blob: 652973d83a07ecd595e2ac7b7ec343ceaa170f2a [file] [log] [blame]
rjw1f884582022-01-06 17:20:42 +08001/*
2 * hwmon.c - part of lm_sensors, Linux kernel modules for hardware monitoring
3 *
4 * This file defines the sysfs class "hwmon", for use by sensors drivers.
5 *
6 * Copyright (C) 2005 Mark M. Hoffman <mhoffman@lightlink.com>
7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; version 2 of the License.
11 */
12
13#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
14
15#include <linux/bitops.h>
16#include <linux/device.h>
17#include <linux/err.h>
18#include <linux/gfp.h>
19#include <linux/hwmon.h>
20#include <linux/idr.h>
21#include <linux/module.h>
22#include <linux/pci.h>
23#include <linux/slab.h>
24#include <linux/string.h>
25#include <linux/thermal.h>
26
27#define HWMON_ID_PREFIX "hwmon"
28#define HWMON_ID_FORMAT HWMON_ID_PREFIX "%d"
29
30struct hwmon_device {
31 const char *name;
32 struct device dev;
33 const struct hwmon_chip_info *chip;
34
35 struct attribute_group group;
36 const struct attribute_group **groups;
37};
38
39#define to_hwmon_device(d) container_of(d, struct hwmon_device, dev)
40
41#define MAX_SYSFS_ATTR_NAME_LENGTH 32
42
43struct hwmon_device_attribute {
44 struct device_attribute dev_attr;
45 const struct hwmon_ops *ops;
46 enum hwmon_sensor_types type;
47 u32 attr;
48 int index;
49 char name[MAX_SYSFS_ATTR_NAME_LENGTH];
50};
51
52#define to_hwmon_attr(d) \
53 container_of(d, struct hwmon_device_attribute, dev_attr)
54#define to_dev_attr(a) container_of(a, struct device_attribute, attr)
55
56/*
57 * Thermal zone information
58 * In addition to the reference to the hwmon device,
59 * also provides the sensor index.
60 */
61struct hwmon_thermal_data {
62 struct device *dev; /* Reference to hwmon device */
63 int index; /* sensor index */
64};
65
66static ssize_t
67name_show(struct device *dev, struct device_attribute *attr, char *buf)
68{
69 return sprintf(buf, "%s\n", to_hwmon_device(dev)->name);
70}
71static DEVICE_ATTR_RO(name);
72
73static struct attribute *hwmon_dev_attrs[] = {
74 &dev_attr_name.attr,
75 NULL
76};
77
78static umode_t hwmon_dev_name_is_visible(struct kobject *kobj,
79 struct attribute *attr, int n)
80{
81 struct device *dev = container_of(kobj, struct device, kobj);
82
83 if (to_hwmon_device(dev)->name == NULL)
84 return 0;
85
86 return attr->mode;
87}
88
89static const struct attribute_group hwmon_dev_attr_group = {
90 .attrs = hwmon_dev_attrs,
91 .is_visible = hwmon_dev_name_is_visible,
92};
93
94static const struct attribute_group *hwmon_dev_attr_groups[] = {
95 &hwmon_dev_attr_group,
96 NULL
97};
98
99static void hwmon_free_attrs(struct attribute **attrs)
100{
101 int i;
102
103 for (i = 0; attrs[i]; i++) {
104 struct device_attribute *dattr = to_dev_attr(attrs[i]);
105 struct hwmon_device_attribute *hattr = to_hwmon_attr(dattr);
106
107 kfree(hattr);
108 }
109 kfree(attrs);
110}
111
112static void hwmon_dev_release(struct device *dev)
113{
114 struct hwmon_device *hwdev = to_hwmon_device(dev);
115
116 if (hwdev->group.attrs)
117 hwmon_free_attrs(hwdev->group.attrs);
118 kfree(hwdev->groups);
119 kfree(hwdev);
120}
121
122static struct class hwmon_class = {
123 .name = "hwmon",
124 .owner = THIS_MODULE,
125 .dev_groups = hwmon_dev_attr_groups,
126 .dev_release = hwmon_dev_release,
127};
128
129static DEFINE_IDA(hwmon_ida);
130
131/* Thermal zone handling */
132
133/*
134 * The complex conditional is necessary to avoid a cyclic dependency
135 * between hwmon and thermal_sys modules.
136 */
137#if IS_REACHABLE(CONFIG_THERMAL) && defined(CONFIG_THERMAL_OF) && \
138 (!defined(CONFIG_THERMAL_HWMON) || \
139 !(defined(MODULE) && IS_MODULE(CONFIG_THERMAL)))
140static int hwmon_thermal_get_temp(void *data, int *temp)
141{
142 struct hwmon_thermal_data *tdata = data;
143 struct hwmon_device *hwdev = to_hwmon_device(tdata->dev);
144 int ret;
145 long t;
146
147 ret = hwdev->chip->ops->read(tdata->dev, hwmon_temp, hwmon_temp_input,
148 tdata->index, &t);
149 if (ret < 0)
150 return ret;
151
152 *temp = t;
153
154 return 0;
155}
156
157static const struct thermal_zone_of_device_ops hwmon_thermal_ops = {
158 .get_temp = hwmon_thermal_get_temp,
159};
160
161static int hwmon_thermal_add_sensor(struct device *dev, int index)
162{
163 struct hwmon_thermal_data *tdata;
164 struct thermal_zone_device *tzd;
165
166 tdata = devm_kzalloc(dev, sizeof(*tdata), GFP_KERNEL);
167 if (!tdata)
168 return -ENOMEM;
169
170 tdata->dev = dev;
171 tdata->index = index;
172
173 tzd = devm_thermal_zone_of_sensor_register(dev, index, tdata,
174 &hwmon_thermal_ops);
175 /*
176 * If CONFIG_THERMAL_OF is disabled, this returns -ENODEV,
177 * so ignore that error but forward any other error.
178 */
179 if (IS_ERR(tzd) && (PTR_ERR(tzd) != -ENODEV))
180 return PTR_ERR(tzd);
181
182 return 0;
183}
184#else
185static int hwmon_thermal_add_sensor(struct device *dev, int index)
186{
187 return 0;
188}
189#endif /* IS_REACHABLE(CONFIG_THERMAL) && ... */
190
191/* sysfs attribute management */
192
193static ssize_t hwmon_attr_show(struct device *dev,
194 struct device_attribute *devattr, char *buf)
195{
196 struct hwmon_device_attribute *hattr = to_hwmon_attr(devattr);
197 long val;
198 int ret;
199
200 ret = hattr->ops->read(dev, hattr->type, hattr->attr, hattr->index,
201 &val);
202 if (ret < 0)
203 return ret;
204
205 return sprintf(buf, "%ld\n", val);
206}
207
208static ssize_t hwmon_attr_show_string(struct device *dev,
209 struct device_attribute *devattr,
210 char *buf)
211{
212 struct hwmon_device_attribute *hattr = to_hwmon_attr(devattr);
213 const char *s;
214 int ret;
215
216 ret = hattr->ops->read_string(dev, hattr->type, hattr->attr,
217 hattr->index, &s);
218 if (ret < 0)
219 return ret;
220
221 return sprintf(buf, "%s\n", s);
222}
223
224static ssize_t hwmon_attr_store(struct device *dev,
225 struct device_attribute *devattr,
226 const char *buf, size_t count)
227{
228 struct hwmon_device_attribute *hattr = to_hwmon_attr(devattr);
229 long val;
230 int ret;
231
232 ret = kstrtol(buf, 10, &val);
233 if (ret < 0)
234 return ret;
235
236 ret = hattr->ops->write(dev, hattr->type, hattr->attr, hattr->index,
237 val);
238 if (ret < 0)
239 return ret;
240
241 return count;
242}
243
244static int hwmon_attr_base(enum hwmon_sensor_types type)
245{
246 if (type == hwmon_in)
247 return 0;
248 return 1;
249}
250
251static bool is_string_attr(enum hwmon_sensor_types type, u32 attr)
252{
253 return (type == hwmon_temp && attr == hwmon_temp_label) ||
254 (type == hwmon_in && attr == hwmon_in_label) ||
255 (type == hwmon_curr && attr == hwmon_curr_label) ||
256 (type == hwmon_power && attr == hwmon_power_label) ||
257 (type == hwmon_energy && attr == hwmon_energy_label) ||
258 (type == hwmon_humidity && attr == hwmon_humidity_label) ||
259 (type == hwmon_fan && attr == hwmon_fan_label);
260}
261
262static struct attribute *hwmon_genattr(const void *drvdata,
263 enum hwmon_sensor_types type,
264 u32 attr,
265 int index,
266 const char *template,
267 const struct hwmon_ops *ops)
268{
269 struct hwmon_device_attribute *hattr;
270 struct device_attribute *dattr;
271 struct attribute *a;
272 umode_t mode;
273 char *name;
274 bool is_string = is_string_attr(type, attr);
275
276 /* The attribute is invisible if there is no template string */
277 if (!template)
278 return ERR_PTR(-ENOENT);
279
280 mode = ops->is_visible(drvdata, type, attr, index);
281 if (!mode)
282 return ERR_PTR(-ENOENT);
283
284 if ((mode & S_IRUGO) && ((is_string && !ops->read_string) ||
285 (!is_string && !ops->read)))
286 return ERR_PTR(-EINVAL);
287 if ((mode & S_IWUGO) && !ops->write)
288 return ERR_PTR(-EINVAL);
289
290 hattr = kzalloc(sizeof(*hattr), GFP_KERNEL);
291 if (!hattr)
292 return ERR_PTR(-ENOMEM);
293
294 if (type == hwmon_chip) {
295 name = (char *)template;
296 } else {
297 scnprintf(hattr->name, sizeof(hattr->name), template,
298 index + hwmon_attr_base(type));
299 name = hattr->name;
300 }
301
302 hattr->type = type;
303 hattr->attr = attr;
304 hattr->index = index;
305 hattr->ops = ops;
306
307 dattr = &hattr->dev_attr;
308 dattr->show = is_string ? hwmon_attr_show_string : hwmon_attr_show;
309 dattr->store = hwmon_attr_store;
310
311 a = &dattr->attr;
312 sysfs_attr_init(a);
313 a->name = name;
314 a->mode = mode;
315
316 return a;
317}
318
319/*
320 * Chip attributes are not attribute templates but actual sysfs attributes.
321 * See hwmon_genattr() for special handling.
322 */
323static const char * const hwmon_chip_attrs[] = {
324 [hwmon_chip_temp_reset_history] = "temp_reset_history",
325 [hwmon_chip_in_reset_history] = "in_reset_history",
326 [hwmon_chip_curr_reset_history] = "curr_reset_history",
327 [hwmon_chip_power_reset_history] = "power_reset_history",
328 [hwmon_chip_update_interval] = "update_interval",
329 [hwmon_chip_alarms] = "alarms",
330};
331
332static const char * const hwmon_temp_attr_templates[] = {
333 [hwmon_temp_input] = "temp%d_input",
334 [hwmon_temp_type] = "temp%d_type",
335 [hwmon_temp_lcrit] = "temp%d_lcrit",
336 [hwmon_temp_lcrit_hyst] = "temp%d_lcrit_hyst",
337 [hwmon_temp_min] = "temp%d_min",
338 [hwmon_temp_min_hyst] = "temp%d_min_hyst",
339 [hwmon_temp_max] = "temp%d_max",
340 [hwmon_temp_max_hyst] = "temp%d_max_hyst",
341 [hwmon_temp_crit] = "temp%d_crit",
342 [hwmon_temp_crit_hyst] = "temp%d_crit_hyst",
343 [hwmon_temp_emergency] = "temp%d_emergency",
344 [hwmon_temp_emergency_hyst] = "temp%d_emergency_hyst",
345 [hwmon_temp_alarm] = "temp%d_alarm",
346 [hwmon_temp_lcrit_alarm] = "temp%d_lcrit_alarm",
347 [hwmon_temp_min_alarm] = "temp%d_min_alarm",
348 [hwmon_temp_max_alarm] = "temp%d_max_alarm",
349 [hwmon_temp_crit_alarm] = "temp%d_crit_alarm",
350 [hwmon_temp_emergency_alarm] = "temp%d_emergency_alarm",
351 [hwmon_temp_fault] = "temp%d_fault",
352 [hwmon_temp_offset] = "temp%d_offset",
353 [hwmon_temp_label] = "temp%d_label",
354 [hwmon_temp_lowest] = "temp%d_lowest",
355 [hwmon_temp_highest] = "temp%d_highest",
356 [hwmon_temp_reset_history] = "temp%d_reset_history",
357};
358
359static const char * const hwmon_in_attr_templates[] = {
360 [hwmon_in_input] = "in%d_input",
361 [hwmon_in_min] = "in%d_min",
362 [hwmon_in_max] = "in%d_max",
363 [hwmon_in_lcrit] = "in%d_lcrit",
364 [hwmon_in_crit] = "in%d_crit",
365 [hwmon_in_average] = "in%d_average",
366 [hwmon_in_lowest] = "in%d_lowest",
367 [hwmon_in_highest] = "in%d_highest",
368 [hwmon_in_reset_history] = "in%d_reset_history",
369 [hwmon_in_label] = "in%d_label",
370 [hwmon_in_alarm] = "in%d_alarm",
371 [hwmon_in_min_alarm] = "in%d_min_alarm",
372 [hwmon_in_max_alarm] = "in%d_max_alarm",
373 [hwmon_in_lcrit_alarm] = "in%d_lcrit_alarm",
374 [hwmon_in_crit_alarm] = "in%d_crit_alarm",
375};
376
377static const char * const hwmon_curr_attr_templates[] = {
378 [hwmon_curr_input] = "curr%d_input",
379 [hwmon_curr_min] = "curr%d_min",
380 [hwmon_curr_max] = "curr%d_max",
381 [hwmon_curr_lcrit] = "curr%d_lcrit",
382 [hwmon_curr_crit] = "curr%d_crit",
383 [hwmon_curr_average] = "curr%d_average",
384 [hwmon_curr_lowest] = "curr%d_lowest",
385 [hwmon_curr_highest] = "curr%d_highest",
386 [hwmon_curr_reset_history] = "curr%d_reset_history",
387 [hwmon_curr_label] = "curr%d_label",
388 [hwmon_curr_alarm] = "curr%d_alarm",
389 [hwmon_curr_min_alarm] = "curr%d_min_alarm",
390 [hwmon_curr_max_alarm] = "curr%d_max_alarm",
391 [hwmon_curr_lcrit_alarm] = "curr%d_lcrit_alarm",
392 [hwmon_curr_crit_alarm] = "curr%d_crit_alarm",
393};
394
395static const char * const hwmon_power_attr_templates[] = {
396 [hwmon_power_average] = "power%d_average",
397 [hwmon_power_average_interval] = "power%d_average_interval",
398 [hwmon_power_average_interval_max] = "power%d_interval_max",
399 [hwmon_power_average_interval_min] = "power%d_interval_min",
400 [hwmon_power_average_highest] = "power%d_average_highest",
401 [hwmon_power_average_lowest] = "power%d_average_lowest",
402 [hwmon_power_average_max] = "power%d_average_max",
403 [hwmon_power_average_min] = "power%d_average_min",
404 [hwmon_power_input] = "power%d_input",
405 [hwmon_power_input_highest] = "power%d_input_highest",
406 [hwmon_power_input_lowest] = "power%d_input_lowest",
407 [hwmon_power_reset_history] = "power%d_reset_history",
408 [hwmon_power_accuracy] = "power%d_accuracy",
409 [hwmon_power_cap] = "power%d_cap",
410 [hwmon_power_cap_hyst] = "power%d_cap_hyst",
411 [hwmon_power_cap_max] = "power%d_cap_max",
412 [hwmon_power_cap_min] = "power%d_cap_min",
413 [hwmon_power_max] = "power%d_max",
414 [hwmon_power_crit] = "power%d_crit",
415 [hwmon_power_label] = "power%d_label",
416 [hwmon_power_alarm] = "power%d_alarm",
417 [hwmon_power_cap_alarm] = "power%d_cap_alarm",
418 [hwmon_power_max_alarm] = "power%d_max_alarm",
419 [hwmon_power_crit_alarm] = "power%d_crit_alarm",
420};
421
422static const char * const hwmon_energy_attr_templates[] = {
423 [hwmon_energy_input] = "energy%d_input",
424 [hwmon_energy_label] = "energy%d_label",
425};
426
427static const char * const hwmon_humidity_attr_templates[] = {
428 [hwmon_humidity_input] = "humidity%d_input",
429 [hwmon_humidity_label] = "humidity%d_label",
430 [hwmon_humidity_min] = "humidity%d_min",
431 [hwmon_humidity_min_hyst] = "humidity%d_min_hyst",
432 [hwmon_humidity_max] = "humidity%d_max",
433 [hwmon_humidity_max_hyst] = "humidity%d_max_hyst",
434 [hwmon_humidity_alarm] = "humidity%d_alarm",
435 [hwmon_humidity_fault] = "humidity%d_fault",
436};
437
438static const char * const hwmon_fan_attr_templates[] = {
439 [hwmon_fan_input] = "fan%d_input",
440 [hwmon_fan_label] = "fan%d_label",
441 [hwmon_fan_min] = "fan%d_min",
442 [hwmon_fan_max] = "fan%d_max",
443 [hwmon_fan_div] = "fan%d_div",
444 [hwmon_fan_pulses] = "fan%d_pulses",
445 [hwmon_fan_target] = "fan%d_target",
446 [hwmon_fan_alarm] = "fan%d_alarm",
447 [hwmon_fan_min_alarm] = "fan%d_min_alarm",
448 [hwmon_fan_max_alarm] = "fan%d_max_alarm",
449 [hwmon_fan_fault] = "fan%d_fault",
450};
451
452static const char * const hwmon_pwm_attr_templates[] = {
453 [hwmon_pwm_input] = "pwm%d",
454 [hwmon_pwm_enable] = "pwm%d_enable",
455 [hwmon_pwm_mode] = "pwm%d_mode",
456 [hwmon_pwm_freq] = "pwm%d_freq",
457};
458
459static const char * const *__templates[] = {
460 [hwmon_chip] = hwmon_chip_attrs,
461 [hwmon_temp] = hwmon_temp_attr_templates,
462 [hwmon_in] = hwmon_in_attr_templates,
463 [hwmon_curr] = hwmon_curr_attr_templates,
464 [hwmon_power] = hwmon_power_attr_templates,
465 [hwmon_energy] = hwmon_energy_attr_templates,
466 [hwmon_humidity] = hwmon_humidity_attr_templates,
467 [hwmon_fan] = hwmon_fan_attr_templates,
468 [hwmon_pwm] = hwmon_pwm_attr_templates,
469};
470
471static const int __templates_size[] = {
472 [hwmon_chip] = ARRAY_SIZE(hwmon_chip_attrs),
473 [hwmon_temp] = ARRAY_SIZE(hwmon_temp_attr_templates),
474 [hwmon_in] = ARRAY_SIZE(hwmon_in_attr_templates),
475 [hwmon_curr] = ARRAY_SIZE(hwmon_curr_attr_templates),
476 [hwmon_power] = ARRAY_SIZE(hwmon_power_attr_templates),
477 [hwmon_energy] = ARRAY_SIZE(hwmon_energy_attr_templates),
478 [hwmon_humidity] = ARRAY_SIZE(hwmon_humidity_attr_templates),
479 [hwmon_fan] = ARRAY_SIZE(hwmon_fan_attr_templates),
480 [hwmon_pwm] = ARRAY_SIZE(hwmon_pwm_attr_templates),
481};
482
483static int hwmon_num_channel_attrs(const struct hwmon_channel_info *info)
484{
485 int i, n;
486
487 for (i = n = 0; info->config[i]; i++)
488 n += hweight32(info->config[i]);
489
490 return n;
491}
492
493static int hwmon_genattrs(const void *drvdata,
494 struct attribute **attrs,
495 const struct hwmon_ops *ops,
496 const struct hwmon_channel_info *info)
497{
498 const char * const *templates;
499 int template_size;
500 int i, aindex = 0;
501
502 if (info->type >= ARRAY_SIZE(__templates))
503 return -EINVAL;
504
505 templates = __templates[info->type];
506 template_size = __templates_size[info->type];
507
508 for (i = 0; info->config[i]; i++) {
509 u32 attr_mask = info->config[i];
510 u32 attr;
511
512 while (attr_mask) {
513 struct attribute *a;
514
515 attr = __ffs(attr_mask);
516 attr_mask &= ~BIT(attr);
517 if (attr >= template_size)
518 return -EINVAL;
519 a = hwmon_genattr(drvdata, info->type, attr, i,
520 templates[attr], ops);
521 if (IS_ERR(a)) {
522 if (PTR_ERR(a) != -ENOENT)
523 return PTR_ERR(a);
524 continue;
525 }
526 attrs[aindex++] = a;
527 }
528 }
529 return aindex;
530}
531
532static struct attribute **
533__hwmon_create_attrs(const void *drvdata, const struct hwmon_chip_info *chip)
534{
535 int ret, i, aindex = 0, nattrs = 0;
536 struct attribute **attrs;
537
538 for (i = 0; chip->info[i]; i++)
539 nattrs += hwmon_num_channel_attrs(chip->info[i]);
540
541 if (nattrs == 0)
542 return ERR_PTR(-EINVAL);
543
544 attrs = kcalloc(nattrs + 1, sizeof(*attrs), GFP_KERNEL);
545 if (!attrs)
546 return ERR_PTR(-ENOMEM);
547
548 for (i = 0; chip->info[i]; i++) {
549 ret = hwmon_genattrs(drvdata, &attrs[aindex], chip->ops,
550 chip->info[i]);
551 if (ret < 0) {
552 hwmon_free_attrs(attrs);
553 return ERR_PTR(ret);
554 }
555 aindex += ret;
556 }
557
558 return attrs;
559}
560
561static struct device *
562__hwmon_device_register(struct device *dev, const char *name, void *drvdata,
563 const struct hwmon_chip_info *chip,
564 const struct attribute_group **groups)
565{
566 struct hwmon_device *hwdev;
567 struct device *hdev;
568 int i, j, err, id;
569
570 /* Complain about invalid characters in hwmon name attribute */
571 if (name && (!strlen(name) || strpbrk(name, "-* \t\n")))
572 dev_warn(dev,
573 "hwmon: '%s' is not a valid name attribute, please fix\n",
574 name);
575
576 id = ida_simple_get(&hwmon_ida, 0, 0, GFP_KERNEL);
577 if (id < 0)
578 return ERR_PTR(id);
579
580 hwdev = kzalloc(sizeof(*hwdev), GFP_KERNEL);
581 if (hwdev == NULL) {
582 err = -ENOMEM;
583 goto ida_remove;
584 }
585
586 hdev = &hwdev->dev;
587
588 if (chip) {
589 struct attribute **attrs;
590 int ngroups = 2; /* terminating NULL plus &hwdev->groups */
591
592 if (groups)
593 for (i = 0; groups[i]; i++)
594 ngroups++;
595
596 hwdev->groups = kcalloc(ngroups, sizeof(*groups), GFP_KERNEL);
597 if (!hwdev->groups) {
598 err = -ENOMEM;
599 goto free_hwmon;
600 }
601
602 attrs = __hwmon_create_attrs(drvdata, chip);
603 if (IS_ERR(attrs)) {
604 err = PTR_ERR(attrs);
605 goto free_hwmon;
606 }
607
608 hwdev->group.attrs = attrs;
609 ngroups = 0;
610 hwdev->groups[ngroups++] = &hwdev->group;
611
612 if (groups) {
613 for (i = 0; groups[i]; i++)
614 hwdev->groups[ngroups++] = groups[i];
615 }
616
617 hdev->groups = hwdev->groups;
618 } else {
619 hdev->groups = groups;
620 }
621
622 hwdev->name = name;
623 hdev->class = &hwmon_class;
624 hdev->parent = dev;
625 hdev->of_node = dev ? dev->of_node : NULL;
626 hwdev->chip = chip;
627 dev_set_drvdata(hdev, drvdata);
628 dev_set_name(hdev, HWMON_ID_FORMAT, id);
629 err = device_register(hdev);
630 if (err)
631 goto free_hwmon;
632
633 if (dev && dev->of_node && chip && chip->ops->read &&
634 chip->info[0]->type == hwmon_chip &&
635 (chip->info[0]->config[0] & HWMON_C_REGISTER_TZ)) {
636 const struct hwmon_channel_info **info = chip->info;
637
638 for (i = 1; info[i]; i++) {
639 if (info[i]->type != hwmon_temp)
640 continue;
641
642 for (j = 0; info[i]->config[j]; j++) {
643 if (!chip->ops->is_visible(drvdata, hwmon_temp,
644 hwmon_temp_input, j))
645 continue;
646 if (info[i]->config[j] & HWMON_T_INPUT) {
647 err = hwmon_thermal_add_sensor(hdev, j);
648 if (err) {
649 device_unregister(hdev);
650 goto ida_remove;
651 }
652 }
653 }
654 }
655 }
656
657 return hdev;
658
659free_hwmon:
660 hwmon_dev_release(hdev);
661ida_remove:
662 ida_simple_remove(&hwmon_ida, id);
663 return ERR_PTR(err);
664}
665
666/**
667 * hwmon_device_register_with_groups - register w/ hwmon
668 * @dev: the parent device
669 * @name: hwmon name attribute
670 * @drvdata: driver data to attach to created device
671 * @groups: List of attribute groups to create
672 *
673 * hwmon_device_unregister() must be called when the device is no
674 * longer needed.
675 *
676 * Returns the pointer to the new device.
677 */
678struct device *
679hwmon_device_register_with_groups(struct device *dev, const char *name,
680 void *drvdata,
681 const struct attribute_group **groups)
682{
683 if (!name)
684 return ERR_PTR(-EINVAL);
685
686 return __hwmon_device_register(dev, name, drvdata, NULL, groups);
687}
688EXPORT_SYMBOL_GPL(hwmon_device_register_with_groups);
689
690/**
691 * hwmon_device_register_with_info - register w/ hwmon
692 * @dev: the parent device
693 * @name: hwmon name attribute
694 * @drvdata: driver data to attach to created device
695 * @info: pointer to hwmon chip information
696 * @extra_groups: pointer to list of additional non-standard attribute groups
697 *
698 * hwmon_device_unregister() must be called when the device is no
699 * longer needed.
700 *
701 * Returns the pointer to the new device.
702 */
703struct device *
704hwmon_device_register_with_info(struct device *dev, const char *name,
705 void *drvdata,
706 const struct hwmon_chip_info *chip,
707 const struct attribute_group **extra_groups)
708{
709 if (!name)
710 return ERR_PTR(-EINVAL);
711
712 if (chip && (!chip->ops || !chip->ops->is_visible || !chip->info))
713 return ERR_PTR(-EINVAL);
714
715 return __hwmon_device_register(dev, name, drvdata, chip, extra_groups);
716}
717EXPORT_SYMBOL_GPL(hwmon_device_register_with_info);
718
719/**
720 * hwmon_device_register - register w/ hwmon
721 * @dev: the device to register
722 *
723 * hwmon_device_unregister() must be called when the device is no
724 * longer needed.
725 *
726 * Returns the pointer to the new device.
727 */
728struct device *hwmon_device_register(struct device *dev)
729{
730 dev_warn(dev,
731 "hwmon_device_register() is deprecated. Please convert the driver to use hwmon_device_register_with_info().\n");
732
733 return __hwmon_device_register(dev, NULL, NULL, NULL, NULL);
734}
735EXPORT_SYMBOL_GPL(hwmon_device_register);
736
737/**
738 * hwmon_device_unregister - removes the previously registered class device
739 *
740 * @dev: the class device to destroy
741 */
742void hwmon_device_unregister(struct device *dev)
743{
744 int id;
745
746 if (likely(sscanf(dev_name(dev), HWMON_ID_FORMAT, &id) == 1)) {
747 device_unregister(dev);
748 ida_simple_remove(&hwmon_ida, id);
749 } else
750 dev_dbg(dev->parent,
751 "hwmon_device_unregister() failed: bad class ID!\n");
752}
753EXPORT_SYMBOL_GPL(hwmon_device_unregister);
754
755static void devm_hwmon_release(struct device *dev, void *res)
756{
757 struct device *hwdev = *(struct device **)res;
758
759 hwmon_device_unregister(hwdev);
760}
761
762/**
763 * devm_hwmon_device_register_with_groups - register w/ hwmon
764 * @dev: the parent device
765 * @name: hwmon name attribute
766 * @drvdata: driver data to attach to created device
767 * @groups: List of attribute groups to create
768 *
769 * Returns the pointer to the new device. The new device is automatically
770 * unregistered with the parent device.
771 */
772struct device *
773devm_hwmon_device_register_with_groups(struct device *dev, const char *name,
774 void *drvdata,
775 const struct attribute_group **groups)
776{
777 struct device **ptr, *hwdev;
778
779 if (!dev)
780 return ERR_PTR(-EINVAL);
781
782 ptr = devres_alloc(devm_hwmon_release, sizeof(*ptr), GFP_KERNEL);
783 if (!ptr)
784 return ERR_PTR(-ENOMEM);
785
786 hwdev = hwmon_device_register_with_groups(dev, name, drvdata, groups);
787 if (IS_ERR(hwdev))
788 goto error;
789
790 *ptr = hwdev;
791 devres_add(dev, ptr);
792 return hwdev;
793
794error:
795 devres_free(ptr);
796 return hwdev;
797}
798EXPORT_SYMBOL_GPL(devm_hwmon_device_register_with_groups);
799
800/**
801 * devm_hwmon_device_register_with_info - register w/ hwmon
802 * @dev: the parent device
803 * @name: hwmon name attribute
804 * @drvdata: driver data to attach to created device
805 * @info: Pointer to hwmon chip information
806 * @groups - pointer to list of driver specific attribute groups
807 *
808 * Returns the pointer to the new device. The new device is automatically
809 * unregistered with the parent device.
810 */
811struct device *
812devm_hwmon_device_register_with_info(struct device *dev, const char *name,
813 void *drvdata,
814 const struct hwmon_chip_info *chip,
815 const struct attribute_group **groups)
816{
817 struct device **ptr, *hwdev;
818
819 if (!dev)
820 return ERR_PTR(-EINVAL);
821
822 ptr = devres_alloc(devm_hwmon_release, sizeof(*ptr), GFP_KERNEL);
823 if (!ptr)
824 return ERR_PTR(-ENOMEM);
825
826 hwdev = hwmon_device_register_with_info(dev, name, drvdata, chip,
827 groups);
828 if (IS_ERR(hwdev))
829 goto error;
830
831 *ptr = hwdev;
832 devres_add(dev, ptr);
833
834 return hwdev;
835
836error:
837 devres_free(ptr);
838 return hwdev;
839}
840EXPORT_SYMBOL_GPL(devm_hwmon_device_register_with_info);
841
842static int devm_hwmon_match(struct device *dev, void *res, void *data)
843{
844 struct device **hwdev = res;
845
846 return *hwdev == data;
847}
848
849/**
850 * devm_hwmon_device_unregister - removes a previously registered hwmon device
851 *
852 * @dev: the parent device of the device to unregister
853 */
854void devm_hwmon_device_unregister(struct device *dev)
855{
856 WARN_ON(devres_release(dev, devm_hwmon_release, devm_hwmon_match, dev));
857}
858EXPORT_SYMBOL_GPL(devm_hwmon_device_unregister);
859
860static void __init hwmon_pci_quirks(void)
861{
862#if defined CONFIG_X86 && defined CONFIG_PCI
863 struct pci_dev *sb;
864 u16 base;
865 u8 enable;
866
867 /* Open access to 0x295-0x296 on MSI MS-7031 */
868 sb = pci_get_device(PCI_VENDOR_ID_ATI, 0x436c, NULL);
869 if (sb) {
870 if (sb->subsystem_vendor == 0x1462 && /* MSI */
871 sb->subsystem_device == 0x0031) { /* MS-7031 */
872 pci_read_config_byte(sb, 0x48, &enable);
873 pci_read_config_word(sb, 0x64, &base);
874
875 if (base == 0 && !(enable & BIT(2))) {
876 dev_info(&sb->dev,
877 "Opening wide generic port at 0x295\n");
878 pci_write_config_word(sb, 0x64, 0x295);
879 pci_write_config_byte(sb, 0x48,
880 enable | BIT(2));
881 }
882 }
883 pci_dev_put(sb);
884 }
885#endif
886}
887
888static int __init hwmon_init(void)
889{
890 int err;
891
892 hwmon_pci_quirks();
893
894 err = class_register(&hwmon_class);
895 if (err) {
896 pr_err("couldn't register hwmon sysfs class\n");
897 return err;
898 }
899 return 0;
900}
901
902static void __exit hwmon_exit(void)
903{
904 class_unregister(&hwmon_class);
905}
906
907subsys_initcall(hwmon_init);
908module_exit(hwmon_exit);
909
910MODULE_AUTHOR("Mark M. Hoffman <mhoffman@lightlink.com>");
911MODULE_DESCRIPTION("hardware monitoring sysfs/class support");
912MODULE_LICENSE("GPL");
913