2 Copyright (C) 2004 - 2009 Ivo van Doorn <IvDoorn@gmail.com>
3 <http://rt2x00.serialmonkey.com>
5 This program is free software; you can redistribute it and/or modify
6 it under the terms of the GNU General Public License as published by
7 the Free Software Foundation; either version 2 of the License, or
8 (at your option) any later version.
10 This program is distributed in the hope that it will be useful,
11 but WITHOUT ANY WARRANTY; without even the implied warranty of
12 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 GNU General Public License for more details.
15 You should have received a copy of the GNU General Public License
16 along with this program; if not, write to the
17 Free Software Foundation, Inc.,
18 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
23 Abstract: rt2x00 debugfs specific routines.
26 #include <linux/debugfs.h>
27 #include <linux/kernel.h>
28 #include <linux/module.h>
29 #include <linux/poll.h>
30 #include <linux/sched.h>
31 #include <linux/slab.h>
32 #include <linux/uaccess.h>
35 #include "rt2x00lib.h"
36 #include "rt2x00dump.h"
38 #define MAX_LINE_LENGTH 64
40 struct rt2x00debug_crypto
{
41 unsigned long success
;
42 unsigned long icv_error
;
43 unsigned long mic_error
;
44 unsigned long key_error
;
47 struct rt2x00debug_intf
{
49 * Pointer to driver structure where
50 * this debugfs entry belongs to.
52 struct rt2x00_dev
*rt2x00dev
;
55 * Reference to the rt2x00debug structure
56 * which can be used to communicate with
59 const struct rt2x00debug
*debug
;
62 * Debugfs entries for:
66 * - device state flags file
67 * - device capability flags file
69 * - csr offset/value files
70 * - eeprom offset/value files
71 * - bbp offset/value files
72 * - rf offset/value files
78 struct dentry
*driver_folder
;
79 struct dentry
*driver_entry
;
80 struct dentry
*chipset_entry
;
81 struct dentry
*dev_flags
;
82 struct dentry
*cap_flags
;
83 struct dentry
*register_folder
;
84 struct dentry
*csr_off_entry
;
85 struct dentry
*csr_val_entry
;
86 struct dentry
*eeprom_off_entry
;
87 struct dentry
*eeprom_val_entry
;
88 struct dentry
*bbp_off_entry
;
89 struct dentry
*bbp_val_entry
;
90 struct dentry
*rf_off_entry
;
91 struct dentry
*rf_val_entry
;
92 struct dentry
*queue_folder
;
93 struct dentry
*queue_frame_dump_entry
;
94 struct dentry
*queue_stats_entry
;
95 struct dentry
*crypto_stats_entry
;
98 * The frame dump file only allows a single reader,
99 * so we need to store the current state here.
101 unsigned long frame_dump_flags
;
102 #define FRAME_DUMP_FILE_OPEN 1
105 * We queue each frame before dumping it to the user,
106 * per read command we will pass a single skb structure
107 * so we should be prepared to queue multiple sk buffers
108 * before sending it to userspace.
110 struct sk_buff_head frame_dump_skbqueue
;
111 wait_queue_head_t frame_dump_waitqueue
;
114 * HW crypto statistics.
115 * All statistics are stored separately per cipher type.
117 struct rt2x00debug_crypto crypto_stats
[CIPHER_MAX
];
120 * Driver and chipset files will use a data buffer
121 * that has been created in advance. This will simplify
122 * the code since we can use the debugfs functions.
124 struct debugfs_blob_wrapper driver_blob
;
125 struct debugfs_blob_wrapper chipset_blob
;
128 * Requested offset for each register type.
130 unsigned int offset_csr
;
131 unsigned int offset_eeprom
;
132 unsigned int offset_bbp
;
133 unsigned int offset_rf
;
136 void rt2x00debug_update_crypto(struct rt2x00_dev
*rt2x00dev
,
137 struct rxdone_entry_desc
*rxdesc
)
139 struct rt2x00debug_intf
*intf
= rt2x00dev
->debugfs_intf
;
140 enum cipher cipher
= rxdesc
->cipher
;
141 enum rx_crypto status
= rxdesc
->cipher_status
;
143 if (cipher
== CIPHER_TKIP_NO_MIC
)
144 cipher
= CIPHER_TKIP
;
145 if (cipher
== CIPHER_NONE
|| cipher
>= CIPHER_MAX
)
148 /* Remove CIPHER_NONE index */
151 intf
->crypto_stats
[cipher
].success
+= (status
== RX_CRYPTO_SUCCESS
);
152 intf
->crypto_stats
[cipher
].icv_error
+= (status
== RX_CRYPTO_FAIL_ICV
);
153 intf
->crypto_stats
[cipher
].mic_error
+= (status
== RX_CRYPTO_FAIL_MIC
);
154 intf
->crypto_stats
[cipher
].key_error
+= (status
== RX_CRYPTO_FAIL_KEY
);
157 void rt2x00debug_dump_frame(struct rt2x00_dev
*rt2x00dev
,
158 enum rt2x00_dump_type type
, struct sk_buff
*skb
)
160 struct rt2x00debug_intf
*intf
= rt2x00dev
->debugfs_intf
;
161 struct skb_frame_desc
*skbdesc
= get_skb_frame_desc(skb
);
162 struct sk_buff
*skbcopy
;
163 struct rt2x00dump_hdr
*dump_hdr
;
164 struct timeval timestamp
;
167 if (likely(!test_bit(FRAME_DUMP_FILE_OPEN
, &intf
->frame_dump_flags
)))
170 do_gettimeofday(×tamp
);
172 if (skb_queue_len(&intf
->frame_dump_skbqueue
) > 20) {
173 DEBUG(rt2x00dev
, "txrx dump queue length exceeded.\n");
178 if (skbdesc
->flags
& SKBDESC_DESC_IN_SKB
)
179 data_len
-= skbdesc
->desc_len
;
181 skbcopy
= alloc_skb(sizeof(*dump_hdr
) + skbdesc
->desc_len
+ data_len
,
184 DEBUG(rt2x00dev
, "Failed to copy skb for dump.\n");
188 dump_hdr
= (struct rt2x00dump_hdr
*)skb_put(skbcopy
, sizeof(*dump_hdr
));
189 dump_hdr
->version
= cpu_to_le32(DUMP_HEADER_VERSION
);
190 dump_hdr
->header_length
= cpu_to_le32(sizeof(*dump_hdr
));
191 dump_hdr
->desc_length
= cpu_to_le32(skbdesc
->desc_len
);
192 dump_hdr
->data_length
= cpu_to_le32(data_len
);
193 dump_hdr
->chip_rt
= cpu_to_le16(rt2x00dev
->chip
.rt
);
194 dump_hdr
->chip_rf
= cpu_to_le16(rt2x00dev
->chip
.rf
);
195 dump_hdr
->chip_rev
= cpu_to_le16(rt2x00dev
->chip
.rev
);
196 dump_hdr
->type
= cpu_to_le16(type
);
197 dump_hdr
->queue_index
= skbdesc
->entry
->queue
->qid
;
198 dump_hdr
->entry_index
= skbdesc
->entry
->entry_idx
;
199 dump_hdr
->timestamp_sec
= cpu_to_le32(timestamp
.tv_sec
);
200 dump_hdr
->timestamp_usec
= cpu_to_le32(timestamp
.tv_usec
);
202 if (!(skbdesc
->flags
& SKBDESC_DESC_IN_SKB
))
203 memcpy(skb_put(skbcopy
, skbdesc
->desc_len
), skbdesc
->desc
,
205 memcpy(skb_put(skbcopy
, skb
->len
), skb
->data
, skb
->len
);
207 skb_queue_tail(&intf
->frame_dump_skbqueue
, skbcopy
);
208 wake_up_interruptible(&intf
->frame_dump_waitqueue
);
211 * Verify that the file has not been closed while we were working.
213 if (!test_bit(FRAME_DUMP_FILE_OPEN
, &intf
->frame_dump_flags
))
214 skb_queue_purge(&intf
->frame_dump_skbqueue
);
216 EXPORT_SYMBOL_GPL(rt2x00debug_dump_frame
);
218 static int rt2x00debug_file_open(struct inode
*inode
, struct file
*file
)
220 struct rt2x00debug_intf
*intf
= inode
->i_private
;
222 file
->private_data
= inode
->i_private
;
224 if (!try_module_get(intf
->debug
->owner
))
230 static int rt2x00debug_file_release(struct inode
*inode
, struct file
*file
)
232 struct rt2x00debug_intf
*intf
= file
->private_data
;
234 module_put(intf
->debug
->owner
);
239 static int rt2x00debug_open_queue_dump(struct inode
*inode
, struct file
*file
)
241 struct rt2x00debug_intf
*intf
= inode
->i_private
;
244 retval
= rt2x00debug_file_open(inode
, file
);
248 if (test_and_set_bit(FRAME_DUMP_FILE_OPEN
, &intf
->frame_dump_flags
)) {
249 rt2x00debug_file_release(inode
, file
);
256 static int rt2x00debug_release_queue_dump(struct inode
*inode
, struct file
*file
)
258 struct rt2x00debug_intf
*intf
= inode
->i_private
;
260 skb_queue_purge(&intf
->frame_dump_skbqueue
);
262 clear_bit(FRAME_DUMP_FILE_OPEN
, &intf
->frame_dump_flags
);
264 return rt2x00debug_file_release(inode
, file
);
267 static ssize_t
rt2x00debug_read_queue_dump(struct file
*file
,
272 struct rt2x00debug_intf
*intf
= file
->private_data
;
277 if (file
->f_flags
& O_NONBLOCK
)
281 wait_event_interruptible(intf
->frame_dump_waitqueue
,
283 skb_dequeue(&intf
->frame_dump_skbqueue
)));
287 status
= min((size_t)skb
->len
, length
);
288 if (copy_to_user(buf
, skb
->data
, status
)) {
301 static unsigned int rt2x00debug_poll_queue_dump(struct file
*file
,
304 struct rt2x00debug_intf
*intf
= file
->private_data
;
306 poll_wait(file
, &intf
->frame_dump_waitqueue
, wait
);
308 if (!skb_queue_empty(&intf
->frame_dump_skbqueue
))
309 return POLLOUT
| POLLWRNORM
;
314 static const struct file_operations rt2x00debug_fop_queue_dump
= {
315 .owner
= THIS_MODULE
,
316 .read
= rt2x00debug_read_queue_dump
,
317 .poll
= rt2x00debug_poll_queue_dump
,
318 .open
= rt2x00debug_open_queue_dump
,
319 .release
= rt2x00debug_release_queue_dump
,
320 .llseek
= default_llseek
,
323 static ssize_t
rt2x00debug_read_queue_stats(struct file
*file
,
328 struct rt2x00debug_intf
*intf
= file
->private_data
;
329 struct data_queue
*queue
;
330 unsigned long irqflags
;
331 unsigned int lines
= 1 + intf
->rt2x00dev
->data_queues
;
339 data
= kcalloc(lines
, MAX_LINE_LENGTH
, GFP_KERNEL
);
344 sprintf(data
, "qid\tflags\t\tcount\tlimit\tlength\tindex\tdma done\tdone\n");
346 queue_for_each(intf
->rt2x00dev
, queue
) {
347 spin_lock_irqsave(&queue
->index_lock
, irqflags
);
349 temp
+= sprintf(temp
, "%d\t0x%.8x\t%d\t%d\t%d\t%d\t%d\t\t%d\n",
350 queue
->qid
, (unsigned int)queue
->flags
,
351 queue
->count
, queue
->limit
, queue
->length
,
352 queue
->index
[Q_INDEX
],
353 queue
->index
[Q_INDEX_DMA_DONE
],
354 queue
->index
[Q_INDEX_DONE
]);
356 spin_unlock_irqrestore(&queue
->index_lock
, irqflags
);
360 size
= min(size
, length
);
362 if (copy_to_user(buf
, data
, size
)) {
373 static const struct file_operations rt2x00debug_fop_queue_stats
= {
374 .owner
= THIS_MODULE
,
375 .read
= rt2x00debug_read_queue_stats
,
376 .open
= rt2x00debug_file_open
,
377 .release
= rt2x00debug_file_release
,
378 .llseek
= default_llseek
,
381 #ifdef CONFIG_RT2X00_LIB_CRYPTO
382 static ssize_t
rt2x00debug_read_crypto_stats(struct file
*file
,
387 struct rt2x00debug_intf
*intf
= file
->private_data
;
388 static const char * const name
[] = { "WEP64", "WEP128", "TKIP", "AES" };
397 data
= kzalloc((1 + CIPHER_MAX
) * MAX_LINE_LENGTH
, GFP_KERNEL
);
402 temp
+= sprintf(data
, "cipher\tsuccess\ticv err\tmic err\tkey err\n");
404 for (i
= 0; i
< CIPHER_MAX
; i
++) {
405 temp
+= sprintf(temp
, "%s\t%lu\t%lu\t%lu\t%lu\n", name
[i
],
406 intf
->crypto_stats
[i
].success
,
407 intf
->crypto_stats
[i
].icv_error
,
408 intf
->crypto_stats
[i
].mic_error
,
409 intf
->crypto_stats
[i
].key_error
);
413 size
= min(size
, length
);
415 if (copy_to_user(buf
, data
, size
)) {
426 static const struct file_operations rt2x00debug_fop_crypto_stats
= {
427 .owner
= THIS_MODULE
,
428 .read
= rt2x00debug_read_crypto_stats
,
429 .open
= rt2x00debug_file_open
,
430 .release
= rt2x00debug_file_release
,
431 .llseek
= default_llseek
,
435 #define RT2X00DEBUGFS_OPS_READ(__name, __format, __type) \
436 static ssize_t rt2x00debug_read_##__name(struct file *file, \
441 struct rt2x00debug_intf *intf = file->private_data; \
442 const struct rt2x00debug *debug = intf->debug; \
445 unsigned int index = intf->offset_##__name; \
451 if (index >= debug->__name.word_count) \
454 index += (debug->__name.word_base / \
455 debug->__name.word_size); \
457 if (debug->__name.flags & RT2X00DEBUGFS_OFFSET) \
458 index *= debug->__name.word_size; \
460 debug->__name.read(intf->rt2x00dev, index, &value); \
462 size = sprintf(line, __format, value); \
464 if (copy_to_user(buf, line, size)) \
471 #define RT2X00DEBUGFS_OPS_WRITE(__name, __type) \
472 static ssize_t rt2x00debug_write_##__name(struct file *file, \
473 const char __user *buf,\
477 struct rt2x00debug_intf *intf = file->private_data; \
478 const struct rt2x00debug *debug = intf->debug; \
481 unsigned int index = intf->offset_##__name; \
487 if (index >= debug->__name.word_count) \
490 if (length > sizeof(line)) \
493 if (copy_from_user(line, buf, length)) \
496 size = strlen(line); \
497 value = simple_strtoul(line, NULL, 0); \
499 index += (debug->__name.word_base / \
500 debug->__name.word_size); \
502 if (debug->__name.flags & RT2X00DEBUGFS_OFFSET) \
503 index *= debug->__name.word_size; \
505 debug->__name.write(intf->rt2x00dev, index, value); \
511 #define RT2X00DEBUGFS_OPS(__name, __format, __type) \
512 RT2X00DEBUGFS_OPS_READ(__name, __format, __type); \
513 RT2X00DEBUGFS_OPS_WRITE(__name, __type); \
515 static const struct file_operations rt2x00debug_fop_##__name = {\
516 .owner = THIS_MODULE, \
517 .read = rt2x00debug_read_##__name, \
518 .write = rt2x00debug_write_##__name, \
519 .open = rt2x00debug_file_open, \
520 .release = rt2x00debug_file_release, \
521 .llseek = generic_file_llseek, \
524 RT2X00DEBUGFS_OPS(csr
, "0x%.8x\n", u32
);
525 RT2X00DEBUGFS_OPS(eeprom
, "0x%.4x\n", u16
);
526 RT2X00DEBUGFS_OPS(bbp
, "0x%.2x\n", u8
);
527 RT2X00DEBUGFS_OPS(rf
, "0x%.8x\n", u32
);
529 static ssize_t
rt2x00debug_read_dev_flags(struct file
*file
,
534 struct rt2x00debug_intf
*intf
= file
->private_data
;
541 size
= sprintf(line
, "0x%.8x\n", (unsigned int)intf
->rt2x00dev
->flags
);
543 if (copy_to_user(buf
, line
, size
))
550 static const struct file_operations rt2x00debug_fop_dev_flags
= {
551 .owner
= THIS_MODULE
,
552 .read
= rt2x00debug_read_dev_flags
,
553 .open
= rt2x00debug_file_open
,
554 .release
= rt2x00debug_file_release
,
555 .llseek
= default_llseek
,
558 static ssize_t
rt2x00debug_read_cap_flags(struct file
*file
,
563 struct rt2x00debug_intf
*intf
= file
->private_data
;
570 size
= sprintf(line
, "0x%.8x\n", (unsigned int)intf
->rt2x00dev
->cap_flags
);
572 if (copy_to_user(buf
, line
, size
))
579 static const struct file_operations rt2x00debug_fop_cap_flags
= {
580 .owner
= THIS_MODULE
,
581 .read
= rt2x00debug_read_cap_flags
,
582 .open
= rt2x00debug_file_open
,
583 .release
= rt2x00debug_file_release
,
584 .llseek
= default_llseek
,
587 static struct dentry
*rt2x00debug_create_file_driver(const char *name
,
588 struct rt2x00debug_intf
590 struct debugfs_blob_wrapper
595 data
= kzalloc(3 * MAX_LINE_LENGTH
, GFP_KERNEL
);
600 data
+= sprintf(data
, "driver:\t%s\n", intf
->rt2x00dev
->ops
->name
);
601 data
+= sprintf(data
, "version:\t%s\n", DRV_VERSION
);
602 blob
->size
= strlen(blob
->data
);
604 return debugfs_create_blob(name
, S_IRUSR
, intf
->driver_folder
, blob
);
607 static struct dentry
*rt2x00debug_create_file_chipset(const char *name
,
608 struct rt2x00debug_intf
614 const struct rt2x00debug
*debug
= intf
->debug
;
617 data
= kzalloc(8 * MAX_LINE_LENGTH
, GFP_KERNEL
);
622 data
+= sprintf(data
, "rt chip:\t%04x\n", intf
->rt2x00dev
->chip
.rt
);
623 data
+= sprintf(data
, "rf chip:\t%04x\n", intf
->rt2x00dev
->chip
.rf
);
624 data
+= sprintf(data
, "revision:\t%04x\n", intf
->rt2x00dev
->chip
.rev
);
625 data
+= sprintf(data
, "\n");
626 data
+= sprintf(data
, "register\tbase\twords\twordsize\n");
627 data
+= sprintf(data
, "csr\t%d\t%d\t%d\n",
628 debug
->csr
.word_base
,
629 debug
->csr
.word_count
,
630 debug
->csr
.word_size
);
631 data
+= sprintf(data
, "eeprom\t%d\t%d\t%d\n",
632 debug
->eeprom
.word_base
,
633 debug
->eeprom
.word_count
,
634 debug
->eeprom
.word_size
);
635 data
+= sprintf(data
, "bbp\t%d\t%d\t%d\n",
636 debug
->bbp
.word_base
,
637 debug
->bbp
.word_count
,
638 debug
->bbp
.word_size
);
639 data
+= sprintf(data
, "rf\t%d\t%d\t%d\n",
641 debug
->rf
.word_count
,
642 debug
->rf
.word_size
);
643 blob
->size
= strlen(blob
->data
);
645 return debugfs_create_blob(name
, S_IRUSR
, intf
->driver_folder
, blob
);
648 void rt2x00debug_register(struct rt2x00_dev
*rt2x00dev
)
650 const struct rt2x00debug
*debug
= rt2x00dev
->ops
->debugfs
;
651 struct rt2x00debug_intf
*intf
;
653 intf
= kzalloc(sizeof(struct rt2x00debug_intf
), GFP_KERNEL
);
655 ERROR(rt2x00dev
, "Failed to allocate debug handler.\n");
660 intf
->rt2x00dev
= rt2x00dev
;
661 rt2x00dev
->debugfs_intf
= intf
;
663 intf
->driver_folder
=
664 debugfs_create_dir(intf
->rt2x00dev
->ops
->name
,
665 rt2x00dev
->hw
->wiphy
->debugfsdir
);
666 if (IS_ERR(intf
->driver_folder
) || !intf
->driver_folder
)
670 rt2x00debug_create_file_driver("driver", intf
, &intf
->driver_blob
);
671 if (IS_ERR(intf
->driver_entry
) || !intf
->driver_entry
)
674 intf
->chipset_entry
=
675 rt2x00debug_create_file_chipset("chipset",
676 intf
, &intf
->chipset_blob
);
677 if (IS_ERR(intf
->chipset_entry
) || !intf
->chipset_entry
)
680 intf
->dev_flags
= debugfs_create_file("dev_flags", S_IRUSR
,
681 intf
->driver_folder
, intf
,
682 &rt2x00debug_fop_dev_flags
);
683 if (IS_ERR(intf
->dev_flags
) || !intf
->dev_flags
)
686 intf
->cap_flags
= debugfs_create_file("cap_flags", S_IRUSR
,
687 intf
->driver_folder
, intf
,
688 &rt2x00debug_fop_cap_flags
);
689 if (IS_ERR(intf
->cap_flags
) || !intf
->cap_flags
)
692 intf
->register_folder
=
693 debugfs_create_dir("register", intf
->driver_folder
);
694 if (IS_ERR(intf
->register_folder
) || !intf
->register_folder
)
697 #define RT2X00DEBUGFS_CREATE_REGISTER_ENTRY(__intf, __name) \
699 (__intf)->__name##_off_entry = \
700 debugfs_create_u32(__stringify(__name) "_offset", \
702 (__intf)->register_folder, \
703 &(__intf)->offset_##__name); \
704 if (IS_ERR((__intf)->__name##_off_entry) \
705 || !(__intf)->__name##_off_entry) \
708 (__intf)->__name##_val_entry = \
709 debugfs_create_file(__stringify(__name) "_value", \
711 (__intf)->register_folder, \
712 (__intf), &rt2x00debug_fop_##__name);\
713 if (IS_ERR((__intf)->__name##_val_entry) \
714 || !(__intf)->__name##_val_entry) \
718 RT2X00DEBUGFS_CREATE_REGISTER_ENTRY(intf
, csr
);
719 RT2X00DEBUGFS_CREATE_REGISTER_ENTRY(intf
, eeprom
);
720 RT2X00DEBUGFS_CREATE_REGISTER_ENTRY(intf
, bbp
);
721 RT2X00DEBUGFS_CREATE_REGISTER_ENTRY(intf
, rf
);
723 #undef RT2X00DEBUGFS_CREATE_REGISTER_ENTRY
726 debugfs_create_dir("queue", intf
->driver_folder
);
727 if (IS_ERR(intf
->queue_folder
) || !intf
->queue_folder
)
730 intf
->queue_frame_dump_entry
=
731 debugfs_create_file("dump", S_IRUSR
, intf
->queue_folder
,
732 intf
, &rt2x00debug_fop_queue_dump
);
733 if (IS_ERR(intf
->queue_frame_dump_entry
)
734 || !intf
->queue_frame_dump_entry
)
737 skb_queue_head_init(&intf
->frame_dump_skbqueue
);
738 init_waitqueue_head(&intf
->frame_dump_waitqueue
);
740 intf
->queue_stats_entry
=
741 debugfs_create_file("queue", S_IRUSR
, intf
->queue_folder
,
742 intf
, &rt2x00debug_fop_queue_stats
);
744 #ifdef CONFIG_RT2X00_LIB_CRYPTO
745 if (test_bit(CAPABILITY_HW_CRYPTO
, &rt2x00dev
->cap_flags
))
746 intf
->crypto_stats_entry
=
747 debugfs_create_file("crypto", S_IRUGO
, intf
->queue_folder
,
748 intf
, &rt2x00debug_fop_crypto_stats
);
754 rt2x00debug_deregister(rt2x00dev
);
755 ERROR(rt2x00dev
, "Failed to register debug handler.\n");
758 void rt2x00debug_deregister(struct rt2x00_dev
*rt2x00dev
)
760 struct rt2x00debug_intf
*intf
= rt2x00dev
->debugfs_intf
;
765 skb_queue_purge(&intf
->frame_dump_skbqueue
);
767 #ifdef CONFIG_RT2X00_LIB_CRYPTO
768 debugfs_remove(intf
->crypto_stats_entry
);
770 debugfs_remove(intf
->queue_stats_entry
);
771 debugfs_remove(intf
->queue_frame_dump_entry
);
772 debugfs_remove(intf
->queue_folder
);
773 debugfs_remove(intf
->rf_val_entry
);
774 debugfs_remove(intf
->rf_off_entry
);
775 debugfs_remove(intf
->bbp_val_entry
);
776 debugfs_remove(intf
->bbp_off_entry
);
777 debugfs_remove(intf
->eeprom_val_entry
);
778 debugfs_remove(intf
->eeprom_off_entry
);
779 debugfs_remove(intf
->csr_val_entry
);
780 debugfs_remove(intf
->csr_off_entry
);
781 debugfs_remove(intf
->register_folder
);
782 debugfs_remove(intf
->dev_flags
);
783 debugfs_remove(intf
->cap_flags
);
784 debugfs_remove(intf
->chipset_entry
);
785 debugfs_remove(intf
->driver_entry
);
786 debugfs_remove(intf
->driver_folder
);
787 kfree(intf
->chipset_blob
.data
);
788 kfree(intf
->driver_blob
.data
);
791 rt2x00dev
->debugfs_intf
= NULL
;