Merge tag 'Smack-for-v5.12' of git://github.com/cschaufler/smack-next
[linux-2.6-microblaze.git] / drivers / acpi / thermal.c
1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3  *  acpi_thermal.c - ACPI Thermal Zone Driver ($Revision: 41 $)
4  *
5  *  Copyright (C) 2001, 2002 Andy Grover <andrew.grover@intel.com>
6  *  Copyright (C) 2001, 2002 Paul Diefenbaugh <paul.s.diefenbaugh@intel.com>
7  *
8  *  This driver fully implements the ACPI thermal policy as described in the
9  *  ACPI 2.0 Specification.
10  *
11  *  TBD: 1. Implement passive cooling hysteresis.
12  *       2. Enhance passive cooling (CPU) states/limit interface to support
13  *          concepts of 'multiple limiters', upper/lower limits, etc.
14  */
15
16 #define pr_fmt(fmt) "ACPI: thermal: " fmt
17
18 #include <linux/kernel.h>
19 #include <linux/module.h>
20 #include <linux/dmi.h>
21 #include <linux/init.h>
22 #include <linux/slab.h>
23 #include <linux/types.h>
24 #include <linux/jiffies.h>
25 #include <linux/kmod.h>
26 #include <linux/reboot.h>
27 #include <linux/device.h>
28 #include <linux/thermal.h>
29 #include <linux/acpi.h>
30 #include <linux/workqueue.h>
31 #include <linux/uaccess.h>
32 #include <linux/units.h>
33
34 #define ACPI_THERMAL_CLASS              "thermal_zone"
35 #define ACPI_THERMAL_DEVICE_NAME        "Thermal Zone"
36 #define ACPI_THERMAL_NOTIFY_TEMPERATURE 0x80
37 #define ACPI_THERMAL_NOTIFY_THRESHOLDS  0x81
38 #define ACPI_THERMAL_NOTIFY_DEVICES     0x82
39 #define ACPI_THERMAL_NOTIFY_CRITICAL    0xF0
40 #define ACPI_THERMAL_NOTIFY_HOT         0xF1
41 #define ACPI_THERMAL_MODE_ACTIVE        0x00
42
43 #define ACPI_THERMAL_MAX_ACTIVE 10
44 #define ACPI_THERMAL_MAX_LIMIT_STR_LEN 65
45
46 MODULE_AUTHOR("Paul Diefenbaugh");
47 MODULE_DESCRIPTION("ACPI Thermal Zone Driver");
48 MODULE_LICENSE("GPL");
49
50 static int act;
51 module_param(act, int, 0644);
52 MODULE_PARM_DESC(act, "Disable or override all lowest active trip points.");
53
54 static int crt;
55 module_param(crt, int, 0644);
56 MODULE_PARM_DESC(crt, "Disable or lower all critical trip points.");
57
58 static int tzp;
59 module_param(tzp, int, 0444);
60 MODULE_PARM_DESC(tzp, "Thermal zone polling frequency, in 1/10 seconds.");
61
62 static int nocrt;
63 module_param(nocrt, int, 0);
64 MODULE_PARM_DESC(nocrt, "Set to take no action upon ACPI thermal zone critical trips points.");
65
66 static int off;
67 module_param(off, int, 0);
68 MODULE_PARM_DESC(off, "Set to disable ACPI thermal support.");
69
70 static int psv;
71 module_param(psv, int, 0644);
72 MODULE_PARM_DESC(psv, "Disable or override all passive trip points.");
73
74 static struct workqueue_struct *acpi_thermal_pm_queue;
75
76 static int acpi_thermal_add(struct acpi_device *device);
77 static int acpi_thermal_remove(struct acpi_device *device);
78 static void acpi_thermal_notify(struct acpi_device *device, u32 event);
79
80 static const struct acpi_device_id  thermal_device_ids[] = {
81         {ACPI_THERMAL_HID, 0},
82         {"", 0},
83 };
84 MODULE_DEVICE_TABLE(acpi, thermal_device_ids);
85
86 #ifdef CONFIG_PM_SLEEP
87 static int acpi_thermal_suspend(struct device *dev);
88 static int acpi_thermal_resume(struct device *dev);
89 #else
90 #define acpi_thermal_suspend NULL
91 #define acpi_thermal_resume NULL
92 #endif
93 static SIMPLE_DEV_PM_OPS(acpi_thermal_pm, acpi_thermal_suspend, acpi_thermal_resume);
94
95 static struct acpi_driver acpi_thermal_driver = {
96         .name = "thermal",
97         .class = ACPI_THERMAL_CLASS,
98         .ids = thermal_device_ids,
99         .ops = {
100                 .add = acpi_thermal_add,
101                 .remove = acpi_thermal_remove,
102                 .notify = acpi_thermal_notify,
103                 },
104         .drv.pm = &acpi_thermal_pm,
105 };
106
107 struct acpi_thermal_state {
108         u8 critical:1;
109         u8 hot:1;
110         u8 passive:1;
111         u8 active:1;
112         u8 reserved:4;
113         int active_index;
114 };
115
116 struct acpi_thermal_state_flags {
117         u8 valid:1;
118         u8 enabled:1;
119         u8 reserved:6;
120 };
121
122 struct acpi_thermal_critical {
123         struct acpi_thermal_state_flags flags;
124         unsigned long temperature;
125 };
126
127 struct acpi_thermal_hot {
128         struct acpi_thermal_state_flags flags;
129         unsigned long temperature;
130 };
131
132 struct acpi_thermal_passive {
133         struct acpi_thermal_state_flags flags;
134         unsigned long temperature;
135         unsigned long tc1;
136         unsigned long tc2;
137         unsigned long tsp;
138         struct acpi_handle_list devices;
139 };
140
141 struct acpi_thermal_active {
142         struct acpi_thermal_state_flags flags;
143         unsigned long temperature;
144         struct acpi_handle_list devices;
145 };
146
147 struct acpi_thermal_trips {
148         struct acpi_thermal_critical critical;
149         struct acpi_thermal_hot hot;
150         struct acpi_thermal_passive passive;
151         struct acpi_thermal_active active[ACPI_THERMAL_MAX_ACTIVE];
152 };
153
154 struct acpi_thermal_flags {
155         u8 cooling_mode:1;      /* _SCP */
156         u8 devices:1;           /* _TZD */
157         u8 reserved:6;
158 };
159
160 struct acpi_thermal {
161         struct acpi_device * device;
162         acpi_bus_id name;
163         unsigned long temperature;
164         unsigned long last_temperature;
165         unsigned long polling_frequency;
166         volatile u8 zombie;
167         struct acpi_thermal_flags flags;
168         struct acpi_thermal_state state;
169         struct acpi_thermal_trips trips;
170         struct acpi_handle_list devices;
171         struct thermal_zone_device *thermal_zone;
172         int kelvin_offset;      /* in millidegrees */
173         struct work_struct thermal_check_work;
174         struct mutex thermal_check_lock;
175         refcount_t thermal_check_count;
176 };
177
178 /* --------------------------------------------------------------------------
179                              Thermal Zone Management
180    -------------------------------------------------------------------------- */
181
182 static int acpi_thermal_get_temperature(struct acpi_thermal *tz)
183 {
184         acpi_status status = AE_OK;
185         unsigned long long tmp;
186
187         if (!tz)
188                 return -EINVAL;
189
190         tz->last_temperature = tz->temperature;
191
192         status = acpi_evaluate_integer(tz->device->handle, "_TMP", NULL, &tmp);
193         if (ACPI_FAILURE(status))
194                 return -ENODEV;
195
196         tz->temperature = tmp;
197
198         acpi_handle_debug(tz->device->handle, "Temperature is %lu dK\n",
199                           tz->temperature);
200
201         return 0;
202 }
203
204 static int acpi_thermal_get_polling_frequency(struct acpi_thermal *tz)
205 {
206         acpi_status status = AE_OK;
207         unsigned long long tmp;
208
209         if (!tz)
210                 return -EINVAL;
211
212         status = acpi_evaluate_integer(tz->device->handle, "_TZP", NULL, &tmp);
213         if (ACPI_FAILURE(status))
214                 return -ENODEV;
215
216         tz->polling_frequency = tmp;
217         acpi_handle_debug(tz->device->handle, "Polling frequency is %lu dS\n",
218                           tz->polling_frequency);
219
220         return 0;
221 }
222
223 static int acpi_thermal_set_cooling_mode(struct acpi_thermal *tz, int mode)
224 {
225         if (!tz)
226                 return -EINVAL;
227
228         if (ACPI_FAILURE(acpi_execute_simple_method(tz->device->handle,
229                                                     "_SCP", mode)))
230                 return -ENODEV;
231
232         return 0;
233 }
234
235 #define ACPI_TRIPS_CRITICAL     0x01
236 #define ACPI_TRIPS_HOT          0x02
237 #define ACPI_TRIPS_PASSIVE      0x04
238 #define ACPI_TRIPS_ACTIVE       0x08
239 #define ACPI_TRIPS_DEVICES      0x10
240
241 #define ACPI_TRIPS_REFRESH_THRESHOLDS   (ACPI_TRIPS_PASSIVE | ACPI_TRIPS_ACTIVE)
242 #define ACPI_TRIPS_REFRESH_DEVICES      ACPI_TRIPS_DEVICES
243
244 #define ACPI_TRIPS_INIT      (ACPI_TRIPS_CRITICAL | ACPI_TRIPS_HOT |    \
245                               ACPI_TRIPS_PASSIVE | ACPI_TRIPS_ACTIVE |  \
246                               ACPI_TRIPS_DEVICES)
247
248 /*
249  * This exception is thrown out in two cases:
250  * 1.An invalid trip point becomes invalid or a valid trip point becomes invalid
251  *   when re-evaluating the AML code.
252  * 2.TODO: Devices listed in _PSL, _ALx, _TZD may change.
253  *   We need to re-bind the cooling devices of a thermal zone when this occurs.
254  */
255 #define ACPI_THERMAL_TRIPS_EXCEPTION(flags, tz, str)    \
256 do {    \
257         if (flags != ACPI_TRIPS_INIT)   \
258                 acpi_handle_info(tz->device->handle,    \
259                 "ACPI thermal trip point %s changed\n"  \
260                 "Please report to linux-acpi@vger.kernel.org\n", str); \
261 } while (0)
262
263 static int acpi_thermal_trips_update(struct acpi_thermal *tz, int flag)
264 {
265         acpi_status status = AE_OK;
266         unsigned long long tmp;
267         struct acpi_handle_list devices;
268         int valid = 0;
269         int i;
270
271         /* Critical Shutdown */
272         if (flag & ACPI_TRIPS_CRITICAL) {
273                 status = acpi_evaluate_integer(tz->device->handle,
274                                 "_CRT", NULL, &tmp);
275                 tz->trips.critical.temperature = tmp;
276                 /*
277                  * Treat freezing temperatures as invalid as well; some
278                  * BIOSes return really low values and cause reboots at startup.
279                  * Below zero (Celsius) values clearly aren't right for sure..
280                  * ... so lets discard those as invalid.
281                  */
282                 if (ACPI_FAILURE(status)) {
283                         tz->trips.critical.flags.valid = 0;
284                         acpi_handle_debug(tz->device->handle,
285                                           "No critical threshold\n");
286                 } else if (tmp <= 2732) {
287                         pr_info(FW_BUG "Invalid critical threshold (%llu)\n",
288                                 tmp);
289                         tz->trips.critical.flags.valid = 0;
290                 } else {
291                         tz->trips.critical.flags.valid = 1;
292                         acpi_handle_debug(tz->device->handle,
293                                           "Found critical threshold [%lu]\n",
294                                           tz->trips.critical.temperature);
295                 }
296                 if (tz->trips.critical.flags.valid == 1) {
297                         if (crt == -1) {
298                                 tz->trips.critical.flags.valid = 0;
299                         } else if (crt > 0) {
300                                 unsigned long crt_k = celsius_to_deci_kelvin(crt);
301
302                                 /*
303                                  * Allow override critical threshold
304                                  */
305                                 if (crt_k > tz->trips.critical.temperature)
306                                         pr_info("Critical threshold %d C\n", crt);
307
308                                 tz->trips.critical.temperature = crt_k;
309                         }
310                 }
311         }
312
313         /* Critical Sleep (optional) */
314         if (flag & ACPI_TRIPS_HOT) {
315                 status = acpi_evaluate_integer(tz->device->handle,
316                                 "_HOT", NULL, &tmp);
317                 if (ACPI_FAILURE(status)) {
318                         tz->trips.hot.flags.valid = 0;
319                         acpi_handle_debug(tz->device->handle,
320                                           "No hot threshold\n");
321                 } else {
322                         tz->trips.hot.temperature = tmp;
323                         tz->trips.hot.flags.valid = 1;
324                         acpi_handle_debug(tz->device->handle,
325                                           "Found hot threshold [%lu]\n",
326                                           tz->trips.hot.temperature);
327                 }
328         }
329
330         /* Passive (optional) */
331         if (((flag & ACPI_TRIPS_PASSIVE) && tz->trips.passive.flags.valid) ||
332                 (flag == ACPI_TRIPS_INIT)) {
333                 valid = tz->trips.passive.flags.valid;
334                 if (psv == -1) {
335                         status = AE_SUPPORT;
336                 } else if (psv > 0) {
337                         tmp = celsius_to_deci_kelvin(psv);
338                         status = AE_OK;
339                 } else {
340                         status = acpi_evaluate_integer(tz->device->handle,
341                                 "_PSV", NULL, &tmp);
342                 }
343
344                 if (ACPI_FAILURE(status))
345                         tz->trips.passive.flags.valid = 0;
346                 else {
347                         tz->trips.passive.temperature = tmp;
348                         tz->trips.passive.flags.valid = 1;
349                         if (flag == ACPI_TRIPS_INIT) {
350                                 status = acpi_evaluate_integer(
351                                                 tz->device->handle, "_TC1",
352                                                 NULL, &tmp);
353                                 if (ACPI_FAILURE(status))
354                                         tz->trips.passive.flags.valid = 0;
355                                 else
356                                         tz->trips.passive.tc1 = tmp;
357                                 status = acpi_evaluate_integer(
358                                                 tz->device->handle, "_TC2",
359                                                 NULL, &tmp);
360                                 if (ACPI_FAILURE(status))
361                                         tz->trips.passive.flags.valid = 0;
362                                 else
363                                         tz->trips.passive.tc2 = tmp;
364                                 status = acpi_evaluate_integer(
365                                                 tz->device->handle, "_TSP",
366                                                 NULL, &tmp);
367                                 if (ACPI_FAILURE(status))
368                                         tz->trips.passive.flags.valid = 0;
369                                 else
370                                         tz->trips.passive.tsp = tmp;
371                         }
372                 }
373         }
374         if ((flag & ACPI_TRIPS_DEVICES) && tz->trips.passive.flags.valid) {
375                 memset(&devices, 0, sizeof(struct acpi_handle_list));
376                 status = acpi_evaluate_reference(tz->device->handle, "_PSL",
377                                                         NULL, &devices);
378                 if (ACPI_FAILURE(status)) {
379                         acpi_handle_info(tz->device->handle,
380                                          "Invalid passive threshold\n");
381                         tz->trips.passive.flags.valid = 0;
382                 }
383                 else
384                         tz->trips.passive.flags.valid = 1;
385
386                 if (memcmp(&tz->trips.passive.devices, &devices,
387                                 sizeof(struct acpi_handle_list))) {
388                         memcpy(&tz->trips.passive.devices, &devices,
389                                 sizeof(struct acpi_handle_list));
390                         ACPI_THERMAL_TRIPS_EXCEPTION(flag, tz, "device");
391                 }
392         }
393         if ((flag & ACPI_TRIPS_PASSIVE) || (flag & ACPI_TRIPS_DEVICES)) {
394                 if (valid != tz->trips.passive.flags.valid)
395                                 ACPI_THERMAL_TRIPS_EXCEPTION(flag, tz, "state");
396         }
397
398         /* Active (optional) */
399         for (i = 0; i < ACPI_THERMAL_MAX_ACTIVE; i++) {
400                 char name[5] = { '_', 'A', 'C', ('0' + i), '\0' };
401                 valid = tz->trips.active[i].flags.valid;
402
403                 if (act == -1)
404                         break; /* disable all active trip points */
405
406                 if ((flag == ACPI_TRIPS_INIT) || ((flag & ACPI_TRIPS_ACTIVE) &&
407                         tz->trips.active[i].flags.valid)) {
408                         status = acpi_evaluate_integer(tz->device->handle,
409                                                         name, NULL, &tmp);
410                         if (ACPI_FAILURE(status)) {
411                                 tz->trips.active[i].flags.valid = 0;
412                                 if (i == 0)
413                                         break;
414                                 if (act <= 0)
415                                         break;
416                                 if (i == 1)
417                                         tz->trips.active[0].temperature =
418                                                 celsius_to_deci_kelvin(act);
419                                 else
420                                         /*
421                                          * Don't allow override higher than
422                                          * the next higher trip point
423                                          */
424                                         tz->trips.active[i - 1].temperature =
425                                                 (tz->trips.active[i - 2].temperature <
426                                                 celsius_to_deci_kelvin(act) ?
427                                                 tz->trips.active[i - 2].temperature :
428                                                 celsius_to_deci_kelvin(act));
429                                 break;
430                         } else {
431                                 tz->trips.active[i].temperature = tmp;
432                                 tz->trips.active[i].flags.valid = 1;
433                         }
434                 }
435
436                 name[2] = 'L';
437                 if ((flag & ACPI_TRIPS_DEVICES) && tz->trips.active[i].flags.valid ) {
438                         memset(&devices, 0, sizeof(struct acpi_handle_list));
439                         status = acpi_evaluate_reference(tz->device->handle,
440                                                 name, NULL, &devices);
441                         if (ACPI_FAILURE(status)) {
442                                 acpi_handle_info(tz->device->handle,
443                                                  "Invalid active%d threshold\n", i);
444                                 tz->trips.active[i].flags.valid = 0;
445                         }
446                         else
447                                 tz->trips.active[i].flags.valid = 1;
448
449                         if (memcmp(&tz->trips.active[i].devices, &devices,
450                                         sizeof(struct acpi_handle_list))) {
451                                 memcpy(&tz->trips.active[i].devices, &devices,
452                                         sizeof(struct acpi_handle_list));
453                                 ACPI_THERMAL_TRIPS_EXCEPTION(flag, tz, "device");
454                         }
455                 }
456                 if ((flag & ACPI_TRIPS_ACTIVE) || (flag & ACPI_TRIPS_DEVICES))
457                         if (valid != tz->trips.active[i].flags.valid)
458                                 ACPI_THERMAL_TRIPS_EXCEPTION(flag, tz, "state");
459
460                 if (!tz->trips.active[i].flags.valid)
461                         break;
462         }
463
464         if (flag & ACPI_TRIPS_DEVICES) {
465                 memset(&devices, 0, sizeof(devices));
466                 status = acpi_evaluate_reference(tz->device->handle, "_TZD",
467                                                 NULL, &devices);
468                 if (ACPI_SUCCESS(status)
469                     && memcmp(&tz->devices, &devices, sizeof(devices))) {
470                         tz->devices = devices;
471                         ACPI_THERMAL_TRIPS_EXCEPTION(flag, tz, "device");
472                 }
473         }
474
475         return 0;
476 }
477
478 static int acpi_thermal_get_trip_points(struct acpi_thermal *tz)
479 {
480         int i, valid, ret = acpi_thermal_trips_update(tz, ACPI_TRIPS_INIT);
481
482         if (ret)
483                 return ret;
484
485         valid = tz->trips.critical.flags.valid |
486                 tz->trips.hot.flags.valid |
487                 tz->trips.passive.flags.valid;
488
489         for (i = 0; i < ACPI_THERMAL_MAX_ACTIVE; i++)
490                 valid |= tz->trips.active[i].flags.valid;
491
492         if (!valid) {
493                 pr_warn(FW_BUG "No valid trip found\n");
494                 return -ENODEV;
495         }
496         return 0;
497 }
498
499 /* sys I/F for generic thermal sysfs support */
500
501 static int thermal_get_temp(struct thermal_zone_device *thermal, int *temp)
502 {
503         struct acpi_thermal *tz = thermal->devdata;
504         int result;
505
506         if (!tz)
507                 return -EINVAL;
508
509         result = acpi_thermal_get_temperature(tz);
510         if (result)
511                 return result;
512
513         *temp = deci_kelvin_to_millicelsius_with_offset(tz->temperature,
514                                                         tz->kelvin_offset);
515         return 0;
516 }
517
518 static int thermal_get_trip_type(struct thermal_zone_device *thermal,
519                                  int trip, enum thermal_trip_type *type)
520 {
521         struct acpi_thermal *tz = thermal->devdata;
522         int i;
523
524         if (!tz || trip < 0)
525                 return -EINVAL;
526
527         if (tz->trips.critical.flags.valid) {
528                 if (!trip) {
529                         *type = THERMAL_TRIP_CRITICAL;
530                         return 0;
531                 }
532                 trip--;
533         }
534
535         if (tz->trips.hot.flags.valid) {
536                 if (!trip) {
537                         *type = THERMAL_TRIP_HOT;
538                         return 0;
539                 }
540                 trip--;
541         }
542
543         if (tz->trips.passive.flags.valid) {
544                 if (!trip) {
545                         *type = THERMAL_TRIP_PASSIVE;
546                         return 0;
547                 }
548                 trip--;
549         }
550
551         for (i = 0; i < ACPI_THERMAL_MAX_ACTIVE &&
552                 tz->trips.active[i].flags.valid; i++) {
553                 if (!trip) {
554                         *type = THERMAL_TRIP_ACTIVE;
555                         return 0;
556                 }
557                 trip--;
558         }
559
560         return -EINVAL;
561 }
562
563 static int thermal_get_trip_temp(struct thermal_zone_device *thermal,
564                                  int trip, int *temp)
565 {
566         struct acpi_thermal *tz = thermal->devdata;
567         int i;
568
569         if (!tz || trip < 0)
570                 return -EINVAL;
571
572         if (tz->trips.critical.flags.valid) {
573                 if (!trip) {
574                         *temp = deci_kelvin_to_millicelsius_with_offset(
575                                 tz->trips.critical.temperature,
576                                 tz->kelvin_offset);
577                         return 0;
578                 }
579                 trip--;
580         }
581
582         if (tz->trips.hot.flags.valid) {
583                 if (!trip) {
584                         *temp = deci_kelvin_to_millicelsius_with_offset(
585                                 tz->trips.hot.temperature,
586                                 tz->kelvin_offset);
587                         return 0;
588                 }
589                 trip--;
590         }
591
592         if (tz->trips.passive.flags.valid) {
593                 if (!trip) {
594                         *temp = deci_kelvin_to_millicelsius_with_offset(
595                                 tz->trips.passive.temperature,
596                                 tz->kelvin_offset);
597                         return 0;
598                 }
599                 trip--;
600         }
601
602         for (i = 0; i < ACPI_THERMAL_MAX_ACTIVE &&
603                 tz->trips.active[i].flags.valid; i++) {
604                 if (!trip) {
605                         *temp = deci_kelvin_to_millicelsius_with_offset(
606                                 tz->trips.active[i].temperature,
607                                 tz->kelvin_offset);
608                         return 0;
609                 }
610                 trip--;
611         }
612
613         return -EINVAL;
614 }
615
616 static int thermal_get_crit_temp(struct thermal_zone_device *thermal,
617                                 int *temperature)
618 {
619         struct acpi_thermal *tz = thermal->devdata;
620
621         if (tz->trips.critical.flags.valid) {
622                 *temperature = deci_kelvin_to_millicelsius_with_offset(
623                                 tz->trips.critical.temperature,
624                                 tz->kelvin_offset);
625                 return 0;
626         } else
627                 return -EINVAL;
628 }
629
630 static int thermal_get_trend(struct thermal_zone_device *thermal,
631                                 int trip, enum thermal_trend *trend)
632 {
633         struct acpi_thermal *tz = thermal->devdata;
634         enum thermal_trip_type type;
635         int i;
636
637         if (thermal_get_trip_type(thermal, trip, &type))
638                 return -EINVAL;
639
640         if (type == THERMAL_TRIP_ACTIVE) {
641                 int trip_temp;
642                 int temp = deci_kelvin_to_millicelsius_with_offset(
643                                         tz->temperature, tz->kelvin_offset);
644                 if (thermal_get_trip_temp(thermal, trip, &trip_temp))
645                         return -EINVAL;
646
647                 if (temp > trip_temp) {
648                         *trend = THERMAL_TREND_RAISING;
649                         return 0;
650                 } else {
651                         /* Fall back on default trend */
652                         return -EINVAL;
653                 }
654         }
655
656         /*
657          * tz->temperature has already been updated by generic thermal layer,
658          * before this callback being invoked
659          */
660         i = (tz->trips.passive.tc1 * (tz->temperature - tz->last_temperature))
661                 + (tz->trips.passive.tc2
662                 * (tz->temperature - tz->trips.passive.temperature));
663
664         if (i > 0)
665                 *trend = THERMAL_TREND_RAISING;
666         else if (i < 0)
667                 *trend = THERMAL_TREND_DROPPING;
668         else
669                 *trend = THERMAL_TREND_STABLE;
670         return 0;
671 }
672
673
674 static int thermal_notify(struct thermal_zone_device *thermal, int trip,
675                            enum thermal_trip_type trip_type)
676 {
677         u8 type = 0;
678         struct acpi_thermal *tz = thermal->devdata;
679
680         if (trip_type == THERMAL_TRIP_CRITICAL)
681                 type = ACPI_THERMAL_NOTIFY_CRITICAL;
682         else if (trip_type == THERMAL_TRIP_HOT)
683                 type = ACPI_THERMAL_NOTIFY_HOT;
684         else
685                 return 0;
686
687         acpi_bus_generate_netlink_event(tz->device->pnp.device_class,
688                                         dev_name(&tz->device->dev), type, 1);
689
690         if (trip_type == THERMAL_TRIP_CRITICAL && nocrt)
691                 return 1;
692
693         return 0;
694 }
695
696 static int acpi_thermal_cooling_device_cb(struct thermal_zone_device *thermal,
697                                         struct thermal_cooling_device *cdev,
698                                         bool bind)
699 {
700         struct acpi_device *device = cdev->devdata;
701         struct acpi_thermal *tz = thermal->devdata;
702         struct acpi_device *dev;
703         acpi_status status;
704         acpi_handle handle;
705         int i;
706         int j;
707         int trip = -1;
708         int result = 0;
709
710         if (tz->trips.critical.flags.valid)
711                 trip++;
712
713         if (tz->trips.hot.flags.valid)
714                 trip++;
715
716         if (tz->trips.passive.flags.valid) {
717                 trip++;
718                 for (i = 0; i < tz->trips.passive.devices.count;
719                     i++) {
720                         handle = tz->trips.passive.devices.handles[i];
721                         status = acpi_bus_get_device(handle, &dev);
722                         if (ACPI_FAILURE(status) || dev != device)
723                                 continue;
724                         if (bind)
725                                 result =
726                                         thermal_zone_bind_cooling_device
727                                         (thermal, trip, cdev,
728                                          THERMAL_NO_LIMIT, THERMAL_NO_LIMIT,
729                                          THERMAL_WEIGHT_DEFAULT);
730                         else
731                                 result =
732                                         thermal_zone_unbind_cooling_device
733                                         (thermal, trip, cdev);
734                         if (result)
735                                 goto failed;
736                 }
737         }
738
739         for (i = 0; i < ACPI_THERMAL_MAX_ACTIVE; i++) {
740                 if (!tz->trips.active[i].flags.valid)
741                         break;
742                 trip++;
743                 for (j = 0;
744                     j < tz->trips.active[i].devices.count;
745                     j++) {
746                         handle = tz->trips.active[i].devices.handles[j];
747                         status = acpi_bus_get_device(handle, &dev);
748                         if (ACPI_FAILURE(status) || dev != device)
749                                 continue;
750                         if (bind)
751                                 result = thermal_zone_bind_cooling_device
752                                         (thermal, trip, cdev,
753                                          THERMAL_NO_LIMIT, THERMAL_NO_LIMIT,
754                                          THERMAL_WEIGHT_DEFAULT);
755                         else
756                                 result = thermal_zone_unbind_cooling_device
757                                         (thermal, trip, cdev);
758                         if (result)
759                                 goto failed;
760                 }
761         }
762
763         for (i = 0; i < tz->devices.count; i++) {
764                 handle = tz->devices.handles[i];
765                 status = acpi_bus_get_device(handle, &dev);
766                 if (ACPI_SUCCESS(status) && (dev == device)) {
767                         if (bind)
768                                 result = thermal_zone_bind_cooling_device
769                                                 (thermal, THERMAL_TRIPS_NONE,
770                                                  cdev, THERMAL_NO_LIMIT,
771                                                  THERMAL_NO_LIMIT,
772                                                  THERMAL_WEIGHT_DEFAULT);
773                         else
774                                 result = thermal_zone_unbind_cooling_device
775                                                 (thermal, THERMAL_TRIPS_NONE,
776                                                  cdev);
777                         if (result)
778                                 goto failed;
779                 }
780         }
781
782 failed:
783         return result;
784 }
785
786 static int
787 acpi_thermal_bind_cooling_device(struct thermal_zone_device *thermal,
788                                         struct thermal_cooling_device *cdev)
789 {
790         return acpi_thermal_cooling_device_cb(thermal, cdev, true);
791 }
792
793 static int
794 acpi_thermal_unbind_cooling_device(struct thermal_zone_device *thermal,
795                                         struct thermal_cooling_device *cdev)
796 {
797         return acpi_thermal_cooling_device_cb(thermal, cdev, false);
798 }
799
800 static struct thermal_zone_device_ops acpi_thermal_zone_ops = {
801         .bind = acpi_thermal_bind_cooling_device,
802         .unbind = acpi_thermal_unbind_cooling_device,
803         .get_temp = thermal_get_temp,
804         .get_trip_type = thermal_get_trip_type,
805         .get_trip_temp = thermal_get_trip_temp,
806         .get_crit_temp = thermal_get_crit_temp,
807         .get_trend = thermal_get_trend,
808         .notify = thermal_notify,
809 };
810
811 static int acpi_thermal_register_thermal_zone(struct acpi_thermal *tz)
812 {
813         int trips = 0;
814         int result;
815         acpi_status status;
816         int i;
817
818         if (tz->trips.critical.flags.valid)
819                 trips++;
820
821         if (tz->trips.hot.flags.valid)
822                 trips++;
823
824         if (tz->trips.passive.flags.valid)
825                 trips++;
826
827         for (i = 0; i < ACPI_THERMAL_MAX_ACTIVE &&
828                         tz->trips.active[i].flags.valid; i++, trips++);
829
830         if (tz->trips.passive.flags.valid)
831                 tz->thermal_zone =
832                         thermal_zone_device_register("acpitz", trips, 0, tz,
833                                                 &acpi_thermal_zone_ops, NULL,
834                                                      tz->trips.passive.tsp*100,
835                                                      tz->polling_frequency*100);
836         else
837                 tz->thermal_zone =
838                         thermal_zone_device_register("acpitz", trips, 0, tz,
839                                                 &acpi_thermal_zone_ops, NULL,
840                                                 0, tz->polling_frequency*100);
841         if (IS_ERR(tz->thermal_zone))
842                 return -ENODEV;
843
844         result = sysfs_create_link(&tz->device->dev.kobj,
845                                    &tz->thermal_zone->device.kobj, "thermal_zone");
846         if (result)
847                 goto unregister_tzd;
848
849         result = sysfs_create_link(&tz->thermal_zone->device.kobj,
850                                    &tz->device->dev.kobj, "device");
851         if (result)
852                 goto remove_tz_link;
853
854         status =  acpi_bus_attach_private_data(tz->device->handle,
855                                                tz->thermal_zone);
856         if (ACPI_FAILURE(status)) {
857                 result = -ENODEV;
858                 goto remove_dev_link;
859         }
860
861         result = thermal_zone_device_enable(tz->thermal_zone);
862         if (result)
863                 goto acpi_bus_detach;
864
865         dev_info(&tz->device->dev, "registered as thermal_zone%d\n",
866                  tz->thermal_zone->id);
867
868         return 0;
869
870 acpi_bus_detach:
871         acpi_bus_detach_private_data(tz->device->handle);
872 remove_dev_link:
873         sysfs_remove_link(&tz->thermal_zone->device.kobj, "device");
874 remove_tz_link:
875         sysfs_remove_link(&tz->device->dev.kobj, "thermal_zone");
876 unregister_tzd:
877         thermal_zone_device_unregister(tz->thermal_zone);
878
879         return result;
880 }
881
882 static void acpi_thermal_unregister_thermal_zone(struct acpi_thermal *tz)
883 {
884         sysfs_remove_link(&tz->device->dev.kobj, "thermal_zone");
885         sysfs_remove_link(&tz->thermal_zone->device.kobj, "device");
886         thermal_zone_device_unregister(tz->thermal_zone);
887         tz->thermal_zone = NULL;
888         acpi_bus_detach_private_data(tz->device->handle);
889 }
890
891
892 /* --------------------------------------------------------------------------
893                                  Driver Interface
894    -------------------------------------------------------------------------- */
895
896 static void acpi_queue_thermal_check(struct acpi_thermal *tz)
897 {
898         if (!work_pending(&tz->thermal_check_work))
899                 queue_work(acpi_thermal_pm_queue, &tz->thermal_check_work);
900 }
901
902 static void acpi_thermal_notify(struct acpi_device *device, u32 event)
903 {
904         struct acpi_thermal *tz = acpi_driver_data(device);
905
906
907         if (!tz)
908                 return;
909
910         switch (event) {
911         case ACPI_THERMAL_NOTIFY_TEMPERATURE:
912                 acpi_queue_thermal_check(tz);
913                 break;
914         case ACPI_THERMAL_NOTIFY_THRESHOLDS:
915                 acpi_thermal_trips_update(tz, ACPI_TRIPS_REFRESH_THRESHOLDS);
916                 acpi_queue_thermal_check(tz);
917                 acpi_bus_generate_netlink_event(device->pnp.device_class,
918                                                   dev_name(&device->dev), event, 0);
919                 break;
920         case ACPI_THERMAL_NOTIFY_DEVICES:
921                 acpi_thermal_trips_update(tz, ACPI_TRIPS_REFRESH_DEVICES);
922                 acpi_queue_thermal_check(tz);
923                 acpi_bus_generate_netlink_event(device->pnp.device_class,
924                                                   dev_name(&device->dev), event, 0);
925                 break;
926         default:
927                 acpi_handle_debug(device->handle, "Unsupported event [0x%x]\n",
928                                   event);
929                 break;
930         }
931 }
932
933 /*
934  * On some platforms, the AML code has dependency about
935  * the evaluating order of _TMP and _CRT/_HOT/_PSV/_ACx.
936  * 1. On HP Pavilion G4-1016tx, _TMP must be invoked after
937  *    /_CRT/_HOT/_PSV/_ACx, or else system will be power off.
938  * 2. On HP Compaq 6715b/6715s, the return value of _PSV is 0
939  *    if _TMP has never been evaluated.
940  *
941  * As this dependency is totally transparent to OS, evaluate
942  * all of them once, in the order of _CRT/_HOT/_PSV/_ACx,
943  * _TMP, before they are actually used.
944  */
945 static void acpi_thermal_aml_dependency_fix(struct acpi_thermal *tz)
946 {
947         acpi_handle handle = tz->device->handle;
948         unsigned long long value;
949         int i;
950
951         acpi_evaluate_integer(handle, "_CRT", NULL, &value);
952         acpi_evaluate_integer(handle, "_HOT", NULL, &value);
953         acpi_evaluate_integer(handle, "_PSV", NULL, &value);
954         for (i = 0; i < ACPI_THERMAL_MAX_ACTIVE; i++) {
955                 char name[5] = { '_', 'A', 'C', ('0' + i), '\0' };
956                 acpi_status status;
957
958                 status = acpi_evaluate_integer(handle, name, NULL, &value);
959                 if (status == AE_NOT_FOUND)
960                         break;
961         }
962         acpi_evaluate_integer(handle, "_TMP", NULL, &value);
963 }
964
965 static int acpi_thermal_get_info(struct acpi_thermal *tz)
966 {
967         int result = 0;
968
969
970         if (!tz)
971                 return -EINVAL;
972
973         acpi_thermal_aml_dependency_fix(tz);
974
975         /* Get trip points [_CRT, _PSV, etc.] (required) */
976         result = acpi_thermal_get_trip_points(tz);
977         if (result)
978                 return result;
979
980         /* Get temperature [_TMP] (required) */
981         result = acpi_thermal_get_temperature(tz);
982         if (result)
983                 return result;
984
985         /* Set the cooling mode [_SCP] to active cooling (default) */
986         result = acpi_thermal_set_cooling_mode(tz, ACPI_THERMAL_MODE_ACTIVE);
987         if (!result)
988                 tz->flags.cooling_mode = 1;
989
990         /* Get default polling frequency [_TZP] (optional) */
991         if (tzp)
992                 tz->polling_frequency = tzp;
993         else
994                 acpi_thermal_get_polling_frequency(tz);
995
996         return 0;
997 }
998
999 /*
1000  * The exact offset between Kelvin and degree Celsius is 273.15. However ACPI
1001  * handles temperature values with a single decimal place. As a consequence,
1002  * some implementations use an offset of 273.1 and others use an offset of
1003  * 273.2. Try to find out which one is being used, to present the most
1004  * accurate and visually appealing number.
1005  *
1006  * The heuristic below should work for all ACPI thermal zones which have a
1007  * critical trip point with a value being a multiple of 0.5 degree Celsius.
1008  */
1009 static void acpi_thermal_guess_offset(struct acpi_thermal *tz)
1010 {
1011         if (tz->trips.critical.flags.valid &&
1012             (tz->trips.critical.temperature % 5) == 1)
1013                 tz->kelvin_offset = 273100;
1014         else
1015                 tz->kelvin_offset = 273200;
1016 }
1017
1018 static void acpi_thermal_check_fn(struct work_struct *work)
1019 {
1020         struct acpi_thermal *tz = container_of(work, struct acpi_thermal,
1021                                                thermal_check_work);
1022
1023         /*
1024          * In general, it is not sufficient to check the pending bit, because
1025          * subsequent instances of this function may be queued after one of them
1026          * has started running (e.g. if _TMP sleeps).  Avoid bailing out if just
1027          * one of them is running, though, because it may have done the actual
1028          * check some time ago, so allow at least one of them to block on the
1029          * mutex while another one is running the update.
1030          */
1031         if (!refcount_dec_not_one(&tz->thermal_check_count))
1032                 return;
1033
1034         mutex_lock(&tz->thermal_check_lock);
1035
1036         thermal_zone_device_update(tz->thermal_zone, THERMAL_EVENT_UNSPECIFIED);
1037
1038         refcount_inc(&tz->thermal_check_count);
1039
1040         mutex_unlock(&tz->thermal_check_lock);
1041 }
1042
1043 static int acpi_thermal_add(struct acpi_device *device)
1044 {
1045         int result = 0;
1046         struct acpi_thermal *tz = NULL;
1047
1048
1049         if (!device)
1050                 return -EINVAL;
1051
1052         tz = kzalloc(sizeof(struct acpi_thermal), GFP_KERNEL);
1053         if (!tz)
1054                 return -ENOMEM;
1055
1056         tz->device = device;
1057         strcpy(tz->name, device->pnp.bus_id);
1058         strcpy(acpi_device_name(device), ACPI_THERMAL_DEVICE_NAME);
1059         strcpy(acpi_device_class(device), ACPI_THERMAL_CLASS);
1060         device->driver_data = tz;
1061
1062         result = acpi_thermal_get_info(tz);
1063         if (result)
1064                 goto free_memory;
1065
1066         acpi_thermal_guess_offset(tz);
1067
1068         result = acpi_thermal_register_thermal_zone(tz);
1069         if (result)
1070                 goto free_memory;
1071
1072         refcount_set(&tz->thermal_check_count, 3);
1073         mutex_init(&tz->thermal_check_lock);
1074         INIT_WORK(&tz->thermal_check_work, acpi_thermal_check_fn);
1075
1076         pr_info("%s [%s] (%ld C)\n", acpi_device_name(device),
1077                 acpi_device_bid(device), deci_kelvin_to_celsius(tz->temperature));
1078         goto end;
1079
1080 free_memory:
1081         kfree(tz);
1082 end:
1083         return result;
1084 }
1085
1086 static int acpi_thermal_remove(struct acpi_device *device)
1087 {
1088         struct acpi_thermal *tz = NULL;
1089
1090         if (!device || !acpi_driver_data(device))
1091                 return -EINVAL;
1092
1093         flush_workqueue(acpi_thermal_pm_queue);
1094         tz = acpi_driver_data(device);
1095
1096         acpi_thermal_unregister_thermal_zone(tz);
1097         kfree(tz);
1098         return 0;
1099 }
1100
1101 #ifdef CONFIG_PM_SLEEP
1102 static int acpi_thermal_suspend(struct device *dev)
1103 {
1104         /* Make sure the previously queued thermal check work has been done */
1105         flush_workqueue(acpi_thermal_pm_queue);
1106         return 0;
1107 }
1108
1109 static int acpi_thermal_resume(struct device *dev)
1110 {
1111         struct acpi_thermal *tz;
1112         int i, j, power_state, result;
1113
1114         if (!dev)
1115                 return -EINVAL;
1116
1117         tz = acpi_driver_data(to_acpi_device(dev));
1118         if (!tz)
1119                 return -EINVAL;
1120
1121         for (i = 0; i < ACPI_THERMAL_MAX_ACTIVE; i++) {
1122                 if (!(&tz->trips.active[i]))
1123                         break;
1124                 if (!tz->trips.active[i].flags.valid)
1125                         break;
1126                 tz->trips.active[i].flags.enabled = 1;
1127                 for (j = 0; j < tz->trips.active[i].devices.count; j++) {
1128                         result = acpi_bus_update_power(
1129                                         tz->trips.active[i].devices.handles[j],
1130                                         &power_state);
1131                         if (result || (power_state != ACPI_STATE_D0)) {
1132                                 tz->trips.active[i].flags.enabled = 0;
1133                                 break;
1134                         }
1135                 }
1136                 tz->state.active |= tz->trips.active[i].flags.enabled;
1137         }
1138
1139         acpi_queue_thermal_check(tz);
1140
1141         return AE_OK;
1142 }
1143 #endif
1144
1145 static int thermal_act(const struct dmi_system_id *d) {
1146
1147         if (act == 0) {
1148                 pr_notice("%s detected: disabling all active thermal trip points\n",
1149                           d->ident);
1150                 act = -1;
1151         }
1152         return 0;
1153 }
1154 static int thermal_nocrt(const struct dmi_system_id *d) {
1155
1156         pr_notice("%s detected: disabling all critical thermal trip point actions.\n",
1157                   d->ident);
1158         nocrt = 1;
1159         return 0;
1160 }
1161 static int thermal_tzp(const struct dmi_system_id *d) {
1162
1163         if (tzp == 0) {
1164                 pr_notice("%s detected: enabling thermal zone polling\n",
1165                           d->ident);
1166                 tzp = 300;      /* 300 dS = 30 Seconds */
1167         }
1168         return 0;
1169 }
1170 static int thermal_psv(const struct dmi_system_id *d) {
1171
1172         if (psv == 0) {
1173                 pr_notice("%s detected: disabling all passive thermal trip points\n",
1174                           d->ident);
1175                 psv = -1;
1176         }
1177         return 0;
1178 }
1179
1180 static const struct dmi_system_id thermal_dmi_table[] __initconst = {
1181         /*
1182          * Award BIOS on this AOpen makes thermal control almost worthless.
1183          * http://bugzilla.kernel.org/show_bug.cgi?id=8842
1184          */
1185         {
1186          .callback = thermal_act,
1187          .ident = "AOpen i915GMm-HFS",
1188          .matches = {
1189                 DMI_MATCH(DMI_BOARD_VENDOR, "AOpen"),
1190                 DMI_MATCH(DMI_BOARD_NAME, "i915GMm-HFS"),
1191                 },
1192         },
1193         {
1194          .callback = thermal_psv,
1195          .ident = "AOpen i915GMm-HFS",
1196          .matches = {
1197                 DMI_MATCH(DMI_BOARD_VENDOR, "AOpen"),
1198                 DMI_MATCH(DMI_BOARD_NAME, "i915GMm-HFS"),
1199                 },
1200         },
1201         {
1202          .callback = thermal_tzp,
1203          .ident = "AOpen i915GMm-HFS",
1204          .matches = {
1205                 DMI_MATCH(DMI_BOARD_VENDOR, "AOpen"),
1206                 DMI_MATCH(DMI_BOARD_NAME, "i915GMm-HFS"),
1207                 },
1208         },
1209         {
1210          .callback = thermal_nocrt,
1211          .ident = "Gigabyte GA-7ZX",
1212          .matches = {
1213                 DMI_MATCH(DMI_BOARD_VENDOR, "Gigabyte Technology Co., Ltd."),
1214                 DMI_MATCH(DMI_BOARD_NAME, "7ZX"),
1215                 },
1216         },
1217         {}
1218 };
1219
1220 static int __init acpi_thermal_init(void)
1221 {
1222         int result = 0;
1223
1224         dmi_check_system(thermal_dmi_table);
1225
1226         if (off) {
1227                 pr_notice("thermal control disabled\n");
1228                 return -ENODEV;
1229         }
1230
1231         acpi_thermal_pm_queue = alloc_workqueue("acpi_thermal_pm",
1232                                                 WQ_HIGHPRI | WQ_MEM_RECLAIM, 0);
1233         if (!acpi_thermal_pm_queue)
1234                 return -ENODEV;
1235
1236         result = acpi_bus_register_driver(&acpi_thermal_driver);
1237         if (result < 0) {
1238                 destroy_workqueue(acpi_thermal_pm_queue);
1239                 return -ENODEV;
1240         }
1241
1242         return 0;
1243 }
1244
1245 static void __exit acpi_thermal_exit(void)
1246 {
1247         acpi_bus_unregister_driver(&acpi_thermal_driver);
1248         destroy_workqueue(acpi_thermal_pm_queue);
1249
1250         return;
1251 }
1252
1253 module_init(acpi_thermal_init);
1254 module_exit(acpi_thermal_exit);