power_supply: Add types for USB chargers
[GitHub/mt8127/android_kernel_alcatel_ttab.git] / drivers / power / power_supply_sysfs.c
CommitLineData
4a11b59d
AV
1/*
2 * Sysfs interface for the universal power supply monitor class
3 *
4 * Copyright © 2007 David Woodhouse <dwmw2@infradead.org>
5 * Copyright © 2007 Anton Vorontsov <cbou@mail.ru>
6 * Copyright © 2004 Szabolcs Gyurko
7 * Copyright © 2003 Ian Molton <spyro@f2s.com>
8 *
9 * Modified: 2004, Oct Szabolcs Gyurko
10 *
11 * You may use this code as per GPL version 2
12 */
13
14#include <linux/ctype.h>
15#include <linux/power_supply.h>
5a0e3ad6 16#include <linux/slab.h>
4a11b59d 17
25f12141
AB
18#include "power_supply.h"
19
4a11b59d
AV
20/*
21 * This is because the name "current" breaks the device attr macro.
22 * The "current" word resolves to "(get_current())" so instead of
23 * "current" "(get_current())" appears in the sysfs.
24 *
25 * The source of this definition is the device.h which calls __ATTR
26 * macro in sysfs.h which calls the __stringify macro.
27 *
28 * Only modification that the name is not tried to be resolved
29 * (as a macro let's say).
30 */
31
32#define POWER_SUPPLY_ATTR(_name) \
33{ \
5f487cd3 34 .attr = { .name = #_name }, \
4a11b59d 35 .show = power_supply_show_property, \
0011d2d4 36 .store = power_supply_store_property, \
4a11b59d
AV
37}
38
39static struct device_attribute power_supply_attrs[];
40
41static ssize_t power_supply_show_property(struct device *dev,
42 struct device_attribute *attr,
43 char *buf) {
5f487cd3 44 static char *type_text[] = {
85efc8a1
HK
45 "Battery", "UPS", "Mains", "USB",
46 "USB_DCP", "USB_CDP", "USB_ACA"
5f487cd3 47 };
4a11b59d
AV
48 static char *status_text[] = {
49 "Unknown", "Charging", "Discharging", "Not charging", "Full"
50 };
ee8076ed
AS
51 static char *charge_type[] = {
52 "Unknown", "N/A", "Trickle", "Fast"
53 };
4a11b59d
AV
54 static char *health_text[] = {
55 "Unknown", "Good", "Overheat", "Dead", "Over voltage",
7e386e6e 56 "Unspecified failure", "Cold",
4a11b59d
AV
57 };
58 static char *technology_text[] = {
c7cc930f
DES
59 "Unknown", "NiMH", "Li-ion", "Li-poly", "LiFe", "NiCd",
60 "LiMn"
4a11b59d 61 };
b294a290
AS
62 static char *capacity_level_text[] = {
63 "Unknown", "Critical", "Low", "Normal", "High", "Full"
64 };
5f487cd3 65 ssize_t ret = 0;
4a11b59d
AV
66 struct power_supply *psy = dev_get_drvdata(dev);
67 const ptrdiff_t off = attr - power_supply_attrs;
68 union power_supply_propval value;
69
5f487cd3
AV
70 if (off == POWER_SUPPLY_PROP_TYPE)
71 value.intval = psy->type;
72 else
73 ret = psy->get_property(psy, off, &value);
4a11b59d
AV
74
75 if (ret < 0) {
9d233e8b
AV
76 if (ret == -ENODATA)
77 dev_dbg(dev, "driver has no data for `%s' property\n",
78 attr->attr.name);
79 else if (ret != -ENODEV)
4a11b59d
AV
80 dev_err(dev, "driver failed to report `%s' property\n",
81 attr->attr.name);
82 return ret;
83 }
84
85 if (off == POWER_SUPPLY_PROP_STATUS)
86 return sprintf(buf, "%s\n", status_text[value.intval]);
ee8076ed
AS
87 else if (off == POWER_SUPPLY_PROP_CHARGE_TYPE)
88 return sprintf(buf, "%s\n", charge_type[value.intval]);
4a11b59d
AV
89 else if (off == POWER_SUPPLY_PROP_HEALTH)
90 return sprintf(buf, "%s\n", health_text[value.intval]);
91 else if (off == POWER_SUPPLY_PROP_TECHNOLOGY)
92 return sprintf(buf, "%s\n", technology_text[value.intval]);
b294a290
AS
93 else if (off == POWER_SUPPLY_PROP_CAPACITY_LEVEL)
94 return sprintf(buf, "%s\n", capacity_level_text[value.intval]);
5f487cd3
AV
95 else if (off == POWER_SUPPLY_PROP_TYPE)
96 return sprintf(buf, "%s\n", type_text[value.intval]);
4a11b59d
AV
97 else if (off >= POWER_SUPPLY_PROP_MODEL_NAME)
98 return sprintf(buf, "%s\n", value.strval);
99
100 return sprintf(buf, "%d\n", value.intval);
101}
102
0011d2d4
DM
103static ssize_t power_supply_store_property(struct device *dev,
104 struct device_attribute *attr,
105 const char *buf, size_t count) {
106 ssize_t ret;
107 struct power_supply *psy = dev_get_drvdata(dev);
108 const ptrdiff_t off = attr - power_supply_attrs;
109 union power_supply_propval value;
110 long long_val;
111
112 /* TODO: support other types than int */
113 ret = strict_strtol(buf, 10, &long_val);
114 if (ret < 0)
115 return ret;
116
117 value.intval = long_val;
118
119 ret = psy->set_property(psy, off, &value);
120 if (ret < 0)
121 return ret;
122
123 return count;
124}
125
4a11b59d
AV
126/* Must be in the same order as POWER_SUPPLY_PROP_* */
127static struct device_attribute power_supply_attrs[] = {
128 /* Properties of type `int' */
129 POWER_SUPPLY_ATTR(status),
ee8076ed 130 POWER_SUPPLY_ATTR(charge_type),
4a11b59d
AV
131 POWER_SUPPLY_ATTR(health),
132 POWER_SUPPLY_ATTR(present),
133 POWER_SUPPLY_ATTR(online),
134 POWER_SUPPLY_ATTR(technology),
c955fe8e 135 POWER_SUPPLY_ATTR(cycle_count),
c7cc930f
DES
136 POWER_SUPPLY_ATTR(voltage_max),
137 POWER_SUPPLY_ATTR(voltage_min),
4a11b59d
AV
138 POWER_SUPPLY_ATTR(voltage_max_design),
139 POWER_SUPPLY_ATTR(voltage_min_design),
140 POWER_SUPPLY_ATTR(voltage_now),
141 POWER_SUPPLY_ATTR(voltage_avg),
142 POWER_SUPPLY_ATTR(current_now),
143 POWER_SUPPLY_ATTR(current_avg),
7faa144a
AS
144 POWER_SUPPLY_ATTR(power_now),
145 POWER_SUPPLY_ATTR(power_avg),
4a11b59d
AV
146 POWER_SUPPLY_ATTR(charge_full_design),
147 POWER_SUPPLY_ATTR(charge_empty_design),
148 POWER_SUPPLY_ATTR(charge_full),
149 POWER_SUPPLY_ATTR(charge_empty),
150 POWER_SUPPLY_ATTR(charge_now),
151 POWER_SUPPLY_ATTR(charge_avg),
8e552c36 152 POWER_SUPPLY_ATTR(charge_counter),
4a11b59d
AV
153 POWER_SUPPLY_ATTR(energy_full_design),
154 POWER_SUPPLY_ATTR(energy_empty_design),
155 POWER_SUPPLY_ATTR(energy_full),
156 POWER_SUPPLY_ATTR(energy_empty),
157 POWER_SUPPLY_ATTR(energy_now),
158 POWER_SUPPLY_ATTR(energy_avg),
159 POWER_SUPPLY_ATTR(capacity),
b294a290 160 POWER_SUPPLY_ATTR(capacity_level),
4a11b59d
AV
161 POWER_SUPPLY_ATTR(temp),
162 POWER_SUPPLY_ATTR(temp_ambient),
163 POWER_SUPPLY_ATTR(time_to_empty_now),
164 POWER_SUPPLY_ATTR(time_to_empty_avg),
165 POWER_SUPPLY_ATTR(time_to_full_now),
166 POWER_SUPPLY_ATTR(time_to_full_avg),
5f487cd3 167 POWER_SUPPLY_ATTR(type),
4a11b59d
AV
168 /* Properties of type `const char *' */
169 POWER_SUPPLY_ATTR(model_name),
170 POWER_SUPPLY_ATTR(manufacturer),
7c2670bb 171 POWER_SUPPLY_ATTR(serial_number),
4a11b59d
AV
172};
173
5f487cd3
AV
174static struct attribute *
175__power_supply_attrs[ARRAY_SIZE(power_supply_attrs) + 1];
4a11b59d 176
5f487cd3
AV
177static mode_t power_supply_attr_is_visible(struct kobject *kobj,
178 struct attribute *attr,
179 int attrno)
4a11b59d 180{
5f487cd3
AV
181 struct device *dev = container_of(kobj, struct device, kobj);
182 struct power_supply *psy = dev_get_drvdata(dev);
bbabb158 183 mode_t mode = S_IRUSR | S_IRGRP | S_IROTH;
5f487cd3 184 int i;
4a11b59d 185
bbabb158
DM
186 if (attrno == POWER_SUPPLY_PROP_TYPE)
187 return mode;
188
5f487cd3 189 for (i = 0; i < psy->num_properties; i++) {
0011d2d4
DM
190 int property = psy->properties[i];
191
192 if (property == attrno) {
0011d2d4
DM
193 if (psy->property_is_writeable &&
194 psy->property_is_writeable(psy, property) > 0)
195 mode |= S_IWUSR;
196
197 return mode;
198 }
4a11b59d
AV
199 }
200
5f487cd3 201 return 0;
4a11b59d
AV
202}
203
5f487cd3
AV
204static struct attribute_group power_supply_attr_group = {
205 .attrs = __power_supply_attrs,
206 .is_visible = power_supply_attr_is_visible,
207};
208
209static const struct attribute_group *power_supply_attr_groups[] = {
210 &power_supply_attr_group,
211 NULL,
212};
213
214void power_supply_init_attrs(struct device_type *dev_type)
4a11b59d
AV
215{
216 int i;
217
5f487cd3 218 dev_type->groups = power_supply_attr_groups;
4a11b59d 219
5f487cd3
AV
220 for (i = 0; i < ARRAY_SIZE(power_supply_attrs); i++)
221 __power_supply_attrs[i] = &power_supply_attrs[i].attr;
4a11b59d
AV
222}
223
224static char *kstruprdup(const char *str, gfp_t gfp)
225{
226 char *ret, *ustr;
227
228 ustr = ret = kmalloc(strlen(str) + 1, gfp);
229
230 if (!ret)
231 return NULL;
232
233 while (*str)
234 *ustr++ = toupper(*str++);
235
236 *ustr = 0;
237
238 return ret;
239}
240
7eff2e7a 241int power_supply_uevent(struct device *dev, struct kobj_uevent_env *env)
4a11b59d
AV
242{
243 struct power_supply *psy = dev_get_drvdata(dev);
7eff2e7a 244 int ret = 0, j;
4a11b59d
AV
245 char *prop_buf;
246 char *attrname;
247
248 dev_dbg(dev, "uevent\n");
249
56fa18e8 250 if (!psy || !psy->dev) {
4a11b59d
AV
251 dev_dbg(dev, "No power supply yet\n");
252 return ret;
253 }
254
255 dev_dbg(dev, "POWER_SUPPLY_NAME=%s\n", psy->name);
256
7eff2e7a 257 ret = add_uevent_var(env, "POWER_SUPPLY_NAME=%s", psy->name);
4a11b59d
AV
258 if (ret)
259 return ret;
260
261 prop_buf = (char *)get_zeroed_page(GFP_KERNEL);
262 if (!prop_buf)
263 return -ENOMEM;
264
4a11b59d
AV
265 for (j = 0; j < psy->num_properties; j++) {
266 struct device_attribute *attr;
267 char *line;
268
269 attr = &power_supply_attrs[psy->properties[j]];
270
271 ret = power_supply_show_property(dev, attr, prop_buf);
272 if (ret == -ENODEV) {
273 /* When a battery is absent, we expect -ENODEV. Don't abort;
274 send the uevent with at least the the PRESENT=0 property */
275 ret = 0;
276 continue;
277 }
278
279 if (ret < 0)
280 goto out;
281
282 line = strchr(prop_buf, '\n');
283 if (line)
284 *line = 0;
285
286 attrname = kstruprdup(attr->attr.name, GFP_KERNEL);
287 if (!attrname) {
288 ret = -ENOMEM;
289 goto out;
290 }
291
292 dev_dbg(dev, "prop %s=%s\n", attrname, prop_buf);
293
7eff2e7a 294 ret = add_uevent_var(env, "POWER_SUPPLY_%s=%s", attrname, prop_buf);
4a11b59d
AV
295 kfree(attrname);
296 if (ret)
297 goto out;
298 }
299
300out:
301 free_page((unsigned long)prop_buf);
302
303 return ret;
304}