bt463.c revision 1.16.6.1 1 1.16.6.1 tls /* $NetBSD: bt463.c,v 1.16.6.1 2014/08/20 00:03:37 tls Exp $ */
2 1.1 nathanw
3 1.1 nathanw /*-
4 1.1 nathanw * Copyright (c) 1998 The NetBSD Foundation, Inc.
5 1.1 nathanw * All rights reserved.
6 1.1 nathanw *
7 1.1 nathanw * This code is derived from software contributed to The NetBSD Foundation
8 1.1 nathanw * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
9 1.1 nathanw * NASA Ames Research Center.
10 1.1 nathanw *
11 1.1 nathanw * Redistribution and use in source and binary forms, with or without
12 1.1 nathanw * modification, are permitted provided that the following conditions
13 1.1 nathanw * are met:
14 1.1 nathanw * 1. Redistributions of source code must retain the above copyright
15 1.1 nathanw * notice, this list of conditions and the following disclaimer.
16 1.1 nathanw * 2. Redistributions in binary form must reproduce the above copyright
17 1.1 nathanw * notice, this list of conditions and the following disclaimer in the
18 1.1 nathanw * documentation and/or other materials provided with the distribution.
19 1.1 nathanw *
20 1.1 nathanw * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
21 1.1 nathanw * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
22 1.1 nathanw * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
23 1.1 nathanw * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
24 1.1 nathanw * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
25 1.1 nathanw * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
26 1.1 nathanw * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
27 1.1 nathanw * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
28 1.1 nathanw * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
29 1.1 nathanw * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
30 1.1 nathanw * POSSIBILITY OF SUCH DAMAGE.
31 1.1 nathanw */
32 1.1 nathanw
33 1.1 nathanw /*
34 1.1 nathanw * Copyright (c) 1995, 1996 Carnegie-Mellon University.
35 1.1 nathanw * All rights reserved.
36 1.1 nathanw *
37 1.1 nathanw * Author: Chris G. Demetriou
38 1.1 nathanw *
39 1.1 nathanw * Permission to use, copy, modify and distribute this software and
40 1.1 nathanw * its documentation is hereby granted, provided that both the copyright
41 1.1 nathanw * notice and this permission notice appear in all copies of the
42 1.1 nathanw * software, derivative works or modified versions, and any portions
43 1.1 nathanw * thereof, and that both notices appear in supporting documentation.
44 1.1 nathanw *
45 1.1 nathanw * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS"
46 1.1 nathanw * CONDITION. CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND
47 1.1 nathanw * FOR ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE.
48 1.1 nathanw *
49 1.1 nathanw * Carnegie Mellon requests users of this software to return to
50 1.1 nathanw *
51 1.1 nathanw * Software Distribution Coordinator or Software.Distribution (at) CS.CMU.EDU
52 1.1 nathanw * School of Computer Science
53 1.1 nathanw * Carnegie Mellon University
54 1.1 nathanw * Pittsburgh PA 15213-3890
55 1.1 nathanw *
56 1.1 nathanw * any improvements or extensions that they make and grant Carnegie the
57 1.1 nathanw * rights to redistribute these changes.
58 1.1 nathanw */
59 1.1 nathanw
60 1.1 nathanw /* This code was derived from and originally located in sys/dev/pci/
61 1.11 perry * NetBSD: tga_bt463.c,v 1.5 2000/03/04 10:27:59 elric Exp
62 1.1 nathanw */
63 1.6 lukem
64 1.6 lukem #include <sys/cdefs.h>
65 1.16.6.1 tls __KERNEL_RCSID(0, "$NetBSD: bt463.c,v 1.16.6.1 2014/08/20 00:03:37 tls Exp $");
66 1.1 nathanw
67 1.1 nathanw #include <sys/param.h>
68 1.1 nathanw #include <sys/systm.h>
69 1.1 nathanw #include <sys/device.h>
70 1.1 nathanw #include <sys/buf.h>
71 1.1 nathanw #include <sys/kernel.h>
72 1.1 nathanw #include <sys/malloc.h>
73 1.3 mrg
74 1.1 nathanw #include <dev/pci/pcivar.h>
75 1.1 nathanw #include <dev/pci/tgareg.h>
76 1.1 nathanw #include <dev/pci/tgavar.h>
77 1.1 nathanw #include <dev/ic/bt463reg.h>
78 1.1 nathanw #include <dev/ic/bt463var.h>
79 1.1 nathanw
80 1.1 nathanw #include <dev/wscons/wsconsio.h>
81 1.1 nathanw
82 1.1 nathanw /*
83 1.1 nathanw * Functions exported via the RAMDAC configuration table.
84 1.1 nathanw */
85 1.10 perry void bt463_init(struct ramdac_cookie *);
86 1.10 perry int bt463_set_cmap(struct ramdac_cookie *, struct wsdisplay_cmap *);
87 1.10 perry int bt463_get_cmap(struct ramdac_cookie *, struct wsdisplay_cmap *);
88 1.10 perry int bt463_set_cursor(struct ramdac_cookie *, struct wsdisplay_cursor *);
89 1.10 perry int bt463_get_cursor(struct ramdac_cookie *, struct wsdisplay_cursor *);
90 1.10 perry int bt463_set_curpos(struct ramdac_cookie *, struct wsdisplay_curpos *);
91 1.10 perry int bt463_get_curpos(struct ramdac_cookie *, struct wsdisplay_curpos *);
92 1.10 perry int bt463_get_curmax(struct ramdac_cookie *, struct wsdisplay_curpos *);
93 1.10 perry int bt463_check_curcmap(struct ramdac_cookie *,
94 1.10 perry struct wsdisplay_cursor *cursorp);
95 1.10 perry void bt463_set_curcmap(struct ramdac_cookie *,
96 1.10 perry struct wsdisplay_cursor *cursorp);
97 1.10 perry int bt463_get_curcmap(struct ramdac_cookie *,
98 1.10 perry struct wsdisplay_cursor *cursorp);
99 1.1 nathanw
100 1.1 nathanw #ifdef BT463_DEBUG
101 1.10 perry int bt463_store(void *);
102 1.10 perry int bt463_debug(void *);
103 1.10 perry int bt463_readback(void *);
104 1.10 perry void bt463_copyback(void *);
105 1.1 nathanw #endif
106 1.1 nathanw
107 1.1 nathanw struct ramdac_funcs bt463_funcsstruct = {
108 1.1 nathanw "Bt463",
109 1.1 nathanw bt463_register,
110 1.1 nathanw bt463_init,
111 1.1 nathanw bt463_set_cmap,
112 1.1 nathanw bt463_get_cmap,
113 1.1 nathanw bt463_set_cursor,
114 1.1 nathanw bt463_get_cursor,
115 1.1 nathanw bt463_set_curpos,
116 1.1 nathanw bt463_get_curpos,
117 1.1 nathanw bt463_get_curmax,
118 1.1 nathanw bt463_check_curcmap,
119 1.1 nathanw bt463_set_curcmap,
120 1.1 nathanw bt463_get_curcmap,
121 1.7 elric NULL,
122 1.1 nathanw };
123 1.1 nathanw
124 1.1 nathanw /*
125 1.1 nathanw * Private data.
126 1.1 nathanw */
127 1.1 nathanw struct bt463data {
128 1.1 nathanw void *cookie; /* This is what is passed
129 1.1 nathanw * around, and is probably
130 1.1 nathanw * struct tga_devconfig *
131 1.1 nathanw */
132 1.11 perry
133 1.10 perry int (*ramdac_sched_update)(void *, void (*)(void *));
134 1.10 perry void (*ramdac_wr)(void *, u_int, u_int8_t);
135 1.10 perry u_int8_t (*ramdac_rd)(void *, u_int);
136 1.1 nathanw
137 1.1 nathanw int changed; /* what changed; see below */
138 1.1 nathanw char curcmap_r[2]; /* cursor colormap */
139 1.1 nathanw char curcmap_g[2];
140 1.1 nathanw char curcmap_b[2];
141 1.9 chs char tmpcurcmap_r[2]; /* tmp cursor colormap */
142 1.9 chs char tmpcurcmap_g[2];
143 1.9 chs char tmpcurcmap_b[2];
144 1.1 nathanw char cmap_r[BT463_NCMAP_ENTRIES]; /* colormap */
145 1.1 nathanw char cmap_g[BT463_NCMAP_ENTRIES];
146 1.1 nathanw char cmap_b[BT463_NCMAP_ENTRIES];
147 1.1 nathanw int window_type[16]; /* 16 24-bit window type table entries */
148 1.1 nathanw };
149 1.1 nathanw
150 1.2 nathanw /* When we're doing console initialization, there's no
151 1.2 nathanw * way to get our cookie back to the video card's softc
152 1.11 perry * before we call sched_update. So we stash it here,
153 1.2 nathanw * and bt463_update will look for it here first.
154 1.2 nathanw */
155 1.2 nathanw static struct bt463data *console_data;
156 1.2 nathanw
157 1.2 nathanw
158 1.1 nathanw #define BTWREG(data, addr, val) do { bt463_wraddr((data), (addr)); \
159 1.1 nathanw (data)->ramdac_wr((data)->cookie, BT463_REG_IREG_DATA, (val)); } while (0)
160 1.1 nathanw #define BTWNREG(data, val) (data)->ramdac_wr((data)->cookie, \
161 1.1 nathanw BT463_REG_IREG_DATA, (val))
162 1.1 nathanw #define BTRREG(data, addr) (bt463_wraddr((data), (addr)), \
163 1.1 nathanw (data)->ramdac_rd((data)->cookie, BT463_REG_IREG_DATA))
164 1.1 nathanw #define BTRNREG(data) ((data)->ramdac_rd((data)->cookie, BT463_REG_IREG_DATA))
165 1.1 nathanw
166 1.1 nathanw #define DATA_CURCMAP_CHANGED 0x01 /* cursor colormap changed */
167 1.1 nathanw #define DATA_CMAP_CHANGED 0x02 /* colormap changed */
168 1.1 nathanw #define DATA_WTYPE_CHANGED 0x04 /* window type table changed */
169 1.1 nathanw #define DATA_ALL_CHANGED 0x07
170 1.1 nathanw
171 1.1 nathanw /*
172 1.1 nathanw * Internal functions.
173 1.1 nathanw */
174 1.1 nathanw
175 1.10 perry void bt463_update(void *);
176 1.1 nathanw
177 1.16.6.1 tls static inline void
178 1.16.6.1 tls bt463_wraddr(struct bt463data *data, u_int16_t ireg)
179 1.16.6.1 tls {
180 1.16.6.1 tls data->ramdac_wr(data->cookie, BT463_REG_ADDR_LOW, ireg & 0xff);
181 1.16.6.1 tls data->ramdac_wr(data->cookie, BT463_REG_ADDR_HIGH, (ireg >> 8) & 0xff);
182 1.16.6.1 tls }
183 1.11 perry
184 1.1 nathanw /*****************************************************************************/
185 1.1 nathanw
186 1.1 nathanw /*
187 1.1 nathanw * Functions exported via the RAMDAC configuration table.
188 1.1 nathanw */
189 1.1 nathanw
190 1.1 nathanw struct ramdac_funcs *
191 1.1 nathanw bt463_funcs(void)
192 1.1 nathanw {
193 1.1 nathanw return &bt463_funcsstruct;
194 1.1 nathanw }
195 1.1 nathanw
196 1.1 nathanw struct ramdac_cookie *
197 1.16 matt bt463_register(
198 1.16 matt void *v,
199 1.16 matt int (*sched_update)(void *, void (*)(void *)),
200 1.16 matt void (*wr)(void *, u_int, u_int8_t),
201 1.16 matt u_int8_t (*rd)(void *, u_int))
202 1.1 nathanw {
203 1.1 nathanw struct bt463data *data;
204 1.1 nathanw /*
205 1.1 nathanw * XXX -- comment out of date. rcd.
206 1.1 nathanw * If we should allocate a new private info struct, do so.
207 1.1 nathanw * Otherwise, use the one we have (if it's there), or
208 1.1 nathanw * use the temporary one on the stack.
209 1.1 nathanw */
210 1.1 nathanw data = malloc(sizeof *data, M_DEVBUF, M_WAITOK);
211 1.1 nathanw /* XXX -- if !data */
212 1.1 nathanw data->cookie = v;
213 1.1 nathanw data->ramdac_sched_update = sched_update;
214 1.1 nathanw data->ramdac_wr = wr;
215 1.1 nathanw data->ramdac_rd = rd;
216 1.1 nathanw return (struct ramdac_cookie *)data;
217 1.1 nathanw }
218 1.1 nathanw
219 1.1 nathanw /*
220 1.1 nathanw * This function exists solely to provide a means to init
221 1.1 nathanw * the RAMDAC without first registering. It is useful for
222 1.1 nathanw * initializing the console early on.
223 1.1 nathanw */
224 1.1 nathanw void
225 1.16 matt bt463_cninit(
226 1.16 matt void *v,
227 1.16 matt int (*sched_update)(void *, void (*)(void *)),
228 1.16 matt void (*wr)(void *, u_int, u_int8_t),
229 1.16 matt u_int8_t (*rd)(void *, u_int))
230 1.1 nathanw {
231 1.1 nathanw struct bt463data tmp, *data = &tmp;
232 1.1 nathanw data->cookie = v;
233 1.1 nathanw data->ramdac_sched_update = sched_update;
234 1.1 nathanw data->ramdac_wr = wr;
235 1.1 nathanw data->ramdac_rd = rd;
236 1.2 nathanw /* Set up console_data so that when bt463_update is called back,
237 1.2 nathanw * it can use the right information.
238 1.2 nathanw */
239 1.2 nathanw console_data = data;
240 1.1 nathanw bt463_init((struct ramdac_cookie *)data);
241 1.2 nathanw console_data = NULL;
242 1.1 nathanw }
243 1.1 nathanw
244 1.1 nathanw void
245 1.14 dsl bt463_init(struct ramdac_cookie *rc)
246 1.1 nathanw {
247 1.1 nathanw struct bt463data *data = (struct bt463data *)rc;
248 1.1 nathanw
249 1.1 nathanw int i;
250 1.1 nathanw
251 1.1 nathanw /*
252 1.1 nathanw * Init the BT463 for normal operation.
253 1.1 nathanw */
254 1.1 nathanw
255 1.1 nathanw
256 1.1 nathanw /*
257 1.1 nathanw * Setup:
258 1.1 nathanw * reg 0: 4:1 multiplexing, 25/75 blink.
259 1.11 perry * reg 1: Overlay mapping: mapped to common palette,
260 1.1 nathanw * 14 window type entries, 24-plane configuration mode,
261 1.11 perry * 4 overlay planes, underlays disabled, no cursor.
262 1.1 nathanw * reg 2: sync-on-green enabled, pedestal enabled.
263 1.1 nathanw */
264 1.1 nathanw
265 1.1 nathanw BTWREG(data, BT463_IREG_COMMAND_0, 0x40);
266 1.1 nathanw BTWREG(data, BT463_IREG_COMMAND_1, 0x48);
267 1.7 elric BTWREG(data, BT463_IREG_COMMAND_2, 0x40);
268 1.1 nathanw
269 1.1 nathanw /*
270 1.1 nathanw * Initialize the read mask.
271 1.1 nathanw */
272 1.1 nathanw bt463_wraddr(data, BT463_IREG_READ_MASK_P0_P7);
273 1.1 nathanw for (i = 0; i < 4; i++)
274 1.1 nathanw BTWNREG(data, 0xff);
275 1.1 nathanw
276 1.1 nathanw /*
277 1.1 nathanw * Initialize the blink mask.
278 1.1 nathanw */
279 1.1 nathanw bt463_wraddr(data, BT463_IREG_BLINK_MASK_P0_P7);
280 1.1 nathanw for (i = 0; i < 4; i++)
281 1.1 nathanw BTWNREG(data, 0);
282 1.1 nathanw
283 1.1 nathanw
284 1.1 nathanw /*
285 1.1 nathanw * Clear test register
286 1.1 nathanw */
287 1.1 nathanw BTWREG(data, BT463_IREG_TEST, 0);
288 1.1 nathanw
289 1.1 nathanw /*
290 1.5 wiz * Initialize the RAMDAC info struct to hold all of our
291 1.1 nathanw * data, and fill it in.
292 1.1 nathanw */
293 1.1 nathanw data->changed = DATA_ALL_CHANGED;
294 1.1 nathanw
295 1.1 nathanw /* initial cursor colormap: 0 is black, 1 is white */
296 1.1 nathanw data->curcmap_r[0] = data->curcmap_g[0] = data->curcmap_b[0] = 0;
297 1.1 nathanw data->curcmap_r[1] = data->curcmap_g[1] = data->curcmap_b[1] = 0xff;
298 1.1 nathanw
299 1.1 nathanw /* Initial colormap: 0 is black, everything else is white */
300 1.1 nathanw data->cmap_r[0] = data->cmap_g[0] = data->cmap_b[0] = 0;
301 1.1 nathanw for (i = 1; i < 256; i++)
302 1.1 nathanw data->cmap_r[i] = data->cmap_g[i] = data->cmap_b[i] = 255;
303 1.1 nathanw
304 1.1 nathanw
305 1.1 nathanw /* Initialize the window type table:
306 1.1 nathanw *
307 1.1 nathanw * Entry 0: 24-plane truecolor, overlays enabled, bypassed.
308 1.1 nathanw *
309 1.1 nathanw * Lookup table bypass: yes ( 1 << 23 & 0x800000) 800000
310 1.11 perry * Colormap address: 0x000 (0x000 << 17 & 0x7e0000) 0
311 1.1 nathanw * Overlay mask: 0xf ( 0xf << 13 & 0x01e000) 1e000
312 1.1 nathanw * Overlay location: P<27:24> ( 0 << 12 & 0x001000) 0
313 1.1 nathanw * Display mode: Truecolor ( 0 << 9 & 0x000e00) 000
314 1.1 nathanw * Number of planes: 8 ( 8 << 5 & 0x0001e0) 100
315 1.1 nathanw * Plane shift: 0 ( 0 << 0 & 0x00001f) 0
316 1.1 nathanw * --------
317 1.1 nathanw * 0x81e100
318 1.11 perry */
319 1.1 nathanw data->window_type[0] = 0x81e100;
320 1.1 nathanw
321 1.11 perry /* Entry 1: 8-plane pseudocolor in the bottom 8 bits,
322 1.11 perry * overlays enabled, colormap starting at 0.
323 1.1 nathanw *
324 1.1 nathanw * Lookup table bypass: no ( 0 << 23 & 0x800000) 0
325 1.11 perry * Colormap address: 0x000 (0x000 << 17 & 0x7e0000) 0
326 1.1 nathanw * Overlay mask: 0xf ( 0xf << 13 & 0x01e000) 0x1e000
327 1.1 nathanw * Overlay location: P<27:24> ( 0 << 12 & 0x001000) 0
328 1.1 nathanw * Display mode: Pseudocolor ( 1 << 9 & 0x000e00) 0x200
329 1.1 nathanw * Number of planes: 8 ( 8 << 5 & 0x0001e0) 0x100
330 1.1 nathanw * Plane shift: 16 ( 0x10 << 0 & 0x00001f) 10
331 1.1 nathanw * --------
332 1.1 nathanw * 0x01e310
333 1.11 perry */
334 1.1 nathanw data->window_type[1] = 0x01e310;
335 1.1 nathanw
336 1.11 perry /* The colormap interface to the world only supports one colormap,
337 1.11 perry * so having an entry for the 'alternate' colormap in the bt463
338 1.1 nathanw * probably isn't useful.
339 1.1 nathanw */
340 1.1 nathanw
341 1.11 perry /* Fill the remaining table entries with clones of entry 0 until we
342 1.1 nathanw * figure out a better use for them.
343 1.1 nathanw */
344 1.1 nathanw
345 1.1 nathanw for (i = 2; i < BT463_NWTYPE_ENTRIES; i++) {
346 1.1 nathanw data->window_type[i] = 0x81e100;
347 1.1 nathanw }
348 1.1 nathanw
349 1.1 nathanw data->ramdac_sched_update(data->cookie, bt463_update);
350 1.1 nathanw
351 1.1 nathanw }
352 1.1 nathanw
353 1.1 nathanw int
354 1.14 dsl bt463_set_cmap(struct ramdac_cookie *rc, struct wsdisplay_cmap *cmapp)
355 1.1 nathanw {
356 1.1 nathanw struct bt463data *data = (struct bt463data *)rc;
357 1.4 jdolecek u_int count, index;
358 1.9 chs uint8_t r[BT463_NCMAP_ENTRIES];
359 1.9 chs uint8_t g[BT463_NCMAP_ENTRIES];
360 1.9 chs uint8_t b[BT463_NCMAP_ENTRIES];
361 1.9 chs int s, error;
362 1.1 nathanw
363 1.4 jdolecek if (cmapp->index >= BT463_NCMAP_ENTRIES ||
364 1.8 itojun cmapp->count > BT463_NCMAP_ENTRIES - cmapp->index)
365 1.1 nathanw return (EINVAL);
366 1.1 nathanw
367 1.1 nathanw index = cmapp->index;
368 1.1 nathanw count = cmapp->count;
369 1.9 chs error = copyin(cmapp->red, &r[index], count);
370 1.9 chs if (error)
371 1.9 chs return error;
372 1.9 chs error = copyin(cmapp->green, &g[index], count);
373 1.9 chs if (error)
374 1.9 chs return error;
375 1.9 chs error = copyin(cmapp->blue, &b[index], count);
376 1.9 chs if (error)
377 1.9 chs return error;
378 1.9 chs s = spltty();
379 1.9 chs memcpy(&data->cmap_r[index], &r[index], count);
380 1.9 chs memcpy(&data->cmap_g[index], &g[index], count);
381 1.9 chs memcpy(&data->cmap_b[index], &b[index], count);
382 1.9 chs data->changed |= DATA_CMAP_CHANGED;
383 1.1 nathanw data->ramdac_sched_update(data->cookie, bt463_update);
384 1.1 nathanw splx(s);
385 1.1 nathanw return (0);
386 1.1 nathanw }
387 1.1 nathanw
388 1.1 nathanw int
389 1.14 dsl bt463_get_cmap(struct ramdac_cookie *rc, struct wsdisplay_cmap *cmapp)
390 1.1 nathanw {
391 1.1 nathanw struct bt463data *data = (struct bt463data *)rc;
392 1.8 itojun u_int count, index;
393 1.8 itojun int error;
394 1.1 nathanw
395 1.8 itojun if (cmapp->index >= BT463_NCMAP_ENTRIES ||
396 1.8 itojun cmapp->count > BT463_NCMAP_ENTRIES - cmapp->index)
397 1.1 nathanw return (EINVAL);
398 1.1 nathanw
399 1.1 nathanw count = cmapp->count;
400 1.1 nathanw index = cmapp->index;
401 1.1 nathanw
402 1.1 nathanw error = copyout(&data->cmap_r[index], cmapp->red, count);
403 1.1 nathanw if (error)
404 1.1 nathanw return (error);
405 1.1 nathanw error = copyout(&data->cmap_g[index], cmapp->green, count);
406 1.1 nathanw if (error)
407 1.1 nathanw return (error);
408 1.1 nathanw error = copyout(&data->cmap_b[index], cmapp->blue, count);
409 1.1 nathanw return (error);
410 1.1 nathanw }
411 1.1 nathanw
412 1.1 nathanw int
413 1.14 dsl bt463_check_curcmap(struct ramdac_cookie *rc, struct wsdisplay_cursor *cursorp)
414 1.1 nathanw {
415 1.9 chs struct bt463data *data = (struct bt463data *)rc;
416 1.9 chs int count, index, error;
417 1.1 nathanw
418 1.9 chs if (cursorp->cmap.index > 2 ||
419 1.9 chs (cursorp->cmap.index + cursorp->cmap.count) > 2)
420 1.1 nathanw return (EINVAL);
421 1.9 chs count = cursorp->cmap.count;
422 1.9 chs index = cursorp->cmap.index;
423 1.9 chs error = copyin(cursorp->cmap.red, &data->tmpcurcmap_r[index], count);
424 1.9 chs if (error)
425 1.9 chs return error;
426 1.9 chs error = copyin(cursorp->cmap.green, &data->tmpcurcmap_g[index], count);
427 1.9 chs if (error)
428 1.9 chs return error;
429 1.9 chs error = copyin(cursorp->cmap.blue, &data->tmpcurcmap_b[index], count);
430 1.9 chs if (error)
431 1.9 chs return error;
432 1.1 nathanw return (0);
433 1.1 nathanw }
434 1.1 nathanw
435 1.1 nathanw void
436 1.14 dsl bt463_set_curcmap(struct ramdac_cookie *rc, struct wsdisplay_cursor *cursorp)
437 1.1 nathanw {
438 1.1 nathanw struct bt463data *data = (struct bt463data *)rc;
439 1.1 nathanw int count, index;
440 1.1 nathanw
441 1.1 nathanw count = cursorp->cmap.count;
442 1.1 nathanw index = cursorp->cmap.index;
443 1.9 chs memcpy(&data->curcmap_r[index], &data->tmpcurcmap_r[index], count);
444 1.9 chs memcpy(&data->curcmap_g[index], &data->tmpcurcmap_g[index], count);
445 1.9 chs memcpy(&data->curcmap_b[index], &data->tmpcurcmap_b[index], count);
446 1.1 nathanw data->changed |= DATA_CURCMAP_CHANGED;
447 1.1 nathanw data->ramdac_sched_update(data->cookie, bt463_update);
448 1.1 nathanw }
449 1.1 nathanw
450 1.1 nathanw int
451 1.14 dsl bt463_get_curcmap(struct ramdac_cookie *rc, struct wsdisplay_cursor *cursorp)
452 1.1 nathanw {
453 1.1 nathanw struct bt463data *data = (struct bt463data *)rc;
454 1.1 nathanw int error;
455 1.1 nathanw
456 1.1 nathanw cursorp->cmap.index = 0; /* DOCMAP */
457 1.1 nathanw cursorp->cmap.count = 2;
458 1.1 nathanw if (cursorp->cmap.red != NULL) {
459 1.1 nathanw error = copyout(data->curcmap_r, cursorp->cmap.red, 2);
460 1.1 nathanw if (error)
461 1.1 nathanw return (error);
462 1.1 nathanw }
463 1.1 nathanw if (cursorp->cmap.green != NULL) {
464 1.1 nathanw error = copyout(data->curcmap_g, cursorp->cmap.green, 2);
465 1.1 nathanw if (error)
466 1.1 nathanw return (error);
467 1.1 nathanw }
468 1.1 nathanw if (cursorp->cmap.blue != NULL) {
469 1.1 nathanw error = copyout(data->curcmap_b, cursorp->cmap.blue, 2);
470 1.1 nathanw if (error)
471 1.1 nathanw return (error);
472 1.1 nathanw }
473 1.1 nathanw return (0);
474 1.1 nathanw }
475 1.1 nathanw
476 1.1 nathanw
477 1.1 nathanw /*****************************************************************************/
478 1.1 nathanw
479 1.1 nathanw /*
480 1.1 nathanw * Internal functions.
481 1.1 nathanw */
482 1.1 nathanw
483 1.1 nathanw #ifdef BT463_DEBUG
484 1.1 nathanw int bt463_store(void *v)
485 1.1 nathanw {
486 1.11 perry struct bt463data *data = (struct bt463data *)v;
487 1.1 nathanw
488 1.1 nathanw data->changed = DATA_ALL_CHANGED;
489 1.1 nathanw data->ramdac_sched_update(data->cookie, bt463_update);
490 1.1 nathanw printf("Scheduled bt463 store\n");
491 1.1 nathanw
492 1.1 nathanw return 0;
493 1.1 nathanw }
494 1.1 nathanw
495 1.1 nathanw
496 1.1 nathanw int bt463_readback(void *v)
497 1.1 nathanw {
498 1.11 perry struct bt463data *data = (struct bt463data *)v;
499 1.1 nathanw
500 1.1 nathanw data->ramdac_sched_update(data->cookie, bt463_copyback);
501 1.1 nathanw printf("Scheduled bt463 copyback\n");
502 1.1 nathanw return 0;
503 1.1 nathanw }
504 1.1 nathanw
505 1.1 nathanw int
506 1.14 dsl bt463_debug(void *v)
507 1.1 nathanw {
508 1.1 nathanw struct bt463data *data = (struct bt463data *)v;
509 1.1 nathanw int i;
510 1.1 nathanw u_int8_t val;
511 1.1 nathanw
512 1.1 nathanw printf("BT463 main regs:\n");
513 1.1 nathanw for (i = 0x200; i < 0x20F; i ++) {
514 1.1 nathanw val = BTRREG(data, i);
515 1.1 nathanw printf(" $%04x %02x\n", i, val);
516 1.1 nathanw }
517 1.1 nathanw
518 1.1 nathanw printf("BT463 revision register:\n");
519 1.1 nathanw val = BTRREG(data, 0x220);
520 1.1 nathanw printf(" $%04x %02x\n", 0x220, val);
521 1.1 nathanw
522 1.1 nathanw printf("BT463 window type table (from softc):\n");
523 1.1 nathanw
524 1.1 nathanw for (i = 0; i < BT463_NWTYPE_ENTRIES; i++) {
525 1.1 nathanw printf("%02x %06x\n", i, data->window_type[i]);
526 1.1 nathanw }
527 1.1 nathanw
528 1.1 nathanw return 0;
529 1.1 nathanw }
530 1.1 nathanw
531 1.11 perry void
532 1.14 dsl bt463_copyback(void *p)
533 1.1 nathanw {
534 1.1 nathanw struct bt463data *data = (struct bt463data *)p;
535 1.1 nathanw int i;
536 1.1 nathanw
537 1.1 nathanw for (i = 0; i < BT463_NWTYPE_ENTRIES; i++) {
538 1.1 nathanw bt463_wraddr(data, BT463_IREG_WINDOW_TYPE_TABLE + i);
539 1.1 nathanw data->window_type[i] = (BTRNREG(data) & 0xff); /* B0-7 */
540 1.1 nathanw data->window_type[i] |= (BTRNREG(data) & 0xff) << 8; /* B8-15 */
541 1.1 nathanw data->window_type[i] |= (BTRNREG(data) & 0xff) << 16; /* B16-23 */
542 1.1 nathanw }
543 1.1 nathanw }
544 1.1 nathanw #endif
545 1.1 nathanw
546 1.1 nathanw void
547 1.14 dsl bt463_update(void *p)
548 1.1 nathanw {
549 1.1 nathanw struct bt463data *data = (struct bt463data *)p;
550 1.1 nathanw int i, v;
551 1.2 nathanw
552 1.2 nathanw if (console_data != NULL) {
553 1.2 nathanw /* The cookie passed in from sched_update is incorrect. Use the
554 1.2 nathanw * right one.
555 1.2 nathanw */
556 1.2 nathanw data = console_data;
557 1.2 nathanw }
558 1.1 nathanw
559 1.1 nathanw v = data->changed;
560 1.1 nathanw
561 1.1 nathanw /* The Bt463 won't accept window type data except during a blanking
562 1.1 nathanw * interval, so we do this early in the interrupt.
563 1.11 perry * Blanking the screen might also be a good idea, but it can cause
564 1.1 nathanw * unpleasant flashing and is hard to do from this side of the
565 1.1 nathanw * ramdac interface.
566 1.1 nathanw */
567 1.1 nathanw if (v & DATA_WTYPE_CHANGED) {
568 1.1 nathanw /* spit out the window type data */
569 1.1 nathanw for (i = 0; i < BT463_NWTYPE_ENTRIES; i++) {
570 1.1 nathanw bt463_wraddr(data, BT463_IREG_WINDOW_TYPE_TABLE + i);
571 1.1 nathanw BTWNREG(data, (data->window_type[i]) & 0xff); /* B0-7 */
572 1.1 nathanw BTWNREG(data, (data->window_type[i] >> 8) & 0xff); /* B8-15 */
573 1.1 nathanw BTWNREG(data, (data->window_type[i] >> 16) & 0xff); /* B16-23 */
574 1.1 nathanw }
575 1.1 nathanw }
576 1.11 perry
577 1.1 nathanw if (v & DATA_CURCMAP_CHANGED) {
578 1.1 nathanw bt463_wraddr(data, BT463_IREG_CURSOR_COLOR_0);
579 1.1 nathanw /* spit out the cursor data */
580 1.1 nathanw for (i = 0; i < 2; i++) {
581 1.1 nathanw BTWNREG(data, data->curcmap_r[i]);
582 1.1 nathanw BTWNREG(data, data->curcmap_g[i]);
583 1.1 nathanw BTWNREG(data, data->curcmap_b[i]);
584 1.1 nathanw }
585 1.1 nathanw }
586 1.11 perry
587 1.1 nathanw if (v & DATA_CMAP_CHANGED) {
588 1.1 nathanw bt463_wraddr(data, BT463_IREG_CPALETTE_RAM);
589 1.1 nathanw /* spit out the colormap data */
590 1.1 nathanw for (i = 0; i < BT463_NCMAP_ENTRIES; i++) {
591 1.11 perry data->ramdac_wr(data->cookie, BT463_REG_CMAP_DATA,
592 1.1 nathanw data->cmap_r[i]);
593 1.11 perry data->ramdac_wr(data->cookie, BT463_REG_CMAP_DATA,
594 1.1 nathanw data->cmap_g[i]);
595 1.11 perry data->ramdac_wr(data->cookie, BT463_REG_CMAP_DATA,
596 1.1 nathanw data->cmap_b[i]);
597 1.1 nathanw }
598 1.1 nathanw }
599 1.1 nathanw
600 1.1 nathanw data->changed = 0;
601 1.1 nathanw }
602 1.1 nathanw
603 1.16 matt int
604 1.16 matt bt463_set_cursor(
605 1.16 matt struct ramdac_cookie *rc,
606 1.16 matt struct wsdisplay_cursor *cur)
607 1.1 nathanw {
608 1.1 nathanw struct bt463data *data = (struct bt463data *)rc;
609 1.1 nathanw return tga_builtin_set_cursor(data->cookie, cur);
610 1.1 nathanw }
611 1.1 nathanw
612 1.16 matt int
613 1.16 matt bt463_get_cursor(
614 1.16 matt struct ramdac_cookie *rc,
615 1.16 matt struct wsdisplay_cursor *cur)
616 1.1 nathanw {
617 1.1 nathanw struct bt463data *data = (struct bt463data *)rc;
618 1.1 nathanw return tga_builtin_get_cursor(data->cookie, cur);
619 1.1 nathanw }
620 1.1 nathanw
621 1.16 matt int
622 1.16 matt bt463_set_curpos(
623 1.16 matt struct ramdac_cookie *rc,
624 1.16 matt struct wsdisplay_curpos *cur)
625 1.1 nathanw {
626 1.1 nathanw struct bt463data *data = (struct bt463data *)rc;
627 1.1 nathanw return tga_builtin_set_curpos(data->cookie, cur);
628 1.1 nathanw }
629 1.1 nathanw
630 1.16 matt int
631 1.16 matt bt463_get_curpos(
632 1.16 matt struct ramdac_cookie *rc,
633 1.16 matt struct wsdisplay_curpos *cur)
634 1.1 nathanw {
635 1.1 nathanw struct bt463data *data = (struct bt463data *)rc;
636 1.1 nathanw return tga_builtin_get_curpos(data->cookie, cur);
637 1.1 nathanw }
638 1.1 nathanw
639 1.16 matt int
640 1.16 matt bt463_get_curmax(
641 1.16 matt struct ramdac_cookie *rc,
642 1.16 matt struct wsdisplay_curpos *cur)
643 1.1 nathanw {
644 1.1 nathanw struct bt463data *data = (struct bt463data *)rc;
645 1.1 nathanw return tga_builtin_get_curmax(data->cookie, cur);
646 1.1 nathanw }
647