tctrl.c revision 1.37.2.1 1 1.37.2.1 ad /* $NetBSD: tctrl.c,v 1.37.2.1 2007/05/27 12:28:12 ad Exp $ */
2 1.1 matt
3 1.1 matt /*-
4 1.30 macallan * Copyright (c) 1998, 2005, 2006 The NetBSD Foundation, Inc.
5 1.1 matt * All rights reserved.
6 1.1 matt *
7 1.1 matt * This code is derived from software contributed to The NetBSD Foundation
8 1.1 matt * by Matt Thomas.
9 1.1 matt *
10 1.1 matt * Redistribution and use in source and binary forms, with or without
11 1.1 matt * modification, are permitted provided that the following conditions
12 1.1 matt * are met:
13 1.1 matt * 1. Redistributions of source code must retain the above copyright
14 1.1 matt * notice, this list of conditions and the following disclaimer.
15 1.1 matt * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 matt * notice, this list of conditions and the following disclaimer in the
17 1.1 matt * documentation and/or other materials provided with the distribution.
18 1.1 matt * 3. All advertising materials mentioning features or use of this software
19 1.1 matt * must display the following acknowledgement:
20 1.1 matt * This product includes software developed by the NetBSD
21 1.1 matt * Foundation, Inc. and its contributors.
22 1.1 matt * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.1 matt * contributors may be used to endorse or promote products derived
24 1.1 matt * from this software without specific prior written permission.
25 1.1 matt *
26 1.1 matt * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.1 matt * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.1 matt * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.1 matt * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.1 matt * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.1 matt * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.1 matt * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.1 matt * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.1 matt * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.1 matt * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.1 matt * POSSIBILITY OF SUCH DAMAGE.
37 1.1 matt */
38 1.25 lukem
39 1.25 lukem #include <sys/cdefs.h>
40 1.37.2.1 ad __KERNEL_RCSID(0, "$NetBSD: tctrl.c,v 1.37.2.1 2007/05/27 12:28:12 ad Exp $");
41 1.1 matt
42 1.1 matt #include <sys/param.h>
43 1.1 matt #include <sys/systm.h>
44 1.1 matt #include <sys/ioctl.h>
45 1.1 matt #include <sys/select.h>
46 1.1 matt #include <sys/tty.h>
47 1.1 matt #include <sys/proc.h>
48 1.1 matt #include <sys/user.h>
49 1.1 matt #include <sys/conf.h>
50 1.1 matt #include <sys/file.h>
51 1.1 matt #include <sys/uio.h>
52 1.1 matt #include <sys/kernel.h>
53 1.30 macallan #include <sys/kthread.h>
54 1.1 matt #include <sys/syslog.h>
55 1.1 matt #include <sys/types.h>
56 1.1 matt #include <sys/device.h>
57 1.4 garbled #include <sys/envsys.h>
58 1.4 garbled #include <sys/poll.h>
59 1.34 elad #include <sys/kauth.h>
60 1.1 matt
61 1.4 garbled #include <machine/apmvar.h>
62 1.1 matt #include <machine/autoconf.h>
63 1.1 matt #include <machine/bus.h>
64 1.11 pk #include <machine/intr.h>
65 1.4 garbled #include <machine/tctrl.h>
66 1.1 matt
67 1.1 matt #include <sparc/dev/ts102reg.h>
68 1.1 matt #include <sparc/dev/tctrlvar.h>
69 1.7 jdc #include <sparc/sparc/auxiotwo.h>
70 1.27 macallan #include <sparc/sparc/auxreg.h>
71 1.27 macallan
72 1.27 macallan #include <dev/sysmon/sysmonvar.h>
73 1.27 macallan #include <dev/sysmon/sysmon_taskq.h>
74 1.30 macallan
75 1.27 macallan #include "sysmon_envsys.h"
76 1.1 matt
77 1.30 macallan /*#define TCTRLDEBUG*/
78 1.30 macallan
79 1.30 macallan /* disk spinner */
80 1.30 macallan #include <sys/disk.h>
81 1.30 macallan #include <dev/scsipi/sdvar.h>
82 1.30 macallan
83 1.30 macallan /* ethernet carrier */
84 1.30 macallan #include <net/if.h>
85 1.30 macallan #include <net/if_dl.h>
86 1.30 macallan #include <net/if_ether.h>
87 1.30 macallan #include <net/if_media.h>
88 1.30 macallan #include <dev/ic/lancevar.h>
89 1.30 macallan
90 1.15 gehenna extern struct cfdriver tctrl_cd;
91 1.4 garbled
92 1.15 gehenna dev_type_open(tctrlopen);
93 1.15 gehenna dev_type_close(tctrlclose);
94 1.15 gehenna dev_type_ioctl(tctrlioctl);
95 1.15 gehenna dev_type_poll(tctrlpoll);
96 1.20 jdolecek dev_type_kqfilter(tctrlkqfilter);
97 1.15 gehenna
98 1.15 gehenna const struct cdevsw tctrl_cdevsw = {
99 1.15 gehenna tctrlopen, tctrlclose, noread, nowrite, tctrlioctl,
100 1.20 jdolecek nostop, notty, tctrlpoll, nommap, tctrlkqfilter,
101 1.15 gehenna };
102 1.4 garbled
103 1.1 matt static const char *tctrl_ext_statuses[16] = {
104 1.1 matt "main power available",
105 1.1 matt "internal battery attached",
106 1.1 matt "external battery attached",
107 1.1 matt "external VGA attached",
108 1.1 matt "external keyboard attached",
109 1.1 matt "external mouse attached",
110 1.1 matt "lid down",
111 1.1 matt "internal battery charging",
112 1.1 matt "external battery charging",
113 1.1 matt "internal battery discharging",
114 1.1 matt "external battery discharging",
115 1.1 matt };
116 1.1 matt
117 1.1 matt struct tctrl_softc {
118 1.4 garbled struct device sc_dev;
119 1.4 garbled bus_space_tag_t sc_memt;
120 1.4 garbled bus_space_handle_t sc_memh;
121 1.4 garbled unsigned int sc_junk;
122 1.4 garbled unsigned int sc_ext_status;
123 1.4 garbled unsigned int sc_flags;
124 1.4 garbled #define TCTRL_SEND_REQUEST 0x0001
125 1.4 garbled #define TCTRL_APM_CTLOPEN 0x0002
126 1.30 macallan uint32_t sc_wantdata;
127 1.30 macallan uint32_t sc_ext_pending;
128 1.30 macallan volatile uint16_t sc_lcdstate;
129 1.30 macallan uint16_t sc_lcdwanted;
130 1.30 macallan
131 1.1 matt enum { TCTRL_IDLE, TCTRL_ARGS,
132 1.1 matt TCTRL_ACK, TCTRL_DATA } sc_state;
133 1.28 uwe uint8_t sc_cmdbuf[16];
134 1.28 uwe uint8_t sc_rspbuf[16];
135 1.28 uwe uint8_t sc_bitport;
136 1.28 uwe uint8_t sc_tft_on;
137 1.28 uwe uint8_t sc_op;
138 1.28 uwe uint8_t sc_cmdoff;
139 1.28 uwe uint8_t sc_cmdlen;
140 1.28 uwe uint8_t sc_rspoff;
141 1.28 uwe uint8_t sc_rsplen;
142 1.4 garbled /* APM stuff */
143 1.4 garbled #define APM_NEVENTS 16
144 1.4 garbled struct apm_event_info sc_event_list[APM_NEVENTS];
145 1.4 garbled int sc_event_count;
146 1.4 garbled int sc_event_ptr;
147 1.4 garbled struct selinfo sc_rsel;
148 1.27 macallan
149 1.4 garbled /* ENVSYS stuff */
150 1.4 garbled #define ENVSYS_NUMSENSORS 3
151 1.4 garbled struct evcnt sc_intrcnt; /* interrupt counting */
152 1.27 macallan struct sysmon_envsys sc_sme;
153 1.27 macallan struct envsys_tre_data sc_tre[ENVSYS_NUMSENSORS];
154 1.27 macallan struct envsys_basic_info sc_binfo[ENVSYS_NUMSENSORS];
155 1.27 macallan struct envsys_range sc_range[ENVSYS_NUMSENSORS];
156 1.28 uwe
157 1.31 macallan struct sysmon_pswitch sc_sm_pbutton; /* power button */
158 1.31 macallan struct sysmon_pswitch sc_sm_lid; /* lid state */
159 1.31 macallan struct sysmon_pswitch sc_sm_ac; /* AC adaptor presence */
160 1.27 macallan int sc_powerpressed;
161 1.30 macallan
162 1.30 macallan /* hardware status stuff */
163 1.30 macallan int sc_lid; /* 1 - open, 0 - closed */
164 1.30 macallan int sc_power_state;
165 1.30 macallan int sc_spl;
166 1.30 macallan
167 1.30 macallan /*
168 1.30 macallan * we call this when we detect connection or removal of an external
169 1.30 macallan * monitor. 0 for no monitor, !=0 for monitor present
170 1.30 macallan */
171 1.30 macallan void (*sc_video_callback)(void *, int);
172 1.30 macallan void *sc_video_callback_cookie;
173 1.30 macallan int sc_extvga;
174 1.30 macallan
175 1.30 macallan uint32_t sc_events;
176 1.30 macallan struct proc *sc_thread; /* event thread */
177 1.30 macallan
178 1.30 macallan struct lock sc_requestlock;
179 1.1 matt };
180 1.1 matt
181 1.4 garbled #define TCTRL_STD_DEV 0
182 1.4 garbled #define TCTRL_APMCTL_DEV 8
183 1.1 matt
184 1.28 uwe static int tctrl_match(struct device *, struct cfdata *, void *);
185 1.28 uwe static void tctrl_attach(struct device *, struct device *, void *);
186 1.28 uwe static void tctrl_write(struct tctrl_softc *, bus_size_t, uint8_t);
187 1.28 uwe static uint8_t tctrl_read(struct tctrl_softc *, bus_size_t);
188 1.28 uwe static void tctrl_write_data(struct tctrl_softc *, uint8_t);
189 1.28 uwe static uint8_t tctrl_read_data(struct tctrl_softc *);
190 1.28 uwe static int tctrl_intr(void *);
191 1.28 uwe static void tctrl_setup_bitport(void);
192 1.28 uwe static void tctrl_setup_bitport_nop(void);
193 1.28 uwe static void tctrl_read_ext_status(void);
194 1.30 macallan static void tctrl_read_event_status(struct tctrl_softc *);
195 1.28 uwe static int tctrl_apm_record_event(struct tctrl_softc *, u_int);
196 1.28 uwe static void tctrl_init_lcd(void);
197 1.1 matt
198 1.27 macallan static void tctrl_sensor_setup(struct tctrl_softc *);
199 1.27 macallan static int tctrl_gtredata(struct sysmon_envsys *, struct envsys_tre_data *);
200 1.27 macallan static int tctrl_streinfo(struct sysmon_envsys *, struct envsys_basic_info *);
201 1.27 macallan
202 1.27 macallan static void tctrl_power_button_pressed(void *);
203 1.31 macallan static void tctrl_lid_state(struct tctrl_softc *);
204 1.31 macallan static void tctrl_ac_state(struct tctrl_softc *);
205 1.31 macallan
206 1.27 macallan static int tctrl_powerfail(void *);
207 1.27 macallan
208 1.30 macallan static void tctrl_create_event_thread(void *);
209 1.30 macallan static void tctrl_event_thread(void *);
210 1.30 macallan void tctrl_update_lcd(struct tctrl_softc *);
211 1.30 macallan
212 1.30 macallan static void tctrl_lock(struct tctrl_softc *);
213 1.30 macallan static void tctrl_unlock(struct tctrl_softc *);
214 1.30 macallan
215 1.17 thorpej CFATTACH_DECL(tctrl, sizeof(struct tctrl_softc),
216 1.18 thorpej tctrl_match, tctrl_attach, NULL, NULL);
217 1.1 matt
218 1.37.2.1 ad static int tadpole_request(struct tctrl_req *, int, int);
219 1.28 uwe
220 1.4 garbled /* XXX wtf is this? see i386/apm.c */
221 1.4 garbled int tctrl_apm_evindex;
222 1.1 matt
223 1.1 matt static int
224 1.28 uwe tctrl_match(struct device *parent, struct cfdata *cf, void *aux)
225 1.1 matt {
226 1.1 matt union obio_attach_args *uoba = aux;
227 1.1 matt struct sbus_attach_args *sa = &uoba->uoba_sbus;
228 1.1 matt
229 1.1 matt if (uoba->uoba_isobio4 != 0) {
230 1.1 matt return (0);
231 1.1 matt }
232 1.1 matt
233 1.1 matt /* Tadpole 3GX/3GS uses "uctrl" for the Tadpole Microcontroller
234 1.1 matt * (who's interface is off the TS102 PCMCIA controller but there
235 1.1 matt * exists a OpenProm for microcontroller interface).
236 1.1 matt */
237 1.1 matt return strcmp("uctrl", sa->sa_name) == 0;
238 1.1 matt }
239 1.1 matt
240 1.1 matt static void
241 1.28 uwe tctrl_attach(struct device *parent, struct device *self, void *aux)
242 1.1 matt {
243 1.1 matt struct tctrl_softc *sc = (void *)self;
244 1.1 matt union obio_attach_args *uoba = aux;
245 1.1 matt struct sbus_attach_args *sa = &uoba->uoba_sbus;
246 1.2 matt unsigned int i, v;
247 1.1 matt
248 1.1 matt /* We're living on a sbus slot that looks like an obio that
249 1.1 matt * looks like an sbus slot.
250 1.1 matt */
251 1.1 matt sc->sc_memt = sa->sa_bustag;
252 1.14 pk if (sbus_bus_map(sc->sc_memt,
253 1.14 pk sa->sa_slot,
254 1.14 pk sa->sa_offset - TS102_REG_UCTRL_INT,
255 1.14 pk sa->sa_size,
256 1.14 pk BUS_SPACE_MAP_LINEAR, &sc->sc_memh) != 0) {
257 1.1 matt printf(": can't map registers\n");
258 1.1 matt return;
259 1.1 matt }
260 1.1 matt
261 1.2 matt printf("\n");
262 1.2 matt
263 1.1 matt sc->sc_tft_on = 1;
264 1.2 matt
265 1.1 matt /* clear any pending data.
266 1.1 matt */
267 1.1 matt for (i = 0; i < 10000; i++) {
268 1.4 garbled if ((TS102_UCTRL_STS_RXNE_STA &
269 1.4 garbled tctrl_read(sc, TS102_REG_UCTRL_STS)) == 0) {
270 1.1 matt break;
271 1.1 matt }
272 1.1 matt v = tctrl_read(sc, TS102_REG_UCTRL_DATA);
273 1.2 matt tctrl_write(sc, TS102_REG_UCTRL_STS, TS102_UCTRL_STS_RXNE_STA);
274 1.1 matt }
275 1.1 matt
276 1.3 pk if (sa->sa_nintr != 0) {
277 1.11 pk (void)bus_intr_establish(sc->sc_memt, sa->sa_pri, IPL_NONE,
278 1.22 pk tctrl_intr, sc);
279 1.10 cgd evcnt_attach_dynamic(&sc->sc_intrcnt, EVCNT_TYPE_INTR, NULL,
280 1.22 pk sc->sc_dev.dv_xname, "intr");
281 1.3 pk }
282 1.2 matt
283 1.27 macallan /* See what the external status is */
284 1.30 macallan sc->sc_ext_status = 0;
285 1.4 garbled tctrl_read_ext_status();
286 1.2 matt if (sc->sc_ext_status != 0) {
287 1.2 matt const char *sep;
288 1.1 matt
289 1.1 matt printf("%s: ", sc->sc_dev.dv_xname);
290 1.2 matt v = sc->sc_ext_status;
291 1.1 matt for (i = 0, sep = ""; v != 0; i++, v >>= 1) {
292 1.1 matt if (v & 1) {
293 1.1 matt printf("%s%s", sep, tctrl_ext_statuses[i]);
294 1.1 matt sep = ", ";
295 1.1 matt }
296 1.1 matt }
297 1.1 matt printf("\n");
298 1.1 matt }
299 1.1 matt
300 1.27 macallan /* Get a current of the control bitport */
301 1.4 garbled tctrl_setup_bitport_nop();
302 1.2 matt tctrl_write(sc, TS102_REG_UCTRL_INT,
303 1.2 matt TS102_UCTRL_INT_RXNE_REQ|TS102_UCTRL_INT_RXNE_MSK);
304 1.30 macallan sc->sc_lid = (sc->sc_ext_status & TS102_EXT_STATUS_LID_DOWN) == 0;
305 1.30 macallan sc->sc_power_state = PWR_RESUME;
306 1.30 macallan
307 1.30 macallan sc->sc_extvga = (sc->sc_ext_status &
308 1.30 macallan TS102_EXT_STATUS_EXTERNAL_VGA_ATTACHED) != 0;
309 1.30 macallan sc->sc_video_callback = NULL;
310 1.30 macallan
311 1.30 macallan
312 1.4 garbled sc->sc_wantdata = 0;
313 1.4 garbled sc->sc_event_count = 0;
314 1.30 macallan sc->sc_ext_pending = 0;
315 1.30 macallan sc->sc_ext_pending = 0;
316 1.4 garbled
317 1.30 macallan lockinit(&sc->sc_requestlock, PUSER, "tctrl_req", 0, 0);
318 1.27 macallan /* setup sensors and register the power button */
319 1.27 macallan tctrl_sensor_setup(sc);
320 1.31 macallan tctrl_lid_state(sc);
321 1.31 macallan tctrl_ac_state(sc);
322 1.28 uwe
323 1.6 garbled /* initialize the LCD */
324 1.6 garbled tctrl_init_lcd();
325 1.6 garbled
326 1.6 garbled /* initialize sc_lcdstate */
327 1.6 garbled sc->sc_lcdstate = 0;
328 1.30 macallan sc->sc_lcdwanted = 0;
329 1.30 macallan tadpole_set_lcd(2, 0);
330 1.30 macallan
331 1.30 macallan /* fire up the LCD event thread */
332 1.30 macallan sc->sc_events = 0;
333 1.30 macallan kthread_create(tctrl_create_event_thread, sc);
334 1.1 matt }
335 1.1 matt
336 1.1 matt static int
337 1.28 uwe tctrl_intr(void *arg)
338 1.1 matt {
339 1.1 matt struct tctrl_softc *sc = arg;
340 1.1 matt unsigned int v, d;
341 1.1 matt int progress = 0;
342 1.1 matt
343 1.1 matt again:
344 1.1 matt /* find out the cause(s) of the interrupt */
345 1.12 toddpw v = tctrl_read(sc, TS102_REG_UCTRL_STS) & TS102_UCTRL_STS_MASK;
346 1.1 matt
347 1.1 matt /* clear the cause(s) of the interrupt */
348 1.1 matt tctrl_write(sc, TS102_REG_UCTRL_STS, v);
349 1.1 matt
350 1.2 matt v &= ~(TS102_UCTRL_STS_RXO_STA|TS102_UCTRL_STS_TXE_STA);
351 1.1 matt if (sc->sc_cmdoff >= sc->sc_cmdlen) {
352 1.2 matt v &= ~TS102_UCTRL_STS_TXNF_STA;
353 1.28 uwe if (tctrl_read(sc, TS102_REG_UCTRL_INT) &
354 1.27 macallan TS102_UCTRL_INT_TXNF_REQ) {
355 1.4 garbled tctrl_write(sc, TS102_REG_UCTRL_INT, 0);
356 1.4 garbled progress = 1;
357 1.4 garbled }
358 1.1 matt }
359 1.4 garbled if ((v == 0) && ((sc->sc_flags & TCTRL_SEND_REQUEST) == 0 ||
360 1.4 garbled sc->sc_state != TCTRL_IDLE)) {
361 1.4 garbled wakeup(sc);
362 1.1 matt return progress;
363 1.1 matt }
364 1.1 matt
365 1.1 matt progress = 1;
366 1.2 matt if (v & TS102_UCTRL_STS_RXNE_STA) {
367 1.1 matt d = tctrl_read_data(sc);
368 1.1 matt switch (sc->sc_state) {
369 1.1 matt case TCTRL_IDLE:
370 1.2 matt if (d == 0xfa) {
371 1.30 macallan /*
372 1.30 macallan * external event,
373 1.30 macallan * set a flag and wakeup the event thread
374 1.30 macallan */
375 1.30 macallan sc->sc_ext_pending = 1;
376 1.2 matt } else {
377 1.2 matt printf("%s: (op=0x%02x): unexpected data (0x%02x)\n",
378 1.2 matt sc->sc_dev.dv_xname, sc->sc_op, d);
379 1.1 matt }
380 1.2 matt goto again;
381 1.1 matt case TCTRL_ACK:
382 1.1 matt if (d != 0xfe) {
383 1.2 matt printf("%s: (op=0x%02x): unexpected ack value (0x%02x)\n",
384 1.1 matt sc->sc_dev.dv_xname, sc->sc_op, d);
385 1.1 matt }
386 1.4 garbled #ifdef TCTRLDEBUG
387 1.2 matt printf(" ack=0x%02x", d);
388 1.2 matt #endif
389 1.2 matt sc->sc_rsplen--;
390 1.2 matt sc->sc_rspoff = 0;
391 1.1 matt sc->sc_state = sc->sc_rsplen ? TCTRL_DATA : TCTRL_IDLE;
392 1.4 garbled sc->sc_wantdata = sc->sc_rsplen ? 1 : 0;
393 1.4 garbled #ifdef TCTRLDEBUG
394 1.2 matt if (sc->sc_rsplen > 0) {
395 1.2 matt printf(" [data(%u)]", sc->sc_rsplen);
396 1.2 matt } else {
397 1.2 matt printf(" [idle]\n");
398 1.2 matt }
399 1.2 matt #endif
400 1.2 matt goto again;
401 1.1 matt case TCTRL_DATA:
402 1.1 matt sc->sc_rspbuf[sc->sc_rspoff++] = d;
403 1.4 garbled #ifdef TCTRLDEBUG
404 1.2 matt printf(" [%d]=0x%02x", sc->sc_rspoff-1, d);
405 1.2 matt #endif
406 1.1 matt if (sc->sc_rspoff == sc->sc_rsplen) {
407 1.4 garbled #ifdef TCTRLDEBUG
408 1.2 matt printf(" [idle]\n");
409 1.2 matt #endif
410 1.1 matt sc->sc_state = TCTRL_IDLE;
411 1.4 garbled sc->sc_wantdata = 0;
412 1.1 matt }
413 1.2 matt goto again;
414 1.1 matt default:
415 1.1 matt printf("%s: (op=0x%02x): unexpected data (0x%02x) in state %d\n",
416 1.1 matt sc->sc_dev.dv_xname, sc->sc_op, d, sc->sc_state);
417 1.2 matt goto again;
418 1.1 matt }
419 1.1 matt }
420 1.4 garbled if ((sc->sc_state == TCTRL_IDLE && sc->sc_wantdata == 0) ||
421 1.4 garbled sc->sc_flags & TCTRL_SEND_REQUEST) {
422 1.4 garbled if (sc->sc_flags & TCTRL_SEND_REQUEST) {
423 1.4 garbled sc->sc_flags &= ~TCTRL_SEND_REQUEST;
424 1.4 garbled sc->sc_wantdata = 1;
425 1.4 garbled }
426 1.1 matt if (sc->sc_cmdlen > 0) {
427 1.1 matt tctrl_write(sc, TS102_REG_UCTRL_INT,
428 1.1 matt tctrl_read(sc, TS102_REG_UCTRL_INT)
429 1.1 matt |TS102_UCTRL_INT_TXNF_MSK
430 1.1 matt |TS102_UCTRL_INT_TXNF_REQ);
431 1.1 matt v = tctrl_read(sc, TS102_REG_UCTRL_STS);
432 1.1 matt }
433 1.1 matt }
434 1.2 matt if ((sc->sc_cmdoff < sc->sc_cmdlen) && (v & TS102_UCTRL_STS_TXNF_STA)) {
435 1.1 matt tctrl_write_data(sc, sc->sc_cmdbuf[sc->sc_cmdoff++]);
436 1.4 garbled #ifdef TCTRLDEBUG
437 1.2 matt if (sc->sc_cmdoff == 1) {
438 1.2 matt printf("%s: op=0x%02x(l=%u)", sc->sc_dev.dv_xname,
439 1.2 matt sc->sc_cmdbuf[0], sc->sc_rsplen);
440 1.2 matt } else {
441 1.2 matt printf(" [%d]=0x%02x", sc->sc_cmdoff-1,
442 1.2 matt sc->sc_cmdbuf[sc->sc_cmdoff-1]);
443 1.2 matt }
444 1.2 matt #endif
445 1.1 matt if (sc->sc_cmdoff == sc->sc_cmdlen) {
446 1.1 matt sc->sc_state = sc->sc_rsplen ? TCTRL_ACK : TCTRL_IDLE;
447 1.4 garbled #ifdef TCTRLDEBUG
448 1.2 matt printf(" %s", sc->sc_rsplen ? "[ack]" : "[idle]\n");
449 1.2 matt #endif
450 1.2 matt if (sc->sc_cmdoff == 1) {
451 1.2 matt sc->sc_op = sc->sc_cmdbuf[0];
452 1.2 matt }
453 1.1 matt tctrl_write(sc, TS102_REG_UCTRL_INT,
454 1.1 matt tctrl_read(sc, TS102_REG_UCTRL_INT)
455 1.1 matt & (~TS102_UCTRL_INT_TXNF_MSK
456 1.1 matt |TS102_UCTRL_INT_TXNF_REQ));
457 1.1 matt } else if (sc->sc_state == TCTRL_IDLE) {
458 1.1 matt sc->sc_op = sc->sc_cmdbuf[0];
459 1.1 matt sc->sc_state = TCTRL_ARGS;
460 1.4 garbled #ifdef TCTRLDEBUG
461 1.2 matt printf(" [args]");
462 1.2 matt #endif
463 1.1 matt }
464 1.1 matt }
465 1.1 matt goto again;
466 1.1 matt }
467 1.1 matt
468 1.1 matt static void
469 1.4 garbled tctrl_setup_bitport_nop(void)
470 1.4 garbled {
471 1.4 garbled struct tctrl_softc *sc;
472 1.4 garbled struct tctrl_req req;
473 1.4 garbled int s;
474 1.28 uwe
475 1.4 garbled sc = (struct tctrl_softc *) tctrl_cd.cd_devs[TCTRL_STD_DEV];
476 1.4 garbled req.cmdbuf[0] = TS102_OP_CTL_BITPORT;
477 1.4 garbled req.cmdbuf[1] = 0xff;
478 1.30 macallan req.cmdbuf[2] = 0x00;
479 1.4 garbled req.cmdlen = 3;
480 1.4 garbled req.rsplen = 2;
481 1.37.2.1 ad tadpole_request(&req, 1, 0);
482 1.4 garbled s = splts102();
483 1.4 garbled sc->sc_bitport = (req.rspbuf[0] & req.cmdbuf[1]) ^ req.cmdbuf[2];
484 1.4 garbled splx(s);
485 1.4 garbled }
486 1.4 garbled
487 1.4 garbled static void
488 1.4 garbled tctrl_setup_bitport(void)
489 1.1 matt {
490 1.4 garbled struct tctrl_softc *sc;
491 1.4 garbled struct tctrl_req req;
492 1.4 garbled int s;
493 1.28 uwe
494 1.4 garbled sc = (struct tctrl_softc *) tctrl_cd.cd_devs[TCTRL_STD_DEV];
495 1.4 garbled s = splts102();
496 1.30 macallan req.cmdbuf[2] = 0;
497 1.4 garbled if ((sc->sc_ext_status & TS102_EXT_STATUS_LID_DOWN)
498 1.4 garbled || (!sc->sc_tft_on)) {
499 1.4 garbled req.cmdbuf[2] = TS102_BITPORT_TFTPWR;
500 1.4 garbled }
501 1.4 garbled req.cmdbuf[0] = TS102_OP_CTL_BITPORT;
502 1.4 garbled req.cmdbuf[1] = ~TS102_BITPORT_TFTPWR;
503 1.4 garbled req.cmdlen = 3;
504 1.4 garbled req.rsplen = 2;
505 1.37.2.1 ad tadpole_request(&req, 1, 0);
506 1.4 garbled s = splts102();
507 1.4 garbled sc->sc_bitport = (req.rspbuf[0] & req.cmdbuf[1]) ^ req.cmdbuf[2];
508 1.4 garbled splx(s);
509 1.4 garbled }
510 1.4 garbled
511 1.6 garbled /*
512 1.6 garbled * The tadpole microcontroller is not preprogrammed with icon
513 1.6 garbled * representations. The machine boots with the DC-IN light as
514 1.6 garbled * a blank (all 0x00) and the other lights, as 4 rows of horizontal
515 1.6 garbled * bars. The below code initializes the icons in the system to
516 1.6 garbled * sane values. Some of these icons could be used for any purpose
517 1.6 garbled * desired, namely the pcmcia, LAN and WAN lights. For the disk spinner,
518 1.6 garbled * only the backslash is unprogrammed. (sigh)
519 1.6 garbled *
520 1.6 garbled * programming the icons is simple. It is a 5x8 matrix, which each row a
521 1.6 garbled * bitfield in the order 0x10 0x08 0x04 0x02 0x01.
522 1.6 garbled */
523 1.6 garbled
524 1.6 garbled static void
525 1.6 garbled tctrl_init_lcd(void)
526 1.6 garbled {
527 1.6 garbled struct tctrl_req req;
528 1.6 garbled
529 1.6 garbled req.cmdbuf[0] = TS102_OP_BLK_DEF_SPCL_CHAR;
530 1.6 garbled req.cmdlen = 11;
531 1.6 garbled req.rsplen = 1;
532 1.6 garbled req.cmdbuf[1] = 0x08; /*len*/
533 1.6 garbled req.cmdbuf[2] = TS102_BLK_OFF_DEF_DC_GOOD;
534 1.6 garbled req.cmdbuf[3] = 0x00; /* ..... */
535 1.6 garbled req.cmdbuf[4] = 0x00; /* ..... */
536 1.6 garbled req.cmdbuf[5] = 0x1f; /* XXXXX */
537 1.6 garbled req.cmdbuf[6] = 0x00; /* ..... */
538 1.6 garbled req.cmdbuf[7] = 0x15; /* X.X.X */
539 1.6 garbled req.cmdbuf[8] = 0x00; /* ..... */
540 1.6 garbled req.cmdbuf[9] = 0x00; /* ..... */
541 1.6 garbled req.cmdbuf[10] = 0x00; /* ..... */
542 1.37.2.1 ad tadpole_request(&req, 1, 0);
543 1.6 garbled
544 1.6 garbled req.cmdbuf[0] = TS102_OP_BLK_DEF_SPCL_CHAR;
545 1.6 garbled req.cmdlen = 11;
546 1.6 garbled req.rsplen = 1;
547 1.6 garbled req.cmdbuf[1] = 0x08; /*len*/
548 1.6 garbled req.cmdbuf[2] = TS102_BLK_OFF_DEF_BACKSLASH;
549 1.6 garbled req.cmdbuf[3] = 0x00; /* ..... */
550 1.6 garbled req.cmdbuf[4] = 0x10; /* X.... */
551 1.6 garbled req.cmdbuf[5] = 0x08; /* .X... */
552 1.6 garbled req.cmdbuf[6] = 0x04; /* ..X.. */
553 1.6 garbled req.cmdbuf[7] = 0x02; /* ...X. */
554 1.6 garbled req.cmdbuf[8] = 0x01; /* ....X */
555 1.6 garbled req.cmdbuf[9] = 0x00; /* ..... */
556 1.6 garbled req.cmdbuf[10] = 0x00; /* ..... */
557 1.37.2.1 ad tadpole_request(&req, 1, 0);
558 1.6 garbled
559 1.6 garbled req.cmdbuf[0] = TS102_OP_BLK_DEF_SPCL_CHAR;
560 1.6 garbled req.cmdlen = 11;
561 1.6 garbled req.rsplen = 1;
562 1.6 garbled req.cmdbuf[1] = 0x08; /*len*/
563 1.6 garbled req.cmdbuf[2] = TS102_BLK_OFF_DEF_WAN1;
564 1.6 garbled req.cmdbuf[3] = 0x0c; /* .XXX. */
565 1.6 garbled req.cmdbuf[4] = 0x16; /* X.XX. */
566 1.6 garbled req.cmdbuf[5] = 0x10; /* X.... */
567 1.6 garbled req.cmdbuf[6] = 0x15; /* X.X.X */
568 1.6 garbled req.cmdbuf[7] = 0x10; /* X.... */
569 1.6 garbled req.cmdbuf[8] = 0x16; /* X.XX. */
570 1.6 garbled req.cmdbuf[9] = 0x0c; /* .XXX. */
571 1.6 garbled req.cmdbuf[10] = 0x00; /* ..... */
572 1.37.2.1 ad tadpole_request(&req, 1, 0);
573 1.6 garbled
574 1.6 garbled req.cmdbuf[0] = TS102_OP_BLK_DEF_SPCL_CHAR;
575 1.6 garbled req.cmdlen = 11;
576 1.6 garbled req.rsplen = 1;
577 1.6 garbled req.cmdbuf[1] = 0x08; /*len*/
578 1.6 garbled req.cmdbuf[2] = TS102_BLK_OFF_DEF_WAN2;
579 1.6 garbled req.cmdbuf[3] = 0x0c; /* .XXX. */
580 1.6 garbled req.cmdbuf[4] = 0x0d; /* .XX.X */
581 1.6 garbled req.cmdbuf[5] = 0x01; /* ....X */
582 1.6 garbled req.cmdbuf[6] = 0x15; /* X.X.X */
583 1.6 garbled req.cmdbuf[7] = 0x01; /* ....X */
584 1.6 garbled req.cmdbuf[8] = 0x0d; /* .XX.X */
585 1.6 garbled req.cmdbuf[9] = 0x0c; /* .XXX. */
586 1.6 garbled req.cmdbuf[10] = 0x00; /* ..... */
587 1.37.2.1 ad tadpole_request(&req, 1, 0);
588 1.6 garbled
589 1.6 garbled req.cmdbuf[0] = TS102_OP_BLK_DEF_SPCL_CHAR;
590 1.6 garbled req.cmdlen = 11;
591 1.6 garbled req.rsplen = 1;
592 1.6 garbled req.cmdbuf[1] = 0x08; /*len*/
593 1.6 garbled req.cmdbuf[2] = TS102_BLK_OFF_DEF_LAN1;
594 1.6 garbled req.cmdbuf[3] = 0x00; /* ..... */
595 1.6 garbled req.cmdbuf[4] = 0x04; /* ..X.. */
596 1.6 garbled req.cmdbuf[5] = 0x08; /* .X... */
597 1.6 garbled req.cmdbuf[6] = 0x13; /* X..XX */
598 1.6 garbled req.cmdbuf[7] = 0x08; /* .X... */
599 1.6 garbled req.cmdbuf[8] = 0x04; /* ..X.. */
600 1.6 garbled req.cmdbuf[9] = 0x00; /* ..... */
601 1.6 garbled req.cmdbuf[10] = 0x00; /* ..... */
602 1.37.2.1 ad tadpole_request(&req, 1, 0);
603 1.6 garbled
604 1.6 garbled req.cmdbuf[0] = TS102_OP_BLK_DEF_SPCL_CHAR;
605 1.6 garbled req.cmdlen = 11;
606 1.6 garbled req.rsplen = 1;
607 1.6 garbled req.cmdbuf[1] = 0x08; /*len*/
608 1.6 garbled req.cmdbuf[2] = TS102_BLK_OFF_DEF_LAN2;
609 1.6 garbled req.cmdbuf[3] = 0x00; /* ..... */
610 1.6 garbled req.cmdbuf[4] = 0x04; /* ..X.. */
611 1.6 garbled req.cmdbuf[5] = 0x02; /* ...X. */
612 1.6 garbled req.cmdbuf[6] = 0x19; /* XX..X */
613 1.6 garbled req.cmdbuf[7] = 0x02; /* ...X. */
614 1.6 garbled req.cmdbuf[8] = 0x04; /* ..X.. */
615 1.6 garbled req.cmdbuf[9] = 0x00; /* ..... */
616 1.6 garbled req.cmdbuf[10] = 0x00; /* ..... */
617 1.37.2.1 ad tadpole_request(&req, 1, 0);
618 1.6 garbled
619 1.6 garbled req.cmdbuf[0] = TS102_OP_BLK_DEF_SPCL_CHAR;
620 1.6 garbled req.cmdlen = 11;
621 1.6 garbled req.rsplen = 1;
622 1.6 garbled req.cmdbuf[1] = 0x08; /*len*/
623 1.6 garbled req.cmdbuf[2] = TS102_BLK_OFF_DEF_PCMCIA;
624 1.6 garbled req.cmdbuf[3] = 0x00; /* ..... */
625 1.6 garbled req.cmdbuf[4] = 0x0c; /* .XXX. */
626 1.6 garbled req.cmdbuf[5] = 0x1f; /* XXXXX */
627 1.6 garbled req.cmdbuf[6] = 0x1f; /* XXXXX */
628 1.6 garbled req.cmdbuf[7] = 0x1f; /* XXXXX */
629 1.6 garbled req.cmdbuf[8] = 0x1f; /* XXXXX */
630 1.6 garbled req.cmdbuf[9] = 0x00; /* ..... */
631 1.6 garbled req.cmdbuf[10] = 0x00; /* ..... */
632 1.37.2.1 ad tadpole_request(&req, 1, 0);
633 1.6 garbled }
634 1.6 garbled
635 1.30 macallan /* sc_lcdwanted -> lcd_state */
636 1.6 garbled void
637 1.30 macallan tctrl_update_lcd(struct tctrl_softc *sc)
638 1.6 garbled {
639 1.6 garbled struct tctrl_req req;
640 1.6 garbled int s;
641 1.27 macallan
642 1.30 macallan s = splhigh();
643 1.30 macallan if (sc->sc_lcdwanted == sc->sc_lcdstate) {
644 1.6 garbled splx(s);
645 1.6 garbled return;
646 1.6 garbled }
647 1.30 macallan sc->sc_lcdstate = sc->sc_lcdwanted;
648 1.30 macallan splx(s);
649 1.30 macallan
650 1.6 garbled /*
651 1.6 garbled * the mask setup on this particular command is *very* bizzare
652 1.6 garbled * and totally undocumented.
653 1.6 garbled */
654 1.6 garbled req.cmdbuf[0] = TS102_OP_CTL_LCD;
655 1.28 uwe
656 1.30 macallan /* leave caps-lock alone */
657 1.30 macallan req.cmdbuf[2] = (u_int8_t)(sc->sc_lcdstate & 0xfe);
658 1.30 macallan req.cmdbuf[3] = (u_int8_t)((sc->sc_lcdstate & 0x100)>>8);
659 1.30 macallan
660 1.30 macallan req.cmdbuf[1] = 1;
661 1.30 macallan req.cmdbuf[4] = 0;
662 1.30 macallan
663 1.6 garbled
664 1.13 wiz /* XXX this thing is weird.... */
665 1.6 garbled req.cmdlen = 3;
666 1.6 garbled req.rsplen = 2;
667 1.30 macallan
668 1.27 macallan /* below are the values one would expect but which won't work */
669 1.6 garbled #if 0
670 1.6 garbled req.cmdlen = 5;
671 1.6 garbled req.rsplen = 4;
672 1.6 garbled #endif
673 1.37.2.1 ad tadpole_request(&req, 1, 0);
674 1.30 macallan }
675 1.27 macallan
676 1.30 macallan
677 1.30 macallan /*
678 1.30 macallan * set the blinken-lights on the lcd. what:
679 1.30 macallan * what = 0 off, what = 1 on, what = 2 toggle
680 1.30 macallan */
681 1.30 macallan
682 1.30 macallan void
683 1.30 macallan tadpole_set_lcd(int what, unsigned short which)
684 1.30 macallan {
685 1.30 macallan struct tctrl_softc *sc;
686 1.30 macallan int s;
687 1.30 macallan
688 1.30 macallan sc = (struct tctrl_softc *) tctrl_cd.cd_devs[TCTRL_STD_DEV];
689 1.30 macallan
690 1.30 macallan s = splhigh();
691 1.30 macallan switch (what) {
692 1.30 macallan case 0:
693 1.30 macallan sc->sc_lcdwanted &= ~which;
694 1.30 macallan break;
695 1.30 macallan case 1:
696 1.30 macallan sc->sc_lcdwanted |= which;
697 1.30 macallan break;
698 1.30 macallan case 2:
699 1.30 macallan sc->sc_lcdwanted ^= which;
700 1.30 macallan break;
701 1.30 macallan }
702 1.6 garbled splx(s);
703 1.6 garbled }
704 1.6 garbled
705 1.4 garbled static void
706 1.4 garbled tctrl_read_ext_status(void)
707 1.4 garbled {
708 1.4 garbled struct tctrl_softc *sc;
709 1.4 garbled struct tctrl_req req;
710 1.4 garbled int s;
711 1.28 uwe
712 1.4 garbled sc = (struct tctrl_softc *) tctrl_cd.cd_devs[TCTRL_STD_DEV];
713 1.4 garbled req.cmdbuf[0] = TS102_OP_RD_EXT_STATUS;
714 1.4 garbled req.cmdlen = 1;
715 1.4 garbled req.rsplen = 3;
716 1.4 garbled #ifdef TCTRLDEBUG
717 1.4 garbled printf("pre read: sc->sc_ext_status = 0x%x\n", sc->sc_ext_status);
718 1.4 garbled #endif
719 1.37.2.1 ad tadpole_request(&req, 1, 0);
720 1.4 garbled s = splts102();
721 1.30 macallan sc->sc_ext_status = (req.rspbuf[0] << 8) + req.rspbuf[1];
722 1.4 garbled splx(s);
723 1.4 garbled #ifdef TCTRLDEBUG
724 1.4 garbled printf("post read: sc->sc_ext_status = 0x%x\n", sc->sc_ext_status);
725 1.4 garbled #endif
726 1.4 garbled }
727 1.4 garbled
728 1.4 garbled /*
729 1.4 garbled * return 0 if the user will notice and handle the event,
730 1.4 garbled * return 1 if the kernel driver should do so.
731 1.4 garbled */
732 1.4 garbled static int
733 1.28 uwe tctrl_apm_record_event(struct tctrl_softc *sc, u_int event_type)
734 1.4 garbled {
735 1.4 garbled struct apm_event_info *evp;
736 1.4 garbled
737 1.4 garbled if ((sc->sc_flags & TCTRL_APM_CTLOPEN) &&
738 1.4 garbled (sc->sc_event_count < APM_NEVENTS)) {
739 1.4 garbled evp = &sc->sc_event_list[sc->sc_event_ptr];
740 1.4 garbled sc->sc_event_count++;
741 1.4 garbled sc->sc_event_ptr++;
742 1.4 garbled sc->sc_event_ptr %= APM_NEVENTS;
743 1.4 garbled evp->type = event_type;
744 1.4 garbled evp->index = ++tctrl_apm_evindex;
745 1.20 jdolecek selnotify(&sc->sc_rsel, 0);
746 1.4 garbled return(sc->sc_flags & TCTRL_APM_CTLOPEN) ? 0 : 1;
747 1.1 matt }
748 1.4 garbled return(1);
749 1.1 matt }
750 1.1 matt
751 1.1 matt static void
752 1.30 macallan tctrl_read_event_status(struct tctrl_softc *sc)
753 1.1 matt {
754 1.4 garbled struct tctrl_req req;
755 1.30 macallan int s, lid;
756 1.30 macallan uint32_t v;
757 1.28 uwe
758 1.4 garbled req.cmdbuf[0] = TS102_OP_RD_EVENT_STATUS;
759 1.4 garbled req.cmdlen = 1;
760 1.4 garbled req.rsplen = 3;
761 1.37.2.1 ad tadpole_request(&req, 1, 0);
762 1.4 garbled s = splts102();
763 1.4 garbled v = req.rspbuf[0] * 256 + req.rspbuf[1];
764 1.27 macallan #ifdef TCTRLDEBUG
765 1.27 macallan printf("event: %x\n",v);
766 1.27 macallan #endif
767 1.28 uwe if (v & TS102_EVENT_STATUS_POWERON_BTN_PRESSED) {
768 1.27 macallan printf("%s: Power button pressed\n",sc->sc_dev.dv_xname);
769 1.27 macallan tctrl_powerfail(sc);
770 1.27 macallan }
771 1.4 garbled if (v & TS102_EVENT_STATUS_SHUTDOWN_REQUEST) {
772 1.4 garbled printf("%s: SHUTDOWN REQUEST!\n", sc->sc_dev.dv_xname);
773 1.30 macallan tctrl_powerfail(sc);
774 1.4 garbled }
775 1.4 garbled if (v & TS102_EVENT_STATUS_VERY_LOW_POWER_WARNING) {
776 1.4 garbled /*printf("%s: VERY LOW POWER WARNING!\n", sc->sc_dev.dv_xname);*/
777 1.4 garbled /* according to a tadpole header, and observation */
778 1.4 garbled #ifdef TCTRLDEBUG
779 1.28 uwe printf("%s: Battery charge level change\n",
780 1.27 macallan sc->sc_dev.dv_xname);
781 1.4 garbled #endif
782 1.1 matt }
783 1.4 garbled if (v & TS102_EVENT_STATUS_LOW_POWER_WARNING) {
784 1.4 garbled if (tctrl_apm_record_event(sc, APM_BATTERY_LOW))
785 1.1 matt printf("%s: LOW POWER WARNING!\n", sc->sc_dev.dv_xname);
786 1.4 garbled }
787 1.4 garbled if (v & TS102_EVENT_STATUS_DC_STATUS_CHANGE) {
788 1.4 garbled splx(s);
789 1.4 garbled tctrl_read_ext_status();
790 1.31 macallan tctrl_ac_state(sc);
791 1.4 garbled s = splts102();
792 1.4 garbled if (tctrl_apm_record_event(sc, APM_POWER_CHANGE))
793 1.1 matt printf("%s: main power %s\n", sc->sc_dev.dv_xname,
794 1.4 garbled (sc->sc_ext_status &
795 1.4 garbled TS102_EXT_STATUS_MAIN_POWER_AVAILABLE) ?
796 1.4 garbled "restored" : "removed");
797 1.4 garbled }
798 1.4 garbled if (v & TS102_EVENT_STATUS_LID_STATUS_CHANGE) {
799 1.4 garbled splx(s);
800 1.4 garbled tctrl_read_ext_status();
801 1.31 macallan tctrl_lid_state(sc);
802 1.4 garbled tctrl_setup_bitport();
803 1.4 garbled #ifdef TCTRLDEBUG
804 1.4 garbled printf("%s: lid %s\n", sc->sc_dev.dv_xname,
805 1.4 garbled (sc->sc_ext_status & TS102_EXT_STATUS_LID_DOWN)
806 1.4 garbled ? "closed" : "opened");
807 1.2 matt #endif
808 1.30 macallan lid = (sc->sc_ext_status & TS102_EXT_STATUS_LID_DOWN) == 0;
809 1.30 macallan }
810 1.30 macallan if (v & TS102_EVENT_STATUS_EXTERNAL_VGA_STATUS_CHANGE) {
811 1.30 macallan int vga;
812 1.30 macallan splx(s);
813 1.30 macallan tctrl_read_ext_status();
814 1.30 macallan vga = (sc->sc_ext_status &
815 1.30 macallan TS102_EXT_STATUS_EXTERNAL_VGA_ATTACHED) != 0;
816 1.30 macallan if (vga != sc->sc_extvga) {
817 1.30 macallan sc->sc_extvga = vga;
818 1.30 macallan if (sc->sc_video_callback != NULL) {
819 1.30 macallan sc->sc_video_callback(
820 1.30 macallan sc->sc_video_callback_cookie,
821 1.30 macallan sc->sc_extvga);
822 1.30 macallan }
823 1.30 macallan }
824 1.30 macallan }
825 1.30 macallan #ifdef DIAGNOSTIC
826 1.30 macallan if (v & TS102_EVENT_STATUS_EXT_MOUSE_STATUS_CHANGE) {
827 1.30 macallan splx(s);
828 1.30 macallan tctrl_read_ext_status();
829 1.30 macallan if (sc->sc_ext_status &
830 1.30 macallan TS102_EXT_STATUS_EXTERNAL_MOUSE_ATTACHED) {
831 1.30 macallan printf("tctrl: external mouse detected\n");
832 1.30 macallan }
833 1.1 matt }
834 1.30 macallan #endif
835 1.30 macallan sc->sc_ext_pending = 0;
836 1.4 garbled splx(s);
837 1.1 matt }
838 1.1 matt
839 1.30 macallan static void
840 1.30 macallan tctrl_lock(struct tctrl_softc *sc)
841 1.30 macallan {
842 1.30 macallan
843 1.30 macallan lockmgr(&sc->sc_requestlock, LK_EXCLUSIVE, NULL);
844 1.30 macallan }
845 1.30 macallan
846 1.30 macallan static void
847 1.30 macallan tctrl_unlock(struct tctrl_softc *sc)
848 1.30 macallan {
849 1.30 macallan
850 1.30 macallan lockmgr(&sc->sc_requestlock, LK_RELEASE, NULL);
851 1.30 macallan }
852 1.30 macallan
853 1.30 macallan int
854 1.37.2.1 ad tadpole_request(struct tctrl_req *req, int spin, int sleep)
855 1.1 matt {
856 1.1 matt struct tctrl_softc *sc;
857 1.1 matt int i, s;
858 1.1 matt
859 1.1 matt if (tctrl_cd.cd_devs == NULL
860 1.1 matt || tctrl_cd.cd_ndevs == 0
861 1.4 garbled || tctrl_cd.cd_devs[TCTRL_STD_DEV] == NULL) {
862 1.30 macallan return ENODEV;
863 1.1 matt }
864 1.1 matt
865 1.4 garbled sc = (struct tctrl_softc *) tctrl_cd.cd_devs[TCTRL_STD_DEV];
866 1.30 macallan tctrl_lock(sc);
867 1.30 macallan
868 1.4 garbled if (spin)
869 1.4 garbled s = splhigh();
870 1.4 garbled else
871 1.4 garbled s = splts102();
872 1.4 garbled sc->sc_flags |= TCTRL_SEND_REQUEST;
873 1.4 garbled memcpy(sc->sc_cmdbuf, req->cmdbuf, req->cmdlen);
874 1.30 macallan #ifdef DIAGNOSTIC
875 1.30 macallan if (sc->sc_wantdata != 0) {
876 1.30 macallan splx(s);
877 1.30 macallan printf("tctrl: we lost the race\n");
878 1.30 macallan tctrl_unlock(sc);
879 1.30 macallan return EAGAIN;
880 1.30 macallan }
881 1.30 macallan #endif
882 1.4 garbled sc->sc_wantdata = 1;
883 1.4 garbled sc->sc_rsplen = req->rsplen;
884 1.4 garbled sc->sc_cmdlen = req->cmdlen;
885 1.4 garbled sc->sc_cmdoff = sc->sc_rspoff = 0;
886 1.4 garbled
887 1.4 garbled /* we spin for certain commands, like poweroffs */
888 1.4 garbled if (spin) {
889 1.6 garbled /* for (i = 0; i < 30000; i++) {*/
890 1.30 macallan i = 0;
891 1.30 macallan while ((sc->sc_wantdata == 1) && (i < 30000)) {
892 1.4 garbled tctrl_intr(sc);
893 1.4 garbled DELAY(1);
894 1.30 macallan i++;
895 1.4 garbled }
896 1.30 macallan #ifdef DIAGNOSTIC
897 1.30 macallan if (i >= 30000) {
898 1.30 macallan printf("tctrl: timeout busy waiting for micro controller request!\n");
899 1.30 macallan sc->sc_wantdata = 0;
900 1.30 macallan splx(s);
901 1.30 macallan tctrl_unlock(sc);
902 1.30 macallan return EAGAIN;
903 1.30 macallan }
904 1.30 macallan #endif
905 1.4 garbled } else {
906 1.30 macallan int timeout = 5 * (sc->sc_rsplen + sc->sc_cmdlen);
907 1.1 matt tctrl_intr(sc);
908 1.5 garbled i = 0;
909 1.5 garbled while (((sc->sc_rspoff != sc->sc_rsplen) ||
910 1.5 garbled (sc->sc_cmdoff != sc->sc_cmdlen)) &&
911 1.30 macallan (i < timeout))
912 1.37.2.1 ad if (sleep) {
913 1.5 garbled tsleep(sc, PWAIT, "tctrl_data", 15);
914 1.5 garbled i++;
915 1.30 macallan } else
916 1.4 garbled DELAY(1);
917 1.30 macallan #ifdef DIAGNOSTIC
918 1.30 macallan if (i >= timeout) {
919 1.30 macallan printf("tctrl: timeout waiting for microcontroller request\n");
920 1.30 macallan sc->sc_wantdata = 0;
921 1.30 macallan splx(s);
922 1.30 macallan tctrl_unlock(sc);
923 1.30 macallan return EAGAIN;
924 1.30 macallan }
925 1.30 macallan #endif
926 1.1 matt }
927 1.5 garbled /*
928 1.5 garbled * we give the user a reasonable amount of time for a command
929 1.5 garbled * to complete. If it doesn't complete in time, we hand them
930 1.5 garbled * garbage. This is here to stop things like setting the
931 1.5 garbled * rsplen too long, and sleeping forever in a CMD_REQ ioctl.
932 1.5 garbled */
933 1.5 garbled sc->sc_wantdata = 0;
934 1.4 garbled memcpy(req->rspbuf, sc->sc_rspbuf, req->rsplen);
935 1.1 matt splx(s);
936 1.30 macallan
937 1.30 macallan tctrl_unlock(sc);
938 1.30 macallan return 0;
939 1.1 matt }
940 1.1 matt
941 1.1 matt void
942 1.4 garbled tadpole_powerdown(void)
943 1.4 garbled {
944 1.4 garbled struct tctrl_req req;
945 1.28 uwe
946 1.4 garbled req.cmdbuf[0] = TS102_OP_ADMIN_POWER_OFF;
947 1.4 garbled req.cmdlen = 1;
948 1.4 garbled req.rsplen = 1;
949 1.37.2.1 ad tadpole_request(&req, 1, 0);
950 1.4 garbled }
951 1.4 garbled
952 1.4 garbled void
953 1.28 uwe tadpole_set_video(int enabled)
954 1.1 matt {
955 1.1 matt struct tctrl_softc *sc;
956 1.4 garbled struct tctrl_req req;
957 1.1 matt int s;
958 1.1 matt
959 1.4 garbled sc = (struct tctrl_softc *) tctrl_cd.cd_devs[TCTRL_STD_DEV];
960 1.4 garbled while (sc->sc_wantdata != 0)
961 1.4 garbled DELAY(1);
962 1.4 garbled s = splts102();
963 1.4 garbled if ((sc->sc_ext_status & TS102_EXT_STATUS_LID_DOWN && !enabled)
964 1.4 garbled || (sc->sc_tft_on)) {
965 1.4 garbled req.cmdbuf[2] = TS102_BITPORT_TFTPWR;
966 1.4 garbled } else {
967 1.4 garbled req.cmdbuf[2] = 0;
968 1.1 matt }
969 1.4 garbled req.cmdbuf[0] = TS102_OP_CTL_BITPORT;
970 1.4 garbled req.cmdbuf[1] = ~TS102_BITPORT_TFTPWR;
971 1.4 garbled req.cmdlen = 3;
972 1.4 garbled req.rsplen = 2;
973 1.1 matt
974 1.1 matt if ((sc->sc_tft_on && !enabled) || (!sc->sc_tft_on && enabled)) {
975 1.1 matt sc->sc_tft_on = enabled;
976 1.1 matt if (sc->sc_ext_status & TS102_EXT_STATUS_LID_DOWN) {
977 1.1 matt splx(s);
978 1.1 matt return;
979 1.1 matt }
980 1.37.2.1 ad tadpole_request(&req, 1, 0);
981 1.4 garbled sc->sc_bitport =
982 1.4 garbled (req.rspbuf[0] & req.cmdbuf[1]) ^ req.cmdbuf[2];
983 1.1 matt }
984 1.1 matt splx(s);
985 1.1 matt }
986 1.1 matt
987 1.1 matt static void
988 1.28 uwe tctrl_write_data(struct tctrl_softc *sc, uint8_t v)
989 1.1 matt {
990 1.1 matt unsigned int i;
991 1.4 garbled
992 1.1 matt for (i = 0; i < 100; i++) {
993 1.28 uwe if (TS102_UCTRL_STS_TXNF_STA &
994 1.27 macallan tctrl_read(sc, TS102_REG_UCTRL_STS))
995 1.1 matt break;
996 1.1 matt }
997 1.1 matt tctrl_write(sc, TS102_REG_UCTRL_DATA, v);
998 1.1 matt }
999 1.1 matt
1000 1.28 uwe static uint8_t
1001 1.28 uwe tctrl_read_data(struct tctrl_softc *sc)
1002 1.4 garbled {
1003 1.1 matt unsigned int i, v;
1004 1.1 matt
1005 1.1 matt for (i = 0; i < 100000; i++) {
1006 1.28 uwe if (TS102_UCTRL_STS_RXNE_STA &
1007 1.27 macallan tctrl_read(sc, TS102_REG_UCTRL_STS))
1008 1.1 matt break;
1009 1.1 matt DELAY(1);
1010 1.1 matt }
1011 1.1 matt
1012 1.1 matt v = tctrl_read(sc, TS102_REG_UCTRL_DATA);
1013 1.2 matt tctrl_write(sc, TS102_REG_UCTRL_STS, TS102_UCTRL_STS_RXNE_STA);
1014 1.1 matt return v;
1015 1.1 matt }
1016 1.1 matt
1017 1.28 uwe static uint8_t
1018 1.28 uwe tctrl_read(struct tctrl_softc *sc, bus_size_t off)
1019 1.1 matt {
1020 1.4 garbled
1021 1.2 matt sc->sc_junk = bus_space_read_1(sc->sc_memt, sc->sc_memh, off);
1022 1.1 matt return sc->sc_junk;
1023 1.1 matt }
1024 1.1 matt
1025 1.1 matt static void
1026 1.28 uwe tctrl_write(struct tctrl_softc *sc, bus_size_t off, uint8_t v)
1027 1.1 matt {
1028 1.4 garbled
1029 1.1 matt sc->sc_junk = v;
1030 1.2 matt bus_space_write_1(sc->sc_memt, sc->sc_memh, off, v);
1031 1.4 garbled }
1032 1.4 garbled
1033 1.4 garbled int
1034 1.29 christos tctrlopen(dev_t dev, int flags, int mode, struct lwp *l)
1035 1.4 garbled {
1036 1.4 garbled int unit = (minor(dev)&0xf0);
1037 1.4 garbled int ctl = (minor(dev)&0x0f);
1038 1.4 garbled struct tctrl_softc *sc;
1039 1.4 garbled
1040 1.4 garbled if (unit >= tctrl_cd.cd_ndevs)
1041 1.4 garbled return(ENXIO);
1042 1.4 garbled sc = tctrl_cd.cd_devs[TCTRL_STD_DEV];
1043 1.4 garbled if (!sc)
1044 1.4 garbled return(ENXIO);
1045 1.28 uwe
1046 1.4 garbled switch (ctl) {
1047 1.4 garbled case TCTRL_STD_DEV:
1048 1.4 garbled break;
1049 1.4 garbled case TCTRL_APMCTL_DEV:
1050 1.4 garbled if (!(flags & FWRITE))
1051 1.4 garbled return(EINVAL);
1052 1.4 garbled if (sc->sc_flags & TCTRL_APM_CTLOPEN)
1053 1.4 garbled return(EBUSY);
1054 1.4 garbled sc->sc_flags |= TCTRL_APM_CTLOPEN;
1055 1.4 garbled break;
1056 1.4 garbled default:
1057 1.4 garbled return(ENXIO);
1058 1.4 garbled break;
1059 1.4 garbled }
1060 1.4 garbled
1061 1.4 garbled return(0);
1062 1.4 garbled }
1063 1.4 garbled
1064 1.4 garbled int
1065 1.29 christos tctrlclose(dev_t dev, int flags, int mode, struct lwp *l)
1066 1.4 garbled {
1067 1.4 garbled int ctl = (minor(dev)&0x0f);
1068 1.4 garbled struct tctrl_softc *sc;
1069 1.4 garbled
1070 1.4 garbled sc = tctrl_cd.cd_devs[TCTRL_STD_DEV];
1071 1.4 garbled if (!sc)
1072 1.4 garbled return(ENXIO);
1073 1.4 garbled
1074 1.4 garbled switch (ctl) {
1075 1.4 garbled case TCTRL_STD_DEV:
1076 1.4 garbled break;
1077 1.4 garbled case TCTRL_APMCTL_DEV:
1078 1.4 garbled sc->sc_flags &= ~TCTRL_APM_CTLOPEN;
1079 1.4 garbled break;
1080 1.4 garbled }
1081 1.4 garbled return(0);
1082 1.4 garbled }
1083 1.4 garbled
1084 1.4 garbled int
1085 1.37 christos tctrlioctl(dev_t dev, u_long cmd, void *data, int flags, struct lwp *l)
1086 1.4 garbled {
1087 1.4 garbled struct tctrl_req req, *reqn;
1088 1.28 uwe struct tctrl_pwr *pwrreq;
1089 1.4 garbled struct apm_power_info *powerp;
1090 1.4 garbled struct apm_event_info *evp;
1091 1.4 garbled struct tctrl_softc *sc;
1092 1.4 garbled int i;
1093 1.28 uwe uint8_t c;
1094 1.4 garbled
1095 1.4 garbled if (tctrl_cd.cd_devs == NULL
1096 1.4 garbled || tctrl_cd.cd_ndevs == 0
1097 1.4 garbled || tctrl_cd.cd_devs[TCTRL_STD_DEV] == NULL) {
1098 1.4 garbled return ENXIO;
1099 1.4 garbled }
1100 1.4 garbled sc = (struct tctrl_softc *) tctrl_cd.cd_devs[TCTRL_STD_DEV];
1101 1.4 garbled switch (cmd) {
1102 1.4 garbled
1103 1.4 garbled case APM_IOC_STANDBY:
1104 1.30 macallan /* turn off backlight and so on ? */
1105 1.30 macallan
1106 1.30 macallan return 0; /* for now */
1107 1.4 garbled
1108 1.4 garbled case APM_IOC_SUSPEND:
1109 1.30 macallan /* not sure what to do here - we can't really suspend */
1110 1.30 macallan
1111 1.30 macallan return 0; /* for now */
1112 1.4 garbled
1113 1.19 takemura case OAPM_IOC_GETPOWER:
1114 1.4 garbled case APM_IOC_GETPOWER:
1115 1.4 garbled powerp = (struct apm_power_info *)data;
1116 1.4 garbled req.cmdbuf[0] = TS102_OP_RD_INT_CHARGE_RATE;
1117 1.4 garbled req.cmdlen = 1;
1118 1.4 garbled req.rsplen = 2;
1119 1.37.2.1 ad tadpole_request(&req, 0, l->l_proc ? 1 : 0);
1120 1.4 garbled if (req.rspbuf[0] > 0x00)
1121 1.4 garbled powerp->battery_state = APM_BATT_CHARGING;
1122 1.4 garbled req.cmdbuf[0] = TS102_OP_RD_INT_CHARGE_LEVEL;
1123 1.4 garbled req.cmdlen = 1;
1124 1.4 garbled req.rsplen = 3;
1125 1.37.2.1 ad tadpole_request(&req, 0, l->l_proc ? 1 : 0);
1126 1.4 garbled c = req.rspbuf[0];
1127 1.4 garbled powerp->battery_life = c;
1128 1.6 garbled if (c > 0x70) /* the tadpole sometimes dips below zero, and */
1129 1.6 garbled c = 0; /* into the 255 range. */
1130 1.4 garbled powerp->minutes_left = (45 * c) / 100; /* XXX based on 45 min */
1131 1.4 garbled if (powerp->battery_state != APM_BATT_CHARGING) {
1132 1.4 garbled if (c < 0x20)
1133 1.4 garbled powerp->battery_state = APM_BATT_CRITICAL;
1134 1.4 garbled else if (c < 0x40)
1135 1.4 garbled powerp->battery_state = APM_BATT_LOW;
1136 1.4 garbled else if (c < 0x66)
1137 1.4 garbled powerp->battery_state = APM_BATT_HIGH;
1138 1.4 garbled else
1139 1.4 garbled powerp->battery_state = APM_BATT_UNKNOWN;
1140 1.4 garbled }
1141 1.31 macallan
1142 1.31 macallan if (sc->sc_ext_status & TS102_EXT_STATUS_MAIN_POWER_AVAILABLE)
1143 1.4 garbled powerp->ac_state = APM_AC_ON;
1144 1.4 garbled else
1145 1.4 garbled powerp->ac_state = APM_AC_OFF;
1146 1.4 garbled break;
1147 1.4 garbled
1148 1.4 garbled case APM_IOC_NEXTEVENT:
1149 1.4 garbled if (!sc->sc_event_count)
1150 1.4 garbled return EAGAIN;
1151 1.4 garbled
1152 1.4 garbled evp = (struct apm_event_info *)data;
1153 1.4 garbled i = sc->sc_event_ptr + APM_NEVENTS - sc->sc_event_count;
1154 1.4 garbled i %= APM_NEVENTS;
1155 1.4 garbled *evp = sc->sc_event_list[i];
1156 1.4 garbled sc->sc_event_count--;
1157 1.4 garbled return(0);
1158 1.4 garbled
1159 1.4 garbled /* this ioctl assumes the caller knows exactly what he is doing */
1160 1.4 garbled case TCTRL_CMD_REQ:
1161 1.4 garbled reqn = (struct tctrl_req *)data;
1162 1.35 ad if ((i = kauth_authorize_generic(l->l_cred,
1163 1.36 elad KAUTH_GENERIC_ISSUSER, NULL)) != 0 &&
1164 1.4 garbled (reqn->cmdbuf[0] == TS102_OP_CTL_BITPORT ||
1165 1.4 garbled (reqn->cmdbuf[0] >= TS102_OP_CTL_WATCHDOG &&
1166 1.4 garbled reqn->cmdbuf[0] <= TS102_OP_CTL_SECURITY_KEY) ||
1167 1.4 garbled reqn->cmdbuf[0] == TS102_OP_CTL_TIMEZONE ||
1168 1.4 garbled reqn->cmdbuf[0] == TS102_OP_CTL_DIAGNOSTIC_MODE ||
1169 1.4 garbled reqn->cmdbuf[0] == TS102_OP_CMD_SOFTWARE_RESET ||
1170 1.4 garbled (reqn->cmdbuf[0] >= TS102_OP_CMD_SET_RTC &&
1171 1.4 garbled reqn->cmdbuf[0] < TS102_OP_RD_INT_CHARGE_LEVEL) ||
1172 1.4 garbled reqn->cmdbuf[0] > TS102_OP_RD_EXT_CHARGE_LEVEL))
1173 1.4 garbled return(i);
1174 1.37.2.1 ad tadpole_request(reqn, 0, l->l_proc ? 1 : 0);
1175 1.4 garbled break;
1176 1.7 jdc /* serial power mode (via auxiotwo) */
1177 1.7 jdc case TCTRL_SERIAL_PWR:
1178 1.28 uwe pwrreq = (struct tctrl_pwr *)data;
1179 1.7 jdc if (pwrreq->rw)
1180 1.7 jdc pwrreq->state = auxiotwoserialgetapm();
1181 1.7 jdc else
1182 1.7 jdc auxiotwoserialsetapm(pwrreq->state);
1183 1.7 jdc break;
1184 1.7 jdc
1185 1.7 jdc /* modem power mode (via auxio) */
1186 1.7 jdc case TCTRL_MODEM_PWR:
1187 1.7 jdc return(EOPNOTSUPP); /* for now */
1188 1.7 jdc break;
1189 1.4 garbled
1190 1.4 garbled
1191 1.4 garbled default:
1192 1.4 garbled return (ENOTTY);
1193 1.4 garbled }
1194 1.4 garbled return (0);
1195 1.4 garbled }
1196 1.4 garbled
1197 1.4 garbled int
1198 1.29 christos tctrlpoll(dev_t dev, int events, struct lwp *l)
1199 1.4 garbled {
1200 1.4 garbled struct tctrl_softc *sc = tctrl_cd.cd_devs[TCTRL_STD_DEV];
1201 1.4 garbled int revents = 0;
1202 1.4 garbled
1203 1.4 garbled if (events & (POLLIN | POLLRDNORM)) {
1204 1.4 garbled if (sc->sc_event_count)
1205 1.4 garbled revents |= events & (POLLIN | POLLRDNORM);
1206 1.4 garbled else
1207 1.29 christos selrecord(l, &sc->sc_rsel);
1208 1.4 garbled }
1209 1.4 garbled
1210 1.4 garbled return (revents);
1211 1.1 matt }
1212 1.20 jdolecek
1213 1.20 jdolecek static void
1214 1.20 jdolecek filt_tctrlrdetach(struct knote *kn)
1215 1.20 jdolecek {
1216 1.20 jdolecek struct tctrl_softc *sc = kn->kn_hook;
1217 1.20 jdolecek int s;
1218 1.20 jdolecek
1219 1.20 jdolecek s = splts102();
1220 1.21 christos SLIST_REMOVE(&sc->sc_rsel.sel_klist, kn, knote, kn_selnext);
1221 1.20 jdolecek splx(s);
1222 1.20 jdolecek }
1223 1.20 jdolecek
1224 1.20 jdolecek static int
1225 1.20 jdolecek filt_tctrlread(struct knote *kn, long hint)
1226 1.20 jdolecek {
1227 1.20 jdolecek struct tctrl_softc *sc = kn->kn_hook;
1228 1.20 jdolecek
1229 1.20 jdolecek kn->kn_data = sc->sc_event_count;
1230 1.20 jdolecek return (kn->kn_data > 0);
1231 1.20 jdolecek }
1232 1.20 jdolecek
1233 1.20 jdolecek static const struct filterops tctrlread_filtops =
1234 1.20 jdolecek { 1, NULL, filt_tctrlrdetach, filt_tctrlread };
1235 1.20 jdolecek
1236 1.20 jdolecek int
1237 1.20 jdolecek tctrlkqfilter(dev_t dev, struct knote *kn)
1238 1.20 jdolecek {
1239 1.20 jdolecek struct tctrl_softc *sc = tctrl_cd.cd_devs[TCTRL_STD_DEV];
1240 1.20 jdolecek struct klist *klist;
1241 1.20 jdolecek int s;
1242 1.20 jdolecek
1243 1.20 jdolecek switch (kn->kn_filter) {
1244 1.20 jdolecek case EVFILT_READ:
1245 1.21 christos klist = &sc->sc_rsel.sel_klist;
1246 1.20 jdolecek kn->kn_fop = &tctrlread_filtops;
1247 1.20 jdolecek break;
1248 1.20 jdolecek
1249 1.20 jdolecek default:
1250 1.20 jdolecek return (1);
1251 1.20 jdolecek }
1252 1.20 jdolecek
1253 1.20 jdolecek kn->kn_hook = sc;
1254 1.20 jdolecek
1255 1.20 jdolecek s = splts102();
1256 1.20 jdolecek SLIST_INSERT_HEAD(klist, kn, kn_selnext);
1257 1.20 jdolecek splx(s);
1258 1.20 jdolecek
1259 1.20 jdolecek return (0);
1260 1.20 jdolecek }
1261 1.20 jdolecek
1262 1.27 macallan static void
1263 1.27 macallan tctrl_sensor_setup(struct tctrl_softc *sc)
1264 1.27 macallan {
1265 1.27 macallan int error;
1266 1.28 uwe
1267 1.27 macallan /* case temperature */
1268 1.27 macallan strcpy(sc->sc_binfo[0].desc, "Case temperature");
1269 1.27 macallan sc->sc_binfo[0].sensor = 0;
1270 1.27 macallan sc->sc_binfo[0].units = ENVSYS_STEMP;
1271 1.27 macallan sc->sc_binfo[0].validflags = ENVSYS_FVALID | ENVSYS_FCURVALID;
1272 1.27 macallan sc->sc_range[0].low = 0;
1273 1.27 macallan sc->sc_range[0].high = 0;
1274 1.27 macallan sc->sc_range[0].units = ENVSYS_STEMP;
1275 1.27 macallan sc->sc_tre[0].sensor = 0;
1276 1.27 macallan sc->sc_tre[0].warnflags = ENVSYS_WARN_OK;
1277 1.27 macallan sc->sc_tre[0].validflags = ENVSYS_FVALID | ENVSYS_FCURVALID;
1278 1.27 macallan sc->sc_tre[0].units = ENVSYS_STEMP;
1279 1.28 uwe
1280 1.27 macallan /* battery voltage */
1281 1.27 macallan strcpy(sc->sc_binfo[1].desc, "Internal battery voltage");
1282 1.27 macallan sc->sc_binfo[1].sensor = 1;
1283 1.27 macallan sc->sc_binfo[1].units = ENVSYS_SVOLTS_DC;
1284 1.27 macallan sc->sc_binfo[1].validflags = ENVSYS_FVALID | ENVSYS_FCURVALID;
1285 1.27 macallan sc->sc_range[1].low = 0;
1286 1.27 macallan sc->sc_range[1].high = 0;
1287 1.27 macallan sc->sc_range[1].units = ENVSYS_SVOLTS_DC;
1288 1.27 macallan sc->sc_tre[1].sensor = 0;
1289 1.27 macallan sc->sc_tre[1].warnflags = ENVSYS_WARN_OK;
1290 1.27 macallan sc->sc_tre[1].validflags = ENVSYS_FVALID | ENVSYS_FCURVALID;
1291 1.27 macallan sc->sc_tre[1].units = ENVSYS_SVOLTS_DC;
1292 1.28 uwe
1293 1.27 macallan /* DC voltage */
1294 1.27 macallan strcpy(sc->sc_binfo[2].desc, "DC-In voltage");
1295 1.27 macallan sc->sc_binfo[2].sensor = 2;
1296 1.27 macallan sc->sc_binfo[2].units = ENVSYS_SVOLTS_DC;
1297 1.27 macallan sc->sc_binfo[2].validflags = ENVSYS_FVALID | ENVSYS_FCURVALID;
1298 1.27 macallan sc->sc_range[2].low = 0;
1299 1.27 macallan sc->sc_range[2].high = 0;
1300 1.27 macallan sc->sc_range[2].units = ENVSYS_SVOLTS_DC;
1301 1.27 macallan sc->sc_tre[2].sensor = 0;
1302 1.27 macallan sc->sc_tre[2].warnflags = ENVSYS_WARN_OK;
1303 1.27 macallan sc->sc_tre[2].validflags = ENVSYS_FVALID | ENVSYS_FCURVALID;
1304 1.27 macallan sc->sc_tre[2].units = ENVSYS_SVOLTS_DC;
1305 1.28 uwe
1306 1.27 macallan sc->sc_sme.sme_nsensors = ENVSYS_NUMSENSORS;
1307 1.27 macallan sc->sc_sme.sme_envsys_version = 1000;
1308 1.27 macallan sc->sc_sme.sme_ranges = sc->sc_range;
1309 1.27 macallan sc->sc_sme.sme_sensor_info = sc->sc_binfo;
1310 1.27 macallan sc->sc_sme.sme_sensor_data = sc->sc_tre;
1311 1.27 macallan sc->sc_sme.sme_cookie = sc;
1312 1.27 macallan sc->sc_sme.sme_gtredata = tctrl_gtredata;
1313 1.27 macallan sc->sc_sme.sme_streinfo = tctrl_streinfo;
1314 1.27 macallan sc->sc_sme.sme_flags = 0;
1315 1.28 uwe
1316 1.27 macallan if ((error = sysmon_envsys_register(&sc->sc_sme)) != 0) {
1317 1.28 uwe printf("%s: couldn't register sensors (%d)\n",
1318 1.27 macallan sc->sc_dev.dv_xname, error);
1319 1.27 macallan }
1320 1.28 uwe
1321 1.27 macallan /* now register the power button */
1322 1.28 uwe
1323 1.27 macallan sysmon_task_queue_init();
1324 1.27 macallan
1325 1.27 macallan sc->sc_powerpressed = 0;
1326 1.31 macallan memset(&sc->sc_sm_pbutton, 0, sizeof(struct sysmon_pswitch));
1327 1.31 macallan sc->sc_sm_pbutton.smpsw_name = sc->sc_dev.dv_xname;
1328 1.31 macallan sc->sc_sm_pbutton.smpsw_type = PSWITCH_TYPE_POWER;
1329 1.31 macallan if (sysmon_pswitch_register(&sc->sc_sm_pbutton) != 0)
1330 1.28 uwe printf("%s: unable to register power button with sysmon\n",
1331 1.27 macallan sc->sc_dev.dv_xname);
1332 1.31 macallan
1333 1.31 macallan memset(&sc->sc_sm_lid, 0, sizeof(struct sysmon_pswitch));
1334 1.31 macallan sc->sc_sm_lid.smpsw_name = sc->sc_dev.dv_xname;
1335 1.31 macallan sc->sc_sm_lid.smpsw_type = PSWITCH_TYPE_LID;
1336 1.31 macallan if (sysmon_pswitch_register(&sc->sc_sm_lid) != 0)
1337 1.31 macallan printf("%s: unable to register lid switch with sysmon\n",
1338 1.31 macallan sc->sc_dev.dv_xname);
1339 1.31 macallan
1340 1.31 macallan memset(&sc->sc_sm_ac, 0, sizeof(struct sysmon_pswitch));
1341 1.31 macallan sc->sc_sm_ac.smpsw_name = sc->sc_dev.dv_xname;
1342 1.31 macallan sc->sc_sm_ac.smpsw_type = PSWITCH_TYPE_ACADAPTER;
1343 1.31 macallan if (sysmon_pswitch_register(&sc->sc_sm_ac) != 0)
1344 1.31 macallan printf("%s: unable to register AC adaptor with sysmon\n",
1345 1.31 macallan sc->sc_dev.dv_xname);
1346 1.27 macallan }
1347 1.27 macallan
1348 1.27 macallan static void
1349 1.27 macallan tctrl_power_button_pressed(void *arg)
1350 1.27 macallan {
1351 1.27 macallan struct tctrl_softc *sc = arg;
1352 1.27 macallan
1353 1.31 macallan sysmon_pswitch_event(&sc->sc_sm_pbutton, PSWITCH_EVENT_PRESSED);
1354 1.27 macallan sc->sc_powerpressed = 0;
1355 1.27 macallan }
1356 1.27 macallan
1357 1.31 macallan static void
1358 1.31 macallan tctrl_lid_state(struct tctrl_softc *sc)
1359 1.31 macallan {
1360 1.31 macallan int state;
1361 1.31 macallan
1362 1.31 macallan state = (sc->sc_ext_status & TS102_EXT_STATUS_LID_DOWN) ?
1363 1.31 macallan PSWITCH_STATE_PRESSED : PSWITCH_STATE_RELEASED;
1364 1.31 macallan sysmon_pswitch_event(&sc->sc_sm_lid, state);
1365 1.31 macallan }
1366 1.31 macallan
1367 1.31 macallan static void
1368 1.31 macallan tctrl_ac_state(struct tctrl_softc *sc)
1369 1.31 macallan {
1370 1.31 macallan int state;
1371 1.31 macallan
1372 1.31 macallan state = (sc->sc_ext_status & TS102_EXT_STATUS_MAIN_POWER_AVAILABLE) ?
1373 1.31 macallan PSWITCH_STATE_PRESSED : PSWITCH_STATE_RELEASED;
1374 1.31 macallan sysmon_pswitch_event(&sc->sc_sm_ac, state);
1375 1.31 macallan }
1376 1.31 macallan
1377 1.28 uwe static int
1378 1.27 macallan tctrl_powerfail(void *arg)
1379 1.27 macallan {
1380 1.27 macallan struct tctrl_softc *sc = (struct tctrl_softc *)arg;
1381 1.27 macallan
1382 1.27 macallan /*
1383 1.27 macallan * We lost power. Queue a callback with thread context to
1384 1.27 macallan * handle all the real work.
1385 1.27 macallan */
1386 1.27 macallan if (sc->sc_powerpressed == 0) {
1387 1.27 macallan sc->sc_powerpressed = 1;
1388 1.27 macallan sysmon_task_queue_sched(0, tctrl_power_button_pressed, sc);
1389 1.27 macallan }
1390 1.27 macallan return (1);
1391 1.27 macallan }
1392 1.27 macallan
1393 1.27 macallan static int
1394 1.27 macallan tctrl_gtredata(struct sysmon_envsys *sme, struct envsys_tre_data *tred)
1395 1.27 macallan {
1396 1.27 macallan /*struct tctrl_softc *sc = sme->sme_cookie;*/
1397 1.27 macallan struct envsys_tre_data *cur_tre;
1398 1.27 macallan struct envsys_basic_info *cur_i;
1399 1.27 macallan struct tctrl_req req;
1400 1.37.2.1 ad int sleepable;
1401 1.27 macallan int i;
1402 1.28 uwe
1403 1.27 macallan i = tred->sensor;
1404 1.27 macallan cur_tre = &sme->sme_sensor_data[i];
1405 1.27 macallan cur_i = &sme->sme_sensor_info[i];
1406 1.37.2.1 ad sleepable = curlwp ? 1 : 0;
1407 1.28 uwe
1408 1.27 macallan switch (i)
1409 1.27 macallan {
1410 1.27 macallan case 0: /* case temperature */
1411 1.27 macallan req.cmdbuf[0] = TS102_OP_RD_CURRENT_TEMP;
1412 1.27 macallan req.cmdlen = 1;
1413 1.27 macallan req.rsplen = 2;
1414 1.37.2.1 ad tadpole_request(&req, 0, sleepable);
1415 1.27 macallan cur_tre->cur.data_us = /* 273160? */
1416 1.28 uwe (uint32_t)((int)((int)req.rspbuf[0] - 32) * 5000000
1417 1.27 macallan / 9 + 273150000);
1418 1.27 macallan cur_tre->validflags |= ENVSYS_FCURVALID;
1419 1.27 macallan req.cmdbuf[0] = TS102_OP_RD_MAX_TEMP;
1420 1.27 macallan req.cmdlen = 1;
1421 1.27 macallan req.rsplen = 2;
1422 1.37.2.1 ad tadpole_request(&req, 0, sleepable);
1423 1.27 macallan cur_tre->max.data_us =
1424 1.28 uwe (uint32_t)((int)((int)req.rspbuf[0] - 32) * 5000000
1425 1.27 macallan / 9 + 273150000);
1426 1.27 macallan cur_tre->validflags |= ENVSYS_FMAXVALID;
1427 1.27 macallan req.cmdbuf[0] = TS102_OP_RD_MIN_TEMP;
1428 1.27 macallan req.cmdlen = 1;
1429 1.27 macallan req.rsplen = 2;
1430 1.37.2.1 ad tadpole_request(&req, 0, sleepable);
1431 1.27 macallan cur_tre->min.data_us =
1432 1.28 uwe (uint32_t)((int)((int)req.rspbuf[0] - 32) * 5000000
1433 1.27 macallan / 9 + 273150000);
1434 1.27 macallan cur_tre->validflags |= ENVSYS_FMINVALID;
1435 1.27 macallan cur_tre->units = ENVSYS_STEMP;
1436 1.27 macallan break;
1437 1.28 uwe
1438 1.27 macallan case 1: /* battery voltage */
1439 1.27 macallan {
1440 1.28 uwe cur_tre->validflags =
1441 1.27 macallan ENVSYS_FVALID|ENVSYS_FCURVALID;
1442 1.27 macallan cur_tre->units = ENVSYS_SVOLTS_DC;
1443 1.27 macallan req.cmdbuf[0] = TS102_OP_RD_INT_BATT_VLT;
1444 1.27 macallan req.cmdlen = 1;
1445 1.27 macallan req.rsplen = 2;
1446 1.37.2.1 ad tadpole_request(&req, 0, sleepable);
1447 1.28 uwe cur_tre->cur.data_s = (int32_t)req.rspbuf[0] *
1448 1.27 macallan 1000000 / 11;
1449 1.27 macallan }
1450 1.27 macallan break;
1451 1.27 macallan case 2: /* DC voltage */
1452 1.27 macallan {
1453 1.28 uwe cur_tre->validflags =
1454 1.27 macallan ENVSYS_FVALID|ENVSYS_FCURVALID;
1455 1.27 macallan cur_tre->units = ENVSYS_SVOLTS_DC;
1456 1.27 macallan req.cmdbuf[0] = TS102_OP_RD_DC_IN_VLT;
1457 1.27 macallan req.cmdlen = 1;
1458 1.27 macallan req.rsplen = 2;
1459 1.37.2.1 ad tadpole_request(&req, 0, sleepable);
1460 1.28 uwe cur_tre->cur.data_s = (int32_t)req.rspbuf[0] *
1461 1.27 macallan 1000000 / 11;
1462 1.27 macallan }
1463 1.27 macallan break;
1464 1.27 macallan }
1465 1.27 macallan cur_tre->validflags |= ENVSYS_FVALID;
1466 1.27 macallan *tred = sme->sme_sensor_data[i];
1467 1.27 macallan return 0;
1468 1.27 macallan }
1469 1.27 macallan
1470 1.27 macallan
1471 1.27 macallan static int
1472 1.27 macallan tctrl_streinfo(struct sysmon_envsys *sme, struct envsys_basic_info *binfo)
1473 1.27 macallan {
1474 1.28 uwe
1475 1.27 macallan /* There is nothing to set here. */
1476 1.27 macallan return (EINVAL);
1477 1.27 macallan }
1478 1.30 macallan
1479 1.30 macallan static void
1480 1.30 macallan tctrl_create_event_thread(void *v)
1481 1.30 macallan {
1482 1.30 macallan struct tctrl_softc *sc = v;
1483 1.30 macallan const char *name = sc->sc_dev.dv_xname;
1484 1.30 macallan
1485 1.30 macallan if (kthread_create1(tctrl_event_thread, sc, &sc->sc_thread, "%s",
1486 1.30 macallan name) != 0) {
1487 1.30 macallan printf("%s: unable to create event kthread", name);
1488 1.30 macallan }
1489 1.30 macallan }
1490 1.30 macallan
1491 1.30 macallan static void
1492 1.30 macallan tctrl_event_thread(void *v)
1493 1.30 macallan {
1494 1.30 macallan struct tctrl_softc *sc = v;
1495 1.30 macallan struct device *dv;
1496 1.30 macallan struct sd_softc *sd = NULL;
1497 1.30 macallan struct lance_softc *le = NULL;
1498 1.30 macallan int ticks = hz/2;
1499 1.30 macallan int rcount, wcount;
1500 1.30 macallan int s;
1501 1.30 macallan
1502 1.30 macallan while (sd == NULL) {
1503 1.30 macallan for (dv = alldevs.tqh_first; dv; dv = dv->dv_list.tqe_next) {
1504 1.30 macallan if (strcmp(dv->dv_xname, "sd0") == 0) {
1505 1.30 macallan sd = (struct sd_softc *)dv;
1506 1.30 macallan }
1507 1.30 macallan if (le == NULL) {
1508 1.30 macallan if (strcmp(dv->dv_xname, "le0") == 0)
1509 1.30 macallan le = (struct lance_softc *)dv;
1510 1.30 macallan }
1511 1.30 macallan }
1512 1.30 macallan if (sd == NULL)
1513 1.30 macallan tsleep(&sc->sc_events, PWAIT, "probe_disk", hz);
1514 1.30 macallan }
1515 1.30 macallan printf("found %s\n", sd->sc_dev.dv_xname);
1516 1.33 blymn rcount = sd->sc_dk.dk_stats->io_rxfer;
1517 1.33 blymn wcount = sd->sc_dk.dk_stats->io_wxfer;
1518 1.30 macallan
1519 1.30 macallan tctrl_read_event_status(sc);
1520 1.30 macallan
1521 1.30 macallan while (1) {
1522 1.30 macallan tsleep(&sc->sc_events, PWAIT, "tctrl_event", ticks);
1523 1.30 macallan s = splhigh();
1524 1.33 blymn if ((rcount != sd->sc_dk.dk_stats->io_rxfer) ||
1525 1.33 blymn (wcount != sd->sc_dk.dk_stats->io_wxfer)) {
1526 1.33 blymn rcount = sd->sc_dk.dk_stats->io_rxfer;
1527 1.33 blymn wcount = sd->sc_dk.dk_stats->io_wxfer;
1528 1.30 macallan sc->sc_lcdwanted |= TS102_LCD_DISK_ACTIVE;
1529 1.30 macallan } else
1530 1.30 macallan sc->sc_lcdwanted &= ~TS102_LCD_DISK_ACTIVE;
1531 1.30 macallan if (le != NULL) {
1532 1.30 macallan if (le->sc_havecarrier != 0) {
1533 1.30 macallan sc->sc_lcdwanted |= TS102_LCD_LAN_ACTIVE;
1534 1.30 macallan } else
1535 1.30 macallan sc->sc_lcdwanted &= ~TS102_LCD_LAN_ACTIVE;
1536 1.30 macallan }
1537 1.30 macallan splx(s);
1538 1.30 macallan tctrl_update_lcd(sc);
1539 1.30 macallan if (sc->sc_ext_pending)
1540 1.30 macallan tctrl_read_event_status(sc);
1541 1.30 macallan }
1542 1.30 macallan }
1543 1.30 macallan
1544 1.30 macallan void
1545 1.30 macallan tadpole_register_callback(void (*callback)(void *, int), void *cookie)
1546 1.30 macallan {
1547 1.30 macallan struct tctrl_softc *sc;
1548 1.30 macallan
1549 1.30 macallan sc = (struct tctrl_softc *) tctrl_cd.cd_devs[TCTRL_STD_DEV];
1550 1.30 macallan sc->sc_video_callback = callback;
1551 1.30 macallan sc->sc_video_callback_cookie = cookie;
1552 1.30 macallan if (sc->sc_video_callback != NULL) {
1553 1.30 macallan sc->sc_video_callback(sc->sc_video_callback_cookie,
1554 1.30 macallan sc->sc_extvga);
1555 1.30 macallan }
1556 1.30 macallan }
1557