2 * HCI based Driver for STMicroelectronics NFC Chip
4 * Copyright (C) 2014 STMicroelectronics SAS. All rights reserved.
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms and conditions of the GNU General Public License,
8 * version 2, as published by the Free Software Foundation.
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, see <http://www.gnu.org/licenses/>.
19 #include <linux/module.h>
20 #include <linux/nfc.h>
21 #include <net/nfc/hci.h>
22 #include <net/nfc/llc.h>
25 #include "st21nfca_dep.h"
26 #include "st21nfca_se.h"
28 #define DRIVER_DESC "HCI NFC driver for ST21NFCA"
30 #define FULL_VERSION_LEN 3
32 /* Proprietary gates, events, commands and registers */
34 /* Commands that apply to all RF readers */
35 #define ST21NFCA_RF_READER_CMD_PRESENCE_CHECK 0x30
37 #define ST21NFCA_RF_READER_ISO15693_GATE 0x12
38 #define ST21NFCA_RF_READER_ISO15693_INVENTORY 0x01
41 * Reader gate for communication with contact-less cards using Type A
42 * protocol ISO14443-3 but not compliant with ISO14443-4
44 #define ST21NFCA_RF_READER_14443_3_A_GATE 0x15
45 #define ST21NFCA_RF_READER_14443_3_A_UID 0x02
46 #define ST21NFCA_RF_READER_14443_3_A_ATQA 0x03
47 #define ST21NFCA_RF_READER_14443_3_A_SAK 0x04
49 #define ST21NFCA_RF_READER_F_DATARATE 0x01
50 #define ST21NFCA_RF_READER_F_DATARATE_106 0x01
51 #define ST21NFCA_RF_READER_F_DATARATE_212 0x02
52 #define ST21NFCA_RF_READER_F_DATARATE_424 0x04
53 #define ST21NFCA_RF_READER_F_POL_REQ 0x02
54 #define ST21NFCA_RF_READER_F_POL_REQ_DEFAULT 0xffff0000
55 #define ST21NFCA_RF_READER_F_NFCID2 0x03
56 #define ST21NFCA_RF_READER_F_NFCID1 0x04
58 #define ST21NFCA_RF_CARD_F_MODE 0x01
59 #define ST21NFCA_RF_CARD_F_NFCID2_LIST 0x04
60 #define ST21NFCA_RF_CARD_F_NFCID1 0x05
61 #define ST21NFCA_RF_CARD_F_SENS_RES 0x06
62 #define ST21NFCA_RF_CARD_F_SEL_RES 0x07
63 #define ST21NFCA_RF_CARD_F_DATARATE 0x08
64 #define ST21NFCA_RF_CARD_F_DATARATE_212_424 0x01
66 #define ST21NFCA_DEVICE_MGNT_PIPE 0x02
68 #define ST21NFCA_DM_GETINFO 0x13
69 #define ST21NFCA_DM_GETINFO_PIPE_LIST 0x02
70 #define ST21NFCA_DM_GETINFO_PIPE_INFO 0x01
71 #define ST21NFCA_DM_PIPE_CREATED 0x02
72 #define ST21NFCA_DM_PIPE_OPEN 0x04
73 #define ST21NFCA_DM_RF_ACTIVE 0x80
74 #define ST21NFCA_DM_DISCONNECT 0x30
76 #define ST21NFCA_DM_IS_PIPE_OPEN(p) \
77 ((p & 0x0f) == (ST21NFCA_DM_PIPE_CREATED | ST21NFCA_DM_PIPE_OPEN))
79 #define ST21NFCA_NFC_MODE 0x03 /* NFC_MODE parameter*/
81 #define ST21NFCA_EVT_HOT_PLUG 0x03
82 #define ST21NFCA_EVT_HOT_PLUG_IS_INHIBITED(x) (x->data[0] & 0x80)
84 #define ST21NFCA_SE_TO_PIPES 2000
86 static DECLARE_BITMAP(dev_mask
, ST21NFCA_NUM_DEVICES
);
88 static struct nfc_hci_gate st21nfca_gates
[] = {
89 {NFC_HCI_ADMIN_GATE
, NFC_HCI_ADMIN_PIPE
},
90 {NFC_HCI_LOOPBACK_GATE
, NFC_HCI_INVALID_PIPE
},
91 {NFC_HCI_ID_MGMT_GATE
, NFC_HCI_INVALID_PIPE
},
92 {NFC_HCI_LINK_MGMT_GATE
, NFC_HCI_LINK_MGMT_PIPE
},
93 {NFC_HCI_RF_READER_B_GATE
, NFC_HCI_INVALID_PIPE
},
94 {NFC_HCI_RF_READER_A_GATE
, NFC_HCI_INVALID_PIPE
},
95 {ST21NFCA_DEVICE_MGNT_GATE
, ST21NFCA_DEVICE_MGNT_PIPE
},
96 {ST21NFCA_RF_READER_F_GATE
, NFC_HCI_INVALID_PIPE
},
97 {ST21NFCA_RF_READER_14443_3_A_GATE
, NFC_HCI_INVALID_PIPE
},
98 {ST21NFCA_RF_READER_ISO15693_GATE
, NFC_HCI_INVALID_PIPE
},
99 {ST21NFCA_RF_CARD_F_GATE
, NFC_HCI_INVALID_PIPE
},
101 /* Secure element pipes are created by secure element host */
102 {ST21NFCA_CONNECTIVITY_GATE
, NFC_HCI_DO_NOT_CREATE_PIPE
},
103 {ST21NFCA_APDU_READER_GATE
, NFC_HCI_DO_NOT_CREATE_PIPE
},
106 struct st21nfca_pipe_info
{
114 /* Largest headroom needed for outgoing custom commands */
115 #define ST21NFCA_CMDS_HEADROOM 7
117 static int st21nfca_hci_load_session(struct nfc_hci_dev
*hdev
)
120 struct sk_buff
*skb_pipe_list
, *skb_pipe_info
;
121 struct st21nfca_pipe_info
*info
;
123 u8 pipe_list
[] = { ST21NFCA_DM_GETINFO_PIPE_LIST
,
124 NFC_HCI_TERMINAL_HOST_ID
126 u8 pipe_info
[] = { ST21NFCA_DM_GETINFO_PIPE_INFO
,
127 NFC_HCI_TERMINAL_HOST_ID
, 0
130 /* On ST21NFCA device pipes number are dynamics
131 * A maximum of 16 pipes can be created at the same time
132 * If pipes are already created, hci_dev_up will fail.
133 * Doing a clear all pipe is a bad idea because:
134 * - It does useless EEPROM cycling
135 * - It might cause issue for secure elements support
136 * (such as removing connectivity or APDU reader pipe)
137 * A better approach on ST21NFCA is to:
138 * - get a pipe list for each host.
139 * (eg: NFC_HCI_HOST_CONTROLLER_ID for now).
140 * (TODO Later on UICC HOST and eSE HOST)
141 * - get pipe information
142 * - match retrieved pipe list in st21nfca_gates
143 * ST21NFCA_DEVICE_MGNT_GATE is a proprietary gate
144 * with ST21NFCA_DEVICE_MGNT_PIPE.
145 * Pipe can be closed and need to be open.
147 r
= nfc_hci_connect_gate(hdev
, NFC_HCI_HOST_CONTROLLER_ID
,
148 ST21NFCA_DEVICE_MGNT_GATE
,
149 ST21NFCA_DEVICE_MGNT_PIPE
);
154 r
= nfc_hci_send_cmd(hdev
, ST21NFCA_DEVICE_MGNT_GATE
,
155 ST21NFCA_DM_GETINFO
, pipe_list
, sizeof(pipe_list
),
160 /* Complete the existing gate_pipe table */
161 for (i
= 0; i
< skb_pipe_list
->len
; i
++) {
162 pipe_info
[2] = skb_pipe_list
->data
[i
];
163 r
= nfc_hci_send_cmd(hdev
, ST21NFCA_DEVICE_MGNT_GATE
,
164 ST21NFCA_DM_GETINFO
, pipe_info
,
165 sizeof(pipe_info
), &skb_pipe_info
);
171 * Match pipe ID and gate ID
172 * Output format from ST21NFC_DM_GETINFO is:
173 * - pipe state (1byte)
174 * - source hid (1byte)
175 * - source gid (1byte)
176 * - destination hid (1byte)
177 * - destination gid (1byte)
179 info
= (struct st21nfca_pipe_info
*) skb_pipe_info
->data
;
180 if (info
->dst_gate_id
== ST21NFCA_APDU_READER_GATE
&&
181 info
->src_host_id
!= ST21NFCA_ESE_HOST_ID
) {
182 pr_err("Unexpected apdu_reader pipe on host %x\n",
184 kfree_skb(skb_pipe_info
);
188 for (j
= 0; (j
< ARRAY_SIZE(st21nfca_gates
)) &&
189 (st21nfca_gates
[j
].gate
!= info
->dst_gate_id
) ; j
++)
192 if (j
< ARRAY_SIZE(st21nfca_gates
) &&
193 st21nfca_gates
[j
].gate
== info
->dst_gate_id
&&
194 ST21NFCA_DM_IS_PIPE_OPEN(info
->pipe_state
)) {
195 st21nfca_gates
[j
].pipe
= pipe_info
[2];
197 hdev
->gate2pipe
[st21nfca_gates
[j
].gate
] =
198 st21nfca_gates
[j
].pipe
;
199 hdev
->pipes
[st21nfca_gates
[j
].pipe
].gate
=
200 st21nfca_gates
[j
].gate
;
201 hdev
->pipes
[st21nfca_gates
[j
].pipe
].dest_host
=
204 kfree_skb(skb_pipe_info
);
208 * 3 gates have a well known pipe ID.
209 * They will never appear in the pipe list
211 if (skb_pipe_list
->len
+ 3 < ARRAY_SIZE(st21nfca_gates
)) {
212 for (i
= skb_pipe_list
->len
+ 3;
213 i
< ARRAY_SIZE(st21nfca_gates
) - 2; i
++) {
214 r
= nfc_hci_connect_gate(hdev
,
215 NFC_HCI_HOST_CONTROLLER_ID
,
216 st21nfca_gates
[i
].gate
,
217 st21nfca_gates
[i
].pipe
);
223 memcpy(hdev
->init_data
.gates
, st21nfca_gates
, sizeof(st21nfca_gates
));
225 kfree_skb(skb_pipe_list
);
229 static int st21nfca_hci_open(struct nfc_hci_dev
*hdev
)
231 struct st21nfca_hci_info
*info
= nfc_hci_get_clientdata(hdev
);
234 mutex_lock(&info
->info_lock
);
236 if (info
->state
!= ST21NFCA_ST_COLD
) {
241 r
= info
->phy_ops
->enable(info
->phy_id
);
244 info
->state
= ST21NFCA_ST_READY
;
247 mutex_unlock(&info
->info_lock
);
251 static void st21nfca_hci_close(struct nfc_hci_dev
*hdev
)
253 struct st21nfca_hci_info
*info
= nfc_hci_get_clientdata(hdev
);
255 mutex_lock(&info
->info_lock
);
257 if (info
->state
== ST21NFCA_ST_COLD
)
260 info
->phy_ops
->disable(info
->phy_id
);
261 info
->state
= ST21NFCA_ST_COLD
;
264 mutex_unlock(&info
->info_lock
);
267 static int st21nfca_hci_ready(struct nfc_hci_dev
*hdev
)
269 struct st21nfca_hci_info
*info
= nfc_hci_get_clientdata(hdev
);
277 if (info
->se_status
->is_ese_present
&&
278 info
->se_status
->is_uicc_present
) {
279 white_list
[wl_size
++] = NFC_HCI_UICC_HOST_ID
;
280 white_list
[wl_size
++] = ST21NFCA_ESE_HOST_ID
;
281 } else if (!info
->se_status
->is_ese_present
&&
282 info
->se_status
->is_uicc_present
) {
283 white_list
[wl_size
++] = NFC_HCI_UICC_HOST_ID
;
284 } else if (info
->se_status
->is_ese_present
&&
285 !info
->se_status
->is_uicc_present
) {
286 white_list
[wl_size
++] = ST21NFCA_ESE_HOST_ID
;
290 r
= nfc_hci_set_param(hdev
, NFC_HCI_ADMIN_GATE
,
291 NFC_HCI_ADMIN_WHITELIST
,
292 (u8
*) &white_list
, wl_size
);
297 /* Set NFC_MODE in device management gate to enable */
298 r
= nfc_hci_get_param(hdev
, ST21NFCA_DEVICE_MGNT_GATE
,
299 ST21NFCA_NFC_MODE
, &skb
);
303 param
= skb
->data
[0];
308 r
= nfc_hci_set_param(hdev
, ST21NFCA_DEVICE_MGNT_GATE
,
309 ST21NFCA_NFC_MODE
, ¶m
, 1);
314 r
= nfc_hci_send_event(hdev
, NFC_HCI_RF_READER_A_GATE
,
315 NFC_HCI_EVT_END_OPERATION
, NULL
, 0);
319 r
= nfc_hci_get_param(hdev
, NFC_HCI_ID_MGMT_GATE
,
320 NFC_HCI_ID_MGMT_VERSION_SW
, &skb
);
324 if (skb
->len
!= FULL_VERSION_LEN
) {
329 print_hex_dump(KERN_DEBUG
, "FULL VERSION SOFTWARE INFO: ",
330 DUMP_PREFIX_NONE
, 16, 1,
331 skb
->data
, FULL_VERSION_LEN
, false);
338 static int st21nfca_hci_xmit(struct nfc_hci_dev
*hdev
, struct sk_buff
*skb
)
340 struct st21nfca_hci_info
*info
= nfc_hci_get_clientdata(hdev
);
342 return info
->phy_ops
->write(info
->phy_id
, skb
);
345 static int st21nfca_hci_start_poll(struct nfc_hci_dev
*hdev
,
346 u32 im_protocols
, u32 tm_protocols
)
351 struct sk_buff
*datarate_skb
;
353 pr_info(DRIVER_DESC
": %s protocols 0x%x 0x%x\n",
354 __func__
, im_protocols
, tm_protocols
);
356 r
= nfc_hci_send_event(hdev
, NFC_HCI_RF_READER_A_GATE
,
357 NFC_HCI_EVT_END_OPERATION
, NULL
, 0);
362 * enable polling according to im_protocols & tm_protocols
363 * - CLOSE pipe according to im_protocols & tm_protocols
365 if ((NFC_HCI_RF_READER_B_GATE
& im_protocols
) == 0) {
366 r
= nfc_hci_disconnect_gate(hdev
,
367 NFC_HCI_RF_READER_B_GATE
);
372 if ((NFC_HCI_RF_READER_A_GATE
& im_protocols
) == 0) {
373 r
= nfc_hci_disconnect_gate(hdev
,
374 NFC_HCI_RF_READER_A_GATE
);
379 if ((ST21NFCA_RF_READER_F_GATE
& im_protocols
) == 0) {
380 r
= nfc_hci_disconnect_gate(hdev
,
381 ST21NFCA_RF_READER_F_GATE
);
385 hdev
->gb
= nfc_get_local_general_bytes(hdev
->ndev
,
388 if (hdev
->gb
== NULL
|| hdev
->gb_len
== 0) {
389 im_protocols
&= ~NFC_PROTO_NFC_DEP_MASK
;
390 tm_protocols
&= ~NFC_PROTO_NFC_DEP_MASK
;
393 param
[0] = ST21NFCA_RF_READER_F_DATARATE_106
|
394 ST21NFCA_RF_READER_F_DATARATE_212
|
395 ST21NFCA_RF_READER_F_DATARATE_424
;
396 r
= nfc_hci_set_param(hdev
, ST21NFCA_RF_READER_F_GATE
,
397 ST21NFCA_RF_READER_F_DATARATE
,
402 pol_req
= be32_to_cpu((__force __be32
)
403 ST21NFCA_RF_READER_F_POL_REQ_DEFAULT
);
404 r
= nfc_hci_set_param(hdev
, ST21NFCA_RF_READER_F_GATE
,
405 ST21NFCA_RF_READER_F_POL_REQ
,
411 if ((ST21NFCA_RF_READER_14443_3_A_GATE
& im_protocols
) == 0) {
412 r
= nfc_hci_disconnect_gate(hdev
,
413 ST21NFCA_RF_READER_14443_3_A_GATE
);
418 if ((ST21NFCA_RF_READER_ISO15693_GATE
& im_protocols
) == 0) {
419 r
= nfc_hci_disconnect_gate(hdev
,
420 ST21NFCA_RF_READER_ISO15693_GATE
);
425 r
= nfc_hci_send_event(hdev
, NFC_HCI_RF_READER_A_GATE
,
426 NFC_HCI_EVT_READER_REQUESTED
, NULL
, 0);
428 nfc_hci_send_event(hdev
, NFC_HCI_RF_READER_A_GATE
,
429 NFC_HCI_EVT_END_OPERATION
, NULL
, 0);
432 if (tm_protocols
& NFC_PROTO_NFC_DEP_MASK
) {
433 r
= nfc_hci_get_param(hdev
, ST21NFCA_RF_CARD_F_GATE
,
434 ST21NFCA_RF_CARD_F_DATARATE
,
439 /* Configure the maximum supported datarate to 424Kbps */
440 if (datarate_skb
->len
> 0 &&
441 datarate_skb
->data
[0] !=
442 ST21NFCA_RF_CARD_F_DATARATE_212_424
) {
443 param
[0] = ST21NFCA_RF_CARD_F_DATARATE_212_424
;
444 r
= nfc_hci_set_param(hdev
, ST21NFCA_RF_CARD_F_GATE
,
445 ST21NFCA_RF_CARD_F_DATARATE
,
448 kfree_skb(datarate_skb
);
452 kfree_skb(datarate_skb
);
457 * NFC Forum Digital Spec Table 7:
458 * NFCID1 size: triple (10 bytes)
462 r
= nfc_hci_set_param(hdev
, ST21NFCA_RF_CARD_F_GATE
,
463 ST21NFCA_RF_CARD_F_SENS_RES
, param
, 2);
470 * NFC Forum Digistal Spec Table 17:
471 * b3 set to 0b (value b7-b6):
472 * - 10b: Configured for NFC-DEP Protocol
475 r
= nfc_hci_set_param(hdev
, ST21NFCA_RF_CARD_F_GATE
,
476 ST21NFCA_RF_CARD_F_SEL_RES
, param
, 1);
480 /* Configure NFCID1 Random uid */
481 r
= nfc_hci_set_param(hdev
, ST21NFCA_RF_CARD_F_GATE
,
482 ST21NFCA_RF_CARD_F_NFCID1
, NULL
, 0);
486 /* Configure NFCID2_LIST */
499 /* 8 byte Pad bytes used for polling respone frame */
502 * Configuration byte:
503 * - bit 0: define the default NFCID2 entry used when the
504 * system code is equal to 'FFFF'
505 * - bit 1: use a random value for lowest 6 bytes of
507 * - bit 2: ignore polling request frame if request code
509 * - Other bits are RFU
512 r
= nfc_hci_set_param(hdev
, ST21NFCA_RF_CARD_F_GATE
,
513 ST21NFCA_RF_CARD_F_NFCID2_LIST
, param
,
519 r
= nfc_hci_set_param(hdev
, ST21NFCA_RF_CARD_F_GATE
,
520 ST21NFCA_RF_CARD_F_MODE
, param
, 1);
526 static void st21nfca_hci_stop_poll(struct nfc_hci_dev
*hdev
)
528 nfc_hci_send_cmd(hdev
, ST21NFCA_DEVICE_MGNT_GATE
,
529 ST21NFCA_DM_DISCONNECT
, NULL
, 0, NULL
);
532 static int st21nfca_get_iso14443_3_atqa(struct nfc_hci_dev
*hdev
, u16
*atqa
)
535 struct sk_buff
*atqa_skb
= NULL
;
537 r
= nfc_hci_get_param(hdev
, ST21NFCA_RF_READER_14443_3_A_GATE
,
538 ST21NFCA_RF_READER_14443_3_A_ATQA
, &atqa_skb
);
542 if (atqa_skb
->len
!= 2) {
547 *atqa
= be16_to_cpu(*(__be16
*) atqa_skb
->data
);
554 static int st21nfca_get_iso14443_3_sak(struct nfc_hci_dev
*hdev
, u8
*sak
)
557 struct sk_buff
*sak_skb
= NULL
;
559 r
= nfc_hci_get_param(hdev
, ST21NFCA_RF_READER_14443_3_A_GATE
,
560 ST21NFCA_RF_READER_14443_3_A_SAK
, &sak_skb
);
564 if (sak_skb
->len
!= 1) {
569 *sak
= sak_skb
->data
[0];
576 static int st21nfca_get_iso14443_3_uid(struct nfc_hci_dev
*hdev
, u8
*uid
,
580 struct sk_buff
*uid_skb
= NULL
;
582 r
= nfc_hci_get_param(hdev
, ST21NFCA_RF_READER_14443_3_A_GATE
,
583 ST21NFCA_RF_READER_14443_3_A_UID
, &uid_skb
);
587 if (uid_skb
->len
== 0 || uid_skb
->len
> NFC_NFCID1_MAXSIZE
) {
592 memcpy(uid
, uid_skb
->data
, uid_skb
->len
);
599 static int st21nfca_get_iso15693_inventory(struct nfc_hci_dev
*hdev
,
600 struct nfc_target
*target
)
603 struct sk_buff
*inventory_skb
= NULL
;
605 r
= nfc_hci_get_param(hdev
, ST21NFCA_RF_READER_ISO15693_GATE
,
606 ST21NFCA_RF_READER_ISO15693_INVENTORY
,
611 skb_pull(inventory_skb
, 2);
613 if (inventory_skb
->len
== 0 ||
614 inventory_skb
->len
> NFC_ISO15693_UID_MAXSIZE
) {
619 memcpy(target
->iso15693_uid
, inventory_skb
->data
, inventory_skb
->len
);
620 target
->iso15693_dsfid
= inventory_skb
->data
[1];
621 target
->is_iso15693
= 1;
623 kfree_skb(inventory_skb
);
627 static int st21nfca_hci_dep_link_up(struct nfc_hci_dev
*hdev
,
628 struct nfc_target
*target
, u8 comm_mode
,
629 u8
*gb
, size_t gb_len
)
631 struct st21nfca_hci_info
*info
= nfc_hci_get_clientdata(hdev
);
633 info
->dep_info
.idx
= target
->idx
;
634 return st21nfca_im_send_atr_req(hdev
, gb
, gb_len
);
637 static int st21nfca_hci_dep_link_down(struct nfc_hci_dev
*hdev
)
639 struct st21nfca_hci_info
*info
= nfc_hci_get_clientdata(hdev
);
641 info
->state
= ST21NFCA_ST_READY
;
643 return nfc_hci_send_cmd(hdev
, ST21NFCA_DEVICE_MGNT_GATE
,
644 ST21NFCA_DM_DISCONNECT
, NULL
, 0, NULL
);
647 static int st21nfca_hci_target_from_gate(struct nfc_hci_dev
*hdev
, u8 gate
,
648 struct nfc_target
*target
)
653 u8 uid
[NFC_NFCID1_MAXSIZE
];
656 case ST21NFCA_RF_READER_F_GATE
:
657 target
->supported_protocols
= NFC_PROTO_FELICA_MASK
;
659 case ST21NFCA_RF_READER_14443_3_A_GATE
:
660 /* ISO14443-3 type 1 or 2 tags */
661 r
= st21nfca_get_iso14443_3_atqa(hdev
, &atqa
);
664 if (atqa
== 0x000c) {
665 target
->supported_protocols
= NFC_PROTO_JEWEL_MASK
;
666 target
->sens_res
= 0x0c00;
668 r
= st21nfca_get_iso14443_3_sak(hdev
, &sak
);
672 r
= st21nfca_get_iso14443_3_uid(hdev
, uid
, &len
);
676 target
->supported_protocols
=
677 nfc_hci_sak_to_protocol(sak
);
678 if (target
->supported_protocols
== 0xffffffff)
681 target
->sens_res
= atqa
;
682 target
->sel_res
= sak
;
683 memcpy(target
->nfcid1
, uid
, len
);
684 target
->nfcid1_len
= len
;
688 case ST21NFCA_RF_READER_ISO15693_GATE
:
689 target
->supported_protocols
= NFC_PROTO_ISO15693_MASK
;
690 r
= st21nfca_get_iso15693_inventory(hdev
, target
);
701 static int st21nfca_hci_complete_target_discovered(struct nfc_hci_dev
*hdev
,
703 struct nfc_target
*target
)
706 struct sk_buff
*nfcid_skb
= NULL
;
708 if (gate
== ST21NFCA_RF_READER_F_GATE
) {
709 r
= nfc_hci_get_param(hdev
, ST21NFCA_RF_READER_F_GATE
,
710 ST21NFCA_RF_READER_F_NFCID2
, &nfcid_skb
);
714 if (nfcid_skb
->len
> NFC_SENSF_RES_MAXSIZE
) {
720 * - After the recepton of polling response for type F frame
721 * at 212 or 424 Kbit/s, NFCID2 registry parameters will be
723 * - After the reception of SEL_RES with NFCIP-1 compliant bit
724 * set for type A frame NFCID1 will be updated
726 if (nfcid_skb
->len
> 0) {
728 memcpy(target
->sensf_res
, nfcid_skb
->data
,
730 target
->sensf_res_len
= nfcid_skb
->len
;
731 /* NFC Forum Digital Protocol Table 44 */
732 if (target
->sensf_res
[0] == 0x01 &&
733 target
->sensf_res
[1] == 0xfe)
734 target
->supported_protocols
=
735 NFC_PROTO_NFC_DEP_MASK
;
737 target
->supported_protocols
=
738 NFC_PROTO_FELICA_MASK
;
740 kfree_skb(nfcid_skb
);
742 r
= nfc_hci_get_param(hdev
, ST21NFCA_RF_READER_F_GATE
,
743 ST21NFCA_RF_READER_F_NFCID1
,
748 if (nfcid_skb
->len
> NFC_NFCID1_MAXSIZE
) {
752 memcpy(target
->sensf_res
, nfcid_skb
->data
,
754 target
->sensf_res_len
= nfcid_skb
->len
;
755 target
->supported_protocols
= NFC_PROTO_NFC_DEP_MASK
;
757 target
->hci_reader_gate
= ST21NFCA_RF_READER_F_GATE
;
761 kfree_skb(nfcid_skb
);
765 #define ST21NFCA_CB_TYPE_READER_ISO15693 1
766 static void st21nfca_hci_data_exchange_cb(void *context
, struct sk_buff
*skb
,
769 struct st21nfca_hci_info
*info
= context
;
771 switch (info
->async_cb_type
) {
772 case ST21NFCA_CB_TYPE_READER_ISO15693
:
774 skb_trim(skb
, skb
->len
- 1);
775 info
->async_cb(info
->async_cb_context
, skb
, err
);
786 * <= 0: driver handled the data exchange
787 * 1: driver doesn't especially handle, please do standard processing
789 static int st21nfca_hci_im_transceive(struct nfc_hci_dev
*hdev
,
790 struct nfc_target
*target
,
792 data_exchange_cb_t cb
, void *cb_context
)
794 struct st21nfca_hci_info
*info
= nfc_hci_get_clientdata(hdev
);
796 pr_info(DRIVER_DESC
": %s for gate=%d len=%d\n", __func__
,
797 target
->hci_reader_gate
, skb
->len
);
799 switch (target
->hci_reader_gate
) {
800 case ST21NFCA_RF_READER_F_GATE
:
801 if (target
->supported_protocols
== NFC_PROTO_NFC_DEP_MASK
)
802 return st21nfca_im_send_dep_req(hdev
, skb
);
804 *skb_push(skb
, 1) = 0x1a;
805 return nfc_hci_send_cmd_async(hdev
, target
->hci_reader_gate
,
806 ST21NFCA_WR_XCHG_DATA
, skb
->data
,
807 skb
->len
, cb
, cb_context
);
808 case ST21NFCA_RF_READER_14443_3_A_GATE
:
809 *skb_push(skb
, 1) = 0x1a; /* CTR, see spec:10.2.2.1 */
811 return nfc_hci_send_cmd_async(hdev
, target
->hci_reader_gate
,
812 ST21NFCA_WR_XCHG_DATA
, skb
->data
,
813 skb
->len
, cb
, cb_context
);
814 case ST21NFCA_RF_READER_ISO15693_GATE
:
815 info
->async_cb_type
= ST21NFCA_CB_TYPE_READER_ISO15693
;
817 info
->async_cb_context
= cb_context
;
819 *skb_push(skb
, 1) = 0x17;
821 return nfc_hci_send_cmd_async(hdev
, target
->hci_reader_gate
,
822 ST21NFCA_WR_XCHG_DATA
, skb
->data
,
824 st21nfca_hci_data_exchange_cb
,
832 static int st21nfca_hci_tm_send(struct nfc_hci_dev
*hdev
, struct sk_buff
*skb
)
834 return st21nfca_tm_send_dep_res(hdev
, skb
);
837 static int st21nfca_hci_check_presence(struct nfc_hci_dev
*hdev
,
838 struct nfc_target
*target
)
842 switch (target
->hci_reader_gate
) {
843 case NFC_HCI_RF_READER_A_GATE
:
844 case NFC_HCI_RF_READER_B_GATE
:
846 * PRESENCE_CHECK on those gates is available
847 * However, the answer to this command is taking 3 * fwi
848 * if the card is no present.
849 * Instead, we send an empty I-Frame with a very short
850 * configurable fwi ~604µs.
852 return nfc_hci_send_cmd(hdev
, target
->hci_reader_gate
,
853 ST21NFCA_WR_XCHG_DATA
, &fwi
, 1, NULL
);
854 case ST21NFCA_RF_READER_14443_3_A_GATE
:
855 return nfc_hci_send_cmd(hdev
, target
->hci_reader_gate
,
856 ST21NFCA_RF_READER_CMD_PRESENCE_CHECK
,
863 static void st21nfca_hci_cmd_received(struct nfc_hci_dev
*hdev
, u8 pipe
, u8 cmd
,
866 struct st21nfca_hci_info
*info
= nfc_hci_get_clientdata(hdev
);
867 u8 gate
= hdev
->pipes
[pipe
].gate
;
869 pr_debug("cmd: %x\n", cmd
);
872 case NFC_HCI_ANY_OPEN_PIPE
:
873 if (gate
!= ST21NFCA_APDU_READER_GATE
&&
874 hdev
->pipes
[pipe
].dest_host
!= NFC_HCI_UICC_HOST_ID
)
875 info
->se_info
.count_pipes
++;
877 if (info
->se_info
.count_pipes
== info
->se_info
.expected_pipes
) {
878 del_timer_sync(&info
->se_info
.se_active_timer
);
879 info
->se_info
.se_active
= false;
880 info
->se_info
.count_pipes
= 0;
881 complete(&info
->se_info
.req_completion
);
887 static int st21nfca_admin_event_received(struct nfc_hci_dev
*hdev
, u8 event
,
890 struct st21nfca_hci_info
*info
= nfc_hci_get_clientdata(hdev
);
892 pr_debug("admin event: %x\n", event
);
895 case ST21NFCA_EVT_HOT_PLUG
:
896 if (info
->se_info
.se_active
) {
897 if (!ST21NFCA_EVT_HOT_PLUG_IS_INHIBITED(skb
)) {
898 del_timer_sync(&info
->se_info
.se_active_timer
);
899 info
->se_info
.se_active
= false;
900 complete(&info
->se_info
.req_completion
);
902 mod_timer(&info
->se_info
.se_active_timer
,
904 msecs_to_jiffies(ST21NFCA_SE_TO_PIPES
));
915 * <= 0: driver handled the event, skb consumed
916 * 1: driver does not handle the event, please do standard processing
918 static int st21nfca_hci_event_received(struct nfc_hci_dev
*hdev
, u8 pipe
,
919 u8 event
, struct sk_buff
*skb
)
921 u8 gate
= hdev
->pipes
[pipe
].gate
;
922 u8 host
= hdev
->pipes
[pipe
].dest_host
;
924 pr_debug("hci event: %d gate: %x\n", event
, gate
);
927 case NFC_HCI_ADMIN_GATE
:
928 return st21nfca_admin_event_received(hdev
, event
, skb
);
929 case ST21NFCA_RF_CARD_F_GATE
:
930 return st21nfca_dep_event_received(hdev
, event
, skb
);
931 case ST21NFCA_CONNECTIVITY_GATE
:
932 return st21nfca_connectivity_event_received(hdev
, host
,
934 case ST21NFCA_APDU_READER_GATE
:
935 return st21nfca_apdu_reader_event_received(hdev
, event
, skb
);
941 static struct nfc_hci_ops st21nfca_hci_ops
= {
942 .open
= st21nfca_hci_open
,
943 .close
= st21nfca_hci_close
,
944 .load_session
= st21nfca_hci_load_session
,
945 .hci_ready
= st21nfca_hci_ready
,
946 .xmit
= st21nfca_hci_xmit
,
947 .start_poll
= st21nfca_hci_start_poll
,
948 .stop_poll
= st21nfca_hci_stop_poll
,
949 .dep_link_up
= st21nfca_hci_dep_link_up
,
950 .dep_link_down
= st21nfca_hci_dep_link_down
,
951 .target_from_gate
= st21nfca_hci_target_from_gate
,
952 .complete_target_discovered
= st21nfca_hci_complete_target_discovered
,
953 .im_transceive
= st21nfca_hci_im_transceive
,
954 .tm_send
= st21nfca_hci_tm_send
,
955 .check_presence
= st21nfca_hci_check_presence
,
956 .event_received
= st21nfca_hci_event_received
,
957 .cmd_received
= st21nfca_hci_cmd_received
,
958 .discover_se
= st21nfca_hci_discover_se
,
959 .enable_se
= st21nfca_hci_enable_se
,
960 .disable_se
= st21nfca_hci_disable_se
,
961 .se_io
= st21nfca_hci_se_io
,
964 int st21nfca_hci_probe(void *phy_id
, struct nfc_phy_ops
*phy_ops
,
965 char *llc_name
, int phy_headroom
, int phy_tailroom
,
966 int phy_payload
, struct nfc_hci_dev
**hdev
,
967 struct st21nfca_se_status
*se_status
)
969 struct st21nfca_hci_info
*info
;
973 struct nfc_hci_init_data init_data
;
974 unsigned long quirks
= 0;
976 info
= kzalloc(sizeof(struct st21nfca_hci_info
), GFP_KERNEL
);
982 info
->phy_ops
= phy_ops
;
983 info
->phy_id
= phy_id
;
984 info
->state
= ST21NFCA_ST_COLD
;
985 mutex_init(&info
->info_lock
);
987 init_data
.gate_count
= ARRAY_SIZE(st21nfca_gates
);
989 memcpy(init_data
.gates
, st21nfca_gates
, sizeof(st21nfca_gates
));
992 * Session id must include the driver name + i2c bus addr
993 * persistent info to discriminate 2 identical chips
995 dev_num
= find_first_zero_bit(dev_mask
, ST21NFCA_NUM_DEVICES
);
997 if (dev_num
>= ST21NFCA_NUM_DEVICES
)
1000 set_bit(dev_num
, dev_mask
);
1002 scnprintf(init_data
.session_id
, sizeof(init_data
.session_id
), "%s%2x",
1005 protocols
= NFC_PROTO_JEWEL_MASK
|
1006 NFC_PROTO_MIFARE_MASK
|
1007 NFC_PROTO_FELICA_MASK
|
1008 NFC_PROTO_ISO14443_MASK
|
1009 NFC_PROTO_ISO14443_B_MASK
|
1010 NFC_PROTO_ISO15693_MASK
|
1011 NFC_PROTO_NFC_DEP_MASK
;
1013 set_bit(NFC_HCI_QUIRK_SHORT_CLEAR
, &quirks
);
1016 nfc_hci_allocate_device(&st21nfca_hci_ops
, &init_data
, quirks
,
1017 protocols
, llc_name
,
1018 phy_headroom
+ ST21NFCA_CMDS_HEADROOM
,
1019 phy_tailroom
, phy_payload
);
1022 pr_err("Cannot allocate nfc hdev.\n");
1024 goto err_alloc_hdev
;
1027 info
->se_status
= se_status
;
1029 nfc_hci_set_clientdata(info
->hdev
, info
);
1031 r
= nfc_hci_register_device(info
->hdev
);
1036 st21nfca_dep_init(info
->hdev
);
1037 st21nfca_se_init(info
->hdev
);
1042 nfc_hci_free_device(info
->hdev
);
1049 EXPORT_SYMBOL(st21nfca_hci_probe
);
1051 void st21nfca_hci_remove(struct nfc_hci_dev
*hdev
)
1053 struct st21nfca_hci_info
*info
= nfc_hci_get_clientdata(hdev
);
1055 st21nfca_dep_deinit(hdev
);
1056 st21nfca_se_deinit(hdev
);
1057 nfc_hci_unregister_device(hdev
);
1058 nfc_hci_free_device(hdev
);
1061 EXPORT_SYMBOL(st21nfca_hci_remove
);
1063 MODULE_LICENSE("GPL");
1064 MODULE_DESCRIPTION(DRIVER_DESC
);