usb: gadget: ffs: Let setup() return USB_GADGET_DELAYED_STATUS
[linux-2.6-block.git] / drivers / usb / gadget / function / f_fs.c
CommitLineData
5fd54ace 1// SPDX-License-Identifier: GPL-2.0+
ddf8abd2 2/*
5ab54cf7 3 * f_fs.c -- user mode file system API for USB composite function controllers
ddf8abd2
MN
4 *
5 * Copyright (C) 2010 Samsung Electronics
54b8360f 6 * Author: Michal Nazarewicz <mina86@mina86.com>
ddf8abd2 7 *
5ab54cf7 8 * Based on inode.c (GadgetFS) which was:
ddf8abd2
MN
9 * Copyright (C) 2003-2004 David Brownell
10 * Copyright (C) 2003 Agilent Technologies
ddf8abd2
MN
11 */
12
13
14/* #define DEBUG */
15/* #define VERBOSE_DEBUG */
16
17#include <linux/blkdev.h>
b0608690 18#include <linux/pagemap.h>
f940fcd8 19#include <linux/export.h>
560f1187 20#include <linux/hid.h>
5920cda6 21#include <linux/module.h>
174cd4b1 22#include <linux/sched/signal.h>
e2e40f2c 23#include <linux/uio.h>
ddf8abd2 24#include <asm/unaligned.h>
ddf8abd2
MN
25
26#include <linux/usb/composite.h>
27#include <linux/usb/functionfs.h>
28
2e4c7553
RB
29#include <linux/aio.h>
30#include <linux/mmu_context.h>
23de91e9 31#include <linux/poll.h>
5e33f6fd 32#include <linux/eventfd.h>
23de91e9 33
e72c39c0 34#include "u_fs.h"
74d48466 35#include "u_f.h"
f0175ab5 36#include "u_os_desc.h"
b658499f 37#include "configfs.h"
ddf8abd2
MN
38
39#define FUNCTIONFS_MAGIC 0xa647361 /* Chosen by a honest dice roll ;) */
40
ddf8abd2
MN
41/* Reference counter handling */
42static void ffs_data_get(struct ffs_data *ffs);
43static void ffs_data_put(struct ffs_data *ffs);
44/* Creates new ffs_data object. */
addfc582
JK
45static struct ffs_data *__must_check ffs_data_new(const char *dev_name)
46 __attribute__((malloc));
ddf8abd2
MN
47
48/* Opened counter handling. */
49static void ffs_data_opened(struct ffs_data *ffs);
50static void ffs_data_closed(struct ffs_data *ffs);
51
5ab54cf7 52/* Called with ffs->mutex held; take over ownership of data. */
ddf8abd2
MN
53static int __must_check
54__ffs_data_got_descs(struct ffs_data *ffs, char *data, size_t len);
55static int __must_check
56__ffs_data_got_strings(struct ffs_data *ffs, char *data, size_t len);
57
58
59/* The function structure ***************************************************/
60
61struct ffs_ep;
62
63struct ffs_function {
64 struct usb_configuration *conf;
65 struct usb_gadget *gadget;
66 struct ffs_data *ffs;
67
68 struct ffs_ep *eps;
69 u8 eps_revmap[16];
70 short *interfaces_nums;
71
72 struct usb_function function;
73};
74
75
76static struct ffs_function *ffs_func_from_usb(struct usb_function *f)
77{
78 return container_of(f, struct ffs_function, function);
79}
80
ddf8abd2 81
a7ecf054
MN
82static inline enum ffs_setup_state
83ffs_setup_state_clear_cancelled(struct ffs_data *ffs)
84{
85 return (enum ffs_setup_state)
86 cmpxchg(&ffs->setup_state, FFS_SETUP_CANCELLED, FFS_NO_SETUP);
87}
88
89
ddf8abd2
MN
90static void ffs_func_eps_disable(struct ffs_function *func);
91static int __must_check ffs_func_eps_enable(struct ffs_function *func);
92
ddf8abd2
MN
93static int ffs_func_bind(struct usb_configuration *,
94 struct usb_function *);
ddf8abd2
MN
95static int ffs_func_set_alt(struct usb_function *, unsigned, unsigned);
96static void ffs_func_disable(struct usb_function *);
97static int ffs_func_setup(struct usb_function *,
98 const struct usb_ctrlrequest *);
54dfce6d 99static bool ffs_func_req_match(struct usb_function *,
1a00b457
FH
100 const struct usb_ctrlrequest *,
101 bool config0);
ddf8abd2
MN
102static void ffs_func_suspend(struct usb_function *);
103static void ffs_func_resume(struct usb_function *);
104
105
106static int ffs_func_revmap_ep(struct ffs_function *func, u8 num);
107static int ffs_func_revmap_intf(struct ffs_function *func, u8 intf);
108
109
ddf8abd2
MN
110/* The endpoints structures *************************************************/
111
112struct ffs_ep {
113 struct usb_ep *ep; /* P: ffs->eps_lock */
114 struct usb_request *req; /* P: epfile->mutex */
115
8d4e897b
MG
116 /* [0]: full speed, [1]: high speed, [2]: super speed */
117 struct usb_endpoint_descriptor *descs[3];
ddf8abd2
MN
118
119 u8 num;
120
121 int status; /* P: epfile->mutex */
122};
123
124struct ffs_epfile {
125 /* Protects ep->ep and ep->req. */
126 struct mutex mutex;
ddf8abd2
MN
127
128 struct ffs_data *ffs;
129 struct ffs_ep *ep; /* P: ffs->eps_lock */
130
131 struct dentry *dentry;
132
9353afbb
MN
133 /*
134 * Buffer for holding data from partial reads which may happen since
135 * we’re rounding user read requests to a multiple of a max packet size.
a9e6f83c
MN
136 *
137 * The pointer is initialised with NULL value and may be set by
138 * __ffs_epfile_read_data function to point to a temporary buffer.
139 *
140 * In normal operation, calls to __ffs_epfile_read_buffered will consume
141 * data from said buffer and eventually free it. Importantly, while the
142 * function is using the buffer, it sets the pointer to NULL. This is
143 * all right since __ffs_epfile_read_data and __ffs_epfile_read_buffered
144 * can never run concurrently (they are synchronised by epfile->mutex)
145 * so the latter will not assign a new value to the pointer.
146 *
147 * Meanwhile ffs_func_eps_disable frees the buffer (if the pointer is
148 * valid) and sets the pointer to READ_BUFFER_DROP value. This special
149 * value is crux of the synchronisation between ffs_func_eps_disable and
150 * __ffs_epfile_read_data.
151 *
152 * Once __ffs_epfile_read_data is about to finish it will try to set the
153 * pointer back to its old value (as described above), but seeing as the
154 * pointer is not-NULL (namely READ_BUFFER_DROP) it will instead free
155 * the buffer.
156 *
157 * == State transitions ==
158 *
159 * • ptr == NULL: (initial state)
160 * ◦ __ffs_epfile_read_buffer_free: go to ptr == DROP
161 * ◦ __ffs_epfile_read_buffered: nop
162 * ◦ __ffs_epfile_read_data allocates temp buffer: go to ptr == buf
163 * ◦ reading finishes: n/a, not in ‘and reading’ state
164 * • ptr == DROP:
165 * ◦ __ffs_epfile_read_buffer_free: nop
166 * ◦ __ffs_epfile_read_buffered: go to ptr == NULL
167 * ◦ __ffs_epfile_read_data allocates temp buffer: free buf, nop
168 * ◦ reading finishes: n/a, not in ‘and reading’ state
169 * • ptr == buf:
170 * ◦ __ffs_epfile_read_buffer_free: free buf, go to ptr == DROP
171 * ◦ __ffs_epfile_read_buffered: go to ptr == NULL and reading
172 * ◦ __ffs_epfile_read_data: n/a, __ffs_epfile_read_buffered
173 * is always called first
174 * ◦ reading finishes: n/a, not in ‘and reading’ state
175 * • ptr == NULL and reading:
176 * ◦ __ffs_epfile_read_buffer_free: go to ptr == DROP and reading
177 * ◦ __ffs_epfile_read_buffered: n/a, mutex is held
178 * ◦ __ffs_epfile_read_data: n/a, mutex is held
179 * ◦ reading finishes and …
180 * … all data read: free buf, go to ptr == NULL
181 * … otherwise: go to ptr == buf and reading
182 * • ptr == DROP and reading:
183 * ◦ __ffs_epfile_read_buffer_free: nop
184 * ◦ __ffs_epfile_read_buffered: n/a, mutex is held
185 * ◦ __ffs_epfile_read_data: n/a, mutex is held
186 * ◦ reading finishes: free buf, go to ptr == DROP
9353afbb 187 */
a9e6f83c
MN
188 struct ffs_buffer *read_buffer;
189#define READ_BUFFER_DROP ((struct ffs_buffer *)ERR_PTR(-ESHUTDOWN))
9353afbb 190
ddf8abd2
MN
191 char name[5];
192
193 unsigned char in; /* P: ffs->eps_lock */
194 unsigned char isoc; /* P: ffs->eps_lock */
195
196 unsigned char _pad;
197};
198
9353afbb
MN
199struct ffs_buffer {
200 size_t length;
201 char *data;
202 char storage[];
203};
204
2e4c7553
RB
205/* ffs_io_data structure ***************************************************/
206
207struct ffs_io_data {
208 bool aio;
209 bool read;
210
211 struct kiocb *kiocb;
c993c39b
AV
212 struct iov_iter data;
213 const void *to_free;
214 char *buf;
2e4c7553
RB
215
216 struct mm_struct *mm;
217 struct work_struct work;
218
219 struct usb_ep *ep;
220 struct usb_request *req;
5e33f6fd
RB
221
222 struct ffs_data *ffs;
2e4c7553
RB
223};
224
6d5c1c77
RB
225struct ffs_desc_helper {
226 struct ffs_data *ffs;
227 unsigned interfaces_count;
228 unsigned eps_count;
229};
230
ddf8abd2
MN
231static int __must_check ffs_epfiles_create(struct ffs_data *ffs);
232static void ffs_epfiles_destroy(struct ffs_epfile *epfiles, unsigned count);
233
1bb27cac 234static struct dentry *
ddf8abd2 235ffs_sb_create_file(struct super_block *sb, const char *name, void *data,
1bb27cac 236 const struct file_operations *fops);
ddf8abd2 237
4b187fce
AP
238/* Devices management *******************************************************/
239
240DEFINE_MUTEX(ffs_lock);
0700faaf 241EXPORT_SYMBOL_GPL(ffs_lock);
4b187fce 242
da13a773
AP
243static struct ffs_dev *_ffs_find_dev(const char *name);
244static struct ffs_dev *_ffs_alloc_dev(void);
da13a773 245static void _ffs_free_dev(struct ffs_dev *dev);
4b187fce
AP
246static void *ffs_acquire_dev(const char *dev_name);
247static void ffs_release_dev(struct ffs_data *ffs_data);
248static int ffs_ready(struct ffs_data *ffs);
249static void ffs_closed(struct ffs_data *ffs);
ddf8abd2
MN
250
251/* Misc helper functions ****************************************************/
252
253static int ffs_mutex_lock(struct mutex *mutex, unsigned nonblock)
254 __attribute__((warn_unused_result, nonnull));
260ef311 255static char *ffs_prepare_buffer(const char __user *buf, size_t len)
ddf8abd2
MN
256 __attribute__((warn_unused_result, nonnull));
257
258
259/* Control file aka ep0 *****************************************************/
260
261static void ffs_ep0_complete(struct usb_ep *ep, struct usb_request *req)
262{
263 struct ffs_data *ffs = req->context;
264
5bdcde90 265 complete(&ffs->ep0req_completion);
ddf8abd2
MN
266}
267
ddf8abd2 268static int __ffs_ep0_queue_wait(struct ffs_data *ffs, char *data, size_t len)
c40619bb 269 __releases(&ffs->ev.waitq.lock)
ddf8abd2
MN
270{
271 struct usb_request *req = ffs->ep0req;
272 int ret;
273
274 req->zero = len < le16_to_cpu(ffs->ev.setup.wLength);
275
276 spin_unlock_irq(&ffs->ev.waitq.lock);
277
278 req->buf = data;
279 req->length = len;
280
ce1fd358
MS
281 /*
282 * UDC layer requires to provide a buffer even for ZLP, but should
283 * not use it at all. Let's provide some poisoned pointer to catch
284 * possible bug in the driver.
285 */
286 if (req->buf == NULL)
287 req->buf = (void *)0xDEADBABE;
288
16735d02 289 reinit_completion(&ffs->ep0req_completion);
ddf8abd2
MN
290
291 ret = usb_ep_queue(ffs->gadget->ep0, req, GFP_ATOMIC);
292 if (unlikely(ret < 0))
293 return ret;
294
295 ret = wait_for_completion_interruptible(&ffs->ep0req_completion);
296 if (unlikely(ret)) {
297 usb_ep_dequeue(ffs->gadget->ep0, req);
298 return -EINTR;
299 }
300
301 ffs->setup_state = FFS_NO_SETUP;
0a7b1f8a 302 return req->status ? req->status : req->actual;
ddf8abd2
MN
303}
304
305static int __ffs_ep0_stall(struct ffs_data *ffs)
306{
307 if (ffs->ev.can_stall) {
aa02f172 308 pr_vdebug("ep0 stall\n");
ddf8abd2
MN
309 usb_ep_set_halt(ffs->gadget->ep0);
310 ffs->setup_state = FFS_NO_SETUP;
311 return -EL2HLT;
312 } else {
aa02f172 313 pr_debug("bogus ep0 stall!\n");
ddf8abd2
MN
314 return -ESRCH;
315 }
316}
317
ddf8abd2
MN
318static ssize_t ffs_ep0_write(struct file *file, const char __user *buf,
319 size_t len, loff_t *ptr)
320{
321 struct ffs_data *ffs = file->private_data;
322 ssize_t ret;
323 char *data;
324
325 ENTER();
326
327 /* Fast check if setup was canceled */
a7ecf054 328 if (ffs_setup_state_clear_cancelled(ffs) == FFS_SETUP_CANCELLED)
ddf8abd2
MN
329 return -EIDRM;
330
331 /* Acquire mutex */
332 ret = ffs_mutex_lock(&ffs->mutex, file->f_flags & O_NONBLOCK);
333 if (unlikely(ret < 0))
334 return ret;
335
ddf8abd2
MN
336 /* Check state */
337 switch (ffs->state) {
338 case FFS_READ_DESCRIPTORS:
339 case FFS_READ_STRINGS:
340 /* Copy data */
341 if (unlikely(len < 16)) {
342 ret = -EINVAL;
343 break;
344 }
345
346 data = ffs_prepare_buffer(buf, len);
537baabb 347 if (IS_ERR(data)) {
ddf8abd2
MN
348 ret = PTR_ERR(data);
349 break;
350 }
351
352 /* Handle data */
353 if (ffs->state == FFS_READ_DESCRIPTORS) {
aa02f172 354 pr_info("read descriptors\n");
ddf8abd2
MN
355 ret = __ffs_data_got_descs(ffs, data, len);
356 if (unlikely(ret < 0))
357 break;
358
359 ffs->state = FFS_READ_STRINGS;
360 ret = len;
361 } else {
aa02f172 362 pr_info("read strings\n");
ddf8abd2
MN
363 ret = __ffs_data_got_strings(ffs, data, len);
364 if (unlikely(ret < 0))
365 break;
366
367 ret = ffs_epfiles_create(ffs);
368 if (unlikely(ret)) {
369 ffs->state = FFS_CLOSING;
370 break;
371 }
372
373 ffs->state = FFS_ACTIVE;
374 mutex_unlock(&ffs->mutex);
375
4b187fce 376 ret = ffs_ready(ffs);
ddf8abd2
MN
377 if (unlikely(ret < 0)) {
378 ffs->state = FFS_CLOSING;
379 return ret;
380 }
381
ddf8abd2
MN
382 return len;
383 }
384 break;
385
ddf8abd2
MN
386 case FFS_ACTIVE:
387 data = NULL;
5ab54cf7
MN
388 /*
389 * We're called from user space, we can use _irq
390 * rather then _irqsave
391 */
ddf8abd2 392 spin_lock_irq(&ffs->ev.waitq.lock);
a7ecf054 393 switch (ffs_setup_state_clear_cancelled(ffs)) {
e46318a0 394 case FFS_SETUP_CANCELLED:
ddf8abd2
MN
395 ret = -EIDRM;
396 goto done_spin;
397
398 case FFS_NO_SETUP:
399 ret = -ESRCH;
400 goto done_spin;
401
402 case FFS_SETUP_PENDING:
403 break;
404 }
405
406 /* FFS_SETUP_PENDING */
407 if (!(ffs->ev.setup.bRequestType & USB_DIR_IN)) {
408 spin_unlock_irq(&ffs->ev.waitq.lock);
409 ret = __ffs_ep0_stall(ffs);
410 break;
411 }
412
413 /* FFS_SETUP_PENDING and not stall */
414 len = min(len, (size_t)le16_to_cpu(ffs->ev.setup.wLength));
415
416 spin_unlock_irq(&ffs->ev.waitq.lock);
417
418 data = ffs_prepare_buffer(buf, len);
537baabb 419 if (IS_ERR(data)) {
ddf8abd2
MN
420 ret = PTR_ERR(data);
421 break;
422 }
423
424 spin_lock_irq(&ffs->ev.waitq.lock);
425
5ab54cf7
MN
426 /*
427 * We are guaranteed to be still in FFS_ACTIVE state
ddf8abd2 428 * but the state of setup could have changed from
e46318a0 429 * FFS_SETUP_PENDING to FFS_SETUP_CANCELLED so we need
ddf8abd2 430 * to check for that. If that happened we copied data
5ab54cf7
MN
431 * from user space in vain but it's unlikely.
432 *
433 * For sure we are not in FFS_NO_SETUP since this is
ddf8abd2
MN
434 * the only place FFS_SETUP_PENDING -> FFS_NO_SETUP
435 * transition can be performed and it's protected by
5ab54cf7
MN
436 * mutex.
437 */
a7ecf054
MN
438 if (ffs_setup_state_clear_cancelled(ffs) ==
439 FFS_SETUP_CANCELLED) {
ddf8abd2
MN
440 ret = -EIDRM;
441done_spin:
442 spin_unlock_irq(&ffs->ev.waitq.lock);
443 } else {
444 /* unlocks spinlock */
445 ret = __ffs_ep0_queue_wait(ffs, data, len);
446 }
447 kfree(data);
448 break;
449
ddf8abd2
MN
450 default:
451 ret = -EBADFD;
452 break;
453 }
454
ddf8abd2
MN
455 mutex_unlock(&ffs->mutex);
456 return ret;
457}
458
67913bbd 459/* Called with ffs->ev.waitq.lock and ffs->mutex held, both released on exit. */
ddf8abd2
MN
460static ssize_t __ffs_ep0_read_events(struct ffs_data *ffs, char __user *buf,
461 size_t n)
c40619bb 462 __releases(&ffs->ev.waitq.lock)
ddf8abd2 463{
5ab54cf7 464 /*
67913bbd
MN
465 * n cannot be bigger than ffs->ev.count, which cannot be bigger than
466 * size of ffs->ev.types array (which is four) so that's how much space
467 * we reserve.
5ab54cf7 468 */
67913bbd
MN
469 struct usb_functionfs_event events[ARRAY_SIZE(ffs->ev.types)];
470 const size_t size = n * sizeof *events;
ddf8abd2
MN
471 unsigned i = 0;
472
67913bbd 473 memset(events, 0, size);
ddf8abd2
MN
474
475 do {
476 events[i].type = ffs->ev.types[i];
477 if (events[i].type == FUNCTIONFS_SETUP) {
478 events[i].u.setup = ffs->ev.setup;
479 ffs->setup_state = FFS_SETUP_PENDING;
480 }
481 } while (++i < n);
482
67913bbd
MN
483 ffs->ev.count -= n;
484 if (ffs->ev.count)
ddf8abd2
MN
485 memmove(ffs->ev.types, ffs->ev.types + n,
486 ffs->ev.count * sizeof *ffs->ev.types);
ddf8abd2
MN
487
488 spin_unlock_irq(&ffs->ev.waitq.lock);
489 mutex_unlock(&ffs->mutex);
490
7fe9a937 491 return unlikely(copy_to_user(buf, events, size)) ? -EFAULT : size;
ddf8abd2
MN
492}
493
ddf8abd2
MN
494static ssize_t ffs_ep0_read(struct file *file, char __user *buf,
495 size_t len, loff_t *ptr)
496{
497 struct ffs_data *ffs = file->private_data;
498 char *data = NULL;
499 size_t n;
500 int ret;
501
502 ENTER();
503
504 /* Fast check if setup was canceled */
a7ecf054 505 if (ffs_setup_state_clear_cancelled(ffs) == FFS_SETUP_CANCELLED)
ddf8abd2
MN
506 return -EIDRM;
507
508 /* Acquire mutex */
509 ret = ffs_mutex_lock(&ffs->mutex, file->f_flags & O_NONBLOCK);
510 if (unlikely(ret < 0))
511 return ret;
512
ddf8abd2
MN
513 /* Check state */
514 if (ffs->state != FFS_ACTIVE) {
515 ret = -EBADFD;
516 goto done_mutex;
517 }
518
5ab54cf7
MN
519 /*
520 * We're called from user space, we can use _irq rather then
521 * _irqsave
522 */
ddf8abd2
MN
523 spin_lock_irq(&ffs->ev.waitq.lock);
524
a7ecf054 525 switch (ffs_setup_state_clear_cancelled(ffs)) {
e46318a0 526 case FFS_SETUP_CANCELLED:
ddf8abd2
MN
527 ret = -EIDRM;
528 break;
529
530 case FFS_NO_SETUP:
531 n = len / sizeof(struct usb_functionfs_event);
532 if (unlikely(!n)) {
533 ret = -EINVAL;
534 break;
535 }
536
537 if ((file->f_flags & O_NONBLOCK) && !ffs->ev.count) {
538 ret = -EAGAIN;
539 break;
540 }
541
5ab54cf7
MN
542 if (wait_event_interruptible_exclusive_locked_irq(ffs->ev.waitq,
543 ffs->ev.count)) {
ddf8abd2
MN
544 ret = -EINTR;
545 break;
546 }
547
c40619bb 548 /* unlocks spinlock */
ddf8abd2
MN
549 return __ffs_ep0_read_events(ffs, buf,
550 min(n, (size_t)ffs->ev.count));
551
ddf8abd2
MN
552 case FFS_SETUP_PENDING:
553 if (ffs->ev.setup.bRequestType & USB_DIR_IN) {
554 spin_unlock_irq(&ffs->ev.waitq.lock);
555 ret = __ffs_ep0_stall(ffs);
556 goto done_mutex;
557 }
558
559 len = min(len, (size_t)le16_to_cpu(ffs->ev.setup.wLength));
560
561 spin_unlock_irq(&ffs->ev.waitq.lock);
562
563 if (likely(len)) {
564 data = kmalloc(len, GFP_KERNEL);
565 if (unlikely(!data)) {
566 ret = -ENOMEM;
567 goto done_mutex;
568 }
569 }
570
571 spin_lock_irq(&ffs->ev.waitq.lock);
572
573 /* See ffs_ep0_write() */
a7ecf054
MN
574 if (ffs_setup_state_clear_cancelled(ffs) ==
575 FFS_SETUP_CANCELLED) {
ddf8abd2
MN
576 ret = -EIDRM;
577 break;
578 }
579
580 /* unlocks spinlock */
581 ret = __ffs_ep0_queue_wait(ffs, data, len);
7fe9a937 582 if (likely(ret > 0) && unlikely(copy_to_user(buf, data, len)))
ddf8abd2
MN
583 ret = -EFAULT;
584 goto done_mutex;
585
586 default:
587 ret = -EBADFD;
588 break;
589 }
590
591 spin_unlock_irq(&ffs->ev.waitq.lock);
592done_mutex:
593 mutex_unlock(&ffs->mutex);
594 kfree(data);
595 return ret;
596}
597
ddf8abd2
MN
598static int ffs_ep0_open(struct inode *inode, struct file *file)
599{
600 struct ffs_data *ffs = inode->i_private;
601
602 ENTER();
603
604 if (unlikely(ffs->state == FFS_CLOSING))
605 return -EBUSY;
606
607 file->private_data = ffs;
608 ffs_data_opened(ffs);
609
610 return 0;
611}
612
ddf8abd2
MN
613static int ffs_ep0_release(struct inode *inode, struct file *file)
614{
615 struct ffs_data *ffs = file->private_data;
616
617 ENTER();
618
619 ffs_data_closed(ffs);
620
621 return 0;
622}
623
ddf8abd2
MN
624static long ffs_ep0_ioctl(struct file *file, unsigned code, unsigned long value)
625{
626 struct ffs_data *ffs = file->private_data;
627 struct usb_gadget *gadget = ffs->gadget;
628 long ret;
629
630 ENTER();
631
632 if (code == FUNCTIONFS_INTERFACE_REVMAP) {
633 struct ffs_function *func = ffs->func;
634 ret = func ? ffs_func_revmap_intf(func, value) : -ENODEV;
92b0abf8 635 } else if (gadget && gadget->ops->ioctl) {
ddf8abd2 636 ret = gadget->ops->ioctl(gadget, code, value);
ddf8abd2
MN
637 } else {
638 ret = -ENOTTY;
639 }
640
641 return ret;
642}
643
afc9a42b 644static __poll_t ffs_ep0_poll(struct file *file, poll_table *wait)
23de91e9
RB
645{
646 struct ffs_data *ffs = file->private_data;
a9a08845 647 __poll_t mask = EPOLLWRNORM;
23de91e9
RB
648 int ret;
649
650 poll_wait(file, &ffs->ev.waitq, wait);
651
652 ret = ffs_mutex_lock(&ffs->mutex, file->f_flags & O_NONBLOCK);
653 if (unlikely(ret < 0))
654 return mask;
655
656 switch (ffs->state) {
657 case FFS_READ_DESCRIPTORS:
658 case FFS_READ_STRINGS:
a9a08845 659 mask |= EPOLLOUT;
23de91e9
RB
660 break;
661
662 case FFS_ACTIVE:
663 switch (ffs->setup_state) {
664 case FFS_NO_SETUP:
665 if (ffs->ev.count)
a9a08845 666 mask |= EPOLLIN;
23de91e9
RB
667 break;
668
669 case FFS_SETUP_PENDING:
670 case FFS_SETUP_CANCELLED:
a9a08845 671 mask |= (EPOLLIN | EPOLLOUT);
23de91e9
RB
672 break;
673 }
674 case FFS_CLOSING:
675 break;
18d6b32f
RB
676 case FFS_DEACTIVATED:
677 break;
23de91e9
RB
678 }
679
680 mutex_unlock(&ffs->mutex);
681
682 return mask;
683}
684
ddf8abd2 685static const struct file_operations ffs_ep0_operations = {
ddf8abd2
MN
686 .llseek = no_llseek,
687
688 .open = ffs_ep0_open,
689 .write = ffs_ep0_write,
690 .read = ffs_ep0_read,
691 .release = ffs_ep0_release,
692 .unlocked_ioctl = ffs_ep0_ioctl,
23de91e9 693 .poll = ffs_ep0_poll,
ddf8abd2
MN
694};
695
696
697/* "Normal" endpoints operations ********************************************/
698
ddf8abd2
MN
699static void ffs_epfile_io_complete(struct usb_ep *_ep, struct usb_request *req)
700{
701 ENTER();
702 if (likely(req->context)) {
703 struct ffs_ep *ep = _ep->driver_data;
704 ep->status = req->status ? req->status : req->actual;
705 complete(req->context);
706 }
707}
708
c662a31b
MN
709static ssize_t ffs_copy_to_iter(void *data, int data_len, struct iov_iter *iter)
710{
711 ssize_t ret = copy_to_iter(data, data_len, iter);
712 if (likely(ret == data_len))
713 return ret;
714
715 if (unlikely(iov_iter_count(iter)))
716 return -EFAULT;
717
718 /*
719 * Dear user space developer!
720 *
721 * TL;DR: To stop getting below error message in your kernel log, change
722 * user space code using functionfs to align read buffers to a max
723 * packet size.
724 *
725 * Some UDCs (e.g. dwc3) require request sizes to be a multiple of a max
726 * packet size. When unaligned buffer is passed to functionfs, it
727 * internally uses a larger, aligned buffer so that such UDCs are happy.
728 *
729 * Unfortunately, this means that host may send more data than was
730 * requested in read(2) system call. f_fs doesn’t know what to do with
731 * that excess data so it simply drops it.
732 *
733 * Was the buffer aligned in the first place, no such problem would
734 * happen.
735 *
9353afbb
MN
736 * Data may be dropped only in AIO reads. Synchronous reads are handled
737 * by splitting a request into multiple parts. This splitting may still
738 * be a problem though so it’s likely best to align the buffer
739 * regardless of it being AIO or not..
740 *
c662a31b
MN
741 * This only affects OUT endpoints, i.e. reading data with a read(2),
742 * aio_read(2) etc. system calls. Writing data to an IN endpoint is not
743 * affected.
744 */
745 pr_err("functionfs read size %d > requested size %zd, dropping excess data. "
746 "Align read buffer size to max packet size to avoid the problem.\n",
747 data_len, ret);
748
749 return ret;
750}
751
2e4c7553
RB
752static void ffs_user_copy_worker(struct work_struct *work)
753{
754 struct ffs_io_data *io_data = container_of(work, struct ffs_io_data,
755 work);
756 int ret = io_data->req->status ? io_data->req->status :
757 io_data->req->actual;
38740a5b 758 bool kiocb_has_eventfd = io_data->kiocb->ki_flags & IOCB_EVENTFD;
2e4c7553
RB
759
760 if (io_data->read && ret > 0) {
4058ebf3
LPC
761 mm_segment_t oldfs = get_fs();
762
763 set_fs(USER_DS);
2e4c7553 764 use_mm(io_data->mm);
c662a31b 765 ret = ffs_copy_to_iter(io_data->buf, ret, &io_data->data);
2e4c7553 766 unuse_mm(io_data->mm);
4058ebf3 767 set_fs(oldfs);
2e4c7553
RB
768 }
769
04b2fa9f 770 io_data->kiocb->ki_complete(io_data->kiocb, ret, ret);
2e4c7553 771
38740a5b 772 if (io_data->ffs->ffs_eventfd && !kiocb_has_eventfd)
5e33f6fd
RB
773 eventfd_signal(io_data->ffs->ffs_eventfd, 1);
774
2e4c7553
RB
775 usb_ep_free_request(io_data->ep, io_data->req);
776
2e4c7553 777 if (io_data->read)
c993c39b 778 kfree(io_data->to_free);
2e4c7553
RB
779 kfree(io_data->buf);
780 kfree(io_data);
781}
782
783static void ffs_epfile_async_io_complete(struct usb_ep *_ep,
784 struct usb_request *req)
785{
786 struct ffs_io_data *io_data = req->context;
addfc582 787 struct ffs_data *ffs = io_data->ffs;
2e4c7553
RB
788
789 ENTER();
790
791 INIT_WORK(&io_data->work, ffs_user_copy_worker);
addfc582 792 queue_work(ffs->io_completion_wq, &io_data->work);
2e4c7553
RB
793}
794
a9e6f83c
MN
795static void __ffs_epfile_read_buffer_free(struct ffs_epfile *epfile)
796{
797 /*
798 * See comment in struct ffs_epfile for full read_buffer pointer
799 * synchronisation story.
800 */
801 struct ffs_buffer *buf = xchg(&epfile->read_buffer, READ_BUFFER_DROP);
802 if (buf && buf != READ_BUFFER_DROP)
803 kfree(buf);
804}
805
9353afbb
MN
806/* Assumes epfile->mutex is held. */
807static ssize_t __ffs_epfile_read_buffered(struct ffs_epfile *epfile,
808 struct iov_iter *iter)
809{
a9e6f83c
MN
810 /*
811 * Null out epfile->read_buffer so ffs_func_eps_disable does not free
812 * the buffer while we are using it. See comment in struct ffs_epfile
813 * for full read_buffer pointer synchronisation story.
814 */
815 struct ffs_buffer *buf = xchg(&epfile->read_buffer, NULL);
9353afbb 816 ssize_t ret;
a9e6f83c 817 if (!buf || buf == READ_BUFFER_DROP)
9353afbb
MN
818 return 0;
819
820 ret = copy_to_iter(buf->data, buf->length, iter);
821 if (buf->length == ret) {
822 kfree(buf);
a9e6f83c
MN
823 return ret;
824 }
825
826 if (unlikely(iov_iter_count(iter))) {
9353afbb
MN
827 ret = -EFAULT;
828 } else {
829 buf->length -= ret;
830 buf->data += ret;
831 }
a9e6f83c
MN
832
833 if (cmpxchg(&epfile->read_buffer, NULL, buf))
834 kfree(buf);
835
9353afbb
MN
836 return ret;
837}
838
839/* Assumes epfile->mutex is held. */
840static ssize_t __ffs_epfile_read_data(struct ffs_epfile *epfile,
841 void *data, int data_len,
842 struct iov_iter *iter)
843{
844 struct ffs_buffer *buf;
845
846 ssize_t ret = copy_to_iter(data, data_len, iter);
847 if (likely(data_len == ret))
848 return ret;
849
850 if (unlikely(iov_iter_count(iter)))
851 return -EFAULT;
852
853 /* See ffs_copy_to_iter for more context. */
854 pr_warn("functionfs read size %d > requested size %zd, splitting request into multiple reads.",
855 data_len, ret);
856
857 data_len -= ret;
858 buf = kmalloc(sizeof(*buf) + data_len, GFP_KERNEL);
44963d64
DC
859 if (!buf)
860 return -ENOMEM;
9353afbb
MN
861 buf->length = data_len;
862 buf->data = buf->storage;
863 memcpy(buf->storage, data + ret, data_len);
a9e6f83c
MN
864
865 /*
866 * At this point read_buffer is NULL or READ_BUFFER_DROP (if
867 * ffs_func_eps_disable has been called in the meanwhile). See comment
868 * in struct ffs_epfile for full read_buffer pointer synchronisation
869 * story.
870 */
871 if (unlikely(cmpxchg(&epfile->read_buffer, NULL, buf)))
872 kfree(buf);
9353afbb
MN
873
874 return ret;
875}
876
2e4c7553 877static ssize_t ffs_epfile_io(struct file *file, struct ffs_io_data *io_data)
ddf8abd2
MN
878{
879 struct ffs_epfile *epfile = file->private_data;
ae76e134 880 struct usb_request *req;
ddf8abd2
MN
881 struct ffs_ep *ep;
882 char *data = NULL;
c0d31b3c 883 ssize_t ret, data_len = -EINVAL;
ddf8abd2
MN
884 int halt;
885
7fa68034 886 /* Are we still active? */
b3591f67
MN
887 if (WARN_ON(epfile->ffs->state != FFS_ACTIVE))
888 return -ENODEV;
ddf8abd2 889
7fa68034
MN
890 /* Wait for endpoint to be enabled */
891 ep = epfile->ep;
892 if (!ep) {
b3591f67
MN
893 if (file->f_flags & O_NONBLOCK)
894 return -EAGAIN;
ddf8abd2 895
e16828cf
JZ
896 ret = wait_event_interruptible(
897 epfile->ffs->wait, (ep = epfile->ep));
b3591f67
MN
898 if (ret)
899 return -EINTR;
7fa68034 900 }
ddf8abd2 901
7fa68034 902 /* Do we halt? */
2e4c7553 903 halt = (!io_data->read == !epfile->in);
b3591f67
MN
904 if (halt && epfile->isoc)
905 return -EINVAL;
ddf8abd2 906
9353afbb
MN
907 /* We will be using request and read_buffer */
908 ret = ffs_mutex_lock(&epfile->mutex, file->f_flags & O_NONBLOCK);
909 if (unlikely(ret))
910 goto error;
911
7fa68034
MN
912 /* Allocate & copy */
913 if (!halt) {
9353afbb
MN
914 struct usb_gadget *gadget;
915
916 /*
917 * Do we have buffered data from previous partial read? Check
918 * that for synchronous case only because we do not have
919 * facility to ‘wake up’ a pending asynchronous read and push
920 * buffered data to it which we would need to make things behave
921 * consistently.
922 */
923 if (!io_data->aio && io_data->read) {
924 ret = __ffs_epfile_read_buffered(epfile, &io_data->data);
925 if (ret)
926 goto error_mutex;
927 }
928
f0f42204
AP
929 /*
930 * if we _do_ wait above, the epfile->ffs->gadget might be NULL
ae76e134
MN
931 * before the waiting completes, so do not assign to 'gadget'
932 * earlier
f0f42204 933 */
9353afbb 934 gadget = epfile->ffs->gadget;
f0f42204 935
97839ca4
CB
936 spin_lock_irq(&epfile->ffs->eps_lock);
937 /* In the meantime, endpoint got disabled or changed. */
938 if (epfile->ep != ep) {
9353afbb
MN
939 ret = -ESHUTDOWN;
940 goto error_lock;
97839ca4 941 }
c993c39b 942 data_len = iov_iter_count(&io_data->data);
219580e6
MN
943 /*
944 * Controller may require buffer size to be aligned to
945 * maxpacketsize of an out endpoint.
946 */
c993c39b
AV
947 if (io_data->read)
948 data_len = usb_ep_align_maybe(gadget, ep->ep, data_len);
97839ca4 949 spin_unlock_irq(&epfile->ffs->eps_lock);
219580e6
MN
950
951 data = kmalloc(data_len, GFP_KERNEL);
9353afbb
MN
952 if (unlikely(!data)) {
953 ret = -ENOMEM;
954 goto error_mutex;
955 }
956 if (!io_data->read &&
cbbd26b8 957 !copy_from_iter_full(data, data_len, &io_data->data)) {
9353afbb
MN
958 ret = -EFAULT;
959 goto error_mutex;
7fa68034
MN
960 }
961 }
ddf8abd2 962
7fa68034 963 spin_lock_irq(&epfile->ffs->eps_lock);
ddf8abd2 964
7fa68034
MN
965 if (epfile->ep != ep) {
966 /* In the meantime, endpoint got disabled or changed. */
967 ret = -ESHUTDOWN;
7fa68034 968 } else if (halt) {
cdff9f8e
JZ
969 ret = usb_ep_set_halt(ep->ep);
970 if (!ret)
971 ret = -EBADMSG;
ae76e134 972 } else if (unlikely(data_len == -EINVAL)) {
c0d31b3c
DC
973 /*
974 * Sanity Check: even though data_len can't be used
975 * uninitialized at the time I write this comment, some
976 * compilers complain about this situation.
977 * In order to keep the code clean from warnings, data_len is
978 * being initialized to -EINVAL during its declaration, which
979 * means we can't rely on compiler anymore to warn no future
980 * changes won't result in data_len being used uninitialized.
981 * For such reason, we're adding this redundant sanity check
982 * here.
983 */
ae76e134
MN
984 WARN(1, "%s: data_len == -EINVAL\n", __func__);
985 ret = -EINVAL;
986 } else if (!io_data->aio) {
987 DECLARE_COMPLETION_ONSTACK(done);
ef150884 988 bool interrupted = false;
ddf8abd2 989
ae76e134
MN
990 req = ep->req;
991 req->buf = data;
992 req->length = data_len;
ddf8abd2 993
ae76e134
MN
994 req->context = &done;
995 req->complete = ffs_epfile_io_complete;
2e4c7553 996
ae76e134
MN
997 ret = usb_ep_queue(ep->ep, req, GFP_ATOMIC);
998 if (unlikely(ret < 0))
999 goto error_lock;
2e4c7553 1000
ae76e134 1001 spin_unlock_irq(&epfile->ffs->eps_lock);
2e4c7553 1002
ae76e134 1003 if (unlikely(wait_for_completion_interruptible(&done))) {
ef150884
DC
1004 /*
1005 * To avoid race condition with ffs_epfile_io_complete,
1006 * dequeue the request first then check
1007 * status. usb_ep_dequeue API should guarantee no race
1008 * condition with req->complete callback.
1009 */
ae76e134 1010 usb_ep_dequeue(ep->ep, req);
ef150884 1011 interrupted = ep->status < 0;
ae76e134 1012 }
2e4c7553 1013
c662a31b
MN
1014 if (interrupted)
1015 ret = -EINTR;
1016 else if (io_data->read && ep->status > 0)
9353afbb
MN
1017 ret = __ffs_epfile_read_data(epfile, data, ep->status,
1018 &io_data->data);
c662a31b
MN
1019 else
1020 ret = ep->status;
ae76e134 1021 goto error_mutex;
30bf90cc 1022 } else if (!(req = usb_ep_alloc_request(ep->ep, GFP_ATOMIC))) {
ae76e134
MN
1023 ret = -ENOMEM;
1024 } else {
1025 req->buf = data;
1026 req->length = data_len;
2e4c7553 1027
ae76e134
MN
1028 io_data->buf = data;
1029 io_data->ep = ep->ep;
1030 io_data->req = req;
1031 io_data->ffs = epfile->ffs;
2e4c7553 1032
ae76e134
MN
1033 req->context = io_data;
1034 req->complete = ffs_epfile_async_io_complete;
2e4c7553 1035
ae76e134
MN
1036 ret = usb_ep_queue(ep->ep, req, GFP_ATOMIC);
1037 if (unlikely(ret)) {
1038 usb_ep_free_request(ep->ep, req);
1039 goto error_lock;
ddf8abd2 1040 }
ddf8abd2 1041
ae76e134
MN
1042 ret = -EIOCBQUEUED;
1043 /*
1044 * Do not kfree the buffer in this function. It will be freed
1045 * by ffs_user_copy_worker.
1046 */
1047 data = NULL;
1048 }
48968f8d
RB
1049
1050error_lock:
1051 spin_unlock_irq(&epfile->ffs->eps_lock);
ae76e134 1052error_mutex:
48968f8d 1053 mutex_unlock(&epfile->mutex);
ddf8abd2
MN
1054error:
1055 kfree(data);
1056 return ret;
1057}
1058
ddf8abd2
MN
1059static int
1060ffs_epfile_open(struct inode *inode, struct file *file)
1061{
1062 struct ffs_epfile *epfile = inode->i_private;
1063
1064 ENTER();
1065
1066 if (WARN_ON(epfile->ffs->state != FFS_ACTIVE))
1067 return -ENODEV;
1068
1069 file->private_data = epfile;
1070 ffs_data_opened(epfile->ffs);
1071
1072 return 0;
1073}
1074
2e4c7553
RB
1075static int ffs_aio_cancel(struct kiocb *kiocb)
1076{
1077 struct ffs_io_data *io_data = kiocb->private;
1078 struct ffs_epfile *epfile = kiocb->ki_filp->private_data;
1079 int value;
1080
1081 ENTER();
1082
1083 spin_lock_irq(&epfile->ffs->eps_lock);
1084
1085 if (likely(io_data && io_data->ep && io_data->req))
1086 value = usb_ep_dequeue(io_data->ep, io_data->req);
1087 else
1088 value = -EINVAL;
1089
1090 spin_unlock_irq(&epfile->ffs->eps_lock);
1091
1092 return value;
1093}
1094
70e60d91 1095static ssize_t ffs_epfile_write_iter(struct kiocb *kiocb, struct iov_iter *from)
2e4c7553 1096{
70e60d91 1097 struct ffs_io_data io_data, *p = &io_data;
de2080d4 1098 ssize_t res;
2e4c7553
RB
1099
1100 ENTER();
1101
70e60d91
AV
1102 if (!is_sync_kiocb(kiocb)) {
1103 p = kmalloc(sizeof(io_data), GFP_KERNEL);
1104 if (unlikely(!p))
1105 return -ENOMEM;
1106 p->aio = true;
1107 } else {
1108 p->aio = false;
1109 }
2e4c7553 1110
70e60d91
AV
1111 p->read = false;
1112 p->kiocb = kiocb;
1113 p->data = *from;
1114 p->mm = current->mm;
2e4c7553 1115
70e60d91 1116 kiocb->private = p;
2e4c7553 1117
4088acf1
RMS
1118 if (p->aio)
1119 kiocb_set_cancel_fn(kiocb, ffs_aio_cancel);
2e4c7553 1120
70e60d91
AV
1121 res = ffs_epfile_io(kiocb->ki_filp, p);
1122 if (res == -EIOCBQUEUED)
1123 return res;
1124 if (p->aio)
1125 kfree(p);
1126 else
1127 *from = p->data;
de2080d4 1128 return res;
2e4c7553
RB
1129}
1130
70e60d91 1131static ssize_t ffs_epfile_read_iter(struct kiocb *kiocb, struct iov_iter *to)
2e4c7553 1132{
70e60d91 1133 struct ffs_io_data io_data, *p = &io_data;
de2080d4 1134 ssize_t res;
2e4c7553
RB
1135
1136 ENTER();
1137
70e60d91
AV
1138 if (!is_sync_kiocb(kiocb)) {
1139 p = kmalloc(sizeof(io_data), GFP_KERNEL);
1140 if (unlikely(!p))
1141 return -ENOMEM;
1142 p->aio = true;
1143 } else {
1144 p->aio = false;
2e4c7553
RB
1145 }
1146
70e60d91
AV
1147 p->read = true;
1148 p->kiocb = kiocb;
1149 if (p->aio) {
1150 p->to_free = dup_iter(&p->data, to, GFP_KERNEL);
1151 if (!p->to_free) {
1152 kfree(p);
1153 return -ENOMEM;
1154 }
1155 } else {
1156 p->data = *to;
1157 p->to_free = NULL;
1158 }
1159 p->mm = current->mm;
2e4c7553 1160
70e60d91 1161 kiocb->private = p;
2e4c7553 1162
4088acf1
RMS
1163 if (p->aio)
1164 kiocb_set_cancel_fn(kiocb, ffs_aio_cancel);
2e4c7553 1165
70e60d91
AV
1166 res = ffs_epfile_io(kiocb->ki_filp, p);
1167 if (res == -EIOCBQUEUED)
1168 return res;
1169
1170 if (p->aio) {
1171 kfree(p->to_free);
1172 kfree(p);
1173 } else {
1174 *to = p->data;
de2080d4
AV
1175 }
1176 return res;
2e4c7553
RB
1177}
1178
ddf8abd2
MN
1179static int
1180ffs_epfile_release(struct inode *inode, struct file *file)
1181{
1182 struct ffs_epfile *epfile = inode->i_private;
1183
1184 ENTER();
1185
a9e6f83c 1186 __ffs_epfile_read_buffer_free(epfile);
ddf8abd2
MN
1187 ffs_data_closed(epfile->ffs);
1188
1189 return 0;
1190}
1191
ddf8abd2
MN
1192static long ffs_epfile_ioctl(struct file *file, unsigned code,
1193 unsigned long value)
1194{
1195 struct ffs_epfile *epfile = file->private_data;
222155de 1196 struct ffs_ep *ep;
ddf8abd2
MN
1197 int ret;
1198
1199 ENTER();
1200
1201 if (WARN_ON(epfile->ffs->state != FFS_ACTIVE))
1202 return -ENODEV;
1203
222155de
JZ
1204 /* Wait for endpoint to be enabled */
1205 ep = epfile->ep;
1206 if (!ep) {
1207 if (file->f_flags & O_NONBLOCK)
1208 return -EAGAIN;
1209
e16828cf
JZ
1210 ret = wait_event_interruptible(
1211 epfile->ffs->wait, (ep = epfile->ep));
222155de
JZ
1212 if (ret)
1213 return -EINTR;
1214 }
1215
ddf8abd2 1216 spin_lock_irq(&epfile->ffs->eps_lock);
222155de
JZ
1217
1218 /* In the meantime, endpoint got disabled or changed. */
1219 if (epfile->ep != ep) {
1220 spin_unlock_irq(&epfile->ffs->eps_lock);
1221 return -ESHUTDOWN;
1222 }
1223
1224 switch (code) {
1225 case FUNCTIONFS_FIFO_STATUS:
1226 ret = usb_ep_fifo_status(epfile->ep->ep);
1227 break;
1228 case FUNCTIONFS_FIFO_FLUSH:
1229 usb_ep_fifo_flush(epfile->ep->ep);
1230 ret = 0;
1231 break;
1232 case FUNCTIONFS_CLEAR_HALT:
1233 ret = usb_ep_clear_halt(epfile->ep->ep);
1234 break;
1235 case FUNCTIONFS_ENDPOINT_REVMAP:
1236 ret = epfile->ep->num;
1237 break;
1238 case FUNCTIONFS_ENDPOINT_DESC:
1239 {
1240 int desc_idx;
1241 struct usb_endpoint_descriptor *desc;
1242
1243 switch (epfile->ffs->gadget->speed) {
1244 case USB_SPEED_SUPER:
1245 desc_idx = 2;
ddf8abd2 1246 break;
222155de
JZ
1247 case USB_SPEED_HIGH:
1248 desc_idx = 1;
ddf8abd2
MN
1249 break;
1250 default:
222155de 1251 desc_idx = 0;
ddf8abd2 1252 }
222155de
JZ
1253 desc = epfile->ep->descs[desc_idx];
1254
1255 spin_unlock_irq(&epfile->ffs->eps_lock);
c40619bb 1256 ret = copy_to_user((void __user *)value, desc, desc->bLength);
222155de
JZ
1257 if (ret)
1258 ret = -EFAULT;
1259 return ret;
1260 }
1261 default:
1262 ret = -ENOTTY;
ddf8abd2
MN
1263 }
1264 spin_unlock_irq(&epfile->ffs->eps_lock);
1265
1266 return ret;
1267}
1268
ddf8abd2 1269static const struct file_operations ffs_epfile_operations = {
ddf8abd2
MN
1270 .llseek = no_llseek,
1271
1272 .open = ffs_epfile_open,
70e60d91
AV
1273 .write_iter = ffs_epfile_write_iter,
1274 .read_iter = ffs_epfile_read_iter,
ddf8abd2
MN
1275 .release = ffs_epfile_release,
1276 .unlocked_ioctl = ffs_epfile_ioctl,
1277};
1278
1279
ddf8abd2
MN
1280/* File system and super block operations ***********************************/
1281
1282/*
5ab54cf7 1283 * Mounting the file system creates a controller file, used first for
ddf8abd2
MN
1284 * function configuration then later for event monitoring.
1285 */
1286
ddf8abd2
MN
1287static struct inode *__must_check
1288ffs_sb_make_inode(struct super_block *sb, void *data,
1289 const struct file_operations *fops,
1290 const struct inode_operations *iops,
1291 struct ffs_file_perms *perms)
1292{
1293 struct inode *inode;
1294
1295 ENTER();
1296
1297 inode = new_inode(sb);
1298
1299 if (likely(inode)) {
078cd827 1300 struct timespec ts = current_time(inode);
ddf8abd2 1301
12ba8d1e 1302 inode->i_ino = get_next_ino();
ddf8abd2
MN
1303 inode->i_mode = perms->mode;
1304 inode->i_uid = perms->uid;
1305 inode->i_gid = perms->gid;
078cd827
DD
1306 inode->i_atime = ts;
1307 inode->i_mtime = ts;
1308 inode->i_ctime = ts;
ddf8abd2
MN
1309 inode->i_private = data;
1310 if (fops)
1311 inode->i_fop = fops;
1312 if (iops)
1313 inode->i_op = iops;
1314 }
1315
1316 return inode;
1317}
1318
ddf8abd2 1319/* Create "regular" file */
1bb27cac 1320static struct dentry *ffs_sb_create_file(struct super_block *sb,
ddf8abd2 1321 const char *name, void *data,
1bb27cac 1322 const struct file_operations *fops)
ddf8abd2
MN
1323{
1324 struct ffs_data *ffs = sb->s_fs_info;
1325 struct dentry *dentry;
1326 struct inode *inode;
1327
1328 ENTER();
1329
1330 dentry = d_alloc_name(sb->s_root, name);
1331 if (unlikely(!dentry))
1332 return NULL;
1333
1334 inode = ffs_sb_make_inode(sb, data, fops, NULL, &ffs->file_perms);
1335 if (unlikely(!inode)) {
1336 dput(dentry);
1337 return NULL;
1338 }
1339
1340 d_add(dentry, inode);
1bb27cac 1341 return dentry;
ddf8abd2
MN
1342}
1343
ddf8abd2 1344/* Super block */
ddf8abd2
MN
1345static const struct super_operations ffs_sb_operations = {
1346 .statfs = simple_statfs,
1347 .drop_inode = generic_delete_inode,
1348};
1349
1350struct ffs_sb_fill_data {
1351 struct ffs_file_perms perms;
1352 umode_t root_mode;
1353 const char *dev_name;
18d6b32f 1354 bool no_disconnect;
2606b28a 1355 struct ffs_data *ffs_data;
ddf8abd2
MN
1356};
1357
1358static int ffs_sb_fill(struct super_block *sb, void *_data, int silent)
1359{
1360 struct ffs_sb_fill_data *data = _data;
1361 struct inode *inode;
2606b28a 1362 struct ffs_data *ffs = data->ffs_data;
ddf8abd2
MN
1363
1364 ENTER();
1365
ddf8abd2 1366 ffs->sb = sb;
2606b28a 1367 data->ffs_data = NULL;
ddf8abd2 1368 sb->s_fs_info = ffs;
09cbfeaf
KS
1369 sb->s_blocksize = PAGE_SIZE;
1370 sb->s_blocksize_bits = PAGE_SHIFT;
ddf8abd2
MN
1371 sb->s_magic = FUNCTIONFS_MAGIC;
1372 sb->s_op = &ffs_sb_operations;
1373 sb->s_time_gran = 1;
1374
1375 /* Root inode */
1376 data->perms.mode = data->root_mode;
1377 inode = ffs_sb_make_inode(sb, NULL,
1378 &simple_dir_operations,
1379 &simple_dir_inode_operations,
1380 &data->perms);
48fde701
AV
1381 sb->s_root = d_make_root(inode);
1382 if (unlikely(!sb->s_root))
2606b28a 1383 return -ENOMEM;
ddf8abd2
MN
1384
1385 /* EP0 file */
1386 if (unlikely(!ffs_sb_create_file(sb, "ep0", ffs,
1bb27cac 1387 &ffs_ep0_operations)))
2606b28a 1388 return -ENOMEM;
ddf8abd2
MN
1389
1390 return 0;
ddf8abd2
MN
1391}
1392
ddf8abd2
MN
1393static int ffs_fs_parse_opts(struct ffs_sb_fill_data *data, char *opts)
1394{
1395 ENTER();
1396
1397 if (!opts || !*opts)
1398 return 0;
1399
1400 for (;;) {
ddf8abd2 1401 unsigned long value;
afd2e186 1402 char *eq, *comma;
ddf8abd2
MN
1403
1404 /* Option limit */
1405 comma = strchr(opts, ',');
1406 if (comma)
1407 *comma = 0;
1408
1409 /* Value limit */
1410 eq = strchr(opts, '=');
1411 if (unlikely(!eq)) {
aa02f172 1412 pr_err("'=' missing in %s\n", opts);
ddf8abd2
MN
1413 return -EINVAL;
1414 }
1415 *eq = 0;
1416
1417 /* Parse value */
afd2e186 1418 if (kstrtoul(eq + 1, 0, &value)) {
aa02f172 1419 pr_err("%s: invalid value: %s\n", opts, eq + 1);
ddf8abd2
MN
1420 return -EINVAL;
1421 }
1422
1423 /* Interpret option */
1424 switch (eq - opts) {
18d6b32f
RB
1425 case 13:
1426 if (!memcmp(opts, "no_disconnect", 13))
1427 data->no_disconnect = !!value;
1428 else
1429 goto invalid;
1430 break;
ddf8abd2
MN
1431 case 5:
1432 if (!memcmp(opts, "rmode", 5))
1433 data->root_mode = (value & 0555) | S_IFDIR;
1434 else if (!memcmp(opts, "fmode", 5))
1435 data->perms.mode = (value & 0666) | S_IFREG;
1436 else
1437 goto invalid;
1438 break;
1439
1440 case 4:
1441 if (!memcmp(opts, "mode", 4)) {
1442 data->root_mode = (value & 0555) | S_IFDIR;
1443 data->perms.mode = (value & 0666) | S_IFREG;
1444 } else {
1445 goto invalid;
1446 }
1447 break;
1448
1449 case 3:
b9b73f7c
EB
1450 if (!memcmp(opts, "uid", 3)) {
1451 data->perms.uid = make_kuid(current_user_ns(), value);
1452 if (!uid_valid(data->perms.uid)) {
1453 pr_err("%s: unmapped value: %lu\n", opts, value);
1454 return -EINVAL;
1455 }
b8100750 1456 } else if (!memcmp(opts, "gid", 3)) {
b9b73f7c
EB
1457 data->perms.gid = make_kgid(current_user_ns(), value);
1458 if (!gid_valid(data->perms.gid)) {
1459 pr_err("%s: unmapped value: %lu\n", opts, value);
1460 return -EINVAL;
1461 }
b8100750 1462 } else {
ddf8abd2 1463 goto invalid;
b8100750 1464 }
ddf8abd2
MN
1465 break;
1466
1467 default:
1468invalid:
aa02f172 1469 pr_err("%s: invalid option\n", opts);
ddf8abd2
MN
1470 return -EINVAL;
1471 }
1472
1473 /* Next iteration */
1474 if (!comma)
1475 break;
1476 opts = comma + 1;
1477 }
1478
1479 return 0;
1480}
1481
ddf8abd2
MN
1482/* "mount -t functionfs dev_name /dev/function" ends up here */
1483
fc14f2fe
AV
1484static struct dentry *
1485ffs_fs_mount(struct file_system_type *t, int flags,
1486 const char *dev_name, void *opts)
ddf8abd2
MN
1487{
1488 struct ffs_sb_fill_data data = {
1489 .perms = {
1490 .mode = S_IFREG | 0600,
b9b73f7c
EB
1491 .uid = GLOBAL_ROOT_UID,
1492 .gid = GLOBAL_ROOT_GID,
ddf8abd2
MN
1493 },
1494 .root_mode = S_IFDIR | 0500,
18d6b32f 1495 .no_disconnect = false,
ddf8abd2 1496 };
581791f5 1497 struct dentry *rv;
ddf8abd2 1498 int ret;
581791f5 1499 void *ffs_dev;
2606b28a 1500 struct ffs_data *ffs;
ddf8abd2
MN
1501
1502 ENTER();
1503
ddf8abd2
MN
1504 ret = ffs_fs_parse_opts(&data, opts);
1505 if (unlikely(ret < 0))
fc14f2fe 1506 return ERR_PTR(ret);
ddf8abd2 1507
addfc582 1508 ffs = ffs_data_new(dev_name);
2606b28a
AV
1509 if (unlikely(!ffs))
1510 return ERR_PTR(-ENOMEM);
1511 ffs->file_perms = data.perms;
18d6b32f 1512 ffs->no_disconnect = data.no_disconnect;
2606b28a
AV
1513
1514 ffs->dev_name = kstrdup(dev_name, GFP_KERNEL);
1515 if (unlikely(!ffs->dev_name)) {
1516 ffs_data_put(ffs);
1517 return ERR_PTR(-ENOMEM);
1518 }
1519
4b187fce 1520 ffs_dev = ffs_acquire_dev(dev_name);
2606b28a
AV
1521 if (IS_ERR(ffs_dev)) {
1522 ffs_data_put(ffs);
1523 return ERR_CAST(ffs_dev);
1524 }
1525 ffs->private_data = ffs_dev;
1526 data.ffs_data = ffs;
581791f5 1527
581791f5 1528 rv = mount_nodev(t, flags, &data, ffs_sb_fill);
2606b28a 1529 if (IS_ERR(rv) && data.ffs_data) {
4b187fce 1530 ffs_release_dev(data.ffs_data);
2606b28a
AV
1531 ffs_data_put(data.ffs_data);
1532 }
581791f5 1533 return rv;
ddf8abd2
MN
1534}
1535
1536static void
1537ffs_fs_kill_sb(struct super_block *sb)
1538{
ddf8abd2
MN
1539 ENTER();
1540
1541 kill_litter_super(sb);
581791f5 1542 if (sb->s_fs_info) {
4b187fce 1543 ffs_release_dev(sb->s_fs_info);
18d6b32f 1544 ffs_data_closed(sb->s_fs_info);
5b5f9560 1545 ffs_data_put(sb->s_fs_info);
581791f5 1546 }
ddf8abd2
MN
1547}
1548
1549static struct file_system_type ffs_fs_type = {
1550 .owner = THIS_MODULE,
1551 .name = "functionfs",
fc14f2fe 1552 .mount = ffs_fs_mount,
ddf8abd2
MN
1553 .kill_sb = ffs_fs_kill_sb,
1554};
7f78e035 1555MODULE_ALIAS_FS("functionfs");
ddf8abd2
MN
1556
1557
ddf8abd2
MN
1558/* Driver's main init/cleanup functions *************************************/
1559
ddf8abd2
MN
1560static int functionfs_init(void)
1561{
1562 int ret;
1563
1564 ENTER();
1565
1566 ret = register_filesystem(&ffs_fs_type);
1567 if (likely(!ret))
aa02f172 1568 pr_info("file system registered\n");
ddf8abd2 1569 else
aa02f172 1570 pr_err("failed registering file system (%d)\n", ret);
ddf8abd2
MN
1571
1572 return ret;
1573}
1574
1575static void functionfs_cleanup(void)
1576{
1577 ENTER();
1578
aa02f172 1579 pr_info("unloading\n");
ddf8abd2
MN
1580 unregister_filesystem(&ffs_fs_type);
1581}
1582
1583
ddf8abd2
MN
1584/* ffs_data and ffs_function construction and destruction code **************/
1585
1586static void ffs_data_clear(struct ffs_data *ffs);
1587static void ffs_data_reset(struct ffs_data *ffs);
1588
ddf8abd2
MN
1589static void ffs_data_get(struct ffs_data *ffs)
1590{
1591 ENTER();
1592
43938613 1593 refcount_inc(&ffs->ref);
ddf8abd2
MN
1594}
1595
1596static void ffs_data_opened(struct ffs_data *ffs)
1597{
1598 ENTER();
1599
43938613 1600 refcount_inc(&ffs->ref);
18d6b32f
RB
1601 if (atomic_add_return(1, &ffs->opened) == 1 &&
1602 ffs->state == FFS_DEACTIVATED) {
1603 ffs->state = FFS_CLOSING;
1604 ffs_data_reset(ffs);
1605 }
ddf8abd2
MN
1606}
1607
1608static void ffs_data_put(struct ffs_data *ffs)
1609{
1610 ENTER();
1611
43938613 1612 if (unlikely(refcount_dec_and_test(&ffs->ref))) {
aa02f172 1613 pr_info("%s(): freeing\n", __func__);
ddf8abd2 1614 ffs_data_clear(ffs);
647d5580 1615 BUG_ON(waitqueue_active(&ffs->ev.waitq) ||
e16828cf
JZ
1616 waitqueue_active(&ffs->ep0req_completion.wait) ||
1617 waitqueue_active(&ffs->wait));
addfc582 1618 destroy_workqueue(ffs->io_completion_wq);
581791f5 1619 kfree(ffs->dev_name);
ddf8abd2
MN
1620 kfree(ffs);
1621 }
1622}
1623
ddf8abd2
MN
1624static void ffs_data_closed(struct ffs_data *ffs)
1625{
1626 ENTER();
1627
1628 if (atomic_dec_and_test(&ffs->opened)) {
18d6b32f
RB
1629 if (ffs->no_disconnect) {
1630 ffs->state = FFS_DEACTIVATED;
1631 if (ffs->epfiles) {
1632 ffs_epfiles_destroy(ffs->epfiles,
1633 ffs->eps_count);
1634 ffs->epfiles = NULL;
1635 }
1636 if (ffs->setup_state == FFS_SETUP_PENDING)
1637 __ffs_ep0_stall(ffs);
1638 } else {
1639 ffs->state = FFS_CLOSING;
1640 ffs_data_reset(ffs);
1641 }
1642 }
1643 if (atomic_read(&ffs->opened) < 0) {
ddf8abd2
MN
1644 ffs->state = FFS_CLOSING;
1645 ffs_data_reset(ffs);
1646 }
1647
1648 ffs_data_put(ffs);
1649}
1650
addfc582 1651static struct ffs_data *ffs_data_new(const char *dev_name)
ddf8abd2
MN
1652{
1653 struct ffs_data *ffs = kzalloc(sizeof *ffs, GFP_KERNEL);
1654 if (unlikely(!ffs))
f8800d47 1655 return NULL;
ddf8abd2
MN
1656
1657 ENTER();
1658
addfc582
JK
1659 ffs->io_completion_wq = alloc_ordered_workqueue("%s", 0, dev_name);
1660 if (!ffs->io_completion_wq) {
1661 kfree(ffs);
1662 return NULL;
1663 }
1664
43938613 1665 refcount_set(&ffs->ref, 1);
ddf8abd2
MN
1666 atomic_set(&ffs->opened, 0);
1667 ffs->state = FFS_READ_DESCRIPTORS;
1668 mutex_init(&ffs->mutex);
1669 spin_lock_init(&ffs->eps_lock);
1670 init_waitqueue_head(&ffs->ev.waitq);
e16828cf 1671 init_waitqueue_head(&ffs->wait);
ddf8abd2
MN
1672 init_completion(&ffs->ep0req_completion);
1673
1674 /* XXX REVISIT need to update it in some places, or do we? */
1675 ffs->ev.can_stall = 1;
1676
1677 return ffs;
1678}
1679
ddf8abd2
MN
1680static void ffs_data_clear(struct ffs_data *ffs)
1681{
1682 ENTER();
1683
49a79d8b 1684 ffs_closed(ffs);
ddf8abd2
MN
1685
1686 BUG_ON(ffs->gadget);
1687
1688 if (ffs->epfiles)
1689 ffs_epfiles_destroy(ffs->epfiles, ffs->eps_count);
1690
5e33f6fd
RB
1691 if (ffs->ffs_eventfd)
1692 eventfd_ctx_put(ffs->ffs_eventfd);
1693
ac8dde11 1694 kfree(ffs->raw_descs_data);
ddf8abd2
MN
1695 kfree(ffs->raw_strings);
1696 kfree(ffs->stringtabs);
1697}
1698
ddf8abd2
MN
1699static void ffs_data_reset(struct ffs_data *ffs)
1700{
1701 ENTER();
1702
1703 ffs_data_clear(ffs);
1704
1705 ffs->epfiles = NULL;
ac8dde11 1706 ffs->raw_descs_data = NULL;
ddf8abd2
MN
1707 ffs->raw_descs = NULL;
1708 ffs->raw_strings = NULL;
1709 ffs->stringtabs = NULL;
1710
1711 ffs->raw_descs_length = 0;
ddf8abd2
MN
1712 ffs->fs_descs_count = 0;
1713 ffs->hs_descs_count = 0;
8d4e897b 1714 ffs->ss_descs_count = 0;
ddf8abd2
MN
1715
1716 ffs->strings_count = 0;
1717 ffs->interfaces_count = 0;
1718 ffs->eps_count = 0;
1719
1720 ffs->ev.count = 0;
1721
1722 ffs->state = FFS_READ_DESCRIPTORS;
1723 ffs->setup_state = FFS_NO_SETUP;
1724 ffs->flags = 0;
1725}
1726
1727
1728static int functionfs_bind(struct ffs_data *ffs, struct usb_composite_dev *cdev)
1729{
fd7c9a00
MN
1730 struct usb_gadget_strings **lang;
1731 int first_id;
ddf8abd2
MN
1732
1733 ENTER();
1734
1735 if (WARN_ON(ffs->state != FFS_ACTIVE
1736 || test_and_set_bit(FFS_FL_BOUND, &ffs->flags)))
1737 return -EBADFD;
1738
fd7c9a00
MN
1739 first_id = usb_string_ids_n(cdev, ffs->strings_count);
1740 if (unlikely(first_id < 0))
1741 return first_id;
ddf8abd2
MN
1742
1743 ffs->ep0req = usb_ep_alloc_request(cdev->gadget->ep0, GFP_KERNEL);
1744 if (unlikely(!ffs->ep0req))
1745 return -ENOMEM;
1746 ffs->ep0req->complete = ffs_ep0_complete;
1747 ffs->ep0req->context = ffs;
1748
fd7c9a00 1749 lang = ffs->stringtabs;
f0688c8b
MN
1750 if (lang) {
1751 for (; *lang; ++lang) {
1752 struct usb_string *str = (*lang)->strings;
1753 int id = first_id;
1754 for (; str->s; ++id, ++str)
1755 str->id = id;
1756 }
ddf8abd2
MN
1757 }
1758
1759 ffs->gadget = cdev->gadget;
fd7c9a00 1760 ffs_data_get(ffs);
ddf8abd2
MN
1761 return 0;
1762}
1763
ddf8abd2
MN
1764static void functionfs_unbind(struct ffs_data *ffs)
1765{
1766 ENTER();
1767
1768 if (!WARN_ON(!ffs->gadget)) {
1769 usb_ep_free_request(ffs->gadget->ep0, ffs->ep0req);
1770 ffs->ep0req = NULL;
1771 ffs->gadget = NULL;
e2190a97 1772 clear_bit(FFS_FL_BOUND, &ffs->flags);
df498995 1773 ffs_data_put(ffs);
ddf8abd2
MN
1774 }
1775}
1776
ddf8abd2
MN
1777static int ffs_epfiles_create(struct ffs_data *ffs)
1778{
1779 struct ffs_epfile *epfile, *epfiles;
1780 unsigned i, count;
1781
1782 ENTER();
1783
1784 count = ffs->eps_count;
9823a525 1785 epfiles = kcalloc(count, sizeof(*epfiles), GFP_KERNEL);
ddf8abd2
MN
1786 if (!epfiles)
1787 return -ENOMEM;
1788
1789 epfile = epfiles;
1790 for (i = 1; i <= count; ++i, ++epfile) {
1791 epfile->ffs = ffs;
1792 mutex_init(&epfile->mutex);
1b0bf88f 1793 if (ffs->user_flags & FUNCTIONFS_VIRTUAL_ADDR)
acba23fe 1794 sprintf(epfile->name, "ep%02x", ffs->eps_addrmap[i]);
1b0bf88f 1795 else
acba23fe
MS
1796 sprintf(epfile->name, "ep%u", i);
1797 epfile->dentry = ffs_sb_create_file(ffs->sb, epfile->name,
1bb27cac
AV
1798 epfile,
1799 &ffs_epfile_operations);
1800 if (unlikely(!epfile->dentry)) {
ddf8abd2
MN
1801 ffs_epfiles_destroy(epfiles, i - 1);
1802 return -ENOMEM;
1803 }
1804 }
1805
1806 ffs->epfiles = epfiles;
1807 return 0;
1808}
1809
ddf8abd2
MN
1810static void ffs_epfiles_destroy(struct ffs_epfile *epfiles, unsigned count)
1811{
1812 struct ffs_epfile *epfile = epfiles;
1813
1814 ENTER();
1815
1816 for (; count; --count, ++epfile) {
e16828cf 1817 BUG_ON(mutex_is_locked(&epfile->mutex));
ddf8abd2
MN
1818 if (epfile->dentry) {
1819 d_delete(epfile->dentry);
1820 dput(epfile->dentry);
1821 epfile->dentry = NULL;
1822 }
1823 }
1824
1825 kfree(epfiles);
1826}
1827
ddf8abd2
MN
1828static void ffs_func_eps_disable(struct ffs_function *func)
1829{
1830 struct ffs_ep *ep = func->eps;
1831 struct ffs_epfile *epfile = func->ffs->epfiles;
1832 unsigned count = func->ffs->eps_count;
1833 unsigned long flags;
1834
a9e6f83c 1835 spin_lock_irqsave(&func->ffs->eps_lock, flags);
08f37148 1836 while (count--) {
ddf8abd2
MN
1837 /* pending requests get nuked */
1838 if (likely(ep->ep))
1839 usb_ep_disable(ep->ep);
ddf8abd2 1840 ++ep;
18d6b32f
RB
1841
1842 if (epfile) {
a9e6f83c
MN
1843 epfile->ep = NULL;
1844 __ffs_epfile_read_buffer_free(epfile);
18d6b32f
RB
1845 ++epfile;
1846 }
08f37148 1847 }
a9e6f83c 1848 spin_unlock_irqrestore(&func->ffs->eps_lock, flags);
ddf8abd2
MN
1849}
1850
1851static int ffs_func_eps_enable(struct ffs_function *func)
1852{
1853 struct ffs_data *ffs = func->ffs;
1854 struct ffs_ep *ep = func->eps;
1855 struct ffs_epfile *epfile = ffs->epfiles;
1856 unsigned count = ffs->eps_count;
1857 unsigned long flags;
1858 int ret = 0;
1859
1860 spin_lock_irqsave(&func->ffs->eps_lock, flags);
08f37148 1861 while(count--) {
ddf8abd2 1862 ep->ep->driver_data = ep;
2bfa0719 1863
675272d0
JP
1864 ret = config_ep_by_speed(func->gadget, &func->function, ep->ep);
1865 if (ret) {
1866 pr_err("%s: config_ep_by_speed(%s) returned %d\n",
1867 __func__, ep->ep->name, ret);
1868 break;
b7f73850 1869 }
2bfa0719 1870
72c973dd 1871 ret = usb_ep_enable(ep->ep);
ddf8abd2
MN
1872 if (likely(!ret)) {
1873 epfile->ep = ep;
675272d0
JP
1874 epfile->in = usb_endpoint_dir_in(ep->ep->desc);
1875 epfile->isoc = usb_endpoint_xfer_isoc(ep->ep->desc);
ddf8abd2
MN
1876 } else {
1877 break;
1878 }
1879
ddf8abd2
MN
1880 ++ep;
1881 ++epfile;
08f37148 1882 }
e16828cf
JZ
1883
1884 wake_up_interruptible(&ffs->wait);
ddf8abd2
MN
1885 spin_unlock_irqrestore(&func->ffs->eps_lock, flags);
1886
1887 return ret;
1888}
1889
1890
1891/* Parsing and building descriptors and strings *****************************/
1892
5ab54cf7
MN
1893/*
1894 * This validates if data pointed by data is a valid USB descriptor as
ddf8abd2 1895 * well as record how many interfaces, endpoints and strings are
5ab54cf7
MN
1896 * required by given configuration. Returns address after the
1897 * descriptor or NULL if data is invalid.
1898 */
ddf8abd2
MN
1899
1900enum ffs_entity_type {
1901 FFS_DESCRIPTOR, FFS_INTERFACE, FFS_STRING, FFS_ENDPOINT
1902};
1903
f0175ab5
AP
1904enum ffs_os_desc_type {
1905 FFS_OS_DESC, FFS_OS_DESC_EXT_COMPAT, FFS_OS_DESC_EXT_PROP
1906};
1907
ddf8abd2
MN
1908typedef int (*ffs_entity_callback)(enum ffs_entity_type entity,
1909 u8 *valuep,
1910 struct usb_descriptor_header *desc,
1911 void *priv);
1912
f0175ab5
AP
1913typedef int (*ffs_os_desc_callback)(enum ffs_os_desc_type entity,
1914 struct usb_os_desc_header *h, void *data,
1915 unsigned len, void *priv);
1916
f96cbd14
AP
1917static int __must_check ffs_do_single_desc(char *data, unsigned len,
1918 ffs_entity_callback entity,
1919 void *priv)
ddf8abd2
MN
1920{
1921 struct usb_descriptor_header *_ds = (void *)data;
1922 u8 length;
1923 int ret;
1924
1925 ENTER();
1926
1927 /* At least two bytes are required: length and type */
1928 if (len < 2) {
aa02f172 1929 pr_vdebug("descriptor too short\n");
ddf8abd2
MN
1930 return -EINVAL;
1931 }
1932
1933 /* If we have at least as many bytes as the descriptor takes? */
1934 length = _ds->bLength;
1935 if (len < length) {
aa02f172 1936 pr_vdebug("descriptor longer then available data\n");
ddf8abd2
MN
1937 return -EINVAL;
1938 }
1939
1940#define __entity_check_INTERFACE(val) 1
1941#define __entity_check_STRING(val) (val)
1942#define __entity_check_ENDPOINT(val) ((val) & USB_ENDPOINT_NUMBER_MASK)
1943#define __entity(type, val) do { \
aa02f172 1944 pr_vdebug("entity " #type "(%02x)\n", (val)); \
ddf8abd2 1945 if (unlikely(!__entity_check_ ##type(val))) { \
aa02f172 1946 pr_vdebug("invalid entity's value\n"); \
ddf8abd2
MN
1947 return -EINVAL; \
1948 } \
1949 ret = entity(FFS_ ##type, &val, _ds, priv); \
1950 if (unlikely(ret < 0)) { \
aa02f172 1951 pr_debug("entity " #type "(%02x); ret = %d\n", \
d8df0b61 1952 (val), ret); \
ddf8abd2
MN
1953 return ret; \
1954 } \
1955 } while (0)
1956
1957 /* Parse descriptor depending on type. */
1958 switch (_ds->bDescriptorType) {
1959 case USB_DT_DEVICE:
1960 case USB_DT_CONFIG:
1961 case USB_DT_STRING:
1962 case USB_DT_DEVICE_QUALIFIER:
1963 /* function can't have any of those */
aa02f172 1964 pr_vdebug("descriptor reserved for gadget: %d\n",
5ab54cf7 1965 _ds->bDescriptorType);
ddf8abd2
MN
1966 return -EINVAL;
1967
1968 case USB_DT_INTERFACE: {
1969 struct usb_interface_descriptor *ds = (void *)_ds;
aa02f172 1970 pr_vdebug("interface descriptor\n");
ddf8abd2
MN
1971 if (length != sizeof *ds)
1972 goto inv_length;
1973
1974 __entity(INTERFACE, ds->bInterfaceNumber);
1975 if (ds->iInterface)
1976 __entity(STRING, ds->iInterface);
1977 }
1978 break;
1979
1980 case USB_DT_ENDPOINT: {
1981 struct usb_endpoint_descriptor *ds = (void *)_ds;
aa02f172 1982 pr_vdebug("endpoint descriptor\n");
ddf8abd2
MN
1983 if (length != USB_DT_ENDPOINT_SIZE &&
1984 length != USB_DT_ENDPOINT_AUDIO_SIZE)
1985 goto inv_length;
1986 __entity(ENDPOINT, ds->bEndpointAddress);
1987 }
1988 break;
1989
560f1187
KB
1990 case HID_DT_HID:
1991 pr_vdebug("hid descriptor\n");
1992 if (length != sizeof(struct hid_descriptor))
1993 goto inv_length;
1994 break;
1995
ddf8abd2
MN
1996 case USB_DT_OTG:
1997 if (length != sizeof(struct usb_otg_descriptor))
1998 goto inv_length;
1999 break;
2000
2001 case USB_DT_INTERFACE_ASSOCIATION: {
2002 struct usb_interface_assoc_descriptor *ds = (void *)_ds;
aa02f172 2003 pr_vdebug("interface association descriptor\n");
ddf8abd2
MN
2004 if (length != sizeof *ds)
2005 goto inv_length;
2006 if (ds->iFunction)
2007 __entity(STRING, ds->iFunction);
2008 }
2009 break;
2010
8d4e897b
MG
2011 case USB_DT_SS_ENDPOINT_COMP:
2012 pr_vdebug("EP SS companion descriptor\n");
2013 if (length != sizeof(struct usb_ss_ep_comp_descriptor))
2014 goto inv_length;
2015 break;
2016
ddf8abd2
MN
2017 case USB_DT_OTHER_SPEED_CONFIG:
2018 case USB_DT_INTERFACE_POWER:
2019 case USB_DT_DEBUG:
2020 case USB_DT_SECURITY:
2021 case USB_DT_CS_RADIO_CONTROL:
2022 /* TODO */
aa02f172 2023 pr_vdebug("unimplemented descriptor: %d\n", _ds->bDescriptorType);
ddf8abd2
MN
2024 return -EINVAL;
2025
2026 default:
2027 /* We should never be here */
aa02f172 2028 pr_vdebug("unknown descriptor: %d\n", _ds->bDescriptorType);
ddf8abd2
MN
2029 return -EINVAL;
2030
5ab54cf7 2031inv_length:
aa02f172 2032 pr_vdebug("invalid length: %d (descriptor %d)\n",
d8df0b61 2033 _ds->bLength, _ds->bDescriptorType);
ddf8abd2
MN
2034 return -EINVAL;
2035 }
2036
2037#undef __entity
2038#undef __entity_check_DESCRIPTOR
2039#undef __entity_check_INTERFACE
2040#undef __entity_check_STRING
2041#undef __entity_check_ENDPOINT
2042
2043 return length;
2044}
2045
ddf8abd2
MN
2046static int __must_check ffs_do_descs(unsigned count, char *data, unsigned len,
2047 ffs_entity_callback entity, void *priv)
2048{
2049 const unsigned _len = len;
2050 unsigned long num = 0;
2051
2052 ENTER();
2053
2054 for (;;) {
2055 int ret;
2056
2057 if (num == count)
2058 data = NULL;
2059
5ab54cf7 2060 /* Record "descriptor" entity */
ddf8abd2
MN
2061 ret = entity(FFS_DESCRIPTOR, (u8 *)num, (void *)data, priv);
2062 if (unlikely(ret < 0)) {
aa02f172 2063 pr_debug("entity DESCRIPTOR(%02lx); ret = %d\n",
d8df0b61 2064 num, ret);
ddf8abd2
MN
2065 return ret;
2066 }
2067
2068 if (!data)
2069 return _len - len;
2070
f96cbd14 2071 ret = ffs_do_single_desc(data, len, entity, priv);
ddf8abd2 2072 if (unlikely(ret < 0)) {
aa02f172 2073 pr_debug("%s returns %d\n", __func__, ret);
ddf8abd2
MN
2074 return ret;
2075 }
2076
2077 len -= ret;
2078 data += ret;
2079 ++num;
2080 }
2081}
2082
ddf8abd2
MN
2083static int __ffs_data_do_entity(enum ffs_entity_type type,
2084 u8 *valuep, struct usb_descriptor_header *desc,
2085 void *priv)
2086{
6d5c1c77
RB
2087 struct ffs_desc_helper *helper = priv;
2088 struct usb_endpoint_descriptor *d;
ddf8abd2
MN
2089
2090 ENTER();
2091
2092 switch (type) {
2093 case FFS_DESCRIPTOR:
2094 break;
2095
2096 case FFS_INTERFACE:
5ab54cf7
MN
2097 /*
2098 * Interfaces are indexed from zero so if we
ddf8abd2 2099 * encountered interface "n" then there are at least
5ab54cf7
MN
2100 * "n+1" interfaces.
2101 */
6d5c1c77
RB
2102 if (*valuep >= helper->interfaces_count)
2103 helper->interfaces_count = *valuep + 1;
ddf8abd2
MN
2104 break;
2105
2106 case FFS_STRING:
5ab54cf7 2107 /*
96a420d2
VP
2108 * Strings are indexed from 1 (0 is reserved
2109 * for languages list)
5ab54cf7 2110 */
6d5c1c77
RB
2111 if (*valuep > helper->ffs->strings_count)
2112 helper->ffs->strings_count = *valuep;
ddf8abd2
MN
2113 break;
2114
2115 case FFS_ENDPOINT:
6d5c1c77
RB
2116 d = (void *)desc;
2117 helper->eps_count++;
41dc9ac1 2118 if (helper->eps_count >= FFS_MAX_EPS_COUNT)
6d5c1c77
RB
2119 return -EINVAL;
2120 /* Check if descriptors for any speed were already parsed */
2121 if (!helper->ffs->eps_count && !helper->ffs->interfaces_count)
2122 helper->ffs->eps_addrmap[helper->eps_count] =
2123 d->bEndpointAddress;
2124 else if (helper->ffs->eps_addrmap[helper->eps_count] !=
2125 d->bEndpointAddress)
2126 return -EINVAL;
ddf8abd2
MN
2127 break;
2128 }
2129
2130 return 0;
2131}
2132
f0175ab5
AP
2133static int __ffs_do_os_desc_header(enum ffs_os_desc_type *next_type,
2134 struct usb_os_desc_header *desc)
2135{
2136 u16 bcd_version = le16_to_cpu(desc->bcdVersion);
2137 u16 w_index = le16_to_cpu(desc->wIndex);
2138
2139 if (bcd_version != 1) {
2140 pr_vdebug("unsupported os descriptors version: %d",
2141 bcd_version);
2142 return -EINVAL;
2143 }
2144 switch (w_index) {
2145 case 0x4:
2146 *next_type = FFS_OS_DESC_EXT_COMPAT;
2147 break;
2148 case 0x5:
2149 *next_type = FFS_OS_DESC_EXT_PROP;
2150 break;
2151 default:
2152 pr_vdebug("unsupported os descriptor type: %d", w_index);
2153 return -EINVAL;
2154 }
2155
2156 return sizeof(*desc);
2157}
2158
2159/*
2160 * Process all extended compatibility/extended property descriptors
2161 * of a feature descriptor
2162 */
2163static int __must_check ffs_do_single_os_desc(char *data, unsigned len,
2164 enum ffs_os_desc_type type,
2165 u16 feature_count,
2166 ffs_os_desc_callback entity,
2167 void *priv,
2168 struct usb_os_desc_header *h)
2169{
2170 int ret;
2171 const unsigned _len = len;
2172
2173 ENTER();
2174
2175 /* loop over all ext compat/ext prop descriptors */
2176 while (feature_count--) {
2177 ret = entity(type, h, data, len, priv);
2178 if (unlikely(ret < 0)) {
2179 pr_debug("bad OS descriptor, type: %d\n", type);
2180 return ret;
2181 }
2182 data += ret;
2183 len -= ret;
2184 }
2185 return _len - len;
2186}
2187
2188/* Process a number of complete Feature Descriptors (Ext Compat or Ext Prop) */
2189static int __must_check ffs_do_os_descs(unsigned count,
2190 char *data, unsigned len,
2191 ffs_os_desc_callback entity, void *priv)
2192{
2193 const unsigned _len = len;
2194 unsigned long num = 0;
2195
2196 ENTER();
2197
2198 for (num = 0; num < count; ++num) {
2199 int ret;
2200 enum ffs_os_desc_type type;
2201 u16 feature_count;
2202 struct usb_os_desc_header *desc = (void *)data;
2203
2204 if (len < sizeof(*desc))
2205 return -EINVAL;
2206
2207 /*
2208 * Record "descriptor" entity.
2209 * Process dwLength, bcdVersion, wIndex, get b/wCount.
2210 * Move the data pointer to the beginning of extended
2211 * compatibilities proper or extended properties proper
2212 * portions of the data
2213 */
2214 if (le32_to_cpu(desc->dwLength) > len)
2215 return -EINVAL;
2216
2217 ret = __ffs_do_os_desc_header(&type, desc);
2218 if (unlikely(ret < 0)) {
2219 pr_debug("entity OS_DESCRIPTOR(%02lx); ret = %d\n",
2220 num, ret);
2221 return ret;
2222 }
2223 /*
2224 * 16-bit hex "?? 00" Little Endian looks like 8-bit hex "??"
2225 */
2226 feature_count = le16_to_cpu(desc->wCount);
2227 if (type == FFS_OS_DESC_EXT_COMPAT &&
2228 (feature_count > 255 || desc->Reserved))
2229 return -EINVAL;
2230 len -= ret;
2231 data += ret;
2232
2233 /*
2234 * Process all function/property descriptors
2235 * of this Feature Descriptor
2236 */
2237 ret = ffs_do_single_os_desc(data, len, type,
2238 feature_count, entity, priv, desc);
2239 if (unlikely(ret < 0)) {
2240 pr_debug("%s returns %d\n", __func__, ret);
2241 return ret;
2242 }
2243
2244 len -= ret;
2245 data += ret;
2246 }
2247 return _len - len;
2248}
2249
2250/**
2251 * Validate contents of the buffer from userspace related to OS descriptors.
2252 */
2253static int __ffs_data_do_os_desc(enum ffs_os_desc_type type,
2254 struct usb_os_desc_header *h, void *data,
2255 unsigned len, void *priv)
2256{
2257 struct ffs_data *ffs = priv;
2258 u8 length;
2259
2260 ENTER();
2261
2262 switch (type) {
2263 case FFS_OS_DESC_EXT_COMPAT: {
2264 struct usb_ext_compat_desc *d = data;
2265 int i;
2266
2267 if (len < sizeof(*d) ||
a3acc696 2268 d->bFirstInterfaceNumber >= ffs->interfaces_count)
f0175ab5 2269 return -EINVAL;
a3acc696
JK
2270 if (d->Reserved1 != 1) {
2271 /*
2272 * According to the spec, Reserved1 must be set to 1
2273 * but older kernels incorrectly rejected non-zero
2274 * values. We fix it here to avoid returning EINVAL
2275 * in response to values we used to accept.
2276 */
2277 pr_debug("usb_ext_compat_desc::Reserved1 forced to 1\n");
2278 d->Reserved1 = 1;
2279 }
f0175ab5
AP
2280 for (i = 0; i < ARRAY_SIZE(d->Reserved2); ++i)
2281 if (d->Reserved2[i])
2282 return -EINVAL;
2283
2284 length = sizeof(struct usb_ext_compat_desc);
2285 }
2286 break;
2287 case FFS_OS_DESC_EXT_PROP: {
2288 struct usb_ext_prop_desc *d = data;
2289 u32 type, pdl;
2290 u16 pnl;
2291
2292 if (len < sizeof(*d) || h->interface >= ffs->interfaces_count)
2293 return -EINVAL;
2294 length = le32_to_cpu(d->dwSize);
83e526f2
VP
2295 if (len < length)
2296 return -EINVAL;
f0175ab5
AP
2297 type = le32_to_cpu(d->dwPropertyDataType);
2298 if (type < USB_EXT_PROP_UNICODE ||
2299 type > USB_EXT_PROP_UNICODE_MULTI) {
2300 pr_vdebug("unsupported os descriptor property type: %d",
2301 type);
2302 return -EINVAL;
2303 }
2304 pnl = le16_to_cpu(d->wPropertyNameLength);
83e526f2
VP
2305 if (length < 14 + pnl) {
2306 pr_vdebug("invalid os descriptor length: %d pnl:%d (descriptor %d)\n",
2307 length, pnl, type);
2308 return -EINVAL;
2309 }
c40619bb 2310 pdl = le32_to_cpu(*(__le32 *)((u8 *)data + 10 + pnl));
f0175ab5
AP
2311 if (length != 14 + pnl + pdl) {
2312 pr_vdebug("invalid os descriptor length: %d pnl:%d pdl:%d (descriptor %d)\n",
2313 length, pnl, pdl, type);
2314 return -EINVAL;
2315 }
2316 ++ffs->ms_os_descs_ext_prop_count;
2317 /* property name reported to the host as "WCHAR"s */
2318 ffs->ms_os_descs_ext_prop_name_len += pnl * 2;
2319 ffs->ms_os_descs_ext_prop_data_len += pdl;
2320 }
2321 break;
2322 default:
2323 pr_vdebug("unknown descriptor: %d\n", type);
2324 return -EINVAL;
2325 }
2326 return length;
2327}
2328
ddf8abd2
MN
2329static int __ffs_data_got_descs(struct ffs_data *ffs,
2330 char *const _data, size_t len)
2331{
ac8dde11 2332 char *data = _data, *raw_descs;
f0175ab5 2333 unsigned os_descs_count = 0, counts[3], flags;
ac8dde11 2334 int ret = -EINVAL, i;
6d5c1c77 2335 struct ffs_desc_helper helper;
ddf8abd2
MN
2336
2337 ENTER();
2338
ac8dde11 2339 if (get_unaligned_le32(data + 4) != len)
ddf8abd2 2340 goto error;
ddf8abd2 2341
ac8dde11
MN
2342 switch (get_unaligned_le32(data)) {
2343 case FUNCTIONFS_DESCRIPTORS_MAGIC:
2344 flags = FUNCTIONFS_HAS_FS_DESC | FUNCTIONFS_HAS_HS_DESC;
2345 data += 8;
2346 len -= 8;
2347 break;
2348 case FUNCTIONFS_DESCRIPTORS_MAGIC_V2:
2349 flags = get_unaligned_le32(data + 8);
1b0bf88f 2350 ffs->user_flags = flags;
ac8dde11
MN
2351 if (flags & ~(FUNCTIONFS_HAS_FS_DESC |
2352 FUNCTIONFS_HAS_HS_DESC |
f0175ab5 2353 FUNCTIONFS_HAS_SS_DESC |
1b0bf88f 2354 FUNCTIONFS_HAS_MS_OS_DESC |
5e33f6fd 2355 FUNCTIONFS_VIRTUAL_ADDR |
54dfce6d 2356 FUNCTIONFS_EVENTFD |
4368c28a
FH
2357 FUNCTIONFS_ALL_CTRL_RECIP |
2358 FUNCTIONFS_CONFIG0_SETUP)) {
ac8dde11 2359 ret = -ENOSYS;
ddf8abd2
MN
2360 goto error;
2361 }
ac8dde11
MN
2362 data += 12;
2363 len -= 12;
2364 break;
2365 default:
2366 goto error;
ddf8abd2 2367 }
ddf8abd2 2368
5e33f6fd
RB
2369 if (flags & FUNCTIONFS_EVENTFD) {
2370 if (len < 4)
2371 goto error;
2372 ffs->ffs_eventfd =
2373 eventfd_ctx_fdget((int)get_unaligned_le32(data));
2374 if (IS_ERR(ffs->ffs_eventfd)) {
2375 ret = PTR_ERR(ffs->ffs_eventfd);
2376 ffs->ffs_eventfd = NULL;
2377 goto error;
2378 }
2379 data += 4;
2380 len -= 4;
2381 }
2382
ac8dde11
MN
2383 /* Read fs_count, hs_count and ss_count (if present) */
2384 for (i = 0; i < 3; ++i) {
2385 if (!(flags & (1 << i))) {
2386 counts[i] = 0;
2387 } else if (len < 4) {
8d4e897b 2388 goto error;
ac8dde11
MN
2389 } else {
2390 counts[i] = get_unaligned_le32(data);
2391 data += 4;
2392 len -= 4;
8d4e897b 2393 }
ddf8abd2 2394 }
f0175ab5 2395 if (flags & (1 << i)) {
83e526f2
VP
2396 if (len < 4) {
2397 goto error;
2398 }
f0175ab5
AP
2399 os_descs_count = get_unaligned_le32(data);
2400 data += 4;
2401 len -= 4;
2402 };
ddf8abd2 2403
ac8dde11
MN
2404 /* Read descriptors */
2405 raw_descs = data;
6d5c1c77 2406 helper.ffs = ffs;
ac8dde11
MN
2407 for (i = 0; i < 3; ++i) {
2408 if (!counts[i])
2409 continue;
6d5c1c77
RB
2410 helper.interfaces_count = 0;
2411 helper.eps_count = 0;
ac8dde11 2412 ret = ffs_do_descs(counts[i], data, len,
6d5c1c77 2413 __ffs_data_do_entity, &helper);
ac8dde11 2414 if (ret < 0)
ddf8abd2 2415 goto error;
6d5c1c77
RB
2416 if (!ffs->eps_count && !ffs->interfaces_count) {
2417 ffs->eps_count = helper.eps_count;
2418 ffs->interfaces_count = helper.interfaces_count;
2419 } else {
2420 if (ffs->eps_count != helper.eps_count) {
2421 ret = -EINVAL;
2422 goto error;
2423 }
2424 if (ffs->interfaces_count != helper.interfaces_count) {
2425 ret = -EINVAL;
2426 goto error;
2427 }
2428 }
ac8dde11
MN
2429 data += ret;
2430 len -= ret;
ddf8abd2 2431 }
f0175ab5
AP
2432 if (os_descs_count) {
2433 ret = ffs_do_os_descs(os_descs_count, data, len,
2434 __ffs_data_do_os_desc, ffs);
2435 if (ret < 0)
2436 goto error;
2437 data += ret;
2438 len -= ret;
2439 }
ddf8abd2 2440
ac8dde11
MN
2441 if (raw_descs == data || len) {
2442 ret = -EINVAL;
2443 goto error;
2444 }
ddf8abd2 2445
ac8dde11
MN
2446 ffs->raw_descs_data = _data;
2447 ffs->raw_descs = raw_descs;
2448 ffs->raw_descs_length = data - raw_descs;
2449 ffs->fs_descs_count = counts[0];
2450 ffs->hs_descs_count = counts[1];
2451 ffs->ss_descs_count = counts[2];
f0175ab5 2452 ffs->ms_os_descs_count = os_descs_count;
ddf8abd2
MN
2453
2454 return 0;
2455
ddf8abd2
MN
2456error:
2457 kfree(_data);
2458 return ret;
2459}
2460
ddf8abd2
MN
2461static int __ffs_data_got_strings(struct ffs_data *ffs,
2462 char *const _data, size_t len)
2463{
2464 u32 str_count, needed_count, lang_count;
2465 struct usb_gadget_strings **stringtabs, *t;
ddf8abd2 2466 const char *data = _data;
872ce511 2467 struct usb_string *s;
ddf8abd2
MN
2468
2469 ENTER();
2470
83e526f2
VP
2471 if (unlikely(len < 16 ||
2472 get_unaligned_le32(data) != FUNCTIONFS_STRINGS_MAGIC ||
ddf8abd2
MN
2473 get_unaligned_le32(data + 4) != len))
2474 goto error;
2475 str_count = get_unaligned_le32(data + 8);
2476 lang_count = get_unaligned_le32(data + 12);
2477
2478 /* if one is zero the other must be zero */
2479 if (unlikely(!str_count != !lang_count))
2480 goto error;
2481
2482 /* Do we have at least as many strings as descriptors need? */
2483 needed_count = ffs->strings_count;
2484 if (unlikely(str_count < needed_count))
2485 goto error;
2486
5ab54cf7
MN
2487 /*
2488 * If we don't need any strings just return and free all
2489 * memory.
2490 */
ddf8abd2
MN
2491 if (!needed_count) {
2492 kfree(_data);
2493 return 0;
2494 }
2495
5ab54cf7 2496 /* Allocate everything in one chunk so there's less maintenance. */
ddf8abd2 2497 {
ddf8abd2 2498 unsigned i = 0;
e6f3862f
AP
2499 vla_group(d);
2500 vla_item(d, struct usb_gadget_strings *, stringtabs,
2501 lang_count + 1);
2502 vla_item(d, struct usb_gadget_strings, stringtab, lang_count);
2503 vla_item(d, struct usb_string, strings,
2504 lang_count*(needed_count+1));
ddf8abd2 2505
e6f3862f
AP
2506 char *vlabuf = kmalloc(vla_group_size(d), GFP_KERNEL);
2507
2508 if (unlikely(!vlabuf)) {
ddf8abd2
MN
2509 kfree(_data);
2510 return -ENOMEM;
2511 }
2512
e6f3862f
AP
2513 /* Initialize the VLA pointers */
2514 stringtabs = vla_ptr(vlabuf, d, stringtabs);
2515 t = vla_ptr(vlabuf, d, stringtab);
ddf8abd2
MN
2516 i = lang_count;
2517 do {
2518 *stringtabs++ = t++;
2519 } while (--i);
2520 *stringtabs = NULL;
2521
e6f3862f
AP
2522 /* stringtabs = vlabuf = d_stringtabs for later kfree */
2523 stringtabs = vla_ptr(vlabuf, d, stringtabs);
2524 t = vla_ptr(vlabuf, d, stringtab);
2525 s = vla_ptr(vlabuf, d, strings);
ddf8abd2
MN
2526 }
2527
2528 /* For each language */
2529 data += 16;
2530 len -= 16;
2531
2532 do { /* lang_count > 0 so we can use do-while */
2533 unsigned needed = needed_count;
2534
2535 if (unlikely(len < 3))
2536 goto error_free;
2537 t->language = get_unaligned_le16(data);
2538 t->strings = s;
2539 ++t;
2540
2541 data += 2;
2542 len -= 2;
2543
2544 /* For each string */
2545 do { /* str_count > 0 so we can use do-while */
2546 size_t length = strnlen(data, len);
2547
2548 if (unlikely(length == len))
2549 goto error_free;
2550
5ab54cf7
MN
2551 /*
2552 * User may provide more strings then we need,
2553 * if that's the case we simply ignore the
2554 * rest
2555 */
ddf8abd2 2556 if (likely(needed)) {
5ab54cf7
MN
2557 /*
2558 * s->id will be set while adding
ddf8abd2 2559 * function to configuration so for
5ab54cf7
MN
2560 * now just leave garbage here.
2561 */
ddf8abd2
MN
2562 s->s = data;
2563 --needed;
2564 ++s;
2565 }
2566
2567 data += length + 1;
2568 len -= length + 1;
2569 } while (--str_count);
2570
2571 s->id = 0; /* terminator */
2572 s->s = NULL;
2573 ++s;
2574
2575 } while (--lang_count);
2576
2577 /* Some garbage left? */
2578 if (unlikely(len))
2579 goto error_free;
2580
2581 /* Done! */
2582 ffs->stringtabs = stringtabs;
2583 ffs->raw_strings = _data;
2584
2585 return 0;
2586
2587error_free:
2588 kfree(stringtabs);
2589error:
2590 kfree(_data);
2591 return -EINVAL;
2592}
2593
2594
ddf8abd2
MN
2595/* Events handling and management *******************************************/
2596
2597static void __ffs_event_add(struct ffs_data *ffs,
2598 enum usb_functionfs_event_type type)
2599{
2600 enum usb_functionfs_event_type rem_type1, rem_type2 = type;
2601 int neg = 0;
2602
5ab54cf7
MN
2603 /*
2604 * Abort any unhandled setup
2605 *
2606 * We do not need to worry about some cmpxchg() changing value
ddf8abd2
MN
2607 * of ffs->setup_state without holding the lock because when
2608 * state is FFS_SETUP_PENDING cmpxchg() in several places in
5ab54cf7
MN
2609 * the source does nothing.
2610 */
ddf8abd2 2611 if (ffs->setup_state == FFS_SETUP_PENDING)
e46318a0 2612 ffs->setup_state = FFS_SETUP_CANCELLED;
ddf8abd2 2613
67913bbd
MN
2614 /*
2615 * Logic of this function guarantees that there are at most four pending
2616 * evens on ffs->ev.types queue. This is important because the queue
2617 * has space for four elements only and __ffs_ep0_read_events function
2618 * depends on that limit as well. If more event types are added, those
2619 * limits have to be revisited or guaranteed to still hold.
2620 */
ddf8abd2
MN
2621 switch (type) {
2622 case FUNCTIONFS_RESUME:
2623 rem_type2 = FUNCTIONFS_SUSPEND;
5ab54cf7 2624 /* FALL THROUGH */
ddf8abd2
MN
2625 case FUNCTIONFS_SUSPEND:
2626 case FUNCTIONFS_SETUP:
2627 rem_type1 = type;
5ab54cf7 2628 /* Discard all similar events */
ddf8abd2
MN
2629 break;
2630
2631 case FUNCTIONFS_BIND:
2632 case FUNCTIONFS_UNBIND:
2633 case FUNCTIONFS_DISABLE:
2634 case FUNCTIONFS_ENABLE:
5ab54cf7 2635 /* Discard everything other then power management. */
ddf8abd2
MN
2636 rem_type1 = FUNCTIONFS_SUSPEND;
2637 rem_type2 = FUNCTIONFS_RESUME;
2638 neg = 1;
2639 break;
2640
2641 default:
fe00bcbf
MN
2642 WARN(1, "%d: unknown event, this should not happen\n", type);
2643 return;
ddf8abd2
MN
2644 }
2645
2646 {
2647 u8 *ev = ffs->ev.types, *out = ev;
2648 unsigned n = ffs->ev.count;
2649 for (; n; --n, ++ev)
2650 if ((*ev == rem_type1 || *ev == rem_type2) == neg)
2651 *out++ = *ev;
2652 else
aa02f172 2653 pr_vdebug("purging event %d\n", *ev);
ddf8abd2
MN
2654 ffs->ev.count = out - ffs->ev.types;
2655 }
2656
aa02f172 2657 pr_vdebug("adding event %d\n", type);
ddf8abd2
MN
2658 ffs->ev.types[ffs->ev.count++] = type;
2659 wake_up_locked(&ffs->ev.waitq);
5e33f6fd
RB
2660 if (ffs->ffs_eventfd)
2661 eventfd_signal(ffs->ffs_eventfd, 1);
ddf8abd2
MN
2662}
2663
2664static void ffs_event_add(struct ffs_data *ffs,
2665 enum usb_functionfs_event_type type)
2666{
2667 unsigned long flags;
2668 spin_lock_irqsave(&ffs->ev.waitq.lock, flags);
2669 __ffs_event_add(ffs, type);
2670 spin_unlock_irqrestore(&ffs->ev.waitq.lock, flags);
2671}
2672
ddf8abd2
MN
2673/* Bind/unbind USB function hooks *******************************************/
2674
6d5c1c77
RB
2675static int ffs_ep_addr2idx(struct ffs_data *ffs, u8 endpoint_address)
2676{
2677 int i;
2678
2679 for (i = 1; i < ARRAY_SIZE(ffs->eps_addrmap); ++i)
2680 if (ffs->eps_addrmap[i] == endpoint_address)
2681 return i;
2682 return -ENOENT;
2683}
2684
ddf8abd2
MN
2685static int __ffs_func_bind_do_descs(enum ffs_entity_type type, u8 *valuep,
2686 struct usb_descriptor_header *desc,
2687 void *priv)
2688{
2689 struct usb_endpoint_descriptor *ds = (void *)desc;
2690 struct ffs_function *func = priv;
2691 struct ffs_ep *ffs_ep;
85b06f5e
DC
2692 unsigned ep_desc_id;
2693 int idx;
8d4e897b 2694 static const char *speed_names[] = { "full", "high", "super" };
ddf8abd2
MN
2695
2696 if (type != FFS_DESCRIPTOR)
2697 return 0;
2698
8d4e897b
MG
2699 /*
2700 * If ss_descriptors is not NULL, we are reading super speed
2701 * descriptors; if hs_descriptors is not NULL, we are reading high
2702 * speed descriptors; otherwise, we are reading full speed
2703 * descriptors.
2704 */
2705 if (func->function.ss_descriptors) {
2706 ep_desc_id = 2;
2707 func->function.ss_descriptors[(long)valuep] = desc;
2708 } else if (func->function.hs_descriptors) {
2709 ep_desc_id = 1;
ddf8abd2 2710 func->function.hs_descriptors[(long)valuep] = desc;
8d4e897b
MG
2711 } else {
2712 ep_desc_id = 0;
10287bae 2713 func->function.fs_descriptors[(long)valuep] = desc;
8d4e897b 2714 }
ddf8abd2
MN
2715
2716 if (!desc || desc->bDescriptorType != USB_DT_ENDPOINT)
2717 return 0;
2718
6d5c1c77
RB
2719 idx = ffs_ep_addr2idx(func->ffs, ds->bEndpointAddress) - 1;
2720 if (idx < 0)
2721 return idx;
2722
ddf8abd2
MN
2723 ffs_ep = func->eps + idx;
2724
8d4e897b
MG
2725 if (unlikely(ffs_ep->descs[ep_desc_id])) {
2726 pr_err("two %sspeed descriptors for EP %d\n",
2727 speed_names[ep_desc_id],
d8df0b61 2728 ds->bEndpointAddress & USB_ENDPOINT_NUMBER_MASK);
ddf8abd2
MN
2729 return -EINVAL;
2730 }
8d4e897b 2731 ffs_ep->descs[ep_desc_id] = ds;
ddf8abd2
MN
2732
2733 ffs_dump_mem(": Original ep desc", ds, ds->bLength);
2734 if (ffs_ep->ep) {
2735 ds->bEndpointAddress = ffs_ep->descs[0]->bEndpointAddress;
2736 if (!ds->wMaxPacketSize)
2737 ds->wMaxPacketSize = ffs_ep->descs[0]->wMaxPacketSize;
2738 } else {
2739 struct usb_request *req;
2740 struct usb_ep *ep;
1b0bf88f 2741 u8 bEndpointAddress;
ddf8abd2 2742
1b0bf88f
RB
2743 /*
2744 * We back up bEndpointAddress because autoconfig overwrites
2745 * it with physical endpoint address.
2746 */
2747 bEndpointAddress = ds->bEndpointAddress;
aa02f172 2748 pr_vdebug("autoconfig\n");
ddf8abd2
MN
2749 ep = usb_ep_autoconfig(func->gadget, ds);
2750 if (unlikely(!ep))
2751 return -ENOTSUPP;
cc7e6056 2752 ep->driver_data = func->eps + idx;
ddf8abd2
MN
2753
2754 req = usb_ep_alloc_request(ep, GFP_KERNEL);
2755 if (unlikely(!req))
2756 return -ENOMEM;
2757
2758 ffs_ep->ep = ep;
2759 ffs_ep->req = req;
2760 func->eps_revmap[ds->bEndpointAddress &
2761 USB_ENDPOINT_NUMBER_MASK] = idx + 1;
1b0bf88f
RB
2762 /*
2763 * If we use virtual address mapping, we restore
2764 * original bEndpointAddress value.
2765 */
2766 if (func->ffs->user_flags & FUNCTIONFS_VIRTUAL_ADDR)
2767 ds->bEndpointAddress = bEndpointAddress;
ddf8abd2
MN
2768 }
2769 ffs_dump_mem(": Rewritten ep desc", ds, ds->bLength);
2770
2771 return 0;
2772}
2773
ddf8abd2
MN
2774static int __ffs_func_bind_do_nums(enum ffs_entity_type type, u8 *valuep,
2775 struct usb_descriptor_header *desc,
2776 void *priv)
2777{
2778 struct ffs_function *func = priv;
2779 unsigned idx;
2780 u8 newValue;
2781
2782 switch (type) {
2783 default:
2784 case FFS_DESCRIPTOR:
2785 /* Handled in previous pass by __ffs_func_bind_do_descs() */
2786 return 0;
2787
2788 case FFS_INTERFACE:
2789 idx = *valuep;
2790 if (func->interfaces_nums[idx] < 0) {
2791 int id = usb_interface_id(func->conf, &func->function);
2792 if (unlikely(id < 0))
2793 return id;
2794 func->interfaces_nums[idx] = id;
2795 }
2796 newValue = func->interfaces_nums[idx];
2797 break;
2798
2799 case FFS_STRING:
2800 /* String' IDs are allocated when fsf_data is bound to cdev */
2801 newValue = func->ffs->stringtabs[0]->strings[*valuep - 1].id;
2802 break;
2803
2804 case FFS_ENDPOINT:
5ab54cf7
MN
2805 /*
2806 * USB_DT_ENDPOINT are handled in
2807 * __ffs_func_bind_do_descs().
2808 */
ddf8abd2
MN
2809 if (desc->bDescriptorType == USB_DT_ENDPOINT)
2810 return 0;
2811
2812 idx = (*valuep & USB_ENDPOINT_NUMBER_MASK) - 1;
2813 if (unlikely(!func->eps[idx].ep))
2814 return -EINVAL;
2815
2816 {
2817 struct usb_endpoint_descriptor **descs;
2818 descs = func->eps[idx].descs;
2819 newValue = descs[descs[0] ? 0 : 1]->bEndpointAddress;
2820 }
2821 break;
2822 }
2823
aa02f172 2824 pr_vdebug("%02x -> %02x\n", *valuep, newValue);
ddf8abd2
MN
2825 *valuep = newValue;
2826 return 0;
2827}
2828
f0175ab5
AP
2829static int __ffs_func_bind_do_os_desc(enum ffs_os_desc_type type,
2830 struct usb_os_desc_header *h, void *data,
2831 unsigned len, void *priv)
2832{
2833 struct ffs_function *func = priv;
2834 u8 length = 0;
2835
2836 switch (type) {
2837 case FFS_OS_DESC_EXT_COMPAT: {
2838 struct usb_ext_compat_desc *desc = data;
2839 struct usb_os_desc_table *t;
2840
2841 t = &func->function.os_desc_table[desc->bFirstInterfaceNumber];
2842 t->if_id = func->interfaces_nums[desc->bFirstInterfaceNumber];
2843 memcpy(t->os_desc->ext_compat_id, &desc->CompatibleID,
2844 ARRAY_SIZE(desc->CompatibleID) +
2845 ARRAY_SIZE(desc->SubCompatibleID));
2846 length = sizeof(*desc);
2847 }
2848 break;
2849 case FFS_OS_DESC_EXT_PROP: {
2850 struct usb_ext_prop_desc *desc = data;
2851 struct usb_os_desc_table *t;
2852 struct usb_os_desc_ext_prop *ext_prop;
2853 char *ext_prop_name;
2854 char *ext_prop_data;
2855
2856 t = &func->function.os_desc_table[h->interface];
2857 t->if_id = func->interfaces_nums[h->interface];
2858
2859 ext_prop = func->ffs->ms_os_descs_ext_prop_avail;
2860 func->ffs->ms_os_descs_ext_prop_avail += sizeof(*ext_prop);
2861
2862 ext_prop->type = le32_to_cpu(desc->dwPropertyDataType);
2863 ext_prop->name_len = le16_to_cpu(desc->wPropertyNameLength);
c40619bb 2864 ext_prop->data_len = le32_to_cpu(*(__le32 *)
f0175ab5
AP
2865 usb_ext_prop_data_len_ptr(data, ext_prop->name_len));
2866 length = ext_prop->name_len + ext_prop->data_len + 14;
2867
2868 ext_prop_name = func->ffs->ms_os_descs_ext_prop_name_avail;
2869 func->ffs->ms_os_descs_ext_prop_name_avail +=
2870 ext_prop->name_len;
2871
2872 ext_prop_data = func->ffs->ms_os_descs_ext_prop_data_avail;
2873 func->ffs->ms_os_descs_ext_prop_data_avail +=
2874 ext_prop->data_len;
2875 memcpy(ext_prop_data,
2876 usb_ext_prop_data_ptr(data, ext_prop->name_len),
2877 ext_prop->data_len);
2878 /* unicode data reported to the host as "WCHAR"s */
2879 switch (ext_prop->type) {
2880 case USB_EXT_PROP_UNICODE:
2881 case USB_EXT_PROP_UNICODE_ENV:
2882 case USB_EXT_PROP_UNICODE_LINK:
2883 case USB_EXT_PROP_UNICODE_MULTI:
2884 ext_prop->data_len *= 2;
2885 break;
2886 }
2887 ext_prop->data = ext_prop_data;
2888
2889 memcpy(ext_prop_name, usb_ext_prop_name_ptr(data),
2890 ext_prop->name_len);
2891 /* property name reported to the host as "WCHAR"s */
2892 ext_prop->name_len *= 2;
2893 ext_prop->name = ext_prop_name;
2894
2895 t->os_desc->ext_prop_len +=
2896 ext_prop->name_len + ext_prop->data_len + 14;
2897 ++t->os_desc->ext_prop_count;
2898 list_add_tail(&ext_prop->entry, &t->os_desc->ext_prop);
2899 }
2900 break;
2901 default:
2902 pr_vdebug("unknown descriptor: %d\n", type);
2903 }
2904
2905 return length;
2906}
2907
5920cda6
AP
2908static inline struct f_fs_opts *ffs_do_functionfs_bind(struct usb_function *f,
2909 struct usb_configuration *c)
2910{
2911 struct ffs_function *func = ffs_func_from_usb(f);
2912 struct f_fs_opts *ffs_opts =
2913 container_of(f->fi, struct f_fs_opts, func_inst);
2914 int ret;
2915
2916 ENTER();
2917
2918 /*
2919 * Legacy gadget triggers binding in functionfs_ready_callback,
2920 * which already uses locking; taking the same lock here would
2921 * cause a deadlock.
2922 *
2923 * Configfs-enabled gadgets however do need ffs_dev_lock.
2924 */
2925 if (!ffs_opts->no_configfs)
2926 ffs_dev_lock();
2927 ret = ffs_opts->dev->desc_ready ? 0 : -ENODEV;
2928 func->ffs = ffs_opts->dev->ffs_data;
2929 if (!ffs_opts->no_configfs)
2930 ffs_dev_unlock();
2931 if (ret)
2932 return ERR_PTR(ret);
2933
2934 func->conf = c;
2935 func->gadget = c->cdev->gadget;
2936
5920cda6
AP
2937 /*
2938 * in drivers/usb/gadget/configfs.c:configfs_composite_bind()
2939 * configurations are bound in sequence with list_for_each_entry,
2940 * in each configuration its functions are bound in sequence
2941 * with list_for_each_entry, so we assume no race condition
2942 * with regard to ffs_opts->bound access
2943 */
2944 if (!ffs_opts->refcnt) {
2945 ret = functionfs_bind(func->ffs, c->cdev);
2946 if (ret)
2947 return ERR_PTR(ret);
2948 }
2949 ffs_opts->refcnt++;
2950 func->function.strings = func->ffs->stringtabs;
2951
2952 return ffs_opts;
2953}
5920cda6
AP
2954
2955static int _ffs_func_bind(struct usb_configuration *c,
2956 struct usb_function *f)
ddf8abd2
MN
2957{
2958 struct ffs_function *func = ffs_func_from_usb(f);
2959 struct ffs_data *ffs = func->ffs;
2960
2961 const int full = !!func->ffs->fs_descs_count;
6cf439e0
JP
2962 const int high = !!func->ffs->hs_descs_count;
2963 const int super = !!func->ffs->ss_descs_count;
ddf8abd2 2964
f0175ab5 2965 int fs_len, hs_len, ss_len, ret, i;
0015f915 2966 struct ffs_ep *eps_ptr;
ddf8abd2
MN
2967
2968 /* Make it a single chunk, less management later on */
e6f3862f
AP
2969 vla_group(d);
2970 vla_item_with_sz(d, struct ffs_ep, eps, ffs->eps_count);
2971 vla_item_with_sz(d, struct usb_descriptor_header *, fs_descs,
2972 full ? ffs->fs_descs_count + 1 : 0);
2973 vla_item_with_sz(d, struct usb_descriptor_header *, hs_descs,
2974 high ? ffs->hs_descs_count + 1 : 0);
8d4e897b
MG
2975 vla_item_with_sz(d, struct usb_descriptor_header *, ss_descs,
2976 super ? ffs->ss_descs_count + 1 : 0);
e6f3862f 2977 vla_item_with_sz(d, short, inums, ffs->interfaces_count);
f0175ab5
AP
2978 vla_item_with_sz(d, struct usb_os_desc_table, os_desc_table,
2979 c->cdev->use_os_string ? ffs->interfaces_count : 0);
2980 vla_item_with_sz(d, char[16], ext_compat,
2981 c->cdev->use_os_string ? ffs->interfaces_count : 0);
2982 vla_item_with_sz(d, struct usb_os_desc, os_desc,
2983 c->cdev->use_os_string ? ffs->interfaces_count : 0);
2984 vla_item_with_sz(d, struct usb_os_desc_ext_prop, ext_prop,
2985 ffs->ms_os_descs_ext_prop_count);
2986 vla_item_with_sz(d, char, ext_prop_name,
2987 ffs->ms_os_descs_ext_prop_name_len);
2988 vla_item_with_sz(d, char, ext_prop_data,
2989 ffs->ms_os_descs_ext_prop_data_len);
ac8dde11 2990 vla_item_with_sz(d, char, raw_descs, ffs->raw_descs_length);
e6f3862f 2991 char *vlabuf;
ddf8abd2
MN
2992
2993 ENTER();
2994
8d4e897b
MG
2995 /* Has descriptors only for speeds gadget does not support */
2996 if (unlikely(!(full | high | super)))
ddf8abd2
MN
2997 return -ENOTSUPP;
2998
e6f3862f 2999 /* Allocate a single chunk, less management later on */
f0175ab5 3000 vlabuf = kzalloc(vla_group_size(d), GFP_KERNEL);
e6f3862f 3001 if (unlikely(!vlabuf))
ddf8abd2
MN
3002 return -ENOMEM;
3003
f0175ab5
AP
3004 ffs->ms_os_descs_ext_prop_avail = vla_ptr(vlabuf, d, ext_prop);
3005 ffs->ms_os_descs_ext_prop_name_avail =
3006 vla_ptr(vlabuf, d, ext_prop_name);
3007 ffs->ms_os_descs_ext_prop_data_avail =
3008 vla_ptr(vlabuf, d, ext_prop_data);
3009
ac8dde11
MN
3010 /* Copy descriptors */
3011 memcpy(vla_ptr(vlabuf, d, raw_descs), ffs->raw_descs,
3012 ffs->raw_descs_length);
8d4e897b 3013
e6f3862f 3014 memset(vla_ptr(vlabuf, d, inums), 0xff, d_inums__sz);
0015f915
DC
3015 eps_ptr = vla_ptr(vlabuf, d, eps);
3016 for (i = 0; i < ffs->eps_count; i++)
3017 eps_ptr[i].num = -1;
ddf8abd2 3018
e6f3862f
AP
3019 /* Save pointers
3020 * d_eps == vlabuf, func->eps used to kfree vlabuf later
3021 */
3022 func->eps = vla_ptr(vlabuf, d, eps);
3023 func->interfaces_nums = vla_ptr(vlabuf, d, inums);
ddf8abd2 3024
5ab54cf7
MN
3025 /*
3026 * Go through all the endpoint descriptors and allocate
ddf8abd2 3027 * endpoints first, so that later we can rewrite the endpoint
5ab54cf7
MN
3028 * numbers without worrying that it may be described later on.
3029 */
ddf8abd2 3030 if (likely(full)) {
e6f3862f 3031 func->function.fs_descriptors = vla_ptr(vlabuf, d, fs_descs);
8d4e897b
MG
3032 fs_len = ffs_do_descs(ffs->fs_descs_count,
3033 vla_ptr(vlabuf, d, raw_descs),
3034 d_raw_descs__sz,
3035 __ffs_func_bind_do_descs, func);
3036 if (unlikely(fs_len < 0)) {
3037 ret = fs_len;
ddf8abd2 3038 goto error;
8d4e897b 3039 }
ddf8abd2 3040 } else {
8d4e897b 3041 fs_len = 0;
ddf8abd2
MN
3042 }
3043
3044 if (likely(high)) {
e6f3862f 3045 func->function.hs_descriptors = vla_ptr(vlabuf, d, hs_descs);
8d4e897b
MG
3046 hs_len = ffs_do_descs(ffs->hs_descs_count,
3047 vla_ptr(vlabuf, d, raw_descs) + fs_len,
3048 d_raw_descs__sz - fs_len,
3049 __ffs_func_bind_do_descs, func);
3050 if (unlikely(hs_len < 0)) {
3051 ret = hs_len;
3052 goto error;
3053 }
3054 } else {
3055 hs_len = 0;
3056 }
3057
3058 if (likely(super)) {
3059 func->function.ss_descriptors = vla_ptr(vlabuf, d, ss_descs);
f0175ab5 3060 ss_len = ffs_do_descs(ffs->ss_descs_count,
8d4e897b
MG
3061 vla_ptr(vlabuf, d, raw_descs) + fs_len + hs_len,
3062 d_raw_descs__sz - fs_len - hs_len,
3063 __ffs_func_bind_do_descs, func);
f0175ab5
AP
3064 if (unlikely(ss_len < 0)) {
3065 ret = ss_len;
8854894c 3066 goto error;
f0175ab5
AP
3067 }
3068 } else {
3069 ss_len = 0;
ddf8abd2
MN
3070 }
3071
5ab54cf7
MN
3072 /*
3073 * Now handle interface numbers allocation and interface and
3074 * endpoint numbers rewriting. We can do that in one go
3075 * now.
3076 */
ddf8abd2 3077 ret = ffs_do_descs(ffs->fs_descs_count +
8d4e897b
MG
3078 (high ? ffs->hs_descs_count : 0) +
3079 (super ? ffs->ss_descs_count : 0),
e6f3862f 3080 vla_ptr(vlabuf, d, raw_descs), d_raw_descs__sz,
ddf8abd2
MN
3081 __ffs_func_bind_do_nums, func);
3082 if (unlikely(ret < 0))
3083 goto error;
3084
f0175ab5 3085 func->function.os_desc_table = vla_ptr(vlabuf, d, os_desc_table);
c6010c8b 3086 if (c->cdev->use_os_string) {
f0175ab5
AP
3087 for (i = 0; i < ffs->interfaces_count; ++i) {
3088 struct usb_os_desc *desc;
3089
3090 desc = func->function.os_desc_table[i].os_desc =
3091 vla_ptr(vlabuf, d, os_desc) +
3092 i * sizeof(struct usb_os_desc);
3093 desc->ext_compat_id =
3094 vla_ptr(vlabuf, d, ext_compat) + i * 16;
3095 INIT_LIST_HEAD(&desc->ext_prop);
3096 }
c6010c8b
JL
3097 ret = ffs_do_os_descs(ffs->ms_os_descs_count,
3098 vla_ptr(vlabuf, d, raw_descs) +
3099 fs_len + hs_len + ss_len,
3100 d_raw_descs__sz - fs_len - hs_len -
3101 ss_len,
3102 __ffs_func_bind_do_os_desc, func);
3103 if (unlikely(ret < 0))
3104 goto error;
3105 }
f0175ab5
AP
3106 func->function.os_desc_n =
3107 c->cdev->use_os_string ? ffs->interfaces_count : 0;
3108
ddf8abd2
MN
3109 /* And we're done */
3110 ffs_event_add(ffs, FUNCTIONFS_BIND);
3111 return 0;
3112
3113error:
3114 /* XXX Do we need to release all claimed endpoints here? */
3115 return ret;
3116}
3117
5920cda6
AP
3118static int ffs_func_bind(struct usb_configuration *c,
3119 struct usb_function *f)
3120{
5920cda6 3121 struct f_fs_opts *ffs_opts = ffs_do_functionfs_bind(f, c);
55d81121
RB
3122 struct ffs_function *func = ffs_func_from_usb(f);
3123 int ret;
5920cda6
AP
3124
3125 if (IS_ERR(ffs_opts))
3126 return PTR_ERR(ffs_opts);
5920cda6 3127
55d81121
RB
3128 ret = _ffs_func_bind(c, f);
3129 if (ret && !--ffs_opts->refcnt)
3130 functionfs_unbind(func->ffs);
3131
3132 return ret;
5920cda6
AP
3133}
3134
ddf8abd2
MN
3135
3136/* Other USB function hooks *************************************************/
3137
18d6b32f
RB
3138static void ffs_reset_work(struct work_struct *work)
3139{
3140 struct ffs_data *ffs = container_of(work,
3141 struct ffs_data, reset_work);
3142 ffs_data_reset(ffs);
3143}
3144
ddf8abd2
MN
3145static int ffs_func_set_alt(struct usb_function *f,
3146 unsigned interface, unsigned alt)
3147{
3148 struct ffs_function *func = ffs_func_from_usb(f);
3149 struct ffs_data *ffs = func->ffs;
3150 int ret = 0, intf;
3151
3152 if (alt != (unsigned)-1) {
3153 intf = ffs_func_revmap_intf(func, interface);
3154 if (unlikely(intf < 0))
3155 return intf;
3156 }
3157
3158 if (ffs->func)
3159 ffs_func_eps_disable(ffs->func);
3160
18d6b32f
RB
3161 if (ffs->state == FFS_DEACTIVATED) {
3162 ffs->state = FFS_CLOSING;
3163 INIT_WORK(&ffs->reset_work, ffs_reset_work);
3164 schedule_work(&ffs->reset_work);
3165 return -ENODEV;
3166 }
3167
ddf8abd2
MN
3168 if (ffs->state != FFS_ACTIVE)
3169 return -ENODEV;
3170
3171 if (alt == (unsigned)-1) {
3172 ffs->func = NULL;
3173 ffs_event_add(ffs, FUNCTIONFS_DISABLE);
3174 return 0;
3175 }
3176
3177 ffs->func = func;
3178 ret = ffs_func_eps_enable(func);
3179 if (likely(ret >= 0))
3180 ffs_event_add(ffs, FUNCTIONFS_ENABLE);
3181 return ret;
3182}
3183
3184static void ffs_func_disable(struct usb_function *f)
3185{
3186 ffs_func_set_alt(f, 0, (unsigned)-1);
3187}
3188
3189static int ffs_func_setup(struct usb_function *f,
3190 const struct usb_ctrlrequest *creq)
3191{
3192 struct ffs_function *func = ffs_func_from_usb(f);
3193 struct ffs_data *ffs = func->ffs;
3194 unsigned long flags;
3195 int ret;
3196
3197 ENTER();
3198
aa02f172
MN
3199 pr_vdebug("creq->bRequestType = %02x\n", creq->bRequestType);
3200 pr_vdebug("creq->bRequest = %02x\n", creq->bRequest);
3201 pr_vdebug("creq->wValue = %04x\n", le16_to_cpu(creq->wValue));
3202 pr_vdebug("creq->wIndex = %04x\n", le16_to_cpu(creq->wIndex));
3203 pr_vdebug("creq->wLength = %04x\n", le16_to_cpu(creq->wLength));
ddf8abd2 3204
5ab54cf7
MN
3205 /*
3206 * Most requests directed to interface go through here
ddf8abd2
MN
3207 * (notable exceptions are set/get interface) so we need to
3208 * handle them. All other either handled by composite or
3209 * passed to usb_configuration->setup() (if one is set). No
3210 * matter, we will handle requests directed to endpoint here
54dfce6d
FH
3211 * as well (as it's straightforward). Other request recipient
3212 * types are only handled when the user flag FUNCTIONFS_ALL_CTRL_RECIP
3213 * is being used.
5ab54cf7 3214 */
ddf8abd2
MN
3215 if (ffs->state != FFS_ACTIVE)
3216 return -ENODEV;
3217
3218 switch (creq->bRequestType & USB_RECIP_MASK) {
3219 case USB_RECIP_INTERFACE:
3220 ret = ffs_func_revmap_intf(func, le16_to_cpu(creq->wIndex));
3221 if (unlikely(ret < 0))
3222 return ret;
3223 break;
3224
3225 case USB_RECIP_ENDPOINT:
3226 ret = ffs_func_revmap_ep(func, le16_to_cpu(creq->wIndex));
3227 if (unlikely(ret < 0))
3228 return ret;
1b0bf88f
RB
3229 if (func->ffs->user_flags & FUNCTIONFS_VIRTUAL_ADDR)
3230 ret = func->ffs->eps_addrmap[ret];
ddf8abd2
MN
3231 break;
3232
3233 default:
54dfce6d
FH
3234 if (func->ffs->user_flags & FUNCTIONFS_ALL_CTRL_RECIP)
3235 ret = le16_to_cpu(creq->wIndex);
3236 else
3237 return -EOPNOTSUPP;
ddf8abd2
MN
3238 }
3239
3240 spin_lock_irqsave(&ffs->ev.waitq.lock, flags);
3241 ffs->ev.setup = *creq;
3242 ffs->ev.setup.wIndex = cpu_to_le16(ret);
3243 __ffs_event_add(ffs, FUNCTIONFS_SETUP);
3244 spin_unlock_irqrestore(&ffs->ev.waitq.lock, flags);
3245
946ef68a 3246 return USB_GADGET_DELAYED_STATUS;
ddf8abd2
MN
3247}
3248
54dfce6d 3249static bool ffs_func_req_match(struct usb_function *f,
1a00b457
FH
3250 const struct usb_ctrlrequest *creq,
3251 bool config0)
54dfce6d
FH
3252{
3253 struct ffs_function *func = ffs_func_from_usb(f);
3254
4368c28a 3255 if (config0 && !(func->ffs->user_flags & FUNCTIONFS_CONFIG0_SETUP))
1a00b457
FH
3256 return false;
3257
54dfce6d
FH
3258 switch (creq->bRequestType & USB_RECIP_MASK) {
3259 case USB_RECIP_INTERFACE:
05e78c69
FH
3260 return (ffs_func_revmap_intf(func,
3261 le16_to_cpu(creq->wIndex)) >= 0);
54dfce6d 3262 case USB_RECIP_ENDPOINT:
05e78c69
FH
3263 return (ffs_func_revmap_ep(func,
3264 le16_to_cpu(creq->wIndex)) >= 0);
54dfce6d
FH
3265 default:
3266 return (bool) (func->ffs->user_flags &
3267 FUNCTIONFS_ALL_CTRL_RECIP);
3268 }
3269}
3270
ddf8abd2
MN
3271static void ffs_func_suspend(struct usb_function *f)
3272{
3273 ENTER();
3274 ffs_event_add(ffs_func_from_usb(f)->ffs, FUNCTIONFS_SUSPEND);
3275}
3276
3277static void ffs_func_resume(struct usb_function *f)
3278{
3279 ENTER();
3280 ffs_event_add(ffs_func_from_usb(f)->ffs, FUNCTIONFS_RESUME);
3281}
3282
3283
5ab54cf7 3284/* Endpoint and interface numbers reverse mapping ***************************/
ddf8abd2
MN
3285
3286static int ffs_func_revmap_ep(struct ffs_function *func, u8 num)
3287{
3288 num = func->eps_revmap[num & USB_ENDPOINT_NUMBER_MASK];
3289 return num ? num : -EDOM;
3290}
3291
3292static int ffs_func_revmap_intf(struct ffs_function *func, u8 intf)
3293{
3294 short *nums = func->interfaces_nums;
3295 unsigned count = func->ffs->interfaces_count;
3296
3297 for (; count; --count, ++nums) {
3298 if (*nums >= 0 && *nums == intf)
3299 return nums - func->interfaces_nums;
3300 }
3301
3302 return -EDOM;
3303}
3304
3305
4b187fce
AP
3306/* Devices management *******************************************************/
3307
3308static LIST_HEAD(ffs_devices);
3309
da13a773 3310static struct ffs_dev *_ffs_do_find_dev(const char *name)
4b187fce
AP
3311{
3312 struct ffs_dev *dev;
3313
ea920bb4
MN
3314 if (!name)
3315 return NULL;
3316
4b187fce 3317 list_for_each_entry(dev, &ffs_devices, entry) {
4b187fce
AP
3318 if (strcmp(dev->name, name) == 0)
3319 return dev;
3320 }
b658499f 3321
4b187fce
AP
3322 return NULL;
3323}
3324
3325/*
3326 * ffs_lock must be taken by the caller of this function
3327 */
da13a773 3328static struct ffs_dev *_ffs_get_single_dev(void)
4b187fce
AP
3329{
3330 struct ffs_dev *dev;
3331
3332 if (list_is_singular(&ffs_devices)) {
3333 dev = list_first_entry(&ffs_devices, struct ffs_dev, entry);
3334 if (dev->single)
3335 return dev;
3336 }
3337
3338 return NULL;
3339}
3340
3341/*
3342 * ffs_lock must be taken by the caller of this function
3343 */
da13a773 3344static struct ffs_dev *_ffs_find_dev(const char *name)
4b187fce
AP
3345{
3346 struct ffs_dev *dev;
3347
da13a773 3348 dev = _ffs_get_single_dev();
4b187fce
AP
3349 if (dev)
3350 return dev;
3351
da13a773 3352 return _ffs_do_find_dev(name);
4b187fce
AP
3353}
3354
b658499f
AP
3355/* Configfs support *********************************************************/
3356
3357static inline struct f_fs_opts *to_ffs_opts(struct config_item *item)
3358{
3359 return container_of(to_config_group(item), struct f_fs_opts,
3360 func_inst.group);
3361}
3362
3363static void ffs_attr_release(struct config_item *item)
3364{
3365 struct f_fs_opts *opts = to_ffs_opts(item);
3366
3367 usb_put_function_instance(&opts->func_inst);
3368}
3369
3370static struct configfs_item_operations ffs_item_ops = {
3371 .release = ffs_attr_release,
3372};
3373
97363902 3374static const struct config_item_type ffs_func_type = {
b658499f
AP
3375 .ct_item_ops = &ffs_item_ops,
3376 .ct_owner = THIS_MODULE,
3377};
3378
3379
5920cda6
AP
3380/* Function registration interface ******************************************/
3381
5920cda6
AP
3382static void ffs_free_inst(struct usb_function_instance *f)
3383{
3384 struct f_fs_opts *opts;
3385
3386 opts = to_f_fs_opts(f);
3387 ffs_dev_lock();
da13a773 3388 _ffs_free_dev(opts->dev);
5920cda6
AP
3389 ffs_dev_unlock();
3390 kfree(opts);
3391}
3392
b658499f
AP
3393static int ffs_set_inst_name(struct usb_function_instance *fi, const char *name)
3394{
ea920bb4 3395 if (strlen(name) >= FIELD_SIZEOF(struct ffs_dev, name))
b658499f 3396 return -ENAMETOOLONG;
ea920bb4 3397 return ffs_name_dev(to_f_fs_opts(fi)->dev, name);
b658499f
AP
3398}
3399
5920cda6
AP
3400static struct usb_function_instance *ffs_alloc_inst(void)
3401{
3402 struct f_fs_opts *opts;
3403 struct ffs_dev *dev;
3404
3405 opts = kzalloc(sizeof(*opts), GFP_KERNEL);
3406 if (!opts)
3407 return ERR_PTR(-ENOMEM);
3408
b658499f 3409 opts->func_inst.set_inst_name = ffs_set_inst_name;
5920cda6
AP
3410 opts->func_inst.free_func_inst = ffs_free_inst;
3411 ffs_dev_lock();
da13a773 3412 dev = _ffs_alloc_dev();
5920cda6
AP
3413 ffs_dev_unlock();
3414 if (IS_ERR(dev)) {
3415 kfree(opts);
3416 return ERR_CAST(dev);
3417 }
3418 opts->dev = dev;
b658499f 3419 dev->opts = opts;
5920cda6 3420
b658499f
AP
3421 config_group_init_type_name(&opts->func_inst.group, "",
3422 &ffs_func_type);
5920cda6
AP
3423 return &opts->func_inst;
3424}
3425
3426static void ffs_free(struct usb_function *f)
3427{
3428 kfree(ffs_func_from_usb(f));
3429}
3430
3431static void ffs_func_unbind(struct usb_configuration *c,
3432 struct usb_function *f)
3433{
3434 struct ffs_function *func = ffs_func_from_usb(f);
3435 struct ffs_data *ffs = func->ffs;
3436 struct f_fs_opts *opts =
3437 container_of(f->fi, struct f_fs_opts, func_inst);
3438 struct ffs_ep *ep = func->eps;
3439 unsigned count = ffs->eps_count;
3440 unsigned long flags;
3441
3442 ENTER();
3443 if (ffs->func == func) {
3444 ffs_func_eps_disable(func);
3445 ffs->func = NULL;
3446 }
3447
3448 if (!--opts->refcnt)
3449 functionfs_unbind(ffs);
3450
3451 /* cleanup after autoconfig */
3452 spin_lock_irqsave(&func->ffs->eps_lock, flags);
08f37148 3453 while (count--) {
5920cda6
AP
3454 if (ep->ep && ep->req)
3455 usb_ep_free_request(ep->ep, ep->req);
3456 ep->req = NULL;
3457 ++ep;
08f37148 3458 }
5920cda6
AP
3459 spin_unlock_irqrestore(&func->ffs->eps_lock, flags);
3460 kfree(func->eps);
3461 func->eps = NULL;
3462 /*
3463 * eps, descriptors and interfaces_nums are allocated in the
3464 * same chunk so only one free is required.
3465 */
3466 func->function.fs_descriptors = NULL;
3467 func->function.hs_descriptors = NULL;
8d4e897b 3468 func->function.ss_descriptors = NULL;
5920cda6
AP
3469 func->interfaces_nums = NULL;
3470
3471 ffs_event_add(ffs, FUNCTIONFS_UNBIND);
3472}
3473
3474static struct usb_function *ffs_alloc(struct usb_function_instance *fi)
3475{
3476 struct ffs_function *func;
3477
3478 ENTER();
3479
3480 func = kzalloc(sizeof(*func), GFP_KERNEL);
3481 if (unlikely(!func))
3482 return ERR_PTR(-ENOMEM);
3483
3484 func->function.name = "Function FS Gadget";
3485
3486 func->function.bind = ffs_func_bind;
3487 func->function.unbind = ffs_func_unbind;
3488 func->function.set_alt = ffs_func_set_alt;
3489 func->function.disable = ffs_func_disable;
3490 func->function.setup = ffs_func_setup;
54dfce6d 3491 func->function.req_match = ffs_func_req_match;
5920cda6
AP
3492 func->function.suspend = ffs_func_suspend;
3493 func->function.resume = ffs_func_resume;
3494 func->function.free_func = ffs_free;
3495
3496 return &func->function;
3497}
3498
4b187fce
AP
3499/*
3500 * ffs_lock must be taken by the caller of this function
3501 */
da13a773 3502static struct ffs_dev *_ffs_alloc_dev(void)
4b187fce
AP
3503{
3504 struct ffs_dev *dev;
3505 int ret;
3506
da13a773 3507 if (_ffs_get_single_dev())
4b187fce
AP
3508 return ERR_PTR(-EBUSY);
3509
3510 dev = kzalloc(sizeof(*dev), GFP_KERNEL);
3511 if (!dev)
3512 return ERR_PTR(-ENOMEM);
3513
3514 if (list_empty(&ffs_devices)) {
3515 ret = functionfs_init();
3516 if (ret) {
3517 kfree(dev);
3518 return ERR_PTR(ret);
3519 }
3520 }
3521
3522 list_add(&dev->entry, &ffs_devices);
3523
3524 return dev;
3525}
3526
ea920bb4 3527int ffs_name_dev(struct ffs_dev *dev, const char *name)
4b187fce
AP
3528{
3529 struct ffs_dev *existing;
ea920bb4 3530 int ret = 0;
4b187fce 3531
ea920bb4 3532 ffs_dev_lock();
4b187fce 3533
ea920bb4
MN
3534 existing = _ffs_do_find_dev(name);
3535 if (!existing)
3536 strlcpy(dev->name, name, ARRAY_SIZE(dev->name));
3537 else if (existing != dev)
3538 ret = -EBUSY;
4b187fce 3539
4b187fce
AP
3540 ffs_dev_unlock();
3541
3542 return ret;
3543}
0700faaf 3544EXPORT_SYMBOL_GPL(ffs_name_dev);
4b187fce
AP
3545
3546int ffs_single_dev(struct ffs_dev *dev)
3547{
3548 int ret;
3549
3550 ret = 0;
3551 ffs_dev_lock();
3552
3553 if (!list_is_singular(&ffs_devices))
3554 ret = -EBUSY;
3555 else
3556 dev->single = true;
3557
3558 ffs_dev_unlock();
3559 return ret;
3560}
0700faaf 3561EXPORT_SYMBOL_GPL(ffs_single_dev);
4b187fce
AP
3562
3563/*
3564 * ffs_lock must be taken by the caller of this function
3565 */
da13a773 3566static void _ffs_free_dev(struct ffs_dev *dev)
4b187fce
AP
3567{
3568 list_del(&dev->entry);
3262ad82
JB
3569
3570 /* Clear the private_data pointer to stop incorrect dev access */
3571 if (dev->ffs_data)
3572 dev->ffs_data->private_data = NULL;
3573
4b187fce
AP
3574 kfree(dev);
3575 if (list_empty(&ffs_devices))
3576 functionfs_cleanup();
3577}
3578
3579static void *ffs_acquire_dev(const char *dev_name)
3580{
3581 struct ffs_dev *ffs_dev;
3582
3583 ENTER();
3584 ffs_dev_lock();
3585
da13a773 3586 ffs_dev = _ffs_find_dev(dev_name);
4b187fce 3587 if (!ffs_dev)
d668b4f3 3588 ffs_dev = ERR_PTR(-ENOENT);
4b187fce
AP
3589 else if (ffs_dev->mounted)
3590 ffs_dev = ERR_PTR(-EBUSY);
5920cda6
AP
3591 else if (ffs_dev->ffs_acquire_dev_callback &&
3592 ffs_dev->ffs_acquire_dev_callback(ffs_dev))
d668b4f3 3593 ffs_dev = ERR_PTR(-ENOENT);
4b187fce
AP
3594 else
3595 ffs_dev->mounted = true;
3596
3597 ffs_dev_unlock();
3598 return ffs_dev;
3599}
3600
3601static void ffs_release_dev(struct ffs_data *ffs_data)
3602{
3603 struct ffs_dev *ffs_dev;
3604
3605 ENTER();
3606 ffs_dev_lock();
3607
3608 ffs_dev = ffs_data->private_data;
ea365922 3609 if (ffs_dev) {
4b187fce 3610 ffs_dev->mounted = false;
ea365922
AP
3611
3612 if (ffs_dev->ffs_release_dev_callback)
3613 ffs_dev->ffs_release_dev_callback(ffs_dev);
3614 }
4b187fce
AP
3615
3616 ffs_dev_unlock();
3617}
3618
3619static int ffs_ready(struct ffs_data *ffs)
3620{
3621 struct ffs_dev *ffs_obj;
3622 int ret = 0;
3623
3624 ENTER();
3625 ffs_dev_lock();
3626
3627 ffs_obj = ffs->private_data;
3628 if (!ffs_obj) {
3629 ret = -EINVAL;
3630 goto done;
3631 }
3632 if (WARN_ON(ffs_obj->desc_ready)) {
3633 ret = -EBUSY;
3634 goto done;
3635 }
3636
3637 ffs_obj->desc_ready = true;
3638 ffs_obj->ffs_data = ffs;
3639
49a79d8b 3640 if (ffs_obj->ffs_ready_callback) {
4b187fce 3641 ret = ffs_obj->ffs_ready_callback(ffs);
49a79d8b
KO
3642 if (ret)
3643 goto done;
3644 }
4b187fce 3645
49a79d8b 3646 set_bit(FFS_FL_CALL_CLOSED_CALLBACK, &ffs->flags);
4b187fce
AP
3647done:
3648 ffs_dev_unlock();
3649 return ret;
3650}
3651
3652static void ffs_closed(struct ffs_data *ffs)
3653{
3654 struct ffs_dev *ffs_obj;
f14e9ad1 3655 struct f_fs_opts *opts;
b3ce3ce0 3656 struct config_item *ci;
4b187fce
AP
3657
3658 ENTER();
3659 ffs_dev_lock();
3660
3661 ffs_obj = ffs->private_data;
3662 if (!ffs_obj)
3663 goto done;
3664
3665 ffs_obj->desc_ready = false;
cdafb6d8 3666 ffs_obj->ffs_data = NULL;
4b187fce 3667
49a79d8b
KO
3668 if (test_and_clear_bit(FFS_FL_CALL_CLOSED_CALLBACK, &ffs->flags) &&
3669 ffs_obj->ffs_closed_callback)
4b187fce 3670 ffs_obj->ffs_closed_callback(ffs);
b658499f 3671
f14e9ad1
RMS
3672 if (ffs_obj->opts)
3673 opts = ffs_obj->opts;
3674 else
3675 goto done;
3676
3677 if (opts->no_configfs || !opts->func_inst.group.cg_item.ci_parent
2c935bc5 3678 || !kref_read(&opts->func_inst.group.cg_item.ci_kref))
b658499f
AP
3679 goto done;
3680
b3ce3ce0
BW
3681 ci = opts->func_inst.group.cg_item.ci_parent->ci_parent;
3682 ffs_dev_unlock();
3683
ce5bf9a5
HK
3684 if (test_bit(FFS_FL_BOUND, &ffs->flags))
3685 unregister_gadget_item(ci);
b3ce3ce0 3686 return;
4b187fce
AP
3687done:
3688 ffs_dev_unlock();
3689}
3690
ddf8abd2
MN
3691/* Misc helper functions ****************************************************/
3692
3693static int ffs_mutex_lock(struct mutex *mutex, unsigned nonblock)
3694{
3695 return nonblock
3696 ? likely(mutex_trylock(mutex)) ? 0 : -EAGAIN
3697 : mutex_lock_interruptible(mutex);
3698}
3699
260ef311 3700static char *ffs_prepare_buffer(const char __user *buf, size_t len)
ddf8abd2
MN
3701{
3702 char *data;
3703
3704 if (unlikely(!len))
3705 return NULL;
3706
3707 data = kmalloc(len, GFP_KERNEL);
3708 if (unlikely(!data))
3709 return ERR_PTR(-ENOMEM);
3710
7fe9a937 3711 if (unlikely(copy_from_user(data, buf, len))) {
ddf8abd2
MN
3712 kfree(data);
3713 return ERR_PTR(-EFAULT);
3714 }
3715
aa02f172 3716 pr_vdebug("Buffer from user space:\n");
ddf8abd2
MN
3717 ffs_dump_mem("", data, len);
3718
3719 return data;
3720}
5920cda6 3721
5920cda6
AP
3722DECLARE_USB_FUNCTION_INIT(ffs, ffs_alloc_inst, ffs_alloc);
3723MODULE_LICENSE("GPL");
3724MODULE_AUTHOR("Michal Nazarewicz");