acpi_tz.c revision 1.73 1 1.73 plunky /* $NetBSD: acpi_tz.c,v 1.73 2010/06/01 19:20:43 plunky Exp $ */
2 1.1 jmcneill
3 1.1 jmcneill /*
4 1.1 jmcneill * Copyright (c) 2003 Jared D. McNeill <jmcneill (at) invisible.ca>
5 1.1 jmcneill * All rights reserved.
6 1.1 jmcneill *
7 1.1 jmcneill * Redistribution and use in source and binary forms, with or without
8 1.1 jmcneill * modification, are permitted provided that the following conditions
9 1.1 jmcneill * are met:
10 1.1 jmcneill * 1. Redistributions of source code must retain the above copyright
11 1.1 jmcneill * notice, this list of conditions and the following disclaimer.
12 1.1 jmcneill * 2. The name of the author may not be used to endorse or promote products
13 1.1 jmcneill * derived from this software without specific prior written permission.
14 1.1 jmcneill *
15 1.1 jmcneill * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
16 1.1 jmcneill * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
17 1.1 jmcneill * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
18 1.1 jmcneill * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
19 1.1 jmcneill * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
20 1.1 jmcneill * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
21 1.1 jmcneill * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
22 1.1 jmcneill * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
23 1.1 jmcneill * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
24 1.1 jmcneill * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
25 1.1 jmcneill * SUCH DAMAGE.
26 1.1 jmcneill */
27 1.1 jmcneill
28 1.1 jmcneill /*
29 1.1 jmcneill * ACPI Thermal Zone driver
30 1.1 jmcneill */
31 1.1 jmcneill
32 1.1 jmcneill #include <sys/cdefs.h>
33 1.73 plunky __KERNEL_RCSID(0, "$NetBSD: acpi_tz.c,v 1.73 2010/06/01 19:20:43 plunky Exp $");
34 1.1 jmcneill
35 1.1 jmcneill #include <sys/param.h>
36 1.1 jmcneill #include <sys/device.h>
37 1.1 jmcneill #include <sys/callout.h>
38 1.61 jruoho #include <sys/kernel.h>
39 1.61 jruoho #include <sys/systm.h>
40 1.1 jmcneill
41 1.1 jmcneill #include <dev/acpi/acpireg.h>
42 1.1 jmcneill #include <dev/acpi/acpivar.h>
43 1.67 jruoho #include <dev/acpi/acpi_power.h>
44 1.1 jmcneill
45 1.69 jruoho #define _COMPONENT ACPI_TZ_COMPONENT
46 1.69 jruoho ACPI_MODULE_NAME ("acpi_tz")
47 1.47 mlelstv
48 1.71 jruoho #define ACPI_NOTIFY_TZ_ZONE 0x80
49 1.71 jruoho #define ACPI_NOTIFY_TZ_TRIP 0x81
50 1.71 jruoho #define ACPI_NOTIFY_TZ_DEVLIST 0x82
51 1.71 jruoho
52 1.69 jruoho #define ATZ_F_CRITICAL 0x01 /* zone critical */
53 1.69 jruoho #define ATZ_F_HOT 0x02 /* zone hot */
54 1.69 jruoho #define ATZ_F_PASSIVE 0x04 /* zone passive cooling */
55 1.69 jruoho #define ATZ_F_PASSIVEONLY 0x08 /* zone is passive cooling only */
56 1.1 jmcneill
57 1.69 jruoho #define ATZ_ACTIVE_NONE -1
58 1.1 jmcneill
59 1.1 jmcneill /*
60 1.69 jruoho * The constants are as follows:
61 1.69 jruoho *
62 1.69 jruoho * ATZ_TZP_RATE default polling interval (30 seconds) if no _TZP
63 1.69 jruoho * ATZ_NLEVELS number of cooling levels for _ACx and _ALx
64 1.69 jruoho * ATZ_ZEROC 0 C, measured in 0.1 Kelvin
65 1.69 jruoho * ATZ_TMP_INVALID temporarily invalid temperature
66 1.69 jruoho * ATZ_ZONE_EXPIRE zone info refetch interval (15 minutes)
67 1.1 jmcneill */
68 1.69 jruoho #define ATZ_TZP_RATE 300
69 1.69 jruoho #define ATZ_NLEVELS 10
70 1.69 jruoho #define ATZ_ZEROC 2732
71 1.69 jruoho #define ATZ_TMP_INVALID 0xffffffff
72 1.69 jruoho #define ATZ_ZONE_EXPIRE 9000
73 1.45 pgoyette
74 1.69 jruoho /*
75 1.69 jruoho * All temperatures are reported in 0.1 Kelvin.
76 1.69 jruoho * The ACPI specification assumes that K = C + 273.2
77 1.69 jruoho * rather than the nominal 273.15 used by envsys(4).
78 1.69 jruoho */
79 1.45 pgoyette #define ATZ2UKELVIN(t) ((t) * 100000 - 50000)
80 1.45 pgoyette
81 1.1 jmcneill struct acpitz_zone {
82 1.69 jruoho ACPI_BUFFER al[ATZ_NLEVELS];
83 1.69 jruoho uint32_t ac[ATZ_NLEVELS];
84 1.69 jruoho uint32_t crt;
85 1.69 jruoho uint32_t hot;
86 1.69 jruoho uint32_t rtv;
87 1.69 jruoho uint32_t psv;
88 1.69 jruoho uint32_t tc1;
89 1.69 jruoho uint32_t tc2;
90 1.69 jruoho uint32_t tmp;
91 1.69 jruoho uint32_t prevtmp;
92 1.69 jruoho uint32_t tzp;
93 1.69 jruoho uint32_t fanmin;
94 1.69 jruoho uint32_t fanmax;
95 1.69 jruoho uint32_t fancurrent;
96 1.1 jmcneill };
97 1.1 jmcneill
98 1.1 jmcneill struct acpitz_softc {
99 1.69 jruoho struct acpi_devnode *sc_node;
100 1.69 jruoho struct sysmon_envsys *sc_sme;
101 1.69 jruoho struct acpitz_zone sc_zone;
102 1.69 jruoho struct callout sc_callout;
103 1.69 jruoho envsys_data_t sc_temp_sensor;
104 1.69 jruoho envsys_data_t sc_fan_sensor;
105 1.69 jruoho int sc_active;
106 1.69 jruoho int sc_flags;
107 1.69 jruoho int sc_zone_expire;
108 1.69 jruoho bool sc_first;
109 1.69 jruoho bool sc_have_fan;
110 1.1 jmcneill };
111 1.1 jmcneill
112 1.69 jruoho static int acpitz_match(device_t, cfdata_t, void *);
113 1.69 jruoho static void acpitz_attach(device_t, device_t, void *);
114 1.69 jruoho static int acpitz_detach(device_t, int);
115 1.69 jruoho static void acpitz_get_status(void *);
116 1.69 jruoho static void acpitz_get_zone(void *, int);
117 1.69 jruoho static void acpitz_get_zone_quiet(void *);
118 1.69 jruoho static char *acpitz_celcius_string(int);
119 1.69 jruoho static void acpitz_power_off(struct acpitz_softc *);
120 1.69 jruoho static void acpitz_power_zone(struct acpitz_softc *, int, int);
121 1.69 jruoho static void acpitz_sane_temp(uint32_t *tmp);
122 1.69 jruoho static ACPI_STATUS acpitz_switch_cooler(ACPI_OBJECT *, void *);
123 1.69 jruoho static void acpitz_notify_handler(ACPI_HANDLE, uint32_t, void *);
124 1.69 jruoho static int acpitz_get_integer(device_t, const char *, uint32_t *);
125 1.69 jruoho static void acpitz_tick(void *);
126 1.69 jruoho static void acpitz_init_envsys(device_t);
127 1.69 jruoho static void acpitz_get_limits(struct sysmon_envsys *,
128 1.69 jruoho envsys_data_t *,
129 1.69 jruoho sysmon_envsys_lim_t *, uint32_t *);
130 1.69 jruoho static int acpitz_get_fanspeed(device_t, uint32_t *,
131 1.69 jruoho uint32_t *, uint32_t *);
132 1.49 cegger #ifdef notyet
133 1.69 jruoho static ACPI_STATUS acpitz_set_fanspeed(device_t, uint32_t);
134 1.49 cegger #endif
135 1.1 jmcneill
136 1.68 jruoho CFATTACH_DECL_NEW(acpitz, sizeof(struct acpitz_softc),
137 1.68 jruoho acpitz_match, acpitz_attach, acpitz_detach, NULL);
138 1.1 jmcneill
139 1.1 jmcneill /*
140 1.1 jmcneill * acpitz_match: autoconf(9) match routine
141 1.1 jmcneill */
142 1.11 kochi static int
143 1.33 xtraeme acpitz_match(device_t parent, cfdata_t match, void *aux)
144 1.1 jmcneill {
145 1.1 jmcneill struct acpi_attach_args *aa = aux;
146 1.1 jmcneill
147 1.1 jmcneill if (aa->aa_node->ad_type != ACPI_TYPE_THERMAL)
148 1.1 jmcneill return 0;
149 1.1 jmcneill
150 1.1 jmcneill return 1;
151 1.1 jmcneill }
152 1.1 jmcneill
153 1.1 jmcneill /*
154 1.1 jmcneill * acpitz_attach: autoconf(9) attach routine
155 1.1 jmcneill */
156 1.11 kochi static void
157 1.33 xtraeme acpitz_attach(device_t parent, device_t self, void *aux)
158 1.1 jmcneill {
159 1.33 xtraeme struct acpitz_softc *sc = device_private(self);
160 1.1 jmcneill struct acpi_attach_args *aa = aux;
161 1.69 jruoho ACPI_INTEGER val;
162 1.1 jmcneill ACPI_STATUS rv;
163 1.1 jmcneill
164 1.29 jmcneill aprint_naive("\n");
165 1.63 jruoho aprint_normal(": ACPI Thermal Zone\n");
166 1.1 jmcneill
167 1.69 jruoho sc->sc_first = true;
168 1.69 jruoho sc->sc_have_fan = false;
169 1.69 jruoho sc->sc_node = aa->aa_node;
170 1.69 jruoho sc->sc_zone.tzp = ATZ_TZP_RATE;
171 1.69 jruoho
172 1.69 jruoho /*
173 1.69 jruoho * The _TZP (ACPI 4.0, p. 430) defines the recommended
174 1.69 jruoho * polling interval (in tenths of seconds). A value zero
175 1.69 jruoho * means that polling "should not be necessary".
176 1.69 jruoho */
177 1.69 jruoho rv = acpi_eval_integer(sc->sc_node->ad_handle, "_TZP", &val);
178 1.69 jruoho
179 1.69 jruoho if (ACPI_SUCCESS(rv) && val != 0)
180 1.69 jruoho sc->sc_zone.tzp = val;
181 1.31 jmcneill
182 1.63 jruoho aprint_debug_dev(self, "sample rate %d.%ds\n",
183 1.31 jmcneill sc->sc_zone.tzp / 10, sc->sc_zone.tzp % 10);
184 1.3 mycroft
185 1.69 jruoho sc->sc_zone_expire = ATZ_ZONE_EXPIRE / sc->sc_zone.tzp;
186 1.10 kochi
187 1.69 jruoho /*
188 1.69 jruoho * XXX: The fan controls seen here are available on
189 1.69 jruoho * some HP laptops. Arguably these should not
190 1.69 jruoho * appear in a generic device driver like this.
191 1.69 jruoho */
192 1.69 jruoho if (acpitz_get_fanspeed(self, &sc->sc_zone.fanmin,
193 1.69 jruoho &sc->sc_zone.fanmax, &sc->sc_zone.fancurrent) == 0)
194 1.69 jruoho sc->sc_have_fan = true;
195 1.13 kochi
196 1.33 xtraeme acpitz_get_zone(self, 1);
197 1.33 xtraeme acpitz_get_status(self);
198 1.1 jmcneill
199 1.68 jruoho (void)pmf_device_register(self, NULL, NULL);
200 1.69 jruoho (void)acpi_register_notify(sc->sc_node, acpitz_notify_handler);
201 1.1 jmcneill
202 1.33 xtraeme callout_init(&sc->sc_callout, CALLOUT_MPSAFE);
203 1.33 xtraeme callout_setfunc(&sc->sc_callout, acpitz_tick, self);
204 1.1 jmcneill
205 1.33 xtraeme acpitz_init_envsys(self);
206 1.25 joerg
207 1.68 jruoho callout_schedule(&sc->sc_callout, sc->sc_zone.tzp * hz / 10);
208 1.68 jruoho }
209 1.68 jruoho
210 1.68 jruoho static int
211 1.68 jruoho acpitz_detach(device_t self, int flags)
212 1.68 jruoho {
213 1.68 jruoho struct acpitz_softc *sc = device_private(self);
214 1.68 jruoho ACPI_HANDLE hdl;
215 1.68 jruoho ACPI_BUFFER al;
216 1.68 jruoho ACPI_STATUS rv;
217 1.68 jruoho int i;
218 1.68 jruoho
219 1.68 jruoho callout_halt(&sc->sc_callout, NULL);
220 1.68 jruoho callout_destroy(&sc->sc_callout);
221 1.68 jruoho
222 1.68 jruoho pmf_device_deregister(self);
223 1.69 jruoho acpi_deregister_notify(sc->sc_node);
224 1.68 jruoho
225 1.68 jruoho /*
226 1.68 jruoho * Although the device itself should not contain any power
227 1.68 jruoho * resources, we have possibly used the resources of active
228 1.68 jruoho * cooling devices. To unregister these, first fetch a fresh
229 1.68 jruoho * active cooling zone, and then detach the resources from
230 1.68 jruoho * the reference handles contained in the cooling zone.
231 1.68 jruoho */
232 1.68 jruoho acpitz_get_zone(self, 0);
233 1.68 jruoho
234 1.68 jruoho for (i = 0; i < ATZ_NLEVELS; i++) {
235 1.68 jruoho
236 1.68 jruoho if (sc->sc_zone.al[i].Pointer == NULL)
237 1.68 jruoho continue;
238 1.68 jruoho
239 1.68 jruoho al = sc->sc_zone.al[i];
240 1.68 jruoho rv = acpi_eval_reference_handle(al.Pointer, &hdl);
241 1.68 jruoho
242 1.68 jruoho if (ACPI_SUCCESS(rv))
243 1.68 jruoho acpi_power_deregister_from_handle(hdl);
244 1.68 jruoho
245 1.68 jruoho ACPI_FREE(sc->sc_zone.al[i].Pointer);
246 1.68 jruoho }
247 1.32 jmcneill
248 1.68 jruoho if (sc->sc_sme != NULL)
249 1.68 jruoho sysmon_envsys_unregister(sc->sc_sme);
250 1.68 jruoho
251 1.68 jruoho return 0;
252 1.1 jmcneill }
253 1.1 jmcneill
254 1.11 kochi static void
255 1.14 martin acpitz_get_zone_quiet(void *opaque)
256 1.14 martin {
257 1.14 martin acpitz_get_zone(opaque, 0);
258 1.14 martin }
259 1.14 martin
260 1.14 martin static void
261 1.1 jmcneill acpitz_get_status(void *opaque)
262 1.1 jmcneill {
263 1.33 xtraeme device_t dv = opaque;
264 1.33 xtraeme struct acpitz_softc *sc = device_private(dv);
265 1.64 jruoho uint32_t tmp, active, fmin, fmax, fcurrent;
266 1.69 jruoho int changed, flags, i;
267 1.13 kochi
268 1.13 kochi sc->sc_zone_expire--;
269 1.69 jruoho
270 1.13 kochi if (sc->sc_zone_expire <= 0) {
271 1.13 kochi sc->sc_zone_expire = ATZ_ZONE_EXPIRE / sc->sc_zone.tzp;
272 1.69 jruoho
273 1.69 jruoho ACPI_DEBUG_PRINT((ACPI_DB_INFO,
274 1.69 jruoho "%s: zone refetch forced\n", device_xname(dv)));
275 1.69 jruoho
276 1.34 xtraeme acpitz_get_zone(dv, 0);
277 1.13 kochi }
278 1.3 mycroft
279 1.63 jruoho if (acpitz_get_integer(dv, "_TMP", &tmp) != 0)
280 1.3 mycroft return;
281 1.49 cegger
282 1.49 cegger sc->sc_zone.prevtmp = sc->sc_zone.tmp;
283 1.13 kochi sc->sc_zone.tmp = tmp;
284 1.69 jruoho
285 1.69 jruoho if (sc->sc_first != false)
286 1.69 jruoho sc->sc_zone.prevtmp = tmp; /* XXX: Sanity check? */
287 1.1 jmcneill
288 1.49 cegger if (acpitz_get_fanspeed(dv, &fmin, &fmax, &fcurrent) == 0) {
289 1.69 jruoho
290 1.49 cegger if (fcurrent != ATZ_TMP_INVALID)
291 1.49 cegger sc->sc_zone.fancurrent = fcurrent;
292 1.49 cegger }
293 1.49 cegger
294 1.69 jruoho sc->sc_temp_sensor.state = ENVSYS_SVALID;
295 1.69 jruoho sc->sc_temp_sensor.value_cur = ATZ2UKELVIN(sc->sc_zone.tmp);
296 1.69 jruoho
297 1.69 jruoho sc->sc_fan_sensor.state = ENVSYS_SVALID;
298 1.69 jruoho sc->sc_fan_sensor.value_cur = sc->sc_zone.fancurrent;
299 1.69 jruoho
300 1.69 jruoho ACPI_DEBUG_PRINT((ACPI_DB_INFO, "%s: zone temperature is %s C\n",
301 1.69 jruoho device_xname(dv), acpitz_celcius_string(sc->sc_zone.tmp)));
302 1.69 jruoho
303 1.7 soren /*
304 1.69 jruoho * XXX: Passive cooling is not yet supported.
305 1.7 soren */
306 1.69 jruoho if ((sc->sc_flags & ATZ_F_PASSIVEONLY) != 0)
307 1.69 jruoho return;
308 1.69 jruoho
309 1.69 jruoho /*
310 1.69 jruoho * As noted in ACPI 4.0 (p. 420), the temperature
311 1.69 jruoho * thresholds are conveyed in the optional _ACx
312 1.69 jruoho * object (x = 0 ... 9). The smaller the x, the
313 1.69 jruoho * greater the cooling level. We prefer to keep
314 1.69 jruoho * the highest cooling mode when in "active".
315 1.69 jruoho */
316 1.69 jruoho active = ATZ_ACTIVE_NONE;
317 1.69 jruoho
318 1.69 jruoho for (i = ATZ_NLEVELS - 1; i >= 0; i--) {
319 1.69 jruoho
320 1.69 jruoho if (sc->sc_zone.ac[i] == ATZ_TMP_INVALID)
321 1.69 jruoho continue;
322 1.69 jruoho
323 1.69 jruoho if (sc->sc_zone.ac[i] <= tmp)
324 1.69 jruoho active = i;
325 1.69 jruoho }
326 1.69 jruoho
327 1.69 jruoho flags = sc->sc_flags & ~(ATZ_F_CRITICAL | ATZ_F_HOT | ATZ_F_PASSIVE);
328 1.69 jruoho
329 1.69 jruoho if (sc->sc_zone.psv != ATZ_TMP_INVALID && tmp >= sc->sc_zone.psv)
330 1.69 jruoho flags |= ATZ_F_PASSIVE;
331 1.49 cegger
332 1.69 jruoho if (sc->sc_zone.hot != ATZ_TMP_INVALID && tmp >= sc->sc_zone.hot)
333 1.69 jruoho flags |= ATZ_F_HOT;
334 1.1 jmcneill
335 1.69 jruoho if (sc->sc_zone.crt != ATZ_TMP_INVALID && tmp >= sc->sc_zone.crt)
336 1.69 jruoho flags |= ATZ_F_CRITICAL;
337 1.1 jmcneill
338 1.69 jruoho if (flags != sc->sc_flags) {
339 1.13 kochi
340 1.69 jruoho changed = (sc->sc_flags ^ flags) & flags;
341 1.69 jruoho sc->sc_flags = flags;
342 1.13 kochi
343 1.69 jruoho if ((changed & ATZ_F_CRITICAL) != 0) {
344 1.69 jruoho sc->sc_temp_sensor.state = ENVSYS_SCRITOVER;
345 1.13 kochi
346 1.69 jruoho aprint_debug_dev(dv, "zone went critical, %s C\n",
347 1.69 jruoho acpitz_celcius_string(tmp));
348 1.13 kochi
349 1.69 jruoho } else if ((changed & ATZ_F_HOT) != 0) {
350 1.69 jruoho sc->sc_temp_sensor.state = ENVSYS_SCRITOVER;
351 1.13 kochi
352 1.69 jruoho aprint_debug_dev(dv, "zone went hot, %s C\n",
353 1.69 jruoho acpitz_celcius_string(tmp));
354 1.13 kochi }
355 1.13 kochi }
356 1.13 kochi
357 1.69 jruoho /* Power on the fans. */
358 1.69 jruoho if (sc->sc_active != active) {
359 1.69 jruoho
360 1.69 jruoho if (sc->sc_active != ATZ_ACTIVE_NONE)
361 1.69 jruoho acpitz_power_zone(sc, sc->sc_active, 0);
362 1.69 jruoho
363 1.69 jruoho ACPI_DEBUG_PRINT((ACPI_DB_INFO, "%s: active cooling "
364 1.69 jruoho "level %u\n", device_xname(dv), active));
365 1.69 jruoho
366 1.69 jruoho if (active != ATZ_ACTIVE_NONE)
367 1.69 jruoho acpitz_power_zone(sc, active, 1);
368 1.69 jruoho
369 1.69 jruoho sc->sc_active = active;
370 1.69 jruoho }
371 1.1 jmcneill }
372 1.1 jmcneill
373 1.13 kochi static char *
374 1.13 kochi acpitz_celcius_string(int dk)
375 1.13 kochi {
376 1.13 kochi static char buf[10];
377 1.59 pgoyette int dc;
378 1.13 kochi
379 1.59 pgoyette dc = abs(dk - ATZ_ZEROC);
380 1.69 jruoho
381 1.69 jruoho (void)snprintf(buf, sizeof(buf), "%s%d.%d",
382 1.69 jruoho (dk >= ATZ_ZEROC) ? "" : "-", dc / 10, dc % 10);
383 1.13 kochi
384 1.13 kochi return buf;
385 1.13 kochi }
386 1.13 kochi
387 1.13 kochi static ACPI_STATUS
388 1.13 kochi acpitz_switch_cooler(ACPI_OBJECT *obj, void *arg)
389 1.13 kochi {
390 1.68 jruoho int flag, pwr_state;
391 1.13 kochi ACPI_HANDLE cooler;
392 1.13 kochi ACPI_STATUS rv;
393 1.13 kochi
394 1.68 jruoho /*
395 1.68 jruoho * The _ALx object is a package in which the elements
396 1.68 jruoho * are reference handles to an active cooling device
397 1.68 jruoho * (typically PNP0C0B, ACPI fan device). Try to turn
398 1.68 jruoho * on (or off) the power resources behind these handles
399 1.68 jruoho * to start (or terminate) the active cooling.
400 1.68 jruoho */
401 1.13 kochi flag = *(int *)arg;
402 1.68 jruoho pwr_state = (flag != 0) ? ACPI_STATE_D0 : ACPI_STATE_D3;
403 1.13 kochi
404 1.56 jruoho rv = acpi_eval_reference_handle(obj, &cooler);
405 1.67 jruoho
406 1.69 jruoho if (ACPI_FAILURE(rv))
407 1.56 jruoho return rv;
408 1.13 kochi
409 1.67 jruoho (void)acpi_power_set_from_handle(cooler, pwr_state);
410 1.13 kochi
411 1.13 kochi return AE_OK;
412 1.13 kochi }
413 1.13 kochi
414 1.13 kochi /*
415 1.13 kochi * acpitz_power_zone:
416 1.69 jruoho *
417 1.69 jruoho * Power on or off the i:th part of the zone zone.
418 1.13 kochi */
419 1.13 kochi static void
420 1.13 kochi acpitz_power_zone(struct acpitz_softc *sc, int i, int on)
421 1.13 kochi {
422 1.69 jruoho
423 1.13 kochi KASSERT(i >= 0 && i < ATZ_NLEVELS);
424 1.13 kochi
425 1.69 jruoho (void)acpi_foreach_package_object(sc->sc_zone.al[i].Pointer,
426 1.13 kochi acpitz_switch_cooler, &on);
427 1.13 kochi }
428 1.13 kochi
429 1.13 kochi
430 1.13 kochi /*
431 1.13 kochi * acpitz_power_off:
432 1.69 jruoho *
433 1.69 jruoho * Power off parts of the zone.
434 1.13 kochi */
435 1.13 kochi static void
436 1.13 kochi acpitz_power_off(struct acpitz_softc *sc)
437 1.13 kochi {
438 1.13 kochi int i;
439 1.13 kochi
440 1.13 kochi for (i = 0 ; i < ATZ_NLEVELS; i++) {
441 1.69 jruoho
442 1.13 kochi if (sc->sc_zone.al[i].Pointer == NULL)
443 1.13 kochi continue;
444 1.69 jruoho
445 1.13 kochi acpitz_power_zone(sc, i, 0);
446 1.13 kochi }
447 1.69 jruoho
448 1.13 kochi sc->sc_active = ATZ_ACTIVE_NONE;
449 1.69 jruoho sc->sc_flags &= ~(ATZ_F_CRITICAL | ATZ_F_HOT | ATZ_F_PASSIVE);
450 1.13 kochi }
451 1.13 kochi
452 1.13 kochi static void
453 1.14 martin acpitz_get_zone(void *opaque, int verbose)
454 1.13 kochi {
455 1.33 xtraeme device_t dv = opaque;
456 1.33 xtraeme struct acpitz_softc *sc = device_private(dv);
457 1.69 jruoho int comma, i, valid_levels;
458 1.69 jruoho ACPI_OBJECT *obj;
459 1.13 kochi ACPI_STATUS rv;
460 1.69 jruoho char buf[5];
461 1.13 kochi
462 1.69 jruoho if (sc->sc_first != true) {
463 1.13 kochi acpitz_power_off(sc);
464 1.13 kochi
465 1.13 kochi for (i = 0; i < ATZ_NLEVELS; i++) {
466 1.69 jruoho
467 1.13 kochi if (sc->sc_zone.al[i].Pointer != NULL)
468 1.47 mlelstv ACPI_FREE(sc->sc_zone.al[i].Pointer);
469 1.69 jruoho
470 1.13 kochi sc->sc_zone.al[i].Pointer = NULL;
471 1.13 kochi }
472 1.63 jruoho }
473 1.13 kochi
474 1.13 kochi valid_levels = 0;
475 1.13 kochi
476 1.13 kochi for (i = 0; i < ATZ_NLEVELS; i++) {
477 1.13 kochi
478 1.69 jruoho (void)snprintf(buf, sizeof(buf), "_AC%d", i);
479 1.69 jruoho
480 1.33 xtraeme if (acpitz_get_integer(dv, buf, &sc->sc_zone.ac[i]))
481 1.13 kochi continue;
482 1.13 kochi
483 1.69 jruoho (void)snprintf(buf, sizeof(buf), "_AL%d", i);
484 1.69 jruoho
485 1.69 jruoho rv = acpi_eval_struct(sc->sc_node->ad_handle, buf,
486 1.13 kochi &sc->sc_zone.al[i]);
487 1.69 jruoho
488 1.13 kochi if (ACPI_FAILURE(rv)) {
489 1.13 kochi sc->sc_zone.al[i].Pointer = NULL;
490 1.13 kochi continue;
491 1.13 kochi }
492 1.13 kochi
493 1.13 kochi obj = sc->sc_zone.al[i].Pointer;
494 1.69 jruoho
495 1.69 jruoho if (obj->Type != ACPI_TYPE_PACKAGE) {
496 1.69 jruoho sc->sc_zone.al[i].Pointer = NULL;
497 1.69 jruoho ACPI_FREE(obj);
498 1.69 jruoho continue;
499 1.13 kochi }
500 1.13 kochi
501 1.69 jruoho if (sc->sc_first != false)
502 1.72 plunky aprint_normal_dev(dv, "active cooling level %d: %sC\n",
503 1.72 plunky i, acpitz_celcius_string(sc->sc_zone.ac[i]));
504 1.13 kochi
505 1.13 kochi valid_levels++;
506 1.13 kochi }
507 1.13 kochi
508 1.69 jruoho /*
509 1.69 jruoho * A brief summary (ACPI 4.0, section 11.4):
510 1.69 jruoho *
511 1.69 jruoho * _TMP : current temperature (in tenths of degrees)
512 1.69 jruoho * _CRT : critical trip-point at which to shutdown
513 1.69 jruoho * _HOT : critical trip-point at which to go to S4
514 1.69 jruoho * _PSV : passive cooling policy threshold
515 1.69 jruoho * _TC1 : thermal constant for passive cooling
516 1.69 jruoho * _TC2 : thermal constant for passive cooling
517 1.69 jruoho */
518 1.69 jruoho (void)acpitz_get_integer(dv, "_TMP", &sc->sc_zone.tmp);
519 1.69 jruoho (void)acpitz_get_integer(dv, "_CRT", &sc->sc_zone.crt);
520 1.69 jruoho (void)acpitz_get_integer(dv, "_HOT", &sc->sc_zone.hot);
521 1.69 jruoho (void)acpitz_get_integer(dv, "_PSV", &sc->sc_zone.psv);
522 1.69 jruoho (void)acpitz_get_integer(dv, "_TC1", &sc->sc_zone.tc1);
523 1.69 jruoho (void)acpitz_get_integer(dv, "_TC2", &sc->sc_zone.tc2);
524 1.13 kochi
525 1.69 jruoho /*
526 1.69 jruoho * If _RTV is not present or present and zero,
527 1.69 jruoho * values are absolute (see ACPI 4.0, 425).
528 1.69 jruoho */
529 1.48 cegger acpitz_get_integer(dv, "_RTV", &sc->sc_zone.rtv);
530 1.69 jruoho
531 1.48 cegger if (sc->sc_zone.rtv == ATZ_TMP_INVALID)
532 1.48 cegger sc->sc_zone.rtv = 0;
533 1.48 cegger
534 1.13 kochi acpitz_sane_temp(&sc->sc_zone.tmp);
535 1.13 kochi acpitz_sane_temp(&sc->sc_zone.crt);
536 1.13 kochi acpitz_sane_temp(&sc->sc_zone.hot);
537 1.13 kochi acpitz_sane_temp(&sc->sc_zone.psv);
538 1.13 kochi
539 1.63 jruoho if (verbose != 0) {
540 1.69 jruoho comma = 0;
541 1.66 christos
542 1.63 jruoho aprint_verbose_dev(dv, "");
543 1.63 jruoho
544 1.66 christos if (sc->sc_zone.crt != ATZ_TMP_INVALID) {
545 1.63 jruoho aprint_verbose("critical %s C",
546 1.14 martin acpitz_celcius_string(sc->sc_zone.crt));
547 1.66 christos comma = 1;
548 1.66 christos }
549 1.63 jruoho
550 1.66 christos if (sc->sc_zone.hot != ATZ_TMP_INVALID) {
551 1.66 christos aprint_verbose("%shot %s C", comma ? ", " : "",
552 1.14 martin acpitz_celcius_string(sc->sc_zone.hot));
553 1.66 christos comma = 1;
554 1.66 christos }
555 1.63 jruoho
556 1.66 christos if (sc->sc_zone.psv != ATZ_TMP_INVALID) {
557 1.73 plunky aprint_verbose("%spassive %s C", comma ? ", " : "",
558 1.59 pgoyette acpitz_celcius_string(sc->sc_zone.psv));
559 1.66 christos comma = 1;
560 1.66 christos }
561 1.29 jmcneill
562 1.66 christos if (valid_levels == 0) {
563 1.66 christos sc->sc_flags |= ATZ_F_PASSIVEONLY;
564 1.63 jruoho
565 1.69 jruoho if (sc->sc_first != false)
566 1.66 christos aprint_verbose("%spassive cooling", comma ?
567 1.66 christos ", " : "");
568 1.66 christos }
569 1.63 jruoho
570 1.63 jruoho aprint_verbose("\n");
571 1.66 christos }
572 1.13 kochi
573 1.13 kochi for (i = 0; i < ATZ_NLEVELS; i++)
574 1.13 kochi acpitz_sane_temp(&sc->sc_zone.ac[i]);
575 1.13 kochi
576 1.13 kochi acpitz_power_off(sc);
577 1.69 jruoho sc->sc_first = false;
578 1.13 kochi }
579 1.13 kochi
580 1.11 kochi static void
581 1.64 jruoho acpitz_notify_handler(ACPI_HANDLE hdl, uint32_t notify, void *opaque)
582 1.1 jmcneill {
583 1.69 jruoho ACPI_OSD_EXEC_CALLBACK func = NULL;
584 1.33 xtraeme device_t dv = opaque;
585 1.1 jmcneill
586 1.1 jmcneill switch (notify) {
587 1.69 jruoho
588 1.71 jruoho case ACPI_NOTIFY_TZ_ZONE:
589 1.13 kochi func = acpitz_get_status;
590 1.13 kochi break;
591 1.69 jruoho
592 1.71 jruoho case ACPI_NOTIFY_TZ_TRIP:
593 1.71 jruoho case ACPI_NOTIFY_TZ_DEVLIST:
594 1.14 martin func = acpitz_get_zone_quiet;
595 1.1 jmcneill break;
596 1.69 jruoho
597 1.1 jmcneill default:
598 1.69 jruoho aprint_debug_dev(dv, "unknown notify 0x%02X\n", notify);
599 1.13 kochi return;
600 1.1 jmcneill }
601 1.1 jmcneill
602 1.69 jruoho (void)AcpiOsExecute(OSL_NOTIFY_HANDLER, func, dv);
603 1.1 jmcneill }
604 1.1 jmcneill
605 1.1 jmcneill static void
606 1.64 jruoho acpitz_sane_temp(uint32_t *tmp)
607 1.13 kochi {
608 1.69 jruoho /* Sane temperatures are beteen 0 and 150 C. */
609 1.13 kochi if (*tmp < ATZ_ZEROC || *tmp > ATZ_ZEROC + 1500)
610 1.13 kochi *tmp = ATZ_TMP_INVALID;
611 1.13 kochi }
612 1.13 kochi
613 1.13 kochi static int
614 1.64 jruoho acpitz_get_integer(device_t dv, const char *cm, uint32_t *val)
615 1.13 kochi {
616 1.33 xtraeme struct acpitz_softc *sc = device_private(dv);
617 1.69 jruoho ACPI_INTEGER tmp;
618 1.13 kochi ACPI_STATUS rv;
619 1.13 kochi
620 1.69 jruoho rv = acpi_eval_integer(sc->sc_node->ad_handle, cm, &tmp);
621 1.63 jruoho
622 1.13 kochi if (ACPI_FAILURE(rv)) {
623 1.13 kochi *val = ATZ_TMP_INVALID;
624 1.63 jruoho
625 1.69 jruoho ACPI_DEBUG_PRINT((ACPI_DB_DEBUG_OBJECT,
626 1.69 jruoho "%s: failed to evaluate %s: %s\n",
627 1.69 jruoho device_xname(dv), cm, AcpiFormatException(rv)));
628 1.63 jruoho
629 1.13 kochi return 1;
630 1.13 kochi }
631 1.13 kochi
632 1.13 kochi *val = tmp;
633 1.13 kochi
634 1.13 kochi return 0;
635 1.13 kochi }
636 1.13 kochi
637 1.49 cegger static int
638 1.49 cegger acpitz_get_fanspeed(device_t dv,
639 1.64 jruoho uint32_t *fanmin, uint32_t *fanmax, uint32_t *fancurrent)
640 1.49 cegger {
641 1.49 cegger struct acpitz_softc *sc = device_private(dv);
642 1.69 jruoho ACPI_INTEGER fmin, fmax, fcurr;
643 1.69 jruoho ACPI_HANDLE handle;
644 1.49 cegger ACPI_STATUS rv;
645 1.49 cegger int rc = 0;
646 1.49 cegger
647 1.69 jruoho handle = sc->sc_node->ad_handle;
648 1.69 jruoho
649 1.49 cegger rv = acpi_eval_integer(handle, "FMIN", &fmin);
650 1.69 jruoho
651 1.49 cegger if (ACPI_FAILURE(rv)) {
652 1.49 cegger fmin = ATZ_TMP_INVALID;
653 1.49 cegger rc = 1;
654 1.49 cegger }
655 1.69 jruoho
656 1.49 cegger rv = acpi_eval_integer(handle, "FMAX", &fmax);
657 1.69 jruoho
658 1.49 cegger if (ACPI_FAILURE(rv)) {
659 1.49 cegger fmax = ATZ_TMP_INVALID;
660 1.49 cegger rc = 1;
661 1.49 cegger }
662 1.49 cegger rv = acpi_eval_integer(handle, "FRSP", &fcurr);
663 1.69 jruoho
664 1.49 cegger if (ACPI_FAILURE(rv)) {
665 1.49 cegger fcurr = ATZ_TMP_INVALID;
666 1.49 cegger rc = 1;
667 1.49 cegger }
668 1.49 cegger
669 1.69 jruoho if (fanmin != NULL)
670 1.49 cegger *fanmin = fmin;
671 1.69 jruoho
672 1.69 jruoho if (fanmax != NULL)
673 1.49 cegger *fanmax = fmax;
674 1.69 jruoho
675 1.69 jruoho if (fancurrent != NULL)
676 1.49 cegger *fancurrent = fcurr;
677 1.69 jruoho
678 1.49 cegger return rc;
679 1.49 cegger }
680 1.49 cegger
681 1.49 cegger #ifdef notyet
682 1.49 cegger static ACPI_STATUS
683 1.64 jruoho acpitz_set_fanspeed(device_t dv, uint32_t fanspeed)
684 1.49 cegger {
685 1.49 cegger struct acpitz_softc *sc = device_private(dv);
686 1.69 jruoho ACPI_HANDLE handle;
687 1.49 cegger ACPI_STATUS rv;
688 1.69 jruoho
689 1.69 jruoho handle = sc->sc_node->ad_handle;
690 1.49 cegger
691 1.49 cegger rv = acpi_eval_set_integer(handle, "FSSP", fanspeed);
692 1.69 jruoho
693 1.49 cegger if (ACPI_FAILURE(rv))
694 1.69 jruoho aprint_debug_dev(dv, "failed to set fan speed to %u RPM: %s\n",
695 1.69 jruoho fanspeed, AcpiFormatException(rv));
696 1.69 jruoho
697 1.49 cegger return rv;
698 1.49 cegger }
699 1.49 cegger #endif
700 1.49 cegger
701 1.13 kochi static void
702 1.1 jmcneill acpitz_tick(void *opaque)
703 1.1 jmcneill {
704 1.33 xtraeme device_t dv = opaque;
705 1.33 xtraeme struct acpitz_softc *sc = device_private(dv);
706 1.1 jmcneill
707 1.69 jruoho (void)AcpiOsExecute(OSL_NOTIFY_HANDLER, acpitz_get_status, dv);
708 1.1 jmcneill
709 1.25 joerg callout_schedule(&sc->sc_callout, sc->sc_zone.tzp * hz / 10);
710 1.1 jmcneill }
711 1.1 jmcneill
712 1.1 jmcneill static void
713 1.33 xtraeme acpitz_init_envsys(device_t dv)
714 1.1 jmcneill {
715 1.68 jruoho const int flags = ENVSYS_FMONLIMITS | ENVSYS_FMONNOTSUPP;
716 1.33 xtraeme struct acpitz_softc *sc = device_private(dv);
717 1.33 xtraeme
718 1.27 xtraeme sc->sc_sme = sysmon_envsys_create();
719 1.68 jruoho
720 1.42 pgoyette sc->sc_sme->sme_cookie = sc;
721 1.42 pgoyette sc->sc_sme->sme_name = device_xname(dv);
722 1.42 pgoyette sc->sc_sme->sme_flags = SME_DISABLE_REFRESH;
723 1.68 jruoho sc->sc_sme->sme_get_limits = acpitz_get_limits;
724 1.49 cegger
725 1.68 jruoho sc->sc_temp_sensor.flags = flags;
726 1.49 cegger sc->sc_temp_sensor.units = ENVSYS_STEMP;
727 1.68 jruoho
728 1.70 jruoho (void)strlcpy(sc->sc_temp_sensor.desc, "temperature",
729 1.70 jruoho sizeof(sc->sc_temp_sensor.desc));
730 1.68 jruoho
731 1.49 cegger if (sysmon_envsys_sensor_attach(sc->sc_sme, &sc->sc_temp_sensor))
732 1.42 pgoyette goto out;
733 1.42 pgoyette
734 1.69 jruoho if (sc->sc_have_fan != false) {
735 1.68 jruoho
736 1.68 jruoho sc->sc_fan_sensor.flags = flags;
737 1.49 cegger sc->sc_fan_sensor.units = ENVSYS_SFANRPM;
738 1.68 jruoho
739 1.68 jruoho (void)strlcpy(sc->sc_fan_sensor.desc,
740 1.49 cegger "FAN", sizeof(sc->sc_fan_sensor.desc));
741 1.68 jruoho
742 1.68 jruoho /* Ignore error because fan sensor is optional. */
743 1.68 jruoho (void)sysmon_envsys_sensor_attach(sc->sc_sme,
744 1.68 jruoho &sc->sc_fan_sensor);
745 1.49 cegger }
746 1.49 cegger
747 1.42 pgoyette if (sysmon_envsys_register(sc->sc_sme) == 0)
748 1.27 xtraeme return;
749 1.49 cegger
750 1.42 pgoyette out:
751 1.42 pgoyette aprint_error_dev(dv, "unable to register with sysmon\n");
752 1.68 jruoho
753 1.42 pgoyette sysmon_envsys_destroy(sc->sc_sme);
754 1.68 jruoho sc->sc_sme = NULL;
755 1.42 pgoyette }
756 1.42 pgoyette
757 1.42 pgoyette static void
758 1.42 pgoyette acpitz_get_limits(struct sysmon_envsys *sme, envsys_data_t *edata,
759 1.58 pgoyette sysmon_envsys_lim_t *limits, uint32_t *props)
760 1.42 pgoyette {
761 1.42 pgoyette struct acpitz_softc *sc = sme->sme_cookie;
762 1.42 pgoyette int i;
763 1.1 jmcneill
764 1.49 cegger switch (edata->units) {
765 1.49 cegger case ENVSYS_STEMP:
766 1.58 pgoyette *props = 0;
767 1.49 cegger if (sc->sc_zone.hot != ATZ_TMP_INVALID) {
768 1.58 pgoyette *props |= PROP_CRITMAX;
769 1.49 cegger limits->sel_critmax = ATZ2UKELVIN(sc->sc_zone.hot);
770 1.49 cegger } else if (sc->sc_zone.crt != ATZ_TMP_INVALID) {
771 1.58 pgoyette *props |= PROP_CRITMAX;
772 1.49 cegger limits->sel_critmax = ATZ2UKELVIN(sc->sc_zone.crt);
773 1.49 cegger }
774 1.49 cegger for (i = 0; i < ATZ_NLEVELS; i++) {
775 1.49 cegger if (sc->sc_zone.ac[i] != ATZ_TMP_INVALID) {
776 1.51 pgoyette limits->sel_warnmax =
777 1.49 cegger ATZ2UKELVIN(sc->sc_zone.ac[i]);
778 1.58 pgoyette *props |= PROP_WARNMAX;
779 1.49 cegger break;
780 1.49 cegger }
781 1.49 cegger }
782 1.49 cegger break;
783 1.49 cegger
784 1.49 cegger case ENVSYS_SFANRPM:
785 1.58 pgoyette *props = 0;
786 1.49 cegger if (sc->sc_zone.fanmin != ATZ_TMP_INVALID) {
787 1.58 pgoyette *props |= PROP_WARNMIN;
788 1.49 cegger limits->sel_warnmin = sc->sc_zone.fanmin;
789 1.49 cegger sc->sc_fan_sensor.flags |= ENVSYS_FVALID_MIN;
790 1.49 cegger }
791 1.49 cegger if (sc->sc_zone.fanmax != ATZ_TMP_INVALID) {
792 1.58 pgoyette *props |= PROP_WARNMAX;
793 1.49 cegger limits->sel_warnmax = sc->sc_zone.fanmax;
794 1.49 cegger sc->sc_fan_sensor.flags |= ENVSYS_FVALID_MAX;
795 1.42 pgoyette }
796 1.49 cegger break;
797 1.49 cegger }
798 1.1 jmcneill }
799