1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * A simple sysfs interface for the generic PWM framework
5 * Copyright (C) 2013 H Hartley Sweeten <hsweeten@visionengravers.com>
7 * Based on previous work by Lars Poeschel <poeschel@lemonage.de>
10 #include <linux/device.h>
11 #include <linux/mutex.h>
12 #include <linux/err.h>
13 #include <linux/slab.h>
14 #include <linux/kdev_t.h>
15 #include <linux/pwm.h>
19 struct pwm_device *pwm;
21 struct pwm_state suspend;
24 static struct pwm_export *child_to_pwm_export(struct device *child)
26 return container_of(child, struct pwm_export, child);
29 static struct pwm_device *child_to_pwm_device(struct device *child)
31 struct pwm_export *export = child_to_pwm_export(child);
36 static ssize_t period_show(struct device *child,
37 struct device_attribute *attr,
40 const struct pwm_device *pwm = child_to_pwm_device(child);
41 struct pwm_state state;
43 pwm_get_state(pwm, &state);
45 return sprintf(buf, "%llu\n", state.period);
48 static ssize_t period_store(struct device *child,
49 struct device_attribute *attr,
50 const char *buf, size_t size)
52 struct pwm_export *export = child_to_pwm_export(child);
53 struct pwm_device *pwm = export->pwm;
54 struct pwm_state state;
58 ret = kstrtou64(buf, 0, &val);
62 mutex_lock(&export->lock);
63 pwm_get_state(pwm, &state);
65 ret = pwm_apply_state(pwm, &state);
66 mutex_unlock(&export->lock);
71 static ssize_t duty_cycle_show(struct device *child,
72 struct device_attribute *attr,
75 const struct pwm_device *pwm = child_to_pwm_device(child);
76 struct pwm_state state;
78 pwm_get_state(pwm, &state);
80 return sprintf(buf, "%llu\n", state.duty_cycle);
83 static ssize_t duty_cycle_store(struct device *child,
84 struct device_attribute *attr,
85 const char *buf, size_t size)
87 struct pwm_export *export = child_to_pwm_export(child);
88 struct pwm_device *pwm = export->pwm;
89 struct pwm_state state;
93 ret = kstrtou64(buf, 0, &val);
97 mutex_lock(&export->lock);
98 pwm_get_state(pwm, &state);
99 state.duty_cycle = val;
100 ret = pwm_apply_state(pwm, &state);
101 mutex_unlock(&export->lock);
106 static ssize_t enable_show(struct device *child,
107 struct device_attribute *attr,
110 const struct pwm_device *pwm = child_to_pwm_device(child);
111 struct pwm_state state;
113 pwm_get_state(pwm, &state);
115 return sprintf(buf, "%d\n", state.enabled);
118 static ssize_t enable_store(struct device *child,
119 struct device_attribute *attr,
120 const char *buf, size_t size)
122 struct pwm_export *export = child_to_pwm_export(child);
123 struct pwm_device *pwm = export->pwm;
124 struct pwm_state state;
127 ret = kstrtoint(buf, 0, &val);
131 mutex_lock(&export->lock);
133 pwm_get_state(pwm, &state);
137 state.enabled = false;
140 state.enabled = true;
147 ret = pwm_apply_state(pwm, &state);
150 mutex_unlock(&export->lock);
154 static ssize_t polarity_show(struct device *child,
155 struct device_attribute *attr,
158 const struct pwm_device *pwm = child_to_pwm_device(child);
159 const char *polarity = "unknown";
160 struct pwm_state state;
162 pwm_get_state(pwm, &state);
164 switch (state.polarity) {
165 case PWM_POLARITY_NORMAL:
169 case PWM_POLARITY_INVERSED:
170 polarity = "inversed";
174 return sprintf(buf, "%s\n", polarity);
177 static ssize_t polarity_store(struct device *child,
178 struct device_attribute *attr,
179 const char *buf, size_t size)
181 struct pwm_export *export = child_to_pwm_export(child);
182 struct pwm_device *pwm = export->pwm;
183 enum pwm_polarity polarity;
184 struct pwm_state state;
187 if (sysfs_streq(buf, "normal"))
188 polarity = PWM_POLARITY_NORMAL;
189 else if (sysfs_streq(buf, "inversed"))
190 polarity = PWM_POLARITY_INVERSED;
194 mutex_lock(&export->lock);
195 pwm_get_state(pwm, &state);
196 state.polarity = polarity;
197 ret = pwm_apply_state(pwm, &state);
198 mutex_unlock(&export->lock);
203 static ssize_t capture_show(struct device *child,
204 struct device_attribute *attr,
207 struct pwm_device *pwm = child_to_pwm_device(child);
208 struct pwm_capture result;
211 ret = pwm_capture(pwm, &result, jiffies_to_msecs(HZ));
215 return sprintf(buf, "%u %u\n", result.period, result.duty_cycle);
218 static DEVICE_ATTR_RW(period);
219 static DEVICE_ATTR_RW(duty_cycle);
220 static DEVICE_ATTR_RW(enable);
221 static DEVICE_ATTR_RW(polarity);
222 static DEVICE_ATTR_RO(capture);
224 static struct attribute *pwm_attrs[] = {
225 &dev_attr_period.attr,
226 &dev_attr_duty_cycle.attr,
227 &dev_attr_enable.attr,
228 &dev_attr_polarity.attr,
229 &dev_attr_capture.attr,
232 ATTRIBUTE_GROUPS(pwm);
234 static void pwm_export_release(struct device *child)
236 struct pwm_export *export = child_to_pwm_export(child);
241 static int pwm_export_child(struct device *parent, struct pwm_device *pwm)
243 struct pwm_export *export;
247 if (test_and_set_bit(PWMF_EXPORTED, &pwm->flags))
250 export = kzalloc(sizeof(*export), GFP_KERNEL);
252 clear_bit(PWMF_EXPORTED, &pwm->flags);
257 mutex_init(&export->lock);
259 export->child.release = pwm_export_release;
260 export->child.parent = parent;
261 export->child.devt = MKDEV(0, 0);
262 export->child.groups = pwm_groups;
263 dev_set_name(&export->child, "pwm%u", pwm->hwpwm);
265 ret = device_register(&export->child);
267 clear_bit(PWMF_EXPORTED, &pwm->flags);
268 put_device(&export->child);
272 pwm_prop[0] = kasprintf(GFP_KERNEL, "EXPORT=pwm%u", pwm->hwpwm);
274 kobject_uevent_env(&parent->kobj, KOBJ_CHANGE, pwm_prop);
280 static int pwm_unexport_match(struct device *child, void *data)
282 return child_to_pwm_device(child) == data;
285 static int pwm_unexport_child(struct device *parent, struct pwm_device *pwm)
287 struct device *child;
290 if (!test_and_clear_bit(PWMF_EXPORTED, &pwm->flags))
293 child = device_find_child(parent, pwm, pwm_unexport_match);
297 pwm_prop[0] = kasprintf(GFP_KERNEL, "UNEXPORT=pwm%u", pwm->hwpwm);
299 kobject_uevent_env(&parent->kobj, KOBJ_CHANGE, pwm_prop);
302 /* for device_find_child() */
304 device_unregister(child);
310 static ssize_t export_store(struct device *parent,
311 struct device_attribute *attr,
312 const char *buf, size_t len)
314 struct pwm_chip *chip = dev_get_drvdata(parent);
315 struct pwm_device *pwm;
319 ret = kstrtouint(buf, 0, &hwpwm);
323 if (hwpwm >= chip->npwm)
326 pwm = pwm_request_from_chip(chip, hwpwm, "sysfs");
330 ret = pwm_export_child(parent, pwm);
336 static DEVICE_ATTR_WO(export);
338 static ssize_t unexport_store(struct device *parent,
339 struct device_attribute *attr,
340 const char *buf, size_t len)
342 struct pwm_chip *chip = dev_get_drvdata(parent);
346 ret = kstrtouint(buf, 0, &hwpwm);
350 if (hwpwm >= chip->npwm)
353 ret = pwm_unexport_child(parent, &chip->pwms[hwpwm]);
357 static DEVICE_ATTR_WO(unexport);
359 static ssize_t npwm_show(struct device *parent, struct device_attribute *attr,
362 const struct pwm_chip *chip = dev_get_drvdata(parent);
364 return sprintf(buf, "%u\n", chip->npwm);
366 static DEVICE_ATTR_RO(npwm);
368 static struct attribute *pwm_chip_attrs[] = {
369 &dev_attr_export.attr,
370 &dev_attr_unexport.attr,
374 ATTRIBUTE_GROUPS(pwm_chip);
376 /* takes export->lock on success */
377 static struct pwm_export *pwm_class_get_state(struct device *parent,
378 struct pwm_device *pwm,
379 struct pwm_state *state)
381 struct device *child;
382 struct pwm_export *export;
384 if (!test_bit(PWMF_EXPORTED, &pwm->flags))
387 child = device_find_child(parent, pwm, pwm_unexport_match);
391 export = child_to_pwm_export(child);
392 put_device(child); /* for device_find_child() */
394 mutex_lock(&export->lock);
395 pwm_get_state(pwm, state);
400 static int pwm_class_apply_state(struct pwm_export *export,
401 struct pwm_device *pwm,
402 struct pwm_state *state)
404 int ret = pwm_apply_state(pwm, state);
406 /* release lock taken in pwm_class_get_state */
407 mutex_unlock(&export->lock);
412 static int pwm_class_resume_npwm(struct device *parent, unsigned int npwm)
414 struct pwm_chip *chip = dev_get_drvdata(parent);
418 for (i = 0; i < npwm; i++) {
419 struct pwm_device *pwm = &chip->pwms[i];
420 struct pwm_state state;
421 struct pwm_export *export;
423 export = pwm_class_get_state(parent, pwm, &state);
427 state.enabled = export->suspend.enabled;
428 ret = pwm_class_apply_state(export, pwm, &state);
436 static int __maybe_unused pwm_class_suspend(struct device *parent)
438 struct pwm_chip *chip = dev_get_drvdata(parent);
442 for (i = 0; i < chip->npwm; i++) {
443 struct pwm_device *pwm = &chip->pwms[i];
444 struct pwm_state state;
445 struct pwm_export *export;
447 export = pwm_class_get_state(parent, pwm, &state);
451 export->suspend = state;
452 state.enabled = false;
453 ret = pwm_class_apply_state(export, pwm, &state);
456 * roll back the PWM devices that were disabled by
457 * this suspend function.
459 pwm_class_resume_npwm(parent, i);
467 static int __maybe_unused pwm_class_resume(struct device *parent)
469 struct pwm_chip *chip = dev_get_drvdata(parent);
471 return pwm_class_resume_npwm(parent, chip->npwm);
474 static SIMPLE_DEV_PM_OPS(pwm_class_pm_ops, pwm_class_suspend, pwm_class_resume);
476 static struct class pwm_class = {
478 .owner = THIS_MODULE,
479 .dev_groups = pwm_chip_groups,
480 .pm = &pwm_class_pm_ops,
483 static int pwmchip_sysfs_match(struct device *parent, const void *data)
485 return dev_get_drvdata(parent) == data;
488 void pwmchip_sysfs_export(struct pwm_chip *chip)
490 struct device *parent;
493 * If device_create() fails the pwm_chip is still usable by
494 * the kernel it's just not exported.
496 parent = device_create(&pwm_class, chip->dev, MKDEV(0, 0), chip,
497 "pwmchip%d", chip->base);
498 if (IS_ERR(parent)) {
500 "device_create failed for pwm_chip sysfs export\n");
504 void pwmchip_sysfs_unexport(struct pwm_chip *chip)
506 struct device *parent;
509 parent = class_find_device(&pwm_class, NULL, chip,
510 pwmchip_sysfs_match);
514 for (i = 0; i < chip->npwm; i++) {
515 struct pwm_device *pwm = &chip->pwms[i];
517 if (test_bit(PWMF_EXPORTED, &pwm->flags))
518 pwm_unexport_child(parent, pwm);
522 device_unregister(parent);
525 static int __init pwm_sysfs_init(void)
527 return class_register(&pwm_class);
529 subsys_initcall(pwm_sysfs_init);