acpi_bat.c revision 1.89 1 1.89 jruoho /* $NetBSD: acpi_bat.c,v 1.89 2010/03/17 08:07:27 jruoho Exp $ */
2 1.26 mycroft
3 1.26 mycroft /*-
4 1.26 mycroft * Copyright (c) 2003 The NetBSD Foundation, Inc.
5 1.26 mycroft * All rights reserved.
6 1.26 mycroft *
7 1.26 mycroft * This code is derived from software contributed to The NetBSD Foundation
8 1.26 mycroft * by Charles M. Hannum of By Noon Software, Inc.
9 1.26 mycroft *
10 1.26 mycroft * Redistribution and use in source and binary forms, with or without
11 1.26 mycroft * modification, are permitted provided that the following conditions
12 1.26 mycroft * are met:
13 1.26 mycroft * 1. Redistributions of source code must retain the above copyright
14 1.26 mycroft * notice, this list of conditions and the following disclaimer.
15 1.26 mycroft * 2. Redistributions in binary form must reproduce the above copyright
16 1.26 mycroft * notice, this list of conditions and the following disclaimer in the
17 1.26 mycroft * documentation and/or other materials provided with the distribution.
18 1.26 mycroft *
19 1.26 mycroft * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.26 mycroft * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.26 mycroft * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.26 mycroft * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.26 mycroft * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.26 mycroft * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.26 mycroft * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.26 mycroft * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.26 mycroft * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.26 mycroft * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.26 mycroft * POSSIBILITY OF SUCH DAMAGE.
30 1.26 mycroft */
31 1.1 sommerfe
32 1.1 sommerfe /*
33 1.1 sommerfe * Copyright 2001 Bill Sommerfeld.
34 1.1 sommerfe * All rights reserved.
35 1.1 sommerfe *
36 1.1 sommerfe * Redistribution and use in source and binary forms, with or without
37 1.1 sommerfe * modification, are permitted provided that the following conditions
38 1.1 sommerfe * are met:
39 1.1 sommerfe * 1. Redistributions of source code must retain the above copyright
40 1.1 sommerfe * notice, this list of conditions and the following disclaimer.
41 1.1 sommerfe * 2. Redistributions in binary form must reproduce the above copyright
42 1.1 sommerfe * notice, this list of conditions and the following disclaimer in the
43 1.1 sommerfe * documentation and/or other materials provided with the distribution.
44 1.1 sommerfe * 3. All advertising materials mentioning features or use of this software
45 1.1 sommerfe * must display the following acknowledgement:
46 1.1 sommerfe * This product includes software developed for the NetBSD Project by
47 1.1 sommerfe * Wasabi Systems, Inc.
48 1.1 sommerfe * 4. The name of Wasabi Systems, Inc. may not be used to endorse
49 1.1 sommerfe * or promote products derived from this software without specific prior
50 1.1 sommerfe * written permission.
51 1.1 sommerfe *
52 1.1 sommerfe * THIS SOFTWARE IS PROVIDED BY WASABI SYSTEMS, INC. ``AS IS'' AND
53 1.1 sommerfe * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
54 1.1 sommerfe * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
55 1.1 sommerfe * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL WASABI SYSTEMS, INC
56 1.1 sommerfe * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
57 1.1 sommerfe * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
58 1.1 sommerfe * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
59 1.1 sommerfe * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
60 1.1 sommerfe * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
61 1.1 sommerfe * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
62 1.1 sommerfe * POSSIBILITY OF SUCH DAMAGE.
63 1.1 sommerfe */
64 1.1 sommerfe
65 1.1 sommerfe /*
66 1.1 sommerfe * ACPI Battery Driver.
67 1.1 sommerfe *
68 1.1 sommerfe * ACPI defines two different battery device interfaces: "Control
69 1.1 sommerfe * Method" batteries, in which AML methods are defined in order to get
70 1.1 sommerfe * battery status and set battery alarm thresholds, and a "Smart
71 1.1 sommerfe * Battery" device, which is an SMbus device accessed through the ACPI
72 1.1 sommerfe * Embedded Controller device.
73 1.1 sommerfe *
74 1.1 sommerfe * This driver is for the "Control Method"-style battery only.
75 1.1 sommerfe */
76 1.1 sommerfe
77 1.1 sommerfe #include <sys/cdefs.h>
78 1.89 jruoho __KERNEL_RCSID(0, "$NetBSD: acpi_bat.c,v 1.89 2010/03/17 08:07:27 jruoho Exp $");
79 1.1 sommerfe
80 1.1 sommerfe #include <sys/param.h>
81 1.84 jruoho #include <sys/condvar.h>
82 1.84 jruoho #include <sys/device.h>
83 1.84 jruoho #include <sys/kernel.h>
84 1.81 jruoho #include <sys/kmem.h>
85 1.83 jruoho #include <sys/module.h>
86 1.46 xtraeme #include <sys/mutex.h>
87 1.84 jruoho #include <sys/systm.h>
88 1.77 jruoho
89 1.1 sommerfe #include <dev/acpi/acpireg.h>
90 1.1 sommerfe #include <dev/acpi/acpivar.h>
91 1.1 sommerfe
92 1.77 jruoho #define _COMPONENT ACPI_BAT_COMPONENT
93 1.77 jruoho ACPI_MODULE_NAME ("acpi_bat")
94 1.73 mlelstv
95 1.76 jruoho /*
96 1.76 jruoho * Sensor indexes.
97 1.76 jruoho */
98 1.76 jruoho enum {
99 1.76 jruoho ACPIBAT_PRESENT = 0,
100 1.87 jruoho ACPIBAT_TECHNOLOGY = 1,
101 1.87 jruoho ACPIBAT_DVOLTAGE = 2,
102 1.87 jruoho ACPIBAT_VOLTAGE = 3,
103 1.87 jruoho ACPIBAT_DCAPACITY = 4,
104 1.87 jruoho ACPIBAT_LFCCAPACITY = 5,
105 1.87 jruoho ACPIBAT_CAPACITY = 6,
106 1.87 jruoho ACPIBAT_CHARGERATE = 7,
107 1.87 jruoho ACPIBAT_DISCHARGERATE = 8,
108 1.87 jruoho ACPIBAT_CHARGING = 9,
109 1.87 jruoho ACPIBAT_CHARGE_STATE = 10,
110 1.87 jruoho ACPIBAT_COUNT = 11
111 1.76 jruoho };
112 1.76 jruoho
113 1.76 jruoho /*
114 1.76 jruoho * Battery Information, _BIF
115 1.76 jruoho * (ACPI 3.0, sec. 10.2.2.1).
116 1.76 jruoho */
117 1.76 jruoho enum {
118 1.76 jruoho ACPIBAT_BIF_UNIT = 0,
119 1.76 jruoho ACPIBAT_BIF_DCAPACITY = 1,
120 1.76 jruoho ACPIBAT_BIF_LFCCAPACITY = 2,
121 1.76 jruoho ACPIBAT_BIF_TECHNOLOGY = 3,
122 1.76 jruoho ACPIBAT_BIF_DVOLTAGE = 4,
123 1.76 jruoho ACPIBAT_BIF_WCAPACITY = 5,
124 1.76 jruoho ACPIBAT_BIF_LCAPACITY = 6,
125 1.76 jruoho ACPIBAT_BIF_GRANULARITY1 = 7,
126 1.76 jruoho ACPIBAT_BIF_GRANULARITY2 = 8,
127 1.76 jruoho ACPIBAT_BIF_MODEL = 9,
128 1.76 jruoho ACPIBAT_BIF_SERIAL = 10,
129 1.76 jruoho ACPIBAT_BIF_TYPE = 11,
130 1.76 jruoho ACPIBAT_BIF_OEM = 12,
131 1.76 jruoho ACPIBAT_BIF_COUNT = 13
132 1.76 jruoho };
133 1.76 jruoho
134 1.76 jruoho /*
135 1.76 jruoho * Battery Status, _BST
136 1.76 jruoho * (ACPI 3.0, sec. 10.2.2.3).
137 1.76 jruoho */
138 1.76 jruoho enum {
139 1.76 jruoho ACPIBAT_BST_STATE = 0,
140 1.76 jruoho ACPIBAT_BST_RATE = 1,
141 1.76 jruoho ACPIBAT_BST_CAPACITY = 2,
142 1.76 jruoho ACPIBAT_BST_VOLTAGE = 3,
143 1.76 jruoho ACPIBAT_BST_COUNT = 4
144 1.76 jruoho };
145 1.14 explorer
146 1.1 sommerfe struct acpibat_softc {
147 1.77 jruoho struct acpi_devnode *sc_node;
148 1.77 jruoho struct sysmon_envsys *sc_sme;
149 1.81 jruoho envsys_data_t *sc_sensor;
150 1.77 jruoho kmutex_t sc_mutex;
151 1.77 jruoho kcondvar_t sc_condvar;
152 1.87 jruoho int32_t sc_lcapacity;
153 1.87 jruoho int32_t sc_wcapacity;
154 1.78 jruoho int sc_present;
155 1.1 sommerfe };
156 1.1 sommerfe
157 1.33 kochi static const char * const bat_hid[] = {
158 1.33 kochi "PNP0C0A",
159 1.33 kochi NULL
160 1.33 kochi };
161 1.33 kochi
162 1.11 explorer #define ACPIBAT_PWRUNIT_MA 0x00000001 /* mA not mW */
163 1.14 explorer #define ACPIBAT_ST_DISCHARGING 0x00000001 /* battery is discharging */
164 1.14 explorer #define ACPIBAT_ST_CHARGING 0x00000002 /* battery is charging */
165 1.14 explorer #define ACPIBAT_ST_CRITICAL 0x00000004 /* battery is critical */
166 1.11 explorer
167 1.11 explorer /*
168 1.88 jruoho * A value used when _BST or _BIF is temporarily unknown.
169 1.76 jruoho */
170 1.76 jruoho #define ACPIBAT_VAL_UNKNOWN 0xFFFFFFFF
171 1.76 jruoho
172 1.76 jruoho #define ACPIBAT_VAL_ISVALID(x) \
173 1.76 jruoho (((x) != ACPIBAT_VAL_UNKNOWN) ? ENVSYS_SVALID : ENVSYS_SINVALID)
174 1.76 jruoho
175 1.77 jruoho static int acpibat_match(device_t, cfdata_t, void *);
176 1.77 jruoho static void acpibat_attach(device_t, device_t, void *);
177 1.80 jruoho static int acpibat_detach(device_t, int);
178 1.77 jruoho static int acpibat_get_sta(device_t);
179 1.77 jruoho static ACPI_OBJECT *acpibat_get_object(ACPI_HANDLE, const char *, int);
180 1.77 jruoho static void acpibat_get_info(device_t);
181 1.77 jruoho static void acpibat_get_status(device_t);
182 1.77 jruoho static void acpibat_update_info(void *);
183 1.77 jruoho static void acpibat_update_status(void *);
184 1.77 jruoho static void acpibat_init_envsys(device_t);
185 1.77 jruoho static void acpibat_notify_handler(ACPI_HANDLE, UINT32, void *);
186 1.77 jruoho static void acpibat_refresh(struct sysmon_envsys *, envsys_data_t *);
187 1.82 dyoung static bool acpibat_resume(device_t, const pmf_qual_t *);
188 1.87 jruoho static void acpibat_get_limits(struct sysmon_envsys *, envsys_data_t *,
189 1.87 jruoho sysmon_envsys_lim_t *, uint32_t *);
190 1.1 sommerfe
191 1.58 joerg CFATTACH_DECL_NEW(acpibat, sizeof(struct acpibat_softc),
192 1.80 jruoho acpibat_match, acpibat_attach, acpibat_detach, NULL);
193 1.1 sommerfe
194 1.1 sommerfe /*
195 1.1 sommerfe * acpibat_match:
196 1.1 sommerfe *
197 1.1 sommerfe * Autoconfiguration `match' routine.
198 1.1 sommerfe */
199 1.39 kochi static int
200 1.70 cegger acpibat_match(device_t parent, cfdata_t match, void *aux)
201 1.1 sommerfe {
202 1.1 sommerfe struct acpi_attach_args *aa = aux;
203 1.1 sommerfe
204 1.1 sommerfe if (aa->aa_node->ad_type != ACPI_TYPE_DEVICE)
205 1.37 kochi return 0;
206 1.1 sommerfe
207 1.37 kochi return acpi_match_hid(aa->aa_node->ad_devinfo, bat_hid);
208 1.1 sommerfe }
209 1.1 sommerfe
210 1.1 sommerfe /*
211 1.1 sommerfe * acpibat_attach:
212 1.1 sommerfe *
213 1.1 sommerfe * Autoconfiguration `attach' routine.
214 1.1 sommerfe */
215 1.39 kochi static void
216 1.58 joerg acpibat_attach(device_t parent, device_t self, void *aux)
217 1.1 sommerfe {
218 1.58 joerg struct acpibat_softc *sc = device_private(self);
219 1.1 sommerfe struct acpi_attach_args *aa = aux;
220 1.1 sommerfe ACPI_STATUS rv;
221 1.1 sommerfe
222 1.77 jruoho aprint_naive(": ACPI Battery\n");
223 1.77 jruoho aprint_normal(": ACPI Battery\n");
224 1.1 sommerfe
225 1.1 sommerfe sc->sc_node = aa->aa_node;
226 1.87 jruoho
227 1.78 jruoho sc->sc_present = 0;
228 1.87 jruoho sc->sc_lcapacity = 0;
229 1.87 jruoho sc->sc_wcapacity = 0;
230 1.81 jruoho
231 1.80 jruoho sc->sc_sme = NULL;
232 1.81 jruoho sc->sc_sensor = NULL;
233 1.1 sommerfe
234 1.69 jmcneill mutex_init(&sc->sc_mutex, MUTEX_DEFAULT, IPL_NONE);
235 1.69 jmcneill cv_init(&sc->sc_condvar, device_xname(self));
236 1.69 jmcneill
237 1.77 jruoho if (pmf_device_register(self, NULL, acpibat_resume) != true)
238 1.64 jmcneill aprint_error_dev(self, "couldn't establish power handler\n");
239 1.64 jmcneill
240 1.77 jruoho rv = AcpiInstallNotifyHandler(sc->sc_node->ad_handle,
241 1.77 jruoho ACPI_ALL_NOTIFY, acpibat_notify_handler, self);
242 1.1 sommerfe
243 1.81 jruoho if (ACPI_FAILURE(rv)) {
244 1.77 jruoho aprint_error_dev(self, "couldn't install notify handler\n");
245 1.81 jruoho return;
246 1.81 jruoho }
247 1.81 jruoho
248 1.81 jruoho sc->sc_sensor = kmem_zalloc(ACPIBAT_COUNT *
249 1.81 jruoho sizeof(*sc->sc_sensor), KM_SLEEP);
250 1.81 jruoho
251 1.81 jruoho if (sc->sc_sensor == NULL)
252 1.81 jruoho return;
253 1.81 jruoho
254 1.81 jruoho acpibat_init_envsys(self);
255 1.1 sommerfe }
256 1.1 sommerfe
257 1.13 explorer /*
258 1.80 jruoho * acpibat_detach:
259 1.80 jruoho *
260 1.80 jruoho * Autoconfiguration `detach' routine.
261 1.80 jruoho */
262 1.80 jruoho static int
263 1.80 jruoho acpibat_detach(device_t self, int flags)
264 1.80 jruoho {
265 1.80 jruoho struct acpibat_softc *sc = device_private(self);
266 1.80 jruoho ACPI_STATUS rv;
267 1.80 jruoho
268 1.80 jruoho rv = AcpiRemoveNotifyHandler(sc->sc_node->ad_handle,
269 1.80 jruoho ACPI_ALL_NOTIFY, acpibat_notify_handler);
270 1.80 jruoho
271 1.80 jruoho if (ACPI_FAILURE(rv))
272 1.80 jruoho return EBUSY;
273 1.80 jruoho
274 1.80 jruoho cv_destroy(&sc->sc_condvar);
275 1.80 jruoho mutex_destroy(&sc->sc_mutex);
276 1.80 jruoho
277 1.80 jruoho if (sc->sc_sme != NULL)
278 1.80 jruoho sysmon_envsys_unregister(sc->sc_sme);
279 1.80 jruoho
280 1.81 jruoho if (sc->sc_sensor != NULL)
281 1.81 jruoho kmem_free(sc->sc_sensor, ACPIBAT_COUNT *
282 1.81 jruoho sizeof(*sc->sc_sensor));
283 1.81 jruoho
284 1.80 jruoho pmf_device_deregister(self);
285 1.80 jruoho
286 1.80 jruoho return 0;
287 1.80 jruoho }
288 1.80 jruoho
289 1.80 jruoho /*
290 1.77 jruoho * acpibat_get_sta:
291 1.76 jruoho *
292 1.76 jruoho * Evaluate whether the battery is present or absent.
293 1.76 jruoho *
294 1.76 jruoho * Returns: 0 for no battery, 1 for present, and -1 on error.
295 1.13 explorer */
296 1.39 kochi static int
297 1.77 jruoho acpibat_get_sta(device_t dv)
298 1.13 explorer {
299 1.59 joerg struct acpibat_softc *sc = device_private(dv);
300 1.36 kanaoka ACPI_INTEGER val;
301 1.13 explorer ACPI_STATUS rv;
302 1.13 explorer
303 1.20 kochi rv = acpi_eval_integer(sc->sc_node->ad_handle, "_STA", &val);
304 1.76 jruoho
305 1.35 mycroft if (ACPI_FAILURE(rv)) {
306 1.76 jruoho aprint_error_dev(dv, "failed to evaluate _STA\n");
307 1.37 kochi return -1;
308 1.13 explorer }
309 1.13 explorer
310 1.76 jruoho sc->sc_sensor[ACPIBAT_PRESENT].state = ENVSYS_SVALID;
311 1.76 jruoho
312 1.85 jruoho if ((val & ACPI_STA_BATTERY_PRESENT) == 0) {
313 1.62 xtraeme sc->sc_sensor[ACPIBAT_PRESENT].value_cur = 0;
314 1.76 jruoho return 0;
315 1.76 jruoho }
316 1.46 xtraeme
317 1.76 jruoho sc->sc_sensor[ACPIBAT_PRESENT].value_cur = 1;
318 1.76 jruoho
319 1.76 jruoho return 1;
320 1.76 jruoho }
321 1.76 jruoho
322 1.76 jruoho static ACPI_OBJECT *
323 1.76 jruoho acpibat_get_object(ACPI_HANDLE hdl, const char *pth, int count)
324 1.76 jruoho {
325 1.76 jruoho ACPI_OBJECT *obj;
326 1.76 jruoho ACPI_BUFFER buf;
327 1.76 jruoho ACPI_STATUS rv;
328 1.76 jruoho
329 1.76 jruoho rv = acpi_eval_struct(hdl, pth, &buf);
330 1.76 jruoho
331 1.76 jruoho if (ACPI_FAILURE(rv))
332 1.76 jruoho return NULL;
333 1.76 jruoho
334 1.76 jruoho obj = buf.Pointer;
335 1.76 jruoho
336 1.76 jruoho if (obj->Type != ACPI_TYPE_PACKAGE) {
337 1.76 jruoho ACPI_FREE(buf.Pointer);
338 1.76 jruoho return NULL;
339 1.76 jruoho }
340 1.76 jruoho
341 1.76 jruoho if (obj->Package.Count != count) {
342 1.76 jruoho ACPI_FREE(buf.Pointer);
343 1.76 jruoho return NULL;
344 1.76 jruoho }
345 1.76 jruoho
346 1.76 jruoho return obj;
347 1.13 explorer }
348 1.1 sommerfe
349 1.1 sommerfe /*
350 1.76 jruoho * acpibat_get_info:
351 1.1 sommerfe *
352 1.1 sommerfe * Get, and possibly display, the battery info.
353 1.1 sommerfe */
354 1.77 jruoho static void
355 1.59 joerg acpibat_get_info(device_t dv)
356 1.1 sommerfe {
357 1.59 joerg struct acpibat_softc *sc = device_private(dv);
358 1.76 jruoho ACPI_HANDLE hdl = sc->sc_node->ad_handle;
359 1.76 jruoho int capunit, i, j, rateunit, val;
360 1.76 jruoho ACPI_OBJECT *elm, *obj;
361 1.76 jruoho ACPI_STATUS rv = AE_OK;
362 1.76 jruoho
363 1.76 jruoho obj = acpibat_get_object(hdl, "_BIF", ACPIBAT_BIF_COUNT);
364 1.13 explorer
365 1.76 jruoho if (obj == NULL) {
366 1.76 jruoho rv = AE_ERROR;
367 1.76 jruoho goto out;
368 1.1 sommerfe }
369 1.32 mycroft
370 1.76 jruoho elm = obj->Package.Elements;
371 1.76 jruoho
372 1.76 jruoho for (i = ACPIBAT_BIF_UNIT; i < ACPIBAT_BIF_MODEL; i++) {
373 1.76 jruoho
374 1.76 jruoho if (elm[i].Type != ACPI_TYPE_INTEGER) {
375 1.76 jruoho rv = AE_TYPE;
376 1.76 jruoho goto out;
377 1.76 jruoho }
378 1.76 jruoho
379 1.76 jruoho KDASSERT((uint64_t)elm[i].Integer.Value < INT_MAX);
380 1.1 sommerfe }
381 1.76 jruoho
382 1.76 jruoho aprint_verbose_dev(dv, "battery info: ");
383 1.76 jruoho
384 1.76 jruoho for (i = j = ACPIBAT_BIF_OEM; i > ACPIBAT_BIF_GRANULARITY2; i--) {
385 1.76 jruoho
386 1.76 jruoho if (elm[i].Type != ACPI_TYPE_STRING)
387 1.76 jruoho continue;
388 1.76 jruoho
389 1.76 jruoho if (elm[i].String.Pointer == NULL)
390 1.76 jruoho continue;
391 1.76 jruoho
392 1.76 jruoho aprint_verbose("%s ", elm[i].String.Pointer);
393 1.76 jruoho
394 1.76 jruoho j = 0;
395 1.8 jmcneill }
396 1.15 tshiozak
397 1.76 jruoho if (j != 0)
398 1.76 jruoho aprint_verbose("not available");
399 1.76 jruoho
400 1.76 jruoho aprint_verbose("\n");
401 1.76 jruoho
402 1.76 jruoho if ((elm[ACPIBAT_BIF_UNIT].Integer.Value & ACPIBAT_PWRUNIT_MA) != 0) {
403 1.15 tshiozak capunit = ENVSYS_SAMPHOUR;
404 1.15 tshiozak rateunit = ENVSYS_SAMPS;
405 1.15 tshiozak } else {
406 1.15 tshiozak capunit = ENVSYS_SWATTHOUR;
407 1.15 tshiozak rateunit = ENVSYS_SWATTS;
408 1.15 tshiozak }
409 1.32 mycroft
410 1.62 xtraeme sc->sc_sensor[ACPIBAT_DCAPACITY].units = capunit;
411 1.62 xtraeme sc->sc_sensor[ACPIBAT_LFCCAPACITY].units = capunit;
412 1.62 xtraeme sc->sc_sensor[ACPIBAT_CHARGERATE].units = rateunit;
413 1.62 xtraeme sc->sc_sensor[ACPIBAT_DISCHARGERATE].units = rateunit;
414 1.62 xtraeme sc->sc_sensor[ACPIBAT_CAPACITY].units = capunit;
415 1.62 xtraeme
416 1.76 jruoho /* Design capacity. */
417 1.88 jruoho val = elm[ACPIBAT_BIF_DCAPACITY].Integer.Value;
418 1.88 jruoho sc->sc_sensor[ACPIBAT_DCAPACITY].value_cur = val * 1000;
419 1.76 jruoho sc->sc_sensor[ACPIBAT_DCAPACITY].state = ACPIBAT_VAL_ISVALID(val);
420 1.76 jruoho
421 1.76 jruoho /* Last full charge capacity. */
422 1.88 jruoho val = elm[ACPIBAT_BIF_LFCCAPACITY].Integer.Value;
423 1.88 jruoho sc->sc_sensor[ACPIBAT_LFCCAPACITY].value_cur = val * 1000;
424 1.76 jruoho sc->sc_sensor[ACPIBAT_LFCCAPACITY].state = ACPIBAT_VAL_ISVALID(val);
425 1.76 jruoho
426 1.76 jruoho /* Battery technology. */
427 1.76 jruoho val = elm[ACPIBAT_BIF_TECHNOLOGY].Integer.Value;
428 1.76 jruoho sc->sc_sensor[ACPIBAT_TECHNOLOGY].value_cur = val;
429 1.76 jruoho sc->sc_sensor[ACPIBAT_TECHNOLOGY].state = ACPIBAT_VAL_ISVALID(val);
430 1.76 jruoho
431 1.76 jruoho /* Design voltage. */
432 1.88 jruoho val = elm[ACPIBAT_BIF_DVOLTAGE].Integer.Value;
433 1.88 jruoho sc->sc_sensor[ACPIBAT_DVOLTAGE].value_cur = val * 1000;
434 1.76 jruoho sc->sc_sensor[ACPIBAT_DVOLTAGE].state = ACPIBAT_VAL_ISVALID(val);
435 1.76 jruoho
436 1.87 jruoho /* Design low and warning capacity. */
437 1.87 jruoho sc->sc_lcapacity = elm[ACPIBAT_BIF_LCAPACITY].Integer.Value * 1000;
438 1.87 jruoho sc->sc_wcapacity = elm[ACPIBAT_BIF_WCAPACITY].Integer.Value * 1000;
439 1.76 jruoho
440 1.76 jruoho /*
441 1.87 jruoho * Initialize the maximum of current capacity
442 1.87 jruoho * to the last known full charge capacity.
443 1.76 jruoho */
444 1.76 jruoho val = sc->sc_sensor[ACPIBAT_LFCCAPACITY].value_cur;
445 1.76 jruoho sc->sc_sensor[ACPIBAT_CAPACITY].value_max = val;
446 1.76 jruoho
447 1.76 jruoho out:
448 1.76 jruoho if (obj != NULL)
449 1.76 jruoho ACPI_FREE(obj);
450 1.15 tshiozak
451 1.76 jruoho if (ACPI_FAILURE(rv))
452 1.76 jruoho aprint_error_dev(dv, "failed to evaluate _BIF: %s\n",
453 1.76 jruoho AcpiFormatException(rv));
454 1.1 sommerfe }
455 1.1 sommerfe
456 1.1 sommerfe /*
457 1.1 sommerfe * acpibat_get_status:
458 1.1 sommerfe *
459 1.1 sommerfe * Get, and possibly display, the current battery line status.
460 1.1 sommerfe */
461 1.77 jruoho static void
462 1.59 joerg acpibat_get_status(device_t dv)
463 1.1 sommerfe {
464 1.59 joerg struct acpibat_softc *sc = device_private(dv);
465 1.76 jruoho ACPI_HANDLE hdl = sc->sc_node->ad_handle;
466 1.76 jruoho int i, rate, state, val;
467 1.76 jruoho ACPI_OBJECT *elm, *obj;
468 1.76 jruoho ACPI_STATUS rv = AE_OK;
469 1.1 sommerfe
470 1.76 jruoho obj = acpibat_get_object(hdl, "_BST", ACPIBAT_BST_COUNT);
471 1.1 sommerfe
472 1.76 jruoho if (obj == NULL) {
473 1.20 kochi rv = AE_ERROR;
474 1.20 kochi goto out;
475 1.1 sommerfe }
476 1.76 jruoho
477 1.76 jruoho elm = obj->Package.Elements;
478 1.76 jruoho
479 1.76 jruoho for (i = ACPIBAT_BST_STATE; i < ACPIBAT_BST_COUNT; i++) {
480 1.76 jruoho
481 1.76 jruoho if (elm[i].Type != ACPI_TYPE_INTEGER) {
482 1.76 jruoho rv = AE_TYPE;
483 1.76 jruoho goto out;
484 1.76 jruoho }
485 1.10 jmcneill }
486 1.1 sommerfe
487 1.76 jruoho state = elm[ACPIBAT_BST_STATE].Integer.Value;
488 1.46 xtraeme
489 1.76 jruoho if ((state & ACPIBAT_ST_CHARGING) != 0) {
490 1.79 drochner /* XXX rate can be invalid */
491 1.79 drochner rate = elm[ACPIBAT_BST_RATE].Integer.Value;
492 1.62 xtraeme sc->sc_sensor[ACPIBAT_CHARGERATE].state = ENVSYS_SVALID;
493 1.76 jruoho sc->sc_sensor[ACPIBAT_CHARGERATE].value_cur = rate * 1000;
494 1.62 xtraeme sc->sc_sensor[ACPIBAT_DISCHARGERATE].state = ENVSYS_SINVALID;
495 1.62 xtraeme sc->sc_sensor[ACPIBAT_CHARGING].state = ENVSYS_SVALID;
496 1.62 xtraeme sc->sc_sensor[ACPIBAT_CHARGING].value_cur = 1;
497 1.76 jruoho } else if ((state & ACPIBAT_ST_DISCHARGING) != 0) {
498 1.79 drochner rate = elm[ACPIBAT_BST_RATE].Integer.Value;
499 1.62 xtraeme sc->sc_sensor[ACPIBAT_DISCHARGERATE].state = ENVSYS_SVALID;
500 1.76 jruoho sc->sc_sensor[ACPIBAT_DISCHARGERATE].value_cur = rate * 1000;
501 1.62 xtraeme sc->sc_sensor[ACPIBAT_CHARGERATE].state = ENVSYS_SINVALID;
502 1.62 xtraeme sc->sc_sensor[ACPIBAT_CHARGING].state = ENVSYS_SVALID;
503 1.62 xtraeme sc->sc_sensor[ACPIBAT_CHARGING].value_cur = 0;
504 1.76 jruoho } else {
505 1.62 xtraeme sc->sc_sensor[ACPIBAT_CHARGING].state = ENVSYS_SVALID;
506 1.62 xtraeme sc->sc_sensor[ACPIBAT_CHARGING].value_cur = 0;
507 1.62 xtraeme sc->sc_sensor[ACPIBAT_CHARGERATE].state = ENVSYS_SINVALID;
508 1.62 xtraeme sc->sc_sensor[ACPIBAT_DISCHARGERATE].state = ENVSYS_SINVALID;
509 1.46 xtraeme }
510 1.46 xtraeme
511 1.76 jruoho /* Remaining capacity. */
512 1.88 jruoho val = elm[ACPIBAT_BST_CAPACITY].Integer.Value;
513 1.88 jruoho sc->sc_sensor[ACPIBAT_CAPACITY].value_cur = val * 1000;
514 1.76 jruoho sc->sc_sensor[ACPIBAT_CAPACITY].state = ACPIBAT_VAL_ISVALID(val);
515 1.76 jruoho sc->sc_sensor[ACPIBAT_CAPACITY].flags |=
516 1.76 jruoho ENVSYS_FPERCENT | ENVSYS_FVALID_MAX;
517 1.76 jruoho
518 1.76 jruoho /* Battery voltage. */
519 1.88 jruoho val = elm[ACPIBAT_BST_VOLTAGE].Integer.Value;
520 1.88 jruoho sc->sc_sensor[ACPIBAT_VOLTAGE].value_cur = val * 1000;
521 1.76 jruoho sc->sc_sensor[ACPIBAT_VOLTAGE].state = ACPIBAT_VAL_ISVALID(val);
522 1.76 jruoho
523 1.78 jruoho sc->sc_sensor[ACPIBAT_CHARGE_STATE].state = ENVSYS_SVALID;
524 1.62 xtraeme sc->sc_sensor[ACPIBAT_CHARGE_STATE].value_cur =
525 1.61 xtraeme ENVSYS_BATTERY_CAPACITY_NORMAL;
526 1.56 xtraeme
527 1.87 jruoho if (sc->sc_sensor[ACPIBAT_CAPACITY].value_cur < sc->sc_wcapacity) {
528 1.62 xtraeme sc->sc_sensor[ACPIBAT_CAPACITY].state = ENVSYS_SWARNUNDER;
529 1.62 xtraeme sc->sc_sensor[ACPIBAT_CHARGE_STATE].value_cur =
530 1.61 xtraeme ENVSYS_BATTERY_CAPACITY_WARNING;
531 1.55 xtraeme }
532 1.46 xtraeme
533 1.87 jruoho if (sc->sc_sensor[ACPIBAT_CAPACITY].value_cur < sc->sc_lcapacity) {
534 1.62 xtraeme sc->sc_sensor[ACPIBAT_CAPACITY].state = ENVSYS_SCRITUNDER;
535 1.62 xtraeme sc->sc_sensor[ACPIBAT_CHARGE_STATE].value_cur =
536 1.61 xtraeme ENVSYS_BATTERY_CAPACITY_LOW;
537 1.55 xtraeme }
538 1.46 xtraeme
539 1.76 jruoho if ((state & ACPIBAT_ST_CRITICAL) != 0) {
540 1.62 xtraeme sc->sc_sensor[ACPIBAT_CAPACITY].state = ENVSYS_SCRITICAL;
541 1.62 xtraeme sc->sc_sensor[ACPIBAT_CHARGE_STATE].value_cur =
542 1.61 xtraeme ENVSYS_BATTERY_CAPACITY_CRITICAL;
543 1.55 xtraeme }
544 1.46 xtraeme
545 1.76 jruoho out:
546 1.76 jruoho if (obj != NULL)
547 1.76 jruoho ACPI_FREE(obj);
548 1.76 jruoho
549 1.76 jruoho if (ACPI_FAILURE(rv))
550 1.76 jruoho aprint_error_dev(dv, "failed to evaluate _BST: %s\n",
551 1.76 jruoho AcpiFormatException(rv));
552 1.15 tshiozak }
553 1.15 tshiozak
554 1.15 tshiozak static void
555 1.77 jruoho acpibat_update_info(void *arg)
556 1.15 tshiozak {
557 1.77 jruoho device_t dv = arg;
558 1.59 joerg struct acpibat_softc *sc = device_private(dv);
559 1.77 jruoho int i, rv;
560 1.15 tshiozak
561 1.77 jruoho mutex_enter(&sc->sc_mutex);
562 1.15 tshiozak
563 1.77 jruoho rv = acpibat_get_sta(dv);
564 1.15 tshiozak
565 1.77 jruoho if (rv > 0)
566 1.77 jruoho acpibat_get_info(dv);
567 1.77 jruoho else {
568 1.87 jruoho i = (rv < 0) ? 0 : ACPIBAT_TECHNOLOGY;
569 1.77 jruoho
570 1.77 jruoho while (i < ACPIBAT_COUNT) {
571 1.77 jruoho sc->sc_sensor[i].state = ENVSYS_SINVALID;
572 1.77 jruoho i++;
573 1.77 jruoho }
574 1.52 cube }
575 1.46 xtraeme
576 1.78 jruoho sc->sc_present = rv;
577 1.78 jruoho
578 1.77 jruoho mutex_exit(&sc->sc_mutex);
579 1.15 tshiozak }
580 1.15 tshiozak
581 1.15 tshiozak static void
582 1.77 jruoho acpibat_update_status(void *arg)
583 1.15 tshiozak {
584 1.59 joerg device_t dv = arg;
585 1.59 joerg struct acpibat_softc *sc = device_private(dv);
586 1.77 jruoho int i, rv;
587 1.15 tshiozak
588 1.77 jruoho mutex_enter(&sc->sc_mutex);
589 1.15 tshiozak
590 1.77 jruoho rv = acpibat_get_sta(dv);
591 1.15 tshiozak
592 1.78 jruoho if (rv > 0) {
593 1.78 jruoho
594 1.78 jruoho if (sc->sc_present == 0)
595 1.78 jruoho acpibat_get_info(dv);
596 1.78 jruoho
597 1.77 jruoho acpibat_get_status(dv);
598 1.78 jruoho } else {
599 1.87 jruoho i = (rv < 0) ? 0 : ACPIBAT_TECHNOLOGY;
600 1.77 jruoho
601 1.77 jruoho while (i < ACPIBAT_COUNT) {
602 1.77 jruoho sc->sc_sensor[i].state = ENVSYS_SINVALID;
603 1.77 jruoho i++;
604 1.77 jruoho }
605 1.77 jruoho }
606 1.67 jmcneill
607 1.78 jruoho sc->sc_present = rv;
608 1.78 jruoho
609 1.69 jmcneill cv_broadcast(&sc->sc_condvar);
610 1.69 jmcneill mutex_exit(&sc->sc_mutex);
611 1.67 jmcneill }
612 1.67 jmcneill
613 1.1 sommerfe /*
614 1.1 sommerfe * acpibat_notify_handler:
615 1.1 sommerfe *
616 1.1 sommerfe * Callback from ACPI interrupt handler to notify us of an event.
617 1.1 sommerfe */
618 1.39 kochi static void
619 1.46 xtraeme acpibat_notify_handler(ACPI_HANDLE handle, UINT32 notify, void *context)
620 1.1 sommerfe {
621 1.77 jruoho static const int handler = OSL_NOTIFY_HANDLER;
622 1.59 joerg device_t dv = context;
623 1.1 sommerfe
624 1.77 jruoho switch (notify) {
625 1.11 explorer
626 1.1 sommerfe case ACPI_NOTIFY_BusCheck:
627 1.11 explorer break;
628 1.77 jruoho
629 1.40 mycroft case ACPI_NOTIFY_DeviceCheck:
630 1.11 explorer case ACPI_NOTIFY_BatteryInformationChanged:
631 1.77 jruoho (void)AcpiOsExecute(handler, acpibat_update_info, dv);
632 1.13 explorer break;
633 1.11 explorer
634 1.1 sommerfe case ACPI_NOTIFY_BatteryStatusChanged:
635 1.77 jruoho (void)AcpiOsExecute(handler, acpibat_update_status, dv);
636 1.1 sommerfe break;
637 1.11 explorer
638 1.1 sommerfe default:
639 1.77 jruoho aprint_error_dev(dv, "unknown notify: 0x%02X\n", notify);
640 1.1 sommerfe }
641 1.14 explorer }
642 1.14 explorer
643 1.39 kochi static void
644 1.59 joerg acpibat_init_envsys(device_t dv)
645 1.14 explorer {
646 1.59 joerg struct acpibat_softc *sc = device_private(dv);
647 1.77 jruoho int i;
648 1.14 explorer
649 1.62 xtraeme #define INITDATA(index, unit, string) \
650 1.77 jruoho do { \
651 1.77 jruoho sc->sc_sensor[index].state = ENVSYS_SVALID; \
652 1.77 jruoho sc->sc_sensor[index].units = unit; \
653 1.77 jruoho (void)strlcpy(sc->sc_sensor[index].desc, string, \
654 1.77 jruoho sizeof(sc->sc_sensor[index].desc)); \
655 1.77 jruoho } while (/* CONSTCOND */ 0)
656 1.32 mycroft
657 1.15 tshiozak INITDATA(ACPIBAT_PRESENT, ENVSYS_INDICATOR, "present");
658 1.77 jruoho INITDATA(ACPIBAT_DCAPACITY, ENVSYS_SWATTHOUR, "design cap");
659 1.77 jruoho INITDATA(ACPIBAT_LFCCAPACITY, ENVSYS_SWATTHOUR, "last full cap");
660 1.14 explorer INITDATA(ACPIBAT_TECHNOLOGY, ENVSYS_INTEGER, "technology");
661 1.14 explorer INITDATA(ACPIBAT_DVOLTAGE, ENVSYS_SVOLTS_DC, "design voltage");
662 1.14 explorer INITDATA(ACPIBAT_VOLTAGE, ENVSYS_SVOLTS_DC, "voltage");
663 1.77 jruoho INITDATA(ACPIBAT_CHARGERATE, ENVSYS_SWATTS, "charge rate");
664 1.77 jruoho INITDATA(ACPIBAT_DISCHARGERATE, ENVSYS_SWATTS, "discharge rate");
665 1.77 jruoho INITDATA(ACPIBAT_CAPACITY, ENVSYS_SWATTHOUR, "charge");
666 1.61 xtraeme INITDATA(ACPIBAT_CHARGING, ENVSYS_BATTERY_CHARGE, "charging");
667 1.61 xtraeme INITDATA(ACPIBAT_CHARGE_STATE, ENVSYS_BATTERY_CAPACITY, "charge state");
668 1.32 mycroft
669 1.32 mycroft #undef INITDATA
670 1.14 explorer
671 1.87 jruoho sc->sc_sensor[ACPIBAT_CAPACITY].flags |= ENVSYS_FMONLIMITS;
672 1.62 xtraeme sc->sc_sensor[ACPIBAT_CHARGE_STATE].flags |= ENVSYS_FMONSTCHANGED;
673 1.53 xtraeme
674 1.87 jruoho /* Disable userland monitoring on these sensors. */
675 1.62 xtraeme sc->sc_sensor[ACPIBAT_VOLTAGE].flags = ENVSYS_FMONNOTSUPP;
676 1.62 xtraeme sc->sc_sensor[ACPIBAT_CHARGERATE].flags = ENVSYS_FMONNOTSUPP;
677 1.62 xtraeme sc->sc_sensor[ACPIBAT_DISCHARGERATE].flags = ENVSYS_FMONNOTSUPP;
678 1.62 xtraeme sc->sc_sensor[ACPIBAT_DCAPACITY].flags = ENVSYS_FMONNOTSUPP;
679 1.62 xtraeme sc->sc_sensor[ACPIBAT_LFCCAPACITY].flags = ENVSYS_FMONNOTSUPP;
680 1.62 xtraeme sc->sc_sensor[ACPIBAT_TECHNOLOGY].flags = ENVSYS_FMONNOTSUPP;
681 1.62 xtraeme sc->sc_sensor[ACPIBAT_DVOLTAGE].flags = ENVSYS_FMONNOTSUPP;
682 1.62 xtraeme
683 1.62 xtraeme sc->sc_sme = sysmon_envsys_create();
684 1.77 jruoho
685 1.76 jruoho for (i = 0; i < ACPIBAT_COUNT; i++) {
686 1.77 jruoho
687 1.62 xtraeme if (sysmon_envsys_sensor_attach(sc->sc_sme,
688 1.77 jruoho &sc->sc_sensor[i]))
689 1.77 jruoho goto fail;
690 1.62 xtraeme }
691 1.62 xtraeme
692 1.62 xtraeme sc->sc_sme->sme_name = device_xname(dv);
693 1.69 jmcneill sc->sc_sme->sme_cookie = dv;
694 1.69 jmcneill sc->sc_sme->sme_refresh = acpibat_refresh;
695 1.62 xtraeme sc->sc_sme->sme_class = SME_CLASS_BATTERY;
696 1.69 jmcneill sc->sc_sme->sme_flags = SME_POLL_ONLY;
697 1.87 jruoho sc->sc_sme->sme_get_limits = acpibat_get_limits;
698 1.14 explorer
699 1.77 jruoho acpibat_update_info(dv);
700 1.77 jruoho acpibat_update_status(dv);
701 1.77 jruoho
702 1.77 jruoho if (sysmon_envsys_register(sc->sc_sme))
703 1.77 jruoho goto fail;
704 1.23 mycroft
705 1.77 jruoho return;
706 1.77 jruoho
707 1.77 jruoho fail:
708 1.77 jruoho aprint_error_dev(dv, "failed to initialize sysmon\n");
709 1.81 jruoho
710 1.77 jruoho sysmon_envsys_destroy(sc->sc_sme);
711 1.81 jruoho kmem_free(sc->sc_sensor, ACPIBAT_COUNT * sizeof(*sc->sc_sensor));
712 1.81 jruoho
713 1.80 jruoho sc->sc_sme = NULL;
714 1.81 jruoho sc->sc_sensor = NULL;
715 1.14 explorer }
716 1.69 jmcneill
717 1.69 jmcneill static void
718 1.69 jmcneill acpibat_refresh(struct sysmon_envsys *sme, envsys_data_t *edata)
719 1.69 jmcneill {
720 1.69 jmcneill device_t dv = sme->sme_cookie;
721 1.69 jmcneill struct acpibat_softc *sc = device_private(dv);
722 1.69 jmcneill ACPI_STATUS rv;
723 1.69 jmcneill
724 1.89 jruoho if (mutex_tryenter(&sc->sc_mutex) == 0)
725 1.77 jruoho return;
726 1.77 jruoho
727 1.77 jruoho rv = AcpiOsExecute(OSL_NOTIFY_HANDLER, acpibat_update_status, dv);
728 1.77 jruoho
729 1.77 jruoho if (ACPI_SUCCESS(rv))
730 1.77 jruoho cv_timedwait(&sc->sc_condvar, &sc->sc_mutex, hz);
731 1.77 jruoho
732 1.77 jruoho mutex_exit(&sc->sc_mutex);
733 1.77 jruoho }
734 1.77 jruoho
735 1.77 jruoho static bool
736 1.82 dyoung acpibat_resume(device_t dv, const pmf_qual_t *qual)
737 1.77 jruoho {
738 1.77 jruoho
739 1.77 jruoho (void)AcpiOsExecute(OSL_NOTIFY_HANDLER, acpibat_update_info, dv);
740 1.77 jruoho (void)AcpiOsExecute(OSL_NOTIFY_HANDLER, acpibat_update_status, dv);
741 1.74 jmcneill
742 1.77 jruoho return true;
743 1.69 jmcneill }
744 1.83 jruoho
745 1.87 jruoho static void
746 1.87 jruoho acpibat_get_limits(struct sysmon_envsys *sme, envsys_data_t *edata,
747 1.87 jruoho sysmon_envsys_lim_t *limits, uint32_t *props)
748 1.87 jruoho {
749 1.87 jruoho device_t dv = sme->sme_cookie;
750 1.87 jruoho struct acpibat_softc *sc = device_private(dv);
751 1.87 jruoho
752 1.87 jruoho if (edata->sensor != ACPIBAT_CAPACITY)
753 1.87 jruoho return;
754 1.87 jruoho
755 1.87 jruoho limits->sel_critmin = sc->sc_lcapacity;
756 1.87 jruoho limits->sel_warnmin = sc->sc_wcapacity;
757 1.87 jruoho
758 1.87 jruoho *props |= PROP_BATTCAP | PROP_BATTWARN | PROP_DRIVER_LIMITS;
759 1.87 jruoho }
760 1.87 jruoho
761 1.83 jruoho #ifdef _MODULE
762 1.83 jruoho
763 1.83 jruoho MODULE(MODULE_CLASS_DRIVER, acpibat, NULL);
764 1.83 jruoho CFDRIVER_DECL(acpibat, DV_DULL, NULL);
765 1.83 jruoho
766 1.83 jruoho static int acpibatloc[] = { -1 };
767 1.83 jruoho extern struct cfattach acpibat_ca;
768 1.83 jruoho
769 1.83 jruoho static struct cfparent acpiparent = {
770 1.83 jruoho "acpinodebus", NULL, DVUNIT_ANY
771 1.83 jruoho };
772 1.83 jruoho
773 1.83 jruoho static struct cfdata acpibat_cfdata[] = {
774 1.83 jruoho {
775 1.83 jruoho .cf_name = "acpibat",
776 1.83 jruoho .cf_atname = "acpibat",
777 1.83 jruoho .cf_unit = 0,
778 1.83 jruoho .cf_fstate = FSTATE_STAR,
779 1.83 jruoho .cf_loc = acpibatloc,
780 1.83 jruoho .cf_flags = 0,
781 1.83 jruoho .cf_pspec = &acpiparent,
782 1.83 jruoho },
783 1.83 jruoho
784 1.83 jruoho { NULL }
785 1.83 jruoho };
786 1.83 jruoho
787 1.83 jruoho static int
788 1.83 jruoho acpibat_modcmd(modcmd_t cmd, void *context)
789 1.83 jruoho {
790 1.83 jruoho int err;
791 1.83 jruoho
792 1.83 jruoho switch (cmd) {
793 1.83 jruoho
794 1.83 jruoho case MODULE_CMD_INIT:
795 1.83 jruoho
796 1.83 jruoho err = config_cfdriver_attach(&acpibat_cd);
797 1.83 jruoho
798 1.83 jruoho if (err != 0)
799 1.83 jruoho return err;
800 1.83 jruoho
801 1.83 jruoho err = config_cfattach_attach("acpibat", &acpibat_ca);
802 1.83 jruoho
803 1.83 jruoho if (err != 0) {
804 1.83 jruoho config_cfdriver_detach(&acpibat_cd);
805 1.83 jruoho return err;
806 1.83 jruoho }
807 1.83 jruoho
808 1.83 jruoho err = config_cfdata_attach(acpibat_cfdata, 1);
809 1.83 jruoho
810 1.83 jruoho if (err != 0) {
811 1.83 jruoho config_cfattach_detach("acpibat", &acpibat_ca);
812 1.83 jruoho config_cfdriver_detach(&acpibat_cd);
813 1.83 jruoho return err;
814 1.83 jruoho }
815 1.83 jruoho
816 1.83 jruoho return 0;
817 1.83 jruoho
818 1.83 jruoho case MODULE_CMD_FINI:
819 1.83 jruoho
820 1.83 jruoho err = config_cfdata_detach(acpibat_cfdata);
821 1.83 jruoho
822 1.83 jruoho if (err != 0)
823 1.83 jruoho return err;
824 1.83 jruoho
825 1.83 jruoho config_cfattach_detach("acpibat", &acpibat_ca);
826 1.83 jruoho config_cfdriver_detach(&acpibat_cd);
827 1.83 jruoho
828 1.83 jruoho return 0;
829 1.83 jruoho
830 1.83 jruoho default:
831 1.83 jruoho return ENOTTY;
832 1.83 jruoho }
833 1.83 jruoho }
834 1.83 jruoho
835 1.83 jruoho #endif /* _MODULE */
836