pms.c revision 1.27 1 1.27 jmcneill /* $NetBSD: pms.c,v 1.27 2008/12/14 00:42:33 jmcneill Exp $ */
2 1.1 bjh21
3 1.1 bjh21 /*-
4 1.3 christos * Copyright (c) 2004 Kentaro Kurahone.
5 1.3 christos * Copyright (c) 2004 Ales Krenek.
6 1.1 bjh21 * Copyright (c) 1994 Charles M. Hannum.
7 1.1 bjh21 * Copyright (c) 1992, 1993 Erik Forsberg.
8 1.1 bjh21 * All rights reserved.
9 1.1 bjh21 *
10 1.1 bjh21 * Redistribution and use in source and binary forms, with or without
11 1.1 bjh21 * modification, are permitted provided that the following conditions
12 1.1 bjh21 * are met:
13 1.1 bjh21 * 1. Redistributions of source code must retain the above copyright
14 1.1 bjh21 * notice, this list of conditions and the following disclaimer.
15 1.1 bjh21 *
16 1.1 bjh21 * THIS SOFTWARE IS PROVIDED BY ``AS IS'' AND ANY EXPRESS OR IMPLIED
17 1.1 bjh21 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
18 1.1 bjh21 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN
19 1.1 bjh21 * NO EVENT SHALL I BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
20 1.1 bjh21 * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
21 1.1 bjh21 * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
22 1.1 bjh21 * PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
23 1.1 bjh21 * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
24 1.1 bjh21 * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
25 1.1 bjh21 * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26 1.1 bjh21 */
27 1.1 bjh21
28 1.19 dsl #include <sys/cdefs.h>
29 1.27 jmcneill __KERNEL_RCSID(0, "$NetBSD: pms.c,v 1.27 2008/12/14 00:42:33 jmcneill Exp $");
30 1.19 dsl
31 1.4 scw #include "opt_pms.h"
32 1.4 scw
33 1.1 bjh21 #include <sys/param.h>
34 1.1 bjh21 #include <sys/systm.h>
35 1.1 bjh21 #include <sys/device.h>
36 1.1 bjh21 #include <sys/ioctl.h>
37 1.1 bjh21 #include <sys/kernel.h>
38 1.1 bjh21 #include <sys/kthread.h>
39 1.1 bjh21
40 1.20 ad #include <sys/bus.h>
41 1.1 bjh21
42 1.1 bjh21 #include <dev/pckbport/pckbportvar.h>
43 1.4 scw #ifdef PMS_SYNAPTICS_TOUCHPAD
44 1.3 christos #include <dev/pckbport/synapticsvar.h>
45 1.4 scw #endif
46 1.27 jmcneill #ifdef PMS_ELANTECH_TOUCHPAD
47 1.27 jmcneill #include <dev/pckbport/elantechvar.h>
48 1.27 jmcneill #endif
49 1.1 bjh21
50 1.1 bjh21 #include <dev/pckbport/pmsreg.h>
51 1.3 christos #include <dev/pckbport/pmsvar.h>
52 1.3 christos
53 1.1 bjh21
54 1.1 bjh21 #include <dev/wscons/wsconsio.h>
55 1.1 bjh21 #include <dev/wscons/wsmousevar.h>
56 1.1 bjh21
57 1.1 bjh21 #ifdef PMSDEBUG
58 1.1 bjh21 int pmsdebug = 1;
59 1.1 bjh21 #define DPRINTF(x) if (pmsdebug) printf x
60 1.1 bjh21 #else
61 1.1 bjh21 #define DPRINTF(x)
62 1.1 bjh21 #endif
63 1.1 bjh21
64 1.7 jdolecek const enum pms_type tries[] = {
65 1.3 christos PMS_SCROLL5, PMS_SCROLL3, PMS_STANDARD, PMS_UNKNOWN
66 1.3 christos };
67 1.1 bjh21
68 1.7 jdolecek const struct pms_protocol pms_protocols[] = {
69 1.1 bjh21 { { 0, 0, 0 }, 0, "unknown protocol" },
70 1.1 bjh21 { { 0, 0, 0 }, 0, "no scroll wheel (3 buttons)" },
71 1.1 bjh21 { { 200, 100, 80 }, 3, "scroll wheel (3 buttons)" },
72 1.8 rpaulo { { 200, 200, 80 }, 4, "scroll wheel (5 buttons)" },
73 1.27 jmcneill { { 0, 0, 0 }, 0, "synaptics" },
74 1.27 jmcneill { { 0, 0, 0 }, 0, "elantech" }
75 1.1 bjh21 };
76 1.1 bjh21
77 1.1 bjh21
78 1.26 cube int pmsprobe(device_t, cfdata_t, void *);
79 1.26 cube void pmsattach(device_t, device_t, void *);
80 1.2 bjh21 void pmsinput(void *, int);
81 1.1 bjh21
82 1.25 cube CFATTACH_DECL_NEW(pms, sizeof(struct pms_softc),
83 1.1 bjh21 pmsprobe, pmsattach, NULL, NULL);
84 1.1 bjh21
85 1.2 bjh21 static int pms_protocol(pckbport_tag_t, pckbport_slot_t);
86 1.2 bjh21 static void do_enable(struct pms_softc *);
87 1.2 bjh21 static void do_disable(struct pms_softc *);
88 1.2 bjh21 static void pms_reset_thread(void*);
89 1.2 bjh21 int pms_enable(void *);
90 1.17 christos int pms_ioctl(void *, u_long, void *, int, struct lwp *);
91 1.2 bjh21 void pms_disable(void *);
92 1.22 jmcneill
93 1.24 dyoung static bool pms_suspend(device_t PMF_FN_PROTO);
94 1.24 dyoung static bool pms_resume(device_t PMF_FN_PROTO);
95 1.1 bjh21
96 1.1 bjh21 const struct wsmouse_accessops pms_accessops = {
97 1.1 bjh21 pms_enable,
98 1.1 bjh21 pms_ioctl,
99 1.1 bjh21 pms_disable,
100 1.1 bjh21 };
101 1.1 bjh21
102 1.1 bjh21 static int
103 1.2 bjh21 pms_protocol(pckbport_tag_t tag, pckbport_slot_t slot)
104 1.1 bjh21 {
105 1.1 bjh21 u_char cmd[2], resp[1];
106 1.1 bjh21 int i, j, res;
107 1.7 jdolecek const struct pms_protocol *p;
108 1.1 bjh21
109 1.1 bjh21 for (j = 0; j < sizeof(tries) / sizeof(tries[0]); ++j) {
110 1.1 bjh21 p = &pms_protocols[tries[j]];
111 1.1 bjh21 if (!p->rates[0])
112 1.1 bjh21 break;
113 1.1 bjh21 cmd[0] = PMS_SET_SAMPLE;
114 1.1 bjh21 for (i = 0; i < 3; i++) {
115 1.1 bjh21 cmd[1] = p->rates[i];
116 1.1 bjh21 res = pckbport_enqueue_cmd(tag, slot, cmd, 2, 0, 1, 0);
117 1.1 bjh21 if (res)
118 1.1 bjh21 return PMS_STANDARD;
119 1.1 bjh21 }
120 1.1 bjh21
121 1.1 bjh21 cmd[0] = PMS_SEND_DEV_ID;
122 1.1 bjh21 res = pckbport_enqueue_cmd(tag, slot, cmd, 1, 1, 1, resp);
123 1.1 bjh21 if (res)
124 1.1 bjh21 return PMS_UNKNOWN;
125 1.1 bjh21 if (resp[0] == p->response) {
126 1.1 bjh21 DPRINTF(("pms_protocol: found mouse protocol %d\n",
127 1.1 bjh21 tries[j]));
128 1.1 bjh21 return tries[j];
129 1.1 bjh21 }
130 1.1 bjh21 }
131 1.1 bjh21 DPRINTF(("pms_protocol: standard PS/2 protocol (no scroll wheel)\n"));
132 1.1 bjh21 return PMS_STANDARD;
133 1.1 bjh21 }
134 1.1 bjh21
135 1.1 bjh21 int
136 1.26 cube pmsprobe(device_t parent, cfdata_t match, void *aux)
137 1.1 bjh21 {
138 1.1 bjh21 struct pckbport_attach_args *pa = aux;
139 1.1 bjh21 u_char cmd[1], resp[2];
140 1.1 bjh21 int res;
141 1.1 bjh21
142 1.1 bjh21 if (pa->pa_slot != PCKBPORT_AUX_SLOT)
143 1.2 bjh21 return 0;
144 1.1 bjh21
145 1.1 bjh21 /* Flush any garbage. */
146 1.1 bjh21 pckbport_flush(pa->pa_tag, pa->pa_slot);
147 1.1 bjh21
148 1.1 bjh21 /* reset the device */
149 1.1 bjh21 cmd[0] = PMS_RESET;
150 1.1 bjh21 res = pckbport_poll_cmd(pa->pa_tag, pa->pa_slot, cmd, 1, 2, resp, 1);
151 1.1 bjh21 if (res) {
152 1.1 bjh21 #ifdef DEBUG
153 1.1 bjh21 printf("pmsprobe: reset error %d\n", res);
154 1.1 bjh21 #endif
155 1.2 bjh21 return 0;
156 1.1 bjh21 }
157 1.1 bjh21 if (resp[0] != PMS_RSTDONE) {
158 1.1 bjh21 printf("pmsprobe: reset response 0x%x\n", resp[0]);
159 1.2 bjh21 return 0;
160 1.1 bjh21 }
161 1.1 bjh21
162 1.1 bjh21 /* get type number (0 = mouse) */
163 1.1 bjh21 if (resp[1] != 0) {
164 1.1 bjh21 #ifdef DEBUG
165 1.1 bjh21 printf("pmsprobe: type 0x%x\n", resp[1]);
166 1.1 bjh21 #endif
167 1.2 bjh21 return 0;
168 1.1 bjh21 }
169 1.1 bjh21
170 1.2 bjh21 return 10;
171 1.1 bjh21 }
172 1.1 bjh21
173 1.1 bjh21 void
174 1.26 cube pmsattach(device_t parent, device_t self, void *aux)
175 1.1 bjh21 {
176 1.10 thorpej struct pms_softc *sc = device_private(self);
177 1.1 bjh21 struct pckbport_attach_args *pa = aux;
178 1.1 bjh21 struct wsmousedev_attach_args a;
179 1.3 christos u_char cmd[2], resp[2];
180 1.1 bjh21 int res;
181 1.1 bjh21
182 1.25 cube sc->sc_dev = self;
183 1.1 bjh21 sc->sc_kbctag = pa->pa_tag;
184 1.1 bjh21 sc->sc_kbcslot = pa->pa_slot;
185 1.1 bjh21
186 1.21 jmcneill aprint_naive("\n");
187 1.21 jmcneill aprint_normal("\n");
188 1.1 bjh21
189 1.1 bjh21 /* Flush any garbage. */
190 1.1 bjh21 pckbport_flush(pa->pa_tag, pa->pa_slot);
191 1.1 bjh21
192 1.1 bjh21 /* reset the device */
193 1.1 bjh21 cmd[0] = PMS_RESET;
194 1.1 bjh21 res = pckbport_poll_cmd(pa->pa_tag, pa->pa_slot, cmd, 1, 2, resp, 1);
195 1.1 bjh21 #ifdef DEBUG
196 1.1 bjh21 if (res || resp[0] != PMS_RSTDONE || resp[1] != 0) {
197 1.21 jmcneill aprint_error("pmsattach: reset error\n");
198 1.1 bjh21 return;
199 1.1 bjh21 }
200 1.1 bjh21 #endif
201 1.1 bjh21 sc->inputstate = 0;
202 1.1 bjh21 sc->buttons = 0;
203 1.1 bjh21 sc->protocol = PMS_UNKNOWN;
204 1.1 bjh21
205 1.4 scw #ifdef PMS_SYNAPTICS_TOUCHPAD
206 1.3 christos /* Probe for synaptics touchpad. */
207 1.3 christos if (pms_synaptics_probe_init(sc) == 0) {
208 1.3 christos sc->protocol = PMS_SYNAPTICS;
209 1.4 scw } else
210 1.4 scw #endif
211 1.27 jmcneill #ifdef PMS_ELANTECH_TOUCHPAD
212 1.27 jmcneill if (pms_elantech_probe_init(sc) == 0) {
213 1.27 jmcneill sc->protocol = PMS_ELANTECH;
214 1.27 jmcneill } else
215 1.27 jmcneill #endif
216 1.3 christos /* Install generic handler. */
217 1.3 christos pckbport_set_inputhandler(sc->sc_kbctag, sc->sc_kbcslot,
218 1.25 cube pmsinput, sc, device_xname(sc->sc_dev));
219 1.4 scw
220 1.1 bjh21 a.accessops = &pms_accessops;
221 1.1 bjh21 a.accesscookie = sc;
222 1.1 bjh21
223 1.1 bjh21 /*
224 1.1 bjh21 * Attach the wsmouse, saving a handle to it.
225 1.1 bjh21 * Note that we don't need to check this pointer against NULL
226 1.1 bjh21 * here or in pmsintr, because if this fails pms_enable() will
227 1.1 bjh21 * never be called, so pmsinput() will never be called.
228 1.1 bjh21 */
229 1.25 cube sc->sc_wsmousedev = config_found_ia(self, "wsmousedev", &a, wsmousedevprint);
230 1.1 bjh21
231 1.1 bjh21 /* no interrupts until enabled */
232 1.1 bjh21 cmd[0] = PMS_DEV_DISABLE;
233 1.1 bjh21 res = pckbport_poll_cmd(pa->pa_tag, pa->pa_slot, cmd, 1, 0, 0, 0);
234 1.1 bjh21 if (res)
235 1.21 jmcneill aprint_error("pmsattach: disable error\n");
236 1.1 bjh21 pckbport_slot_enable(sc->sc_kbctag, sc->sc_kbcslot, 0);
237 1.1 bjh21
238 1.18 ad kthread_create(PRI_NONE, 0, NULL, pms_reset_thread, sc,
239 1.25 cube &sc->sc_event_thread, device_xname(sc->sc_dev));
240 1.1 bjh21
241 1.1 bjh21 #ifndef PMS_DISABLE_POWERHOOK
242 1.1 bjh21 sc->sc_suspended = 0;
243 1.22 jmcneill #endif
244 1.22 jmcneill if (!pmf_device_register(self, pms_suspend, pms_resume))
245 1.22 jmcneill aprint_error_dev(self, "couldn't establish power handler\n");
246 1.1 bjh21 }
247 1.1 bjh21
248 1.1 bjh21 static void
249 1.2 bjh21 do_enable(struct pms_softc *sc)
250 1.1 bjh21 {
251 1.3 christos u_char cmd[2];
252 1.1 bjh21 int res;
253 1.1 bjh21
254 1.1 bjh21 sc->inputstate = 0;
255 1.1 bjh21 sc->buttons = 0;
256 1.1 bjh21
257 1.1 bjh21 pckbport_slot_enable(sc->sc_kbctag, sc->sc_kbcslot, 1);
258 1.1 bjh21
259 1.4 scw #ifdef PMS_SYNAPTICS_TOUCHPAD
260 1.3 christos if (sc->protocol == PMS_SYNAPTICS)
261 1.3 christos pms_synaptics_enable(sc);
262 1.4 scw #endif
263 1.27 jmcneill #ifdef PMS_ELANTECH_TOUCHPAD
264 1.27 jmcneill if (sc->protocol == PMS_ELANTECH)
265 1.27 jmcneill pms_elantech_enable(sc);
266 1.27 jmcneill #endif
267 1.3 christos
268 1.1 bjh21 cmd[0] = PMS_DEV_ENABLE;
269 1.3 christos res = pckbport_enqueue_cmd(sc->sc_kbctag, sc->sc_kbcslot, cmd,
270 1.3 christos 1, 0, 1, 0);
271 1.1 bjh21 if (res)
272 1.21 jmcneill aprint_error("pms_enable: command error %d\n", res);
273 1.1 bjh21
274 1.1 bjh21 if (sc->protocol == PMS_UNKNOWN)
275 1.1 bjh21 sc->protocol = pms_protocol(sc->sc_kbctag, sc->sc_kbcslot);
276 1.1 bjh21 DPRINTF(("pms_enable: using %s protocol\n",
277 1.1 bjh21 pms_protocols[sc->protocol].name));
278 1.1 bjh21 #if 0
279 1.1 bjh21 {
280 1.1 bjh21 u_char scmd[2];
281 1.1 bjh21
282 1.1 bjh21 scmd[0] = PMS_SET_RES;
283 1.1 bjh21 scmd[1] = 3; /* 8 counts/mm */
284 1.1 bjh21 res = pckbport_enqueue_cmd(sc->sc_kbctag, sc->sc_kbcslot, scmd,
285 1.1 bjh21 2, 0, 1, 0);
286 1.1 bjh21 if (res)
287 1.1 bjh21 printf("pms_enable: setup error1 (%d)\n", res);
288 1.1 bjh21
289 1.1 bjh21 scmd[0] = PMS_SET_SCALE21;
290 1.1 bjh21 res = pckbport_enqueue_cmd(sc->sc_kbctag, sc->sc_kbcslot, scmd,
291 1.1 bjh21 1, 0, 1, 0);
292 1.1 bjh21 if (res)
293 1.1 bjh21 printf("pms_enable: setup error2 (%d)\n", res);
294 1.1 bjh21
295 1.1 bjh21 scmd[0] = PMS_SET_SAMPLE;
296 1.1 bjh21 scmd[1] = 100; /* 100 samples/sec */
297 1.1 bjh21 res = pckbport_enqueue_cmd(sc->sc_kbctag, sc->sc_kbcslot, scmd,
298 1.1 bjh21 2, 0, 1, 0);
299 1.1 bjh21 if (res)
300 1.1 bjh21 printf("pms_enable: setup error3 (%d)\n", res);
301 1.1 bjh21 }
302 1.1 bjh21 #endif
303 1.1 bjh21 }
304 1.1 bjh21
305 1.1 bjh21 static void
306 1.2 bjh21 do_disable(struct pms_softc *sc)
307 1.1 bjh21 {
308 1.1 bjh21 u_char cmd[1];
309 1.1 bjh21 int res;
310 1.1 bjh21
311 1.1 bjh21 cmd[0] = PMS_DEV_DISABLE;
312 1.3 christos res = pckbport_enqueue_cmd(sc->sc_kbctag, sc->sc_kbcslot, cmd,
313 1.3 christos 1, 0, 1, 0);
314 1.1 bjh21 if (res)
315 1.21 jmcneill aprint_error("pms_disable: command error\n");
316 1.1 bjh21
317 1.1 bjh21 pckbport_slot_enable(sc->sc_kbctag, sc->sc_kbcslot, 0);
318 1.1 bjh21 }
319 1.1 bjh21
320 1.1 bjh21 int
321 1.2 bjh21 pms_enable(void *v)
322 1.1 bjh21 {
323 1.1 bjh21 struct pms_softc *sc = v;
324 1.1 bjh21 int s;
325 1.1 bjh21
326 1.1 bjh21 if (sc->sc_enabled)
327 1.1 bjh21 return EBUSY;
328 1.1 bjh21
329 1.1 bjh21 do_enable(sc);
330 1.1 bjh21
331 1.1 bjh21 s = spltty();
332 1.1 bjh21 sc->sc_enabled = 1;
333 1.1 bjh21 splx(s);
334 1.1 bjh21
335 1.1 bjh21 return 0;
336 1.1 bjh21 }
337 1.1 bjh21
338 1.1 bjh21 void
339 1.2 bjh21 pms_disable(void *v)
340 1.1 bjh21 {
341 1.1 bjh21 struct pms_softc *sc = v;
342 1.1 bjh21 int s;
343 1.1 bjh21
344 1.1 bjh21 do_disable(sc);
345 1.1 bjh21
346 1.1 bjh21 s = spltty();
347 1.1 bjh21 sc->sc_enabled = 0;
348 1.1 bjh21 splx(s);
349 1.1 bjh21 }
350 1.1 bjh21
351 1.22 jmcneill static bool
352 1.24 dyoung pms_suspend(device_t dv PMF_FN_ARGS)
353 1.22 jmcneill {
354 1.22 jmcneill struct pms_softc *sc = device_private(dv);
355 1.22 jmcneill
356 1.22 jmcneill if (sc->sc_enabled)
357 1.22 jmcneill do_disable(sc);
358 1.22 jmcneill
359 1.22 jmcneill return true;
360 1.22 jmcneill }
361 1.22 jmcneill
362 1.22 jmcneill static bool
363 1.24 dyoung pms_resume(device_t dv PMF_FN_ARGS)
364 1.1 bjh21 {
365 1.22 jmcneill struct pms_softc *sc = device_private(dv);
366 1.1 bjh21
367 1.4 scw #ifdef PMS_SYNAPTICS_TOUCHPAD
368 1.22 jmcneill if (sc->protocol == PMS_SYNAPTICS) {
369 1.22 jmcneill pms_synaptics_resume(sc);
370 1.23 jmcneill if (sc->sc_enabled) {
371 1.23 jmcneill do_enable(sc);
372 1.23 jmcneill }
373 1.22 jmcneill } else
374 1.4 scw #endif
375 1.27 jmcneill #ifdef PMS_ELANTECH_TOUCHPAD
376 1.27 jmcneill if (sc->protocol == PMS_ELANTECH) {
377 1.27 jmcneill pms_elantech_resume(sc);
378 1.27 jmcneill if (sc->sc_enabled) {
379 1.27 jmcneill do_enable(sc);
380 1.27 jmcneill }
381 1.27 jmcneill } else
382 1.27 jmcneill #endif
383 1.22 jmcneill if (sc->sc_enabled) {
384 1.22 jmcneill /* recheck protocol & init mouse */
385 1.22 jmcneill sc->protocol = PMS_UNKNOWN;
386 1.22 jmcneill do_enable(sc); /* only if we were suspended */
387 1.1 bjh21 }
388 1.22 jmcneill
389 1.22 jmcneill return true;
390 1.1 bjh21 }
391 1.1 bjh21
392 1.1 bjh21 int
393 1.17 christos pms_ioctl(void *v, u_long cmd, void *data, int flag,
394 1.16 christos struct lwp *l)
395 1.1 bjh21 {
396 1.1 bjh21 struct pms_softc *sc = v;
397 1.1 bjh21 u_char kbcmd[2];
398 1.1 bjh21 int i;
399 1.1 bjh21
400 1.1 bjh21 switch (cmd) {
401 1.1 bjh21 case WSMOUSEIO_GTYPE:
402 1.1 bjh21 *(u_int *)data = WSMOUSE_TYPE_PS2;
403 1.1 bjh21 break;
404 1.6 perry
405 1.1 bjh21 case WSMOUSEIO_SRES:
406 1.1 bjh21 i = (*(u_int *)data - 12) / 25;
407 1.6 perry
408 1.1 bjh21 if (i < 0)
409 1.1 bjh21 i = 0;
410 1.6 perry
411 1.1 bjh21 if (i > 3)
412 1.1 bjh21 i = 3;
413 1.1 bjh21
414 1.1 bjh21 kbcmd[0] = PMS_SET_RES;
415 1.6 perry kbcmd[1] = i;
416 1.6 perry i = pckbport_enqueue_cmd(sc->sc_kbctag, sc->sc_kbcslot, kbcmd,
417 1.1 bjh21 2, 0, 1, 0);
418 1.6 perry
419 1.1 bjh21 if (i)
420 1.1 bjh21 printf("pms_ioctl: SET_RES command error\n");
421 1.1 bjh21 break;
422 1.3 christos
423 1.1 bjh21 default:
424 1.2 bjh21 return EPASSTHROUGH;
425 1.1 bjh21 }
426 1.2 bjh21 return 0;
427 1.1 bjh21 }
428 1.1 bjh21
429 1.1 bjh21 static void
430 1.2 bjh21 pms_reset_thread(void *arg)
431 1.1 bjh21 {
432 1.1 bjh21 struct pms_softc *sc = arg;
433 1.1 bjh21 u_char cmd[1], resp[2];
434 1.1 bjh21 int res;
435 1.1 bjh21 int save_protocol;
436 1.1 bjh21
437 1.1 bjh21 for (;;) {
438 1.1 bjh21 tsleep(&sc->sc_enabled, PWAIT, "pmsreset", 0);
439 1.1 bjh21 #ifdef PMSDEBUG
440 1.1 bjh21 if (pmsdebug)
441 1.1 bjh21 #endif
442 1.1 bjh21 #if defined(PMSDEBUG) || defined(DIAGNOSTIC)
443 1.25 cube aprint_debug_dev(sc->sc_dev,
444 1.25 cube "resetting mouse interface\n");
445 1.1 bjh21 #endif
446 1.1 bjh21 save_protocol = sc->protocol;
447 1.1 bjh21 pms_disable(sc);
448 1.1 bjh21 cmd[0] = PMS_RESET;
449 1.3 christos res = pckbport_enqueue_cmd(sc->sc_kbctag, sc->sc_kbcslot, cmd,
450 1.3 christos 1, 2, 1, resp);
451 1.12 christos if (res) {
452 1.25 cube DPRINTF(("%s: reset error %d\n",
453 1.25 cube device_xname(sc->sc_dev), res));
454 1.12 christos }
455 1.3 christos
456 1.27 jmcneill /* For the synaptics and elantech case, leave the protocol alone. */
457 1.27 jmcneill if (sc->protocol != PMS_SYNAPTICS && sc->protocol != PMS_ELANTECH)
458 1.3 christos sc->protocol = PMS_UNKNOWN;
459 1.4 scw
460 1.1 bjh21 pms_enable(sc);
461 1.1 bjh21 if (sc->protocol != save_protocol) {
462 1.1 bjh21 #if defined(PMSDEBUG) || defined(DIAGNOSTIC)
463 1.25 cube aprint_verbose_dev(sc->sc_dev,
464 1.25 cube "protocol change, sleeping and retrying\n");
465 1.1 bjh21 #endif
466 1.1 bjh21 pms_disable(sc);
467 1.1 bjh21 cmd[0] = PMS_RESET;
468 1.1 bjh21 res = pckbport_enqueue_cmd(sc->sc_kbctag,
469 1.1 bjh21 sc->sc_kbcslot, cmd, 1, 2, 1, resp);
470 1.12 christos if (res) {
471 1.1 bjh21 DPRINTF(("%s: reset error %d\n",
472 1.25 cube device_xname(sc->sc_dev), res));
473 1.12 christos }
474 1.1 bjh21 tsleep(pms_reset_thread, PWAIT, "pmsreset", hz);
475 1.1 bjh21 cmd[0] = PMS_RESET;
476 1.1 bjh21 res = pckbport_enqueue_cmd(sc->sc_kbctag,
477 1.1 bjh21 sc->sc_kbcslot, cmd, 1, 2, 1, resp);
478 1.12 christos if (res) {
479 1.1 bjh21 DPRINTF(("%s: reset error %d\n",
480 1.25 cube device_xname(sc->sc_dev), res));
481 1.12 christos }
482 1.1 bjh21 sc->protocol = PMS_UNKNOWN; /* reprobe protocol */
483 1.1 bjh21 pms_enable(sc);
484 1.1 bjh21 #if defined(PMSDEBUG) || defined(DIAGNOSTIC)
485 1.1 bjh21 if (sc->protocol != save_protocol) {
486 1.1 bjh21 printf("%s: protocol changed.\n",
487 1.25 cube device_xname(sc->sc_dev));
488 1.1 bjh21 }
489 1.1 bjh21 #endif
490 1.1 bjh21 }
491 1.1 bjh21 }
492 1.1 bjh21 }
493 1.1 bjh21
494 1.1 bjh21 /* Masks for the first byte of a packet */
495 1.1 bjh21 #define PMS_LBUTMASK 0x01
496 1.1 bjh21 #define PMS_RBUTMASK 0x02
497 1.1 bjh21 #define PMS_MBUTMASK 0x04
498 1.1 bjh21 #define PMS_4BUTMASK 0x10
499 1.1 bjh21 #define PMS_5BUTMASK 0x20
500 1.1 bjh21
501 1.1 bjh21 void
502 1.2 bjh21 pmsinput(void *vsc, int data)
503 1.1 bjh21 {
504 1.1 bjh21 struct pms_softc *sc = vsc;
505 1.1 bjh21 u_int changed;
506 1.1 bjh21 int dx, dy, dz = 0;
507 1.1 bjh21 int newbuttons = 0;
508 1.1 bjh21
509 1.1 bjh21 if (!sc->sc_enabled) {
510 1.1 bjh21 /* Interrupts are not expected. Discard the byte. */
511 1.1 bjh21 return;
512 1.1 bjh21 }
513 1.1 bjh21
514 1.11 kardel getmicrouptime(&sc->current);
515 1.1 bjh21
516 1.1 bjh21 if (sc->inputstate > 0) {
517 1.1 bjh21 struct timeval diff;
518 1.1 bjh21
519 1.1 bjh21 timersub(&sc->current, &sc->last, &diff);
520 1.1 bjh21 /*
521 1.1 bjh21 * Empirically, the delay should be about 1700us on a standard
522 1.1 bjh21 * PS/2 port. I have seen delays as large as 4500us (rarely)
523 1.1 bjh21 * in regular use. When using a confused mouse, I generally
524 1.1 bjh21 * see delays at least as large as 30,000us. -seebs
525 1.1 bjh21 *
526 1.1 bjh21 * The thinkpad trackball returns at 22-23ms. So we use
527 1.1 bjh21 * >= 40ms. In the future, I'll implement adaptable timeout
528 1.1 bjh21 * by increasing the timeout if the mouse reset happens
529 1.1 bjh21 * too frequently -christos
530 1.1 bjh21 */
531 1.1 bjh21 if (diff.tv_sec > 0 || diff.tv_usec >= 40000) {
532 1.1 bjh21 DPRINTF(("pms_input: unusual delay (%ld.%06ld s), "
533 1.1 bjh21 "scheduling reset\n",
534 1.1 bjh21 (long)diff.tv_sec, (long)diff.tv_usec));
535 1.1 bjh21 sc->inputstate = 0;
536 1.1 bjh21 sc->sc_enabled = 0;
537 1.1 bjh21 wakeup(&sc->sc_enabled);
538 1.1 bjh21 return;
539 1.1 bjh21 }
540 1.1 bjh21 }
541 1.1 bjh21 sc->last = sc->current;
542 1.1 bjh21
543 1.1 bjh21 if (sc->inputstate == 0) {
544 1.1 bjh21 /*
545 1.2 bjh21 * Some devices (seen on trackballs anytime, and on
546 1.2 bjh21 * some mice shortly after reset) output garbage bytes
547 1.2 bjh21 * between packets. Just ignore them.
548 1.1 bjh21 */
549 1.1 bjh21 if ((data & 0xc0) != 0)
550 1.1 bjh21 return; /* not in sync yet, discard input */
551 1.1 bjh21 }
552 1.1 bjh21
553 1.1 bjh21 sc->packet[sc->inputstate++] = data & 0xff;
554 1.1 bjh21 switch (sc->inputstate) {
555 1.1 bjh21 case 0:
556 1.1 bjh21 /* no useful processing can be done yet */
557 1.1 bjh21 break;
558 1.1 bjh21
559 1.1 bjh21 case 1:
560 1.1 bjh21 /*
561 1.1 bjh21 * Why should we test for bit 0x8 and insist on it here?
562 1.1 bjh21 * The old (psm.c and psm_intelli.c) drivers didn't do
563 1.1 bjh21 * it, and there are devices where it does harm (that's
564 1.1 bjh21 * why it is not used if using PMS_STANDARD protocol).
565 1.1 bjh21 * Anyway, it does not to cause any harm to accept packets
566 1.1 bjh21 * without this bit.
567 1.1 bjh21 */
568 1.1 bjh21 #if 0
569 1.1 bjh21 if (sc->protocol == PMS_STANDARD)
570 1.1 bjh21 break;
571 1.1 bjh21 if (!(sc->packet[0] & 0x8)) {
572 1.1 bjh21 DPRINTF(("pmsinput: 0x8 not set in first byte "
573 1.1 bjh21 "[0x%02x], resetting\n", sc->packet[0]));
574 1.1 bjh21 sc->inputstate = 0;
575 1.1 bjh21 sc->sc_enabled = 0;
576 1.1 bjh21 wakeup(&sc->sc_enabled);
577 1.1 bjh21 return;
578 1.1 bjh21 }
579 1.1 bjh21 #endif
580 1.1 bjh21 break;
581 1.1 bjh21
582 1.1 bjh21 case 2:
583 1.1 bjh21 break;
584 1.1 bjh21
585 1.1 bjh21 case 4:
586 1.1 bjh21 /* Case 4 is a superset of case 3. This is *not* an accident. */
587 1.1 bjh21 if (sc->protocol == PMS_SCROLL3) {
588 1.1 bjh21 dz = sc->packet[3];
589 1.1 bjh21 if (dz >= 128)
590 1.1 bjh21 dz -= 256;
591 1.1 bjh21 if (dz == -128)
592 1.1 bjh21 dz = -127;
593 1.1 bjh21 } else if (sc->protocol == PMS_SCROLL5) {
594 1.1 bjh21 dz = sc->packet[3] & 0xf;
595 1.1 bjh21 if (dz >= 8)
596 1.1 bjh21 dz -= 16;
597 1.1 bjh21 if (sc->packet[3] & PMS_4BUTMASK)
598 1.1 bjh21 newbuttons |= 0x8;
599 1.1 bjh21 if (sc->packet[3] & PMS_5BUTMASK)
600 1.1 bjh21 newbuttons |= 0x10;
601 1.1 bjh21 } else {
602 1.1 bjh21 DPRINTF(("pmsinput: why am I looking at this byte?\n"));
603 1.1 bjh21 dz = 0;
604 1.1 bjh21 }
605 1.1 bjh21 /* FALLTHROUGH */
606 1.1 bjh21 case 3:
607 1.1 bjh21 /*
608 1.1 bjh21 * This is only an endpoint for scroll protocols with 4
609 1.1 bjh21 * bytes, or the standard protocol with 3.
610 1.1 bjh21 */
611 1.1 bjh21 if (sc->protocol != PMS_STANDARD && sc->inputstate == 3)
612 1.1 bjh21 break;
613 1.1 bjh21
614 1.1 bjh21 newbuttons |= ((sc->packet[0] & PMS_LBUTMASK) ? 0x1 : 0) |
615 1.1 bjh21 ((sc->packet[0] & PMS_MBUTMASK) ? 0x2 : 0) |
616 1.1 bjh21 ((sc->packet[0] & PMS_RBUTMASK) ? 0x4 : 0);
617 1.1 bjh21
618 1.1 bjh21 dx = sc->packet[1];
619 1.1 bjh21 if (dx >= 128)
620 1.1 bjh21 dx -= 256;
621 1.1 bjh21 if (dx == -128)
622 1.1 bjh21 dx = -127;
623 1.1 bjh21
624 1.1 bjh21 dy = sc->packet[2];
625 1.1 bjh21 if (dy >= 128)
626 1.1 bjh21 dy -= 256;
627 1.1 bjh21 if (dy == -128)
628 1.1 bjh21 dy = -127;
629 1.6 perry
630 1.1 bjh21 sc->inputstate = 0;
631 1.1 bjh21 changed = (sc->buttons ^ newbuttons);
632 1.1 bjh21 sc->buttons = newbuttons;
633 1.1 bjh21
634 1.1 bjh21 #ifdef PMSDEBUG
635 1.1 bjh21 if (sc->protocol == PMS_STANDARD) {
636 1.1 bjh21 DPRINTF(("pms: packet: 0x%02x%02x%02x\n",
637 1.1 bjh21 sc->packet[0], sc->packet[1], sc->packet[2]));
638 1.1 bjh21 } else {
639 1.1 bjh21 DPRINTF(("pms: packet: 0x%02x%02x%02x%02x\n",
640 1.1 bjh21 sc->packet[0], sc->packet[1], sc->packet[2],
641 1.1 bjh21 sc->packet[3]));
642 1.1 bjh21 }
643 1.1 bjh21 #endif
644 1.1 bjh21 if (dx || dy || dz || changed) {
645 1.1 bjh21 #ifdef PMSDEBUG
646 1.1 bjh21 DPRINTF(("pms: x %+03d y %+03d z %+03d "
647 1.1 bjh21 "buttons 0x%02x\n", dx, dy, dz, sc->buttons));
648 1.1 bjh21 #endif
649 1.1 bjh21 wsmouse_input(sc->sc_wsmousedev,
650 1.15 plunky sc->buttons, dx, dy, dz, 0,
651 1.1 bjh21 WSMOUSE_INPUT_DELTA);
652 1.1 bjh21 }
653 1.1 bjh21 memset(sc->packet, 0, 4);
654 1.1 bjh21 break;
655 1.1 bjh21
656 1.1 bjh21 /* If we get here, we have problems. */
657 1.1 bjh21 default:
658 1.1 bjh21 printf("pmsinput: very confused. resetting.\n");
659 1.1 bjh21 sc->inputstate = 0;
660 1.1 bjh21 sc->sc_enabled = 0;
661 1.1 bjh21 wakeup(&sc->sc_enabled);
662 1.1 bjh21 return;
663 1.1 bjh21 }
664 1.1 bjh21 }
665