blob: 7c18536a3742aa89e5ca50455b7a3e4d1691fc2e [file] [log] [blame]
rjw1f884582022-01-06 17:20:42 +08001/*
2 * drivers/uio/uio.c
3 *
4 * Copyright(C) 2005, Benedikt Spranger <b.spranger@linutronix.de>
5 * Copyright(C) 2005, Thomas Gleixner <tglx@linutronix.de>
6 * Copyright(C) 2006, Hans J. Koch <hjk@hansjkoch.de>
7 * Copyright(C) 2006, Greg Kroah-Hartman <greg@kroah.com>
8 *
9 * Userspace IO
10 *
11 * Base Functions
12 *
13 * Licensed under the GPLv2 only.
14 */
15
16#include <linux/module.h>
17#include <linux/init.h>
18#include <linux/poll.h>
19#include <linux/device.h>
20#include <linux/slab.h>
21#include <linux/mm.h>
22#include <linux/idr.h>
23#include <linux/sched/signal.h>
24#include <linux/string.h>
25#include <linux/kobject.h>
26#include <linux/cdev.h>
27#include <linux/uio_driver.h>
28
29#define UIO_MAX_DEVICES (1U << MINORBITS)
30
31static int uio_major;
32static struct cdev *uio_cdev;
33static DEFINE_IDR(uio_idr);
34static const struct file_operations uio_fops;
35
36/* Protect idr accesses */
37static DEFINE_MUTEX(minor_lock);
38
39/*
40 * attributes
41 */
42
43struct uio_map {
44 struct kobject kobj;
45 struct uio_mem *mem;
46};
47#define to_map(map) container_of(map, struct uio_map, kobj)
48
49static ssize_t map_name_show(struct uio_mem *mem, char *buf)
50{
51 if (unlikely(!mem->name))
52 mem->name = "";
53
54 return sprintf(buf, "%s\n", mem->name);
55}
56
57static ssize_t map_addr_show(struct uio_mem *mem, char *buf)
58{
59 return sprintf(buf, "%pa\n", &mem->addr);
60}
61
62static ssize_t map_size_show(struct uio_mem *mem, char *buf)
63{
64 return sprintf(buf, "%pa\n", &mem->size);
65}
66
67static ssize_t map_offset_show(struct uio_mem *mem, char *buf)
68{
69 return sprintf(buf, "0x%llx\n", (unsigned long long)mem->offs);
70}
71
72struct map_sysfs_entry {
73 struct attribute attr;
74 ssize_t (*show)(struct uio_mem *, char *);
75 ssize_t (*store)(struct uio_mem *, const char *, size_t);
76};
77
78static struct map_sysfs_entry name_attribute =
79 __ATTR(name, S_IRUGO, map_name_show, NULL);
80static struct map_sysfs_entry addr_attribute =
81 __ATTR(addr, S_IRUGO, map_addr_show, NULL);
82static struct map_sysfs_entry size_attribute =
83 __ATTR(size, S_IRUGO, map_size_show, NULL);
84static struct map_sysfs_entry offset_attribute =
85 __ATTR(offset, S_IRUGO, map_offset_show, NULL);
86
87static struct attribute *attrs[] = {
88 &name_attribute.attr,
89 &addr_attribute.attr,
90 &size_attribute.attr,
91 &offset_attribute.attr,
92 NULL, /* need to NULL terminate the list of attributes */
93};
94
95static void map_release(struct kobject *kobj)
96{
97 struct uio_map *map = to_map(kobj);
98 kfree(map);
99}
100
101static ssize_t map_type_show(struct kobject *kobj, struct attribute *attr,
102 char *buf)
103{
104 struct uio_map *map = to_map(kobj);
105 struct uio_mem *mem = map->mem;
106 struct map_sysfs_entry *entry;
107
108 entry = container_of(attr, struct map_sysfs_entry, attr);
109
110 if (!entry->show)
111 return -EIO;
112
113 return entry->show(mem, buf);
114}
115
116static const struct sysfs_ops map_sysfs_ops = {
117 .show = map_type_show,
118};
119
120static struct kobj_type map_attr_type = {
121 .release = map_release,
122 .sysfs_ops = &map_sysfs_ops,
123 .default_attrs = attrs,
124};
125
126struct uio_portio {
127 struct kobject kobj;
128 struct uio_port *port;
129};
130#define to_portio(portio) container_of(portio, struct uio_portio, kobj)
131
132static ssize_t portio_name_show(struct uio_port *port, char *buf)
133{
134 if (unlikely(!port->name))
135 port->name = "";
136
137 return sprintf(buf, "%s\n", port->name);
138}
139
140static ssize_t portio_start_show(struct uio_port *port, char *buf)
141{
142 return sprintf(buf, "0x%lx\n", port->start);
143}
144
145static ssize_t portio_size_show(struct uio_port *port, char *buf)
146{
147 return sprintf(buf, "0x%lx\n", port->size);
148}
149
150static ssize_t portio_porttype_show(struct uio_port *port, char *buf)
151{
152 const char *porttypes[] = {"none", "x86", "gpio", "other"};
153
154 if ((port->porttype < 0) || (port->porttype > UIO_PORT_OTHER))
155 return -EINVAL;
156
157 return sprintf(buf, "port_%s\n", porttypes[port->porttype]);
158}
159
160struct portio_sysfs_entry {
161 struct attribute attr;
162 ssize_t (*show)(struct uio_port *, char *);
163 ssize_t (*store)(struct uio_port *, const char *, size_t);
164};
165
166static struct portio_sysfs_entry portio_name_attribute =
167 __ATTR(name, S_IRUGO, portio_name_show, NULL);
168static struct portio_sysfs_entry portio_start_attribute =
169 __ATTR(start, S_IRUGO, portio_start_show, NULL);
170static struct portio_sysfs_entry portio_size_attribute =
171 __ATTR(size, S_IRUGO, portio_size_show, NULL);
172static struct portio_sysfs_entry portio_porttype_attribute =
173 __ATTR(porttype, S_IRUGO, portio_porttype_show, NULL);
174
175static struct attribute *portio_attrs[] = {
176 &portio_name_attribute.attr,
177 &portio_start_attribute.attr,
178 &portio_size_attribute.attr,
179 &portio_porttype_attribute.attr,
180 NULL,
181};
182
183static void portio_release(struct kobject *kobj)
184{
185 struct uio_portio *portio = to_portio(kobj);
186 kfree(portio);
187}
188
189static ssize_t portio_type_show(struct kobject *kobj, struct attribute *attr,
190 char *buf)
191{
192 struct uio_portio *portio = to_portio(kobj);
193 struct uio_port *port = portio->port;
194 struct portio_sysfs_entry *entry;
195
196 entry = container_of(attr, struct portio_sysfs_entry, attr);
197
198 if (!entry->show)
199 return -EIO;
200
201 return entry->show(port, buf);
202}
203
204static const struct sysfs_ops portio_sysfs_ops = {
205 .show = portio_type_show,
206};
207
208static struct kobj_type portio_attr_type = {
209 .release = portio_release,
210 .sysfs_ops = &portio_sysfs_ops,
211 .default_attrs = portio_attrs,
212};
213
214static ssize_t name_show(struct device *dev,
215 struct device_attribute *attr, char *buf)
216{
217 struct uio_device *idev = dev_get_drvdata(dev);
218 int ret;
219
220 mutex_lock(&idev->info_lock);
221 if (!idev->info) {
222 ret = -EINVAL;
223 dev_err(dev, "the device has been unregistered\n");
224 goto out;
225 }
226
227 ret = sprintf(buf, "%s\n", idev->info->name);
228
229out:
230 mutex_unlock(&idev->info_lock);
231 return ret;
232}
233static DEVICE_ATTR_RO(name);
234
235static ssize_t version_show(struct device *dev,
236 struct device_attribute *attr, char *buf)
237{
238 struct uio_device *idev = dev_get_drvdata(dev);
239 int ret;
240
241 mutex_lock(&idev->info_lock);
242 if (!idev->info) {
243 ret = -EINVAL;
244 dev_err(dev, "the device has been unregistered\n");
245 goto out;
246 }
247
248 ret = sprintf(buf, "%s\n", idev->info->version);
249
250out:
251 mutex_unlock(&idev->info_lock);
252 return ret;
253}
254static DEVICE_ATTR_RO(version);
255
256static ssize_t event_show(struct device *dev,
257 struct device_attribute *attr, char *buf)
258{
259 struct uio_device *idev = dev_get_drvdata(dev);
260 return sprintf(buf, "%u\n", (unsigned int)atomic_read(&idev->event));
261}
262static DEVICE_ATTR_RO(event);
263
264static struct attribute *uio_attrs[] = {
265 &dev_attr_name.attr,
266 &dev_attr_version.attr,
267 &dev_attr_event.attr,
268 NULL,
269};
270ATTRIBUTE_GROUPS(uio);
271
272/* UIO class infrastructure */
273static struct class uio_class = {
274 .name = "uio",
275 .dev_groups = uio_groups,
276};
277
278bool uio_class_registered;
279
280/*
281 * device functions
282 */
283static int uio_dev_add_attributes(struct uio_device *idev)
284{
285 int ret;
286 int mi, pi;
287 int map_found = 0;
288 int portio_found = 0;
289 struct uio_mem *mem;
290 struct uio_map *map;
291 struct uio_port *port;
292 struct uio_portio *portio;
293
294 for (mi = 0; mi < MAX_UIO_MAPS; mi++) {
295 mem = &idev->info->mem[mi];
296 if (mem->size == 0)
297 break;
298 if (!map_found) {
299 map_found = 1;
300 idev->map_dir = kobject_create_and_add("maps",
301 &idev->dev.kobj);
302 if (!idev->map_dir) {
303 ret = -ENOMEM;
304 goto err_map;
305 }
306 }
307 map = kzalloc(sizeof(*map), GFP_KERNEL);
308 if (!map) {
309 ret = -ENOMEM;
310 goto err_map;
311 }
312 kobject_init(&map->kobj, &map_attr_type);
313 map->mem = mem;
314 mem->map = map;
315 ret = kobject_add(&map->kobj, idev->map_dir, "map%d", mi);
316 if (ret)
317 goto err_map_kobj;
318 ret = kobject_uevent(&map->kobj, KOBJ_ADD);
319 if (ret)
320 goto err_map_kobj;
321 }
322
323 for (pi = 0; pi < MAX_UIO_PORT_REGIONS; pi++) {
324 port = &idev->info->port[pi];
325 if (port->size == 0)
326 break;
327 if (!portio_found) {
328 portio_found = 1;
329 idev->portio_dir = kobject_create_and_add("portio",
330 &idev->dev.kobj);
331 if (!idev->portio_dir) {
332 ret = -ENOMEM;
333 goto err_portio;
334 }
335 }
336 portio = kzalloc(sizeof(*portio), GFP_KERNEL);
337 if (!portio) {
338 ret = -ENOMEM;
339 goto err_portio;
340 }
341 kobject_init(&portio->kobj, &portio_attr_type);
342 portio->port = port;
343 port->portio = portio;
344 ret = kobject_add(&portio->kobj, idev->portio_dir,
345 "port%d", pi);
346 if (ret)
347 goto err_portio_kobj;
348 ret = kobject_uevent(&portio->kobj, KOBJ_ADD);
349 if (ret)
350 goto err_portio_kobj;
351 }
352
353 return 0;
354
355err_portio:
356 pi--;
357err_portio_kobj:
358 for (; pi >= 0; pi--) {
359 port = &idev->info->port[pi];
360 portio = port->portio;
361 kobject_put(&portio->kobj);
362 }
363 kobject_put(idev->portio_dir);
364err_map:
365 mi--;
366err_map_kobj:
367 for (; mi >= 0; mi--) {
368 mem = &idev->info->mem[mi];
369 map = mem->map;
370 kobject_put(&map->kobj);
371 }
372 kobject_put(idev->map_dir);
373 dev_err(&idev->dev, "error creating sysfs files (%d)\n", ret);
374 return ret;
375}
376
377static void uio_dev_del_attributes(struct uio_device *idev)
378{
379 int i;
380 struct uio_mem *mem;
381 struct uio_port *port;
382
383 for (i = 0; i < MAX_UIO_MAPS; i++) {
384 mem = &idev->info->mem[i];
385 if (mem->size == 0)
386 break;
387 kobject_put(&mem->map->kobj);
388 }
389 kobject_put(idev->map_dir);
390
391 for (i = 0; i < MAX_UIO_PORT_REGIONS; i++) {
392 port = &idev->info->port[i];
393 if (port->size == 0)
394 break;
395 kobject_put(&port->portio->kobj);
396 }
397 kobject_put(idev->portio_dir);
398}
399
400static int uio_get_minor(struct uio_device *idev)
401{
402 int retval = -ENOMEM;
403
404 mutex_lock(&minor_lock);
405 retval = idr_alloc(&uio_idr, idev, 0, UIO_MAX_DEVICES, GFP_KERNEL);
406 if (retval >= 0) {
407 idev->minor = retval;
408 retval = 0;
409 } else if (retval == -ENOSPC) {
410 dev_err(&idev->dev, "too many uio devices\n");
411 retval = -EINVAL;
412 }
413 mutex_unlock(&minor_lock);
414 return retval;
415}
416
417static void uio_free_minor(struct uio_device *idev)
418{
419 mutex_lock(&minor_lock);
420 idr_remove(&uio_idr, idev->minor);
421 mutex_unlock(&minor_lock);
422}
423
424/**
425 * uio_event_notify - trigger an interrupt event
426 * @info: UIO device capabilities
427 */
428void uio_event_notify(struct uio_info *info)
429{
430 struct uio_device *idev = info->uio_dev;
431
432 atomic_inc(&idev->event);
433 wake_up_interruptible(&idev->wait);
434 kill_fasync(&idev->async_queue, SIGIO, POLL_IN);
435}
436EXPORT_SYMBOL_GPL(uio_event_notify);
437
438/**
439 * uio_interrupt - hardware interrupt handler
440 * @irq: IRQ number, can be UIO_IRQ_CYCLIC for cyclic timer
441 * @dev_id: Pointer to the devices uio_device structure
442 */
443static irqreturn_t uio_interrupt(int irq, void *dev_id)
444{
445 struct uio_device *idev = (struct uio_device *)dev_id;
446 irqreturn_t ret;
447
448 ret = idev->info->handler(irq, idev->info);
449 if (ret == IRQ_HANDLED)
450 uio_event_notify(idev->info);
451
452 return ret;
453}
454
455struct uio_listener {
456 struct uio_device *dev;
457 s32 event_count;
458};
459
460static int uio_open(struct inode *inode, struct file *filep)
461{
462 struct uio_device *idev;
463 struct uio_listener *listener;
464 int ret = 0;
465
466 mutex_lock(&minor_lock);
467 idev = idr_find(&uio_idr, iminor(inode));
468 mutex_unlock(&minor_lock);
469 if (!idev) {
470 ret = -ENODEV;
471 goto out;
472 }
473
474 get_device(&idev->dev);
475
476 if (!try_module_get(idev->owner)) {
477 ret = -ENODEV;
478 goto err_module_get;
479 }
480
481 listener = kmalloc(sizeof(*listener), GFP_KERNEL);
482 if (!listener) {
483 ret = -ENOMEM;
484 goto err_alloc_listener;
485 }
486
487 listener->dev = idev;
488 listener->event_count = atomic_read(&idev->event);
489 filep->private_data = listener;
490
491 mutex_lock(&idev->info_lock);
492 if (!idev->info) {
493 mutex_unlock(&idev->info_lock);
494 ret = -EINVAL;
495 goto err_alloc_listener;
496 }
497
498 if (idev->info && idev->info->open)
499 ret = idev->info->open(idev->info, inode);
500 mutex_unlock(&idev->info_lock);
501 if (ret)
502 goto err_infoopen;
503
504 return 0;
505
506err_infoopen:
507 kfree(listener);
508
509err_alloc_listener:
510 module_put(idev->owner);
511
512err_module_get:
513 put_device(&idev->dev);
514
515out:
516 return ret;
517}
518
519static int uio_fasync(int fd, struct file *filep, int on)
520{
521 struct uio_listener *listener = filep->private_data;
522 struct uio_device *idev = listener->dev;
523
524 return fasync_helper(fd, filep, on, &idev->async_queue);
525}
526
527static int uio_release(struct inode *inode, struct file *filep)
528{
529 int ret = 0;
530 struct uio_listener *listener = filep->private_data;
531 struct uio_device *idev = listener->dev;
532
533 mutex_lock(&idev->info_lock);
534 if (idev->info && idev->info->release)
535 ret = idev->info->release(idev->info, inode);
536 mutex_unlock(&idev->info_lock);
537
538 module_put(idev->owner);
539 kfree(listener);
540 put_device(&idev->dev);
541 return ret;
542}
543
544static unsigned int uio_poll(struct file *filep, poll_table *wait)
545{
546 struct uio_listener *listener = filep->private_data;
547 struct uio_device *idev = listener->dev;
548 unsigned int ret = 0;
549
550 mutex_lock(&idev->info_lock);
551 if (!idev->info || !idev->info->irq)
552 ret = -EIO;
553 mutex_unlock(&idev->info_lock);
554
555 if (ret)
556 return ret;
557
558 poll_wait(filep, &idev->wait, wait);
559 if (listener->event_count != atomic_read(&idev->event))
560 return POLLIN | POLLRDNORM;
561 return 0;
562}
563
564static ssize_t uio_read(struct file *filep, char __user *buf,
565 size_t count, loff_t *ppos)
566{
567 struct uio_listener *listener = filep->private_data;
568 struct uio_device *idev = listener->dev;
569 DECLARE_WAITQUEUE(wait, current);
570 ssize_t retval = 0;
571 s32 event_count;
572
573 mutex_lock(&idev->info_lock);
574 if (!idev->info || !idev->info->irq)
575 retval = -EIO;
576 mutex_unlock(&idev->info_lock);
577
578 if (retval)
579 return retval;
580
581 if (count != sizeof(s32))
582 return -EINVAL;
583
584 add_wait_queue(&idev->wait, &wait);
585
586 do {
587 set_current_state(TASK_INTERRUPTIBLE);
588
589 event_count = atomic_read(&idev->event);
590 if (event_count != listener->event_count) {
591 __set_current_state(TASK_RUNNING);
592 if (copy_to_user(buf, &event_count, count))
593 retval = -EFAULT;
594 else {
595 listener->event_count = event_count;
596 retval = count;
597 }
598 break;
599 }
600
601 if (filep->f_flags & O_NONBLOCK) {
602 retval = -EAGAIN;
603 break;
604 }
605
606 if (signal_pending(current)) {
607 retval = -ERESTARTSYS;
608 break;
609 }
610 schedule();
611 } while (1);
612
613 __set_current_state(TASK_RUNNING);
614 remove_wait_queue(&idev->wait, &wait);
615
616 return retval;
617}
618
619static ssize_t uio_write(struct file *filep, const char __user *buf,
620 size_t count, loff_t *ppos)
621{
622 struct uio_listener *listener = filep->private_data;
623 struct uio_device *idev = listener->dev;
624 ssize_t retval;
625 s32 irq_on;
626
627 if (count != sizeof(s32))
628 return -EINVAL;
629
630 if (copy_from_user(&irq_on, buf, count))
631 return -EFAULT;
632
633 mutex_lock(&idev->info_lock);
634 if (!idev->info) {
635 retval = -EINVAL;
636 goto out;
637 }
638
639 if (!idev->info || !idev->info->irq) {
640 retval = -EIO;
641 goto out;
642 }
643
644 if (!idev->info->irqcontrol) {
645 retval = -ENOSYS;
646 goto out;
647 }
648
649 retval = idev->info->irqcontrol(idev->info, irq_on);
650
651out:
652 mutex_unlock(&idev->info_lock);
653 return retval ? retval : sizeof(s32);
654}
655
656static int uio_find_mem_index(struct vm_area_struct *vma)
657{
658 struct uio_device *idev = vma->vm_private_data;
659
660 if (vma->vm_pgoff < MAX_UIO_MAPS) {
661 if (idev->info->mem[vma->vm_pgoff].size == 0)
662 return -1;
663 return (int)vma->vm_pgoff;
664 }
665 return -1;
666}
667
668static int uio_vma_fault(struct vm_fault *vmf)
669{
670 struct uio_device *idev = vmf->vma->vm_private_data;
671 struct page *page;
672 unsigned long offset;
673 void *addr;
674 int ret = 0;
675 int mi;
676
677 mutex_lock(&idev->info_lock);
678 if (!idev->info) {
679 ret = VM_FAULT_SIGBUS;
680 goto out;
681 }
682
683 mi = uio_find_mem_index(vmf->vma);
684 if (mi < 0) {
685 ret = VM_FAULT_SIGBUS;
686 goto out;
687 }
688
689 /*
690 * We need to subtract mi because userspace uses offset = N*PAGE_SIZE
691 * to use mem[N].
692 */
693 offset = (vmf->pgoff - mi) << PAGE_SHIFT;
694
695 addr = (void *)(unsigned long)idev->info->mem[mi].addr + offset;
696 if (idev->info->mem[mi].memtype == UIO_MEM_LOGICAL)
697 page = virt_to_page(addr);
698 else
699 page = vmalloc_to_page(addr);
700 get_page(page);
701 vmf->page = page;
702
703out:
704 mutex_unlock(&idev->info_lock);
705
706 return ret;
707}
708
709static const struct vm_operations_struct uio_logical_vm_ops = {
710 .fault = uio_vma_fault,
711};
712
713static int uio_mmap_logical(struct vm_area_struct *vma)
714{
715 vma->vm_flags |= VM_DONTEXPAND | VM_DONTDUMP;
716 vma->vm_ops = &uio_logical_vm_ops;
717 return 0;
718}
719
720static const struct vm_operations_struct uio_physical_vm_ops = {
721#ifdef CONFIG_HAVE_IOREMAP_PROT
722 .access = generic_access_phys,
723#endif
724};
725
726static int uio_mmap_physical(struct vm_area_struct *vma)
727{
728 struct uio_device *idev = vma->vm_private_data;
729 int mi = uio_find_mem_index(vma);
730 struct uio_mem *mem;
731
732 if (mi < 0)
733 return -EINVAL;
734 mem = idev->info->mem + mi;
735
736 if (mem->addr & ~PAGE_MASK)
737 return -ENODEV;
738 if (vma->vm_end - vma->vm_start > mem->size)
739 return -EINVAL;
740
741 vma->vm_ops = &uio_physical_vm_ops;
742 vma->vm_page_prot = pgprot_noncached(vma->vm_page_prot);
743
744 /*
745 * We cannot use the vm_iomap_memory() helper here,
746 * because vma->vm_pgoff is the map index we looked
747 * up above in uio_find_mem_index(), rather than an
748 * actual page offset into the mmap.
749 *
750 * So we just do the physical mmap without a page
751 * offset.
752 */
753 return remap_pfn_range(vma,
754 vma->vm_start,
755 mem->addr >> PAGE_SHIFT,
756 vma->vm_end - vma->vm_start,
757 vma->vm_page_prot);
758}
759
760static int uio_mmap(struct file *filep, struct vm_area_struct *vma)
761{
762 struct uio_listener *listener = filep->private_data;
763 struct uio_device *idev = listener->dev;
764 int mi;
765 unsigned long requested_pages, actual_pages;
766 int ret = 0;
767
768 if (vma->vm_end < vma->vm_start)
769 return -EINVAL;
770
771 vma->vm_private_data = idev;
772
773 mutex_lock(&idev->info_lock);
774 if (!idev->info) {
775 ret = -EINVAL;
776 goto out;
777 }
778
779 mi = uio_find_mem_index(vma);
780 if (mi < 0) {
781 ret = -EINVAL;
782 goto out;
783 }
784
785 requested_pages = vma_pages(vma);
786 actual_pages = ((idev->info->mem[mi].addr & ~PAGE_MASK)
787 + idev->info->mem[mi].size + PAGE_SIZE -1) >> PAGE_SHIFT;
788 if (requested_pages > actual_pages) {
789 ret = -EINVAL;
790 goto out;
791 }
792
793 if (idev->info->mmap) {
794 ret = idev->info->mmap(idev->info, vma);
795 goto out;
796 }
797
798 switch (idev->info->mem[mi].memtype) {
799 case UIO_MEM_PHYS:
800 ret = uio_mmap_physical(vma);
801 break;
802 case UIO_MEM_LOGICAL:
803 case UIO_MEM_VIRTUAL:
804 ret = uio_mmap_logical(vma);
805 break;
806 default:
807 ret = -EINVAL;
808 }
809
810out:
811 mutex_unlock(&idev->info_lock);
812 return ret;
813}
814
815static const struct file_operations uio_fops = {
816 .owner = THIS_MODULE,
817 .open = uio_open,
818 .release = uio_release,
819 .read = uio_read,
820 .write = uio_write,
821 .mmap = uio_mmap,
822 .poll = uio_poll,
823 .fasync = uio_fasync,
824 .llseek = noop_llseek,
825};
826
827static int uio_major_init(void)
828{
829 static const char name[] = "uio";
830 struct cdev *cdev = NULL;
831 dev_t uio_dev = 0;
832 int result;
833
834 result = alloc_chrdev_region(&uio_dev, 0, UIO_MAX_DEVICES, name);
835 if (result)
836 goto out;
837
838 result = -ENOMEM;
839 cdev = cdev_alloc();
840 if (!cdev)
841 goto out_unregister;
842
843 cdev->owner = THIS_MODULE;
844 cdev->ops = &uio_fops;
845 kobject_set_name(&cdev->kobj, "%s", name);
846
847 result = cdev_add(cdev, uio_dev, UIO_MAX_DEVICES);
848 if (result)
849 goto out_put;
850
851 uio_major = MAJOR(uio_dev);
852 uio_cdev = cdev;
853 return 0;
854out_put:
855 kobject_put(&cdev->kobj);
856out_unregister:
857 unregister_chrdev_region(uio_dev, UIO_MAX_DEVICES);
858out:
859 return result;
860}
861
862static void uio_major_cleanup(void)
863{
864 unregister_chrdev_region(MKDEV(uio_major, 0), UIO_MAX_DEVICES);
865 cdev_del(uio_cdev);
866}
867
868static int init_uio_class(void)
869{
870 int ret;
871
872 /* This is the first time in here, set everything up properly */
873 ret = uio_major_init();
874 if (ret)
875 goto exit;
876
877 ret = class_register(&uio_class);
878 if (ret) {
879 printk(KERN_ERR "class_register failed for uio\n");
880 goto err_class_register;
881 }
882
883 uio_class_registered = true;
884
885 return 0;
886
887err_class_register:
888 uio_major_cleanup();
889exit:
890 return ret;
891}
892
893static void release_uio_class(void)
894{
895 uio_class_registered = false;
896 class_unregister(&uio_class);
897 uio_major_cleanup();
898}
899
900static void uio_device_release(struct device *dev)
901{
902 struct uio_device *idev = dev_get_drvdata(dev);
903
904 kfree(idev);
905}
906
907/**
908 * uio_register_device - register a new userspace IO device
909 * @owner: module that creates the new device
910 * @parent: parent device
911 * @info: UIO device capabilities
912 *
913 * returns zero on success or a negative error code.
914 */
915int __uio_register_device(struct module *owner,
916 struct device *parent,
917 struct uio_info *info)
918{
919 struct uio_device *idev;
920 int ret = 0;
921
922 if (!uio_class_registered)
923 return -EPROBE_DEFER;
924
925 if (!parent || !info || !info->name || !info->version)
926 return -EINVAL;
927
928 info->uio_dev = NULL;
929
930 idev = kzalloc(sizeof(*idev), GFP_KERNEL);
931 if (!idev) {
932 return -ENOMEM;
933 }
934
935 idev->owner = owner;
936 idev->info = info;
937 mutex_init(&idev->info_lock);
938 init_waitqueue_head(&idev->wait);
939 atomic_set(&idev->event, 0);
940
941 ret = uio_get_minor(idev);
942 if (ret) {
943 kfree(idev);
944 return ret;
945 }
946
947 device_initialize(&idev->dev);
948 idev->dev.devt = MKDEV(uio_major, idev->minor);
949 idev->dev.class = &uio_class;
950 idev->dev.parent = parent;
951 idev->dev.release = uio_device_release;
952 dev_set_drvdata(&idev->dev, idev);
953
954 ret = dev_set_name(&idev->dev, "uio%d", idev->minor);
955 if (ret)
956 goto err_device_create;
957
958 ret = device_add(&idev->dev);
959 if (ret)
960 goto err_device_create;
961
962 ret = uio_dev_add_attributes(idev);
963 if (ret)
964 goto err_uio_dev_add_attributes;
965
966 info->uio_dev = idev;
967
968 if (info->irq && (info->irq != UIO_IRQ_CUSTOM)) {
969 /*
970 * Note that we deliberately don't use devm_request_irq
971 * here. The parent module can unregister the UIO device
972 * and call pci_disable_msi, which requires that this
973 * irq has been freed. However, the device may have open
974 * FDs at the time of unregister and therefore may not be
975 * freed until they are released.
976 */
977 ret = request_irq(info->irq, uio_interrupt,
978 info->irq_flags, info->name, idev);
979 if (ret) {
980 info->uio_dev = NULL;
981 goto err_request_irq;
982 }
983 }
984
985 return 0;
986
987err_request_irq:
988 uio_dev_del_attributes(idev);
989err_uio_dev_add_attributes:
990 device_del(&idev->dev);
991err_device_create:
992 uio_free_minor(idev);
993 put_device(&idev->dev);
994 return ret;
995}
996EXPORT_SYMBOL_GPL(__uio_register_device);
997
998/**
999 * uio_unregister_device - unregister a industrial IO device
1000 * @info: UIO device capabilities
1001 *
1002 */
1003void uio_unregister_device(struct uio_info *info)
1004{
1005 struct uio_device *idev;
1006
1007 if (!info || !info->uio_dev)
1008 return;
1009
1010 idev = info->uio_dev;
1011
1012 uio_free_minor(idev);
1013
1014 mutex_lock(&idev->info_lock);
1015 uio_dev_del_attributes(idev);
1016
1017 if (info->irq && info->irq != UIO_IRQ_CUSTOM)
1018 free_irq(info->irq, idev);
1019
1020 idev->info = NULL;
1021 mutex_unlock(&idev->info_lock);
1022
1023 device_unregister(&idev->dev);
1024
1025 return;
1026}
1027EXPORT_SYMBOL_GPL(uio_unregister_device);
1028
1029static int __init uio_init(void)
1030{
1031 return init_uio_class();
1032}
1033
1034static void __exit uio_exit(void)
1035{
1036 release_uio_class();
1037 idr_destroy(&uio_idr);
1038}
1039
1040module_init(uio_init)
1041module_exit(uio_exit)
1042MODULE_LICENSE("GPL v2");