blob: 1b4d93e9157e428ef57ea0e403f75cafd835e3f7 [file] [log] [blame]
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +01001/*
2 * nvmem framework core.
3 *
4 * Copyright (C) 2015 Srinivas Kandagatla <srinivas.kandagatla@linaro.org>
5 * Copyright (C) 2013 Maxime Ripard <maxime.ripard@free-electrons.com>
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License version 2 and
9 * only version 2 as published by the Free Software Foundation.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 */
16
17#include <linux/device.h>
18#include <linux/export.h>
19#include <linux/fs.h>
20#include <linux/idr.h>
21#include <linux/init.h>
22#include <linux/module.h>
23#include <linux/nvmem-consumer.h>
24#include <linux/nvmem-provider.h>
25#include <linux/of.h>
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +010026#include <linux/slab.h>
27
28struct nvmem_device {
29 const char *name;
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +010030 struct module *owner;
31 struct device dev;
32 int stride;
33 int word_size;
34 int ncells;
35 int id;
36 int users;
37 size_t size;
38 bool read_only;
Andrew Lunnb6c217a2016-02-26 20:59:19 +010039 int flags;
40 struct bin_attribute eeprom;
41 struct device *base_dev;
Srinivas Kandagatla795ddd12016-04-24 20:28:05 +010042 nvmem_reg_read_t reg_read;
43 nvmem_reg_write_t reg_write;
44 void *priv;
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +010045};
46
Andrew Lunnb6c217a2016-02-26 20:59:19 +010047#define FLAG_COMPAT BIT(0)
48
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +010049struct nvmem_cell {
50 const char *name;
51 int offset;
52 int bytes;
53 int bit_offset;
54 int nbits;
55 struct nvmem_device *nvmem;
56 struct list_head node;
57};
58
59static DEFINE_MUTEX(nvmem_mutex);
60static DEFINE_IDA(nvmem_ida);
61
62static LIST_HEAD(nvmem_cells);
63static DEFINE_MUTEX(nvmem_cells_mutex);
64
Andrew Lunnb6c217a2016-02-26 20:59:19 +010065#ifdef CONFIG_DEBUG_LOCK_ALLOC
66static struct lock_class_key eeprom_lock_key;
67#endif
68
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +010069#define to_nvmem_device(d) container_of(d, struct nvmem_device, dev)
Srinivas Kandagatla795ddd12016-04-24 20:28:05 +010070static int nvmem_reg_read(struct nvmem_device *nvmem, unsigned int offset,
71 void *val, size_t bytes)
72{
73 if (nvmem->reg_read)
74 return nvmem->reg_read(nvmem->priv, offset, val, bytes);
75
76 return -EINVAL;
77}
78
79static int nvmem_reg_write(struct nvmem_device *nvmem, unsigned int offset,
80 void *val, size_t bytes)
81{
82 if (nvmem->reg_write)
83 return nvmem->reg_write(nvmem->priv, offset, val, bytes);
84
85 return -EINVAL;
86}
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +010087
88static ssize_t bin_attr_nvmem_read(struct file *filp, struct kobject *kobj,
89 struct bin_attribute *attr,
90 char *buf, loff_t pos, size_t count)
91{
Andrew Lunnb6c217a2016-02-26 20:59:19 +010092 struct device *dev;
93 struct nvmem_device *nvmem;
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +010094 int rc;
95
Andrew Lunnb6c217a2016-02-26 20:59:19 +010096 if (attr->private)
97 dev = attr->private;
98 else
99 dev = container_of(kobj, struct device, kobj);
100 nvmem = to_nvmem_device(dev);
101
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100102 /* Stop the user from reading */
ZhengShunQian7c806882015-09-30 13:33:56 +0100103 if (pos >= nvmem->size)
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100104 return 0;
105
Srinivas Kandagatla313a72f2015-11-17 09:12:41 +0000106 if (count < nvmem->word_size)
107 return -EINVAL;
108
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100109 if (pos + count > nvmem->size)
110 count = nvmem->size - pos;
111
112 count = round_down(count, nvmem->word_size);
113
Srinivas Kandagatla795ddd12016-04-24 20:28:05 +0100114 rc = nvmem_reg_read(nvmem, pos, buf, count);
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100115
Arnd Bergmann287980e2016-05-27 23:23:25 +0200116 if (rc)
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100117 return rc;
118
119 return count;
120}
121
122static ssize_t bin_attr_nvmem_write(struct file *filp, struct kobject *kobj,
123 struct bin_attribute *attr,
124 char *buf, loff_t pos, size_t count)
125{
Andrew Lunnb6c217a2016-02-26 20:59:19 +0100126 struct device *dev;
127 struct nvmem_device *nvmem;
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100128 int rc;
129
Andrew Lunnb6c217a2016-02-26 20:59:19 +0100130 if (attr->private)
131 dev = attr->private;
132 else
133 dev = container_of(kobj, struct device, kobj);
134 nvmem = to_nvmem_device(dev);
135
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100136 /* Stop the user from writing */
ZhengShunQian7c806882015-09-30 13:33:56 +0100137 if (pos >= nvmem->size)
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100138 return 0;
139
Srinivas Kandagatla313a72f2015-11-17 09:12:41 +0000140 if (count < nvmem->word_size)
141 return -EINVAL;
142
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100143 if (pos + count > nvmem->size)
144 count = nvmem->size - pos;
145
146 count = round_down(count, nvmem->word_size);
147
Srinivas Kandagatla795ddd12016-04-24 20:28:05 +0100148 rc = nvmem_reg_write(nvmem, pos, buf, count);
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100149
Arnd Bergmann287980e2016-05-27 23:23:25 +0200150 if (rc)
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100151 return rc;
152
153 return count;
154}
155
156/* default read/write permissions */
157static struct bin_attribute bin_attr_rw_nvmem = {
158 .attr = {
159 .name = "nvmem",
160 .mode = S_IWUSR | S_IRUGO,
161 },
162 .read = bin_attr_nvmem_read,
163 .write = bin_attr_nvmem_write,
164};
165
166static struct bin_attribute *nvmem_bin_rw_attributes[] = {
167 &bin_attr_rw_nvmem,
168 NULL,
169};
170
171static const struct attribute_group nvmem_bin_rw_group = {
172 .bin_attrs = nvmem_bin_rw_attributes,
173};
174
175static const struct attribute_group *nvmem_rw_dev_groups[] = {
176 &nvmem_bin_rw_group,
177 NULL,
178};
179
180/* read only permission */
181static struct bin_attribute bin_attr_ro_nvmem = {
182 .attr = {
183 .name = "nvmem",
184 .mode = S_IRUGO,
185 },
186 .read = bin_attr_nvmem_read,
187};
188
189static struct bin_attribute *nvmem_bin_ro_attributes[] = {
190 &bin_attr_ro_nvmem,
191 NULL,
192};
193
194static const struct attribute_group nvmem_bin_ro_group = {
195 .bin_attrs = nvmem_bin_ro_attributes,
196};
197
198static const struct attribute_group *nvmem_ro_dev_groups[] = {
199 &nvmem_bin_ro_group,
200 NULL,
201};
202
Andrew Lunn811b0d62016-02-26 20:59:18 +0100203/* default read/write permissions, root only */
204static struct bin_attribute bin_attr_rw_root_nvmem = {
205 .attr = {
206 .name = "nvmem",
207 .mode = S_IWUSR | S_IRUSR,
208 },
209 .read = bin_attr_nvmem_read,
210 .write = bin_attr_nvmem_write,
211};
212
213static struct bin_attribute *nvmem_bin_rw_root_attributes[] = {
214 &bin_attr_rw_root_nvmem,
215 NULL,
216};
217
218static const struct attribute_group nvmem_bin_rw_root_group = {
219 .bin_attrs = nvmem_bin_rw_root_attributes,
220};
221
222static const struct attribute_group *nvmem_rw_root_dev_groups[] = {
223 &nvmem_bin_rw_root_group,
224 NULL,
225};
226
227/* read only permission, root only */
228static struct bin_attribute bin_attr_ro_root_nvmem = {
229 .attr = {
230 .name = "nvmem",
231 .mode = S_IRUSR,
232 },
233 .read = bin_attr_nvmem_read,
234};
235
236static struct bin_attribute *nvmem_bin_ro_root_attributes[] = {
237 &bin_attr_ro_root_nvmem,
238 NULL,
239};
240
241static const struct attribute_group nvmem_bin_ro_root_group = {
242 .bin_attrs = nvmem_bin_ro_root_attributes,
243};
244
245static const struct attribute_group *nvmem_ro_root_dev_groups[] = {
246 &nvmem_bin_ro_root_group,
247 NULL,
248};
249
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100250static void nvmem_release(struct device *dev)
251{
252 struct nvmem_device *nvmem = to_nvmem_device(dev);
253
254 ida_simple_remove(&nvmem_ida, nvmem->id);
255 kfree(nvmem);
256}
257
258static const struct device_type nvmem_provider_type = {
259 .release = nvmem_release,
260};
261
262static struct bus_type nvmem_bus_type = {
263 .name = "nvmem",
264};
265
266static int of_nvmem_match(struct device *dev, void *nvmem_np)
267{
268 return dev->of_node == nvmem_np;
269}
270
271static struct nvmem_device *of_nvmem_find(struct device_node *nvmem_np)
272{
273 struct device *d;
274
275 if (!nvmem_np)
276 return NULL;
277
278 d = bus_find_device(&nvmem_bus_type, NULL, nvmem_np, of_nvmem_match);
279
280 if (!d)
281 return NULL;
282
283 return to_nvmem_device(d);
284}
285
286static struct nvmem_cell *nvmem_find_cell(const char *cell_id)
287{
288 struct nvmem_cell *p;
289
290 list_for_each_entry(p, &nvmem_cells, node)
291 if (p && !strcmp(p->name, cell_id))
292 return p;
293
294 return NULL;
295}
296
297static void nvmem_cell_drop(struct nvmem_cell *cell)
298{
299 mutex_lock(&nvmem_cells_mutex);
300 list_del(&cell->node);
301 mutex_unlock(&nvmem_cells_mutex);
302 kfree(cell);
303}
304
305static void nvmem_device_remove_all_cells(const struct nvmem_device *nvmem)
306{
307 struct nvmem_cell *cell;
308 struct list_head *p, *n;
309
310 list_for_each_safe(p, n, &nvmem_cells) {
311 cell = list_entry(p, struct nvmem_cell, node);
312 if (cell->nvmem == nvmem)
313 nvmem_cell_drop(cell);
314 }
315}
316
317static void nvmem_cell_add(struct nvmem_cell *cell)
318{
319 mutex_lock(&nvmem_cells_mutex);
320 list_add_tail(&cell->node, &nvmem_cells);
321 mutex_unlock(&nvmem_cells_mutex);
322}
323
324static int nvmem_cell_info_to_nvmem_cell(struct nvmem_device *nvmem,
325 const struct nvmem_cell_info *info,
326 struct nvmem_cell *cell)
327{
328 cell->nvmem = nvmem;
329 cell->offset = info->offset;
330 cell->bytes = info->bytes;
331 cell->name = info->name;
332
333 cell->bit_offset = info->bit_offset;
334 cell->nbits = info->nbits;
335
336 if (cell->nbits)
337 cell->bytes = DIV_ROUND_UP(cell->nbits + cell->bit_offset,
338 BITS_PER_BYTE);
339
340 if (!IS_ALIGNED(cell->offset, nvmem->stride)) {
341 dev_err(&nvmem->dev,
342 "cell %s unaligned to nvmem stride %d\n",
343 cell->name, nvmem->stride);
344 return -EINVAL;
345 }
346
347 return 0;
348}
349
350static int nvmem_add_cells(struct nvmem_device *nvmem,
351 const struct nvmem_config *cfg)
352{
353 struct nvmem_cell **cells;
354 const struct nvmem_cell_info *info = cfg->cells;
355 int i, rval;
356
357 cells = kcalloc(cfg->ncells, sizeof(*cells), GFP_KERNEL);
358 if (!cells)
359 return -ENOMEM;
360
361 for (i = 0; i < cfg->ncells; i++) {
362 cells[i] = kzalloc(sizeof(**cells), GFP_KERNEL);
363 if (!cells[i]) {
364 rval = -ENOMEM;
365 goto err;
366 }
367
368 rval = nvmem_cell_info_to_nvmem_cell(nvmem, &info[i], cells[i]);
Arnd Bergmann287980e2016-05-27 23:23:25 +0200369 if (rval) {
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100370 kfree(cells[i]);
371 goto err;
372 }
373
374 nvmem_cell_add(cells[i]);
375 }
376
377 nvmem->ncells = cfg->ncells;
378 /* remove tmp array */
379 kfree(cells);
380
381 return 0;
382err:
Rasmus Villemoesdfdf1412016-02-08 22:04:29 +0100383 while (i--)
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100384 nvmem_cell_drop(cells[i]);
385
Rasmus Villemoesdfdf1412016-02-08 22:04:29 +0100386 kfree(cells);
387
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100388 return rval;
389}
390
Andrew Lunnb6c217a2016-02-26 20:59:19 +0100391/*
392 * nvmem_setup_compat() - Create an additional binary entry in
393 * drivers sys directory, to be backwards compatible with the older
394 * drivers/misc/eeprom drivers.
395 */
396static int nvmem_setup_compat(struct nvmem_device *nvmem,
397 const struct nvmem_config *config)
398{
399 int rval;
400
401 if (!config->base_dev)
402 return -EINVAL;
403
404 if (nvmem->read_only)
405 nvmem->eeprom = bin_attr_ro_root_nvmem;
406 else
407 nvmem->eeprom = bin_attr_rw_root_nvmem;
408 nvmem->eeprom.attr.name = "eeprom";
409 nvmem->eeprom.size = nvmem->size;
410#ifdef CONFIG_DEBUG_LOCK_ALLOC
411 nvmem->eeprom.attr.key = &eeprom_lock_key;
412#endif
413 nvmem->eeprom.private = &nvmem->dev;
414 nvmem->base_dev = config->base_dev;
415
416 rval = device_create_bin_file(nvmem->base_dev, &nvmem->eeprom);
417 if (rval) {
418 dev_err(&nvmem->dev,
419 "Failed to create eeprom binary file %d\n", rval);
420 return rval;
421 }
422
423 nvmem->flags |= FLAG_COMPAT;
424
425 return 0;
426}
427
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100428/**
429 * nvmem_register() - Register a nvmem device for given nvmem_config.
430 * Also creates an binary entry in /sys/bus/nvmem/devices/dev-name/nvmem
431 *
432 * @config: nvmem device configuration with which nvmem device is created.
433 *
434 * Return: Will be an ERR_PTR() on error or a valid pointer to nvmem_device
435 * on success.
436 */
437
438struct nvmem_device *nvmem_register(const struct nvmem_config *config)
439{
440 struct nvmem_device *nvmem;
441 struct device_node *np;
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100442 int rval;
443
444 if (!config->dev)
445 return ERR_PTR(-EINVAL);
446
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100447 nvmem = kzalloc(sizeof(*nvmem), GFP_KERNEL);
448 if (!nvmem)
449 return ERR_PTR(-ENOMEM);
450
451 rval = ida_simple_get(&nvmem_ida, 0, 0, GFP_KERNEL);
452 if (rval < 0) {
453 kfree(nvmem);
454 return ERR_PTR(rval);
455 }
456
457 nvmem->id = rval;
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100458 nvmem->owner = config->owner;
Srinivas Kandagatla795ddd12016-04-24 20:28:05 +0100459 nvmem->stride = config->stride;
460 nvmem->word_size = config->word_size;
461 nvmem->size = config->size;
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100462 nvmem->dev.type = &nvmem_provider_type;
463 nvmem->dev.bus = &nvmem_bus_type;
464 nvmem->dev.parent = config->dev;
Srinivas Kandagatla795ddd12016-04-24 20:28:05 +0100465 nvmem->priv = config->priv;
466 nvmem->reg_read = config->reg_read;
467 nvmem->reg_write = config->reg_write;
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100468 np = config->dev->of_node;
469 nvmem->dev.of_node = np;
470 dev_set_name(&nvmem->dev, "%s%d",
471 config->name ? : "nvmem", config->id);
472
473 nvmem->read_only = of_property_read_bool(np, "read-only") |
474 config->read_only;
475
Andrew Lunn811b0d62016-02-26 20:59:18 +0100476 if (config->root_only)
477 nvmem->dev.groups = nvmem->read_only ?
478 nvmem_ro_root_dev_groups :
479 nvmem_rw_root_dev_groups;
480 else
481 nvmem->dev.groups = nvmem->read_only ?
482 nvmem_ro_dev_groups :
483 nvmem_rw_dev_groups;
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100484
485 device_initialize(&nvmem->dev);
486
487 dev_dbg(&nvmem->dev, "Registering nvmem device %s\n", config->name);
488
489 rval = device_add(&nvmem->dev);
Andrew Lunnb6c217a2016-02-26 20:59:19 +0100490 if (rval)
Johan Hovold7d976da2017-06-09 10:59:07 +0100491 goto err_put_device;
Andrew Lunnb6c217a2016-02-26 20:59:19 +0100492
493 if (config->compat) {
494 rval = nvmem_setup_compat(nvmem, config);
495 if (rval)
Johan Hovold7d976da2017-06-09 10:59:07 +0100496 goto err_device_del;
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100497 }
498
499 if (config->cells)
500 nvmem_add_cells(nvmem, config);
501
502 return nvmem;
Johan Hovold7d976da2017-06-09 10:59:07 +0100503
504err_device_del:
505 device_del(&nvmem->dev);
506err_put_device:
507 put_device(&nvmem->dev);
508
Andrew Lunnb6c217a2016-02-26 20:59:19 +0100509 return ERR_PTR(rval);
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100510}
511EXPORT_SYMBOL_GPL(nvmem_register);
512
513/**
514 * nvmem_unregister() - Unregister previously registered nvmem device
515 *
516 * @nvmem: Pointer to previously registered nvmem device.
517 *
518 * Return: Will be an negative on error or a zero on success.
519 */
520int nvmem_unregister(struct nvmem_device *nvmem)
521{
Srinivas Kandagatla69aba792015-07-27 12:13:34 +0100522 mutex_lock(&nvmem_mutex);
523 if (nvmem->users) {
524 mutex_unlock(&nvmem_mutex);
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100525 return -EBUSY;
Srinivas Kandagatla69aba792015-07-27 12:13:34 +0100526 }
527 mutex_unlock(&nvmem_mutex);
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100528
Andrew Lunnb6c217a2016-02-26 20:59:19 +0100529 if (nvmem->flags & FLAG_COMPAT)
530 device_remove_bin_file(nvmem->base_dev, &nvmem->eeprom);
531
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +0100532 nvmem_device_remove_all_cells(nvmem);
533 device_del(&nvmem->dev);
534
535 return 0;
536}
537EXPORT_SYMBOL_GPL(nvmem_unregister);
538
Srinivas Kandagatla69aba792015-07-27 12:13:34 +0100539static struct nvmem_device *__nvmem_device_get(struct device_node *np,
540 struct nvmem_cell **cellp,
541 const char *cell_id)
542{
543 struct nvmem_device *nvmem = NULL;
544
545 mutex_lock(&nvmem_mutex);
546
547 if (np) {
548 nvmem = of_nvmem_find(np);
549 if (!nvmem) {
550 mutex_unlock(&nvmem_mutex);
551 return ERR_PTR(-EPROBE_DEFER);
552 }
553 } else {
554 struct nvmem_cell *cell = nvmem_find_cell(cell_id);
555
556 if (cell) {
557 nvmem = cell->nvmem;
558 *cellp = cell;
559 }
560
561 if (!nvmem) {
562 mutex_unlock(&nvmem_mutex);
563 return ERR_PTR(-ENOENT);
564 }
565 }
566
567 nvmem->users++;
568 mutex_unlock(&nvmem_mutex);
569
570 if (!try_module_get(nvmem->owner)) {
571 dev_err(&nvmem->dev,
572 "could not increase module refcount for cell %s\n",
573 nvmem->name);
574
575 mutex_lock(&nvmem_mutex);
576 nvmem->users--;
577 mutex_unlock(&nvmem_mutex);
578
579 return ERR_PTR(-EINVAL);
580 }
581
582 return nvmem;
583}
584
585static void __nvmem_device_put(struct nvmem_device *nvmem)
586{
587 module_put(nvmem->owner);
588 mutex_lock(&nvmem_mutex);
589 nvmem->users--;
590 mutex_unlock(&nvmem_mutex);
591}
592
Srinivas Kandagatlae2a54022015-07-27 12:13:45 +0100593static int nvmem_match(struct device *dev, void *data)
594{
595 return !strcmp(dev_name(dev), data);
596}
597
598static struct nvmem_device *nvmem_find(const char *name)
599{
600 struct device *d;
601
602 d = bus_find_device(&nvmem_bus_type, NULL, (void *)name, nvmem_match);
603
604 if (!d)
605 return NULL;
606
607 return to_nvmem_device(d);
608}
609
610#if IS_ENABLED(CONFIG_NVMEM) && IS_ENABLED(CONFIG_OF)
611/**
612 * of_nvmem_device_get() - Get nvmem device from a given id
613 *
614 * @dev node: Device tree node that uses the nvmem device
615 * @id: nvmem name from nvmem-names property.
616 *
617 * Return: ERR_PTR() on error or a valid pointer to a struct nvmem_device
618 * on success.
619 */
620struct nvmem_device *of_nvmem_device_get(struct device_node *np, const char *id)
621{
622
623 struct device_node *nvmem_np;
624 int index;
625
626 index = of_property_match_string(np, "nvmem-names", id);
627
628 nvmem_np = of_parse_phandle(np, "nvmem", index);
629 if (!nvmem_np)
630 return ERR_PTR(-EINVAL);
631
632 return __nvmem_device_get(nvmem_np, NULL, NULL);
633}
634EXPORT_SYMBOL_GPL(of_nvmem_device_get);
635#endif
636
637/**
638 * nvmem_device_get() - Get nvmem device from a given id
639 *
640 * @dev : Device that uses the nvmem device
641 * @id: nvmem name from nvmem-names property.
642 *
643 * Return: ERR_PTR() on error or a valid pointer to a struct nvmem_device
644 * on success.
645 */
646struct nvmem_device *nvmem_device_get(struct device *dev, const char *dev_name)
647{
648 if (dev->of_node) { /* try dt first */
649 struct nvmem_device *nvmem;
650
651 nvmem = of_nvmem_device_get(dev->of_node, dev_name);
652
653 if (!IS_ERR(nvmem) || PTR_ERR(nvmem) == -EPROBE_DEFER)
654 return nvmem;
655
656 }
657
658 return nvmem_find(dev_name);
659}
660EXPORT_SYMBOL_GPL(nvmem_device_get);
661
662static int devm_nvmem_device_match(struct device *dev, void *res, void *data)
663{
664 struct nvmem_device **nvmem = res;
665
666 if (WARN_ON(!nvmem || !*nvmem))
667 return 0;
668
669 return *nvmem == data;
670}
671
672static void devm_nvmem_device_release(struct device *dev, void *res)
673{
674 nvmem_device_put(*(struct nvmem_device **)res);
675}
676
677/**
678 * devm_nvmem_device_put() - put alredy got nvmem device
679 *
680 * @nvmem: pointer to nvmem device allocated by devm_nvmem_cell_get(),
681 * that needs to be released.
682 */
683void devm_nvmem_device_put(struct device *dev, struct nvmem_device *nvmem)
684{
685 int ret;
686
687 ret = devres_release(dev, devm_nvmem_device_release,
688 devm_nvmem_device_match, nvmem);
689
690 WARN_ON(ret);
691}
692EXPORT_SYMBOL_GPL(devm_nvmem_device_put);
693
694/**
695 * nvmem_device_put() - put alredy got nvmem device
696 *
697 * @nvmem: pointer to nvmem device that needs to be released.
698 */
699void nvmem_device_put(struct nvmem_device *nvmem)
700{
701 __nvmem_device_put(nvmem);
702}
703EXPORT_SYMBOL_GPL(nvmem_device_put);
704
705/**
706 * devm_nvmem_device_get() - Get nvmem cell of device form a given id
707 *
708 * @dev node: Device tree node that uses the nvmem cell
709 * @id: nvmem name in nvmems property.
710 *
711 * Return: ERR_PTR() on error or a valid pointer to a struct nvmem_cell
712 * on success. The nvmem_cell will be freed by the automatically once the
713 * device is freed.
714 */
715struct nvmem_device *devm_nvmem_device_get(struct device *dev, const char *id)
716{
717 struct nvmem_device **ptr, *nvmem;
718
719 ptr = devres_alloc(devm_nvmem_device_release, sizeof(*ptr), GFP_KERNEL);
720 if (!ptr)
721 return ERR_PTR(-ENOMEM);
722
723 nvmem = nvmem_device_get(dev, id);
724 if (!IS_ERR(nvmem)) {
725 *ptr = nvmem;
726 devres_add(dev, ptr);
727 } else {
728 devres_free(ptr);
729 }
730
731 return nvmem;
732}
733EXPORT_SYMBOL_GPL(devm_nvmem_device_get);
734
Srinivas Kandagatla69aba792015-07-27 12:13:34 +0100735static struct nvmem_cell *nvmem_cell_get_from_list(const char *cell_id)
736{
737 struct nvmem_cell *cell = NULL;
738 struct nvmem_device *nvmem;
739
740 nvmem = __nvmem_device_get(NULL, &cell, cell_id);
741 if (IS_ERR(nvmem))
742 return ERR_CAST(nvmem);
743
744 return cell;
745}
746
747#if IS_ENABLED(CONFIG_NVMEM) && IS_ENABLED(CONFIG_OF)
748/**
749 * of_nvmem_cell_get() - Get a nvmem cell from given device node and cell id
750 *
751 * @dev node: Device tree node that uses the nvmem cell
752 * @id: nvmem cell name from nvmem-cell-names property.
753 *
754 * Return: Will be an ERR_PTR() on error or a valid pointer
755 * to a struct nvmem_cell. The nvmem_cell will be freed by the
756 * nvmem_cell_put().
757 */
758struct nvmem_cell *of_nvmem_cell_get(struct device_node *np,
759 const char *name)
760{
761 struct device_node *cell_np, *nvmem_np;
762 struct nvmem_cell *cell;
763 struct nvmem_device *nvmem;
764 const __be32 *addr;
765 int rval, len, index;
766
767 index = of_property_match_string(np, "nvmem-cell-names", name);
768
769 cell_np = of_parse_phandle(np, "nvmem-cells", index);
770 if (!cell_np)
771 return ERR_PTR(-EINVAL);
772
773 nvmem_np = of_get_next_parent(cell_np);
774 if (!nvmem_np)
775 return ERR_PTR(-EINVAL);
776
777 nvmem = __nvmem_device_get(nvmem_np, NULL, NULL);
778 if (IS_ERR(nvmem))
779 return ERR_CAST(nvmem);
780
781 addr = of_get_property(cell_np, "reg", &len);
782 if (!addr || (len < 2 * sizeof(u32))) {
783 dev_err(&nvmem->dev, "nvmem: invalid reg on %s\n",
784 cell_np->full_name);
785 rval = -EINVAL;
786 goto err_mem;
787 }
788
789 cell = kzalloc(sizeof(*cell), GFP_KERNEL);
790 if (!cell) {
791 rval = -ENOMEM;
792 goto err_mem;
793 }
794
795 cell->nvmem = nvmem;
796 cell->offset = be32_to_cpup(addr++);
797 cell->bytes = be32_to_cpup(addr);
798 cell->name = cell_np->name;
799
800 addr = of_get_property(cell_np, "bits", &len);
801 if (addr && len == (2 * sizeof(u32))) {
802 cell->bit_offset = be32_to_cpup(addr++);
803 cell->nbits = be32_to_cpup(addr);
804 }
805
806 if (cell->nbits)
807 cell->bytes = DIV_ROUND_UP(cell->nbits + cell->bit_offset,
808 BITS_PER_BYTE);
809
810 if (!IS_ALIGNED(cell->offset, nvmem->stride)) {
811 dev_err(&nvmem->dev,
812 "cell %s unaligned to nvmem stride %d\n",
813 cell->name, nvmem->stride);
814 rval = -EINVAL;
815 goto err_sanity;
816 }
817
818 nvmem_cell_add(cell);
819
820 return cell;
821
822err_sanity:
823 kfree(cell);
824
825err_mem:
826 __nvmem_device_put(nvmem);
827
828 return ERR_PTR(rval);
829}
830EXPORT_SYMBOL_GPL(of_nvmem_cell_get);
831#endif
832
833/**
834 * nvmem_cell_get() - Get nvmem cell of device form a given cell name
835 *
836 * @dev node: Device tree node that uses the nvmem cell
837 * @id: nvmem cell name to get.
838 *
839 * Return: Will be an ERR_PTR() on error or a valid pointer
840 * to a struct nvmem_cell. The nvmem_cell will be freed by the
841 * nvmem_cell_put().
842 */
843struct nvmem_cell *nvmem_cell_get(struct device *dev, const char *cell_id)
844{
845 struct nvmem_cell *cell;
846
847 if (dev->of_node) { /* try dt first */
848 cell = of_nvmem_cell_get(dev->of_node, cell_id);
849 if (!IS_ERR(cell) || PTR_ERR(cell) == -EPROBE_DEFER)
850 return cell;
851 }
852
853 return nvmem_cell_get_from_list(cell_id);
854}
855EXPORT_SYMBOL_GPL(nvmem_cell_get);
856
857static void devm_nvmem_cell_release(struct device *dev, void *res)
858{
859 nvmem_cell_put(*(struct nvmem_cell **)res);
860}
861
862/**
863 * devm_nvmem_cell_get() - Get nvmem cell of device form a given id
864 *
865 * @dev node: Device tree node that uses the nvmem cell
866 * @id: nvmem id in nvmem-names property.
867 *
868 * Return: Will be an ERR_PTR() on error or a valid pointer
869 * to a struct nvmem_cell. The nvmem_cell will be freed by the
870 * automatically once the device is freed.
871 */
872struct nvmem_cell *devm_nvmem_cell_get(struct device *dev, const char *id)
873{
874 struct nvmem_cell **ptr, *cell;
875
876 ptr = devres_alloc(devm_nvmem_cell_release, sizeof(*ptr), GFP_KERNEL);
877 if (!ptr)
878 return ERR_PTR(-ENOMEM);
879
880 cell = nvmem_cell_get(dev, id);
881 if (!IS_ERR(cell)) {
882 *ptr = cell;
883 devres_add(dev, ptr);
884 } else {
885 devres_free(ptr);
886 }
887
888 return cell;
889}
890EXPORT_SYMBOL_GPL(devm_nvmem_cell_get);
891
892static int devm_nvmem_cell_match(struct device *dev, void *res, void *data)
893{
894 struct nvmem_cell **c = res;
895
896 if (WARN_ON(!c || !*c))
897 return 0;
898
899 return *c == data;
900}
901
902/**
903 * devm_nvmem_cell_put() - Release previously allocated nvmem cell
904 * from devm_nvmem_cell_get.
905 *
906 * @cell: Previously allocated nvmem cell by devm_nvmem_cell_get()
907 */
908void devm_nvmem_cell_put(struct device *dev, struct nvmem_cell *cell)
909{
910 int ret;
911
912 ret = devres_release(dev, devm_nvmem_cell_release,
913 devm_nvmem_cell_match, cell);
914
915 WARN_ON(ret);
916}
917EXPORT_SYMBOL(devm_nvmem_cell_put);
918
919/**
920 * nvmem_cell_put() - Release previously allocated nvmem cell.
921 *
922 * @cell: Previously allocated nvmem cell by nvmem_cell_get()
923 */
924void nvmem_cell_put(struct nvmem_cell *cell)
925{
926 struct nvmem_device *nvmem = cell->nvmem;
927
928 __nvmem_device_put(nvmem);
929 nvmem_cell_drop(cell);
930}
931EXPORT_SYMBOL_GPL(nvmem_cell_put);
932
933static inline void nvmem_shift_read_buffer_in_place(struct nvmem_cell *cell,
934 void *buf)
935{
936 u8 *p, *b;
937 int i, bit_offset = cell->bit_offset;
938
939 p = b = buf;
940 if (bit_offset) {
941 /* First shift */
942 *b++ >>= bit_offset;
943
944 /* setup rest of the bytes if any */
945 for (i = 1; i < cell->bytes; i++) {
946 /* Get bits from next byte and shift them towards msb */
947 *p |= *b << (BITS_PER_BYTE - bit_offset);
948
949 p = b;
950 *b++ >>= bit_offset;
951 }
952
953 /* result fits in less bytes */
954 if (cell->bytes != DIV_ROUND_UP(cell->nbits, BITS_PER_BYTE))
955 *p-- = 0;
956 }
957 /* clear msb bits if any leftover in the last byte */
958 *p &= GENMASK((cell->nbits%BITS_PER_BYTE) - 1, 0);
959}
960
961static int __nvmem_cell_read(struct nvmem_device *nvmem,
962 struct nvmem_cell *cell,
963 void *buf, size_t *len)
964{
965 int rc;
966
Srinivas Kandagatla795ddd12016-04-24 20:28:05 +0100967 rc = nvmem_reg_read(nvmem, cell->offset, buf, cell->bytes);
Srinivas Kandagatla69aba792015-07-27 12:13:34 +0100968
Arnd Bergmann287980e2016-05-27 23:23:25 +0200969 if (rc)
Srinivas Kandagatla69aba792015-07-27 12:13:34 +0100970 return rc;
971
972 /* shift bits in-place */
Axel Lincbf854a2015-09-30 13:35:15 +0100973 if (cell->bit_offset || cell->nbits)
Srinivas Kandagatla69aba792015-07-27 12:13:34 +0100974 nvmem_shift_read_buffer_in_place(cell, buf);
975
976 *len = cell->bytes;
977
978 return 0;
979}
980
981/**
982 * nvmem_cell_read() - Read a given nvmem cell
983 *
984 * @cell: nvmem cell to be read.
985 * @len: pointer to length of cell which will be populated on successful read.
986 *
987 * Return: ERR_PTR() on error or a valid pointer to a char * buffer on success.
988 * The buffer should be freed by the consumer with a kfree().
989 */
990void *nvmem_cell_read(struct nvmem_cell *cell, size_t *len)
991{
992 struct nvmem_device *nvmem = cell->nvmem;
993 u8 *buf;
994 int rc;
995
Srinivas Kandagatla795ddd12016-04-24 20:28:05 +0100996 if (!nvmem)
Srinivas Kandagatla69aba792015-07-27 12:13:34 +0100997 return ERR_PTR(-EINVAL);
998
999 buf = kzalloc(cell->bytes, GFP_KERNEL);
1000 if (!buf)
1001 return ERR_PTR(-ENOMEM);
1002
1003 rc = __nvmem_cell_read(nvmem, cell, buf, len);
Arnd Bergmann287980e2016-05-27 23:23:25 +02001004 if (rc) {
Srinivas Kandagatla69aba792015-07-27 12:13:34 +01001005 kfree(buf);
1006 return ERR_PTR(rc);
1007 }
1008
1009 return buf;
1010}
1011EXPORT_SYMBOL_GPL(nvmem_cell_read);
1012
1013static inline void *nvmem_cell_prepare_write_buffer(struct nvmem_cell *cell,
1014 u8 *_buf, int len)
1015{
1016 struct nvmem_device *nvmem = cell->nvmem;
1017 int i, rc, nbits, bit_offset = cell->bit_offset;
1018 u8 v, *p, *buf, *b, pbyte, pbits;
1019
1020 nbits = cell->nbits;
1021 buf = kzalloc(cell->bytes, GFP_KERNEL);
1022 if (!buf)
1023 return ERR_PTR(-ENOMEM);
1024
1025 memcpy(buf, _buf, len);
1026 p = b = buf;
1027
1028 if (bit_offset) {
1029 pbyte = *b;
1030 *b <<= bit_offset;
1031
1032 /* setup the first byte with lsb bits from nvmem */
Srinivas Kandagatla795ddd12016-04-24 20:28:05 +01001033 rc = nvmem_reg_read(nvmem, cell->offset, &v, 1);
Srinivas Kandagatla69aba792015-07-27 12:13:34 +01001034 *b++ |= GENMASK(bit_offset - 1, 0) & v;
1035
1036 /* setup rest of the byte if any */
1037 for (i = 1; i < cell->bytes; i++) {
1038 /* Get last byte bits and shift them towards lsb */
1039 pbits = pbyte >> (BITS_PER_BYTE - 1 - bit_offset);
1040 pbyte = *b;
1041 p = b;
1042 *b <<= bit_offset;
1043 *b++ |= pbits;
1044 }
1045 }
1046
1047 /* if it's not end on byte boundary */
1048 if ((nbits + bit_offset) % BITS_PER_BYTE) {
1049 /* setup the last byte with msb bits from nvmem */
Srinivas Kandagatla795ddd12016-04-24 20:28:05 +01001050 rc = nvmem_reg_read(nvmem,
Srinivas Kandagatla69aba792015-07-27 12:13:34 +01001051 cell->offset + cell->bytes - 1, &v, 1);
1052 *p |= GENMASK(7, (nbits + bit_offset) % BITS_PER_BYTE) & v;
1053
1054 }
1055
1056 return buf;
1057}
1058
1059/**
1060 * nvmem_cell_write() - Write to a given nvmem cell
1061 *
1062 * @cell: nvmem cell to be written.
1063 * @buf: Buffer to be written.
1064 * @len: length of buffer to be written to nvmem cell.
1065 *
1066 * Return: length of bytes written or negative on failure.
1067 */
1068int nvmem_cell_write(struct nvmem_cell *cell, void *buf, size_t len)
1069{
1070 struct nvmem_device *nvmem = cell->nvmem;
1071 int rc;
1072
Srinivas Kandagatla795ddd12016-04-24 20:28:05 +01001073 if (!nvmem || nvmem->read_only ||
Srinivas Kandagatla69aba792015-07-27 12:13:34 +01001074 (cell->bit_offset == 0 && len != cell->bytes))
1075 return -EINVAL;
1076
1077 if (cell->bit_offset || cell->nbits) {
1078 buf = nvmem_cell_prepare_write_buffer(cell, buf, len);
1079 if (IS_ERR(buf))
1080 return PTR_ERR(buf);
1081 }
1082
Srinivas Kandagatla795ddd12016-04-24 20:28:05 +01001083 rc = nvmem_reg_write(nvmem, cell->offset, buf, cell->bytes);
Srinivas Kandagatla69aba792015-07-27 12:13:34 +01001084
1085 /* free the tmp buffer */
Axel Linace22172015-09-30 13:36:10 +01001086 if (cell->bit_offset || cell->nbits)
Srinivas Kandagatla69aba792015-07-27 12:13:34 +01001087 kfree(buf);
1088
Arnd Bergmann287980e2016-05-27 23:23:25 +02001089 if (rc)
Srinivas Kandagatla69aba792015-07-27 12:13:34 +01001090 return rc;
1091
1092 return len;
1093}
1094EXPORT_SYMBOL_GPL(nvmem_cell_write);
1095
Srinivas Kandagatlae2a54022015-07-27 12:13:45 +01001096/**
1097 * nvmem_device_cell_read() - Read a given nvmem device and cell
1098 *
1099 * @nvmem: nvmem device to read from.
1100 * @info: nvmem cell info to be read.
1101 * @buf: buffer pointer which will be populated on successful read.
1102 *
1103 * Return: length of successful bytes read on success and negative
1104 * error code on error.
1105 */
1106ssize_t nvmem_device_cell_read(struct nvmem_device *nvmem,
1107 struct nvmem_cell_info *info, void *buf)
1108{
1109 struct nvmem_cell cell;
1110 int rc;
1111 ssize_t len;
1112
Srinivas Kandagatla795ddd12016-04-24 20:28:05 +01001113 if (!nvmem)
Srinivas Kandagatlae2a54022015-07-27 12:13:45 +01001114 return -EINVAL;
1115
1116 rc = nvmem_cell_info_to_nvmem_cell(nvmem, info, &cell);
Arnd Bergmann287980e2016-05-27 23:23:25 +02001117 if (rc)
Srinivas Kandagatlae2a54022015-07-27 12:13:45 +01001118 return rc;
1119
1120 rc = __nvmem_cell_read(nvmem, &cell, buf, &len);
Arnd Bergmann287980e2016-05-27 23:23:25 +02001121 if (rc)
Srinivas Kandagatlae2a54022015-07-27 12:13:45 +01001122 return rc;
1123
1124 return len;
1125}
1126EXPORT_SYMBOL_GPL(nvmem_device_cell_read);
1127
1128/**
1129 * nvmem_device_cell_write() - Write cell to a given nvmem device
1130 *
1131 * @nvmem: nvmem device to be written to.
1132 * @info: nvmem cell info to be written
1133 * @buf: buffer to be written to cell.
1134 *
1135 * Return: length of bytes written or negative error code on failure.
1136 * */
1137int nvmem_device_cell_write(struct nvmem_device *nvmem,
1138 struct nvmem_cell_info *info, void *buf)
1139{
1140 struct nvmem_cell cell;
1141 int rc;
1142
Srinivas Kandagatla795ddd12016-04-24 20:28:05 +01001143 if (!nvmem)
Srinivas Kandagatlae2a54022015-07-27 12:13:45 +01001144 return -EINVAL;
1145
1146 rc = nvmem_cell_info_to_nvmem_cell(nvmem, info, &cell);
Arnd Bergmann287980e2016-05-27 23:23:25 +02001147 if (rc)
Srinivas Kandagatlae2a54022015-07-27 12:13:45 +01001148 return rc;
1149
1150 return nvmem_cell_write(&cell, buf, cell.bytes);
1151}
1152EXPORT_SYMBOL_GPL(nvmem_device_cell_write);
1153
1154/**
1155 * nvmem_device_read() - Read from a given nvmem device
1156 *
1157 * @nvmem: nvmem device to read from.
1158 * @offset: offset in nvmem device.
1159 * @bytes: number of bytes to read.
1160 * @buf: buffer pointer which will be populated on successful read.
1161 *
1162 * Return: length of successful bytes read on success and negative
1163 * error code on error.
1164 */
1165int nvmem_device_read(struct nvmem_device *nvmem,
1166 unsigned int offset,
1167 size_t bytes, void *buf)
1168{
1169 int rc;
1170
Srinivas Kandagatla795ddd12016-04-24 20:28:05 +01001171 if (!nvmem)
Srinivas Kandagatlae2a54022015-07-27 12:13:45 +01001172 return -EINVAL;
1173
Srinivas Kandagatla795ddd12016-04-24 20:28:05 +01001174 rc = nvmem_reg_read(nvmem, offset, buf, bytes);
Srinivas Kandagatlae2a54022015-07-27 12:13:45 +01001175
Arnd Bergmann287980e2016-05-27 23:23:25 +02001176 if (rc)
Srinivas Kandagatlae2a54022015-07-27 12:13:45 +01001177 return rc;
1178
1179 return bytes;
1180}
1181EXPORT_SYMBOL_GPL(nvmem_device_read);
1182
1183/**
1184 * nvmem_device_write() - Write cell to a given nvmem device
1185 *
1186 * @nvmem: nvmem device to be written to.
1187 * @offset: offset in nvmem device.
1188 * @bytes: number of bytes to write.
1189 * @buf: buffer to be written.
1190 *
1191 * Return: length of bytes written or negative error code on failure.
1192 * */
1193int nvmem_device_write(struct nvmem_device *nvmem,
1194 unsigned int offset,
1195 size_t bytes, void *buf)
1196{
1197 int rc;
1198
Srinivas Kandagatla795ddd12016-04-24 20:28:05 +01001199 if (!nvmem)
Srinivas Kandagatlae2a54022015-07-27 12:13:45 +01001200 return -EINVAL;
1201
Srinivas Kandagatla795ddd12016-04-24 20:28:05 +01001202 rc = nvmem_reg_write(nvmem, offset, buf, bytes);
Srinivas Kandagatlae2a54022015-07-27 12:13:45 +01001203
Arnd Bergmann287980e2016-05-27 23:23:25 +02001204 if (rc)
Srinivas Kandagatlae2a54022015-07-27 12:13:45 +01001205 return rc;
1206
1207
1208 return bytes;
1209}
1210EXPORT_SYMBOL_GPL(nvmem_device_write);
1211
Srinivas Kandagatlaeace75c2015-07-27 12:13:19 +01001212static int __init nvmem_init(void)
1213{
1214 return bus_register(&nvmem_bus_type);
1215}
1216
1217static void __exit nvmem_exit(void)
1218{
1219 bus_unregister(&nvmem_bus_type);
1220}
1221
1222subsys_initcall(nvmem_init);
1223module_exit(nvmem_exit);
1224
1225MODULE_AUTHOR("Srinivas Kandagatla <srinivas.kandagatla@linaro.org");
1226MODULE_AUTHOR("Maxime Ripard <maxime.ripard@free-electrons.com");
1227MODULE_DESCRIPTION("nvmem Driver Core");
1228MODULE_LICENSE("GPL v2");