xref: /openbmc/u-boot/include/power/regulator.h (revision 089fddfd)
1 /*
2  *  Copyright (C) 2014-2015 Samsung Electronics
3  *  Przemyslaw Marczak <p.marczak@samsung.com>
4  *
5  * SPDX-License-Identifier:	GPL-2.0+
6  */
7 
8 #ifndef _INCLUDE_REGULATOR_H_
9 #define _INCLUDE_REGULATOR_H_
10 
11 /**
12  * U-Boot Voltage/Current Regulator
13  * ================================
14  *
15  * The regulator API is based on a driver model, with the device tree support.
16  * And this header describes the functions and data types for the uclass id:
17  * 'UCLASS_REGULATOR' and the regulator driver API.
18  *
19  * The regulator uclass - is based on uclass platform data which is allocated,
20  * automatically for each regulator device on bind and 'dev->uclass_platdata'
21  * points to it. The data type is: 'struct dm_regulator_uclass_platdata'.
22  * The uclass file: 'drivers/power/regulator/regulator-uclass.c'
23  *
24  * The regulator device - is based on driver's model 'struct udevice'.
25  * The API can use regulator name in two meanings:
26  * - devname  - the regulator device's name: 'dev->name'
27  * - platname - the device's platdata's name. So in the code it looks like:
28  *              'uc_pdata = dev->uclass_platdata'; 'name = uc_pdata->name'.
29  *
30  * The regulator device driver - provide an implementation of uclass operations
31  * pointed by 'dev->driver->ops' as a struct of type 'struct dm_regulator_ops'.
32  *
33  * To proper bind the regulator device, the device tree node should provide
34  * regulator constraints, like in the example below:
35  *
36  * ldo1 {
37  *      regulator-name = "VDD_MMC_1.8V";     (must be unique for proper bind)
38  *      regulator-min-microvolt = <1000000>; (optional)
39  *      regulator-max-microvolt = <1000000>; (optional)
40  *      regulator-min-microamp = <1000>;     (optional)
41  *      regulator-max-microamp = <1000>;     (optional)
42  *      regulator-always-on;                 (optional)
43  *      regulator-boot-on;                   (optional)
44  * };
45  *
46  * Note: For the proper operation, at least name constraint is needed, since
47  * it can be used when calling regulator_get_by_platname(). And the mandatory
48  * rule for this name is, that it must be globally unique for the single dts.
49  *
50  * Regulator bind:
51  * For each regulator device, the device_bind() should be called with passed
52  * device tree offset. This is required for this uclass's '.post_bind' method,
53  * which does the scan on the device node, for the 'regulator-name' constraint.
54  * If the parent is not a PMIC device, and the child is not bind by function:
55  * 'pmic_bind_childs()', then it's recommended to bind the device by call to
56  * dm_scan_fdt_node() - this is usually done automatically for bus devices,
57  * as a post bind method.
58  *
59  * Regulator get:
60  * Having the device's name constraint, we can call regulator_by_platname(),
61  * to find the required regulator. Before return, the regulator is probed,
62  * and the rest of its constraints are put into the device's uclass platform
63  * data, by the uclass regulator '.pre_probe' method.
64  *
65  * For more info about PMIC bind, please refer to file: 'include/power/pmic.h'
66  *
67  * Note:
68  * Please do not use the device_bind_by_name() function, since it pass '-1' as
69  * device node offset - and the bind will fail on uclass .post_bind method,
70  * because of missing 'regulator-name' constraint.
71  *
72  *
73  * Fixed Voltage/Current Regulator
74  * ===============================
75  *
76  * When fixed voltage regulator is needed, then enable the config:
77  * - CONFIG_DM_REGULATOR_FIXED
78  *
79  * The driver file: 'drivers/power/regulator/fixed.c', provides basic support
80  * for control the GPIO, and return the device tree constraint values.
81  *
82  * To bind the fixed voltage regulator device, we usually use a 'simple-bus'
83  * node as a parent. And 'regulator-fixed' for the driver compatible. This is
84  * the same as in the kernel. The example node of fixed regulator:
85  *
86  * simple-bus {
87  *     compatible = "simple-bus";
88  *     #address-cells = <1>;
89  *     #size-cells = <0>;
90  *
91  *     blue_led {
92  *         compatible = "regulator-fixed";
93  *         regulator-name = "VDD_LED_3.3V";
94  *         regulator-min-microvolt = <3300000>;
95  *         regulator-max-microvolt = <3300000>;
96  *         gpio = <&gpc1 0 GPIO_ACTIVE_LOW>;
97  *     };
98  * };
99  *
100  * The fixed regulator devices also provide regulator uclass platform data. And
101  * devices bound from such node, can use the regulator drivers API.
102 */
103 
104 /* enum regulator_type - used for regulator_*() variant calls */
105 enum regulator_type {
106 	REGULATOR_TYPE_LDO = 0,
107 	REGULATOR_TYPE_BUCK,
108 	REGULATOR_TYPE_DVS,
109 	REGULATOR_TYPE_FIXED,
110 	REGULATOR_TYPE_OTHER,
111 };
112 
113 /**
114  * struct dm_regulator_mode - this structure holds an information about
115  * each regulator operation mode. Probably in most cases - an array.
116  * This will be probably a driver-static data, since it is device-specific.
117  *
118  * @id             - a driver-specific mode id
119  * @register_value - a driver-specific value for its mode id
120  * @name           - the name of mode - used for regulator command
121  * Note:
122  * The field 'id', should be always a positive number, since the negative values
123  * are reserved for the errno numbers when returns the mode id.
124  */
125 struct dm_regulator_mode {
126 	int id; /* Set only as >= 0 (negative value is reserved for errno) */
127 	int register_value;
128 	const char *name;
129 };
130 
131 enum regulator_flag {
132 	REGULATOR_FLAG_AUTOSET_UV	= 1 << 0,
133 	REGULATOR_FLAG_AUTOSET_UA	= 1 << 1,
134 };
135 
136 /**
137  * struct dm_regulator_uclass_platdata - pointed by dev->uclass_platdata, and
138  * allocated on each regulator bind. This structure holds an information
139  * about each regulator's constraints and supported operation modes.
140  * There is no "step" voltage value - so driver should take care of this.
141  *
142  * @type       - one of 'enum regulator_type'
143  * @mode       - pointer to the regulator mode (array if more than one)
144  * @mode_count - number of '.mode' entries
145  * @min_uV*    - minimum voltage (micro Volts)
146  * @max_uV*    - maximum voltage (micro Volts)
147  * @min_uA*    - minimum amperage (micro Amps)
148  * @max_uA*    - maximum amperage (micro Amps)
149  * @always_on* - bool type, true or false
150  * @boot_on*   - bool type, true or false
151  * TODO(sjg@chromium.org): Consider putting the above two into @flags
152  * @flags:     - flags value (see REGULATOR_FLAG_...)
153  * @name**     - fdt regulator name - should be taken from the device tree
154  *
155  * Note:
156  * *  - set automatically on device probe by the uclass's '.pre_probe' method.
157  * ** - set automatically on device bind by the uclass's '.post_bind' method.
158  * The constraints: type, mode, mode_count, can be set by device driver, e.g.
159  * by the driver '.probe' method.
160  */
161 struct dm_regulator_uclass_platdata {
162 	enum regulator_type type;
163 	struct dm_regulator_mode *mode;
164 	int mode_count;
165 	int min_uV;
166 	int max_uV;
167 	int min_uA;
168 	int max_uA;
169 	bool always_on;
170 	bool boot_on;
171 	const char *name;
172 	int flags;
173 };
174 
175 /* Regulator device operations */
176 struct dm_regulator_ops {
177 	/**
178 	 * The regulator output value function calls operates on a micro Volts.
179 	 *
180 	 * get/set_value - get/set output value of the given output number
181 	 * @dev          - regulator device
182 	 * Sets:
183 	 * @uV           - set the output value [micro Volts]
184 	 * @return output value [uV] on success or negative errno if fail.
185 	 */
186 	int (*get_value)(struct udevice *dev);
187 	int (*set_value)(struct udevice *dev, int uV);
188 
189 	/**
190 	 * The regulator output current function calls operates on a micro Amps.
191 	 *
192 	 * get/set_current - get/set output current of the given output number
193 	 * @dev            - regulator device
194 	 * Sets:
195 	 * @uA           - set the output current [micro Amps]
196 	 * @return output value [uA] on success or negative errno if fail.
197 	 */
198 	int (*get_current)(struct udevice *dev);
199 	int (*set_current)(struct udevice *dev, int uA);
200 
201 	/**
202 	 * The most basic feature of the regulator output is its enable state.
203 	 *
204 	 * get/set_enable - get/set enable state of the given output number
205 	 * @dev           - regulator device
206 	 * Sets:
207 	 * @enable         - set true - enable or false - disable
208 	 * @return true/false for get; or 0 / -errno for set.
209 	 */
210 	bool (*get_enable)(struct udevice *dev);
211 	int (*set_enable)(struct udevice *dev, bool enable);
212 
213 	/**
214 	 * The 'get/set_mode()' function calls should operate on a driver-
215 	 * specific mode id definitions, which should be found in:
216 	 * field 'id' of struct dm_regulator_mode.
217 	 *
218 	 * get/set_mode - get/set operation mode of the given output number
219 	 * @dev         - regulator device
220 	 * Sets
221 	 * @mode_id     - set output mode id (struct dm_regulator_mode->id)
222 	 * @return id/0 for get/set on success or negative errno if fail.
223 	 * Note:
224 	 * The field 'id' of struct type 'dm_regulator_mode', should be always
225 	 * a positive number, since the negative is reserved for the error.
226 	 */
227 	int (*get_mode)(struct udevice *dev);
228 	int (*set_mode)(struct udevice *dev, int mode_id);
229 };
230 
231 /**
232  * regulator_mode: returns a pointer to the array of regulator mode info
233  *
234  * @dev        - pointer to the regulator device
235  * @modep      - pointer to the returned mode info array
236  * @return     - count of modep entries on success or negative errno if fail.
237  */
238 int regulator_mode(struct udevice *dev, struct dm_regulator_mode **modep);
239 
240 /**
241  * regulator_get_value: get microvoltage voltage value of a given regulator
242  *
243  * @dev    - pointer to the regulator device
244  * @return - positive output value [uV] on success or negative errno if fail.
245  */
246 int regulator_get_value(struct udevice *dev);
247 
248 /**
249  * regulator_set_value: set the microvoltage value of a given regulator.
250  *
251  * @dev    - pointer to the regulator device
252  * @uV     - the output value to set [micro Volts]
253  * @return - 0 on success or -errno val if fails
254  */
255 int regulator_set_value(struct udevice *dev, int uV);
256 
257 /**
258  * regulator_get_current: get microampere value of a given regulator
259  *
260  * @dev    - pointer to the regulator device
261  * @return - positive output current [uA] on success or negative errno if fail.
262  */
263 int regulator_get_current(struct udevice *dev);
264 
265 /**
266  * regulator_set_current: set the microampere value of a given regulator.
267  *
268  * @dev    - pointer to the regulator device
269  * @uA     - set the output current [micro Amps]
270  * @return - 0 on success or -errno val if fails
271  */
272 int regulator_set_current(struct udevice *dev, int uA);
273 
274 /**
275  * regulator_get_enable: get regulator device enable state.
276  *
277  * @dev    - pointer to the regulator device
278  * @return - true/false of enable state
279  */
280 bool regulator_get_enable(struct udevice *dev);
281 
282 /**
283  * regulator_set_enable: set regulator enable state
284  *
285  * @dev    - pointer to the regulator device
286  * @enable - set true or false
287  * @return - 0 on success or -errno val if fails
288  */
289 int regulator_set_enable(struct udevice *dev, bool enable);
290 
291 /**
292  * regulator_get_mode: get active operation mode id of a given regulator
293  *
294  * @dev    - pointer to the regulator device
295  * @return - positive mode 'id' number on success or -errno val if fails
296  * Note:
297  * The device can provide an array of operating modes, which is type of struct
298  * dm_regulator_mode. Each mode has it's own 'id', which should be unique inside
299  * that array. By calling this function, the driver should return an active mode
300  * id of the given regulator device.
301  */
302 int regulator_get_mode(struct udevice *dev);
303 
304 /**
305  * regulator_set_mode: set the given regulator's, active mode id
306  *
307  * @dev     - pointer to the regulator device
308  * @mode_id - mode id to set ('id' field of struct type dm_regulator_mode)
309  * @return  - 0 on success or -errno value if fails
310  * Note:
311  * The device can provide an array of operating modes, which is type of struct
312  * dm_regulator_mode. Each mode has it's own 'id', which should be unique inside
313  * that array. By calling this function, the driver should set the active mode
314  * of a given regulator to given by "mode_id" argument.
315  */
316 int regulator_set_mode(struct udevice *dev, int mode_id);
317 
318 /**
319  * regulators_enable_boot_on() - enable regulators needed for boot
320  *
321  * This enables all regulators which are marked to be on at boot time. This
322  * only works for regulators which don't have a range for voltage/current,
323  * since in that case it is not possible to know which value to use.
324  *
325  * This effectively calls regulator_autoset() for every regulator.
326  */
327 int regulators_enable_boot_on(bool verbose);
328 
329 /**
330  * regulator_autoset: setup the voltage/current on a regulator
331  *
332  * The setup depends on constraints found in device's uclass's platform data
333  * (struct dm_regulator_uclass_platdata):
334  *
335  * - Enable - will set - if any of: 'always_on' or 'boot_on' is set to true,
336  *   or if both are unset, then the function returns
337  * - Voltage value - will set - if '.min_uV' and '.max_uV' values are equal
338  * - Current limit - will set - if '.min_uA' and '.max_uA' values are equal
339  *
340  * The function returns on the first-encountered error.
341  *
342  * @platname - expected string for dm_regulator_uclass_platdata .name field
343  * @devp     - returned pointer to the regulator device - if non-NULL passed
344  * @return: 0 on success or negative value of errno.
345  */
346 int regulator_autoset(struct udevice *dev);
347 
348 /**
349  * regulator_autoset_by_name: setup the regulator given by its uclass's
350  * platform data name field. The setup depends on constraints found in device's
351  * uclass's platform data (struct dm_regulator_uclass_platdata):
352  * - Enable - will set - if any of: 'always_on' or 'boot_on' is set to true,
353  *   or if both are unset, then the function returns
354  * - Voltage value - will set - if '.min_uV' and '.max_uV' values are equal
355  * - Current limit - will set - if '.min_uA' and '.max_uA' values are equal
356  *
357  * The function returns on first encountered error.
358  *
359  * @platname - expected string for dm_regulator_uclass_platdata .name field
360  * @devp     - returned pointer to the regulator device - if non-NULL passed
361  * @return: 0 on success or negative value of errno.
362  *
363  * The returned 'regulator' device can be used with:
364  * - regulator_get/set_*
365  */
366 int regulator_autoset_by_name(const char *platname, struct udevice **devp);
367 
368 /**
369  * regulator_list_autoset: setup the regulators given by list of their uclass's
370  * platform data name field. The setup depends on constraints found in device's
371  * uclass's platform data. The function loops with calls to:
372  * regulator_autoset_by_name() for each name from the list.
373  *
374  * @list_platname - an array of expected strings for .name field of each
375  *                  regulator's uclass platdata
376  * @list_devp     - an array of returned pointers to the successfully setup
377  *                  regulator devices if non-NULL passed
378  * @verbose       - (true/false) print each regulator setup info, or be quiet
379  * @return 0 on successfully setup of all list entries, otherwise first error.
380  *
381  * The returned 'regulator' devices can be used with:
382  * - regulator_get/set_*
383  *
384  * Note: The list must ends with NULL entry, like in the "platname" list below:
385  * char *my_regulators[] = {
386  *     "VCC_3.3V",
387  *     "VCC_1.8V",
388  *     NULL,
389  * };
390  */
391 int regulator_list_autoset(const char *list_platname[],
392 			   struct udevice *list_devp[],
393 			   bool verbose);
394 
395 /**
396  * regulator_get_by_devname: returns the pointer to the pmic regulator device.
397  * Search by name, found in regulator device's name.
398  *
399  * @devname - expected string for 'dev->name' of regulator device
400  * @devp    - returned pointer to the regulator device
401  * @return 0 on success or negative value of errno.
402  *
403  * The returned 'regulator' device is probed and can be used with:
404  * - regulator_get/set_*
405  */
406 int regulator_get_by_devname(const char *devname, struct udevice **devp);
407 
408 /**
409  * regulator_get_by_platname: returns the pointer to the pmic regulator device.
410  * Search by name, found in regulator uclass platdata.
411  *
412  * @platname - expected string for uc_pdata->name of regulator uclass platdata
413  * @devp     - returns pointer to the regulator device or NULL on error
414  * @return 0 on success or negative value of errno.
415  *
416  * The returned 'regulator' device is probed and can be used with:
417  * - regulator_get/set_*
418  */
419 int regulator_get_by_platname(const char *platname, struct udevice **devp);
420 
421 #endif /* _INCLUDE_REGULATOR_H_ */
422