4 * Copyright IBM Corp. 2001, 2012
5 * Author(s): Robert Burroughs
6 * Eric Rossman (edrossma@us.ibm.com)
7 * Cornelia Huck <cornelia.huck@de.ibm.com>
9 * Hotplug & misc device support: Jochen Roehrig (roehrig@de.ibm.com)
10 * Major cleanup & driver split: Martin Schwidefsky <schwidefsky@de.ibm.com>
11 * Ralph Wuerthner <rwuerthn@de.ibm.com>
12 * MSGTYPE restruct: Holger Dengler <hd@linux.vnet.ibm.com>
14 * This program is free software; you can redistribute it and/or modify
15 * it under the terms of the GNU General Public License as published by
16 * the Free Software Foundation; either version 2, or (at your option)
19 * This program is distributed in the hope that it will be useful,
20 * but WITHOUT ANY WARRANTY; without even the implied warranty of
21 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
22 * GNU General Public License for more details.
24 * You should have received a copy of the GNU General Public License
25 * along with this program; if not, write to the Free Software
26 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
29 #include <linux/module.h>
30 #include <linux/init.h>
31 #include <linux/interrupt.h>
32 #include <linux/miscdevice.h>
34 #include <linux/proc_fs.h>
35 #include <linux/seq_file.h>
36 #include <linux/compat.h>
37 #include <linux/slab.h>
38 #include <linux/atomic.h>
39 #include <asm/uaccess.h>
40 #include <linux/hw_random.h>
41 #include <linux/debugfs.h>
42 #include <asm/debug.h>
44 #include "zcrypt_debug.h"
45 #include "zcrypt_api.h"
47 #include "zcrypt_msgtype6.h"
52 MODULE_AUTHOR("IBM Corporation");
53 MODULE_DESCRIPTION("Cryptographic Coprocessor interface, " \
54 "Copyright IBM Corp. 2001, 2012");
55 MODULE_LICENSE("GPL");
57 static DEFINE_SPINLOCK(zcrypt_device_lock
);
58 static LIST_HEAD(zcrypt_device_list
);
59 static int zcrypt_device_count
= 0;
60 static atomic_t zcrypt_open_count
= ATOMIC_INIT(0);
61 static atomic_t zcrypt_rescan_count
= ATOMIC_INIT(0);
63 atomic_t zcrypt_rescan_req
= ATOMIC_INIT(0);
64 EXPORT_SYMBOL(zcrypt_rescan_req
);
66 static int zcrypt_rng_device_add(void);
67 static void zcrypt_rng_device_remove(void);
69 static DEFINE_SPINLOCK(zcrypt_ops_list_lock
);
70 static LIST_HEAD(zcrypt_ops_list
);
72 static debug_info_t
*zcrypt_dbf_common
;
73 static debug_info_t
*zcrypt_dbf_devices
;
74 static struct dentry
*debugfs_root
;
77 * Device attributes common for all crypto devices.
79 static ssize_t
zcrypt_type_show(struct device
*dev
,
80 struct device_attribute
*attr
, char *buf
)
82 struct zcrypt_device
*zdev
= to_ap_dev(dev
)->private;
83 return snprintf(buf
, PAGE_SIZE
, "%s\n", zdev
->type_string
);
86 static DEVICE_ATTR(type
, 0444, zcrypt_type_show
, NULL
);
88 static ssize_t
zcrypt_online_show(struct device
*dev
,
89 struct device_attribute
*attr
, char *buf
)
91 struct zcrypt_device
*zdev
= to_ap_dev(dev
)->private;
92 return snprintf(buf
, PAGE_SIZE
, "%d\n", zdev
->online
);
95 static ssize_t
zcrypt_online_store(struct device
*dev
,
96 struct device_attribute
*attr
,
97 const char *buf
, size_t count
)
99 struct zcrypt_device
*zdev
= to_ap_dev(dev
)->private;
102 if (sscanf(buf
, "%d\n", &online
) != 1 || online
< 0 || online
> 1)
104 zdev
->online
= online
;
105 ZCRYPT_DBF_DEV(DBF_INFO
, zdev
, "dev%04xo%dman", zdev
->ap_dev
->qid
,
108 ap_flush_queue(zdev
->ap_dev
);
112 static DEVICE_ATTR(online
, 0644, zcrypt_online_show
, zcrypt_online_store
);
114 static struct attribute
* zcrypt_device_attrs
[] = {
116 &dev_attr_online
.attr
,
120 static struct attribute_group zcrypt_device_attr_group
= {
121 .attrs
= zcrypt_device_attrs
,
125 * Process a rescan of the transport layer.
127 * Returns 1, if the rescan has been processed, otherwise 0.
129 static inline int zcrypt_process_rescan(void)
131 if (atomic_read(&zcrypt_rescan_req
)) {
132 atomic_set(&zcrypt_rescan_req
, 0);
133 atomic_inc(&zcrypt_rescan_count
);
134 ap_bus_force_rescan();
135 ZCRYPT_DBF_COMMON(DBF_INFO
, "rescan%07d",
136 atomic_inc_return(&zcrypt_rescan_count
));
143 * __zcrypt_increase_preference(): Increase preference of a crypto device.
144 * @zdev: Pointer the crypto device
146 * Move the device towards the head of the device list.
147 * Need to be called while holding the zcrypt device list lock.
148 * Note: cards with speed_rating of 0 are kept at the end of the list.
150 static void __zcrypt_increase_preference(struct zcrypt_device
*zdev
)
152 struct zcrypt_device
*tmp
;
155 if (zdev
->speed_rating
== 0)
157 for (l
= zdev
->list
.prev
; l
!= &zcrypt_device_list
; l
= l
->prev
) {
158 tmp
= list_entry(l
, struct zcrypt_device
, list
);
159 if ((tmp
->request_count
+ 1) * tmp
->speed_rating
<=
160 (zdev
->request_count
+ 1) * zdev
->speed_rating
&&
161 tmp
->speed_rating
!= 0)
164 if (l
== zdev
->list
.prev
)
166 /* Move zdev behind l */
167 list_move(&zdev
->list
, l
);
171 * __zcrypt_decrease_preference(): Decrease preference of a crypto device.
172 * @zdev: Pointer to a crypto device.
174 * Move the device towards the tail of the device list.
175 * Need to be called while holding the zcrypt device list lock.
176 * Note: cards with speed_rating of 0 are kept at the end of the list.
178 static void __zcrypt_decrease_preference(struct zcrypt_device
*zdev
)
180 struct zcrypt_device
*tmp
;
183 if (zdev
->speed_rating
== 0)
185 for (l
= zdev
->list
.next
; l
!= &zcrypt_device_list
; l
= l
->next
) {
186 tmp
= list_entry(l
, struct zcrypt_device
, list
);
187 if ((tmp
->request_count
+ 1) * tmp
->speed_rating
>
188 (zdev
->request_count
+ 1) * zdev
->speed_rating
||
189 tmp
->speed_rating
== 0)
192 if (l
== zdev
->list
.next
)
194 /* Move zdev before l */
195 list_move_tail(&zdev
->list
, l
);
198 static void zcrypt_device_release(struct kref
*kref
)
200 struct zcrypt_device
*zdev
=
201 container_of(kref
, struct zcrypt_device
, refcount
);
202 zcrypt_device_free(zdev
);
205 void zcrypt_device_get(struct zcrypt_device
*zdev
)
207 kref_get(&zdev
->refcount
);
209 EXPORT_SYMBOL(zcrypt_device_get
);
211 int zcrypt_device_put(struct zcrypt_device
*zdev
)
213 return kref_put(&zdev
->refcount
, zcrypt_device_release
);
215 EXPORT_SYMBOL(zcrypt_device_put
);
217 struct zcrypt_device
*zcrypt_device_alloc(size_t max_response_size
)
219 struct zcrypt_device
*zdev
;
221 zdev
= kzalloc(sizeof(struct zcrypt_device
), GFP_KERNEL
);
224 zdev
->reply
.message
= kmalloc(max_response_size
, GFP_KERNEL
);
225 if (!zdev
->reply
.message
)
227 zdev
->reply
.length
= max_response_size
;
228 spin_lock_init(&zdev
->lock
);
229 INIT_LIST_HEAD(&zdev
->list
);
230 zdev
->dbf_area
= zcrypt_dbf_devices
;
237 EXPORT_SYMBOL(zcrypt_device_alloc
);
239 void zcrypt_device_free(struct zcrypt_device
*zdev
)
241 kfree(zdev
->reply
.message
);
244 EXPORT_SYMBOL(zcrypt_device_free
);
247 * zcrypt_device_register() - Register a crypto device.
248 * @zdev: Pointer to a crypto device
250 * Register a crypto device. Returns 0 if successful.
252 int zcrypt_device_register(struct zcrypt_device
*zdev
)
258 rc
= sysfs_create_group(&zdev
->ap_dev
->device
.kobj
,
259 &zcrypt_device_attr_group
);
262 get_device(&zdev
->ap_dev
->device
);
263 kref_init(&zdev
->refcount
);
264 spin_lock_bh(&zcrypt_device_lock
);
265 zdev
->online
= 1; /* New devices are online by default. */
266 ZCRYPT_DBF_DEV(DBF_INFO
, zdev
, "dev%04xo%dreg", zdev
->ap_dev
->qid
,
268 list_add_tail(&zdev
->list
, &zcrypt_device_list
);
269 __zcrypt_increase_preference(zdev
);
270 zcrypt_device_count
++;
271 spin_unlock_bh(&zcrypt_device_lock
);
272 if (zdev
->ops
->rng
) {
273 rc
= zcrypt_rng_device_add();
280 spin_lock_bh(&zcrypt_device_lock
);
281 zcrypt_device_count
--;
282 list_del_init(&zdev
->list
);
283 spin_unlock_bh(&zcrypt_device_lock
);
284 sysfs_remove_group(&zdev
->ap_dev
->device
.kobj
,
285 &zcrypt_device_attr_group
);
286 put_device(&zdev
->ap_dev
->device
);
287 zcrypt_device_put(zdev
);
291 EXPORT_SYMBOL(zcrypt_device_register
);
294 * zcrypt_device_unregister(): Unregister a crypto device.
295 * @zdev: Pointer to crypto device
297 * Unregister a crypto device.
299 void zcrypt_device_unregister(struct zcrypt_device
*zdev
)
302 zcrypt_rng_device_remove();
303 spin_lock_bh(&zcrypt_device_lock
);
304 zcrypt_device_count
--;
305 list_del_init(&zdev
->list
);
306 spin_unlock_bh(&zcrypt_device_lock
);
307 sysfs_remove_group(&zdev
->ap_dev
->device
.kobj
,
308 &zcrypt_device_attr_group
);
309 put_device(&zdev
->ap_dev
->device
);
310 zcrypt_device_put(zdev
);
312 EXPORT_SYMBOL(zcrypt_device_unregister
);
314 void zcrypt_msgtype_register(struct zcrypt_ops
*zops
)
317 spin_lock_bh(&zcrypt_ops_list_lock
);
318 list_add_tail(&zops
->list
, &zcrypt_ops_list
);
319 spin_unlock_bh(&zcrypt_ops_list_lock
);
322 EXPORT_SYMBOL(zcrypt_msgtype_register
);
324 void zcrypt_msgtype_unregister(struct zcrypt_ops
*zops
)
326 spin_lock_bh(&zcrypt_ops_list_lock
);
327 list_del_init(&zops
->list
);
328 spin_unlock_bh(&zcrypt_ops_list_lock
);
330 EXPORT_SYMBOL(zcrypt_msgtype_unregister
);
333 struct zcrypt_ops
*__ops_lookup(unsigned char *name
, int variant
)
335 struct zcrypt_ops
*zops
;
338 spin_lock_bh(&zcrypt_ops_list_lock
);
339 list_for_each_entry(zops
, &zcrypt_ops_list
, list
) {
340 if ((zops
->variant
== variant
) &&
341 (!strncmp(zops
->owner
->name
, name
, MODULE_NAME_LEN
))) {
346 if (!found
|| !try_module_get(zops
->owner
))
349 spin_unlock_bh(&zcrypt_ops_list_lock
);
354 struct zcrypt_ops
*zcrypt_msgtype_request(unsigned char *name
, int variant
)
356 struct zcrypt_ops
*zops
= NULL
;
358 zops
= __ops_lookup(name
, variant
);
360 request_module("%s", name
);
361 zops
= __ops_lookup(name
, variant
);
365 EXPORT_SYMBOL(zcrypt_msgtype_request
);
367 void zcrypt_msgtype_release(struct zcrypt_ops
*zops
)
370 module_put(zops
->owner
);
372 EXPORT_SYMBOL(zcrypt_msgtype_release
);
375 * zcrypt_read (): Not supported beyond zcrypt 1.3.1.
377 * This function is not supported beyond zcrypt 1.3.1.
379 static ssize_t
zcrypt_read(struct file
*filp
, char __user
*buf
,
380 size_t count
, loff_t
*f_pos
)
386 * zcrypt_write(): Not allowed.
388 * Write is is not allowed
390 static ssize_t
zcrypt_write(struct file
*filp
, const char __user
*buf
,
391 size_t count
, loff_t
*f_pos
)
397 * zcrypt_open(): Count number of users.
399 * Device open function to count number of users.
401 static int zcrypt_open(struct inode
*inode
, struct file
*filp
)
403 atomic_inc(&zcrypt_open_count
);
404 return nonseekable_open(inode
, filp
);
408 * zcrypt_release(): Count number of users.
410 * Device close function to count number of users.
412 static int zcrypt_release(struct inode
*inode
, struct file
*filp
)
414 atomic_dec(&zcrypt_open_count
);
421 static long zcrypt_rsa_modexpo(struct ica_rsa_modexpo
*mex
)
423 struct zcrypt_device
*zdev
;
426 if (mex
->outputdatalength
< mex
->inputdatalength
)
429 * As long as outputdatalength is big enough, we can set the
430 * outputdatalength equal to the inputdatalength, since that is the
431 * number of bytes we will copy in any case
433 mex
->outputdatalength
= mex
->inputdatalength
;
435 spin_lock_bh(&zcrypt_device_lock
);
436 list_for_each_entry(zdev
, &zcrypt_device_list
, list
) {
438 !zdev
->ops
->rsa_modexpo
||
439 zdev
->min_mod_size
> mex
->inputdatalength
||
440 zdev
->max_mod_size
< mex
->inputdatalength
)
442 zcrypt_device_get(zdev
);
443 get_device(&zdev
->ap_dev
->device
);
444 zdev
->request_count
++;
445 __zcrypt_decrease_preference(zdev
);
446 if (try_module_get(zdev
->ap_dev
->drv
->driver
.owner
)) {
447 spin_unlock_bh(&zcrypt_device_lock
);
448 rc
= zdev
->ops
->rsa_modexpo(zdev
, mex
);
449 spin_lock_bh(&zcrypt_device_lock
);
450 module_put(zdev
->ap_dev
->drv
->driver
.owner
);
454 zdev
->request_count
--;
455 __zcrypt_increase_preference(zdev
);
456 put_device(&zdev
->ap_dev
->device
);
457 zcrypt_device_put(zdev
);
458 spin_unlock_bh(&zcrypt_device_lock
);
461 spin_unlock_bh(&zcrypt_device_lock
);
465 static long zcrypt_rsa_crt(struct ica_rsa_modexpo_crt
*crt
)
467 struct zcrypt_device
*zdev
;
468 unsigned long long z1
, z2
, z3
;
471 if (crt
->outputdatalength
< crt
->inputdatalength
||
472 (crt
->inputdatalength
& 1))
475 * As long as outputdatalength is big enough, we can set the
476 * outputdatalength equal to the inputdatalength, since that is the
477 * number of bytes we will copy in any case
479 crt
->outputdatalength
= crt
->inputdatalength
;
483 spin_lock_bh(&zcrypt_device_lock
);
484 list_for_each_entry(zdev
, &zcrypt_device_list
, list
) {
486 !zdev
->ops
->rsa_modexpo_crt
||
487 zdev
->min_mod_size
> crt
->inputdatalength
||
488 zdev
->max_mod_size
< crt
->inputdatalength
)
490 if (zdev
->short_crt
&& crt
->inputdatalength
> 240) {
492 * Check inputdata for leading zeros for cards
493 * that can't handle np_prime, bp_key, or
494 * u_mult_inv > 128 bytes.
498 spin_unlock_bh(&zcrypt_device_lock
);
499 /* len is max 256 / 2 - 120 = 8
500 * For bigger device just assume len of leading
501 * 0s is 8 as stated in the requirements for
502 * ica_rsa_modexpo_crt struct in zcrypt.h.
504 if (crt
->inputdatalength
<= 256)
505 len
= crt
->inputdatalength
/ 2 - 120;
508 if (len
> sizeof(z1
))
511 if (copy_from_user(&z1
, crt
->np_prime
, len
) ||
512 copy_from_user(&z2
, crt
->bp_key
, len
) ||
513 copy_from_user(&z3
, crt
->u_mult_inv
, len
))
518 * We have to restart device lookup -
519 * the device list may have changed by now.
523 if (z1
!= 0ULL || z2
!= 0ULL || z3
!= 0ULL)
524 /* The device can't handle this request. */
527 zcrypt_device_get(zdev
);
528 get_device(&zdev
->ap_dev
->device
);
529 zdev
->request_count
++;
530 __zcrypt_decrease_preference(zdev
);
531 if (try_module_get(zdev
->ap_dev
->drv
->driver
.owner
)) {
532 spin_unlock_bh(&zcrypt_device_lock
);
533 rc
= zdev
->ops
->rsa_modexpo_crt(zdev
, crt
);
534 spin_lock_bh(&zcrypt_device_lock
);
535 module_put(zdev
->ap_dev
->drv
->driver
.owner
);
539 zdev
->request_count
--;
540 __zcrypt_increase_preference(zdev
);
541 put_device(&zdev
->ap_dev
->device
);
542 zcrypt_device_put(zdev
);
543 spin_unlock_bh(&zcrypt_device_lock
);
546 spin_unlock_bh(&zcrypt_device_lock
);
550 static long zcrypt_send_cprb(struct ica_xcRB
*xcRB
)
552 struct zcrypt_device
*zdev
;
555 spin_lock_bh(&zcrypt_device_lock
);
556 list_for_each_entry(zdev
, &zcrypt_device_list
, list
) {
557 if (!zdev
->online
|| !zdev
->ops
->send_cprb
||
558 (zdev
->ops
->variant
== MSGTYPE06_VARIANT_EP11
) ||
559 (xcRB
->user_defined
!= AUTOSELECT
&&
560 AP_QID_DEVICE(zdev
->ap_dev
->qid
) != xcRB
->user_defined
))
562 zcrypt_device_get(zdev
);
563 get_device(&zdev
->ap_dev
->device
);
564 zdev
->request_count
++;
565 __zcrypt_decrease_preference(zdev
);
566 if (try_module_get(zdev
->ap_dev
->drv
->driver
.owner
)) {
567 spin_unlock_bh(&zcrypt_device_lock
);
568 rc
= zdev
->ops
->send_cprb(zdev
, xcRB
);
569 spin_lock_bh(&zcrypt_device_lock
);
570 module_put(zdev
->ap_dev
->drv
->driver
.owner
);
574 zdev
->request_count
--;
575 __zcrypt_increase_preference(zdev
);
576 put_device(&zdev
->ap_dev
->device
);
577 zcrypt_device_put(zdev
);
578 spin_unlock_bh(&zcrypt_device_lock
);
581 spin_unlock_bh(&zcrypt_device_lock
);
585 struct ep11_target_dev_list
{
586 unsigned short targets_num
;
587 struct ep11_target_dev
*targets
;
590 static bool is_desired_ep11dev(unsigned int dev_qid
,
591 struct ep11_target_dev_list dev_list
)
595 for (n
= 0; n
< dev_list
.targets_num
; n
++, dev_list
.targets
++) {
596 if ((AP_QID_DEVICE(dev_qid
) == dev_list
.targets
->ap_id
) &&
597 (AP_QID_QUEUE(dev_qid
) == dev_list
.targets
->dom_id
)) {
604 static long zcrypt_send_ep11_cprb(struct ep11_urb
*xcrb
)
606 struct zcrypt_device
*zdev
;
607 bool autoselect
= false;
609 struct ep11_target_dev_list ep11_dev_list
= {
614 ep11_dev_list
.targets_num
= (unsigned short) xcrb
->targets_num
;
616 /* empty list indicates autoselect (all available targets) */
617 if (ep11_dev_list
.targets_num
== 0)
620 ep11_dev_list
.targets
= kcalloc((unsigned short)
622 sizeof(struct ep11_target_dev
),
624 if (!ep11_dev_list
.targets
)
627 if (copy_from_user(ep11_dev_list
.targets
,
628 (struct ep11_target_dev __force __user
*)
629 xcrb
->targets
, xcrb
->targets_num
*
630 sizeof(struct ep11_target_dev
)))
634 spin_lock_bh(&zcrypt_device_lock
);
635 list_for_each_entry(zdev
, &zcrypt_device_list
, list
) {
636 /* check if device is eligible */
638 zdev
->ops
->variant
!= MSGTYPE06_VARIANT_EP11
)
641 /* check if device is selected as valid target */
642 if (!is_desired_ep11dev(zdev
->ap_dev
->qid
, ep11_dev_list
) &&
646 zcrypt_device_get(zdev
);
647 get_device(&zdev
->ap_dev
->device
);
648 zdev
->request_count
++;
649 __zcrypt_decrease_preference(zdev
);
650 if (try_module_get(zdev
->ap_dev
->drv
->driver
.owner
)) {
651 spin_unlock_bh(&zcrypt_device_lock
);
652 rc
= zdev
->ops
->send_ep11_cprb(zdev
, xcrb
);
653 spin_lock_bh(&zcrypt_device_lock
);
654 module_put(zdev
->ap_dev
->drv
->driver
.owner
);
658 zdev
->request_count
--;
659 __zcrypt_increase_preference(zdev
);
660 put_device(&zdev
->ap_dev
->device
);
661 zcrypt_device_put(zdev
);
662 spin_unlock_bh(&zcrypt_device_lock
);
665 spin_unlock_bh(&zcrypt_device_lock
);
669 static long zcrypt_rng(char *buffer
)
671 struct zcrypt_device
*zdev
;
674 spin_lock_bh(&zcrypt_device_lock
);
675 list_for_each_entry(zdev
, &zcrypt_device_list
, list
) {
676 if (!zdev
->online
|| !zdev
->ops
->rng
)
678 zcrypt_device_get(zdev
);
679 get_device(&zdev
->ap_dev
->device
);
680 zdev
->request_count
++;
681 __zcrypt_decrease_preference(zdev
);
682 if (try_module_get(zdev
->ap_dev
->drv
->driver
.owner
)) {
683 spin_unlock_bh(&zcrypt_device_lock
);
684 rc
= zdev
->ops
->rng(zdev
, buffer
);
685 spin_lock_bh(&zcrypt_device_lock
);
686 module_put(zdev
->ap_dev
->drv
->driver
.owner
);
689 zdev
->request_count
--;
690 __zcrypt_increase_preference(zdev
);
691 put_device(&zdev
->ap_dev
->device
);
692 zcrypt_device_put(zdev
);
693 spin_unlock_bh(&zcrypt_device_lock
);
696 spin_unlock_bh(&zcrypt_device_lock
);
700 static void zcrypt_status_mask(char status
[AP_DEVICES
])
702 struct zcrypt_device
*zdev
;
704 memset(status
, 0, sizeof(char) * AP_DEVICES
);
705 spin_lock_bh(&zcrypt_device_lock
);
706 list_for_each_entry(zdev
, &zcrypt_device_list
, list
)
707 status
[AP_QID_DEVICE(zdev
->ap_dev
->qid
)] =
708 zdev
->online
? zdev
->user_space_type
: 0x0d;
709 spin_unlock_bh(&zcrypt_device_lock
);
712 static void zcrypt_qdepth_mask(char qdepth
[AP_DEVICES
])
714 struct zcrypt_device
*zdev
;
716 memset(qdepth
, 0, sizeof(char) * AP_DEVICES
);
717 spin_lock_bh(&zcrypt_device_lock
);
718 list_for_each_entry(zdev
, &zcrypt_device_list
, list
) {
719 spin_lock(&zdev
->ap_dev
->lock
);
720 qdepth
[AP_QID_DEVICE(zdev
->ap_dev
->qid
)] =
721 zdev
->ap_dev
->pendingq_count
+
722 zdev
->ap_dev
->requestq_count
;
723 spin_unlock(&zdev
->ap_dev
->lock
);
725 spin_unlock_bh(&zcrypt_device_lock
);
728 static void zcrypt_perdev_reqcnt(int reqcnt
[AP_DEVICES
])
730 struct zcrypt_device
*zdev
;
732 memset(reqcnt
, 0, sizeof(int) * AP_DEVICES
);
733 spin_lock_bh(&zcrypt_device_lock
);
734 list_for_each_entry(zdev
, &zcrypt_device_list
, list
) {
735 spin_lock(&zdev
->ap_dev
->lock
);
736 reqcnt
[AP_QID_DEVICE(zdev
->ap_dev
->qid
)] =
737 zdev
->ap_dev
->total_request_count
;
738 spin_unlock(&zdev
->ap_dev
->lock
);
740 spin_unlock_bh(&zcrypt_device_lock
);
743 static int zcrypt_pendingq_count(void)
745 struct zcrypt_device
*zdev
;
746 int pendingq_count
= 0;
748 spin_lock_bh(&zcrypt_device_lock
);
749 list_for_each_entry(zdev
, &zcrypt_device_list
, list
) {
750 spin_lock(&zdev
->ap_dev
->lock
);
751 pendingq_count
+= zdev
->ap_dev
->pendingq_count
;
752 spin_unlock(&zdev
->ap_dev
->lock
);
754 spin_unlock_bh(&zcrypt_device_lock
);
755 return pendingq_count
;
758 static int zcrypt_requestq_count(void)
760 struct zcrypt_device
*zdev
;
761 int requestq_count
= 0;
763 spin_lock_bh(&zcrypt_device_lock
);
764 list_for_each_entry(zdev
, &zcrypt_device_list
, list
) {
765 spin_lock(&zdev
->ap_dev
->lock
);
766 requestq_count
+= zdev
->ap_dev
->requestq_count
;
767 spin_unlock(&zdev
->ap_dev
->lock
);
769 spin_unlock_bh(&zcrypt_device_lock
);
770 return requestq_count
;
773 static int zcrypt_count_type(int type
)
775 struct zcrypt_device
*zdev
;
776 int device_count
= 0;
778 spin_lock_bh(&zcrypt_device_lock
);
779 list_for_each_entry(zdev
, &zcrypt_device_list
, list
)
780 if (zdev
->user_space_type
== type
)
782 spin_unlock_bh(&zcrypt_device_lock
);
787 * zcrypt_ica_status(): Old, depracted combi status call.
789 * Old, deprecated combi status call.
791 static long zcrypt_ica_status(struct file
*filp
, unsigned long arg
)
793 struct ica_z90_status
*pstat
;
796 pstat
= kzalloc(sizeof(*pstat
), GFP_KERNEL
);
799 pstat
->totalcount
= zcrypt_device_count
;
800 pstat
->leedslitecount
= zcrypt_count_type(ZCRYPT_PCICA
);
801 pstat
->leeds2count
= zcrypt_count_type(ZCRYPT_PCICC
);
802 pstat
->requestqWaitCount
= zcrypt_requestq_count();
803 pstat
->pendingqWaitCount
= zcrypt_pendingq_count();
804 pstat
->totalOpenCount
= atomic_read(&zcrypt_open_count
);
805 pstat
->cryptoDomain
= ap_domain_index
;
806 zcrypt_status_mask(pstat
->status
);
807 zcrypt_qdepth_mask(pstat
->qdepth
);
809 if (copy_to_user((void __user
*) arg
, pstat
, sizeof(*pstat
)))
815 static long zcrypt_unlocked_ioctl(struct file
*filp
, unsigned int cmd
,
821 case ICARSAMODEXPO
: {
822 struct ica_rsa_modexpo __user
*umex
= (void __user
*) arg
;
823 struct ica_rsa_modexpo mex
;
824 if (copy_from_user(&mex
, umex
, sizeof(mex
)))
827 rc
= zcrypt_rsa_modexpo(&mex
);
828 } while (rc
== -EAGAIN
);
829 /* on failure: retry once again after a requested rescan */
830 if ((rc
== -ENODEV
) && (zcrypt_process_rescan()))
832 rc
= zcrypt_rsa_modexpo(&mex
);
833 } while (rc
== -EAGAIN
);
836 return put_user(mex
.outputdatalength
, &umex
->outputdatalength
);
839 struct ica_rsa_modexpo_crt __user
*ucrt
= (void __user
*) arg
;
840 struct ica_rsa_modexpo_crt crt
;
841 if (copy_from_user(&crt
, ucrt
, sizeof(crt
)))
844 rc
= zcrypt_rsa_crt(&crt
);
845 } while (rc
== -EAGAIN
);
846 /* on failure: retry once again after a requested rescan */
847 if ((rc
== -ENODEV
) && (zcrypt_process_rescan()))
849 rc
= zcrypt_rsa_crt(&crt
);
850 } while (rc
== -EAGAIN
);
853 return put_user(crt
.outputdatalength
, &ucrt
->outputdatalength
);
856 struct ica_xcRB __user
*uxcRB
= (void __user
*) arg
;
857 struct ica_xcRB xcRB
;
858 if (copy_from_user(&xcRB
, uxcRB
, sizeof(xcRB
)))
861 rc
= zcrypt_send_cprb(&xcRB
);
862 } while (rc
== -EAGAIN
);
863 /* on failure: retry once again after a requested rescan */
864 if ((rc
== -ENODEV
) && (zcrypt_process_rescan()))
866 rc
= zcrypt_send_cprb(&xcRB
);
867 } while (rc
== -EAGAIN
);
868 if (copy_to_user(uxcRB
, &xcRB
, sizeof(xcRB
)))
872 case ZSENDEP11CPRB
: {
873 struct ep11_urb __user
*uxcrb
= (void __user
*)arg
;
874 struct ep11_urb xcrb
;
875 if (copy_from_user(&xcrb
, uxcrb
, sizeof(xcrb
)))
878 rc
= zcrypt_send_ep11_cprb(&xcrb
);
879 } while (rc
== -EAGAIN
);
880 /* on failure: retry once again after a requested rescan */
881 if ((rc
== -ENODEV
) && (zcrypt_process_rescan()))
883 rc
= zcrypt_send_ep11_cprb(&xcrb
);
884 } while (rc
== -EAGAIN
);
885 if (copy_to_user(uxcrb
, &xcrb
, sizeof(xcrb
)))
889 case Z90STAT_STATUS_MASK
: {
890 char status
[AP_DEVICES
];
891 zcrypt_status_mask(status
);
892 if (copy_to_user((char __user
*) arg
, status
,
893 sizeof(char) * AP_DEVICES
))
897 case Z90STAT_QDEPTH_MASK
: {
898 char qdepth
[AP_DEVICES
];
899 zcrypt_qdepth_mask(qdepth
);
900 if (copy_to_user((char __user
*) arg
, qdepth
,
901 sizeof(char) * AP_DEVICES
))
905 case Z90STAT_PERDEV_REQCNT
: {
906 int reqcnt
[AP_DEVICES
];
907 zcrypt_perdev_reqcnt(reqcnt
);
908 if (copy_to_user((int __user
*) arg
, reqcnt
,
909 sizeof(int) * AP_DEVICES
))
913 case Z90STAT_REQUESTQ_COUNT
:
914 return put_user(zcrypt_requestq_count(), (int __user
*) arg
);
915 case Z90STAT_PENDINGQ_COUNT
:
916 return put_user(zcrypt_pendingq_count(), (int __user
*) arg
);
917 case Z90STAT_TOTALOPEN_COUNT
:
918 return put_user(atomic_read(&zcrypt_open_count
),
920 case Z90STAT_DOMAIN_INDEX
:
921 return put_user(ap_domain_index
, (int __user
*) arg
);
923 * Deprecated ioctls. Don't add another device count ioctl,
924 * you can count them yourself in the user space with the
925 * output of the Z90STAT_STATUS_MASK ioctl.
928 return zcrypt_ica_status(filp
, arg
);
929 case Z90STAT_TOTALCOUNT
:
930 return put_user(zcrypt_device_count
, (int __user
*) arg
);
931 case Z90STAT_PCICACOUNT
:
932 return put_user(zcrypt_count_type(ZCRYPT_PCICA
),
934 case Z90STAT_PCICCCOUNT
:
935 return put_user(zcrypt_count_type(ZCRYPT_PCICC
),
937 case Z90STAT_PCIXCCMCL2COUNT
:
938 return put_user(zcrypt_count_type(ZCRYPT_PCIXCC_MCL2
),
940 case Z90STAT_PCIXCCMCL3COUNT
:
941 return put_user(zcrypt_count_type(ZCRYPT_PCIXCC_MCL3
),
943 case Z90STAT_PCIXCCCOUNT
:
944 return put_user(zcrypt_count_type(ZCRYPT_PCIXCC_MCL2
) +
945 zcrypt_count_type(ZCRYPT_PCIXCC_MCL3
),
947 case Z90STAT_CEX2CCOUNT
:
948 return put_user(zcrypt_count_type(ZCRYPT_CEX2C
),
950 case Z90STAT_CEX2ACOUNT
:
951 return put_user(zcrypt_count_type(ZCRYPT_CEX2A
),
954 /* unknown ioctl number */
961 * ioctl32 conversion routines
963 struct compat_ica_rsa_modexpo
{
964 compat_uptr_t inputdata
;
965 unsigned int inputdatalength
;
966 compat_uptr_t outputdata
;
967 unsigned int outputdatalength
;
969 compat_uptr_t n_modulus
;
972 static long trans_modexpo32(struct file
*filp
, unsigned int cmd
,
975 struct compat_ica_rsa_modexpo __user
*umex32
= compat_ptr(arg
);
976 struct compat_ica_rsa_modexpo mex32
;
977 struct ica_rsa_modexpo mex64
;
980 if (copy_from_user(&mex32
, umex32
, sizeof(mex32
)))
982 mex64
.inputdata
= compat_ptr(mex32
.inputdata
);
983 mex64
.inputdatalength
= mex32
.inputdatalength
;
984 mex64
.outputdata
= compat_ptr(mex32
.outputdata
);
985 mex64
.outputdatalength
= mex32
.outputdatalength
;
986 mex64
.b_key
= compat_ptr(mex32
.b_key
);
987 mex64
.n_modulus
= compat_ptr(mex32
.n_modulus
);
989 rc
= zcrypt_rsa_modexpo(&mex64
);
990 } while (rc
== -EAGAIN
);
991 /* on failure: retry once again after a requested rescan */
992 if ((rc
== -ENODEV
) && (zcrypt_process_rescan()))
994 rc
= zcrypt_rsa_modexpo(&mex64
);
995 } while (rc
== -EAGAIN
);
998 return put_user(mex64
.outputdatalength
,
999 &umex32
->outputdatalength
);
1002 struct compat_ica_rsa_modexpo_crt
{
1003 compat_uptr_t inputdata
;
1004 unsigned int inputdatalength
;
1005 compat_uptr_t outputdata
;
1006 unsigned int outputdatalength
;
1007 compat_uptr_t bp_key
;
1008 compat_uptr_t bq_key
;
1009 compat_uptr_t np_prime
;
1010 compat_uptr_t nq_prime
;
1011 compat_uptr_t u_mult_inv
;
1014 static long trans_modexpo_crt32(struct file
*filp
, unsigned int cmd
,
1017 struct compat_ica_rsa_modexpo_crt __user
*ucrt32
= compat_ptr(arg
);
1018 struct compat_ica_rsa_modexpo_crt crt32
;
1019 struct ica_rsa_modexpo_crt crt64
;
1022 if (copy_from_user(&crt32
, ucrt32
, sizeof(crt32
)))
1024 crt64
.inputdata
= compat_ptr(crt32
.inputdata
);
1025 crt64
.inputdatalength
= crt32
.inputdatalength
;
1026 crt64
.outputdata
= compat_ptr(crt32
.outputdata
);
1027 crt64
.outputdatalength
= crt32
.outputdatalength
;
1028 crt64
.bp_key
= compat_ptr(crt32
.bp_key
);
1029 crt64
.bq_key
= compat_ptr(crt32
.bq_key
);
1030 crt64
.np_prime
= compat_ptr(crt32
.np_prime
);
1031 crt64
.nq_prime
= compat_ptr(crt32
.nq_prime
);
1032 crt64
.u_mult_inv
= compat_ptr(crt32
.u_mult_inv
);
1034 rc
= zcrypt_rsa_crt(&crt64
);
1035 } while (rc
== -EAGAIN
);
1036 /* on failure: retry once again after a requested rescan */
1037 if ((rc
== -ENODEV
) && (zcrypt_process_rescan()))
1039 rc
= zcrypt_rsa_crt(&crt64
);
1040 } while (rc
== -EAGAIN
);
1043 return put_user(crt64
.outputdatalength
,
1044 &ucrt32
->outputdatalength
);
1047 struct compat_ica_xcRB
{
1048 unsigned short agent_ID
;
1049 unsigned int user_defined
;
1050 unsigned short request_ID
;
1051 unsigned int request_control_blk_length
;
1052 unsigned char padding1
[16 - sizeof (compat_uptr_t
)];
1053 compat_uptr_t request_control_blk_addr
;
1054 unsigned int request_data_length
;
1055 char padding2
[16 - sizeof (compat_uptr_t
)];
1056 compat_uptr_t request_data_address
;
1057 unsigned int reply_control_blk_length
;
1058 char padding3
[16 - sizeof (compat_uptr_t
)];
1059 compat_uptr_t reply_control_blk_addr
;
1060 unsigned int reply_data_length
;
1061 char padding4
[16 - sizeof (compat_uptr_t
)];
1062 compat_uptr_t reply_data_addr
;
1063 unsigned short priority_window
;
1064 unsigned int status
;
1065 } __attribute__((packed
));
1067 static long trans_xcRB32(struct file
*filp
, unsigned int cmd
,
1070 struct compat_ica_xcRB __user
*uxcRB32
= compat_ptr(arg
);
1071 struct compat_ica_xcRB xcRB32
;
1072 struct ica_xcRB xcRB64
;
1075 if (copy_from_user(&xcRB32
, uxcRB32
, sizeof(xcRB32
)))
1077 xcRB64
.agent_ID
= xcRB32
.agent_ID
;
1078 xcRB64
.user_defined
= xcRB32
.user_defined
;
1079 xcRB64
.request_ID
= xcRB32
.request_ID
;
1080 xcRB64
.request_control_blk_length
=
1081 xcRB32
.request_control_blk_length
;
1082 xcRB64
.request_control_blk_addr
=
1083 compat_ptr(xcRB32
.request_control_blk_addr
);
1084 xcRB64
.request_data_length
=
1085 xcRB32
.request_data_length
;
1086 xcRB64
.request_data_address
=
1087 compat_ptr(xcRB32
.request_data_address
);
1088 xcRB64
.reply_control_blk_length
=
1089 xcRB32
.reply_control_blk_length
;
1090 xcRB64
.reply_control_blk_addr
=
1091 compat_ptr(xcRB32
.reply_control_blk_addr
);
1092 xcRB64
.reply_data_length
= xcRB32
.reply_data_length
;
1093 xcRB64
.reply_data_addr
=
1094 compat_ptr(xcRB32
.reply_data_addr
);
1095 xcRB64
.priority_window
= xcRB32
.priority_window
;
1096 xcRB64
.status
= xcRB32
.status
;
1098 rc
= zcrypt_send_cprb(&xcRB64
);
1099 } while (rc
== -EAGAIN
);
1100 /* on failure: retry once again after a requested rescan */
1101 if ((rc
== -ENODEV
) && (zcrypt_process_rescan()))
1103 rc
= zcrypt_send_cprb(&xcRB64
);
1104 } while (rc
== -EAGAIN
);
1105 xcRB32
.reply_control_blk_length
= xcRB64
.reply_control_blk_length
;
1106 xcRB32
.reply_data_length
= xcRB64
.reply_data_length
;
1107 xcRB32
.status
= xcRB64
.status
;
1108 if (copy_to_user(uxcRB32
, &xcRB32
, sizeof(xcRB32
)))
1113 static long zcrypt_compat_ioctl(struct file
*filp
, unsigned int cmd
,
1116 if (cmd
== ICARSAMODEXPO
)
1117 return trans_modexpo32(filp
, cmd
, arg
);
1118 if (cmd
== ICARSACRT
)
1119 return trans_modexpo_crt32(filp
, cmd
, arg
);
1120 if (cmd
== ZSECSENDCPRB
)
1121 return trans_xcRB32(filp
, cmd
, arg
);
1122 return zcrypt_unlocked_ioctl(filp
, cmd
, arg
);
1127 * Misc device file operations.
1129 static const struct file_operations zcrypt_fops
= {
1130 .owner
= THIS_MODULE
,
1131 .read
= zcrypt_read
,
1132 .write
= zcrypt_write
,
1133 .unlocked_ioctl
= zcrypt_unlocked_ioctl
,
1134 #ifdef CONFIG_COMPAT
1135 .compat_ioctl
= zcrypt_compat_ioctl
,
1137 .open
= zcrypt_open
,
1138 .release
= zcrypt_release
,
1139 .llseek
= no_llseek
,
1145 static struct miscdevice zcrypt_misc_device
= {
1146 .minor
= MISC_DYNAMIC_MINOR
,
1148 .fops
= &zcrypt_fops
,
1152 * Deprecated /proc entry support.
1154 static struct proc_dir_entry
*zcrypt_entry
;
1156 static void sprintcl(struct seq_file
*m
, unsigned char *addr
, unsigned int len
)
1160 for (i
= 0; i
< len
; i
++)
1161 seq_printf(m
, "%01x", (unsigned int) addr
[i
]);
1165 static void sprintrw(struct seq_file
*m
, unsigned char *addr
, unsigned int len
)
1171 for (c
= 0; c
< (len
/ 16); c
++) {
1172 sprintcl(m
, addr
+inl
, 16);
1177 sprintcl(m
, addr
+inl
, cx
);
1183 static void sprinthx(unsigned char *title
, struct seq_file
*m
,
1184 unsigned char *addr
, unsigned int len
)
1188 seq_printf(m
, "\n%s\n", title
);
1190 for (r
= 0; r
< (len
/ 64); r
++) {
1191 sprintrw(m
, addr
+inl
, 64);
1196 sprintrw(m
, addr
+inl
, rx
);
1202 static void sprinthx4(unsigned char *title
, struct seq_file
*m
,
1203 unsigned int *array
, unsigned int len
)
1207 seq_printf(m
, "\n%s\n", title
);
1208 for (r
= 0; r
< len
; r
++) {
1211 seq_printf(m
, "%08X ", array
[r
]);
1218 static int zcrypt_proc_show(struct seq_file
*m
, void *v
)
1220 char workarea
[sizeof(int) * AP_DEVICES
];
1222 seq_printf(m
, "\nzcrypt version: %d.%d.%d\n",
1223 ZCRYPT_VERSION
, ZCRYPT_RELEASE
, ZCRYPT_VARIANT
);
1224 seq_printf(m
, "Cryptographic domain: %d\n", ap_domain_index
);
1225 seq_printf(m
, "Total device count: %d\n", zcrypt_device_count
);
1226 seq_printf(m
, "PCICA count: %d\n", zcrypt_count_type(ZCRYPT_PCICA
));
1227 seq_printf(m
, "PCICC count: %d\n", zcrypt_count_type(ZCRYPT_PCICC
));
1228 seq_printf(m
, "PCIXCC MCL2 count: %d\n",
1229 zcrypt_count_type(ZCRYPT_PCIXCC_MCL2
));
1230 seq_printf(m
, "PCIXCC MCL3 count: %d\n",
1231 zcrypt_count_type(ZCRYPT_PCIXCC_MCL3
));
1232 seq_printf(m
, "CEX2C count: %d\n", zcrypt_count_type(ZCRYPT_CEX2C
));
1233 seq_printf(m
, "CEX2A count: %d\n", zcrypt_count_type(ZCRYPT_CEX2A
));
1234 seq_printf(m
, "CEX3C count: %d\n", zcrypt_count_type(ZCRYPT_CEX3C
));
1235 seq_printf(m
, "CEX3A count: %d\n", zcrypt_count_type(ZCRYPT_CEX3A
));
1236 seq_printf(m
, "requestq count: %d\n", zcrypt_requestq_count());
1237 seq_printf(m
, "pendingq count: %d\n", zcrypt_pendingq_count());
1238 seq_printf(m
, "Total open handles: %d\n\n",
1239 atomic_read(&zcrypt_open_count
));
1240 zcrypt_status_mask(workarea
);
1241 sprinthx("Online devices: 1=PCICA 2=PCICC 3=PCIXCC(MCL2) "
1242 "4=PCIXCC(MCL3) 5=CEX2C 6=CEX2A 7=CEX3C 8=CEX3A",
1243 m
, workarea
, AP_DEVICES
);
1244 zcrypt_qdepth_mask(workarea
);
1245 sprinthx("Waiting work element counts", m
, workarea
, AP_DEVICES
);
1246 zcrypt_perdev_reqcnt((int *) workarea
);
1247 sprinthx4("Per-device successfully completed request counts",
1248 m
, (unsigned int *) workarea
, AP_DEVICES
);
1252 static int zcrypt_proc_open(struct inode
*inode
, struct file
*file
)
1254 return single_open(file
, zcrypt_proc_show
, NULL
);
1257 static void zcrypt_disable_card(int index
)
1259 struct zcrypt_device
*zdev
;
1261 spin_lock_bh(&zcrypt_device_lock
);
1262 list_for_each_entry(zdev
, &zcrypt_device_list
, list
)
1263 if (AP_QID_DEVICE(zdev
->ap_dev
->qid
) == index
) {
1265 ap_flush_queue(zdev
->ap_dev
);
1268 spin_unlock_bh(&zcrypt_device_lock
);
1271 static void zcrypt_enable_card(int index
)
1273 struct zcrypt_device
*zdev
;
1275 spin_lock_bh(&zcrypt_device_lock
);
1276 list_for_each_entry(zdev
, &zcrypt_device_list
, list
)
1277 if (AP_QID_DEVICE(zdev
->ap_dev
->qid
) == index
) {
1281 spin_unlock_bh(&zcrypt_device_lock
);
1284 static ssize_t
zcrypt_proc_write(struct file
*file
, const char __user
*buffer
,
1285 size_t count
, loff_t
*pos
)
1287 unsigned char *lbuf
, *ptr
;
1294 #define LBUFSIZE 1200UL
1295 lbuf
= kmalloc(LBUFSIZE
, GFP_KERNEL
);
1299 local_count
= min(LBUFSIZE
- 1, count
);
1300 if (copy_from_user(lbuf
, buffer
, local_count
) != 0) {
1304 lbuf
[local_count
] = '\0';
1306 ptr
= strstr(lbuf
, "Online devices");
1309 ptr
= strstr(ptr
, "\n");
1314 if (strstr(ptr
, "Waiting work element counts") == NULL
)
1317 for (j
= 0; j
< 64 && *ptr
; ptr
++) {
1319 * '0' for no device, '1' for PCICA, '2' for PCICC,
1320 * '3' for PCIXCC_MCL2, '4' for PCIXCC_MCL3,
1321 * '5' for CEX2C and '6' for CEX2A'
1322 * '7' for CEX3C and '8' for CEX3A
1324 if (*ptr
>= '0' && *ptr
<= '8')
1326 else if (*ptr
== 'd' || *ptr
== 'D')
1327 zcrypt_disable_card(j
++);
1328 else if (*ptr
== 'e' || *ptr
== 'E')
1329 zcrypt_enable_card(j
++);
1330 else if (*ptr
!= ' ' && *ptr
!= '\t')
1338 static const struct file_operations zcrypt_proc_fops
= {
1339 .owner
= THIS_MODULE
,
1340 .open
= zcrypt_proc_open
,
1342 .llseek
= seq_lseek
,
1343 .release
= single_release
,
1344 .write
= zcrypt_proc_write
,
1347 static int zcrypt_rng_device_count
;
1348 static u32
*zcrypt_rng_buffer
;
1349 static int zcrypt_rng_buffer_index
;
1350 static DEFINE_MUTEX(zcrypt_rng_mutex
);
1352 static int zcrypt_rng_data_read(struct hwrng
*rng
, u32
*data
)
1357 * We don't need locking here because the RNG API guarantees serialized
1358 * read method calls.
1360 if (zcrypt_rng_buffer_index
== 0) {
1361 rc
= zcrypt_rng((char *) zcrypt_rng_buffer
);
1362 /* on failure: retry once again after a requested rescan */
1363 if ((rc
== -ENODEV
) && (zcrypt_process_rescan()))
1364 rc
= zcrypt_rng((char *) zcrypt_rng_buffer
);
1367 zcrypt_rng_buffer_index
= rc
/ sizeof *data
;
1369 *data
= zcrypt_rng_buffer
[--zcrypt_rng_buffer_index
];
1370 return sizeof *data
;
1373 static struct hwrng zcrypt_rng_dev
= {
1375 .data_read
= zcrypt_rng_data_read
,
1378 static int zcrypt_rng_device_add(void)
1382 mutex_lock(&zcrypt_rng_mutex
);
1383 if (zcrypt_rng_device_count
== 0) {
1384 zcrypt_rng_buffer
= (u32
*) get_zeroed_page(GFP_KERNEL
);
1385 if (!zcrypt_rng_buffer
) {
1389 zcrypt_rng_buffer_index
= 0;
1390 rc
= hwrng_register(&zcrypt_rng_dev
);
1393 zcrypt_rng_device_count
= 1;
1395 zcrypt_rng_device_count
++;
1396 mutex_unlock(&zcrypt_rng_mutex
);
1400 free_page((unsigned long) zcrypt_rng_buffer
);
1402 mutex_unlock(&zcrypt_rng_mutex
);
1406 static void zcrypt_rng_device_remove(void)
1408 mutex_lock(&zcrypt_rng_mutex
);
1409 zcrypt_rng_device_count
--;
1410 if (zcrypt_rng_device_count
== 0) {
1411 hwrng_unregister(&zcrypt_rng_dev
);
1412 free_page((unsigned long) zcrypt_rng_buffer
);
1414 mutex_unlock(&zcrypt_rng_mutex
);
1417 int __init
zcrypt_debug_init(void)
1419 debugfs_root
= debugfs_create_dir("zcrypt", NULL
);
1421 zcrypt_dbf_common
= debug_register("zcrypt_common", 1, 1, 16);
1422 debug_register_view(zcrypt_dbf_common
, &debug_hex_ascii_view
);
1423 debug_set_level(zcrypt_dbf_common
, DBF_ERR
);
1425 zcrypt_dbf_devices
= debug_register("zcrypt_devices", 1, 1, 16);
1426 debug_register_view(zcrypt_dbf_devices
, &debug_hex_ascii_view
);
1427 debug_set_level(zcrypt_dbf_devices
, DBF_ERR
);
1432 void zcrypt_debug_exit(void)
1434 debugfs_remove(debugfs_root
);
1435 if (zcrypt_dbf_common
)
1436 debug_unregister(zcrypt_dbf_common
);
1437 if (zcrypt_dbf_devices
)
1438 debug_unregister(zcrypt_dbf_devices
);
1442 * zcrypt_api_init(): Module initialization.
1444 * The module initialization code.
1446 int __init
zcrypt_api_init(void)
1450 rc
= zcrypt_debug_init();
1454 atomic_set(&zcrypt_rescan_req
, 0);
1456 /* Register the request sprayer. */
1457 rc
= misc_register(&zcrypt_misc_device
);
1461 /* Set up the proc file system */
1462 zcrypt_entry
= proc_create("driver/z90crypt", 0644, NULL
, &zcrypt_proc_fops
);
1463 if (!zcrypt_entry
) {
1471 misc_deregister(&zcrypt_misc_device
);
1477 * zcrypt_api_exit(): Module termination.
1479 * The module termination code.
1481 void zcrypt_api_exit(void)
1483 remove_proc_entry("driver/z90crypt", NULL
);
1484 misc_deregister(&zcrypt_misc_device
);
1485 zcrypt_debug_exit();
1488 module_init(zcrypt_api_init
);
1489 module_exit(zcrypt_api_exit
);