1 // SPDX-License-Identifier: GPL-2.0-only
2 /* Industrial I/O event handling
3 *
4 * Copyright (c) 2008 Jonathan Cameron
5 *
6 * Based on elements of hwmon and input subsystems.
7 */
8
9 #include <linux/anon_inodes.h>
10 #include <linux/device.h>
11 #include <linux/fs.h>
12 #include <linux/kernel.h>
13 #include <linux/kfifo.h>
14 #include <linux/module.h>
15 #include <linux/poll.h>
16 #include <linux/sched.h>
17 #include <linux/slab.h>
18 #include <linux/uaccess.h>
19 #include <linux/wait.h>
20 #include <linux/iio/iio.h>
21 #include <linux/iio/iio-opaque.h>
22 #include "iio_core.h"
23 #include <linux/iio/sysfs.h>
24 #include <linux/iio/events.h>
25
26 /**
27 * struct iio_event_interface - chrdev interface for an event line
28 * @wait: wait queue to allow blocking reads of events
29 * @det_events: list of detected events
30 * @dev_attr_list: list of event interface sysfs attribute
31 * @flags: file operations related flags including busy flag.
32 * @group: event interface sysfs attribute group
33 * @read_lock: lock to protect kfifo read operations
34 * @ioctl_handler: handler for event ioctl() calls
35 */
36 struct iio_event_interface {
37 wait_queue_head_t wait;
38 DECLARE_KFIFO(det_events, struct iio_event_data, 16);
39
40 struct list_head dev_attr_list;
41 unsigned long flags;
42 struct attribute_group group;
43 struct mutex read_lock;
44 struct iio_ioctl_handler ioctl_handler;
45 };
46
iio_event_enabled(const struct iio_event_interface * ev_int)47 bool iio_event_enabled(const struct iio_event_interface *ev_int)
48 {
49 return !!test_bit(IIO_BUSY_BIT_POS, &ev_int->flags);
50 }
51
52 /**
53 * iio_push_event() - try to add event to the list for userspace reading
54 * @indio_dev: IIO device structure
55 * @ev_code: What event
56 * @timestamp: When the event occurred
57 *
58 * Note: The caller must make sure that this function is not running
59 * concurrently for the same indio_dev more than once.
60 *
61 * This function may be safely used as soon as a valid reference to iio_dev has
62 * been obtained via iio_device_alloc(), but any events that are submitted
63 * before iio_device_register() has successfully completed will be silently
64 * discarded.
65 **/
iio_push_event(struct iio_dev * indio_dev,u64 ev_code,s64 timestamp)66 int iio_push_event(struct iio_dev *indio_dev, u64 ev_code, s64 timestamp)
67 {
68 struct iio_dev_opaque *iio_dev_opaque = to_iio_dev_opaque(indio_dev);
69 struct iio_event_interface *ev_int = iio_dev_opaque->event_interface;
70 struct iio_event_data ev;
71 int copied;
72
73 if (!ev_int)
74 return 0;
75
76 /* Does anyone care? */
77 if (iio_event_enabled(ev_int)) {
78
79 ev.id = ev_code;
80 ev.timestamp = timestamp;
81
82 copied = kfifo_put(&ev_int->det_events, ev);
83 if (copied != 0)
84 wake_up_poll(&ev_int->wait, EPOLLIN);
85 }
86
87 return 0;
88 }
89 EXPORT_SYMBOL(iio_push_event);
90
91 /**
92 * iio_event_poll() - poll the event queue to find out if it has data
93 * @filep: File structure pointer to identify the device
94 * @wait: Poll table pointer to add the wait queue on
95 *
96 * Return: (EPOLLIN | EPOLLRDNORM) if data is available for reading
97 * or a negative error code on failure
98 */
iio_event_poll(struct file * filep,struct poll_table_struct * wait)99 static __poll_t iio_event_poll(struct file *filep,
100 struct poll_table_struct *wait)
101 {
102 struct iio_dev *indio_dev = filep->private_data;
103 struct iio_dev_opaque *iio_dev_opaque = to_iio_dev_opaque(indio_dev);
104 struct iio_event_interface *ev_int = iio_dev_opaque->event_interface;
105 __poll_t events = 0;
106
107 if (!indio_dev->info)
108 return events;
109
110 poll_wait(filep, &ev_int->wait, wait);
111
112 if (!kfifo_is_empty(&ev_int->det_events))
113 events = EPOLLIN | EPOLLRDNORM;
114
115 return events;
116 }
117
iio_event_chrdev_read(struct file * filep,char __user * buf,size_t count,loff_t * f_ps)118 static ssize_t iio_event_chrdev_read(struct file *filep,
119 char __user *buf,
120 size_t count,
121 loff_t *f_ps)
122 {
123 struct iio_dev *indio_dev = filep->private_data;
124 struct iio_dev_opaque *iio_dev_opaque = to_iio_dev_opaque(indio_dev);
125 struct iio_event_interface *ev_int = iio_dev_opaque->event_interface;
126 unsigned int copied;
127 int ret;
128
129 if (!indio_dev->info)
130 return -ENODEV;
131
132 if (count < sizeof(struct iio_event_data))
133 return -EINVAL;
134
135 do {
136 if (kfifo_is_empty(&ev_int->det_events)) {
137 if (filep->f_flags & O_NONBLOCK)
138 return -EAGAIN;
139
140 ret = wait_event_interruptible(ev_int->wait,
141 !kfifo_is_empty(&ev_int->det_events) ||
142 indio_dev->info == NULL);
143 if (ret)
144 return ret;
145 if (indio_dev->info == NULL)
146 return -ENODEV;
147 }
148
149 if (mutex_lock_interruptible(&ev_int->read_lock))
150 return -ERESTARTSYS;
151 ret = kfifo_to_user(&ev_int->det_events, buf, count, &copied);
152 mutex_unlock(&ev_int->read_lock);
153
154 if (ret)
155 return ret;
156
157 /*
158 * If we couldn't read anything from the fifo (a different
159 * thread might have been faster) we either return -EAGAIN if
160 * the file descriptor is non-blocking, otherwise we go back to
161 * sleep and wait for more data to arrive.
162 */
163 if (copied == 0 && (filep->f_flags & O_NONBLOCK))
164 return -EAGAIN;
165
166 } while (copied == 0);
167
168 return copied;
169 }
170
iio_event_chrdev_release(struct inode * inode,struct file * filep)171 static int iio_event_chrdev_release(struct inode *inode, struct file *filep)
172 {
173 struct iio_dev *indio_dev = filep->private_data;
174 struct iio_dev_opaque *iio_dev_opaque = to_iio_dev_opaque(indio_dev);
175 struct iio_event_interface *ev_int = iio_dev_opaque->event_interface;
176
177 clear_bit(IIO_BUSY_BIT_POS, &ev_int->flags);
178
179 iio_device_put(indio_dev);
180
181 return 0;
182 }
183
184 static const struct file_operations iio_event_chrdev_fileops = {
185 .read = iio_event_chrdev_read,
186 .poll = iio_event_poll,
187 .release = iio_event_chrdev_release,
188 .owner = THIS_MODULE,
189 .llseek = noop_llseek,
190 };
191
iio_event_getfd(struct iio_dev * indio_dev)192 static int iio_event_getfd(struct iio_dev *indio_dev)
193 {
194 struct iio_dev_opaque *iio_dev_opaque = to_iio_dev_opaque(indio_dev);
195 struct iio_event_interface *ev_int = iio_dev_opaque->event_interface;
196 int fd;
197
198 if (ev_int == NULL)
199 return -ENODEV;
200
201 fd = mutex_lock_interruptible(&iio_dev_opaque->mlock);
202 if (fd)
203 return fd;
204
205 if (test_and_set_bit(IIO_BUSY_BIT_POS, &ev_int->flags)) {
206 fd = -EBUSY;
207 goto unlock;
208 }
209
210 iio_device_get(indio_dev);
211
212 fd = anon_inode_getfd("iio:event", &iio_event_chrdev_fileops,
213 indio_dev, O_RDONLY | O_CLOEXEC);
214 if (fd < 0) {
215 clear_bit(IIO_BUSY_BIT_POS, &ev_int->flags);
216 iio_device_put(indio_dev);
217 } else {
218 kfifo_reset_out(&ev_int->det_events);
219 }
220
221 unlock:
222 mutex_unlock(&iio_dev_opaque->mlock);
223 return fd;
224 }
225
226 static const char * const iio_ev_type_text[] = {
227 [IIO_EV_TYPE_THRESH] = "thresh",
228 [IIO_EV_TYPE_MAG] = "mag",
229 [IIO_EV_TYPE_ROC] = "roc",
230 [IIO_EV_TYPE_THRESH_ADAPTIVE] = "thresh_adaptive",
231 [IIO_EV_TYPE_MAG_ADAPTIVE] = "mag_adaptive",
232 [IIO_EV_TYPE_CHANGE] = "change",
233 [IIO_EV_TYPE_MAG_REFERENCED] = "mag_referenced",
234 [IIO_EV_TYPE_GESTURE] = "gesture",
235 [IIO_EV_TYPE_FAULT] = "fault",
236 };
237
238 static const char * const iio_ev_dir_text[] = {
239 [IIO_EV_DIR_EITHER] = "either",
240 [IIO_EV_DIR_RISING] = "rising",
241 [IIO_EV_DIR_FALLING] = "falling",
242 [IIO_EV_DIR_SINGLETAP] = "singletap",
243 [IIO_EV_DIR_DOUBLETAP] = "doubletap",
244 [IIO_EV_DIR_FAULT_OPENWIRE] = "openwire",
245 };
246
247 static const char * const iio_ev_info_text[] = {
248 [IIO_EV_INFO_ENABLE] = "en",
249 [IIO_EV_INFO_VALUE] = "value",
250 [IIO_EV_INFO_HYSTERESIS] = "hysteresis",
251 [IIO_EV_INFO_PERIOD] = "period",
252 [IIO_EV_INFO_HIGH_PASS_FILTER_3DB] = "high_pass_filter_3db",
253 [IIO_EV_INFO_LOW_PASS_FILTER_3DB] = "low_pass_filter_3db",
254 [IIO_EV_INFO_TIMEOUT] = "timeout",
255 [IIO_EV_INFO_RESET_TIMEOUT] = "reset_timeout",
256 [IIO_EV_INFO_TAP2_MIN_DELAY] = "tap2_min_delay",
257 [IIO_EV_INFO_RUNNING_PERIOD] = "runningperiod",
258 [IIO_EV_INFO_RUNNING_COUNT] = "runningcount",
259 };
260
iio_ev_attr_dir(struct iio_dev_attr * attr)261 static enum iio_event_direction iio_ev_attr_dir(struct iio_dev_attr *attr)
262 {
263 return attr->c->event_spec[attr->address & 0xffff].dir;
264 }
265
iio_ev_attr_type(struct iio_dev_attr * attr)266 static enum iio_event_type iio_ev_attr_type(struct iio_dev_attr *attr)
267 {
268 return attr->c->event_spec[attr->address & 0xffff].type;
269 }
270
iio_ev_attr_info(struct iio_dev_attr * attr)271 static enum iio_event_info iio_ev_attr_info(struct iio_dev_attr *attr)
272 {
273 return (attr->address >> 16) & 0xffff;
274 }
275
iio_ev_state_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t len)276 static ssize_t iio_ev_state_store(struct device *dev,
277 struct device_attribute *attr,
278 const char *buf,
279 size_t len)
280 {
281 struct iio_dev *indio_dev = dev_to_iio_dev(dev);
282 struct iio_dev_attr *this_attr = to_iio_dev_attr(attr);
283 int ret;
284 bool val;
285
286 ret = kstrtobool(buf, &val);
287 if (ret < 0)
288 return ret;
289
290 if (!indio_dev->info->write_event_config)
291 return -EINVAL;
292
293 ret = indio_dev->info->write_event_config(indio_dev,
294 this_attr->c, iio_ev_attr_type(this_attr),
295 iio_ev_attr_dir(this_attr), val);
296
297 return (ret < 0) ? ret : len;
298 }
299
iio_ev_state_show(struct device * dev,struct device_attribute * attr,char * buf)300 static ssize_t iio_ev_state_show(struct device *dev,
301 struct device_attribute *attr,
302 char *buf)
303 {
304 struct iio_dev *indio_dev = dev_to_iio_dev(dev);
305 struct iio_dev_attr *this_attr = to_iio_dev_attr(attr);
306 int val;
307
308 if (!indio_dev->info->read_event_config)
309 return -EINVAL;
310
311 val = indio_dev->info->read_event_config(indio_dev,
312 this_attr->c, iio_ev_attr_type(this_attr),
313 iio_ev_attr_dir(this_attr));
314 if (val < 0)
315 return val;
316 else
317 return sysfs_emit(buf, "%d\n", val);
318 }
319
iio_ev_value_show(struct device * dev,struct device_attribute * attr,char * buf)320 static ssize_t iio_ev_value_show(struct device *dev,
321 struct device_attribute *attr,
322 char *buf)
323 {
324 struct iio_dev *indio_dev = dev_to_iio_dev(dev);
325 struct iio_dev_attr *this_attr = to_iio_dev_attr(attr);
326 int val, val2, val_arr[2];
327 int ret;
328
329 if (!indio_dev->info->read_event_value)
330 return -EINVAL;
331
332 ret = indio_dev->info->read_event_value(indio_dev,
333 this_attr->c, iio_ev_attr_type(this_attr),
334 iio_ev_attr_dir(this_attr), iio_ev_attr_info(this_attr),
335 &val, &val2);
336 if (ret < 0)
337 return ret;
338 val_arr[0] = val;
339 val_arr[1] = val2;
340 return iio_format_value(buf, ret, 2, val_arr);
341 }
342
iio_ev_value_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t len)343 static ssize_t iio_ev_value_store(struct device *dev,
344 struct device_attribute *attr,
345 const char *buf,
346 size_t len)
347 {
348 struct iio_dev *indio_dev = dev_to_iio_dev(dev);
349 struct iio_dev_attr *this_attr = to_iio_dev_attr(attr);
350 int val, val2;
351 int ret;
352
353 if (!indio_dev->info->write_event_value)
354 return -EINVAL;
355
356 ret = iio_str_to_fixpoint(buf, 100000, &val, &val2);
357 if (ret)
358 return ret;
359 ret = indio_dev->info->write_event_value(indio_dev,
360 this_attr->c, iio_ev_attr_type(this_attr),
361 iio_ev_attr_dir(this_attr), iio_ev_attr_info(this_attr),
362 val, val2);
363 if (ret < 0)
364 return ret;
365
366 return len;
367 }
368
iio_ev_label_show(struct device * dev,struct device_attribute * attr,char * buf)369 static ssize_t iio_ev_label_show(struct device *dev,
370 struct device_attribute *attr,
371 char *buf)
372 {
373 struct iio_dev *indio_dev = dev_to_iio_dev(dev);
374 struct iio_dev_attr *this_attr = to_iio_dev_attr(attr);
375
376 if (indio_dev->info->read_event_label)
377 return indio_dev->info->read_event_label(indio_dev,
378 this_attr->c, iio_ev_attr_type(this_attr),
379 iio_ev_attr_dir(this_attr), buf);
380
381 return -EINVAL;
382 }
383
iio_device_add_event(struct iio_dev * indio_dev,const struct iio_chan_spec * chan,unsigned int spec_index,enum iio_event_type type,enum iio_event_direction dir,enum iio_shared_by shared_by,const unsigned long * mask)384 static int iio_device_add_event(struct iio_dev *indio_dev,
385 const struct iio_chan_spec *chan, unsigned int spec_index,
386 enum iio_event_type type, enum iio_event_direction dir,
387 enum iio_shared_by shared_by, const unsigned long *mask)
388 {
389 struct iio_dev_opaque *iio_dev_opaque = to_iio_dev_opaque(indio_dev);
390 ssize_t (*show)(struct device *dev, struct device_attribute *attr,
391 char *buf);
392 ssize_t (*store)(struct device *dev, struct device_attribute *attr,
393 const char *buf, size_t len);
394 unsigned int attrcount = 0;
395 unsigned int i;
396 char *postfix;
397 int ret;
398
399 for_each_set_bit(i, mask, sizeof(*mask)*8) {
400 if (i >= ARRAY_SIZE(iio_ev_info_text))
401 return -EINVAL;
402 if (dir != IIO_EV_DIR_NONE)
403 postfix = kasprintf(GFP_KERNEL, "%s_%s_%s",
404 iio_ev_type_text[type],
405 iio_ev_dir_text[dir],
406 iio_ev_info_text[i]);
407 else
408 postfix = kasprintf(GFP_KERNEL, "%s_%s",
409 iio_ev_type_text[type],
410 iio_ev_info_text[i]);
411 if (postfix == NULL)
412 return -ENOMEM;
413
414 if (i == IIO_EV_INFO_ENABLE) {
415 show = iio_ev_state_show;
416 store = iio_ev_state_store;
417 } else {
418 show = iio_ev_value_show;
419 store = iio_ev_value_store;
420 }
421
422 ret = __iio_add_chan_devattr(postfix, chan, show, store,
423 (i << 16) | spec_index, shared_by, &indio_dev->dev,
424 NULL,
425 &iio_dev_opaque->event_interface->dev_attr_list);
426 kfree(postfix);
427
428 if ((ret == -EBUSY) && (shared_by != IIO_SEPARATE))
429 continue;
430
431 if (ret)
432 return ret;
433
434 attrcount++;
435 }
436
437 return attrcount;
438 }
439
iio_device_add_event_label(struct iio_dev * indio_dev,const struct iio_chan_spec * chan,unsigned int spec_index,enum iio_event_type type,enum iio_event_direction dir)440 static int iio_device_add_event_label(struct iio_dev *indio_dev,
441 const struct iio_chan_spec *chan,
442 unsigned int spec_index,
443 enum iio_event_type type,
444 enum iio_event_direction dir)
445 {
446 struct iio_dev_opaque *iio_dev_opaque = to_iio_dev_opaque(indio_dev);
447 char *postfix;
448 int ret;
449
450 if (!indio_dev->info->read_event_label)
451 return 0;
452
453 if (dir != IIO_EV_DIR_NONE)
454 postfix = kasprintf(GFP_KERNEL, "%s_%s_label",
455 iio_ev_type_text[type],
456 iio_ev_dir_text[dir]);
457 else
458 postfix = kasprintf(GFP_KERNEL, "%s_label",
459 iio_ev_type_text[type]);
460 if (postfix == NULL)
461 return -ENOMEM;
462
463 ret = __iio_add_chan_devattr(postfix, chan, &iio_ev_label_show, NULL,
464 spec_index, IIO_SEPARATE, &indio_dev->dev, NULL,
465 &iio_dev_opaque->event_interface->dev_attr_list);
466
467 kfree(postfix);
468
469 if (ret < 0)
470 return ret;
471
472 return 1;
473 }
474
iio_device_add_event_sysfs(struct iio_dev * indio_dev,struct iio_chan_spec const * chan)475 static int iio_device_add_event_sysfs(struct iio_dev *indio_dev,
476 struct iio_chan_spec const *chan)
477 {
478 int ret = 0, i, attrcount = 0;
479 enum iio_event_direction dir;
480 enum iio_event_type type;
481
482 for (i = 0; i < chan->num_event_specs; i++) {
483 type = chan->event_spec[i].type;
484 dir = chan->event_spec[i].dir;
485
486 ret = iio_device_add_event(indio_dev, chan, i, type, dir,
487 IIO_SEPARATE, &chan->event_spec[i].mask_separate);
488 if (ret < 0)
489 return ret;
490 attrcount += ret;
491
492 ret = iio_device_add_event(indio_dev, chan, i, type, dir,
493 IIO_SHARED_BY_TYPE,
494 &chan->event_spec[i].mask_shared_by_type);
495 if (ret < 0)
496 return ret;
497 attrcount += ret;
498
499 ret = iio_device_add_event(indio_dev, chan, i, type, dir,
500 IIO_SHARED_BY_DIR,
501 &chan->event_spec[i].mask_shared_by_dir);
502 if (ret < 0)
503 return ret;
504 attrcount += ret;
505
506 ret = iio_device_add_event(indio_dev, chan, i, type, dir,
507 IIO_SHARED_BY_ALL,
508 &chan->event_spec[i].mask_shared_by_all);
509 if (ret < 0)
510 return ret;
511 attrcount += ret;
512
513 ret = iio_device_add_event_label(indio_dev, chan, i, type, dir);
514 if (ret < 0)
515 return ret;
516 attrcount += ret;
517 }
518 ret = attrcount;
519 return ret;
520 }
521
__iio_add_event_config_attrs(struct iio_dev * indio_dev)522 static inline int __iio_add_event_config_attrs(struct iio_dev *indio_dev)
523 {
524 int j, ret, attrcount = 0;
525
526 /* Dynamically created from the channels array */
527 for (j = 0; j < indio_dev->num_channels; j++) {
528 ret = iio_device_add_event_sysfs(indio_dev,
529 &indio_dev->channels[j]);
530 if (ret < 0)
531 return ret;
532 attrcount += ret;
533 }
534 return attrcount;
535 }
536
iio_check_for_dynamic_events(struct iio_dev * indio_dev)537 static bool iio_check_for_dynamic_events(struct iio_dev *indio_dev)
538 {
539 int j;
540
541 for (j = 0; j < indio_dev->num_channels; j++) {
542 if (indio_dev->channels[j].num_event_specs != 0)
543 return true;
544 }
545 return false;
546 }
547
iio_setup_ev_int(struct iio_event_interface * ev_int)548 static void iio_setup_ev_int(struct iio_event_interface *ev_int)
549 {
550 INIT_KFIFO(ev_int->det_events);
551 init_waitqueue_head(&ev_int->wait);
552 mutex_init(&ev_int->read_lock);
553 }
554
iio_event_ioctl(struct iio_dev * indio_dev,struct file * filp,unsigned int cmd,unsigned long arg)555 static long iio_event_ioctl(struct iio_dev *indio_dev, struct file *filp,
556 unsigned int cmd, unsigned long arg)
557 {
558 int __user *ip = (int __user *)arg;
559 int fd;
560
561 if (cmd == IIO_GET_EVENT_FD_IOCTL) {
562 fd = iio_event_getfd(indio_dev);
563 if (fd < 0)
564 return fd;
565 if (copy_to_user(ip, &fd, sizeof(fd)))
566 return -EFAULT;
567 return 0;
568 }
569
570 return IIO_IOCTL_UNHANDLED;
571 }
572
573 static const char *iio_event_group_name = "events";
iio_device_register_eventset(struct iio_dev * indio_dev)574 int iio_device_register_eventset(struct iio_dev *indio_dev)
575 {
576 struct iio_dev_opaque *iio_dev_opaque = to_iio_dev_opaque(indio_dev);
577 struct iio_event_interface *ev_int;
578 struct iio_dev_attr *p;
579 int ret = 0, attrcount_orig = 0, attrcount, attrn;
580 struct attribute **attr;
581
582 if (!(indio_dev->info->event_attrs ||
583 iio_check_for_dynamic_events(indio_dev)))
584 return 0;
585
586 ev_int = kzalloc(sizeof(*ev_int), GFP_KERNEL);
587 if (!ev_int)
588 return -ENOMEM;
589
590 iio_dev_opaque->event_interface = ev_int;
591
592 INIT_LIST_HEAD(&ev_int->dev_attr_list);
593
594 iio_setup_ev_int(ev_int);
595 if (indio_dev->info->event_attrs != NULL) {
596 attr = indio_dev->info->event_attrs->attrs;
597 while (*attr++ != NULL)
598 attrcount_orig++;
599 }
600 attrcount = attrcount_orig;
601 if (indio_dev->channels) {
602 ret = __iio_add_event_config_attrs(indio_dev);
603 if (ret < 0)
604 goto error_free_setup_event_lines;
605 attrcount += ret;
606 }
607
608 ev_int->group.name = iio_event_group_name;
609 ev_int->group.attrs = kcalloc(attrcount + 1,
610 sizeof(ev_int->group.attrs[0]),
611 GFP_KERNEL);
612 if (ev_int->group.attrs == NULL) {
613 ret = -ENOMEM;
614 goto error_free_setup_event_lines;
615 }
616 if (indio_dev->info->event_attrs)
617 memcpy(ev_int->group.attrs,
618 indio_dev->info->event_attrs->attrs,
619 sizeof(ev_int->group.attrs[0]) * attrcount_orig);
620 attrn = attrcount_orig;
621 /* Add all elements from the list. */
622 list_for_each_entry(p, &ev_int->dev_attr_list, l)
623 ev_int->group.attrs[attrn++] = &p->dev_attr.attr;
624
625 ret = iio_device_register_sysfs_group(indio_dev, &ev_int->group);
626 if (ret)
627 goto error_free_group_attrs;
628
629 ev_int->ioctl_handler.ioctl = iio_event_ioctl;
630 iio_device_ioctl_handler_register(&iio_dev_opaque->indio_dev,
631 &ev_int->ioctl_handler);
632
633 return 0;
634
635 error_free_group_attrs:
636 kfree(ev_int->group.attrs);
637 error_free_setup_event_lines:
638 iio_free_chan_devattr_list(&ev_int->dev_attr_list);
639 kfree(ev_int);
640 iio_dev_opaque->event_interface = NULL;
641 return ret;
642 }
643
644 /**
645 * iio_device_wakeup_eventset - Wakes up the event waitqueue
646 * @indio_dev: The IIO device
647 *
648 * Wakes up the event waitqueue used for poll() and blocking read().
649 * Should usually be called when the device is unregistered.
650 */
iio_device_wakeup_eventset(struct iio_dev * indio_dev)651 void iio_device_wakeup_eventset(struct iio_dev *indio_dev)
652 {
653 struct iio_dev_opaque *iio_dev_opaque = to_iio_dev_opaque(indio_dev);
654
655 if (iio_dev_opaque->event_interface == NULL)
656 return;
657 wake_up(&iio_dev_opaque->event_interface->wait);
658 }
659
iio_device_unregister_eventset(struct iio_dev * indio_dev)660 void iio_device_unregister_eventset(struct iio_dev *indio_dev)
661 {
662 struct iio_dev_opaque *iio_dev_opaque = to_iio_dev_opaque(indio_dev);
663 struct iio_event_interface *ev_int = iio_dev_opaque->event_interface;
664
665 if (ev_int == NULL)
666 return;
667
668 iio_device_ioctl_handler_unregister(&ev_int->ioctl_handler);
669 iio_free_chan_devattr_list(&ev_int->dev_attr_list);
670 kfree(ev_int->group.attrs);
671 kfree(ev_int);
672 iio_dev_opaque->event_interface = NULL;
673 }
674