2 * Copyright (C) 2011 Instituto Nokia de Tecnologia
5 * Lauro Ramos Venancio <lauro.venancio@openbossa.org>
6 * Aloisio Almeida Jr <aloisio.almeida@openbossa.org>
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; either version 2 of the License, or
11 * (at your option) any later version.
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
18 * You should have received a copy of the GNU General Public License
19 * along with this program; if not, write to the
20 * Free Software Foundation, Inc.,
21 * 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
24 #define pr_fmt(fmt) KBUILD_MODNAME ": %s: " fmt, __func__
26 #include <linux/init.h>
27 #include <linux/kernel.h>
28 #include <linux/module.h>
29 #include <linux/slab.h>
30 #include <linux/rfkill.h>
31 #include <linux/nfc.h>
33 #include <net/genetlink.h>
39 #define NFC_CHECK_PRES_FREQ_MS 2000
41 int nfc_devlist_generation
;
42 DEFINE_MUTEX(nfc_devlist_mutex
);
44 /* NFC device ID bitmap */
45 static DEFINE_IDA(nfc_index_ida
);
47 int nfc_fw_download(struct nfc_dev
*dev
, const char *firmware_name
)
51 pr_debug("%s do firmware %s\n", dev_name(&dev
->dev
), firmware_name
);
53 device_lock(&dev
->dev
);
55 if (!device_is_registered(&dev
->dev
)) {
65 if (!dev
->ops
->fw_download
) {
70 dev
->fw_download_in_progress
= true;
71 rc
= dev
->ops
->fw_download(dev
, firmware_name
);
73 dev
->fw_download_in_progress
= false;
76 device_unlock(&dev
->dev
);
81 * nfc_fw_download_done - inform that a firmware download was completed
83 * @dev: The nfc device to which firmware was downloaded
84 * @firmware_name: The firmware filename
85 * @result: The positive value of a standard errno value
87 int nfc_fw_download_done(struct nfc_dev
*dev
, const char *firmware_name
,
90 dev
->fw_download_in_progress
= false;
92 return nfc_genl_fw_download_done(dev
, firmware_name
, result
);
94 EXPORT_SYMBOL(nfc_fw_download_done
);
97 * nfc_dev_up - turn on the NFC device
99 * @dev: The nfc device to be turned on
101 * The device remains up until the nfc_dev_down function is called.
103 int nfc_dev_up(struct nfc_dev
*dev
)
107 pr_debug("dev_name=%s\n", dev_name(&dev
->dev
));
109 device_lock(&dev
->dev
);
111 if (dev
->rfkill
&& rfkill_blocked(dev
->rfkill
)) {
116 if (!device_is_registered(&dev
->dev
)) {
121 if (dev
->fw_download_in_progress
) {
131 if (dev
->ops
->dev_up
)
132 rc
= dev
->ops
->dev_up(dev
);
137 /* We have to enable the device before discovering SEs */
138 if (dev
->ops
->discover_se
) {
139 rc
= dev
->ops
->discover_se(dev
);
141 pr_warn("SE discovery failed\n");
145 device_unlock(&dev
->dev
);
150 * nfc_dev_down - turn off the NFC device
152 * @dev: The nfc device to be turned off
154 int nfc_dev_down(struct nfc_dev
*dev
)
158 pr_debug("dev_name=%s\n", dev_name(&dev
->dev
));
160 device_lock(&dev
->dev
);
162 if (!device_is_registered(&dev
->dev
)) {
172 if (dev
->polling
|| dev
->active_target
) {
177 if (dev
->ops
->dev_down
)
178 dev
->ops
->dev_down(dev
);
183 device_unlock(&dev
->dev
);
187 static int nfc_rfkill_set_block(void *data
, bool blocked
)
189 struct nfc_dev
*dev
= data
;
191 pr_debug("%s blocked %d", dev_name(&dev
->dev
), blocked
);
201 static const struct rfkill_ops nfc_rfkill_ops
= {
202 .set_block
= nfc_rfkill_set_block
,
206 * nfc_start_poll - start polling for nfc targets
208 * @dev: The nfc device that must start polling
209 * @protocols: bitset of nfc protocols that must be used for polling
211 * The device remains polling for targets until a target is found or
212 * the nfc_stop_poll function is called.
214 int nfc_start_poll(struct nfc_dev
*dev
, u32 im_protocols
, u32 tm_protocols
)
218 pr_debug("dev_name %s initiator protocols 0x%x target protocols 0x%x\n",
219 dev_name(&dev
->dev
), im_protocols
, tm_protocols
);
221 if (!im_protocols
&& !tm_protocols
)
224 device_lock(&dev
->dev
);
226 if (!device_is_registered(&dev
->dev
)) {
241 rc
= dev
->ops
->start_poll(dev
, im_protocols
, tm_protocols
);
244 dev
->rf_mode
= NFC_RF_NONE
;
248 device_unlock(&dev
->dev
);
253 * nfc_stop_poll - stop polling for nfc targets
255 * @dev: The nfc device that must stop polling
257 int nfc_stop_poll(struct nfc_dev
*dev
)
261 pr_debug("dev_name=%s\n", dev_name(&dev
->dev
));
263 device_lock(&dev
->dev
);
265 if (!device_is_registered(&dev
->dev
)) {
275 dev
->ops
->stop_poll(dev
);
276 dev
->polling
= false;
277 dev
->rf_mode
= NFC_RF_NONE
;
280 device_unlock(&dev
->dev
);
284 static struct nfc_target
*nfc_find_target(struct nfc_dev
*dev
, u32 target_idx
)
288 if (dev
->n_targets
== 0)
291 for (i
= 0; i
< dev
->n_targets
; i
++) {
292 if (dev
->targets
[i
].idx
== target_idx
)
293 return &dev
->targets
[i
];
299 int nfc_dep_link_up(struct nfc_dev
*dev
, int target_index
, u8 comm_mode
)
304 struct nfc_target
*target
;
306 pr_debug("dev_name=%s comm %d\n", dev_name(&dev
->dev
), comm_mode
);
308 if (!dev
->ops
->dep_link_up
)
311 device_lock(&dev
->dev
);
313 if (!device_is_registered(&dev
->dev
)) {
318 if (dev
->dep_link_up
== true) {
323 gb
= nfc_llcp_general_bytes(dev
, &gb_len
);
324 if (gb_len
> NFC_MAX_GT_LEN
) {
329 target
= nfc_find_target(dev
, target_index
);
330 if (target
== NULL
) {
335 rc
= dev
->ops
->dep_link_up(dev
, target
, comm_mode
, gb
, gb_len
);
337 dev
->active_target
= target
;
338 dev
->rf_mode
= NFC_RF_INITIATOR
;
342 device_unlock(&dev
->dev
);
346 int nfc_dep_link_down(struct nfc_dev
*dev
)
350 pr_debug("dev_name=%s\n", dev_name(&dev
->dev
));
352 if (!dev
->ops
->dep_link_down
)
355 device_lock(&dev
->dev
);
357 if (!device_is_registered(&dev
->dev
)) {
362 if (dev
->dep_link_up
== false) {
367 rc
= dev
->ops
->dep_link_down(dev
);
369 dev
->dep_link_up
= false;
370 dev
->active_target
= NULL
;
371 dev
->rf_mode
= NFC_RF_NONE
;
372 nfc_llcp_mac_is_down(dev
);
373 nfc_genl_dep_link_down_event(dev
);
377 device_unlock(&dev
->dev
);
382 int nfc_dep_link_is_up(struct nfc_dev
*dev
, u32 target_idx
,
383 u8 comm_mode
, u8 rf_mode
)
385 dev
->dep_link_up
= true;
387 nfc_llcp_mac_is_up(dev
, target_idx
, comm_mode
, rf_mode
);
389 return nfc_genl_dep_link_up_event(dev
, target_idx
, comm_mode
, rf_mode
);
391 EXPORT_SYMBOL(nfc_dep_link_is_up
);
394 * nfc_activate_target - prepare the target for data exchange
396 * @dev: The nfc device that found the target
397 * @target_idx: index of the target that must be activated
398 * @protocol: nfc protocol that will be used for data exchange
400 int nfc_activate_target(struct nfc_dev
*dev
, u32 target_idx
, u32 protocol
)
403 struct nfc_target
*target
;
405 pr_debug("dev_name=%s target_idx=%u protocol=%u\n",
406 dev_name(&dev
->dev
), target_idx
, protocol
);
408 device_lock(&dev
->dev
);
410 if (!device_is_registered(&dev
->dev
)) {
415 if (dev
->active_target
) {
420 target
= nfc_find_target(dev
, target_idx
);
421 if (target
== NULL
) {
426 rc
= dev
->ops
->activate_target(dev
, target
, protocol
);
428 dev
->active_target
= target
;
429 dev
->rf_mode
= NFC_RF_INITIATOR
;
431 if (dev
->ops
->check_presence
&& !dev
->shutting_down
)
432 mod_timer(&dev
->check_pres_timer
, jiffies
+
433 msecs_to_jiffies(NFC_CHECK_PRES_FREQ_MS
));
437 device_unlock(&dev
->dev
);
442 * nfc_deactivate_target - deactivate a nfc target
444 * @dev: The nfc device that found the target
445 * @target_idx: index of the target that must be deactivated
447 int nfc_deactivate_target(struct nfc_dev
*dev
, u32 target_idx
)
451 pr_debug("dev_name=%s target_idx=%u\n",
452 dev_name(&dev
->dev
), target_idx
);
454 device_lock(&dev
->dev
);
456 if (!device_is_registered(&dev
->dev
)) {
461 if (dev
->active_target
== NULL
) {
466 if (dev
->active_target
->idx
!= target_idx
) {
471 if (dev
->ops
->check_presence
)
472 del_timer_sync(&dev
->check_pres_timer
);
474 dev
->ops
->deactivate_target(dev
, dev
->active_target
);
475 dev
->active_target
= NULL
;
478 device_unlock(&dev
->dev
);
483 * nfc_data_exchange - transceive data
485 * @dev: The nfc device that found the target
486 * @target_idx: index of the target
487 * @skb: data to be sent
488 * @cb: callback called when the response is received
489 * @cb_context: parameter for the callback function
491 * The user must wait for the callback before calling this function again.
493 int nfc_data_exchange(struct nfc_dev
*dev
, u32 target_idx
, struct sk_buff
*skb
,
494 data_exchange_cb_t cb
, void *cb_context
)
498 pr_debug("dev_name=%s target_idx=%u skb->len=%u\n",
499 dev_name(&dev
->dev
), target_idx
, skb
->len
);
501 device_lock(&dev
->dev
);
503 if (!device_is_registered(&dev
->dev
)) {
509 if (dev
->rf_mode
== NFC_RF_INITIATOR
&& dev
->active_target
!= NULL
) {
510 if (dev
->active_target
->idx
!= target_idx
) {
516 if (dev
->ops
->check_presence
)
517 del_timer_sync(&dev
->check_pres_timer
);
519 rc
= dev
->ops
->im_transceive(dev
, dev
->active_target
, skb
, cb
,
522 if (!rc
&& dev
->ops
->check_presence
&& !dev
->shutting_down
)
523 mod_timer(&dev
->check_pres_timer
, jiffies
+
524 msecs_to_jiffies(NFC_CHECK_PRES_FREQ_MS
));
525 } else if (dev
->rf_mode
== NFC_RF_TARGET
&& dev
->ops
->tm_send
!= NULL
) {
526 rc
= dev
->ops
->tm_send(dev
, skb
);
535 device_unlock(&dev
->dev
);
539 static struct nfc_se
*find_se(struct nfc_dev
*dev
, u32 se_idx
)
541 struct nfc_se
*se
, *n
;
543 list_for_each_entry_safe(se
, n
, &dev
->secure_elements
, list
)
544 if (se
->idx
== se_idx
)
550 int nfc_enable_se(struct nfc_dev
*dev
, u32 se_idx
)
556 pr_debug("%s se index %d\n", dev_name(&dev
->dev
), se_idx
);
558 device_lock(&dev
->dev
);
560 if (!device_is_registered(&dev
->dev
)) {
575 if (!dev
->ops
->enable_se
|| !dev
->ops
->disable_se
) {
580 se
= find_se(dev
, se_idx
);
586 if (se
->state
== NFC_SE_ENABLED
) {
591 rc
= dev
->ops
->enable_se(dev
, se_idx
);
593 se
->state
= NFC_SE_ENABLED
;
596 device_unlock(&dev
->dev
);
600 int nfc_disable_se(struct nfc_dev
*dev
, u32 se_idx
)
606 pr_debug("%s se index %d\n", dev_name(&dev
->dev
), se_idx
);
608 device_lock(&dev
->dev
);
610 if (!device_is_registered(&dev
->dev
)) {
620 if (!dev
->ops
->enable_se
|| !dev
->ops
->disable_se
) {
625 se
= find_se(dev
, se_idx
);
631 if (se
->state
== NFC_SE_DISABLED
) {
636 rc
= dev
->ops
->disable_se(dev
, se_idx
);
638 se
->state
= NFC_SE_DISABLED
;
641 device_unlock(&dev
->dev
);
645 int nfc_set_remote_general_bytes(struct nfc_dev
*dev
, u8
*gb
, u8 gb_len
)
647 pr_debug("dev_name=%s gb_len=%d\n", dev_name(&dev
->dev
), gb_len
);
649 if (gb_len
> NFC_MAX_GT_LEN
)
652 return nfc_llcp_set_remote_gb(dev
, gb
, gb_len
);
654 EXPORT_SYMBOL(nfc_set_remote_general_bytes
);
656 u8
*nfc_get_local_general_bytes(struct nfc_dev
*dev
, size_t *gb_len
)
658 pr_debug("dev_name=%s\n", dev_name(&dev
->dev
));
660 return nfc_llcp_general_bytes(dev
, gb_len
);
662 EXPORT_SYMBOL(nfc_get_local_general_bytes
);
664 int nfc_tm_data_received(struct nfc_dev
*dev
, struct sk_buff
*skb
)
666 /* Only LLCP target mode for now */
667 if (dev
->dep_link_up
== false) {
672 return nfc_llcp_data_received(dev
, skb
);
674 EXPORT_SYMBOL(nfc_tm_data_received
);
676 int nfc_tm_activated(struct nfc_dev
*dev
, u32 protocol
, u8 comm_mode
,
677 u8
*gb
, size_t gb_len
)
681 device_lock(&dev
->dev
);
683 dev
->polling
= false;
686 rc
= nfc_set_remote_general_bytes(dev
, gb
, gb_len
);
691 dev
->rf_mode
= NFC_RF_TARGET
;
693 if (protocol
== NFC_PROTO_NFC_DEP_MASK
)
694 nfc_dep_link_is_up(dev
, 0, comm_mode
, NFC_RF_TARGET
);
696 rc
= nfc_genl_tm_activated(dev
, protocol
);
699 device_unlock(&dev
->dev
);
703 EXPORT_SYMBOL(nfc_tm_activated
);
705 int nfc_tm_deactivated(struct nfc_dev
*dev
)
707 dev
->dep_link_up
= false;
708 dev
->rf_mode
= NFC_RF_NONE
;
710 return nfc_genl_tm_deactivated(dev
);
712 EXPORT_SYMBOL(nfc_tm_deactivated
);
715 * nfc_alloc_send_skb - allocate a skb for data exchange responses
717 * @size: size to allocate
720 struct sk_buff
*nfc_alloc_send_skb(struct nfc_dev
*dev
, struct sock
*sk
,
721 unsigned int flags
, unsigned int size
,
725 unsigned int total_size
;
728 dev
->tx_headroom
+ dev
->tx_tailroom
+ NFC_HEADER_SIZE
;
730 skb
= sock_alloc_send_skb(sk
, total_size
, flags
& MSG_DONTWAIT
, err
);
732 skb_reserve(skb
, dev
->tx_headroom
+ NFC_HEADER_SIZE
);
738 * nfc_alloc_recv_skb - allocate a skb for data exchange responses
740 * @size: size to allocate
743 struct sk_buff
*nfc_alloc_recv_skb(unsigned int size
, gfp_t gfp
)
746 unsigned int total_size
;
748 total_size
= size
+ 1;
749 skb
= alloc_skb(total_size
, gfp
);
756 EXPORT_SYMBOL(nfc_alloc_recv_skb
);
759 * nfc_targets_found - inform that targets were found
761 * @dev: The nfc device that found the targets
762 * @targets: array of nfc targets found
763 * @ntargets: targets array size
765 * The device driver must call this function when one or many nfc targets
766 * are found. After calling this function, the device driver must stop
767 * polling for targets.
768 * NOTE: This function can be called with targets=NULL and n_targets=0 to
769 * notify a driver error, meaning that the polling operation cannot complete.
770 * IMPORTANT: this function must not be called from an atomic context.
771 * In addition, it must also not be called from a context that would prevent
772 * the NFC Core to call other nfc ops entry point concurrently.
774 int nfc_targets_found(struct nfc_dev
*dev
,
775 struct nfc_target
*targets
, int n_targets
)
779 pr_debug("dev_name=%s n_targets=%d\n", dev_name(&dev
->dev
), n_targets
);
781 for (i
= 0; i
< n_targets
; i
++)
782 targets
[i
].idx
= dev
->target_next_idx
++;
784 device_lock(&dev
->dev
);
786 if (dev
->polling
== false) {
787 device_unlock(&dev
->dev
);
791 dev
->polling
= false;
793 dev
->targets_generation
++;
799 dev
->targets
= kmemdup(targets
,
800 n_targets
* sizeof(struct nfc_target
),
805 device_unlock(&dev
->dev
);
810 dev
->n_targets
= n_targets
;
811 device_unlock(&dev
->dev
);
813 nfc_genl_targets_found(dev
);
817 EXPORT_SYMBOL(nfc_targets_found
);
820 * nfc_target_lost - inform that an activated target went out of field
822 * @dev: The nfc device that had the activated target in field
823 * @target_idx: the nfc index of the target
825 * The device driver must call this function when the activated target
826 * goes out of the field.
827 * IMPORTANT: this function must not be called from an atomic context.
828 * In addition, it must also not be called from a context that would prevent
829 * the NFC Core to call other nfc ops entry point concurrently.
831 int nfc_target_lost(struct nfc_dev
*dev
, u32 target_idx
)
833 struct nfc_target
*tg
;
836 pr_debug("dev_name %s n_target %d\n", dev_name(&dev
->dev
), target_idx
);
838 device_lock(&dev
->dev
);
840 for (i
= 0; i
< dev
->n_targets
; i
++) {
841 tg
= &dev
->targets
[i
];
842 if (tg
->idx
== target_idx
)
846 if (i
== dev
->n_targets
) {
847 device_unlock(&dev
->dev
);
851 dev
->targets_generation
++;
853 dev
->active_target
= NULL
;
855 if (dev
->n_targets
) {
856 memcpy(&dev
->targets
[i
], &dev
->targets
[i
+ 1],
857 (dev
->n_targets
- i
) * sizeof(struct nfc_target
));
863 device_unlock(&dev
->dev
);
865 nfc_genl_target_lost(dev
, target_idx
);
869 EXPORT_SYMBOL(nfc_target_lost
);
871 inline void nfc_driver_failure(struct nfc_dev
*dev
, int err
)
873 nfc_targets_found(dev
, NULL
, 0);
875 EXPORT_SYMBOL(nfc_driver_failure
);
877 int nfc_add_se(struct nfc_dev
*dev
, u32 se_idx
, u16 type
)
882 pr_debug("%s se index %d\n", dev_name(&dev
->dev
), se_idx
);
884 se
= find_se(dev
, se_idx
);
888 se
= kzalloc(sizeof(struct nfc_se
), GFP_KERNEL
);
894 se
->state
= NFC_SE_DISABLED
;
895 INIT_LIST_HEAD(&se
->list
);
897 list_add(&se
->list
, &dev
->secure_elements
);
899 rc
= nfc_genl_se_added(dev
, se_idx
, type
);
909 EXPORT_SYMBOL(nfc_add_se
);
911 int nfc_remove_se(struct nfc_dev
*dev
, u32 se_idx
)
913 struct nfc_se
*se
, *n
;
916 pr_debug("%s se index %d\n", dev_name(&dev
->dev
), se_idx
);
918 list_for_each_entry_safe(se
, n
, &dev
->secure_elements
, list
)
919 if (se
->idx
== se_idx
) {
920 rc
= nfc_genl_se_removed(dev
, se_idx
);
932 EXPORT_SYMBOL(nfc_remove_se
);
934 static void nfc_release(struct device
*d
)
936 struct nfc_dev
*dev
= to_nfc_dev(d
);
937 struct nfc_se
*se
, *n
;
939 pr_debug("dev_name=%s\n", dev_name(&dev
->dev
));
941 nfc_genl_data_exit(&dev
->genl_data
);
944 list_for_each_entry_safe(se
, n
, &dev
->secure_elements
, list
) {
945 nfc_genl_se_removed(dev
, se
->idx
);
953 static void nfc_check_pres_work(struct work_struct
*work
)
955 struct nfc_dev
*dev
= container_of(work
, struct nfc_dev
,
959 device_lock(&dev
->dev
);
961 if (dev
->active_target
&& timer_pending(&dev
->check_pres_timer
) == 0) {
962 rc
= dev
->ops
->check_presence(dev
, dev
->active_target
);
963 if (rc
== -EOPNOTSUPP
)
966 u32 active_target_idx
= dev
->active_target
->idx
;
967 device_unlock(&dev
->dev
);
968 nfc_target_lost(dev
, active_target_idx
);
972 if (!dev
->shutting_down
)
973 mod_timer(&dev
->check_pres_timer
, jiffies
+
974 msecs_to_jiffies(NFC_CHECK_PRES_FREQ_MS
));
978 device_unlock(&dev
->dev
);
981 static void nfc_check_pres_timeout(unsigned long data
)
983 struct nfc_dev
*dev
= (struct nfc_dev
*)data
;
985 schedule_work(&dev
->check_pres_work
);
988 struct class nfc_class
= {
990 .dev_release
= nfc_release
,
992 EXPORT_SYMBOL(nfc_class
);
994 static int match_idx(struct device
*d
, const void *data
)
996 struct nfc_dev
*dev
= to_nfc_dev(d
);
997 const unsigned int *idx
= data
;
999 return dev
->idx
== *idx
;
1002 struct nfc_dev
*nfc_get_device(unsigned int idx
)
1006 d
= class_find_device(&nfc_class
, NULL
, &idx
, match_idx
);
1010 return to_nfc_dev(d
);
1014 * nfc_allocate_device - allocate a new nfc device
1016 * @ops: device operations
1017 * @supported_protocols: NFC protocols supported by the device
1019 struct nfc_dev
*nfc_allocate_device(struct nfc_ops
*ops
,
1020 u32 supported_protocols
,
1021 int tx_headroom
, int tx_tailroom
)
1023 struct nfc_dev
*dev
;
1025 if (!ops
->start_poll
|| !ops
->stop_poll
|| !ops
->activate_target
||
1026 !ops
->deactivate_target
|| !ops
->im_transceive
)
1029 if (!supported_protocols
)
1032 dev
= kzalloc(sizeof(struct nfc_dev
), GFP_KERNEL
);
1037 dev
->supported_protocols
= supported_protocols
;
1038 dev
->tx_headroom
= tx_headroom
;
1039 dev
->tx_tailroom
= tx_tailroom
;
1040 INIT_LIST_HEAD(&dev
->secure_elements
);
1042 nfc_genl_data_init(&dev
->genl_data
);
1044 dev
->rf_mode
= NFC_RF_NONE
;
1046 /* first generation must not be 0 */
1047 dev
->targets_generation
= 1;
1049 if (ops
->check_presence
) {
1050 init_timer(&dev
->check_pres_timer
);
1051 dev
->check_pres_timer
.data
= (unsigned long)dev
;
1052 dev
->check_pres_timer
.function
= nfc_check_pres_timeout
;
1054 INIT_WORK(&dev
->check_pres_work
, nfc_check_pres_work
);
1059 EXPORT_SYMBOL(nfc_allocate_device
);
1062 * nfc_register_device - register a nfc device in the nfc subsystem
1064 * @dev: The nfc device to register
1066 int nfc_register_device(struct nfc_dev
*dev
)
1070 pr_debug("dev_name=%s\n", dev_name(&dev
->dev
));
1072 dev
->idx
= ida_simple_get(&nfc_index_ida
, 0, 0, GFP_KERNEL
);
1076 dev
->dev
.class = &nfc_class
;
1077 dev_set_name(&dev
->dev
, "nfc%d", dev
->idx
);
1078 device_initialize(&dev
->dev
);
1080 mutex_lock(&nfc_devlist_mutex
);
1081 nfc_devlist_generation
++;
1082 rc
= device_add(&dev
->dev
);
1083 mutex_unlock(&nfc_devlist_mutex
);
1088 rc
= nfc_llcp_register_device(dev
);
1090 pr_err("Could not register llcp device\n");
1092 rc
= nfc_genl_device_added(dev
);
1094 pr_debug("The userspace won't be notified that the device %s was added\n",
1095 dev_name(&dev
->dev
));
1097 dev
->rfkill
= rfkill_alloc(dev_name(&dev
->dev
), &dev
->dev
,
1098 RFKILL_TYPE_NFC
, &nfc_rfkill_ops
, dev
);
1100 if (rfkill_register(dev
->rfkill
) < 0) {
1101 rfkill_destroy(dev
->rfkill
);
1108 EXPORT_SYMBOL(nfc_register_device
);
1111 * nfc_unregister_device - unregister a nfc device in the nfc subsystem
1113 * @dev: The nfc device to unregister
1115 void nfc_unregister_device(struct nfc_dev
*dev
)
1119 pr_debug("dev_name=%s\n", dev_name(&dev
->dev
));
1124 rfkill_unregister(dev
->rfkill
);
1125 rfkill_destroy(dev
->rfkill
);
1128 if (dev
->ops
->check_presence
) {
1129 device_lock(&dev
->dev
);
1130 dev
->shutting_down
= true;
1131 device_unlock(&dev
->dev
);
1132 del_timer_sync(&dev
->check_pres_timer
);
1133 cancel_work_sync(&dev
->check_pres_work
);
1136 rc
= nfc_genl_device_removed(dev
);
1138 pr_debug("The userspace won't be notified that the device %s "
1139 "was removed\n", dev_name(&dev
->dev
));
1141 nfc_llcp_unregister_device(dev
);
1143 mutex_lock(&nfc_devlist_mutex
);
1144 nfc_devlist_generation
++;
1145 device_del(&dev
->dev
);
1146 mutex_unlock(&nfc_devlist_mutex
);
1148 ida_simple_remove(&nfc_index_ida
, id
);
1150 EXPORT_SYMBOL(nfc_unregister_device
);
1152 static int __init
nfc_init(void)
1156 pr_info("NFC Core ver %s\n", VERSION
);
1158 rc
= class_register(&nfc_class
);
1162 rc
= nfc_genl_init();
1166 /* the first generation must not be 0 */
1167 nfc_devlist_generation
= 1;
1169 rc
= rawsock_init();
1173 rc
= nfc_llcp_init();
1190 class_unregister(&nfc_class
);
1194 static void __exit
nfc_exit(void)
1200 class_unregister(&nfc_class
);
1203 subsys_initcall(nfc_init
);
1204 module_exit(nfc_exit
);
1206 MODULE_AUTHOR("Lauro Ramos Venancio <lauro.venancio@openbossa.org>");
1207 MODULE_DESCRIPTION("NFC Core ver " VERSION
);
1208 MODULE_VERSION(VERSION
);
1209 MODULE_LICENSE("GPL");
1210 MODULE_ALIAS_NETPROTO(PF_NFC
);
1211 MODULE_ALIAS_GENL_FAMILY(NFC_GENL_NAME
);