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1/*
2 * machine.h -- SoC Regulator support, machine/board driver API.
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 Machine/Board Interface.
13 */
14
15#ifndef __LINUX_REGULATOR_MACHINE_H_
16#define __LINUX_REGULATOR_MACHINE_H_
17
18#include <linux/regulator/consumer.h>
19#include <linux/suspend.h>
20
21struct regulator;
22
23/*
24 * Regulator operation constraint flags. These flags are used to enable
25 * certain regulator operations and can be OR'ed together.
26 *
27 * VOLTAGE: Regulator output voltage can be changed by software on this
28 * board/machine.
29 * CURRENT: Regulator output current can be changed by software on this
30 * board/machine.
31 * MODE: Regulator operating mode can be changed by software on this
32 * board/machine.
33 * STATUS: Regulator can be enabled and disabled.
34 * DRMS: Dynamic Regulator Mode Switching is enabled for this regulator.
f59c8f9f 35 * BYPASS: Regulator can be put into bypass mode
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36 */
37
38#define REGULATOR_CHANGE_VOLTAGE 0x1
39#define REGULATOR_CHANGE_CURRENT 0x2
40#define REGULATOR_CHANGE_MODE 0x4
41#define REGULATOR_CHANGE_STATUS 0x8
42#define REGULATOR_CHANGE_DRMS 0x10
f59c8f9f 43#define REGULATOR_CHANGE_BYPASS 0x20
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44
45/**
2e7e65ce 46 * struct regulator_state - regulator state during low power system states
4c1184e8 47 *
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48 * This describes a regulators state during a system wide low power
49 * state. One of enabled or disabled must be set for the
50 * configuration to be applied.
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51 *
52 * @uV: Operating voltage during suspend.
53 * @mode: Operating mode during suspend.
54 * @enabled: Enabled during suspend.
638f85c5 55 * @disabled: Disabled during suspend.
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56 */
57struct regulator_state {
58 int uV; /* suspend voltage */
59 unsigned int mode; /* suspend regulator operating mode */
60 int enabled; /* is regulator enabled in this suspend state */
638f85c5 61 int disabled; /* is the regulator disbled in this suspend state */
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62};
63
64/**
65 * struct regulation_constraints - regulator operating constraints.
66 *
67 * This struct describes regulator and board/machine specific constraints.
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68 *
69 * @name: Descriptive name for the constraints, used for display purposes.
70 *
71 * @min_uV: Smallest voltage consumers may set.
72 * @max_uV: Largest voltage consumers may set.
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73 * @uV_offset: Offset applied to voltages from consumer to compensate for
74 * voltage drops.
c8e7e464 75 *
15c08f66 76 * @min_uA: Smallest current consumers may set.
c8e7e464 77 * @max_uA: Largest current consumers may set.
36e4f839 78 * @ilim_uA: Maximum input current.
22a10bca 79 * @system_load: Load that isn't captured by any consumer requests.
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80 *
81 * @valid_modes_mask: Mask of modes which may be configured by consumers.
82 * @valid_ops_mask: Operations which may be performed by consumers.
83 *
84 * @always_on: Set if the regulator should never be disabled.
85 * @boot_on: Set if the regulator is enabled when the system is initially
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86 * started. If the regulator is not enabled by the hardware or
87 * bootloader then it will be enabled when the constraints are
88 * applied.
c8e7e464 89 * @apply_uV: Apply the voltage constraint when initialising.
a8dbfeed 90 * @ramp_disable: Disable ramp delay when initialising or when setting voltage.
c751ad0d 91 * @soft_start: Enable soft start so that voltage ramps slowly.
23c779b9 92 * @pull_down: Enable pull down when regulator is disabled.
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93 *
94 * @input_uV: Input voltage for regulator when supplied by another regulator.
95 *
96 * @state_disk: State for regulator when system is suspended in disk mode.
97 * @state_mem: State for regulator when system is suspended in mem mode.
98 * @state_standby: State for regulator when system is suspended in standby
99 * mode.
100 * @initial_state: Suspend state to set by default.
a308466c 101 * @initial_mode: Mode to set at startup.
ea38d13f 102 * @ramp_delay: Time to settle down after voltage change (unit: uV/us)
00c877c6 103 * @enable_time: Turn-on time of the rails (unit: microseconds)
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104 */
105struct regulation_constraints {
106
0151546f 107 const char *name;
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108
109 /* voltage output range (inclusive) - for voltage control */
110 int min_uV;
111 int max_uV;
112
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113 int uV_offset;
114
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115 /* current output range (inclusive) - for current control */
116 int min_uA;
117 int max_uA;
36e4f839 118 int ilim_uA;
4c1184e8 119
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120 int system_load;
121
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122 /* valid regulator operating modes for this machine */
123 unsigned int valid_modes_mask;
124
125 /* valid operations for regulator on this machine */
126 unsigned int valid_ops_mask;
127
128 /* regulator input voltage - only if supply is another regulator */
129 int input_uV;
130
131 /* regulator suspend states for global PMIC STANDBY/HIBERNATE */
132 struct regulator_state state_disk;
133 struct regulator_state state_mem;
134 struct regulator_state state_standby;
135 suspend_state_t initial_state; /* suspend state to set at init */
136
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137 /* mode to set on startup */
138 unsigned int initial_mode;
139
6f0b2c69 140 unsigned int ramp_delay;
00c877c6 141 unsigned int enable_time;
6f0b2c69 142
2e7e65ce 143 /* constraint flags */
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144 unsigned always_on:1; /* regulator never off when system is on */
145 unsigned boot_on:1; /* bootloader/firmware enabled regulator */
2e7e65ce 146 unsigned apply_uV:1; /* apply uV constraint if min == max */
1653ccf4 147 unsigned ramp_disable:1; /* disable ramp delay */
57f66b78 148 unsigned soft_start:1; /* ramp voltage slowly */
23c779b9 149 unsigned pull_down:1; /* pull down resistor when regulator off */
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150};
151
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152/**
153 * struct regulator_consumer_supply - supply -> device mapping
154 *
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155 * This maps a supply name to a device. Use of dev_name allows support for
156 * buses which make struct device available late such as I2C.
c8e7e464 157 *
40f9244f 158 * @dev_name: Result of dev_name() for the consumer.
c8e7e464 159 * @supply: Name for the supply.
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160 */
161struct regulator_consumer_supply {
40f9244f 162 const char *dev_name; /* dev_name() for consumer */
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163 const char *supply; /* consumer supply - e.g. "vcc" */
164};
4c1184e8 165
ed654324 166/* Initialize struct regulator_consumer_supply */
167#define REGULATOR_SUPPLY(_name, _dev_name) \
168{ \
169 .supply = _name, \
170 .dev_name = _dev_name, \
171}
172
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173/**
174 * struct regulator_init_data - regulator platform initialisation data.
175 *
176 * Initialisation constraints, our supply and consumers supplies.
c8e7e464 177 *
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178 * @supply_regulator: Parent regulator. Specified using the regulator name
179 * as it appears in the name field in sysfs, which can
180 * be explicitly set using the constraints field 'name'.
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181 *
182 * @constraints: Constraints. These must be specified for the regulator to
183 * be usable.
184 * @num_consumer_supplies: Number of consumer device supplies.
185 * @consumer_supplies: Consumer device supply configuration.
186 *
187 * @regulator_init: Callback invoked when the regulator has been registered.
188 * @driver_data: Data passed to regulator_init.
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189 */
190struct regulator_init_data {
0178f3e2 191 const char *supply_regulator; /* or NULL for system supply */
4c1184e8 192
a5766f11 193 struct regulation_constraints constraints;
4c1184e8 194
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195 int num_consumer_supplies;
196 struct regulator_consumer_supply *consumer_supplies;
197
198 /* optional regulator machine specific init */
199 int (*regulator_init)(void *driver_data);
200 void *driver_data; /* core does not touch this */
201};
4c1184e8 202
9c19bc04 203#ifdef CONFIG_REGULATOR
ca725561 204void regulator_has_full_constraints(void);
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205int regulator_suspend_prepare(suspend_state_t state);
206int regulator_suspend_finish(void);
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207#else
208static inline void regulator_has_full_constraints(void)
209{
210}
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211static inline int regulator_suspend_prepare(suspend_state_t state)
212{
213 return 0;
214}
215static inline int regulator_suspend_finish(void)
216{
217 return 0;
218}
9c19bc04 219#endif
ca725561 220
4c1184e8 221#endif