# (ghostview@cs.wisc.edu).
429
430x__h=$(GLSRC)x_.h
431gdevxcmp_h=$(GLSRC)gdevxcmp.h
432gdevx_h=$(GLSRC)gdevx.h $(gdevbbox_h) $(gdevxcmp_h)
433
434# See the main makefile for the definition of XLIBDIRS and XLIBS.
435x11_=$(GLOBJ)gdevx.$(OBJ) $(GLOBJ)gdevxcmp.$(OBJ) $(GLOBJ)gdevxini.$(OBJ)\
436 $(GLOBJ)gdevxres.$(OBJ) $(GLOBJ)gdevxxf.$(OBJ)\
437 $(GLOBJ)gdevemap.$(OBJ) $(GLOBJ)gsparamx.$(OBJ)
438$(DD)x11_.dev : $(DEVS_MAK) $(x11_) $(GLD)bboxutil.dev
439	$(SETMOD) $(DD)x11_ $(x11_)
440	$(ADDMOD) $(DD)x11_ -link $(XLIBDIRS)
441	$(ADDMOD) $(DD)x11_ -lib $(XLIBS)
442	$(ADDMOD) $(DD)x11_ -include $(GLD)bboxutil
443
444$(DD)x11.dev : $(DEVS_MAK) $(DD)x11_.dev
445	$(SETDEV2) $(DD)x11 -include $(DD)x11_
446
447# See the main makefile for the definition of XINCLUDE.
448GDEVX=$(GDEV) $(x__h) $(gdevx_h) $(TOP_MAKEFILES)
449$(GLOBJ)gdevx.$(OBJ) : $(GLSRC)gdevx.c $(GDEVX) $(math__h) $(memory__h)\
450 $(gscoord_h) $(gsdevice_h) $(gsiparm2_h) $(gsmatrix_h) $(gsparam_h)\
451 $(gxdevmem_h) $(gxgetbit_h) $(gxiparam_h) $(gxpath_h)
452	$(GLCC) $(XINCLUDE) $(GLO_)gdevx.$(OBJ) $(C_) $(GLSRC)gdevx.c
453
454$(GLOBJ)gdevxcmp.$(OBJ) : $(GLSRC)gdevxcmp.c $(GDEVX) $(math__h)
455	$(GLCC) $(XINCLUDE) $(GLO_)gdevxcmp.$(OBJ) $(C_) $(GLSRC)gdevxcmp.c
456
457$(GLOBJ)gdevxini.$(OBJ) : $(GLSRC)gdevxini.c $(GDEVX) $(memory__h)\
458 $(gserrors_h) $(gsparamx_h) $(gxdevmem_h) $(gdevbbox_h)
459	$(GLCC) $(XINCLUDE) $(GLO_)gdevxini.$(OBJ) $(C_) $(GLSRC)gdevxini.c
460
461# We have to compile gdevxres without warnings, because there is a
462# const/non-const cast required by the X headers that we can't work around.
463$(GLOBJ)gdevxres.$(OBJ) : $(GLSRC)gdevxres.c $(std_h) $(x__h)\
464 $(gsmemory_h) $(gstypes_h) $(gxdevice_h) $(gdevx_h)
465	$(CC_NO_WARN) $(GLCCFLAGS) $(XINCLUDE) $(GLO_)gdevxres.$(OBJ) $(C_) $(GLSRC)gdevxres.c
466
467$(GLOBJ)gdevxxf.$(OBJ) : $(GLSRC)gdevxxf.c $(GDEVX) $(math__h) $(memory__h)\
468 $(gsstruct_h) $(gsutil_h) $(gxxfont_h)
469	$(GLCC) $(XINCLUDE) $(GLO_)gdevxxf.$(OBJ) $(C_) $(GLSRC)gdevxxf.c
470
471# Alternate X11-based devices to help debug other drivers.
472# x11alpha pretends to have 4 bits of alpha channel.
473# x11cmyk pretends to be a CMYK device with 1 bit each of C,M,Y,K.
474# x11cmyk2 pretends to be a CMYK device with 2 bits each of C,M,Y,K.
475# x11cmyk4 pretends to be a CMYK device with 4 bits each of C,M,Y,K.
476# x11cmyk8 pretends to be a CMYK device with 8 bits each of C,M,Y,K.
477# x11gray2 pretends to be a 2-bit gray-scale device.
478# x11gray4 pretends to be a 4-bit gray-scale device.
479# x11mono pretends to be a black-and-white device.
480# x11rg16x pretends to be a G5/B5/R6 color device.
481# x11rg16x pretends to be a G11/B10/R11 color device.
482x11alt_=$(GLOBJ)gdevxalt.$(OBJ)
483$(DD)x11alt_.dev : $(DEVS_MAK) $(x11alt_) $(DD)x11_.dev
484	$(SETMOD) $(DD)x11alt_ $(x11alt_)
485	$(ADDMOD) $(DD)x11alt_ -include $(DD)x11_
486
487$(DD)x11alpha.dev : $(DEVS_MAK) $(DD)x11alt_.dev
488	$(SETDEV2) $(DD)x11alpha -include $(DD)x11alt_
489
490$(DD)x11cmyk.dev : $(DEVS_MAK) $(DD)x11alt_.dev
491	$(SETDEV2) $(DD)x11cmyk -include $(DD)x11alt_
492
493$(DD)x11cmyk2.dev : $(DEVS_MAK) $(DD)x11alt_.dev
494	$(SETDEV2) $(DD)x11cmyk2 -include $(DD)x11alt_
495
496$(DD)x11cmyk4.dev : $(DEVS_MAK) $(DD)x11alt_.dev
497	$(SETDEV2) $(DD)x11cmyk4 -include $(DD)x11alt_
498
499$(DD)x11cmyk8.dev : $(DEVS_MAK) $(DD)x11alt_.dev
500	$(SETDEV2) $(DD)x11cmyk8 -include $(DD)x11alt_
501
502$(DD)x11gray2.dev : $(DEVS_MAK) $(DD)x11alt_.dev
503	$(SETDEV2) $(DD)x11gray2 -include $(DD)x11alt_
504
505$(DD)x11gray4.dev : $(DEVS_MAK) $(DD)x11alt_.dev
506	$(SETDEV2) $(DD)x11gray4 -include $(DD)x11alt_
507
508$(DD)x11mono.dev : $(DEVS_MAK) $(DD)x11alt_.dev
509	$(SETDEV2) $(DD)x11mono -include $(DD)x11alt_
510
511$(DD)x11rg16x.dev : $(DEVS_MAK) $(DD)x11alt_.dev
512	$(SETDEV2) $(DD)x11rg16x -include $(DD)x11alt_
513
514$(DD)x11rg32x.dev : $(DEVS_MAK) $(DD)x11alt_.dev
515	$(SETDEV2) $(DD)x11rg32x -include $(DD)x11alt_
516
517$(GLOBJ)gdevxalt.$(OBJ) : $(GLSRC)gdevxalt.c $(GDEVX) $(math__h) $(memory__h)\
518 $(gsdevice_h) $(gsparam_h) $(gsstruct_h)
519	$(GLCC) $(XINCLUDE) $(GLO_)gdevxalt.$(OBJ) $(C_) $(GLSRC)gdevxalt.c
520
521###### --------------- Memory-buffered printer devices --------------- ######
522
523### ---------------- Practical Automation label printers ---------------- ###
524
525atx_=$(GLOBJ)gdevatx.$(OBJ)
526
527$(DD)atx23.dev : $(DEVS_MAK) $(atx_) $(GLD)page.dev
528	$(SETPDEV2) $(DD)atx23 $(atx_)
529
530$(DD)atx24.dev : $(DEVS_MAK) $(atx_) $(GLD)page.dev
531	$(SETPDEV2) $(DD)atx24 $(atx_)
532
533$(DD)atx38.dev : $(DEVS_MAK) $(atx_) $(GLD)page.dev
534	$(SETPDEV2) $(DD)atx38 $(atx_)
535
536$(GLOBJ)gdevatx.$(OBJ) : $(GLSRC)gdevatx.c $(PDEVH) $(math__h)
537	$(GLCC) $(GLO_)gdevatx.$(OBJ) $(C_) $(GLSRC)gdevatx.c
538
539### ----------- The H-P DeskJet and LaserJet printer devices ----------- ###
540
541### These are essentially the same device.
542### NOTE: printing at full resolution (300 DPI) requires a printer
543###   with at least 1.5 Mb of memory.  150 DPI only requires .5 Mb.
544### Note that the lj4dith driver is included with the H-P color printer
545###   drivers below.
546### For questions about the fs600 device, please contact                  ###
547### Peter Schildmann (peter.schildmann@etechnik.uni-rostock.de).          ###
548
549HPPCL=$(GLOBJ)gdevpcl.$(OBJ)
550HPDLJM=$(GLOBJ)gdevdljm.$(OBJ) $(HPPCL)
551HPMONO=$(GLOBJ)gdevdjet.$(OBJ) $(HPDLJM)
552
553$(GLOBJ)gdevpcl.$(OBJ) : $(GLSRC)gdevpcl.c $(PDEVH) $(math__h) $(gdevpcl_h)
554	$(GLCC) $(GLO_)gdevpcl.$(OBJ) $(C_) $(GLSRC)gdevpcl.c
555
556$(GLOBJ)gdevdljm.$(OBJ) : $(GLSRC)gdevdljm.c $(PDEVH) $(gdevdljm_h)
557	$(GLCC) $(GLO_)gdevdljm.$(OBJ) $(C_) $(GLSRC)gdevdljm.c
558
559$(GLOBJ)gdevdjet.$(OBJ) : $(GLSRC)gdevdjet.c $(PDEVH) $(gdevdljm_h)
560	$(GLCC) $(GLO_)gdevdjet.$(OBJ) $(C_) $(GLSRC)gdevdjet.c
561
562$(DD)deskjet.dev : $(DEVS_MAK) $(HPMONO) $(GLD)page.dev
563	$(SETPDEV2) $(DD)deskjet $(HPMONO)
564
565$(DD)djet500.dev : $(DEVS_MAK) $(HPMONO) $(GLD)page.dev
566	$(SETPDEV2) $(DD)djet500 $(HPMONO)
567
568$(DD)fs600.dev : $(DEVS_MAK) $(HPMONO) $(GLD)page.dev
569	$(SETPDEV2) $(DD)fs600 $(HPMONO)
570
571$(DD)laserjet.dev : $(DEVS_MAK) $(HPMONO) $(GLD)page.dev
572	$(SETPDEV2) $(DD)laserjet $(HPMONO)
573
574$(DD)ljetplus.dev : $(DEVS_MAK) $(HPMONO) $(GLD)page.dev
575	$(SETPDEV2) $(DD)ljetplus $(HPMONO)
576
577### Selecting ljet2p provides TIFF (mode 2) compression on LaserJet III,
578### IIIp, IIId, IIIsi, IId, and IIp.
579
580$(DD)ljet2p.dev : $(DEVS_MAK) $(HPMONO) $(GLD)page.dev
581	$(SETPDEV2) $(DD)ljet2p $(HPMONO)
582
583### Selecting ljet3 provides Delta Row (mode 3) compression on LaserJet III,
584### IIIp, IIId, IIIsi.
585
586$(DD)ljet3.dev : $(DEVS_MAK) $(HPMONO) $(GLD)page.dev
587	$(SETPDEV2) $(DD)ljet3 $(HPMONO)
588
589### Selecting ljet3d also provides duplex printing capability.
590
591$(DD)ljet3d.dev : $(DEVS_MAK) $(HPMONO) $(GLD)page.dev
592	$(SETPDEV2) $(DD)ljet3d $(HPMONO)
593
594### Selecting ljet4 or ljet4d also provides Delta Row compression on
595### LaserJet IV series.
596
597$(DD)ljet4.dev : $(DEVS_MAK) $(HPMONO) $(GLD)page.dev
598	$(SETPDEV2) $(DD)ljet4 $(HPMONO)
599
600$(DD)ljet4d.dev : $(DEVS_MAK) $(HPMONO) $(GLD)page.dev
601	$(SETPDEV2) $(DD)ljet4d $(HPMONO)
602
603$(DD)lp2563.dev : $(DEVS_MAK) $(HPMONO) $(GLD)page.dev
604	$(SETPDEV2) $(DD)lp2563 $(HPMONO)
605
606$(DD)oce9050.dev : $(DEVS_MAK) $(HPMONO) $(GLD)page.dev
607	$(SETPDEV2) $(DD)oce9050 $(HPMONO)
608
609### ------------------ The H-P LaserJet 5 and 6 devices ----------------- ###
610
611### These drivers use H-P's new PCL XL printer language, like H-P's
612### LaserJet 5 Enhanced driver for MS Windows.  We don't recommend using
613### them:
614###	- If you have a LJ 5L or 5P, which isn't a "real" LaserJet 5,
615###	use the ljet4 driver instead.  (The lj5 drivers won't work.)
616###	- If you have any other model of LJ 5 or 6, use the pxlmono
617###	driver, which often produces much more compact output.
618
619gdevpxat_h=$(GLSRC)gdevpxat.h
620gdevpxen_h=$(GLSRC)gdevpxen.h
621gdevpxop_h=$(GLSRC)gdevpxop.h
622gdevpxut_h=$(GLSRC)gdevpxut.h
623
624
625$(GLOBJ)gdevpxut.$(OBJ) : $(GLSRC)gdevpxut.c $(math__h) $(string__h)\
626 $(gx_h) $(gxdevcli_h) $(stream_h)\
627 $(gdevpxat_h) $(gdevpxen_h) $(gdevpxop_h) $(gdevpxut_h)
628	$(GLCC) $(GLO_)gdevpxut.$(OBJ) $(C_) $(GLSRC)gdevpxut.c
629
630ljet5_=$(GLOBJ)gdevlj56.$(OBJ) $(GLOBJ)gdevpxut.$(OBJ) $(HPPCL)
631$(DD)lj5mono.dev : $(DEVS_MAK) $(ljet5_) $(GLD)page.dev
632	$(SETPDEV) $(DD)lj5mono $(ljet5_)
633
634$(DD)lj5gray.dev : $(DEVS_MAK) $(ljet5_) $(GLD)page.dev
635	$(SETPDEV) $(DD)lj5gray $(ljet5_)
636
637$(GLOBJ)gdevlj56.$(OBJ) : $(GLSRC)gdevlj56.c $(PDEVH) $(gdevpcl_h)\
638 $(gdevpxat_h) $(gdevpxen_h) $(gdevpxop_h) $(gdevpxut_h) $(stream_h)
639	$(GLCC) $(GLO_)gdevlj56.$(OBJ) $(C_) $(GLSRC)gdevlj56.c
640
641### -------------------- The ijs client ----------------- ###
642
643ijs_=$(GLOBJ)gdevijs.$(OBJ) $(IJSOBJ)ijs.$(OBJ) $(IJSOBJ)ijs_client.$(OBJ) \
644 $(IJSOBJ)ijs_exec_$(IJSEXECTYPE).$(OBJ)
645
646$(DD)ijs.dev : $(ijs_) $(GLD)page.dev $(DD)ijslib.dev
647	$(SETPDEV) $(DD)ijs $(ijs_)
648
649$(GLOBJ)gdevijs.$(OBJ) : $(GLSRC)gdevijs.c $(PDEVH) $(unistd__h) $(gp_h)\
650 $(ijs_h) $(ijs_client_h)
651	$(CC_) $(I_)$(GLI_) $(II)$(IJSI_)$(_I) $(GLF_) $(GLO_)gdevijs.$(OBJ) $(C_) $(GLSRC)gdevijs.c
652
653# Please see ijs.mak for the Makefile fragment which builds the IJS
654# library.
655
656
657### -------------------------- The rinkj device ------------------------ ###
658
659RINKJ_SRCDIR=$(GLSRC)rinkj
660RINKJ_SRC=$(RINKJ_SRCDIR)$(D)
661RINKJ_OBJ=$(GLOBJ)
662RINKJ_O_=$(O_)$(RINKJ_OBJ)
663
664RINKJ_INCL=$(I_)$(RINKJ_SRCDIR)$(_I)
665RINKJ_CC=$(CC_) $(RINKJ_INCL)
666
667rinkj_core=$(RINKJ_OBJ)evenbetter-rll.$(OBJ) \
668 $(RINKJ_OBJ)rinkj-byte-stream.$(OBJ) $(RINKJ_OBJ)rinkj-device.$(OBJ) \
669 $(RINKJ_OBJ)rinkj-config.$(OBJ) $(RINKJ_OBJ)rinkj-dither.$(OBJ) \
670 $(RINKJ_OBJ)rinkj-epson870.$(OBJ) $(RINKJ_OBJ)rinkj-screen-eb.$(OBJ)
671
672$(RINKJ_OBJ)evenbetter-rll.$(OBJ): $(RINKJ_SRC)evenbetter-rll.c
673	$(RINKJ_CC) $(RINKJ_O_)evenbetter-rll.$(OBJ) $(C_) $(RINKJ_SRC)evenbetter-rll.c
674
675$(RINKJ_OBJ)rinkj-byte-stream.$(OBJ): $(RINKJ_SRC)rinkj-byte-stream.c
676	$(RINKJ_CC) $(RINKJ_O_)rinkj-byte-stream.$(OBJ) $(C_) $(RINKJ_SRC)rinkj-byte-stream.c
677
678$(RINKJ_OBJ)rinkj-device.$(OBJ): $(RINKJ_SRC)rinkj-device.c
679	$(RINKJ_CC) $(RINKJ_O_)rinkj-device.$(OBJ) $(C_) $(RINKJ_SRC)rinkj-device.c
680
681$(RINKJ_OBJ)rinkj-config.$(OBJ): $(RINKJ_SRC)rinkj-config.c
682	$(RINKJ_CC) $(RINKJ_O_)rinkj-config.$(OBJ) $(C_) $(RINKJ_SRC)rinkj-config.c
683
684$(RINKJ_OBJ)rinkj-dither.$(OBJ): $(RINKJ_SRC)rinkj-dither.c
685	$(RINKJ_CC) $(RINKJ_O_)rinkj-dither.$(OBJ) $(C_) $(RINKJ_SRC)rinkj-dither.c
686
687$(RINKJ_OBJ)rinkj-epson870.$(OBJ): $(RINKJ_SRC)rinkj-epson870.c
688	$(RINKJ_CC) $(RINKJ_O_)rinkj-epson870.$(OBJ) $(C_) $(RINKJ_SRC)rinkj-epson870.c
689
690$(RINKJ_OBJ)rinkj-screen-eb.$(OBJ): $(RINKJ_SRC)rinkj-screen-eb.c
691	$(RINKJ_CC) $(RINKJ_O_)rinkj-screen-eb.$(OBJ) $(C_) $(RINKJ_SRC)rinkj-screen-eb.c
692
693rinkj_=$(GLOBJ)gdevrinkj.$(OBJ) $(rinkj_core)
694
695$(DD)rinkj.dev : $(DEVS_MAK) $(rinkj_) $(GLD)page.dev
696	$(SETDEV) $(DD)rinkj $(rinkj_)
697
698$(GLOBJ)gdevrinkj.$(OBJ) : $(GLSRC)gdevrinkj.c $(PDEVH) $(math__h)\
699 $(gdevdcrd_h) $(gscrd_h) $(gscrdp_h) $(gsparam_h) $(gxlum_h) $(icc_h)\
700 $(gxdcconv_h)
701	$(GLICCCC) $(GLO_)gdevrinkj.$(OBJ) $(C_) $(GLSRC)gdevrinkj.c
702
703
704###### ------------------- High-level file formats ------------------- ######
705
706# Support for PostScript and PDF
707
708gdevpsdf_h=$(GLSRC)gdevpsdf.h $(gdevvec_h) $(gsparam_h)\
709 $(sa85x_h) $(scfx_h) $(spsdf_h) $(strimpl_h)
710gdevpsds_h=$(GLSRC)gdevpsds.h $(strimpl_h) $(gsiparam_h)
711
712psdf_1=$(GLOBJ)gdevpsdi.$(OBJ) $(GLOBJ)gdevpsdp.$(OBJ)
713psdf_2=$(GLOBJ)gdevpsds.$(OBJ) $(GLOBJ)gdevpsdu.$(OBJ)
714psdf_3=$(GLOBJ)scfparam.$(OBJ) $(GLOBJ)sdcparam.$(OBJ) $(GLOBJ)sdeparam.$(OBJ)
715psdf_4=$(GLOBJ)spprint.$(OBJ) $(GLOBJ)spsdf.$(OBJ) $(GLOBJ)sstring.$(OBJ)
716psdf_5=$(GLOBJ)gsparamx.$(OBJ)
717psdf_=$(psdf_1) $(psdf_2) $(psdf_3) $(psdf_4) $(psdf_5)
718psdf_inc1=$(GLD)vector.dev $(GLD)pngp.dev $(GLD)seexec.dev
719psdf_inc2=$(GLD)sdcte.dev $(GLD)slzwe.dev $(GLD)szlibe.dev
720psdf_inc=$(psdf_inc1) $(psdf_inc2)
721$(DD)psdf.dev : $(DEVS_MAK) $(ECHOGS_XE) $(psdf_) $(psdf_inc)
722	$(SETMOD) $(DD)psdf $(psdf_1)
723	$(ADDMOD) $(DD)psdf -obj $(psdf_2)
724	$(ADDMOD) $(DD)psdf -obj $(psdf_3)
725	$(ADDMOD) $(DD)psdf -obj $(psdf_4)
726	$(ADDMOD) $(DD)psdf -obj $(psdf_5)
727	$(ADDMOD) $(DD)psdf -include $(psdf_inc1)
728	$(ADDMOD) $(DD)psdf -include $(psdf_inc2)
729
730$(GLOBJ)gdevpsdi.$(OBJ) : $(GLSRC)gdevpsdi.c $(GXERR)\
731 $(jpeglib__h) $(math__h) $(stdio__h)\
732 $(gscspace_h)\
733 $(scfx_h) $(sdct_h) $(sjpeg_h) $(slzwx_h) $(srlx_h) $(spngpx_h)\
734 $(strimpl_h) $(szlibx_h)\
735 $(gdevpsdf_h) $(gdevpsds_h) $(gxdevmem_h) $(gxcspace_h) $(gxparamx_h)
736	$(GLJCC) $(GLO_)gdevpsdi.$(OBJ) $(C_) $(GLSRC)gdevpsdi.c
737
738$(GLOBJ)gdevpsdp.$(OBJ) : $(GLSRC)gdevpsdp.c $(GDEVH)\
739 $(string__h) $(jpeglib__h)\
740 $(scfx_h) $(sdct_h) $(slzwx_h) $(srlx_h) $(strimpl_h) $(szlibx_h)\
741 $(gsparamx_h) $(gsutil_h) $(gdevpsdf_h) $(spprint_h)
742	$(GLJCC) $(GLO_)gdevpsdp.$(OBJ) $(C_) $(GLSRC)gdevpsdp.c
743
744$(GLOBJ)gdevpsds.$(OBJ) : $(GLSRC)gdevpsds.c $(GX) $(memory__h)\
745 $(gserrors_h) $(gxdcconv_h) $(gdevpsds_h) $(gxbitmap_h)\
746 $(gxcspace_h) $(gsdcolor_h) $(gscspace_h) $(gxdevcli_h)
747	$(GLCC) $(GLO_)gdevpsds.$(OBJ) $(C_) $(GLSRC)gdevpsds.c
748
749$(GLOBJ)gdevpsdu.$(OBJ) : $(GLSRC)gdevpsdu.c $(GXERR)\
750 $(jpeglib__h) $(memory__h) $(stdio__h)\
751 $(sa85x_h) $(scfx_h) $(sdct_h) $(sjpeg_h) $(sstring_h) $(strimpl_h)\
752 $(gdevpsdf_h) $(spprint_h) $(gsovrc_h)
753	$(GLJCC) $(GLO_)gdevpsdu.$(OBJ) $(C_) $(GLSRC)gdevpsdu.c
754
755# PostScript and EPS writers
756
757pswrite_=$(GLOBJ)gdevps.$(OBJ) $(GLOBJ)gdevpsu.$(OBJ) $(GLOBJ)scantab.$(OBJ) $(GLOBJ)sfilter2.$(OBJ)
758$(DD)epswrite.dev : $(DEVS_MAK) $(ECHOGS_XE) $(pswrite_) $(GLD)psdf.dev
759	$(SETDEV2) $(DD)epswrite $(pswrite_)
760	$(ADDMOD) $(DD)epswrite -include $(GLD)psdf
761
762$(DD)pswrite.dev : $(DEVS_MAK) $(ECHOGS_XE) $(pswrite_) $(GLD)psdf.dev
763	$(SETDEV2) $(DD)pswrite $(pswrite_)
764	$(ADDMOD) $(DD)pswrite -include $(GLD)psdf
765
766$(GLOBJ)gdevps.$(OBJ) : $(GLSRC)gdevps.c $(GDEV)\
767 $(math__h) $(memory__h) $(string__h) $(time__h)\
768 $(gscdefs_h) $(gscspace_h) $(gsline_h) $(gsparam_h) $(gsiparam_h) $(gsmatrix_h)\
769 $(gxdcolor_h) $(gxpath_h)\
770 $(sa85x_h) $(sstring_h) $(strimpl_h)\
771 $(gdevpsdf_h) $(gdevpsu_h) $(spprint_h)
772	$(GLCC) $(GLO_)gdevps.$(OBJ) $(C_) $(GLSRC)gdevps.c
773
774################ BEGIN PDF WRITER ################
775
776# PDF writer
777# Note that gs_pdfwr.ps will only actually be loaded if the configuration
778# includes a PostScript interpreter.
779
780# We reserve slots here for gdevpdfa...z, just in case we need them.
781pdfwrite1_=$(GLOBJ)gdevpdf.$(OBJ) $(GLOBJ)gdevpdfb.$(OBJ)
782pdfwrite2_=$(GLOBJ)gdevpdfc.$(OBJ) $(GLOBJ)gdevpdfd.$(OBJ)
783pdfwrite3_=$(GLOBJ)gdevpdfg.$(OBJ)
784pdfwrite4_=$(GLOBJ)gdevpdfi.$(OBJ) $(GLOBJ)gdevpdfj.$(OBJ) $(GLOBJ)gdevpdfk.$(OBJ)
785pdfwrite5_=$(GLOBJ)gdevpdfm.$(OBJ)
786pdfwrite6_=$(GLOBJ)gdevpdfo.$(OBJ) $(GLOBJ)gdevpdfp.$(OBJ) $(GLOBJ)gdevpdft.$(OBJ)
787pdfwrite7_=$(GLOBJ)gdevpdfr.$(OBJ)
788pdfwrite8_=$(GLOBJ)gdevpdfu.$(OBJ) $(GLOBJ)gdevpdfv.$(OBJ)
789pdfwrite9_=
790pdfwrite10_=$(GLOBJ)gsflip.$(OBJ)
791pdfwrite11_=$(GLOBJ)scantab.$(OBJ) $(GLOBJ)sfilter2.$(OBJ)
792pdfwrite_=$(pdfwrite1_) $(pdfwrite2_) $(pdfwrite3_) $(pdfwrite4_)\
793 $(pdfwrite5_) $(pdfwrite6_) $(pdfwrite7_) $(pdfwrite8_) $(pdfwrite9_)\
794 $(pdfwrite10_) $(pdfwrite11_)
795
796# Since ps2write actually is a clone of pdfwrite,
797# we don't define a full module for it,
798# but generate both devices within pdfwrite.dev .
799
800# Note that for ps2pdf operation, we need to parse DSC comments to set
801# the Orientation (Page dict /Rotate value). This is not part of the
802# pdfwrite device, but part of the PS interpreter so that the pdfwrite
803# device can be used with other top level interpreters (such as PCL).
804$(DD)pdfwrite.dev : $(DEVS_MAK) $(ECHOGS_XE) $(pdfwrite_)\
805 $(GLD)cmyklib.dev $(GLD)cfe.dev $(GLD)lzwe.dev\
806 $(GLD)rle.dev $(GLD)sdcte.dev $(GLD)sdeparam.dev $(GLD)smd5.dev\
807 $(GLD)szlibe.dev $(GLD)psdf.dev \
808 $(DD)pdtext.dev
809	$(SETDEV2) $(DD)ps2write $(pdfwrite1_)
810	$(SETDEV2) $(DD)pdfwrite $(pdfwrite1_)
811	$(ADDMOD) $(DD)pdfwrite $(pdfwrite2_)
812	$(ADDMOD) $(DD)pdfwrite $(pdfwrite3_)
813	$(ADDMOD) $(DD)pdfwrite $(pdfwrite4_)
814	$(ADDMOD) $(DD)pdfwrite $(pdfwrite5_)
815	$(ADDMOD) $(DD)pdfwrite $(pdfwrite6_)
816	$(ADDMOD) $(DD)pdfwrite $(pdfwrite7_)
817	$(ADDMOD) $(DD)pdfwrite $(pdfwrite8_)
818	$(ADDMOD) $(DD)pdfwrite $(pdfwrite9_)
819	$(ADDMOD) $(DD)pdfwrite $(pdfwrite10_)
820	$(ADDMOD) $(DD)pdfwrite $(pdfwrite11_)
821	$(ADDMOD) $(DD)pdfwrite -ps gs_pdfwr
822	$(ADDMOD) $(DD)pdfwrite -include $(GLD)cmyklib $(GLD)cfe $(GLD)lzwe
823	$(ADDMOD) $(DD)pdfwrite -include $(GLD)rle $(GLD)sdcte $(GLD)sdeparam
824	$(ADDMOD) $(DD)pdfwrite -include $(GLD)smd5 $(GLD)szlibe
825	$(ADDMOD) $(DD)pdfwrite -include $(GLD)psdf
826	$(ADDMOD) $(DD)pdfwrite -include $(DD)pdtext
827
828gdevpdfb_h=$(GLSRC)gdevpdfb.h
829gdevpdfc_h=$(GLSRC)gdevpdfc.h
830gdevpdfg_h=$(GLSRC)gdevpdfg.h $(gscspace_h)
831gdevpdfo_h=$(GLSRC)gdevpdfo.h $(gsparam_h)
832gdevpdfx_h=$(GLSRC)gdevpdfx.h\
833 $(gsparam_h) $(gsuid_h) $(gxdevice_h) $(gxfont_h) $(gxline_h)\
834 $(spprint_h) $(stream_h) $(gdevpsdf_h)
835
836$(GLOBJ)gdevpdf.$(OBJ) : $(GLSRC)gdevpdf.c $(GDEVH)\
837 $(fcntl__h) $(memory__h) $(string__h) $(time__h) $(unistd__h) $(gp_h)\
838 $(gdevpdfg_h) $(gdevpdfo_h) $(gdevpdfx_h) $(gdevpdt_h) $(smd5_h) $(sarc4_h)\
839 $(gdevpdfb_h)
840	$(GLCC) $(GLO_)gdevpdf.$(OBJ) $(C_) $(GLSRC)gdevpdf.c
841
842$(GLOBJ)gdevpdfb.$(OBJ) : $(GLSRC)gdevpdfb.c\
843 $(string__h) $(gx_h)\
844 $(gdevpdfg_h) $(gdevpdfo_h) $(gdevpdfx_h)\
845 $(gserrors_h) $(gxcspace_h) $(gxdcolor_h) $(gxpcolor_h) $(gxhldevc_h)
846	$(GLCC) $(GLO_)gdevpdfb.$(OBJ) $(C_) $(GLSRC)gdevpdfb.c
847
848$(GLOBJ)gdevpdfc.$(OBJ) : $(GLSRC)gdevpdfc.c $(GXERR) $(math__h) $(memory__h)\
849 $(gdevpdfc_h) $(gdevpdfg_h) $(gdevpdfo_h) $(gdevpdfx_h)\
850 $(gscie_h) $(gscindex_h) $(gscspace_h) $(gscdevn_h) $(gscsepr_h) $(gsicc_h)\
851 $(sstring_h) $(stream_h) $(strimpl_h) $(gxcspace_h)
852	$(GLCC) $(GLO_)gdevpdfc.$(OBJ) $(C_) $(GLSRC)gdevpdfc.c
853
854$(GLOBJ)gdevpdfd.$(OBJ) : $(GLSRC)gdevpdfd.c $(math__h) $(memory__h)\
855 $(gx_h) $(gxdevice_h) $(gxfixed_h) $(gxistate_h) $(gxpaint_h)\
856 $(gxcoord_h) $(gxdevmem_h) $(gxcolor2_h) $(gxhldevc_h)\
857 $(gsstate_h) $(gserrors_h) $(gsptype2_h)\
858 $(gzpath_h) $(gzcpath_h) $(gdevpdfx_h) $(gdevpdfg_h) $(gdevpdfo_h) $(gsutil_h)
859	$(GLCC) $(GLO_)gdevpdfd.$(OBJ) $(C_) $(GLSRC)gdevpdfd.c
860
861$(GLOBJ)gdevpdfg.$(OBJ) : $(GLSRC)gdevpdfg.c $(GXERR) $(math__h) $(string__h)\
862 $(memory__h) $(gdevpdfg_h) $(gdevpdfo_h) $(gdevpdfx_h)\
863 $(gsfunc0_h) $(gsstate_h) $(gxdcolor_h) $(gxpcolor_h) $(gxcolor2_h) $(gsptype2_h)\
864 $(gxbitmap_h) $(gxdht_h) $(gxfarith_h) $(gxfmap_h) $(gxht_h) $(gxistate_h)\
865 $(gzht_h)\
866 $(szlibx_h)
867	$(GLCC) $(GLO_)gdevpdfg.$(OBJ) $(C_) $(GLSRC)gdevpdfg.c
868
869$(GLOBJ)gdevpdfi.$(OBJ) : $(GLSRC)gdevpdfi.c $(memory__h) $(math__h)\
870 $(gx_h)\
871 $(gserrors_h) $(gsdevice_h) $(gsflip_h) $(gsiparm4_h) $(gsstate_h) $(gscolor2_h)\
872 $(gdevpdfx_h) $(gdevpdfg_h) $(gdevpdfo_h)\
873 $(gxcspace_h) $(gximage3_h) $(gximag3x_h) $(gxdcolor_h) $(gxpcolor_h)\
874 $(gxhldevc_h)
875	$(GLCC) $(GLO_)gdevpdfi.$(OBJ) $(C_) $(GLSRC)gdevpdfi.c
876
877$(GLOBJ)gdevpdfj.$(OBJ) : $(GLSRC)gdevpdfj.c\
878 $(memory__h) $(string__h) $(gx_h) $(gserrors_h)\
879 $(gdevpdfx_h) $(gdevpdfg_h) $(gdevpdfo_h) $(gxcspace_h)\
880 $(gsiparm4_h) $(gdevpsds_h) $(spngpx_h)
881	$(GLJCC) $(GLO_)gdevpdfj.$(OBJ) $(C_) $(GLSRC)gdevpdfj.c
882
883$(GLOBJ)gdevpdfk.$(OBJ) : $(GLSRC)gdevpdfk.c $(GXERR) $(math__h) $(memory__h)\
884 $(gdevpdfc_h) $(gdevpdfg_h) $(gdevpdfo_h) $(gdevpdfx_h)\
885 $(gsicc_h) $(gxcie_h) $(gxcspace_h)\
886 $(stream_h) $(strimpl_h)
887	$(GLCC) $(GLO_)gdevpdfk.$(OBJ) $(C_) $(GLSRC)gdevpdfk.c
888
889$(GLOBJ)gdevpdfm.$(OBJ) : $(GLSRC)gdevpdfm.c\
890 $(math__h) $(memory__h) $(string__h) $(gx_h)\
891 $(gdevpdfo_h) $(gdevpdfx_h) $(gserrors_h) $(gsutil_h) $(scanchar_h)\
892 $(szlibx_h) $(slzwx_h)
893	$(GLCC) $(GLO_)gdevpdfm.$(OBJ) $(C_) $(GLSRC)gdevpdfm.c
894
895$(GLOBJ)gdevpdfo.$(OBJ) : $(GLSRC)gdevpdfo.c $(memory__h) $(string__h)\
896 $(gx_h)\
897 $(gdevpdfo_h) $(gdevpdfx_h) $(gserrors_h) $(gsparam_h) $(gsutil_h)\
898 $(sa85x_h) $(slzwx_h) $(sarc4_h) $(sstring_h) $(strimpl_h) $(szlibx_h)
899	$(GLCC) $(GLO_)gdevpdfo.$(OBJ) $(C_) $(GLSRC)gdevpdfo.c
900
901$(GLOBJ)gdevpdfp.$(OBJ) : $(GLSRC)gdevpdfp.c $(memory__h) $(string__h) $(gx_h)\
902 $(gdevpdfo_h) $(gdevpdfg_h) $(gdevpdfx_h) $(gserrors_h) $(gsparamx_h)
903	$(GLCC) $(GLO_)gdevpdfp.$(OBJ) $(C_) $(GLSRC)gdevpdfp.c
904
905$(GLOBJ)gdevpdfr.$(OBJ) : $(GLSRC)gdevpdfr.c $(memory__h) $(string__h)\
906 $(gx_h)\
907 $(gdevpdfo_h) $(gdevpdfx_h) $(gserrors_h) $(gsutil_h)\
908 $(scanchar_h) $(sstring_h) $(strimpl_h)
909	$(GLCC) $(GLO_)gdevpdfr.$(OBJ) $(C_) $(GLSRC)gdevpdfr.c
910
911$(GLOBJ)gdevpdft.$(OBJ) : $(GLSRC)gdevpdft.c $(string__h)\
912 $(gx_h) $(gserrors_h) $(gstrans_h) $(gscolor2_h) $(gzstate_h)\
913 $(gdevpdfx_h) $(gdevpdfg_h) $(gdevpdfo_h)
914	$(GLCC) $(GLO_)gdevpdft.$(OBJ) $(C_) $(GLSRC)gdevpdft.c
915
916$(GLOBJ)gdevpdfu.$(OBJ) : $(GLSRC)gdevpdfu.c $(GXERR)\
917 $(jpeglib__h) $(memory__h) $(string__h)\
918 $(gdevpdfo_h) $(gdevpdfx_h) $(gdevpdfg_h) $(gdevpdtd_h) $(gscdefs_h)\
919 $(gsdsrc_h) $(gsfunc_h) $(gsfunc3_h)\
920 $(sa85x_h) $(scanchar_h) $(scfx_h) $(sdct_h) $(slzwx_h) $(spngpx_h)\
921 $(srlx_h) $(sarc4_h) $(smd5_h) $(sstring_h) $(strimpl_h) $(szlibx_h)
922	$(GLCC) $(GLO_)gdevpdfu.$(OBJ) $(C_) $(GLSRC)gdevpdfu.c
923
924$(GLOBJ)gdevpdfv.$(OBJ) : $(GLSRC)gdevpdfv.c $(GXERR) $(math__h) $(string__h)\
925 $(gdevpdfg_h) $(gdevpdfo_h) $(gdevpdfx_h)\
926 $(gscindex_h) $(gscoord_h) $(gsiparm3_h) $(gsmatrix_h) $(gsptype2_h)\
927 $(gxcolor2_h) $(gxdcolor_h) $(gxpcolor_h) $(gxshade_h)\
928 $(szlibx_h)
929	$(GLCC) $(GLO_)gdevpdfv.$(OBJ) $(C_) $(GLSRC)gdevpdfv.c
930
931######## pdfwrite text
932
933# The text facilities for the PDF writer are so large and complex that
934# we give them their own module name and (for the new code) file name prefix.
935# However, logically they are part of pdfwrite and cannot be used separately.
936
937$(DD)pdtext.dev : $(DEVS_MAK) $(ECHOGS_XE) $(DD)pdxtext.dev
938	$(SETMOD) $(DD)pdtext -include $(DD)pdxtext
939
940# For a code roadmap, see gdevpdtx.h.
941
942gdevpdt_h=$(GLSRC)gdevpdt.h
943gdevpdtx_h=$(GLSRC)gdevpdtx.h $(gdevpdt_h)
944gdevpdtb_h=$(GLSRC)gdevpdtb.h $(gdevpdtx_h)
945gdevpdtd_h=$(GLSRC)gdevpdtd.h $(gdevpdtb_h) $(gdevpdtx_h)
946gdevpdtf_h=$(GLSRC)gdevpdtf.h $(gdevpdtx_h)
947gdevpdti_h=$(GLSRC)gdevpdti.h $(gdevpdt_h)
948gdevpdts_h=$(GLSRC)gdevpdts.h $(gsmatrix_h)
949gdevpdtt_h=$(GLSRC)gdevpdtt.h
950gdevpdtv_h=$(GLSRC)gdevpdtv.h
951gdevpdtw_h=$(GLSRC)gdevpdtw.h
952
953# We reserve space for all of a..z, just in case.
954pdxtext_ab=$(GLOBJ)gdevpdt.$(OBJ) $(GLOBJ)gdevpdtb.$(OBJ)
955pdxtext_cde=$(GLOBJ)gdevpdtc.$(OBJ) $(GLOBJ)gdevpdtd.$(OBJ) $(GLOBJ)gdevpdte.$(OBJ)
956pdxtext_fgh=$(GLOBJ)gdevpdtf.$(OBJ)
957pdxtext_ijk=$(GLOBJ)gdevpdti.$(OBJ)
958pdxtext_lmn=
959pdxtext_opq=
960pdxtext_rst=$(GLOBJ)gdevpdts.$(OBJ) $(GLOBJ)gdevpdtt.$(OBJ)
961pdxtext_uvw=$(GLOBJ)gdevpdtv.$(OBJ) $(GLOBJ)gdevpdtw.$(OBJ)
962pdxtext_xyz=
963pdxtext_=$(pdxtext_ab) $(pdxtext_cde) $(pdxtext_fgh) $(pdxtext_ijk)\
964 $(pdxtext_lmn) $(pdxtext_opq) $(pdxtext_rst) $(pdxtext_uvw) $(pdxtext_xyz)\
965 $(GLOBJ)gsfont0c.$(OBJ)
966$(DD)pdxtext.dev : $(DEVS_MAK) $(ECHOGS_XE) $(pdxtext_)\
967 $(GLD)fcopy.dev $(GLD)psf.dev
968	$(SETMOD) $(DD)pdxtext $(pdxtext_ab)
969	$(ADDMOD) $(DD)pdxtext $(pdxtext_cde)
970	$(ADDMOD) $(DD)pdxtext $(pdxtext_fgh)
971	$(ADDMOD) $(DD)pdxtext $(pdxtext_ijk)
972	$(ADDMOD) $(DD)pdxtext $(pdxtext_lmn)
973	$(ADDMOD) $(DD)pdxtext $(pdxtext_opq)
974	$(ADDMOD) $(DD)pdxtext $(pdxtext_rst)
975	$(ADDMOD) $(DD)pdxtext $(pdxtext_uvw)
976	$(ADDMOD) $(DD)pdxtext $(pdxtext_xyz)
977	$(ADDMOD) $(DD)pdxtext $(GLOBJ)gsfont0c.$(OBJ)
978	$(ADDMOD) $(DD)pdxtext -include $(GLD)fcopy $(GLD)psf
979
980$(GLOBJ)gdevpdt.$(OBJ) : $(GLSRC)gdevpdt.c $(gx_h) $(gxpath_h) $(memory__h)\
981 $(gdevpdfx_h) $(gdevpdfg_h) $(gdevpdtf_h) $(gdevpdti_h) $(gdevpdts_h) $(gdevpdtx_h) $(gdevpdt_h)
982	$(GLCC) $(GLO_)gdevpdt.$(OBJ) $(C_) $(GLSRC)gdevpdt.c
983
984$(GLOBJ)gdevpdtb.$(OBJ) : $(GLSRC)gdevpdtb.c $(memory__h) $(ctype__h) $(string__h)\
985 $(gx_h) $(gserrors_h) $(gsutil_h)\
986 $(gxfcid_h) $(gxfcopy_h) $(gxfont_h) $(gxfont42_h)\
987 $(gdevpsf_h) $(gdevpdfx_h) $(gdevpdtb_h)
988	$(GLCC) $(GLO_)gdevpdtb.$(OBJ) $(C_) $(GLSRC)gdevpdtb.c
989
990$(GLOBJ)gdevpdtc.$(OBJ) : $(GLSRC)gdevpdtc.c $(gx_h) $(memory__h) $(string__h)\
991 $(gserrors_h) $(gxfcmap_h) $(gxfont_h) $(gxfont0_h) $(gxfont0c_h)\
992 $(gzpath_h) $(gxchar_h) $(gdevpsf_h) $(gdevpdfx_h) $(gdevpdtx_h)\
993 $(gdevpdtd_h) $(gdevpdtf_h) $(gdevpdts_h) $(gdevpdtt_h)
994	$(GLCC) $(GLO_)gdevpdtc.$(OBJ) $(C_) $(GLSRC)gdevpdtc.c
995
996$(GLOBJ)gdevpdte.$(OBJ) : $(GLSRC)gdevpdte.c $(gx_h) $(math__h) $(memory__h)\
997 $(gserrors_h) $(gsutil_h) $(gxfcmap_h) $(gxfcopy_h) $(gxfont_h) \
998 $(gxfont0_h) $(gxfont0c_h) $(gxpath_h) $(gdevpsf_h) $(gdevpdfx_h) \
999 $(gdevpdfg_h) $(gdevpdtx_h) $(gdevpdtd_h) $(gdevpdtf_h) $(gdevpdts_h) \
1000 $(gdevpdtt_h)
1001	$(GLCC) $(GLO_)gdevpdte.$(OBJ) $(C_) $(GLSRC)gdevpdte.c
1002
1003$(GLOBJ)gdevpdtd.$(OBJ) : $(GLSRC)gdevpdtd.c $(math__h) $(memory__h) $(gx_h)\
1004 $(gserrors_h) $(gsrect_h)\
1005 $(gdevpdfo_h) $(gdevpdfx_h)\
1006 $(gdevpdtb_h) $(gdevpdtd_h)
1007	$(GLCC) $(GLO_)gdevpdtd.$(OBJ) $(C_) $(GLSRC)gdevpdtd.c
1008
1009$(GLOBJ)gdevpdtf.$(OBJ) : $(GLSRC)gdevpdtf.c $(gx_h) $(memory__h)\
1010 $(string__h) $(gserrors_h) $(gsutil_h)\
1011 $(gxfcache_h) $(gxfcid_h) $(gxfcmap_h) $(gxfcopy_h) $(gxfont_h) $(gxfont1_h)\
1012 $(gdevpsf_h) $(gdevpdfx_h) $(gdevpdtb_h) $(gdevpdtd_h) $(gdevpdtf_h) $(gdevpdtw_h)
1013	$(GLCC) $(GLO_)gdevpdtf.$(OBJ) $(C_) $(GLSRC)gdevpdtf.c
1014
1015$(GLOBJ)gdevpdti.$(OBJ) : $(GLSRC)gdevpdti.c $(memory__h) $(string__h) $(gx_h)\
1016 $(gserrors_h) $(gsutil_h)\
1017 $(gdevpdfx_h) $(gdevpdfg_h)\
1018 $(gdevpdtf_h) $(gdevpdti_h) $(gdevpdts_h) $(gdevpdtw_h) $(gdevpdtt_h) $(gdevpdfo_h)
1019	$(GLCC) $(GLO_)gdevpdti.$(OBJ) $(C_) $(GLSRC)gdevpdti.c
1020
1021$(GLOBJ)gdevpdts.$(OBJ) : $(GLSRC)gdevpdts.c $(gx_h) $(math__h) $(memory__h)\
1022 $(gdevpdfx_h) $(gdevpdtf_h) $(gdevpdts_h) $(gdevpdtx_h)
1023	$(GLCC) $(GLO_)gdevpdts.$(OBJ) $(C_) $(GLSRC)gdevpdts.c
1024
1025$(GLOBJ)gdevpdtt.$(OBJ) : $(GLSRC)gdevpdtt.c $(gx_h) $(math__h) $(string__h)\
1026 $(gserrors_h) $(gsencs_h) $(gscedata_h) $(gsmatrix_h) $(gzstate_h)\
1027 $(gxfcache_h) $(gxfont_h) $(gxfont0_h) $(gxfcid_h) $(gxfcopy_h)\
1028 $(gxfcmap_h) $(gxpath_h) $(gxchar_h) $(gxstate_h) $(gdevpdfx_h) $(gdevpdfg_h)\
1029 $(gdevpdtx_h) $(gdevpdtd_h) $(gdevpdtf_h) $(gdevpdts_h) $(gdevpdtt_h)\
1030 $(gdevpdti_h) $(gxhldevc_h)
1031	$(GLCC) $(GLO_)gdevpdtt.$(OBJ) $(C_) $(GLSRC)gdevpdtt.c
1032
1033$(GLOBJ)gdevpdtv.$(OBJ) : $(GLSRC)gdevpdtv.c $(gx_h) $(gdevpdtv_h)
1034	$(GLCC) $(GLO_)gdevpdtv.$(OBJ) $(C_) $(GLSRC)gdevpdtv.c
1035
1036$(GLOBJ)gdevpdtw.$(OBJ) : $(GLSRC)gdevpdtw.c $(gx_h) $(gserrors_h) $(memory__h)\
1037 $(gxfcmap_h) $(gxfont_h) $(gscencs_h)\
1038 $(gdevpsf_h) $(gdevpdfx_h) $(gdevpdfo_h)\
1039 $(gdevpdtd_h) $(gdevpdtf_h) $(gdevpdti_h) $(gdevpdtw_h) $(gdevpdtv_h) $(sarc4_h)
1040	$(GLCC) $(GLO_)gdevpdtw.$(OBJ) $(C_) $(GLSRC)gdevpdtw.c
1041
1042################ END PDF WRITER ################
1043
1044# High-level PCL XL writer
1045
1046pxl_=$(GLOBJ)gdevpx.$(OBJ) $(GLOBJ)gdevpxut.$(OBJ)
1047$(DD)pxlmono.dev : $(DEVS_MAK) $(pxl_) $(GDEV) $(GLD)vector.dev
1048	$(SETDEV2) $(DD)pxlmono $(pxl_)
1049	$(ADDMOD) $(DD)pxlmono -include $(GLD)vector
1050
1051$(DD)pxlcolor.dev : $(DEVS_MAK) $(pxl_) $(GDEV) $(GLD)vector.dev
1052	$(SETDEV2) $(DD)pxlcolor $(pxl_)
1053	$(ADDMOD) $(DD)pxlcolor -include $(GLD)vector
1054
1055$(GLOBJ)gdevpx.$(OBJ) : $(GLSRC)gdevpx.c\
1056 $(math__h) $(memory__h) $(string__h)\
1057 $(gx_h) $(gsccolor_h) $(gsdcolor_h) $(gserrors_h)\
1058 $(gxcspace_h) $(gxdevice_h) $(gxpath_h)\
1059 $(gdevpxat_h) $(gdevpxen_h) $(gdevpxop_h) $(gdevpxut_h) $(gdevvec_h)\
1060 $(srlx_h) $(strimpl_h)
1061	$(GLCC) $(GLO_)gdevpx.$(OBJ) $(C_) $(GLSRC)gdevpx.c
1062
1063###### --------------------- Raster file formats --------------------- ######
1064
1065### --------------------- The "plain bits" devices ---------------------- ###
1066
1067# This device also exercises the driver CRD facilities, which is why it
1068# needs some additional files.
1069
1070bit_=$(GLOBJ)gdevbit.$(OBJ) $(GLOBJ)gdevdcrd.$(OBJ)
1071
1072$(DD)bit.dev : $(DEVS_MAK) $(bit_) $(GLD)page.dev $(GLD)cielib.dev
1073	$(SETPDEV2) $(DD)bit $(bit_)
1074	$(ADDMOD) $(DD)bit -include $(GLD)cielib
1075
1076$(DD)bitrgb.dev : $(DEVS_MAK) $(bit_) $(GLD)page.dev $(GLD)cielib.dev
1077	$(SETPDEV2) $(DD)bitrgb $(bit_)
1078	$(ADDMOD) $(DD)bitrgb -include $(GLD)cielib
1079
1080$(DD)bitcmyk.dev : $(DEVS_MAK) $(bit_) $(GLD)page.dev $(GLD)cielib.dev
1081	$(SETPDEV2) $(DD)bitcmyk $(bit_)
1082	$(ADDMOD) $(DD)bitcmyk -include $(GLD)cielib
1083
1084$(DD)bitrgbtags.dev : $(DEVS_MAK) $(bit_) $(GLD)page.dev $(GLD)cielib.dev
1085	$(SETPDEV2) $(DD)bitrgbtags $(bit_)
1086	$(ADDMOD) $(DD)bitrgbtags -include $(GLD)cielib
1087
1088$(GLOBJ)gdevbit.$(OBJ) : $(GLSRC)gdevbit.c $(PDEVH) $(math__h)\
1089 $(gdevdcrd_h) $(gscrd_h) $(gscrdp_h) $(gsparam_h) $(gxlum_h)
1090	$(GLCC) $(GLO_)gdevbit.$(OBJ) $(C_) $(GLSRC)gdevbit.c
1091
1092### ------------------------- .BMP file formats ------------------------- ###
1093
1094gdevbmp_h=$(GLSRC)gdevbmp.h
1095
1096bmp_=$(GLOBJ)gdevbmp.$(OBJ) $(GLOBJ)gdevbmpc.$(OBJ) $(GLOBJ)gdevpccm.$(OBJ)
1097
1098$(GLOBJ)gdevbmp.$(OBJ) : $(GLSRC)gdevbmp.c $(PDEVH) $(gdevbmp_h) $(gdevpccm_h)
1099	$(GLCC) $(GLO_)gdevbmp.$(OBJ) $(C_) $(GLSRC)gdevbmp.c
1100
1101$(GLOBJ)gdevbmpc.$(OBJ) : $(GLSRC)gdevbmpc.c $(PDEVH) $(gdevbmp_h)
1102	$(GLCC) $(GLO_)gdevbmpc.$(OBJ) $(C_) $(GLSRC)gdevbmpc.c
1103
1104$(DD)bmpmono.dev : $(DEVS_MAK) $(bmp_) $(GLD)page.dev
1105	$(SETPDEV2) $(DD)bmpmono $(bmp_)
1106
1107$(DD)bmpgray.dev : $(DEVS_MAK) $(bmp_) $(GLD)page.dev
1108	$(SETPDEV2) $(DD)bmpgray $(bmp_)
1109
1110$(DD)bmpsep1.dev : $(DEVS_MAK) $(bmp_) $(GLD)page.dev
1111	$(SETPDEV2) $(DD)bmpsep1 $(bmp_)
1112
1113$(DD)bmpsep8.dev : $(DEVS_MAK) $(bmp_) $(GLD)page.dev
1114	$(SETPDEV2) $(DD)bmpsep8 $(bmp_)
1115
1116$(DD)bmp16.dev : $(DEVS_MAK) $(bmp_) $(GLD)page.dev
1117	$(SETPDEV2) $(DD)bmp16 $(bmp_)
1118
1119$(DD)bmp256.dev : $(DEVS_MAK) $(bmp_) $(GLD)page.dev
1120	$(SETPDEV2) $(DD)bmp256 $(bmp_)
1121
1122$(DD)bmp16m.dev : $(DEVS_MAK) $(bmp_) $(GLD)page.dev
1123	$(SETPDEV2) $(DD)bmp16m $(bmp_)
1124
1125$(DD)bmp32b.dev : $(DEVS_MAK) $(bmp_) $(GLD)page.dev
1126	$(SETPDEV2) $(DD)bmp32b $(bmp_)
1127
1128### ------------- BMP driver that serves as demo of async rendering ---- ###
1129
1130bmpa_=$(GLOBJ)gdevbmpa.$(OBJ) $(GLOBJ)gdevbmpc.$(OBJ) $(GLOBJ)gdevpccm.$(OBJ) $(GLOBJ)gdevppla.$(OBJ)
1131
1132$(GLOBJ)gdevbmpa.$(OBJ) : $(GLSRC)gdevbmpa.c $(AK) $(stdio__h)\
1133 $(gdevbmp_h) $(gdevprna_h) $(gdevpccm_h) $(gdevppla_h)\
1134 $(gserrors_h) $(gpsync_h)
1135	$(GLCC) $(GLO_)gdevbmpa.$(OBJ) $(C_) $(GLSRC)gdevbmpa.c
1136
1137$(DD)bmpamono.dev : $(DEVS_MAK) $(bmpa_) $(GLD)page.dev $(GLD)async.dev
1138	$(SETPDEV2) $(DD)bmpamono $(bmpa_)
1139	$(ADDMOD) $(DD)bmpamono -include $(GLD)async
1140
1141$(DD)bmpasep1.dev : $(DEVS_MAK) $(bmpa_) $(GLD)page.dev $(GLD)async.dev
1142	$(SETPDEV2) $(DD)bmpasep1 $(bmpa_)
1143	$(ADDMOD) $(DD)bmpasep1 -include $(GLD)async
1144
1145$(DD)bmpasep8.dev : $(DEVS_MAK) $(bmpa_) $(GLD)page.dev $(GLD)async.dev
1146	$(SETPDEV2) $(DD)bmpasep8 $(bmpa_)
1147	$(ADDMOD) $(DD)bmpasep8 -include $(GLD)async
1148
1149$(DD)bmpa16.dev : $(DEVS_MAK) $(bmpa_) $(GLD)page.dev $(GLD)async.dev
1150	$(SETPDEV2) $(DD)bmpa16 $(bmpa_)
1151	$(ADDMOD) $(DD)bmpa16 -include $(GLD)async
1152
1153$(DD)bmpa256.dev : $(DEVS_MAK) $(bmpa_) $(GLD)page.dev $(GLD)async.dev
1154	$(SETPDEV2) $(DD)bmpa256 $(bmpa_)
1155	$(ADDMOD) $(DD)bmpa256 -include $(GLD)async
1156
1157$(DD)bmpa16m.dev : $(DEVS_MAK) $(bmpa_) $(GLD)page.dev $(GLD)async.dev
1158	$(SETPDEV2) $(DD)bmpa16m $(bmpa_)
1159	$(ADDMOD) $(DD)bmpa16m -include $(GLD)async
1160
1161$(DD)bmpa32b.dev : $(DEVS_MAK) $(bmpa_) $(GLD)page.dev $(GLD)async.dev
1162	$(SETPDEV2) $(DD)bmpa32b $(bmpa_)
1163	$(ADDMOD) $(DD)bmpa32b -include $(GLD)async
1164
1165### -------------------------- CGM file format ------------------------- ###
1166### This driver is under development.  Use at your own risk.             ###
1167### The output is very low-level, consisting only of rectangles and      ###
1168### cell arrays.                                                         ###
1169
1170cgm_=$(GLOBJ)gdevcgm.$(OBJ) $(GLOBJ)gdevcgml.$(OBJ)
1171
1172gdevcgml_h=$(GLSRC)gdevcgml.h
1173gdevcgmx_h=$(GLSRC)gdevcgmx.h $(gdevcgml_h)
1174
1175$(GLOBJ)gdevcgm.$(OBJ) : $(GLSRC)gdevcgm.c $(GDEV) $(memory__h)\
1176 $(gp_h) $(gsparam_h) $(gdevpccm_h) $(gdevcgml_h)
1177	$(GLCC) $(GLO_)gdevcgm.$(OBJ) $(C_) $(GLSRC)gdevcgm.c
1178
1179$(GLOBJ)gdevcgml.$(OBJ) : $(GLSRC)gdevcgml.c $(memory__h) $(stdio__h)\
1180 $(gdevcgmx_h)
1181	$(GLCC) $(GLO_)gdevcgml.$(OBJ) $(C_) $(GLSRC)gdevcgml.c
1182
1183$(DD)cgmmono.dev : $(DEVS_MAK) $(cgm_)
1184	$(SETDEV) $(DD)cgmmono $(cgm_)
1185
1186$(DD)cgm8.dev : $(DEVS_MAK) $(cgm_)
1187	$(SETDEV) $(DD)cgm8 $(cgm_)
1188
1189$(DD)cgm24.dev : $(DEVS_MAK) $(cgm_)
1190	$(SETDEV) $(DD)cgm24 $(cgm_)
1191
1192### ------------------------ The DeviceN device ------------------------ ###
1193
1194devn_=$(GLOBJ)gdevdevn.$(OBJ)
1195
1196$(DD)spotcmyk.dev : $(DEVS_MAK) $(devn_) $(GLD)page.dev
1197	$(SETDEV) $(DD)spotcmyk $(devn_)
1198
1199$(DD)devicen.dev : $(DEVS_MAK) $(devn_) $(GLD)page.dev
1200	$(SETDEV) $(DD)devicen $(devn_)
1201
1202$(GLOBJ)gdevdevn.$(OBJ) : $(GLSRC)gdevdevn.c $(PDEVH) $(math__h) $(string__h)\
1203 $(gdevprn_h) $(gsparam_h) $(gscrd_h) $(gscrdp_h) $(gxlum_h) $(gdevdcrd_h)\
1204 $(gstypes_h) $(gxdcconv_h) $(gdevdevn_h) $(gsequivc_h)
1205	$(GLCC) $(GLO_)gdevdevn.$(OBJ) $(C_) $(GLSRC)gdevdevn.c
1206
1207### --------------------------- The XCF device ------------------------- ###
1208
1209xcf_=$(GLOBJ)gdevxcf.$(OBJ)
1210
1211$(DD)xcf.dev : $(DEVS_MAK) $(xcf_) $(GLD)page.dev
1212	$(SETDEV) $(DD)xcf $(xcf_)
1213
1214$(DD)xcfcmyk.dev : $(DEVS_MAK) $(xcf_) $(GLD)page.dev
1215	$(SETDEV) $(DD)xcfcmyk $(xcf_)
1216
1217$(GLOBJ)gdevxcf.$(OBJ) : $(GLSRC)gdevxcf.c $(PDEVH) $(math__h)\
1218 $(gdevdcrd_h) $(gscrd_h) $(gscrdp_h) $(gsparam_h) $(gxlum_h) $(icc_h)\
1219 $(gxdcconv_h)
1220	$(GLICCCC) $(GLO_)gdevxcf.$(OBJ) $(C_) $(GLSRC)gdevxcf.c
1221
1222### --------------------------- The PSD device ------------------------- ###
1223
1224psd_=$(GLOBJ)gdevpsd.$(OBJ) $(GLOBJ)gdevdevn.$(OBJ) $(GLOBJ)gsequivc.$(OBJ)
1225
1226$(DD)psdrgb.dev : $(DEVS_MAK) $(psd_) $(GLD)page.dev
1227	$(SETDEV) $(DD)psdrgb $(psd_)
1228
1229$(DD)psdcmyk.dev : $(DEVS_MAK) $(psd_) $(GLD)page.dev
1230	$(SETDEV) $(DD)psdcmyk $(psd_)
1231
1232$(GLOBJ)gdevpsd.$(OBJ) : $(GLSRC)gdevpsd.c $(PDEVH) $(math__h)\
1233 $(gdevdcrd_h) $(gscrd_h) $(gscrdp_h) $(gsparam_h) $(gxlum_h) $(icc_h)\
1234 $(gstypes_h) $(gxdcconv_h) $(gdevdevn_h) $(gsequivc_h)
1235	$(GLICCCC) $(GLO_)gdevpsd.$(OBJ) $(C_) $(GLSRC)gdevpsd.c
1236
1237$(GLOBJ)gsequivc.$(OBJ) : $(GLSRC)gsequivc.c $(math__h)\
1238 $(PDEVH) $(gsparam_h) $(gstypes_h) $(gxdconv_h) $(gdevdevn_h)\
1239 $(gsequivc_h) $(gzstate_h) $(gsstate_h) $(gscspace_h) $(gxcspace_h)
1240	$(GLICCCC) $(GLO_)gsequivc.$(OBJ) $(C_) $(GLSRC)gsequivc.c
1241
1242### ----------------------- The permutation device --------------------- ###
1243
1244perm_=$(GLOBJ)gdevperm.$(OBJ)
1245
1246$(DD)perm.dev : $(DEVS_MAK) $(perm_) $(GLD)page.dev
1247	$(SETDEV) $(DD)perm $(perm_)
1248
1249$(GLOBJ)gdevperm.$(OBJ) : $(GLSRC)gdevperm.c $(PDEVH) $(math__h)\
1250 $(gdevdcrd_h) $(gscrd_h) $(gscrdp_h) $(gsparam_h) $(gxlum_h) $(icc_h)
1251	$(GLICCCC) $(GLO_)gdevperm.$(OBJ) $(C_) $(GLSRC)gdevperm.c
1252
1253### ------------------------- JPEG file format ------------------------- ###
1254
1255jpeg_=$(GLOBJ)gdevjpeg.$(OBJ)
1256
1257# RGB output
1258$(DD)jpeg.dev : $(DEVS_MAK) $(jpeg_) $(GLD)sdcte.dev $(GLD)page.dev
1259	$(SETPDEV2) $(DD)jpeg $(jpeg_)
1260	$(ADDMOD) $(DD)jpeg -include $(GLD)sdcte
1261
1262# Gray output
1263$(DD)jpeggray.dev : $(DEVS_MAK) $(jpeg_) $(GLD)sdcte.dev $(GLD)page.dev
1264	$(SETPDEV2) $(DD)jpeggray $(jpeg_)
1265	$(ADDMOD) $(DD)jpeggray -include $(GLD)sdcte
1266
1267# CMYK output
1268$(DD)jpegcmyk.dev : $(DEVS_MAK) $(jpeg_) $(GLD)sdcte.dev $(GLD)page.dev
1269	$(SETPDEV2) $(DD)jpegcmyk $(jpeg_)
1270	$(ADDMOD) $(DD)jpegcmyk -include $(GLD)sdcte
1271
1272$(GLOBJ)gdevjpeg.$(OBJ) : $(GLSRC)gdevjpeg.c $(PDEVH)\
1273 $(stdio__h) $(jpeglib__h)\
1274 $(sdct_h) $(sjpeg_h) $(stream_h) $(strimpl_h)
1275	$(GLCC) $(GLO_)gdevjpeg.$(OBJ) $(C_) $(GLSRC)gdevjpeg.c
1276
1277### ------------------------- MIFF file format ------------------------- ###
1278### Right now we support only 24-bit direct color, but we might add more ###
1279### formats in the future.                                               ###
1280
1281miff_=$(GLOBJ)gdevmiff.$(OBJ)
1282
1283$(DD)miff24.dev : $(DEVS_MAK) $(miff_) $(GLD)page.dev
1284	$(SETPDEV) $(DD)miff24 $(miff_)
1285
1286$(GLOBJ)gdevmiff.$(OBJ) : $(GLSRC)gdevmiff.c $(PDEVH)
1287	$(GLCC) $(GLO_)gdevmiff.$(OBJ) $(C_) $(GLSRC)gdevmiff.c
1288
1289### ------------------------- PCX file formats ------------------------- ###
1290
1291pcx_=$(GLOBJ)gdevpcx.$(OBJ) $(GLOBJ)gdevpccm.$(OBJ)
1292
1293$(GLOBJ)gdevpcx.$(OBJ) : $(GLSRC)gdevpcx.c $(PDEVH) $(gdevpccm_h) $(gxlum_h)
1294	$(GLCC) $(GLO_)gdevpcx.$(OBJ) $(C_) $(GLSRC)gdevpcx.c
1295
1296$(DD)pcxmono.dev : $(DEVS_MAK) $(pcx_) $(GLD)page.dev
1297	$(SETPDEV2) $(DD)pcxmono $(pcx_)
1298
1299$(DD)pcxgray.dev : $(DEVS_MAK) $(pcx_) $(GLD)page.dev
1300	$(SETPDEV2) $(DD)pcxgray $(pcx_)
1301
1302$(DD)pcx16.dev : $(DEVS_MAK) $(pcx_) $(GLD)page.dev
1303	$(SETPDEV2) $(DD)pcx16 $(pcx_)
1304
1305$(DD)pcx256.dev : $(DEVS_MAK) $(pcx_) $(GLD)page.dev
1306	$(SETPDEV2) $(DD)pcx256 $(pcx_)
1307
1308$(DD)pcx24b.dev : $(DEVS_MAK) $(pcx_) $(GLD)page.dev
1309	$(SETPDEV2) $(DD)pcx24b $(pcx_)
1310
1311$(DD)pcxcmyk.dev : $(DEVS_MAK) $(pcx_) $(GLD)page.dev
1312	$(SETPDEV2) $(DD)pcxcmyk $(pcx_)
1313
1314# The 2-up PCX device is here only as an example, and for testing.
1315
1316$(DD)pcx2up.dev : $(DEVS_MAK) $(LIB_MAK) $(ECHOGS_XE) $(GLOBJ)gdevp2up.$(OBJ) $(GLD)page.dev $(DD)pcx256.dev
1317	$(SETPDEV) $(DD)pcx2up $(GLOBJ)gdevp2up.$(OBJ)
1318	$(ADDMOD) $(DD)pcx2up -include $(DD)pcx256
1319
1320$(GLOBJ)gdevp2up.$(OBJ) : $(GLSRC)gdevp2up.c $(AK)\
1321 $(gdevpccm_h) $(gdevprn_h) $(gxclpage_h)
1322	$(GLCC) $(GLO_)gdevp2up.$(OBJ) $(C_) $(GLSRC)gdevp2up.c
1323
1324### ------------------- Portable Bitmap file formats ------------------- ###
1325### For more information, see the pam(5), pbm(5), pgm(5), and ppm(5)     ###
1326### man pages.                                                           ###
1327
1328pxm_=$(GLOBJ)gdevpbm.$(OBJ) $(GLOBJ)gdevppla.$(OBJ) $(GLOBJ)gdevmpla.$(OBJ)
1329
1330$(GLOBJ)gdevpbm.$(OBJ) : $(GLSRC)gdevpbm.c $(PDEVH)\
1331 $(gdevmpla_h) $(gdevplnx_h) $(gdevppla_h)\
1332 $(gscdefs_h) $(gscspace_h) $(gxgetbit_h) $(gxiparam_h) $(gxlum_h)
1333	$(GLCC) $(GLO_)gdevpbm.$(OBJ) $(C_) $(GLSRC)gdevpbm.c
1334
1335### Portable Bitmap (PBM, plain or raw format, magic numbers "P1" or "P4")
1336
1337$(DD)pbm.dev : $(DEVS_MAK) $(pxm_) $(GLD)page.dev
1338	$(SETPDEV2) $(DD)pbm $(pxm_)
1339
1340$(DD)pbmraw.dev : $(DEVS_MAK) $(pxm_) $(GLD)page.dev
1341	$(SETPDEV2) $(DD)pbmraw $(pxm_)
1342
1343### Portable Graymap (PGM, plain or raw format, magic numbers "P2" or "P5")
1344
1345$(DD)pgm.dev : $(DEVS_MAK) $(pxm_) $(GLD)page.dev
1346	$(SETPDEV2) $(DD)pgm $(pxm_)
1347
1348$(DD)pgmraw.dev : $(DEVS_MAK) $(pxm_) $(GLD)page.dev
1349	$(SETPDEV2) $(DD)pgmraw $(pxm_)
1350
1351# PGM with automatic optimization to PBM if this is possible.
1352
1353$(DD)pgnm.dev : $(DEVS_MAK) $(pxm_) $(GLD)page.dev
1354	$(SETPDEV2) $(DD)pgnm $(pxm_)
1355
1356$(DD)pgnmraw.dev : $(DEVS_MAK) $(pxm_) $(GLD)page.dev
1357	$(SETPDEV2) $(DD)pgnmraw $(pxm_)
1358
1359### Portable Pixmap (PPM, plain or raw format, magic numbers "P3" or "P6")
1360
1361$(DD)ppm.dev : $(DEVS_MAK) $(pxm_) $(GLD)page.dev
1362	$(SETPDEV2) $(DD)ppm $(pxm_)
1363
1364$(DD)ppmraw.dev : $(DEVS_MAK) $(pxm_) $(GLD)page.dev
1365	$(SETPDEV2) $(DD)ppmraw $(pxm_)
1366
1367# PPM with automatic optimization to PGM or PBM if possible.
1368
1369$(DD)pnm.dev : $(DEVS_MAK) $(pxm_) $(GLD)page.dev
1370	$(SETPDEV2) $(DD)pnm $(pxm_)
1371
1372$(DD)pnmraw.dev : $(DEVS_MAK) $(pxm_) $(GLD)page.dev
1373	$(SETPDEV2) $(DD)pnmraw $(pxm_)
1374
1375### Portable inKmap (CMYK internally, converted to PPM=RGB at output time)
1376
1377$(DD)pkm.dev : $(DEVS_MAK) $(pxm_) $(GLD)page.dev
1378	$(SETPDEV2) $(DD)pkm $(pxm_)
1379
1380$(DD)pkmraw.dev : $(DEVS_MAK) $(pxm_) $(GLD)page.dev
1381	$(SETPDEV2) $(DD)pkmraw $(pxm_)
1382
1383### Portable Separated map (CMYK internally, produces 4 monobit pages)
1384
1385$(DD)pksm.dev : $(DEVS_MAK) $(pxm_) $(GLD)page.dev
1386	$(SETPDEV2) $(DD)pksm $(pxm_)
1387
1388$(DD)pksmraw.dev : $(DEVS_MAK) $(pxm_) $(GLD)page.dev
1389	$(SETPDEV2) $(DD)pksmraw $(pxm_)
1390
1391### Plan 9 bitmap format
1392
1393$(DD)plan9bm.dev : $(DEVS_MAK) $(pxm_) $(GLD)page.dev
1394	$(SETPDEV2) $(DD)plan9bm $(pxm_)
1395
1396### Portable Arbitrary Map (PAM, magic number "P7", CMYK)
1397
1398$(DD)pam.dev : $(DEVS_MAK) $(pxm_) $(GLD)page.dev
1399	$(SETPDEV2) $(DD)pam $(pxm_)
1400
1401### --------------- Portable Network Graphics file format --------------- ###
1402### Requires libpng 0.81 and zlib 0.95 (or more recent versions).         ###
1403### See libpng.mak and zlib.mak for more details.                         ###
1404
1405png__h=$(GLSRC)png_.h $(MAKEFILE)
1406
1407png_=$(GLOBJ)gdevpng.$(OBJ) $(GLOBJ)gdevpccm.$(OBJ)
1408libpng_dev=$(PNGGENDIR)$(D)libpng.dev
1409png_i_=-include $(PNGGENDIR)$(D)libpng
1410
1411$(GLOBJ)gdevpng.$(OBJ) : $(GLSRC)gdevpng.c\
1412 $(gdevprn_h) $(gdevpccm_h) $(gscdefs_h) $(png__h)
1413	$(CC_) $(I_)$(GLI_) $(II)$(PI_)$(_I) $(PCF_) $(GLF_) $(GLO_)gdevpng.$(OBJ) $(C_) $(GLSRC)gdevpng.c
1414
1415$(DD)pngmono.dev : $(DEVS_MAK) $(libpng_dev) $(png_) $(GLD)page.dev
1416	$(SETPDEV2) $(DD)pngmono $(png_)
1417	$(ADDMOD) $(DD)pngmono $(png_i_)
1418
1419$(DD)pnggray.dev : $(DEVS_MAK) $(libpng_dev) $(png_) $(GLD)page.dev
1420	$(SETPDEV2) $(DD)pnggray $(png_)
1421	$(ADDMOD) $(DD)pnggray $(png_i_)
1422
1423$(DD)png16.dev : $(DEVS_MAK) $(libpng_dev) $(png_) $(GLD)page.dev
1424	$(SETPDEV2) $(DD)png16 $(png_)
1425	$(ADDMOD) $(DD)png16 $(png_i_)
1426
1427$(DD)png256.dev : $(DEVS_MAK) $(libpng_dev) $(png_) $(GLD)page.dev
1428	$(SETPDEV2) $(DD)png256 $(png_)
1429	$(ADDMOD) $(DD)png256 $(png_i_)
1430
1431$(DD)png16m.dev : $(DEVS_MAK) $(libpng_dev) $(png_) $(GLD)page.dev
1432	$(SETPDEV2) $(DD)png16m $(png_)
1433	$(ADDMOD) $(DD)png16m $(png_i_)
1434
1435$(DD)png48.dev : $(DEVS_MAK) $(libpng_dev) $(png_) $(GLD)page.dev
1436	$(SETPDEV2) $(DD)png48 $(png_)
1437	$(ADDMOD) $(DD)png48 $(png_i_)
1438
1439$(DD)pngalpha.dev : $(DEVS_MAK) $(libpng_dev) $(png_) $(GLD)page.dev
1440	$(SETPDEV2) $(DD)pngalpha $(png_)
1441	$(ADDMOD) $(DD)pngalpha $(png_i_)
1442
1443### -------------------- PNG with transparency -------------------- ###
1444
1445pnga_=$(GLOBJ)gdevpnga.$(OBJ)
1446$(DD)pnga.dev :	$(pnga_)
1447	$(SETDEV) $(DD)pnga $(pnga_)
1448
1449$(GLOBJ)gdevpnga.$(OBJ) : $(GLSRC)gdevpnga.c $(png__h)\
1450 $(gscdefs_h) $(gsdevice_h) $(gxblend_h) $(gxtext_h)\
1451 $(gdevmem_h) $(gdevpccm_h) $(gdevprn_h)
1452	$(CC_) $(I_)$(GLI_) $(II)$(PI_)$(_I) $(PCF_) $(GLF_) $(GLO_)gdevpnga.$(OBJ) $(C_) $(GLSRC)gdevpnga.c
1453
1454### ---------------------- PostScript image format ---------------------- ###
1455### These devices make it possible to print monochrome Level 2 files on a ###
1456###   Level 1 printer, by converting them to a bitmap in PostScript       ###
1457###   format.  They also can convert big, complex color PostScript files  ###
1458###   to (often) smaller and more easily printed bitmaps.                 ###
1459
1460psim_=$(GLOBJ)gdevpsim.$(OBJ) $(GLOBJ)gdevpsu.$(OBJ)
1461
1462$(GLOBJ)gdevpsim.$(OBJ) : $(GLSRC)gdevpsim.c $(PDEVH)\
1463 $(gdevpsu_h)\
1464 $(sa85x_h) $(srlx_h) $(stream_h) $(strimpl_h)
1465	$(GLCC) $(GLO_)gdevpsim.$(OBJ) $(C_) $(GLSRC)gdevpsim.c
1466
1467# Monochrome, Level 1 output
1468
1469$(DD)psmono.dev : $(DEVS_MAK) $(psim_) $(GLD)page.dev
1470	$(SETPDEV2) $(DD)psmono $(psim_)
1471
1472$(DD)psgray.dev : $(DEVS_MAK) $(psim_) $(GLD)page.dev
1473	$(SETPDEV2) $(DD)psgray $(psim_)
1474
1475# RGB, Level 2 output
1476
1477$(DD)psrgb.dev : $(DEVS_MAK) $(psim_) $(GLD)page.dev
1478	$(SETPDEV2) $(DD)psrgb $(psim_)
1479
1480### ---------------- Fax encoding ---------------- ###
1481
1482# By default, these drivers recognize 3 page sizes -- (U.S.) letter, A4, and
1483# B4 -- and adjust the page width to the nearest legal value for real fax
1484# systems (1728 or 2048 pixels).  To suppress this, set the device parameter
1485# AdjustWidth to 0 (e.g., -dAdjustWidth=0 on the command line).
1486
1487gdevfax_h=$(GLSRC)gdevfax.h
1488
1489fax_=$(GLOBJ)gdevfax.$(OBJ)
1490$(DD)fax.dev : $(DEVS_MAK) $(fax_) $(GLD)cfe.dev
1491	$(SETMOD) $(DD)fax $(fax_)
1492	$(ADDMOD) $(DD)fax -include $(GLD)cfe
1493
1494$(GLOBJ)gdevfax.$(OBJ) : $(GLSRC)gdevfax.c $(PDEVH)\
1495 $(gdevfax_h) $(scfx_h) $(strimpl_h)
1496	$(GLCC) $(GLO_)gdevfax.$(OBJ) $(C_) $(GLSRC)gdevfax.c
1497
1498$(DD)faxg3.dev : $(DEVS_MAK) $(DD)fax.dev
1499	$(SETDEV2) $(DD)faxg3 -include $(DD)fax
1500
1501$(DD)faxg32d.dev : $(DEVS_MAK) $(DD)fax.dev
1502	$(SETDEV2) $(DD)faxg32d -include $(DD)fax
1503
1504$(DD)faxg4.dev : $(DEVS_MAK) $(DD)fax.dev
1505	$(SETDEV2) $(DD)faxg4 -include $(DD)fax
1506
1507### -------------------- Plain or TIFF fax encoding --------------------- ###
1508###    Use -sDEVICE=tiffg3 or tiffg4 and				  ###
1509###	  -r204x98 for low resolution output, or			  ###
1510###	  -r204x196 for high resolution output				  ###
1511
1512gdevtifs_h=$(GLSRC)gdevtifs.h
1513gdevtfax_h=$(GLSRC)gdevtfax.h
1514
1515tfax_=$(GLOBJ)gdevtfax.$(OBJ)
1516$(DD)tfax.dev : $(DEVS_MAK) $(tfax_) $(GLD)cfe.dev $(GLD)lzwe.dev $(GLD)rle.dev $(DD)fax.dev $(DD)tiffs.dev
1517	$(SETMOD) $(DD)tfax $(tfax_)
1518	$(ADDMOD) $(DD)tfax -include $(GLD)cfe $(GLD)lzwe $(GLD)rle
1519	$(ADDMOD) $(DD)tfax -include $(DD)fax $(DD)tiffs
1520
1521$(GLOBJ)gdevtfax.$(OBJ) : $(GLSRC)gdevtfax.c $(PDEVH)\
1522 $(gdevfax_h) $(gdevtfax_h) $(gdevtifs_h)\
1523 $(scfx_h) $(slzwx_h) $(srlx_h) $(strimpl_h)
1524	$(GLCC) $(GLO_)gdevtfax.$(OBJ) $(C_) $(GLSRC)gdevtfax.c
1525
1526### ---------------------------- TIFF formats --------------------------- ###
1527
1528tiffs_=$(GLOBJ)gdevtifs.$(OBJ)
1529$(DD)tiffs.dev : $(DEVS_MAK) $(tiffs_) $(GLD)page.dev
1530	$(SETMOD) $(DD)tiffs $(tiffs_)
1531	$(ADDMOD) $(DD)tiffs -include $(GLD)page
1532
1533$(GLOBJ)gdevtifs.$(OBJ) : $(GLSRC)gdevtifs.c $(PDEVH) $(stdio__h) $(time__h)\
1534 $(gdevtifs_h) $(gscdefs_h) $(gstypes_h)
1535	$(GLCC) $(GLO_)gdevtifs.$(OBJ) $(C_) $(GLSRC)gdevtifs.c
1536
1537# Black & white, G3/G4 fax
1538# NOTE: see under faxg* above regarding page width adjustment.
1539
1540$(DD)tiffcrle.dev : $(DEVS_MAK) $(DD)tfax.dev
1541	$(SETDEV2) $(DD)tiffcrle -include $(DD)tfax
1542
1543$(DD)tiffg3.dev : $(DEVS_MAK) $(DD)tfax.dev
1544	$(SETDEV2) $(DD)tiffg3 -include $(DD)tfax
1545
1546$(DD)tiffg32d.dev : $(DEVS_MAK) $(DD)tfax.dev
1547	$(SETDEV2) $(DD)tiffg32d -include $(DD)tfax
1548
1549$(DD)tiffg4.dev : $(DEVS_MAK) $(DD)tfax.dev
1550	$(SETDEV2) $(DD)tiffg4 -include $(DD)tfax
1551
1552# Black & white, LZW compression
1553
1554$(DD)tifflzw.dev : $(DEVS_MAK) $(DD)tfax.dev
1555	$(SETDEV2) $(DD)tifflzw -include $(DD)tfax
1556
1557# Black & white, PackBits compression
1558
1559$(DD)tiffpack.dev : $(DEVS_MAK) $(DD)tfax.dev
1560	$(SETDEV2) $(DD)tiffpack -include $(DD)tfax
1561
1562# TIFF Gray, no compression
1563
1564tiffgray_=$(GLOBJ)gdevtsep.$(OBJ)
1565
1566$(DD)tiffgray.dev : $(DEVS_MAK) $(tiffgray_) $(DD)tiffs.dev
1567	$(SETPDEV2) $(DD)tiffgray $(tiffgray_)
1568	$(ADDMOD) $(DD)tiffgray -include $(DD)tiffs
1569
1570$(GLOBJ)gdevtsep.$(OBJ) : $(GLSRC)gdevtsep.c $(PDEVH) $(gdevtifs_h)\
1571	$(gdevdevn_h) $(gsequivc_h)
1572	$(GLCC) $(GLO_)gdevtsep.$(OBJ) $(C_) $(GLSRC)gdevtsep.c
1573
1574# TIFF RGB, no compression
1575
1576tiffrgb_=$(GLOBJ)gdevtfnx.$(OBJ)
1577
1578$(DD)tiff12nc.dev : $(DEVS_MAK) $(tiffrgb_) $(DD)tiffs.dev
1579	$(SETPDEV2) $(DD)tiff12nc $(tiffrgb_)
1580	$(ADDMOD) $(DD)tiff12nc -include $(DD)tiffs
1581
1582$(DD)tiff24nc.dev : $(DEVS_MAK) $(tiffrgb_) $(DD)tiffs.dev
1583	$(SETPDEV2) $(DD)tiff24nc $(tiffrgb_)
1584	$(ADDMOD) $(DD)tiff24nc -include $(DD)tiffs
1585
1586$(GLOBJ)gdevtfnx.$(OBJ) : $(GLSRC)gdevtfnx.c $(PDEVH) $(gdevtifs_h)
1587	$(GLCC) $(GLO_)gdevtfnx.$(OBJ) $(C_) $(GLSRC)gdevtfnx.c
1588
1589# TIFF CMYK, no compression
1590
1591$(DD)tiff32nc.dev : $(DEVS_MAK) $(tiffgray_) $(DD)tiffs.dev
1592	$(SETPDEV2) $(DD)tiff32nc $(tiffgray_)
1593	$(ADDMOD) $(DD)tiff32nc -include $(DD)tiffs
1594#
1595# Create separation files (tiffgray) plus CMYK composite (tiff32nc)
1596
1597tiffsep_=$(tiffgray_) $(GLOBJ)gdevdevn.$(OBJ) $(GLOBJ)gsequivc.$(OBJ)
1598
1599$(DD)tiffsep.dev : $(DEVS_MAK) $(tiffgray_) $(DD)tiffs.dev
1600	$(SETPDEV2) $(DD)tiffsep $(tiffsep_)
1601	$(ADDMOD) $(DD)tiffsep -include $(DD)tiffs
1602
1603