vidc20config.c revision 1.23 1 1.23 bjh21 /* $NetBSD: vidc20config.c,v 1.23 2006/08/17 22:33:59 bjh21 Exp $ */
2 1.1 reinoud
3 1.1 reinoud /*
4 1.1 reinoud * Copyright (c) 2001 Reinoud Zandijk
5 1.1 reinoud * Copyright (c) 1996 Mark Brinicombe
6 1.1 reinoud * Copyright (c) 1996 Robert Black
7 1.1 reinoud * Copyright (c) 1994-1995 Melvyn Tang-Richardson
8 1.1 reinoud * Copyright (c) 1994-1995 RiscBSD kernel team
9 1.1 reinoud * All rights reserved.
10 1.1 reinoud *
11 1.1 reinoud * Redistribution and use in source and binary forms, with or without
12 1.1 reinoud * modification, are permitted provided that the following conditions
13 1.1 reinoud * are met:
14 1.1 reinoud * 1. Redistributions of source code must retain the above copyright
15 1.1 reinoud * notice, this list of conditions and the following disclaimer.
16 1.1 reinoud * 2. Redistributions in binary form must reproduce the above copyright
17 1.1 reinoud * notice, this list of conditions and the following disclaimer in the
18 1.1 reinoud * documentation and/or other materials provided with the distribution.
19 1.1 reinoud * 3. All advertising materials mentioning features or use of this software
20 1.1 reinoud * must display the following acknowledgement:
21 1.1 reinoud * This product includes software developed by the RiscBSD kernel team
22 1.1 reinoud * 4. The name of the company nor the name of the author may be used to
23 1.1 reinoud * endorse or promote products derived from this software without specific
24 1.1 reinoud * prior written permission.
25 1.1 reinoud *
26 1.1 reinoud * THIS SOFTWARE IS PROVIDED BY THE RISCBSD TEAM ``AS IS'' AND ANY EXPRESS
27 1.1 reinoud * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
28 1.1 reinoud * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
29 1.1 reinoud * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHORS OR CONTRIBUTORS BE
30 1.1 reinoud * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.1 reinoud * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.1 reinoud * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.1 reinoud * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.1 reinoud * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.1 reinoud * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
36 1.1 reinoud * THE POSSIBILITY OF SUCH DAMAGE.
37 1.1 reinoud *
38 1.1 reinoud * NetBSD kernel project
39 1.1 reinoud *
40 1.1 reinoud * vidcvideo.c
41 1.1 reinoud *
42 1.1 reinoud * This file is the lower basis of the wscons driver for VIDC based ARM machines.
43 1.1 reinoud * It features the initialisation and all VIDC writing and keeps in internal state
44 1.1 reinoud * copy.
45 1.1 reinoud * Its currenly set up as a library file and not as a device; it could be named
46 1.1 reinoud * vidcvideo0 eventually.
47 1.1 reinoud */
48 1.1 reinoud
49 1.1 reinoud #include <sys/cdefs.h>
50 1.7 bjh21
51 1.23 bjh21 __KERNEL_RCSID(0, "$NetBSD: vidc20config.c,v 1.23 2006/08/17 22:33:59 bjh21 Exp $");
52 1.7 bjh21
53 1.1 reinoud #include <sys/types.h>
54 1.1 reinoud #include <sys/param.h>
55 1.1 reinoud #include <arm/iomd/vidc.h>
56 1.3 thorpej #include <arm/arm32/katelib.h>
57 1.1 reinoud #include <machine/bootconfig.h>
58 1.4 thorpej #include <machine/intr.h>
59 1.1 reinoud
60 1.1 reinoud #include <sys/systm.h>
61 1.1 reinoud #include <sys/device.h>
62 1.1 reinoud #include <uvm/uvm_extern.h>
63 1.1 reinoud
64 1.1 reinoud #include <arm/iomd/iomdreg.h>
65 1.1 reinoud #include <arm/iomd/iomdvar.h>
66 1.1 reinoud #include <arm/iomd/vidc20config.h>
67 1.1 reinoud
68 1.9 reinoud
69 1.1 reinoud /*
70 1.1 reinoud * A structure containing ALL the information required to restore
71 1.1 reinoud * the VIDC20 to any given state. ALL vidc transactions should
72 1.1 reinoud * go through these procedures, which record the vidc's state.
73 1.1 reinoud * it may be an idea to set the permissions of the vidc base address
74 1.1 reinoud * so we get a fault, so the fault routine can record the state but
75 1.1 reinoud * I guess that's not really necessary for the time being, since we
76 1.1 reinoud * can make the kernel more secure later on. Also, it is possible
77 1.1 reinoud * to write a routine to allow 'reading' of the vidc registers.
78 1.1 reinoud */
79 1.1 reinoud
80 1.1 reinoud static struct vidc_state vidc_lookup = {
81 1.1 reinoud { 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,
82 1.1 reinoud 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,
83 1.1 reinoud 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,
84 1.1 reinoud 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,
85 1.1 reinoud 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,
86 1.1 reinoud 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,
87 1.1 reinoud 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,
88 1.1 reinoud 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0
89 1.1 reinoud },
90 1.1 reinoud
91 1.1 reinoud VIDC_PALREG,
92 1.1 reinoud VIDC_BCOL,
93 1.1 reinoud VIDC_CP1 ,
94 1.1 reinoud VIDC_CP2,
95 1.1 reinoud VIDC_CP3,
96 1.1 reinoud VIDC_HCR,
97 1.1 reinoud VIDC_HSWR,
98 1.1 reinoud VIDC_HBSR,
99 1.1 reinoud VIDC_HDSR,
100 1.1 reinoud VIDC_HDER,
101 1.1 reinoud VIDC_HBER,
102 1.1 reinoud VIDC_HCSR,
103 1.1 reinoud VIDC_HIR,
104 1.1 reinoud VIDC_VCR,
105 1.1 reinoud VIDC_VSWR,
106 1.1 reinoud VIDC_VBSR,
107 1.1 reinoud VIDC_VDSR,
108 1.1 reinoud VIDC_VDER,
109 1.1 reinoud VIDC_VBER,
110 1.1 reinoud VIDC_VCSR,
111 1.1 reinoud VIDC_VCER,
112 1.1 reinoud VIDC_EREG,
113 1.1 reinoud VIDC_FSYNREG,
114 1.1 reinoud VIDC_CONREG,
115 1.1 reinoud VIDC_DCTL
116 1.1 reinoud };
117 1.1 reinoud
118 1.1 reinoud struct vidc_state vidc_current[1];
119 1.1 reinoud
120 1.1 reinoud
121 1.1 reinoud /*
122 1.1 reinoud * XXX global display variables XXX ... should be a structure
123 1.1 reinoud */
124 1.1 reinoud static int cold_init = 0; /* flags initialisation */
125 1.1 reinoud extern videomemory_t videomemory;
126 1.1 reinoud
127 1.1 reinoud static struct vidc_mode *vidc_currentmode;
128 1.1 reinoud
129 1.1 reinoud unsigned int dispstart;
130 1.1 reinoud unsigned int dispsize;
131 1.1 reinoud unsigned int dispbase;
132 1.1 reinoud unsigned int dispend;
133 1.1 reinoud unsigned int ptov;
134 1.1 reinoud unsigned int vmem_base;
135 1.1 reinoud unsigned int phys_base;
136 1.1 reinoud unsigned int transfersize;
137 1.1 reinoud
138 1.1 reinoud
139 1.1 reinoud /* cursor stuff */
140 1.1 reinoud char *cursor_normal;
141 1.1 reinoud char *cursor_transparent;
142 1.9 reinoud int p_cursor_normal;
143 1.9 reinoud int p_cursor_transparent;
144 1.9 reinoud int cursor_width;
145 1.9 reinoud int cursor_height;
146 1.1 reinoud
147 1.1 reinoud
148 1.1 reinoud /*
149 1.1 reinoud * VIDC mode definitions
150 1.1 reinoud * generated from RISC OS mode definition file by an `awk' script
151 1.1 reinoud */
152 1.1 reinoud extern struct vidc_mode vidcmodes[];
153 1.1 reinoud
154 1.1 reinoud
155 1.1 reinoud /*
156 1.1 reinoud * configuration printing
157 1.1 reinoud *
158 1.1 reinoud */
159 1.1 reinoud
160 1.1 reinoud void
161 1.1 reinoud vidcvideo_printdetails(void)
162 1.1 reinoud {
163 1.1 reinoud printf(": refclk=%dMHz %dKB %s ", (vidc_fref / 1000000),
164 1.1 reinoud videomemory.vidm_size / 1024,
165 1.1 reinoud (videomemory.vidm_type == VIDEOMEM_TYPE_VRAM) ? "VRAM" : "DRAM");
166 1.1 reinoud }
167 1.1 reinoud
168 1.9 reinoud
169 1.1 reinoud /*
170 1.1 reinoud * Common functions to directly access VIDC registers
171 1.1 reinoud */
172 1.1 reinoud int
173 1.21 bjh21 vidcvideo_write(u_int reg, int value)
174 1.1 reinoud {
175 1.1 reinoud int counter;
176 1.1 reinoud
177 1.1 reinoud int *current;
178 1.1 reinoud int *tab;
179 1.1 reinoud
180 1.1 reinoud tab = (int *)&vidc_lookup;
181 1.1 reinoud current = (int *)vidc_current;
182 1.1 reinoud
183 1.1 reinoud
184 1.1 reinoud /*
185 1.1 reinoud * OK, the VIDC_PALETTE register is handled differently
186 1.1 reinoud * to the others on the VIDC, so take that into account here
187 1.1 reinoud */
188 1.21 bjh21 if (reg == VIDC_PALREG) {
189 1.1 reinoud vidc_current->palreg = 0;
190 1.1 reinoud WriteWord(vidc_base, reg | value);
191 1.1 reinoud return 0;
192 1.1 reinoud }
193 1.1 reinoud
194 1.21 bjh21 if (reg == VIDC_PALETTE) {
195 1.1 reinoud WriteWord(vidc_base, reg | value);
196 1.1 reinoud vidc_current->palette[vidc_current->palreg] = value;
197 1.1 reinoud vidc_current->palreg++;
198 1.1 reinoud vidc_current->palreg = vidc_current->palreg & 0xff;
199 1.1 reinoud return 0;
200 1.1 reinoud }
201 1.1 reinoud
202 1.1 reinoud /*
203 1.1 reinoud * Undefine SAFER if you wish to speed things up (a little)
204 1.1 reinoud * although this means the function will assume things abou
205 1.1 reinoud * the structure of vidc_state. i.e. the first 256 words are
206 1.1 reinoud * the palette array
207 1.1 reinoud */
208 1.1 reinoud
209 1.1 reinoud #define SAFER
210 1.1 reinoud
211 1.1 reinoud #ifdef SAFER
212 1.1 reinoud #define INITVALUE 0
213 1.1 reinoud #else
214 1.1 reinoud #define INITVALUE 256
215 1.1 reinoud #endif
216 1.1 reinoud
217 1.21 bjh21 for (counter = INITVALUE;
218 1.21 bjh21 counter <= sizeof(struct vidc_state);
219 1.21 bjh21 counter++) {
220 1.21 bjh21 if (reg == tab[counter]) {
221 1.1 reinoud WriteWord ( vidc_base, reg | value );
222 1.1 reinoud current[counter] = value;
223 1.1 reinoud return 0;
224 1.1 reinoud }
225 1.1 reinoud }
226 1.1 reinoud return -1;
227 1.1 reinoud }
228 1.1 reinoud
229 1.1 reinoud
230 1.1 reinoud void
231 1.21 bjh21 vidcvideo_setpalette(struct vidc_state *vidc)
232 1.1 reinoud {
233 1.1 reinoud int counter = 0;
234 1.1 reinoud
235 1.1 reinoud vidcvideo_write(VIDC_PALREG, 0x00000000);
236 1.15 reinoud for (counter = 0; counter <= 255; counter++)
237 1.1 reinoud vidcvideo_write(VIDC_PALETTE, vidc->palette[counter]);
238 1.1 reinoud }
239 1.1 reinoud
240 1.1 reinoud
241 1.1 reinoud void
242 1.21 bjh21 vidcvideo_setstate(struct vidc_state *vidc)
243 1.1 reinoud {
244 1.9 reinoud vidcvideo_write ( VIDC_PALREG, vidc->palreg );
245 1.1 reinoud vidcvideo_write ( VIDC_BCOL, vidc->bcol );
246 1.1 reinoud vidcvideo_write ( VIDC_CP1, vidc->cp1 );
247 1.1 reinoud vidcvideo_write ( VIDC_CP2, vidc->cp2 );
248 1.1 reinoud vidcvideo_write ( VIDC_CP3, vidc->cp3 );
249 1.1 reinoud vidcvideo_write ( VIDC_HCR, vidc->hcr );
250 1.1 reinoud vidcvideo_write ( VIDC_HSWR, vidc->hswr );
251 1.1 reinoud vidcvideo_write ( VIDC_HBSR, vidc->hbsr );
252 1.1 reinoud vidcvideo_write ( VIDC_HDSR, vidc->hdsr );
253 1.1 reinoud vidcvideo_write ( VIDC_HDER, vidc->hder );
254 1.1 reinoud vidcvideo_write ( VIDC_HBER, vidc->hber );
255 1.1 reinoud vidcvideo_write ( VIDC_HCSR, vidc->hcsr );
256 1.1 reinoud vidcvideo_write ( VIDC_HIR, vidc->hir );
257 1.1 reinoud vidcvideo_write ( VIDC_VCR, vidc->vcr );
258 1.1 reinoud vidcvideo_write ( VIDC_VSWR, vidc->vswr );
259 1.1 reinoud vidcvideo_write ( VIDC_VBSR, vidc->vbsr );
260 1.1 reinoud vidcvideo_write ( VIDC_VDSR, vidc->vdsr );
261 1.1 reinoud vidcvideo_write ( VIDC_VDER, vidc->vder );
262 1.1 reinoud vidcvideo_write ( VIDC_VBER, vidc->vber );
263 1.1 reinoud vidcvideo_write ( VIDC_VCSR, vidc->vcsr );
264 1.1 reinoud vidcvideo_write ( VIDC_VCER, vidc->vcer );
265 1.1 reinoud /*
266 1.1 reinoud * Right, dunno what to set these to yet, but let's keep RiscOS's
267 1.1 reinoud * ones for now, until the time is right to finish this code
268 1.1 reinoud */
269 1.1 reinoud
270 1.1 reinoud /* vidcvideo_write ( VIDC_EREG, vidc->ereg ); */
271 1.1 reinoud /* vidcvideo_write ( VIDC_FSYNREG, vidc->fsynreg ); */
272 1.1 reinoud /* vidcvideo_write ( VIDC_CONREG, vidc->conreg ); */
273 1.1 reinoud /* vidcvideo_write ( VIDC_DCTL, vidc->dctl ); */
274 1.1 reinoud
275 1.15 reinoud vidcvideo_setpalette(vidc);
276 1.1 reinoud }
277 1.1 reinoud
278 1.1 reinoud
279 1.1 reinoud void
280 1.21 bjh21 vidcvideo_getstate(struct vidc_state *vidc)
281 1.1 reinoud {
282 1.21 bjh21
283 1.1 reinoud *vidc = *vidc_current;
284 1.1 reinoud }
285 1.1 reinoud
286 1.1 reinoud
287 1.1 reinoud void
288 1.21 bjh21 vidcvideo_getmode(struct vidc_mode *mode)
289 1.1 reinoud {
290 1.21 bjh21
291 1.1 reinoud *mode = *vidc_currentmode;
292 1.1 reinoud }
293 1.1 reinoud
294 1.1 reinoud
295 1.1 reinoud static int
296 1.1 reinoud vidcvideo_coldinit(void)
297 1.1 reinoud {
298 1.1 reinoud int found;
299 1.23 bjh21 int i;
300 1.1 reinoud
301 1.1 reinoud /* Blank out the cursor */
302 1.1 reinoud
303 1.1 reinoud vidcvideo_write(VIDC_CP1, 0x0);
304 1.1 reinoud vidcvideo_write(VIDC_CP2, 0x0);
305 1.1 reinoud vidcvideo_write(VIDC_CP3, 0x0);
306 1.1 reinoud
307 1.1 reinoud dispbase = vmem_base = dispstart = videomemory.vidm_vbase;
308 1.1 reinoud phys_base = videomemory.vidm_pbase;
309 1.1 reinoud
310 1.1 reinoud /* Nut - should be using videomemory.vidm_size - mark */
311 1.1 reinoud if (videomemory.vidm_type == VIDEOMEM_TYPE_DRAM) {
312 1.1 reinoud dispsize = videomemory.vidm_size;
313 1.1 reinoud transfersize = 16;
314 1.1 reinoud } else {
315 1.16 thorpej dispsize = bootconfig.vram[0].pages * PAGE_SIZE;
316 1.1 reinoud transfersize = dispsize >> 10;
317 1.21 bjh21 }
318 1.1 reinoud
319 1.1 reinoud ptov = dispbase - phys_base;
320 1.1 reinoud
321 1.1 reinoud dispend = dispstart+dispsize;
322 1.1 reinoud
323 1.1 reinoud /* try to find the current mode from the bootloader in my table */
324 1.1 reinoud vidc_currentmode = &vidcmodes[0];
325 1.1 reinoud found = 0;
326 1.23 bjh21 for (i = 0; vidcmodes[i].timings.dot_clock != 0; i++) {
327 1.23 bjh21 if (vidcmodes[i].timings.hdisplay == bootconfig.width + 1
328 1.23 bjh21 && vidcmodes[i].timings.vdisplay == bootconfig.height + 1
329 1.23 bjh21 && vidcmodes[i].frame_rate == bootconfig.framerate) {
330 1.23 bjh21 vidc_currentmode = &vidcmodes[i];
331 1.1 reinoud found = 1;
332 1.1 reinoud }
333 1.1 reinoud }
334 1.1 reinoud
335 1.1 reinoud /* if not found choose first mode but dont be picky on the framerate */
336 1.1 reinoud if (!found) {
337 1.23 bjh21 for (i = 0; vidcmodes[i].timings.dot_clock != 0; i++) {
338 1.23 bjh21 if (vidcmodes[i].timings.hdisplay ==
339 1.23 bjh21 bootconfig.width + 1
340 1.23 bjh21 && vidcmodes[i].timings.vdisplay ==
341 1.23 bjh21 bootconfig.height + 1) {
342 1.23 bjh21 vidc_currentmode = &vidcmodes[i];
343 1.1 reinoud found = 1;
344 1.1 reinoud }
345 1.1 reinoud }
346 1.1 reinoud }
347 1.1 reinoud
348 1.1 reinoud vidc_currentmode->log2_bpp = bootconfig.log2_bpp;
349 1.1 reinoud
350 1.1 reinoud dispstart = dispbase;
351 1.1 reinoud dispend = dispstart+dispsize;
352 1.1 reinoud
353 1.1 reinoud IOMD_WRITE_WORD(IOMD_VIDINIT, dispstart-ptov);
354 1.1 reinoud IOMD_WRITE_WORD(IOMD_VIDSTART, dispstart-ptov);
355 1.1 reinoud IOMD_WRITE_WORD(IOMD_VIDEND, (dispend-transfersize)-ptov);
356 1.1 reinoud return 0;
357 1.1 reinoud }
358 1.1 reinoud
359 1.1 reinoud
360 1.1 reinoud /* simple function to abstract vidc variables ; returns virt start address of screen */
361 1.1 reinoud /* XXX asumption that video memory is mapped in twice */
362 1.21 bjh21 void *vidcvideo_hwscroll(int bytes)
363 1.21 bjh21 {
364 1.21 bjh21
365 1.1 reinoud dispstart += bytes;
366 1.1 reinoud if (dispstart >= dispbase + dispsize) dispstart -= dispsize;
367 1.1 reinoud if (dispstart < dispbase) dispstart += dispsize;
368 1.1 reinoud dispend = dispstart+dispsize;
369 1.1 reinoud
370 1.1 reinoud /* return the start of the bit map of the screen (left top) */
371 1.21 bjh21 return (void *)dispstart;
372 1.1 reinoud }
373 1.1 reinoud
374 1.1 reinoud
375 1.1 reinoud /* reset the HW scroll to be at the start for the benefit of f.e. X */
376 1.21 bjh21 void *vidcvideo_hwscroll_reset(void)
377 1.21 bjh21 {
378 1.21 bjh21 void *cookie = (void *)dispstart;
379 1.1 reinoud
380 1.1 reinoud dispstart = dispbase;
381 1.1 reinoud dispend = dispstart + dispsize;
382 1.1 reinoud return cookie;
383 1.1 reinoud }
384 1.1 reinoud
385 1.1 reinoud
386 1.1 reinoud /* put HW scroll back to where it was */
387 1.21 bjh21 void *vidcvideo_hwscroll_back(void *cookie)
388 1.21 bjh21 {
389 1.21 bjh21
390 1.21 bjh21 dispstart = (int)cookie;
391 1.1 reinoud dispend = dispstart + dispsize;
392 1.1 reinoud return cookie;
393 1.1 reinoud }
394 1.1 reinoud
395 1.1 reinoud
396 1.9 reinoud /* this function is to be called perferably at vsync */
397 1.21 bjh21 void vidcvideo_progr_scroll(void)
398 1.21 bjh21 {
399 1.21 bjh21
400 1.1 reinoud IOMD_WRITE_WORD(IOMD_VIDINIT, dispstart-ptov);
401 1.1 reinoud IOMD_WRITE_WORD(IOMD_VIDSTART, dispstart-ptov);
402 1.1 reinoud IOMD_WRITE_WORD(IOMD_VIDEND, (dispend-transfersize)-ptov);
403 1.1 reinoud }
404 1.1 reinoud
405 1.1 reinoud
406 1.1 reinoud /*
407 1.1 reinoud * Select a new mode by reprogramming the VIDC chip
408 1.1 reinoud * XXX this part is known not to work for 32bpp
409 1.1 reinoud */
410 1.1 reinoud
411 1.1 reinoud struct vidc_mode newmode;
412 1.1 reinoud
413 1.1 reinoud static const int bpp_mask_table[] = {
414 1.1 reinoud 0, /* 1bpp */
415 1.1 reinoud 1, /* 2bpp */
416 1.1 reinoud 2, /* 4bpp */
417 1.1 reinoud 3, /* 8bpp */
418 1.1 reinoud 4, /* 16bpp */
419 1.1 reinoud 6 /* 32bpp */
420 1.1 reinoud };
421 1.1 reinoud
422 1.1 reinoud
423 1.1 reinoud void
424 1.1 reinoud vidcvideo_setmode(struct vidc_mode *mode)
425 1.1 reinoud {
426 1.23 bjh21 struct videomode *vm;
427 1.1 reinoud int bpp_mask;
428 1.1 reinoud int ereg;
429 1.5 bjh21 int best_r, best_v;
430 1.5 bjh21 int least_error;
431 1.5 bjh21 int r, v, f;
432 1.1 reinoud
433 1.1 reinoud /*
434 1.21 bjh21 * Find out what bit mask we need to or with the vidc20
435 1.21 bjh21 * control register in order to generate the desired number of
436 1.21 bjh21 * bits per pixel. log_bpp is log base 2 of the number of
437 1.21 bjh21 * bits per pixel.
438 1.1 reinoud */
439 1.1 reinoud
440 1.1 reinoud bpp_mask = bpp_mask_table[mode->log2_bpp];
441 1.1 reinoud
442 1.1 reinoud newmode = *mode;
443 1.1 reinoud vidc_currentmode = &newmode;
444 1.23 bjh21 vm = &vidc_currentmode->timings;
445 1.1 reinoud
446 1.5 bjh21 least_error = INT_MAX;
447 1.5 bjh21 best_r = 0; best_v = 0;
448 1.5 bjh21
449 1.5 bjh21 for (v = 63; v > 0; v--) {
450 1.5 bjh21 for (r = 63; r > 0; r--) {
451 1.5 bjh21 f = ((v * vidc_fref) /1000) / r;
452 1.23 bjh21 if (least_error >= abs(f - vm->dot_clock)) {
453 1.23 bjh21 least_error = abs(f - vm->dot_clock);
454 1.5 bjh21 best_r = r;
455 1.5 bjh21 best_v = v;
456 1.1 reinoud }
457 1.1 reinoud }
458 1.5 bjh21 }
459 1.1 reinoud
460 1.5 bjh21 if (best_r > 63) best_r=63;
461 1.5 bjh21 if (best_v > 63) best_v=63;
462 1.5 bjh21 if (best_r < 1) best_r= 1;
463 1.5 bjh21 if (best_v < 1) best_v= 1;
464 1.1 reinoud
465 1.2 reinoud vidcvideo_write(VIDC_FSYNREG, (best_v-1)<<8 | (best_r-1)<<0);
466 1.1 reinoud
467 1.23 bjh21 /*
468 1.23 bjh21 * The translation from struct videomode to VIDC timings is made
469 1.23 bjh21 * fun by the fact that the VIDC counts from the start of the sync
470 1.23 bjh21 * pulse while struct videomode counts from the start of the display.
471 1.23 bjh21 */
472 1.23 bjh21 vidcvideo_write(VIDC_HSWR, (vm->hsync_end - vm->hsync_start - 8) & ~1);
473 1.23 bjh21 vidcvideo_write(VIDC_HBSR, (vm->htotal - vm->hsync_start - 12) & ~1);
474 1.23 bjh21 vidcvideo_write(VIDC_HDSR, (vm->htotal - vm->hsync_start - 18) & ~1);
475 1.23 bjh21 vidcvideo_write(VIDC_HDER,
476 1.23 bjh21 (vm->htotal - vm->hsync_start + vm->hdisplay - 18) & ~1);
477 1.23 bjh21 vidcvideo_write(VIDC_HBER,
478 1.23 bjh21 (vm->htotal - vm->hsync_start + vm->hdisplay - 12) & ~1);
479 1.23 bjh21 vidcvideo_write(VIDC_HCR, (vm->htotal - 8) & ~3);
480 1.23 bjh21
481 1.23 bjh21 vidcvideo_write(VIDC_VSWR, vm->vsync_end - vm->vsync_start - 1);
482 1.23 bjh21 vidcvideo_write(VIDC_VBSR, vm->vtotal - vm->vsync_start - 1);
483 1.23 bjh21 vidcvideo_write(VIDC_VDSR, vm->vtotal - vm->vsync_start - 1);
484 1.23 bjh21 vidcvideo_write(VIDC_VDER,
485 1.23 bjh21 vm->vtotal - vm->vsync_start + vm->vdisplay - 1);
486 1.23 bjh21 vidcvideo_write(VIDC_VBER,
487 1.23 bjh21 vm->vtotal - vm->vsync_start + vm->vdisplay - 1);
488 1.23 bjh21 /* XXX VIDC20 data sheet say to subtract 2 */
489 1.23 bjh21 vidcvideo_write(VIDC_VCR, vm->vtotal - 1);
490 1.23 bjh21
491 1.23 bjh21 IOMD_WRITE_WORD(IOMD_FSIZE, vm->vdisplay - 1);
492 1.1 reinoud
493 1.1 reinoud if (dispsize <= 1024*1024)
494 1.23 bjh21 vidcvideo_write(VIDC_DCTL, vm->hdisplay>>2 | 1<<16 | 1<<12);
495 1.1 reinoud else
496 1.23 bjh21 vidcvideo_write(VIDC_DCTL, vm->hdisplay>>2 | 3<<16 | 1<<12);
497 1.1 reinoud
498 1.1 reinoud ereg = 1<<12;
499 1.23 bjh21 if (vm->flags & VID_NHSYNC)
500 1.1 reinoud ereg |= 1<<16;
501 1.23 bjh21 if (vm->flags & VID_NVSYNC)
502 1.1 reinoud ereg |= 1<<18;
503 1.1 reinoud vidcvideo_write(VIDC_EREG, ereg);
504 1.1 reinoud if (dispsize > 1024*1024) {
505 1.23 bjh21 if (vm->hdisplay >= 800)
506 1.1 reinoud vidcvideo_write(VIDC_CONREG, 7<<8 | bpp_mask<<5);
507 1.1 reinoud else
508 1.1 reinoud vidcvideo_write(VIDC_CONREG, 6<<8 | bpp_mask<<5);
509 1.1 reinoud } else {
510 1.1 reinoud vidcvideo_write(VIDC_CONREG, 7<<8 | bpp_mask<<5);
511 1.1 reinoud }
512 1.1 reinoud }
513 1.1 reinoud
514 1.1 reinoud
515 1.7 bjh21 #if 0
516 1.1 reinoud /* not used for now */
517 1.1 reinoud void
518 1.1 reinoud vidcvideo_set_display_base(base)
519 1.1 reinoud u_int base;
520 1.1 reinoud {
521 1.1 reinoud dispstart = dispstart-dispbase + base;
522 1.1 reinoud dispbase = vmem_base = base;
523 1.1 reinoud dispend = base + dispsize;
524 1.1 reinoud ptov = dispbase - phys_base;
525 1.1 reinoud }
526 1.7 bjh21 #endif
527 1.1 reinoud
528 1.1 reinoud
529 1.1 reinoud /*
530 1.1 reinoud * Main initialisation routine for now
531 1.1 reinoud */
532 1.1 reinoud
533 1.1 reinoud static int cursor_init = 0;
534 1.1 reinoud
535 1.1 reinoud int
536 1.1 reinoud vidcvideo_init(void)
537 1.1 reinoud {
538 1.1 reinoud vidcvideo_coldinit();
539 1.1 reinoud if (cold_init && (cursor_init == 0))
540 1.1 reinoud /* vidcvideo_flash_go() */;
541 1.1 reinoud
542 1.1 reinoud /* setting a mode goes wrong in 32 bpp ... 8 and 16 seem OK */
543 1.1 reinoud vidcvideo_setmode(vidc_currentmode);
544 1.1 reinoud vidcvideo_blank(0); /* display on */
545 1.1 reinoud
546 1.12 bjh21 vidcvideo_stdpalette();
547 1.1 reinoud
548 1.1 reinoud if (cold_init == 0) {
549 1.1 reinoud vidcvideo_write(VIDC_CP1, 0x0);
550 1.1 reinoud vidcvideo_write(VIDC_CP2, 0x0);
551 1.1 reinoud vidcvideo_write(VIDC_CP3, 0x0);
552 1.21 bjh21 } else
553 1.1 reinoud vidcvideo_cursor_init(CURSOR_MAX_WIDTH, CURSOR_MAX_HEIGHT);
554 1.1 reinoud
555 1.21 bjh21 cold_init = 1;
556 1.1 reinoud return 0;
557 1.1 reinoud }
558 1.1 reinoud
559 1.1 reinoud
560 1.1 reinoud /* reinitialise the vidcvideo */
561 1.1 reinoud void
562 1.1 reinoud vidcvideo_reinit()
563 1.1 reinoud {
564 1.21 bjh21
565 1.1 reinoud vidcvideo_coldinit();
566 1.1 reinoud vidcvideo_setmode(vidc_currentmode);
567 1.1 reinoud }
568 1.1 reinoud
569 1.1 reinoud
570 1.1 reinoud int
571 1.1 reinoud vidcvideo_cursor_init(int width, int height)
572 1.1 reinoud {
573 1.1 reinoud static char *cursor_data = NULL;
574 1.1 reinoud int counter;
575 1.1 reinoud int line;
576 1.1 reinoud paddr_t pa;
577 1.1 reinoud
578 1.1 reinoud cursor_width = width;
579 1.1 reinoud cursor_height = height;
580 1.1 reinoud
581 1.1 reinoud if (!cursor_data) {
582 1.1 reinoud /* Allocate cursor memory first time round */
583 1.19 yamt cursor_data = (char *)uvm_km_alloc(kernel_map, PAGE_SIZE, 0,
584 1.19 yamt UVM_KMF_WIRED | UVM_KMF_ZERO);
585 1.1 reinoud if (!cursor_data)
586 1.14 provos panic("Cannot allocate memory for hardware cursor");
587 1.1 reinoud (void) pmap_extract(pmap_kernel(), (vaddr_t)cursor_data, &pa);
588 1.1 reinoud IOMD_WRITE_WORD(IOMD_CURSINIT, pa);
589 1.1 reinoud }
590 1.1 reinoud
591 1.1 reinoud /* Blank the cursor while initialising it's sprite */
592 1.1 reinoud
593 1.1 reinoud vidcvideo_write ( VIDC_CP1, 0x0 );
594 1.1 reinoud vidcvideo_write ( VIDC_CP2, 0x0 );
595 1.1 reinoud vidcvideo_write ( VIDC_CP3, 0x0 );
596 1.1 reinoud
597 1.1 reinoud cursor_normal = cursor_data;
598 1.1 reinoud cursor_transparent = cursor_data + (height * width);
599 1.1 reinoud
600 1.1 reinoud cursor_transparent += 32; /* ALIGN */
601 1.1 reinoud cursor_transparent = (char *)((int)cursor_transparent & (~31) );
602 1.1 reinoud
603 1.21 bjh21 for ( line = 0; line<height; ++line ) {
604 1.21 bjh21 for ( counter=0; counter<width/4;counter++ )
605 1.21 bjh21 cursor_normal[line * width + counter]=0x55; /* why 0x55 ? */
606 1.21 bjh21 for ( ; counter<8; counter++ )
607 1.21 bjh21 cursor_normal[line * width + counter]=0;
608 1.1 reinoud }
609 1.1 reinoud
610 1.21 bjh21 for ( line = 0; line<height; ++line ) {
611 1.21 bjh21 for ( counter=0; counter<width/4;counter++ )
612 1.21 bjh21 cursor_transparent[line * width + counter]=0x00;
613 1.21 bjh21 for ( ; counter<8; counter++ )
614 1.21 bjh21 cursor_transparent[line * width + counter]=0;
615 1.1 reinoud }
616 1.1 reinoud
617 1.1 reinoud
618 1.1 reinoud (void) pmap_extract(pmap_kernel(), (vaddr_t)cursor_normal,
619 1.17 matt (void *)&p_cursor_normal);
620 1.1 reinoud (void) pmap_extract(pmap_kernel(), (vaddr_t)cursor_transparent,
621 1.17 matt (void *)&p_cursor_transparent);
622 1.1 reinoud
623 1.21 bjh21 memset(cursor_normal, 0x55, width*height); /* white? */
624 1.21 bjh21 memset(cursor_transparent, 0x00, width*height);/* to see the diffence */
625 1.1 reinoud
626 1.1 reinoud /* Ok, now program the cursor; should be blank */
627 1.1 reinoud vidcvideo_enablecursor(0);
628 1.1 reinoud
629 1.1 reinoud return 0;
630 1.1 reinoud }
631 1.1 reinoud
632 1.1 reinoud
633 1.1 reinoud void
634 1.21 bjh21 vidcvideo_updatecursor(int xcur, int ycur)
635 1.1 reinoud {
636 1.23 bjh21 int frontporch = vidc_currentmode->timings.htotal -
637 1.23 bjh21 vidc_currentmode->timings.hsync_start;
638 1.23 bjh21 int topporch = vidc_currentmode->timings.vtotal -
639 1.23 bjh21 vidc_currentmode->timings.vsync_start;
640 1.1 reinoud
641 1.1 reinoud vidcvideo_write(VIDC_HCSR, frontporch -17 + xcur);
642 1.21 bjh21 vidcvideo_write(VIDC_VCSR, topporch -2 + (ycur+1)-2 + 3 -
643 1.21 bjh21 cursor_height);
644 1.1 reinoud vidcvideo_write(VIDC_VCER, topporch -2 + (ycur+3)+2 + 3 );
645 1.1 reinoud }
646 1.1 reinoud
647 1.1 reinoud
648 1.1 reinoud void
649 1.21 bjh21 vidcvideo_enablecursor(int on)
650 1.1 reinoud {
651 1.21 bjh21
652 1.21 bjh21 if (on)
653 1.1 reinoud IOMD_WRITE_WORD(IOMD_CURSINIT,p_cursor_normal);
654 1.21 bjh21 else
655 1.1 reinoud IOMD_WRITE_WORD(IOMD_CURSINIT,p_cursor_transparent);
656 1.1 reinoud vidcvideo_write ( VIDC_CP1, 0xffffff ); /* enable */
657 1.1 reinoud }
658 1.1 reinoud
659 1.11 bjh21
660 1.12 bjh21 void
661 1.12 bjh21 vidcvideo_stdpalette()
662 1.11 bjh21 {
663 1.12 bjh21 int i;
664 1.11 bjh21
665 1.12 bjh21 switch (vidc_currentmode->log2_bpp) {
666 1.12 bjh21 case 0: /* 1 bpp */
667 1.12 bjh21 case 1: /* 2 bpp */
668 1.12 bjh21 case 2: /* 4 bpp */
669 1.12 bjh21 case 3: /* 8 bpp */
670 1.12 bjh21 vidcvideo_write(VIDC_PALREG, 0x00000000);
671 1.12 bjh21 vidcvideo_write(VIDC_PALETTE, VIDC_COL( 0, 0, 0));
672 1.12 bjh21 vidcvideo_write(VIDC_PALETTE, VIDC_COL(255, 0, 0));
673 1.12 bjh21 vidcvideo_write(VIDC_PALETTE, VIDC_COL( 0, 255, 0));
674 1.12 bjh21 vidcvideo_write(VIDC_PALETTE, VIDC_COL(255, 255, 0));
675 1.12 bjh21 vidcvideo_write(VIDC_PALETTE, VIDC_COL( 0, 0, 255));
676 1.12 bjh21 vidcvideo_write(VIDC_PALETTE, VIDC_COL(255, 0, 255));
677 1.12 bjh21 vidcvideo_write(VIDC_PALETTE, VIDC_COL( 0, 255, 255));
678 1.12 bjh21 vidcvideo_write(VIDC_PALETTE, VIDC_COL(255, 255, 255));
679 1.12 bjh21 vidcvideo_write(VIDC_PALETTE, VIDC_COL(128, 128, 128));
680 1.12 bjh21 vidcvideo_write(VIDC_PALETTE, VIDC_COL(255, 128, 128));
681 1.12 bjh21 vidcvideo_write(VIDC_PALETTE, VIDC_COL(128, 255, 128));
682 1.12 bjh21 vidcvideo_write(VIDC_PALETTE, VIDC_COL(255, 255, 128));
683 1.12 bjh21 vidcvideo_write(VIDC_PALETTE, VIDC_COL(128, 128, 255));
684 1.12 bjh21 vidcvideo_write(VIDC_PALETTE, VIDC_COL(255, 128, 255));
685 1.12 bjh21 vidcvideo_write(VIDC_PALETTE, VIDC_COL(255, 255, 255));
686 1.12 bjh21 break;
687 1.12 bjh21 case 4: /* 16 bpp */
688 1.12 bjh21 /*
689 1.12 bjh21 * The use of the palette in 16-bit modes is quite
690 1.12 bjh21 * fun. Comments in linux/drivers/video/acornfb.c
691 1.12 bjh21 * imply that it goes something like this:
692 1.12 bjh21 *
693 1.12 bjh21 * red = LUT[pixel[7:0]].red
694 1.12 bjh21 * green = LUT[pixel[11:4]].green
695 1.12 bjh21 * blue = LUT[pixel[15:8]].blue
696 1.12 bjh21 *
697 1.13 bjh21 * We use 6:5:5 R:G:B cos that's what Xarm32VIDC wants.
698 1.12 bjh21 */
699 1.13 bjh21 #define RBITS 6
700 1.13 bjh21 #define GBITS 5
701 1.13 bjh21 #define BBITS 5
702 1.12 bjh21 vidcvideo_write(VIDC_PALREG, 0x00000000);
703 1.12 bjh21 for (i = 0; i < 256; i++) {
704 1.13 bjh21 int r, g, b;
705 1.12 bjh21
706 1.13 bjh21 r = i & ((1 << RBITS) - 1);
707 1.13 bjh21 g = (i >> (RBITS - 4)) & ((1 << GBITS) - 1);
708 1.13 bjh21 b = (i >> (RBITS + GBITS - 8)) & ((1 << BBITS) - 1);
709 1.12 bjh21 vidcvideo_write(VIDC_PALETTE,
710 1.13 bjh21 VIDC_COL(r << (8 - RBITS) | r >> (2 * RBITS - 8),
711 1.13 bjh21 g << (8 - GBITS) | g >> (2 * GBITS - 8),
712 1.13 bjh21 b << (8 - BBITS) | b >> (2 * BBITS - 8)));
713 1.12 bjh21 }
714 1.12 bjh21 break;
715 1.12 bjh21 case 5: /* 32 bpp */
716 1.12 bjh21 vidcvideo_write(VIDC_PALREG, 0x00000000);
717 1.12 bjh21 for (i = 0; i < 256; i++)
718 1.12 bjh21 vidcvideo_write(VIDC_PALETTE, VIDC_COL(i, i, i));
719 1.12 bjh21 break;
720 1.12 bjh21 }
721 1.11 bjh21 }
722 1.1 reinoud
723 1.1 reinoud int
724 1.21 bjh21 vidcvideo_blank(int video_off)
725 1.1 reinoud {
726 1.1 reinoud int ereg;
727 1.1 reinoud
728 1.1 reinoud ereg = 1<<12;
729 1.23 bjh21 if (vidc_currentmode->timings.flags & VID_NHSYNC)
730 1.1 reinoud ereg |= 1<<16;
731 1.23 bjh21 if (vidc_currentmode->timings.flags & VID_NVSYNC)
732 1.1 reinoud ereg |= 1<<18;
733 1.1 reinoud
734 1.21 bjh21 if (!video_off)
735 1.1 reinoud vidcvideo_write(VIDC_EREG, ereg);
736 1.21 bjh21 else
737 1.1 reinoud vidcvideo_write(VIDC_EREG, 0);
738 1.1 reinoud return 0;
739 1.1 reinoud }
740 1.1 reinoud
741 1.1 reinoud /* end of vidc20config.c */
742