grf.c revision 1.22 1 1.22 gehenna /* $NetBSD: grf.c,v 1.22 2002/09/06 13:18:43 gehenna Exp $ */
2 1.1 oki
3 1.1 oki /*
4 1.1 oki * Copyright (c) 1988 University of Utah.
5 1.1 oki * Copyright (c) 1990, 1993
6 1.1 oki * The Regents of the University of California. All rights reserved.
7 1.1 oki *
8 1.1 oki * This code is derived from software contributed to Berkeley by
9 1.1 oki * the Systems Programming Group of the University of Utah Computer
10 1.1 oki * Science Department.
11 1.1 oki *
12 1.1 oki * Redistribution and use in source and binary forms, with or without
13 1.1 oki * modification, are permitted provided that the following conditions
14 1.1 oki * are met:
15 1.1 oki * 1. Redistributions of source code must retain the above copyright
16 1.1 oki * notice, this list of conditions and the following disclaimer.
17 1.1 oki * 2. Redistributions in binary form must reproduce the above copyright
18 1.1 oki * notice, this list of conditions and the following disclaimer in the
19 1.1 oki * documentation and/or other materials provided with the distribution.
20 1.1 oki * 3. All advertising materials mentioning features or use of this software
21 1.1 oki * must display the following acknowledgement:
22 1.1 oki * This product includes software developed by the University of
23 1.1 oki * California, Berkeley and its contributors.
24 1.1 oki * 4. Neither the name of the University nor the names of its contributors
25 1.1 oki * may be used to endorse or promote products derived from this software
26 1.1 oki * without specific prior written permission.
27 1.1 oki *
28 1.1 oki * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
29 1.1 oki * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
30 1.1 oki * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
31 1.1 oki * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
32 1.1 oki * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
33 1.1 oki * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
34 1.1 oki * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
35 1.1 oki * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
36 1.1 oki * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
37 1.1 oki * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
38 1.1 oki * SUCH DAMAGE.
39 1.1 oki *
40 1.1 oki * from: Utah $Hdr: grf.c 1.36 93/08/13$
41 1.1 oki *
42 1.1 oki * @(#)grf.c 8.4 (Berkeley) 1/12/94
43 1.1 oki */
44 1.1 oki
45 1.1 oki /*
46 1.1 oki * Graphics display driver for the X68K machines.
47 1.1 oki * This is the hardware-independent portion of the driver.
48 1.1 oki * Hardware access is through the machine dependent grf switch routines.
49 1.1 oki */
50 1.8 thorpej
51 1.8 thorpej #include "opt_compat_hpux.h"
52 1.1 oki
53 1.1 oki #include <sys/param.h>
54 1.2 oki #include <sys/systm.h>
55 1.1 oki #include <sys/device.h>
56 1.1 oki #include <sys/proc.h>
57 1.16 minoura #include <sys/resourcevar.h>
58 1.1 oki #include <sys/ioctl.h>
59 1.1 oki #include <sys/file.h>
60 1.1 oki #include <sys/malloc.h>
61 1.1 oki #include <sys/vnode.h>
62 1.1 oki #include <sys/mman.h>
63 1.5 oki #include <sys/poll.h>
64 1.6 oki #include <sys/conf.h>
65 1.1 oki
66 1.10 minoura #include <machine/grfioctl.h>
67 1.10 minoura
68 1.1 oki #include <x68k/dev/grfvar.h>
69 1.1 oki #include <x68k/dev/itevar.h>
70 1.1 oki
71 1.1 oki #include <machine/cpu.h>
72 1.1 oki
73 1.1 oki #ifdef COMPAT_HPUX
74 1.1 oki #include <compat/hpux/hpux.h>
75 1.1 oki extern struct emul emul_hpux;
76 1.1 oki #endif
77 1.1 oki
78 1.13 mrg #include <uvm/uvm_extern.h>
79 1.14 minoura #include <uvm/uvm_map.h>
80 1.9 msaitoh
81 1.1 oki #include <miscfs/specfs/specdev.h>
82 1.1 oki
83 1.1 oki #include "ite.h"
84 1.1 oki #if NITE == 0
85 1.1 oki #define iteon(u,f)
86 1.1 oki #define iteoff(u,f)
87 1.9 msaitoh #define ite_reinit(u)
88 1.1 oki #endif
89 1.1 oki
90 1.1 oki #ifdef DEBUG
91 1.1 oki int grfdebug = 0;
92 1.1 oki #define GDB_DEVNO 0x01
93 1.1 oki #define GDB_MMAP 0x02
94 1.1 oki #define GDB_IOMAP 0x04
95 1.1 oki #define GDB_LOCK 0x08
96 1.1 oki #endif
97 1.1 oki
98 1.6 oki int grfon __P((dev_t));
99 1.6 oki int grfoff __P((dev_t));
100 1.17 simonb off_t grfaddr __P((struct grf_softc *, off_t));
101 1.6 oki int grfmap __P((dev_t, caddr_t *, struct proc *));
102 1.6 oki int grfunmap __P((dev_t, caddr_t, struct proc *));
103 1.7 thorpej
104 1.7 thorpej extern struct cfdriver grf_cd;
105 1.22 gehenna
106 1.22 gehenna dev_type_open(grfopen);
107 1.22 gehenna dev_type_close(grfclose);
108 1.22 gehenna dev_type_ioctl(grfioctl);
109 1.22 gehenna dev_type_poll(grfpoll);
110 1.22 gehenna dev_type_mmap(grfmmap);
111 1.22 gehenna
112 1.22 gehenna const struct cdevsw grf_cdevsw = {
113 1.22 gehenna grfopen, grfclose, nullread, nullwrite, grfioctl,
114 1.22 gehenna nostop, notty, grfpoll, grfmmap,
115 1.22 gehenna };
116 1.6 oki
117 1.1 oki /*ARGSUSED*/
118 1.2 oki int
119 1.6 oki grfopen(dev, flags, mode, p)
120 1.1 oki dev_t dev;
121 1.6 oki int flags, mode;
122 1.6 oki struct proc *p;
123 1.1 oki {
124 1.1 oki int unit = GRFUNIT(dev);
125 1.9 msaitoh register struct grf_softc *gp;
126 1.1 oki int error = 0;
127 1.1 oki
128 1.9 msaitoh if (unit >= grf_cd.cd_ndevs ||
129 1.9 msaitoh (gp = grf_cd.cd_devs[unit]) == NULL ||
130 1.9 msaitoh (gp->g_flags & GF_ALIVE) == 0)
131 1.9 msaitoh return (ENXIO);
132 1.9 msaitoh
133 1.1 oki if ((gp->g_flags & (GF_OPEN|GF_EXCLUDE)) == (GF_OPEN|GF_EXCLUDE))
134 1.1 oki return(EBUSY);
135 1.1 oki #ifdef COMPAT_HPUX
136 1.1 oki /*
137 1.1 oki * XXX: cannot handle both HPUX and BSD processes at the same time
138 1.1 oki */
139 1.9 msaitoh if (p->p_emul == &emul_hpux)
140 1.1 oki if (gp->g_flags & GF_BSDOPEN)
141 1.1 oki return(EBUSY);
142 1.1 oki else
143 1.1 oki gp->g_flags |= GF_HPUXOPEN;
144 1.1 oki else
145 1.1 oki if (gp->g_flags & GF_HPUXOPEN)
146 1.1 oki return(EBUSY);
147 1.1 oki else
148 1.1 oki gp->g_flags |= GF_BSDOPEN;
149 1.1 oki #endif
150 1.1 oki /*
151 1.1 oki * First open.
152 1.1 oki * XXX: always put in graphics mode.
153 1.1 oki */
154 1.1 oki error = 0;
155 1.1 oki if ((gp->g_flags & GF_OPEN) == 0) {
156 1.1 oki gp->g_flags |= GF_OPEN;
157 1.1 oki error = grfon(dev);
158 1.1 oki }
159 1.1 oki return(error);
160 1.1 oki }
161 1.1 oki
162 1.1 oki /*ARGSUSED*/
163 1.2 oki int
164 1.6 oki grfclose(dev, flags, mode, p)
165 1.1 oki dev_t dev;
166 1.6 oki int flags, mode;
167 1.6 oki struct proc *p;
168 1.1 oki {
169 1.1 oki register struct grf_softc *gp = grf_cd.cd_devs[GRFUNIT(dev)];
170 1.1 oki
171 1.9 msaitoh if ((gp->g_flags & GF_ALIVE) == 0)
172 1.9 msaitoh return (ENXIO);
173 1.9 msaitoh
174 1.1 oki (void) grfoff(dev);
175 1.1 oki #ifdef COMPAT_HPUX
176 1.1 oki (void) grfunlock(gp);
177 1.1 oki #endif
178 1.1 oki gp->g_flags &= GF_ALIVE;
179 1.1 oki return(0);
180 1.1 oki }
181 1.1 oki
182 1.1 oki /*ARGSUSED*/
183 1.2 oki int
184 1.1 oki grfioctl(dev, cmd, data, flag, p)
185 1.1 oki dev_t dev;
186 1.1 oki u_long cmd;
187 1.1 oki caddr_t data;
188 1.1 oki int flag;
189 1.1 oki struct proc *p;
190 1.1 oki {
191 1.1 oki int unit = GRFUNIT(dev);
192 1.1 oki register struct grf_softc *gp = grf_cd.cd_devs[unit];
193 1.1 oki int error;
194 1.1 oki
195 1.9 msaitoh if ((gp->g_flags & GF_ALIVE) == 0)
196 1.9 msaitoh return (ENXIO);
197 1.9 msaitoh
198 1.1 oki #ifdef COMPAT_HPUX
199 1.1 oki if (p->p_emul == &emul_hpux)
200 1.1 oki return(hpuxgrfioctl(dev, cmd, data, flag, p));
201 1.1 oki #endif
202 1.1 oki error = 0;
203 1.1 oki switch (cmd) {
204 1.1 oki
205 1.1 oki case GRFIOCGINFO:
206 1.21 wiz memcpy(data, (caddr_t)&gp->g_display, sizeof(struct grfinfo));
207 1.1 oki break;
208 1.1 oki
209 1.1 oki case GRFIOCON:
210 1.1 oki error = grfon(dev);
211 1.1 oki break;
212 1.1 oki
213 1.1 oki case GRFIOCOFF:
214 1.1 oki error = grfoff(dev);
215 1.1 oki break;
216 1.1 oki
217 1.1 oki case GRFIOCMAP:
218 1.1 oki error = grfmap(dev, (caddr_t *)data, p);
219 1.1 oki break;
220 1.1 oki
221 1.1 oki case GRFIOCUNMAP:
222 1.1 oki error = grfunmap(dev, *(caddr_t *)data, p);
223 1.1 oki break;
224 1.1 oki
225 1.1 oki case GRFSETVMODE:
226 1.1 oki error = (*gp->g_sw->gd_mode)(gp, GM_GRFSETVMODE, data);
227 1.1 oki if (error == 0)
228 1.1 oki ite_reinit(unit);
229 1.1 oki break;
230 1.1 oki
231 1.1 oki default:
232 1.1 oki error = EINVAL;
233 1.1 oki break;
234 1.1 oki
235 1.1 oki }
236 1.1 oki return(error);
237 1.1 oki }
238 1.1 oki
239 1.1 oki /*ARGSUSED*/
240 1.2 oki int
241 1.5 oki grfpoll(dev, events, p)
242 1.1 oki dev_t dev;
243 1.5 oki int events;
244 1.5 oki struct proc *p;
245 1.1 oki {
246 1.5 oki
247 1.9 msaitoh return (events & (POLLOUT | POLLWRNORM));
248 1.1 oki }
249 1.1 oki
250 1.1 oki /*ARGSUSED*/
251 1.17 simonb paddr_t
252 1.1 oki grfmmap(dev, off, prot)
253 1.1 oki dev_t dev;
254 1.17 simonb off_t off;
255 1.17 simonb int prot;
256 1.1 oki {
257 1.9 msaitoh
258 1.2 oki return (grfaddr(grf_cd.cd_devs[GRFUNIT(dev)], off));
259 1.1 oki }
260 1.1 oki
261 1.2 oki int
262 1.1 oki grfon(dev)
263 1.1 oki dev_t dev;
264 1.1 oki {
265 1.1 oki int unit = GRFUNIT(dev);
266 1.1 oki struct grf_softc *gp = grf_cd.cd_devs[unit];
267 1.1 oki
268 1.1 oki /*
269 1.1 oki * XXX: iteoff call relies on devices being in same order
270 1.1 oki * as ITEs and the fact that iteoff only uses the minor part
271 1.1 oki * of the dev arg.
272 1.1 oki */
273 1.1 oki iteoff(unit, 2);
274 1.1 oki return((*gp->g_sw->gd_mode)(gp,
275 1.1 oki (dev&GRFOVDEV) ? GM_GRFOVON : GM_GRFON,
276 1.1 oki (caddr_t)0));
277 1.1 oki }
278 1.1 oki
279 1.2 oki int
280 1.1 oki grfoff(dev)
281 1.1 oki dev_t dev;
282 1.1 oki {
283 1.1 oki int unit = GRFUNIT(dev);
284 1.1 oki struct grf_softc *gp = grf_cd.cd_devs[unit];
285 1.1 oki int error;
286 1.1 oki
287 1.1 oki (void) grfunmap(dev, (caddr_t)0, curproc);
288 1.1 oki error = (*gp->g_sw->gd_mode)(gp,
289 1.1 oki (dev&GRFOVDEV) ? GM_GRFOVOFF : GM_GRFOFF,
290 1.1 oki (caddr_t)0);
291 1.1 oki /* XXX: see comment for iteoff above */
292 1.1 oki iteon(unit, 2);
293 1.1 oki return(error);
294 1.1 oki }
295 1.1 oki
296 1.17 simonb off_t
297 1.1 oki grfaddr(gp, off)
298 1.1 oki struct grf_softc *gp;
299 1.17 simonb off_t off;
300 1.1 oki {
301 1.1 oki register struct grfinfo *gi = &gp->g_display;
302 1.1 oki
303 1.1 oki /* control registers */
304 1.1 oki if (off >= 0 && off < gi->gd_regsize)
305 1.1 oki return(((u_int)gi->gd_regaddr + off) >> PGSHIFT);
306 1.1 oki
307 1.1 oki /* frame buffer */
308 1.1 oki if (off >= gi->gd_regsize && off < gi->gd_regsize+gi->gd_fbsize) {
309 1.1 oki off -= gi->gd_regsize;
310 1.1 oki return(((u_int)gi->gd_fbaddr + off) >> PGSHIFT);
311 1.1 oki }
312 1.1 oki /* bogus */
313 1.1 oki return(-1);
314 1.1 oki }
315 1.1 oki
316 1.1 oki /*
317 1.1 oki * HP-UX compatibility routines
318 1.1 oki */
319 1.1 oki #ifdef COMPAT_HPUX
320 1.1 oki
321 1.1 oki /*ARGSUSED*/
322 1.9 msaitoh int
323 1.1 oki hpuxgrfioctl(dev, cmd, data, flag, p)
324 1.1 oki dev_t dev;
325 1.9 msaitoh int cmd;
326 1.1 oki caddr_t data;
327 1.1 oki int flag;
328 1.1 oki struct proc *p;
329 1.1 oki {
330 1.1 oki register struct grf_softc *gp = grf_cd.cd_devs[GRFUNIT(dev)];
331 1.1 oki int error;
332 1.1 oki
333 1.1 oki error = 0;
334 1.1 oki switch (cmd) {
335 1.1 oki
336 1.1 oki case GCID:
337 1.1 oki *(int *)data = gp->g_display.gd_id;
338 1.1 oki break;
339 1.1 oki
340 1.1 oki case GCON:
341 1.1 oki error = grfon(dev);
342 1.1 oki break;
343 1.1 oki
344 1.1 oki case GCOFF:
345 1.1 oki error = grfoff(dev);
346 1.1 oki break;
347 1.1 oki
348 1.1 oki case GCLOCK:
349 1.1 oki error = grflock(gp, 1);
350 1.1 oki break;
351 1.1 oki
352 1.1 oki case GCUNLOCK:
353 1.1 oki error = grfunlock(gp);
354 1.1 oki break;
355 1.1 oki
356 1.1 oki case GCAON:
357 1.1 oki case GCAOFF:
358 1.1 oki break;
359 1.1 oki
360 1.1 oki /* GCSTATIC is implied by our implementation */
361 1.1 oki case GCSTATIC_CMAP:
362 1.1 oki case GCVARIABLE_CMAP:
363 1.1 oki break;
364 1.1 oki
365 1.1 oki /* map in control regs and frame buffer */
366 1.1 oki case GCMAP:
367 1.1 oki error = grfmap(dev, (caddr_t *)data, p);
368 1.1 oki break;
369 1.1 oki
370 1.1 oki case GCUNMAP:
371 1.1 oki error = grfunmap(dev, *(caddr_t *)data, p);
372 1.1 oki /* XXX: HP-UX uses GCUNMAP to get rid of GCSLOT memory */
373 1.1 oki if (error)
374 1.1 oki error = grflckunmmap(dev, *(caddr_t *)data);
375 1.1 oki break;
376 1.1 oki
377 1.1 oki case GCSLOT:
378 1.1 oki {
379 1.1 oki struct grf_slot *sp = (struct grf_slot *)data;
380 1.1 oki
381 1.1 oki sp->slot = grffindpid(gp);
382 1.1 oki if (sp->slot) {
383 1.1 oki error = grflckmmap(dev, (caddr_t *)&sp->addr);
384 1.1 oki if (error && gp->g_pid) {
385 1.1 oki free((caddr_t)gp->g_pid, M_DEVBUF);
386 1.1 oki gp->g_pid = NULL;
387 1.1 oki }
388 1.1 oki } else
389 1.1 oki error = EINVAL; /* XXX */
390 1.1 oki break;
391 1.1 oki }
392 1.1 oki
393 1.1 oki case GCDESCRIBE:
394 1.1 oki error = (*gp->g_sw->gd_mode)(gp, GM_DESCRIBE, data);
395 1.1 oki break;
396 1.1 oki
397 1.1 oki /*
398 1.1 oki * XXX: only used right now to map in rbox control registers
399 1.1 oki * Will be replaced in the future with a real IOMAP interface.
400 1.1 oki */
401 1.1 oki case IOMAPMAP:
402 1.1 oki error = iommap(dev, (caddr_t *)data);
403 1.1 oki #if 0
404 1.1 oki /*
405 1.1 oki * It may not be worth kludging this (using p_devtmp) to
406 1.1 oki * make this work. It was an undocumented side-effect
407 1.1 oki * in HP-UX that the mapped address was the return value
408 1.1 oki * of the ioctl. The only thing I remember that counted
409 1.1 oki * on this behavior was the rbox X10 server.
410 1.1 oki */
411 1.1 oki if (!error)
412 1.1 oki u.u_r.r_val1 = *(int *)data; /* XXX: this sux */
413 1.1 oki #endif
414 1.1 oki break;
415 1.1 oki
416 1.1 oki case IOMAPUNMAP:
417 1.1 oki error = iounmmap(dev, *(caddr_t *)data);
418 1.1 oki break;
419 1.1 oki
420 1.1 oki default:
421 1.1 oki error = EINVAL;
422 1.1 oki break;
423 1.1 oki }
424 1.1 oki return(error);
425 1.1 oki }
426 1.1 oki
427 1.9 msaitoh int
428 1.1 oki grflock(gp, block)
429 1.1 oki register struct grf_softc *gp;
430 1.1 oki int block;
431 1.1 oki {
432 1.1 oki struct proc *p = curproc; /* XXX */
433 1.1 oki int error;
434 1.1 oki extern char devioc[];
435 1.1 oki
436 1.1 oki #ifdef DEBUG
437 1.1 oki if (grfdebug & GDB_LOCK)
438 1.9 msaitoh printf("grflock(%d): flags %x lockpid %x\n",
439 1.9 msaitoh p->p_pid, gp->g_flags,
440 1.1 oki gp->g_lockp ? gp->g_lockp->p_pid : -1);
441 1.1 oki #endif
442 1.1 oki if (gp->g_pid) {
443 1.1 oki #ifdef DEBUG
444 1.1 oki if (grfdebug & GDB_LOCK)
445 1.4 christos printf(" lockpslot %d lockslot %d lock[lockslot] %d\n",
446 1.1 oki gp->g_lock->gl_lockslot, gp->g_lockpslot,
447 1.1 oki gp->g_lock->gl_locks[gp->g_lockpslot]);
448 1.1 oki #endif
449 1.1 oki gp->g_lock->gl_lockslot = 0;
450 1.1 oki if (gp->g_lock->gl_locks[gp->g_lockpslot] == 0) {
451 1.1 oki gp->g_lockp = NULL;
452 1.1 oki gp->g_lockpslot = 0;
453 1.1 oki }
454 1.1 oki }
455 1.1 oki if (gp->g_lockp) {
456 1.1 oki if (gp->g_lockp == p)
457 1.1 oki return(EBUSY);
458 1.1 oki if (!block)
459 1.1 oki return(OEAGAIN);
460 1.1 oki do {
461 1.1 oki gp->g_flags |= GF_WANTED;
462 1.9 msaitoh if ((error = tsleep((caddr_t)&gp->g_flags,
463 1.9 msaitoh (PZERO+1) | PCATCH, devioc, 0)))
464 1.1 oki return (error);
465 1.1 oki } while (gp->g_lockp);
466 1.1 oki }
467 1.1 oki gp->g_lockp = p;
468 1.1 oki if (gp->g_pid) {
469 1.1 oki int slot = grffindpid(gp);
470 1.1 oki
471 1.1 oki #ifdef DEBUG
472 1.1 oki if (grfdebug & GDB_LOCK)
473 1.4 christos printf(" slot %d\n", slot);
474 1.1 oki #endif
475 1.1 oki gp->g_lockpslot = gp->g_lock->gl_lockslot = slot;
476 1.1 oki gp->g_lock->gl_locks[slot] = 1;
477 1.1 oki }
478 1.1 oki return(0);
479 1.1 oki }
480 1.1 oki
481 1.9 msaitoh int
482 1.1 oki grfunlock(gp)
483 1.1 oki register struct grf_softc *gp;
484 1.1 oki {
485 1.1 oki #ifdef DEBUG
486 1.1 oki if (grfdebug & GDB_LOCK)
487 1.9 msaitoh printf("grfunlock(%d): flags %x lockpid %d\n",
488 1.9 msaitoh curproc->p_pid, gp->g_flags,
489 1.1 oki gp->g_lockp ? gp->g_lockp->p_pid : -1);
490 1.1 oki #endif
491 1.1 oki if (gp->g_lockp != curproc)
492 1.1 oki return(EBUSY);
493 1.1 oki if (gp->g_pid) {
494 1.1 oki #ifdef DEBUG
495 1.1 oki if (grfdebug & GDB_LOCK)
496 1.4 christos printf(" lockpslot %d lockslot %d lock[lockslot] %d\n",
497 1.1 oki gp->g_lock->gl_lockslot, gp->g_lockpslot,
498 1.1 oki gp->g_lock->gl_locks[gp->g_lockpslot]);
499 1.1 oki #endif
500 1.1 oki gp->g_lock->gl_locks[gp->g_lockpslot] = 0;
501 1.1 oki gp->g_lockpslot = gp->g_lock->gl_lockslot = 0;
502 1.1 oki }
503 1.1 oki if (gp->g_flags & GF_WANTED) {
504 1.1 oki wakeup((caddr_t)&gp->g_flags);
505 1.1 oki gp->g_flags &= ~GF_WANTED;
506 1.1 oki }
507 1.1 oki gp->g_lockp = NULL;
508 1.1 oki return(0);
509 1.1 oki }
510 1.1 oki
511 1.1 oki /*
512 1.1 oki * Convert a BSD style minor devno to HPUX style.
513 1.1 oki * We cannot just create HPUX style nodes as they require 24 bits
514 1.1 oki * of minor device number and we only have 8.
515 1.1 oki * XXX: This may give the wrong result for remote stats of other
516 1.1 oki * machines where device 10 exists.
517 1.1 oki */
518 1.9 msaitoh int
519 1.1 oki grfdevno(dev)
520 1.1 oki dev_t dev;
521 1.1 oki {
522 1.1 oki int unit = GRFUNIT(dev);
523 1.9 msaitoh struct grf_softc *gp;
524 1.1 oki int newdev;
525 1.1 oki
526 1.9 msaitoh if (unit >= grf_cd.cd_ndevs ||
527 1.9 msaitoh (gp = grf_cd.cd_devs[unit]) == NULL ||
528 1.9 msaitoh (gp->g_flags&GF_ALIVE) == 0)
529 1.1 oki return(bsdtohpuxdev(dev));
530 1.1 oki /* magic major number */
531 1.1 oki newdev = 12 << 24;
532 1.1 oki /* now construct minor number */
533 1.1 oki if (gp->g_display.gd_regaddr != (caddr_t)GRFIADDR) {
534 1.1 oki int sc = patosc(gp->g_display.gd_regaddr);
535 1.1 oki newdev |= (sc << 16) | 0x200;
536 1.1 oki }
537 1.1 oki if (dev & GRFIMDEV)
538 1.1 oki newdev |= 0x02;
539 1.1 oki else if (dev & GRFOVDEV)
540 1.1 oki newdev |= 0x01;
541 1.1 oki #ifdef DEBUG
542 1.1 oki if (grfdebug & GDB_DEVNO)
543 1.4 christos printf("grfdevno: dev %x newdev %x\n", dev, newdev);
544 1.1 oki #endif
545 1.1 oki return(newdev);
546 1.1 oki }
547 1.1 oki
548 1.1 oki #endif /* COMPAT_HPUX */
549 1.1 oki
550 1.2 oki int
551 1.1 oki grfmap(dev, addrp, p)
552 1.1 oki dev_t dev;
553 1.1 oki caddr_t *addrp;
554 1.1 oki struct proc *p;
555 1.1 oki {
556 1.1 oki struct grf_softc *gp = grf_cd.cd_devs[GRFUNIT(dev)];
557 1.1 oki int len, error;
558 1.1 oki struct vnode vn;
559 1.1 oki struct specinfo si;
560 1.1 oki int flags;
561 1.1 oki
562 1.1 oki #ifdef DEBUG
563 1.1 oki if (grfdebug & GDB_MMAP)
564 1.4 christos printf("grfmap(%d): addr %p\n", p->p_pid, *addrp);
565 1.1 oki #endif
566 1.1 oki len = gp->g_display.gd_regsize + gp->g_display.gd_fbsize;
567 1.1 oki flags = MAP_SHARED;
568 1.1 oki if (*addrp)
569 1.1 oki flags |= MAP_FIXED;
570 1.1 oki else
571 1.1 oki *addrp = (caddr_t)0x1000000; /* XXX */
572 1.1 oki vn.v_type = VCHR; /* XXX */
573 1.1 oki vn.v_specinfo = &si; /* XXX */
574 1.1 oki vn.v_rdev = dev; /* XXX */
575 1.11 minoura error = uvm_mmap(&p->p_vmspace->vm_map, (vaddr_t *)addrp,
576 1.11 minoura (vsize_t)len, VM_PROT_ALL, VM_PROT_ALL,
577 1.15 thorpej flags, (caddr_t)&vn, 0,
578 1.15 thorpej p->p_rlimit[RLIMIT_MEMLOCK].rlim_cur);
579 1.1 oki if (error == 0)
580 1.1 oki (void) (*gp->g_sw->gd_mode)(gp, GM_MAP, *addrp);
581 1.1 oki return(error);
582 1.1 oki }
583 1.1 oki
584 1.2 oki int
585 1.1 oki grfunmap(dev, addr, p)
586 1.1 oki dev_t dev;
587 1.1 oki caddr_t addr;
588 1.1 oki struct proc *p;
589 1.1 oki {
590 1.1 oki struct grf_softc *gp = grf_cd.cd_devs[GRFUNIT(dev)];
591 1.11 minoura vsize_t size;
592 1.1 oki
593 1.1 oki #ifdef DEBUG
594 1.1 oki if (grfdebug & GDB_MMAP)
595 1.4 christos printf("grfunmap(%d): dev %x addr %p\n", p->p_pid, dev, addr);
596 1.1 oki #endif
597 1.1 oki if (addr == 0)
598 1.1 oki return(EINVAL); /* XXX: how do we deal with this? */
599 1.1 oki (void) (*gp->g_sw->gd_mode)(gp, GM_UNMAP, 0);
600 1.1 oki size = round_page(gp->g_display.gd_regsize + gp->g_display.gd_fbsize);
601 1.20 chs uvm_unmap(&p->p_vmspace->vm_map, (vaddr_t)addr,
602 1.12 chuck (vaddr_t)addr + size);
603 1.20 chs return 0;
604 1.1 oki }
605 1.1 oki
606 1.1 oki #ifdef COMPAT_HPUX
607 1.9 msaitoh int
608 1.1 oki iommap(dev, addrp)
609 1.1 oki dev_t dev;
610 1.1 oki caddr_t *addrp;
611 1.1 oki {
612 1.1 oki
613 1.1 oki #ifdef DEBUG
614 1.1 oki if (grfdebug & (GDB_MMAP|GDB_IOMAP))
615 1.9 msaitoh printf("iommap(%d): addr %p\n", curproc->p_pid, *addrp);
616 1.1 oki #endif
617 1.1 oki return(EINVAL);
618 1.1 oki }
619 1.1 oki
620 1.9 msaitoh int
621 1.1 oki iounmmap(dev, addr)
622 1.1 oki dev_t dev;
623 1.1 oki caddr_t addr;
624 1.1 oki {
625 1.9 msaitoh #ifdef DEBUG
626 1.1 oki int unit = minor(dev);
627 1.1 oki
628 1.1 oki if (grfdebug & (GDB_MMAP|GDB_IOMAP))
629 1.9 msaitoh printf("iounmmap(%d): id %d addr %p\n",
630 1.1 oki curproc->p_pid, unit, addr);
631 1.1 oki #endif
632 1.1 oki return(0);
633 1.1 oki }
634 1.1 oki
635 1.1 oki /*
636 1.1 oki * Processes involved in framebuffer mapping via GCSLOT are recorded in
637 1.1 oki * an array of pids. The first element is used to record the last slot used
638 1.1 oki * (for faster lookups). The remaining elements record up to GRFMAXLCK-1
639 1.1 oki * process ids. Returns a slot number between 1 and GRFMAXLCK or 0 if no
640 1.1 oki * slot is available.
641 1.1 oki */
642 1.9 msaitoh int
643 1.1 oki grffindpid(gp)
644 1.1 oki struct grf_softc *gp;
645 1.1 oki {
646 1.1 oki register short pid, *sp;
647 1.1 oki register int i, limit;
648 1.1 oki int ni;
649 1.1 oki
650 1.1 oki if (gp->g_pid == NULL) {
651 1.1 oki gp->g_pid = (short *)
652 1.1 oki malloc(GRFMAXLCK * sizeof(short), M_DEVBUF, M_WAITOK);
653 1.21 wiz memset((caddr_t)gp->g_pid, 0, GRFMAXLCK * sizeof(short));
654 1.1 oki }
655 1.1 oki pid = curproc->p_pid;
656 1.1 oki ni = limit = gp->g_pid[0];
657 1.1 oki for (i = 1, sp = &gp->g_pid[1]; i <= limit; i++, sp++) {
658 1.1 oki if (*sp == pid)
659 1.1 oki goto done;
660 1.1 oki if (*sp == 0)
661 1.1 oki ni = i;
662 1.1 oki }
663 1.1 oki i = ni;
664 1.1 oki if (i < limit) {
665 1.1 oki gp->g_pid[i] = pid;
666 1.1 oki goto done;
667 1.1 oki }
668 1.1 oki if (++i == GRFMAXLCK)
669 1.1 oki return(0);
670 1.1 oki gp->g_pid[0] = i;
671 1.1 oki gp->g_pid[i] = pid;
672 1.1 oki done:
673 1.1 oki #ifdef DEBUG
674 1.1 oki if (grfdebug & GDB_LOCK)
675 1.4 christos printf("grffindpid(%d): slot %d of %d\n",
676 1.1 oki pid, i, gp->g_pid[0]);
677 1.1 oki #endif
678 1.1 oki return(i);
679 1.1 oki }
680 1.1 oki
681 1.9 msaitoh void
682 1.1 oki grfrmpid(gp)
683 1.1 oki struct grf_softc *gp;
684 1.1 oki {
685 1.1 oki register short pid, *sp;
686 1.1 oki register int limit, i;
687 1.1 oki int mi;
688 1.1 oki
689 1.1 oki if (gp->g_pid == NULL || (limit = gp->g_pid[0]) == 0)
690 1.1 oki return;
691 1.1 oki pid = curproc->p_pid;
692 1.1 oki limit = gp->g_pid[0];
693 1.1 oki mi = 0;
694 1.1 oki for (i = 1, sp = &gp->g_pid[1]; i <= limit; i++, sp++) {
695 1.1 oki if (*sp == pid)
696 1.1 oki *sp = 0;
697 1.1 oki else if (*sp)
698 1.1 oki mi = i;
699 1.1 oki }
700 1.1 oki i = mi;
701 1.1 oki if (i < limit)
702 1.1 oki gp->g_pid[0] = i;
703 1.1 oki #ifdef DEBUG
704 1.1 oki if (grfdebug & GDB_LOCK)
705 1.4 christos printf("grfrmpid(%d): slot %d of %d\n",
706 1.1 oki pid, sp-gp->g_pid, gp->g_pid[0]);
707 1.1 oki #endif
708 1.1 oki }
709 1.1 oki
710 1.9 msaitoh int
711 1.1 oki grflckmmap(dev, addrp)
712 1.1 oki dev_t dev;
713 1.1 oki caddr_t *addrp;
714 1.1 oki {
715 1.1 oki #ifdef DEBUG
716 1.1 oki struct proc *p = curproc; /* XXX */
717 1.1 oki
718 1.1 oki if (grfdebug & (GDB_MMAP|GDB_LOCK))
719 1.9 msaitoh printf("grflckmmap(%d): addr %p\n",
720 1.1 oki p->p_pid, *addrp);
721 1.1 oki #endif
722 1.1 oki return(EINVAL);
723 1.1 oki }
724 1.1 oki
725 1.9 msaitoh int
726 1.1 oki grflckunmmap(dev, addr)
727 1.1 oki dev_t dev;
728 1.1 oki caddr_t addr;
729 1.1 oki {
730 1.1 oki #ifdef DEBUG
731 1.1 oki int unit = minor(dev);
732 1.1 oki
733 1.1 oki if (grfdebug & (GDB_MMAP|GDB_LOCK))
734 1.9 msaitoh printf("grflckunmmap(%d): id %d addr %p\n",
735 1.1 oki curproc->p_pid, unit, addr);
736 1.1 oki #endif
737 1.1 oki return(EINVAL);
738 1.1 oki }
739 1.1 oki #endif /* COMPAT_HPUX */
740