blob: 603e39f81ce009f9dc18c7b04f98571ce2cd6dac [file] [log] [blame]
Liam Girdwood414c70c2008-04-30 15:59:04 +01001/*
2 * core.c -- Voltage/Current Regulator framework.
3 *
4 * Copyright 2007, 2008 Wolfson Microelectronics PLC.
Liam Girdwooda5766f12008-10-10 13:22:20 +01005 * Copyright 2008 SlimLogic Ltd.
Liam Girdwood414c70c2008-04-30 15:59:04 +01006 *
Liam Girdwooda5766f12008-10-10 13:22:20 +01007 * Author: Liam Girdwood <lrg@slimlogic.co.uk>
Liam Girdwood414c70c2008-04-30 15:59:04 +01008 *
9 * This program is free software; you can redistribute it and/or modify it
10 * under the terms of the GNU General Public License as published by the
11 * Free Software Foundation; either version 2 of the License, or (at your
12 * option) any later version.
13 *
14 */
15
16#include <linux/kernel.h>
17#include <linux/init.h>
Mark Brown1130e5b2010-12-21 23:49:31 +000018#include <linux/debugfs.h>
Liam Girdwood414c70c2008-04-30 15:59:04 +010019#include <linux/device.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090020#include <linux/slab.h>
Mark Brownf21e0e82011-05-24 08:12:40 +080021#include <linux/async.h>
Liam Girdwood414c70c2008-04-30 15:59:04 +010022#include <linux/err.h>
23#include <linux/mutex.h>
24#include <linux/suspend.h>
Mark Brown31aae2b2009-12-21 12:21:52 +000025#include <linux/delay.h>
Rajendra Nayak69511a42011-11-18 16:47:20 +053026#include <linux/of.h>
27#include <linux/regulator/of_regulator.h>
Liam Girdwood414c70c2008-04-30 15:59:04 +010028#include <linux/regulator/consumer.h>
29#include <linux/regulator/driver.h>
30#include <linux/regulator/machine.h>
Paul Gortmaker65602c32011-07-17 16:28:23 -040031#include <linux/module.h>
Liam Girdwood414c70c2008-04-30 15:59:04 +010032
Mark Brown02fa3ec2010-11-10 14:38:30 +000033#define CREATE_TRACE_POINTS
34#include <trace/events/regulator.h>
35
Mark Brown34abbd62010-02-12 10:18:08 +000036#include "dummy.h"
37
Mark Brown7d51a0d2011-06-09 16:06:37 +010038#define rdev_crit(rdev, fmt, ...) \
39 pr_crit("%s: " fmt, rdev_get_name(rdev), ##__VA_ARGS__)
Joe Perches5da84fd2010-11-30 05:53:48 -080040#define rdev_err(rdev, fmt, ...) \
41 pr_err("%s: " fmt, rdev_get_name(rdev), ##__VA_ARGS__)
42#define rdev_warn(rdev, fmt, ...) \
43 pr_warn("%s: " fmt, rdev_get_name(rdev), ##__VA_ARGS__)
44#define rdev_info(rdev, fmt, ...) \
45 pr_info("%s: " fmt, rdev_get_name(rdev), ##__VA_ARGS__)
46#define rdev_dbg(rdev, fmt, ...) \
47 pr_debug("%s: " fmt, rdev_get_name(rdev), ##__VA_ARGS__)
48
Liam Girdwood414c70c2008-04-30 15:59:04 +010049static DEFINE_MUTEX(regulator_list_mutex);
50static LIST_HEAD(regulator_list);
51static LIST_HEAD(regulator_map_list);
Mark Brown21cf8912010-12-21 23:30:07 +000052static bool has_full_constraints;
Mark Brown688fe992010-10-05 19:18:32 -070053static bool board_wants_dummy_regulator;
Liam Girdwood414c70c2008-04-30 15:59:04 +010054
Mark Brown1130e5b2010-12-21 23:49:31 +000055static struct dentry *debugfs_root;
Mark Brown1130e5b2010-12-21 23:49:31 +000056
Mark Brown8dc53902008-12-31 12:52:40 +000057/*
Liam Girdwood414c70c2008-04-30 15:59:04 +010058 * struct regulator_map
59 *
60 * Used to provide symbolic supply names to devices.
61 */
62struct regulator_map {
63 struct list_head list;
Mark Brown40f92442009-06-17 17:56:39 +010064 const char *dev_name; /* The dev_name() for the consumer */
Liam Girdwood414c70c2008-04-30 15:59:04 +010065 const char *supply;
Liam Girdwooda5766f12008-10-10 13:22:20 +010066 struct regulator_dev *regulator;
Liam Girdwood414c70c2008-04-30 15:59:04 +010067};
68
Liam Girdwood414c70c2008-04-30 15:59:04 +010069/*
70 * struct regulator
71 *
72 * One for each consumer device.
73 */
74struct regulator {
75 struct device *dev;
76 struct list_head list;
77 int uA_load;
78 int min_uV;
79 int max_uV;
Liam Girdwood414c70c2008-04-30 15:59:04 +010080 char *supply_name;
81 struct device_attribute dev_attr;
82 struct regulator_dev *rdev;
Mark Brown5de70512011-06-19 13:33:16 +010083 struct dentry *debugfs;
Liam Girdwood414c70c2008-04-30 15:59:04 +010084};
85
86static int _regulator_is_enabled(struct regulator_dev *rdev);
Mark Brown3801b862011-06-09 16:22:22 +010087static int _regulator_disable(struct regulator_dev *rdev);
Liam Girdwood414c70c2008-04-30 15:59:04 +010088static int _regulator_get_voltage(struct regulator_dev *rdev);
89static int _regulator_get_current_limit(struct regulator_dev *rdev);
90static unsigned int _regulator_get_mode(struct regulator_dev *rdev);
91static void _notifier_call_chain(struct regulator_dev *rdev,
92 unsigned long event, void *data);
Mark Brown75790252010-12-12 14:25:50 +000093static int _regulator_do_set_voltage(struct regulator_dev *rdev,
94 int min_uV, int max_uV);
Mark Brown3801b862011-06-09 16:22:22 +010095static struct regulator *create_regulator(struct regulator_dev *rdev,
96 struct device *dev,
97 const char *supply_name);
Liam Girdwood414c70c2008-04-30 15:59:04 +010098
Mark Brown1083c392009-10-22 16:31:32 +010099static const char *rdev_get_name(struct regulator_dev *rdev)
100{
101 if (rdev->constraints && rdev->constraints->name)
102 return rdev->constraints->name;
103 else if (rdev->desc->name)
104 return rdev->desc->name;
105 else
106 return "";
107}
108
Liam Girdwood414c70c2008-04-30 15:59:04 +0100109/* gets the regulator for a given consumer device */
110static struct regulator *get_device_regulator(struct device *dev)
111{
112 struct regulator *regulator = NULL;
113 struct regulator_dev *rdev;
114
115 mutex_lock(&regulator_list_mutex);
116 list_for_each_entry(rdev, &regulator_list, list) {
117 mutex_lock(&rdev->mutex);
118 list_for_each_entry(regulator, &rdev->consumer_list, list) {
119 if (regulator->dev == dev) {
120 mutex_unlock(&rdev->mutex);
121 mutex_unlock(&regulator_list_mutex);
122 return regulator;
123 }
124 }
125 mutex_unlock(&rdev->mutex);
126 }
127 mutex_unlock(&regulator_list_mutex);
128 return NULL;
129}
130
Rajendra Nayak69511a42011-11-18 16:47:20 +0530131/**
132 * of_get_regulator - get a regulator device node based on supply name
133 * @dev: Device pointer for the consumer (of regulator) device
134 * @supply: regulator supply name
135 *
136 * Extract the regulator device node corresponding to the supply name.
137 * retruns the device node corresponding to the regulator if found, else
138 * returns NULL.
139 */
140static struct device_node *of_get_regulator(struct device *dev, const char *supply)
141{
142 struct device_node *regnode = NULL;
143 char prop_name[32]; /* 32 is max size of property name */
144
145 dev_dbg(dev, "Looking up %s-supply from device tree\n", supply);
146
147 snprintf(prop_name, 32, "%s-supply", supply);
148 regnode = of_parse_phandle(dev->of_node, prop_name, 0);
149
150 if (!regnode) {
151 dev_warn(dev, "%s property in node %s references invalid phandle",
152 prop_name, dev->of_node->full_name);
153 return NULL;
154 }
155 return regnode;
156}
157
Liam Girdwood414c70c2008-04-30 15:59:04 +0100158/* Platform voltage constraint check */
159static int regulator_check_voltage(struct regulator_dev *rdev,
160 int *min_uV, int *max_uV)
161{
162 BUG_ON(*min_uV > *max_uV);
163
164 if (!rdev->constraints) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800165 rdev_err(rdev, "no constraints\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +0100166 return -ENODEV;
167 }
168 if (!(rdev->constraints->valid_ops_mask & REGULATOR_CHANGE_VOLTAGE)) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800169 rdev_err(rdev, "operation not allowed\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +0100170 return -EPERM;
171 }
172
173 if (*max_uV > rdev->constraints->max_uV)
174 *max_uV = rdev->constraints->max_uV;
175 if (*min_uV < rdev->constraints->min_uV)
176 *min_uV = rdev->constraints->min_uV;
177
Mark Brown89f425e2011-07-12 11:20:37 +0900178 if (*min_uV > *max_uV) {
179 rdev_err(rdev, "unsupportable voltage range: %d-%duV\n",
Mark Brown54abd332011-07-21 15:07:37 +0100180 *min_uV, *max_uV);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100181 return -EINVAL;
Mark Brown89f425e2011-07-12 11:20:37 +0900182 }
Liam Girdwood414c70c2008-04-30 15:59:04 +0100183
184 return 0;
185}
186
Thomas Petazzoni05fda3b1a2010-12-03 11:31:07 +0100187/* Make sure we select a voltage that suits the needs of all
188 * regulator consumers
189 */
190static int regulator_check_consumers(struct regulator_dev *rdev,
191 int *min_uV, int *max_uV)
192{
193 struct regulator *regulator;
194
195 list_for_each_entry(regulator, &rdev->consumer_list, list) {
Mark Brown4aa922c2011-05-14 13:42:34 -0700196 /*
197 * Assume consumers that didn't say anything are OK
198 * with anything in the constraint range.
199 */
200 if (!regulator->min_uV && !regulator->max_uV)
201 continue;
202
Thomas Petazzoni05fda3b1a2010-12-03 11:31:07 +0100203 if (*max_uV > regulator->max_uV)
204 *max_uV = regulator->max_uV;
205 if (*min_uV < regulator->min_uV)
206 *min_uV = regulator->min_uV;
207 }
208
209 if (*min_uV > *max_uV)
210 return -EINVAL;
211
212 return 0;
213}
214
Liam Girdwood414c70c2008-04-30 15:59:04 +0100215/* current constraint check */
216static int regulator_check_current_limit(struct regulator_dev *rdev,
217 int *min_uA, int *max_uA)
218{
219 BUG_ON(*min_uA > *max_uA);
220
221 if (!rdev->constraints) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800222 rdev_err(rdev, "no constraints\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +0100223 return -ENODEV;
224 }
225 if (!(rdev->constraints->valid_ops_mask & REGULATOR_CHANGE_CURRENT)) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800226 rdev_err(rdev, "operation not allowed\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +0100227 return -EPERM;
228 }
229
230 if (*max_uA > rdev->constraints->max_uA)
231 *max_uA = rdev->constraints->max_uA;
232 if (*min_uA < rdev->constraints->min_uA)
233 *min_uA = rdev->constraints->min_uA;
234
Mark Brown89f425e2011-07-12 11:20:37 +0900235 if (*min_uA > *max_uA) {
236 rdev_err(rdev, "unsupportable current range: %d-%duA\n",
Mark Brown54abd332011-07-21 15:07:37 +0100237 *min_uA, *max_uA);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100238 return -EINVAL;
Mark Brown89f425e2011-07-12 11:20:37 +0900239 }
Liam Girdwood414c70c2008-04-30 15:59:04 +0100240
241 return 0;
242}
243
244/* operating mode constraint check */
Mark Brown2c608232011-03-30 06:29:12 +0900245static int regulator_mode_constrain(struct regulator_dev *rdev, int *mode)
Liam Girdwood414c70c2008-04-30 15:59:04 +0100246{
Mark Brown2c608232011-03-30 06:29:12 +0900247 switch (*mode) {
David Brownelle5735202008-11-16 11:46:56 -0800248 case REGULATOR_MODE_FAST:
249 case REGULATOR_MODE_NORMAL:
250 case REGULATOR_MODE_IDLE:
251 case REGULATOR_MODE_STANDBY:
252 break;
253 default:
Mark Brown89f425e2011-07-12 11:20:37 +0900254 rdev_err(rdev, "invalid mode %x specified\n", *mode);
David Brownelle5735202008-11-16 11:46:56 -0800255 return -EINVAL;
256 }
257
Liam Girdwood414c70c2008-04-30 15:59:04 +0100258 if (!rdev->constraints) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800259 rdev_err(rdev, "no constraints\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +0100260 return -ENODEV;
261 }
262 if (!(rdev->constraints->valid_ops_mask & REGULATOR_CHANGE_MODE)) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800263 rdev_err(rdev, "operation not allowed\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +0100264 return -EPERM;
265 }
Mark Brown2c608232011-03-30 06:29:12 +0900266
267 /* The modes are bitmasks, the most power hungry modes having
268 * the lowest values. If the requested mode isn't supported
269 * try higher modes. */
270 while (*mode) {
271 if (rdev->constraints->valid_modes_mask & *mode)
272 return 0;
273 *mode /= 2;
Liam Girdwood414c70c2008-04-30 15:59:04 +0100274 }
Mark Brown2c608232011-03-30 06:29:12 +0900275
276 return -EINVAL;
Liam Girdwood414c70c2008-04-30 15:59:04 +0100277}
278
279/* dynamic regulator mode switching constraint check */
280static int regulator_check_drms(struct regulator_dev *rdev)
281{
282 if (!rdev->constraints) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800283 rdev_err(rdev, "no constraints\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +0100284 return -ENODEV;
285 }
286 if (!(rdev->constraints->valid_ops_mask & REGULATOR_CHANGE_DRMS)) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800287 rdev_err(rdev, "operation not allowed\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +0100288 return -EPERM;
289 }
290 return 0;
291}
292
293static ssize_t device_requested_uA_show(struct device *dev,
294 struct device_attribute *attr, char *buf)
295{
296 struct regulator *regulator;
297
298 regulator = get_device_regulator(dev);
299 if (regulator == NULL)
300 return 0;
301
302 return sprintf(buf, "%d\n", regulator->uA_load);
303}
304
305static ssize_t regulator_uV_show(struct device *dev,
306 struct device_attribute *attr, char *buf)
307{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100308 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100309 ssize_t ret;
310
311 mutex_lock(&rdev->mutex);
312 ret = sprintf(buf, "%d\n", _regulator_get_voltage(rdev));
313 mutex_unlock(&rdev->mutex);
314
315 return ret;
316}
David Brownell7ad68e22008-11-11 17:39:02 -0800317static DEVICE_ATTR(microvolts, 0444, regulator_uV_show, NULL);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100318
319static ssize_t regulator_uA_show(struct device *dev,
320 struct device_attribute *attr, char *buf)
321{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100322 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100323
324 return sprintf(buf, "%d\n", _regulator_get_current_limit(rdev));
325}
David Brownell7ad68e22008-11-11 17:39:02 -0800326static DEVICE_ATTR(microamps, 0444, regulator_uA_show, NULL);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100327
Mark Brownbc558a62008-10-10 15:33:20 +0100328static ssize_t regulator_name_show(struct device *dev,
329 struct device_attribute *attr, char *buf)
330{
331 struct regulator_dev *rdev = dev_get_drvdata(dev);
Mark Brownbc558a62008-10-10 15:33:20 +0100332
Mark Brown1083c392009-10-22 16:31:32 +0100333 return sprintf(buf, "%s\n", rdev_get_name(rdev));
Mark Brownbc558a62008-10-10 15:33:20 +0100334}
335
David Brownell4fca9542008-11-11 17:38:53 -0800336static ssize_t regulator_print_opmode(char *buf, int mode)
Liam Girdwood414c70c2008-04-30 15:59:04 +0100337{
Liam Girdwood414c70c2008-04-30 15:59:04 +0100338 switch (mode) {
339 case REGULATOR_MODE_FAST:
340 return sprintf(buf, "fast\n");
341 case REGULATOR_MODE_NORMAL:
342 return sprintf(buf, "normal\n");
343 case REGULATOR_MODE_IDLE:
344 return sprintf(buf, "idle\n");
345 case REGULATOR_MODE_STANDBY:
346 return sprintf(buf, "standby\n");
347 }
348 return sprintf(buf, "unknown\n");
349}
350
David Brownell4fca9542008-11-11 17:38:53 -0800351static ssize_t regulator_opmode_show(struct device *dev,
352 struct device_attribute *attr, char *buf)
Liam Girdwood414c70c2008-04-30 15:59:04 +0100353{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100354 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100355
David Brownell4fca9542008-11-11 17:38:53 -0800356 return regulator_print_opmode(buf, _regulator_get_mode(rdev));
357}
David Brownell7ad68e22008-11-11 17:39:02 -0800358static DEVICE_ATTR(opmode, 0444, regulator_opmode_show, NULL);
David Brownell4fca9542008-11-11 17:38:53 -0800359
360static ssize_t regulator_print_state(char *buf, int state)
361{
Liam Girdwood414c70c2008-04-30 15:59:04 +0100362 if (state > 0)
363 return sprintf(buf, "enabled\n");
364 else if (state == 0)
365 return sprintf(buf, "disabled\n");
366 else
367 return sprintf(buf, "unknown\n");
368}
369
David Brownell4fca9542008-11-11 17:38:53 -0800370static ssize_t regulator_state_show(struct device *dev,
371 struct device_attribute *attr, char *buf)
372{
373 struct regulator_dev *rdev = dev_get_drvdata(dev);
Mark Brown93325462009-08-03 18:49:56 +0100374 ssize_t ret;
David Brownell4fca9542008-11-11 17:38:53 -0800375
Mark Brown93325462009-08-03 18:49:56 +0100376 mutex_lock(&rdev->mutex);
377 ret = regulator_print_state(buf, _regulator_is_enabled(rdev));
378 mutex_unlock(&rdev->mutex);
379
380 return ret;
David Brownell4fca9542008-11-11 17:38:53 -0800381}
David Brownell7ad68e22008-11-11 17:39:02 -0800382static DEVICE_ATTR(state, 0444, regulator_state_show, NULL);
David Brownell4fca9542008-11-11 17:38:53 -0800383
David Brownell853116a2009-01-14 23:03:17 -0800384static ssize_t regulator_status_show(struct device *dev,
385 struct device_attribute *attr, char *buf)
386{
387 struct regulator_dev *rdev = dev_get_drvdata(dev);
388 int status;
389 char *label;
390
391 status = rdev->desc->ops->get_status(rdev);
392 if (status < 0)
393 return status;
394
395 switch (status) {
396 case REGULATOR_STATUS_OFF:
397 label = "off";
398 break;
399 case REGULATOR_STATUS_ON:
400 label = "on";
401 break;
402 case REGULATOR_STATUS_ERROR:
403 label = "error";
404 break;
405 case REGULATOR_STATUS_FAST:
406 label = "fast";
407 break;
408 case REGULATOR_STATUS_NORMAL:
409 label = "normal";
410 break;
411 case REGULATOR_STATUS_IDLE:
412 label = "idle";
413 break;
414 case REGULATOR_STATUS_STANDBY:
415 label = "standby";
416 break;
417 default:
418 return -ERANGE;
419 }
420
421 return sprintf(buf, "%s\n", label);
422}
423static DEVICE_ATTR(status, 0444, regulator_status_show, NULL);
424
Liam Girdwood414c70c2008-04-30 15:59:04 +0100425static ssize_t regulator_min_uA_show(struct device *dev,
426 struct device_attribute *attr, char *buf)
427{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100428 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100429
430 if (!rdev->constraints)
431 return sprintf(buf, "constraint not defined\n");
432
433 return sprintf(buf, "%d\n", rdev->constraints->min_uA);
434}
David Brownell7ad68e22008-11-11 17:39:02 -0800435static DEVICE_ATTR(min_microamps, 0444, regulator_min_uA_show, NULL);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100436
437static ssize_t regulator_max_uA_show(struct device *dev,
438 struct device_attribute *attr, char *buf)
439{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100440 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100441
442 if (!rdev->constraints)
443 return sprintf(buf, "constraint not defined\n");
444
445 return sprintf(buf, "%d\n", rdev->constraints->max_uA);
446}
David Brownell7ad68e22008-11-11 17:39:02 -0800447static DEVICE_ATTR(max_microamps, 0444, regulator_max_uA_show, NULL);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100448
449static ssize_t regulator_min_uV_show(struct device *dev,
450 struct device_attribute *attr, char *buf)
451{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100452 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100453
454 if (!rdev->constraints)
455 return sprintf(buf, "constraint not defined\n");
456
457 return sprintf(buf, "%d\n", rdev->constraints->min_uV);
458}
David Brownell7ad68e22008-11-11 17:39:02 -0800459static DEVICE_ATTR(min_microvolts, 0444, regulator_min_uV_show, NULL);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100460
461static ssize_t regulator_max_uV_show(struct device *dev,
462 struct device_attribute *attr, char *buf)
463{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100464 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100465
466 if (!rdev->constraints)
467 return sprintf(buf, "constraint not defined\n");
468
469 return sprintf(buf, "%d\n", rdev->constraints->max_uV);
470}
David Brownell7ad68e22008-11-11 17:39:02 -0800471static DEVICE_ATTR(max_microvolts, 0444, regulator_max_uV_show, NULL);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100472
473static ssize_t regulator_total_uA_show(struct device *dev,
474 struct device_attribute *attr, char *buf)
475{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100476 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100477 struct regulator *regulator;
478 int uA = 0;
479
480 mutex_lock(&rdev->mutex);
481 list_for_each_entry(regulator, &rdev->consumer_list, list)
Stefan Roesefa2984d2009-11-27 15:56:34 +0100482 uA += regulator->uA_load;
Liam Girdwood414c70c2008-04-30 15:59:04 +0100483 mutex_unlock(&rdev->mutex);
484 return sprintf(buf, "%d\n", uA);
485}
David Brownell7ad68e22008-11-11 17:39:02 -0800486static DEVICE_ATTR(requested_microamps, 0444, regulator_total_uA_show, NULL);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100487
488static ssize_t regulator_num_users_show(struct device *dev,
489 struct device_attribute *attr, char *buf)
490{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100491 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100492 return sprintf(buf, "%d\n", rdev->use_count);
493}
494
495static ssize_t regulator_type_show(struct device *dev,
496 struct device_attribute *attr, char *buf)
497{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100498 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100499
500 switch (rdev->desc->type) {
501 case REGULATOR_VOLTAGE:
502 return sprintf(buf, "voltage\n");
503 case REGULATOR_CURRENT:
504 return sprintf(buf, "current\n");
505 }
506 return sprintf(buf, "unknown\n");
507}
508
509static ssize_t regulator_suspend_mem_uV_show(struct device *dev,
510 struct device_attribute *attr, char *buf)
511{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100512 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100513
Liam Girdwood414c70c2008-04-30 15:59:04 +0100514 return sprintf(buf, "%d\n", rdev->constraints->state_mem.uV);
515}
David Brownell7ad68e22008-11-11 17:39:02 -0800516static DEVICE_ATTR(suspend_mem_microvolts, 0444,
517 regulator_suspend_mem_uV_show, NULL);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100518
519static ssize_t regulator_suspend_disk_uV_show(struct device *dev,
520 struct device_attribute *attr, char *buf)
521{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100522 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100523
Liam Girdwood414c70c2008-04-30 15:59:04 +0100524 return sprintf(buf, "%d\n", rdev->constraints->state_disk.uV);
525}
David Brownell7ad68e22008-11-11 17:39:02 -0800526static DEVICE_ATTR(suspend_disk_microvolts, 0444,
527 regulator_suspend_disk_uV_show, NULL);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100528
529static ssize_t regulator_suspend_standby_uV_show(struct device *dev,
530 struct device_attribute *attr, char *buf)
531{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100532 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100533
Liam Girdwood414c70c2008-04-30 15:59:04 +0100534 return sprintf(buf, "%d\n", rdev->constraints->state_standby.uV);
535}
David Brownell7ad68e22008-11-11 17:39:02 -0800536static DEVICE_ATTR(suspend_standby_microvolts, 0444,
537 regulator_suspend_standby_uV_show, NULL);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100538
Liam Girdwood414c70c2008-04-30 15:59:04 +0100539static ssize_t regulator_suspend_mem_mode_show(struct device *dev,
540 struct device_attribute *attr, char *buf)
541{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100542 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100543
David Brownell4fca9542008-11-11 17:38:53 -0800544 return regulator_print_opmode(buf,
545 rdev->constraints->state_mem.mode);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100546}
David Brownell7ad68e22008-11-11 17:39:02 -0800547static DEVICE_ATTR(suspend_mem_mode, 0444,
548 regulator_suspend_mem_mode_show, NULL);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100549
550static ssize_t regulator_suspend_disk_mode_show(struct device *dev,
551 struct device_attribute *attr, char *buf)
552{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100553 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100554
David Brownell4fca9542008-11-11 17:38:53 -0800555 return regulator_print_opmode(buf,
556 rdev->constraints->state_disk.mode);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100557}
David Brownell7ad68e22008-11-11 17:39:02 -0800558static DEVICE_ATTR(suspend_disk_mode, 0444,
559 regulator_suspend_disk_mode_show, NULL);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100560
561static ssize_t regulator_suspend_standby_mode_show(struct device *dev,
562 struct device_attribute *attr, char *buf)
563{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100564 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100565
David Brownell4fca9542008-11-11 17:38:53 -0800566 return regulator_print_opmode(buf,
567 rdev->constraints->state_standby.mode);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100568}
David Brownell7ad68e22008-11-11 17:39:02 -0800569static DEVICE_ATTR(suspend_standby_mode, 0444,
570 regulator_suspend_standby_mode_show, NULL);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100571
572static ssize_t regulator_suspend_mem_state_show(struct device *dev,
573 struct device_attribute *attr, char *buf)
574{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100575 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100576
David Brownell4fca9542008-11-11 17:38:53 -0800577 return regulator_print_state(buf,
578 rdev->constraints->state_mem.enabled);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100579}
David Brownell7ad68e22008-11-11 17:39:02 -0800580static DEVICE_ATTR(suspend_mem_state, 0444,
581 regulator_suspend_mem_state_show, NULL);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100582
583static ssize_t regulator_suspend_disk_state_show(struct device *dev,
584 struct device_attribute *attr, char *buf)
585{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100586 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100587
David Brownell4fca9542008-11-11 17:38:53 -0800588 return regulator_print_state(buf,
589 rdev->constraints->state_disk.enabled);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100590}
David Brownell7ad68e22008-11-11 17:39:02 -0800591static DEVICE_ATTR(suspend_disk_state, 0444,
592 regulator_suspend_disk_state_show, NULL);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100593
594static ssize_t regulator_suspend_standby_state_show(struct device *dev,
595 struct device_attribute *attr, char *buf)
596{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100597 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100598
David Brownell4fca9542008-11-11 17:38:53 -0800599 return regulator_print_state(buf,
600 rdev->constraints->state_standby.enabled);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100601}
David Brownell7ad68e22008-11-11 17:39:02 -0800602static DEVICE_ATTR(suspend_standby_state, 0444,
603 regulator_suspend_standby_state_show, NULL);
Mark Brownbc558a62008-10-10 15:33:20 +0100604
David Brownell7ad68e22008-11-11 17:39:02 -0800605
606/*
607 * These are the only attributes are present for all regulators.
608 * Other attributes are a function of regulator functionality.
609 */
Liam Girdwood414c70c2008-04-30 15:59:04 +0100610static struct device_attribute regulator_dev_attrs[] = {
Mark Brownbc558a62008-10-10 15:33:20 +0100611 __ATTR(name, 0444, regulator_name_show, NULL),
Liam Girdwood414c70c2008-04-30 15:59:04 +0100612 __ATTR(num_users, 0444, regulator_num_users_show, NULL),
613 __ATTR(type, 0444, regulator_type_show, NULL),
Liam Girdwood414c70c2008-04-30 15:59:04 +0100614 __ATTR_NULL,
615};
616
617static void regulator_dev_release(struct device *dev)
618{
Liam Girdwooda5766f12008-10-10 13:22:20 +0100619 struct regulator_dev *rdev = dev_get_drvdata(dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100620 kfree(rdev);
621}
622
623static struct class regulator_class = {
624 .name = "regulator",
625 .dev_release = regulator_dev_release,
626 .dev_attrs = regulator_dev_attrs,
627};
628
629/* Calculate the new optimum regulator operating mode based on the new total
630 * consumer load. All locks held by caller */
631static void drms_uA_update(struct regulator_dev *rdev)
632{
633 struct regulator *sibling;
634 int current_uA = 0, output_uV, input_uV, err;
635 unsigned int mode;
636
637 err = regulator_check_drms(rdev);
638 if (err < 0 || !rdev->desc->ops->get_optimum_mode ||
Mark Brown476c2d82010-12-10 17:28:07 +0000639 (!rdev->desc->ops->get_voltage &&
640 !rdev->desc->ops->get_voltage_sel) ||
641 !rdev->desc->ops->set_mode)
Dan Carpenter036de8e2009-04-08 13:52:39 +0300642 return;
Liam Girdwood414c70c2008-04-30 15:59:04 +0100643
644 /* get output voltage */
Mark Brown1bf5a1f2010-12-10 17:28:06 +0000645 output_uV = _regulator_get_voltage(rdev);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100646 if (output_uV <= 0)
647 return;
648
649 /* get input voltage */
Mark Brown1bf5a1f2010-12-10 17:28:06 +0000650 input_uV = 0;
651 if (rdev->supply)
652 input_uV = _regulator_get_voltage(rdev);
653 if (input_uV <= 0)
Liam Girdwood414c70c2008-04-30 15:59:04 +0100654 input_uV = rdev->constraints->input_uV;
655 if (input_uV <= 0)
656 return;
657
658 /* calc total requested load */
659 list_for_each_entry(sibling, &rdev->consumer_list, list)
Stefan Roesefa2984d2009-11-27 15:56:34 +0100660 current_uA += sibling->uA_load;
Liam Girdwood414c70c2008-04-30 15:59:04 +0100661
662 /* now get the optimum mode for our new total regulator load */
663 mode = rdev->desc->ops->get_optimum_mode(rdev, input_uV,
664 output_uV, current_uA);
665
666 /* check the new mode is allowed */
Mark Brown2c608232011-03-30 06:29:12 +0900667 err = regulator_mode_constrain(rdev, &mode);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100668 if (err == 0)
669 rdev->desc->ops->set_mode(rdev, mode);
670}
671
672static int suspend_set_state(struct regulator_dev *rdev,
673 struct regulator_state *rstate)
674{
675 int ret = 0;
Mark Brown638f85c2009-10-22 16:31:33 +0100676 bool can_set_state;
Liam Girdwood414c70c2008-04-30 15:59:04 +0100677
Mark Brown638f85c2009-10-22 16:31:33 +0100678 can_set_state = rdev->desc->ops->set_suspend_enable &&
679 rdev->desc->ops->set_suspend_disable;
680
681 /* If we have no suspend mode configration don't set anything;
682 * only warn if the driver actually makes the suspend mode
683 * configurable.
684 */
685 if (!rstate->enabled && !rstate->disabled) {
686 if (can_set_state)
Joe Perches5da84fd2010-11-30 05:53:48 -0800687 rdev_warn(rdev, "No configuration\n");
Mark Brown638f85c2009-10-22 16:31:33 +0100688 return 0;
689 }
690
691 if (rstate->enabled && rstate->disabled) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800692 rdev_err(rdev, "invalid configuration\n");
Mark Brown638f85c2009-10-22 16:31:33 +0100693 return -EINVAL;
694 }
695
696 if (!can_set_state) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800697 rdev_err(rdev, "no way to set suspend state\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +0100698 return -EINVAL;
Liam Girdwooda5766f12008-10-10 13:22:20 +0100699 }
Liam Girdwood414c70c2008-04-30 15:59:04 +0100700
701 if (rstate->enabled)
702 ret = rdev->desc->ops->set_suspend_enable(rdev);
703 else
704 ret = rdev->desc->ops->set_suspend_disable(rdev);
705 if (ret < 0) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800706 rdev_err(rdev, "failed to enabled/disable\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +0100707 return ret;
708 }
709
710 if (rdev->desc->ops->set_suspend_voltage && rstate->uV > 0) {
711 ret = rdev->desc->ops->set_suspend_voltage(rdev, rstate->uV);
712 if (ret < 0) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800713 rdev_err(rdev, "failed to set voltage\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +0100714 return ret;
715 }
716 }
717
718 if (rdev->desc->ops->set_suspend_mode && rstate->mode > 0) {
719 ret = rdev->desc->ops->set_suspend_mode(rdev, rstate->mode);
720 if (ret < 0) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800721 rdev_err(rdev, "failed to set mode\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +0100722 return ret;
723 }
724 }
725 return ret;
726}
727
728/* locks held by caller */
729static int suspend_prepare(struct regulator_dev *rdev, suspend_state_t state)
730{
731 if (!rdev->constraints)
732 return -EINVAL;
733
734 switch (state) {
735 case PM_SUSPEND_STANDBY:
736 return suspend_set_state(rdev,
737 &rdev->constraints->state_standby);
738 case PM_SUSPEND_MEM:
739 return suspend_set_state(rdev,
740 &rdev->constraints->state_mem);
741 case PM_SUSPEND_MAX:
742 return suspend_set_state(rdev,
743 &rdev->constraints->state_disk);
744 default:
745 return -EINVAL;
746 }
747}
748
749static void print_constraints(struct regulator_dev *rdev)
750{
751 struct regulation_constraints *constraints = rdev->constraints;
Mark Brown973e9a22010-02-11 19:20:48 +0000752 char buf[80] = "";
Mark Brown8f031b42009-10-22 16:31:31 +0100753 int count = 0;
754 int ret;
Liam Girdwood414c70c2008-04-30 15:59:04 +0100755
Mark Brown8f031b42009-10-22 16:31:31 +0100756 if (constraints->min_uV && constraints->max_uV) {
Liam Girdwood414c70c2008-04-30 15:59:04 +0100757 if (constraints->min_uV == constraints->max_uV)
Mark Brown8f031b42009-10-22 16:31:31 +0100758 count += sprintf(buf + count, "%d mV ",
759 constraints->min_uV / 1000);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100760 else
Mark Brown8f031b42009-10-22 16:31:31 +0100761 count += sprintf(buf + count, "%d <--> %d mV ",
762 constraints->min_uV / 1000,
763 constraints->max_uV / 1000);
Liam Girdwood414c70c2008-04-30 15:59:04 +0100764 }
Mark Brown8f031b42009-10-22 16:31:31 +0100765
766 if (!constraints->min_uV ||
767 constraints->min_uV != constraints->max_uV) {
768 ret = _regulator_get_voltage(rdev);
769 if (ret > 0)
770 count += sprintf(buf + count, "at %d mV ", ret / 1000);
771 }
772
Mark Brownbf5892a2011-05-08 22:13:37 +0100773 if (constraints->uV_offset)
774 count += sprintf(buf, "%dmV offset ",
775 constraints->uV_offset / 1000);
776
Mark Brown8f031b42009-10-22 16:31:31 +0100777 if (constraints->min_uA && constraints->max_uA) {
778 if (constraints->min_uA == constraints->max_uA)
779 count += sprintf(buf + count, "%d mA ",
780 constraints->min_uA / 1000);
781 else
782 count += sprintf(buf + count, "%d <--> %d mA ",
783 constraints->min_uA / 1000,
784 constraints->max_uA / 1000);
785 }
786
787 if (!constraints->min_uA ||
788 constraints->min_uA != constraints->max_uA) {
789 ret = _regulator_get_current_limit(rdev);
790 if (ret > 0)
Cyril Chemparathye4a63762010-09-22 12:30:15 -0400791 count += sprintf(buf + count, "at %d mA ", ret / 1000);
Mark Brown8f031b42009-10-22 16:31:31 +0100792 }
793
Liam Girdwood414c70c2008-04-30 15:59:04 +0100794 if (constraints->valid_modes_mask & REGULATOR_MODE_FAST)
795 count += sprintf(buf + count, "fast ");
796 if (constraints->valid_modes_mask & REGULATOR_MODE_NORMAL)
797 count += sprintf(buf + count, "normal ");
798 if (constraints->valid_modes_mask & REGULATOR_MODE_IDLE)
799 count += sprintf(buf + count, "idle ");
800 if (constraints->valid_modes_mask & REGULATOR_MODE_STANDBY)
801 count += sprintf(buf + count, "standby");
802
Mark Brown13ce29f2010-12-17 16:04:12 +0000803 rdev_info(rdev, "%s\n", buf);
Mark Brown4a682922012-02-09 13:26:13 +0000804
805 if ((constraints->min_uV != constraints->max_uV) &&
806 !(constraints->valid_ops_mask & REGULATOR_CHANGE_VOLTAGE))
807 rdev_warn(rdev,
808 "Voltage range but no REGULATOR_CHANGE_VOLTAGE\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +0100809}
810
Mark Browne79055d2009-10-19 15:53:50 +0100811static int machine_constraints_voltage(struct regulator_dev *rdev,
Mark Brown1083c392009-10-22 16:31:32 +0100812 struct regulation_constraints *constraints)
Mark Browne79055d2009-10-19 15:53:50 +0100813{
814 struct regulator_ops *ops = rdev->desc->ops;
Mark Brownaf5866c2009-10-22 16:31:30 +0100815 int ret;
816
817 /* do we need to apply the constraint voltage */
818 if (rdev->constraints->apply_uV &&
Mark Brown75790252010-12-12 14:25:50 +0000819 rdev->constraints->min_uV == rdev->constraints->max_uV) {
820 ret = _regulator_do_set_voltage(rdev,
821 rdev->constraints->min_uV,
822 rdev->constraints->max_uV);
823 if (ret < 0) {
824 rdev_err(rdev, "failed to apply %duV constraint\n",
825 rdev->constraints->min_uV);
Mark Brown75790252010-12-12 14:25:50 +0000826 return ret;
827 }
Mark Brownaf5866c2009-10-22 16:31:30 +0100828 }
Mark Browne79055d2009-10-19 15:53:50 +0100829
830 /* constrain machine-level voltage specs to fit
831 * the actual range supported by this regulator.
832 */
833 if (ops->list_voltage && rdev->desc->n_voltages) {
834 int count = rdev->desc->n_voltages;
835 int i;
836 int min_uV = INT_MAX;
837 int max_uV = INT_MIN;
838 int cmin = constraints->min_uV;
839 int cmax = constraints->max_uV;
840
841 /* it's safe to autoconfigure fixed-voltage supplies
842 and the constraints are used by list_voltage. */
843 if (count == 1 && !cmin) {
844 cmin = 1;
845 cmax = INT_MAX;
846 constraints->min_uV = cmin;
847 constraints->max_uV = cmax;
848 }
849
850 /* voltage constraints are optional */
851 if ((cmin == 0) && (cmax == 0))
852 return 0;
853
854 /* else require explicit machine-level constraints */
855 if (cmin <= 0 || cmax <= 0 || cmax < cmin) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800856 rdev_err(rdev, "invalid voltage constraints\n");
Mark Browne79055d2009-10-19 15:53:50 +0100857 return -EINVAL;
858 }
859
860 /* initial: [cmin..cmax] valid, [min_uV..max_uV] not */
861 for (i = 0; i < count; i++) {
862 int value;
863
864 value = ops->list_voltage(rdev, i);
865 if (value <= 0)
866 continue;
867
868 /* maybe adjust [min_uV..max_uV] */
869 if (value >= cmin && value < min_uV)
870 min_uV = value;
871 if (value <= cmax && value > max_uV)
872 max_uV = value;
873 }
874
875 /* final: [min_uV..max_uV] valid iff constraints valid */
876 if (max_uV < min_uV) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800877 rdev_err(rdev, "unsupportable voltage constraints\n");
Mark Browne79055d2009-10-19 15:53:50 +0100878 return -EINVAL;
879 }
880
881 /* use regulator's subset of machine constraints */
882 if (constraints->min_uV < min_uV) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800883 rdev_dbg(rdev, "override min_uV, %d -> %d\n",
884 constraints->min_uV, min_uV);
Mark Browne79055d2009-10-19 15:53:50 +0100885 constraints->min_uV = min_uV;
886 }
887 if (constraints->max_uV > max_uV) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800888 rdev_dbg(rdev, "override max_uV, %d -> %d\n",
889 constraints->max_uV, max_uV);
Mark Browne79055d2009-10-19 15:53:50 +0100890 constraints->max_uV = max_uV;
891 }
892 }
893
894 return 0;
895}
896
Liam Girdwooda5766f12008-10-10 13:22:20 +0100897/**
898 * set_machine_constraints - sets regulator constraints
Mark Brown69279fb2008-12-31 12:52:41 +0000899 * @rdev: regulator source
Mark Brownc8e7e462008-12-31 12:52:42 +0000900 * @constraints: constraints to apply
Liam Girdwooda5766f12008-10-10 13:22:20 +0100901 *
902 * Allows platform initialisation code to define and constrain
903 * regulator circuits e.g. valid voltage/current ranges, etc. NOTE:
904 * Constraints *must* be set by platform code in order for some
905 * regulator operations to proceed i.e. set_voltage, set_current_limit,
906 * set_mode.
907 */
908static int set_machine_constraints(struct regulator_dev *rdev,
Mark Brownf8c12fe2010-11-29 15:55:17 +0000909 const struct regulation_constraints *constraints)
Liam Girdwooda5766f12008-10-10 13:22:20 +0100910{
911 int ret = 0;
Mark Browne5fda262008-09-09 16:21:20 +0100912 struct regulator_ops *ops = rdev->desc->ops;
Mark Browne06f5b42008-09-09 16:21:19 +0100913
Mark Brown9a8f5e02011-11-29 18:11:19 +0000914 if (constraints)
915 rdev->constraints = kmemdup(constraints, sizeof(*constraints),
916 GFP_KERNEL);
917 else
918 rdev->constraints = kzalloc(sizeof(*constraints),
919 GFP_KERNEL);
Mark Brownf8c12fe2010-11-29 15:55:17 +0000920 if (!rdev->constraints)
921 return -ENOMEM;
Mark Brownaf5866c2009-10-22 16:31:30 +0100922
Mark Brownf8c12fe2010-11-29 15:55:17 +0000923 ret = machine_constraints_voltage(rdev, rdev->constraints);
Mark Browne79055d2009-10-19 15:53:50 +0100924 if (ret != 0)
925 goto out;
David Brownell4367cfd2009-02-26 11:48:36 -0800926
Liam Girdwooda5766f12008-10-10 13:22:20 +0100927 /* do we need to setup our suspend state */
Mark Brown9a8f5e02011-11-29 18:11:19 +0000928 if (rdev->constraints->initial_state) {
Mark Brownf8c12fe2010-11-29 15:55:17 +0000929 ret = suspend_prepare(rdev, rdev->constraints->initial_state);
Mark Browne06f5b42008-09-09 16:21:19 +0100930 if (ret < 0) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800931 rdev_err(rdev, "failed to set suspend state\n");
Mark Browne06f5b42008-09-09 16:21:19 +0100932 goto out;
933 }
934 }
Liam Girdwooda5766f12008-10-10 13:22:20 +0100935
Mark Brown9a8f5e02011-11-29 18:11:19 +0000936 if (rdev->constraints->initial_mode) {
Mark Browna3084662009-02-26 19:24:19 +0000937 if (!ops->set_mode) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800938 rdev_err(rdev, "no set_mode operation\n");
Mark Browna3084662009-02-26 19:24:19 +0000939 ret = -EINVAL;
940 goto out;
941 }
942
Mark Brownf8c12fe2010-11-29 15:55:17 +0000943 ret = ops->set_mode(rdev, rdev->constraints->initial_mode);
Mark Browna3084662009-02-26 19:24:19 +0000944 if (ret < 0) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800945 rdev_err(rdev, "failed to set initial mode: %d\n", ret);
Mark Browna3084662009-02-26 19:24:19 +0000946 goto out;
947 }
948 }
949
Mark Browncacf90f2009-03-02 16:32:46 +0000950 /* If the constraints say the regulator should be on at this point
951 * and we have control then make sure it is enabled.
952 */
Mark Brownf8c12fe2010-11-29 15:55:17 +0000953 if ((rdev->constraints->always_on || rdev->constraints->boot_on) &&
954 ops->enable) {
Mark Browne5fda262008-09-09 16:21:20 +0100955 ret = ops->enable(rdev);
956 if (ret < 0) {
Joe Perches5da84fd2010-11-30 05:53:48 -0800957 rdev_err(rdev, "failed to enable\n");
Mark Browne5fda262008-09-09 16:21:20 +0100958 goto out;
959 }
960 }
961
Liam Girdwooda5766f12008-10-10 13:22:20 +0100962 print_constraints(rdev);
Axel Lin1a6958e72011-07-15 10:50:43 +0800963 return 0;
Liam Girdwooda5766f12008-10-10 13:22:20 +0100964out:
Axel Lin1a6958e72011-07-15 10:50:43 +0800965 kfree(rdev->constraints);
966 rdev->constraints = NULL;
Liam Girdwooda5766f12008-10-10 13:22:20 +0100967 return ret;
968}
969
970/**
971 * set_supply - set regulator supply regulator
Mark Brown69279fb2008-12-31 12:52:41 +0000972 * @rdev: regulator name
973 * @supply_rdev: supply regulator name
Liam Girdwooda5766f12008-10-10 13:22:20 +0100974 *
975 * Called by platform initialisation code to set the supply regulator for this
976 * regulator. This ensures that a regulators supply will also be enabled by the
977 * core if it's child is enabled.
978 */
979static int set_supply(struct regulator_dev *rdev,
Mark Brown3801b862011-06-09 16:22:22 +0100980 struct regulator_dev *supply_rdev)
Liam Girdwooda5766f12008-10-10 13:22:20 +0100981{
982 int err;
983
Mark Brown3801b862011-06-09 16:22:22 +0100984 rdev_info(rdev, "supplied by %s\n", rdev_get_name(supply_rdev));
985
986 rdev->supply = create_regulator(supply_rdev, &rdev->dev, "SUPPLY");
Axel Lin32c78de2011-12-29 17:03:20 +0800987 if (rdev->supply == NULL) {
988 err = -ENOMEM;
Mark Brown3801b862011-06-09 16:22:22 +0100989 return err;
Liam Girdwooda5766f12008-10-10 13:22:20 +0100990 }
Mark Brown3801b862011-06-09 16:22:22 +0100991
992 return 0;
Liam Girdwooda5766f12008-10-10 13:22:20 +0100993}
994
995/**
Randy Dunlap06c63f92010-11-18 15:02:26 -0800996 * set_consumer_device_supply - Bind a regulator to a symbolic supply
Mark Brown69279fb2008-12-31 12:52:41 +0000997 * @rdev: regulator source
998 * @consumer_dev: device the supply applies to
Mark Brown40f92442009-06-17 17:56:39 +0100999 * @consumer_dev_name: dev_name() string for device supply applies to
Mark Brown69279fb2008-12-31 12:52:41 +00001000 * @supply: symbolic name for supply
Liam Girdwooda5766f12008-10-10 13:22:20 +01001001 *
1002 * Allows platform initialisation code to map physical regulator
1003 * sources to symbolic names for supplies for use by devices. Devices
1004 * should use these symbolic names to request regulators, avoiding the
1005 * need to provide board-specific regulator names as platform data.
Mark Brown40f92442009-06-17 17:56:39 +01001006 *
1007 * Only one of consumer_dev and consumer_dev_name may be specified.
Liam Girdwooda5766f12008-10-10 13:22:20 +01001008 */
1009static int set_consumer_device_supply(struct regulator_dev *rdev,
Mark Brown40f92442009-06-17 17:56:39 +01001010 struct device *consumer_dev, const char *consumer_dev_name,
1011 const char *supply)
Liam Girdwooda5766f12008-10-10 13:22:20 +01001012{
1013 struct regulator_map *node;
Mark Brown9ed20992009-07-21 16:00:26 +01001014 int has_dev;
Liam Girdwooda5766f12008-10-10 13:22:20 +01001015
Mark Brown40f92442009-06-17 17:56:39 +01001016 if (consumer_dev && consumer_dev_name)
1017 return -EINVAL;
1018
1019 if (!consumer_dev_name && consumer_dev)
1020 consumer_dev_name = dev_name(consumer_dev);
1021
Liam Girdwooda5766f12008-10-10 13:22:20 +01001022 if (supply == NULL)
1023 return -EINVAL;
1024
Mark Brown9ed20992009-07-21 16:00:26 +01001025 if (consumer_dev_name != NULL)
1026 has_dev = 1;
1027 else
1028 has_dev = 0;
1029
David Brownell6001e132008-12-31 12:54:19 +00001030 list_for_each_entry(node, &regulator_map_list, list) {
Jani Nikula23b5cc22010-04-29 10:55:09 +03001031 if (node->dev_name && consumer_dev_name) {
1032 if (strcmp(node->dev_name, consumer_dev_name) != 0)
1033 continue;
1034 } else if (node->dev_name || consumer_dev_name) {
David Brownell6001e132008-12-31 12:54:19 +00001035 continue;
Jani Nikula23b5cc22010-04-29 10:55:09 +03001036 }
1037
David Brownell6001e132008-12-31 12:54:19 +00001038 if (strcmp(node->supply, supply) != 0)
1039 continue;
1040
1041 dev_dbg(consumer_dev, "%s/%s is '%s' supply; fail %s/%s\n",
Joe Perches5da84fd2010-11-30 05:53:48 -08001042 dev_name(&node->regulator->dev),
1043 node->regulator->desc->name,
1044 supply,
1045 dev_name(&rdev->dev), rdev_get_name(rdev));
David Brownell6001e132008-12-31 12:54:19 +00001046 return -EBUSY;
1047 }
1048
Mark Brown9ed20992009-07-21 16:00:26 +01001049 node = kzalloc(sizeof(struct regulator_map), GFP_KERNEL);
Liam Girdwooda5766f12008-10-10 13:22:20 +01001050 if (node == NULL)
1051 return -ENOMEM;
1052
1053 node->regulator = rdev;
Liam Girdwooda5766f12008-10-10 13:22:20 +01001054 node->supply = supply;
1055
Mark Brown9ed20992009-07-21 16:00:26 +01001056 if (has_dev) {
1057 node->dev_name = kstrdup(consumer_dev_name, GFP_KERNEL);
1058 if (node->dev_name == NULL) {
1059 kfree(node);
1060 return -ENOMEM;
1061 }
Mark Brown40f92442009-06-17 17:56:39 +01001062 }
1063
Liam Girdwooda5766f12008-10-10 13:22:20 +01001064 list_add(&node->list, &regulator_map_list);
1065 return 0;
1066}
1067
Mike Rapoport0f1d7472009-01-22 16:00:29 +02001068static void unset_regulator_supplies(struct regulator_dev *rdev)
1069{
1070 struct regulator_map *node, *n;
1071
1072 list_for_each_entry_safe(node, n, &regulator_map_list, list) {
1073 if (rdev == node->regulator) {
1074 list_del(&node->list);
Mark Brown40f92442009-06-17 17:56:39 +01001075 kfree(node->dev_name);
Mike Rapoport0f1d7472009-01-22 16:00:29 +02001076 kfree(node);
Mike Rapoport0f1d7472009-01-22 16:00:29 +02001077 }
1078 }
1079}
1080
Mark Brownf5726ae2011-06-09 16:22:20 +01001081#define REG_STR_SIZE 64
Liam Girdwood414c70c2008-04-30 15:59:04 +01001082
1083static struct regulator *create_regulator(struct regulator_dev *rdev,
1084 struct device *dev,
1085 const char *supply_name)
1086{
1087 struct regulator *regulator;
1088 char buf[REG_STR_SIZE];
1089 int err, size;
1090
1091 regulator = kzalloc(sizeof(*regulator), GFP_KERNEL);
1092 if (regulator == NULL)
1093 return NULL;
1094
1095 mutex_lock(&rdev->mutex);
1096 regulator->rdev = rdev;
1097 list_add(&regulator->list, &rdev->consumer_list);
1098
1099 if (dev) {
1100 /* create a 'requested_microamps_name' sysfs entry */
Mark Browne0eaede2011-06-09 16:22:21 +01001101 size = scnprintf(buf, REG_STR_SIZE,
1102 "microamps_requested_%s-%s",
1103 dev_name(dev), supply_name);
Liam Girdwood414c70c2008-04-30 15:59:04 +01001104 if (size >= REG_STR_SIZE)
1105 goto overflow_err;
1106
1107 regulator->dev = dev;
Ameya Palande4f26a2a2010-03-12 20:09:01 +02001108 sysfs_attr_init(&regulator->dev_attr.attr);
Liam Girdwood414c70c2008-04-30 15:59:04 +01001109 regulator->dev_attr.attr.name = kstrdup(buf, GFP_KERNEL);
1110 if (regulator->dev_attr.attr.name == NULL)
1111 goto attr_name_err;
1112
Liam Girdwood414c70c2008-04-30 15:59:04 +01001113 regulator->dev_attr.attr.mode = 0444;
1114 regulator->dev_attr.show = device_requested_uA_show;
1115 err = device_create_file(dev, &regulator->dev_attr);
1116 if (err < 0) {
Joe Perches5da84fd2010-11-30 05:53:48 -08001117 rdev_warn(rdev, "could not add regulator_dev requested microamps sysfs entry\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +01001118 goto attr_name_err;
1119 }
1120
1121 /* also add a link to the device sysfs entry */
1122 size = scnprintf(buf, REG_STR_SIZE, "%s-%s",
1123 dev->kobj.name, supply_name);
1124 if (size >= REG_STR_SIZE)
1125 goto attr_err;
1126
1127 regulator->supply_name = kstrdup(buf, GFP_KERNEL);
1128 if (regulator->supply_name == NULL)
1129 goto attr_err;
1130
1131 err = sysfs_create_link(&rdev->dev.kobj, &dev->kobj,
1132 buf);
1133 if (err) {
Joe Perches5da84fd2010-11-30 05:53:48 -08001134 rdev_warn(rdev, "could not add device link %s err %d\n",
1135 dev->kobj.name, err);
Liam Girdwood414c70c2008-04-30 15:59:04 +01001136 goto link_name_err;
1137 }
Mark Brown5de70512011-06-19 13:33:16 +01001138 } else {
1139 regulator->supply_name = kstrdup(supply_name, GFP_KERNEL);
1140 if (regulator->supply_name == NULL)
1141 goto attr_err;
Liam Girdwood414c70c2008-04-30 15:59:04 +01001142 }
Mark Brown5de70512011-06-19 13:33:16 +01001143
Mark Brown5de70512011-06-19 13:33:16 +01001144 regulator->debugfs = debugfs_create_dir(regulator->supply_name,
1145 rdev->debugfs);
Stephen Boyd24751432012-02-20 22:50:42 -08001146 if (!regulator->debugfs) {
Mark Brown5de70512011-06-19 13:33:16 +01001147 rdev_warn(rdev, "Failed to create debugfs directory\n");
Mark Brown5de70512011-06-19 13:33:16 +01001148 } else {
1149 debugfs_create_u32("uA_load", 0444, regulator->debugfs,
1150 &regulator->uA_load);
1151 debugfs_create_u32("min_uV", 0444, regulator->debugfs,
1152 &regulator->min_uV);
1153 debugfs_create_u32("max_uV", 0444, regulator->debugfs,
1154 &regulator->max_uV);
1155 }
Mark Brown5de70512011-06-19 13:33:16 +01001156
Liam Girdwood414c70c2008-04-30 15:59:04 +01001157 mutex_unlock(&rdev->mutex);
1158 return regulator;
1159link_name_err:
1160 kfree(regulator->supply_name);
1161attr_err:
1162 device_remove_file(regulator->dev, &regulator->dev_attr);
1163attr_name_err:
1164 kfree(regulator->dev_attr.attr.name);
1165overflow_err:
1166 list_del(&regulator->list);
1167 kfree(regulator);
1168 mutex_unlock(&rdev->mutex);
1169 return NULL;
1170}
1171
Mark Brown31aae2b2009-12-21 12:21:52 +00001172static int _regulator_get_enable_time(struct regulator_dev *rdev)
1173{
1174 if (!rdev->desc->ops->enable_time)
1175 return 0;
1176 return rdev->desc->ops->enable_time(rdev);
1177}
1178
Rajendra Nayak69511a42011-11-18 16:47:20 +05301179static struct regulator_dev *regulator_dev_lookup(struct device *dev,
1180 const char *supply)
1181{
1182 struct regulator_dev *r;
1183 struct device_node *node;
1184
1185 /* first do a dt based lookup */
1186 if (dev && dev->of_node) {
1187 node = of_get_regulator(dev, supply);
1188 if (node)
1189 list_for_each_entry(r, &regulator_list, list)
1190 if (r->dev.parent &&
1191 node == r->dev.of_node)
1192 return r;
1193 }
1194
1195 /* if not found, try doing it non-dt way */
1196 list_for_each_entry(r, &regulator_list, list)
1197 if (strcmp(rdev_get_name(r), supply) == 0)
1198 return r;
1199
1200 return NULL;
1201}
1202
Mark Brown5ffbd132009-07-21 16:00:23 +01001203/* Internal regulator request function */
1204static struct regulator *_regulator_get(struct device *dev, const char *id,
1205 int exclusive)
Liam Girdwood414c70c2008-04-30 15:59:04 +01001206{
1207 struct regulator_dev *rdev;
1208 struct regulator_map *map;
1209 struct regulator *regulator = ERR_PTR(-ENODEV);
Mark Brown40f92442009-06-17 17:56:39 +01001210 const char *devname = NULL;
Mark Brown5ffbd132009-07-21 16:00:23 +01001211 int ret;
Liam Girdwood414c70c2008-04-30 15:59:04 +01001212
1213 if (id == NULL) {
Joe Perches5da84fd2010-11-30 05:53:48 -08001214 pr_err("get() with no identifier\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +01001215 return regulator;
1216 }
1217
Mark Brown40f92442009-06-17 17:56:39 +01001218 if (dev)
1219 devname = dev_name(dev);
1220
Liam Girdwood414c70c2008-04-30 15:59:04 +01001221 mutex_lock(&regulator_list_mutex);
1222
Rajendra Nayak69511a42011-11-18 16:47:20 +05301223 rdev = regulator_dev_lookup(dev, id);
1224 if (rdev)
1225 goto found;
1226
Liam Girdwood414c70c2008-04-30 15:59:04 +01001227 list_for_each_entry(map, &regulator_map_list, list) {
Mark Brown40f92442009-06-17 17:56:39 +01001228 /* If the mapping has a device set up it must match */
1229 if (map->dev_name &&
1230 (!devname || strcmp(map->dev_name, devname)))
1231 continue;
1232
1233 if (strcmp(map->supply, id) == 0) {
Liam Girdwooda5766f12008-10-10 13:22:20 +01001234 rdev = map->regulator;
Liam Girdwood414c70c2008-04-30 15:59:04 +01001235 goto found;
Liam Girdwooda5766f12008-10-10 13:22:20 +01001236 }
Liam Girdwood414c70c2008-04-30 15:59:04 +01001237 }
Mark Brown34abbd62010-02-12 10:18:08 +00001238
Mark Brown688fe992010-10-05 19:18:32 -07001239 if (board_wants_dummy_regulator) {
1240 rdev = dummy_regulator_rdev;
1241 goto found;
1242 }
1243
Mark Brown34abbd62010-02-12 10:18:08 +00001244#ifdef CONFIG_REGULATOR_DUMMY
1245 if (!devname)
1246 devname = "deviceless";
1247
1248 /* If the board didn't flag that it was fully constrained then
1249 * substitute in a dummy regulator so consumers can continue.
1250 */
1251 if (!has_full_constraints) {
Joe Perches5da84fd2010-11-30 05:53:48 -08001252 pr_warn("%s supply %s not found, using dummy regulator\n",
1253 devname, id);
Mark Brown34abbd62010-02-12 10:18:08 +00001254 rdev = dummy_regulator_rdev;
1255 goto found;
1256 }
1257#endif
1258
Liam Girdwood414c70c2008-04-30 15:59:04 +01001259 mutex_unlock(&regulator_list_mutex);
1260 return regulator;
1261
1262found:
Mark Brown5ffbd132009-07-21 16:00:23 +01001263 if (rdev->exclusive) {
1264 regulator = ERR_PTR(-EPERM);
1265 goto out;
1266 }
1267
1268 if (exclusive && rdev->open_count) {
1269 regulator = ERR_PTR(-EBUSY);
1270 goto out;
1271 }
1272
Liam Girdwooda5766f12008-10-10 13:22:20 +01001273 if (!try_module_get(rdev->owner))
1274 goto out;
1275
Liam Girdwood414c70c2008-04-30 15:59:04 +01001276 regulator = create_regulator(rdev, dev, id);
1277 if (regulator == NULL) {
1278 regulator = ERR_PTR(-ENOMEM);
1279 module_put(rdev->owner);
Axel Linbcda4322011-12-29 17:02:08 +08001280 goto out;
Liam Girdwood414c70c2008-04-30 15:59:04 +01001281 }
1282
Mark Brown5ffbd132009-07-21 16:00:23 +01001283 rdev->open_count++;
1284 if (exclusive) {
1285 rdev->exclusive = 1;
1286
1287 ret = _regulator_is_enabled(rdev);
1288 if (ret > 0)
1289 rdev->use_count = 1;
1290 else
1291 rdev->use_count = 0;
1292 }
1293
Liam Girdwooda5766f12008-10-10 13:22:20 +01001294out:
Liam Girdwood414c70c2008-04-30 15:59:04 +01001295 mutex_unlock(&regulator_list_mutex);
Mark Brown5ffbd132009-07-21 16:00:23 +01001296
Liam Girdwood414c70c2008-04-30 15:59:04 +01001297 return regulator;
1298}
Mark Brown5ffbd132009-07-21 16:00:23 +01001299
1300/**
1301 * regulator_get - lookup and obtain a reference to a regulator.
1302 * @dev: device for regulator "consumer"
1303 * @id: Supply name or regulator ID.
1304 *
1305 * Returns a struct regulator corresponding to the regulator producer,
1306 * or IS_ERR() condition containing errno.
1307 *
1308 * Use of supply names configured via regulator_set_device_supply() is
1309 * strongly encouraged. It is recommended that the supply name used
1310 * should match the name used for the supply and/or the relevant
1311 * device pins in the datasheet.
1312 */
1313struct regulator *regulator_get(struct device *dev, const char *id)
1314{
1315 return _regulator_get(dev, id, 0);
1316}
Liam Girdwood414c70c2008-04-30 15:59:04 +01001317EXPORT_SYMBOL_GPL(regulator_get);
1318
1319/**
Mark Brown5ffbd132009-07-21 16:00:23 +01001320 * regulator_get_exclusive - obtain exclusive access to a regulator.
1321 * @dev: device for regulator "consumer"
1322 * @id: Supply name or regulator ID.
1323 *
1324 * Returns a struct regulator corresponding to the regulator producer,
1325 * or IS_ERR() condition containing errno. Other consumers will be
1326 * unable to obtain this reference is held and the use count for the
1327 * regulator will be initialised to reflect the current state of the
1328 * regulator.
1329 *
1330 * This is intended for use by consumers which cannot tolerate shared
1331 * use of the regulator such as those which need to force the
1332 * regulator off for correct operation of the hardware they are
1333 * controlling.
1334 *
1335 * Use of supply names configured via regulator_set_device_supply() is
1336 * strongly encouraged. It is recommended that the supply name used
1337 * should match the name used for the supply and/or the relevant
1338 * device pins in the datasheet.
1339 */
1340struct regulator *regulator_get_exclusive(struct device *dev, const char *id)
1341{
1342 return _regulator_get(dev, id, 1);
1343}
1344EXPORT_SYMBOL_GPL(regulator_get_exclusive);
1345
1346/**
Liam Girdwood414c70c2008-04-30 15:59:04 +01001347 * regulator_put - "free" the regulator source
1348 * @regulator: regulator source
1349 *
1350 * Note: drivers must ensure that all regulator_enable calls made on this
1351 * regulator source are balanced by regulator_disable calls prior to calling
1352 * this function.
1353 */
1354void regulator_put(struct regulator *regulator)
1355{
1356 struct regulator_dev *rdev;
1357
1358 if (regulator == NULL || IS_ERR(regulator))
1359 return;
1360
Liam Girdwood414c70c2008-04-30 15:59:04 +01001361 mutex_lock(&regulator_list_mutex);
1362 rdev = regulator->rdev;
1363
Mark Brown5de70512011-06-19 13:33:16 +01001364 debugfs_remove_recursive(regulator->debugfs);
Mark Brown5de70512011-06-19 13:33:16 +01001365
Liam Girdwood414c70c2008-04-30 15:59:04 +01001366 /* remove any sysfs entries */
1367 if (regulator->dev) {
1368 sysfs_remove_link(&rdev->dev.kobj, regulator->supply_name);
Liam Girdwood414c70c2008-04-30 15:59:04 +01001369 device_remove_file(regulator->dev, &regulator->dev_attr);
1370 kfree(regulator->dev_attr.attr.name);
1371 }
Mark Brown5de70512011-06-19 13:33:16 +01001372 kfree(regulator->supply_name);
Liam Girdwood414c70c2008-04-30 15:59:04 +01001373 list_del(&regulator->list);
1374 kfree(regulator);
1375
Mark Brown5ffbd132009-07-21 16:00:23 +01001376 rdev->open_count--;
1377 rdev->exclusive = 0;
1378
Liam Girdwood414c70c2008-04-30 15:59:04 +01001379 module_put(rdev->owner);
1380 mutex_unlock(&regulator_list_mutex);
1381}
1382EXPORT_SYMBOL_GPL(regulator_put);
1383
Mark Brown9a2372f2009-08-03 18:49:57 +01001384static int _regulator_can_change_status(struct regulator_dev *rdev)
1385{
1386 if (!rdev->constraints)
1387 return 0;
1388
1389 if (rdev->constraints->valid_ops_mask & REGULATOR_CHANGE_STATUS)
1390 return 1;
1391 else
1392 return 0;
1393}
1394
Liam Girdwood414c70c2008-04-30 15:59:04 +01001395/* locks held by regulator_enable() */
1396static int _regulator_enable(struct regulator_dev *rdev)
1397{
Mark Brown31aae2b2009-12-21 12:21:52 +00001398 int ret, delay;
Liam Girdwood414c70c2008-04-30 15:59:04 +01001399
Liam Girdwood414c70c2008-04-30 15:59:04 +01001400 /* check voltage and requested load before enabling */
Mark Brown9a2372f2009-08-03 18:49:57 +01001401 if (rdev->constraints &&
1402 (rdev->constraints->valid_ops_mask & REGULATOR_CHANGE_DRMS))
1403 drms_uA_update(rdev);
Liam Girdwood414c70c2008-04-30 15:59:04 +01001404
Mark Brown9a2372f2009-08-03 18:49:57 +01001405 if (rdev->use_count == 0) {
1406 /* The regulator may on if it's not switchable or left on */
1407 ret = _regulator_is_enabled(rdev);
1408 if (ret == -EINVAL || ret == 0) {
1409 if (!_regulator_can_change_status(rdev))
1410 return -EPERM;
Liam Girdwood414c70c2008-04-30 15:59:04 +01001411
Mark Brown31aae2b2009-12-21 12:21:52 +00001412 if (!rdev->desc->ops->enable)
Mark Brown9a2372f2009-08-03 18:49:57 +01001413 return -EINVAL;
Mark Brown31aae2b2009-12-21 12:21:52 +00001414
1415 /* Query before enabling in case configuration
Lucas De Marchi25985ed2011-03-30 22:57:33 -03001416 * dependent. */
Mark Brown31aae2b2009-12-21 12:21:52 +00001417 ret = _regulator_get_enable_time(rdev);
1418 if (ret >= 0) {
1419 delay = ret;
1420 } else {
Joe Perches5da84fd2010-11-30 05:53:48 -08001421 rdev_warn(rdev, "enable_time() failed: %d\n",
Daniel Walker1d7372e2010-11-17 15:30:28 -08001422 ret);
Mark Brown31aae2b2009-12-21 12:21:52 +00001423 delay = 0;
Mark Brown9a2372f2009-08-03 18:49:57 +01001424 }
Mark Brown31aae2b2009-12-21 12:21:52 +00001425
Mark Brown02fa3ec2010-11-10 14:38:30 +00001426 trace_regulator_enable(rdev_get_name(rdev));
1427
Mark Brown31aae2b2009-12-21 12:21:52 +00001428 /* Allow the regulator to ramp; it would be useful
1429 * to extend this for bulk operations so that the
1430 * regulators can ramp together. */
1431 ret = rdev->desc->ops->enable(rdev);
1432 if (ret < 0)
1433 return ret;
1434
Mark Brown02fa3ec2010-11-10 14:38:30 +00001435 trace_regulator_enable_delay(rdev_get_name(rdev));
1436
Axel Line36c1df2010-11-05 21:51:32 +08001437 if (delay >= 1000) {
Mark Brown31aae2b2009-12-21 12:21:52 +00001438 mdelay(delay / 1000);
Axel Line36c1df2010-11-05 21:51:32 +08001439 udelay(delay % 1000);
1440 } else if (delay) {
Mark Brown31aae2b2009-12-21 12:21:52 +00001441 udelay(delay);
Axel Line36c1df2010-11-05 21:51:32 +08001442 }
Mark Brown31aae2b2009-12-21 12:21:52 +00001443
Mark Brown02fa3ec2010-11-10 14:38:30 +00001444 trace_regulator_enable_complete(rdev_get_name(rdev));
1445
Linus Walleija7433cf2009-08-26 12:54:04 +02001446 } else if (ret < 0) {
Joe Perches5da84fd2010-11-30 05:53:48 -08001447 rdev_err(rdev, "is_enabled() failed: %d\n", ret);
Liam Girdwood414c70c2008-04-30 15:59:04 +01001448 return ret;
1449 }
Linus Walleija7433cf2009-08-26 12:54:04 +02001450 /* Fallthrough on positive return values - already enabled */
Liam Girdwood414c70c2008-04-30 15:59:04 +01001451 }
1452
Mark Brown9a2372f2009-08-03 18:49:57 +01001453 rdev->use_count++;
1454
1455 return 0;
Liam Girdwood414c70c2008-04-30 15:59:04 +01001456}
1457
1458/**
1459 * regulator_enable - enable regulator output
1460 * @regulator: regulator source
1461 *
Mark Browncf7bbcd2008-12-31 12:52:43 +00001462 * Request that the regulator be enabled with the regulator output at
1463 * the predefined voltage or current value. Calls to regulator_enable()
1464 * must be balanced with calls to regulator_disable().
1465 *
Liam Girdwood414c70c2008-04-30 15:59:04 +01001466 * NOTE: the output value can be set by other drivers, boot loader or may be
Mark Browncf7bbcd2008-12-31 12:52:43 +00001467 * hardwired in the regulator.
Liam Girdwood414c70c2008-04-30 15:59:04 +01001468 */
1469int regulator_enable(struct regulator *regulator)
1470{
David Brownell412aec62008-11-16 11:44:46 -08001471 struct regulator_dev *rdev = regulator->rdev;
1472 int ret = 0;
Liam Girdwood414c70c2008-04-30 15:59:04 +01001473
Mark Brown3801b862011-06-09 16:22:22 +01001474 if (rdev->supply) {
1475 ret = regulator_enable(rdev->supply);
1476 if (ret != 0)
1477 return ret;
1478 }
1479
David Brownell412aec62008-11-16 11:44:46 -08001480 mutex_lock(&rdev->mutex);
David Brownellcd94b502009-03-11 16:43:34 -08001481 ret = _regulator_enable(rdev);
David Brownell412aec62008-11-16 11:44:46 -08001482 mutex_unlock(&rdev->mutex);
Mark Brown3801b862011-06-09 16:22:22 +01001483
Heiko Stübnerd1685e42011-10-14 18:00:29 +02001484 if (ret != 0 && rdev->supply)
Mark Brown3801b862011-06-09 16:22:22 +01001485 regulator_disable(rdev->supply);
1486
Liam Girdwood414c70c2008-04-30 15:59:04 +01001487 return ret;
1488}
1489EXPORT_SYMBOL_GPL(regulator_enable);
1490
1491/* locks held by regulator_disable() */
Mark Brown3801b862011-06-09 16:22:22 +01001492static int _regulator_disable(struct regulator_dev *rdev)
Liam Girdwood414c70c2008-04-30 15:59:04 +01001493{
1494 int ret = 0;
1495
David Brownellcd94b502009-03-11 16:43:34 -08001496 if (WARN(rdev->use_count <= 0,
Joe Perches43e7ee32010-12-06 14:05:19 -08001497 "unbalanced disables for %s\n", rdev_get_name(rdev)))
David Brownellcd94b502009-03-11 16:43:34 -08001498 return -EIO;
1499
Liam Girdwood414c70c2008-04-30 15:59:04 +01001500 /* are we the last user and permitted to disable ? */
Mark Brown60ef66f2009-10-13 13:06:50 +01001501 if (rdev->use_count == 1 &&
1502 (rdev->constraints && !rdev->constraints->always_on)) {
Liam Girdwood414c70c2008-04-30 15:59:04 +01001503
1504 /* we are last user */
Mark Brown9a2372f2009-08-03 18:49:57 +01001505 if (_regulator_can_change_status(rdev) &&
1506 rdev->desc->ops->disable) {
Mark Brown02fa3ec2010-11-10 14:38:30 +00001507 trace_regulator_disable(rdev_get_name(rdev));
1508
Liam Girdwood414c70c2008-04-30 15:59:04 +01001509 ret = rdev->desc->ops->disable(rdev);
1510 if (ret < 0) {
Joe Perches5da84fd2010-11-30 05:53:48 -08001511 rdev_err(rdev, "failed to disable\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +01001512 return ret;
1513 }
Mark Brown84b68262009-12-01 21:12:27 +00001514
Mark Brown02fa3ec2010-11-10 14:38:30 +00001515 trace_regulator_disable_complete(rdev_get_name(rdev));
1516
Mark Brown84b68262009-12-01 21:12:27 +00001517 _notifier_call_chain(rdev, REGULATOR_EVENT_DISABLE,
1518 NULL);
Liam Girdwood414c70c2008-04-30 15:59:04 +01001519 }
1520
Liam Girdwood414c70c2008-04-30 15:59:04 +01001521 rdev->use_count = 0;
1522 } else if (rdev->use_count > 1) {
1523
1524 if (rdev->constraints &&
1525 (rdev->constraints->valid_ops_mask &
1526 REGULATOR_CHANGE_DRMS))
1527 drms_uA_update(rdev);
1528
1529 rdev->use_count--;
1530 }
Mark Brown3801b862011-06-09 16:22:22 +01001531
Liam Girdwood414c70c2008-04-30 15:59:04 +01001532 return ret;
1533}
1534
1535/**
1536 * regulator_disable - disable regulator output
1537 * @regulator: regulator source
1538 *
Mark Browncf7bbcd2008-12-31 12:52:43 +00001539 * Disable the regulator output voltage or current. Calls to
1540 * regulator_enable() must be balanced with calls to
1541 * regulator_disable().
Mark Brown69279fb2008-12-31 12:52:41 +00001542 *
Liam Girdwood414c70c2008-04-30 15:59:04 +01001543 * NOTE: this will only disable the regulator output if no other consumer
Mark Browncf7bbcd2008-12-31 12:52:43 +00001544 * devices have it enabled, the regulator device supports disabling and
1545 * machine constraints permit this operation.
Liam Girdwood414c70c2008-04-30 15:59:04 +01001546 */
1547int regulator_disable(struct regulator *regulator)
1548{
David Brownell412aec62008-11-16 11:44:46 -08001549 struct regulator_dev *rdev = regulator->rdev;
1550 int ret = 0;
Liam Girdwood414c70c2008-04-30 15:59:04 +01001551
David Brownell412aec62008-11-16 11:44:46 -08001552 mutex_lock(&rdev->mutex);
Mark Brown3801b862011-06-09 16:22:22 +01001553 ret = _regulator_disable(rdev);
David Brownell412aec62008-11-16 11:44:46 -08001554 mutex_unlock(&rdev->mutex);
Jeffrey Carlyle8cbf8112010-10-08 14:49:19 -05001555
Mark Brown3801b862011-06-09 16:22:22 +01001556 if (ret == 0 && rdev->supply)
1557 regulator_disable(rdev->supply);
Jeffrey Carlyle8cbf8112010-10-08 14:49:19 -05001558
Liam Girdwood414c70c2008-04-30 15:59:04 +01001559 return ret;
1560}
1561EXPORT_SYMBOL_GPL(regulator_disable);
1562
1563/* locks held by regulator_force_disable() */
Mark Brown3801b862011-06-09 16:22:22 +01001564static int _regulator_force_disable(struct regulator_dev *rdev)
Liam Girdwood414c70c2008-04-30 15:59:04 +01001565{
1566 int ret = 0;
1567
1568 /* force disable */
1569 if (rdev->desc->ops->disable) {
1570 /* ah well, who wants to live forever... */
1571 ret = rdev->desc->ops->disable(rdev);
1572 if (ret < 0) {
Joe Perches5da84fd2010-11-30 05:53:48 -08001573 rdev_err(rdev, "failed to force disable\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +01001574 return ret;
1575 }
1576 /* notify other consumers that power has been forced off */
Mark Brown84b68262009-12-01 21:12:27 +00001577 _notifier_call_chain(rdev, REGULATOR_EVENT_FORCE_DISABLE |
1578 REGULATOR_EVENT_DISABLE, NULL);
Liam Girdwood414c70c2008-04-30 15:59:04 +01001579 }
1580
Liam Girdwood414c70c2008-04-30 15:59:04 +01001581 return ret;
1582}
1583
1584/**
1585 * regulator_force_disable - force disable regulator output
1586 * @regulator: regulator source
1587 *
1588 * Forcibly disable the regulator output voltage or current.
1589 * NOTE: this *will* disable the regulator output even if other consumer
1590 * devices have it enabled. This should be used for situations when device
1591 * damage will likely occur if the regulator is not disabled (e.g. over temp).
1592 */
1593int regulator_force_disable(struct regulator *regulator)
1594{
Mark Brown82d15832011-05-09 11:41:02 +02001595 struct regulator_dev *rdev = regulator->rdev;
Liam Girdwood414c70c2008-04-30 15:59:04 +01001596 int ret;
1597
Mark Brown82d15832011-05-09 11:41:02 +02001598 mutex_lock(&rdev->mutex);
Liam Girdwood414c70c2008-04-30 15:59:04 +01001599 regulator->uA_load = 0;
Mark Brown3801b862011-06-09 16:22:22 +01001600 ret = _regulator_force_disable(regulator->rdev);
Mark Brown82d15832011-05-09 11:41:02 +02001601 mutex_unlock(&rdev->mutex);
Jeffrey Carlyle8cbf8112010-10-08 14:49:19 -05001602
Mark Brown3801b862011-06-09 16:22:22 +01001603 if (rdev->supply)
1604 while (rdev->open_count--)
1605 regulator_disable(rdev->supply);
Jeffrey Carlyle8cbf8112010-10-08 14:49:19 -05001606
Liam Girdwood414c70c2008-04-30 15:59:04 +01001607 return ret;
1608}
1609EXPORT_SYMBOL_GPL(regulator_force_disable);
1610
Mark Brownda07ecd2011-09-11 09:53:50 +01001611static void regulator_disable_work(struct work_struct *work)
1612{
1613 struct regulator_dev *rdev = container_of(work, struct regulator_dev,
1614 disable_work.work);
1615 int count, i, ret;
1616
1617 mutex_lock(&rdev->mutex);
1618
1619 BUG_ON(!rdev->deferred_disables);
1620
1621 count = rdev->deferred_disables;
1622 rdev->deferred_disables = 0;
1623
1624 for (i = 0; i < count; i++) {
1625 ret = _regulator_disable(rdev);
1626 if (ret != 0)
1627 rdev_err(rdev, "Deferred disable failed: %d\n", ret);
1628 }
1629
1630 mutex_unlock(&rdev->mutex);
1631
1632 if (rdev->supply) {
1633 for (i = 0; i < count; i++) {
1634 ret = regulator_disable(rdev->supply);
1635 if (ret != 0) {
1636 rdev_err(rdev,
1637 "Supply disable failed: %d\n", ret);
1638 }
1639 }
1640 }
1641}
1642
1643/**
1644 * regulator_disable_deferred - disable regulator output with delay
1645 * @regulator: regulator source
1646 * @ms: miliseconds until the regulator is disabled
1647 *
1648 * Execute regulator_disable() on the regulator after a delay. This
1649 * is intended for use with devices that require some time to quiesce.
1650 *
1651 * NOTE: this will only disable the regulator output if no other consumer
1652 * devices have it enabled, the regulator device supports disabling and
1653 * machine constraints permit this operation.
1654 */
1655int regulator_disable_deferred(struct regulator *regulator, int ms)
1656{
1657 struct regulator_dev *rdev = regulator->rdev;
Mark Brownaa598022011-10-03 22:42:43 +01001658 int ret;
Mark Brownda07ecd2011-09-11 09:53:50 +01001659
1660 mutex_lock(&rdev->mutex);
1661 rdev->deferred_disables++;
1662 mutex_unlock(&rdev->mutex);
1663
Mark Brownaa598022011-10-03 22:42:43 +01001664 ret = schedule_delayed_work(&rdev->disable_work,
1665 msecs_to_jiffies(ms));
1666 if (ret < 0)
1667 return ret;
1668 else
1669 return 0;
Mark Brownda07ecd2011-09-11 09:53:50 +01001670}
1671EXPORT_SYMBOL_GPL(regulator_disable_deferred);
1672
Liam Girdwood414c70c2008-04-30 15:59:04 +01001673static int _regulator_is_enabled(struct regulator_dev *rdev)
1674{
Mark Brown9a7f6a42010-02-11 17:22:45 +00001675 /* If we don't know then assume that the regulator is always on */
Mark Brown93325462009-08-03 18:49:56 +01001676 if (!rdev->desc->ops->is_enabled)
Mark Brown9a7f6a42010-02-11 17:22:45 +00001677 return 1;
Liam Girdwood414c70c2008-04-30 15:59:04 +01001678
Mark Brown93325462009-08-03 18:49:56 +01001679 return rdev->desc->ops->is_enabled(rdev);
Liam Girdwood414c70c2008-04-30 15:59:04 +01001680}
1681
1682/**
1683 * regulator_is_enabled - is the regulator output enabled
1684 * @regulator: regulator source
1685 *
David Brownell412aec62008-11-16 11:44:46 -08001686 * Returns positive if the regulator driver backing the source/client
1687 * has requested that the device be enabled, zero if it hasn't, else a
1688 * negative errno code.
1689 *
1690 * Note that the device backing this regulator handle can have multiple
1691 * users, so it might be enabled even if regulator_enable() was never
1692 * called for this particular source.
Liam Girdwood414c70c2008-04-30 15:59:04 +01001693 */
1694int regulator_is_enabled(struct regulator *regulator)
1695{
Mark Brown93325462009-08-03 18:49:56 +01001696 int ret;
1697
1698 mutex_lock(&regulator->rdev->mutex);
1699 ret = _regulator_is_enabled(regulator->rdev);
1700 mutex_unlock(&regulator->rdev->mutex);
1701
1702 return ret;
Liam Girdwood414c70c2008-04-30 15:59:04 +01001703}
1704EXPORT_SYMBOL_GPL(regulator_is_enabled);
1705
1706/**
David Brownell4367cfd2009-02-26 11:48:36 -08001707 * regulator_count_voltages - count regulator_list_voltage() selectors
1708 * @regulator: regulator source
1709 *
1710 * Returns number of selectors, or negative errno. Selectors are
1711 * numbered starting at zero, and typically correspond to bitfields
1712 * in hardware registers.
1713 */
1714int regulator_count_voltages(struct regulator *regulator)
1715{
1716 struct regulator_dev *rdev = regulator->rdev;
1717
1718 return rdev->desc->n_voltages ? : -EINVAL;
1719}
1720EXPORT_SYMBOL_GPL(regulator_count_voltages);
1721
1722/**
1723 * regulator_list_voltage - enumerate supported voltages
1724 * @regulator: regulator source
1725 * @selector: identify voltage to list
1726 * Context: can sleep
1727 *
1728 * Returns a voltage that can be passed to @regulator_set_voltage(),
Thomas Weber88393162010-03-16 11:47:56 +01001729 * zero if this selector code can't be used on this system, or a
David Brownell4367cfd2009-02-26 11:48:36 -08001730 * negative errno.
1731 */
1732int regulator_list_voltage(struct regulator *regulator, unsigned selector)
1733{
1734 struct regulator_dev *rdev = regulator->rdev;
1735 struct regulator_ops *ops = rdev->desc->ops;
1736 int ret;
1737
1738 if (!ops->list_voltage || selector >= rdev->desc->n_voltages)
1739 return -EINVAL;
1740
1741 mutex_lock(&rdev->mutex);
1742 ret = ops->list_voltage(rdev, selector);
1743 mutex_unlock(&rdev->mutex);
1744
1745 if (ret > 0) {
1746 if (ret < rdev->constraints->min_uV)
1747 ret = 0;
1748 else if (ret > rdev->constraints->max_uV)
1749 ret = 0;
1750 }
1751
1752 return ret;
1753}
1754EXPORT_SYMBOL_GPL(regulator_list_voltage);
1755
1756/**
Mark Browna7a1ad92009-07-21 16:00:24 +01001757 * regulator_is_supported_voltage - check if a voltage range can be supported
1758 *
1759 * @regulator: Regulator to check.
1760 * @min_uV: Minimum required voltage in uV.
1761 * @max_uV: Maximum required voltage in uV.
1762 *
1763 * Returns a boolean or a negative error code.
1764 */
1765int regulator_is_supported_voltage(struct regulator *regulator,
1766 int min_uV, int max_uV)
1767{
1768 int i, voltages, ret;
1769
1770 ret = regulator_count_voltages(regulator);
1771 if (ret < 0)
1772 return ret;
1773 voltages = ret;
1774
1775 for (i = 0; i < voltages; i++) {
1776 ret = regulator_list_voltage(regulator, i);
1777
1778 if (ret >= min_uV && ret <= max_uV)
1779 return 1;
1780 }
1781
1782 return 0;
1783}
Mark Browna398eaa2011-12-28 12:48:45 +00001784EXPORT_SYMBOL_GPL(regulator_is_supported_voltage);
Mark Browna7a1ad92009-07-21 16:00:24 +01001785
Mark Brown75790252010-12-12 14:25:50 +00001786static int _regulator_do_set_voltage(struct regulator_dev *rdev,
1787 int min_uV, int max_uV)
1788{
1789 int ret;
Linus Walleij77af1b2642011-03-17 13:24:36 +01001790 int delay = 0;
Mark Brown75790252010-12-12 14:25:50 +00001791 unsigned int selector;
1792
1793 trace_regulator_set_voltage(rdev_get_name(rdev), min_uV, max_uV);
1794
Mark Brownbf5892a2011-05-08 22:13:37 +01001795 min_uV += rdev->constraints->uV_offset;
1796 max_uV += rdev->constraints->uV_offset;
1797
Mark Brown75790252010-12-12 14:25:50 +00001798 if (rdev->desc->ops->set_voltage) {
1799 ret = rdev->desc->ops->set_voltage(rdev, min_uV, max_uV,
1800 &selector);
1801
1802 if (rdev->desc->ops->list_voltage)
1803 selector = rdev->desc->ops->list_voltage(rdev,
1804 selector);
1805 else
1806 selector = -1;
Mark Browne8eef822010-12-12 14:36:17 +00001807 } else if (rdev->desc->ops->set_voltage_sel) {
1808 int best_val = INT_MAX;
1809 int i;
1810
1811 selector = 0;
1812
1813 /* Find the smallest voltage that falls within the specified
1814 * range.
1815 */
1816 for (i = 0; i < rdev->desc->n_voltages; i++) {
1817 ret = rdev->desc->ops->list_voltage(rdev, i);
1818 if (ret < 0)
1819 continue;
1820
1821 if (ret < best_val && ret >= min_uV && ret <= max_uV) {
1822 best_val = ret;
1823 selector = i;
1824 }
1825 }
1826
Linus Walleij77af1b2642011-03-17 13:24:36 +01001827 /*
1828 * If we can't obtain the old selector there is not enough
1829 * info to call set_voltage_time_sel().
1830 */
1831 if (rdev->desc->ops->set_voltage_time_sel &&
1832 rdev->desc->ops->get_voltage_sel) {
1833 unsigned int old_selector = 0;
1834
1835 ret = rdev->desc->ops->get_voltage_sel(rdev);
1836 if (ret < 0)
1837 return ret;
1838 old_selector = ret;
1839 delay = rdev->desc->ops->set_voltage_time_sel(rdev,
1840 old_selector, selector);
1841 }
1842
Mark Browne8eef822010-12-12 14:36:17 +00001843 if (best_val != INT_MAX) {
1844 ret = rdev->desc->ops->set_voltage_sel(rdev, selector);
1845 selector = best_val;
1846 } else {
1847 ret = -EINVAL;
1848 }
Mark Brown75790252010-12-12 14:25:50 +00001849 } else {
1850 ret = -EINVAL;
1851 }
1852
Linus Walleij77af1b2642011-03-17 13:24:36 +01001853 /* Insert any necessary delays */
1854 if (delay >= 1000) {
1855 mdelay(delay / 1000);
1856 udelay(delay % 1000);
1857 } else if (delay) {
1858 udelay(delay);
1859 }
1860
Mark Brownded06a52010-12-16 13:59:10 +00001861 if (ret == 0)
1862 _notifier_call_chain(rdev, REGULATOR_EVENT_VOLTAGE_CHANGE,
1863 NULL);
1864
Mark Brown75790252010-12-12 14:25:50 +00001865 trace_regulator_set_voltage_complete(rdev_get_name(rdev), selector);
1866
1867 return ret;
1868}
1869
Mark Browna7a1ad92009-07-21 16:00:24 +01001870/**
Liam Girdwood414c70c2008-04-30 15:59:04 +01001871 * regulator_set_voltage - set regulator output voltage
1872 * @regulator: regulator source
1873 * @min_uV: Minimum required voltage in uV
1874 * @max_uV: Maximum acceptable voltage in uV
1875 *
1876 * Sets a voltage regulator to the desired output voltage. This can be set
1877 * during any regulator state. IOW, regulator can be disabled or enabled.
1878 *
1879 * If the regulator is enabled then the voltage will change to the new value
1880 * immediately otherwise if the regulator is disabled the regulator will
1881 * output at the new voltage when enabled.
1882 *
1883 * NOTE: If the regulator is shared between several devices then the lowest
1884 * request voltage that meets the system constraints will be used.
Mark Brown69279fb2008-12-31 12:52:41 +00001885 * Regulator system constraints must be set for this regulator before
Liam Girdwood414c70c2008-04-30 15:59:04 +01001886 * calling this function otherwise this call will fail.
1887 */
1888int regulator_set_voltage(struct regulator *regulator, int min_uV, int max_uV)
1889{
1890 struct regulator_dev *rdev = regulator->rdev;
Mark Brown95a3c232010-12-16 15:49:37 +00001891 int ret = 0;
Liam Girdwood414c70c2008-04-30 15:59:04 +01001892
1893 mutex_lock(&rdev->mutex);
1894
Mark Brown95a3c232010-12-16 15:49:37 +00001895 /* If we're setting the same range as last time the change
1896 * should be a noop (some cpufreq implementations use the same
1897 * voltage for multiple frequencies, for example).
1898 */
1899 if (regulator->min_uV == min_uV && regulator->max_uV == max_uV)
1900 goto out;
1901
Liam Girdwood414c70c2008-04-30 15:59:04 +01001902 /* sanity check */
Mark Browne8eef822010-12-12 14:36:17 +00001903 if (!rdev->desc->ops->set_voltage &&
1904 !rdev->desc->ops->set_voltage_sel) {
Liam Girdwood414c70c2008-04-30 15:59:04 +01001905 ret = -EINVAL;
1906 goto out;
1907 }
1908
1909 /* constraints check */
1910 ret = regulator_check_voltage(rdev, &min_uV, &max_uV);
1911 if (ret < 0)
1912 goto out;
1913 regulator->min_uV = min_uV;
1914 regulator->max_uV = max_uV;
Mark Brown3a93f2a2010-11-10 14:38:29 +00001915
Thomas Petazzoni05fda3b1a2010-12-03 11:31:07 +01001916 ret = regulator_check_consumers(rdev, &min_uV, &max_uV);
1917 if (ret < 0)
1918 goto out;
1919
Mark Brown75790252010-12-12 14:25:50 +00001920 ret = _regulator_do_set_voltage(rdev, min_uV, max_uV);
Mark Brown02fa3ec2010-11-10 14:38:30 +00001921
Liam Girdwood414c70c2008-04-30 15:59:04 +01001922out:
1923 mutex_unlock(&rdev->mutex);
1924 return ret;
1925}
1926EXPORT_SYMBOL_GPL(regulator_set_voltage);
1927
Mark Brown606a2562010-12-16 15:49:36 +00001928/**
Linus Walleij88cd222b2011-03-17 13:24:52 +01001929 * regulator_set_voltage_time - get raise/fall time
1930 * @regulator: regulator source
1931 * @old_uV: starting voltage in microvolts
1932 * @new_uV: target voltage in microvolts
1933 *
1934 * Provided with the starting and ending voltage, this function attempts to
1935 * calculate the time in microseconds required to rise or fall to this new
1936 * voltage.
1937 */
1938int regulator_set_voltage_time(struct regulator *regulator,
1939 int old_uV, int new_uV)
1940{
1941 struct regulator_dev *rdev = regulator->rdev;
1942 struct regulator_ops *ops = rdev->desc->ops;
1943 int old_sel = -1;
1944 int new_sel = -1;
1945 int voltage;
1946 int i;
1947
1948 /* Currently requires operations to do this */
1949 if (!ops->list_voltage || !ops->set_voltage_time_sel
1950 || !rdev->desc->n_voltages)
1951 return -EINVAL;
1952
1953 for (i = 0; i < rdev->desc->n_voltages; i++) {
1954 /* We only look for exact voltage matches here */
1955 voltage = regulator_list_voltage(regulator, i);
1956 if (voltage < 0)
1957 return -EINVAL;
1958 if (voltage == 0)
1959 continue;
1960 if (voltage == old_uV)
1961 old_sel = i;
1962 if (voltage == new_uV)
1963 new_sel = i;
1964 }
1965
1966 if (old_sel < 0 || new_sel < 0)
1967 return -EINVAL;
1968
1969 return ops->set_voltage_time_sel(rdev, old_sel, new_sel);
1970}
1971EXPORT_SYMBOL_GPL(regulator_set_voltage_time);
1972
1973/**
Mark Brown606a2562010-12-16 15:49:36 +00001974 * regulator_sync_voltage - re-apply last regulator output voltage
1975 * @regulator: regulator source
1976 *
1977 * Re-apply the last configured voltage. This is intended to be used
1978 * where some external control source the consumer is cooperating with
1979 * has caused the configured voltage to change.
1980 */
1981int regulator_sync_voltage(struct regulator *regulator)
1982{
1983 struct regulator_dev *rdev = regulator->rdev;
1984 int ret, min_uV, max_uV;
1985
1986 mutex_lock(&rdev->mutex);
1987
1988 if (!rdev->desc->ops->set_voltage &&
1989 !rdev->desc->ops->set_voltage_sel) {
1990 ret = -EINVAL;
1991 goto out;
1992 }
1993
1994 /* This is only going to work if we've had a voltage configured. */
1995 if (!regulator->min_uV && !regulator->max_uV) {
1996 ret = -EINVAL;
1997 goto out;
1998 }
1999
2000 min_uV = regulator->min_uV;
2001 max_uV = regulator->max_uV;
2002
2003 /* This should be a paranoia check... */
2004 ret = regulator_check_voltage(rdev, &min_uV, &max_uV);
2005 if (ret < 0)
2006 goto out;
2007
2008 ret = regulator_check_consumers(rdev, &min_uV, &max_uV);
2009 if (ret < 0)
2010 goto out;
2011
2012 ret = _regulator_do_set_voltage(rdev, min_uV, max_uV);
2013
2014out:
2015 mutex_unlock(&rdev->mutex);
2016 return ret;
2017}
2018EXPORT_SYMBOL_GPL(regulator_sync_voltage);
2019
Liam Girdwood414c70c2008-04-30 15:59:04 +01002020static int _regulator_get_voltage(struct regulator_dev *rdev)
2021{
Mark Brownbf5892a2011-05-08 22:13:37 +01002022 int sel, ret;
Mark Brown476c2d82010-12-10 17:28:07 +00002023
2024 if (rdev->desc->ops->get_voltage_sel) {
2025 sel = rdev->desc->ops->get_voltage_sel(rdev);
2026 if (sel < 0)
2027 return sel;
Mark Brownbf5892a2011-05-08 22:13:37 +01002028 ret = rdev->desc->ops->list_voltage(rdev, sel);
Axel Lincb220d12011-05-23 20:08:10 +08002029 } else if (rdev->desc->ops->get_voltage) {
Mark Brownbf5892a2011-05-08 22:13:37 +01002030 ret = rdev->desc->ops->get_voltage(rdev);
Axel Lincb220d12011-05-23 20:08:10 +08002031 } else {
Liam Girdwood414c70c2008-04-30 15:59:04 +01002032 return -EINVAL;
Axel Lincb220d12011-05-23 20:08:10 +08002033 }
Mark Brownbf5892a2011-05-08 22:13:37 +01002034
Axel Lincb220d12011-05-23 20:08:10 +08002035 if (ret < 0)
2036 return ret;
Mark Brownbf5892a2011-05-08 22:13:37 +01002037 return ret - rdev->constraints->uV_offset;
Liam Girdwood414c70c2008-04-30 15:59:04 +01002038}
2039
2040/**
2041 * regulator_get_voltage - get regulator output voltage
2042 * @regulator: regulator source
2043 *
2044 * This returns the current regulator voltage in uV.
2045 *
2046 * NOTE: If the regulator is disabled it will return the voltage value. This
2047 * function should not be used to determine regulator state.
2048 */
2049int regulator_get_voltage(struct regulator *regulator)
2050{
2051 int ret;
2052
2053 mutex_lock(&regulator->rdev->mutex);
2054
2055 ret = _regulator_get_voltage(regulator->rdev);
2056
2057 mutex_unlock(&regulator->rdev->mutex);
2058
2059 return ret;
2060}
2061EXPORT_SYMBOL_GPL(regulator_get_voltage);
2062
2063/**
2064 * regulator_set_current_limit - set regulator output current limit
2065 * @regulator: regulator source
2066 * @min_uA: Minimuum supported current in uA
2067 * @max_uA: Maximum supported current in uA
2068 *
2069 * Sets current sink to the desired output current. This can be set during
2070 * any regulator state. IOW, regulator can be disabled or enabled.
2071 *
2072 * If the regulator is enabled then the current will change to the new value
2073 * immediately otherwise if the regulator is disabled the regulator will
2074 * output at the new current when enabled.
2075 *
2076 * NOTE: Regulator system constraints must be set for this regulator before
2077 * calling this function otherwise this call will fail.
2078 */
2079int regulator_set_current_limit(struct regulator *regulator,
2080 int min_uA, int max_uA)
2081{
2082 struct regulator_dev *rdev = regulator->rdev;
2083 int ret;
2084
2085 mutex_lock(&rdev->mutex);
2086
2087 /* sanity check */
2088 if (!rdev->desc->ops->set_current_limit) {
2089 ret = -EINVAL;
2090 goto out;
2091 }
2092
2093 /* constraints check */
2094 ret = regulator_check_current_limit(rdev, &min_uA, &max_uA);
2095 if (ret < 0)
2096 goto out;
2097
2098 ret = rdev->desc->ops->set_current_limit(rdev, min_uA, max_uA);
2099out:
2100 mutex_unlock(&rdev->mutex);
2101 return ret;
2102}
2103EXPORT_SYMBOL_GPL(regulator_set_current_limit);
2104
2105static int _regulator_get_current_limit(struct regulator_dev *rdev)
2106{
2107 int ret;
2108
2109 mutex_lock(&rdev->mutex);
2110
2111 /* sanity check */
2112 if (!rdev->desc->ops->get_current_limit) {
2113 ret = -EINVAL;
2114 goto out;
2115 }
2116
2117 ret = rdev->desc->ops->get_current_limit(rdev);
2118out:
2119 mutex_unlock(&rdev->mutex);
2120 return ret;
2121}
2122
2123/**
2124 * regulator_get_current_limit - get regulator output current
2125 * @regulator: regulator source
2126 *
2127 * This returns the current supplied by the specified current sink in uA.
2128 *
2129 * NOTE: If the regulator is disabled it will return the current value. This
2130 * function should not be used to determine regulator state.
2131 */
2132int regulator_get_current_limit(struct regulator *regulator)
2133{
2134 return _regulator_get_current_limit(regulator->rdev);
2135}
2136EXPORT_SYMBOL_GPL(regulator_get_current_limit);
2137
2138/**
2139 * regulator_set_mode - set regulator operating mode
2140 * @regulator: regulator source
2141 * @mode: operating mode - one of the REGULATOR_MODE constants
2142 *
2143 * Set regulator operating mode to increase regulator efficiency or improve
2144 * regulation performance.
2145 *
2146 * NOTE: Regulator system constraints must be set for this regulator before
2147 * calling this function otherwise this call will fail.
2148 */
2149int regulator_set_mode(struct regulator *regulator, unsigned int mode)
2150{
2151 struct regulator_dev *rdev = regulator->rdev;
2152 int ret;
Sundar R Iyer500b4ac2010-05-17 21:24:48 +05302153 int regulator_curr_mode;
Liam Girdwood414c70c2008-04-30 15:59:04 +01002154
2155 mutex_lock(&rdev->mutex);
2156
2157 /* sanity check */
2158 if (!rdev->desc->ops->set_mode) {
2159 ret = -EINVAL;
2160 goto out;
2161 }
2162
Sundar R Iyer500b4ac2010-05-17 21:24:48 +05302163 /* return if the same mode is requested */
2164 if (rdev->desc->ops->get_mode) {
2165 regulator_curr_mode = rdev->desc->ops->get_mode(rdev);
2166 if (regulator_curr_mode == mode) {
2167 ret = 0;
2168 goto out;
2169 }
2170 }
2171
Liam Girdwood414c70c2008-04-30 15:59:04 +01002172 /* constraints check */
Axel Lin22c51b42011-04-01 18:25:25 +08002173 ret = regulator_mode_constrain(rdev, &mode);
Liam Girdwood414c70c2008-04-30 15:59:04 +01002174 if (ret < 0)
2175 goto out;
2176
2177 ret = rdev->desc->ops->set_mode(rdev, mode);
2178out:
2179 mutex_unlock(&rdev->mutex);
2180 return ret;
2181}
2182EXPORT_SYMBOL_GPL(regulator_set_mode);
2183
2184static unsigned int _regulator_get_mode(struct regulator_dev *rdev)
2185{
2186 int ret;
2187
2188 mutex_lock(&rdev->mutex);
2189
2190 /* sanity check */
2191 if (!rdev->desc->ops->get_mode) {
2192 ret = -EINVAL;
2193 goto out;
2194 }
2195
2196 ret = rdev->desc->ops->get_mode(rdev);
2197out:
2198 mutex_unlock(&rdev->mutex);
2199 return ret;
2200}
2201
2202/**
2203 * regulator_get_mode - get regulator operating mode
2204 * @regulator: regulator source
2205 *
2206 * Get the current regulator operating mode.
2207 */
2208unsigned int regulator_get_mode(struct regulator *regulator)
2209{
2210 return _regulator_get_mode(regulator->rdev);
2211}
2212EXPORT_SYMBOL_GPL(regulator_get_mode);
2213
2214/**
2215 * regulator_set_optimum_mode - set regulator optimum operating mode
2216 * @regulator: regulator source
2217 * @uA_load: load current
2218 *
2219 * Notifies the regulator core of a new device load. This is then used by
2220 * DRMS (if enabled by constraints) to set the most efficient regulator
2221 * operating mode for the new regulator loading.
2222 *
2223 * Consumer devices notify their supply regulator of the maximum power
2224 * they will require (can be taken from device datasheet in the power
2225 * consumption tables) when they change operational status and hence power
2226 * state. Examples of operational state changes that can affect power
2227 * consumption are :-
2228 *
2229 * o Device is opened / closed.
2230 * o Device I/O is about to begin or has just finished.
2231 * o Device is idling in between work.
2232 *
2233 * This information is also exported via sysfs to userspace.
2234 *
2235 * DRMS will sum the total requested load on the regulator and change
2236 * to the most efficient operating mode if platform constraints allow.
2237 *
2238 * Returns the new regulator mode or error.
2239 */
2240int regulator_set_optimum_mode(struct regulator *regulator, int uA_load)
2241{
2242 struct regulator_dev *rdev = regulator->rdev;
2243 struct regulator *consumer;
2244 int ret, output_uV, input_uV, total_uA_load = 0;
2245 unsigned int mode;
2246
2247 mutex_lock(&rdev->mutex);
2248
Mark Browna4b41482011-05-14 11:19:45 -07002249 /*
2250 * first check to see if we can set modes at all, otherwise just
2251 * tell the consumer everything is OK.
2252 */
Liam Girdwood414c70c2008-04-30 15:59:04 +01002253 regulator->uA_load = uA_load;
2254 ret = regulator_check_drms(rdev);
Mark Browna4b41482011-05-14 11:19:45 -07002255 if (ret < 0) {
2256 ret = 0;
Liam Girdwood414c70c2008-04-30 15:59:04 +01002257 goto out;
Mark Browna4b41482011-05-14 11:19:45 -07002258 }
Liam Girdwood414c70c2008-04-30 15:59:04 +01002259
Liam Girdwood414c70c2008-04-30 15:59:04 +01002260 if (!rdev->desc->ops->get_optimum_mode)
2261 goto out;
2262
Mark Browna4b41482011-05-14 11:19:45 -07002263 /*
2264 * we can actually do this so any errors are indicators of
2265 * potential real failure.
2266 */
2267 ret = -EINVAL;
2268
Liam Girdwood414c70c2008-04-30 15:59:04 +01002269 /* get output voltage */
Mark Brown1bf5a1f2010-12-10 17:28:06 +00002270 output_uV = _regulator_get_voltage(rdev);
Liam Girdwood414c70c2008-04-30 15:59:04 +01002271 if (output_uV <= 0) {
Joe Perches5da84fd2010-11-30 05:53:48 -08002272 rdev_err(rdev, "invalid output voltage found\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +01002273 goto out;
2274 }
2275
2276 /* get input voltage */
Mark Brown1bf5a1f2010-12-10 17:28:06 +00002277 input_uV = 0;
2278 if (rdev->supply)
Mark Brown3801b862011-06-09 16:22:22 +01002279 input_uV = regulator_get_voltage(rdev->supply);
Mark Brown1bf5a1f2010-12-10 17:28:06 +00002280 if (input_uV <= 0)
Liam Girdwood414c70c2008-04-30 15:59:04 +01002281 input_uV = rdev->constraints->input_uV;
2282 if (input_uV <= 0) {
Joe Perches5da84fd2010-11-30 05:53:48 -08002283 rdev_err(rdev, "invalid input voltage found\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +01002284 goto out;
2285 }
2286
2287 /* calc total requested load for this regulator */
2288 list_for_each_entry(consumer, &rdev->consumer_list, list)
Stefan Roesefa2984d2009-11-27 15:56:34 +01002289 total_uA_load += consumer->uA_load;
Liam Girdwood414c70c2008-04-30 15:59:04 +01002290
2291 mode = rdev->desc->ops->get_optimum_mode(rdev,
2292 input_uV, output_uV,
2293 total_uA_load);
Mark Brown2c608232011-03-30 06:29:12 +09002294 ret = regulator_mode_constrain(rdev, &mode);
David Brownelle5735202008-11-16 11:46:56 -08002295 if (ret < 0) {
Joe Perches5da84fd2010-11-30 05:53:48 -08002296 rdev_err(rdev, "failed to get optimum mode @ %d uA %d -> %d uV\n",
2297 total_uA_load, input_uV, output_uV);
Liam Girdwood414c70c2008-04-30 15:59:04 +01002298 goto out;
2299 }
2300
2301 ret = rdev->desc->ops->set_mode(rdev, mode);
David Brownelle5735202008-11-16 11:46:56 -08002302 if (ret < 0) {
Joe Perches5da84fd2010-11-30 05:53:48 -08002303 rdev_err(rdev, "failed to set optimum mode %x\n", mode);
Liam Girdwood414c70c2008-04-30 15:59:04 +01002304 goto out;
2305 }
2306 ret = mode;
2307out:
2308 mutex_unlock(&rdev->mutex);
2309 return ret;
2310}
2311EXPORT_SYMBOL_GPL(regulator_set_optimum_mode);
2312
2313/**
2314 * regulator_register_notifier - register regulator event notifier
2315 * @regulator: regulator source
Mark Brown69279fb2008-12-31 12:52:41 +00002316 * @nb: notifier block
Liam Girdwood414c70c2008-04-30 15:59:04 +01002317 *
2318 * Register notifier block to receive regulator events.
2319 */
2320int regulator_register_notifier(struct regulator *regulator,
2321 struct notifier_block *nb)
2322{
2323 return blocking_notifier_chain_register(&regulator->rdev->notifier,
2324 nb);
2325}
2326EXPORT_SYMBOL_GPL(regulator_register_notifier);
2327
2328/**
2329 * regulator_unregister_notifier - unregister regulator event notifier
2330 * @regulator: regulator source
Mark Brown69279fb2008-12-31 12:52:41 +00002331 * @nb: notifier block
Liam Girdwood414c70c2008-04-30 15:59:04 +01002332 *
2333 * Unregister regulator event notifier block.
2334 */
2335int regulator_unregister_notifier(struct regulator *regulator,
2336 struct notifier_block *nb)
2337{
2338 return blocking_notifier_chain_unregister(&regulator->rdev->notifier,
2339 nb);
2340}
2341EXPORT_SYMBOL_GPL(regulator_unregister_notifier);
2342
Jonathan Cameronb136fb42009-01-19 18:20:58 +00002343/* notify regulator consumers and downstream regulator consumers.
2344 * Note mutex must be held by caller.
2345 */
Liam Girdwood414c70c2008-04-30 15:59:04 +01002346static void _notifier_call_chain(struct regulator_dev *rdev,
2347 unsigned long event, void *data)
2348{
Liam Girdwood414c70c2008-04-30 15:59:04 +01002349 /* call rdev chain first */
Liam Girdwood414c70c2008-04-30 15:59:04 +01002350 blocking_notifier_call_chain(&rdev->notifier, event, NULL);
Liam Girdwood414c70c2008-04-30 15:59:04 +01002351}
2352
2353/**
2354 * regulator_bulk_get - get multiple regulator consumers
2355 *
2356 * @dev: Device to supply
2357 * @num_consumers: Number of consumers to register
2358 * @consumers: Configuration of consumers; clients are stored here.
2359 *
2360 * @return 0 on success, an errno on failure.
2361 *
2362 * This helper function allows drivers to get several regulator
2363 * consumers in one operation. If any of the regulators cannot be
2364 * acquired then any regulators that were allocated will be freed
2365 * before returning to the caller.
2366 */
2367int regulator_bulk_get(struct device *dev, int num_consumers,
2368 struct regulator_bulk_data *consumers)
2369{
2370 int i;
2371 int ret;
2372
2373 for (i = 0; i < num_consumers; i++)
2374 consumers[i].consumer = NULL;
2375
2376 for (i = 0; i < num_consumers; i++) {
2377 consumers[i].consumer = regulator_get(dev,
2378 consumers[i].supply);
2379 if (IS_ERR(consumers[i].consumer)) {
Liam Girdwood414c70c2008-04-30 15:59:04 +01002380 ret = PTR_ERR(consumers[i].consumer);
Mark Brown5b307622009-10-13 13:06:49 +01002381 dev_err(dev, "Failed to get supply '%s': %d\n",
2382 consumers[i].supply, ret);
Liam Girdwood414c70c2008-04-30 15:59:04 +01002383 consumers[i].consumer = NULL;
2384 goto err;
2385 }
2386 }
2387
2388 return 0;
2389
2390err:
Axel Linb29c7692012-02-20 10:32:16 +08002391 while (--i >= 0)
Liam Girdwood414c70c2008-04-30 15:59:04 +01002392 regulator_put(consumers[i].consumer);
2393
2394 return ret;
2395}
2396EXPORT_SYMBOL_GPL(regulator_bulk_get);
2397
Mark Brownf21e0e82011-05-24 08:12:40 +08002398static void regulator_bulk_enable_async(void *data, async_cookie_t cookie)
2399{
2400 struct regulator_bulk_data *bulk = data;
2401
2402 bulk->ret = regulator_enable(bulk->consumer);
2403}
2404
Liam Girdwood414c70c2008-04-30 15:59:04 +01002405/**
2406 * regulator_bulk_enable - enable multiple regulator consumers
2407 *
2408 * @num_consumers: Number of consumers
2409 * @consumers: Consumer data; clients are stored here.
2410 * @return 0 on success, an errno on failure
2411 *
2412 * This convenience API allows consumers to enable multiple regulator
2413 * clients in a single API call. If any consumers cannot be enabled
2414 * then any others that were enabled will be disabled again prior to
2415 * return.
2416 */
2417int regulator_bulk_enable(int num_consumers,
2418 struct regulator_bulk_data *consumers)
2419{
Mark Brownf21e0e82011-05-24 08:12:40 +08002420 LIST_HEAD(async_domain);
Liam Girdwood414c70c2008-04-30 15:59:04 +01002421 int i;
Mark Brownf21e0e82011-05-24 08:12:40 +08002422 int ret = 0;
Liam Girdwood414c70c2008-04-30 15:59:04 +01002423
Mark Brownf21e0e82011-05-24 08:12:40 +08002424 for (i = 0; i < num_consumers; i++)
2425 async_schedule_domain(regulator_bulk_enable_async,
2426 &consumers[i], &async_domain);
2427
2428 async_synchronize_full_domain(&async_domain);
2429
2430 /* If any consumer failed we need to unwind any that succeeded */
Liam Girdwood414c70c2008-04-30 15:59:04 +01002431 for (i = 0; i < num_consumers; i++) {
Mark Brownf21e0e82011-05-24 08:12:40 +08002432 if (consumers[i].ret != 0) {
2433 ret = consumers[i].ret;
Liam Girdwood414c70c2008-04-30 15:59:04 +01002434 goto err;
Mark Brownf21e0e82011-05-24 08:12:40 +08002435 }
Liam Girdwood414c70c2008-04-30 15:59:04 +01002436 }
2437
2438 return 0;
2439
2440err:
Axel Linb29c7692012-02-20 10:32:16 +08002441 pr_err("Failed to enable %s: %d\n", consumers[i].supply, ret);
2442 while (--i >= 0)
2443 regulator_disable(consumers[i].consumer);
Liam Girdwood414c70c2008-04-30 15:59:04 +01002444
2445 return ret;
2446}
2447EXPORT_SYMBOL_GPL(regulator_bulk_enable);
2448
2449/**
2450 * regulator_bulk_disable - disable multiple regulator consumers
2451 *
2452 * @num_consumers: Number of consumers
2453 * @consumers: Consumer data; clients are stored here.
2454 * @return 0 on success, an errno on failure
2455 *
2456 * This convenience API allows consumers to disable multiple regulator
Sylwester Nawrocki49e22632012-01-25 12:35:38 +01002457 * clients in a single API call. If any consumers cannot be disabled
2458 * then any others that were disabled will be enabled again prior to
Liam Girdwood414c70c2008-04-30 15:59:04 +01002459 * return.
2460 */
2461int regulator_bulk_disable(int num_consumers,
2462 struct regulator_bulk_data *consumers)
2463{
2464 int i;
2465 int ret;
2466
Sylwester Nawrocki49e22632012-01-25 12:35:38 +01002467 for (i = num_consumers - 1; i >= 0; --i) {
Liam Girdwood414c70c2008-04-30 15:59:04 +01002468 ret = regulator_disable(consumers[i].consumer);
2469 if (ret != 0)
2470 goto err;
2471 }
2472
2473 return 0;
2474
2475err:
Joe Perches5da84fd2010-11-30 05:53:48 -08002476 pr_err("Failed to disable %s: %d\n", consumers[i].supply, ret);
Sylwester Nawrocki49e22632012-01-25 12:35:38 +01002477 for (++i; i < num_consumers; ++i)
Liam Girdwood414c70c2008-04-30 15:59:04 +01002478 regulator_enable(consumers[i].consumer);
2479
2480 return ret;
2481}
2482EXPORT_SYMBOL_GPL(regulator_bulk_disable);
2483
2484/**
Donggeun Kime1de2f42012-01-03 16:22:03 +09002485 * regulator_bulk_force_disable - force disable multiple regulator consumers
2486 *
2487 * @num_consumers: Number of consumers
2488 * @consumers: Consumer data; clients are stored here.
2489 * @return 0 on success, an errno on failure
2490 *
2491 * This convenience API allows consumers to forcibly disable multiple regulator
2492 * clients in a single API call.
2493 * NOTE: This should be used for situations when device damage will
2494 * likely occur if the regulators are not disabled (e.g. over temp).
2495 * Although regulator_force_disable function call for some consumers can
2496 * return error numbers, the function is called for all consumers.
2497 */
2498int regulator_bulk_force_disable(int num_consumers,
2499 struct regulator_bulk_data *consumers)
2500{
2501 int i;
2502 int ret;
2503
2504 for (i = 0; i < num_consumers; i++)
2505 consumers[i].ret =
2506 regulator_force_disable(consumers[i].consumer);
2507
2508 for (i = 0; i < num_consumers; i++) {
2509 if (consumers[i].ret != 0) {
2510 ret = consumers[i].ret;
2511 goto out;
2512 }
2513 }
2514
2515 return 0;
2516out:
2517 return ret;
2518}
2519EXPORT_SYMBOL_GPL(regulator_bulk_force_disable);
2520
2521/**
Liam Girdwood414c70c2008-04-30 15:59:04 +01002522 * regulator_bulk_free - free multiple regulator consumers
2523 *
2524 * @num_consumers: Number of consumers
2525 * @consumers: Consumer data; clients are stored here.
2526 *
2527 * This convenience API allows consumers to free multiple regulator
2528 * clients in a single API call.
2529 */
2530void regulator_bulk_free(int num_consumers,
2531 struct regulator_bulk_data *consumers)
2532{
2533 int i;
2534
2535 for (i = 0; i < num_consumers; i++) {
2536 regulator_put(consumers[i].consumer);
2537 consumers[i].consumer = NULL;
2538 }
2539}
2540EXPORT_SYMBOL_GPL(regulator_bulk_free);
2541
2542/**
2543 * regulator_notifier_call_chain - call regulator event notifier
Mark Brown69279fb2008-12-31 12:52:41 +00002544 * @rdev: regulator source
Liam Girdwood414c70c2008-04-30 15:59:04 +01002545 * @event: notifier block
Mark Brown69279fb2008-12-31 12:52:41 +00002546 * @data: callback-specific data.
Liam Girdwood414c70c2008-04-30 15:59:04 +01002547 *
2548 * Called by regulator drivers to notify clients a regulator event has
2549 * occurred. We also notify regulator clients downstream.
Jonathan Cameronb136fb42009-01-19 18:20:58 +00002550 * Note lock must be held by caller.
Liam Girdwood414c70c2008-04-30 15:59:04 +01002551 */
2552int regulator_notifier_call_chain(struct regulator_dev *rdev,
2553 unsigned long event, void *data)
2554{
2555 _notifier_call_chain(rdev, event, data);
2556 return NOTIFY_DONE;
2557
2558}
2559EXPORT_SYMBOL_GPL(regulator_notifier_call_chain);
2560
Mark Brownbe721972009-08-04 20:09:52 +02002561/**
2562 * regulator_mode_to_status - convert a regulator mode into a status
2563 *
2564 * @mode: Mode to convert
2565 *
2566 * Convert a regulator mode into a status.
2567 */
2568int regulator_mode_to_status(unsigned int mode)
2569{
2570 switch (mode) {
2571 case REGULATOR_MODE_FAST:
2572 return REGULATOR_STATUS_FAST;
2573 case REGULATOR_MODE_NORMAL:
2574 return REGULATOR_STATUS_NORMAL;
2575 case REGULATOR_MODE_IDLE:
2576 return REGULATOR_STATUS_IDLE;
2577 case REGULATOR_STATUS_STANDBY:
2578 return REGULATOR_STATUS_STANDBY;
2579 default:
2580 return 0;
2581 }
2582}
2583EXPORT_SYMBOL_GPL(regulator_mode_to_status);
2584
David Brownell7ad68e22008-11-11 17:39:02 -08002585/*
2586 * To avoid cluttering sysfs (and memory) with useless state, only
2587 * create attributes that can be meaningfully displayed.
2588 */
2589static int add_regulator_attributes(struct regulator_dev *rdev)
2590{
2591 struct device *dev = &rdev->dev;
2592 struct regulator_ops *ops = rdev->desc->ops;
2593 int status = 0;
2594
2595 /* some attributes need specific methods to be displayed */
Mark Brown4c788992011-11-02 11:39:09 +00002596 if ((ops->get_voltage && ops->get_voltage(rdev) >= 0) ||
2597 (ops->get_voltage_sel && ops->get_voltage_sel(rdev) >= 0)) {
David Brownell7ad68e22008-11-11 17:39:02 -08002598 status = device_create_file(dev, &dev_attr_microvolts);
2599 if (status < 0)
2600 return status;
2601 }
2602 if (ops->get_current_limit) {
2603 status = device_create_file(dev, &dev_attr_microamps);
2604 if (status < 0)
2605 return status;
2606 }
2607 if (ops->get_mode) {
2608 status = device_create_file(dev, &dev_attr_opmode);
2609 if (status < 0)
2610 return status;
2611 }
2612 if (ops->is_enabled) {
2613 status = device_create_file(dev, &dev_attr_state);
2614 if (status < 0)
2615 return status;
2616 }
David Brownell853116a2009-01-14 23:03:17 -08002617 if (ops->get_status) {
2618 status = device_create_file(dev, &dev_attr_status);
2619 if (status < 0)
2620 return status;
2621 }
David Brownell7ad68e22008-11-11 17:39:02 -08002622
2623 /* some attributes are type-specific */
2624 if (rdev->desc->type == REGULATOR_CURRENT) {
2625 status = device_create_file(dev, &dev_attr_requested_microamps);
2626 if (status < 0)
2627 return status;
2628 }
2629
2630 /* all the other attributes exist to support constraints;
2631 * don't show them if there are no constraints, or if the
2632 * relevant supporting methods are missing.
2633 */
2634 if (!rdev->constraints)
2635 return status;
2636
2637 /* constraints need specific supporting methods */
Mark Browne8eef822010-12-12 14:36:17 +00002638 if (ops->set_voltage || ops->set_voltage_sel) {
David Brownell7ad68e22008-11-11 17:39:02 -08002639 status = device_create_file(dev, &dev_attr_min_microvolts);
2640 if (status < 0)
2641 return status;
2642 status = device_create_file(dev, &dev_attr_max_microvolts);
2643 if (status < 0)
2644 return status;
2645 }
2646 if (ops->set_current_limit) {
2647 status = device_create_file(dev, &dev_attr_min_microamps);
2648 if (status < 0)
2649 return status;
2650 status = device_create_file(dev, &dev_attr_max_microamps);
2651 if (status < 0)
2652 return status;
2653 }
2654
2655 /* suspend mode constraints need multiple supporting methods */
2656 if (!(ops->set_suspend_enable && ops->set_suspend_disable))
2657 return status;
2658
2659 status = device_create_file(dev, &dev_attr_suspend_standby_state);
2660 if (status < 0)
2661 return status;
2662 status = device_create_file(dev, &dev_attr_suspend_mem_state);
2663 if (status < 0)
2664 return status;
2665 status = device_create_file(dev, &dev_attr_suspend_disk_state);
2666 if (status < 0)
2667 return status;
2668
2669 if (ops->set_suspend_voltage) {
2670 status = device_create_file(dev,
2671 &dev_attr_suspend_standby_microvolts);
2672 if (status < 0)
2673 return status;
2674 status = device_create_file(dev,
2675 &dev_attr_suspend_mem_microvolts);
2676 if (status < 0)
2677 return status;
2678 status = device_create_file(dev,
2679 &dev_attr_suspend_disk_microvolts);
2680 if (status < 0)
2681 return status;
2682 }
2683
2684 if (ops->set_suspend_mode) {
2685 status = device_create_file(dev,
2686 &dev_attr_suspend_standby_mode);
2687 if (status < 0)
2688 return status;
2689 status = device_create_file(dev,
2690 &dev_attr_suspend_mem_mode);
2691 if (status < 0)
2692 return status;
2693 status = device_create_file(dev,
2694 &dev_attr_suspend_disk_mode);
2695 if (status < 0)
2696 return status;
2697 }
2698
2699 return status;
2700}
2701
Mark Brown1130e5b2010-12-21 23:49:31 +00002702static void rdev_init_debugfs(struct regulator_dev *rdev)
2703{
Mark Brown1130e5b2010-12-21 23:49:31 +00002704 rdev->debugfs = debugfs_create_dir(rdev_get_name(rdev), debugfs_root);
Stephen Boyd24751432012-02-20 22:50:42 -08002705 if (!rdev->debugfs) {
Mark Brown1130e5b2010-12-21 23:49:31 +00002706 rdev_warn(rdev, "Failed to create debugfs directory\n");
Mark Brown1130e5b2010-12-21 23:49:31 +00002707 return;
2708 }
2709
2710 debugfs_create_u32("use_count", 0444, rdev->debugfs,
2711 &rdev->use_count);
2712 debugfs_create_u32("open_count", 0444, rdev->debugfs,
2713 &rdev->open_count);
Mark Brown1130e5b2010-12-21 23:49:31 +00002714}
2715
Liam Girdwood414c70c2008-04-30 15:59:04 +01002716/**
2717 * regulator_register - register regulator
Mark Brown69279fb2008-12-31 12:52:41 +00002718 * @regulator_desc: regulator to register
2719 * @dev: struct device for the regulator
Mark Brown05271002009-01-19 13:37:02 +00002720 * @init_data: platform provided init data, passed through by driver
Mark Brown69279fb2008-12-31 12:52:41 +00002721 * @driver_data: private regulator data
Liam Girdwood414c70c2008-04-30 15:59:04 +01002722 *
2723 * Called by regulator drivers to register a regulator.
2724 * Returns 0 on success.
2725 */
2726struct regulator_dev *regulator_register(struct regulator_desc *regulator_desc,
Mark Brownf8c12fe2010-11-29 15:55:17 +00002727 struct device *dev, const struct regulator_init_data *init_data,
Rajendra Nayak2c043bc2011-11-18 16:47:19 +05302728 void *driver_data, struct device_node *of_node)
Liam Girdwood414c70c2008-04-30 15:59:04 +01002729{
Mark Brown9a8f5e02011-11-29 18:11:19 +00002730 const struct regulation_constraints *constraints = NULL;
Liam Girdwood414c70c2008-04-30 15:59:04 +01002731 static atomic_t regulator_no = ATOMIC_INIT(0);
2732 struct regulator_dev *rdev;
Liam Girdwooda5766f12008-10-10 13:22:20 +01002733 int ret, i;
Rajendra Nayak69511a42011-11-18 16:47:20 +05302734 const char *supply = NULL;
Liam Girdwood414c70c2008-04-30 15:59:04 +01002735
2736 if (regulator_desc == NULL)
2737 return ERR_PTR(-EINVAL);
2738
2739 if (regulator_desc->name == NULL || regulator_desc->ops == NULL)
2740 return ERR_PTR(-EINVAL);
2741
Diego Lizierocd78dfc2009-04-14 03:04:47 +02002742 if (regulator_desc->type != REGULATOR_VOLTAGE &&
2743 regulator_desc->type != REGULATOR_CURRENT)
Liam Girdwood414c70c2008-04-30 15:59:04 +01002744 return ERR_PTR(-EINVAL);
2745
Mark Brown476c2d82010-12-10 17:28:07 +00002746 /* Only one of each should be implemented */
2747 WARN_ON(regulator_desc->ops->get_voltage &&
2748 regulator_desc->ops->get_voltage_sel);
Mark Browne8eef822010-12-12 14:36:17 +00002749 WARN_ON(regulator_desc->ops->set_voltage &&
2750 regulator_desc->ops->set_voltage_sel);
Mark Brown476c2d82010-12-10 17:28:07 +00002751
2752 /* If we're using selectors we must implement list_voltage. */
2753 if (regulator_desc->ops->get_voltage_sel &&
2754 !regulator_desc->ops->list_voltage) {
2755 return ERR_PTR(-EINVAL);
2756 }
Mark Browne8eef822010-12-12 14:36:17 +00002757 if (regulator_desc->ops->set_voltage_sel &&
2758 !regulator_desc->ops->list_voltage) {
2759 return ERR_PTR(-EINVAL);
2760 }
Mark Brown476c2d82010-12-10 17:28:07 +00002761
Liam Girdwood414c70c2008-04-30 15:59:04 +01002762 rdev = kzalloc(sizeof(struct regulator_dev), GFP_KERNEL);
2763 if (rdev == NULL)
2764 return ERR_PTR(-ENOMEM);
2765
2766 mutex_lock(&regulator_list_mutex);
2767
2768 mutex_init(&rdev->mutex);
Liam Girdwooda5766f12008-10-10 13:22:20 +01002769 rdev->reg_data = driver_data;
Liam Girdwood414c70c2008-04-30 15:59:04 +01002770 rdev->owner = regulator_desc->owner;
2771 rdev->desc = regulator_desc;
2772 INIT_LIST_HEAD(&rdev->consumer_list);
Liam Girdwood414c70c2008-04-30 15:59:04 +01002773 INIT_LIST_HEAD(&rdev->list);
Liam Girdwood414c70c2008-04-30 15:59:04 +01002774 BLOCKING_INIT_NOTIFIER_HEAD(&rdev->notifier);
Mark Brownda07ecd2011-09-11 09:53:50 +01002775 INIT_DELAYED_WORK(&rdev->disable_work, regulator_disable_work);
Liam Girdwood414c70c2008-04-30 15:59:04 +01002776
Liam Girdwooda5766f12008-10-10 13:22:20 +01002777 /* preform any regulator specific init */
Mark Brown9a8f5e02011-11-29 18:11:19 +00002778 if (init_data && init_data->regulator_init) {
Liam Girdwooda5766f12008-10-10 13:22:20 +01002779 ret = init_data->regulator_init(rdev->reg_data);
David Brownell4fca9542008-11-11 17:38:53 -08002780 if (ret < 0)
2781 goto clean;
Liam Girdwooda5766f12008-10-10 13:22:20 +01002782 }
Liam Girdwood414c70c2008-04-30 15:59:04 +01002783
Liam Girdwooda5766f12008-10-10 13:22:20 +01002784 /* register with sysfs */
2785 rdev->dev.class = &regulator_class;
Rajendra Nayak2c043bc2011-11-18 16:47:19 +05302786 rdev->dev.of_node = of_node;
Liam Girdwooda5766f12008-10-10 13:22:20 +01002787 rdev->dev.parent = dev;
Kay Sievers812460a2008-11-02 03:55:10 +01002788 dev_set_name(&rdev->dev, "regulator.%d",
2789 atomic_inc_return(&regulator_no) - 1);
Liam Girdwooda5766f12008-10-10 13:22:20 +01002790 ret = device_register(&rdev->dev);
Vasiliy Kulikovad7725c2010-09-19 16:55:01 +04002791 if (ret != 0) {
2792 put_device(&rdev->dev);
David Brownell4fca9542008-11-11 17:38:53 -08002793 goto clean;
Vasiliy Kulikovad7725c2010-09-19 16:55:01 +04002794 }
Liam Girdwooda5766f12008-10-10 13:22:20 +01002795
2796 dev_set_drvdata(&rdev->dev, rdev);
2797
Mike Rapoport74f544c2008-11-25 14:53:53 +02002798 /* set regulator constraints */
Mark Brown9a8f5e02011-11-29 18:11:19 +00002799 if (init_data)
2800 constraints = &init_data->constraints;
2801
2802 ret = set_machine_constraints(rdev, constraints);
Mike Rapoport74f544c2008-11-25 14:53:53 +02002803 if (ret < 0)
2804 goto scrub;
2805
David Brownell7ad68e22008-11-11 17:39:02 -08002806 /* add attributes supported by this regulator */
2807 ret = add_regulator_attributes(rdev);
2808 if (ret < 0)
2809 goto scrub;
2810
Mark Brown9a8f5e02011-11-29 18:11:19 +00002811 if (init_data && init_data->supply_regulator)
Rajendra Nayak69511a42011-11-18 16:47:20 +05302812 supply = init_data->supply_regulator;
2813 else if (regulator_desc->supply_name)
2814 supply = regulator_desc->supply_name;
2815
2816 if (supply) {
Mark Brown0178f3e2010-04-26 15:18:14 +01002817 struct regulator_dev *r;
Mark Brown0178f3e2010-04-26 15:18:14 +01002818
Rajendra Nayak69511a42011-11-18 16:47:20 +05302819 r = regulator_dev_lookup(dev, supply);
Mark Brown0178f3e2010-04-26 15:18:14 +01002820
Rajendra Nayak69511a42011-11-18 16:47:20 +05302821 if (!r) {
2822 dev_err(dev, "Failed to find supply %s\n", supply);
Axel Lin7727da22010-11-05 15:27:17 +08002823 ret = -ENODEV;
Mark Brown0178f3e2010-04-26 15:18:14 +01002824 goto scrub;
2825 }
2826
2827 ret = set_supply(rdev, r);
2828 if (ret < 0)
2829 goto scrub;
Laxman Dewanganb2296bd2012-01-02 13:08:45 +05302830
2831 /* Enable supply if rail is enabled */
2832 if (rdev->desc->ops->is_enabled &&
2833 rdev->desc->ops->is_enabled(rdev)) {
2834 ret = regulator_enable(rdev->supply);
2835 if (ret < 0)
2836 goto scrub;
2837 }
Mark Brown0178f3e2010-04-26 15:18:14 +01002838 }
2839
Liam Girdwooda5766f12008-10-10 13:22:20 +01002840 /* add consumers devices */
Mark Brown9a8f5e02011-11-29 18:11:19 +00002841 if (init_data) {
2842 for (i = 0; i < init_data->num_consumer_supplies; i++) {
2843 ret = set_consumer_device_supply(rdev,
2844 init_data->consumer_supplies[i].dev,
2845 init_data->consumer_supplies[i].dev_name,
Mark Brown23c2f042011-02-24 17:39:09 +00002846 init_data->consumer_supplies[i].supply);
Mark Brown9a8f5e02011-11-29 18:11:19 +00002847 if (ret < 0) {
2848 dev_err(dev, "Failed to set supply %s\n",
2849 init_data->consumer_supplies[i].supply);
2850 goto unset_supplies;
2851 }
Mark Brown23c2f042011-02-24 17:39:09 +00002852 }
Liam Girdwooda5766f12008-10-10 13:22:20 +01002853 }
2854
2855 list_add(&rdev->list, &regulator_list);
Mark Brown1130e5b2010-12-21 23:49:31 +00002856
2857 rdev_init_debugfs(rdev);
Liam Girdwooda5766f12008-10-10 13:22:20 +01002858out:
Liam Girdwood414c70c2008-04-30 15:59:04 +01002859 mutex_unlock(&regulator_list_mutex);
2860 return rdev;
David Brownell4fca9542008-11-11 17:38:53 -08002861
Jani Nikulad4033b52010-04-29 10:55:11 +03002862unset_supplies:
2863 unset_regulator_supplies(rdev);
2864
David Brownell4fca9542008-11-11 17:38:53 -08002865scrub:
Axel Lin1a6958e72011-07-15 10:50:43 +08002866 kfree(rdev->constraints);
David Brownell4fca9542008-11-11 17:38:53 -08002867 device_unregister(&rdev->dev);
Paul Walmsley53032da2009-04-25 05:28:36 -06002868 /* device core frees rdev */
2869 rdev = ERR_PTR(ret);
2870 goto out;
2871
David Brownell4fca9542008-11-11 17:38:53 -08002872clean:
2873 kfree(rdev);
2874 rdev = ERR_PTR(ret);
2875 goto out;
Liam Girdwood414c70c2008-04-30 15:59:04 +01002876}
2877EXPORT_SYMBOL_GPL(regulator_register);
2878
2879/**
2880 * regulator_unregister - unregister regulator
Mark Brown69279fb2008-12-31 12:52:41 +00002881 * @rdev: regulator to unregister
Liam Girdwood414c70c2008-04-30 15:59:04 +01002882 *
2883 * Called by regulator drivers to unregister a regulator.
2884 */
2885void regulator_unregister(struct regulator_dev *rdev)
2886{
2887 if (rdev == NULL)
2888 return;
2889
2890 mutex_lock(&regulator_list_mutex);
Mark Brown1130e5b2010-12-21 23:49:31 +00002891 debugfs_remove_recursive(rdev->debugfs);
Mark Brownda07ecd2011-09-11 09:53:50 +01002892 flush_work_sync(&rdev->disable_work.work);
Mark Brown6bf87d12009-07-21 16:00:25 +01002893 WARN_ON(rdev->open_count);
Mike Rapoport0f1d7472009-01-22 16:00:29 +02002894 unset_regulator_supplies(rdev);
Liam Girdwood414c70c2008-04-30 15:59:04 +01002895 list_del(&rdev->list);
2896 if (rdev->supply)
Mark Brown3801b862011-06-09 16:22:22 +01002897 regulator_put(rdev->supply);
Mark Brownf8c12fe2010-11-29 15:55:17 +00002898 kfree(rdev->constraints);
Lothar Waßmann58fb5cf2011-11-28 15:38:37 +01002899 device_unregister(&rdev->dev);
Liam Girdwood414c70c2008-04-30 15:59:04 +01002900 mutex_unlock(&regulator_list_mutex);
2901}
2902EXPORT_SYMBOL_GPL(regulator_unregister);
2903
2904/**
Mark Browncf7bbcd2008-12-31 12:52:43 +00002905 * regulator_suspend_prepare - prepare regulators for system wide suspend
Liam Girdwood414c70c2008-04-30 15:59:04 +01002906 * @state: system suspend state
2907 *
2908 * Configure each regulator with it's suspend operating parameters for state.
2909 * This will usually be called by machine suspend code prior to supending.
2910 */
2911int regulator_suspend_prepare(suspend_state_t state)
2912{
2913 struct regulator_dev *rdev;
2914 int ret = 0;
2915
2916 /* ON is handled by regulator active state */
2917 if (state == PM_SUSPEND_ON)
2918 return -EINVAL;
2919
2920 mutex_lock(&regulator_list_mutex);
2921 list_for_each_entry(rdev, &regulator_list, list) {
2922
2923 mutex_lock(&rdev->mutex);
2924 ret = suspend_prepare(rdev, state);
2925 mutex_unlock(&rdev->mutex);
2926
2927 if (ret < 0) {
Joe Perches5da84fd2010-11-30 05:53:48 -08002928 rdev_err(rdev, "failed to prepare\n");
Liam Girdwood414c70c2008-04-30 15:59:04 +01002929 goto out;
2930 }
2931 }
2932out:
2933 mutex_unlock(&regulator_list_mutex);
2934 return ret;
2935}
2936EXPORT_SYMBOL_GPL(regulator_suspend_prepare);
2937
2938/**
MyungJoo Ham7a32b582011-03-11 10:13:59 +09002939 * regulator_suspend_finish - resume regulators from system wide suspend
2940 *
2941 * Turn on regulators that might be turned off by regulator_suspend_prepare
2942 * and that should be turned on according to the regulators properties.
2943 */
2944int regulator_suspend_finish(void)
2945{
2946 struct regulator_dev *rdev;
2947 int ret = 0, error;
2948
2949 mutex_lock(&regulator_list_mutex);
2950 list_for_each_entry(rdev, &regulator_list, list) {
2951 struct regulator_ops *ops = rdev->desc->ops;
2952
2953 mutex_lock(&rdev->mutex);
2954 if ((rdev->use_count > 0 || rdev->constraints->always_on) &&
2955 ops->enable) {
2956 error = ops->enable(rdev);
2957 if (error)
2958 ret = error;
2959 } else {
2960 if (!has_full_constraints)
2961 goto unlock;
2962 if (!ops->disable)
2963 goto unlock;
2964 if (ops->is_enabled && !ops->is_enabled(rdev))
2965 goto unlock;
2966
2967 error = ops->disable(rdev);
2968 if (error)
2969 ret = error;
2970 }
2971unlock:
2972 mutex_unlock(&rdev->mutex);
2973 }
2974 mutex_unlock(&regulator_list_mutex);
2975 return ret;
2976}
2977EXPORT_SYMBOL_GPL(regulator_suspend_finish);
2978
2979/**
Mark Brownca725562009-03-16 19:36:34 +00002980 * regulator_has_full_constraints - the system has fully specified constraints
2981 *
2982 * Calling this function will cause the regulator API to disable all
2983 * regulators which have a zero use count and don't have an always_on
2984 * constraint in a late_initcall.
2985 *
2986 * The intention is that this will become the default behaviour in a
2987 * future kernel release so users are encouraged to use this facility
2988 * now.
2989 */
2990void regulator_has_full_constraints(void)
2991{
2992 has_full_constraints = 1;
2993}
2994EXPORT_SYMBOL_GPL(regulator_has_full_constraints);
2995
2996/**
Mark Brown688fe992010-10-05 19:18:32 -07002997 * regulator_use_dummy_regulator - Provide a dummy regulator when none is found
2998 *
2999 * Calling this function will cause the regulator API to provide a
3000 * dummy regulator to consumers if no physical regulator is found,
3001 * allowing most consumers to proceed as though a regulator were
3002 * configured. This allows systems such as those with software
3003 * controllable regulators for the CPU core only to be brought up more
3004 * readily.
3005 */
3006void regulator_use_dummy_regulator(void)
3007{
3008 board_wants_dummy_regulator = true;
3009}
3010EXPORT_SYMBOL_GPL(regulator_use_dummy_regulator);
3011
3012/**
Liam Girdwood414c70c2008-04-30 15:59:04 +01003013 * rdev_get_drvdata - get rdev regulator driver data
Mark Brown69279fb2008-12-31 12:52:41 +00003014 * @rdev: regulator
Liam Girdwood414c70c2008-04-30 15:59:04 +01003015 *
3016 * Get rdev regulator driver private data. This call can be used in the
3017 * regulator driver context.
3018 */
3019void *rdev_get_drvdata(struct regulator_dev *rdev)
3020{
3021 return rdev->reg_data;
3022}
3023EXPORT_SYMBOL_GPL(rdev_get_drvdata);
3024
3025/**
3026 * regulator_get_drvdata - get regulator driver data
3027 * @regulator: regulator
3028 *
3029 * Get regulator driver private data. This call can be used in the consumer
3030 * driver context when non API regulator specific functions need to be called.
3031 */
3032void *regulator_get_drvdata(struct regulator *regulator)
3033{
3034 return regulator->rdev->reg_data;
3035}
3036EXPORT_SYMBOL_GPL(regulator_get_drvdata);
3037
3038/**
3039 * regulator_set_drvdata - set regulator driver data
3040 * @regulator: regulator
3041 * @data: data
3042 */
3043void regulator_set_drvdata(struct regulator *regulator, void *data)
3044{
3045 regulator->rdev->reg_data = data;
3046}
3047EXPORT_SYMBOL_GPL(regulator_set_drvdata);
3048
3049/**
3050 * regulator_get_id - get regulator ID
Mark Brown69279fb2008-12-31 12:52:41 +00003051 * @rdev: regulator
Liam Girdwood414c70c2008-04-30 15:59:04 +01003052 */
3053int rdev_get_id(struct regulator_dev *rdev)
3054{
3055 return rdev->desc->id;
3056}
3057EXPORT_SYMBOL_GPL(rdev_get_id);
3058
Liam Girdwooda5766f12008-10-10 13:22:20 +01003059struct device *rdev_get_dev(struct regulator_dev *rdev)
3060{
3061 return &rdev->dev;
3062}
3063EXPORT_SYMBOL_GPL(rdev_get_dev);
3064
3065void *regulator_get_init_drvdata(struct regulator_init_data *reg_init_data)
3066{
3067 return reg_init_data->driver_data;
3068}
3069EXPORT_SYMBOL_GPL(regulator_get_init_drvdata);
3070
Mark Brownba55a972011-08-23 17:39:10 +01003071#ifdef CONFIG_DEBUG_FS
3072static ssize_t supply_map_read_file(struct file *file, char __user *user_buf,
3073 size_t count, loff_t *ppos)
3074{
3075 char *buf = kmalloc(PAGE_SIZE, GFP_KERNEL);
3076 ssize_t len, ret = 0;
3077 struct regulator_map *map;
3078
3079 if (!buf)
3080 return -ENOMEM;
3081
3082 list_for_each_entry(map, &regulator_map_list, list) {
3083 len = snprintf(buf + ret, PAGE_SIZE - ret,
3084 "%s -> %s.%s\n",
3085 rdev_get_name(map->regulator), map->dev_name,
3086 map->supply);
3087 if (len >= 0)
3088 ret += len;
3089 if (ret > PAGE_SIZE) {
3090 ret = PAGE_SIZE;
3091 break;
3092 }
3093 }
3094
3095 ret = simple_read_from_buffer(user_buf, count, ppos, buf, ret);
3096
3097 kfree(buf);
3098
3099 return ret;
3100}
Stephen Boyd24751432012-02-20 22:50:42 -08003101#endif
Mark Brownba55a972011-08-23 17:39:10 +01003102
3103static const struct file_operations supply_map_fops = {
Stephen Boyd24751432012-02-20 22:50:42 -08003104#ifdef CONFIG_DEBUG_FS
Mark Brownba55a972011-08-23 17:39:10 +01003105 .read = supply_map_read_file,
3106 .llseek = default_llseek,
Mark Brownba55a972011-08-23 17:39:10 +01003107#endif
Stephen Boyd24751432012-02-20 22:50:42 -08003108};
Mark Brownba55a972011-08-23 17:39:10 +01003109
Liam Girdwood414c70c2008-04-30 15:59:04 +01003110static int __init regulator_init(void)
3111{
Mark Brown34abbd62010-02-12 10:18:08 +00003112 int ret;
3113
Mark Brown34abbd62010-02-12 10:18:08 +00003114 ret = class_register(&regulator_class);
3115
Mark Brown1130e5b2010-12-21 23:49:31 +00003116 debugfs_root = debugfs_create_dir("regulator", NULL);
Stephen Boyd24751432012-02-20 22:50:42 -08003117 if (!debugfs_root)
Mark Brown1130e5b2010-12-21 23:49:31 +00003118 pr_warn("regulator: Failed to create debugfs directory\n");
Mark Brownba55a972011-08-23 17:39:10 +01003119
Mark Brownf4d562c2012-02-20 21:01:04 +00003120 debugfs_create_file("supply_map", 0444, debugfs_root, NULL,
3121 &supply_map_fops);
Mark Brown1130e5b2010-12-21 23:49:31 +00003122
Mark Brown34abbd62010-02-12 10:18:08 +00003123 regulator_dummy_init();
3124
3125 return ret;
Liam Girdwood414c70c2008-04-30 15:59:04 +01003126}
3127
3128/* init early to allow our consumers to complete system booting */
3129core_initcall(regulator_init);
Mark Brownca725562009-03-16 19:36:34 +00003130
3131static int __init regulator_init_complete(void)
3132{
3133 struct regulator_dev *rdev;
3134 struct regulator_ops *ops;
3135 struct regulation_constraints *c;
3136 int enabled, ret;
Mark Brownca725562009-03-16 19:36:34 +00003137
3138 mutex_lock(&regulator_list_mutex);
3139
3140 /* If we have a full configuration then disable any regulators
3141 * which are not in use or always_on. This will become the
3142 * default behaviour in the future.
3143 */
3144 list_for_each_entry(rdev, &regulator_list, list) {
3145 ops = rdev->desc->ops;
3146 c = rdev->constraints;
3147
Mark Brownf25e0b42009-08-03 18:49:55 +01003148 if (!ops->disable || (c && c->always_on))
Mark Brownca725562009-03-16 19:36:34 +00003149 continue;
3150
3151 mutex_lock(&rdev->mutex);
3152
3153 if (rdev->use_count)
3154 goto unlock;
3155
3156 /* If we can't read the status assume it's on. */
3157 if (ops->is_enabled)
3158 enabled = ops->is_enabled(rdev);
3159 else
3160 enabled = 1;
3161
3162 if (!enabled)
3163 goto unlock;
3164
3165 if (has_full_constraints) {
3166 /* We log since this may kill the system if it
3167 * goes wrong. */
Joe Perches5da84fd2010-11-30 05:53:48 -08003168 rdev_info(rdev, "disabling\n");
Mark Brownca725562009-03-16 19:36:34 +00003169 ret = ops->disable(rdev);
3170 if (ret != 0) {
Joe Perches5da84fd2010-11-30 05:53:48 -08003171 rdev_err(rdev, "couldn't disable: %d\n", ret);
Mark Brownca725562009-03-16 19:36:34 +00003172 }
3173 } else {
3174 /* The intention is that in future we will
3175 * assume that full constraints are provided
3176 * so warn even if we aren't going to do
3177 * anything here.
3178 */
Joe Perches5da84fd2010-11-30 05:53:48 -08003179 rdev_warn(rdev, "incomplete constraints, leaving on\n");
Mark Brownca725562009-03-16 19:36:34 +00003180 }
3181
3182unlock:
3183 mutex_unlock(&rdev->mutex);
3184 }
3185
3186 mutex_unlock(&regulator_list_mutex);
3187
3188 return 0;
3189}
3190late_initcall(regulator_init_complete);