Merge remote-tracking branch 'asoc/topic/fsl' into asoc-next
[deliverable/linux.git] / include / linux / regmap.h
1 #ifndef __LINUX_REGMAP_H
2 #define __LINUX_REGMAP_H
3
4 /*
5 * Register map access API
6 *
7 * Copyright 2011 Wolfson Microelectronics plc
8 *
9 * Author: Mark Brown <broonie@opensource.wolfsonmicro.com>
10 *
11 * This program is free software; you can redistribute it and/or modify
12 * it under the terms of the GNU General Public License version 2 as
13 * published by the Free Software Foundation.
14 */
15
16 #include <linux/list.h>
17 #include <linux/rbtree.h>
18
19 struct module;
20 struct device;
21 struct i2c_client;
22 struct irq_domain;
23 struct spi_device;
24 struct regmap;
25 struct regmap_range_cfg;
26
27 /* An enum of all the supported cache types */
28 enum regcache_type {
29 REGCACHE_NONE,
30 REGCACHE_RBTREE,
31 REGCACHE_COMPRESSED
32 };
33
34 /**
35 * Default value for a register. We use an array of structs rather
36 * than a simple array as many modern devices have very sparse
37 * register maps.
38 *
39 * @reg: Register address.
40 * @def: Register default value.
41 */
42 struct reg_default {
43 unsigned int reg;
44 unsigned int def;
45 };
46
47 #ifdef CONFIG_REGMAP
48
49 enum regmap_endian {
50 /* Unspecified -> 0 -> Backwards compatible default */
51 REGMAP_ENDIAN_DEFAULT = 0,
52 REGMAP_ENDIAN_BIG,
53 REGMAP_ENDIAN_LITTLE,
54 REGMAP_ENDIAN_NATIVE,
55 };
56
57 /**
58 * A register range, used for access related checks
59 * (readable/writeable/volatile/precious checks)
60 *
61 * @range_min: address of first register
62 * @range_max: address of last register
63 */
64 struct regmap_range {
65 unsigned int range_min;
66 unsigned int range_max;
67 };
68
69 /*
70 * A table of ranges including some yes ranges and some no ranges.
71 * If a register belongs to a no_range, the corresponding check function
72 * will return false. If a register belongs to a yes range, the corresponding
73 * check function will return true. "no_ranges" are searched first.
74 *
75 * @yes_ranges : pointer to an array of regmap ranges used as "yes ranges"
76 * @n_yes_ranges: size of the above array
77 * @no_ranges: pointer to an array of regmap ranges used as "no ranges"
78 * @n_no_ranges: size of the above array
79 */
80 struct regmap_access_table {
81 const struct regmap_range *yes_ranges;
82 unsigned int n_yes_ranges;
83 const struct regmap_range *no_ranges;
84 unsigned int n_no_ranges;
85 };
86
87 typedef void (*regmap_lock)(void *);
88 typedef void (*regmap_unlock)(void *);
89
90 /**
91 * Configuration for the register map of a device.
92 *
93 * @name: Optional name of the regmap. Useful when a device has multiple
94 * register regions.
95 *
96 * @reg_bits: Number of bits in a register address, mandatory.
97 * @reg_stride: The register address stride. Valid register addresses are a
98 * multiple of this value. If set to 0, a value of 1 will be
99 * used.
100 * @pad_bits: Number of bits of padding between register and value.
101 * @val_bits: Number of bits in a register value, mandatory.
102 *
103 * @writeable_reg: Optional callback returning true if the register
104 * can be written to. If this field is NULL but wr_table
105 * (see below) is not, the check is performed on such table
106 * (a register is writeable if it belongs to one of the ranges
107 * specified by wr_table).
108 * @readable_reg: Optional callback returning true if the register
109 * can be read from. If this field is NULL but rd_table
110 * (see below) is not, the check is performed on such table
111 * (a register is readable if it belongs to one of the ranges
112 * specified by rd_table).
113 * @volatile_reg: Optional callback returning true if the register
114 * value can't be cached. If this field is NULL but
115 * volatile_table (see below) is not, the check is performed on
116 * such table (a register is volatile if it belongs to one of
117 * the ranges specified by volatile_table).
118 * @precious_reg: Optional callback returning true if the rgister
119 * should not be read outside of a call from the driver
120 * (eg, a clear on read interrupt status register). If this
121 * field is NULL but precious_table (see below) is not, the
122 * check is performed on such table (a register is precious if
123 * it belongs to one of the ranges specified by precious_table).
124 * @lock: Optional lock callback (overrides regmap's default lock
125 * function, based on spinlock or mutex).
126 * @unlock: As above for unlocking.
127 * @lock_arg: this field is passed as the only argument of lock/unlock
128 * functions (ignored in case regular lock/unlock functions
129 * are not overridden).
130 *
131 * @max_register: Optional, specifies the maximum valid register index.
132 * @wr_table: Optional, points to a struct regmap_access_table specifying
133 * valid ranges for write access.
134 * @rd_table: As above, for read access.
135 * @volatile_table: As above, for volatile registers.
136 * @precious_table: As above, for precious registers.
137 * @reg_defaults: Power on reset values for registers (for use with
138 * register cache support).
139 * @num_reg_defaults: Number of elements in reg_defaults.
140 *
141 * @read_flag_mask: Mask to be set in the top byte of the register when doing
142 * a read.
143 * @write_flag_mask: Mask to be set in the top byte of the register when doing
144 * a write. If both read_flag_mask and write_flag_mask are
145 * empty the regmap_bus default masks are used.
146 * @use_single_rw: If set, converts the bulk read and write operations into
147 * a series of single read and write operations. This is useful
148 * for device that does not support bulk read and write.
149 *
150 * @cache_type: The actual cache type.
151 * @reg_defaults_raw: Power on reset values for registers (for use with
152 * register cache support).
153 * @num_reg_defaults_raw: Number of elements in reg_defaults_raw.
154 * @reg_format_endian: Endianness for formatted register addresses. If this is
155 * DEFAULT, the @reg_format_endian_default value from the
156 * regmap bus is used.
157 * @val_format_endian: Endianness for formatted register values. If this is
158 * DEFAULT, the @reg_format_endian_default value from the
159 * regmap bus is used.
160 *
161 * @ranges: Array of configuration entries for virtual address ranges.
162 * @num_ranges: Number of range configuration entries.
163 */
164 struct regmap_config {
165 const char *name;
166
167 int reg_bits;
168 int reg_stride;
169 int pad_bits;
170 int val_bits;
171
172 bool (*writeable_reg)(struct device *dev, unsigned int reg);
173 bool (*readable_reg)(struct device *dev, unsigned int reg);
174 bool (*volatile_reg)(struct device *dev, unsigned int reg);
175 bool (*precious_reg)(struct device *dev, unsigned int reg);
176 regmap_lock lock;
177 regmap_unlock unlock;
178 void *lock_arg;
179
180 unsigned int max_register;
181 const struct regmap_access_table *wr_table;
182 const struct regmap_access_table *rd_table;
183 const struct regmap_access_table *volatile_table;
184 const struct regmap_access_table *precious_table;
185 const struct reg_default *reg_defaults;
186 unsigned int num_reg_defaults;
187 enum regcache_type cache_type;
188 const void *reg_defaults_raw;
189 unsigned int num_reg_defaults_raw;
190
191 u8 read_flag_mask;
192 u8 write_flag_mask;
193
194 bool use_single_rw;
195
196 enum regmap_endian reg_format_endian;
197 enum regmap_endian val_format_endian;
198
199 const struct regmap_range_cfg *ranges;
200 unsigned int num_ranges;
201 };
202
203 /**
204 * Configuration for indirectly accessed or paged registers.
205 * Registers, mapped to this virtual range, are accessed in two steps:
206 * 1. page selector register update;
207 * 2. access through data window registers.
208 *
209 * @name: Descriptive name for diagnostics
210 *
211 * @range_min: Address of the lowest register address in virtual range.
212 * @range_max: Address of the highest register in virtual range.
213 *
214 * @page_sel_reg: Register with selector field.
215 * @page_sel_mask: Bit shift for selector value.
216 * @page_sel_shift: Bit mask for selector value.
217 *
218 * @window_start: Address of first (lowest) register in data window.
219 * @window_len: Number of registers in data window.
220 */
221 struct regmap_range_cfg {
222 const char *name;
223
224 /* Registers of virtual address range */
225 unsigned int range_min;
226 unsigned int range_max;
227
228 /* Page selector for indirect addressing */
229 unsigned int selector_reg;
230 unsigned int selector_mask;
231 int selector_shift;
232
233 /* Data window (per each page) */
234 unsigned int window_start;
235 unsigned int window_len;
236 };
237
238 struct regmap_async;
239
240 typedef int (*regmap_hw_write)(void *context, const void *data,
241 size_t count);
242 typedef int (*regmap_hw_gather_write)(void *context,
243 const void *reg, size_t reg_len,
244 const void *val, size_t val_len);
245 typedef int (*regmap_hw_async_write)(void *context,
246 const void *reg, size_t reg_len,
247 const void *val, size_t val_len,
248 struct regmap_async *async);
249 typedef int (*regmap_hw_read)(void *context,
250 const void *reg_buf, size_t reg_size,
251 void *val_buf, size_t val_size);
252 typedef struct regmap_async *(*regmap_hw_async_alloc)(void);
253 typedef void (*regmap_hw_free_context)(void *context);
254
255 /**
256 * Description of a hardware bus for the register map infrastructure.
257 *
258 * @fast_io: Register IO is fast. Use a spinlock instead of a mutex
259 * to perform locking. This field is ignored if custom lock/unlock
260 * functions are used (see fields lock/unlock of
261 * struct regmap_config).
262 * @write: Write operation.
263 * @gather_write: Write operation with split register/value, return -ENOTSUPP
264 * if not implemented on a given device.
265 * @async_write: Write operation which completes asynchronously, optional and
266 * must serialise with respect to non-async I/O.
267 * @read: Read operation. Data is returned in the buffer used to transmit
268 * data.
269 * @async_alloc: Allocate a regmap_async() structure.
270 * @read_flag_mask: Mask to be set in the top byte of the register when doing
271 * a read.
272 * @reg_format_endian_default: Default endianness for formatted register
273 * addresses. Used when the regmap_config specifies DEFAULT. If this is
274 * DEFAULT, BIG is assumed.
275 * @val_format_endian_default: Default endianness for formatted register
276 * values. Used when the regmap_config specifies DEFAULT. If this is
277 * DEFAULT, BIG is assumed.
278 * @async_size: Size of struct used for async work.
279 */
280 struct regmap_bus {
281 bool fast_io;
282 regmap_hw_write write;
283 regmap_hw_gather_write gather_write;
284 regmap_hw_async_write async_write;
285 regmap_hw_read read;
286 regmap_hw_free_context free_context;
287 regmap_hw_async_alloc async_alloc;
288 u8 read_flag_mask;
289 enum regmap_endian reg_format_endian_default;
290 enum regmap_endian val_format_endian_default;
291 };
292
293 struct regmap *regmap_init(struct device *dev,
294 const struct regmap_bus *bus,
295 void *bus_context,
296 const struct regmap_config *config);
297 struct regmap *regmap_init_i2c(struct i2c_client *i2c,
298 const struct regmap_config *config);
299 struct regmap *regmap_init_spi(struct spi_device *dev,
300 const struct regmap_config *config);
301 struct regmap *regmap_init_mmio(struct device *dev,
302 void __iomem *regs,
303 const struct regmap_config *config);
304
305 struct regmap *devm_regmap_init(struct device *dev,
306 const struct regmap_bus *bus,
307 void *bus_context,
308 const struct regmap_config *config);
309 struct regmap *devm_regmap_init_i2c(struct i2c_client *i2c,
310 const struct regmap_config *config);
311 struct regmap *devm_regmap_init_spi(struct spi_device *dev,
312 const struct regmap_config *config);
313 struct regmap *devm_regmap_init_mmio(struct device *dev,
314 void __iomem *regs,
315 const struct regmap_config *config);
316
317 void regmap_exit(struct regmap *map);
318 int regmap_reinit_cache(struct regmap *map,
319 const struct regmap_config *config);
320 struct regmap *dev_get_regmap(struct device *dev, const char *name);
321 int regmap_write(struct regmap *map, unsigned int reg, unsigned int val);
322 int regmap_raw_write(struct regmap *map, unsigned int reg,
323 const void *val, size_t val_len);
324 int regmap_bulk_write(struct regmap *map, unsigned int reg, const void *val,
325 size_t val_count);
326 int regmap_raw_write_async(struct regmap *map, unsigned int reg,
327 const void *val, size_t val_len);
328 int regmap_read(struct regmap *map, unsigned int reg, unsigned int *val);
329 int regmap_raw_read(struct regmap *map, unsigned int reg,
330 void *val, size_t val_len);
331 int regmap_bulk_read(struct regmap *map, unsigned int reg, void *val,
332 size_t val_count);
333 int regmap_update_bits(struct regmap *map, unsigned int reg,
334 unsigned int mask, unsigned int val);
335 int regmap_update_bits_check(struct regmap *map, unsigned int reg,
336 unsigned int mask, unsigned int val,
337 bool *change);
338 int regmap_get_val_bytes(struct regmap *map);
339 int regmap_async_complete(struct regmap *map);
340
341 int regcache_sync(struct regmap *map);
342 int regcache_sync_region(struct regmap *map, unsigned int min,
343 unsigned int max);
344 void regcache_cache_only(struct regmap *map, bool enable);
345 void regcache_cache_bypass(struct regmap *map, bool enable);
346 void regcache_mark_dirty(struct regmap *map);
347
348 int regmap_register_patch(struct regmap *map, const struct reg_default *regs,
349 int num_regs);
350
351 static inline bool regmap_reg_in_range(unsigned int reg,
352 const struct regmap_range *range)
353 {
354 return reg >= range->range_min && reg <= range->range_max;
355 }
356
357 bool regmap_reg_in_ranges(unsigned int reg,
358 const struct regmap_range *ranges,
359 unsigned int nranges);
360
361 /**
362 * Description of an IRQ for the generic regmap irq_chip.
363 *
364 * @reg_offset: Offset of the status/mask register within the bank
365 * @mask: Mask used to flag/control the register.
366 */
367 struct regmap_irq {
368 unsigned int reg_offset;
369 unsigned int mask;
370 };
371
372 /**
373 * Description of a generic regmap irq_chip. This is not intended to
374 * handle every possible interrupt controller, but it should handle a
375 * substantial proportion of those that are found in the wild.
376 *
377 * @name: Descriptive name for IRQ controller.
378 *
379 * @status_base: Base status register address.
380 * @mask_base: Base mask register address.
381 * @ack_base: Base ack address. If zero then the chip is clear on read.
382 * @wake_base: Base address for wake enables. If zero unsupported.
383 * @irq_reg_stride: Stride to use for chips where registers are not contiguous.
384 * @runtime_pm: Hold a runtime PM lock on the device when accessing it.
385 *
386 * @num_regs: Number of registers in each control bank.
387 * @irqs: Descriptors for individual IRQs. Interrupt numbers are
388 * assigned based on the index in the array of the interrupt.
389 * @num_irqs: Number of descriptors.
390 */
391 struct regmap_irq_chip {
392 const char *name;
393
394 unsigned int status_base;
395 unsigned int mask_base;
396 unsigned int ack_base;
397 unsigned int wake_base;
398 unsigned int irq_reg_stride;
399 unsigned int mask_invert;
400 bool runtime_pm;
401
402 int num_regs;
403
404 const struct regmap_irq *irqs;
405 int num_irqs;
406 };
407
408 struct regmap_irq_chip_data;
409
410 int regmap_add_irq_chip(struct regmap *map, int irq, int irq_flags,
411 int irq_base, const struct regmap_irq_chip *chip,
412 struct regmap_irq_chip_data **data);
413 void regmap_del_irq_chip(int irq, struct regmap_irq_chip_data *data);
414 int regmap_irq_chip_get_base(struct regmap_irq_chip_data *data);
415 int regmap_irq_get_virq(struct regmap_irq_chip_data *data, int irq);
416 struct irq_domain *regmap_irq_get_domain(struct regmap_irq_chip_data *data);
417
418 #else
419
420 /*
421 * These stubs should only ever be called by generic code which has
422 * regmap based facilities, if they ever get called at runtime
423 * something is going wrong and something probably needs to select
424 * REGMAP.
425 */
426
427 static inline int regmap_write(struct regmap *map, unsigned int reg,
428 unsigned int val)
429 {
430 WARN_ONCE(1, "regmap API is disabled");
431 return -EINVAL;
432 }
433
434 static inline int regmap_raw_write(struct regmap *map, unsigned int reg,
435 const void *val, size_t val_len)
436 {
437 WARN_ONCE(1, "regmap API is disabled");
438 return -EINVAL;
439 }
440
441 static inline int regmap_raw_write_async(struct regmap *map, unsigned int reg,
442 const void *val, size_t val_len)
443 {
444 WARN_ONCE(1, "regmap API is disabled");
445 return -EINVAL;
446 }
447
448 static inline int regmap_bulk_write(struct regmap *map, unsigned int reg,
449 const void *val, size_t val_count)
450 {
451 WARN_ONCE(1, "regmap API is disabled");
452 return -EINVAL;
453 }
454
455 static inline int regmap_read(struct regmap *map, unsigned int reg,
456 unsigned int *val)
457 {
458 WARN_ONCE(1, "regmap API is disabled");
459 return -EINVAL;
460 }
461
462 static inline int regmap_raw_read(struct regmap *map, unsigned int reg,
463 void *val, size_t val_len)
464 {
465 WARN_ONCE(1, "regmap API is disabled");
466 return -EINVAL;
467 }
468
469 static inline int regmap_bulk_read(struct regmap *map, unsigned int reg,
470 void *val, size_t val_count)
471 {
472 WARN_ONCE(1, "regmap API is disabled");
473 return -EINVAL;
474 }
475
476 static inline int regmap_update_bits(struct regmap *map, unsigned int reg,
477 unsigned int mask, unsigned int val)
478 {
479 WARN_ONCE(1, "regmap API is disabled");
480 return -EINVAL;
481 }
482
483 static inline int regmap_update_bits_check(struct regmap *map,
484 unsigned int reg,
485 unsigned int mask, unsigned int val,
486 bool *change)
487 {
488 WARN_ONCE(1, "regmap API is disabled");
489 return -EINVAL;
490 }
491
492 static inline int regmap_get_val_bytes(struct regmap *map)
493 {
494 WARN_ONCE(1, "regmap API is disabled");
495 return -EINVAL;
496 }
497
498 static inline int regcache_sync(struct regmap *map)
499 {
500 WARN_ONCE(1, "regmap API is disabled");
501 return -EINVAL;
502 }
503
504 static inline int regcache_sync_region(struct regmap *map, unsigned int min,
505 unsigned int max)
506 {
507 WARN_ONCE(1, "regmap API is disabled");
508 return -EINVAL;
509 }
510
511 static inline void regcache_cache_only(struct regmap *map, bool enable)
512 {
513 WARN_ONCE(1, "regmap API is disabled");
514 }
515
516 static inline void regcache_cache_bypass(struct regmap *map, bool enable)
517 {
518 WARN_ONCE(1, "regmap API is disabled");
519 }
520
521 static inline void regcache_mark_dirty(struct regmap *map)
522 {
523 WARN_ONCE(1, "regmap API is disabled");
524 }
525
526 static inline void regmap_async_complete(struct regmap *map)
527 {
528 WARN_ONCE(1, "regmap API is disabled");
529 }
530
531 static inline int regmap_register_patch(struct regmap *map,
532 const struct reg_default *regs,
533 int num_regs)
534 {
535 WARN_ONCE(1, "regmap API is disabled");
536 return -EINVAL;
537 }
538
539 static inline struct regmap *dev_get_regmap(struct device *dev,
540 const char *name)
541 {
542 return NULL;
543 }
544
545 #endif
546
547 #endif
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