amidisplaycc.c revision 1.4 1 1.4 aymeric /* $NetBSD: amidisplaycc.c,v 1.4 2002/01/28 09:56:51 aymeric Exp $ */
2 1.3 aymeric
3 1.1 is /*-
4 1.1 is * Copyright (c) 2000 Jukka Andberg.
5 1.1 is * All rights reserved.
6 1.1 is *
7 1.1 is * Redistribution and use in source and binary forms, with or without
8 1.1 is * modification, are permitted provided that the following conditions
9 1.1 is * are met:
10 1.1 is * 1. Redistributions of source code must retain the above copyright
11 1.1 is * notice, this list of conditions and the following disclaimer.
12 1.1 is * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 is * notice, this list of conditions and the following disclaimer in the
14 1.1 is * documentation and/or other materials provided with the distribution.
15 1.1 is * 3. The name of the author may not be used to endorse or promote products
16 1.1 is * derived from this software without specific prior written permission
17 1.1 is *
18 1.1 is * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 1.1 is * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 1.1 is * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 1.1 is * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22 1.1 is * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23 1.1 is * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24 1.1 is * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 1.1 is * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 1.1 is * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
27 1.1 is * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 1.1 is */
29 1.4 aymeric
30 1.4 aymeric #include <sys/cdefs.h>
31 1.4 aymeric __KERNEL_RCSID(0, "$NetBSD: amidisplaycc.c,v 1.4 2002/01/28 09:56:51 aymeric Exp $");
32 1.1 is
33 1.1 is /*
34 1.1 is * wscons interface to amiga custom chips. Contains the necessary functions
35 1.3 aymeric * to render text on bitmapped screens. Uses the functions defined in
36 1.1 is * grfabs_reg.h for display creation/destruction and low level setup.
37 1.2 jandberg *
38 1.2 jandberg * For each virtual terminal a new screen ('view') is allocated.
39 1.2 jandberg * Also one more is allocated for the mapped screen on demand.
40 1.1 is */
41 1.1 is
42 1.1 is #include "amidisplaycc.h"
43 1.1 is #include "grfcc.h"
44 1.1 is #include "view.h"
45 1.2 jandberg #include "opt_amigaccgrf.h"
46 1.1 is
47 1.1 is #if NAMIDISPLAYCC>0
48 1.1 is
49 1.1 is #include <sys/param.h>
50 1.1 is #include <sys/types.h>
51 1.1 is #include <sys/device.h>
52 1.1 is #include <sys/malloc.h>
53 1.1 is #include <sys/systm.h>
54 1.1 is
55 1.1 is #include <sys/conf.h>
56 1.1 is
57 1.1 is #include <amiga/dev/grfabs_reg.h>
58 1.1 is #include <amiga/dev/viewioctl.h>
59 1.1 is #include <amiga/amiga/device.h>
60 1.1 is #include <dev/wscons/wsconsio.h>
61 1.1 is #include <dev/rcons/raster.h>
62 1.1 is #include <dev/wscons/wscons_raster.h>
63 1.1 is #include <dev/wscons/wsdisplayvar.h>
64 1.1 is #include <dev/cons.h>
65 1.2 jandberg #include <dev/wsfont/wsfont.h>
66 1.2 jandberg
67 1.2 jandberg #include <machine/stdarg.h>
68 1.2 jandberg
69 1.2 jandberg #define AMIDISPLAYCC_MAXFONTS 8
70 1.2 jandberg
71 1.2 jandberg /* These can be lowered if you are sure you dont need that much colors. */
72 1.2 jandberg #define MAXDEPTH 8
73 1.2 jandberg #define MAXROWS 128
74 1.2 jandberg #define MAXCOLUMNS 80
75 1.1 is
76 1.2 jandberg #define ADJUSTCOLORS
77 1.2 jandberg
78 1.2 jandberg #define MAXCOLORS (1<<MAXDEPTH)
79 1.2 jandberg
80 1.2 jandberg struct amidisplaycc_screen;
81 1.1 is struct amidisplaycc_softc
82 1.1 is {
83 1.1 is struct device dev;
84 1.2 jandberg
85 1.2 jandberg /* runtime-loaded fonts */
86 1.2 jandberg struct wsdisplay_font fonts[AMIDISPLAYCC_MAXFONTS];
87 1.3 aymeric
88 1.2 jandberg struct amidisplaycc_screen * currentscreen;
89 1.2 jandberg
90 1.2 jandberg /* display turned on? */
91 1.2 jandberg int ison;
92 1.2 jandberg
93 1.2 jandberg /* stuff relating to the mapped screen */
94 1.2 jandberg view_t * gfxview;
95 1.2 jandberg int gfxwidth;
96 1.2 jandberg int gfxheight;
97 1.2 jandberg int gfxdepth;
98 1.2 jandberg int gfxon;
99 1.1 is };
100 1.1 is
101 1.1 is
102 1.3 aymeric /*
103 1.1 is * Configuration stuff.
104 1.1 is */
105 1.1 is
106 1.3 aymeric static int amidisplaycc_match(struct device *, struct cfdata *, void *);
107 1.3 aymeric static void amidisplaycc_attach(struct device *, struct device *, void *);
108 1.1 is
109 1.1 is struct cfattach amidisplaycc_ca = {
110 1.3 aymeric sizeof(struct amidisplaycc_softc),
111 1.3 aymeric amidisplaycc_match,
112 1.1 is amidisplaycc_attach
113 1.1 is };
114 1.1 is
115 1.1 is cons_decl(amidisplaycc_);
116 1.1 is
117 1.1 is /* end of configuration stuff */
118 1.1 is
119 1.2 jandberg /* private utility functions */
120 1.2 jandberg
121 1.3 aymeric static int amidisplaycc_setvideo(struct amidisplaycc_softc *, int);
122 1.2 jandberg
123 1.3 aymeric static int amidisplaycc_setemulcmap(struct amidisplaycc_screen *,
124 1.3 aymeric struct wsdisplay_cmap *);
125 1.2 jandberg
126 1.3 aymeric static int amidisplaycc_cmapioctl(view_t *, u_long, struct wsdisplay_cmap *);
127 1.3 aymeric static int amidisplaycc_setcmap(view_t *, struct wsdisplay_cmap *);
128 1.3 aymeric static int amidisplaycc_getcmap(view_t *, struct wsdisplay_cmap *);
129 1.3 aymeric static int amidisplaycc_gfxscreen(struct amidisplaycc_softc *, int);
130 1.3 aymeric
131 1.3 aymeric static int amidisplaycc_setnamedfont(struct amidisplaycc_screen *, char *);
132 1.3 aymeric static void amidisplaycc_setfont(struct amidisplaycc_screen *,
133 1.3 aymeric struct wsdisplay_font *, int);
134 1.3 aymeric static struct wsdisplay_font *amidisplaycc_findfont(struct amidisplaycc_softc *,
135 1.3 aymeric const char *, int, int);
136 1.1 is
137 1.2 jandberg static void dprintf(const char *fmt, ...);
138 1.1 is
139 1.2 jandberg /* end of private utility functions */
140 1.1 is
141 1.1 is /* emulops for wscons */
142 1.3 aymeric void amidisplaycc_cursor(void *, int, int, int);
143 1.3 aymeric int amidisplaycc_mapchar(void *, int, unsigned int *);
144 1.3 aymeric void amidisplaycc_putchar(void *, int, int, u_int, long);
145 1.3 aymeric void amidisplaycc_copycols(void *, int, int, int, int);
146 1.3 aymeric void amidisplaycc_erasecols(void *, int, int, int, long);
147 1.3 aymeric void amidisplaycc_copyrows(void *, int, int, int);
148 1.3 aymeric void amidisplaycc_eraserows(void *, int, int, long);
149 1.3 aymeric int amidisplaycc_alloc_attr(void *, int, int, int, long *);
150 1.1 is /* end of emulops for wscons */
151 1.1 is
152 1.2 jandberg
153 1.1 is /* accessops for wscons */
154 1.3 aymeric int amidisplaycc_ioctl(void *, u_long, caddr_t, int, struct proc *);
155 1.3 aymeric paddr_t amidisplaycc_mmap(void *, off_t, int);
156 1.3 aymeric int amidisplaycc_alloc_screen(void *, const struct wsscreen_descr *, void **,
157 1.3 aymeric int *, int *, long *);
158 1.3 aymeric void amidisplaycc_free_screen( void *, void *);
159 1.3 aymeric int amidisplaycc_show_screen(void *, void *, int, void (*)(void *, int, int),
160 1.3 aymeric void *);
161 1.3 aymeric int amidisplaycc_load_font(void *, void *, struct wsdisplay_font *);
162 1.3 aymeric void amidisplaycc_pollc(void *, int);
163 1.1 is /* end of accessops for wscons */
164 1.1 is
165 1.3 aymeric /*
166 1.1 is * These structures are passed to wscons, and they contain the
167 1.1 is * display-specific callback functions.
168 1.1 is */
169 1.1 is
170 1.1 is const struct wsdisplay_accessops amidisplaycc_accessops = {
171 1.1 is amidisplaycc_ioctl,
172 1.1 is amidisplaycc_mmap,
173 1.1 is amidisplaycc_alloc_screen,
174 1.1 is amidisplaycc_free_screen,
175 1.1 is amidisplaycc_show_screen,
176 1.2 jandberg amidisplaycc_load_font,
177 1.2 jandberg amidisplaycc_pollc
178 1.1 is };
179 1.1 is
180 1.1 is const struct wsdisplay_emulops amidisplaycc_emulops = {
181 1.1 is amidisplaycc_cursor,
182 1.1 is amidisplaycc_mapchar,
183 1.1 is amidisplaycc_putchar,
184 1.1 is amidisplaycc_copycols,
185 1.1 is amidisplaycc_erasecols,
186 1.1 is amidisplaycc_copyrows,
187 1.1 is amidisplaycc_eraserows,
188 1.1 is amidisplaycc_alloc_attr
189 1.1 is };
190 1.1 is
191 1.1 is /* add some of our own data to the wsscreen_descr */
192 1.1 is struct amidisplaycc_screen_descr {
193 1.2 jandberg struct wsscreen_descr wsdescr;
194 1.2 jandberg int depth;
195 1.2 jandberg char name[16];
196 1.1 is };
197 1.1 is
198 1.1 is /*
199 1.1 is * List of supported screenmodes. Almost anything can be given here.
200 1.1 is */
201 1.1 is
202 1.2 jandberg #define ADCC_SCREEN(name, width, height, depth, fontwidth, fontheight) \
203 1.2 jandberg /* CONSTCOND */ \
204 1.2 jandberg {{ \
205 1.2 jandberg name, \
206 1.2 jandberg width / fontwidth, \
207 1.2 jandberg height / fontheight, \
208 1.2 jandberg &amidisplaycc_emulops, fontwidth, fontheight, \
209 1.2 jandberg (depth > 1 ? WSSCREEN_WSCOLORS : 0) | WSSCREEN_REVERSE | \
210 1.2 jandberg WSSCREEN_HILIT | WSSCREEN_UNDERLINE }, \
211 1.2 jandberg depth }
212 1.1 is
213 1.1 is struct amidisplaycc_screen_descr amidisplaycc_screentab[] = {
214 1.2 jandberg /* name, width, height, depth, fontwidth==8, fontheight */
215 1.2 jandberg ADCC_SCREEN("80x50", 640, 400, 3, 8, 8),
216 1.2 jandberg ADCC_SCREEN("80x40", 640, 400, 3, 8, 10),
217 1.2 jandberg ADCC_SCREEN("80x25", 640, 400, 3, 8, 16),
218 1.2 jandberg ADCC_SCREEN("80x24", 640, 384, 3, 8, 16),
219 1.2 jandberg
220 1.2 jandberg ADCC_SCREEN("640x400x1", 640, 400, 1, 8, 8),
221 1.2 jandberg ADCC_SCREEN("640x400x2", 640, 400, 2, 8, 8),
222 1.2 jandberg ADCC_SCREEN("640x400x3", 640, 400, 3, 8, 8),
223 1.2 jandberg
224 1.2 jandberg ADCC_SCREEN("640x200x1", 640, 200, 1, 8, 8),
225 1.2 jandberg ADCC_SCREEN("640x200x1", 640, 200, 2, 8, 8),
226 1.2 jandberg ADCC_SCREEN("640x200x1", 640, 200, 3, 8, 8),
227 1.1 is };
228 1.1 is
229 1.1 is #define ADCC_SCREENPTR(index) &amidisplaycc_screentab[index].wsdescr
230 1.1 is const struct wsscreen_descr *amidisplaycc_screens[] = {
231 1.1 is ADCC_SCREENPTR(0),
232 1.1 is ADCC_SCREENPTR(1),
233 1.1 is ADCC_SCREENPTR(2),
234 1.1 is ADCC_SCREENPTR(3),
235 1.1 is ADCC_SCREENPTR(4),
236 1.1 is ADCC_SCREENPTR(5),
237 1.1 is ADCC_SCREENPTR(6),
238 1.1 is ADCC_SCREENPTR(7),
239 1.1 is ADCC_SCREENPTR(8),
240 1.1 is ADCC_SCREENPTR(9),
241 1.1 is };
242 1.1 is
243 1.2 jandberg #define NELEMS(arr) (sizeof(arr)/sizeof((arr)[0]))
244 1.2 jandberg
245 1.1 is /*
246 1.1 is * This structure also is passed to wscons. It contains pointers
247 1.1 is * to the available display modes.
248 1.1 is */
249 1.1 is
250 1.1 is const struct wsscreen_list amidisplaycc_screenlist = {
251 1.1 is sizeof(amidisplaycc_screens)/sizeof(amidisplaycc_screens[0]),
252 1.1 is amidisplaycc_screens
253 1.1 is };
254 1.1 is
255 1.1 is /*
256 1.1 is * Our own screen structure. One will be created for each screen.
257 1.1 is */
258 1.1 is
259 1.1 is struct amidisplaycc_screen
260 1.1 is {
261 1.2 jandberg struct amidisplaycc_softc *device;
262 1.2 jandberg
263 1.2 jandberg int isconsole;
264 1.2 jandberg int isvisible;
265 1.2 jandberg view_t * view;
266 1.1 is
267 1.2 jandberg int ncols;
268 1.2 jandberg int nrows;
269 1.2 jandberg
270 1.2 jandberg int cursorrow;
271 1.2 jandberg int cursorcol;
272 1.2 jandberg
273 1.2 jandberg /* Active bitplanes for each character row. */
274 1.2 jandberg int rowmasks[MAXROWS];
275 1.2 jandberg
276 1.2 jandberg /* Mapping of colors to screen colors. */
277 1.2 jandberg int colormap[MAXCOLORS];
278 1.2 jandberg
279 1.2 jandberg /* Copies of display parameters for convenience */
280 1.2 jandberg int width;
281 1.2 jandberg int height;
282 1.2 jandberg int depth;
283 1.2 jandberg
284 1.2 jandberg int widthbytes; /* bytes_per_row */
285 1.2 jandberg int linebytes; /* widthbytes + row_mod */
286 1.2 jandberg int rowbytes; /* linebytes * fontheight */
287 1.2 jandberg
288 1.2 jandberg u_char * planes[MAXDEPTH];
289 1.2 jandberg
290 1.2 jandberg u_char * savedscreen;
291 1.1 is
292 1.3 aymeric /*
293 1.2 jandberg * The font is either one we loaded ourselves, or
294 1.2 jandberg * one gotten using the wsfont system.
295 1.2 jandberg *
296 1.2 jandberg * wsfontcookie differentiates between them:
297 1.2 jandberg * For fonts loaded by ourselves it is -1.
298 1.2 jandberg * For wsfonts it contains a cookie for that system.
299 1.1 is */
300 1.3 aymeric struct wsdisplay_font * font;
301 1.2 jandberg int wsfontcookie;
302 1.2 jandberg int fontwidth;
303 1.2 jandberg int fontheight;
304 1.1 is };
305 1.1 is
306 1.1 is typedef struct amidisplaycc_screen adccscr_t;
307 1.1 is
308 1.3 aymeric /*
309 1.1 is * Need one statically allocated screen for early init.
310 1.3 aymeric * The rest are mallocated when needed.
311 1.1 is */
312 1.1 is adccscr_t amidisplaycc_consolescreen;
313 1.1 is
314 1.1 is
315 1.1 is /*
316 1.3 aymeric * Bring in the one or two builtin fonts.
317 1.2 jandberg */
318 1.2 jandberg
319 1.2 jandberg extern unsigned char kernel_font_8x8[];
320 1.2 jandberg extern unsigned char kernel_font_lo_8x8;
321 1.2 jandberg extern unsigned char kernel_font_hi_8x8;
322 1.2 jandberg
323 1.3 aymeric /*
324 1.2 jandberg * Default palettes for 2, 4 and 8 color emulation displays.
325 1.2 jandberg */
326 1.2 jandberg
327 1.2 jandberg /* black, grey */
328 1.2 jandberg static u_char pal2red[] = { 0x00, 0xaa };
329 1.2 jandberg static u_char pal2grn[] = { 0x00, 0xaa };
330 1.2 jandberg static u_char pal2blu[] = { 0x00, 0xaa };
331 1.2 jandberg
332 1.2 jandberg /* black, red, green, grey */
333 1.2 jandberg static u_char pal4red[] = { 0x00, 0xaa, 0x00, 0xaa };
334 1.2 jandberg static u_char pal4grn[] = { 0x00, 0x00, 0xaa, 0xaa };
335 1.2 jandberg static u_char pal4blu[] = { 0x00, 0x00, 0x00, 0xaa };
336 1.2 jandberg
337 1.2 jandberg /* black, red, green, brown, blue, magenta, cyan, grey */
338 1.2 jandberg static u_char pal8red[] = { 0x00, 0xaa, 0x00, 0xaa, 0x00, 0xaa, 0x00, 0xaa};
339 1.2 jandberg static u_char pal8grn[] = { 0x00, 0x00, 0xaa, 0xaa, 0x00, 0x00, 0xaa, 0xaa};
340 1.2 jandberg static u_char pal8blu[] = { 0x00, 0x00, 0x00, 0x00, 0xaa, 0xaa, 0xaa, 0xaa};
341 1.2 jandberg
342 1.2 jandberg static struct wsdisplay_cmap pal2 = { 0, 2, pal2red, pal2grn, pal2blu };
343 1.2 jandberg static struct wsdisplay_cmap pal4 = { 0, 4, pal4red, pal4grn, pal4blu };
344 1.2 jandberg static struct wsdisplay_cmap pal8 = { 0, 8, pal8red, pal8grn, pal8blu };
345 1.2 jandberg
346 1.2 jandberg #ifdef GRF_AGA
347 1.2 jandberg extern int aga_enable;
348 1.2 jandberg #else
349 1.2 jandberg static int aga_enable = 0;
350 1.2 jandberg #endif
351 1.2 jandberg
352 1.2 jandberg /*
353 1.1 is * This gets called at console init to determine the priority of
354 1.1 is * this console device.
355 1.1 is *
356 1.1 is * Of course pointers to this and other functions must present
357 1.1 is * in constab[] in conf.c for this to work.
358 1.1 is */
359 1.1 is void
360 1.3 aymeric amidisplaycc_cnprobe(struct consdev *cd)
361 1.1 is {
362 1.1 is cd->cn_pri = CN_INTERNAL;
363 1.1 is
364 1.3 aymeric /*
365 1.1 is * Yeah, real nice. But if we win the console then the wscons system
366 1.1 is * does the proper initialization.
367 1.1 is */
368 1.1 is cd->cn_dev = NODEV;
369 1.1 is }
370 1.1 is
371 1.1 is /*
372 1.1 is * This gets called if this device is used as the console.
373 1.1 is */
374 1.1 is void
375 1.3 aymeric amidisplaycc_cninit(struct consdev * cd)
376 1.1 is {
377 1.2 jandberg void * cookie;
378 1.2 jandberg long attr;
379 1.2 jandberg int x;
380 1.2 jandberg int y;
381 1.1 is
382 1.1 is /* Yeah, we got the console! */
383 1.1 is
384 1.3 aymeric /*
385 1.1 is * This will do the basic stuff we also need.
386 1.1 is */
387 1.1 is config_console();
388 1.1 is
389 1.3 aymeric /*
390 1.3 aymeric * Call the init function in grfabs.c if we have
391 1.3 aymeric * no grfcc to do it.
392 1.1 is * If grfcc is present it will call grfcc_probe()
393 1.1 is * during config_console() above.
394 1.1 is */
395 1.1 is #if NGRFCC==0
396 1.1 is grfcc_probe();
397 1.1 is #endif
398 1.1 is
399 1.1 is #if NVIEW>0
400 1.1 is viewprobe();
401 1.1 is #endif
402 1.1 is
403 1.3 aymeric /*
404 1.1 is * Set up wscons to handle the details.
405 1.1 is * It will then call us back when it needs something
406 1.1 is * display-specific. It will also set up cn_tab properly,
407 1.1 is * something which we failed to do at amidisplaycc_cnprobe().
408 1.1 is */
409 1.1 is
410 1.2 jandberg /*
411 1.2 jandberg * The alloc_screen knows to allocate the first screen statically.
412 1.2 jandberg */
413 1.1 is amidisplaycc_alloc_screen(NULL, &amidisplaycc_screentab[0].wsdescr,
414 1.1 is &cookie, &x, &y, &attr);
415 1.1 is wsdisplay_cnattach(&amidisplaycc_screentab[0].wsdescr,
416 1.1 is cookie, x, y, attr);
417 1.1 is }
418 1.1 is
419 1.2 jandberg static int
420 1.3 aymeric amidisplaycc_match(struct device *pdp, struct cfdata *cfp, void *auxp)
421 1.1 is {
422 1.1 is char *name = auxp;
423 1.1 is
424 1.2 jandberg if (matchname("amidisplaycc", name) == 0)
425 1.1 is return (0);
426 1.1 is
427 1.1 is /* Allow only one of us now. Not sure about that. */
428 1.1 is if (cfp->cf_unit != 0)
429 1.1 is return (0);
430 1.1 is
431 1.1 is return 1;
432 1.1 is }
433 1.1 is
434 1.2 jandberg /* ARGSUSED */
435 1.2 jandberg static void
436 1.3 aymeric amidisplaycc_attach(struct device *pdp, struct device *dp, void *auxp)
437 1.1 is {
438 1.2 jandberg struct wsemuldisplaydev_attach_args waa;
439 1.2 jandberg struct amidisplaycc_softc * adp;
440 1.2 jandberg
441 1.2 jandberg adp = (struct amidisplaycc_softc*)dp;
442 1.1 is
443 1.3 aymeric /*
444 1.1 is * Attach only at real configuration time. Console init is done at
445 1.1 is * the amidisplaycc_cninit function above.
446 1.3 aymeric */
447 1.2 jandberg if (adp) {
448 1.2 jandberg printf(": Amiga custom chip graphics %s",
449 1.2 jandberg aga_enable ? "(AGA)" : "");
450 1.3 aymeric
451 1.2 jandberg if (amidisplaycc_consolescreen.isconsole) {
452 1.2 jandberg adp->currentscreen = &amidisplaycc_consolescreen;
453 1.2 jandberg printf(" (console)");
454 1.2 jandberg } else
455 1.2 jandberg adp->currentscreen = NULL;
456 1.2 jandberg
457 1.1 is printf("\n");
458 1.1 is
459 1.2 jandberg adp->ison = 1;
460 1.2 jandberg
461 1.3 aymeric /*
462 1.3 aymeric * Mapped screen properties.
463 1.2 jandberg * Would need a way to configure.
464 1.2 jandberg */
465 1.2 jandberg adp->gfxview = NULL;
466 1.2 jandberg adp->gfxon = 0;
467 1.2 jandberg adp->gfxwidth = 640;
468 1.2 jandberg adp->gfxheight = 480;
469 1.2 jandberg
470 1.2 jandberg if (aga_enable)
471 1.2 jandberg adp->gfxdepth = 8;
472 1.2 jandberg else
473 1.2 jandberg adp->gfxdepth = 4;
474 1.2 jandberg
475 1.3 aymeric if (NELEMS(amidisplaycc_screentab) !=
476 1.2 jandberg NELEMS(amidisplaycc_screens))
477 1.2 jandberg panic("invalid screen definitions");
478 1.2 jandberg
479 1.1 is waa.scrdata = &amidisplaycc_screenlist;
480 1.2 jandberg waa.console = amidisplaycc_consolescreen.isconsole;
481 1.1 is waa.accessops = &amidisplaycc_accessops;
482 1.2 jandberg waa.accesscookie = dp;
483 1.2 jandberg config_found(dp, &waa, wsemuldisplaydevprint);
484 1.2 jandberg
485 1.2 jandberg bzero(adp->fonts, sizeof(adp->fonts));
486 1.2 jandberg
487 1.2 jandberg /* Initialize an alternate system for finding fonts. */
488 1.2 jandberg wsfont_init();
489 1.1 is }
490 1.1 is }
491 1.1 is
492 1.1 is
493 1.1 is /*
494 1.1 is * Color, bgcolor and style are packed into one long attribute.
495 1.1 is * These macros are used to create/split the attribute
496 1.1 is */
497 1.1 is
498 1.1 is #define MAKEATTR(fg, bg, mode) (((fg)<<16) | ((bg)<<8) | (mode))
499 1.1 is #define ATTRFG(attr) (((attr)>>16) & 255)
500 1.1 is #define ATTRBG(attr) (((attr)>>8) & 255)
501 1.1 is #define ATTRMO(attr) ((attr) & 255)
502 1.1 is
503 1.3 aymeric /*
504 1.1 is * Called by wscons to draw/clear the cursor.
505 1.1 is * We do this by xorring the block to the screen.
506 1.1 is *
507 1.1 is * This simple implementation will break if the screen is modified
508 1.1 is * under the cursor before clearing it.
509 1.1 is */
510 1.1 is void
511 1.3 aymeric amidisplaycc_cursor(void *screen, int on, int row, int col)
512 1.2 jandberg {
513 1.2 jandberg adccscr_t * scr;
514 1.2 jandberg u_char * dst;
515 1.2 jandberg int i;
516 1.1 is
517 1.1 is scr = screen;
518 1.1 is
519 1.1 is if (row < 0 || col < 0 || row >= scr->nrows || col >= scr->ncols)
520 1.1 is return;
521 1.1 is
522 1.2 jandberg if (!on && scr->cursorrow==-1 && scr->cursorcol==-1)
523 1.2 jandberg return;
524 1.2 jandberg
525 1.2 jandberg if (!on) {
526 1.2 jandberg row = scr->cursorrow;
527 1.2 jandberg col = scr->cursorcol;
528 1.2 jandberg }
529 1.2 jandberg
530 1.2 jandberg dst = scr->planes[0];
531 1.2 jandberg dst += row * scr->rowbytes;
532 1.2 jandberg dst += col;
533 1.2 jandberg
534 1.2 jandberg if (on) {
535 1.2 jandberg scr->cursorrow = row;
536 1.2 jandberg scr->cursorcol = col;
537 1.2 jandberg } else {
538 1.2 jandberg scr->cursorrow = -1;
539 1.2 jandberg scr->cursorcol = -1;
540 1.2 jandberg }
541 1.2 jandberg
542 1.2 jandberg for (i = scr->fontheight ; i > 0 ; i--) {
543 1.2 jandberg *dst ^= 255;
544 1.2 jandberg dst += scr->linebytes;
545 1.1 is }
546 1.1 is }
547 1.1 is
548 1.2 jandberg
549 1.1 is /*
550 1.1 is * This obviously does something important, don't ask me what.
551 1.1 is */
552 1.1 is int
553 1.3 aymeric amidisplaycc_mapchar(void *screen, int ch, unsigned int *chp)
554 1.1 is {
555 1.1 is if (ch > 0 && ch < 256) {
556 1.1 is *chp = ch;
557 1.1 is return (5);
558 1.1 is }
559 1.1 is *chp = ' ';
560 1.1 is return (0);
561 1.1 is }
562 1.1 is
563 1.3 aymeric /*
564 1.3 aymeric * Write a character to screen with color / bgcolor / hilite(bold) /
565 1.2 jandberg * underline / reverse.
566 1.1 is * Surely could be made faster but I'm not sure if its worth the
567 1.1 is * effort as scrolling is at least a magnitude slower.
568 1.1 is */
569 1.1 is void
570 1.3 aymeric amidisplaycc_putchar(void *screen, int row, int col, u_int ch, long attr)
571 1.2 jandberg {
572 1.2 jandberg adccscr_t * scr;
573 1.2 jandberg u_char * dst;
574 1.2 jandberg u_char * font;
575 1.2 jandberg
576 1.2 jandberg int fontheight;
577 1.2 jandberg u_int8_t * fontreal;
578 1.2 jandberg int fontlow;
579 1.2 jandberg int fonthigh;
580 1.2 jandberg
581 1.2 jandberg int bmapoffset;
582 1.2 jandberg int linebytes;
583 1.2 jandberg int underline;
584 1.2 jandberg int fgcolor;
585 1.2 jandberg int bgcolor;
586 1.2 jandberg int plane;
587 1.2 jandberg int depth;
588 1.2 jandberg int mode;
589 1.2 jandberg int bold;
590 1.2 jandberg u_char f;
591 1.2 jandberg int j;
592 1.1 is
593 1.1 is scr = screen;
594 1.1 is
595 1.1 is if (row < 0 || col < 0 || row >= scr->nrows || col >= scr->ncols)
596 1.1 is return;
597 1.1 is
598 1.1 is /* Extract the colors from the attribute */
599 1.1 is fgcolor = ATTRFG(attr);
600 1.1 is bgcolor = ATTRBG(attr);
601 1.2 jandberg mode = ATTRMO(attr);
602 1.1 is
603 1.1 is /* Translate to screen colors */
604 1.1 is fgcolor = scr->colormap[fgcolor];
605 1.1 is bgcolor = scr->colormap[bgcolor];
606 1.1 is
607 1.2 jandberg if (mode & WSATTR_REVERSE) {
608 1.1 is j = fgcolor;
609 1.1 is fgcolor = bgcolor;
610 1.1 is bgcolor = j;
611 1.1 is }
612 1.1 is
613 1.2 jandberg bold = (mode & WSATTR_HILIT) > 0;
614 1.2 jandberg underline = (mode & WSATTR_UNDERLINE) > 0;
615 1.1 is
616 1.2 jandberg /* If we have loaded a font use it otherwise the builtin font */
617 1.2 jandberg if (scr->font) {
618 1.2 jandberg fontreal = scr->font->data;
619 1.2 jandberg fontlow = scr->font->firstchar;
620 1.2 jandberg fonthigh = fontlow + scr->font->numchars - 1;
621 1.2 jandberg } else {
622 1.2 jandberg fontreal = kernel_font_8x8;
623 1.2 jandberg fontlow = kernel_font_lo_8x8;
624 1.2 jandberg fonthigh = kernel_font_hi_8x8;
625 1.2 jandberg }
626 1.1 is
627 1.2 jandberg fontheight = scr->fontheight;
628 1.2 jandberg depth = scr->depth;
629 1.2 jandberg linebytes = scr->linebytes;
630 1.1 is
631 1.2 jandberg if (ch < fontlow || ch > fonthigh)
632 1.2 jandberg ch = fontlow;
633 1.1 is
634 1.2 jandberg /* Find the location where the wanted char is in the font data */
635 1.2 jandberg fontreal += scr->fontheight * (ch - fontlow);
636 1.1 is
637 1.2 jandberg bmapoffset = row * scr->rowbytes + col;
638 1.1 is
639 1.1 is scr->rowmasks[row] |= fgcolor | bgcolor;
640 1.1 is
641 1.1 is for (plane = 0 ; plane < depth ; plane++) {
642 1.3 aymeric dst = scr->planes[plane] + bmapoffset;
643 1.3 aymeric
644 1.1 is if (fgcolor & 1) {
645 1.1 is if (bgcolor & 1) {
646 1.1 is /* fg=on bg=on (fill) */
647 1.1 is
648 1.2 jandberg for (j = 0 ; j < fontheight ; j++) {
649 1.1 is *dst = 255;
650 1.2 jandberg dst += linebytes;
651 1.1 is }
652 1.1 is } else {
653 1.1 is /* fg=on bg=off (normal) */
654 1.3 aymeric
655 1.2 jandberg font = fontreal;
656 1.2 jandberg for (j = 0 ; j < fontheight ; j++) {
657 1.1 is f = *(font++);
658 1.2 jandberg f |= f >> bold;
659 1.1 is *dst = f;
660 1.2 jandberg dst += linebytes;
661 1.1 is }
662 1.1 is
663 1.1 is if (underline)
664 1.2 jandberg *(dst - linebytes) = 255;
665 1.1 is }
666 1.1 is } else {
667 1.1 is if (bgcolor & 1) {
668 1.1 is /* fg=off bg=on (inverted) */
669 1.3 aymeric
670 1.2 jandberg font = fontreal;
671 1.2 jandberg for (j = 0 ; j < fontheight ; j++) {
672 1.1 is f = *(font++);
673 1.2 jandberg f |= f >> bold;
674 1.1 is *dst = ~f;
675 1.2 jandberg dst += linebytes;
676 1.1 is }
677 1.1 is
678 1.3 aymeric if (underline)
679 1.2 jandberg *(dst - linebytes) = 0;
680 1.3 aymeric } else {
681 1.1 is /* fg=off bg=off (clear) */
682 1.1 is
683 1.2 jandberg for (j = 0 ; j < fontheight ; j++) {
684 1.1 is *dst = 0;
685 1.2 jandberg dst += linebytes;
686 1.1 is }
687 1.1 is }
688 1.1 is }
689 1.1 is fgcolor >>= 1;
690 1.1 is bgcolor >>= 1;
691 1.1 is }
692 1.1 is }
693 1.1 is
694 1.3 aymeric /*
695 1.2 jandberg * Copy characters on a row to another position on the same row.
696 1.2 jandberg */
697 1.1 is
698 1.1 is void
699 1.3 aymeric amidisplaycc_copycols(void *screen, int row, int srccol, int dstcol, int ncols)
700 1.2 jandberg {
701 1.2 jandberg adccscr_t * scr;
702 1.2 jandberg u_char * src;
703 1.2 jandberg u_char * dst;
704 1.2 jandberg
705 1.2 jandberg int bmapoffset;
706 1.2 jandberg int linebytes;
707 1.2 jandberg int depth;
708 1.2 jandberg int plane;
709 1.2 jandberg int i;
710 1.2 jandberg int j;
711 1.1 is
712 1.1 is scr = screen;
713 1.1 is
714 1.3 aymeric if (srccol < 0 || srccol + ncols > scr->ncols ||
715 1.1 is dstcol < 0 || dstcol + ncols > scr->ncols ||
716 1.1 is row < 0 || row >= scr->nrows)
717 1.1 is return;
718 1.1 is
719 1.2 jandberg depth = scr->depth;
720 1.2 jandberg linebytes = scr->linebytes;
721 1.2 jandberg bmapoffset = row * scr->rowbytes;
722 1.1 is
723 1.1 is for (plane = 0 ; plane < depth ; plane++) {
724 1.2 jandberg src = scr->planes[plane] + bmapoffset;
725 1.1 is
726 1.1 is for (j = 0 ; j < scr->fontheight ; j++) {
727 1.2 jandberg dst = src;
728 1.1 is
729 1.1 is if (srccol < dstcol) {
730 1.1 is
731 1.1 is for (i = ncols - 1 ; i >= 0 ; i--)
732 1.2 jandberg dst[dstcol + i] = src[srccol + i];
733 1.1 is
734 1.1 is } else {
735 1.1 is
736 1.1 is for (i = 0 ; i < ncols ; i++)
737 1.2 jandberg dst[dstcol + i] = src[srccol + i];
738 1.1 is
739 1.1 is }
740 1.2 jandberg src += linebytes;
741 1.1 is }
742 1.1 is }
743 1.1 is }
744 1.1 is
745 1.2 jandberg /*
746 1.2 jandberg * Erase part of a row.
747 1.2 jandberg */
748 1.2 jandberg
749 1.3 aymeric void
750 1.3 aymeric amidisplaycc_erasecols(void *screen, int row, int startcol, int ncols,
751 1.3 aymeric long attr)
752 1.2 jandberg {
753 1.2 jandberg adccscr_t * scr;
754 1.2 jandberg u_char * dst;
755 1.2 jandberg
756 1.2 jandberg int bmapoffset;
757 1.2 jandberg int linebytes;
758 1.2 jandberg int bgcolor;
759 1.2 jandberg int depth;
760 1.2 jandberg int plane;
761 1.2 jandberg int fill;
762 1.2 jandberg int j;
763 1.1 is
764 1.1 is scr = screen;
765 1.1 is
766 1.1 is if (row < 0 || row >= scr->nrows ||
767 1.1 is startcol < 0 || startcol + ncols > scr->ncols)
768 1.1 is return;
769 1.1 is
770 1.2 jandberg depth = scr->depth;
771 1.2 jandberg linebytes = scr->linebytes;
772 1.2 jandberg bmapoffset = row * scr->rowbytes + startcol;
773 1.1 is
774 1.2 jandberg /* Erase will be done using the set background color. */
775 1.1 is bgcolor = ATTRBG(attr);
776 1.1 is bgcolor = scr->colormap[bgcolor];
777 1.1 is
778 1.1 is for(plane = 0 ; plane < depth ; plane++) {
779 1.1 is
780 1.1 is fill = (bgcolor & 1) ? 255 : 0;
781 1.1 is
782 1.2 jandberg dst = scr->planes[plane] + bmapoffset;
783 1.2 jandberg
784 1.2 jandberg for (j = 0 ; j < scr->fontheight ; j++) {
785 1.2 jandberg memset(dst, fill, ncols);
786 1.2 jandberg dst += linebytes;
787 1.1 is }
788 1.1 is }
789 1.1 is }
790 1.1 is
791 1.2 jandberg /*
792 1.2 jandberg * Copy a number of rows to another location on the screen.
793 1.2 jandberg * Combined with eraserows it can be used to perform operation
794 1.2 jandberg * also known as 'scrolling'.
795 1.2 jandberg */
796 1.2 jandberg
797 1.1 is void
798 1.3 aymeric amidisplaycc_copyrows(void *screen, int srcrow, int dstrow, int nrows)
799 1.2 jandberg {
800 1.2 jandberg adccscr_t * scr;
801 1.2 jandberg u_char * src;
802 1.2 jandberg u_char * dst;
803 1.2 jandberg
804 1.2 jandberg int srcbmapoffset;
805 1.2 jandberg int dstbmapoffset;
806 1.2 jandberg int widthbytes;
807 1.2 jandberg int fontheight;
808 1.2 jandberg int linebytes;
809 1.2 jandberg u_int copysize;
810 1.2 jandberg int rowdelta;
811 1.2 jandberg int rowbytes;
812 1.2 jandberg int srcmask;
813 1.2 jandberg int dstmask;
814 1.2 jandberg int bmdelta;
815 1.2 jandberg int depth;
816 1.2 jandberg int plane;
817 1.2 jandberg int i;
818 1.2 jandberg int j;
819 1.1 is
820 1.1 is scr = screen;
821 1.1 is
822 1.1 is if (srcrow < 0 || srcrow + nrows > scr->nrows ||
823 1.1 is dstrow < 0 || dstrow + nrows > scr->nrows)
824 1.1 is return;
825 1.1 is
826 1.2 jandberg depth = scr->depth;
827 1.1 is
828 1.2 jandberg widthbytes = scr->widthbytes;
829 1.2 jandberg rowbytes = scr->rowbytes;
830 1.2 jandberg linebytes = scr->linebytes;
831 1.2 jandberg fontheight = scr->fontheight;
832 1.3 aymeric
833 1.2 jandberg srcbmapoffset = rowbytes * srcrow;
834 1.2 jandberg dstbmapoffset = rowbytes * dstrow;
835 1.1 is
836 1.1 is if (srcrow < dstrow) {
837 1.1 is /* Move data downwards, need to copy from down to up */
838 1.2 jandberg bmdelta = -rowbytes;
839 1.1 is rowdelta = -1;
840 1.1 is
841 1.2 jandberg srcbmapoffset += rowbytes * (nrows - 1);
842 1.1 is srcrow += nrows - 1;
843 1.1 is
844 1.2 jandberg dstbmapoffset += rowbytes * (nrows - 1);
845 1.1 is dstrow += nrows - 1;
846 1.1 is } else {
847 1.1 is /* Move data upwards, copy up to down */
848 1.2 jandberg bmdelta = rowbytes;
849 1.1 is rowdelta = 1;
850 1.1 is }
851 1.1 is
852 1.2 jandberg if (widthbytes == linebytes)
853 1.2 jandberg copysize = rowbytes;
854 1.1 is else
855 1.1 is copysize = 0;
856 1.1 is
857 1.2 jandberg for (j = 0 ; j < nrows ; j++) {
858 1.1 is /* Need to copy only planes that have data on src or dst */
859 1.1 is srcmask = scr->rowmasks[srcrow];
860 1.1 is dstmask = scr->rowmasks[dstrow];
861 1.1 is scr->rowmasks[dstrow] = srcmask;
862 1.1 is
863 1.1 is for (plane = 0 ; plane < depth ; plane++) {
864 1.1 is
865 1.1 is if (srcmask & 1) {
866 1.3 aymeric /*
867 1.3 aymeric * Source row has data on this
868 1.3 aymeric * plane, copy it.
869 1.1 is */
870 1.1 is
871 1.2 jandberg src = scr->planes[plane] + srcbmapoffset;
872 1.2 jandberg dst = scr->planes[plane] + dstbmapoffset;
873 1.1 is
874 1.1 is if (copysize > 0) {
875 1.1 is
876 1.2 jandberg memcpy(dst, src, copysize);
877 1.1 is
878 1.1 is } else {
879 1.1 is
880 1.3 aymeric /*
881 1.3 aymeric * Data not continuous,
882 1.3 aymeric * must do in pieces
883 1.1 is */
884 1.2 jandberg for (i=0 ; i < fontheight ; i++) {
885 1.2 jandberg memcpy(dst, src, widthbytes);
886 1.1 is
887 1.2 jandberg src += linebytes;
888 1.2 jandberg dst += linebytes;
889 1.1 is }
890 1.1 is }
891 1.1 is } else if (dstmask & 1) {
892 1.3 aymeric /*
893 1.1 is * Source plane is empty, but dest is not.
894 1.1 is * so all we need to is clear it.
895 1.1 is */
896 1.1 is
897 1.2 jandberg dst = scr->planes[plane] + dstbmapoffset;
898 1.1 is
899 1.1 is if (copysize > 0) {
900 1.1 is /* Do it all */
901 1.1 is bzero(dst, copysize);
902 1.1 is } else {
903 1.2 jandberg for (i = 0 ; i < fontheight ; i++) {
904 1.2 jandberg bzero(dst, widthbytes);
905 1.2 jandberg dst += linebytes;
906 1.1 is }
907 1.1 is }
908 1.1 is }
909 1.1 is
910 1.1 is srcmask >>= 1;
911 1.1 is dstmask >>= 1;
912 1.1 is }
913 1.1 is srcbmapoffset += bmdelta;
914 1.1 is dstbmapoffset += bmdelta;
915 1.1 is
916 1.1 is srcrow += rowdelta;
917 1.1 is dstrow += rowdelta;
918 1.1 is }
919 1.1 is }
920 1.1 is
921 1.2 jandberg /*
922 1.2 jandberg * Erase some rows.
923 1.2 jandberg */
924 1.2 jandberg
925 1.1 is void
926 1.3 aymeric amidisplaycc_eraserows(void *screen, int row, int nrows, long attr)
927 1.2 jandberg {
928 1.2 jandberg adccscr_t * scr;
929 1.2 jandberg u_char * dst;
930 1.2 jandberg
931 1.2 jandberg int bmapoffset;
932 1.2 jandberg int fillsize;
933 1.2 jandberg int bgcolor;
934 1.2 jandberg int depth;
935 1.2 jandberg int plane;
936 1.2 jandberg int fill;
937 1.2 jandberg int j;
938 1.2 jandberg
939 1.2 jandberg int widthbytes;
940 1.2 jandberg int linebytes;
941 1.2 jandberg int rowbytes;
942 1.2 jandberg
943 1.1 is
944 1.1 is scr = screen;
945 1.1 is
946 1.1 is if (row < 0 || row + nrows > scr->nrows)
947 1.1 is return;
948 1.1 is
949 1.2 jandberg depth = scr->depth;
950 1.2 jandberg widthbytes = scr->widthbytes;
951 1.2 jandberg linebytes = scr->linebytes;
952 1.2 jandberg rowbytes = scr->rowbytes;
953 1.2 jandberg
954 1.2 jandberg bmapoffset = row * rowbytes;
955 1.1 is
956 1.2 jandberg if (widthbytes == linebytes)
957 1.2 jandberg fillsize = rowbytes * nrows;
958 1.1 is else
959 1.1 is fillsize = 0;
960 1.1 is
961 1.1 is bgcolor = ATTRBG(attr);
962 1.1 is bgcolor = scr->colormap[bgcolor];
963 1.1 is
964 1.1 is for (j = 0 ; j < nrows ; j++)
965 1.1 is scr->rowmasks[row+j] = bgcolor;
966 1.1 is
967 1.1 is for (plane = 0 ; plane < depth ; plane++) {
968 1.2 jandberg dst = scr->planes[plane] + bmapoffset;
969 1.3 aymeric fill = (bgcolor & 1) ? 255 : 0;
970 1.1 is
971 1.1 is if (fillsize > 0) {
972 1.1 is /* If the rows are continuous, write them all. */
973 1.1 is memset(dst, fill, fillsize);
974 1.1 is } else {
975 1.1 is for (j = 0 ; j < scr->fontheight * nrows ; j++) {
976 1.2 jandberg memset(dst, fill, widthbytes);
977 1.2 jandberg dst += linebytes;
978 1.1 is }
979 1.1 is }
980 1.1 is bgcolor >>= 1;
981 1.1 is }
982 1.1 is }
983 1.1 is
984 1.2 jandberg
985 1.2 jandberg /*
986 1.2 jandberg * Compose an attribute value from foreground color,
987 1.2 jandberg * background color, and flags.
988 1.2 jandberg */
989 1.1 is int
990 1.3 aymeric amidisplaycc_alloc_attr(void *screen, int fg, int bg, int flags, long *attrp)
991 1.2 jandberg {
992 1.2 jandberg adccscr_t * scr;
993 1.2 jandberg int maxcolor;
994 1.2 jandberg int newfg;
995 1.2 jandberg int newbg;
996 1.1 is
997 1.1 is scr = screen;
998 1.1 is maxcolor = (1 << scr->view->bitmap->depth) - 1;
999 1.1 is
1000 1.1 is /* Ensure the colors are displayable. */
1001 1.1 is newfg = fg & maxcolor;
1002 1.1 is newbg = bg & maxcolor;
1003 1.1 is
1004 1.1 is #ifdef ADJUSTCOLORS
1005 1.3 aymeric /*
1006 1.1 is * Hack for low-color screens, if background color is nonzero
1007 1.1 is * but would be displayed as one, adjust it.
1008 1.1 is */
1009 1.1 is if (bg > 0 && newbg == 0)
1010 1.1 is newbg = maxcolor;
1011 1.1 is
1012 1.3 aymeric /*
1013 1.1 is * If foreground and background colors are different but would
1014 1.1 is * display the same fix them by modifying the foreground.
1015 1.1 is */
1016 1.1 is if (fg != bg && newfg == newbg) {
1017 1.1 is if (newbg > 0)
1018 1.1 is newfg = 0;
1019 1.1 is else
1020 1.1 is newfg = maxcolor;
1021 1.1 is }
1022 1.1 is #endif
1023 1.1 is *attrp = MAKEATTR(newfg, newbg, flags);
1024 1.1 is
1025 1.1 is return (0);
1026 1.1 is }
1027 1.1 is
1028 1.1 is int
1029 1.3 aymeric amidisplaycc_ioctl(void *dp, u_long cmd, caddr_t data, int flag, struct proc *p)
1030 1.2 jandberg {
1031 1.2 jandberg struct amidisplaycc_softc *adp;
1032 1.2 jandberg
1033 1.2 jandberg adp = dp;
1034 1.2 jandberg
1035 1.2 jandberg if (adp == NULL) {
1036 1.2 jandberg printf("amidisplaycc_ioctl: adp==NULL\n");
1037 1.2 jandberg return (EINVAL);
1038 1.2 jandberg }
1039 1.2 jandberg
1040 1.2 jandberg #define UINTDATA (*(u_int*)data)
1041 1.2 jandberg #define INTDATA (*(int*)data)
1042 1.2 jandberg #define FBINFO (*(struct wsdisplay_fbinfo*)data)
1043 1.2 jandberg
1044 1.1 is switch (cmd)
1045 1.1 is {
1046 1.1 is case WSDISPLAYIO_GTYPE:
1047 1.2 jandberg UINTDATA = WSDISPLAY_TYPE_AMIGACC;
1048 1.2 jandberg return (0);
1049 1.2 jandberg
1050 1.2 jandberg case WSDISPLAYIO_SVIDEO:
1051 1.2 jandberg dprintf("amidisplaycc: WSDISPLAYIO_SVIDEO %s\n",
1052 1.2 jandberg UINTDATA ? "On" : "Off");
1053 1.2 jandberg
1054 1.2 jandberg return (amidisplaycc_setvideo(adp, UINTDATA));
1055 1.2 jandberg
1056 1.2 jandberg case WSDISPLAYIO_GVIDEO:
1057 1.2 jandberg dprintf("amidisplaycc: WSDISPLAYIO_GVIDEO\n");
1058 1.3 aymeric UINTDATA = adp->ison ?
1059 1.2 jandberg WSDISPLAYIO_VIDEO_ON : WSDISPLAYIO_VIDEO_OFF;
1060 1.3 aymeric
1061 1.2 jandberg return (0);
1062 1.2 jandberg
1063 1.2 jandberg case WSDISPLAYIO_SMODE:
1064 1.2 jandberg if (INTDATA == WSDISPLAYIO_MODE_EMUL)
1065 1.2 jandberg return amidisplaycc_gfxscreen(adp, 0);
1066 1.2 jandberg if (INTDATA == WSDISPLAYIO_MODE_MAPPED)
1067 1.2 jandberg return amidisplaycc_gfxscreen(adp, 1);
1068 1.2 jandberg return (-1);
1069 1.2 jandberg
1070 1.2 jandberg case WSDISPLAYIO_GINFO:
1071 1.2 jandberg FBINFO.width = adp->gfxwidth;
1072 1.2 jandberg FBINFO.height = adp->gfxheight;
1073 1.2 jandberg FBINFO.depth = adp->gfxdepth;
1074 1.2 jandberg FBINFO.cmsize = 1 << FBINFO.depth;
1075 1.1 is return (0);
1076 1.2 jandberg
1077 1.2 jandberg case WSDISPLAYIO_PUTCMAP:
1078 1.2 jandberg case WSDISPLAYIO_GETCMAP:
1079 1.2 jandberg return (amidisplaycc_cmapioctl(adp->gfxview,
1080 1.2 jandberg cmd,
1081 1.2 jandberg (struct wsdisplay_cmap*)data));
1082 1.1 is }
1083 1.1 is
1084 1.2 jandberg dprintf("amidisplaycc: unknown ioctl %lx (grp:'%c' num:%d)\n",
1085 1.2 jandberg (long)cmd,
1086 1.2 jandberg (char)((cmd&0xff00)>>8),
1087 1.2 jandberg (int)(cmd&0xff));
1088 1.1 is
1089 1.1 is return (-1);
1090 1.2 jandberg
1091 1.2 jandberg #undef UINTDATA
1092 1.2 jandberg #undef INTDATA
1093 1.2 jandberg #undef FBINFO
1094 1.1 is }
1095 1.1 is
1096 1.2 jandberg
1097 1.2 jandberg /*
1098 1.2 jandberg * Switch to either emulation (text) or mapped (graphics) mode
1099 1.2 jandberg * We keep an extra screen for mapped mode so it does not
1100 1.2 jandberg * interfere with emulation screens.
1101 1.2 jandberg *
1102 1.2 jandberg * Once the extra screen is created, it never goes away.
1103 1.2 jandberg */
1104 1.2 jandberg
1105 1.2 jandberg static int
1106 1.3 aymeric amidisplaycc_gfxscreen(struct amidisplaycc_softc *adp, int on)
1107 1.2 jandberg {
1108 1.2 jandberg dimen_t dimension;
1109 1.2 jandberg
1110 1.3 aymeric dprintf("amidisplaycc: switching to %s mode.\n",
1111 1.2 jandberg on ? "mapped" : "emul");
1112 1.2 jandberg
1113 1.2 jandberg /* Current mode same as requested mode? */
1114 1.2 jandberg if ( (on > 0) == (adp->gfxon > 0) )
1115 1.2 jandberg return (0);
1116 1.2 jandberg
1117 1.2 jandberg if (!on) {
1118 1.3 aymeric /*
1119 1.2 jandberg * Switch away from mapped mode. If there is
1120 1.2 jandberg * a emulation screen, switch to it, otherwise
1121 1.2 jandberg * just try to hide the mapped screen.
1122 1.2 jandberg */
1123 1.2 jandberg adp->gfxon = 0;
1124 1.2 jandberg if (adp->currentscreen)
1125 1.2 jandberg grf_display_view(adp->currentscreen->view);
1126 1.2 jandberg else if (adp->gfxview)
1127 1.2 jandberg grf_remove_view(adp->gfxview);
1128 1.2 jandberg
1129 1.2 jandberg return (0);
1130 1.2 jandberg }
1131 1.3 aymeric
1132 1.2 jandberg /* switch to mapped mode then */
1133 1.2 jandberg
1134 1.2 jandberg if (adp->gfxview == NULL) {
1135 1.2 jandberg /* First time here, create the screen */
1136 1.2 jandberg
1137 1.2 jandberg dimension.width = adp->gfxwidth;
1138 1.2 jandberg dimension.height = adp->gfxheight;
1139 1.2 jandberg
1140 1.3 aymeric dprintf("amidisplaycc: preparing mapped screen %dx%dx%d\n",
1141 1.2 jandberg dimension.width,
1142 1.2 jandberg dimension.height,
1143 1.2 jandberg adp->gfxdepth);
1144 1.2 jandberg
1145 1.3 aymeric adp->gfxview = grf_alloc_view(NULL,
1146 1.2 jandberg &dimension,
1147 1.2 jandberg adp->gfxdepth);
1148 1.2 jandberg }
1149 1.2 jandberg
1150 1.2 jandberg if (adp->gfxview) {
1151 1.2 jandberg adp->gfxon = 1;
1152 1.2 jandberg
1153 1.2 jandberg grf_display_view(adp->gfxview);
1154 1.2 jandberg } else {
1155 1.2 jandberg printf("amidisplaycc: failed to make mapped screen\n");
1156 1.2 jandberg return (ENOMEM);
1157 1.2 jandberg }
1158 1.2 jandberg return (0);
1159 1.2 jandberg }
1160 1.2 jandberg
1161 1.2 jandberg /*
1162 1.2 jandberg * Map the graphics screen. It must have been created before
1163 1.2 jandberg * by switching to mapped mode by using an ioctl.
1164 1.2 jandberg */
1165 1.1 is paddr_t
1166 1.3 aymeric amidisplaycc_mmap(void *dp, off_t off, int prot)
1167 1.2 jandberg {
1168 1.2 jandberg struct amidisplaycc_softc * adp;
1169 1.2 jandberg bmap_t * bm;
1170 1.2 jandberg paddr_t rv;
1171 1.2 jandberg
1172 1.2 jandberg adp = (struct amidisplaycc_softc*)dp;
1173 1.2 jandberg
1174 1.2 jandberg /* Check we are in mapped mode */
1175 1.2 jandberg if (adp->gfxon == 0 || adp->gfxview == NULL) {
1176 1.2 jandberg dprintf("amidisplaycc_mmap: Not in mapped mode\n");
1177 1.2 jandberg return (paddr_t)(-1);
1178 1.2 jandberg }
1179 1.2 jandberg
1180 1.2 jandberg /*
1181 1.2 jandberg * As we all know by now, we are mapping our special
1182 1.2 jandberg * screen here so our pretty text consoles are left
1183 1.2 jandberg * untouched.
1184 1.2 jandberg */
1185 1.2 jandberg
1186 1.2 jandberg bm = adp->gfxview->bitmap;
1187 1.2 jandberg
1188 1.2 jandberg /* Check that the offset is valid */
1189 1.2 jandberg if (off < 0 || off >= bm->depth * bm->bytes_per_row * bm->rows) {
1190 1.2 jandberg dprintf("amidisplaycc_mmap: Offset out of range\n");
1191 1.2 jandberg return (paddr_t)(-1);
1192 1.2 jandberg }
1193 1.2 jandberg
1194 1.2 jandberg rv = (paddr_t)bm->hardware_address;
1195 1.2 jandberg rv += off;
1196 1.2 jandberg
1197 1.2 jandberg return (rv >> PGSHIFT);
1198 1.1 is }
1199 1.1 is
1200 1.2 jandberg
1201 1.2 jandberg /*
1202 1.2 jandberg * Create a new screen.
1203 1.2 jandberg * NULL dp signifies console and then memory is allocated statically
1204 1.2 jandberg * and the screen is automatically displayed.
1205 1.2 jandberg *
1206 1.2 jandberg * A font with suitable size is searched and if not found
1207 1.2 jandberg * the builtin 8x8 font is used.
1208 1.2 jandberg *
1209 1.2 jandberg * There are separate default palettes for 2, 4 and 8+ color
1210 1.2 jandberg * screens.
1211 1.2 jandberg */
1212 1.2 jandberg
1213 1.1 is int
1214 1.3 aymeric amidisplaycc_alloc_screen(void *dp, const struct wsscreen_descr *screenp,
1215 1.3 aymeric void **cookiep, int *curxp, int *curyp,
1216 1.3 aymeric long *defattrp)
1217 1.2 jandberg {
1218 1.2 jandberg const struct amidisplaycc_screen_descr * adccscreenp;
1219 1.2 jandberg struct amidisplaycc_screen * scr;
1220 1.2 jandberg struct amidisplaycc_softc * adp;
1221 1.2 jandberg view_t * view;
1222 1.2 jandberg
1223 1.2 jandberg dimen_t dimension;
1224 1.2 jandberg int fontheight;
1225 1.2 jandberg int fontwidth;
1226 1.2 jandberg int maxcolor;
1227 1.2 jandberg int depth;
1228 1.2 jandberg int i;
1229 1.2 jandberg int j;
1230 1.1 is
1231 1.2 jandberg adccscreenp = (const struct amidisplaycc_screen_descr *)screenp;
1232 1.1 is depth = adccscreenp->depth;
1233 1.1 is
1234 1.2 jandberg adp = dp;
1235 1.2 jandberg
1236 1.1 is maxcolor = (1 << depth) - 1;
1237 1.1 is
1238 1.1 is /* Sanity checks because of fixed buffers */
1239 1.1 is if (depth > MAXDEPTH || maxcolor >= MAXCOLORS)
1240 1.1 is return (ENOMEM);
1241 1.1 is if (screenp->nrows > MAXROWS)
1242 1.1 is return (ENOMEM);
1243 1.1 is
1244 1.2 jandberg fontwidth = screenp->fontwidth;
1245 1.2 jandberg fontheight = screenp->fontheight;
1246 1.2 jandberg
1247 1.2 jandberg if (fontwidth != 8) {
1248 1.2 jandberg dprintf("amidisplaycc_alloc_screen: fontwidth %d invalid.\n",
1249 1.2 jandberg fontwidth);
1250 1.2 jandberg return (EINVAL);
1251 1.2 jandberg }
1252 1.2 jandberg
1253 1.2 jandberg /*
1254 1.2 jandberg * The screen size is defined in characters.
1255 1.2 jandberg * Calculate the pixel size using the font size.
1256 1.2 jandberg */
1257 1.2 jandberg
1258 1.2 jandberg dimension.width = screenp->ncols * fontwidth;
1259 1.2 jandberg dimension.height = screenp->nrows * fontheight;
1260 1.1 is
1261 1.1 is view = grf_alloc_view(NULL, &dimension, depth);
1262 1.1 is if (view == NULL)
1263 1.1 is return (ENOMEM);
1264 1.1 is
1265 1.3 aymeric /*
1266 1.1 is * First screen gets the statically allocated console screen.
1267 1.1 is * Others are allocated dynamically.
1268 1.1 is */
1269 1.2 jandberg if (adp == NULL) {
1270 1.1 is scr = &amidisplaycc_consolescreen;
1271 1.2 jandberg if (scr->isconsole)
1272 1.2 jandberg panic("more than one console?");
1273 1.2 jandberg
1274 1.1 is scr->isconsole = 1;
1275 1.1 is } else {
1276 1.1 is scr = malloc(sizeof(adccscr_t), M_DEVBUF, M_WAITOK);
1277 1.1 is bzero(scr, sizeof(adccscr_t));
1278 1.1 is }
1279 1.1 is
1280 1.1 is scr->view = view;
1281 1.1 is
1282 1.1 is scr->ncols = screenp->ncols;
1283 1.1 is scr->nrows = screenp->nrows;
1284 1.1 is
1285 1.2 jandberg /* Copies of most used values */
1286 1.2 jandberg scr->width = dimension.width;
1287 1.2 jandberg scr->height = dimension.height;
1288 1.2 jandberg scr->depth = depth;
1289 1.2 jandberg scr->widthbytes = view->bitmap->bytes_per_row;
1290 1.2 jandberg scr->linebytes = scr->widthbytes + view->bitmap->row_mod;
1291 1.2 jandberg scr->rowbytes = scr->linebytes * fontheight;
1292 1.2 jandberg
1293 1.2 jandberg scr->device = adp;
1294 1.2 jandberg
1295 1.2 jandberg
1296 1.2 jandberg /* --- LOAD FONT --- */
1297 1.2 jandberg
1298 1.2 jandberg /* these need to be initialized befory trying to set font */
1299 1.2 jandberg scr->font = NULL;
1300 1.2 jandberg scr->wsfontcookie = -1;
1301 1.2 jandberg scr->fontwidth = fontwidth;
1302 1.2 jandberg scr->fontheight = fontheight;
1303 1.2 jandberg
1304 1.3 aymeric /*
1305 1.3 aymeric * Note that dont try to load font for the console (adp==NULL)
1306 1.2 jandberg *
1307 1.2 jandberg * Here we dont care which font we get as long as it is the
1308 1.2 jandberg * right size so pass NULL.
1309 1.2 jandberg */
1310 1.2 jandberg if (adp)
1311 1.2 jandberg amidisplaycc_setnamedfont(scr, NULL);
1312 1.2 jandberg
1313 1.3 aymeric /*
1314 1.2 jandberg * If no font found, use the builtin one.
1315 1.2 jandberg * It will look stupid if the wanted size was different.
1316 1.2 jandberg */
1317 1.2 jandberg if (scr->font == NULL) {
1318 1.2 jandberg scr->fontwidth = 8;
1319 1.2 jandberg scr->fontheight = min(8, fontheight);
1320 1.2 jandberg }
1321 1.2 jandberg
1322 1.2 jandberg /* --- LOAD FONT END --- */
1323 1.2 jandberg
1324 1.2 jandberg
1325 1.2 jandberg for (i = 0 ; i < depth ; i++) {
1326 1.2 jandberg scr->planes[i] = view->bitmap->plane[i];
1327 1.2 jandberg }
1328 1.2 jandberg
1329 1.1 is for (i = 0 ; i < MAXROWS ; i++)
1330 1.1 is scr->rowmasks[i] = 0;
1331 1.1 is
1332 1.1 is /* Simple one-to-one mapping for most colors */
1333 1.1 is for (i = 0 ; i < MAXCOLORS ; i++)
1334 1.1 is scr->colormap[i] = i;
1335 1.1 is
1336 1.3 aymeric /*
1337 1.1 is * Arrange the most used pens to quickest colors.
1338 1.1 is * The default color for given depth is (1<<depth)-1.
1339 1.1 is * It is assumed it is used most and it is mapped to
1340 1.1 is * color that can be drawn by writing data to one bitplane
1341 1.1 is * only.
1342 1.1 is * So map colors 3->2, 7->4, 15->8 and so on.
1343 1.1 is */
1344 1.1 is for (i = 2 ; i < MAXCOLORS ; i *= 2) {
1345 1.1 is j = i * 2 - 1;
1346 1.1 is
1347 1.1 is if (j < MAXCOLORS) {
1348 1.1 is scr->colormap[i] = j;
1349 1.1 is scr->colormap[j] = i;
1350 1.1 is }
1351 1.1 is }
1352 1.1 is
1353 1.2 jandberg /*
1354 1.2 jandberg * Set the default colormap.
1355 1.2 jandberg */
1356 1.2 jandberg if (depth == 1)
1357 1.2 jandberg amidisplaycc_setemulcmap(scr, &pal2);
1358 1.2 jandberg else if (depth == 2)
1359 1.2 jandberg amidisplaycc_setemulcmap(scr, &pal4);
1360 1.2 jandberg else
1361 1.2 jandberg amidisplaycc_setemulcmap(scr, &pal8);
1362 1.2 jandberg
1363 1.1 is *cookiep = scr;
1364 1.1 is
1365 1.1 is *curxp = 0;
1366 1.1 is *curyp = 0;
1367 1.1 is amidisplaycc_cursor(scr, 1, *curxp, *curyp);
1368 1.1 is
1369 1.1 is *defattrp = MAKEATTR(maxcolor, 0, 0);
1370 1.1 is
1371 1.1 is /* Show the console automatically */
1372 1.2 jandberg if (adp == NULL)
1373 1.1 is grf_display_view(scr->view);
1374 1.1 is
1375 1.2 jandberg if (adp) {
1376 1.2 jandberg dprintf("amidisplaycc: allocated screen; %dx%dx%d\n",
1377 1.2 jandberg dimension.width,
1378 1.2 jandberg dimension.height,
1379 1.2 jandberg depth);
1380 1.2 jandberg }
1381 1.2 jandberg
1382 1.1 is return (0);
1383 1.1 is }
1384 1.1 is
1385 1.2 jandberg
1386 1.2 jandberg /*
1387 1.2 jandberg * Destroy a screen.
1388 1.2 jandberg */
1389 1.2 jandberg
1390 1.1 is void
1391 1.3 aymeric amidisplaycc_free_screen(void *dp, void *screen)
1392 1.1 is {
1393 1.2 jandberg struct amidisplaycc_screen * scr;
1394 1.2 jandberg struct amidisplaycc_softc * adp;
1395 1.2 jandberg
1396 1.1 is scr = screen;
1397 1.2 jandberg adp = (struct amidisplaycc_softc*)adp;
1398 1.1 is
1399 1.1 is if (scr == NULL)
1400 1.1 is return;
1401 1.1 is
1402 1.2 jandberg /* Free the used font */
1403 1.2 jandberg amidisplaycc_setfont(scr, NULL, -1);
1404 1.2 jandberg
1405 1.2 jandberg if (adp->currentscreen == scr)
1406 1.2 jandberg adp->currentscreen = NULL;
1407 1.2 jandberg
1408 1.1 is if (scr->view)
1409 1.1 is grf_free_view(scr->view);
1410 1.1 is scr->view = NULL;
1411 1.1 is
1412 1.1 is /* Take care not to free the statically allocated console screen */
1413 1.1 is if (scr != &amidisplaycc_consolescreen) {
1414 1.1 is free(scr, M_DEVBUF);
1415 1.1 is }
1416 1.1 is }
1417 1.1 is
1418 1.2 jandberg /*
1419 1.2 jandberg * Switch to another vt. Switch is always made immediately.
1420 1.2 jandberg */
1421 1.2 jandberg
1422 1.2 jandberg /* ARGSUSED2 */
1423 1.1 is int
1424 1.3 aymeric amidisplaycc_show_screen(void *dp, void *screen, int waitok,
1425 1.3 aymeric void (*cb) (void *, int, int), void *cbarg)
1426 1.1 is {
1427 1.1 is adccscr_t *scr;
1428 1.2 jandberg struct amidisplaycc_softc *adp;
1429 1.1 is
1430 1.2 jandberg adp = (struct amidisplaycc_softc*)dp;
1431 1.1 is scr = screen;
1432 1.2 jandberg
1433 1.2 jandberg if (adp == NULL) {
1434 1.2 jandberg dprintf("amidisplaycc_show_screen: adp==NULL\n");
1435 1.2 jandberg return (EINVAL);
1436 1.2 jandberg }
1437 1.2 jandberg if (scr == NULL) {
1438 1.2 jandberg dprintf("amidisplaycc_show_screen: scr==NULL\n");
1439 1.2 jandberg return (EINVAL);
1440 1.2 jandberg }
1441 1.2 jandberg
1442 1.2 jandberg if (adp->gfxon) {
1443 1.2 jandberg dprintf("amidisplaycc: Screen shift while in gfx mode?");
1444 1.2 jandberg adp->gfxon = 0;
1445 1.2 jandberg }
1446 1.2 jandberg
1447 1.2 jandberg adp->currentscreen = scr;
1448 1.2 jandberg adp->ison = 1;
1449 1.2 jandberg
1450 1.1 is grf_display_view(scr->view);
1451 1.2 jandberg
1452 1.1 is return (0);
1453 1.1 is }
1454 1.1 is
1455 1.1 is /*
1456 1.2 jandberg * Internal. Finds the font in our softc that has the desired attributes.
1457 1.2 jandberg * Or, if name is NULL, finds a free location for a new font.
1458 1.2 jandberg * Returns a pointer to font structure in softc or NULL for failure.
1459 1.2 jandberg *
1460 1.2 jandberg * Three possible forms:
1461 1.2 jandberg * findfont(adp, NULL, 0, 0) -- find first empty location
1462 1.2 jandberg * findfont(adp, NULL, x, y) -- find last font with given size
1463 1.2 jandberg * findfont(adp, name, x, y) -- find last font with given name and size
1464 1.2 jandberg *
1465 1.2 jandberg * Note that when finding an empty location first one found is returned,
1466 1.3 aymeric * however when finding an existing font, the last one matching is
1467 1.3 aymeric * returned. This is because fonts cannot be unloaded and the last
1468 1.2 jandberg * font on the list is the one added latest and thus probably preferred.
1469 1.2 jandberg *
1470 1.2 jandberg * Note also that this is the only function which makes assumptions
1471 1.2 jandberg * about the storage location for the fonts.
1472 1.2 jandberg */
1473 1.2 jandberg static struct wsdisplay_font *
1474 1.3 aymeric amidisplaycc_findfont(struct amidisplaycc_softc *adp, const char *name,
1475 1.3 aymeric int width, int height)
1476 1.3 aymeric {
1477 1.2 jandberg struct wsdisplay_font * font;
1478 1.2 jandberg
1479 1.2 jandberg int findempty;
1480 1.2 jandberg int f;
1481 1.2 jandberg
1482 1.2 jandberg if (adp == NULL) {
1483 1.2 jandberg dprintf("amidisplaycc_findfont: NULL adp\n");
1484 1.2 jandberg return NULL;
1485 1.2 jandberg }
1486 1.2 jandberg
1487 1.2 jandberg findempty = (name == NULL) && (width == 0) && (height == 0);
1488 1.2 jandberg
1489 1.2 jandberg font = NULL;
1490 1.2 jandberg
1491 1.2 jandberg for (f = 0 ; f < AMIDISPLAYCC_MAXFONTS ; f++) {
1492 1.2 jandberg
1493 1.2 jandberg if (findempty && adp->fonts[f].name == NULL)
1494 1.2 jandberg return &adp->fonts[f];
1495 1.2 jandberg
1496 1.2 jandberg if (!findempty && name == NULL && adp->fonts[f].name &&
1497 1.2 jandberg adp->fonts[f].fontwidth == width &&
1498 1.2 jandberg adp->fonts[f].fontheight == height)
1499 1.2 jandberg font = &adp->fonts[f];
1500 1.2 jandberg
1501 1.2 jandberg if (name && adp->fonts[f].name &&
1502 1.2 jandberg strcmp(name, adp->fonts[f].name) == 0 &&
1503 1.2 jandberg width == adp->fonts[f].fontwidth &&
1504 1.2 jandberg height == adp->fonts[f].fontheight)
1505 1.2 jandberg font = &adp->fonts[f];
1506 1.2 jandberg }
1507 1.2 jandberg
1508 1.2 jandberg return (font);
1509 1.2 jandberg }
1510 1.2 jandberg
1511 1.2 jandberg
1512 1.2 jandberg /*
1513 1.2 jandberg * Set the font on a screen and free the old one.
1514 1.2 jandberg * Can be called with font of NULL to just free the
1515 1.2 jandberg * old one.
1516 1.2 jandberg * NULL font cannot be accompanied by valid cookie (!= -1)
1517 1.2 jandberg */
1518 1.2 jandberg static void
1519 1.3 aymeric amidisplaycc_setfont(struct amidisplaycc_screen *scr,
1520 1.3 aymeric struct wsdisplay_font *font, int wsfontcookie)
1521 1.2 jandberg {
1522 1.2 jandberg if (scr == NULL)
1523 1.2 jandberg panic("amidisplaycc_setfont: scr==NULL");
1524 1.2 jandberg if (font == NULL && wsfontcookie != -1)
1525 1.2 jandberg panic("amidisplaycc_setfont: no font but eat cookie");
1526 1.2 jandberg if (scr->font == NULL && scr->wsfontcookie != -1)
1527 1.2 jandberg panic("amidisplaycc_setfont: no font but eat old cookie");
1528 1.2 jandberg
1529 1.2 jandberg scr->font = font;
1530 1.2 jandberg
1531 1.2 jandberg if (scr->wsfontcookie != -1)
1532 1.2 jandberg wsfont_unlock(scr->wsfontcookie);
1533 1.2 jandberg
1534 1.2 jandberg scr->wsfontcookie = wsfontcookie;
1535 1.2 jandberg }
1536 1.2 jandberg
1537 1.2 jandberg /*
1538 1.2 jandberg * Try to find the named font and set the screen to use it.
1539 1.2 jandberg * Check both the fonts we have loaded with load_font and
1540 1.2 jandberg * fonts from wsfont system.
1541 1.2 jandberg *
1542 1.2 jandberg * Returns 0 on success.
1543 1.2 jandberg */
1544 1.2 jandberg
1545 1.2 jandberg static int
1546 1.3 aymeric amidisplaycc_setnamedfont(struct amidisplaycc_screen *scr, char *fontname)
1547 1.2 jandberg {
1548 1.2 jandberg struct wsdisplay_font * font;
1549 1.2 jandberg int wsfontcookie;
1550 1.2 jandberg
1551 1.2 jandberg wsfontcookie = -1;
1552 1.2 jandberg
1553 1.2 jandberg if (scr == NULL || scr->device == NULL) {
1554 1.2 jandberg dprintf("amidisplaycc_setnamedfont: invalid\n");
1555 1.2 jandberg return (EINVAL);
1556 1.2 jandberg }
1557 1.2 jandberg
1558 1.2 jandberg /* Try first our dynamically loaded fonts. */
1559 1.3 aymeric font = amidisplaycc_findfont(scr->device,
1560 1.3 aymeric fontname,
1561 1.3 aymeric scr->fontwidth,
1562 1.2 jandberg scr->fontheight);
1563 1.2 jandberg
1564 1.2 jandberg if (font == NULL) {
1565 1.3 aymeric /*
1566 1.2 jandberg * Ok, no dynamically loaded font found.
1567 1.2 jandberg * Try the wsfont system then.
1568 1.2 jandberg */
1569 1.3 aymeric wsfontcookie = wsfont_find(fontname,
1570 1.3 aymeric scr->fontwidth,
1571 1.3 aymeric scr->fontheight,
1572 1.2 jandberg 1);
1573 1.2 jandberg
1574 1.2 jandberg if (wsfontcookie == -1)
1575 1.2 jandberg return (EINVAL);
1576 1.2 jandberg
1577 1.2 jandberg /* So, found a suitable font. Now lock it. */
1578 1.3 aymeric if (wsfont_lock(wsfontcookie,
1579 1.3 aymeric &font,
1580 1.3 aymeric WSDISPLAY_FONTORDER_L2R,
1581 1.2 jandberg WSDISPLAY_FONTORDER_L2R) == -1)
1582 1.2 jandberg return (EINVAL);
1583 1.2 jandberg
1584 1.2 jandberg /* Ok here we have the font successfully. */
1585 1.2 jandberg }
1586 1.2 jandberg
1587 1.2 jandberg amidisplaycc_setfont(scr, font, wsfontcookie);
1588 1.2 jandberg return (0);
1589 1.2 jandberg }
1590 1.2 jandberg
1591 1.2 jandberg /*
1592 1.2 jandberg * Load a font. This is used both to load a font and set it to screen.
1593 1.2 jandberg * The function depends on the parameters.
1594 1.2 jandberg * If the font has no data we must set a previously loaded
1595 1.2 jandberg * font with the same name. If it has data, then just load
1596 1.2 jandberg * the font but don't use it.
1597 1.1 is */
1598 1.1 is int
1599 1.3 aymeric amidisplaycc_load_font(void *dp, void *cookie, struct wsdisplay_font *font)
1600 1.2 jandberg {
1601 1.2 jandberg struct amidisplaycc_softc * adp;
1602 1.2 jandberg struct amidisplaycc_screen * scr;
1603 1.2 jandberg struct wsdisplay_font * myfont;
1604 1.2 jandberg
1605 1.2 jandberg u_int8_t * c;
1606 1.2 jandberg void * olddata;
1607 1.2 jandberg char * name;
1608 1.2 jandberg
1609 1.2 jandberg u_int size;
1610 1.2 jandberg u_int i;
1611 1.2 jandberg
1612 1.2 jandberg
1613 1.2 jandberg adp = dp;
1614 1.2 jandberg scr = cookie;
1615 1.2 jandberg
1616 1.3 aymeric /*
1617 1.2 jandberg * If font has no data it means we have to find the
1618 1.2 jandberg * named font and use it.
1619 1.2 jandberg */
1620 1.2 jandberg if (scr && font && font->name && !font->data)
1621 1.2 jandberg return amidisplaycc_setnamedfont(scr, font->name);
1622 1.2 jandberg
1623 1.2 jandberg
1624 1.2 jandberg /* Pre-load the font it is */
1625 1.2 jandberg
1626 1.2 jandberg if (font->stride != 1) {
1627 1.2 jandberg dprintf("amidisplaycc_load_font: stride %d != 1\n",
1628 1.2 jandberg font->stride);
1629 1.2 jandberg return (-1);
1630 1.2 jandberg }
1631 1.2 jandberg
1632 1.2 jandberg if (font->fontwidth != 8) {
1633 1.2 jandberg dprintf("amidisplaycc_load_font: width %d not supported\n",
1634 1.2 jandberg font->fontwidth);
1635 1.2 jandberg return (-1);
1636 1.2 jandberg }
1637 1.2 jandberg
1638 1.2 jandberg /* Size of the font in bytes... Assuming stride==1 */
1639 1.2 jandberg size = font->fontheight * font->numchars;
1640 1.2 jandberg
1641 1.2 jandberg /* Check if the same font was loaded before */
1642 1.3 aymeric myfont = amidisplaycc_findfont(adp,
1643 1.3 aymeric font->name,
1644 1.3 aymeric font->fontwidth,
1645 1.2 jandberg font->fontheight);
1646 1.2 jandberg
1647 1.2 jandberg olddata = NULL;
1648 1.2 jandberg if (myfont) {
1649 1.2 jandberg /* Old font found, we will replace */
1650 1.2 jandberg
1651 1.2 jandberg if (myfont->name == NULL || myfont->data == NULL)
1652 1.2 jandberg panic("replacing NULL font/data");
1653 1.2 jandberg
1654 1.2 jandberg /*
1655 1.2 jandberg * Store the old data pointer. We'll free it later
1656 1.2 jandberg * when the new one is in place. Reallocation is needed
1657 1.2 jandberg * because the new font may have a different number
1658 1.2 jandberg * of characters in it than the last time it was loaded.
1659 1.2 jandberg */
1660 1.2 jandberg
1661 1.2 jandberg olddata = myfont->data;
1662 1.2 jandberg
1663 1.2 jandberg } else {
1664 1.2 jandberg /* Totally brand new font */
1665 1.2 jandberg
1666 1.2 jandberg /* Try to find empty slot for the font */
1667 1.2 jandberg myfont = amidisplaycc_findfont(adp, NULL, 0, 0);
1668 1.2 jandberg
1669 1.2 jandberg if (myfont == NULL)
1670 1.2 jandberg return (ENOMEM);
1671 1.2 jandberg
1672 1.2 jandberg bzero(myfont, sizeof(struct wsdisplay_font));
1673 1.2 jandberg
1674 1.2 jandberg myfont->fontwidth = font->fontwidth;
1675 1.2 jandberg myfont->fontheight = font->fontheight;
1676 1.2 jandberg myfont->stride = font->stride;
1677 1.2 jandberg
1678 1.2 jandberg name = malloc(strlen(font->name)+1,
1679 1.2 jandberg M_DEVBUF,
1680 1.2 jandberg M_WAITOK);
1681 1.2 jandberg strcpy(name, font->name);
1682 1.2 jandberg myfont->name = name;
1683 1.2 jandberg }
1684 1.2 jandberg myfont->firstchar = font->firstchar;
1685 1.2 jandberg myfont->numchars = font->numchars;
1686 1.2 jandberg
1687 1.2 jandberg myfont->data = malloc(size,
1688 1.3 aymeric M_DEVBUF,
1689 1.2 jandberg M_WAITOK);
1690 1.2 jandberg
1691 1.2 jandberg if (olddata)
1692 1.2 jandberg free(olddata, M_DEVBUF);
1693 1.2 jandberg
1694 1.2 jandberg
1695 1.2 jandberg memcpy(myfont->data, font->data, size);
1696 1.2 jandberg
1697 1.2 jandberg if (font->bitorder == WSDISPLAY_FONTORDER_R2L) {
1698 1.2 jandberg /* Reverse the characters. */
1699 1.2 jandberg c = myfont->data;
1700 1.2 jandberg for (i = 0 ; i < size ; i++) {
1701 1.2 jandberg *c = ((*c & 0x0f) << 4) | ((*c & 0xf0) >> 4);
1702 1.2 jandberg *c = ((*c & 0x33) << 2) | ((*c & 0xcc) >> 2);
1703 1.2 jandberg *c = ((*c & 0x55) << 1) | ((*c & 0xaa) >> 1);
1704 1.2 jandberg
1705 1.2 jandberg c++;
1706 1.2 jandberg }
1707 1.2 jandberg }
1708 1.2 jandberg
1709 1.2 jandberg /* Yeah, we made it */
1710 1.2 jandberg return (0);
1711 1.2 jandberg }
1712 1.2 jandberg
1713 1.2 jandberg /*
1714 1.2 jandberg * Set display on/off.
1715 1.2 jandberg */
1716 1.2 jandberg static int
1717 1.3 aymeric amidisplaycc_setvideo(struct amidisplaycc_softc *adp, int mode)
1718 1.2 jandberg {
1719 1.2 jandberg view_t * view;
1720 1.2 jandberg
1721 1.2 jandberg if (adp == NULL) {
1722 1.2 jandberg dprintf("amidisplaycc_setvideo: adp==NULL\n");
1723 1.2 jandberg return (EINVAL);
1724 1.2 jandberg }
1725 1.2 jandberg if (adp->currentscreen == NULL) {
1726 1.2 jandberg dprintf("amidisplaycc_setvideo: adp->currentscreen==NULL\n");
1727 1.2 jandberg return (EINVAL);
1728 1.2 jandberg }
1729 1.2 jandberg
1730 1.2 jandberg /* select graphics or emulation screen */
1731 1.2 jandberg if (adp->gfxon && adp->gfxview)
1732 1.2 jandberg view = adp->gfxview;
1733 1.2 jandberg else
1734 1.2 jandberg view = adp->currentscreen->view;
1735 1.2 jandberg
1736 1.2 jandberg if (mode) {
1737 1.2 jandberg /* on */
1738 1.2 jandberg
1739 1.2 jandberg grf_display_view(view);
1740 1.2 jandberg dprintf("amidisplaycc: video is now on\n");
1741 1.2 jandberg adp->ison = 1;
1742 1.2 jandberg
1743 1.2 jandberg } else {
1744 1.2 jandberg /* off */
1745 1.2 jandberg
1746 1.2 jandberg grf_remove_view(view);
1747 1.2 jandberg dprintf("amidisplaycc: video is now off\n");
1748 1.2 jandberg adp->ison = 0;
1749 1.2 jandberg }
1750 1.2 jandberg
1751 1.2 jandberg return (0);
1752 1.2 jandberg }
1753 1.2 jandberg
1754 1.2 jandberg /*
1755 1.2 jandberg * Handle the WSDISPLAY_[PUT/GET]CMAP ioctls.
1756 1.2 jandberg * Just handle the copying of data to/from userspace and
1757 1.2 jandberg * let the functions amidisplaycc_setcmap and amidisplaycc_putcmap
1758 1.2 jandberg * do the real work.
1759 1.2 jandberg */
1760 1.2 jandberg
1761 1.2 jandberg static int
1762 1.3 aymeric amidisplaycc_cmapioctl(view_t *view, u_long cmd, struct wsdisplay_cmap *cmap)
1763 1.2 jandberg {
1764 1.2 jandberg struct wsdisplay_cmap tmpcmap;
1765 1.2 jandberg u_char cmred[MAXCOLORS];
1766 1.2 jandberg u_char cmgrn[MAXCOLORS];
1767 1.2 jandberg u_char cmblu[MAXCOLORS];
1768 1.2 jandberg
1769 1.2 jandberg int err;
1770 1.2 jandberg
1771 1.2 jandberg if (cmap->index >= MAXCOLORS ||
1772 1.2 jandberg cmap->count > MAXCOLORS ||
1773 1.2 jandberg cmap->index + cmap->count > MAXCOLORS)
1774 1.2 jandberg return (EINVAL);
1775 1.2 jandberg
1776 1.2 jandberg if (cmap->count == 0)
1777 1.2 jandberg return (0);
1778 1.3 aymeric
1779 1.2 jandberg tmpcmap.index = cmap->index;
1780 1.2 jandberg tmpcmap.count = cmap->count;
1781 1.2 jandberg tmpcmap.red = cmred;
1782 1.2 jandberg tmpcmap.green = cmgrn;
1783 1.2 jandberg tmpcmap.blue = cmblu;
1784 1.2 jandberg
1785 1.2 jandberg if (cmd == WSDISPLAYIO_PUTCMAP) {
1786 1.2 jandberg /* copy the color data to kernel space */
1787 1.2 jandberg
1788 1.2 jandberg err = copyin(cmap->red, cmred, cmap->count);
1789 1.2 jandberg if (err)
1790 1.2 jandberg return (err);
1791 1.2 jandberg
1792 1.2 jandberg err = copyin(cmap->green, cmgrn, cmap->count);
1793 1.2 jandberg if (err)
1794 1.2 jandberg return (err);
1795 1.2 jandberg
1796 1.2 jandberg err = copyin(cmap->blue, cmblu, cmap->count);
1797 1.2 jandberg if (err)
1798 1.2 jandberg return (err);
1799 1.2 jandberg
1800 1.2 jandberg return amidisplaycc_setcmap(view, &tmpcmap);
1801 1.3 aymeric
1802 1.2 jandberg } else if (cmd == WSDISPLAYIO_GETCMAP) {
1803 1.2 jandberg
1804 1.2 jandberg err = amidisplaycc_getcmap(view, &tmpcmap);
1805 1.2 jandberg if (err)
1806 1.2 jandberg return (err);
1807 1.2 jandberg
1808 1.2 jandberg /* copy data to user space */
1809 1.2 jandberg
1810 1.2 jandberg err = copyout(cmred, cmap->red, cmap->count);
1811 1.2 jandberg if (err)
1812 1.2 jandberg return (err);
1813 1.2 jandberg
1814 1.2 jandberg err = copyout(cmgrn, cmap->green, cmap->count);
1815 1.2 jandberg if (err)
1816 1.2 jandberg return (err);
1817 1.2 jandberg
1818 1.2 jandberg err = copyout(cmblu, cmap->blue, cmap->count);
1819 1.2 jandberg if (err)
1820 1.2 jandberg return (err);
1821 1.2 jandberg
1822 1.2 jandberg return (0);
1823 1.3 aymeric
1824 1.2 jandberg } else
1825 1.2 jandberg return (-1);
1826 1.2 jandberg }
1827 1.2 jandberg
1828 1.2 jandberg /*
1829 1.2 jandberg * Set the palette of a emulation screen.
1830 1.2 jandberg * Here we do only color remapping and then call
1831 1.2 jandberg * amidisplaycc_setcmap to do the work.
1832 1.2 jandberg */
1833 1.2 jandberg
1834 1.2 jandberg static int
1835 1.3 aymeric amidisplaycc_setemulcmap(struct amidisplaycc_screen *scr,
1836 1.3 aymeric struct wsdisplay_cmap *cmap)
1837 1.2 jandberg {
1838 1.2 jandberg struct wsdisplay_cmap tmpcmap;
1839 1.2 jandberg
1840 1.2 jandberg u_char red [MAXCOLORS];
1841 1.2 jandberg u_char grn [MAXCOLORS];
1842 1.2 jandberg u_char blu [MAXCOLORS];
1843 1.2 jandberg
1844 1.2 jandberg int rc;
1845 1.2 jandberg int i;
1846 1.2 jandberg
1847 1.2 jandberg /*
1848 1.3 aymeric * Get old palette first.
1849 1.2 jandberg * Because of the color mapping going on in the emulation
1850 1.2 jandberg * screen the color range may not be contiguous in the real
1851 1.2 jandberg * palette.
1852 1.2 jandberg * So get the whole palette, insert the new colors
1853 1.2 jandberg * at the appropriate places and then set the whole
1854 1.2 jandberg * palette back.
1855 1.2 jandberg */
1856 1.2 jandberg
1857 1.2 jandberg tmpcmap.index = 0;
1858 1.2 jandberg tmpcmap.count = 1 << scr->depth;
1859 1.2 jandberg tmpcmap.red = red;
1860 1.2 jandberg tmpcmap.green = grn;
1861 1.2 jandberg tmpcmap.blue = blu;
1862 1.2 jandberg
1863 1.2 jandberg rc = amidisplaycc_getcmap(scr->view, &tmpcmap);
1864 1.2 jandberg if (rc)
1865 1.2 jandberg return (rc);
1866 1.2 jandberg
1867 1.2 jandberg for (i = cmap->index ; i < cmap->index + cmap->count ; i++) {
1868 1.2 jandberg
1869 1.2 jandberg tmpcmap.red [ scr->colormap[ i ] ] = cmap->red [ i ];
1870 1.2 jandberg tmpcmap.green [ scr->colormap[ i ] ] = cmap->green [ i ];
1871 1.2 jandberg tmpcmap.blue [ scr->colormap[ i ] ] = cmap->blue [ i ];
1872 1.2 jandberg }
1873 1.2 jandberg
1874 1.2 jandberg rc = amidisplaycc_setcmap(scr->view, &tmpcmap);
1875 1.2 jandberg if (rc)
1876 1.2 jandberg return (rc);
1877 1.3 aymeric
1878 1.2 jandberg return (0);
1879 1.2 jandberg }
1880 1.2 jandberg
1881 1.2 jandberg
1882 1.2 jandberg /*
1883 1.3 aymeric * Set the colormap for the given screen.
1884 1.2 jandberg */
1885 1.2 jandberg
1886 1.2 jandberg static int
1887 1.3 aymeric amidisplaycc_setcmap(view_t *view, struct wsdisplay_cmap *cmap)
1888 1.2 jandberg {
1889 1.2 jandberg u_long cmentries [MAXCOLORS];
1890 1.2 jandberg
1891 1.2 jandberg int green_div;
1892 1.2 jandberg int blue_div;
1893 1.2 jandberg int grey_div;
1894 1.2 jandberg int red_div;
1895 1.2 jandberg u_int colors;
1896 1.2 jandberg int index;
1897 1.2 jandberg int count;
1898 1.2 jandberg int err;
1899 1.2 jandberg colormap_t cm;
1900 1.2 jandberg int c;
1901 1.2 jandberg
1902 1.2 jandberg if (view == NULL)
1903 1.2 jandberg return (EINVAL);
1904 1.2 jandberg
1905 1.2 jandberg if (!cmap || !cmap->red || !cmap->green || !cmap->blue) {
1906 1.2 jandberg dprintf("amidisplaycc_setcmap: other==NULL\n");
1907 1.2 jandberg return (EINVAL);
1908 1.2 jandberg }
1909 1.2 jandberg
1910 1.2 jandberg index = cmap->index;
1911 1.2 jandberg count = cmap->count;
1912 1.2 jandberg colors = (1 << view->bitmap->depth);
1913 1.2 jandberg
1914 1.2 jandberg if (count > colors || index >= colors || index + count > colors)
1915 1.2 jandberg return (EINVAL);
1916 1.2 jandberg
1917 1.2 jandberg if (count == 0)
1918 1.2 jandberg return (0);
1919 1.2 jandberg
1920 1.2 jandberg cm.entry = cmentries;
1921 1.2 jandberg cm.first = index;
1922 1.2 jandberg cm.size = count;
1923 1.2 jandberg
1924 1.3 aymeric /*
1925 1.2 jandberg * Get the old colormap. We need to do this at least to know
1926 1.2 jandberg * how many bits to use with the color values.
1927 1.2 jandberg */
1928 1.2 jandberg
1929 1.2 jandberg err = grf_get_colormap(view, &cm);
1930 1.2 jandberg if (err)
1931 1.2 jandberg return (err);
1932 1.2 jandberg
1933 1.3 aymeric /*
1934 1.2 jandberg * The palette entries from wscons contain 8 bits per gun.
1935 1.2 jandberg * We need to convert them to the number of bits the view
1936 1.3 aymeric * expects. That is typically 4 or 8. Here we calculate the
1937 1.2 jandberg * conversion constants with which we divide the color values.
1938 1.2 jandberg */
1939 1.2 jandberg
1940 1.2 jandberg if (cm.type == CM_COLOR) {
1941 1.2 jandberg red_div = 256 / (cm.red_mask + 1);
1942 1.2 jandberg green_div = 256 / (cm.green_mask + 1);
1943 1.2 jandberg blue_div = 256 / (cm.blue_mask + 1);
1944 1.2 jandberg } else if (cm.type == CM_GREYSCALE)
1945 1.2 jandberg grey_div = 256 / (cm.grey_mask + 1);
1946 1.2 jandberg else
1947 1.2 jandberg return (EINVAL); /* Hmhh */
1948 1.2 jandberg
1949 1.2 jandberg /* Copy our new values to the current colormap */
1950 1.2 jandberg
1951 1.2 jandberg for (c = 0 ; c < count ; c++) {
1952 1.2 jandberg
1953 1.2 jandberg if (cm.type == CM_COLOR) {
1954 1.2 jandberg
1955 1.2 jandberg cm.entry[c + index] = MAKE_COLOR_ENTRY(
1956 1.2 jandberg cmap->red[c] / red_div,
1957 1.2 jandberg cmap->green[c] / green_div,
1958 1.2 jandberg cmap->blue[c] / blue_div);
1959 1.2 jandberg
1960 1.2 jandberg } else if (cm.type == CM_GREYSCALE) {
1961 1.2 jandberg
1962 1.2 jandberg /* Generate grey from average of r-g-b (?) */
1963 1.2 jandberg
1964 1.2 jandberg cm.entry[c + index] = MAKE_COLOR_ENTRY(
1965 1.2 jandberg 0,
1966 1.2 jandberg 0,
1967 1.3 aymeric (cmap->red[c] +
1968 1.3 aymeric cmap->green[c] +
1969 1.2 jandberg cmap->blue[c]) / 3 / grey_div);
1970 1.2 jandberg }
1971 1.2 jandberg }
1972 1.2 jandberg
1973 1.3 aymeric
1974 1.3 aymeric /*
1975 1.2 jandberg * Now we have a new colormap that contains all the entries. Set
1976 1.2 jandberg * it to the view.
1977 1.2 jandberg */
1978 1.2 jandberg
1979 1.2 jandberg err = grf_use_colormap(view, &cm);
1980 1.2 jandberg if (err)
1981 1.2 jandberg return err;
1982 1.2 jandberg
1983 1.2 jandberg return (0);
1984 1.2 jandberg }
1985 1.2 jandberg
1986 1.2 jandberg /*
1987 1.2 jandberg * Return the colormap of the given screen.
1988 1.2 jandberg */
1989 1.2 jandberg
1990 1.2 jandberg static int
1991 1.3 aymeric amidisplaycc_getcmap(view_t *view, struct wsdisplay_cmap *cmap)
1992 1.2 jandberg {
1993 1.2 jandberg u_long cmentries [MAXCOLORS];
1994 1.2 jandberg
1995 1.2 jandberg int green_mul;
1996 1.2 jandberg int blue_mul;
1997 1.2 jandberg int grey_mul;
1998 1.2 jandberg int red_mul;
1999 1.2 jandberg u_int colors;
2000 1.2 jandberg int index;
2001 1.2 jandberg int count;
2002 1.2 jandberg int err;
2003 1.2 jandberg colormap_t cm;
2004 1.2 jandberg int c;
2005 1.2 jandberg
2006 1.2 jandberg if (view == NULL)
2007 1.2 jandberg return (EINVAL);
2008 1.2 jandberg
2009 1.2 jandberg if (!cmap || !cmap->red || !cmap->green || !cmap->blue)
2010 1.2 jandberg return (EINVAL);
2011 1.2 jandberg
2012 1.2 jandberg index = cmap->index;
2013 1.2 jandberg count = cmap->count;
2014 1.2 jandberg colors = (1 << view->bitmap->depth);
2015 1.2 jandberg
2016 1.2 jandberg if (count > colors || index >= colors || index + count > colors)
2017 1.2 jandberg return (EINVAL);
2018 1.2 jandberg
2019 1.2 jandberg if (count == 0)
2020 1.2 jandberg return (0);
2021 1.2 jandberg
2022 1.2 jandberg cm.entry = cmentries;
2023 1.2 jandberg cm.first = index;
2024 1.2 jandberg cm.size = count;
2025 1.2 jandberg
2026 1.2 jandberg
2027 1.2 jandberg err = grf_get_colormap(view, &cm);
2028 1.2 jandberg if (err)
2029 1.2 jandberg return (err);
2030 1.2 jandberg
2031 1.2 jandberg if (cm.type == CM_COLOR) {
2032 1.2 jandberg red_mul = 256 / (cm.red_mask + 1);
2033 1.2 jandberg green_mul = 256 / (cm.green_mask + 1);
2034 1.2 jandberg blue_mul = 256 / (cm.blue_mask + 1);
2035 1.2 jandberg } else if (cm.type == CM_GREYSCALE) {
2036 1.2 jandberg grey_mul = 256 / (cm.grey_mask + 1);
2037 1.2 jandberg } else
2038 1.2 jandberg return (EINVAL);
2039 1.2 jandberg
2040 1.2 jandberg /*
2041 1.3 aymeric * Copy color data to wscons-style structure. Translate to
2042 1.2 jandberg * 8 bits/gun from whatever resolution the color natively is.
2043 1.2 jandberg */
2044 1.2 jandberg
2045 1.2 jandberg for (c = 0 ; c < count ; c++) {
2046 1.2 jandberg
2047 1.2 jandberg if (cm.type == CM_COLOR) {
2048 1.2 jandberg
2049 1.2 jandberg cmap->red[c] = CM_GET_RED(cm.entry[index+c]);
2050 1.2 jandberg cmap->green[c] = CM_GET_GREEN(cm.entry[index+c]);
2051 1.2 jandberg cmap->blue[c] = CM_GET_BLUE(cm.entry[index+c]);
2052 1.2 jandberg
2053 1.2 jandberg cmap->red[c] *= red_mul;
2054 1.2 jandberg cmap->green[c] *= green_mul;
2055 1.2 jandberg cmap->blue[c] *= blue_mul;
2056 1.2 jandberg
2057 1.2 jandberg } else if (cm.type == CM_GREYSCALE) {
2058 1.2 jandberg cmap->red[c] = CM_GET_GREY(cm.entry[index+c]);
2059 1.2 jandberg cmap->red[c] *= grey_mul;
2060 1.2 jandberg
2061 1.2 jandberg cmap->green[c] = cmap->red[c];
2062 1.2 jandberg cmap->blue[c] = cmap->red[c];
2063 1.2 jandberg }
2064 1.2 jandberg }
2065 1.2 jandberg
2066 1.2 jandberg return (0);
2067 1.2 jandberg }
2068 1.2 jandberg
2069 1.2 jandberg /* ARGSUSED */
2070 1.3 aymeric void
2071 1.3 aymeric amidisplaycc_pollc(void *cookie, int on)
2072 1.1 is {
2073 1.1 is }
2074 1.1 is
2075 1.3 aymeric /*
2076 1.1 is * These dummy functions are here just so that we can compete of
2077 1.1 is * the console at init.
2078 1.1 is * If we win the console then the wscons system will provide the
2079 1.1 is * real ones which in turn will call the apropriate wskbd device.
2080 1.1 is * These should never be called.
2081 1.1 is */
2082 1.1 is
2083 1.2 jandberg /* ARGSUSED */
2084 1.1 is void
2085 1.3 aymeric amidisplaycc_cnputc(dev_t cd, int ch)
2086 1.1 is {
2087 1.1 is }
2088 1.1 is
2089 1.2 jandberg /* ARGSUSED */
2090 1.1 is int
2091 1.3 aymeric amidisplaycc_cngetc(dev_t cd)
2092 1.1 is {
2093 1.1 is return (0);
2094 1.1 is }
2095 1.1 is
2096 1.2 jandberg /* ARGSUSED */
2097 1.3 aymeric void
2098 1.3 aymeric amidisplaycc_cnpollc(dev_t cd, int on)
2099 1.1 is {
2100 1.1 is }
2101 1.1 is
2102 1.2 jandberg
2103 1.2 jandberg /*
2104 1.2 jandberg * Prints stuff if DEBUG is turned on.
2105 1.2 jandberg */
2106 1.2 jandberg
2107 1.2 jandberg /* ARGSUSED */
2108 1.2 jandberg static void
2109 1.3 aymeric dprintf(const char *fmt, ...)
2110 1.2 jandberg {
2111 1.2 jandberg #ifdef DEBUG
2112 1.2 jandberg va_list ap;
2113 1.2 jandberg
2114 1.2 jandberg va_start(ap, fmt);
2115 1.2 jandberg vprintf(fmt, ap);
2116 1.2 jandberg va_end(ap);
2117 1.2 jandberg #endif
2118 1.2 jandberg }
2119 1.2 jandberg
2120 1.1 is #endif /* AMIDISPLAYCC */
2121