mm: Remove slab destructors from kmem_cache_create().
[GitHub/mt8127/android_kernel_alcatel_ttab.git] / drivers / usb / mon / mon_text.c
1 /*
2 * The USB Monitor, inspired by Dave Harding's USBMon.
3 *
4 * This is a text format reader.
5 */
6
7 #include <linux/kernel.h>
8 #include <linux/list.h>
9 #include <linux/usb.h>
10 #include <linux/time.h>
11 #include <linux/mutex.h>
12 #include <linux/debugfs.h>
13 #include <asm/uaccess.h>
14
15 #include "usb_mon.h"
16
17 /*
18 * No, we do not want arbitrarily long data strings.
19 * Use the binary interface if you want to capture bulk data!
20 */
21 #define DATA_MAX 32
22
23 /*
24 * Defined by USB 2.0 clause 9.3, table 9.2.
25 */
26 #define SETUP_MAX 8
27
28 /*
29 * This limit exists to prevent OOMs when the user process stops reading.
30 * If usbmon were available to unprivileged processes, it might be open
31 * to a local DoS. But we have to keep to root in order to prevent
32 * password sniffing from HID devices.
33 */
34 #define EVENT_MAX (4*PAGE_SIZE / sizeof(struct mon_event_text))
35
36 /*
37 * Potentially unlimited number; we limit it for similar allocations.
38 * The usbfs limits this to 128, but we're not quite as generous.
39 */
40 #define ISODESC_MAX 5
41
42 #define PRINTF_DFL 250 /* with 5 ISOs segs */
43
44 struct mon_iso_desc {
45 int status;
46 unsigned int offset;
47 unsigned int length; /* Unsigned here, signed in URB. Historic. */
48 };
49
50 struct mon_event_text {
51 struct list_head e_link;
52 int type; /* submit, complete, etc. */
53 unsigned int pipe; /* Pipe */
54 unsigned long id; /* From pointer, most of the time */
55 unsigned int tstamp;
56 int busnum;
57 int length; /* Depends on type: xfer length or act length */
58 int status;
59 int interval;
60 int start_frame;
61 int error_count;
62 char setup_flag;
63 char data_flag;
64 int numdesc; /* Full number */
65 struct mon_iso_desc isodesc[ISODESC_MAX];
66 unsigned char setup[SETUP_MAX];
67 unsigned char data[DATA_MAX];
68 };
69
70 #define SLAB_NAME_SZ 30
71 struct mon_reader_text {
72 struct kmem_cache *e_slab;
73 int nevents;
74 struct list_head e_list;
75 struct mon_reader r; /* In C, parent class can be placed anywhere */
76
77 wait_queue_head_t wait;
78 int printf_size;
79 char *printf_buf;
80 struct mutex printf_lock;
81
82 char slab_name[SLAB_NAME_SZ];
83 };
84
85 static struct dentry *mon_dir; /* Usually /sys/kernel/debug/usbmon */
86
87 static void mon_text_ctor(void *, struct kmem_cache *, unsigned long);
88
89 struct mon_text_ptr {
90 int cnt, limit;
91 char *pbuf;
92 };
93
94 static struct mon_event_text *
95 mon_text_read_wait(struct mon_reader_text *rp, struct file *file);
96 static void mon_text_read_head_t(struct mon_reader_text *rp,
97 struct mon_text_ptr *p, const struct mon_event_text *ep);
98 static void mon_text_read_head_u(struct mon_reader_text *rp,
99 struct mon_text_ptr *p, const struct mon_event_text *ep);
100 static void mon_text_read_statset(struct mon_reader_text *rp,
101 struct mon_text_ptr *p, const struct mon_event_text *ep);
102 static void mon_text_read_intstat(struct mon_reader_text *rp,
103 struct mon_text_ptr *p, const struct mon_event_text *ep);
104 static void mon_text_read_isostat(struct mon_reader_text *rp,
105 struct mon_text_ptr *p, const struct mon_event_text *ep);
106 static void mon_text_read_isodesc(struct mon_reader_text *rp,
107 struct mon_text_ptr *p, const struct mon_event_text *ep);
108 static void mon_text_read_data(struct mon_reader_text *rp,
109 struct mon_text_ptr *p, const struct mon_event_text *ep);
110
111 /*
112 * mon_text_submit
113 * mon_text_complete
114 *
115 * May be called from an interrupt.
116 *
117 * This is called with the whole mon_bus locked, so no additional lock.
118 */
119
120 static inline char mon_text_get_setup(struct mon_event_text *ep,
121 struct urb *urb, char ev_type, struct mon_bus *mbus)
122 {
123
124 if (!usb_pipecontrol(urb->pipe) || ev_type != 'S')
125 return '-';
126
127 if (urb->dev->bus->uses_dma &&
128 (urb->transfer_flags & URB_NO_SETUP_DMA_MAP)) {
129 return mon_dmapeek(ep->setup, urb->setup_dma, SETUP_MAX);
130 }
131 if (urb->setup_packet == NULL)
132 return 'Z'; /* '0' would be not as pretty. */
133
134 memcpy(ep->setup, urb->setup_packet, SETUP_MAX);
135 return 0;
136 }
137
138 static inline char mon_text_get_data(struct mon_event_text *ep, struct urb *urb,
139 int len, char ev_type, struct mon_bus *mbus)
140 {
141 int pipe = urb->pipe;
142
143 if (len <= 0)
144 return 'L';
145 if (len >= DATA_MAX)
146 len = DATA_MAX;
147
148 if (usb_pipein(pipe)) {
149 if (ev_type != 'C')
150 return '<';
151 } else {
152 if (ev_type != 'S')
153 return '>';
154 }
155
156 /*
157 * The check to see if it's safe to poke at data has an enormous
158 * number of corner cases, but it seems that the following is
159 * more or less safe.
160 *
161 * We do not even try to look at transfer_buffer, because it can
162 * contain non-NULL garbage in case the upper level promised to
163 * set DMA for the HCD.
164 */
165 if (urb->dev->bus->uses_dma &&
166 (urb->transfer_flags & URB_NO_TRANSFER_DMA_MAP)) {
167 return mon_dmapeek(ep->data, urb->transfer_dma, len);
168 }
169
170 if (urb->transfer_buffer == NULL)
171 return 'Z'; /* '0' would be not as pretty. */
172
173 memcpy(ep->data, urb->transfer_buffer, len);
174 return 0;
175 }
176
177 static inline unsigned int mon_get_timestamp(void)
178 {
179 struct timeval tval;
180 unsigned int stamp;
181
182 do_gettimeofday(&tval);
183 stamp = tval.tv_sec & 0xFFFF; /* 2^32 = 4294967296. Limit to 4096s. */
184 stamp = stamp * 1000000 + tval.tv_usec;
185 return stamp;
186 }
187
188 static void mon_text_event(struct mon_reader_text *rp, struct urb *urb,
189 char ev_type)
190 {
191 struct mon_event_text *ep;
192 unsigned int stamp;
193 struct usb_iso_packet_descriptor *fp;
194 struct mon_iso_desc *dp;
195 int i, ndesc;
196
197 stamp = mon_get_timestamp();
198
199 if (rp->nevents >= EVENT_MAX ||
200 (ep = kmem_cache_alloc(rp->e_slab, GFP_ATOMIC)) == NULL) {
201 rp->r.m_bus->cnt_text_lost++;
202 return;
203 }
204
205 ep->type = ev_type;
206 ep->pipe = urb->pipe;
207 ep->id = (unsigned long) urb;
208 ep->busnum = urb->dev->bus->busnum;
209 ep->tstamp = stamp;
210 ep->length = (ev_type == 'S') ?
211 urb->transfer_buffer_length : urb->actual_length;
212 /* Collecting status makes debugging sense for submits, too */
213 ep->status = urb->status;
214
215 if (usb_pipeint(urb->pipe)) {
216 ep->interval = urb->interval;
217 } else if (usb_pipeisoc(urb->pipe)) {
218 ep->interval = urb->interval;
219 ep->start_frame = urb->start_frame;
220 ep->error_count = urb->error_count;
221 }
222 ep->numdesc = urb->number_of_packets;
223 if (usb_pipeisoc(urb->pipe) && urb->number_of_packets > 0) {
224 if ((ndesc = urb->number_of_packets) > ISODESC_MAX)
225 ndesc = ISODESC_MAX;
226 fp = urb->iso_frame_desc;
227 dp = ep->isodesc;
228 for (i = 0; i < ndesc; i++) {
229 dp->status = fp->status;
230 dp->offset = fp->offset;
231 dp->length = (ev_type == 'S') ?
232 fp->length : fp->actual_length;
233 fp++;
234 dp++;
235 }
236 }
237
238 ep->setup_flag = mon_text_get_setup(ep, urb, ev_type, rp->r.m_bus);
239 ep->data_flag = mon_text_get_data(ep, urb, ep->length, ev_type,
240 rp->r.m_bus);
241
242 rp->nevents++;
243 list_add_tail(&ep->e_link, &rp->e_list);
244 wake_up(&rp->wait);
245 }
246
247 static void mon_text_submit(void *data, struct urb *urb)
248 {
249 struct mon_reader_text *rp = data;
250 mon_text_event(rp, urb, 'S');
251 }
252
253 static void mon_text_complete(void *data, struct urb *urb)
254 {
255 struct mon_reader_text *rp = data;
256 mon_text_event(rp, urb, 'C');
257 }
258
259 static void mon_text_error(void *data, struct urb *urb, int error)
260 {
261 struct mon_reader_text *rp = data;
262 struct mon_event_text *ep;
263
264 if (rp->nevents >= EVENT_MAX ||
265 (ep = kmem_cache_alloc(rp->e_slab, GFP_ATOMIC)) == NULL) {
266 rp->r.m_bus->cnt_text_lost++;
267 return;
268 }
269
270 ep->type = 'E';
271 ep->pipe = urb->pipe;
272 ep->id = (unsigned long) urb;
273 ep->busnum = 0;
274 ep->tstamp = 0;
275 ep->length = 0;
276 ep->status = error;
277
278 ep->setup_flag = '-';
279 ep->data_flag = 'E';
280
281 rp->nevents++;
282 list_add_tail(&ep->e_link, &rp->e_list);
283 wake_up(&rp->wait);
284 }
285
286 /*
287 * Fetch next event from the circular buffer.
288 */
289 static struct mon_event_text *mon_text_fetch(struct mon_reader_text *rp,
290 struct mon_bus *mbus)
291 {
292 struct list_head *p;
293 unsigned long flags;
294
295 spin_lock_irqsave(&mbus->lock, flags);
296 if (list_empty(&rp->e_list)) {
297 spin_unlock_irqrestore(&mbus->lock, flags);
298 return NULL;
299 }
300 p = rp->e_list.next;
301 list_del(p);
302 --rp->nevents;
303 spin_unlock_irqrestore(&mbus->lock, flags);
304 return list_entry(p, struct mon_event_text, e_link);
305 }
306
307 /*
308 */
309 static int mon_text_open(struct inode *inode, struct file *file)
310 {
311 struct mon_bus *mbus;
312 struct mon_reader_text *rp;
313 int rc;
314
315 mutex_lock(&mon_lock);
316 mbus = inode->i_private;
317
318 rp = kzalloc(sizeof(struct mon_reader_text), GFP_KERNEL);
319 if (rp == NULL) {
320 rc = -ENOMEM;
321 goto err_alloc;
322 }
323 INIT_LIST_HEAD(&rp->e_list);
324 init_waitqueue_head(&rp->wait);
325 mutex_init(&rp->printf_lock);
326
327 rp->printf_size = PRINTF_DFL;
328 rp->printf_buf = kmalloc(rp->printf_size, GFP_KERNEL);
329 if (rp->printf_buf == NULL) {
330 rc = -ENOMEM;
331 goto err_alloc_pr;
332 }
333
334 rp->r.m_bus = mbus;
335 rp->r.r_data = rp;
336 rp->r.rnf_submit = mon_text_submit;
337 rp->r.rnf_error = mon_text_error;
338 rp->r.rnf_complete = mon_text_complete;
339
340 snprintf(rp->slab_name, SLAB_NAME_SZ, "mon_text_%p", rp);
341 rp->e_slab = kmem_cache_create(rp->slab_name,
342 sizeof(struct mon_event_text), sizeof(long), 0,
343 mon_text_ctor);
344 if (rp->e_slab == NULL) {
345 rc = -ENOMEM;
346 goto err_slab;
347 }
348
349 mon_reader_add(mbus, &rp->r);
350
351 file->private_data = rp;
352 mutex_unlock(&mon_lock);
353 return 0;
354
355 // err_busy:
356 // kmem_cache_destroy(rp->e_slab);
357 err_slab:
358 kfree(rp->printf_buf);
359 err_alloc_pr:
360 kfree(rp);
361 err_alloc:
362 mutex_unlock(&mon_lock);
363 return rc;
364 }
365
366 /*
367 * For simplicity, we read one record in one system call and throw out
368 * what does not fit. This means that the following does not work:
369 * dd if=/dbg/usbmon/0t bs=10
370 * Also, we do not allow seeks and do not bother advancing the offset.
371 */
372 static ssize_t mon_text_read_t(struct file *file, char __user *buf,
373 size_t nbytes, loff_t *ppos)
374 {
375 struct mon_reader_text *rp = file->private_data;
376 struct mon_event_text *ep;
377 struct mon_text_ptr ptr;
378
379 if (IS_ERR(ep = mon_text_read_wait(rp, file)))
380 return PTR_ERR(ep);
381 mutex_lock(&rp->printf_lock);
382 ptr.cnt = 0;
383 ptr.pbuf = rp->printf_buf;
384 ptr.limit = rp->printf_size;
385
386 mon_text_read_head_t(rp, &ptr, ep);
387 mon_text_read_statset(rp, &ptr, ep);
388 ptr.cnt += snprintf(ptr.pbuf + ptr.cnt, ptr.limit - ptr.cnt,
389 " %d", ep->length);
390 mon_text_read_data(rp, &ptr, ep);
391
392 if (copy_to_user(buf, rp->printf_buf, ptr.cnt))
393 ptr.cnt = -EFAULT;
394 mutex_unlock(&rp->printf_lock);
395 kmem_cache_free(rp->e_slab, ep);
396 return ptr.cnt;
397 }
398
399 static ssize_t mon_text_read_u(struct file *file, char __user *buf,
400 size_t nbytes, loff_t *ppos)
401 {
402 struct mon_reader_text *rp = file->private_data;
403 struct mon_event_text *ep;
404 struct mon_text_ptr ptr;
405
406 if (IS_ERR(ep = mon_text_read_wait(rp, file)))
407 return PTR_ERR(ep);
408 mutex_lock(&rp->printf_lock);
409 ptr.cnt = 0;
410 ptr.pbuf = rp->printf_buf;
411 ptr.limit = rp->printf_size;
412
413 mon_text_read_head_u(rp, &ptr, ep);
414 if (ep->type == 'E') {
415 mon_text_read_statset(rp, &ptr, ep);
416 } else if (usb_pipeisoc(ep->pipe)) {
417 mon_text_read_isostat(rp, &ptr, ep);
418 mon_text_read_isodesc(rp, &ptr, ep);
419 } else if (usb_pipeint(ep->pipe)) {
420 mon_text_read_intstat(rp, &ptr, ep);
421 } else {
422 mon_text_read_statset(rp, &ptr, ep);
423 }
424 ptr.cnt += snprintf(ptr.pbuf + ptr.cnt, ptr.limit - ptr.cnt,
425 " %d", ep->length);
426 mon_text_read_data(rp, &ptr, ep);
427
428 if (copy_to_user(buf, rp->printf_buf, ptr.cnt))
429 ptr.cnt = -EFAULT;
430 mutex_unlock(&rp->printf_lock);
431 kmem_cache_free(rp->e_slab, ep);
432 return ptr.cnt;
433 }
434
435 static struct mon_event_text *mon_text_read_wait(struct mon_reader_text *rp,
436 struct file *file)
437 {
438 struct mon_bus *mbus = rp->r.m_bus;
439 DECLARE_WAITQUEUE(waita, current);
440 struct mon_event_text *ep;
441
442 add_wait_queue(&rp->wait, &waita);
443 set_current_state(TASK_INTERRUPTIBLE);
444 while ((ep = mon_text_fetch(rp, mbus)) == NULL) {
445 if (file->f_flags & O_NONBLOCK) {
446 set_current_state(TASK_RUNNING);
447 remove_wait_queue(&rp->wait, &waita);
448 return ERR_PTR(-EWOULDBLOCK);
449 }
450 /*
451 * We do not count nwaiters, because ->release is supposed
452 * to be called when all openers are gone only.
453 */
454 schedule();
455 if (signal_pending(current)) {
456 remove_wait_queue(&rp->wait, &waita);
457 return ERR_PTR(-EINTR);
458 }
459 set_current_state(TASK_INTERRUPTIBLE);
460 }
461 set_current_state(TASK_RUNNING);
462 remove_wait_queue(&rp->wait, &waita);
463 return ep;
464 }
465
466 static void mon_text_read_head_t(struct mon_reader_text *rp,
467 struct mon_text_ptr *p, const struct mon_event_text *ep)
468 {
469 char udir, utype;
470
471 udir = usb_pipein(ep->pipe) ? 'i' : 'o';
472 switch (usb_pipetype(ep->pipe)) {
473 case PIPE_ISOCHRONOUS: utype = 'Z'; break;
474 case PIPE_INTERRUPT: utype = 'I'; break;
475 case PIPE_CONTROL: utype = 'C'; break;
476 default: /* PIPE_BULK */ utype = 'B';
477 }
478 p->cnt += snprintf(p->pbuf + p->cnt, p->limit - p->cnt,
479 "%lx %u %c %c%c:%03u:%02u",
480 ep->id, ep->tstamp, ep->type,
481 utype, udir,
482 usb_pipedevice(ep->pipe), usb_pipeendpoint(ep->pipe));
483 }
484
485 static void mon_text_read_head_u(struct mon_reader_text *rp,
486 struct mon_text_ptr *p, const struct mon_event_text *ep)
487 {
488 char udir, utype;
489
490 udir = usb_pipein(ep->pipe) ? 'i' : 'o';
491 switch (usb_pipetype(ep->pipe)) {
492 case PIPE_ISOCHRONOUS: utype = 'Z'; break;
493 case PIPE_INTERRUPT: utype = 'I'; break;
494 case PIPE_CONTROL: utype = 'C'; break;
495 default: /* PIPE_BULK */ utype = 'B';
496 }
497 p->cnt += snprintf(p->pbuf + p->cnt, p->limit - p->cnt,
498 "%lx %u %c %c%c:%d:%03u:%u",
499 ep->id, ep->tstamp, ep->type,
500 utype, udir,
501 ep->busnum, usb_pipedevice(ep->pipe), usb_pipeendpoint(ep->pipe));
502 }
503
504 static void mon_text_read_statset(struct mon_reader_text *rp,
505 struct mon_text_ptr *p, const struct mon_event_text *ep)
506 {
507
508 if (ep->setup_flag == 0) { /* Setup packet is present and captured */
509 p->cnt += snprintf(p->pbuf + p->cnt, p->limit - p->cnt,
510 " s %02x %02x %04x %04x %04x",
511 ep->setup[0],
512 ep->setup[1],
513 (ep->setup[3] << 8) | ep->setup[2],
514 (ep->setup[5] << 8) | ep->setup[4],
515 (ep->setup[7] << 8) | ep->setup[6]);
516 } else if (ep->setup_flag != '-') { /* Unable to capture setup packet */
517 p->cnt += snprintf(p->pbuf + p->cnt, p->limit - p->cnt,
518 " %c __ __ ____ ____ ____", ep->setup_flag);
519 } else { /* No setup for this kind of URB */
520 p->cnt += snprintf(p->pbuf + p->cnt, p->limit - p->cnt,
521 " %d", ep->status);
522 }
523 }
524
525 static void mon_text_read_intstat(struct mon_reader_text *rp,
526 struct mon_text_ptr *p, const struct mon_event_text *ep)
527 {
528 p->cnt += snprintf(p->pbuf + p->cnt, p->limit - p->cnt,
529 " %d:%d", ep->status, ep->interval);
530 }
531
532 static void mon_text_read_isostat(struct mon_reader_text *rp,
533 struct mon_text_ptr *p, const struct mon_event_text *ep)
534 {
535 if (ep->type == 'S') {
536 p->cnt += snprintf(p->pbuf + p->cnt, p->limit - p->cnt,
537 " %d:%d:%d", ep->status, ep->interval, ep->start_frame);
538 } else {
539 p->cnt += snprintf(p->pbuf + p->cnt, p->limit - p->cnt,
540 " %d:%d:%d:%d",
541 ep->status, ep->interval, ep->start_frame, ep->error_count);
542 }
543 }
544
545 static void mon_text_read_isodesc(struct mon_reader_text *rp,
546 struct mon_text_ptr *p, const struct mon_event_text *ep)
547 {
548 int ndesc; /* Display this many */
549 int i;
550 const struct mon_iso_desc *dp;
551
552 p->cnt += snprintf(p->pbuf + p->cnt, p->limit - p->cnt,
553 " %d", ep->numdesc);
554 ndesc = ep->numdesc;
555 if (ndesc > ISODESC_MAX)
556 ndesc = ISODESC_MAX;
557 if (ndesc < 0)
558 ndesc = 0;
559 dp = ep->isodesc;
560 for (i = 0; i < ndesc; i++) {
561 p->cnt += snprintf(p->pbuf + p->cnt, p->limit - p->cnt,
562 " %d:%u:%u", dp->status, dp->offset, dp->length);
563 dp++;
564 }
565 }
566
567 static void mon_text_read_data(struct mon_reader_text *rp,
568 struct mon_text_ptr *p, const struct mon_event_text *ep)
569 {
570 int data_len, i;
571
572 if ((data_len = ep->length) > 0) {
573 if (ep->data_flag == 0) {
574 p->cnt += snprintf(p->pbuf + p->cnt, p->limit - p->cnt,
575 " =");
576 if (data_len >= DATA_MAX)
577 data_len = DATA_MAX;
578 for (i = 0; i < data_len; i++) {
579 if (i % 4 == 0) {
580 p->cnt += snprintf(p->pbuf + p->cnt,
581 p->limit - p->cnt,
582 " ");
583 }
584 p->cnt += snprintf(p->pbuf + p->cnt,
585 p->limit - p->cnt,
586 "%02x", ep->data[i]);
587 }
588 p->cnt += snprintf(p->pbuf + p->cnt, p->limit - p->cnt,
589 "\n");
590 } else {
591 p->cnt += snprintf(p->pbuf + p->cnt, p->limit - p->cnt,
592 " %c\n", ep->data_flag);
593 }
594 } else {
595 p->cnt += snprintf(p->pbuf + p->cnt, p->limit - p->cnt, "\n");
596 }
597 }
598
599 static int mon_text_release(struct inode *inode, struct file *file)
600 {
601 struct mon_reader_text *rp = file->private_data;
602 struct mon_bus *mbus;
603 /* unsigned long flags; */
604 struct list_head *p;
605 struct mon_event_text *ep;
606
607 mutex_lock(&mon_lock);
608 mbus = inode->i_private;
609
610 if (mbus->nreaders <= 0) {
611 printk(KERN_ERR TAG ": consistency error on close\n");
612 mutex_unlock(&mon_lock);
613 return 0;
614 }
615 mon_reader_del(mbus, &rp->r);
616
617 /*
618 * In theory, e_list is protected by mbus->lock. However,
619 * after mon_reader_del has finished, the following is the case:
620 * - we are not on reader list anymore, so new events won't be added;
621 * - whole mbus may be dropped if it was orphaned.
622 * So, we better not touch mbus.
623 */
624 /* spin_lock_irqsave(&mbus->lock, flags); */
625 while (!list_empty(&rp->e_list)) {
626 p = rp->e_list.next;
627 ep = list_entry(p, struct mon_event_text, e_link);
628 list_del(p);
629 --rp->nevents;
630 kmem_cache_free(rp->e_slab, ep);
631 }
632 /* spin_unlock_irqrestore(&mbus->lock, flags); */
633
634 kmem_cache_destroy(rp->e_slab);
635 kfree(rp->printf_buf);
636 kfree(rp);
637
638 mutex_unlock(&mon_lock);
639 return 0;
640 }
641
642 static const struct file_operations mon_fops_text_t = {
643 .owner = THIS_MODULE,
644 .open = mon_text_open,
645 .llseek = no_llseek,
646 .read = mon_text_read_t,
647 .release = mon_text_release,
648 };
649
650 static const struct file_operations mon_fops_text_u = {
651 .owner = THIS_MODULE,
652 .open = mon_text_open,
653 .llseek = no_llseek,
654 .read = mon_text_read_u,
655 .release = mon_text_release,
656 };
657
658 int mon_text_add(struct mon_bus *mbus, const struct usb_bus *ubus)
659 {
660 struct dentry *d;
661 enum { NAMESZ = 10 };
662 char name[NAMESZ];
663 int busnum = ubus? ubus->busnum: 0;
664 int rc;
665
666 if (ubus != NULL) {
667 rc = snprintf(name, NAMESZ, "%dt", busnum);
668 if (rc <= 0 || rc >= NAMESZ)
669 goto err_print_t;
670 d = debugfs_create_file(name, 0600, mon_dir, mbus,
671 &mon_fops_text_t);
672 if (d == NULL)
673 goto err_create_t;
674 mbus->dent_t = d;
675 }
676
677 rc = snprintf(name, NAMESZ, "%du", busnum);
678 if (rc <= 0 || rc >= NAMESZ)
679 goto err_print_u;
680 d = debugfs_create_file(name, 0600, mon_dir, mbus, &mon_fops_text_u);
681 if (d == NULL)
682 goto err_create_u;
683 mbus->dent_u = d;
684
685 rc = snprintf(name, NAMESZ, "%ds", busnum);
686 if (rc <= 0 || rc >= NAMESZ)
687 goto err_print_s;
688 d = debugfs_create_file(name, 0600, mon_dir, mbus, &mon_fops_stat);
689 if (d == NULL)
690 goto err_create_s;
691 mbus->dent_s = d;
692
693 return 1;
694
695 err_create_s:
696 err_print_s:
697 debugfs_remove(mbus->dent_u);
698 mbus->dent_u = NULL;
699 err_create_u:
700 err_print_u:
701 if (ubus != NULL) {
702 debugfs_remove(mbus->dent_t);
703 mbus->dent_t = NULL;
704 }
705 err_create_t:
706 err_print_t:
707 return 0;
708 }
709
710 void mon_text_del(struct mon_bus *mbus)
711 {
712 debugfs_remove(mbus->dent_u);
713 if (mbus->dent_t != NULL)
714 debugfs_remove(mbus->dent_t);
715 debugfs_remove(mbus->dent_s);
716 }
717
718 /*
719 * Slab interface: constructor.
720 */
721 static void mon_text_ctor(void *mem, struct kmem_cache *slab, unsigned long sflags)
722 {
723 /*
724 * Nothing to initialize. No, really!
725 * So, we fill it with garbage to emulate a reused object.
726 */
727 memset(mem, 0xe5, sizeof(struct mon_event_text));
728 }
729
730 int __init mon_text_init(void)
731 {
732 struct dentry *mondir;
733
734 mondir = debugfs_create_dir("usbmon", NULL);
735 if (IS_ERR(mondir)) {
736 printk(KERN_NOTICE TAG ": debugfs is not available\n");
737 return -ENODEV;
738 }
739 if (mondir == NULL) {
740 printk(KERN_NOTICE TAG ": unable to create usbmon directory\n");
741 return -ENODEV;
742 }
743 mon_dir = mondir;
744 return 0;
745 }
746
747 void mon_text_exit(void)
748 {
749 debugfs_remove(mon_dir);
750 }