1 // SPDX-License-Identifier: GPL-2.0
2 //
3 // Register cache access API
4 //
5 // Copyright 2011 Wolfson Microelectronics plc
6 //
7 // Author: Dimitris Papastamos <dp@opensource.wolfsonmicro.com>
8
9 #include <linux/bsearch.h>
10 #include <linux/device.h>
11 #include <linux/export.h>
12 #include <linux/slab.h>
13 #include <linux/sort.h>
14
15 #include "trace.h"
16 #include "internal.h"
17
18 static const struct regcache_ops *cache_types[] = {
19 ®cache_flat_sparse_ops,
20 ®cache_rbtree_ops,
21 ®cache_maple_ops,
22 ®cache_flat_ops,
23 };
24
regcache_defaults_cmp(const void * a,const void * b)25 static int regcache_defaults_cmp(const void *a, const void *b)
26 {
27 const struct reg_default *x = a;
28 const struct reg_default *y = b;
29
30 if (x->reg > y->reg)
31 return 1;
32 else if (x->reg < y->reg)
33 return -1;
34 else
35 return 0;
36 }
37
regcache_sort_defaults(struct reg_default * defaults,unsigned int ndefaults)38 void regcache_sort_defaults(struct reg_default *defaults, unsigned int ndefaults)
39 {
40 sort(defaults, ndefaults, sizeof(*defaults),
41 regcache_defaults_cmp, NULL);
42 }
43 EXPORT_SYMBOL_GPL(regcache_sort_defaults);
44
regcache_count_cacheable_registers(struct regmap * map)45 static int regcache_count_cacheable_registers(struct regmap *map)
46 {
47 unsigned int count;
48
49 /* calculate the size of reg_defaults */
50 count = 0;
51 for (unsigned int i = 0; i < map->num_reg_defaults_raw; i++)
52 if (regmap_readable(map, i * map->reg_stride) &&
53 !regmap_volatile(map, i * map->reg_stride))
54 count++;
55
56 return count;
57 }
58
regcache_hw_init(struct regmap * map)59 static int regcache_hw_init(struct regmap *map)
60 {
61 int ret;
62 unsigned int reg, val;
63 void *tmp_buf;
64
65 if (!map->reg_defaults_raw) {
66 bool cache_bypass = map->cache_bypass;
67 dev_dbg(map->dev, "No cache defaults, reading back from HW\n");
68
69 /* Bypass the cache access till data read from HW */
70 map->cache_bypass = true;
71 tmp_buf = kmalloc(map->cache_size_raw, GFP_KERNEL);
72 if (!tmp_buf)
73 return -ENOMEM;
74 ret = regmap_raw_read(map, 0, tmp_buf,
75 map->cache_size_raw);
76 map->cache_bypass = cache_bypass;
77 if (ret == 0) {
78 map->reg_defaults_raw = tmp_buf;
79 map->cache_free = true;
80 } else {
81 kfree(tmp_buf);
82 }
83 }
84
85 /* fill the reg_defaults */
86 for (unsigned int i = 0, j = 0; i < map->num_reg_defaults_raw; i++) {
87 reg = i * map->reg_stride;
88
89 if (!regmap_readable(map, reg))
90 continue;
91
92 if (regmap_volatile(map, reg))
93 continue;
94
95 if (map->reg_defaults_raw) {
96 val = regcache_get_val(map, map->reg_defaults_raw, i);
97 } else {
98 bool cache_bypass = map->cache_bypass;
99
100 map->cache_bypass = true;
101 ret = regmap_read(map, reg, &val);
102 map->cache_bypass = cache_bypass;
103 if (ret != 0) {
104 dev_err(map->dev, "Failed to read %x: %d\n",
105 reg, ret);
106 return ret;
107 }
108 }
109
110 map->reg_defaults[j].reg = reg;
111 map->reg_defaults[j].def = val;
112 j++;
113 }
114
115 return 0;
116 }
117
regcache_hw_exit(struct regmap * map)118 static void regcache_hw_exit(struct regmap *map)
119 {
120 if (map->cache_free)
121 kfree(map->reg_defaults_raw);
122 }
123
regcache_init(struct regmap * map,const struct regmap_config * config)124 int regcache_init(struct regmap *map, const struct regmap_config *config)
125 {
126 bool sort_defaults = false;
127 unsigned int reg_prev = 0;
128 int count = 0;
129 int ret;
130 int i;
131 void *tmp_buf;
132
133 if (map->cache_type == REGCACHE_NONE) {
134 if (config->reg_defaults || config->num_reg_defaults_raw)
135 dev_warn(map->dev,
136 "No cache used with register defaults set!\n");
137
138 map->cache_bypass = true;
139 return 0;
140 }
141
142 if (config->reg_defaults && !config->num_reg_defaults) {
143 dev_err(map->dev,
144 "Register defaults are set without the number!\n");
145 return -EINVAL;
146 }
147
148 if (config->num_reg_defaults && !config->reg_defaults) {
149 dev_err(map->dev,
150 "Register defaults number are set without the reg!\n");
151 return -EINVAL;
152 }
153
154 for (i = 0; i < config->num_reg_defaults; i++) {
155 if (config->reg_defaults[i].reg % map->reg_stride)
156 return -EINVAL;
157
158 if (reg_prev > config->reg_defaults[i].reg)
159 sort_defaults = true;
160
161 reg_prev = config->reg_defaults[i].reg;
162 }
163
164 for (i = 0; i < ARRAY_SIZE(cache_types); i++)
165 if (cache_types[i]->type == map->cache_type)
166 break;
167
168 if (i == ARRAY_SIZE(cache_types)) {
169 dev_err(map->dev, "Could not match cache type: %d\n",
170 map->cache_type);
171 return -EINVAL;
172 }
173
174 map->num_reg_defaults = config->num_reg_defaults;
175 map->num_reg_defaults_raw = config->num_reg_defaults_raw;
176 map->reg_defaults_raw = config->reg_defaults_raw;
177 map->cache_word_size = BITS_TO_BYTES(config->val_bits);
178 map->cache_size_raw = map->cache_word_size * config->num_reg_defaults_raw;
179
180 map->cache = NULL;
181 map->cache_ops = cache_types[i];
182
183 if (!map->cache_ops->read ||
184 !map->cache_ops->write ||
185 !map->cache_ops->name)
186 return -EINVAL;
187
188 /* We still need to ensure that the reg_defaults
189 * won't vanish from under us. We'll need to make
190 * a copy of it.
191 */
192 if (config->reg_defaults) {
193 tmp_buf = kmemdup_array(config->reg_defaults, map->num_reg_defaults,
194 sizeof(*map->reg_defaults), GFP_KERNEL);
195 if (!tmp_buf)
196 return -ENOMEM;
197
198 /* regcache_lookup_reg() bsearch()es this array */
199 if (sort_defaults) {
200 dev_warn(map->dev,
201 "Driver needs fixing: Unsorted reg_defaults, sorting the copy\n");
202 regcache_sort_defaults(tmp_buf, map->num_reg_defaults);
203 }
204 map->reg_defaults = tmp_buf;
205 } else if (map->num_reg_defaults_raw) {
206 count = regcache_count_cacheable_registers(map);
207 if (!count)
208 map->cache_bypass = true;
209
210 /* All registers are unreadable or volatile, so just bypass */
211 if (map->cache_bypass)
212 return 0;
213
214 map->num_reg_defaults = count;
215 map->reg_defaults = kmalloc_objs(struct reg_default, count);
216 if (!map->reg_defaults)
217 return -ENOMEM;
218 }
219
220 if (!map->max_register_is_set && map->num_reg_defaults_raw) {
221 map->max_register = (map->num_reg_defaults_raw - 1) * map->reg_stride;
222 map->max_register_is_set = true;
223 }
224
225 if (map->cache_ops->init) {
226 dev_dbg(map->dev, "Initializing %s cache\n",
227 map->cache_ops->name);
228 map->lock(map->lock_arg);
229 ret = map->cache_ops->init(map);
230 map->unlock(map->lock_arg);
231 if (ret)
232 goto err_free_reg_defaults;
233 }
234
235 /*
236 * Some devices such as PMICs don't have cache defaults,
237 * we cope with this by reading back the HW registers and
238 * crafting the cache defaults by hand.
239 */
240 if (count) {
241 ret = regcache_hw_init(map);
242 if (ret)
243 goto err_exit;
244 }
245
246 if (map->cache_ops->populate &&
247 (map->num_reg_defaults || map->reg_default_cb)) {
248 dev_dbg(map->dev, "Populating %s cache\n", map->cache_ops->name);
249 map->lock(map->lock_arg);
250 ret = map->cache_ops->populate(map);
251 map->unlock(map->lock_arg);
252 if (ret)
253 goto err_free;
254 }
255 return 0;
256
257 err_free:
258 regcache_hw_exit(map);
259 err_exit:
260 if (map->cache_ops->exit) {
261 dev_dbg(map->dev, "Destroying %s cache\n", map->cache_ops->name);
262 map->lock(map->lock_arg);
263 map->cache_ops->exit(map);
264 map->unlock(map->lock_arg);
265 }
266 err_free_reg_defaults:
267 kfree(map->reg_defaults);
268
269 return ret;
270 }
271
regcache_exit(struct regmap * map)272 void regcache_exit(struct regmap *map)
273 {
274 if (map->cache_type == REGCACHE_NONE)
275 return;
276
277 BUG_ON(!map->cache_ops);
278
279 regcache_hw_exit(map);
280
281 if (map->cache_ops->exit) {
282 dev_dbg(map->dev, "Destroying %s cache\n",
283 map->cache_ops->name);
284 map->lock(map->lock_arg);
285 map->cache_ops->exit(map);
286 map->unlock(map->lock_arg);
287 }
288
289 kfree(map->reg_defaults);
290 }
291
292 /**
293 * regcache_read - Fetch the value of a given register from the cache.
294 *
295 * @map: map to configure.
296 * @reg: The register index.
297 * @value: The value to be returned.
298 *
299 * Return a negative value on failure, 0 on success.
300 */
regcache_read(struct regmap * map,unsigned int reg,unsigned int * value)301 int regcache_read(struct regmap *map,
302 unsigned int reg, unsigned int *value)
303 {
304 int ret;
305
306 if (map->cache_type == REGCACHE_NONE)
307 return -EINVAL;
308
309 BUG_ON(!map->cache_ops);
310
311 if (!regmap_volatile(map, reg)) {
312 ret = map->cache_ops->read(map, reg, value);
313
314 if (ret == 0)
315 trace_regmap_reg_read_cache(map, reg, *value);
316
317 return ret;
318 }
319
320 return -EINVAL;
321 }
322
323 /**
324 * regcache_write - Set the value of a given register in the cache.
325 *
326 * @map: map to configure.
327 * @reg: The register index.
328 * @value: The new register value.
329 *
330 * Return a negative value on failure, 0 on success.
331 */
regcache_write(struct regmap * map,unsigned int reg,unsigned int value)332 int regcache_write(struct regmap *map,
333 unsigned int reg, unsigned int value)
334 {
335 if (map->cache_type == REGCACHE_NONE)
336 return 0;
337
338 BUG_ON(!map->cache_ops);
339
340 if (!regmap_volatile(map, reg))
341 return map->cache_ops->write(map, reg, value);
342
343 return 0;
344 }
345
regcache_reg_needs_sync(struct regmap * map,unsigned int reg,unsigned int val)346 bool regcache_reg_needs_sync(struct regmap *map, unsigned int reg,
347 unsigned int val)
348 {
349 int ret;
350
351 if (!regmap_writeable(map, reg))
352 return false;
353
354 /* If we don't know the chip just got reset, then sync everything. */
355 if (!map->no_sync_defaults)
356 return true;
357
358 /* Is this the hardware default? If so skip. */
359 ret = regcache_lookup_reg(map, reg);
360 if (ret >= 0 && val == map->reg_defaults[ret].def)
361 return false;
362 return true;
363 }
364
regcache_default_sync(struct regmap * map,unsigned int min,unsigned int max)365 static int regcache_default_sync(struct regmap *map, unsigned int min,
366 unsigned int max)
367 {
368 unsigned int reg;
369
370 for (reg = min; reg <= max; reg += map->reg_stride) {
371 unsigned int val;
372 int ret;
373
374 if (regmap_volatile(map, reg) ||
375 !regmap_writeable(map, reg))
376 continue;
377
378 ret = regcache_read(map, reg, &val);
379 if (ret == -ENOENT)
380 continue;
381 if (ret)
382 return ret;
383
384 if (!regcache_reg_needs_sync(map, reg, val))
385 continue;
386
387 map->cache_bypass = true;
388 ret = _regmap_write(map, reg, val);
389 map->cache_bypass = false;
390 if (ret) {
391 dev_err(map->dev, "Unable to sync register %#x. %d\n",
392 reg, ret);
393 return ret;
394 }
395 dev_dbg(map->dev, "Synced register %#x, value %#x\n", reg, val);
396 }
397
398 return 0;
399 }
400
rbtree_all(const void * key,const struct rb_node * node)401 static int rbtree_all(const void *key, const struct rb_node *node)
402 {
403 return 0;
404 }
405
406 /**
407 * regcache_sync - Sync the register cache with the hardware.
408 *
409 * @map: map to configure.
410 *
411 * Any registers that should not be synced should be marked as
412 * volatile. In general drivers can choose not to use the provided
413 * syncing functionality if they so require.
414 *
415 * This pushes cached changes made while cache_only (e.g. suspend) down
416 * to hardware. The caller must disable cache_only before calling this
417 * function.
418 *
419 * Return a negative value on failure, 0 on success.
420 */
regcache_sync(struct regmap * map)421 int regcache_sync(struct regmap *map)
422 {
423 int sync_ret = 0;
424 int selector_ret = 0;
425 unsigned int i;
426 const char *name;
427 bool bypass;
428 struct rb_node *node;
429
430 if (WARN_ON(map->cache_type == REGCACHE_NONE))
431 return -EINVAL;
432
433 BUG_ON(!map->cache_ops);
434
435 map->lock(map->lock_arg);
436
437 if (WARN_ON(map->cache_only)) {
438 map->unlock(map->lock_arg);
439 return -EINVAL;
440 }
441
442 /* Remember the initial bypass state */
443 bypass = map->cache_bypass;
444 dev_dbg(map->dev, "Syncing %s cache\n",
445 map->cache_ops->name);
446 name = map->cache_ops->name;
447 trace_regcache_sync(map, name, "start");
448
449 if (!map->cache_dirty)
450 goto out;
451
452 /* Apply any patch first */
453 map->cache_bypass = true;
454 for (i = 0; i < map->patch_regs; i++) {
455 sync_ret = _regmap_write(map, map->patch[i].reg, map->patch[i].def);
456 if (sync_ret != 0) {
457 dev_err(map->dev, "Failed to write %x = %x: %d\n",
458 map->patch[i].reg, map->patch[i].def, sync_ret);
459 goto out;
460 }
461 }
462 map->cache_bypass = false;
463
464 if (map->cache_ops->sync)
465 sync_ret = map->cache_ops->sync(map, 0, map->max_register);
466 else
467 sync_ret = regcache_default_sync(map, 0, map->max_register);
468
469 if (sync_ret == 0)
470 map->cache_dirty = false;
471
472 out:
473 /* Restore the bypass state */
474 map->cache_bypass = bypass;
475 map->no_sync_defaults = false;
476
477 /*
478 * If we did any paging with cache bypassed and a cached
479 * paging register then the register and cache state might
480 * have gone out of sync, force writes of all the paging
481 * registers.
482 */
483 rb_for_each(node, NULL, &map->range_tree, rbtree_all) {
484 struct regmap_range_node *this =
485 rb_entry(node, struct regmap_range_node, node);
486
487 /* If there's nothing in the cache there's nothing to sync */
488 if (regcache_read(map, this->selector_reg, &i) != 0)
489 continue;
490
491 selector_ret = _regmap_write(map, this->selector_reg, i);
492 if (selector_ret != 0) {
493 map->cache_dirty = true;
494 dev_err(map->dev, "Failed to write %x = %x: %d\n",
495 this->selector_reg, i, selector_ret);
496 break;
497 }
498 }
499
500 map->unlock(map->lock_arg);
501
502 regmap_async_complete(map);
503
504 trace_regcache_sync(map, name, "stop");
505
506 return sync_ret ? sync_ret : selector_ret;
507 }
508 EXPORT_SYMBOL_GPL(regcache_sync);
509
510 /**
511 * regcache_sync_region - Sync part of the register cache with the hardware.
512 *
513 * @map: map to sync.
514 * @min: first register to sync
515 * @max: last register to sync
516 *
517 * Write all non-default register values in the specified region to
518 * the hardware.
519 *
520 * Return a negative value on failure, 0 on success.
521 */
regcache_sync_region(struct regmap * map,unsigned int min,unsigned int max)522 int regcache_sync_region(struct regmap *map, unsigned int min,
523 unsigned int max)
524 {
525 int ret = 0;
526 const char *name;
527 bool bypass;
528
529 if (WARN_ON(map->cache_type == REGCACHE_NONE))
530 return -EINVAL;
531
532 BUG_ON(!map->cache_ops);
533
534 map->lock(map->lock_arg);
535
536 if (WARN_ON(map->cache_only)) {
537 map->unlock(map->lock_arg);
538 return -EINVAL;
539 }
540 /* Remember the initial bypass state */
541 bypass = map->cache_bypass;
542
543 name = map->cache_ops->name;
544 dev_dbg(map->dev, "Syncing %s cache from %#x-%#x\n", name, min, max);
545
546 trace_regcache_sync(map, name, "start region");
547
548 if (!map->cache_dirty)
549 goto out;
550
551 map->async = true;
552
553 if (map->cache_ops->sync)
554 ret = map->cache_ops->sync(map, min, max);
555 else
556 ret = regcache_default_sync(map, min, max);
557
558 out:
559 /* Restore the bypass state */
560 map->cache_bypass = bypass;
561 map->async = false;
562 map->no_sync_defaults = false;
563 map->unlock(map->lock_arg);
564
565 regmap_async_complete(map);
566
567 trace_regcache_sync(map, name, "stop region");
568
569 return ret;
570 }
571 EXPORT_SYMBOL_GPL(regcache_sync_region);
572
573 /**
574 * regcache_drop_region - Discard part of the register cache
575 *
576 * @map: map to operate on
577 * @min: first register to discard
578 * @max: last register to discard
579 *
580 * Discard part of the register cache.
581 *
582 * Return a negative value on failure, 0 on success.
583 */
regcache_drop_region(struct regmap * map,unsigned int min,unsigned int max)584 int regcache_drop_region(struct regmap *map, unsigned int min,
585 unsigned int max)
586 {
587 int ret = 0;
588
589 if (!map->cache_ops || !map->cache_ops->drop)
590 return -EINVAL;
591
592 map->lock(map->lock_arg);
593
594 trace_regcache_drop_region(map, min, max);
595
596 ret = map->cache_ops->drop(map, min, max);
597
598 map->unlock(map->lock_arg);
599
600 return ret;
601 }
602 EXPORT_SYMBOL_GPL(regcache_drop_region);
603
604 /**
605 * regcache_cache_only - Put a register map into cache only mode
606 *
607 * @map: map to configure
608 * @enable: flag if changes should be written to the hardware
609 *
610 * When a register map is marked as cache only writes to the register
611 * map API will only update the register cache, they will not cause
612 * any hardware changes. This is useful for allowing portions of
613 * drivers to act as though the device were functioning as normal when
614 * it is disabled for power saving reasons.
615 */
regcache_cache_only(struct regmap * map,bool enable)616 void regcache_cache_only(struct regmap *map, bool enable)
617 {
618 map->lock(map->lock_arg);
619 WARN_ON(map->cache_type != REGCACHE_NONE &&
620 map->cache_bypass && enable);
621 map->cache_only = enable;
622 trace_regmap_cache_only(map, enable);
623 map->unlock(map->lock_arg);
624 }
625 EXPORT_SYMBOL_GPL(regcache_cache_only);
626
627 /**
628 * regcache_mark_dirty - Indicate that HW registers were reset to default values
629 *
630 * @map: map to mark
631 *
632 * Inform regcache that the device has been powered down or reset, so that
633 * on resume, regcache_sync() knows to write out all non-default values
634 * stored in the cache.
635 *
636 * If this function is not called, regcache_sync() will assume that
637 * the hardware state still matches the cache state, modulo any writes that
638 * happened when cache_only was true.
639 */
regcache_mark_dirty(struct regmap * map)640 void regcache_mark_dirty(struct regmap *map)
641 {
642 map->lock(map->lock_arg);
643 map->cache_dirty = true;
644 map->no_sync_defaults = true;
645 map->unlock(map->lock_arg);
646 }
647 EXPORT_SYMBOL_GPL(regcache_mark_dirty);
648
649 /**
650 * regcache_cache_bypass - Put a register map into cache bypass mode
651 *
652 * @map: map to configure
653 * @enable: flag if changes should not be written to the cache
654 *
655 * When a register map is marked with the cache bypass option, writes
656 * to the register map API will only update the hardware and not
657 * the cache directly. This is useful when syncing the cache back to
658 * the hardware.
659 */
regcache_cache_bypass(struct regmap * map,bool enable)660 void regcache_cache_bypass(struct regmap *map, bool enable)
661 {
662 map->lock(map->lock_arg);
663 WARN_ON(map->cache_only && enable);
664 map->cache_bypass = enable;
665 trace_regmap_cache_bypass(map, enable);
666 map->unlock(map->lock_arg);
667 }
668 EXPORT_SYMBOL_GPL(regcache_cache_bypass);
669
670 /**
671 * regcache_reg_cached - Check if a register is cached
672 *
673 * @map: map to check
674 * @reg: register to check
675 *
676 * Reports if a register is cached.
677 */
regcache_reg_cached(struct regmap * map,unsigned int reg)678 bool regcache_reg_cached(struct regmap *map, unsigned int reg)
679 {
680 unsigned int val;
681 int ret;
682
683 map->lock(map->lock_arg);
684
685 ret = regcache_read(map, reg, &val);
686
687 map->unlock(map->lock_arg);
688
689 return ret == 0;
690 }
691 EXPORT_SYMBOL_GPL(regcache_reg_cached);
692
regcache_set_val(struct regmap * map,void * base,unsigned int idx,unsigned int val)693 void regcache_set_val(struct regmap *map, void *base, unsigned int idx,
694 unsigned int val)
695 {
696 /* Use device native format if possible */
697 if (map->format.format_val) {
698 map->format.format_val(base + (map->cache_word_size * idx),
699 val, 0);
700 return;
701 }
702
703 switch (map->cache_word_size) {
704 case 1: {
705 u8 *cache = base;
706
707 cache[idx] = val;
708 break;
709 }
710 case 2: {
711 u16 *cache = base;
712
713 cache[idx] = val;
714 break;
715 }
716 case 4: {
717 u32 *cache = base;
718
719 cache[idx] = val;
720 break;
721 }
722 default:
723 BUG();
724 }
725 }
726
regcache_get_val(struct regmap * map,const void * base,unsigned int idx)727 unsigned int regcache_get_val(struct regmap *map, const void *base,
728 unsigned int idx)
729 {
730 if (!base)
731 return -EINVAL;
732
733 /* Use device native format if possible */
734 if (map->format.parse_val)
735 return map->format.parse_val(regcache_get_val_addr(map, base,
736 idx));
737
738 switch (map->cache_word_size) {
739 case 1: {
740 const u8 *cache = base;
741
742 return cache[idx];
743 }
744 case 2: {
745 const u16 *cache = base;
746
747 return cache[idx];
748 }
749 case 4: {
750 const u32 *cache = base;
751
752 return cache[idx];
753 }
754 default:
755 BUG();
756 }
757 /* unreachable */
758 return -1;
759 }
760
regcache_lookup_reg(struct regmap * map,unsigned int reg)761 int regcache_lookup_reg(struct regmap *map, unsigned int reg)
762 {
763 struct reg_default key;
764 struct reg_default *r;
765
766 key.reg = reg;
767 key.def = 0;
768
769 r = bsearch(&key, map->reg_defaults, map->num_reg_defaults,
770 sizeof(struct reg_default), regcache_defaults_cmp);
771
772 if (r)
773 return r - map->reg_defaults;
774 else
775 return -ENOENT;
776 }
777
regcache_reg_present(unsigned long * cache_present,unsigned int idx)778 static bool regcache_reg_present(unsigned long *cache_present, unsigned int idx)
779 {
780 if (!cache_present)
781 return true;
782
783 return test_bit(idx, cache_present);
784 }
785
regcache_sync_val(struct regmap * map,unsigned int reg,unsigned int val)786 int regcache_sync_val(struct regmap *map, unsigned int reg, unsigned int val)
787 {
788 int ret;
789
790 if (!regcache_reg_needs_sync(map, reg, val))
791 return 0;
792
793 map->cache_bypass = true;
794
795 ret = _regmap_write(map, reg, val);
796
797 map->cache_bypass = false;
798
799 if (ret != 0) {
800 dev_err(map->dev, "Unable to sync register %#x. %d\n",
801 reg, ret);
802 return ret;
803 }
804 dev_dbg(map->dev, "Synced register %#x, value %#x\n",
805 reg, val);
806
807 return 0;
808 }
809
regcache_sync_block_single(struct regmap * map,void * block,unsigned long * cache_present,unsigned int block_base,unsigned int start,unsigned int end)810 static int regcache_sync_block_single(struct regmap *map, void *block,
811 unsigned long *cache_present,
812 unsigned int block_base,
813 unsigned int start, unsigned int end)
814 {
815 unsigned int i, regtmp, val;
816 int ret;
817
818 for (i = start; i < end; i++) {
819 regtmp = block_base + (i * map->reg_stride);
820
821 if (!regcache_reg_present(cache_present, i) ||
822 !regmap_writeable(map, regtmp))
823 continue;
824
825 val = regcache_get_val(map, block, i);
826 ret = regcache_sync_val(map, regtmp, val);
827 if (ret != 0)
828 return ret;
829 }
830
831 return 0;
832 }
833
regcache_sync_block_raw_flush(struct regmap * map,const void ** data,unsigned int base,unsigned int cur)834 static int regcache_sync_block_raw_flush(struct regmap *map, const void **data,
835 unsigned int base, unsigned int cur)
836 {
837 size_t val_bytes = map->format.val_bytes;
838 int ret, count;
839
840 if (*data == NULL)
841 return 0;
842
843 count = (cur - base) / map->reg_stride;
844
845 dev_dbg(map->dev, "Writing %zu bytes for %d registers from 0x%x-0x%x\n",
846 count * val_bytes, count, base, cur - map->reg_stride);
847
848 map->cache_bypass = true;
849
850 ret = _regmap_raw_write(map, base, *data, count * val_bytes, false);
851 if (ret)
852 dev_err(map->dev, "Unable to sync registers %#x-%#x. %d\n",
853 base, cur - map->reg_stride, ret);
854
855 map->cache_bypass = false;
856
857 *data = NULL;
858
859 return ret;
860 }
861
regcache_sync_block_raw(struct regmap * map,void * block,unsigned long * cache_present,unsigned int block_base,unsigned int start,unsigned int end)862 static int regcache_sync_block_raw(struct regmap *map, void *block,
863 unsigned long *cache_present,
864 unsigned int block_base, unsigned int start,
865 unsigned int end)
866 {
867 unsigned int regtmp = 0;
868 unsigned int base = 0;
869 const void *data = NULL;
870 unsigned int val;
871 int ret;
872
873 for (unsigned int i = start; i < end; i++) {
874 regtmp = block_base + (i * map->reg_stride);
875
876 if (!regcache_reg_present(cache_present, i) ||
877 !regmap_writeable(map, regtmp)) {
878 ret = regcache_sync_block_raw_flush(map, &data,
879 base, regtmp);
880 if (ret != 0)
881 return ret;
882 continue;
883 }
884
885 val = regcache_get_val(map, block, i);
886 if (!regcache_reg_needs_sync(map, regtmp, val)) {
887 ret = regcache_sync_block_raw_flush(map, &data,
888 base, regtmp);
889 if (ret != 0)
890 return ret;
891 continue;
892 }
893
894 if (!data) {
895 data = regcache_get_val_addr(map, block, i);
896 base = regtmp;
897 }
898 }
899
900 return regcache_sync_block_raw_flush(map, &data, base, regtmp +
901 map->reg_stride);
902 }
903
regcache_sync_block(struct regmap * map,void * block,unsigned long * cache_present,unsigned int block_base,unsigned int start,unsigned int end)904 int regcache_sync_block(struct regmap *map, void *block,
905 unsigned long *cache_present,
906 unsigned int block_base, unsigned int start,
907 unsigned int end)
908 {
909 if (regmap_can_raw_write(map) && !map->use_single_write)
910 return regcache_sync_block_raw(map, block, cache_present,
911 block_base, start, end);
912 else
913 return regcache_sync_block_single(map, block, cache_present,
914 block_base, start, end);
915 }
916