OPP: Improve error handling in dev_pm_opp_of_cpumask_add_table()
[linux-2.6-block.git] / drivers / opp / core.c
CommitLineData
e1f60b29
NM
1/*
2 * Generic OPP Interface
3 *
4 * Copyright (C) 2009-2010 Texas Instruments Incorporated.
5 * Nishanth Menon
6 * Romit Dasgupta
7 * Kevin Hilman
8 *
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License version 2 as
11 * published by the Free Software Foundation.
12 */
13
d6d2a528
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14#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
15
d54974c2 16#include <linux/clk.h>
e1f60b29
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17#include <linux/errno.h>
18#include <linux/err.h>
e1f60b29 19#include <linux/slab.h>
51990e82 20#include <linux/device.h>
80126ce7 21#include <linux/export.h>
009acd19 22#include <linux/pm_domain.h>
9f8ea969 23#include <linux/regulator/consumer.h>
e1f60b29 24
f59d3ee8 25#include "opp.h"
e1f60b29
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26
27/*
2c2709dc
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28 * The root of the list of all opp-tables. All opp_table structures branch off
29 * from here, with each opp_table containing the list of opps it supports in
e1f60b29
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30 * various states of availability.
31 */
f47b72a1 32LIST_HEAD(opp_tables);
e1f60b29 33/* Lock to allow exclusive modification to the device and opp lists */
2c2709dc 34DEFINE_MUTEX(opp_table_lock);
e1f60b29 35
2c2709dc
VK
36static struct opp_device *_find_opp_dev(const struct device *dev,
37 struct opp_table *opp_table)
06441658 38{
2c2709dc 39 struct opp_device *opp_dev;
06441658 40
2c2709dc
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41 list_for_each_entry(opp_dev, &opp_table->dev_list, node)
42 if (opp_dev->dev == dev)
43 return opp_dev;
06441658
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44
45 return NULL;
46}
47
6ac42397 48static struct opp_table *_find_opp_table_unlocked(struct device *dev)
5b650b38
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49{
50 struct opp_table *opp_table;
3d255699 51 bool found;
5b650b38
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52
53 list_for_each_entry(opp_table, &opp_tables, node) {
3d255699
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54 mutex_lock(&opp_table->lock);
55 found = !!_find_opp_dev(dev, opp_table);
56 mutex_unlock(&opp_table->lock);
57
58 if (found) {
5b650b38
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59 _get_opp_table_kref(opp_table);
60
61 return opp_table;
62 }
63 }
64
65 return ERR_PTR(-ENODEV);
66}
67
e1f60b29 68/**
2c2709dc
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69 * _find_opp_table() - find opp_table struct using device pointer
70 * @dev: device pointer used to lookup OPP table
e1f60b29 71 *
052c6f19 72 * Search OPP table for one containing matching device.
e1f60b29 73 *
2c2709dc 74 * Return: pointer to 'struct opp_table' if found, otherwise -ENODEV or
e1f60b29
NM
75 * -EINVAL based on type of error.
76 *
5b650b38 77 * The callers must call dev_pm_opp_put_opp_table() after the table is used.
e1f60b29 78 */
2c2709dc 79struct opp_table *_find_opp_table(struct device *dev)
e1f60b29 80{
2c2709dc 81 struct opp_table *opp_table;
e1f60b29 82
50a3cb04 83 if (IS_ERR_OR_NULL(dev)) {
e1f60b29
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84 pr_err("%s: Invalid parameters\n", __func__);
85 return ERR_PTR(-EINVAL);
86 }
87
5b650b38
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88 mutex_lock(&opp_table_lock);
89 opp_table = _find_opp_table_unlocked(dev);
90 mutex_unlock(&opp_table_lock);
e1f60b29 91
5b650b38 92 return opp_table;
e1f60b29
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93}
94
95/**
d6d00742 96 * dev_pm_opp_get_voltage() - Gets the voltage corresponding to an opp
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97 * @opp: opp for which voltage has to be returned for
98 *
984f16c8 99 * Return: voltage in micro volt corresponding to the opp, else
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100 * return 0
101 *
dfbe4678 102 * This is useful only for devices with single power supply.
e1f60b29 103 */
47d43ba7 104unsigned long dev_pm_opp_get_voltage(struct dev_pm_opp *opp)
e1f60b29 105{
052c6f19 106 if (IS_ERR_OR_NULL(opp)) {
e1f60b29 107 pr_err("%s: Invalid parameters\n", __func__);
052c6f19
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108 return 0;
109 }
e1f60b29 110
052c6f19 111 return opp->supplies[0].u_volt;
e1f60b29 112}
5d4879cd 113EXPORT_SYMBOL_GPL(dev_pm_opp_get_voltage);
e1f60b29
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114
115/**
5d4879cd 116 * dev_pm_opp_get_freq() - Gets the frequency corresponding to an available opp
e1f60b29
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117 * @opp: opp for which frequency has to be returned for
118 *
984f16c8 119 * Return: frequency in hertz corresponding to the opp, else
e1f60b29 120 * return 0
e1f60b29 121 */
47d43ba7 122unsigned long dev_pm_opp_get_freq(struct dev_pm_opp *opp)
e1f60b29 123{
052c6f19 124 if (IS_ERR_OR_NULL(opp) || !opp->available) {
e1f60b29 125 pr_err("%s: Invalid parameters\n", __func__);
052c6f19
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126 return 0;
127 }
e1f60b29 128
052c6f19 129 return opp->rate;
e1f60b29 130}
5d4879cd 131EXPORT_SYMBOL_GPL(dev_pm_opp_get_freq);
e1f60b29 132
19445b25
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133/**
134 * dev_pm_opp_is_turbo() - Returns if opp is turbo OPP or not
135 * @opp: opp for which turbo mode is being verified
136 *
137 * Turbo OPPs are not for normal use, and can be enabled (under certain
138 * conditions) for short duration of times to finish high throughput work
139 * quickly. Running on them for longer times may overheat the chip.
140 *
141 * Return: true if opp is turbo opp, else false.
19445b25
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142 */
143bool dev_pm_opp_is_turbo(struct dev_pm_opp *opp)
144{
052c6f19 145 if (IS_ERR_OR_NULL(opp) || !opp->available) {
19445b25
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146 pr_err("%s: Invalid parameters\n", __func__);
147 return false;
148 }
149
052c6f19 150 return opp->turbo;
19445b25
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151}
152EXPORT_SYMBOL_GPL(dev_pm_opp_is_turbo);
153
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154/**
155 * dev_pm_opp_get_max_clock_latency() - Get max clock latency in nanoseconds
156 * @dev: device for which we do this operation
157 *
158 * Return: This function returns the max clock latency in nanoseconds.
3ca9bb33
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159 */
160unsigned long dev_pm_opp_get_max_clock_latency(struct device *dev)
161{
2c2709dc 162 struct opp_table *opp_table;
3ca9bb33
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163 unsigned long clock_latency_ns;
164
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165 opp_table = _find_opp_table(dev);
166 if (IS_ERR(opp_table))
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167 return 0;
168
169 clock_latency_ns = opp_table->clock_latency_ns_max;
170
171 dev_pm_opp_put_opp_table(opp_table);
3ca9bb33 172
3ca9bb33
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173 return clock_latency_ns;
174}
175EXPORT_SYMBOL_GPL(dev_pm_opp_get_max_clock_latency);
176
655c9df9
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177/**
178 * dev_pm_opp_get_max_volt_latency() - Get max voltage latency in nanoseconds
179 * @dev: device for which we do this operation
180 *
181 * Return: This function returns the max voltage latency in nanoseconds.
655c9df9
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182 */
183unsigned long dev_pm_opp_get_max_volt_latency(struct device *dev)
184{
2c2709dc 185 struct opp_table *opp_table;
655c9df9 186 struct dev_pm_opp *opp;
478256bd 187 struct regulator *reg;
655c9df9 188 unsigned long latency_ns = 0;
dfbe4678
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189 int ret, i, count;
190 struct {
191 unsigned long min;
192 unsigned long max;
193 } *uV;
194
cdd3e614
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195 opp_table = _find_opp_table(dev);
196 if (IS_ERR(opp_table))
197 return 0;
198
199 count = opp_table->regulator_count;
dfbe4678
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200
201 /* Regulator may not be required for the device */
202 if (!count)
cdd3e614 203 goto put_opp_table;
dfbe4678 204
dfbe4678
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205 uV = kmalloc_array(count, sizeof(*uV), GFP_KERNEL);
206 if (!uV)
478256bd 207 goto put_opp_table;
655c9df9 208
052c6f19
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209 mutex_lock(&opp_table->lock);
210
dfbe4678
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211 for (i = 0; i < count; i++) {
212 uV[i].min = ~0;
213 uV[i].max = 0;
655c9df9 214
052c6f19 215 list_for_each_entry(opp, &opp_table->opp_list, node) {
dfbe4678
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216 if (!opp->available)
217 continue;
218
219 if (opp->supplies[i].u_volt_min < uV[i].min)
220 uV[i].min = opp->supplies[i].u_volt_min;
221 if (opp->supplies[i].u_volt_max > uV[i].max)
222 uV[i].max = opp->supplies[i].u_volt_max;
223 }
655c9df9
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224 }
225
052c6f19 226 mutex_unlock(&opp_table->lock);
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227
228 /*
2c2709dc 229 * The caller needs to ensure that opp_table (and hence the regulator)
655c9df9
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230 * isn't freed, while we are executing this routine.
231 */
8cc31116 232 for (i = 0; i < count; i++) {
478256bd 233 reg = opp_table->regulators[i];
dfbe4678
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234 ret = regulator_set_voltage_time(reg, uV[i].min, uV[i].max);
235 if (ret > 0)
236 latency_ns += ret * 1000;
237 }
238
dfbe4678 239 kfree(uV);
cdd3e614
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240put_opp_table:
241 dev_pm_opp_put_opp_table(opp_table);
655c9df9
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242
243 return latency_ns;
244}
245EXPORT_SYMBOL_GPL(dev_pm_opp_get_max_volt_latency);
246
21743447
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247/**
248 * dev_pm_opp_get_max_transition_latency() - Get max transition latency in
249 * nanoseconds
250 * @dev: device for which we do this operation
251 *
252 * Return: This function returns the max transition latency, in nanoseconds, to
253 * switch from one OPP to other.
21743447
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254 */
255unsigned long dev_pm_opp_get_max_transition_latency(struct device *dev)
256{
257 return dev_pm_opp_get_max_volt_latency(dev) +
258 dev_pm_opp_get_max_clock_latency(dev);
259}
260EXPORT_SYMBOL_GPL(dev_pm_opp_get_max_transition_latency);
261
4eafbd15 262/**
3aa26a3b 263 * dev_pm_opp_get_suspend_opp_freq() - Get frequency of suspend opp in Hz
4eafbd15
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264 * @dev: device for which we do this operation
265 *
3aa26a3b
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266 * Return: This function returns the frequency of the OPP marked as suspend_opp
267 * if one is available, else returns 0;
4eafbd15 268 */
3aa26a3b 269unsigned long dev_pm_opp_get_suspend_opp_freq(struct device *dev)
4eafbd15 270{
2c2709dc 271 struct opp_table *opp_table;
3aa26a3b 272 unsigned long freq = 0;
4eafbd15 273
2c2709dc 274 opp_table = _find_opp_table(dev);
5b650b38
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275 if (IS_ERR(opp_table))
276 return 0;
3aa26a3b 277
5b650b38
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278 if (opp_table->suspend_opp && opp_table->suspend_opp->available)
279 freq = dev_pm_opp_get_freq(opp_table->suspend_opp);
280
281 dev_pm_opp_put_opp_table(opp_table);
4eafbd15 282
3aa26a3b 283 return freq;
4eafbd15 284}
3aa26a3b 285EXPORT_SYMBOL_GPL(dev_pm_opp_get_suspend_opp_freq);
4eafbd15 286
a1e8c136
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287int _get_opp_count(struct opp_table *opp_table)
288{
289 struct dev_pm_opp *opp;
290 int count = 0;
291
292 mutex_lock(&opp_table->lock);
293
294 list_for_each_entry(opp, &opp_table->opp_list, node) {
295 if (opp->available)
296 count++;
297 }
298
299 mutex_unlock(&opp_table->lock);
300
301 return count;
302}
303
e1f60b29 304/**
2c2709dc 305 * dev_pm_opp_get_opp_count() - Get number of opps available in the opp table
e1f60b29
NM
306 * @dev: device for which we do this operation
307 *
984f16c8 308 * Return: This function returns the number of available opps if there are any,
e1f60b29 309 * else returns 0 if none or the corresponding error value.
e1f60b29 310 */
5d4879cd 311int dev_pm_opp_get_opp_count(struct device *dev)
e1f60b29 312{
2c2709dc 313 struct opp_table *opp_table;
a1e8c136 314 int count;
e1f60b29 315
2c2709dc
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316 opp_table = _find_opp_table(dev);
317 if (IS_ERR(opp_table)) {
318 count = PTR_ERR(opp_table);
035ed072 319 dev_dbg(dev, "%s: OPP table not found (%d)\n",
b4718c02 320 __func__, count);
a1e8c136 321 return 0;
e1f60b29
NM
322 }
323
a1e8c136 324 count = _get_opp_count(opp_table);
5b650b38
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325 dev_pm_opp_put_opp_table(opp_table);
326
e1f60b29
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327 return count;
328}
5d4879cd 329EXPORT_SYMBOL_GPL(dev_pm_opp_get_opp_count);
e1f60b29
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330
331/**
5d4879cd 332 * dev_pm_opp_find_freq_exact() - search for an exact frequency
e1f60b29
NM
333 * @dev: device for which we do this operation
334 * @freq: frequency to search for
7ae49618 335 * @available: true/false - match for available opp
e1f60b29 336 *
2c2709dc 337 * Return: Searches for exact match in the opp table and returns pointer to the
984f16c8
NM
338 * matching opp if found, else returns ERR_PTR in case of error and should
339 * be handled using IS_ERR. Error return values can be:
0779726c
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340 * EINVAL: for bad pointer
341 * ERANGE: no match found for search
342 * ENODEV: if device not found in list of registered devices
e1f60b29
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343 *
344 * Note: available is a modifier for the search. if available=true, then the
345 * match is for exact matching frequency and is available in the stored OPP
346 * table. if false, the match is for exact frequency which is not available.
347 *
348 * This provides a mechanism to enable an opp which is not available currently
349 * or the opposite as well.
350 *
8a31d9d9
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351 * The callers are required to call dev_pm_opp_put() for the returned OPP after
352 * use.
e1f60b29 353 */
47d43ba7
NM
354struct dev_pm_opp *dev_pm_opp_find_freq_exact(struct device *dev,
355 unsigned long freq,
356 bool available)
e1f60b29 357{
2c2709dc 358 struct opp_table *opp_table;
47d43ba7 359 struct dev_pm_opp *temp_opp, *opp = ERR_PTR(-ERANGE);
e1f60b29 360
2c2709dc
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361 opp_table = _find_opp_table(dev);
362 if (IS_ERR(opp_table)) {
363 int r = PTR_ERR(opp_table);
364
365 dev_err(dev, "%s: OPP table not found (%d)\n", __func__, r);
e1f60b29
NM
366 return ERR_PTR(r);
367 }
368
052c6f19 369 mutex_lock(&opp_table->lock);
5b650b38 370
052c6f19 371 list_for_each_entry(temp_opp, &opp_table->opp_list, node) {
e1f60b29
NM
372 if (temp_opp->available == available &&
373 temp_opp->rate == freq) {
374 opp = temp_opp;
8a31d9d9
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375
376 /* Increment the reference count of OPP */
377 dev_pm_opp_get(opp);
e1f60b29
NM
378 break;
379 }
380 }
381
052c6f19 382 mutex_unlock(&opp_table->lock);
5b650b38 383 dev_pm_opp_put_opp_table(opp_table);
8a31d9d9 384
e1f60b29
NM
385 return opp;
386}
5d4879cd 387EXPORT_SYMBOL_GPL(dev_pm_opp_find_freq_exact);
e1f60b29 388
067b7ce0
JZ
389static noinline struct dev_pm_opp *_find_freq_ceil(struct opp_table *opp_table,
390 unsigned long *freq)
391{
392 struct dev_pm_opp *temp_opp, *opp = ERR_PTR(-ERANGE);
393
052c6f19
VK
394 mutex_lock(&opp_table->lock);
395
396 list_for_each_entry(temp_opp, &opp_table->opp_list, node) {
067b7ce0
JZ
397 if (temp_opp->available && temp_opp->rate >= *freq) {
398 opp = temp_opp;
399 *freq = opp->rate;
8a31d9d9
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400
401 /* Increment the reference count of OPP */
402 dev_pm_opp_get(opp);
067b7ce0
JZ
403 break;
404 }
405 }
406
052c6f19
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407 mutex_unlock(&opp_table->lock);
408
067b7ce0
JZ
409 return opp;
410}
411
e1f60b29 412/**
5d4879cd 413 * dev_pm_opp_find_freq_ceil() - Search for an rounded ceil freq
e1f60b29
NM
414 * @dev: device for which we do this operation
415 * @freq: Start frequency
416 *
417 * Search for the matching ceil *available* OPP from a starting freq
418 * for a device.
419 *
984f16c8 420 * Return: matching *opp and refreshes *freq accordingly, else returns
0779726c
NM
421 * ERR_PTR in case of error and should be handled using IS_ERR. Error return
422 * values can be:
423 * EINVAL: for bad pointer
424 * ERANGE: no match found for search
425 * ENODEV: if device not found in list of registered devices
e1f60b29 426 *
8a31d9d9
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427 * The callers are required to call dev_pm_opp_put() for the returned OPP after
428 * use.
e1f60b29 429 */
47d43ba7
NM
430struct dev_pm_opp *dev_pm_opp_find_freq_ceil(struct device *dev,
431 unsigned long *freq)
e1f60b29 432{
2c2709dc 433 struct opp_table *opp_table;
8a31d9d9 434 struct dev_pm_opp *opp;
b02ded24 435
e1f60b29
NM
436 if (!dev || !freq) {
437 dev_err(dev, "%s: Invalid argument freq=%p\n", __func__, freq);
438 return ERR_PTR(-EINVAL);
439 }
440
2c2709dc 441 opp_table = _find_opp_table(dev);
5b650b38 442 if (IS_ERR(opp_table))
2c2709dc 443 return ERR_CAST(opp_table);
5b650b38 444
8a31d9d9 445 opp = _find_freq_ceil(opp_table, freq);
e1f60b29 446
5b650b38 447 dev_pm_opp_put_opp_table(opp_table);
8a31d9d9
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448
449 return opp;
e1f60b29 450}
5d4879cd 451EXPORT_SYMBOL_GPL(dev_pm_opp_find_freq_ceil);
e1f60b29
NM
452
453/**
5d4879cd 454 * dev_pm_opp_find_freq_floor() - Search for a rounded floor freq
e1f60b29
NM
455 * @dev: device for which we do this operation
456 * @freq: Start frequency
457 *
458 * Search for the matching floor *available* OPP from a starting freq
459 * for a device.
460 *
984f16c8 461 * Return: matching *opp and refreshes *freq accordingly, else returns
0779726c
NM
462 * ERR_PTR in case of error and should be handled using IS_ERR. Error return
463 * values can be:
464 * EINVAL: for bad pointer
465 * ERANGE: no match found for search
466 * ENODEV: if device not found in list of registered devices
e1f60b29 467 *
8a31d9d9
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468 * The callers are required to call dev_pm_opp_put() for the returned OPP after
469 * use.
e1f60b29 470 */
47d43ba7
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471struct dev_pm_opp *dev_pm_opp_find_freq_floor(struct device *dev,
472 unsigned long *freq)
e1f60b29 473{
2c2709dc 474 struct opp_table *opp_table;
47d43ba7 475 struct dev_pm_opp *temp_opp, *opp = ERR_PTR(-ERANGE);
e1f60b29
NM
476
477 if (!dev || !freq) {
478 dev_err(dev, "%s: Invalid argument freq=%p\n", __func__, freq);
479 return ERR_PTR(-EINVAL);
480 }
481
2c2709dc 482 opp_table = _find_opp_table(dev);
5b650b38 483 if (IS_ERR(opp_table))
2c2709dc 484 return ERR_CAST(opp_table);
5b650b38 485
052c6f19 486 mutex_lock(&opp_table->lock);
e1f60b29 487
052c6f19 488 list_for_each_entry(temp_opp, &opp_table->opp_list, node) {
e1f60b29
NM
489 if (temp_opp->available) {
490 /* go to the next node, before choosing prev */
491 if (temp_opp->rate > *freq)
492 break;
493 else
494 opp = temp_opp;
495 }
496 }
8a31d9d9
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497
498 /* Increment the reference count of OPP */
499 if (!IS_ERR(opp))
500 dev_pm_opp_get(opp);
052c6f19 501 mutex_unlock(&opp_table->lock);
5b650b38 502 dev_pm_opp_put_opp_table(opp_table);
8a31d9d9 503
e1f60b29
NM
504 if (!IS_ERR(opp))
505 *freq = opp->rate;
506
507 return opp;
508}
5d4879cd 509EXPORT_SYMBOL_GPL(dev_pm_opp_find_freq_floor);
e1f60b29 510
6a0712f6 511static int _set_opp_voltage(struct device *dev, struct regulator *reg,
ce31781a 512 struct dev_pm_opp_supply *supply)
6a0712f6
VK
513{
514 int ret;
515
516 /* Regulator not available for device */
517 if (IS_ERR(reg)) {
518 dev_dbg(dev, "%s: regulator not available: %ld\n", __func__,
519 PTR_ERR(reg));
520 return 0;
521 }
522
ce31781a
VK
523 dev_dbg(dev, "%s: voltages (mV): %lu %lu %lu\n", __func__,
524 supply->u_volt_min, supply->u_volt, supply->u_volt_max);
6a0712f6 525
ce31781a
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526 ret = regulator_set_voltage_triplet(reg, supply->u_volt_min,
527 supply->u_volt, supply->u_volt_max);
6a0712f6
VK
528 if (ret)
529 dev_err(dev, "%s: failed to set voltage (%lu %lu %lu mV): %d\n",
ce31781a
VK
530 __func__, supply->u_volt_min, supply->u_volt,
531 supply->u_volt_max, ret);
6a0712f6
VK
532
533 return ret;
534}
535
94735585
VK
536static inline int
537_generic_set_opp_clk_only(struct device *dev, struct clk *clk,
538 unsigned long old_freq, unsigned long freq)
539{
540 int ret;
541
542 ret = clk_set_rate(clk, freq);
543 if (ret) {
544 dev_err(dev, "%s: failed to set clock rate: %d\n", __func__,
545 ret);
546 }
547
548 return ret;
549}
550
009acd19
VK
551static inline int
552_generic_set_opp_domain(struct device *dev, struct clk *clk,
553 unsigned long old_freq, unsigned long freq,
554 unsigned int old_pstate, unsigned int new_pstate)
555{
556 int ret;
557
558 /* Scaling up? Scale domain performance state before frequency */
559 if (freq > old_freq) {
560 ret = dev_pm_genpd_set_performance_state(dev, new_pstate);
561 if (ret)
562 return ret;
563 }
564
565 ret = _generic_set_opp_clk_only(dev, clk, old_freq, freq);
566 if (ret)
567 goto restore_domain_state;
568
569 /* Scaling down? Scale domain performance state after frequency */
570 if (freq < old_freq) {
571 ret = dev_pm_genpd_set_performance_state(dev, new_pstate);
572 if (ret)
573 goto restore_freq;
574 }
575
576 return 0;
577
578restore_freq:
579 if (_generic_set_opp_clk_only(dev, clk, freq, old_freq))
580 dev_err(dev, "%s: failed to restore old-freq (%lu Hz)\n",
581 __func__, old_freq);
582restore_domain_state:
583 if (freq > old_freq)
584 dev_pm_genpd_set_performance_state(dev, old_pstate);
585
586 return ret;
587}
588
c74b32fa
VK
589static int _generic_set_opp_regulator(const struct opp_table *opp_table,
590 struct device *dev,
591 unsigned long old_freq,
592 unsigned long freq,
593 struct dev_pm_opp_supply *old_supply,
594 struct dev_pm_opp_supply *new_supply)
94735585 595{
c74b32fa 596 struct regulator *reg = opp_table->regulators[0];
94735585
VK
597 int ret;
598
599 /* This function only supports single regulator per device */
c74b32fa 600 if (WARN_ON(opp_table->regulator_count > 1)) {
94735585
VK
601 dev_err(dev, "multiple regulators are not supported\n");
602 return -EINVAL;
603 }
604
605 /* Scaling up? Scale voltage before frequency */
c5c2a97b 606 if (freq >= old_freq) {
94735585
VK
607 ret = _set_opp_voltage(dev, reg, new_supply);
608 if (ret)
609 goto restore_voltage;
610 }
611
612 /* Change frequency */
c74b32fa 613 ret = _generic_set_opp_clk_only(dev, opp_table->clk, old_freq, freq);
94735585
VK
614 if (ret)
615 goto restore_voltage;
616
617 /* Scaling down? Scale voltage after frequency */
618 if (freq < old_freq) {
619 ret = _set_opp_voltage(dev, reg, new_supply);
620 if (ret)
621 goto restore_freq;
622 }
623
624 return 0;
625
626restore_freq:
c74b32fa 627 if (_generic_set_opp_clk_only(dev, opp_table->clk, freq, old_freq))
94735585
VK
628 dev_err(dev, "%s: failed to restore old-freq (%lu Hz)\n",
629 __func__, old_freq);
630restore_voltage:
631 /* This shouldn't harm even if the voltages weren't updated earlier */
c74b32fa 632 if (old_supply)
94735585
VK
633 _set_opp_voltage(dev, reg, old_supply);
634
635 return ret;
636}
637
6a0712f6
VK
638/**
639 * dev_pm_opp_set_rate() - Configure new OPP based on frequency
640 * @dev: device for which we do this operation
641 * @target_freq: frequency to achieve
642 *
643 * This configures the power-supplies and clock source to the levels specified
644 * by the OPP corresponding to the target_freq.
6a0712f6
VK
645 */
646int dev_pm_opp_set_rate(struct device *dev, unsigned long target_freq)
647{
2c2709dc 648 struct opp_table *opp_table;
94735585 649 unsigned long freq, old_freq;
6a0712f6 650 struct dev_pm_opp *old_opp, *opp;
6a0712f6 651 struct clk *clk;
94735585 652 int ret, size;
6a0712f6
VK
653
654 if (unlikely(!target_freq)) {
655 dev_err(dev, "%s: Invalid target frequency %lu\n", __func__,
656 target_freq);
657 return -EINVAL;
658 }
659
052c6f19
VK
660 opp_table = _find_opp_table(dev);
661 if (IS_ERR(opp_table)) {
662 dev_err(dev, "%s: device opp doesn't exist\n", __func__);
663 return PTR_ERR(opp_table);
664 }
665
666 clk = opp_table->clk;
667 if (IS_ERR(clk)) {
668 dev_err(dev, "%s: No clock available for the device\n",
669 __func__);
670 ret = PTR_ERR(clk);
671 goto put_opp_table;
672 }
6a0712f6
VK
673
674 freq = clk_round_rate(clk, target_freq);
675 if ((long)freq <= 0)
676 freq = target_freq;
677
678 old_freq = clk_get_rate(clk);
679
680 /* Return early if nothing to do */
681 if (old_freq == freq) {
682 dev_dbg(dev, "%s: old/new frequencies (%lu Hz) are same, nothing to do\n",
683 __func__, freq);
052c6f19
VK
684 ret = 0;
685 goto put_opp_table;
6a0712f6
VK
686 }
687
067b7ce0 688 old_opp = _find_freq_ceil(opp_table, &old_freq);
4df27c91 689 if (IS_ERR(old_opp)) {
6a0712f6
VK
690 dev_err(dev, "%s: failed to find current OPP for freq %lu (%ld)\n",
691 __func__, old_freq, PTR_ERR(old_opp));
692 }
693
067b7ce0 694 opp = _find_freq_ceil(opp_table, &freq);
6a0712f6
VK
695 if (IS_ERR(opp)) {
696 ret = PTR_ERR(opp);
697 dev_err(dev, "%s: failed to find OPP for freq %lu (%d)\n",
698 __func__, freq, ret);
052c6f19 699 goto put_old_opp;
6a0712f6
VK
700 }
701
94735585
VK
702 dev_dbg(dev, "%s: switching OPP: %lu Hz --> %lu Hz\n", __func__,
703 old_freq, freq);
dfbe4678 704
94735585 705 /* Only frequency scaling */
c74b32fa 706 if (!opp_table->regulators) {
009acd19
VK
707 /*
708 * We don't support devices with both regulator and
709 * domain performance-state for now.
710 */
711 if (opp_table->genpd_performance_state)
712 ret = _generic_set_opp_domain(dev, clk, old_freq, freq,
713 IS_ERR(old_opp) ? 0 : old_opp->pstate,
714 opp->pstate);
715 else
716 ret = _generic_set_opp_clk_only(dev, clk, old_freq, freq);
c74b32fa
VK
717 } else if (!opp_table->set_opp) {
718 ret = _generic_set_opp_regulator(opp_table, dev, old_freq, freq,
719 IS_ERR(old_opp) ? NULL : old_opp->supplies,
720 opp->supplies);
721 } else {
722 struct dev_pm_set_opp_data *data;
723
724 data = opp_table->set_opp_data;
725 data->regulators = opp_table->regulators;
726 data->regulator_count = opp_table->regulator_count;
727 data->clk = clk;
728 data->dev = dev;
729
730 data->old_opp.rate = old_freq;
731 size = sizeof(*opp->supplies) * opp_table->regulator_count;
732 if (IS_ERR(old_opp))
733 memset(data->old_opp.supplies, 0, size);
734 else
735 memcpy(data->old_opp.supplies, old_opp->supplies, size);
736
737 data->new_opp.rate = freq;
738 memcpy(data->new_opp.supplies, opp->supplies, size);
739
740 ret = opp_table->set_opp(data);
dfbe4678
VK
741 }
742
8a31d9d9 743 dev_pm_opp_put(opp);
052c6f19 744put_old_opp:
8a31d9d9
VK
745 if (!IS_ERR(old_opp))
746 dev_pm_opp_put(old_opp);
052c6f19 747put_opp_table:
5b650b38 748 dev_pm_opp_put_opp_table(opp_table);
052c6f19 749 return ret;
6a0712f6
VK
750}
751EXPORT_SYMBOL_GPL(dev_pm_opp_set_rate);
752
2c2709dc 753/* OPP-dev Helpers */
2c2709dc
VK
754static void _remove_opp_dev(struct opp_device *opp_dev,
755 struct opp_table *opp_table)
06441658 756{
2c2709dc
VK
757 opp_debug_unregister(opp_dev, opp_table);
758 list_del(&opp_dev->node);
052c6f19 759 kfree(opp_dev);
06441658
VK
760}
761
283d55e6
VK
762static struct opp_device *_add_opp_dev_unlocked(const struct device *dev,
763 struct opp_table *opp_table)
06441658 764{
2c2709dc 765 struct opp_device *opp_dev;
deaa5146 766 int ret;
06441658 767
2c2709dc
VK
768 opp_dev = kzalloc(sizeof(*opp_dev), GFP_KERNEL);
769 if (!opp_dev)
06441658
VK
770 return NULL;
771
2c2709dc
VK
772 /* Initialize opp-dev */
773 opp_dev->dev = dev;
3d255699 774
052c6f19 775 list_add(&opp_dev->node, &opp_table->dev_list);
06441658 776
2c2709dc
VK
777 /* Create debugfs entries for the opp_table */
778 ret = opp_debug_register(opp_dev, opp_table);
deaa5146
VK
779 if (ret)
780 dev_err(dev, "%s: Failed to register opp debugfs (%d)\n",
781 __func__, ret);
283d55e6
VK
782
783 return opp_dev;
784}
785
786struct opp_device *_add_opp_dev(const struct device *dev,
787 struct opp_table *opp_table)
788{
789 struct opp_device *opp_dev;
790
791 mutex_lock(&opp_table->lock);
792 opp_dev = _add_opp_dev_unlocked(dev, opp_table);
3d255699 793 mutex_unlock(&opp_table->lock);
deaa5146 794
2c2709dc 795 return opp_dev;
06441658
VK
796}
797
eb7c8743 798static struct opp_table *_allocate_opp_table(struct device *dev, int index)
07cce74a 799{
2c2709dc
VK
800 struct opp_table *opp_table;
801 struct opp_device *opp_dev;
d54974c2 802 int ret;
07cce74a
VK
803
804 /*
2c2709dc 805 * Allocate a new OPP table. In the infrequent case where a new
07cce74a
VK
806 * device is needed to be added, we pay this penalty.
807 */
2c2709dc
VK
808 opp_table = kzalloc(sizeof(*opp_table), GFP_KERNEL);
809 if (!opp_table)
07cce74a
VK
810 return NULL;
811
3d255699 812 mutex_init(&opp_table->lock);
2c2709dc 813 INIT_LIST_HEAD(&opp_table->dev_list);
06441658 814
2c2709dc
VK
815 opp_dev = _add_opp_dev(dev, opp_table);
816 if (!opp_dev) {
817 kfree(opp_table);
06441658
VK
818 return NULL;
819 }
820
eb7c8743 821 _of_init_opp_table(opp_table, dev, index);
50f8cfbd 822
d54974c2 823 /* Find clk for the device */
2c2709dc
VK
824 opp_table->clk = clk_get(dev, NULL);
825 if (IS_ERR(opp_table->clk)) {
826 ret = PTR_ERR(opp_table->clk);
d54974c2
VK
827 if (ret != -EPROBE_DEFER)
828 dev_dbg(dev, "%s: Couldn't find clock: %d\n", __func__,
829 ret);
830 }
831
052c6f19 832 BLOCKING_INIT_NOTIFIER_HEAD(&opp_table->head);
2c2709dc 833 INIT_LIST_HEAD(&opp_table->opp_list);
f067a982 834 kref_init(&opp_table->kref);
07cce74a 835
2c2709dc 836 /* Secure the device table modification */
052c6f19 837 list_add(&opp_table->node, &opp_tables);
2c2709dc 838 return opp_table;
07cce74a
VK
839}
840
f067a982 841void _get_opp_table_kref(struct opp_table *opp_table)
b6160e26 842{
f067a982
VK
843 kref_get(&opp_table->kref);
844}
845
eb7c8743 846static struct opp_table *_opp_get_opp_table(struct device *dev, int index)
f067a982
VK
847{
848 struct opp_table *opp_table;
849
850 /* Hold our table modification lock here */
851 mutex_lock(&opp_table_lock);
852
5b650b38
VK
853 opp_table = _find_opp_table_unlocked(dev);
854 if (!IS_ERR(opp_table))
f067a982 855 goto unlock;
f067a982 856
283d55e6
VK
857 opp_table = _managed_opp(dev, index);
858 if (opp_table) {
859 if (!_add_opp_dev_unlocked(dev, opp_table)) {
860 dev_pm_opp_put_opp_table(opp_table);
861 opp_table = NULL;
862 }
863 goto unlock;
864 }
865
eb7c8743 866 opp_table = _allocate_opp_table(dev, index);
f067a982
VK
867
868unlock:
869 mutex_unlock(&opp_table_lock);
870
871 return opp_table;
872}
eb7c8743
VK
873
874struct opp_table *dev_pm_opp_get_opp_table(struct device *dev)
875{
876 return _opp_get_opp_table(dev, 0);
877}
f067a982
VK
878EXPORT_SYMBOL_GPL(dev_pm_opp_get_opp_table);
879
eb7c8743
VK
880struct opp_table *dev_pm_opp_get_opp_table_indexed(struct device *dev,
881 int index)
882{
883 return _opp_get_opp_table(dev, index);
884}
885
b83c1899 886static void _opp_table_kref_release(struct kref *kref)
f067a982
VK
887{
888 struct opp_table *opp_table = container_of(kref, struct opp_table, kref);
cdd6ed90 889 struct opp_device *opp_dev, *temp;
b6160e26
VK
890
891 /* Release clk */
892 if (!IS_ERR(opp_table->clk))
893 clk_put(opp_table->clk);
894
cdd6ed90 895 WARN_ON(!list_empty(&opp_table->opp_list));
b6160e26 896
cdd6ed90
VK
897 list_for_each_entry_safe(opp_dev, temp, &opp_table->dev_list, node) {
898 /*
899 * The OPP table is getting removed, drop the performance state
900 * constraints.
901 */
902 if (opp_table->genpd_performance_state)
903 dev_pm_genpd_set_performance_state((struct device *)(opp_dev->dev), 0);
b6160e26 904
cdd6ed90
VK
905 _remove_opp_dev(opp_dev, opp_table);
906 }
b6160e26 907
37a73ec0 908 mutex_destroy(&opp_table->lock);
052c6f19
VK
909 list_del(&opp_table->node);
910 kfree(opp_table);
b6160e26 911
f067a982
VK
912 mutex_unlock(&opp_table_lock);
913}
914
d0e8ae6c
VK
915void _opp_remove_all_static(struct opp_table *opp_table)
916{
917 struct dev_pm_opp *opp, *tmp;
918
919 list_for_each_entry_safe(opp, tmp, &opp_table->opp_list, node) {
920 if (!opp->dynamic)
921 dev_pm_opp_put(opp);
922 }
923
924 opp_table->parsed_static_opps = false;
925}
926
927static void _opp_table_list_kref_release(struct kref *kref)
928{
929 struct opp_table *opp_table = container_of(kref, struct opp_table,
930 list_kref);
931
932 _opp_remove_all_static(opp_table);
933 mutex_unlock(&opp_table_lock);
934}
935
936void _put_opp_list_kref(struct opp_table *opp_table)
937{
938 kref_put_mutex(&opp_table->list_kref, _opp_table_list_kref_release,
939 &opp_table_lock);
940}
941
f067a982
VK
942void dev_pm_opp_put_opp_table(struct opp_table *opp_table)
943{
944 kref_put_mutex(&opp_table->kref, _opp_table_kref_release,
945 &opp_table_lock);
946}
947EXPORT_SYMBOL_GPL(dev_pm_opp_put_opp_table);
948
8cd2f6e8 949void _opp_free(struct dev_pm_opp *opp)
969fceb3
VK
950{
951 kfree(opp);
969fceb3
VK
952}
953
7034764a 954static void _opp_kref_release(struct kref *kref)
129eec55 955{
7034764a
VK
956 struct dev_pm_opp *opp = container_of(kref, struct dev_pm_opp, kref);
957 struct opp_table *opp_table = opp->opp_table;
37a73ec0 958
129eec55
VK
959 /*
960 * Notify the changes in the availability of the operable
961 * frequency/voltage list.
962 */
052c6f19 963 blocking_notifier_call_chain(&opp_table->head, OPP_EVENT_REMOVE, opp);
deaa5146 964 opp_debug_remove_one(opp);
052c6f19
VK
965 list_del(&opp->node);
966 kfree(opp);
129eec55 967
37a73ec0 968 mutex_unlock(&opp_table->lock);
129eec55
VK
969}
970
a88bd2a5 971void dev_pm_opp_get(struct dev_pm_opp *opp)
8a31d9d9
VK
972{
973 kref_get(&opp->kref);
974}
975
7034764a
VK
976void dev_pm_opp_put(struct dev_pm_opp *opp)
977{
978 kref_put_mutex(&opp->kref, _opp_kref_release, &opp->opp_table->lock);
979}
980EXPORT_SYMBOL_GPL(dev_pm_opp_put);
981
129eec55 982/**
2c2709dc 983 * dev_pm_opp_remove() - Remove an OPP from OPP table
129eec55
VK
984 * @dev: device for which we do this operation
985 * @freq: OPP to remove with matching 'freq'
986 *
2c2709dc 987 * This function removes an opp from the opp table.
129eec55
VK
988 */
989void dev_pm_opp_remove(struct device *dev, unsigned long freq)
990{
991 struct dev_pm_opp *opp;
2c2709dc 992 struct opp_table *opp_table;
129eec55
VK
993 bool found = false;
994
2c2709dc
VK
995 opp_table = _find_opp_table(dev);
996 if (IS_ERR(opp_table))
5b650b38 997 return;
129eec55 998
37a73ec0
VK
999 mutex_lock(&opp_table->lock);
1000
2c2709dc 1001 list_for_each_entry(opp, &opp_table->opp_list, node) {
129eec55
VK
1002 if (opp->rate == freq) {
1003 found = true;
1004 break;
1005 }
1006 }
1007
37a73ec0
VK
1008 mutex_unlock(&opp_table->lock);
1009
5b650b38
VK
1010 if (found) {
1011 dev_pm_opp_put(opp);
0ad8c623
VK
1012
1013 /* Drop the reference taken by dev_pm_opp_add() */
1014 dev_pm_opp_put_opp_table(opp_table);
5b650b38 1015 } else {
129eec55
VK
1016 dev_warn(dev, "%s: Couldn't find OPP with freq: %lu\n",
1017 __func__, freq);
129eec55
VK
1018 }
1019
0ad8c623 1020 /* Drop the reference taken by _find_opp_table() */
5b650b38 1021 dev_pm_opp_put_opp_table(opp_table);
129eec55
VK
1022}
1023EXPORT_SYMBOL_GPL(dev_pm_opp_remove);
1024
8cd2f6e8 1025struct dev_pm_opp *_opp_allocate(struct opp_table *table)
e1f60b29 1026{
23dacf6d 1027 struct dev_pm_opp *opp;
dfbe4678 1028 int count, supply_size;
e1f60b29 1029
dfbe4678
VK
1030 /* Allocate space for at least one supply */
1031 count = table->regulator_count ? table->regulator_count : 1;
1032 supply_size = sizeof(*opp->supplies) * count;
e1f60b29 1033
dfbe4678
VK
1034 /* allocate new OPP node and supplies structures */
1035 opp = kzalloc(sizeof(*opp) + supply_size, GFP_KERNEL);
8cd2f6e8 1036 if (!opp)
23dacf6d 1037 return NULL;
23dacf6d 1038
dfbe4678
VK
1039 /* Put the supplies at the end of the OPP structure as an empty array */
1040 opp->supplies = (struct dev_pm_opp_supply *)(opp + 1);
1041 INIT_LIST_HEAD(&opp->node);
1042
23dacf6d
VK
1043 return opp;
1044}
1045
7d34d56e 1046static bool _opp_supported_by_regulators(struct dev_pm_opp *opp,
2c2709dc 1047 struct opp_table *opp_table)
7d34d56e 1048{
dfbe4678
VK
1049 struct regulator *reg;
1050 int i;
1051
1052 for (i = 0; i < opp_table->regulator_count; i++) {
1053 reg = opp_table->regulators[i];
1054
1055 if (!regulator_is_supported_voltage(reg,
1056 opp->supplies[i].u_volt_min,
1057 opp->supplies[i].u_volt_max)) {
1058 pr_warn("%s: OPP minuV: %lu maxuV: %lu, not supported by regulator\n",
1059 __func__, opp->supplies[i].u_volt_min,
1060 opp->supplies[i].u_volt_max);
1061 return false;
1062 }
7d34d56e
VK
1063 }
1064
1065 return true;
1066}
1067
a1e8c136
VK
1068static int _opp_is_duplicate(struct device *dev, struct dev_pm_opp *new_opp,
1069 struct opp_table *opp_table,
1070 struct list_head **head)
23dacf6d
VK
1071{
1072 struct dev_pm_opp *opp;
23dacf6d
VK
1073
1074 /*
1075 * Insert new OPP in order of increasing frequency and discard if
1076 * already present.
1077 *
2c2709dc 1078 * Need to use &opp_table->opp_list in the condition part of the 'for'
23dacf6d
VK
1079 * loop, don't replace it with head otherwise it will become an infinite
1080 * loop.
1081 */
052c6f19 1082 list_for_each_entry(opp, &opp_table->opp_list, node) {
23dacf6d 1083 if (new_opp->rate > opp->rate) {
a1e8c136 1084 *head = &opp->node;
23dacf6d
VK
1085 continue;
1086 }
1087
1088 if (new_opp->rate < opp->rate)
a1e8c136 1089 return 0;
23dacf6d
VK
1090
1091 /* Duplicate OPPs */
06441658 1092 dev_warn(dev, "%s: duplicate OPPs detected. Existing: freq: %lu, volt: %lu, enabled: %d. New: freq: %lu, volt: %lu, enabled: %d\n",
dfbe4678
VK
1093 __func__, opp->rate, opp->supplies[0].u_volt,
1094 opp->available, new_opp->rate,
1095 new_opp->supplies[0].u_volt, new_opp->available);
23dacf6d 1096
dfbe4678 1097 /* Should we compare voltages for all regulators here ? */
a1e8c136
VK
1098 return opp->available &&
1099 new_opp->supplies[0].u_volt == opp->supplies[0].u_volt ? -EBUSY : -EEXIST;
1100 }
1101
1102 return 0;
1103}
1104
1105/*
1106 * Returns:
1107 * 0: On success. And appropriate error message for duplicate OPPs.
1108 * -EBUSY: For OPP with same freq/volt and is available. The callers of
1109 * _opp_add() must return 0 if they receive -EBUSY from it. This is to make
1110 * sure we don't print error messages unnecessarily if different parts of
1111 * kernel try to initialize the OPP table.
1112 * -EEXIST: For OPP with same freq but different volt or is unavailable. This
1113 * should be considered an error by the callers of _opp_add().
1114 */
1115int _opp_add(struct device *dev, struct dev_pm_opp *new_opp,
1116 struct opp_table *opp_table, bool rate_not_available)
1117{
1118 struct list_head *head;
1119 int ret;
1120
1121 mutex_lock(&opp_table->lock);
1122 head = &opp_table->opp_list;
37a73ec0 1123
a1e8c136
VK
1124 if (likely(!rate_not_available)) {
1125 ret = _opp_is_duplicate(dev, new_opp, opp_table, &head);
1126 if (ret) {
1127 mutex_unlock(&opp_table->lock);
1128 return ret;
1129 }
23dacf6d
VK
1130 }
1131
052c6f19 1132 list_add(&new_opp->node, head);
37a73ec0
VK
1133 mutex_unlock(&opp_table->lock);
1134
1135 new_opp->opp_table = opp_table;
7034764a 1136 kref_init(&new_opp->kref);
23dacf6d 1137
2c2709dc 1138 ret = opp_debug_create_one(new_opp, opp_table);
deaa5146
VK
1139 if (ret)
1140 dev_err(dev, "%s: Failed to register opp to debugfs (%d)\n",
1141 __func__, ret);
1142
2c2709dc 1143 if (!_opp_supported_by_regulators(new_opp, opp_table)) {
7d34d56e
VK
1144 new_opp->available = false;
1145 dev_warn(dev, "%s: OPP not supported by regulators (%lu)\n",
1146 __func__, new_opp->rate);
1147 }
1148
23dacf6d
VK
1149 return 0;
1150}
1151
984f16c8 1152/**
b64b9c3f 1153 * _opp_add_v1() - Allocate a OPP based on v1 bindings.
8cd2f6e8 1154 * @opp_table: OPP table
984f16c8
NM
1155 * @dev: device for which we do this operation
1156 * @freq: Frequency in Hz for this OPP
1157 * @u_volt: Voltage in uVolts for this OPP
1158 * @dynamic: Dynamically added OPPs.
1159 *
2c2709dc 1160 * This function adds an opp definition to the opp table and returns status.
984f16c8
NM
1161 * The opp is made available by default and it can be controlled using
1162 * dev_pm_opp_enable/disable functions and may be removed by dev_pm_opp_remove.
1163 *
8f8d37b2
VK
1164 * NOTE: "dynamic" parameter impacts OPPs added by the dev_pm_opp_of_add_table
1165 * and freed by dev_pm_opp_of_remove_table.
984f16c8 1166 *
984f16c8
NM
1167 * Return:
1168 * 0 On success OR
1169 * Duplicate OPPs (both freq and volt are same) and opp->available
1170 * -EEXIST Freq are same and volt are different OR
1171 * Duplicate OPPs (both freq and volt are same) and !opp->available
1172 * -ENOMEM Memory allocation failure
1173 */
8cd2f6e8
VK
1174int _opp_add_v1(struct opp_table *opp_table, struct device *dev,
1175 unsigned long freq, long u_volt, bool dynamic)
e1f60b29 1176{
23dacf6d 1177 struct dev_pm_opp *new_opp;
50f8cfbd 1178 unsigned long tol;
6ce4184d 1179 int ret;
e1f60b29 1180
8cd2f6e8
VK
1181 new_opp = _opp_allocate(opp_table);
1182 if (!new_opp)
1183 return -ENOMEM;
23dacf6d 1184
a7470db6 1185 /* populate the opp table */
a7470db6 1186 new_opp->rate = freq;
2c2709dc 1187 tol = u_volt * opp_table->voltage_tolerance_v1 / 100;
dfbe4678
VK
1188 new_opp->supplies[0].u_volt = u_volt;
1189 new_opp->supplies[0].u_volt_min = u_volt - tol;
1190 new_opp->supplies[0].u_volt_max = u_volt + tol;
a7470db6 1191 new_opp->available = true;
23dacf6d 1192 new_opp->dynamic = dynamic;
a7470db6 1193
a1e8c136 1194 ret = _opp_add(dev, new_opp, opp_table, false);
7f8538eb
VK
1195 if (ret) {
1196 /* Don't return error for duplicate OPPs */
1197 if (ret == -EBUSY)
1198 ret = 0;
6ce4184d 1199 goto free_opp;
7f8538eb 1200 }
64ce8545 1201
03ca370f
MH
1202 /*
1203 * Notify the changes in the availability of the operable
1204 * frequency/voltage list.
1205 */
052c6f19 1206 blocking_notifier_call_chain(&opp_table->head, OPP_EVENT_ADD, new_opp);
e1f60b29 1207 return 0;
6ce4184d
VK
1208
1209free_opp:
8cd2f6e8
VK
1210 _opp_free(new_opp);
1211
6ce4184d 1212 return ret;
e1f60b29 1213}
38393409 1214
7de36b0a
VK
1215/**
1216 * dev_pm_opp_set_supported_hw() - Set supported platforms
1217 * @dev: Device for which supported-hw has to be set.
1218 * @versions: Array of hierarchy of versions to match.
1219 * @count: Number of elements in the array.
1220 *
1221 * This is required only for the V2 bindings, and it enables a platform to
1222 * specify the hierarchy of versions it supports. OPP layer will then enable
1223 * OPPs, which are available for those versions, based on its 'opp-supported-hw'
1224 * property.
7de36b0a 1225 */
fa30184d
VK
1226struct opp_table *dev_pm_opp_set_supported_hw(struct device *dev,
1227 const u32 *versions, unsigned int count)
7de36b0a 1228{
2c2709dc 1229 struct opp_table *opp_table;
7de36b0a 1230
fa30184d
VK
1231 opp_table = dev_pm_opp_get_opp_table(dev);
1232 if (!opp_table)
1233 return ERR_PTR(-ENOMEM);
7de36b0a 1234
2c2709dc
VK
1235 /* Make sure there are no concurrent readers while updating opp_table */
1236 WARN_ON(!list_empty(&opp_table->opp_list));
7de36b0a 1237
25419de1
VK
1238 /* Another CPU that shares the OPP table has set the property ? */
1239 if (opp_table->supported_hw)
1240 return opp_table;
7de36b0a 1241
2c2709dc 1242 opp_table->supported_hw = kmemdup(versions, count * sizeof(*versions),
7de36b0a 1243 GFP_KERNEL);
2c2709dc 1244 if (!opp_table->supported_hw) {
25419de1
VK
1245 dev_pm_opp_put_opp_table(opp_table);
1246 return ERR_PTR(-ENOMEM);
7de36b0a
VK
1247 }
1248
2c2709dc 1249 opp_table->supported_hw_count = count;
fa30184d
VK
1250
1251 return opp_table;
7de36b0a
VK
1252}
1253EXPORT_SYMBOL_GPL(dev_pm_opp_set_supported_hw);
1254
1255/**
1256 * dev_pm_opp_put_supported_hw() - Releases resources blocked for supported hw
fa30184d 1257 * @opp_table: OPP table returned by dev_pm_opp_set_supported_hw().
7de36b0a
VK
1258 *
1259 * This is required only for the V2 bindings, and is called for a matching
2c2709dc 1260 * dev_pm_opp_set_supported_hw(). Until this is called, the opp_table structure
7de36b0a 1261 * will not be freed.
7de36b0a 1262 */
fa30184d 1263void dev_pm_opp_put_supported_hw(struct opp_table *opp_table)
7de36b0a 1264{
2c2709dc
VK
1265 /* Make sure there are no concurrent readers while updating opp_table */
1266 WARN_ON(!list_empty(&opp_table->opp_list));
7de36b0a 1267
2c2709dc
VK
1268 kfree(opp_table->supported_hw);
1269 opp_table->supported_hw = NULL;
1270 opp_table->supported_hw_count = 0;
7de36b0a 1271
fa30184d 1272 dev_pm_opp_put_opp_table(opp_table);
7de36b0a
VK
1273}
1274EXPORT_SYMBOL_GPL(dev_pm_opp_put_supported_hw);
1275
01fb4d3c
VK
1276/**
1277 * dev_pm_opp_set_prop_name() - Set prop-extn name
a5da6447 1278 * @dev: Device for which the prop-name has to be set.
01fb4d3c
VK
1279 * @name: name to postfix to properties.
1280 *
1281 * This is required only for the V2 bindings, and it enables a platform to
1282 * specify the extn to be used for certain property names. The properties to
1283 * which the extension will apply are opp-microvolt and opp-microamp. OPP core
1284 * should postfix the property name with -<name> while looking for them.
01fb4d3c 1285 */
fa30184d 1286struct opp_table *dev_pm_opp_set_prop_name(struct device *dev, const char *name)
01fb4d3c 1287{
2c2709dc 1288 struct opp_table *opp_table;
01fb4d3c 1289
fa30184d
VK
1290 opp_table = dev_pm_opp_get_opp_table(dev);
1291 if (!opp_table)
1292 return ERR_PTR(-ENOMEM);
01fb4d3c 1293
2c2709dc
VK
1294 /* Make sure there are no concurrent readers while updating opp_table */
1295 WARN_ON(!list_empty(&opp_table->opp_list));
01fb4d3c 1296
878ec1a9
VK
1297 /* Another CPU that shares the OPP table has set the property ? */
1298 if (opp_table->prop_name)
1299 return opp_table;
01fb4d3c 1300
2c2709dc
VK
1301 opp_table->prop_name = kstrdup(name, GFP_KERNEL);
1302 if (!opp_table->prop_name) {
878ec1a9
VK
1303 dev_pm_opp_put_opp_table(opp_table);
1304 return ERR_PTR(-ENOMEM);
01fb4d3c
VK
1305 }
1306
fa30184d 1307 return opp_table;
01fb4d3c
VK
1308}
1309EXPORT_SYMBOL_GPL(dev_pm_opp_set_prop_name);
1310
1311/**
1312 * dev_pm_opp_put_prop_name() - Releases resources blocked for prop-name
fa30184d 1313 * @opp_table: OPP table returned by dev_pm_opp_set_prop_name().
01fb4d3c
VK
1314 *
1315 * This is required only for the V2 bindings, and is called for a matching
2c2709dc 1316 * dev_pm_opp_set_prop_name(). Until this is called, the opp_table structure
01fb4d3c 1317 * will not be freed.
01fb4d3c 1318 */
fa30184d 1319void dev_pm_opp_put_prop_name(struct opp_table *opp_table)
01fb4d3c 1320{
2c2709dc
VK
1321 /* Make sure there are no concurrent readers while updating opp_table */
1322 WARN_ON(!list_empty(&opp_table->opp_list));
01fb4d3c 1323
2c2709dc
VK
1324 kfree(opp_table->prop_name);
1325 opp_table->prop_name = NULL;
01fb4d3c 1326
fa30184d 1327 dev_pm_opp_put_opp_table(opp_table);
01fb4d3c
VK
1328}
1329EXPORT_SYMBOL_GPL(dev_pm_opp_put_prop_name);
1330
94735585
VK
1331static int _allocate_set_opp_data(struct opp_table *opp_table)
1332{
1333 struct dev_pm_set_opp_data *data;
1334 int len, count = opp_table->regulator_count;
1335
1336 if (WARN_ON(!count))
1337 return -EINVAL;
1338
1339 /* space for set_opp_data */
1340 len = sizeof(*data);
1341
1342 /* space for old_opp.supplies and new_opp.supplies */
1343 len += 2 * sizeof(struct dev_pm_opp_supply) * count;
1344
1345 data = kzalloc(len, GFP_KERNEL);
1346 if (!data)
1347 return -ENOMEM;
1348
1349 data->old_opp.supplies = (void *)(data + 1);
1350 data->new_opp.supplies = data->old_opp.supplies + count;
1351
1352 opp_table->set_opp_data = data;
1353
1354 return 0;
1355}
1356
1357static void _free_set_opp_data(struct opp_table *opp_table)
1358{
1359 kfree(opp_table->set_opp_data);
1360 opp_table->set_opp_data = NULL;
1361}
1362
9f8ea969 1363/**
dfbe4678 1364 * dev_pm_opp_set_regulators() - Set regulator names for the device
9f8ea969 1365 * @dev: Device for which regulator name is being set.
dfbe4678
VK
1366 * @names: Array of pointers to the names of the regulator.
1367 * @count: Number of regulators.
9f8ea969
VK
1368 *
1369 * In order to support OPP switching, OPP layer needs to know the name of the
dfbe4678
VK
1370 * device's regulators, as the core would be required to switch voltages as
1371 * well.
9f8ea969
VK
1372 *
1373 * This must be called before any OPPs are initialized for the device.
9f8ea969 1374 */
dfbe4678
VK
1375struct opp_table *dev_pm_opp_set_regulators(struct device *dev,
1376 const char * const names[],
1377 unsigned int count)
9f8ea969 1378{
2c2709dc 1379 struct opp_table *opp_table;
9f8ea969 1380 struct regulator *reg;
dfbe4678 1381 int ret, i;
9f8ea969 1382
fa30184d
VK
1383 opp_table = dev_pm_opp_get_opp_table(dev);
1384 if (!opp_table)
1385 return ERR_PTR(-ENOMEM);
9f8ea969
VK
1386
1387 /* This should be called before OPPs are initialized */
2c2709dc 1388 if (WARN_ON(!list_empty(&opp_table->opp_list))) {
9f8ea969
VK
1389 ret = -EBUSY;
1390 goto err;
1391 }
1392
779b783c
VK
1393 /* Another CPU that shares the OPP table has set the regulators ? */
1394 if (opp_table->regulators)
1395 return opp_table;
dfbe4678
VK
1396
1397 opp_table->regulators = kmalloc_array(count,
1398 sizeof(*opp_table->regulators),
1399 GFP_KERNEL);
1400 if (!opp_table->regulators) {
1401 ret = -ENOMEM;
9f8ea969
VK
1402 goto err;
1403 }
1404
dfbe4678
VK
1405 for (i = 0; i < count; i++) {
1406 reg = regulator_get_optional(dev, names[i]);
1407 if (IS_ERR(reg)) {
1408 ret = PTR_ERR(reg);
1409 if (ret != -EPROBE_DEFER)
1410 dev_err(dev, "%s: no regulator (%s) found: %d\n",
1411 __func__, names[i], ret);
1412 goto free_regulators;
1413 }
1414
1415 opp_table->regulators[i] = reg;
1416 }
1417
1418 opp_table->regulator_count = count;
9f8ea969 1419
94735585
VK
1420 /* Allocate block only once to pass to set_opp() routines */
1421 ret = _allocate_set_opp_data(opp_table);
1422 if (ret)
1423 goto free_regulators;
1424
91291d9a 1425 return opp_table;
9f8ea969 1426
dfbe4678
VK
1427free_regulators:
1428 while (i != 0)
1429 regulator_put(opp_table->regulators[--i]);
1430
1431 kfree(opp_table->regulators);
1432 opp_table->regulators = NULL;
94735585 1433 opp_table->regulator_count = 0;
9f8ea969 1434err:
fa30184d 1435 dev_pm_opp_put_opp_table(opp_table);
9f8ea969 1436
91291d9a 1437 return ERR_PTR(ret);
9f8ea969 1438}
dfbe4678 1439EXPORT_SYMBOL_GPL(dev_pm_opp_set_regulators);
9f8ea969
VK
1440
1441/**
dfbe4678
VK
1442 * dev_pm_opp_put_regulators() - Releases resources blocked for regulator
1443 * @opp_table: OPP table returned from dev_pm_opp_set_regulators().
9f8ea969 1444 */
dfbe4678 1445void dev_pm_opp_put_regulators(struct opp_table *opp_table)
9f8ea969 1446{
dfbe4678
VK
1447 int i;
1448
779b783c
VK
1449 if (!opp_table->regulators)
1450 goto put_opp_table;
9f8ea969 1451
2c2709dc
VK
1452 /* Make sure there are no concurrent readers while updating opp_table */
1453 WARN_ON(!list_empty(&opp_table->opp_list));
9f8ea969 1454
dfbe4678
VK
1455 for (i = opp_table->regulator_count - 1; i >= 0; i--)
1456 regulator_put(opp_table->regulators[i]);
1457
94735585
VK
1458 _free_set_opp_data(opp_table);
1459
dfbe4678
VK
1460 kfree(opp_table->regulators);
1461 opp_table->regulators = NULL;
1462 opp_table->regulator_count = 0;
9f8ea969 1463
779b783c 1464put_opp_table:
fa30184d 1465 dev_pm_opp_put_opp_table(opp_table);
9f8ea969 1466}
dfbe4678 1467EXPORT_SYMBOL_GPL(dev_pm_opp_put_regulators);
9f8ea969 1468
829a4e8c
VK
1469/**
1470 * dev_pm_opp_set_clkname() - Set clk name for the device
1471 * @dev: Device for which clk name is being set.
1472 * @name: Clk name.
1473 *
1474 * In order to support OPP switching, OPP layer needs to get pointer to the
1475 * clock for the device. Simple cases work fine without using this routine (i.e.
1476 * by passing connection-id as NULL), but for a device with multiple clocks
1477 * available, the OPP core needs to know the exact name of the clk to use.
1478 *
1479 * This must be called before any OPPs are initialized for the device.
1480 */
1481struct opp_table *dev_pm_opp_set_clkname(struct device *dev, const char *name)
1482{
1483 struct opp_table *opp_table;
1484 int ret;
1485
1486 opp_table = dev_pm_opp_get_opp_table(dev);
1487 if (!opp_table)
1488 return ERR_PTR(-ENOMEM);
1489
1490 /* This should be called before OPPs are initialized */
1491 if (WARN_ON(!list_empty(&opp_table->opp_list))) {
1492 ret = -EBUSY;
1493 goto err;
1494 }
1495
1496 /* Already have default clk set, free it */
1497 if (!IS_ERR(opp_table->clk))
1498 clk_put(opp_table->clk);
1499
1500 /* Find clk for the device */
1501 opp_table->clk = clk_get(dev, name);
1502 if (IS_ERR(opp_table->clk)) {
1503 ret = PTR_ERR(opp_table->clk);
1504 if (ret != -EPROBE_DEFER) {
1505 dev_err(dev, "%s: Couldn't find clock: %d\n", __func__,
1506 ret);
1507 }
1508 goto err;
1509 }
1510
1511 return opp_table;
1512
1513err:
1514 dev_pm_opp_put_opp_table(opp_table);
1515
1516 return ERR_PTR(ret);
1517}
1518EXPORT_SYMBOL_GPL(dev_pm_opp_set_clkname);
1519
1520/**
1521 * dev_pm_opp_put_clkname() - Releases resources blocked for clk.
1522 * @opp_table: OPP table returned from dev_pm_opp_set_clkname().
1523 */
1524void dev_pm_opp_put_clkname(struct opp_table *opp_table)
1525{
1526 /* Make sure there are no concurrent readers while updating opp_table */
1527 WARN_ON(!list_empty(&opp_table->opp_list));
1528
1529 clk_put(opp_table->clk);
1530 opp_table->clk = ERR_PTR(-EINVAL);
1531
1532 dev_pm_opp_put_opp_table(opp_table);
1533}
1534EXPORT_SYMBOL_GPL(dev_pm_opp_put_clkname);
1535
4dab160e
VK
1536/**
1537 * dev_pm_opp_register_set_opp_helper() - Register custom set OPP helper
1538 * @dev: Device for which the helper is getting registered.
1539 * @set_opp: Custom set OPP helper.
1540 *
1541 * This is useful to support complex platforms (like platforms with multiple
1542 * regulators per device), instead of the generic OPP set rate helper.
1543 *
1544 * This must be called before any OPPs are initialized for the device.
4dab160e 1545 */
fa30184d 1546struct opp_table *dev_pm_opp_register_set_opp_helper(struct device *dev,
4dab160e
VK
1547 int (*set_opp)(struct dev_pm_set_opp_data *data))
1548{
1549 struct opp_table *opp_table;
4dab160e
VK
1550
1551 if (!set_opp)
fa30184d 1552 return ERR_PTR(-EINVAL);
4dab160e 1553
fa30184d
VK
1554 opp_table = dev_pm_opp_get_opp_table(dev);
1555 if (!opp_table)
1556 return ERR_PTR(-ENOMEM);
4dab160e
VK
1557
1558 /* This should be called before OPPs are initialized */
1559 if (WARN_ON(!list_empty(&opp_table->opp_list))) {
5019acc6
VK
1560 dev_pm_opp_put_opp_table(opp_table);
1561 return ERR_PTR(-EBUSY);
4dab160e
VK
1562 }
1563
5019acc6
VK
1564 /* Another CPU that shares the OPP table has set the helper ? */
1565 if (!opp_table->set_opp)
1566 opp_table->set_opp = set_opp;
4dab160e 1567
fa30184d 1568 return opp_table;
4dab160e
VK
1569}
1570EXPORT_SYMBOL_GPL(dev_pm_opp_register_set_opp_helper);
1571
1572/**
604a7aeb 1573 * dev_pm_opp_unregister_set_opp_helper() - Releases resources blocked for
4dab160e 1574 * set_opp helper
fa30184d 1575 * @opp_table: OPP table returned from dev_pm_opp_register_set_opp_helper().
4dab160e 1576 *
fa30184d 1577 * Release resources blocked for platform specific set_opp helper.
4dab160e 1578 */
604a7aeb 1579void dev_pm_opp_unregister_set_opp_helper(struct opp_table *opp_table)
4dab160e 1580{
4dab160e
VK
1581 /* Make sure there are no concurrent readers while updating opp_table */
1582 WARN_ON(!list_empty(&opp_table->opp_list));
1583
1584 opp_table->set_opp = NULL;
fa30184d 1585 dev_pm_opp_put_opp_table(opp_table);
4dab160e 1586}
604a7aeb 1587EXPORT_SYMBOL_GPL(dev_pm_opp_unregister_set_opp_helper);
4dab160e 1588
38393409
VK
1589/**
1590 * dev_pm_opp_add() - Add an OPP table from a table definitions
1591 * @dev: device for which we do this operation
1592 * @freq: Frequency in Hz for this OPP
1593 * @u_volt: Voltage in uVolts for this OPP
1594 *
2c2709dc 1595 * This function adds an opp definition to the opp table and returns status.
38393409
VK
1596 * The opp is made available by default and it can be controlled using
1597 * dev_pm_opp_enable/disable functions.
1598 *
38393409 1599 * Return:
984f16c8 1600 * 0 On success OR
38393409 1601 * Duplicate OPPs (both freq and volt are same) and opp->available
984f16c8 1602 * -EEXIST Freq are same and volt are different OR
38393409 1603 * Duplicate OPPs (both freq and volt are same) and !opp->available
984f16c8 1604 * -ENOMEM Memory allocation failure
38393409
VK
1605 */
1606int dev_pm_opp_add(struct device *dev, unsigned long freq, unsigned long u_volt)
1607{
8cd2f6e8
VK
1608 struct opp_table *opp_table;
1609 int ret;
1610
b83c1899
VK
1611 opp_table = dev_pm_opp_get_opp_table(dev);
1612 if (!opp_table)
1613 return -ENOMEM;
8cd2f6e8
VK
1614
1615 ret = _opp_add_v1(opp_table, dev, freq, u_volt, true);
0ad8c623
VK
1616 if (ret)
1617 dev_pm_opp_put_opp_table(opp_table);
8cd2f6e8 1618
8cd2f6e8 1619 return ret;
38393409 1620}
5d4879cd 1621EXPORT_SYMBOL_GPL(dev_pm_opp_add);
e1f60b29
NM
1622
1623/**
327854c8 1624 * _opp_set_availability() - helper to set the availability of an opp
e1f60b29
NM
1625 * @dev: device for which we do this operation
1626 * @freq: OPP frequency to modify availability
1627 * @availability_req: availability status requested for this opp
1628 *
052c6f19
VK
1629 * Set the availability of an OPP, opp_{enable,disable} share a common logic
1630 * which is isolated here.
e1f60b29 1631 *
984f16c8 1632 * Return: -EINVAL for bad pointers, -ENOMEM if no memory available for the
e1a2d49c 1633 * copy operation, returns 0 if no modification was done OR modification was
e1f60b29 1634 * successful.
e1f60b29 1635 */
327854c8
NM
1636static int _opp_set_availability(struct device *dev, unsigned long freq,
1637 bool availability_req)
e1f60b29 1638{
2c2709dc 1639 struct opp_table *opp_table;
a7f3987e 1640 struct dev_pm_opp *tmp_opp, *opp = ERR_PTR(-ENODEV);
e1f60b29
NM
1641 int r = 0;
1642
2c2709dc
VK
1643 /* Find the opp_table */
1644 opp_table = _find_opp_table(dev);
1645 if (IS_ERR(opp_table)) {
1646 r = PTR_ERR(opp_table);
e1f60b29 1647 dev_warn(dev, "%s: Device OPP not found (%d)\n", __func__, r);
a7f3987e 1648 return r;
e1f60b29
NM
1649 }
1650
37a73ec0
VK
1651 mutex_lock(&opp_table->lock);
1652
e1f60b29 1653 /* Do we have the frequency? */
2c2709dc 1654 list_for_each_entry(tmp_opp, &opp_table->opp_list, node) {
e1f60b29
NM
1655 if (tmp_opp->rate == freq) {
1656 opp = tmp_opp;
1657 break;
1658 }
1659 }
37a73ec0 1660
e1f60b29
NM
1661 if (IS_ERR(opp)) {
1662 r = PTR_ERR(opp);
1663 goto unlock;
1664 }
1665
1666 /* Is update really needed? */
1667 if (opp->available == availability_req)
1668 goto unlock;
e1f60b29 1669
a7f3987e 1670 opp->available = availability_req;
e1f60b29 1671
e4d8ae00
VK
1672 dev_pm_opp_get(opp);
1673 mutex_unlock(&opp_table->lock);
1674
03ca370f
MH
1675 /* Notify the change of the OPP availability */
1676 if (availability_req)
052c6f19 1677 blocking_notifier_call_chain(&opp_table->head, OPP_EVENT_ENABLE,
a7f3987e 1678 opp);
03ca370f 1679 else
052c6f19 1680 blocking_notifier_call_chain(&opp_table->head,
a7f3987e 1681 OPP_EVENT_DISABLE, opp);
e1f60b29 1682
e4d8ae00
VK
1683 dev_pm_opp_put(opp);
1684 goto put_table;
1685
e1f60b29 1686unlock:
5b650b38 1687 mutex_unlock(&opp_table->lock);
e4d8ae00 1688put_table:
5b650b38 1689 dev_pm_opp_put_opp_table(opp_table);
e1f60b29
NM
1690 return r;
1691}
1692
1693/**
5d4879cd 1694 * dev_pm_opp_enable() - Enable a specific OPP
e1f60b29
NM
1695 * @dev: device for which we do this operation
1696 * @freq: OPP frequency to enable
1697 *
1698 * Enables a provided opp. If the operation is valid, this returns 0, else the
1699 * corresponding error value. It is meant to be used for users an OPP available
5d4879cd 1700 * after being temporarily made unavailable with dev_pm_opp_disable.
e1f60b29 1701 *
984f16c8 1702 * Return: -EINVAL for bad pointers, -ENOMEM if no memory available for the
e1a2d49c 1703 * copy operation, returns 0 if no modification was done OR modification was
984f16c8 1704 * successful.
e1f60b29 1705 */
5d4879cd 1706int dev_pm_opp_enable(struct device *dev, unsigned long freq)
e1f60b29 1707{
327854c8 1708 return _opp_set_availability(dev, freq, true);
e1f60b29 1709}
5d4879cd 1710EXPORT_SYMBOL_GPL(dev_pm_opp_enable);
e1f60b29
NM
1711
1712/**
5d4879cd 1713 * dev_pm_opp_disable() - Disable a specific OPP
e1f60b29
NM
1714 * @dev: device for which we do this operation
1715 * @freq: OPP frequency to disable
1716 *
1717 * Disables a provided opp. If the operation is valid, this returns
1718 * 0, else the corresponding error value. It is meant to be a temporary
1719 * control by users to make this OPP not available until the circumstances are
5d4879cd 1720 * right to make it available again (with a call to dev_pm_opp_enable).
e1f60b29 1721 *
984f16c8 1722 * Return: -EINVAL for bad pointers, -ENOMEM if no memory available for the
e1a2d49c 1723 * copy operation, returns 0 if no modification was done OR modification was
984f16c8 1724 * successful.
e1f60b29 1725 */
5d4879cd 1726int dev_pm_opp_disable(struct device *dev, unsigned long freq)
e1f60b29 1727{
327854c8 1728 return _opp_set_availability(dev, freq, false);
e1f60b29 1729}
5d4879cd 1730EXPORT_SYMBOL_GPL(dev_pm_opp_disable);
e1f60b29 1731
03ca370f 1732/**
dc2c9ad5
VK
1733 * dev_pm_opp_register_notifier() - Register OPP notifier for the device
1734 * @dev: Device for which notifier needs to be registered
1735 * @nb: Notifier block to be registered
984f16c8 1736 *
dc2c9ad5
VK
1737 * Return: 0 on success or a negative error value.
1738 */
1739int dev_pm_opp_register_notifier(struct device *dev, struct notifier_block *nb)
1740{
1741 struct opp_table *opp_table;
1742 int ret;
1743
dc2c9ad5 1744 opp_table = _find_opp_table(dev);
5b650b38
VK
1745 if (IS_ERR(opp_table))
1746 return PTR_ERR(opp_table);
1747
052c6f19 1748 ret = blocking_notifier_chain_register(&opp_table->head, nb);
dc2c9ad5 1749
5b650b38 1750 dev_pm_opp_put_opp_table(opp_table);
dc2c9ad5
VK
1751
1752 return ret;
1753}
1754EXPORT_SYMBOL(dev_pm_opp_register_notifier);
1755
1756/**
1757 * dev_pm_opp_unregister_notifier() - Unregister OPP notifier for the device
1758 * @dev: Device for which notifier needs to be unregistered
1759 * @nb: Notifier block to be unregistered
984f16c8 1760 *
dc2c9ad5 1761 * Return: 0 on success or a negative error value.
03ca370f 1762 */
dc2c9ad5
VK
1763int dev_pm_opp_unregister_notifier(struct device *dev,
1764 struct notifier_block *nb)
03ca370f 1765{
dc2c9ad5
VK
1766 struct opp_table *opp_table;
1767 int ret;
03ca370f 1768
dc2c9ad5 1769 opp_table = _find_opp_table(dev);
5b650b38
VK
1770 if (IS_ERR(opp_table))
1771 return PTR_ERR(opp_table);
dc2c9ad5 1772
052c6f19 1773 ret = blocking_notifier_chain_unregister(&opp_table->head, nb);
03ca370f 1774
5b650b38 1775 dev_pm_opp_put_opp_table(opp_table);
dc2c9ad5
VK
1776
1777 return ret;
03ca370f 1778}
dc2c9ad5 1779EXPORT_SYMBOL(dev_pm_opp_unregister_notifier);
b496dfbc 1780
2a4eb735 1781void _dev_pm_opp_find_and_remove_table(struct device *dev)
9274c892
VK
1782{
1783 struct opp_table *opp_table;
1784
2c2709dc
VK
1785 /* Check for existing table for 'dev' */
1786 opp_table = _find_opp_table(dev);
1787 if (IS_ERR(opp_table)) {
1788 int error = PTR_ERR(opp_table);
737002b5
VK
1789
1790 if (error != -ENODEV)
2c2709dc 1791 WARN(1, "%s: opp_table: %d\n",
737002b5
VK
1792 IS_ERR_OR_NULL(dev) ?
1793 "Invalid device" : dev_name(dev),
1794 error);
5b650b38 1795 return;
737002b5
VK
1796 }
1797
cdd6ed90
VK
1798 _put_opp_list_kref(opp_table);
1799
1800 /* Drop reference taken by _find_opp_table() */
1801 dev_pm_opp_put_opp_table(opp_table);
737002b5 1802
cdd6ed90 1803 /* Drop reference taken while the OPP table was added */
5b650b38 1804 dev_pm_opp_put_opp_table(opp_table);
737002b5 1805}
129eec55
VK
1806
1807/**
411466c5 1808 * dev_pm_opp_remove_table() - Free all OPPs associated with the device
2c2709dc 1809 * @dev: device pointer used to lookup OPP table.
129eec55 1810 *
411466c5
SH
1811 * Free both OPPs created using static entries present in DT and the
1812 * dynamically added entries.
129eec55 1813 */
411466c5 1814void dev_pm_opp_remove_table(struct device *dev)
129eec55 1815{
2a4eb735 1816 _dev_pm_opp_find_and_remove_table(dev);
8d4d4e98 1817}
411466c5 1818EXPORT_SYMBOL_GPL(dev_pm_opp_remove_table);