pinctrl: make "hog" mapping table entries work
[deliverable/linux.git] / drivers / pinctrl / core.c
CommitLineData
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1/*
2 * Core driver for the pin control subsystem
3 *
befe5bdf 4 * Copyright (C) 2011-2012 ST-Ericsson SA
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5 * Written on behalf of Linaro for ST-Ericsson
6 * Based on bits of regulator core, gpio core and clk core
7 *
8 * Author: Linus Walleij <linus.walleij@linaro.org>
9 *
10 * License terms: GNU General Public License (GPL) version 2
11 */
12#define pr_fmt(fmt) "pinctrl core: " fmt
13
14#include <linux/kernel.h>
a5a697cd 15#include <linux/export.h>
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16#include <linux/init.h>
17#include <linux/device.h>
18#include <linux/slab.h>
19#include <linux/radix-tree.h>
20#include <linux/err.h>
21#include <linux/list.h>
22#include <linux/mutex.h>
23#include <linux/spinlock.h>
24#include <linux/sysfs.h>
25#include <linux/debugfs.h>
26#include <linux/seq_file.h>
27#include <linux/pinctrl/pinctrl.h>
28#include <linux/pinctrl/machine.h>
29#include "core.h"
30#include "pinmux.h"
ae6b4d85 31#include "pinconf.h"
2744e8af 32
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33/**
34 * struct pinctrl_hog - a list item to stash control hogs
35 * @node: pin control hog list node
36 * @map: map entry responsible for this hogging
37 * @pmx: the pin control hogged by this item
38 */
39struct pinctrl_hog {
40 struct list_head node;
41 struct pinctrl_map const *map;
42 struct pinctrl *p;
43};
44
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45/* Global list of pin control devices */
46static DEFINE_MUTEX(pinctrldev_list_mutex);
47static LIST_HEAD(pinctrldev_list);
48
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49/* List of pin controller handles */
50static DEFINE_MUTEX(pinctrl_list_mutex);
51static LIST_HEAD(pinctrl_list);
52
53/* Global pinctrl maps */
54static struct pinctrl_map *pinctrl_maps;
55static unsigned pinctrl_maps_num;
56
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57const char *pinctrl_dev_get_name(struct pinctrl_dev *pctldev)
58{
59 /* We're not allowed to register devices without name */
60 return pctldev->desc->name;
61}
62EXPORT_SYMBOL_GPL(pinctrl_dev_get_name);
63
64void *pinctrl_dev_get_drvdata(struct pinctrl_dev *pctldev)
65{
66 return pctldev->driver_data;
67}
68EXPORT_SYMBOL_GPL(pinctrl_dev_get_drvdata);
69
70/**
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71 * get_pinctrl_dev_from_devname() - look up pin controller device
72 * @devname: the name of a device instance, as returned by dev_name()
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73 *
74 * Looks up a pin control device matching a certain device name or pure device
75 * pointer, the pure device pointer will take precedence.
76 */
9dfac4fd 77struct pinctrl_dev *get_pinctrl_dev_from_devname(const char *devname)
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78{
79 struct pinctrl_dev *pctldev = NULL;
80 bool found = false;
81
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82 if (!devname)
83 return NULL;
84
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85 mutex_lock(&pinctrldev_list_mutex);
86 list_for_each_entry(pctldev, &pinctrldev_list, node) {
9dfac4fd 87 if (!strcmp(dev_name(pctldev->dev), devname)) {
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88 /* Matched on device name */
89 found = true;
90 break;
91 }
92 }
93 mutex_unlock(&pinctrldev_list_mutex);
94
95 return found ? pctldev : NULL;
96}
97
33d58949 98struct pin_desc *pin_desc_get(struct pinctrl_dev *pctldev, unsigned int pin)
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99{
100 struct pin_desc *pindesc;
101 unsigned long flags;
102
103 spin_lock_irqsave(&pctldev->pin_desc_tree_lock, flags);
104 pindesc = radix_tree_lookup(&pctldev->pin_desc_tree, pin);
105 spin_unlock_irqrestore(&pctldev->pin_desc_tree_lock, flags);
106
107 return pindesc;
108}
109
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110/**
111 * pin_get_from_name() - look up a pin number from a name
112 * @pctldev: the pin control device to lookup the pin on
113 * @name: the name of the pin to look up
114 */
115int pin_get_from_name(struct pinctrl_dev *pctldev, const char *name)
116{
706e8520 117 unsigned i, pin;
ae6b4d85 118
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119 /* The pin number can be retrived from the pin controller descriptor */
120 for (i = 0; i < pctldev->desc->npins; i++) {
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121 struct pin_desc *desc;
122
706e8520 123 pin = pctldev->desc->pins[i].number;
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124 desc = pin_desc_get(pctldev, pin);
125 /* Pin space may be sparse */
126 if (desc == NULL)
127 continue;
128 if (desc->name && !strcmp(name, desc->name))
129 return pin;
130 }
131
132 return -EINVAL;
133}
134
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135/**
136 * pin_is_valid() - check if pin exists on controller
137 * @pctldev: the pin control device to check the pin on
138 * @pin: pin to check, use the local pin controller index number
139 *
140 * This tells us whether a certain pin exist on a certain pin controller or
141 * not. Pin lists may be sparse, so some pins may not exist.
142 */
143bool pin_is_valid(struct pinctrl_dev *pctldev, int pin)
144{
145 struct pin_desc *pindesc;
146
147 if (pin < 0)
148 return false;
149
150 pindesc = pin_desc_get(pctldev, pin);
151 if (pindesc == NULL)
152 return false;
153
154 return true;
155}
156EXPORT_SYMBOL_GPL(pin_is_valid);
157
158/* Deletes a range of pin descriptors */
159static void pinctrl_free_pindescs(struct pinctrl_dev *pctldev,
160 const struct pinctrl_pin_desc *pins,
161 unsigned num_pins)
162{
163 int i;
164
165 spin_lock(&pctldev->pin_desc_tree_lock);
166 for (i = 0; i < num_pins; i++) {
167 struct pin_desc *pindesc;
168
169 pindesc = radix_tree_lookup(&pctldev->pin_desc_tree,
170 pins[i].number);
171 if (pindesc != NULL) {
172 radix_tree_delete(&pctldev->pin_desc_tree,
173 pins[i].number);
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174 if (pindesc->dynamic_name)
175 kfree(pindesc->name);
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176 }
177 kfree(pindesc);
178 }
179 spin_unlock(&pctldev->pin_desc_tree_lock);
180}
181
182static int pinctrl_register_one_pin(struct pinctrl_dev *pctldev,
183 unsigned number, const char *name)
184{
185 struct pin_desc *pindesc;
186
187 pindesc = pin_desc_get(pctldev, number);
188 if (pindesc != NULL) {
189 pr_err("pin %d already registered on %s\n", number,
190 pctldev->desc->name);
191 return -EINVAL;
192 }
193
194 pindesc = kzalloc(sizeof(*pindesc), GFP_KERNEL);
195 if (pindesc == NULL)
196 return -ENOMEM;
ae6b4d85 197
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198 spin_lock_init(&pindesc->lock);
199
200 /* Set owner */
201 pindesc->pctldev = pctldev;
202
9af1e44f 203 /* Copy basic pin info */
8dc6ae4d 204 if (name) {
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205 pindesc->name = name;
206 } else {
207 pindesc->name = kasprintf(GFP_KERNEL, "PIN%u", number);
208 if (pindesc->name == NULL)
209 return -ENOMEM;
210 pindesc->dynamic_name = true;
211 }
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212
213 spin_lock(&pctldev->pin_desc_tree_lock);
214 radix_tree_insert(&pctldev->pin_desc_tree, number, pindesc);
215 spin_unlock(&pctldev->pin_desc_tree_lock);
216 pr_debug("registered pin %d (%s) on %s\n",
ca53c5f1 217 number, pindesc->name, pctldev->desc->name);
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218 return 0;
219}
220
221static int pinctrl_register_pins(struct pinctrl_dev *pctldev,
222 struct pinctrl_pin_desc const *pins,
223 unsigned num_descs)
224{
225 unsigned i;
226 int ret = 0;
227
228 for (i = 0; i < num_descs; i++) {
229 ret = pinctrl_register_one_pin(pctldev,
230 pins[i].number, pins[i].name);
231 if (ret)
232 return ret;
233 }
234
235 return 0;
236}
237
238/**
239 * pinctrl_match_gpio_range() - check if a certain GPIO pin is in range
240 * @pctldev: pin controller device to check
241 * @gpio: gpio pin to check taken from the global GPIO pin space
242 *
243 * Tries to match a GPIO pin number to the ranges handled by a certain pin
244 * controller, return the range or NULL
245 */
246static struct pinctrl_gpio_range *
247pinctrl_match_gpio_range(struct pinctrl_dev *pctldev, unsigned gpio)
248{
249 struct pinctrl_gpio_range *range = NULL;
250
251 /* Loop over the ranges */
252 mutex_lock(&pctldev->gpio_ranges_lock);
253 list_for_each_entry(range, &pctldev->gpio_ranges, node) {
254 /* Check if we're in the valid range */
255 if (gpio >= range->base &&
256 gpio < range->base + range->npins) {
257 mutex_unlock(&pctldev->gpio_ranges_lock);
258 return range;
259 }
260 }
261 mutex_unlock(&pctldev->gpio_ranges_lock);
262
263 return NULL;
264}
265
266/**
267 * pinctrl_get_device_gpio_range() - find device for GPIO range
268 * @gpio: the pin to locate the pin controller for
269 * @outdev: the pin control device if found
270 * @outrange: the GPIO range if found
271 *
272 * Find the pin controller handling a certain GPIO pin from the pinspace of
273 * the GPIO subsystem, return the device and the matching GPIO range. Returns
274 * negative if the GPIO range could not be found in any device.
275 */
276int pinctrl_get_device_gpio_range(unsigned gpio,
277 struct pinctrl_dev **outdev,
278 struct pinctrl_gpio_range **outrange)
279{
280 struct pinctrl_dev *pctldev = NULL;
281
282 /* Loop over the pin controllers */
283 mutex_lock(&pinctrldev_list_mutex);
284 list_for_each_entry(pctldev, &pinctrldev_list, node) {
285 struct pinctrl_gpio_range *range;
286
287 range = pinctrl_match_gpio_range(pctldev, gpio);
288 if (range != NULL) {
289 *outdev = pctldev;
290 *outrange = range;
291 mutex_unlock(&pinctrldev_list_mutex);
292 return 0;
293 }
294 }
295 mutex_unlock(&pinctrldev_list_mutex);
296
297 return -EINVAL;
298}
299
300/**
301 * pinctrl_add_gpio_range() - register a GPIO range for a controller
302 * @pctldev: pin controller device to add the range to
303 * @range: the GPIO range to add
304 *
305 * This adds a range of GPIOs to be handled by a certain pin controller. Call
306 * this to register handled ranges after registering your pin controller.
307 */
308void pinctrl_add_gpio_range(struct pinctrl_dev *pctldev,
309 struct pinctrl_gpio_range *range)
310{
311 mutex_lock(&pctldev->gpio_ranges_lock);
312 list_add(&range->node, &pctldev->gpio_ranges);
313 mutex_unlock(&pctldev->gpio_ranges_lock);
314}
315
316/**
317 * pinctrl_remove_gpio_range() - remove a range of GPIOs fro a pin controller
318 * @pctldev: pin controller device to remove the range from
319 * @range: the GPIO range to remove
320 */
321void pinctrl_remove_gpio_range(struct pinctrl_dev *pctldev,
322 struct pinctrl_gpio_range *range)
323{
324 mutex_lock(&pctldev->gpio_ranges_lock);
325 list_del(&range->node);
326 mutex_unlock(&pctldev->gpio_ranges_lock);
327}
328
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329/**
330 * pinctrl_get_group_selector() - returns the group selector for a group
331 * @pctldev: the pin controller handling the group
332 * @pin_group: the pin group to look up
333 */
334int pinctrl_get_group_selector(struct pinctrl_dev *pctldev,
335 const char *pin_group)
336{
337 const struct pinctrl_ops *pctlops = pctldev->desc->pctlops;
338 unsigned group_selector = 0;
339
340 while (pctlops->list_groups(pctldev, group_selector) >= 0) {
341 const char *gname = pctlops->get_group_name(pctldev,
342 group_selector);
343 if (!strcmp(gname, pin_group)) {
51cd24ee 344 dev_dbg(pctldev->dev,
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345 "found group selector %u for %s\n",
346 group_selector,
347 pin_group);
348 return group_selector;
349 }
350
351 group_selector++;
352 }
353
51cd24ee 354 dev_err(pctldev->dev, "does not have pin group %s\n",
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355 pin_group);
356
357 return -EINVAL;
358}
359
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360/**
361 * pinctrl_request_gpio() - request a single pin to be used in as GPIO
362 * @gpio: the GPIO pin number from the GPIO subsystem number space
363 *
364 * This function should *ONLY* be used from gpiolib-based GPIO drivers,
365 * as part of their gpio_request() semantics, platforms and individual drivers
366 * shall *NOT* request GPIO pins to be muxed in.
367 */
368int pinctrl_request_gpio(unsigned gpio)
369{
370 struct pinctrl_dev *pctldev;
371 struct pinctrl_gpio_range *range;
372 int ret;
373 int pin;
374
375 ret = pinctrl_get_device_gpio_range(gpio, &pctldev, &range);
376 if (ret)
377 return -EINVAL;
378
379 /* Convert to the pin controllers number space */
380 pin = gpio - range->base + range->pin_base;
381
382 return pinmux_request_gpio(pctldev, range, pin, gpio);
383}
384EXPORT_SYMBOL_GPL(pinctrl_request_gpio);
385
386/**
387 * pinctrl_free_gpio() - free control on a single pin, currently used as GPIO
388 * @gpio: the GPIO pin number from the GPIO subsystem number space
389 *
390 * This function should *ONLY* be used from gpiolib-based GPIO drivers,
391 * as part of their gpio_free() semantics, platforms and individual drivers
392 * shall *NOT* request GPIO pins to be muxed out.
393 */
394void pinctrl_free_gpio(unsigned gpio)
395{
396 struct pinctrl_dev *pctldev;
397 struct pinctrl_gpio_range *range;
398 int ret;
399 int pin;
400
401 ret = pinctrl_get_device_gpio_range(gpio, &pctldev, &range);
402 if (ret)
403 return;
404
405 /* Convert to the pin controllers number space */
406 pin = gpio - range->base + range->pin_base;
407
408 return pinmux_free_gpio(pctldev, pin, range);
409}
410EXPORT_SYMBOL_GPL(pinctrl_free_gpio);
411
412static int pinctrl_gpio_direction(unsigned gpio, bool input)
413{
414 struct pinctrl_dev *pctldev;
415 struct pinctrl_gpio_range *range;
416 int ret;
417 int pin;
418
419 ret = pinctrl_get_device_gpio_range(gpio, &pctldev, &range);
420 if (ret)
421 return ret;
422
423 /* Convert to the pin controllers number space */
424 pin = gpio - range->base + range->pin_base;
425
426 return pinmux_gpio_direction(pctldev, range, pin, input);
427}
428
429/**
430 * pinctrl_gpio_direction_input() - request a GPIO pin to go into input mode
431 * @gpio: the GPIO pin number from the GPIO subsystem number space
432 *
433 * This function should *ONLY* be used from gpiolib-based GPIO drivers,
434 * as part of their gpio_direction_input() semantics, platforms and individual
435 * drivers shall *NOT* touch pin control GPIO calls.
436 */
437int pinctrl_gpio_direction_input(unsigned gpio)
438{
439 return pinctrl_gpio_direction(gpio, true);
440}
441EXPORT_SYMBOL_GPL(pinctrl_gpio_direction_input);
442
443/**
444 * pinctrl_gpio_direction_output() - request a GPIO pin to go into output mode
445 * @gpio: the GPIO pin number from the GPIO subsystem number space
446 *
447 * This function should *ONLY* be used from gpiolib-based GPIO drivers,
448 * as part of their gpio_direction_output() semantics, platforms and individual
449 * drivers shall *NOT* touch pin control GPIO calls.
450 */
451int pinctrl_gpio_direction_output(unsigned gpio)
452{
453 return pinctrl_gpio_direction(gpio, false);
454}
455EXPORT_SYMBOL_GPL(pinctrl_gpio_direction_output);
456
457/**
458 * pinctrl_get() - retrieves the pin controller handle for a certain device
459 * @dev: the device to get the pin controller handle for
460 * @name: an optional specific control mapping name or NULL, the name is only
461 * needed if you want to have more than one mapping per device, or if you
462 * need an anonymous pin control (not tied to any specific device)
463 */
464struct pinctrl *pinctrl_get(struct device *dev, const char *name)
465{
466 struct pinctrl_map const *map = NULL;
467 struct pinctrl_dev *pctldev = NULL;
468 const char *devname = NULL;
469 struct pinctrl *p;
470 bool found_map;
471 unsigned num_maps = 0;
472 int ret = -ENODEV;
473 int i;
474
475 /* We must have dev or ID or both */
476 if (!dev && !name)
477 return ERR_PTR(-EINVAL);
478
479 if (dev)
480 devname = dev_name(dev);
481
482 pr_debug("get pin control handle %s for device %s\n", name,
483 devname ? devname : "(none)");
484
485 /*
486 * create the state cookie holder struct pinctrl for each
487 * mapping, this is what consumers will get when requesting
488 * a pin control handle with pinctrl_get()
489 */
490 p = kzalloc(sizeof(struct pinctrl), GFP_KERNEL);
491 if (p == NULL)
492 return ERR_PTR(-ENOMEM);
493 mutex_init(&p->mutex);
494 pinmux_init_pinctrl_handle(p);
495
496 /* Iterate over the pin control maps to locate the right ones */
497 for (i = 0; i < pinctrl_maps_num; i++) {
498 map = &pinctrl_maps[i];
499 found_map = false;
500
501 /*
502 * First, try to find the pctldev given in the map
503 */
504 pctldev = get_pinctrl_dev_from_devname(map->ctrl_dev_name);
505 if (!pctldev) {
506 pr_warning("could not find a pinctrl device for pinmux function %s, fishy, they shall all have one\n",
507 map->function);
508 pr_warning("given pinctrl device name: %s",
509 map->ctrl_dev_name);
510
511 /* Continue to check the other mappings anyway... */
512 continue;
513 }
514
515 pr_debug("in map, found pctldev %s to handle function %s",
516 dev_name(pctldev->dev), map->function);
517
518
519 /*
520 * If we're looking for a specific named map, this must match,
521 * else we loop and look for the next.
522 */
523 if (name != NULL) {
524 if (map->name == NULL)
525 continue;
526 if (strcmp(map->name, name))
527 continue;
528 }
529
530 /*
531 * This is for the case where no device name is given, we
532 * already know that the function name matches from above
533 * code.
534 */
535 if (!map->dev_name && (name != NULL))
536 found_map = true;
537
538 /* If the mapping has a device set up it must match */
539 if (map->dev_name &&
540 (!devname || !strcmp(map->dev_name, devname)))
541 /* MATCH! */
542 found_map = true;
543
544 /* If this map is applicable, then apply it */
545 if (found_map) {
546 ret = pinmux_apply_muxmap(pctldev, p, dev,
547 devname, map);
548 if (ret) {
549 kfree(p);
550 return ERR_PTR(ret);
551 }
552 num_maps++;
553 }
554 }
555
556 /* We should have atleast one map, right */
557 if (!num_maps) {
558 pr_err("could not find any mux maps for device %s, ID %s\n",
559 devname ? devname : "(anonymous)",
560 name ? name : "(undefined)");
561 kfree(p);
562 return ERR_PTR(-EINVAL);
563 }
564
565 pr_debug("found %u mux maps for device %s, UD %s\n",
566 num_maps,
567 devname ? devname : "(anonymous)",
568 name ? name : "(undefined)");
569
570 /* Add the pinmux to the global list */
571 mutex_lock(&pinctrl_list_mutex);
572 list_add(&p->node, &pinctrl_list);
573 mutex_unlock(&pinctrl_list_mutex);
574
575 return p;
576}
577EXPORT_SYMBOL_GPL(pinctrl_get);
578
579/**
580 * pinctrl_put() - release a previously claimed pin control handle
581 * @p: a pin control handle previously claimed by pinctrl_get()
582 */
583void pinctrl_put(struct pinctrl *p)
584{
585 if (p == NULL)
586 return;
587
588 mutex_lock(&p->mutex);
589 if (p->usecount)
590 pr_warn("releasing pin control handle with active users!\n");
591 /* Free the groups and all acquired pins */
592 pinmux_put(p);
593 mutex_unlock(&p->mutex);
594
595 /* Remove from list */
596 mutex_lock(&pinctrl_list_mutex);
597 list_del(&p->node);
598 mutex_unlock(&pinctrl_list_mutex);
599
600 kfree(p);
601}
602EXPORT_SYMBOL_GPL(pinctrl_put);
603
604/**
605 * pinctrl_enable() - enable a certain pin controller setting
606 * @p: the pin control handle to enable, previously claimed by pinctrl_get()
607 */
608int pinctrl_enable(struct pinctrl *p)
609{
610 int ret = 0;
611
612 if (p == NULL)
613 return -EINVAL;
614 mutex_lock(&p->mutex);
615 if (p->usecount++ == 0) {
616 ret = pinmux_enable(p);
617 if (ret)
618 p->usecount--;
619 }
620 mutex_unlock(&p->mutex);
621 return ret;
622}
623EXPORT_SYMBOL_GPL(pinctrl_enable);
624
625/**
626 * pinctrl_disable() - disable a certain pin control setting
627 * @p: the pin control handle to disable, previously claimed by pinctrl_get()
628 */
629void pinctrl_disable(struct pinctrl *p)
630{
631 if (p == NULL)
632 return;
633
634 mutex_lock(&p->mutex);
635 if (--p->usecount == 0) {
636 pinmux_disable(p);
637 }
638 mutex_unlock(&p->mutex);
639}
640EXPORT_SYMBOL_GPL(pinctrl_disable);
641
642/**
643 * pinctrl_register_mappings() - register a set of pin controller mappings
644 * @maps: the pincontrol mappings table to register, this should be marked with
645 * __initdata so it can be discarded after boot, this function will
646 * perform a shallow copy for the mapping entries.
647 * @num_maps: the number of maps in the mapping table
648 *
649 * Only call this once during initialization of your machine, the function is
650 * tagged as __init and won't be callable after init has completed. The map
651 * passed into this function will be owned by the pinmux core and cannot be
652 * freed.
653 */
654int __init pinctrl_register_mappings(struct pinctrl_map const *maps,
655 unsigned num_maps)
656{
657 void *tmp_maps;
658 int i;
659
660 pr_debug("add %d pinmux maps\n", num_maps);
661
662 /* First sanity check the new mapping */
663 for (i = 0; i < num_maps; i++) {
664 if (!maps[i].name) {
665 pr_err("failed to register map %d: no map name given\n",
666 i);
667 return -EINVAL;
668 }
669
670 if (!maps[i].ctrl_dev_name) {
671 pr_err("failed to register map %s (%d): no pin control device given\n",
672 maps[i].name, i);
673 return -EINVAL;
674 }
675
676 if (!maps[i].function) {
677 pr_err("failed to register map %s (%d): no function ID given\n",
678 maps[i].name, i);
679 return -EINVAL;
680 }
681
682 if (!maps[i].dev_name)
683 pr_debug("add system map %s function %s with no device\n",
684 maps[i].name,
685 maps[i].function);
686 else
687 pr_debug("register map %s, function %s\n",
688 maps[i].name,
689 maps[i].function);
690 }
691
692 /*
693 * Make a copy of the map array - string pointers will end up in the
694 * kernel const section anyway so these do not need to be deep copied.
695 */
696 if (!pinctrl_maps_num) {
697 /* On first call, just copy them */
698 tmp_maps = kmemdup(maps,
699 sizeof(struct pinctrl_map) * num_maps,
700 GFP_KERNEL);
701 if (!tmp_maps)
702 return -ENOMEM;
703 } else {
704 /* Subsequent calls, reallocate array to new size */
705 size_t oldsize = sizeof(struct pinctrl_map) * pinctrl_maps_num;
706 size_t newsize = sizeof(struct pinctrl_map) * num_maps;
707
708 tmp_maps = krealloc(pinctrl_maps,
709 oldsize + newsize, GFP_KERNEL);
710 if (!tmp_maps)
711 return -ENOMEM;
712 memcpy((tmp_maps + oldsize), maps, newsize);
713 }
714
715 pinctrl_maps = tmp_maps;
716 pinctrl_maps_num += num_maps;
717 return 0;
718}
719
720/* Hog a single map entry and add to the hoglist */
721static int pinctrl_hog_map(struct pinctrl_dev *pctldev,
722 struct pinctrl_map const *map)
723{
724 struct pinctrl_hog *hog;
725 struct pinctrl *p;
726 int ret;
727
befe5bdf
LW
728 hog = kzalloc(sizeof(struct pinctrl_hog), GFP_KERNEL);
729 if (!hog)
730 return -ENOMEM;
731
449d16b0 732 p = pinctrl_get(pctldev->dev, map->name);
befe5bdf
LW
733 if (IS_ERR(p)) {
734 kfree(hog);
735 dev_err(pctldev->dev,
736 "could not get the %s pin control mapping for hogging\n",
737 map->name);
738 return PTR_ERR(p);
739 }
740
741 ret = pinctrl_enable(p);
742 if (ret) {
743 pinctrl_put(p);
744 kfree(hog);
745 dev_err(pctldev->dev,
746 "could not enable the %s pin control mapping for hogging\n",
747 map->name);
748 return ret;
749 }
750
751 hog->map = map;
752 hog->p = p;
753
754 dev_info(pctldev->dev, "hogged map %s, function %s\n", map->name,
755 map->function);
756 mutex_lock(&pctldev->pinctrl_hogs_lock);
757 list_add(&hog->node, &pctldev->pinctrl_hogs);
758 mutex_unlock(&pctldev->pinctrl_hogs_lock);
759
760 return 0;
761}
762
763/**
764 * pinctrl_hog_maps() - hog specific map entries on controller device
765 * @pctldev: the pin control device to hog entries on
766 *
767 * When the pin controllers are registered, there may be some specific pinmux
768 * map entries that need to be hogged, i.e. get+enabled until the system shuts
769 * down.
770 */
771int pinctrl_hog_maps(struct pinctrl_dev *pctldev)
772{
773 struct device *dev = pctldev->dev;
774 const char *devname = dev_name(dev);
775 int ret;
776 int i;
777
778 INIT_LIST_HEAD(&pctldev->pinctrl_hogs);
779 mutex_init(&pctldev->pinctrl_hogs_lock);
780
781 for (i = 0; i < pinctrl_maps_num; i++) {
782 struct pinctrl_map const *map = &pinctrl_maps[i];
783
befe5bdf 784 if (map->ctrl_dev_name &&
77a59883
LW
785 !strcmp(map->ctrl_dev_name, devname) &&
786 !strcmp(map->dev_name, devname)) {
befe5bdf
LW
787 /* OK time to hog! */
788 ret = pinctrl_hog_map(pctldev, map);
789 if (ret)
790 return ret;
791 }
792 }
793 return 0;
794}
795
796/**
797 * pinctrl_unhog_maps() - unhog specific map entries on controller device
798 * @pctldev: the pin control device to unhog entries on
799 */
800void pinctrl_unhog_maps(struct pinctrl_dev *pctldev)
801{
802 struct list_head *node, *tmp;
803
804 mutex_lock(&pctldev->pinctrl_hogs_lock);
805 list_for_each_safe(node, tmp, &pctldev->pinctrl_hogs) {
806 struct pinctrl_hog *hog =
807 list_entry(node, struct pinctrl_hog, node);
808 pinctrl_disable(hog->p);
809 pinctrl_put(hog->p);
810 list_del(node);
811 kfree(hog);
812 }
813 mutex_unlock(&pctldev->pinctrl_hogs_lock);
814}
815
2744e8af
LW
816#ifdef CONFIG_DEBUG_FS
817
818static int pinctrl_pins_show(struct seq_file *s, void *what)
819{
820 struct pinctrl_dev *pctldev = s->private;
821 const struct pinctrl_ops *ops = pctldev->desc->pctlops;
706e8520 822 unsigned i, pin;
2744e8af
LW
823
824 seq_printf(s, "registered pins: %d\n", pctldev->desc->npins);
2744e8af 825
706e8520
CP
826 /* The pin number can be retrived from the pin controller descriptor */
827 for (i = 0; i < pctldev->desc->npins; i++) {
2744e8af
LW
828 struct pin_desc *desc;
829
706e8520 830 pin = pctldev->desc->pins[i].number;
2744e8af
LW
831 desc = pin_desc_get(pctldev, pin);
832 /* Pin space may be sparse */
833 if (desc == NULL)
834 continue;
835
836 seq_printf(s, "pin %d (%s) ", pin,
837 desc->name ? desc->name : "unnamed");
838
839 /* Driver-specific info per pin */
840 if (ops->pin_dbg_show)
841 ops->pin_dbg_show(pctldev, s, pin);
842
843 seq_puts(s, "\n");
844 }
845
846 return 0;
847}
848
849static int pinctrl_groups_show(struct seq_file *s, void *what)
850{
851 struct pinctrl_dev *pctldev = s->private;
852 const struct pinctrl_ops *ops = pctldev->desc->pctlops;
853 unsigned selector = 0;
854
855 /* No grouping */
856 if (!ops)
857 return 0;
858
859 seq_puts(s, "registered pin groups:\n");
860 while (ops->list_groups(pctldev, selector) >= 0) {
a5818a8b 861 const unsigned *pins;
2744e8af
LW
862 unsigned num_pins;
863 const char *gname = ops->get_group_name(pctldev, selector);
864 int ret;
865 int i;
866
867 ret = ops->get_group_pins(pctldev, selector,
868 &pins, &num_pins);
869 if (ret)
870 seq_printf(s, "%s [ERROR GETTING PINS]\n",
871 gname);
872 else {
873 seq_printf(s, "group: %s, pins = [ ", gname);
874 for (i = 0; i < num_pins; i++)
875 seq_printf(s, "%d ", pins[i]);
876 seq_puts(s, "]\n");
877 }
878 selector++;
879 }
880
881
882 return 0;
883}
884
885static int pinctrl_gpioranges_show(struct seq_file *s, void *what)
886{
887 struct pinctrl_dev *pctldev = s->private;
888 struct pinctrl_gpio_range *range = NULL;
889
890 seq_puts(s, "GPIO ranges handled:\n");
891
892 /* Loop over the ranges */
893 mutex_lock(&pctldev->gpio_ranges_lock);
894 list_for_each_entry(range, &pctldev->gpio_ranges, node) {
75d6642a
LW
895 seq_printf(s, "%u: %s GPIOS [%u - %u] PINS [%u - %u]\n",
896 range->id, range->name,
897 range->base, (range->base + range->npins - 1),
898 range->pin_base,
899 (range->pin_base + range->npins - 1));
2744e8af
LW
900 }
901 mutex_unlock(&pctldev->gpio_ranges_lock);
902
903 return 0;
904}
905
befe5bdf
LW
906static int pinctrl_maps_show(struct seq_file *s, void *what)
907{
908 int i;
909
910 seq_puts(s, "Pinctrl maps:\n");
911
912 for (i = 0; i < pinctrl_maps_num; i++) {
913 struct pinctrl_map const *map = &pinctrl_maps[i];
914
915 seq_printf(s, "%s:\n", map->name);
916 if (map->dev_name)
917 seq_printf(s, " device: %s\n",
918 map->dev_name);
919 else
920 seq_printf(s, " SYSTEM MUX\n");
921 seq_printf(s, " controlling device %s\n",
922 map->ctrl_dev_name);
923 seq_printf(s, " function: %s\n", map->function);
924 seq_printf(s, " group: %s\n", map->group ? map->group :
925 "(default)");
926 }
927 return 0;
928}
929
930static int pinmux_hogs_show(struct seq_file *s, void *what)
931{
932 struct pinctrl_dev *pctldev = s->private;
933 struct pinctrl_hog *hog;
934
935 seq_puts(s, "Pin control map hogs held by device\n");
936
937 list_for_each_entry(hog, &pctldev->pinctrl_hogs, node)
938 seq_printf(s, "%s\n", hog->map->name);
939
940 return 0;
941}
942
2744e8af
LW
943static int pinctrl_devices_show(struct seq_file *s, void *what)
944{
945 struct pinctrl_dev *pctldev;
946
ae6b4d85 947 seq_puts(s, "name [pinmux] [pinconf]\n");
2744e8af
LW
948 mutex_lock(&pinctrldev_list_mutex);
949 list_for_each_entry(pctldev, &pinctrldev_list, node) {
950 seq_printf(s, "%s ", pctldev->desc->name);
951 if (pctldev->desc->pmxops)
ae6b4d85
LW
952 seq_puts(s, "yes ");
953 else
954 seq_puts(s, "no ");
955 if (pctldev->desc->confops)
2744e8af
LW
956 seq_puts(s, "yes");
957 else
958 seq_puts(s, "no");
959 seq_puts(s, "\n");
960 }
961 mutex_unlock(&pinctrldev_list_mutex);
962
963 return 0;
964}
965
befe5bdf
LW
966static int pinctrl_show(struct seq_file *s, void *what)
967{
968 struct pinctrl *p;
969
970 seq_puts(s, "Requested pin control handlers their pinmux maps:\n");
971 list_for_each_entry(p, &pinctrl_list, node) {
972 struct pinctrl_dev *pctldev = p->pctldev;
973
974 if (!pctldev) {
975 seq_puts(s, "NO PIN CONTROLLER DEVICE\n");
976 continue;
977 }
978
979 seq_printf(s, "device: %s",
980 pinctrl_dev_get_name(p->pctldev));
981
982 pinmux_dbg_show(s, p);
983
984 seq_printf(s, " users: %u map-> %s\n",
985 p->usecount,
986 p->dev ? dev_name(p->dev) : "(system)");
987 }
988
989 return 0;
990}
991
2744e8af
LW
992static int pinctrl_pins_open(struct inode *inode, struct file *file)
993{
994 return single_open(file, pinctrl_pins_show, inode->i_private);
995}
996
997static int pinctrl_groups_open(struct inode *inode, struct file *file)
998{
999 return single_open(file, pinctrl_groups_show, inode->i_private);
1000}
1001
1002static int pinctrl_gpioranges_open(struct inode *inode, struct file *file)
1003{
1004 return single_open(file, pinctrl_gpioranges_show, inode->i_private);
1005}
1006
befe5bdf
LW
1007static int pinctrl_maps_open(struct inode *inode, struct file *file)
1008{
1009 return single_open(file, pinctrl_maps_show, inode->i_private);
1010}
1011
1012static int pinmux_hogs_open(struct inode *inode, struct file *file)
1013{
1014 return single_open(file, pinmux_hogs_show, inode->i_private);
1015}
1016
2744e8af
LW
1017static int pinctrl_devices_open(struct inode *inode, struct file *file)
1018{
1019 return single_open(file, pinctrl_devices_show, NULL);
1020}
1021
befe5bdf
LW
1022static int pinctrl_open(struct inode *inode, struct file *file)
1023{
1024 return single_open(file, pinctrl_show, NULL);
1025}
1026
2744e8af
LW
1027static const struct file_operations pinctrl_pins_ops = {
1028 .open = pinctrl_pins_open,
1029 .read = seq_read,
1030 .llseek = seq_lseek,
1031 .release = single_release,
1032};
1033
1034static const struct file_operations pinctrl_groups_ops = {
1035 .open = pinctrl_groups_open,
1036 .read = seq_read,
1037 .llseek = seq_lseek,
1038 .release = single_release,
1039};
1040
1041static const struct file_operations pinctrl_gpioranges_ops = {
1042 .open = pinctrl_gpioranges_open,
1043 .read = seq_read,
1044 .llseek = seq_lseek,
1045 .release = single_release,
1046};
1047
befe5bdf
LW
1048static const struct file_operations pinctrl_maps_ops = {
1049 .open = pinctrl_maps_open,
1050 .read = seq_read,
1051 .llseek = seq_lseek,
1052 .release = single_release,
1053};
1054
1055static const struct file_operations pinmux_hogs_ops = {
1056 .open = pinmux_hogs_open,
1057 .read = seq_read,
1058 .llseek = seq_lseek,
1059 .release = single_release,
1060};
1061
2744e8af
LW
1062static const struct file_operations pinctrl_devices_ops = {
1063 .open = pinctrl_devices_open,
1064 .read = seq_read,
1065 .llseek = seq_lseek,
1066 .release = single_release,
1067};
1068
befe5bdf
LW
1069static const struct file_operations pinctrl_ops = {
1070 .open = pinctrl_open,
1071 .read = seq_read,
1072 .llseek = seq_lseek,
1073 .release = single_release,
1074};
1075
2744e8af
LW
1076static struct dentry *debugfs_root;
1077
1078static void pinctrl_init_device_debugfs(struct pinctrl_dev *pctldev)
1079{
02157160 1080 struct dentry *device_root;
2744e8af 1081
51cd24ee 1082 device_root = debugfs_create_dir(dev_name(pctldev->dev),
2744e8af 1083 debugfs_root);
02157160
TL
1084 pctldev->device_root = device_root;
1085
2744e8af
LW
1086 if (IS_ERR(device_root) || !device_root) {
1087 pr_warn("failed to create debugfs directory for %s\n",
51cd24ee 1088 dev_name(pctldev->dev));
2744e8af
LW
1089 return;
1090 }
1091 debugfs_create_file("pins", S_IFREG | S_IRUGO,
1092 device_root, pctldev, &pinctrl_pins_ops);
1093 debugfs_create_file("pingroups", S_IFREG | S_IRUGO,
1094 device_root, pctldev, &pinctrl_groups_ops);
1095 debugfs_create_file("gpio-ranges", S_IFREG | S_IRUGO,
1096 device_root, pctldev, &pinctrl_gpioranges_ops);
befe5bdf
LW
1097 debugfs_create_file("pinctrl-maps", S_IFREG | S_IRUGO,
1098 device_root, pctldev, &pinctrl_maps_ops);
1099 debugfs_create_file("pinmux-hogs", S_IFREG | S_IRUGO,
1100 device_root, pctldev, &pinmux_hogs_ops);
2744e8af 1101 pinmux_init_device_debugfs(device_root, pctldev);
ae6b4d85 1102 pinconf_init_device_debugfs(device_root, pctldev);
2744e8af
LW
1103}
1104
02157160
TL
1105static void pinctrl_remove_device_debugfs(struct pinctrl_dev *pctldev)
1106{
1107 debugfs_remove_recursive(pctldev->device_root);
1108}
1109
2744e8af
LW
1110static void pinctrl_init_debugfs(void)
1111{
1112 debugfs_root = debugfs_create_dir("pinctrl", NULL);
1113 if (IS_ERR(debugfs_root) || !debugfs_root) {
1114 pr_warn("failed to create debugfs directory\n");
1115 debugfs_root = NULL;
1116 return;
1117 }
1118
1119 debugfs_create_file("pinctrl-devices", S_IFREG | S_IRUGO,
1120 debugfs_root, NULL, &pinctrl_devices_ops);
befe5bdf
LW
1121 debugfs_create_file("pinctrl-handles", S_IFREG | S_IRUGO,
1122 debugfs_root, NULL, &pinctrl_ops);
2744e8af
LW
1123}
1124
1125#else /* CONFIG_DEBUG_FS */
1126
1127static void pinctrl_init_device_debugfs(struct pinctrl_dev *pctldev)
1128{
1129}
1130
1131static void pinctrl_init_debugfs(void)
1132{
1133}
1134
02157160
TL
1135static void pinctrl_remove_device_debugfs(struct pinctrl_dev *pctldev)
1136{
1137}
1138
2744e8af
LW
1139#endif
1140
1141/**
1142 * pinctrl_register() - register a pin controller device
1143 * @pctldesc: descriptor for this pin controller
1144 * @dev: parent device for this pin controller
1145 * @driver_data: private pin controller data for this pin controller
1146 */
1147struct pinctrl_dev *pinctrl_register(struct pinctrl_desc *pctldesc,
1148 struct device *dev, void *driver_data)
1149{
2744e8af
LW
1150 struct pinctrl_dev *pctldev;
1151 int ret;
1152
1153 if (pctldesc == NULL)
1154 return NULL;
1155 if (pctldesc->name == NULL)
1156 return NULL;
1157
b9130b77
TL
1158 pctldev = kzalloc(sizeof(struct pinctrl_dev), GFP_KERNEL);
1159 if (pctldev == NULL)
1160 return NULL;
1161
1162 /* Initialize pin control device struct */
1163 pctldev->owner = pctldesc->owner;
1164 pctldev->desc = pctldesc;
1165 pctldev->driver_data = driver_data;
1166 INIT_RADIX_TREE(&pctldev->pin_desc_tree, GFP_KERNEL);
1167 spin_lock_init(&pctldev->pin_desc_tree_lock);
1168 INIT_LIST_HEAD(&pctldev->gpio_ranges);
1169 mutex_init(&pctldev->gpio_ranges_lock);
1170 pctldev->dev = dev;
1171
2744e8af
LW
1172 /* If we're implementing pinmuxing, check the ops for sanity */
1173 if (pctldesc->pmxops) {
b9130b77 1174 ret = pinmux_check_ops(pctldev);
2744e8af
LW
1175 if (ret) {
1176 pr_err("%s pinmux ops lacks necessary functions\n",
1177 pctldesc->name);
b9130b77 1178 goto out_err;
2744e8af
LW
1179 }
1180 }
1181
ae6b4d85
LW
1182 /* If we're implementing pinconfig, check the ops for sanity */
1183 if (pctldesc->confops) {
b9130b77 1184 ret = pinconf_check_ops(pctldev);
ae6b4d85
LW
1185 if (ret) {
1186 pr_err("%s pin config ops lacks necessary functions\n",
1187 pctldesc->name);
b9130b77 1188 goto out_err;
ae6b4d85
LW
1189 }
1190 }
1191
2744e8af
LW
1192 /* Register all the pins */
1193 pr_debug("try to register %d pins on %s...\n",
1194 pctldesc->npins, pctldesc->name);
1195 ret = pinctrl_register_pins(pctldev, pctldesc->pins, pctldesc->npins);
1196 if (ret) {
1197 pr_err("error during pin registration\n");
1198 pinctrl_free_pindescs(pctldev, pctldesc->pins,
1199 pctldesc->npins);
51cd24ee 1200 goto out_err;
2744e8af
LW
1201 }
1202
1203 pinctrl_init_device_debugfs(pctldev);
1204 mutex_lock(&pinctrldev_list_mutex);
1205 list_add(&pctldev->node, &pinctrldev_list);
1206 mutex_unlock(&pinctrldev_list_mutex);
e93bcee0 1207 pinctrl_hog_maps(pctldev);
2744e8af
LW
1208 return pctldev;
1209
51cd24ee
SW
1210out_err:
1211 kfree(pctldev);
2744e8af
LW
1212 return NULL;
1213}
1214EXPORT_SYMBOL_GPL(pinctrl_register);
1215
1216/**
1217 * pinctrl_unregister() - unregister pinmux
1218 * @pctldev: pin controller to unregister
1219 *
1220 * Called by pinmux drivers to unregister a pinmux.
1221 */
1222void pinctrl_unregister(struct pinctrl_dev *pctldev)
1223{
1224 if (pctldev == NULL)
1225 return;
1226
02157160 1227 pinctrl_remove_device_debugfs(pctldev);
e93bcee0 1228 pinctrl_unhog_maps(pctldev);
2744e8af
LW
1229 /* TODO: check that no pinmuxes are still active? */
1230 mutex_lock(&pinctrldev_list_mutex);
1231 list_del(&pctldev->node);
1232 mutex_unlock(&pinctrldev_list_mutex);
1233 /* Destroy descriptor tree */
1234 pinctrl_free_pindescs(pctldev, pctldev->desc->pins,
1235 pctldev->desc->npins);
51cd24ee 1236 kfree(pctldev);
2744e8af
LW
1237}
1238EXPORT_SYMBOL_GPL(pinctrl_unregister);
1239
1240static int __init pinctrl_init(void)
1241{
1242 pr_info("initialized pinctrl subsystem\n");
1243 pinctrl_init_debugfs();
1244 return 0;
1245}
1246
1247/* init early since many drivers really need to initialized pinmux early */
1248core_initcall(pinctrl_init);
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