grfabs.c revision 1.1.1.1 1 1.1 leo /* $NetBSD: grfabs.c,v 1.1.1.1 1995/03/26 07:12:15 leo Exp $ */
2 1.1 leo
3 1.1 leo /*
4 1.1 leo * Copyright (c) 1995 Leo Weppelman.
5 1.1 leo * All rights reserved.
6 1.1 leo *
7 1.1 leo * Redistribution and use in source and binary forms, with or without
8 1.1 leo * modification, are permitted provided that the following conditions
9 1.1 leo * are met:
10 1.1 leo * 1. Redistributions of source code must retain the above copyright
11 1.1 leo * notice, this list of conditions and the following disclaimer.
12 1.1 leo * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 leo * notice, this list of conditions and the following disclaimer in the
14 1.1 leo * documentation and/or other materials provided with the distribution.
15 1.1 leo * 3. All advertising materials mentioning features or use of this software
16 1.1 leo * must display the following acknowledgement:
17 1.1 leo * This product includes software developed by Leo Weppelman.
18 1.1 leo * 4. The name of the author may not be used to endorse or promote products
19 1.1 leo * derived from this software without specific prior written permission
20 1.1 leo *
21 1.1 leo * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
22 1.1 leo * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
23 1.1 leo * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
24 1.1 leo * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
25 1.1 leo * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
26 1.1 leo * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
27 1.1 leo * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
28 1.1 leo * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
29 1.1 leo * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
30 1.1 leo * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31 1.1 leo */
32 1.1 leo
33 1.1 leo /*
34 1.1 leo * atari abstract graphics driver.
35 1.1 leo */
36 1.1 leo #include <sys/param.h>
37 1.1 leo #include <sys/queue.h>
38 1.1 leo #include <sys/malloc.h>
39 1.1 leo
40 1.1 leo #include <machine/iomap.h>
41 1.1 leo #include <machine/video.h>
42 1.1 leo #include <machine/mfp.h>
43 1.1 leo #include <atari/dev/grfabs_reg.h>
44 1.1 leo
45 1.1 leo /*
46 1.1 leo * Function decls
47 1.1 leo */
48 1.1 leo static dmode_t *get_best_display_mode __P((int, int, int));
49 1.1 leo static view_t *alloc_view __P((dmode_t *, dimen_t *, u_char));
50 1.1 leo static void init_view __P((view_t *, bmap_t *, dmode_t *, box_t *));
51 1.1 leo static bmap_t *alloc_bitmap __P((u_long, u_long, u_char, int));
52 1.1 leo static void free_bitmap __P((bmap_t *));
53 1.1 leo static colormap_t *alloc_colormap __P((dmode_t *));
54 1.1 leo
55 1.1 leo /*
56 1.1 leo * Ugh.. Stuff needed to allocate console structures before the VM-system
57 1.1 leo * is running. There is no malloc() available at that time.
58 1.1 leo */
59 1.1 leo extern int atari_realconfig; /* 0 -> no malloc */
60 1.1 leo static view_t con_view;
61 1.1 leo static colormap_t con_cmap;
62 1.1 leo static u_short con_colors[MAX_CENTRIES];
63 1.1 leo
64 1.1 leo /*
65 1.1 leo * List of available graphic modes
66 1.1 leo */
67 1.1 leo static LIST_HEAD(modelist, display_mode) modes;
68 1.1 leo
69 1.1 leo static dmode_t vid_modes[] = {
70 1.1 leo { { NULL, NULL }, "stlow", { 320, 200 }, 1, RES_STLOW },
71 1.1 leo { { NULL, NULL }, "stmid", { 640, 200 }, 2, RES_STMID },
72 1.1 leo { { NULL, NULL }, "sthigh", { 640, 400 }, 1, RES_STHIGH },
73 1.1 leo { { NULL, NULL }, "ttlow", { 320, 480 }, 8, RES_TTLOW },
74 1.1 leo { { NULL, NULL }, "ttmid", { 640, 480 }, 4, RES_TTMID },
75 1.1 leo { { NULL, NULL }, "tthigh", { 1280, 960 }, 1, RES_TTHIGH },
76 1.1 leo { { NULL, NULL }, NULL, }
77 1.1 leo };
78 1.1 leo
79 1.1 leo /*
80 1.1 leo * Default colors.....
81 1.1 leo * Currently the TT-low (256 colors) just uses 16 time the 16-color default.
82 1.1 leo * If you have a sensible 256 scale, feel free to add.....
83 1.1 leo * The first 2 colors in all maps are {black,white}, so ite (text) displays
84 1.1 leo * are initially readable. Also, this enables me to supply only 1 map. The
85 1.1 leo * 4 color mode uses the first four entries of the 16 color mode thus giving
86 1.1 leo * a gray scale display. (Maybe we can add an intensity bit to the ite...)
87 1.1 leo */
88 1.1 leo static u_short def_color16[16] = {
89 1.1 leo 0x000, /* black */
90 1.1 leo 0xfff, /* white */
91 1.1 leo 0xccc, /* light gray */
92 1.1 leo 0x888, /* gray */
93 1.1 leo 0x00c, /* blue */
94 1.1 leo 0x0c0, /* green */
95 1.1 leo 0x0cc, /* cyan */
96 1.1 leo 0xc00, /* red */
97 1.1 leo 0xc0c, /* magenta */
98 1.1 leo 0xcc0, /* brown */
99 1.1 leo 0x00f, /* light blue */
100 1.1 leo 0x0f0, /* light green */
101 1.1 leo 0x0ff, /* light cyan */
102 1.1 leo 0xf00, /* light red */
103 1.1 leo 0xf0f, /* light magenta */
104 1.1 leo 0xff0 /* light brown */
105 1.1 leo };
106 1.1 leo
107 1.1 leo /*
108 1.1 leo * XXX: called from ite console init routine.
109 1.1 leo * Initialize list of posible video modes.
110 1.1 leo */
111 1.1 leo int
112 1.1 leo grfabs_probe()
113 1.1 leo {
114 1.1 leo dmode_t *dm;
115 1.1 leo int i;
116 1.1 leo int has_mono;
117 1.1 leo static int inited = 0;
118 1.1 leo
119 1.1 leo if(inited)
120 1.1 leo return; /* Has to be done only once */
121 1.1 leo inited++;
122 1.1 leo
123 1.1 leo /*
124 1.1 leo * First find out what kind of monitor is attached. Dma-sound
125 1.1 leo * should be off because the 'sound-done' and 'monochrome-detect'
126 1.1 leo * are xor-ed together. I think that shutting it down here is the
127 1.1 leo * wrong place.
128 1.1 leo */
129 1.1 leo has_mono = (MFP->mf_gpip & IA_MONO) == 0;
130 1.1 leo
131 1.1 leo LIST_INIT(&modes);
132 1.1 leo for(i = 0; (dm = &vid_modes[i])->name != NULL; i++) {
133 1.1 leo if(has_mono && (dm->vm_reg != RES_TTHIGH))
134 1.1 leo continue;
135 1.1 leo if(!has_mono && (dm->vm_reg == RES_TTHIGH))
136 1.1 leo continue;
137 1.1 leo LIST_INSERT_HEAD(&modes, dm, link);
138 1.1 leo }
139 1.1 leo return(1);
140 1.1 leo }
141 1.1 leo
142 1.1 leo view_t *
143 1.1 leo grf_alloc_view(d, dim, depth)
144 1.1 leo dmode_t *d;
145 1.1 leo dimen_t *dim;
146 1.1 leo u_char depth;
147 1.1 leo {
148 1.1 leo if(!d)
149 1.1 leo d = get_best_display_mode(dim->width, dim->height, depth);
150 1.1 leo if(d)
151 1.1 leo return(alloc_view(d, dim, depth));
152 1.1 leo return(NULL);
153 1.1 leo }
154 1.1 leo
155 1.1 leo void grf_display_view(v)
156 1.1 leo view_t *v;
157 1.1 leo {
158 1.1 leo dmode_t *dm = v->mode;
159 1.1 leo bmap_t *bm = v->bitmap;
160 1.1 leo
161 1.1 leo if(dm->current_view) {
162 1.1 leo /*
163 1.1 leo * Mark current view for this mode as no longer displayed
164 1.1 leo */
165 1.1 leo dm->current_view->flags &= ~VF_DISPLAY;
166 1.1 leo }
167 1.1 leo dm->current_view = v;
168 1.1 leo v->flags |= VF_DISPLAY;
169 1.1 leo
170 1.1 leo grf_use_colormap(v, v->colormap);
171 1.1 leo
172 1.1 leo /* XXX: should use vbl for this */
173 1.1 leo VIDEO->vd_tt_res = dm->vm_reg;
174 1.1 leo VIDEO->vd_raml = (u_long)bm->hw_address & 0xff;
175 1.1 leo VIDEO->vd_ramm = ((u_long)bm->hw_address >> 8) & 0xff;
176 1.1 leo VIDEO->vd_ramh = ((u_long)bm->hw_address >> 16) & 0xff;
177 1.1 leo }
178 1.1 leo
179 1.1 leo void grf_remove_view(v)
180 1.1 leo view_t *v;
181 1.1 leo {
182 1.1 leo dmode_t *mode = v->mode;
183 1.1 leo
184 1.1 leo if(mode->current_view == v) {
185 1.1 leo #if 0
186 1.1 leo if(v->flags & VF_DISPLAY)
187 1.1 leo panic("Cannot shutdown display\n"); /* XXX */
188 1.1 leo #endif
189 1.1 leo mode->current_view = NULL;
190 1.1 leo }
191 1.1 leo v->flags &= ~VF_DISPLAY;
192 1.1 leo }
193 1.1 leo
194 1.1 leo void grf_free_view(v)
195 1.1 leo view_t *v;
196 1.1 leo {
197 1.1 leo if(v) {
198 1.1 leo dmode_t *md = v->mode;
199 1.1 leo
200 1.1 leo grf_remove_view(v);
201 1.1 leo if(v->colormap != &con_cmap)
202 1.1 leo free(v->colormap, M_DEVBUF);
203 1.1 leo free_bitmap(v->bitmap);
204 1.1 leo if(v != &con_view)
205 1.1 leo free(v, M_DEVBUF);
206 1.1 leo }
207 1.1 leo }
208 1.1 leo
209 1.1 leo int
210 1.1 leo grf_get_colormap(v, cm)
211 1.1 leo view_t *v;
212 1.1 leo colormap_t *cm;
213 1.1 leo {
214 1.1 leo colormap_t *gcm;
215 1.1 leo int i, n;
216 1.1 leo
217 1.1 leo bzero(cm->centry, cm->nentries * sizeof(u_short));
218 1.1 leo
219 1.1 leo gcm = v->colormap;
220 1.1 leo n = cm->nentries < gcm->nentries ? cm->nentries : gcm->nentries;
221 1.1 leo for(i = 0; i < n; i++)
222 1.1 leo cm->centry[i] = gcm->centry[i];
223 1.1 leo return(0);
224 1.1 leo }
225 1.1 leo
226 1.1 leo int
227 1.1 leo grf_use_colormap(v, cm)
228 1.1 leo view_t *v;
229 1.1 leo colormap_t *cm;
230 1.1 leo {
231 1.1 leo dmode_t *dm;
232 1.1 leo volatile u_short *creg;
233 1.1 leo u_short *src;
234 1.1 leo u_short ncreg;
235 1.1 leo int i;
236 1.1 leo
237 1.1 leo dm = v->mode;
238 1.1 leo
239 1.1 leo switch(dm->vm_reg) {
240 1.1 leo case RES_STLOW:
241 1.1 leo creg = &VIDEO->vd_tt_rgb[0];
242 1.1 leo ncreg = 16;
243 1.1 leo break;
244 1.1 leo case RES_STMID:
245 1.1 leo creg = &VIDEO->vd_tt_rgb[0];
246 1.1 leo ncreg = 4;
247 1.1 leo break;
248 1.1 leo case RES_STHIGH:
249 1.1 leo creg = &VIDEO->vd_tt_rgb[254];
250 1.1 leo ncreg = 2;
251 1.1 leo break;
252 1.1 leo case RES_TTLOW:
253 1.1 leo creg = &VIDEO->vd_tt_rgb[0];
254 1.1 leo ncreg = 256;
255 1.1 leo break;
256 1.1 leo case RES_TTMID:
257 1.1 leo creg = &VIDEO->vd_tt_rgb[0];
258 1.1 leo ncreg = 16;
259 1.1 leo break;
260 1.1 leo case RES_TTHIGH:
261 1.1 leo return(0); /* No colors */
262 1.1 leo default:
263 1.1 leo panic("grf_get_colormap: wrong mode!?");
264 1.1 leo }
265 1.1 leo if(cm->nentries < ncreg)
266 1.1 leo ncreg = cm->nentries;
267 1.1 leo
268 1.1 leo for(i = 0, src = cm->centry; i < ncreg; i++)
269 1.1 leo *creg++ = *src++;
270 1.1 leo return(0);
271 1.1 leo }
272 1.1 leo
273 1.1 leo static dmode_t *
274 1.1 leo get_best_display_mode(width, height, depth)
275 1.1 leo int width, height, depth;
276 1.1 leo {
277 1.1 leo dmode_t *save;
278 1.1 leo dmode_t *dm;
279 1.1 leo long dt, dx, dy, ct;
280 1.1 leo
281 1.1 leo save = NULL;
282 1.1 leo dm = modes.lh_first;
283 1.1 leo while(dm != NULL) {
284 1.1 leo if(depth > dm->depth) {
285 1.1 leo dm = dm->link.le_next;
286 1.1 leo continue;
287 1.1 leo }
288 1.1 leo else if(width > dm->size.width || height > dm->size.height) {
289 1.1 leo dm = dm->link.le_next;
290 1.1 leo continue;
291 1.1 leo }
292 1.1 leo else if (width < dm->size.width || height < dm->size.height) {
293 1.1 leo dm = dm->link.le_next;
294 1.1 leo continue;
295 1.1 leo }
296 1.1 leo dx = abs(dm->size.width - width);
297 1.1 leo dy = abs(dm->size.height - height);
298 1.1 leo ct = dx + dy;
299 1.1 leo
300 1.1 leo if (ct < dt || save == NULL) {
301 1.1 leo save = dm;
302 1.1 leo dt = ct;
303 1.1 leo }
304 1.1 leo dm = dm->link.le_next;
305 1.1 leo }
306 1.1 leo return (save);
307 1.1 leo }
308 1.1 leo
309 1.1 leo static view_t *
310 1.1 leo alloc_view(mode, dim, depth)
311 1.1 leo dmode_t *mode;
312 1.1 leo dimen_t *dim;
313 1.1 leo u_char depth;
314 1.1 leo {
315 1.1 leo view_t *v;
316 1.1 leo bmap_t *bm;
317 1.1 leo
318 1.1 leo if(!atari_realconfig)
319 1.1 leo v = &con_view;
320 1.1 leo else v = malloc(sizeof(*v), M_DEVBUF, M_WAITOK);
321 1.1 leo
322 1.1 leo bm = alloc_bitmap(mode->size.width, mode->size.height, mode->depth, 1);
323 1.1 leo if(bm) {
324 1.1 leo int i;
325 1.1 leo box_t box;
326 1.1 leo
327 1.1 leo v->colormap = alloc_colormap(mode);
328 1.1 leo if(v->colormap) {
329 1.1 leo INIT_BOX(&box,0,0,mode->size.width,mode->size.height);
330 1.1 leo init_view(v, bm, mode, &box);
331 1.1 leo return(v);
332 1.1 leo }
333 1.1 leo free_bitmap(bm);
334 1.1 leo }
335 1.1 leo if(v != &con_view)
336 1.1 leo free(v, M_DEVBUF);
337 1.1 leo return (NULL);
338 1.1 leo }
339 1.1 leo
340 1.1 leo static void
341 1.1 leo init_view(v, bm, mode, dbox)
342 1.1 leo view_t *v;
343 1.1 leo bmap_t *bm;
344 1.1 leo dmode_t *mode;
345 1.1 leo box_t *dbox;
346 1.1 leo {
347 1.1 leo v->bitmap = bm;
348 1.1 leo v->mode = mode;
349 1.1 leo bcopy(dbox, &v->display, sizeof(box_t));
350 1.1 leo }
351 1.1 leo
352 1.1 leo /* bitmap functions */
353 1.1 leo
354 1.1 leo static bmap_t *
355 1.1 leo alloc_bitmap(width, height, depth, clear)
356 1.1 leo u_long width, height;
357 1.1 leo u_char depth;
358 1.1 leo int clear;
359 1.1 leo {
360 1.1 leo int i;
361 1.1 leo u_long total_size, bm_size;
362 1.1 leo void *hw_address;
363 1.1 leo bmap_t *bm;
364 1.1 leo
365 1.1 leo /*
366 1.1 leo * Sigh, it seems for mapping to work we need the bitplane data to
367 1.1 leo * 1: be aligned on a page boundry.
368 1.1 leo * 2: be n pages large.
369 1.1 leo *
370 1.1 leo * why? because the user gets a page aligned address, if this is before
371 1.1 leo * your allocation, too bad. Also it seems that the mapping routines
372 1.1 leo * do not watch to closely to the allowable length. so if you go over
373 1.1 leo * n pages by less than another page, the user gets to write all over
374 1.1 leo * the entire page. Since you did not allocate up to a page boundry
375 1.1 leo * (or more) the user writes into someone elses memory. -ch
376 1.1 leo */
377 1.1 leo bm_size = atari_round_page((width * height * depth) / NBBY);
378 1.1 leo total_size = bm_size + sizeof(bmap_t) + NBPG;
379 1.1 leo
380 1.1 leo if((bm = (bmap_t*)alloc_stmem(total_size, &hw_address)) == NULL)
381 1.1 leo return(NULL);
382 1.1 leo
383 1.1 leo bm->plane = (u_char*)bm + sizeof(bmap_t);
384 1.1 leo bm->plane = (u_char*)atari_round_page(bm->plane);
385 1.1 leo bm->hw_address = (u_char*)hw_address + sizeof(bmap_t);
386 1.1 leo bm->hw_address = (u_char*)atari_round_page(bm->hw_address);
387 1.1 leo bm->bytes_per_row = (width * depth) / NBBY;
388 1.1 leo bm->rows = height;
389 1.1 leo bm->depth = depth;
390 1.1 leo
391 1.1 leo if(clear)
392 1.1 leo bzero(bm->plane, bm_size);
393 1.1 leo return(bm);
394 1.1 leo }
395 1.1 leo
396 1.1 leo static void
397 1.1 leo free_bitmap(bm)
398 1.1 leo bmap_t *bm;
399 1.1 leo {
400 1.1 leo if(bm)
401 1.1 leo free_stmem(bm);
402 1.1 leo }
403 1.1 leo
404 1.1 leo static colormap_t *
405 1.1 leo alloc_colormap(dm)
406 1.1 leo dmode_t *dm;
407 1.1 leo {
408 1.1 leo int nentries, i;
409 1.1 leo colormap_t *cm;
410 1.1 leo
411 1.1 leo switch(dm->vm_reg) {
412 1.1 leo case RES_STLOW:
413 1.1 leo case RES_TTMID:
414 1.1 leo nentries = 16;
415 1.1 leo break;
416 1.1 leo case RES_STMID:
417 1.1 leo nentries = 4;
418 1.1 leo break;
419 1.1 leo case RES_STHIGH:
420 1.1 leo nentries = 2;
421 1.1 leo break;
422 1.1 leo case RES_TTLOW:
423 1.1 leo nentries = 256;
424 1.1 leo break;
425 1.1 leo case RES_TTHIGH:
426 1.1 leo nentries = 0;
427 1.1 leo default:
428 1.1 leo panic("grf:alloc_colormap: wrong mode!?");
429 1.1 leo }
430 1.1 leo if(!atari_realconfig) {
431 1.1 leo cm = &con_cmap;
432 1.1 leo cm->centry = con_colors;
433 1.1 leo }
434 1.1 leo else {
435 1.1 leo int size;
436 1.1 leo
437 1.1 leo size = sizeof(*cm) + (nentries * sizeof(u_short));
438 1.1 leo cm = malloc(size, M_DEVBUF, M_WAITOK);
439 1.1 leo if(cm == NULL)
440 1.1 leo return(NULL);
441 1.1 leo cm->centry = (u_short *)&cm[1];
442 1.1 leo
443 1.1 leo }
444 1.1 leo cm->nentries = nentries;
445 1.1 leo
446 1.1 leo for(i = 0; i < nentries; i++)
447 1.1 leo cm->centry[i] = def_color16[i % 16];
448 1.1 leo return(cm);
449 1.1 leo }
450