Merge branch 'parisc-4.0-1' of git://git.kernel.org/pub/scm/linux/kernel/git/deller...
[deliverable/linux.git] / include / linux / regulator / driver.h
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1/*
2 * driver.h -- SoC Regulator driver support.
3 *
4 * Copyright (C) 2007, 2008 Wolfson Microelectronics PLC.
5 *
1dd68f01 6 * Author: Liam Girdwood <lrg@slimlogic.co.uk>
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7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License version 2 as
10 * published by the Free Software Foundation.
11 *
12 * Regulator Driver Interface.
13 */
14
15#ifndef __LINUX_REGULATOR_DRIVER_H_
16#define __LINUX_REGULATOR_DRIVER_H_
17
18#include <linux/device.h>
ced55d4e 19#include <linux/notifier.h>
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20#include <linux/regulator/consumer.h>
21
65b19ce6 22struct regmap;
571a354b 23struct regulator_dev;
bfa21a0d 24struct regulator_config;
a5766f11 25struct regulator_init_data;
f19b00da 26struct regulator_enable_gpio;
571a354b 27
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28enum regulator_status {
29 REGULATOR_STATUS_OFF,
30 REGULATOR_STATUS_ON,
31 REGULATOR_STATUS_ERROR,
32 /* fast/normal/idle/standby are flavors of "on" */
33 REGULATOR_STATUS_FAST,
34 REGULATOR_STATUS_NORMAL,
35 REGULATOR_STATUS_IDLE,
36 REGULATOR_STATUS_STANDBY,
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37 /* The regulator is enabled but not regulating */
38 REGULATOR_STATUS_BYPASS,
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39 /* in case that any other status doesn't apply */
40 REGULATOR_STATUS_UNDEFINED,
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41};
42
94d33c02 43/**
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44 * struct regulator_linear_range - specify linear voltage ranges
45 *
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46 * Specify a range of voltages for regulator_map_linar_range() and
47 * regulator_list_linear_range().
48 *
49 * @min_uV: Lowest voltage in range
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50 * @min_sel: Lowest selector for range
51 * @max_sel: Highest selector for range
52 * @uV_step: Step size
53 */
54struct regulator_linear_range {
55 unsigned int min_uV;
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56 unsigned int min_sel;
57 unsigned int max_sel;
58 unsigned int uV_step;
59};
60
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61/* Initialize struct regulator_linear_range */
62#define REGULATOR_LINEAR_RANGE(_min_uV, _min_sel, _max_sel, _step_uV) \
63{ \
64 .min_uV = _min_uV, \
65 .min_sel = _min_sel, \
66 .max_sel = _max_sel, \
67 .uV_step = _step_uV, \
68}
69
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70/**
71 * struct regulator_ops - regulator operations.
72 *
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73 * @enable: Configure the regulator as enabled.
74 * @disable: Configure the regulator as disabled.
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75 * @is_enabled: Return 1 if the regulator is enabled, 0 if not.
76 * May also return negative errno.
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77 *
78 * @set_voltage: Set the voltage for the regulator within the range specified.
79 * The driver should select the voltage closest to min_uV.
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80 * @set_voltage_sel: Set the voltage for the regulator using the specified
81 * selector.
e843fc46 82 * @map_voltage: Convert a voltage into a selector
c8e7e464 83 * @get_voltage: Return the currently configured voltage for the regulator.
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84 * @get_voltage_sel: Return the currently configured voltage selector for the
85 * regulator.
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86 * @list_voltage: Return one of the supported voltages, in microvolts; zero
87 * if the selector indicates a voltage that is unusable on this system;
88 * or negative errno. Selectors range from zero to one less than
89 * regulator_desc.n_voltages. Voltages may be reported in any order.
c8e7e464 90 *
c8e7e464 91 * @set_current_limit: Configure a limit for a current-limited regulator.
89009e18 92 * The driver should select the current closest to max_uA.
3b2a6061 93 * @get_current_limit: Get the configured limit for a current-limited regulator.
c8e7e464 94 *
9f653251 95 * @set_mode: Set the configured operating mode for the regulator.
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96 * @get_mode: Get the configured operating mode for the regulator.
97 * @get_status: Return actual (not as-configured) status of regulator, as a
98 * REGULATOR_STATUS value (or negative errno)
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99 * @get_optimum_mode: Get the most efficient operating mode for the regulator
100 * when running with the specified parameters.
101 *
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102 * @set_bypass: Set the regulator in bypass mode.
103 * @get_bypass: Get the regulator bypass mode state.
104 *
31aae2be 105 * @enable_time: Time taken for the regulator voltage output voltage to
77af1b26 106 * stabilise after being enabled, in microseconds.
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107 * @set_ramp_delay: Set the ramp delay for the regulator. The driver should
108 * select ramp delay equal to or less than(closest) ramp_delay.
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109 * @set_voltage_time_sel: Time taken for the regulator voltage output voltage
110 * to stabilise after being set to a new value, in microseconds.
111 * The function provides the from and to voltage selector, the
112 * function should return the worst case.
31aae2be 113 *
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114 * @set_suspend_voltage: Set the voltage for the regulator when the system
115 * is suspended.
116 * @set_suspend_enable: Mark the regulator as enabled when the system is
117 * suspended.
118 * @set_suspend_disable: Mark the regulator as disabled when the system is
119 * suspended.
120 * @set_suspend_mode: Set the operating mode for the regulator when the
121 * system is suspended.
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122 *
123 * This struct describes regulator operations which can be implemented by
124 * regulator chip drivers.
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125 */
126struct regulator_ops {
127
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128 /* enumerate supported voltages */
129 int (*list_voltage) (struct regulator_dev *, unsigned selector);
130
571a354b 131 /* get/set regulator voltage */
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132 int (*set_voltage) (struct regulator_dev *, int min_uV, int max_uV,
133 unsigned *selector);
e843fc46 134 int (*map_voltage)(struct regulator_dev *, int min_uV, int max_uV);
e8eef82b 135 int (*set_voltage_sel) (struct regulator_dev *, unsigned selector);
571a354b 136 int (*get_voltage) (struct regulator_dev *);
476c2d83 137 int (*get_voltage_sel) (struct regulator_dev *);
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138
139 /* get/set regulator current */
140 int (*set_current_limit) (struct regulator_dev *,
141 int min_uA, int max_uA);
142 int (*get_current_limit) (struct regulator_dev *);
143
144 /* enable/disable regulator */
145 int (*enable) (struct regulator_dev *);
146 int (*disable) (struct regulator_dev *);
147 int (*is_enabled) (struct regulator_dev *);
148
fde297bb 149 /* get/set regulator operating mode (defined in consumer.h) */
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150 int (*set_mode) (struct regulator_dev *, unsigned int mode);
151 unsigned int (*get_mode) (struct regulator_dev *);
152
77af1b26 153 /* Time taken to enable or set voltage on the regulator */
31aae2be 154 int (*enable_time) (struct regulator_dev *);
6f0b2c69 155 int (*set_ramp_delay) (struct regulator_dev *, int ramp_delay);
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156 int (*set_voltage_time_sel) (struct regulator_dev *,
157 unsigned int old_selector,
158 unsigned int new_selector);
31aae2be 159
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160 /* report regulator status ... most other accessors report
161 * control inputs, this reports results of combining inputs
162 * from Linux (and other sources) with the actual load.
3b2a6061 163 * returns REGULATOR_STATUS_* or negative errno.
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164 */
165 int (*get_status)(struct regulator_dev *);
166
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167 /* get most efficient regulator operating mode for load */
168 unsigned int (*get_optimum_mode) (struct regulator_dev *, int input_uV,
169 int output_uV, int load_uA);
170
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171 /* control and report on bypass mode */
172 int (*set_bypass)(struct regulator_dev *dev, bool enable);
173 int (*get_bypass)(struct regulator_dev *dev, bool *enable);
174
571a354b 175 /* the operations below are for configuration of regulator state when
3de89609 176 * its parent PMIC enters a global STANDBY/HIBERNATE state */
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177
178 /* set regulator suspend voltage */
179 int (*set_suspend_voltage) (struct regulator_dev *, int uV);
180
181 /* enable/disable regulator in suspend state */
182 int (*set_suspend_enable) (struct regulator_dev *);
183 int (*set_suspend_disable) (struct regulator_dev *);
184
fde297bb 185 /* set regulator suspend operating mode (defined in consumer.h) */
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186 int (*set_suspend_mode) (struct regulator_dev *, unsigned int mode);
187};
188
189/*
190 * Regulators can either control voltage or current.
191 */
192enum regulator_type {
193 REGULATOR_VOLTAGE,
194 REGULATOR_CURRENT,
195};
196
197/**
c172708d 198 * struct regulator_desc - Static regulator descriptor
571a354b 199 *
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200 * Each regulator registered with the core is described with a
201 * structure of this type and a struct regulator_config. This
202 * structure contains the non-varying parts of the regulator
203 * description.
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204 *
205 * @name: Identifying name for the regulator.
69511a45 206 * @supply_name: Identifying the regulator supply
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207 * @of_match: Name used to identify regulator in DT.
208 * @regulators_node: Name of node containing regulator definitions in DT.
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209 * @of_parse_cb: Optional callback called only if of_match is present.
210 * Will be called for each regulator parsed from DT, during
211 * init_data parsing.
212 * The regulator_config passed as argument to the callback will
213 * be a copy of config passed to regulator_register, valid only
214 * for this particular call. Callback may freely change the
215 * config but it cannot store it for later usage.
216 * Callback should return 0 on success or negative ERRNO
217 * indicating failure.
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218 * @id: Numerical identifier for the regulator.
219 * @ops: Regulator operations table.
0ba4887c 220 * @irq: Interrupt number for the regulator.
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221 * @type: Indicates if the regulator is a voltage or current regulator.
222 * @owner: Module providing the regulator, used for refcounting.
bca7bbff 223 *
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224 * @continuous_voltage_range: Indicates if the regulator can set any
225 * voltage within constrains range.
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226 * @n_voltages: Number of selectors available for ops.list_voltage().
227 *
228 * @min_uV: Voltage given by the lowest selector (if linear mapping)
229 * @uV_step: Voltage increase with each selector (if linear mapping)
33234e79 230 * @linear_min_sel: Minimal selector for starting linear mapping
5a523605 231 * @fixed_uV: Fixed voltage of rails.
ea38d13f 232 * @ramp_delay: Time to settle down after voltage change (unit: uV/us)
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233 * @linear_ranges: A constant table of possible voltage ranges.
234 * @n_linear_ranges: Number of entries in the @linear_ranges table.
cffc9592 235 * @volt_table: Voltage mapping table (if table based mapping)
bca7bbff 236 *
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237 * @vsel_reg: Register for selector when using regulator_regmap_X_voltage_
238 * @vsel_mask: Mask for register bitfield used for selector
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239 * @apply_reg: Register for initiate voltage change on the output when
240 * using regulator_set_voltage_sel_regmap
241 * @apply_bit: Register bitfield used for initiate voltage change on the
242 * output when using regulator_set_voltage_sel_regmap
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243 * @enable_reg: Register for control when using regmap enable/disable ops
244 * @enable_mask: Mask for control when using regmap enable/disable ops
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245 * @enable_val: Enabling value for control when using regmap enable/disable ops
246 * @disable_val: Disabling value for control when using regmap enable/disable ops
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247 * @enable_is_inverted: A flag to indicate set enable_mask bits to disable
248 * when using regulator_enable_regmap and friends APIs.
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249 * @bypass_reg: Register for control when using regmap set_bypass
250 * @bypass_mask: Mask for control when using regmap set_bypass
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251 * @bypass_val_on: Enabling value for control when using regmap set_bypass
252 * @bypass_val_off: Disabling value for control when using regmap set_bypass
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253 *
254 * @enable_time: Time taken for initial enable of regulator (in uS).
871f5650 255 * @off_on_delay: guard time (in uS), before re-enabling a regulator
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256 *
257 * @of_map_mode: Maps a hardware mode defined in a DeviceTree to a standard mode
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258 */
259struct regulator_desc {
260 const char *name;
69511a45 261 const char *supply_name;
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262 const char *of_match;
263 const char *regulators_node;
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264 int (*of_parse_cb)(struct device_node *,
265 const struct regulator_desc *,
266 struct regulator_config *);
571a354b 267 int id;
bd7a2b60 268 bool continuous_voltage_range;
4367cfdc 269 unsigned n_voltages;
df11e506 270 const struct regulator_ops *ops;
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271 int irq;
272 enum regulator_type type;
273 struct module *owner;
4ab5b3d9 274
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275 unsigned int min_uV;
276 unsigned int uV_step;
33234e79 277 unsigned int linear_min_sel;
5a523605 278 int fixed_uV;
98a175b6 279 unsigned int ramp_delay;
bca7bbff 280
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281 const struct regulator_linear_range *linear_ranges;
282 int n_linear_ranges;
283
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284 const unsigned int *volt_table;
285
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286 unsigned int vsel_reg;
287 unsigned int vsel_mask;
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288 unsigned int apply_reg;
289 unsigned int apply_bit;
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290 unsigned int enable_reg;
291 unsigned int enable_mask;
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292 unsigned int enable_val;
293 unsigned int disable_val;
51dcdafc 294 bool enable_is_inverted;
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295 unsigned int bypass_reg;
296 unsigned int bypass_mask;
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297 unsigned int bypass_val_on;
298 unsigned int bypass_val_off;
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299
300 unsigned int enable_time;
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301
302 unsigned int off_on_delay;
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303
304 unsigned int (*of_map_mode)(unsigned int mode);
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305};
306
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307/**
308 * struct regulator_config - Dynamic regulator descriptor
309 *
310 * Each regulator registered with the core is described with a
311 * structure of this type and a struct regulator_desc. This structure
312 * contains the runtime variable parts of the regulator description.
313 *
314 * @dev: struct device for the regulator
315 * @init_data: platform provided init data, passed through by driver
316 * @driver_data: private regulator data
317 * @of_node: OpenFirmware node to parse for device tree bindings (may be
318 * NULL).
cf39284d 319 * @regmap: regmap to use for core regmap helpers if dev_get_regmap() is
380a0e6f 320 * insufficient.
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321 * @ena_gpio_initialized: GPIO controlling regulator enable was properly
322 * initialized, meaning that >= 0 is a valid gpio
323 * identifier and < 0 is a non existent gpio.
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324 * @ena_gpio: GPIO controlling regulator enable.
325 * @ena_gpio_invert: Sense for GPIO enable control.
326 * @ena_gpio_flags: Flags to use when calling gpio_request_one()
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327 */
328struct regulator_config {
329 struct device *dev;
330 const struct regulator_init_data *init_data;
331 void *driver_data;
332 struct device_node *of_node;
65b19ce6 333 struct regmap *regmap;
65f73508 334
76f439df 335 bool ena_gpio_initialized;
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336 int ena_gpio;
337 unsigned int ena_gpio_invert:1;
338 unsigned int ena_gpio_flags;
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339};
340
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341/*
342 * struct regulator_dev
343 *
344 * Voltage / Current regulator class device. One for each
345 * regulator.
346 *
347 * This should *not* be used directly by anything except the regulator
348 * core and notification injection (which should take the mutex and do
349 * no other direct access).
350 */
351struct regulator_dev {
65f26846 352 const struct regulator_desc *desc;
5ffbd136 353 int exclusive;
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354 u32 use_count;
355 u32 open_count;
f59c8f9f 356 u32 bypass_count;
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357
358 /* lists we belong to */
359 struct list_head list; /* list of all regulators */
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360
361 /* lists we own */
362 struct list_head consumer_list; /* consumers we supply */
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363
364 struct blocking_notifier_head notifier;
365 struct mutex mutex; /* consumer lock */
366 struct module *owner;
367 struct device dev;
368 struct regulation_constraints *constraints;
3801b86a 369 struct regulator *supply; /* for tree */
65b19ce6 370 struct regmap *regmap;
1fa9ad52 371
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372 struct delayed_work disable_work;
373 int deferred_disables;
374
1fa9ad52 375 void *reg_data; /* regulator_dev data */
1130e5b3 376
1130e5b3 377 struct dentry *debugfs;
65f73508 378
f19b00da 379 struct regulator_enable_gpio *ena_pin;
65f73508 380 unsigned int ena_gpio_state:1;
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381
382 /* time when this regulator was disabled last time */
383 unsigned long last_off_jiffy;
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384};
385
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386struct regulator_dev *
387regulator_register(const struct regulator_desc *regulator_desc,
c172708d 388 const struct regulator_config *config);
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389struct regulator_dev *
390devm_regulator_register(struct device *dev,
391 const struct regulator_desc *regulator_desc,
392 const struct regulator_config *config);
571a354b 393void regulator_unregister(struct regulator_dev *rdev);
b33e46bc 394void devm_regulator_unregister(struct device *dev, struct regulator_dev *rdev);
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395
396int regulator_notifier_call_chain(struct regulator_dev *rdev,
397 unsigned long event, void *data);
398
399void *rdev_get_drvdata(struct regulator_dev *rdev);
a5766f11 400struct device *rdev_get_dev(struct regulator_dev *rdev);
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401int rdev_get_id(struct regulator_dev *rdev);
402
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403int regulator_mode_to_status(unsigned int);
404
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405int regulator_list_voltage_linear(struct regulator_dev *rdev,
406 unsigned int selector);
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407int regulator_list_voltage_linear_range(struct regulator_dev *rdev,
408 unsigned int selector);
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409int regulator_list_voltage_table(struct regulator_dev *rdev,
410 unsigned int selector);
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411int regulator_map_voltage_linear(struct regulator_dev *rdev,
412 int min_uV, int max_uV);
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413int regulator_map_voltage_linear_range(struct regulator_dev *rdev,
414 int min_uV, int max_uV);
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415int regulator_map_voltage_iterate(struct regulator_dev *rdev,
416 int min_uV, int max_uV);
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417int regulator_map_voltage_ascend(struct regulator_dev *rdev,
418 int min_uV, int max_uV);
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419int regulator_get_voltage_sel_regmap(struct regulator_dev *rdev);
420int regulator_set_voltage_sel_regmap(struct regulator_dev *rdev, unsigned sel);
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421int regulator_is_enabled_regmap(struct regulator_dev *rdev);
422int regulator_enable_regmap(struct regulator_dev *rdev);
423int regulator_disable_regmap(struct regulator_dev *rdev);
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424int regulator_set_voltage_time_sel(struct regulator_dev *rdev,
425 unsigned int old_selector,
426 unsigned int new_selector);
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427int regulator_set_bypass_regmap(struct regulator_dev *rdev, bool enable);
428int regulator_get_bypass_regmap(struct regulator_dev *rdev, bool *enable);
4ab5b3d9 429
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430void *regulator_get_init_drvdata(struct regulator_init_data *reg_init_data);
431
571a354b 432#endif
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