blob: 609e9db1a69afc16381d91584420833be0f8dda1 [file] [log] [blame]
Mike Turquetteb24764902012-03-15 23:11:19 -07001/*
2 * Copyright (C) 2010-2011 Canonical Ltd <jeremy.kerr@canonical.com>
3 * Copyright (C) 2011-2012 Linaro Ltd <mturquette@linaro.org>
4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License version 2 as
7 * published by the Free Software Foundation.
8 *
9 * Standard functionality for the common clock API. See Documentation/clk.txt
10 */
11
12#include <linux/clk-private.h>
Sylwester Nawrocki86be4082014-06-18 17:29:32 +020013#include <linux/clk/clk-conf.h>
Mike Turquetteb24764902012-03-15 23:11:19 -070014#include <linux/module.h>
15#include <linux/mutex.h>
16#include <linux/spinlock.h>
17#include <linux/err.h>
18#include <linux/list.h>
19#include <linux/slab.h>
Grant Likely766e6a42012-04-09 14:50:06 -050020#include <linux/of.h>
Stephen Boyd46c87732012-09-24 13:38:04 -070021#include <linux/device.h>
Prashant Gaikwadf2f6c252013-01-04 12:30:52 +053022#include <linux/init.h>
Mike Turquette533ddeb2013-03-28 13:59:02 -070023#include <linux/sched.h>
Mike Turquetteb24764902012-03-15 23:11:19 -070024
Sylwester Nawrockid6782c22013-08-23 17:03:43 +020025#include "clk.h"
26
Mike Turquetteb24764902012-03-15 23:11:19 -070027static DEFINE_SPINLOCK(enable_lock);
28static DEFINE_MUTEX(prepare_lock);
29
Mike Turquette533ddeb2013-03-28 13:59:02 -070030static struct task_struct *prepare_owner;
31static struct task_struct *enable_owner;
32
33static int prepare_refcnt;
34static int enable_refcnt;
35
Mike Turquetteb24764902012-03-15 23:11:19 -070036static HLIST_HEAD(clk_root_list);
37static HLIST_HEAD(clk_orphan_list);
38static LIST_HEAD(clk_notifier_list);
39
Mike Turquetteeab89f62013-03-28 13:59:01 -070040/*** locking ***/
41static void clk_prepare_lock(void)
42{
Mike Turquette533ddeb2013-03-28 13:59:02 -070043 if (!mutex_trylock(&prepare_lock)) {
44 if (prepare_owner == current) {
45 prepare_refcnt++;
46 return;
47 }
48 mutex_lock(&prepare_lock);
49 }
50 WARN_ON_ONCE(prepare_owner != NULL);
51 WARN_ON_ONCE(prepare_refcnt != 0);
52 prepare_owner = current;
53 prepare_refcnt = 1;
Mike Turquetteeab89f62013-03-28 13:59:01 -070054}
55
56static void clk_prepare_unlock(void)
57{
Mike Turquette533ddeb2013-03-28 13:59:02 -070058 WARN_ON_ONCE(prepare_owner != current);
59 WARN_ON_ONCE(prepare_refcnt == 0);
60
61 if (--prepare_refcnt)
62 return;
63 prepare_owner = NULL;
Mike Turquetteeab89f62013-03-28 13:59:01 -070064 mutex_unlock(&prepare_lock);
65}
66
67static unsigned long clk_enable_lock(void)
68{
69 unsigned long flags;
Mike Turquette533ddeb2013-03-28 13:59:02 -070070
71 if (!spin_trylock_irqsave(&enable_lock, flags)) {
72 if (enable_owner == current) {
73 enable_refcnt++;
74 return flags;
75 }
76 spin_lock_irqsave(&enable_lock, flags);
77 }
78 WARN_ON_ONCE(enable_owner != NULL);
79 WARN_ON_ONCE(enable_refcnt != 0);
80 enable_owner = current;
81 enable_refcnt = 1;
Mike Turquetteeab89f62013-03-28 13:59:01 -070082 return flags;
83}
84
85static void clk_enable_unlock(unsigned long flags)
86{
Mike Turquette533ddeb2013-03-28 13:59:02 -070087 WARN_ON_ONCE(enable_owner != current);
88 WARN_ON_ONCE(enable_refcnt == 0);
89
90 if (--enable_refcnt)
91 return;
92 enable_owner = NULL;
Mike Turquetteeab89f62013-03-28 13:59:01 -070093 spin_unlock_irqrestore(&enable_lock, flags);
94}
95
Mike Turquetteb24764902012-03-15 23:11:19 -070096/*** debugfs support ***/
97
Mike Turquetteea72dc22013-12-18 21:38:52 -080098#ifdef CONFIG_DEBUG_FS
Mike Turquetteb24764902012-03-15 23:11:19 -070099#include <linux/debugfs.h>
100
101static struct dentry *rootdir;
Mike Turquetteb24764902012-03-15 23:11:19 -0700102static int inited = 0;
Stephen Boyd6314b672014-09-04 23:37:49 -0700103static DEFINE_MUTEX(clk_debug_lock);
104static HLIST_HEAD(clk_debug_list);
Mike Turquetteb24764902012-03-15 23:11:19 -0700105
Sachin Kamat6b44c8542014-07-01 11:56:34 +0530106static struct hlist_head *all_lists[] = {
107 &clk_root_list,
108 &clk_orphan_list,
109 NULL,
110};
111
112static struct hlist_head *orphan_list[] = {
113 &clk_orphan_list,
114 NULL,
115};
116
Prashant Gaikwad1af599d2012-12-26 19:16:22 +0530117static void clk_summary_show_one(struct seq_file *s, struct clk *c, int level)
118{
119 if (!c)
120 return;
121
Mike Turquettee59c5372014-02-18 21:21:25 -0800122 seq_printf(s, "%*s%-*s %11d %12d %11lu %10lu %-3d\n",
Prashant Gaikwad1af599d2012-12-26 19:16:22 +0530123 level * 3 + 1, "",
124 30 - level * 3, c->name,
Boris BREZILLON5279fc42013-12-21 10:34:47 +0100125 c->enable_count, c->prepare_count, clk_get_rate(c),
Mike Turquettee59c5372014-02-18 21:21:25 -0800126 clk_get_accuracy(c), clk_get_phase(c));
Prashant Gaikwad1af599d2012-12-26 19:16:22 +0530127}
128
129static void clk_summary_show_subtree(struct seq_file *s, struct clk *c,
130 int level)
131{
132 struct clk *child;
Prashant Gaikwad1af599d2012-12-26 19:16:22 +0530133
134 if (!c)
135 return;
136
137 clk_summary_show_one(s, c, level);
138
Sasha Levinb67bfe02013-02-27 17:06:00 -0800139 hlist_for_each_entry(child, &c->children, child_node)
Prashant Gaikwad1af599d2012-12-26 19:16:22 +0530140 clk_summary_show_subtree(s, child, level + 1);
141}
142
143static int clk_summary_show(struct seq_file *s, void *data)
144{
145 struct clk *c;
Peter De Schrijver27b8d5f2014-05-30 18:03:57 +0300146 struct hlist_head **lists = (struct hlist_head **)s->private;
Prashant Gaikwad1af599d2012-12-26 19:16:22 +0530147
Mike Turquettee59c5372014-02-18 21:21:25 -0800148 seq_puts(s, " clock enable_cnt prepare_cnt rate accuracy phase\n");
149 seq_puts(s, "----------------------------------------------------------------------------------------\n");
Prashant Gaikwad1af599d2012-12-26 19:16:22 +0530150
Mike Turquetteeab89f62013-03-28 13:59:01 -0700151 clk_prepare_lock();
Prashant Gaikwad1af599d2012-12-26 19:16:22 +0530152
Peter De Schrijver27b8d5f2014-05-30 18:03:57 +0300153 for (; *lists; lists++)
154 hlist_for_each_entry(c, *lists, child_node)
155 clk_summary_show_subtree(s, c, 0);
Prashant Gaikwad1af599d2012-12-26 19:16:22 +0530156
Mike Turquetteeab89f62013-03-28 13:59:01 -0700157 clk_prepare_unlock();
Prashant Gaikwad1af599d2012-12-26 19:16:22 +0530158
159 return 0;
160}
161
162
163static int clk_summary_open(struct inode *inode, struct file *file)
164{
165 return single_open(file, clk_summary_show, inode->i_private);
166}
167
168static const struct file_operations clk_summary_fops = {
169 .open = clk_summary_open,
170 .read = seq_read,
171 .llseek = seq_lseek,
172 .release = single_release,
173};
174
Prashant Gaikwadbddca892012-12-26 19:16:23 +0530175static void clk_dump_one(struct seq_file *s, struct clk *c, int level)
176{
177 if (!c)
178 return;
179
180 seq_printf(s, "\"%s\": { ", c->name);
181 seq_printf(s, "\"enable_count\": %d,", c->enable_count);
182 seq_printf(s, "\"prepare_count\": %d,", c->prepare_count);
Peter De Schrijver670decd2013-06-05 18:06:35 +0300183 seq_printf(s, "\"rate\": %lu", clk_get_rate(c));
Boris BREZILLON5279fc42013-12-21 10:34:47 +0100184 seq_printf(s, "\"accuracy\": %lu", clk_get_accuracy(c));
Mike Turquettee59c5372014-02-18 21:21:25 -0800185 seq_printf(s, "\"phase\": %d", clk_get_phase(c));
Prashant Gaikwadbddca892012-12-26 19:16:23 +0530186}
187
188static void clk_dump_subtree(struct seq_file *s, struct clk *c, int level)
189{
190 struct clk *child;
Prashant Gaikwadbddca892012-12-26 19:16:23 +0530191
192 if (!c)
193 return;
194
195 clk_dump_one(s, c, level);
196
Sasha Levinb67bfe02013-02-27 17:06:00 -0800197 hlist_for_each_entry(child, &c->children, child_node) {
Prashant Gaikwadbddca892012-12-26 19:16:23 +0530198 seq_printf(s, ",");
199 clk_dump_subtree(s, child, level + 1);
200 }
201
202 seq_printf(s, "}");
203}
204
205static int clk_dump(struct seq_file *s, void *data)
206{
207 struct clk *c;
Prashant Gaikwadbddca892012-12-26 19:16:23 +0530208 bool first_node = true;
Peter De Schrijver27b8d5f2014-05-30 18:03:57 +0300209 struct hlist_head **lists = (struct hlist_head **)s->private;
Prashant Gaikwadbddca892012-12-26 19:16:23 +0530210
211 seq_printf(s, "{");
212
Mike Turquetteeab89f62013-03-28 13:59:01 -0700213 clk_prepare_lock();
Prashant Gaikwadbddca892012-12-26 19:16:23 +0530214
Peter De Schrijver27b8d5f2014-05-30 18:03:57 +0300215 for (; *lists; lists++) {
216 hlist_for_each_entry(c, *lists, child_node) {
217 if (!first_node)
218 seq_puts(s, ",");
219 first_node = false;
220 clk_dump_subtree(s, c, 0);
221 }
Prashant Gaikwadbddca892012-12-26 19:16:23 +0530222 }
223
Mike Turquetteeab89f62013-03-28 13:59:01 -0700224 clk_prepare_unlock();
Prashant Gaikwadbddca892012-12-26 19:16:23 +0530225
226 seq_printf(s, "}");
227 return 0;
228}
229
230
231static int clk_dump_open(struct inode *inode, struct file *file)
232{
233 return single_open(file, clk_dump, inode->i_private);
234}
235
236static const struct file_operations clk_dump_fops = {
237 .open = clk_dump_open,
238 .read = seq_read,
239 .llseek = seq_lseek,
240 .release = single_release,
241};
242
Mike Turquetteb24764902012-03-15 23:11:19 -0700243/* caller must hold prepare_lock */
244static int clk_debug_create_one(struct clk *clk, struct dentry *pdentry)
245{
246 struct dentry *d;
247 int ret = -ENOMEM;
248
249 if (!clk || !pdentry) {
250 ret = -EINVAL;
251 goto out;
252 }
253
254 d = debugfs_create_dir(clk->name, pdentry);
255 if (!d)
256 goto out;
257
258 clk->dentry = d;
259
260 d = debugfs_create_u32("clk_rate", S_IRUGO, clk->dentry,
261 (u32 *)&clk->rate);
262 if (!d)
263 goto err_out;
264
Boris BREZILLON5279fc42013-12-21 10:34:47 +0100265 d = debugfs_create_u32("clk_accuracy", S_IRUGO, clk->dentry,
266 (u32 *)&clk->accuracy);
267 if (!d)
268 goto err_out;
269
Mike Turquettee59c5372014-02-18 21:21:25 -0800270 d = debugfs_create_u32("clk_phase", S_IRUGO, clk->dentry,
271 (u32 *)&clk->phase);
272 if (!d)
273 goto err_out;
274
Mike Turquetteb24764902012-03-15 23:11:19 -0700275 d = debugfs_create_x32("clk_flags", S_IRUGO, clk->dentry,
276 (u32 *)&clk->flags);
277 if (!d)
278 goto err_out;
279
280 d = debugfs_create_u32("clk_prepare_count", S_IRUGO, clk->dentry,
281 (u32 *)&clk->prepare_count);
282 if (!d)
283 goto err_out;
284
285 d = debugfs_create_u32("clk_enable_count", S_IRUGO, clk->dentry,
286 (u32 *)&clk->enable_count);
287 if (!d)
288 goto err_out;
289
290 d = debugfs_create_u32("clk_notifier_count", S_IRUGO, clk->dentry,
291 (u32 *)&clk->notifier_count);
292 if (!d)
293 goto err_out;
294
Chris Brandabeab452014-07-03 14:01:29 -0700295 if (clk->ops->debug_init) {
296 ret = clk->ops->debug_init(clk->hw, clk->dentry);
297 if (ret)
Alex Elderc646cbf2014-03-21 06:43:56 -0500298 goto err_out;
Chris Brandabeab452014-07-03 14:01:29 -0700299 }
Alex Elderc646cbf2014-03-21 06:43:56 -0500300
Mike Turquetteb24764902012-03-15 23:11:19 -0700301 ret = 0;
302 goto out;
303
304err_out:
Alex Elderb5f98e62013-11-27 09:39:49 -0600305 debugfs_remove_recursive(clk->dentry);
306 clk->dentry = NULL;
Mike Turquetteb24764902012-03-15 23:11:19 -0700307out:
308 return ret;
309}
310
Mike Turquetteb24764902012-03-15 23:11:19 -0700311/**
312 * clk_debug_register - add a clk node to the debugfs clk tree
313 * @clk: the clk being added to the debugfs clk tree
314 *
315 * Dynamically adds a clk to the debugfs clk tree if debugfs has been
316 * initialized. Otherwise it bails out early since the debugfs clk tree
317 * will be created lazily by clk_debug_init as part of a late_initcall.
Mike Turquetteb24764902012-03-15 23:11:19 -0700318 */
319static int clk_debug_register(struct clk *clk)
320{
Mike Turquetteb24764902012-03-15 23:11:19 -0700321 int ret = 0;
322
Stephen Boyd6314b672014-09-04 23:37:49 -0700323 mutex_lock(&clk_debug_lock);
324 hlist_add_head(&clk->debug_node, &clk_debug_list);
325
Mike Turquetteb24764902012-03-15 23:11:19 -0700326 if (!inited)
Stephen Boyd6314b672014-09-04 23:37:49 -0700327 goto unlock;
Mike Turquetteb24764902012-03-15 23:11:19 -0700328
Stephen Boyd6314b672014-09-04 23:37:49 -0700329 ret = clk_debug_create_one(clk, rootdir);
330unlock:
331 mutex_unlock(&clk_debug_lock);
Mike Turquetteb24764902012-03-15 23:11:19 -0700332
Mike Turquetteb24764902012-03-15 23:11:19 -0700333 return ret;
334}
335
Sylwester Nawrockifcb0ee62013-08-24 15:00:10 +0200336 /**
337 * clk_debug_unregister - remove a clk node from the debugfs clk tree
338 * @clk: the clk being removed from the debugfs clk tree
339 *
340 * Dynamically removes a clk and all it's children clk nodes from the
341 * debugfs clk tree if clk->dentry points to debugfs created by
342 * clk_debug_register in __clk_init.
Sylwester Nawrockifcb0ee62013-08-24 15:00:10 +0200343 */
344static void clk_debug_unregister(struct clk *clk)
345{
Stephen Boyd6314b672014-09-04 23:37:49 -0700346 mutex_lock(&clk_debug_lock);
347 if (!clk->dentry)
348 goto out;
349
350 hlist_del_init(&clk->debug_node);
Sylwester Nawrockifcb0ee62013-08-24 15:00:10 +0200351 debugfs_remove_recursive(clk->dentry);
Stephen Boyd6314b672014-09-04 23:37:49 -0700352 clk->dentry = NULL;
353out:
354 mutex_unlock(&clk_debug_lock);
Sylwester Nawrockifcb0ee62013-08-24 15:00:10 +0200355}
356
Peter De Schrijverfb2b3c92014-06-26 18:00:53 +0300357struct dentry *clk_debugfs_add_file(struct clk *clk, char *name, umode_t mode,
358 void *data, const struct file_operations *fops)
359{
360 struct dentry *d = NULL;
361
362 if (clk->dentry)
363 d = debugfs_create_file(name, mode, clk->dentry, data, fops);
364
365 return d;
366}
367EXPORT_SYMBOL_GPL(clk_debugfs_add_file);
368
Mike Turquetteb24764902012-03-15 23:11:19 -0700369/**
370 * clk_debug_init - lazily create the debugfs clk tree visualization
371 *
372 * clks are often initialized very early during boot before memory can
373 * be dynamically allocated and well before debugfs is setup.
374 * clk_debug_init walks the clk tree hierarchy while holding
375 * prepare_lock and creates the topology as part of a late_initcall,
376 * thus insuring that clks initialized very early will still be
377 * represented in the debugfs clk tree. This function should only be
378 * called once at boot-time, and all other clks added dynamically will
379 * be done so with clk_debug_register.
380 */
381static int __init clk_debug_init(void)
382{
383 struct clk *clk;
Prashant Gaikwad1af599d2012-12-26 19:16:22 +0530384 struct dentry *d;
Mike Turquetteb24764902012-03-15 23:11:19 -0700385
386 rootdir = debugfs_create_dir("clk", NULL);
387
388 if (!rootdir)
389 return -ENOMEM;
390
Peter De Schrijver27b8d5f2014-05-30 18:03:57 +0300391 d = debugfs_create_file("clk_summary", S_IRUGO, rootdir, &all_lists,
Prashant Gaikwad1af599d2012-12-26 19:16:22 +0530392 &clk_summary_fops);
393 if (!d)
394 return -ENOMEM;
395
Peter De Schrijver27b8d5f2014-05-30 18:03:57 +0300396 d = debugfs_create_file("clk_dump", S_IRUGO, rootdir, &all_lists,
Prashant Gaikwadbddca892012-12-26 19:16:23 +0530397 &clk_dump_fops);
398 if (!d)
399 return -ENOMEM;
400
Peter De Schrijver27b8d5f2014-05-30 18:03:57 +0300401 d = debugfs_create_file("clk_orphan_summary", S_IRUGO, rootdir,
402 &orphan_list, &clk_summary_fops);
403 if (!d)
404 return -ENOMEM;
Mike Turquetteb24764902012-03-15 23:11:19 -0700405
Peter De Schrijver27b8d5f2014-05-30 18:03:57 +0300406 d = debugfs_create_file("clk_orphan_dump", S_IRUGO, rootdir,
407 &orphan_list, &clk_dump_fops);
408 if (!d)
Mike Turquetteb24764902012-03-15 23:11:19 -0700409 return -ENOMEM;
410
Stephen Boyd6314b672014-09-04 23:37:49 -0700411 mutex_lock(&clk_debug_lock);
412 hlist_for_each_entry(clk, &clk_debug_list, debug_node)
413 clk_debug_create_one(clk, rootdir);
Mike Turquetteb24764902012-03-15 23:11:19 -0700414
415 inited = 1;
Stephen Boyd6314b672014-09-04 23:37:49 -0700416 mutex_unlock(&clk_debug_lock);
Mike Turquetteb24764902012-03-15 23:11:19 -0700417
418 return 0;
419}
420late_initcall(clk_debug_init);
421#else
422static inline int clk_debug_register(struct clk *clk) { return 0; }
Ulf Hanssonb33d2122013-04-02 23:09:37 +0200423static inline void clk_debug_reparent(struct clk *clk, struct clk *new_parent)
424{
425}
Sylwester Nawrockifcb0ee62013-08-24 15:00:10 +0200426static inline void clk_debug_unregister(struct clk *clk)
427{
428}
Mike Turquette70d347e2012-03-26 11:53:47 -0700429#endif
Mike Turquetteb24764902012-03-15 23:11:19 -0700430
Mike Turquetteb24764902012-03-15 23:11:19 -0700431/* caller must hold prepare_lock */
Ulf Hansson1c155b32013-03-12 20:26:03 +0100432static void clk_unprepare_unused_subtree(struct clk *clk)
433{
434 struct clk *child;
435
436 if (!clk)
437 return;
438
439 hlist_for_each_entry(child, &clk->children, child_node)
440 clk_unprepare_unused_subtree(child);
441
442 if (clk->prepare_count)
443 return;
444
445 if (clk->flags & CLK_IGNORE_UNUSED)
446 return;
447
Ulf Hansson3cc82472013-03-12 20:26:04 +0100448 if (__clk_is_prepared(clk)) {
449 if (clk->ops->unprepare_unused)
450 clk->ops->unprepare_unused(clk->hw);
451 else if (clk->ops->unprepare)
Ulf Hansson1c155b32013-03-12 20:26:03 +0100452 clk->ops->unprepare(clk->hw);
Ulf Hansson3cc82472013-03-12 20:26:04 +0100453 }
Ulf Hansson1c155b32013-03-12 20:26:03 +0100454}
455
456/* caller must hold prepare_lock */
Mike Turquetteb24764902012-03-15 23:11:19 -0700457static void clk_disable_unused_subtree(struct clk *clk)
458{
459 struct clk *child;
Mike Turquetteb24764902012-03-15 23:11:19 -0700460 unsigned long flags;
461
462 if (!clk)
463 goto out;
464
Sasha Levinb67bfe02013-02-27 17:06:00 -0800465 hlist_for_each_entry(child, &clk->children, child_node)
Mike Turquetteb24764902012-03-15 23:11:19 -0700466 clk_disable_unused_subtree(child);
467
Mike Turquetteeab89f62013-03-28 13:59:01 -0700468 flags = clk_enable_lock();
Mike Turquetteb24764902012-03-15 23:11:19 -0700469
470 if (clk->enable_count)
471 goto unlock_out;
472
473 if (clk->flags & CLK_IGNORE_UNUSED)
474 goto unlock_out;
475
Mike Turquette7c045a52012-12-04 11:00:35 -0800476 /*
477 * some gate clocks have special needs during the disable-unused
478 * sequence. call .disable_unused if available, otherwise fall
479 * back to .disable
480 */
481 if (__clk_is_enabled(clk)) {
482 if (clk->ops->disable_unused)
483 clk->ops->disable_unused(clk->hw);
484 else if (clk->ops->disable)
485 clk->ops->disable(clk->hw);
486 }
Mike Turquetteb24764902012-03-15 23:11:19 -0700487
488unlock_out:
Mike Turquetteeab89f62013-03-28 13:59:01 -0700489 clk_enable_unlock(flags);
Mike Turquetteb24764902012-03-15 23:11:19 -0700490
491out:
492 return;
493}
494
Olof Johansson1e435252013-04-27 14:10:18 -0700495static bool clk_ignore_unused;
496static int __init clk_ignore_unused_setup(char *__unused)
497{
498 clk_ignore_unused = true;
499 return 1;
500}
501__setup("clk_ignore_unused", clk_ignore_unused_setup);
502
Mike Turquetteb24764902012-03-15 23:11:19 -0700503static int clk_disable_unused(void)
504{
505 struct clk *clk;
Mike Turquetteb24764902012-03-15 23:11:19 -0700506
Olof Johansson1e435252013-04-27 14:10:18 -0700507 if (clk_ignore_unused) {
508 pr_warn("clk: Not disabling unused clocks\n");
509 return 0;
510 }
511
Mike Turquetteeab89f62013-03-28 13:59:01 -0700512 clk_prepare_lock();
Mike Turquetteb24764902012-03-15 23:11:19 -0700513
Sasha Levinb67bfe02013-02-27 17:06:00 -0800514 hlist_for_each_entry(clk, &clk_root_list, child_node)
Mike Turquetteb24764902012-03-15 23:11:19 -0700515 clk_disable_unused_subtree(clk);
516
Sasha Levinb67bfe02013-02-27 17:06:00 -0800517 hlist_for_each_entry(clk, &clk_orphan_list, child_node)
Mike Turquetteb24764902012-03-15 23:11:19 -0700518 clk_disable_unused_subtree(clk);
519
Ulf Hansson1c155b32013-03-12 20:26:03 +0100520 hlist_for_each_entry(clk, &clk_root_list, child_node)
521 clk_unprepare_unused_subtree(clk);
522
523 hlist_for_each_entry(clk, &clk_orphan_list, child_node)
524 clk_unprepare_unused_subtree(clk);
525
Mike Turquetteeab89f62013-03-28 13:59:01 -0700526 clk_prepare_unlock();
Mike Turquetteb24764902012-03-15 23:11:19 -0700527
528 return 0;
529}
Saravana Kannand41d5802013-05-09 11:35:01 -0700530late_initcall_sync(clk_disable_unused);
Mike Turquetteb24764902012-03-15 23:11:19 -0700531
532/*** helper functions ***/
533
Russ Dill65800b22012-11-26 11:20:09 -0800534const char *__clk_get_name(struct clk *clk)
Mike Turquetteb24764902012-03-15 23:11:19 -0700535{
536 return !clk ? NULL : clk->name;
537}
Niels de Vos48950842012-12-13 13:12:25 +0100538EXPORT_SYMBOL_GPL(__clk_get_name);
Mike Turquetteb24764902012-03-15 23:11:19 -0700539
Russ Dill65800b22012-11-26 11:20:09 -0800540struct clk_hw *__clk_get_hw(struct clk *clk)
Mike Turquetteb24764902012-03-15 23:11:19 -0700541{
542 return !clk ? NULL : clk->hw;
543}
Stephen Boyd0b7f04b2014-01-17 19:47:17 -0800544EXPORT_SYMBOL_GPL(__clk_get_hw);
Mike Turquetteb24764902012-03-15 23:11:19 -0700545
Russ Dill65800b22012-11-26 11:20:09 -0800546u8 __clk_get_num_parents(struct clk *clk)
Mike Turquetteb24764902012-03-15 23:11:19 -0700547{
Stephen Boyd2ac6b1f2012-10-03 23:38:55 -0700548 return !clk ? 0 : clk->num_parents;
Mike Turquetteb24764902012-03-15 23:11:19 -0700549}
Stephen Boyd0b7f04b2014-01-17 19:47:17 -0800550EXPORT_SYMBOL_GPL(__clk_get_num_parents);
Mike Turquetteb24764902012-03-15 23:11:19 -0700551
Russ Dill65800b22012-11-26 11:20:09 -0800552struct clk *__clk_get_parent(struct clk *clk)
Mike Turquetteb24764902012-03-15 23:11:19 -0700553{
554 return !clk ? NULL : clk->parent;
555}
Stephen Boyd0b7f04b2014-01-17 19:47:17 -0800556EXPORT_SYMBOL_GPL(__clk_get_parent);
Mike Turquetteb24764902012-03-15 23:11:19 -0700557
James Hogan7ef3dcc2013-07-29 12:24:58 +0100558struct clk *clk_get_parent_by_index(struct clk *clk, u8 index)
559{
560 if (!clk || index >= clk->num_parents)
561 return NULL;
562 else if (!clk->parents)
563 return __clk_lookup(clk->parent_names[index]);
564 else if (!clk->parents[index])
565 return clk->parents[index] =
566 __clk_lookup(clk->parent_names[index]);
567 else
568 return clk->parents[index];
569}
Stephen Boyd0b7f04b2014-01-17 19:47:17 -0800570EXPORT_SYMBOL_GPL(clk_get_parent_by_index);
James Hogan7ef3dcc2013-07-29 12:24:58 +0100571
Russ Dill65800b22012-11-26 11:20:09 -0800572unsigned int __clk_get_enable_count(struct clk *clk)
Mike Turquetteb24764902012-03-15 23:11:19 -0700573{
Stephen Boyd2ac6b1f2012-10-03 23:38:55 -0700574 return !clk ? 0 : clk->enable_count;
Mike Turquetteb24764902012-03-15 23:11:19 -0700575}
576
Mike Turquetteb24764902012-03-15 23:11:19 -0700577unsigned long __clk_get_rate(struct clk *clk)
578{
579 unsigned long ret;
580
581 if (!clk) {
Rajendra Nayak34e44fe2012-03-26 19:01:48 +0530582 ret = 0;
Mike Turquetteb24764902012-03-15 23:11:19 -0700583 goto out;
584 }
585
586 ret = clk->rate;
587
588 if (clk->flags & CLK_IS_ROOT)
589 goto out;
590
591 if (!clk->parent)
Rajendra Nayak34e44fe2012-03-26 19:01:48 +0530592 ret = 0;
Mike Turquetteb24764902012-03-15 23:11:19 -0700593
594out:
595 return ret;
596}
Stephen Boyd0b7f04b2014-01-17 19:47:17 -0800597EXPORT_SYMBOL_GPL(__clk_get_rate);
Mike Turquetteb24764902012-03-15 23:11:19 -0700598
Boris BREZILLON5279fc42013-12-21 10:34:47 +0100599unsigned long __clk_get_accuracy(struct clk *clk)
600{
601 if (!clk)
602 return 0;
603
604 return clk->accuracy;
605}
606
Russ Dill65800b22012-11-26 11:20:09 -0800607unsigned long __clk_get_flags(struct clk *clk)
Mike Turquetteb24764902012-03-15 23:11:19 -0700608{
Stephen Boyd2ac6b1f2012-10-03 23:38:55 -0700609 return !clk ? 0 : clk->flags;
Mike Turquetteb24764902012-03-15 23:11:19 -0700610}
Thierry Redingb05c6832013-09-03 09:43:51 +0200611EXPORT_SYMBOL_GPL(__clk_get_flags);
Mike Turquetteb24764902012-03-15 23:11:19 -0700612
Ulf Hansson3d6ee282013-03-12 20:26:02 +0100613bool __clk_is_prepared(struct clk *clk)
614{
615 int ret;
616
617 if (!clk)
618 return false;
619
620 /*
621 * .is_prepared is optional for clocks that can prepare
622 * fall back to software usage counter if it is missing
623 */
624 if (!clk->ops->is_prepared) {
625 ret = clk->prepare_count ? 1 : 0;
626 goto out;
627 }
628
629 ret = clk->ops->is_prepared(clk->hw);
630out:
631 return !!ret;
632}
633
Stephen Boyd2ac6b1f2012-10-03 23:38:55 -0700634bool __clk_is_enabled(struct clk *clk)
Mike Turquetteb24764902012-03-15 23:11:19 -0700635{
636 int ret;
637
638 if (!clk)
Stephen Boyd2ac6b1f2012-10-03 23:38:55 -0700639 return false;
Mike Turquetteb24764902012-03-15 23:11:19 -0700640
641 /*
642 * .is_enabled is only mandatory for clocks that gate
643 * fall back to software usage counter if .is_enabled is missing
644 */
645 if (!clk->ops->is_enabled) {
646 ret = clk->enable_count ? 1 : 0;
647 goto out;
648 }
649
650 ret = clk->ops->is_enabled(clk->hw);
651out:
Stephen Boyd2ac6b1f2012-10-03 23:38:55 -0700652 return !!ret;
Mike Turquetteb24764902012-03-15 23:11:19 -0700653}
Stephen Boyd0b7f04b2014-01-17 19:47:17 -0800654EXPORT_SYMBOL_GPL(__clk_is_enabled);
Mike Turquetteb24764902012-03-15 23:11:19 -0700655
656static struct clk *__clk_lookup_subtree(const char *name, struct clk *clk)
657{
658 struct clk *child;
659 struct clk *ret;
Mike Turquetteb24764902012-03-15 23:11:19 -0700660
661 if (!strcmp(clk->name, name))
662 return clk;
663
Sasha Levinb67bfe02013-02-27 17:06:00 -0800664 hlist_for_each_entry(child, &clk->children, child_node) {
Mike Turquetteb24764902012-03-15 23:11:19 -0700665 ret = __clk_lookup_subtree(name, child);
666 if (ret)
667 return ret;
668 }
669
670 return NULL;
671}
672
673struct clk *__clk_lookup(const char *name)
674{
675 struct clk *root_clk;
676 struct clk *ret;
Mike Turquetteb24764902012-03-15 23:11:19 -0700677
678 if (!name)
679 return NULL;
680
681 /* search the 'proper' clk tree first */
Sasha Levinb67bfe02013-02-27 17:06:00 -0800682 hlist_for_each_entry(root_clk, &clk_root_list, child_node) {
Mike Turquetteb24764902012-03-15 23:11:19 -0700683 ret = __clk_lookup_subtree(name, root_clk);
684 if (ret)
685 return ret;
686 }
687
688 /* if not found, then search the orphan tree */
Sasha Levinb67bfe02013-02-27 17:06:00 -0800689 hlist_for_each_entry(root_clk, &clk_orphan_list, child_node) {
Mike Turquetteb24764902012-03-15 23:11:19 -0700690 ret = __clk_lookup_subtree(name, root_clk);
691 if (ret)
692 return ret;
693 }
694
695 return NULL;
696}
697
James Hogane366fdd2013-07-29 12:25:02 +0100698/*
699 * Helper for finding best parent to provide a given frequency. This can be used
700 * directly as a determine_rate callback (e.g. for a mux), or from a more
701 * complex clock that may combine a mux with other operations.
702 */
703long __clk_mux_determine_rate(struct clk_hw *hw, unsigned long rate,
704 unsigned long *best_parent_rate,
705 struct clk **best_parent_p)
706{
707 struct clk *clk = hw->clk, *parent, *best_parent = NULL;
708 int i, num_parents;
709 unsigned long parent_rate, best = 0;
710
711 /* if NO_REPARENT flag set, pass through to current parent */
712 if (clk->flags & CLK_SET_RATE_NO_REPARENT) {
713 parent = clk->parent;
714 if (clk->flags & CLK_SET_RATE_PARENT)
715 best = __clk_round_rate(parent, rate);
716 else if (parent)
717 best = __clk_get_rate(parent);
718 else
719 best = __clk_get_rate(clk);
720 goto out;
721 }
722
723 /* find the parent that can provide the fastest rate <= rate */
724 num_parents = clk->num_parents;
725 for (i = 0; i < num_parents; i++) {
726 parent = clk_get_parent_by_index(clk, i);
727 if (!parent)
728 continue;
729 if (clk->flags & CLK_SET_RATE_PARENT)
730 parent_rate = __clk_round_rate(parent, rate);
731 else
732 parent_rate = __clk_get_rate(parent);
733 if (parent_rate <= rate && parent_rate > best) {
734 best_parent = parent;
735 best = parent_rate;
736 }
737 }
738
739out:
740 if (best_parent)
741 *best_parent_p = best_parent;
742 *best_parent_rate = best;
743
744 return best;
745}
Stephen Boyd0b7f04b2014-01-17 19:47:17 -0800746EXPORT_SYMBOL_GPL(__clk_mux_determine_rate);
James Hogane366fdd2013-07-29 12:25:02 +0100747
Mike Turquetteb24764902012-03-15 23:11:19 -0700748/*** clk api ***/
749
750void __clk_unprepare(struct clk *clk)
751{
752 if (!clk)
753 return;
754
755 if (WARN_ON(clk->prepare_count == 0))
756 return;
757
758 if (--clk->prepare_count > 0)
759 return;
760
761 WARN_ON(clk->enable_count > 0);
762
763 if (clk->ops->unprepare)
764 clk->ops->unprepare(clk->hw);
765
766 __clk_unprepare(clk->parent);
767}
768
769/**
770 * clk_unprepare - undo preparation of a clock source
Peter Meerwald24ee1a02013-06-29 15:14:19 +0200771 * @clk: the clk being unprepared
Mike Turquetteb24764902012-03-15 23:11:19 -0700772 *
773 * clk_unprepare may sleep, which differentiates it from clk_disable. In a
774 * simple case, clk_unprepare can be used instead of clk_disable to gate a clk
775 * if the operation may sleep. One example is a clk which is accessed over
776 * I2c. In the complex case a clk gate operation may require a fast and a slow
777 * part. It is this reason that clk_unprepare and clk_disable are not mutually
778 * exclusive. In fact clk_disable must be called before clk_unprepare.
779 */
780void clk_unprepare(struct clk *clk)
781{
Stephen Boyd63589e92014-03-26 16:06:37 -0700782 if (IS_ERR_OR_NULL(clk))
783 return;
784
Mike Turquetteeab89f62013-03-28 13:59:01 -0700785 clk_prepare_lock();
Mike Turquetteb24764902012-03-15 23:11:19 -0700786 __clk_unprepare(clk);
Mike Turquetteeab89f62013-03-28 13:59:01 -0700787 clk_prepare_unlock();
Mike Turquetteb24764902012-03-15 23:11:19 -0700788}
789EXPORT_SYMBOL_GPL(clk_unprepare);
790
791int __clk_prepare(struct clk *clk)
792{
793 int ret = 0;
794
795 if (!clk)
796 return 0;
797
798 if (clk->prepare_count == 0) {
799 ret = __clk_prepare(clk->parent);
800 if (ret)
801 return ret;
802
803 if (clk->ops->prepare) {
804 ret = clk->ops->prepare(clk->hw);
805 if (ret) {
806 __clk_unprepare(clk->parent);
807 return ret;
808 }
809 }
810 }
811
812 clk->prepare_count++;
813
814 return 0;
815}
816
817/**
818 * clk_prepare - prepare a clock source
819 * @clk: the clk being prepared
820 *
821 * clk_prepare may sleep, which differentiates it from clk_enable. In a simple
822 * case, clk_prepare can be used instead of clk_enable to ungate a clk if the
823 * operation may sleep. One example is a clk which is accessed over I2c. In
824 * the complex case a clk ungate operation may require a fast and a slow part.
825 * It is this reason that clk_prepare and clk_enable are not mutually
826 * exclusive. In fact clk_prepare must be called before clk_enable.
827 * Returns 0 on success, -EERROR otherwise.
828 */
829int clk_prepare(struct clk *clk)
830{
831 int ret;
832
Mike Turquetteeab89f62013-03-28 13:59:01 -0700833 clk_prepare_lock();
Mike Turquetteb24764902012-03-15 23:11:19 -0700834 ret = __clk_prepare(clk);
Mike Turquetteeab89f62013-03-28 13:59:01 -0700835 clk_prepare_unlock();
Mike Turquetteb24764902012-03-15 23:11:19 -0700836
837 return ret;
838}
839EXPORT_SYMBOL_GPL(clk_prepare);
840
841static void __clk_disable(struct clk *clk)
842{
843 if (!clk)
844 return;
845
846 if (WARN_ON(clk->enable_count == 0))
847 return;
848
849 if (--clk->enable_count > 0)
850 return;
851
852 if (clk->ops->disable)
853 clk->ops->disable(clk->hw);
854
855 __clk_disable(clk->parent);
856}
857
858/**
859 * clk_disable - gate a clock
860 * @clk: the clk being gated
861 *
862 * clk_disable must not sleep, which differentiates it from clk_unprepare. In
863 * a simple case, clk_disable can be used instead of clk_unprepare to gate a
864 * clk if the operation is fast and will never sleep. One example is a
865 * SoC-internal clk which is controlled via simple register writes. In the
866 * complex case a clk gate operation may require a fast and a slow part. It is
867 * this reason that clk_unprepare and clk_disable are not mutually exclusive.
868 * In fact clk_disable must be called before clk_unprepare.
869 */
870void clk_disable(struct clk *clk)
871{
872 unsigned long flags;
873
Stephen Boyd63589e92014-03-26 16:06:37 -0700874 if (IS_ERR_OR_NULL(clk))
875 return;
876
Mike Turquetteeab89f62013-03-28 13:59:01 -0700877 flags = clk_enable_lock();
Mike Turquetteb24764902012-03-15 23:11:19 -0700878 __clk_disable(clk);
Mike Turquetteeab89f62013-03-28 13:59:01 -0700879 clk_enable_unlock(flags);
Mike Turquetteb24764902012-03-15 23:11:19 -0700880}
881EXPORT_SYMBOL_GPL(clk_disable);
882
883static int __clk_enable(struct clk *clk)
884{
885 int ret = 0;
886
887 if (!clk)
888 return 0;
889
890 if (WARN_ON(clk->prepare_count == 0))
891 return -ESHUTDOWN;
892
893 if (clk->enable_count == 0) {
894 ret = __clk_enable(clk->parent);
895
896 if (ret)
897 return ret;
898
899 if (clk->ops->enable) {
900 ret = clk->ops->enable(clk->hw);
901 if (ret) {
902 __clk_disable(clk->parent);
903 return ret;
904 }
905 }
906 }
907
908 clk->enable_count++;
909 return 0;
910}
911
912/**
913 * clk_enable - ungate a clock
914 * @clk: the clk being ungated
915 *
916 * clk_enable must not sleep, which differentiates it from clk_prepare. In a
917 * simple case, clk_enable can be used instead of clk_prepare to ungate a clk
918 * if the operation will never sleep. One example is a SoC-internal clk which
919 * is controlled via simple register writes. In the complex case a clk ungate
920 * operation may require a fast and a slow part. It is this reason that
921 * clk_enable and clk_prepare are not mutually exclusive. In fact clk_prepare
922 * must be called before clk_enable. Returns 0 on success, -EERROR
923 * otherwise.
924 */
925int clk_enable(struct clk *clk)
926{
927 unsigned long flags;
928 int ret;
929
Mike Turquetteeab89f62013-03-28 13:59:01 -0700930 flags = clk_enable_lock();
Mike Turquetteb24764902012-03-15 23:11:19 -0700931 ret = __clk_enable(clk);
Mike Turquetteeab89f62013-03-28 13:59:01 -0700932 clk_enable_unlock(flags);
Mike Turquetteb24764902012-03-15 23:11:19 -0700933
934 return ret;
935}
936EXPORT_SYMBOL_GPL(clk_enable);
937
938/**
Mike Turquetteb24764902012-03-15 23:11:19 -0700939 * __clk_round_rate - round the given rate for a clk
940 * @clk: round the rate of this clock
Peter Meerwald24ee1a02013-06-29 15:14:19 +0200941 * @rate: the rate which is to be rounded
Mike Turquetteb24764902012-03-15 23:11:19 -0700942 *
943 * Caller must hold prepare_lock. Useful for clk_ops such as .set_rate
944 */
945unsigned long __clk_round_rate(struct clk *clk, unsigned long rate)
946{
Shawn Guo81536e02012-04-12 20:50:17 +0800947 unsigned long parent_rate = 0;
James Hogan71472c02013-07-29 12:25:00 +0100948 struct clk *parent;
Mike Turquetteb24764902012-03-15 23:11:19 -0700949
950 if (!clk)
Stephen Boyd2ac6b1f2012-10-03 23:38:55 -0700951 return 0;
Mike Turquetteb24764902012-03-15 23:11:19 -0700952
James Hogan71472c02013-07-29 12:25:00 +0100953 parent = clk->parent;
954 if (parent)
955 parent_rate = parent->rate;
Mike Turquetteb24764902012-03-15 23:11:19 -0700956
James Hogan71472c02013-07-29 12:25:00 +0100957 if (clk->ops->determine_rate)
958 return clk->ops->determine_rate(clk->hw, rate, &parent_rate,
959 &parent);
960 else if (clk->ops->round_rate)
961 return clk->ops->round_rate(clk->hw, rate, &parent_rate);
962 else if (clk->flags & CLK_SET_RATE_PARENT)
963 return __clk_round_rate(clk->parent, rate);
964 else
965 return clk->rate;
Mike Turquetteb24764902012-03-15 23:11:19 -0700966}
Arnd Bergmann1cdf8ee2014-06-03 11:40:14 +0200967EXPORT_SYMBOL_GPL(__clk_round_rate);
Mike Turquetteb24764902012-03-15 23:11:19 -0700968
969/**
970 * clk_round_rate - round the given rate for a clk
971 * @clk: the clk for which we are rounding a rate
972 * @rate: the rate which is to be rounded
973 *
974 * Takes in a rate as input and rounds it to a rate that the clk can actually
975 * use which is then returned. If clk doesn't support round_rate operation
976 * then the parent rate is returned.
977 */
978long clk_round_rate(struct clk *clk, unsigned long rate)
979{
980 unsigned long ret;
981
Mike Turquetteeab89f62013-03-28 13:59:01 -0700982 clk_prepare_lock();
Mike Turquetteb24764902012-03-15 23:11:19 -0700983 ret = __clk_round_rate(clk, rate);
Mike Turquetteeab89f62013-03-28 13:59:01 -0700984 clk_prepare_unlock();
Mike Turquetteb24764902012-03-15 23:11:19 -0700985
986 return ret;
987}
988EXPORT_SYMBOL_GPL(clk_round_rate);
989
990/**
991 * __clk_notify - call clk notifier chain
992 * @clk: struct clk * that is changing rate
993 * @msg: clk notifier type (see include/linux/clk.h)
994 * @old_rate: old clk rate
995 * @new_rate: new clk rate
996 *
997 * Triggers a notifier call chain on the clk rate-change notification
998 * for 'clk'. Passes a pointer to the struct clk and the previous
999 * and current rates to the notifier callback. Intended to be called by
1000 * internal clock code only. Returns NOTIFY_DONE from the last driver
1001 * called if all went well, or NOTIFY_STOP or NOTIFY_BAD immediately if
1002 * a driver returns that.
1003 */
1004static int __clk_notify(struct clk *clk, unsigned long msg,
1005 unsigned long old_rate, unsigned long new_rate)
1006{
1007 struct clk_notifier *cn;
1008 struct clk_notifier_data cnd;
1009 int ret = NOTIFY_DONE;
1010
1011 cnd.clk = clk;
1012 cnd.old_rate = old_rate;
1013 cnd.new_rate = new_rate;
1014
1015 list_for_each_entry(cn, &clk_notifier_list, node) {
1016 if (cn->clk == clk) {
1017 ret = srcu_notifier_call_chain(&cn->notifier_head, msg,
1018 &cnd);
1019 break;
1020 }
1021 }
1022
1023 return ret;
1024}
1025
1026/**
Boris BREZILLON5279fc42013-12-21 10:34:47 +01001027 * __clk_recalc_accuracies
1028 * @clk: first clk in the subtree
1029 *
1030 * Walks the subtree of clks starting with clk and recalculates accuracies as
1031 * it goes. Note that if a clk does not implement the .recalc_accuracy
1032 * callback then it is assumed that the clock will take on the accuracy of it's
1033 * parent.
1034 *
1035 * Caller must hold prepare_lock.
1036 */
1037static void __clk_recalc_accuracies(struct clk *clk)
1038{
1039 unsigned long parent_accuracy = 0;
1040 struct clk *child;
1041
1042 if (clk->parent)
1043 parent_accuracy = clk->parent->accuracy;
1044
1045 if (clk->ops->recalc_accuracy)
1046 clk->accuracy = clk->ops->recalc_accuracy(clk->hw,
1047 parent_accuracy);
1048 else
1049 clk->accuracy = parent_accuracy;
1050
1051 hlist_for_each_entry(child, &clk->children, child_node)
1052 __clk_recalc_accuracies(child);
1053}
1054
1055/**
1056 * clk_get_accuracy - return the accuracy of clk
1057 * @clk: the clk whose accuracy is being returned
1058 *
1059 * Simply returns the cached accuracy of the clk, unless
1060 * CLK_GET_ACCURACY_NOCACHE flag is set, which means a recalc_rate will be
1061 * issued.
1062 * If clk is NULL then returns 0.
1063 */
1064long clk_get_accuracy(struct clk *clk)
1065{
1066 unsigned long accuracy;
1067
1068 clk_prepare_lock();
1069 if (clk && (clk->flags & CLK_GET_ACCURACY_NOCACHE))
1070 __clk_recalc_accuracies(clk);
1071
1072 accuracy = __clk_get_accuracy(clk);
1073 clk_prepare_unlock();
1074
1075 return accuracy;
1076}
1077EXPORT_SYMBOL_GPL(clk_get_accuracy);
1078
Stephen Boyd8f2c2db2014-03-26 16:06:36 -07001079static unsigned long clk_recalc(struct clk *clk, unsigned long parent_rate)
1080{
1081 if (clk->ops->recalc_rate)
1082 return clk->ops->recalc_rate(clk->hw, parent_rate);
1083 return parent_rate;
1084}
1085
Boris BREZILLON5279fc42013-12-21 10:34:47 +01001086/**
Mike Turquetteb24764902012-03-15 23:11:19 -07001087 * __clk_recalc_rates
1088 * @clk: first clk in the subtree
1089 * @msg: notification type (see include/linux/clk.h)
1090 *
1091 * Walks the subtree of clks starting with clk and recalculates rates as it
1092 * goes. Note that if a clk does not implement the .recalc_rate callback then
Peter Meerwald24ee1a02013-06-29 15:14:19 +02001093 * it is assumed that the clock will take on the rate of its parent.
Mike Turquetteb24764902012-03-15 23:11:19 -07001094 *
1095 * clk_recalc_rates also propagates the POST_RATE_CHANGE notification,
1096 * if necessary.
1097 *
1098 * Caller must hold prepare_lock.
1099 */
1100static void __clk_recalc_rates(struct clk *clk, unsigned long msg)
1101{
1102 unsigned long old_rate;
1103 unsigned long parent_rate = 0;
Mike Turquetteb24764902012-03-15 23:11:19 -07001104 struct clk *child;
1105
1106 old_rate = clk->rate;
1107
1108 if (clk->parent)
1109 parent_rate = clk->parent->rate;
1110
Stephen Boyd8f2c2db2014-03-26 16:06:36 -07001111 clk->rate = clk_recalc(clk, parent_rate);
Mike Turquetteb24764902012-03-15 23:11:19 -07001112
1113 /*
1114 * ignore NOTIFY_STOP and NOTIFY_BAD return values for POST_RATE_CHANGE
1115 * & ABORT_RATE_CHANGE notifiers
1116 */
1117 if (clk->notifier_count && msg)
1118 __clk_notify(clk, msg, old_rate, clk->rate);
1119
Sasha Levinb67bfe02013-02-27 17:06:00 -08001120 hlist_for_each_entry(child, &clk->children, child_node)
Mike Turquetteb24764902012-03-15 23:11:19 -07001121 __clk_recalc_rates(child, msg);
1122}
1123
1124/**
Ulf Hanssona093bde2012-08-31 14:21:28 +02001125 * clk_get_rate - return the rate of clk
1126 * @clk: the clk whose rate is being returned
1127 *
1128 * Simply returns the cached rate of the clk, unless CLK_GET_RATE_NOCACHE flag
1129 * is set, which means a recalc_rate will be issued.
1130 * If clk is NULL then returns 0.
1131 */
1132unsigned long clk_get_rate(struct clk *clk)
1133{
1134 unsigned long rate;
1135
Mike Turquetteeab89f62013-03-28 13:59:01 -07001136 clk_prepare_lock();
Ulf Hanssona093bde2012-08-31 14:21:28 +02001137
1138 if (clk && (clk->flags & CLK_GET_RATE_NOCACHE))
1139 __clk_recalc_rates(clk, 0);
1140
1141 rate = __clk_get_rate(clk);
Mike Turquetteeab89f62013-03-28 13:59:01 -07001142 clk_prepare_unlock();
Ulf Hanssona093bde2012-08-31 14:21:28 +02001143
1144 return rate;
1145}
1146EXPORT_SYMBOL_GPL(clk_get_rate);
1147
Tomasz Figaf1c8b2e2013-09-29 02:37:14 +02001148static int clk_fetch_parent_index(struct clk *clk, struct clk *parent)
James Hogan4935b222013-07-29 12:24:59 +01001149{
Tomasz Figaf1c8b2e2013-09-29 02:37:14 +02001150 int i;
James Hogan4935b222013-07-29 12:24:59 +01001151
Tomasz Figaf1c8b2e2013-09-29 02:37:14 +02001152 if (!clk->parents) {
Tomasz Figa96a7ed92013-09-29 02:37:15 +02001153 clk->parents = kcalloc(clk->num_parents,
1154 sizeof(struct clk *), GFP_KERNEL);
Tomasz Figaf1c8b2e2013-09-29 02:37:14 +02001155 if (!clk->parents)
1156 return -ENOMEM;
1157 }
James Hogan4935b222013-07-29 12:24:59 +01001158
1159 /*
1160 * find index of new parent clock using cached parent ptrs,
1161 * or if not yet cached, use string name comparison and cache
1162 * them now to avoid future calls to __clk_lookup.
1163 */
1164 for (i = 0; i < clk->num_parents; i++) {
Tomasz Figada0f0b22013-09-29 02:37:16 +02001165 if (clk->parents[i] == parent)
Tomasz Figaf1c8b2e2013-09-29 02:37:14 +02001166 return i;
Tomasz Figada0f0b22013-09-29 02:37:16 +02001167
1168 if (clk->parents[i])
1169 continue;
1170
1171 if (!strcmp(clk->parent_names[i], parent->name)) {
1172 clk->parents[i] = __clk_lookup(parent->name);
Tomasz Figaf1c8b2e2013-09-29 02:37:14 +02001173 return i;
James Hogan4935b222013-07-29 12:24:59 +01001174 }
1175 }
1176
Tomasz Figaf1c8b2e2013-09-29 02:37:14 +02001177 return -EINVAL;
James Hogan4935b222013-07-29 12:24:59 +01001178}
1179
1180static void clk_reparent(struct clk *clk, struct clk *new_parent)
1181{
1182 hlist_del(&clk->child_node);
1183
James Hogan903efc52013-08-29 12:10:51 +01001184 if (new_parent) {
1185 /* avoid duplicate POST_RATE_CHANGE notifications */
1186 if (new_parent->new_child == clk)
1187 new_parent->new_child = NULL;
1188
James Hogan4935b222013-07-29 12:24:59 +01001189 hlist_add_head(&clk->child_node, &new_parent->children);
James Hogan903efc52013-08-29 12:10:51 +01001190 } else {
James Hogan4935b222013-07-29 12:24:59 +01001191 hlist_add_head(&clk->child_node, &clk_orphan_list);
James Hogan903efc52013-08-29 12:10:51 +01001192 }
James Hogan4935b222013-07-29 12:24:59 +01001193
1194 clk->parent = new_parent;
1195}
1196
Stephen Boyd3fa22522014-01-15 10:47:22 -08001197static struct clk *__clk_set_parent_before(struct clk *clk, struct clk *parent)
James Hogan4935b222013-07-29 12:24:59 +01001198{
1199 unsigned long flags;
James Hogan4935b222013-07-29 12:24:59 +01001200 struct clk *old_parent = clk->parent;
1201
1202 /*
1203 * Migrate prepare state between parents and prevent race with
1204 * clk_enable().
1205 *
1206 * If the clock is not prepared, then a race with
1207 * clk_enable/disable() is impossible since we already have the
1208 * prepare lock (future calls to clk_enable() need to be preceded by
1209 * a clk_prepare()).
1210 *
1211 * If the clock is prepared, migrate the prepared state to the new
1212 * parent and also protect against a race with clk_enable() by
1213 * forcing the clock and the new parent on. This ensures that all
1214 * future calls to clk_enable() are practically NOPs with respect to
1215 * hardware and software states.
1216 *
1217 * See also: Comment for clk_set_parent() below.
1218 */
1219 if (clk->prepare_count) {
1220 __clk_prepare(parent);
1221 clk_enable(parent);
1222 clk_enable(clk);
1223 }
1224
1225 /* update the clk tree topology */
1226 flags = clk_enable_lock();
1227 clk_reparent(clk, parent);
1228 clk_enable_unlock(flags);
1229
Stephen Boyd3fa22522014-01-15 10:47:22 -08001230 return old_parent;
1231}
1232
1233static void __clk_set_parent_after(struct clk *clk, struct clk *parent,
1234 struct clk *old_parent)
1235{
1236 /*
1237 * Finish the migration of prepare state and undo the changes done
1238 * for preventing a race with clk_enable().
1239 */
1240 if (clk->prepare_count) {
1241 clk_disable(clk);
1242 clk_disable(old_parent);
1243 __clk_unprepare(old_parent);
1244 }
Stephen Boyd3fa22522014-01-15 10:47:22 -08001245}
1246
1247static int __clk_set_parent(struct clk *clk, struct clk *parent, u8 p_index)
1248{
1249 unsigned long flags;
1250 int ret = 0;
1251 struct clk *old_parent;
1252
1253 old_parent = __clk_set_parent_before(clk, parent);
1254
James Hogan4935b222013-07-29 12:24:59 +01001255 /* change clock input source */
1256 if (parent && clk->ops->set_parent)
1257 ret = clk->ops->set_parent(clk->hw, p_index);
1258
1259 if (ret) {
1260 flags = clk_enable_lock();
1261 clk_reparent(clk, old_parent);
1262 clk_enable_unlock(flags);
1263
1264 if (clk->prepare_count) {
1265 clk_disable(clk);
1266 clk_disable(parent);
1267 __clk_unprepare(parent);
1268 }
1269 return ret;
1270 }
1271
Stephen Boyd3fa22522014-01-15 10:47:22 -08001272 __clk_set_parent_after(clk, parent, old_parent);
James Hogan4935b222013-07-29 12:24:59 +01001273
James Hogan4935b222013-07-29 12:24:59 +01001274 return 0;
1275}
1276
Ulf Hanssona093bde2012-08-31 14:21:28 +02001277/**
Mike Turquetteb24764902012-03-15 23:11:19 -07001278 * __clk_speculate_rates
1279 * @clk: first clk in the subtree
1280 * @parent_rate: the "future" rate of clk's parent
1281 *
1282 * Walks the subtree of clks starting with clk, speculating rates as it
1283 * goes and firing off PRE_RATE_CHANGE notifications as necessary.
1284 *
1285 * Unlike clk_recalc_rates, clk_speculate_rates exists only for sending
1286 * pre-rate change notifications and returns early if no clks in the
1287 * subtree have subscribed to the notifications. Note that if a clk does not
1288 * implement the .recalc_rate callback then it is assumed that the clock will
Peter Meerwald24ee1a02013-06-29 15:14:19 +02001289 * take on the rate of its parent.
Mike Turquetteb24764902012-03-15 23:11:19 -07001290 *
1291 * Caller must hold prepare_lock.
1292 */
1293static int __clk_speculate_rates(struct clk *clk, unsigned long parent_rate)
1294{
Mike Turquetteb24764902012-03-15 23:11:19 -07001295 struct clk *child;
1296 unsigned long new_rate;
1297 int ret = NOTIFY_DONE;
1298
Stephen Boyd8f2c2db2014-03-26 16:06:36 -07001299 new_rate = clk_recalc(clk, parent_rate);
Mike Turquetteb24764902012-03-15 23:11:19 -07001300
Soren Brinkmannfb72a052013-04-03 12:17:12 -07001301 /* abort rate change if a driver returns NOTIFY_BAD or NOTIFY_STOP */
Mike Turquetteb24764902012-03-15 23:11:19 -07001302 if (clk->notifier_count)
1303 ret = __clk_notify(clk, PRE_RATE_CHANGE, clk->rate, new_rate);
1304
Mike Turquette86bcfa22014-02-24 16:08:41 -08001305 if (ret & NOTIFY_STOP_MASK) {
1306 pr_debug("%s: clk notifier callback for clock %s aborted with error %d\n",
1307 __func__, clk->name, ret);
Mike Turquetteb24764902012-03-15 23:11:19 -07001308 goto out;
Mike Turquette86bcfa22014-02-24 16:08:41 -08001309 }
Mike Turquetteb24764902012-03-15 23:11:19 -07001310
Sasha Levinb67bfe02013-02-27 17:06:00 -08001311 hlist_for_each_entry(child, &clk->children, child_node) {
Mike Turquetteb24764902012-03-15 23:11:19 -07001312 ret = __clk_speculate_rates(child, new_rate);
Soren Brinkmannfb72a052013-04-03 12:17:12 -07001313 if (ret & NOTIFY_STOP_MASK)
Mike Turquetteb24764902012-03-15 23:11:19 -07001314 break;
1315 }
1316
1317out:
1318 return ret;
1319}
1320
James Hogan71472c02013-07-29 12:25:00 +01001321static void clk_calc_subtree(struct clk *clk, unsigned long new_rate,
1322 struct clk *new_parent, u8 p_index)
Mike Turquetteb24764902012-03-15 23:11:19 -07001323{
1324 struct clk *child;
Mike Turquetteb24764902012-03-15 23:11:19 -07001325
1326 clk->new_rate = new_rate;
James Hogan71472c02013-07-29 12:25:00 +01001327 clk->new_parent = new_parent;
1328 clk->new_parent_index = p_index;
1329 /* include clk in new parent's PRE_RATE_CHANGE notifications */
1330 clk->new_child = NULL;
1331 if (new_parent && new_parent != clk->parent)
1332 new_parent->new_child = clk;
Mike Turquetteb24764902012-03-15 23:11:19 -07001333
Sasha Levinb67bfe02013-02-27 17:06:00 -08001334 hlist_for_each_entry(child, &clk->children, child_node) {
Stephen Boyd8f2c2db2014-03-26 16:06:36 -07001335 child->new_rate = clk_recalc(child, new_rate);
James Hogan71472c02013-07-29 12:25:00 +01001336 clk_calc_subtree(child, child->new_rate, NULL, 0);
Mike Turquetteb24764902012-03-15 23:11:19 -07001337 }
1338}
1339
1340/*
1341 * calculate the new rates returning the topmost clock that has to be
1342 * changed.
1343 */
1344static struct clk *clk_calc_new_rates(struct clk *clk, unsigned long rate)
1345{
1346 struct clk *top = clk;
James Hogan71472c02013-07-29 12:25:00 +01001347 struct clk *old_parent, *parent;
Shawn Guo81536e02012-04-12 20:50:17 +08001348 unsigned long best_parent_rate = 0;
Mike Turquetteb24764902012-03-15 23:11:19 -07001349 unsigned long new_rate;
Tomasz Figaf1c8b2e2013-09-29 02:37:14 +02001350 int p_index = 0;
Mike Turquetteb24764902012-03-15 23:11:19 -07001351
Mike Turquette7452b212012-03-26 14:45:36 -07001352 /* sanity */
1353 if (IS_ERR_OR_NULL(clk))
1354 return NULL;
1355
Mike Turquette63f5c3b2012-05-02 16:23:43 -07001356 /* save parent rate, if it exists */
James Hogan71472c02013-07-29 12:25:00 +01001357 parent = old_parent = clk->parent;
1358 if (parent)
1359 best_parent_rate = parent->rate;
Mike Turquette63f5c3b2012-05-02 16:23:43 -07001360
James Hogan71472c02013-07-29 12:25:00 +01001361 /* find the closest rate and parent clk/rate */
1362 if (clk->ops->determine_rate) {
1363 new_rate = clk->ops->determine_rate(clk->hw, rate,
1364 &best_parent_rate,
1365 &parent);
1366 } else if (clk->ops->round_rate) {
1367 new_rate = clk->ops->round_rate(clk->hw, rate,
1368 &best_parent_rate);
1369 } else if (!parent || !(clk->flags & CLK_SET_RATE_PARENT)) {
1370 /* pass-through clock without adjustable parent */
1371 clk->new_rate = clk->rate;
1372 return NULL;
1373 } else {
1374 /* pass-through clock with adjustable parent */
1375 top = clk_calc_new_rates(parent, rate);
1376 new_rate = parent->new_rate;
Mike Turquette63f5c3b2012-05-02 16:23:43 -07001377 goto out;
Mike Turquette7452b212012-03-26 14:45:36 -07001378 }
1379
James Hogan71472c02013-07-29 12:25:00 +01001380 /* some clocks must be gated to change parent */
1381 if (parent != old_parent &&
1382 (clk->flags & CLK_SET_PARENT_GATE) && clk->prepare_count) {
1383 pr_debug("%s: %s not gated but wants to reparent\n",
1384 __func__, clk->name);
Mike Turquetteb24764902012-03-15 23:11:19 -07001385 return NULL;
1386 }
1387
James Hogan71472c02013-07-29 12:25:00 +01001388 /* try finding the new parent index */
1389 if (parent) {
1390 p_index = clk_fetch_parent_index(clk, parent);
Tomasz Figaf1c8b2e2013-09-29 02:37:14 +02001391 if (p_index < 0) {
James Hogan71472c02013-07-29 12:25:00 +01001392 pr_debug("%s: clk %s can not be parent of clk %s\n",
1393 __func__, parent->name, clk->name);
1394 return NULL;
1395 }
Mike Turquetteb24764902012-03-15 23:11:19 -07001396 }
1397
James Hogan71472c02013-07-29 12:25:00 +01001398 if ((clk->flags & CLK_SET_RATE_PARENT) && parent &&
1399 best_parent_rate != parent->rate)
1400 top = clk_calc_new_rates(parent, best_parent_rate);
Mike Turquetteb24764902012-03-15 23:11:19 -07001401
1402out:
James Hogan71472c02013-07-29 12:25:00 +01001403 clk_calc_subtree(clk, new_rate, parent, p_index);
Mike Turquetteb24764902012-03-15 23:11:19 -07001404
1405 return top;
1406}
1407
1408/*
1409 * Notify about rate changes in a subtree. Always walk down the whole tree
1410 * so that in case of an error we can walk down the whole tree again and
1411 * abort the change.
1412 */
1413static struct clk *clk_propagate_rate_change(struct clk *clk, unsigned long event)
1414{
James Hogan71472c02013-07-29 12:25:00 +01001415 struct clk *child, *tmp_clk, *fail_clk = NULL;
Mike Turquetteb24764902012-03-15 23:11:19 -07001416 int ret = NOTIFY_DONE;
1417
1418 if (clk->rate == clk->new_rate)
Sachin Kamat5fda6852013-03-13 15:17:49 +05301419 return NULL;
Mike Turquetteb24764902012-03-15 23:11:19 -07001420
1421 if (clk->notifier_count) {
1422 ret = __clk_notify(clk, event, clk->rate, clk->new_rate);
Soren Brinkmannfb72a052013-04-03 12:17:12 -07001423 if (ret & NOTIFY_STOP_MASK)
Mike Turquetteb24764902012-03-15 23:11:19 -07001424 fail_clk = clk;
1425 }
1426
Sasha Levinb67bfe02013-02-27 17:06:00 -08001427 hlist_for_each_entry(child, &clk->children, child_node) {
James Hogan71472c02013-07-29 12:25:00 +01001428 /* Skip children who will be reparented to another clock */
1429 if (child->new_parent && child->new_parent != clk)
1430 continue;
1431 tmp_clk = clk_propagate_rate_change(child, event);
1432 if (tmp_clk)
1433 fail_clk = tmp_clk;
1434 }
1435
1436 /* handle the new child who might not be in clk->children yet */
1437 if (clk->new_child) {
1438 tmp_clk = clk_propagate_rate_change(clk->new_child, event);
1439 if (tmp_clk)
1440 fail_clk = tmp_clk;
Mike Turquetteb24764902012-03-15 23:11:19 -07001441 }
1442
1443 return fail_clk;
1444}
1445
1446/*
1447 * walk down a subtree and set the new rates notifying the rate
1448 * change on the way
1449 */
1450static void clk_change_rate(struct clk *clk)
1451{
1452 struct clk *child;
Tero Kristo067bb172014-08-21 16:47:45 +03001453 struct hlist_node *tmp;
Mike Turquetteb24764902012-03-15 23:11:19 -07001454 unsigned long old_rate;
Pawel Mollbf47b4f2012-06-08 14:04:06 +01001455 unsigned long best_parent_rate = 0;
Stephen Boyd3fa22522014-01-15 10:47:22 -08001456 bool skip_set_rate = false;
1457 struct clk *old_parent;
Mike Turquetteb24764902012-03-15 23:11:19 -07001458
1459 old_rate = clk->rate;
1460
Stephen Boyd3fa22522014-01-15 10:47:22 -08001461 if (clk->new_parent)
1462 best_parent_rate = clk->new_parent->rate;
1463 else if (clk->parent)
Pawel Mollbf47b4f2012-06-08 14:04:06 +01001464 best_parent_rate = clk->parent->rate;
1465
Stephen Boyd3fa22522014-01-15 10:47:22 -08001466 if (clk->new_parent && clk->new_parent != clk->parent) {
1467 old_parent = __clk_set_parent_before(clk, clk->new_parent);
1468
1469 if (clk->ops->set_rate_and_parent) {
1470 skip_set_rate = true;
1471 clk->ops->set_rate_and_parent(clk->hw, clk->new_rate,
1472 best_parent_rate,
1473 clk->new_parent_index);
1474 } else if (clk->ops->set_parent) {
1475 clk->ops->set_parent(clk->hw, clk->new_parent_index);
1476 }
1477
1478 __clk_set_parent_after(clk, clk->new_parent, old_parent);
1479 }
1480
1481 if (!skip_set_rate && clk->ops->set_rate)
Pawel Mollbf47b4f2012-06-08 14:04:06 +01001482 clk->ops->set_rate(clk->hw, clk->new_rate, best_parent_rate);
Mike Turquetteb24764902012-03-15 23:11:19 -07001483
Stephen Boyd8f2c2db2014-03-26 16:06:36 -07001484 clk->rate = clk_recalc(clk, best_parent_rate);
Mike Turquetteb24764902012-03-15 23:11:19 -07001485
1486 if (clk->notifier_count && old_rate != clk->rate)
1487 __clk_notify(clk, POST_RATE_CHANGE, old_rate, clk->rate);
1488
Tero Kristo067bb172014-08-21 16:47:45 +03001489 /*
1490 * Use safe iteration, as change_rate can actually swap parents
1491 * for certain clock types.
1492 */
1493 hlist_for_each_entry_safe(child, tmp, &clk->children, child_node) {
James Hogan71472c02013-07-29 12:25:00 +01001494 /* Skip children who will be reparented to another clock */
1495 if (child->new_parent && child->new_parent != clk)
1496 continue;
Mike Turquetteb24764902012-03-15 23:11:19 -07001497 clk_change_rate(child);
James Hogan71472c02013-07-29 12:25:00 +01001498 }
1499
1500 /* handle the new child who might not be in clk->children yet */
1501 if (clk->new_child)
1502 clk_change_rate(clk->new_child);
Mike Turquetteb24764902012-03-15 23:11:19 -07001503}
1504
1505/**
1506 * clk_set_rate - specify a new rate for clk
1507 * @clk: the clk whose rate is being changed
1508 * @rate: the new rate for clk
1509 *
Mike Turquette5654dc92012-03-26 11:51:34 -07001510 * In the simplest case clk_set_rate will only adjust the rate of clk.
Mike Turquetteb24764902012-03-15 23:11:19 -07001511 *
Mike Turquette5654dc92012-03-26 11:51:34 -07001512 * Setting the CLK_SET_RATE_PARENT flag allows the rate change operation to
1513 * propagate up to clk's parent; whether or not this happens depends on the
1514 * outcome of clk's .round_rate implementation. If *parent_rate is unchanged
1515 * after calling .round_rate then upstream parent propagation is ignored. If
1516 * *parent_rate comes back with a new rate for clk's parent then we propagate
Peter Meerwald24ee1a02013-06-29 15:14:19 +02001517 * up to clk's parent and set its rate. Upward propagation will continue
Mike Turquette5654dc92012-03-26 11:51:34 -07001518 * until either a clk does not support the CLK_SET_RATE_PARENT flag or
1519 * .round_rate stops requesting changes to clk's parent_rate.
Mike Turquetteb24764902012-03-15 23:11:19 -07001520 *
Mike Turquette5654dc92012-03-26 11:51:34 -07001521 * Rate changes are accomplished via tree traversal that also recalculates the
1522 * rates for the clocks and fires off POST_RATE_CHANGE notifiers.
Mike Turquetteb24764902012-03-15 23:11:19 -07001523 *
1524 * Returns 0 on success, -EERROR otherwise.
1525 */
1526int clk_set_rate(struct clk *clk, unsigned long rate)
1527{
1528 struct clk *top, *fail_clk;
1529 int ret = 0;
1530
Mike Turquette89ac8d72013-08-21 23:58:09 -07001531 if (!clk)
1532 return 0;
1533
Mike Turquetteb24764902012-03-15 23:11:19 -07001534 /* prevent racing with updates to the clock topology */
Mike Turquetteeab89f62013-03-28 13:59:01 -07001535 clk_prepare_lock();
Mike Turquetteb24764902012-03-15 23:11:19 -07001536
1537 /* bail early if nothing to do */
Peter De Schrijver34e452a2013-06-05 18:06:36 +03001538 if (rate == clk_get_rate(clk))
Mike Turquetteb24764902012-03-15 23:11:19 -07001539 goto out;
1540
Saravana Kannan7e0fa1b2012-05-15 13:43:42 -07001541 if ((clk->flags & CLK_SET_RATE_GATE) && clk->prepare_count) {
Viresh Kumar0e1c0302012-04-11 16:03:42 +05301542 ret = -EBUSY;
1543 goto out;
1544 }
1545
Mike Turquetteb24764902012-03-15 23:11:19 -07001546 /* calculate new rates and get the topmost changed clock */
1547 top = clk_calc_new_rates(clk, rate);
1548 if (!top) {
1549 ret = -EINVAL;
1550 goto out;
1551 }
1552
1553 /* notify that we are about to change rates */
1554 fail_clk = clk_propagate_rate_change(top, PRE_RATE_CHANGE);
1555 if (fail_clk) {
Sascha Hauerf7363862014-01-16 16:12:55 +01001556 pr_debug("%s: failed to set %s rate\n", __func__,
Mike Turquetteb24764902012-03-15 23:11:19 -07001557 fail_clk->name);
1558 clk_propagate_rate_change(top, ABORT_RATE_CHANGE);
1559 ret = -EBUSY;
1560 goto out;
1561 }
1562
1563 /* change the rates */
1564 clk_change_rate(top);
1565
Mike Turquetteb24764902012-03-15 23:11:19 -07001566out:
Mike Turquetteeab89f62013-03-28 13:59:01 -07001567 clk_prepare_unlock();
Mike Turquetteb24764902012-03-15 23:11:19 -07001568
1569 return ret;
1570}
1571EXPORT_SYMBOL_GPL(clk_set_rate);
1572
1573/**
1574 * clk_get_parent - return the parent of a clk
1575 * @clk: the clk whose parent gets returned
1576 *
1577 * Simply returns clk->parent. Returns NULL if clk is NULL.
1578 */
1579struct clk *clk_get_parent(struct clk *clk)
1580{
1581 struct clk *parent;
1582
Mike Turquetteeab89f62013-03-28 13:59:01 -07001583 clk_prepare_lock();
Mike Turquetteb24764902012-03-15 23:11:19 -07001584 parent = __clk_get_parent(clk);
Mike Turquetteeab89f62013-03-28 13:59:01 -07001585 clk_prepare_unlock();
Mike Turquetteb24764902012-03-15 23:11:19 -07001586
1587 return parent;
1588}
1589EXPORT_SYMBOL_GPL(clk_get_parent);
1590
1591/*
1592 * .get_parent is mandatory for clocks with multiple possible parents. It is
1593 * optional for single-parent clocks. Always call .get_parent if it is
1594 * available and WARN if it is missing for multi-parent clocks.
1595 *
1596 * For single-parent clocks without .get_parent, first check to see if the
1597 * .parents array exists, and if so use it to avoid an expensive tree
1598 * traversal. If .parents does not exist then walk the tree with __clk_lookup.
1599 */
1600static struct clk *__clk_init_parent(struct clk *clk)
1601{
1602 struct clk *ret = NULL;
1603 u8 index;
1604
1605 /* handle the trivial cases */
1606
1607 if (!clk->num_parents)
1608 goto out;
1609
1610 if (clk->num_parents == 1) {
1611 if (IS_ERR_OR_NULL(clk->parent))
Zhen Lei40ba3f02014-11-14 10:10:40 +08001612 clk->parent = __clk_lookup(clk->parent_names[0]);
Mike Turquetteb24764902012-03-15 23:11:19 -07001613 ret = clk->parent;
1614 goto out;
1615 }
1616
1617 if (!clk->ops->get_parent) {
1618 WARN(!clk->ops->get_parent,
1619 "%s: multi-parent clocks must implement .get_parent\n",
1620 __func__);
1621 goto out;
1622 };
1623
1624 /*
1625 * Do our best to cache parent clocks in clk->parents. This prevents
1626 * unnecessary and expensive calls to __clk_lookup. We don't set
1627 * clk->parent here; that is done by the calling function
1628 */
1629
1630 index = clk->ops->get_parent(clk->hw);
1631
1632 if (!clk->parents)
1633 clk->parents =
Tomasz Figa96a7ed92013-09-29 02:37:15 +02001634 kcalloc(clk->num_parents, sizeof(struct clk *),
Mike Turquetteb24764902012-03-15 23:11:19 -07001635 GFP_KERNEL);
1636
James Hogan7ef3dcc2013-07-29 12:24:58 +01001637 ret = clk_get_parent_by_index(clk, index);
Mike Turquetteb24764902012-03-15 23:11:19 -07001638
1639out:
1640 return ret;
1641}
1642
Ulf Hanssonb33d2122013-04-02 23:09:37 +02001643void __clk_reparent(struct clk *clk, struct clk *new_parent)
1644{
1645 clk_reparent(clk, new_parent);
Boris BREZILLON5279fc42013-12-21 10:34:47 +01001646 __clk_recalc_accuracies(clk);
Mike Turquetteb24764902012-03-15 23:11:19 -07001647 __clk_recalc_rates(clk, POST_RATE_CHANGE);
1648}
1649
Mike Turquetteb24764902012-03-15 23:11:19 -07001650/**
1651 * clk_set_parent - switch the parent of a mux clk
1652 * @clk: the mux clk whose input we are switching
1653 * @parent: the new input to clk
1654 *
Saravana Kannanf8aa0bd2013-05-15 21:07:24 -07001655 * Re-parent clk to use parent as its new input source. If clk is in
1656 * prepared state, the clk will get enabled for the duration of this call. If
1657 * that's not acceptable for a specific clk (Eg: the consumer can't handle
1658 * that, the reparenting is glitchy in hardware, etc), use the
1659 * CLK_SET_PARENT_GATE flag to allow reparenting only when clk is unprepared.
1660 *
1661 * After successfully changing clk's parent clk_set_parent will update the
1662 * clk topology, sysfs topology and propagate rate recalculation via
1663 * __clk_recalc_rates.
1664 *
1665 * Returns 0 on success, -EERROR otherwise.
Mike Turquetteb24764902012-03-15 23:11:19 -07001666 */
1667int clk_set_parent(struct clk *clk, struct clk *parent)
1668{
1669 int ret = 0;
Tomasz Figaf1c8b2e2013-09-29 02:37:14 +02001670 int p_index = 0;
Ulf Hansson031dcc92013-04-02 23:09:38 +02001671 unsigned long p_rate = 0;
Mike Turquetteb24764902012-03-15 23:11:19 -07001672
Mike Turquette89ac8d72013-08-21 23:58:09 -07001673 if (!clk)
1674 return 0;
1675
Ulf Hansson031dcc92013-04-02 23:09:38 +02001676 /* verify ops for for multi-parent clks */
1677 if ((clk->num_parents > 1) && (!clk->ops->set_parent))
Mike Turquetteb24764902012-03-15 23:11:19 -07001678 return -ENOSYS;
1679
1680 /* prevent racing with updates to the clock topology */
Mike Turquetteeab89f62013-03-28 13:59:01 -07001681 clk_prepare_lock();
Mike Turquetteb24764902012-03-15 23:11:19 -07001682
1683 if (clk->parent == parent)
1684 goto out;
1685
Ulf Hansson031dcc92013-04-02 23:09:38 +02001686 /* check that we are allowed to re-parent if the clock is in use */
1687 if ((clk->flags & CLK_SET_PARENT_GATE) && clk->prepare_count) {
1688 ret = -EBUSY;
1689 goto out;
1690 }
1691
1692 /* try finding the new parent index */
1693 if (parent) {
1694 p_index = clk_fetch_parent_index(clk, parent);
1695 p_rate = parent->rate;
Tomasz Figaf1c8b2e2013-09-29 02:37:14 +02001696 if (p_index < 0) {
Ulf Hansson031dcc92013-04-02 23:09:38 +02001697 pr_debug("%s: clk %s can not be parent of clk %s\n",
1698 __func__, parent->name, clk->name);
Tomasz Figaf1c8b2e2013-09-29 02:37:14 +02001699 ret = p_index;
Ulf Hansson031dcc92013-04-02 23:09:38 +02001700 goto out;
1701 }
1702 }
1703
Mike Turquetteb24764902012-03-15 23:11:19 -07001704 /* propagate PRE_RATE_CHANGE notifications */
Soren Brinkmannf3aab5d2013-04-16 10:06:50 -07001705 ret = __clk_speculate_rates(clk, p_rate);
Mike Turquetteb24764902012-03-15 23:11:19 -07001706
1707 /* abort if a driver objects */
Soren Brinkmannfb72a052013-04-03 12:17:12 -07001708 if (ret & NOTIFY_STOP_MASK)
Mike Turquetteb24764902012-03-15 23:11:19 -07001709 goto out;
1710
Ulf Hansson031dcc92013-04-02 23:09:38 +02001711 /* do the re-parent */
1712 ret = __clk_set_parent(clk, parent, p_index);
Mike Turquetteb24764902012-03-15 23:11:19 -07001713
Boris BREZILLON5279fc42013-12-21 10:34:47 +01001714 /* propagate rate an accuracy recalculation accordingly */
1715 if (ret) {
Mike Turquetteb24764902012-03-15 23:11:19 -07001716 __clk_recalc_rates(clk, ABORT_RATE_CHANGE);
Boris BREZILLON5279fc42013-12-21 10:34:47 +01001717 } else {
Ulf Hanssona68de8e2013-04-02 23:09:39 +02001718 __clk_recalc_rates(clk, POST_RATE_CHANGE);
Boris BREZILLON5279fc42013-12-21 10:34:47 +01001719 __clk_recalc_accuracies(clk);
1720 }
Mike Turquetteb24764902012-03-15 23:11:19 -07001721
1722out:
Mike Turquetteeab89f62013-03-28 13:59:01 -07001723 clk_prepare_unlock();
Mike Turquetteb24764902012-03-15 23:11:19 -07001724
1725 return ret;
1726}
1727EXPORT_SYMBOL_GPL(clk_set_parent);
1728
1729/**
Mike Turquettee59c5372014-02-18 21:21:25 -08001730 * clk_set_phase - adjust the phase shift of a clock signal
1731 * @clk: clock signal source
1732 * @degrees: number of degrees the signal is shifted
1733 *
1734 * Shifts the phase of a clock signal by the specified
1735 * degrees. Returns 0 on success, -EERROR otherwise.
1736 *
1737 * This function makes no distinction about the input or reference
1738 * signal that we adjust the clock signal phase against. For example
1739 * phase locked-loop clock signal generators we may shift phase with
1740 * respect to feedback clock signal input, but for other cases the
1741 * clock phase may be shifted with respect to some other, unspecified
1742 * signal.
1743 *
1744 * Additionally the concept of phase shift does not propagate through
1745 * the clock tree hierarchy, which sets it apart from clock rates and
1746 * clock accuracy. A parent clock phase attribute does not have an
1747 * impact on the phase attribute of a child clock.
1748 */
1749int clk_set_phase(struct clk *clk, int degrees)
1750{
1751 int ret = 0;
1752
1753 if (!clk)
1754 goto out;
1755
1756 /* sanity check degrees */
1757 degrees %= 360;
1758 if (degrees < 0)
1759 degrees += 360;
1760
1761 clk_prepare_lock();
1762
1763 if (!clk->ops->set_phase)
1764 goto out_unlock;
1765
1766 ret = clk->ops->set_phase(clk->hw, degrees);
1767
1768 if (!ret)
1769 clk->phase = degrees;
1770
1771out_unlock:
1772 clk_prepare_unlock();
1773
1774out:
1775 return ret;
1776}
1777
1778/**
1779 * clk_get_phase - return the phase shift of a clock signal
1780 * @clk: clock signal source
1781 *
1782 * Returns the phase shift of a clock node in degrees, otherwise returns
1783 * -EERROR.
1784 */
1785int clk_get_phase(struct clk *clk)
1786{
1787 int ret = 0;
1788
1789 if (!clk)
1790 goto out;
1791
1792 clk_prepare_lock();
1793 ret = clk->phase;
1794 clk_prepare_unlock();
1795
1796out:
1797 return ret;
1798}
1799
1800/**
Mike Turquetteb24764902012-03-15 23:11:19 -07001801 * __clk_init - initialize the data structures in a struct clk
1802 * @dev: device initializing this clk, placeholder for now
1803 * @clk: clk being initialized
1804 *
1805 * Initializes the lists in struct clk, queries the hardware for the
1806 * parent and rate and sets them both.
Mike Turquetteb24764902012-03-15 23:11:19 -07001807 */
Mike Turquetted1302a32012-03-29 14:30:40 -07001808int __clk_init(struct device *dev, struct clk *clk)
Mike Turquetteb24764902012-03-15 23:11:19 -07001809{
Mike Turquetted1302a32012-03-29 14:30:40 -07001810 int i, ret = 0;
Mike Turquetteb24764902012-03-15 23:11:19 -07001811 struct clk *orphan;
Sasha Levinb67bfe02013-02-27 17:06:00 -08001812 struct hlist_node *tmp2;
Mike Turquetteb24764902012-03-15 23:11:19 -07001813
1814 if (!clk)
Mike Turquetted1302a32012-03-29 14:30:40 -07001815 return -EINVAL;
Mike Turquetteb24764902012-03-15 23:11:19 -07001816
Mike Turquetteeab89f62013-03-28 13:59:01 -07001817 clk_prepare_lock();
Mike Turquetteb24764902012-03-15 23:11:19 -07001818
1819 /* check to see if a clock with this name is already registered */
Mike Turquetted1302a32012-03-29 14:30:40 -07001820 if (__clk_lookup(clk->name)) {
1821 pr_debug("%s: clk %s already initialized\n",
1822 __func__, clk->name);
1823 ret = -EEXIST;
Mike Turquetteb24764902012-03-15 23:11:19 -07001824 goto out;
Mike Turquetted1302a32012-03-29 14:30:40 -07001825 }
Mike Turquetteb24764902012-03-15 23:11:19 -07001826
Mike Turquetted4d7e3d2012-03-26 16:15:52 -07001827 /* check that clk_ops are sane. See Documentation/clk.txt */
1828 if (clk->ops->set_rate &&
James Hogan71472c02013-07-29 12:25:00 +01001829 !((clk->ops->round_rate || clk->ops->determine_rate) &&
1830 clk->ops->recalc_rate)) {
1831 pr_warning("%s: %s must implement .round_rate or .determine_rate in addition to .recalc_rate\n",
Mike Turquetted4d7e3d2012-03-26 16:15:52 -07001832 __func__, clk->name);
Mike Turquetted1302a32012-03-29 14:30:40 -07001833 ret = -EINVAL;
Mike Turquetted4d7e3d2012-03-26 16:15:52 -07001834 goto out;
1835 }
1836
1837 if (clk->ops->set_parent && !clk->ops->get_parent) {
1838 pr_warning("%s: %s must implement .get_parent & .set_parent\n",
1839 __func__, clk->name);
Mike Turquetted1302a32012-03-29 14:30:40 -07001840 ret = -EINVAL;
Mike Turquetted4d7e3d2012-03-26 16:15:52 -07001841 goto out;
1842 }
1843
Stephen Boyd3fa22522014-01-15 10:47:22 -08001844 if (clk->ops->set_rate_and_parent &&
1845 !(clk->ops->set_parent && clk->ops->set_rate)) {
1846 pr_warn("%s: %s must implement .set_parent & .set_rate\n",
1847 __func__, clk->name);
1848 ret = -EINVAL;
1849 goto out;
1850 }
1851
Mike Turquetteb24764902012-03-15 23:11:19 -07001852 /* throw a WARN if any entries in parent_names are NULL */
1853 for (i = 0; i < clk->num_parents; i++)
1854 WARN(!clk->parent_names[i],
1855 "%s: invalid NULL in %s's .parent_names\n",
1856 __func__, clk->name);
1857
1858 /*
1859 * Allocate an array of struct clk *'s to avoid unnecessary string
1860 * look-ups of clk's possible parents. This can fail for clocks passed
1861 * in to clk_init during early boot; thus any access to clk->parents[]
1862 * must always check for a NULL pointer and try to populate it if
1863 * necessary.
1864 *
1865 * If clk->parents is not NULL we skip this entire block. This allows
1866 * for clock drivers to statically initialize clk->parents.
1867 */
Rajendra Nayak9ca1c5a2012-06-06 14:41:30 +05301868 if (clk->num_parents > 1 && !clk->parents) {
Tomasz Figa96a7ed92013-09-29 02:37:15 +02001869 clk->parents = kcalloc(clk->num_parents, sizeof(struct clk *),
1870 GFP_KERNEL);
Mike Turquetteb24764902012-03-15 23:11:19 -07001871 /*
1872 * __clk_lookup returns NULL for parents that have not been
1873 * clk_init'd; thus any access to clk->parents[] must check
1874 * for a NULL pointer. We can always perform lazy lookups for
1875 * missing parents later on.
1876 */
1877 if (clk->parents)
1878 for (i = 0; i < clk->num_parents; i++)
1879 clk->parents[i] =
1880 __clk_lookup(clk->parent_names[i]);
1881 }
1882
1883 clk->parent = __clk_init_parent(clk);
1884
1885 /*
1886 * Populate clk->parent if parent has already been __clk_init'd. If
1887 * parent has not yet been __clk_init'd then place clk in the orphan
1888 * list. If clk has set the CLK_IS_ROOT flag then place it in the root
1889 * clk list.
1890 *
1891 * Every time a new clk is clk_init'd then we walk the list of orphan
1892 * clocks and re-parent any that are children of the clock currently
1893 * being clk_init'd.
1894 */
1895 if (clk->parent)
1896 hlist_add_head(&clk->child_node,
1897 &clk->parent->children);
1898 else if (clk->flags & CLK_IS_ROOT)
1899 hlist_add_head(&clk->child_node, &clk_root_list);
1900 else
1901 hlist_add_head(&clk->child_node, &clk_orphan_list);
1902
1903 /*
Boris BREZILLON5279fc42013-12-21 10:34:47 +01001904 * Set clk's accuracy. The preferred method is to use
1905 * .recalc_accuracy. For simple clocks and lazy developers the default
1906 * fallback is to use the parent's accuracy. If a clock doesn't have a
1907 * parent (or is orphaned) then accuracy is set to zero (perfect
1908 * clock).
1909 */
1910 if (clk->ops->recalc_accuracy)
1911 clk->accuracy = clk->ops->recalc_accuracy(clk->hw,
1912 __clk_get_accuracy(clk->parent));
1913 else if (clk->parent)
1914 clk->accuracy = clk->parent->accuracy;
1915 else
1916 clk->accuracy = 0;
1917
1918 /*
Maxime Ripard9824cf72014-07-14 13:53:27 +02001919 * Set clk's phase.
1920 * Since a phase is by definition relative to its parent, just
1921 * query the current clock phase, or just assume it's in phase.
1922 */
1923 if (clk->ops->get_phase)
1924 clk->phase = clk->ops->get_phase(clk->hw);
1925 else
1926 clk->phase = 0;
1927
1928 /*
Mike Turquetteb24764902012-03-15 23:11:19 -07001929 * Set clk's rate. The preferred method is to use .recalc_rate. For
1930 * simple clocks and lazy developers the default fallback is to use the
1931 * parent's rate. If a clock doesn't have a parent (or is orphaned)
1932 * then rate is set to zero.
1933 */
1934 if (clk->ops->recalc_rate)
1935 clk->rate = clk->ops->recalc_rate(clk->hw,
1936 __clk_get_rate(clk->parent));
1937 else if (clk->parent)
1938 clk->rate = clk->parent->rate;
1939 else
1940 clk->rate = 0;
1941
Stephen Boyd3a5aec22013-10-16 00:40:03 -07001942 clk_debug_register(clk);
Mike Turquetteb24764902012-03-15 23:11:19 -07001943 /*
1944 * walk the list of orphan clocks and reparent any that are children of
1945 * this clock
1946 */
Sasha Levinb67bfe02013-02-27 17:06:00 -08001947 hlist_for_each_entry_safe(orphan, tmp2, &clk_orphan_list, child_node) {
Alex Elder12d298862013-09-05 08:33:24 -05001948 if (orphan->num_parents && orphan->ops->get_parent) {
Martin Fuzzey1f61e5f2012-11-22 20:15:05 +01001949 i = orphan->ops->get_parent(orphan->hw);
1950 if (!strcmp(clk->name, orphan->parent_names[i]))
1951 __clk_reparent(orphan, clk);
1952 continue;
1953 }
1954
Mike Turquetteb24764902012-03-15 23:11:19 -07001955 for (i = 0; i < orphan->num_parents; i++)
1956 if (!strcmp(clk->name, orphan->parent_names[i])) {
1957 __clk_reparent(orphan, clk);
1958 break;
1959 }
Martin Fuzzey1f61e5f2012-11-22 20:15:05 +01001960 }
Mike Turquetteb24764902012-03-15 23:11:19 -07001961
1962 /*
1963 * optional platform-specific magic
1964 *
1965 * The .init callback is not used by any of the basic clock types, but
1966 * exists for weird hardware that must perform initialization magic.
1967 * Please consider other ways of solving initialization problems before
Peter Meerwald24ee1a02013-06-29 15:14:19 +02001968 * using this callback, as its use is discouraged.
Mike Turquetteb24764902012-03-15 23:11:19 -07001969 */
1970 if (clk->ops->init)
1971 clk->ops->init(clk->hw);
1972
Sylwester Nawrockifcb0ee62013-08-24 15:00:10 +02001973 kref_init(&clk->ref);
Mike Turquetteb24764902012-03-15 23:11:19 -07001974out:
Mike Turquetteeab89f62013-03-28 13:59:01 -07001975 clk_prepare_unlock();
Mike Turquetteb24764902012-03-15 23:11:19 -07001976
Mike Turquetted1302a32012-03-29 14:30:40 -07001977 return ret;
Mike Turquetteb24764902012-03-15 23:11:19 -07001978}
1979
1980/**
Saravana Kannan0197b3e2012-04-25 22:58:56 -07001981 * __clk_register - register a clock and return a cookie.
1982 *
1983 * Same as clk_register, except that the .clk field inside hw shall point to a
1984 * preallocated (generally statically allocated) struct clk. None of the fields
1985 * of the struct clk need to be initialized.
1986 *
1987 * The data pointed to by .init and .clk field shall NOT be marked as init
1988 * data.
1989 *
1990 * __clk_register is only exposed via clk-private.h and is intended for use with
1991 * very large numbers of clocks that need to be statically initialized. It is
1992 * a layering violation to include clk-private.h from any code which implements
1993 * a clock's .ops; as such any statically initialized clock data MUST be in a
Peter Meerwald24ee1a02013-06-29 15:14:19 +02001994 * separate C file from the logic that implements its operations. Returns 0
Saravana Kannan0197b3e2012-04-25 22:58:56 -07001995 * on success, otherwise an error code.
1996 */
1997struct clk *__clk_register(struct device *dev, struct clk_hw *hw)
1998{
1999 int ret;
2000 struct clk *clk;
2001
2002 clk = hw->clk;
2003 clk->name = hw->init->name;
2004 clk->ops = hw->init->ops;
2005 clk->hw = hw;
2006 clk->flags = hw->init->flags;
2007 clk->parent_names = hw->init->parent_names;
2008 clk->num_parents = hw->init->num_parents;
Sylwester Nawrockiac2df522013-08-24 20:10:41 +02002009 if (dev && dev->driver)
2010 clk->owner = dev->driver->owner;
2011 else
2012 clk->owner = NULL;
Saravana Kannan0197b3e2012-04-25 22:58:56 -07002013
2014 ret = __clk_init(dev, clk);
2015 if (ret)
2016 return ERR_PTR(ret);
2017
2018 return clk;
2019}
2020EXPORT_SYMBOL_GPL(__clk_register);
2021
Stephen Boyd293ba3b2014-04-18 16:29:42 -07002022/**
2023 * clk_register - allocate a new clock, register it and return an opaque cookie
2024 * @dev: device that is registering this clock
2025 * @hw: link to hardware-specific clock data
2026 *
2027 * clk_register is the primary interface for populating the clock tree with new
2028 * clock nodes. It returns a pointer to the newly allocated struct clk which
2029 * cannot be dereferenced by driver code but may be used in conjuction with the
2030 * rest of the clock API. In the event of an error clk_register will return an
2031 * error code; drivers must test for an error code after calling clk_register.
2032 */
2033struct clk *clk_register(struct device *dev, struct clk_hw *hw)
Mike Turquetteb24764902012-03-15 23:11:19 -07002034{
Mike Turquetted1302a32012-03-29 14:30:40 -07002035 int i, ret;
Stephen Boyd293ba3b2014-04-18 16:29:42 -07002036 struct clk *clk;
2037
2038 clk = kzalloc(sizeof(*clk), GFP_KERNEL);
2039 if (!clk) {
2040 pr_err("%s: could not allocate clk\n", __func__);
2041 ret = -ENOMEM;
2042 goto fail_out;
2043 }
Mike Turquetteb24764902012-03-15 23:11:19 -07002044
Saravana Kannan0197b3e2012-04-25 22:58:56 -07002045 clk->name = kstrdup(hw->init->name, GFP_KERNEL);
2046 if (!clk->name) {
2047 pr_err("%s: could not allocate clk->name\n", __func__);
2048 ret = -ENOMEM;
2049 goto fail_name;
2050 }
2051 clk->ops = hw->init->ops;
Sylwester Nawrockiac2df522013-08-24 20:10:41 +02002052 if (dev && dev->driver)
2053 clk->owner = dev->driver->owner;
Mike Turquetteb24764902012-03-15 23:11:19 -07002054 clk->hw = hw;
Saravana Kannan0197b3e2012-04-25 22:58:56 -07002055 clk->flags = hw->init->flags;
2056 clk->num_parents = hw->init->num_parents;
Mike Turquetteb24764902012-03-15 23:11:19 -07002057 hw->clk = clk;
2058
Mike Turquetted1302a32012-03-29 14:30:40 -07002059 /* allocate local copy in case parent_names is __initdata */
Tomasz Figa96a7ed92013-09-29 02:37:15 +02002060 clk->parent_names = kcalloc(clk->num_parents, sizeof(char *),
2061 GFP_KERNEL);
Mike Turquetteb24764902012-03-15 23:11:19 -07002062
Mike Turquetted1302a32012-03-29 14:30:40 -07002063 if (!clk->parent_names) {
2064 pr_err("%s: could not allocate clk->parent_names\n", __func__);
2065 ret = -ENOMEM;
2066 goto fail_parent_names;
2067 }
2068
2069
2070 /* copy each string name in case parent_names is __initdata */
Saravana Kannan0197b3e2012-04-25 22:58:56 -07002071 for (i = 0; i < clk->num_parents; i++) {
2072 clk->parent_names[i] = kstrdup(hw->init->parent_names[i],
2073 GFP_KERNEL);
Mike Turquetted1302a32012-03-29 14:30:40 -07002074 if (!clk->parent_names[i]) {
2075 pr_err("%s: could not copy parent_names\n", __func__);
2076 ret = -ENOMEM;
2077 goto fail_parent_names_copy;
2078 }
2079 }
2080
2081 ret = __clk_init(dev, clk);
2082 if (!ret)
Stephen Boyd293ba3b2014-04-18 16:29:42 -07002083 return clk;
Mike Turquetted1302a32012-03-29 14:30:40 -07002084
2085fail_parent_names_copy:
2086 while (--i >= 0)
2087 kfree(clk->parent_names[i]);
2088 kfree(clk->parent_names);
2089fail_parent_names:
Saravana Kannan0197b3e2012-04-25 22:58:56 -07002090 kfree(clk->name);
2091fail_name:
Mike Turquetted1302a32012-03-29 14:30:40 -07002092 kfree(clk);
2093fail_out:
2094 return ERR_PTR(ret);
Mike Turquetteb24764902012-03-15 23:11:19 -07002095}
2096EXPORT_SYMBOL_GPL(clk_register);
2097
Sylwester Nawrockifcb0ee62013-08-24 15:00:10 +02002098/*
2099 * Free memory allocated for a clock.
2100 * Caller must hold prepare_lock.
2101 */
2102static void __clk_release(struct kref *ref)
2103{
2104 struct clk *clk = container_of(ref, struct clk, ref);
2105 int i = clk->num_parents;
2106
2107 kfree(clk->parents);
2108 while (--i >= 0)
2109 kfree(clk->parent_names[i]);
2110
2111 kfree(clk->parent_names);
2112 kfree(clk->name);
2113 kfree(clk);
2114}
2115
2116/*
2117 * Empty clk_ops for unregistered clocks. These are used temporarily
2118 * after clk_unregister() was called on a clock and until last clock
2119 * consumer calls clk_put() and the struct clk object is freed.
2120 */
2121static int clk_nodrv_prepare_enable(struct clk_hw *hw)
2122{
2123 return -ENXIO;
2124}
2125
2126static void clk_nodrv_disable_unprepare(struct clk_hw *hw)
2127{
2128 WARN_ON_ONCE(1);
2129}
2130
2131static int clk_nodrv_set_rate(struct clk_hw *hw, unsigned long rate,
2132 unsigned long parent_rate)
2133{
2134 return -ENXIO;
2135}
2136
2137static int clk_nodrv_set_parent(struct clk_hw *hw, u8 index)
2138{
2139 return -ENXIO;
2140}
2141
2142static const struct clk_ops clk_nodrv_ops = {
2143 .enable = clk_nodrv_prepare_enable,
2144 .disable = clk_nodrv_disable_unprepare,
2145 .prepare = clk_nodrv_prepare_enable,
2146 .unprepare = clk_nodrv_disable_unprepare,
2147 .set_rate = clk_nodrv_set_rate,
2148 .set_parent = clk_nodrv_set_parent,
2149};
2150
Mark Brown1df5c932012-04-18 09:07:12 +01002151/**
2152 * clk_unregister - unregister a currently registered clock
2153 * @clk: clock to unregister
Mark Brown1df5c932012-04-18 09:07:12 +01002154 */
Sylwester Nawrockifcb0ee62013-08-24 15:00:10 +02002155void clk_unregister(struct clk *clk)
2156{
2157 unsigned long flags;
2158
Stephen Boyd6314b672014-09-04 23:37:49 -07002159 if (!clk || WARN_ON_ONCE(IS_ERR(clk)))
2160 return;
2161
2162 clk_debug_unregister(clk);
Sylwester Nawrockifcb0ee62013-08-24 15:00:10 +02002163
2164 clk_prepare_lock();
2165
2166 if (clk->ops == &clk_nodrv_ops) {
2167 pr_err("%s: unregistered clock: %s\n", __func__, clk->name);
Stephen Boyd6314b672014-09-04 23:37:49 -07002168 return;
Sylwester Nawrockifcb0ee62013-08-24 15:00:10 +02002169 }
2170 /*
2171 * Assign empty clock ops for consumers that might still hold
2172 * a reference to this clock.
2173 */
2174 flags = clk_enable_lock();
2175 clk->ops = &clk_nodrv_ops;
2176 clk_enable_unlock(flags);
2177
2178 if (!hlist_empty(&clk->children)) {
2179 struct clk *child;
Stephen Boyd874f2242014-04-18 16:29:43 -07002180 struct hlist_node *t;
Sylwester Nawrockifcb0ee62013-08-24 15:00:10 +02002181
2182 /* Reparent all children to the orphan list. */
Stephen Boyd874f2242014-04-18 16:29:43 -07002183 hlist_for_each_entry_safe(child, t, &clk->children, child_node)
Sylwester Nawrockifcb0ee62013-08-24 15:00:10 +02002184 clk_set_parent(child, NULL);
2185 }
2186
Sylwester Nawrockifcb0ee62013-08-24 15:00:10 +02002187 hlist_del_init(&clk->child_node);
2188
2189 if (clk->prepare_count)
2190 pr_warn("%s: unregistering prepared clock: %s\n",
2191 __func__, clk->name);
Sylwester Nawrockifcb0ee62013-08-24 15:00:10 +02002192 kref_put(&clk->ref, __clk_release);
Stephen Boyd6314b672014-09-04 23:37:49 -07002193
Sylwester Nawrockifcb0ee62013-08-24 15:00:10 +02002194 clk_prepare_unlock();
2195}
Mark Brown1df5c932012-04-18 09:07:12 +01002196EXPORT_SYMBOL_GPL(clk_unregister);
2197
Stephen Boyd46c87732012-09-24 13:38:04 -07002198static void devm_clk_release(struct device *dev, void *res)
2199{
Stephen Boyd293ba3b2014-04-18 16:29:42 -07002200 clk_unregister(*(struct clk **)res);
Stephen Boyd46c87732012-09-24 13:38:04 -07002201}
2202
2203/**
2204 * devm_clk_register - resource managed clk_register()
2205 * @dev: device that is registering this clock
2206 * @hw: link to hardware-specific clock data
2207 *
2208 * Managed clk_register(). Clocks returned from this function are
2209 * automatically clk_unregister()ed on driver detach. See clk_register() for
2210 * more information.
2211 */
2212struct clk *devm_clk_register(struct device *dev, struct clk_hw *hw)
2213{
2214 struct clk *clk;
Stephen Boyd293ba3b2014-04-18 16:29:42 -07002215 struct clk **clkp;
Stephen Boyd46c87732012-09-24 13:38:04 -07002216
Stephen Boyd293ba3b2014-04-18 16:29:42 -07002217 clkp = devres_alloc(devm_clk_release, sizeof(*clkp), GFP_KERNEL);
2218 if (!clkp)
Stephen Boyd46c87732012-09-24 13:38:04 -07002219 return ERR_PTR(-ENOMEM);
2220
Stephen Boyd293ba3b2014-04-18 16:29:42 -07002221 clk = clk_register(dev, hw);
2222 if (!IS_ERR(clk)) {
2223 *clkp = clk;
2224 devres_add(dev, clkp);
Stephen Boyd46c87732012-09-24 13:38:04 -07002225 } else {
Stephen Boyd293ba3b2014-04-18 16:29:42 -07002226 devres_free(clkp);
Stephen Boyd46c87732012-09-24 13:38:04 -07002227 }
2228
2229 return clk;
2230}
2231EXPORT_SYMBOL_GPL(devm_clk_register);
2232
2233static int devm_clk_match(struct device *dev, void *res, void *data)
2234{
2235 struct clk *c = res;
2236 if (WARN_ON(!c))
2237 return 0;
2238 return c == data;
2239}
2240
2241/**
2242 * devm_clk_unregister - resource managed clk_unregister()
2243 * @clk: clock to unregister
2244 *
2245 * Deallocate a clock allocated with devm_clk_register(). Normally
2246 * this function will not need to be called and the resource management
2247 * code will ensure that the resource is freed.
2248 */
2249void devm_clk_unregister(struct device *dev, struct clk *clk)
2250{
2251 WARN_ON(devres_release(dev, devm_clk_release, devm_clk_match, clk));
2252}
2253EXPORT_SYMBOL_GPL(devm_clk_unregister);
2254
Sylwester Nawrockiac2df522013-08-24 20:10:41 +02002255/*
2256 * clkdev helpers
2257 */
2258int __clk_get(struct clk *clk)
2259{
Sylwester Nawrocki00efcb12014-01-07 13:03:43 +01002260 if (clk) {
2261 if (!try_module_get(clk->owner))
2262 return 0;
Sylwester Nawrockiac2df522013-08-24 20:10:41 +02002263
Sylwester Nawrocki00efcb12014-01-07 13:03:43 +01002264 kref_get(&clk->ref);
2265 }
Sylwester Nawrockiac2df522013-08-24 20:10:41 +02002266 return 1;
2267}
2268
2269void __clk_put(struct clk *clk)
2270{
Tomeu Vizoso10cdfe52014-12-02 08:54:19 +01002271 struct module *owner;
2272
Sylwester Nawrocki00efcb12014-01-07 13:03:43 +01002273 if (!clk || WARN_ON_ONCE(IS_ERR(clk)))
Sylwester Nawrockiac2df522013-08-24 20:10:41 +02002274 return;
2275
Sylwester Nawrockifcb0ee62013-08-24 15:00:10 +02002276 clk_prepare_lock();
Tomeu Vizoso10cdfe52014-12-02 08:54:19 +01002277 owner = clk->owner;
Sylwester Nawrockifcb0ee62013-08-24 15:00:10 +02002278 kref_put(&clk->ref, __clk_release);
2279 clk_prepare_unlock();
2280
Tomeu Vizoso10cdfe52014-12-02 08:54:19 +01002281 module_put(owner);
Sylwester Nawrockiac2df522013-08-24 20:10:41 +02002282}
2283
Mike Turquetteb24764902012-03-15 23:11:19 -07002284/*** clk rate change notifiers ***/
2285
2286/**
2287 * clk_notifier_register - add a clk rate change notifier
2288 * @clk: struct clk * to watch
2289 * @nb: struct notifier_block * with callback info
2290 *
2291 * Request notification when clk's rate changes. This uses an SRCU
2292 * notifier because we want it to block and notifier unregistrations are
2293 * uncommon. The callbacks associated with the notifier must not
2294 * re-enter into the clk framework by calling any top-level clk APIs;
2295 * this will cause a nested prepare_lock mutex.
2296 *
Soren Brinkmann5324fda2014-01-22 11:48:37 -08002297 * In all notification cases cases (pre, post and abort rate change) the
2298 * original clock rate is passed to the callback via struct
2299 * clk_notifier_data.old_rate and the new frequency is passed via struct
Mike Turquetteb24764902012-03-15 23:11:19 -07002300 * clk_notifier_data.new_rate.
2301 *
Mike Turquetteb24764902012-03-15 23:11:19 -07002302 * clk_notifier_register() must be called from non-atomic context.
2303 * Returns -EINVAL if called with null arguments, -ENOMEM upon
2304 * allocation failure; otherwise, passes along the return value of
2305 * srcu_notifier_chain_register().
2306 */
2307int clk_notifier_register(struct clk *clk, struct notifier_block *nb)
2308{
2309 struct clk_notifier *cn;
2310 int ret = -ENOMEM;
2311
2312 if (!clk || !nb)
2313 return -EINVAL;
2314
Mike Turquetteeab89f62013-03-28 13:59:01 -07002315 clk_prepare_lock();
Mike Turquetteb24764902012-03-15 23:11:19 -07002316
2317 /* search the list of notifiers for this clk */
2318 list_for_each_entry(cn, &clk_notifier_list, node)
2319 if (cn->clk == clk)
2320 break;
2321
2322 /* if clk wasn't in the notifier list, allocate new clk_notifier */
2323 if (cn->clk != clk) {
2324 cn = kzalloc(sizeof(struct clk_notifier), GFP_KERNEL);
2325 if (!cn)
2326 goto out;
2327
2328 cn->clk = clk;
2329 srcu_init_notifier_head(&cn->notifier_head);
2330
2331 list_add(&cn->node, &clk_notifier_list);
2332 }
2333
2334 ret = srcu_notifier_chain_register(&cn->notifier_head, nb);
2335
2336 clk->notifier_count++;
2337
2338out:
Mike Turquetteeab89f62013-03-28 13:59:01 -07002339 clk_prepare_unlock();
Mike Turquetteb24764902012-03-15 23:11:19 -07002340
2341 return ret;
2342}
2343EXPORT_SYMBOL_GPL(clk_notifier_register);
2344
2345/**
2346 * clk_notifier_unregister - remove a clk rate change notifier
2347 * @clk: struct clk *
2348 * @nb: struct notifier_block * with callback info
2349 *
2350 * Request no further notification for changes to 'clk' and frees memory
2351 * allocated in clk_notifier_register.
2352 *
2353 * Returns -EINVAL if called with null arguments; otherwise, passes
2354 * along the return value of srcu_notifier_chain_unregister().
2355 */
2356int clk_notifier_unregister(struct clk *clk, struct notifier_block *nb)
2357{
2358 struct clk_notifier *cn = NULL;
2359 int ret = -EINVAL;
2360
2361 if (!clk || !nb)
2362 return -EINVAL;
2363
Mike Turquetteeab89f62013-03-28 13:59:01 -07002364 clk_prepare_lock();
Mike Turquetteb24764902012-03-15 23:11:19 -07002365
2366 list_for_each_entry(cn, &clk_notifier_list, node)
2367 if (cn->clk == clk)
2368 break;
2369
2370 if (cn->clk == clk) {
2371 ret = srcu_notifier_chain_unregister(&cn->notifier_head, nb);
2372
2373 clk->notifier_count--;
2374
2375 /* XXX the notifier code should handle this better */
2376 if (!cn->notifier_head.head) {
2377 srcu_cleanup_notifier_head(&cn->notifier_head);
Lai Jiangshan72b53222013-06-03 17:17:15 +08002378 list_del(&cn->node);
Mike Turquetteb24764902012-03-15 23:11:19 -07002379 kfree(cn);
2380 }
2381
2382 } else {
2383 ret = -ENOENT;
2384 }
2385
Mike Turquetteeab89f62013-03-28 13:59:01 -07002386 clk_prepare_unlock();
Mike Turquetteb24764902012-03-15 23:11:19 -07002387
2388 return ret;
2389}
2390EXPORT_SYMBOL_GPL(clk_notifier_unregister);
Grant Likely766e6a42012-04-09 14:50:06 -05002391
2392#ifdef CONFIG_OF
2393/**
2394 * struct of_clk_provider - Clock provider registration structure
2395 * @link: Entry in global list of clock providers
2396 * @node: Pointer to device tree node of clock provider
2397 * @get: Get clock callback. Returns NULL or a struct clk for the
2398 * given clock specifier
2399 * @data: context pointer to be passed into @get callback
2400 */
2401struct of_clk_provider {
2402 struct list_head link;
2403
2404 struct device_node *node;
2405 struct clk *(*get)(struct of_phandle_args *clkspec, void *data);
2406 void *data;
2407};
2408
Prashant Gaikwadf2f6c252013-01-04 12:30:52 +05302409static const struct of_device_id __clk_of_table_sentinel
2410 __used __section(__clk_of_table_end);
2411
Grant Likely766e6a42012-04-09 14:50:06 -05002412static LIST_HEAD(of_clk_providers);
Sylwester Nawrockid6782c22013-08-23 17:03:43 +02002413static DEFINE_MUTEX(of_clk_mutex);
2414
2415/* of_clk_provider list locking helpers */
2416void of_clk_lock(void)
2417{
2418 mutex_lock(&of_clk_mutex);
2419}
2420
2421void of_clk_unlock(void)
2422{
2423 mutex_unlock(&of_clk_mutex);
2424}
Grant Likely766e6a42012-04-09 14:50:06 -05002425
2426struct clk *of_clk_src_simple_get(struct of_phandle_args *clkspec,
2427 void *data)
2428{
2429 return data;
2430}
2431EXPORT_SYMBOL_GPL(of_clk_src_simple_get);
2432
Shawn Guo494bfec2012-08-22 21:36:27 +08002433struct clk *of_clk_src_onecell_get(struct of_phandle_args *clkspec, void *data)
2434{
2435 struct clk_onecell_data *clk_data = data;
2436 unsigned int idx = clkspec->args[0];
2437
2438 if (idx >= clk_data->clk_num) {
2439 pr_err("%s: invalid clock index %d\n", __func__, idx);
2440 return ERR_PTR(-EINVAL);
2441 }
2442
2443 return clk_data->clks[idx];
2444}
2445EXPORT_SYMBOL_GPL(of_clk_src_onecell_get);
2446
Grant Likely766e6a42012-04-09 14:50:06 -05002447/**
2448 * of_clk_add_provider() - Register a clock provider for a node
2449 * @np: Device node pointer associated with clock provider
2450 * @clk_src_get: callback for decoding clock
2451 * @data: context pointer for @clk_src_get callback.
2452 */
2453int of_clk_add_provider(struct device_node *np,
2454 struct clk *(*clk_src_get)(struct of_phandle_args *clkspec,
2455 void *data),
2456 void *data)
2457{
2458 struct of_clk_provider *cp;
Sylwester Nawrocki86be4082014-06-18 17:29:32 +02002459 int ret;
Grant Likely766e6a42012-04-09 14:50:06 -05002460
2461 cp = kzalloc(sizeof(struct of_clk_provider), GFP_KERNEL);
2462 if (!cp)
2463 return -ENOMEM;
2464
2465 cp->node = of_node_get(np);
2466 cp->data = data;
2467 cp->get = clk_src_get;
2468
Sylwester Nawrockid6782c22013-08-23 17:03:43 +02002469 mutex_lock(&of_clk_mutex);
Grant Likely766e6a42012-04-09 14:50:06 -05002470 list_add(&cp->link, &of_clk_providers);
Sylwester Nawrockid6782c22013-08-23 17:03:43 +02002471 mutex_unlock(&of_clk_mutex);
Grant Likely766e6a42012-04-09 14:50:06 -05002472 pr_debug("Added clock from %s\n", np->full_name);
2473
Sylwester Nawrocki86be4082014-06-18 17:29:32 +02002474 ret = of_clk_set_defaults(np, true);
2475 if (ret < 0)
2476 of_clk_del_provider(np);
2477
2478 return ret;
Grant Likely766e6a42012-04-09 14:50:06 -05002479}
2480EXPORT_SYMBOL_GPL(of_clk_add_provider);
2481
2482/**
2483 * of_clk_del_provider() - Remove a previously registered clock provider
2484 * @np: Device node pointer associated with clock provider
2485 */
2486void of_clk_del_provider(struct device_node *np)
2487{
2488 struct of_clk_provider *cp;
2489
Sylwester Nawrockid6782c22013-08-23 17:03:43 +02002490 mutex_lock(&of_clk_mutex);
Grant Likely766e6a42012-04-09 14:50:06 -05002491 list_for_each_entry(cp, &of_clk_providers, link) {
2492 if (cp->node == np) {
2493 list_del(&cp->link);
2494 of_node_put(cp->node);
2495 kfree(cp);
2496 break;
2497 }
2498 }
Sylwester Nawrockid6782c22013-08-23 17:03:43 +02002499 mutex_unlock(&of_clk_mutex);
Grant Likely766e6a42012-04-09 14:50:06 -05002500}
2501EXPORT_SYMBOL_GPL(of_clk_del_provider);
2502
Sylwester Nawrockid6782c22013-08-23 17:03:43 +02002503struct clk *__of_clk_get_from_provider(struct of_phandle_args *clkspec)
Grant Likely766e6a42012-04-09 14:50:06 -05002504{
2505 struct of_clk_provider *provider;
Jean-Francois Moinea34cd462013-11-25 19:47:04 +01002506 struct clk *clk = ERR_PTR(-EPROBE_DEFER);
Grant Likely766e6a42012-04-09 14:50:06 -05002507
2508 /* Check if we have such a provider in our array */
Grant Likely766e6a42012-04-09 14:50:06 -05002509 list_for_each_entry(provider, &of_clk_providers, link) {
2510 if (provider->node == clkspec->np)
2511 clk = provider->get(clkspec, provider->data);
2512 if (!IS_ERR(clk))
2513 break;
2514 }
Sylwester Nawrockid6782c22013-08-23 17:03:43 +02002515
2516 return clk;
2517}
2518
2519struct clk *of_clk_get_from_provider(struct of_phandle_args *clkspec)
2520{
2521 struct clk *clk;
2522
2523 mutex_lock(&of_clk_mutex);
2524 clk = __of_clk_get_from_provider(clkspec);
2525 mutex_unlock(&of_clk_mutex);
Grant Likely766e6a42012-04-09 14:50:06 -05002526
2527 return clk;
2528}
2529
Mike Turquettef6102742013-10-07 23:12:13 -07002530int of_clk_get_parent_count(struct device_node *np)
2531{
2532 return of_count_phandle_with_args(np, "clocks", "#clock-cells");
2533}
2534EXPORT_SYMBOL_GPL(of_clk_get_parent_count);
2535
Grant Likely766e6a42012-04-09 14:50:06 -05002536const char *of_clk_get_parent_name(struct device_node *np, int index)
2537{
2538 struct of_phandle_args clkspec;
Ben Dooks7a0fc1a2014-02-13 18:02:49 +00002539 struct property *prop;
Grant Likely766e6a42012-04-09 14:50:06 -05002540 const char *clk_name;
Ben Dooks7a0fc1a2014-02-13 18:02:49 +00002541 const __be32 *vp;
2542 u32 pv;
Grant Likely766e6a42012-04-09 14:50:06 -05002543 int rc;
Ben Dooks7a0fc1a2014-02-13 18:02:49 +00002544 int count;
Grant Likely766e6a42012-04-09 14:50:06 -05002545
2546 if (index < 0)
2547 return NULL;
2548
2549 rc = of_parse_phandle_with_args(np, "clocks", "#clock-cells", index,
2550 &clkspec);
2551 if (rc)
2552 return NULL;
2553
Ben Dooks7a0fc1a2014-02-13 18:02:49 +00002554 index = clkspec.args_count ? clkspec.args[0] : 0;
2555 count = 0;
2556
2557 /* if there is an indices property, use it to transfer the index
2558 * specified into an array offset for the clock-output-names property.
2559 */
2560 of_property_for_each_u32(clkspec.np, "clock-indices", prop, vp, pv) {
2561 if (index == pv) {
2562 index = count;
2563 break;
2564 }
2565 count++;
2566 }
2567
Grant Likely766e6a42012-04-09 14:50:06 -05002568 if (of_property_read_string_index(clkspec.np, "clock-output-names",
Ben Dooks7a0fc1a2014-02-13 18:02:49 +00002569 index,
Grant Likely766e6a42012-04-09 14:50:06 -05002570 &clk_name) < 0)
2571 clk_name = clkspec.np->name;
2572
2573 of_node_put(clkspec.np);
2574 return clk_name;
2575}
2576EXPORT_SYMBOL_GPL(of_clk_get_parent_name);
2577
Gregory CLEMENT1771b102014-02-24 19:10:13 +01002578struct clock_provider {
2579 of_clk_init_cb_t clk_init_cb;
2580 struct device_node *np;
2581 struct list_head node;
2582};
2583
2584static LIST_HEAD(clk_provider_list);
2585
2586/*
2587 * This function looks for a parent clock. If there is one, then it
2588 * checks that the provider for this parent clock was initialized, in
2589 * this case the parent clock will be ready.
2590 */
2591static int parent_ready(struct device_node *np)
2592{
2593 int i = 0;
2594
2595 while (true) {
2596 struct clk *clk = of_clk_get(np, i);
2597
2598 /* this parent is ready we can check the next one */
2599 if (!IS_ERR(clk)) {
2600 clk_put(clk);
2601 i++;
2602 continue;
2603 }
2604
2605 /* at least one parent is not ready, we exit now */
2606 if (PTR_ERR(clk) == -EPROBE_DEFER)
2607 return 0;
2608
2609 /*
2610 * Here we make assumption that the device tree is
2611 * written correctly. So an error means that there is
2612 * no more parent. As we didn't exit yet, then the
2613 * previous parent are ready. If there is no clock
2614 * parent, no need to wait for them, then we can
2615 * consider their absence as being ready
2616 */
2617 return 1;
2618 }
2619}
2620
Grant Likely766e6a42012-04-09 14:50:06 -05002621/**
2622 * of_clk_init() - Scan and init clock providers from the DT
2623 * @matches: array of compatible values and init functions for providers.
2624 *
Gregory CLEMENT1771b102014-02-24 19:10:13 +01002625 * This function scans the device tree for matching clock providers
Sylwester Nawrockie5ca8fb2014-03-27 12:08:36 +01002626 * and calls their initialization functions. It also does it by trying
Gregory CLEMENT1771b102014-02-24 19:10:13 +01002627 * to follow the dependencies.
Grant Likely766e6a42012-04-09 14:50:06 -05002628 */
2629void __init of_clk_init(const struct of_device_id *matches)
2630{
Alex Elder7f7ed582013-08-22 11:31:31 -05002631 const struct of_device_id *match;
Grant Likely766e6a42012-04-09 14:50:06 -05002632 struct device_node *np;
Gregory CLEMENT1771b102014-02-24 19:10:13 +01002633 struct clock_provider *clk_provider, *next;
2634 bool is_init_done;
2635 bool force = false;
Grant Likely766e6a42012-04-09 14:50:06 -05002636
Prashant Gaikwadf2f6c252013-01-04 12:30:52 +05302637 if (!matches)
Tero Kristo819b4862013-10-22 11:39:36 +03002638 matches = &__clk_of_table;
Prashant Gaikwadf2f6c252013-01-04 12:30:52 +05302639
Gregory CLEMENT1771b102014-02-24 19:10:13 +01002640 /* First prepare the list of the clocks providers */
Alex Elder7f7ed582013-08-22 11:31:31 -05002641 for_each_matching_node_and_match(np, matches, &match) {
Gregory CLEMENT1771b102014-02-24 19:10:13 +01002642 struct clock_provider *parent =
2643 kzalloc(sizeof(struct clock_provider), GFP_KERNEL);
2644
2645 parent->clk_init_cb = match->data;
2646 parent->np = np;
Sylwester Nawrocki3f6d4392014-03-27 11:43:32 +01002647 list_add_tail(&parent->node, &clk_provider_list);
Gregory CLEMENT1771b102014-02-24 19:10:13 +01002648 }
2649
2650 while (!list_empty(&clk_provider_list)) {
2651 is_init_done = false;
2652 list_for_each_entry_safe(clk_provider, next,
2653 &clk_provider_list, node) {
2654 if (force || parent_ready(clk_provider->np)) {
Sylwester Nawrocki86be4082014-06-18 17:29:32 +02002655
Gregory CLEMENT1771b102014-02-24 19:10:13 +01002656 clk_provider->clk_init_cb(clk_provider->np);
Sylwester Nawrocki86be4082014-06-18 17:29:32 +02002657 of_clk_set_defaults(clk_provider->np, true);
2658
Gregory CLEMENT1771b102014-02-24 19:10:13 +01002659 list_del(&clk_provider->node);
2660 kfree(clk_provider);
2661 is_init_done = true;
2662 }
2663 }
2664
2665 /*
Sylwester Nawrockie5ca8fb2014-03-27 12:08:36 +01002666 * We didn't manage to initialize any of the
Gregory CLEMENT1771b102014-02-24 19:10:13 +01002667 * remaining providers during the last loop, so now we
2668 * initialize all the remaining ones unconditionally
2669 * in case the clock parent was not mandatory
2670 */
2671 if (!is_init_done)
2672 force = true;
Grant Likely766e6a42012-04-09 14:50:06 -05002673 }
2674}
2675#endif