Linux 4.19.133
[linux/fpc-iii.git] / drivers / nfc / st-nci / se.c
blob5d6e7e931bc6cd06bc162a2672acba679d60d782
1 /*
2 * Secure Element driver for STMicroelectronics NFC NCI chip
4 * Copyright (C) 2014-2015 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 <linux/delay.h>
22 #include <net/nfc/nci.h>
23 #include <net/nfc/nci_core.h>
25 #include "st-nci.h"
27 struct st_nci_pipe_info {
28 u8 pipe_state;
29 u8 src_host_id;
30 u8 src_gate_id;
31 u8 dst_host_id;
32 u8 dst_gate_id;
33 } __packed;
35 /* Hosts */
36 #define ST_NCI_HOST_CONTROLLER_ID 0x00
37 #define ST_NCI_TERMINAL_HOST_ID 0x01
38 #define ST_NCI_UICC_HOST_ID 0x02
39 #define ST_NCI_ESE_HOST_ID 0xc0
41 /* Gates */
42 #define ST_NCI_APDU_READER_GATE 0xf0
43 #define ST_NCI_CONNECTIVITY_GATE 0x41
45 /* Pipes */
46 #define ST_NCI_DEVICE_MGNT_PIPE 0x02
48 /* Connectivity pipe only */
49 #define ST_NCI_SE_COUNT_PIPE_UICC 0x01
50 /* Connectivity + APDU Reader pipe */
51 #define ST_NCI_SE_COUNT_PIPE_EMBEDDED 0x02
53 #define ST_NCI_SE_TO_HOT_PLUG 1000 /* msecs */
54 #define ST_NCI_SE_TO_PIPES 2000
56 #define ST_NCI_EVT_HOT_PLUG_IS_INHIBITED(x) (x->data[0] & 0x80)
58 #define NCI_HCI_APDU_PARAM_ATR 0x01
59 #define NCI_HCI_ADMIN_PARAM_SESSION_IDENTITY 0x01
60 #define NCI_HCI_ADMIN_PARAM_WHITELIST 0x03
61 #define NCI_HCI_ADMIN_PARAM_HOST_LIST 0x04
63 #define ST_NCI_EVT_SE_HARD_RESET 0x20
64 #define ST_NCI_EVT_TRANSMIT_DATA 0x10
65 #define ST_NCI_EVT_WTX_REQUEST 0x11
66 #define ST_NCI_EVT_SE_SOFT_RESET 0x11
67 #define ST_NCI_EVT_SE_END_OF_APDU_TRANSFER 0x21
68 #define ST_NCI_EVT_HOT_PLUG 0x03
70 #define ST_NCI_SE_MODE_OFF 0x00
71 #define ST_NCI_SE_MODE_ON 0x01
73 #define ST_NCI_EVT_CONNECTIVITY 0x10
74 #define ST_NCI_EVT_TRANSACTION 0x12
76 #define ST_NCI_DM_GETINFO 0x13
77 #define ST_NCI_DM_GETINFO_PIPE_LIST 0x02
78 #define ST_NCI_DM_GETINFO_PIPE_INFO 0x01
79 #define ST_NCI_DM_PIPE_CREATED 0x02
80 #define ST_NCI_DM_PIPE_OPEN 0x04
81 #define ST_NCI_DM_RF_ACTIVE 0x80
82 #define ST_NCI_DM_DISCONNECT 0x30
84 #define ST_NCI_DM_IS_PIPE_OPEN(p) \
85 ((p & 0x0f) == (ST_NCI_DM_PIPE_CREATED | ST_NCI_DM_PIPE_OPEN))
87 #define ST_NCI_ATR_DEFAULT_BWI 0x04
90 * WT = 2^BWI/10[s], convert into msecs and add a secure
91 * room by increasing by 2 this timeout
93 #define ST_NCI_BWI_TO_TIMEOUT(x) ((1 << x) * 200)
94 #define ST_NCI_ATR_GET_Y_FROM_TD(x) (x >> 4)
96 /* If TA is present bit 0 is set */
97 #define ST_NCI_ATR_TA_PRESENT(x) (x & 0x01)
98 /* If TB is present bit 1 is set */
99 #define ST_NCI_ATR_TB_PRESENT(x) (x & 0x02)
101 #define ST_NCI_NUM_DEVICES 256
103 static DECLARE_BITMAP(dev_mask, ST_NCI_NUM_DEVICES);
105 /* Here are the mandatory pipe for st_nci */
106 static struct nci_hci_gate st_nci_gates[] = {
107 {NCI_HCI_ADMIN_GATE, NCI_HCI_ADMIN_PIPE,
108 ST_NCI_HOST_CONTROLLER_ID},
109 {NCI_HCI_LINK_MGMT_GATE, NCI_HCI_LINK_MGMT_PIPE,
110 ST_NCI_HOST_CONTROLLER_ID},
111 {ST_NCI_DEVICE_MGNT_GATE, ST_NCI_DEVICE_MGNT_PIPE,
112 ST_NCI_HOST_CONTROLLER_ID},
114 {NCI_HCI_IDENTITY_MGMT_GATE, NCI_HCI_INVALID_PIPE,
115 ST_NCI_HOST_CONTROLLER_ID},
117 /* Secure element pipes are created by secure element host */
118 {ST_NCI_CONNECTIVITY_GATE, NCI_HCI_DO_NOT_OPEN_PIPE,
119 ST_NCI_HOST_CONTROLLER_ID},
120 {ST_NCI_APDU_READER_GATE, NCI_HCI_DO_NOT_OPEN_PIPE,
121 ST_NCI_HOST_CONTROLLER_ID},
124 static u8 st_nci_se_get_bwi(struct nci_dev *ndev)
126 int i;
127 u8 td;
128 struct st_nci_info *info = nci_get_drvdata(ndev);
130 /* Bits 8 to 5 of the first TB for T=1 encode BWI from zero to nine */
131 for (i = 1; i < ST_NCI_ESE_MAX_LENGTH; i++) {
132 td = ST_NCI_ATR_GET_Y_FROM_TD(info->se_info.atr[i]);
133 if (ST_NCI_ATR_TA_PRESENT(td))
134 i++;
135 if (ST_NCI_ATR_TB_PRESENT(td)) {
136 i++;
137 return info->se_info.atr[i] >> 4;
140 return ST_NCI_ATR_DEFAULT_BWI;
143 static void st_nci_se_get_atr(struct nci_dev *ndev)
145 struct st_nci_info *info = nci_get_drvdata(ndev);
146 int r;
147 struct sk_buff *skb;
149 r = nci_hci_get_param(ndev, ST_NCI_APDU_READER_GATE,
150 NCI_HCI_APDU_PARAM_ATR, &skb);
151 if (r < 0)
152 return;
154 if (skb->len <= ST_NCI_ESE_MAX_LENGTH) {
155 memcpy(info->se_info.atr, skb->data, skb->len);
157 info->se_info.wt_timeout =
158 ST_NCI_BWI_TO_TIMEOUT(st_nci_se_get_bwi(ndev));
160 kfree_skb(skb);
163 int st_nci_hci_load_session(struct nci_dev *ndev)
165 int i, j, r;
166 struct sk_buff *skb_pipe_list, *skb_pipe_info;
167 struct st_nci_pipe_info *dm_pipe_info;
168 u8 pipe_list[] = { ST_NCI_DM_GETINFO_PIPE_LIST,
169 ST_NCI_TERMINAL_HOST_ID};
170 u8 pipe_info[] = { ST_NCI_DM_GETINFO_PIPE_INFO,
171 ST_NCI_TERMINAL_HOST_ID, 0};
173 /* On ST_NCI device pipes number are dynamics
174 * If pipes are already created, hci_dev_up will fail.
175 * Doing a clear all pipe is a bad idea because:
176 * - It does useless EEPROM cycling
177 * - It might cause issue for secure elements support
178 * (such as removing connectivity or APDU reader pipe)
179 * A better approach on ST_NCI is to:
180 * - get a pipe list for each host.
181 * (eg: ST_NCI_HOST_CONTROLLER_ID for now).
182 * (TODO Later on UICC HOST and eSE HOST)
183 * - get pipe information
184 * - match retrieved pipe list in st_nci_gates
185 * ST_NCI_DEVICE_MGNT_GATE is a proprietary gate
186 * with ST_NCI_DEVICE_MGNT_PIPE.
187 * Pipe can be closed and need to be open.
189 r = nci_hci_connect_gate(ndev, ST_NCI_HOST_CONTROLLER_ID,
190 ST_NCI_DEVICE_MGNT_GATE,
191 ST_NCI_DEVICE_MGNT_PIPE);
192 if (r < 0)
193 return r;
195 /* Get pipe list */
196 r = nci_hci_send_cmd(ndev, ST_NCI_DEVICE_MGNT_GATE,
197 ST_NCI_DM_GETINFO, pipe_list, sizeof(pipe_list),
198 &skb_pipe_list);
199 if (r < 0)
200 return r;
202 /* Complete the existing gate_pipe table */
203 for (i = 0; i < skb_pipe_list->len; i++) {
204 pipe_info[2] = skb_pipe_list->data[i];
205 r = nci_hci_send_cmd(ndev, ST_NCI_DEVICE_MGNT_GATE,
206 ST_NCI_DM_GETINFO, pipe_info,
207 sizeof(pipe_info), &skb_pipe_info);
209 if (r)
210 continue;
213 * Match pipe ID and gate ID
214 * Output format from ST21NFC_DM_GETINFO is:
215 * - pipe state (1byte)
216 * - source hid (1byte)
217 * - source gid (1byte)
218 * - destination hid (1byte)
219 * - destination gid (1byte)
221 dm_pipe_info = (struct st_nci_pipe_info *)skb_pipe_info->data;
222 if (dm_pipe_info->dst_gate_id == ST_NCI_APDU_READER_GATE &&
223 dm_pipe_info->src_host_id == ST_NCI_UICC_HOST_ID) {
224 pr_err("Unexpected apdu_reader pipe on host %x\n",
225 dm_pipe_info->src_host_id);
226 kfree_skb(skb_pipe_info);
227 continue;
230 for (j = 3; (j < ARRAY_SIZE(st_nci_gates)) &&
231 (st_nci_gates[j].gate != dm_pipe_info->dst_gate_id); j++)
234 if (j < ARRAY_SIZE(st_nci_gates) &&
235 st_nci_gates[j].gate == dm_pipe_info->dst_gate_id &&
236 ST_NCI_DM_IS_PIPE_OPEN(dm_pipe_info->pipe_state)) {
237 ndev->hci_dev->init_data.gates[j].pipe = pipe_info[2];
239 ndev->hci_dev->gate2pipe[st_nci_gates[j].gate] =
240 pipe_info[2];
241 ndev->hci_dev->pipes[pipe_info[2]].gate =
242 st_nci_gates[j].gate;
243 ndev->hci_dev->pipes[pipe_info[2]].host =
244 dm_pipe_info->src_host_id;
246 kfree_skb(skb_pipe_info);
250 * 3 gates have a well known pipe ID. Only NCI_HCI_LINK_MGMT_GATE
251 * is not yet open at this stage.
253 r = nci_hci_connect_gate(ndev, ST_NCI_HOST_CONTROLLER_ID,
254 NCI_HCI_LINK_MGMT_GATE,
255 NCI_HCI_LINK_MGMT_PIPE);
257 kfree_skb(skb_pipe_list);
258 return r;
260 EXPORT_SYMBOL_GPL(st_nci_hci_load_session);
262 static void st_nci_hci_admin_event_received(struct nci_dev *ndev,
263 u8 event, struct sk_buff *skb)
265 struct st_nci_info *info = nci_get_drvdata(ndev);
267 switch (event) {
268 case ST_NCI_EVT_HOT_PLUG:
269 if (info->se_info.se_active) {
270 if (!ST_NCI_EVT_HOT_PLUG_IS_INHIBITED(skb)) {
271 del_timer_sync(&info->se_info.se_active_timer);
272 info->se_info.se_active = false;
273 complete(&info->se_info.req_completion);
274 } else {
275 mod_timer(&info->se_info.se_active_timer,
276 jiffies +
277 msecs_to_jiffies(ST_NCI_SE_TO_PIPES));
280 break;
281 default:
282 nfc_err(&ndev->nfc_dev->dev, "Unexpected event on admin gate\n");
286 static int st_nci_hci_apdu_reader_event_received(struct nci_dev *ndev,
287 u8 event,
288 struct sk_buff *skb)
290 int r = 0;
291 struct st_nci_info *info = nci_get_drvdata(ndev);
293 pr_debug("apdu reader gate event: %x\n", event);
295 switch (event) {
296 case ST_NCI_EVT_TRANSMIT_DATA:
297 del_timer_sync(&info->se_info.bwi_timer);
298 info->se_info.bwi_active = false;
299 info->se_info.cb(info->se_info.cb_context,
300 skb->data, skb->len, 0);
301 break;
302 case ST_NCI_EVT_WTX_REQUEST:
303 mod_timer(&info->se_info.bwi_timer, jiffies +
304 msecs_to_jiffies(info->se_info.wt_timeout));
305 break;
306 default:
307 nfc_err(&ndev->nfc_dev->dev, "Unexpected event on apdu reader gate\n");
308 return 1;
311 kfree_skb(skb);
312 return r;
316 * Returns:
317 * <= 0: driver handled the event, skb consumed
318 * 1: driver does not handle the event, please do standard processing
320 static int st_nci_hci_connectivity_event_received(struct nci_dev *ndev,
321 u8 host, u8 event,
322 struct sk_buff *skb)
324 int r = 0;
325 struct device *dev = &ndev->nfc_dev->dev;
326 struct nfc_evt_transaction *transaction;
328 pr_debug("connectivity gate event: %x\n", event);
330 switch (event) {
331 case ST_NCI_EVT_CONNECTIVITY:
332 r = nfc_se_connectivity(ndev->nfc_dev, host);
333 break;
334 case ST_NCI_EVT_TRANSACTION:
335 /* According to specification etsi 102 622
336 * 11.2.2.4 EVT_TRANSACTION Table 52
337 * Description Tag Length
338 * AID 81 5 to 16
339 * PARAMETERS 82 0 to 255
341 if (skb->len < NFC_MIN_AID_LENGTH + 2 &&
342 skb->data[0] != NFC_EVT_TRANSACTION_AID_TAG)
343 return -EPROTO;
345 transaction = (struct nfc_evt_transaction *)devm_kzalloc(dev,
346 skb->len - 2, GFP_KERNEL);
347 if (!transaction)
348 return -ENOMEM;
350 transaction->aid_len = skb->data[1];
351 memcpy(transaction->aid, &skb->data[2], transaction->aid_len);
353 /* Check next byte is PARAMETERS tag (82) */
354 if (skb->data[transaction->aid_len + 2] !=
355 NFC_EVT_TRANSACTION_PARAMS_TAG)
356 return -EPROTO;
358 transaction->params_len = skb->data[transaction->aid_len + 3];
359 memcpy(transaction->params, skb->data +
360 transaction->aid_len + 4, transaction->params_len);
362 r = nfc_se_transaction(ndev->nfc_dev, host, transaction);
363 break;
364 default:
365 nfc_err(&ndev->nfc_dev->dev, "Unexpected event on connectivity gate\n");
366 return 1;
368 kfree_skb(skb);
369 return r;
372 void st_nci_hci_event_received(struct nci_dev *ndev, u8 pipe,
373 u8 event, struct sk_buff *skb)
375 u8 gate = ndev->hci_dev->pipes[pipe].gate;
376 u8 host = ndev->hci_dev->pipes[pipe].host;
378 switch (gate) {
379 case NCI_HCI_ADMIN_GATE:
380 st_nci_hci_admin_event_received(ndev, event, skb);
381 break;
382 case ST_NCI_APDU_READER_GATE:
383 st_nci_hci_apdu_reader_event_received(ndev, event, skb);
384 break;
385 case ST_NCI_CONNECTIVITY_GATE:
386 st_nci_hci_connectivity_event_received(ndev, host, event, skb);
387 break;
390 EXPORT_SYMBOL_GPL(st_nci_hci_event_received);
392 void st_nci_hci_cmd_received(struct nci_dev *ndev, u8 pipe, u8 cmd,
393 struct sk_buff *skb)
395 struct st_nci_info *info = nci_get_drvdata(ndev);
396 u8 gate = ndev->hci_dev->pipes[pipe].gate;
398 pr_debug("cmd: %x\n", cmd);
400 switch (cmd) {
401 case NCI_HCI_ANY_OPEN_PIPE:
402 if (gate != ST_NCI_APDU_READER_GATE &&
403 ndev->hci_dev->pipes[pipe].host != ST_NCI_UICC_HOST_ID)
404 ndev->hci_dev->count_pipes++;
406 if (ndev->hci_dev->count_pipes ==
407 ndev->hci_dev->expected_pipes) {
408 del_timer_sync(&info->se_info.se_active_timer);
409 info->se_info.se_active = false;
410 ndev->hci_dev->count_pipes = 0;
411 complete(&info->se_info.req_completion);
413 break;
416 EXPORT_SYMBOL_GPL(st_nci_hci_cmd_received);
418 static int st_nci_control_se(struct nci_dev *ndev, u8 se_idx,
419 u8 state)
421 struct st_nci_info *info = nci_get_drvdata(ndev);
422 int r, i;
423 struct sk_buff *sk_host_list;
424 u8 host_id;
426 switch (se_idx) {
427 case ST_NCI_UICC_HOST_ID:
428 ndev->hci_dev->count_pipes = 0;
429 ndev->hci_dev->expected_pipes = ST_NCI_SE_COUNT_PIPE_UICC;
430 break;
431 case ST_NCI_ESE_HOST_ID:
432 ndev->hci_dev->count_pipes = 0;
433 ndev->hci_dev->expected_pipes = ST_NCI_SE_COUNT_PIPE_EMBEDDED;
434 break;
435 default:
436 return -EINVAL;
440 * Wait for an EVT_HOT_PLUG in order to
441 * retrieve a relevant host list.
443 reinit_completion(&info->se_info.req_completion);
444 r = nci_nfcee_mode_set(ndev, se_idx, state);
445 if (r != NCI_STATUS_OK)
446 return r;
448 mod_timer(&info->se_info.se_active_timer, jiffies +
449 msecs_to_jiffies(ST_NCI_SE_TO_HOT_PLUG));
450 info->se_info.se_active = true;
452 /* Ignore return value and check in any case the host_list */
453 wait_for_completion_interruptible(&info->se_info.req_completion);
455 /* There might be some "collision" after receiving a HOT_PLUG event
456 * This may cause the CLF to not answer to the next hci command.
457 * There is no possible synchronization to prevent this.
458 * Adding a small delay is the only way to solve the issue.
460 if (info->se_info.se_status->is_ese_present &&
461 info->se_info.se_status->is_uicc_present)
462 usleep_range(15000, 20000);
464 r = nci_hci_get_param(ndev, NCI_HCI_ADMIN_GATE,
465 NCI_HCI_ADMIN_PARAM_HOST_LIST, &sk_host_list);
466 if (r != NCI_HCI_ANY_OK)
467 return r;
469 for (i = 0; i < sk_host_list->len &&
470 sk_host_list->data[i] != se_idx; i++)
472 host_id = sk_host_list->data[i];
473 kfree_skb(sk_host_list);
474 if (state == ST_NCI_SE_MODE_ON && host_id == se_idx)
475 return se_idx;
476 else if (state == ST_NCI_SE_MODE_OFF && host_id != se_idx)
477 return se_idx;
479 return -1;
482 int st_nci_disable_se(struct nci_dev *ndev, u32 se_idx)
484 int r;
486 pr_debug("st_nci_disable_se\n");
489 * According to upper layer, se_idx == NFC_SE_UICC when
490 * info->se_info.se_status->is_uicc_enable is true should never happen
491 * Same for eSE.
493 r = st_nci_control_se(ndev, se_idx, ST_NCI_SE_MODE_OFF);
494 if (r < 0) {
495 /* Do best effort to release SWP */
496 if (se_idx == NFC_SE_EMBEDDED) {
497 r = nci_hci_send_event(ndev, ST_NCI_APDU_READER_GATE,
498 ST_NCI_EVT_SE_END_OF_APDU_TRANSFER,
499 NULL, 0);
501 return r;
504 return 0;
506 EXPORT_SYMBOL_GPL(st_nci_disable_se);
508 int st_nci_enable_se(struct nci_dev *ndev, u32 se_idx)
510 int r;
512 pr_debug("st_nci_enable_se\n");
515 * According to upper layer, se_idx == NFC_SE_UICC when
516 * info->se_info.se_status->is_uicc_enable is true should never happen.
517 * Same for eSE.
519 r = st_nci_control_se(ndev, se_idx, ST_NCI_SE_MODE_ON);
520 if (r == ST_NCI_ESE_HOST_ID) {
521 st_nci_se_get_atr(ndev);
522 r = nci_hci_send_event(ndev, ST_NCI_APDU_READER_GATE,
523 ST_NCI_EVT_SE_SOFT_RESET, NULL, 0);
526 if (r < 0) {
528 * The activation procedure failed, the secure element
529 * is not connected. Remove from the list.
531 nfc_remove_se(ndev->nfc_dev, se_idx);
532 return r;
535 return 0;
537 EXPORT_SYMBOL_GPL(st_nci_enable_se);
539 static int st_nci_hci_network_init(struct nci_dev *ndev)
541 struct st_nci_info *info = nci_get_drvdata(ndev);
542 struct core_conn_create_dest_spec_params *dest_params;
543 struct dest_spec_params spec_params;
544 struct nci_conn_info *conn_info;
545 int r, dev_num;
547 dest_params =
548 kzalloc(sizeof(struct core_conn_create_dest_spec_params) +
549 sizeof(struct dest_spec_params), GFP_KERNEL);
550 if (dest_params == NULL) {
551 r = -ENOMEM;
552 goto exit;
555 dest_params->type = NCI_DESTINATION_SPECIFIC_PARAM_NFCEE_TYPE;
556 dest_params->length = sizeof(struct dest_spec_params);
557 spec_params.id = ndev->hci_dev->nfcee_id;
558 spec_params.protocol = NCI_NFCEE_INTERFACE_HCI_ACCESS;
559 memcpy(dest_params->value, &spec_params,
560 sizeof(struct dest_spec_params));
561 r = nci_core_conn_create(ndev, NCI_DESTINATION_NFCEE, 1,
562 sizeof(struct core_conn_create_dest_spec_params) +
563 sizeof(struct dest_spec_params),
564 dest_params);
565 if (r != NCI_STATUS_OK)
566 goto free_dest_params;
568 conn_info = ndev->hci_dev->conn_info;
569 if (!conn_info)
570 goto free_dest_params;
572 ndev->hci_dev->init_data.gate_count = ARRAY_SIZE(st_nci_gates);
573 memcpy(ndev->hci_dev->init_data.gates, st_nci_gates,
574 sizeof(st_nci_gates));
577 * Session id must include the driver name + i2c bus addr
578 * persistent info to discriminate 2 identical chips
580 dev_num = find_first_zero_bit(dev_mask, ST_NCI_NUM_DEVICES);
581 if (dev_num >= ST_NCI_NUM_DEVICES) {
582 r = -ENODEV;
583 goto free_dest_params;
586 scnprintf(ndev->hci_dev->init_data.session_id,
587 sizeof(ndev->hci_dev->init_data.session_id),
588 "%s%2x", "ST21BH", dev_num);
590 r = nci_hci_dev_session_init(ndev);
591 if (r != NCI_HCI_ANY_OK)
592 goto free_dest_params;
595 * In factory mode, we prevent secure elements activation
596 * by disabling nfcee on the current HCI connection id.
597 * HCI will be used here only for proprietary commands.
599 if (test_bit(ST_NCI_FACTORY_MODE, &info->flags))
600 r = nci_nfcee_mode_set(ndev,
601 ndev->hci_dev->conn_info->dest_params->id,
602 NCI_NFCEE_DISABLE);
603 else
604 r = nci_nfcee_mode_set(ndev,
605 ndev->hci_dev->conn_info->dest_params->id,
606 NCI_NFCEE_ENABLE);
608 free_dest_params:
609 kfree(dest_params);
611 exit:
612 return r;
615 int st_nci_discover_se(struct nci_dev *ndev)
617 u8 white_list[2];
618 int r, wl_size = 0;
619 int se_count = 0;
620 struct st_nci_info *info = nci_get_drvdata(ndev);
622 pr_debug("st_nci_discover_se\n");
624 r = st_nci_hci_network_init(ndev);
625 if (r != 0)
626 return r;
628 if (test_bit(ST_NCI_FACTORY_MODE, &info->flags))
629 return 0;
631 if (info->se_info.se_status->is_uicc_present)
632 white_list[wl_size++] = ST_NCI_UICC_HOST_ID;
633 if (info->se_info.se_status->is_ese_present)
634 white_list[wl_size++] = ST_NCI_ESE_HOST_ID;
636 if (wl_size) {
637 r = nci_hci_set_param(ndev, NCI_HCI_ADMIN_GATE,
638 NCI_HCI_ADMIN_PARAM_WHITELIST,
639 white_list, wl_size);
640 if (r != NCI_HCI_ANY_OK)
641 return r;
644 if (info->se_info.se_status->is_uicc_present) {
645 nfc_add_se(ndev->nfc_dev, ST_NCI_UICC_HOST_ID, NFC_SE_UICC);
646 se_count++;
649 if (info->se_info.se_status->is_ese_present) {
650 nfc_add_se(ndev->nfc_dev, ST_NCI_ESE_HOST_ID, NFC_SE_EMBEDDED);
651 se_count++;
654 return !se_count;
656 EXPORT_SYMBOL_GPL(st_nci_discover_se);
658 int st_nci_se_io(struct nci_dev *ndev, u32 se_idx,
659 u8 *apdu, size_t apdu_length,
660 se_io_cb_t cb, void *cb_context)
662 struct st_nci_info *info = nci_get_drvdata(ndev);
664 pr_debug("\n");
666 switch (se_idx) {
667 case ST_NCI_ESE_HOST_ID:
668 info->se_info.cb = cb;
669 info->se_info.cb_context = cb_context;
670 mod_timer(&info->se_info.bwi_timer, jiffies +
671 msecs_to_jiffies(info->se_info.wt_timeout));
672 info->se_info.bwi_active = true;
673 return nci_hci_send_event(ndev, ST_NCI_APDU_READER_GATE,
674 ST_NCI_EVT_TRANSMIT_DATA, apdu,
675 apdu_length);
676 default:
677 return -ENODEV;
680 EXPORT_SYMBOL(st_nci_se_io);
682 static void st_nci_se_wt_timeout(struct timer_list *t)
685 * No answer from the secure element
686 * within the defined timeout.
687 * Let's send a reset request as recovery procedure.
688 * According to the situation, we first try to send a software reset
689 * to the secure element. If the next command is still not
690 * answering in time, we send to the CLF a secure element hardware
691 * reset request.
693 /* hardware reset managed through VCC_UICC_OUT power supply */
694 u8 param = 0x01;
695 struct st_nci_info *info = from_timer(info, t, se_info.bwi_timer);
697 pr_debug("\n");
699 info->se_info.bwi_active = false;
701 if (!info->se_info.xch_error) {
702 info->se_info.xch_error = true;
703 nci_hci_send_event(info->ndlc->ndev, ST_NCI_APDU_READER_GATE,
704 ST_NCI_EVT_SE_SOFT_RESET, NULL, 0);
705 } else {
706 info->se_info.xch_error = false;
707 nci_hci_send_event(info->ndlc->ndev, ST_NCI_DEVICE_MGNT_GATE,
708 ST_NCI_EVT_SE_HARD_RESET, &param, 1);
710 info->se_info.cb(info->se_info.cb_context, NULL, 0, -ETIME);
713 static void st_nci_se_activation_timeout(struct timer_list *t)
715 struct st_nci_info *info = from_timer(info, t,
716 se_info.se_active_timer);
718 pr_debug("\n");
720 info->se_info.se_active = false;
722 complete(&info->se_info.req_completion);
725 int st_nci_se_init(struct nci_dev *ndev, struct st_nci_se_status *se_status)
727 struct st_nci_info *info = nci_get_drvdata(ndev);
729 init_completion(&info->se_info.req_completion);
730 /* initialize timers */
731 timer_setup(&info->se_info.bwi_timer, st_nci_se_wt_timeout, 0);
732 info->se_info.bwi_active = false;
734 timer_setup(&info->se_info.se_active_timer,
735 st_nci_se_activation_timeout, 0);
736 info->se_info.se_active = false;
738 info->se_info.xch_error = false;
740 info->se_info.wt_timeout =
741 ST_NCI_BWI_TO_TIMEOUT(ST_NCI_ATR_DEFAULT_BWI);
743 info->se_info.se_status = se_status;
745 return 0;
747 EXPORT_SYMBOL(st_nci_se_init);
749 void st_nci_se_deinit(struct nci_dev *ndev)
751 struct st_nci_info *info = nci_get_drvdata(ndev);
753 if (info->se_info.bwi_active)
754 del_timer_sync(&info->se_info.bwi_timer);
755 if (info->se_info.se_active)
756 del_timer_sync(&info->se_info.se_active_timer);
758 info->se_info.se_active = false;
759 info->se_info.bwi_active = false;
761 EXPORT_SYMBOL(st_nci_se_deinit);