1 // SPDX-License-Identifier: GPL-2.0-only
3 * The NFC Controller Interface is the communication protocol between an
4 * NFC Controller (NFCC) and a Device Host (DH).
6 * Copyright (C) 2011 Texas Instruments, Inc.
7 * Copyright (C) 2014 Marvell International Ltd.
9 * Written by Ilan Elias <ilane@ti.com>
12 * This file is based on hci_core.c, which was written
13 * by Maxim Krasnyansky.
16 #define pr_fmt(fmt) KBUILD_MODNAME ": %s: " fmt, __func__
18 #include <linux/module.h>
19 #include <linux/kernel.h>
20 #include <linux/types.h>
21 #include <linux/workqueue.h>
22 #include <linux/completion.h>
23 #include <linux/export.h>
24 #include <linux/sched.h>
25 #include <linux/bitops.h>
26 #include <linux/skbuff.h>
27 #include <linux/kcov.h>
30 #include <net/nfc/nci.h>
31 #include <net/nfc/nci_core.h>
32 #include <linux/nfc.h>
34 struct core_conn_create_data {
36 struct nci_core_conn_create_cmd *cmd;
39 static void nci_cmd_work(struct work_struct *work);
40 static void nci_rx_work(struct work_struct *work);
41 static void nci_tx_work(struct work_struct *work);
43 struct nci_conn_info *nci_get_conn_info_by_conn_id(struct nci_dev *ndev,
46 struct nci_conn_info *conn_info;
48 list_for_each_entry(conn_info, &ndev->conn_info_list, list) {
49 if (conn_info->conn_id == conn_id)
56 int nci_get_conn_info_by_dest_type_params(struct nci_dev *ndev, u8 dest_type,
57 const struct dest_spec_params *params)
59 const struct nci_conn_info *conn_info;
61 list_for_each_entry(conn_info, &ndev->conn_info_list, list) {
62 if (conn_info->dest_type == dest_type) {
64 return conn_info->conn_id;
66 if (params->id == conn_info->dest_params->id &&
67 params->protocol == conn_info->dest_params->protocol)
68 return conn_info->conn_id;
74 EXPORT_SYMBOL(nci_get_conn_info_by_dest_type_params);
76 /* ---- NCI requests ---- */
78 void nci_req_complete(struct nci_dev *ndev, int result)
80 if (ndev->req_status == NCI_REQ_PEND) {
81 ndev->req_result = result;
82 ndev->req_status = NCI_REQ_DONE;
83 complete(&ndev->req_completion);
86 EXPORT_SYMBOL(nci_req_complete);
88 static void nci_req_cancel(struct nci_dev *ndev, int err)
90 if (ndev->req_status == NCI_REQ_PEND) {
91 ndev->req_result = err;
92 ndev->req_status = NCI_REQ_CANCELED;
93 complete(&ndev->req_completion);
97 /* Execute request and wait for completion. */
98 static int __nci_request(struct nci_dev *ndev,
99 void (*req)(struct nci_dev *ndev, const void *opt),
100 const void *opt, __u32 timeout)
105 ndev->req_status = NCI_REQ_PEND;
107 reinit_completion(&ndev->req_completion);
110 wait_for_completion_interruptible_timeout(&ndev->req_completion,
113 pr_debug("wait_for_completion return %ld\n", completion_rc);
115 if (completion_rc > 0) {
116 switch (ndev->req_status) {
118 rc = nci_to_errno(ndev->req_result);
121 case NCI_REQ_CANCELED:
122 rc = -ndev->req_result;
130 pr_err("wait_for_completion_interruptible_timeout failed %ld\n",
133 rc = ((completion_rc == 0) ? (-ETIMEDOUT) : (completion_rc));
136 ndev->req_status = ndev->req_result = 0;
141 inline int nci_request(struct nci_dev *ndev,
142 void (*req)(struct nci_dev *ndev,
144 const void *opt, __u32 timeout)
148 /* Serialize all requests */
149 mutex_lock(&ndev->req_lock);
150 /* check the state after obtaing the lock against any races
151 * from nci_close_device when the device gets removed.
153 if (test_bit(NCI_UP, &ndev->flags))
154 rc = __nci_request(ndev, req, opt, timeout);
157 mutex_unlock(&ndev->req_lock);
162 static void nci_reset_req(struct nci_dev *ndev, const void *opt)
164 struct nci_core_reset_cmd cmd;
166 cmd.reset_type = NCI_RESET_TYPE_RESET_CONFIG;
167 nci_send_cmd(ndev, NCI_OP_CORE_RESET_CMD, 1, &cmd);
170 static void nci_init_req(struct nci_dev *ndev, const void *opt)
175 plen = sizeof(struct nci_core_init_v2_cmd);
177 nci_send_cmd(ndev, NCI_OP_CORE_INIT_CMD, plen, opt);
180 static void nci_init_complete_req(struct nci_dev *ndev, const void *opt)
182 struct nci_rf_disc_map_cmd cmd;
183 struct disc_map_config *cfg = cmd.mapping_configs;
184 __u8 *num = &cmd.num_mapping_configs;
187 /* set rf mapping configurations */
190 /* by default mapping is set to NCI_RF_INTERFACE_FRAME */
191 for (i = 0; i < ndev->num_supported_rf_interfaces; i++) {
192 if (ndev->supported_rf_interfaces[i] ==
193 NCI_RF_INTERFACE_ISO_DEP) {
194 cfg[*num].rf_protocol = NCI_RF_PROTOCOL_ISO_DEP;
195 cfg[*num].mode = NCI_DISC_MAP_MODE_POLL |
196 NCI_DISC_MAP_MODE_LISTEN;
197 cfg[*num].rf_interface = NCI_RF_INTERFACE_ISO_DEP;
199 } else if (ndev->supported_rf_interfaces[i] ==
200 NCI_RF_INTERFACE_NFC_DEP) {
201 cfg[*num].rf_protocol = NCI_RF_PROTOCOL_NFC_DEP;
202 cfg[*num].mode = NCI_DISC_MAP_MODE_POLL |
203 NCI_DISC_MAP_MODE_LISTEN;
204 cfg[*num].rf_interface = NCI_RF_INTERFACE_NFC_DEP;
208 if (*num == NCI_MAX_NUM_MAPPING_CONFIGS)
212 nci_send_cmd(ndev, NCI_OP_RF_DISCOVER_MAP_CMD,
213 (1 + ((*num) * sizeof(struct disc_map_config))), &cmd);
216 struct nci_set_config_param {
222 static void nci_set_config_req(struct nci_dev *ndev, const void *opt)
224 const struct nci_set_config_param *param = opt;
225 struct nci_core_set_config_cmd cmd;
227 BUG_ON(param->len > NCI_MAX_PARAM_LEN);
230 cmd.param.id = param->id;
231 cmd.param.len = param->len;
232 memcpy(cmd.param.val, param->val, param->len);
234 nci_send_cmd(ndev, NCI_OP_CORE_SET_CONFIG_CMD, (3 + param->len), &cmd);
237 struct nci_rf_discover_param {
242 static void nci_rf_discover_req(struct nci_dev *ndev, const void *opt)
244 const struct nci_rf_discover_param *param = opt;
245 struct nci_rf_disc_cmd cmd;
247 cmd.num_disc_configs = 0;
249 if ((cmd.num_disc_configs < NCI_MAX_NUM_RF_CONFIGS) &&
250 (param->im_protocols & NFC_PROTO_JEWEL_MASK ||
251 param->im_protocols & NFC_PROTO_MIFARE_MASK ||
252 param->im_protocols & NFC_PROTO_ISO14443_MASK ||
253 param->im_protocols & NFC_PROTO_NFC_DEP_MASK)) {
254 cmd.disc_configs[cmd.num_disc_configs].rf_tech_and_mode =
255 NCI_NFC_A_PASSIVE_POLL_MODE;
256 cmd.disc_configs[cmd.num_disc_configs].frequency = 1;
257 cmd.num_disc_configs++;
260 if ((cmd.num_disc_configs < NCI_MAX_NUM_RF_CONFIGS) &&
261 (param->im_protocols & NFC_PROTO_ISO14443_B_MASK)) {
262 cmd.disc_configs[cmd.num_disc_configs].rf_tech_and_mode =
263 NCI_NFC_B_PASSIVE_POLL_MODE;
264 cmd.disc_configs[cmd.num_disc_configs].frequency = 1;
265 cmd.num_disc_configs++;
268 if ((cmd.num_disc_configs < NCI_MAX_NUM_RF_CONFIGS) &&
269 (param->im_protocols & NFC_PROTO_FELICA_MASK ||
270 param->im_protocols & NFC_PROTO_NFC_DEP_MASK)) {
271 cmd.disc_configs[cmd.num_disc_configs].rf_tech_and_mode =
272 NCI_NFC_F_PASSIVE_POLL_MODE;
273 cmd.disc_configs[cmd.num_disc_configs].frequency = 1;
274 cmd.num_disc_configs++;
277 if ((cmd.num_disc_configs < NCI_MAX_NUM_RF_CONFIGS) &&
278 (param->im_protocols & NFC_PROTO_ISO15693_MASK)) {
279 cmd.disc_configs[cmd.num_disc_configs].rf_tech_and_mode =
280 NCI_NFC_V_PASSIVE_POLL_MODE;
281 cmd.disc_configs[cmd.num_disc_configs].frequency = 1;
282 cmd.num_disc_configs++;
285 if ((cmd.num_disc_configs < NCI_MAX_NUM_RF_CONFIGS - 1) &&
286 (param->tm_protocols & NFC_PROTO_NFC_DEP_MASK)) {
287 cmd.disc_configs[cmd.num_disc_configs].rf_tech_and_mode =
288 NCI_NFC_A_PASSIVE_LISTEN_MODE;
289 cmd.disc_configs[cmd.num_disc_configs].frequency = 1;
290 cmd.num_disc_configs++;
291 cmd.disc_configs[cmd.num_disc_configs].rf_tech_and_mode =
292 NCI_NFC_F_PASSIVE_LISTEN_MODE;
293 cmd.disc_configs[cmd.num_disc_configs].frequency = 1;
294 cmd.num_disc_configs++;
297 nci_send_cmd(ndev, NCI_OP_RF_DISCOVER_CMD,
298 (1 + (cmd.num_disc_configs * sizeof(struct disc_config))),
302 struct nci_rf_discover_select_param {
303 __u8 rf_discovery_id;
307 static void nci_rf_discover_select_req(struct nci_dev *ndev, const void *opt)
309 const struct nci_rf_discover_select_param *param = opt;
310 struct nci_rf_discover_select_cmd cmd;
312 cmd.rf_discovery_id = param->rf_discovery_id;
313 cmd.rf_protocol = param->rf_protocol;
315 switch (cmd.rf_protocol) {
316 case NCI_RF_PROTOCOL_ISO_DEP:
317 cmd.rf_interface = NCI_RF_INTERFACE_ISO_DEP;
320 case NCI_RF_PROTOCOL_NFC_DEP:
321 cmd.rf_interface = NCI_RF_INTERFACE_NFC_DEP;
325 cmd.rf_interface = NCI_RF_INTERFACE_FRAME;
329 nci_send_cmd(ndev, NCI_OP_RF_DISCOVER_SELECT_CMD,
330 sizeof(struct nci_rf_discover_select_cmd), &cmd);
333 static void nci_rf_deactivate_req(struct nci_dev *ndev, const void *opt)
335 struct nci_rf_deactivate_cmd cmd;
337 cmd.type = (unsigned long)opt;
339 nci_send_cmd(ndev, NCI_OP_RF_DEACTIVATE_CMD,
340 sizeof(struct nci_rf_deactivate_cmd), &cmd);
343 struct nci_cmd_param {
349 static void nci_generic_req(struct nci_dev *ndev, const void *opt)
351 const struct nci_cmd_param *param = opt;
353 nci_send_cmd(ndev, param->opcode, param->len, param->payload);
356 int nci_prop_cmd(struct nci_dev *ndev, __u8 oid, size_t len, const __u8 *payload)
358 struct nci_cmd_param param;
360 param.opcode = nci_opcode_pack(NCI_GID_PROPRIETARY, oid);
362 param.payload = payload;
364 return __nci_request(ndev, nci_generic_req, ¶m,
365 msecs_to_jiffies(NCI_CMD_TIMEOUT));
367 EXPORT_SYMBOL(nci_prop_cmd);
369 int nci_core_cmd(struct nci_dev *ndev, __u16 opcode, size_t len,
372 struct nci_cmd_param param;
374 param.opcode = opcode;
376 param.payload = payload;
378 return __nci_request(ndev, nci_generic_req, ¶m,
379 msecs_to_jiffies(NCI_CMD_TIMEOUT));
381 EXPORT_SYMBOL(nci_core_cmd);
383 int nci_core_reset(struct nci_dev *ndev)
385 return __nci_request(ndev, nci_reset_req, (void *)0,
386 msecs_to_jiffies(NCI_RESET_TIMEOUT));
388 EXPORT_SYMBOL(nci_core_reset);
390 int nci_core_init(struct nci_dev *ndev)
392 return __nci_request(ndev, nci_init_req, (void *)0,
393 msecs_to_jiffies(NCI_INIT_TIMEOUT));
395 EXPORT_SYMBOL(nci_core_init);
397 struct nci_loopback_data {
399 struct sk_buff *data;
402 static void nci_send_data_req(struct nci_dev *ndev, const void *opt)
404 const struct nci_loopback_data *data = opt;
406 nci_send_data(ndev, data->conn_id, data->data);
409 static void nci_nfcc_loopback_cb(void *context, struct sk_buff *skb, int err)
411 struct nci_dev *ndev = (struct nci_dev *)context;
412 struct nci_conn_info *conn_info;
414 conn_info = nci_get_conn_info_by_conn_id(ndev, ndev->cur_conn_id);
416 nci_req_complete(ndev, NCI_STATUS_REJECTED);
420 conn_info->rx_skb = skb;
422 nci_req_complete(ndev, NCI_STATUS_OK);
425 int nci_nfcc_loopback(struct nci_dev *ndev, const void *data, size_t data_len,
426 struct sk_buff **resp)
429 struct nci_loopback_data loopback_data;
430 struct nci_conn_info *conn_info;
432 int conn_id = nci_get_conn_info_by_dest_type_params(ndev,
433 NCI_DESTINATION_NFCC_LOOPBACK, NULL);
436 r = nci_core_conn_create(ndev, NCI_DESTINATION_NFCC_LOOPBACK,
438 if (r != NCI_STATUS_OK)
441 conn_id = nci_get_conn_info_by_dest_type_params(ndev,
442 NCI_DESTINATION_NFCC_LOOPBACK,
446 conn_info = nci_get_conn_info_by_conn_id(ndev, conn_id);
450 /* store cb and context to be used on receiving data */
451 conn_info->data_exchange_cb = nci_nfcc_loopback_cb;
452 conn_info->data_exchange_cb_context = ndev;
454 skb = nci_skb_alloc(ndev, NCI_DATA_HDR_SIZE + data_len, GFP_KERNEL);
458 skb_reserve(skb, NCI_DATA_HDR_SIZE);
459 skb_put_data(skb, data, data_len);
461 loopback_data.conn_id = conn_id;
462 loopback_data.data = skb;
464 ndev->cur_conn_id = conn_id;
465 r = nci_request(ndev, nci_send_data_req, &loopback_data,
466 msecs_to_jiffies(NCI_DATA_TIMEOUT));
467 if (r == NCI_STATUS_OK && resp)
468 *resp = conn_info->rx_skb;
472 EXPORT_SYMBOL(nci_nfcc_loopback);
474 static int nci_open_device(struct nci_dev *ndev)
478 mutex_lock(&ndev->req_lock);
480 if (test_bit(NCI_UNREG, &ndev->flags)) {
485 if (test_bit(NCI_UP, &ndev->flags)) {
490 if (ndev->ops->open(ndev)) {
495 atomic_set(&ndev->cmd_cnt, 1);
497 set_bit(NCI_INIT, &ndev->flags);
500 rc = ndev->ops->init(ndev);
503 rc = __nci_request(ndev, nci_reset_req, (void *)0,
504 msecs_to_jiffies(NCI_RESET_TIMEOUT));
507 if (!rc && ndev->ops->setup) {
508 rc = ndev->ops->setup(ndev);
512 struct nci_core_init_v2_cmd nci_init_v2_cmd = {
513 .feature1 = NCI_FEATURE_DISABLE,
514 .feature2 = NCI_FEATURE_DISABLE
516 const void *opt = NULL;
518 if (ndev->nci_ver & NCI_VER_2_MASK)
519 opt = &nci_init_v2_cmd;
521 rc = __nci_request(ndev, nci_init_req, opt,
522 msecs_to_jiffies(NCI_INIT_TIMEOUT));
525 if (!rc && ndev->ops->post_setup)
526 rc = ndev->ops->post_setup(ndev);
529 rc = __nci_request(ndev, nci_init_complete_req, (void *)0,
530 msecs_to_jiffies(NCI_INIT_TIMEOUT));
533 clear_bit(NCI_INIT, &ndev->flags);
536 set_bit(NCI_UP, &ndev->flags);
537 nci_clear_target_list(ndev);
538 atomic_set(&ndev->state, NCI_IDLE);
540 /* Init failed, cleanup */
541 skb_queue_purge(&ndev->cmd_q);
542 skb_queue_purge(&ndev->rx_q);
543 skb_queue_purge(&ndev->tx_q);
545 ndev->ops->close(ndev);
546 ndev->flags &= BIT(NCI_UNREG);
550 mutex_unlock(&ndev->req_lock);
554 static int nci_close_device(struct nci_dev *ndev)
556 nci_req_cancel(ndev, ENODEV);
558 /* This mutex needs to be held as a barrier for
559 * caller nci_unregister_device
561 mutex_lock(&ndev->req_lock);
563 if (!test_and_clear_bit(NCI_UP, &ndev->flags)) {
564 /* Need to flush the cmd wq in case
565 * there is a queued/running cmd_work
567 flush_workqueue(ndev->cmd_wq);
568 del_timer_sync(&ndev->cmd_timer);
569 del_timer_sync(&ndev->data_timer);
570 mutex_unlock(&ndev->req_lock);
574 /* Drop RX and TX queues */
575 skb_queue_purge(&ndev->rx_q);
576 skb_queue_purge(&ndev->tx_q);
578 /* Flush RX and TX wq */
579 flush_workqueue(ndev->rx_wq);
580 flush_workqueue(ndev->tx_wq);
583 skb_queue_purge(&ndev->cmd_q);
584 atomic_set(&ndev->cmd_cnt, 1);
586 set_bit(NCI_INIT, &ndev->flags);
587 __nci_request(ndev, nci_reset_req, (void *)0,
588 msecs_to_jiffies(NCI_RESET_TIMEOUT));
590 /* After this point our queues are empty
591 * and no works are scheduled.
593 ndev->ops->close(ndev);
595 clear_bit(NCI_INIT, &ndev->flags);
598 flush_workqueue(ndev->cmd_wq);
600 del_timer_sync(&ndev->cmd_timer);
602 /* Clear flags except NCI_UNREG */
603 ndev->flags &= BIT(NCI_UNREG);
605 mutex_unlock(&ndev->req_lock);
610 /* NCI command timer function */
611 static void nci_cmd_timer(struct timer_list *t)
613 struct nci_dev *ndev = from_timer(ndev, t, cmd_timer);
615 atomic_set(&ndev->cmd_cnt, 1);
616 queue_work(ndev->cmd_wq, &ndev->cmd_work);
619 /* NCI data exchange timer function */
620 static void nci_data_timer(struct timer_list *t)
622 struct nci_dev *ndev = from_timer(ndev, t, data_timer);
624 set_bit(NCI_DATA_EXCHANGE_TO, &ndev->flags);
625 queue_work(ndev->rx_wq, &ndev->rx_work);
628 static int nci_dev_up(struct nfc_dev *nfc_dev)
630 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
632 return nci_open_device(ndev);
635 static int nci_dev_down(struct nfc_dev *nfc_dev)
637 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
639 return nci_close_device(ndev);
642 int nci_set_config(struct nci_dev *ndev, __u8 id, size_t len, const __u8 *val)
644 struct nci_set_config_param param;
653 return __nci_request(ndev, nci_set_config_req, ¶m,
654 msecs_to_jiffies(NCI_SET_CONFIG_TIMEOUT));
656 EXPORT_SYMBOL(nci_set_config);
658 static void nci_nfcee_discover_req(struct nci_dev *ndev, const void *opt)
660 struct nci_nfcee_discover_cmd cmd;
661 __u8 action = (unsigned long)opt;
663 cmd.discovery_action = action;
665 nci_send_cmd(ndev, NCI_OP_NFCEE_DISCOVER_CMD, 1, &cmd);
668 int nci_nfcee_discover(struct nci_dev *ndev, u8 action)
670 unsigned long opt = action;
672 return __nci_request(ndev, nci_nfcee_discover_req, (void *)opt,
673 msecs_to_jiffies(NCI_CMD_TIMEOUT));
675 EXPORT_SYMBOL(nci_nfcee_discover);
677 static void nci_nfcee_mode_set_req(struct nci_dev *ndev, const void *opt)
679 const struct nci_nfcee_mode_set_cmd *cmd = opt;
681 nci_send_cmd(ndev, NCI_OP_NFCEE_MODE_SET_CMD,
682 sizeof(struct nci_nfcee_mode_set_cmd), cmd);
685 int nci_nfcee_mode_set(struct nci_dev *ndev, u8 nfcee_id, u8 nfcee_mode)
687 struct nci_nfcee_mode_set_cmd cmd;
689 cmd.nfcee_id = nfcee_id;
690 cmd.nfcee_mode = nfcee_mode;
692 return __nci_request(ndev, nci_nfcee_mode_set_req, &cmd,
693 msecs_to_jiffies(NCI_CMD_TIMEOUT));
695 EXPORT_SYMBOL(nci_nfcee_mode_set);
697 static void nci_core_conn_create_req(struct nci_dev *ndev, const void *opt)
699 const struct core_conn_create_data *data = opt;
701 nci_send_cmd(ndev, NCI_OP_CORE_CONN_CREATE_CMD, data->length, data->cmd);
704 int nci_core_conn_create(struct nci_dev *ndev, u8 destination_type,
705 u8 number_destination_params,
707 const struct core_conn_create_dest_spec_params *params)
710 struct nci_core_conn_create_cmd *cmd;
711 struct core_conn_create_data data;
713 data.length = params_len + sizeof(struct nci_core_conn_create_cmd);
714 cmd = kzalloc(data.length, GFP_KERNEL);
718 cmd->destination_type = destination_type;
719 cmd->number_destination_params = number_destination_params;
724 memcpy(cmd->params, params, params_len);
725 if (params->length > 0)
726 memcpy(&ndev->cur_params,
727 ¶ms->value[DEST_SPEC_PARAMS_ID_INDEX],
728 sizeof(struct dest_spec_params));
730 ndev->cur_params.id = 0;
732 ndev->cur_params.id = 0;
734 ndev->cur_dest_type = destination_type;
736 r = __nci_request(ndev, nci_core_conn_create_req, &data,
737 msecs_to_jiffies(NCI_CMD_TIMEOUT));
741 EXPORT_SYMBOL(nci_core_conn_create);
743 static void nci_core_conn_close_req(struct nci_dev *ndev, const void *opt)
745 __u8 conn_id = (unsigned long)opt;
747 nci_send_cmd(ndev, NCI_OP_CORE_CONN_CLOSE_CMD, 1, &conn_id);
750 int nci_core_conn_close(struct nci_dev *ndev, u8 conn_id)
752 unsigned long opt = conn_id;
754 ndev->cur_conn_id = conn_id;
755 return __nci_request(ndev, nci_core_conn_close_req, (void *)opt,
756 msecs_to_jiffies(NCI_CMD_TIMEOUT));
758 EXPORT_SYMBOL(nci_core_conn_close);
760 static int nci_set_local_general_bytes(struct nfc_dev *nfc_dev)
762 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
763 struct nci_set_config_param param;
766 param.val = nfc_get_local_general_bytes(nfc_dev, ¶m.len);
767 if ((param.val == NULL) || (param.len == 0))
770 if (param.len > NFC_MAX_GT_LEN)
773 param.id = NCI_PN_ATR_REQ_GEN_BYTES;
775 rc = nci_request(ndev, nci_set_config_req, ¶m,
776 msecs_to_jiffies(NCI_SET_CONFIG_TIMEOUT));
780 param.id = NCI_LN_ATR_RES_GEN_BYTES;
782 return nci_request(ndev, nci_set_config_req, ¶m,
783 msecs_to_jiffies(NCI_SET_CONFIG_TIMEOUT));
786 static int nci_set_listen_parameters(struct nfc_dev *nfc_dev)
788 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
792 val = NCI_LA_SEL_INFO_NFC_DEP_MASK;
794 rc = nci_set_config(ndev, NCI_LA_SEL_INFO, 1, &val);
798 val = NCI_LF_PROTOCOL_TYPE_NFC_DEP_MASK;
800 rc = nci_set_config(ndev, NCI_LF_PROTOCOL_TYPE, 1, &val);
804 val = NCI_LF_CON_BITR_F_212 | NCI_LF_CON_BITR_F_424;
806 return nci_set_config(ndev, NCI_LF_CON_BITR_F, 1, &val);
809 static int nci_start_poll(struct nfc_dev *nfc_dev,
810 __u32 im_protocols, __u32 tm_protocols)
812 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
813 struct nci_rf_discover_param param;
816 if ((atomic_read(&ndev->state) == NCI_DISCOVERY) ||
817 (atomic_read(&ndev->state) == NCI_W4_ALL_DISCOVERIES)) {
818 pr_err("unable to start poll, since poll is already active\n");
822 if (ndev->target_active_prot) {
823 pr_err("there is an active target\n");
827 if ((atomic_read(&ndev->state) == NCI_W4_HOST_SELECT) ||
828 (atomic_read(&ndev->state) == NCI_POLL_ACTIVE)) {
829 pr_debug("target active or w4 select, implicitly deactivate\n");
831 rc = nci_request(ndev, nci_rf_deactivate_req,
832 (void *)NCI_DEACTIVATE_TYPE_IDLE_MODE,
833 msecs_to_jiffies(NCI_RF_DEACTIVATE_TIMEOUT));
838 if ((im_protocols | tm_protocols) & NFC_PROTO_NFC_DEP_MASK) {
839 rc = nci_set_local_general_bytes(nfc_dev);
841 pr_err("failed to set local general bytes\n");
846 if (tm_protocols & NFC_PROTO_NFC_DEP_MASK) {
847 rc = nci_set_listen_parameters(nfc_dev);
849 pr_err("failed to set listen parameters\n");
852 param.im_protocols = im_protocols;
853 param.tm_protocols = tm_protocols;
854 rc = nci_request(ndev, nci_rf_discover_req, ¶m,
855 msecs_to_jiffies(NCI_RF_DISC_TIMEOUT));
858 ndev->poll_prots = im_protocols;
863 static void nci_stop_poll(struct nfc_dev *nfc_dev)
865 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
867 if ((atomic_read(&ndev->state) != NCI_DISCOVERY) &&
868 (atomic_read(&ndev->state) != NCI_W4_ALL_DISCOVERIES)) {
869 pr_err("unable to stop poll, since poll is not active\n");
873 nci_request(ndev, nci_rf_deactivate_req,
874 (void *)NCI_DEACTIVATE_TYPE_IDLE_MODE,
875 msecs_to_jiffies(NCI_RF_DEACTIVATE_TIMEOUT));
878 static int nci_activate_target(struct nfc_dev *nfc_dev,
879 struct nfc_target *target, __u32 protocol)
881 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
882 struct nci_rf_discover_select_param param;
883 const struct nfc_target *nci_target = NULL;
887 pr_debug("target_idx %d, protocol 0x%x\n", target->idx, protocol);
889 if ((atomic_read(&ndev->state) != NCI_W4_HOST_SELECT) &&
890 (atomic_read(&ndev->state) != NCI_POLL_ACTIVE)) {
891 pr_err("there is no available target to activate\n");
895 if (ndev->target_active_prot) {
896 pr_err("there is already an active target\n");
900 for (i = 0; i < ndev->n_targets; i++) {
901 if (ndev->targets[i].idx == target->idx) {
902 nci_target = &ndev->targets[i];
908 pr_err("unable to find the selected target\n");
912 if (protocol >= NFC_PROTO_MAX) {
913 pr_err("the requested nfc protocol is invalid\n");
917 if (!(nci_target->supported_protocols & (1 << protocol))) {
918 pr_err("target does not support the requested protocol 0x%x\n",
923 if (atomic_read(&ndev->state) == NCI_W4_HOST_SELECT) {
924 param.rf_discovery_id = nci_target->logical_idx;
926 if (protocol == NFC_PROTO_JEWEL)
927 param.rf_protocol = NCI_RF_PROTOCOL_T1T;
928 else if (protocol == NFC_PROTO_MIFARE)
929 param.rf_protocol = NCI_RF_PROTOCOL_T2T;
930 else if (protocol == NFC_PROTO_FELICA)
931 param.rf_protocol = NCI_RF_PROTOCOL_T3T;
932 else if (protocol == NFC_PROTO_ISO14443 ||
933 protocol == NFC_PROTO_ISO14443_B)
934 param.rf_protocol = NCI_RF_PROTOCOL_ISO_DEP;
936 param.rf_protocol = NCI_RF_PROTOCOL_NFC_DEP;
938 rc = nci_request(ndev, nci_rf_discover_select_req, ¶m,
939 msecs_to_jiffies(NCI_RF_DISC_SELECT_TIMEOUT));
943 ndev->target_active_prot = protocol;
948 static void nci_deactivate_target(struct nfc_dev *nfc_dev,
949 struct nfc_target *target,
952 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
953 unsigned long nci_mode = NCI_DEACTIVATE_TYPE_IDLE_MODE;
955 if (!ndev->target_active_prot) {
956 pr_err("unable to deactivate target, no active target\n");
960 ndev->target_active_prot = 0;
963 case NFC_TARGET_MODE_SLEEP:
964 nci_mode = NCI_DEACTIVATE_TYPE_SLEEP_MODE;
968 if (atomic_read(&ndev->state) == NCI_POLL_ACTIVE) {
969 nci_request(ndev, nci_rf_deactivate_req, (void *)nci_mode,
970 msecs_to_jiffies(NCI_RF_DEACTIVATE_TIMEOUT));
974 static int nci_dep_link_up(struct nfc_dev *nfc_dev, struct nfc_target *target,
975 __u8 comm_mode, __u8 *gb, size_t gb_len)
977 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
980 pr_debug("target_idx %d, comm_mode %d\n", target->idx, comm_mode);
982 rc = nci_activate_target(nfc_dev, target, NFC_PROTO_NFC_DEP);
986 rc = nfc_set_remote_general_bytes(nfc_dev, ndev->remote_gb,
987 ndev->remote_gb_len);
989 rc = nfc_dep_link_is_up(nfc_dev, target->idx, NFC_COMM_PASSIVE,
995 static int nci_dep_link_down(struct nfc_dev *nfc_dev)
997 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
1000 if (nfc_dev->rf_mode == NFC_RF_INITIATOR) {
1001 nci_deactivate_target(nfc_dev, NULL, NCI_DEACTIVATE_TYPE_IDLE_MODE);
1003 if (atomic_read(&ndev->state) == NCI_LISTEN_ACTIVE ||
1004 atomic_read(&ndev->state) == NCI_DISCOVERY) {
1005 nci_request(ndev, nci_rf_deactivate_req, (void *)0,
1006 msecs_to_jiffies(NCI_RF_DEACTIVATE_TIMEOUT));
1009 rc = nfc_tm_deactivated(nfc_dev);
1011 pr_err("error when signaling tm deactivation\n");
1018 static int nci_transceive(struct nfc_dev *nfc_dev, struct nfc_target *target,
1019 struct sk_buff *skb,
1020 data_exchange_cb_t cb, void *cb_context)
1022 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
1024 struct nci_conn_info *conn_info;
1026 conn_info = ndev->rf_conn_info;
1030 pr_debug("target_idx %d, len %d\n", target->idx, skb->len);
1032 if (!ndev->target_active_prot) {
1033 pr_err("unable to exchange data, no active target\n");
1037 if (test_and_set_bit(NCI_DATA_EXCHANGE, &ndev->flags))
1040 /* store cb and context to be used on receiving data */
1041 conn_info->data_exchange_cb = cb;
1042 conn_info->data_exchange_cb_context = cb_context;
1044 rc = nci_send_data(ndev, NCI_STATIC_RF_CONN_ID, skb);
1046 clear_bit(NCI_DATA_EXCHANGE, &ndev->flags);
1051 static int nci_tm_send(struct nfc_dev *nfc_dev, struct sk_buff *skb)
1053 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
1056 rc = nci_send_data(ndev, NCI_STATIC_RF_CONN_ID, skb);
1058 pr_err("unable to send data\n");
1063 static int nci_enable_se(struct nfc_dev *nfc_dev, u32 se_idx)
1065 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
1067 if (ndev->ops->enable_se)
1068 return ndev->ops->enable_se(ndev, se_idx);
1073 static int nci_disable_se(struct nfc_dev *nfc_dev, u32 se_idx)
1075 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
1077 if (ndev->ops->disable_se)
1078 return ndev->ops->disable_se(ndev, se_idx);
1083 static int nci_discover_se(struct nfc_dev *nfc_dev)
1086 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
1088 if (ndev->ops->discover_se) {
1089 r = nci_nfcee_discover(ndev, NCI_NFCEE_DISCOVERY_ACTION_ENABLE);
1090 if (r != NCI_STATUS_OK)
1093 return ndev->ops->discover_se(ndev);
1099 static int nci_se_io(struct nfc_dev *nfc_dev, u32 se_idx,
1100 u8 *apdu, size_t apdu_length,
1101 se_io_cb_t cb, void *cb_context)
1103 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
1105 if (ndev->ops->se_io)
1106 return ndev->ops->se_io(ndev, se_idx, apdu,
1107 apdu_length, cb, cb_context);
1112 static int nci_fw_download(struct nfc_dev *nfc_dev, const char *firmware_name)
1114 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
1116 if (!ndev->ops->fw_download)
1119 return ndev->ops->fw_download(ndev, firmware_name);
1122 static const struct nfc_ops nci_nfc_ops = {
1123 .dev_up = nci_dev_up,
1124 .dev_down = nci_dev_down,
1125 .start_poll = nci_start_poll,
1126 .stop_poll = nci_stop_poll,
1127 .dep_link_up = nci_dep_link_up,
1128 .dep_link_down = nci_dep_link_down,
1129 .activate_target = nci_activate_target,
1130 .deactivate_target = nci_deactivate_target,
1131 .im_transceive = nci_transceive,
1132 .tm_send = nci_tm_send,
1133 .enable_se = nci_enable_se,
1134 .disable_se = nci_disable_se,
1135 .discover_se = nci_discover_se,
1137 .fw_download = nci_fw_download,
1140 /* ---- Interface to NCI drivers ---- */
1142 * nci_allocate_device - allocate a new nci device
1144 * @ops: device operations
1145 * @supported_protocols: NFC protocols supported by the device
1146 * @tx_headroom: Reserved space at beginning of skb
1147 * @tx_tailroom: Reserved space at end of skb
1149 struct nci_dev *nci_allocate_device(const struct nci_ops *ops,
1150 __u32 supported_protocols,
1151 int tx_headroom, int tx_tailroom)
1153 struct nci_dev *ndev;
1155 pr_debug("supported_protocols 0x%x\n", supported_protocols);
1157 if (!ops->open || !ops->close || !ops->send)
1160 if (!supported_protocols)
1163 ndev = kzalloc(sizeof(struct nci_dev), GFP_KERNEL);
1169 if (ops->n_prop_ops > NCI_MAX_PROPRIETARY_CMD) {
1170 pr_err("Too many proprietary commands: %zd\n",
1175 ndev->tx_headroom = tx_headroom;
1176 ndev->tx_tailroom = tx_tailroom;
1177 init_completion(&ndev->req_completion);
1179 ndev->nfc_dev = nfc_allocate_device(&nci_nfc_ops,
1180 supported_protocols,
1181 tx_headroom + NCI_DATA_HDR_SIZE,
1186 ndev->hci_dev = nci_hci_allocate(ndev);
1190 nfc_set_drvdata(ndev->nfc_dev, ndev);
1195 nfc_free_device(ndev->nfc_dev);
1200 EXPORT_SYMBOL(nci_allocate_device);
1203 * nci_free_device - deallocate nci device
1205 * @ndev: The nci device to deallocate
1207 void nci_free_device(struct nci_dev *ndev)
1209 nfc_free_device(ndev->nfc_dev);
1210 nci_hci_deallocate(ndev);
1213 EXPORT_SYMBOL(nci_free_device);
1216 * nci_register_device - register a nci device in the nfc subsystem
1218 * @ndev: The nci device to register
1220 int nci_register_device(struct nci_dev *ndev)
1223 struct device *dev = &ndev->nfc_dev->dev;
1228 INIT_WORK(&ndev->cmd_work, nci_cmd_work);
1229 snprintf(name, sizeof(name), "%s_nci_cmd_wq", dev_name(dev));
1230 ndev->cmd_wq = create_singlethread_workqueue(name);
1231 if (!ndev->cmd_wq) {
1236 INIT_WORK(&ndev->rx_work, nci_rx_work);
1237 snprintf(name, sizeof(name), "%s_nci_rx_wq", dev_name(dev));
1238 ndev->rx_wq = create_singlethread_workqueue(name);
1241 goto destroy_cmd_wq_exit;
1244 INIT_WORK(&ndev->tx_work, nci_tx_work);
1245 snprintf(name, sizeof(name), "%s_nci_tx_wq", dev_name(dev));
1246 ndev->tx_wq = create_singlethread_workqueue(name);
1249 goto destroy_rx_wq_exit;
1252 skb_queue_head_init(&ndev->cmd_q);
1253 skb_queue_head_init(&ndev->rx_q);
1254 skb_queue_head_init(&ndev->tx_q);
1256 timer_setup(&ndev->cmd_timer, nci_cmd_timer, 0);
1257 timer_setup(&ndev->data_timer, nci_data_timer, 0);
1259 mutex_init(&ndev->req_lock);
1260 INIT_LIST_HEAD(&ndev->conn_info_list);
1262 rc = nfc_register_device(ndev->nfc_dev);
1264 goto destroy_tx_wq_exit;
1269 destroy_workqueue(ndev->tx_wq);
1272 destroy_workqueue(ndev->rx_wq);
1274 destroy_cmd_wq_exit:
1275 destroy_workqueue(ndev->cmd_wq);
1280 EXPORT_SYMBOL(nci_register_device);
1283 * nci_unregister_device - unregister a nci device in the nfc subsystem
1285 * @ndev: The nci device to unregister
1287 void nci_unregister_device(struct nci_dev *ndev)
1289 struct nci_conn_info *conn_info, *n;
1291 /* This set_bit is not protected with specialized barrier,
1292 * However, it is fine because the mutex_lock(&ndev->req_lock);
1293 * in nci_close_device() will help to emit one.
1295 set_bit(NCI_UNREG, &ndev->flags);
1297 nci_close_device(ndev);
1299 destroy_workqueue(ndev->cmd_wq);
1300 destroy_workqueue(ndev->rx_wq);
1301 destroy_workqueue(ndev->tx_wq);
1303 list_for_each_entry_safe(conn_info, n, &ndev->conn_info_list, list) {
1304 list_del(&conn_info->list);
1305 /* conn_info is allocated with devm_kzalloc */
1308 nfc_unregister_device(ndev->nfc_dev);
1310 EXPORT_SYMBOL(nci_unregister_device);
1313 * nci_recv_frame - receive frame from NCI drivers
1315 * @ndev: The nci device
1316 * @skb: The sk_buff to receive
1318 int nci_recv_frame(struct nci_dev *ndev, struct sk_buff *skb)
1320 pr_debug("len %d\n", skb->len);
1322 if (!ndev || (!test_bit(NCI_UP, &ndev->flags) &&
1323 !test_bit(NCI_INIT, &ndev->flags))) {
1328 /* Queue frame for rx worker thread */
1329 skb_queue_tail(&ndev->rx_q, skb);
1330 queue_work(ndev->rx_wq, &ndev->rx_work);
1334 EXPORT_SYMBOL(nci_recv_frame);
1336 int nci_send_frame(struct nci_dev *ndev, struct sk_buff *skb)
1338 pr_debug("len %d\n", skb->len);
1345 /* Get rid of skb owner, prior to sending to the driver. */
1348 /* Send copy to sniffer */
1349 nfc_send_to_raw_sock(ndev->nfc_dev, skb,
1350 RAW_PAYLOAD_NCI, NFC_DIRECTION_TX);
1352 return ndev->ops->send(ndev, skb);
1354 EXPORT_SYMBOL(nci_send_frame);
1356 /* Send NCI command */
1357 int nci_send_cmd(struct nci_dev *ndev, __u16 opcode, __u8 plen, const void *payload)
1359 struct nci_ctrl_hdr *hdr;
1360 struct sk_buff *skb;
1362 pr_debug("opcode 0x%x, plen %d\n", opcode, plen);
1364 skb = nci_skb_alloc(ndev, (NCI_CTRL_HDR_SIZE + plen), GFP_KERNEL);
1366 pr_err("no memory for command\n");
1370 hdr = skb_put(skb, NCI_CTRL_HDR_SIZE);
1371 hdr->gid = nci_opcode_gid(opcode);
1372 hdr->oid = nci_opcode_oid(opcode);
1375 nci_mt_set((__u8 *)hdr, NCI_MT_CMD_PKT);
1376 nci_pbf_set((__u8 *)hdr, NCI_PBF_LAST);
1379 skb_put_data(skb, payload, plen);
1381 skb_queue_tail(&ndev->cmd_q, skb);
1382 queue_work(ndev->cmd_wq, &ndev->cmd_work);
1386 EXPORT_SYMBOL(nci_send_cmd);
1388 /* Proprietary commands API */
1389 static const struct nci_driver_ops *ops_cmd_lookup(const struct nci_driver_ops *ops,
1394 const struct nci_driver_ops *op;
1399 for (i = 0; i < n_ops; i++) {
1401 if (op->opcode == opcode)
1408 static int nci_op_rsp_packet(struct nci_dev *ndev, __u16 rsp_opcode,
1409 struct sk_buff *skb, const struct nci_driver_ops *ops,
1412 const struct nci_driver_ops *op;
1414 op = ops_cmd_lookup(ops, n_ops, rsp_opcode);
1415 if (!op || !op->rsp)
1418 return op->rsp(ndev, skb);
1421 static int nci_op_ntf_packet(struct nci_dev *ndev, __u16 ntf_opcode,
1422 struct sk_buff *skb, const struct nci_driver_ops *ops,
1425 const struct nci_driver_ops *op;
1427 op = ops_cmd_lookup(ops, n_ops, ntf_opcode);
1428 if (!op || !op->ntf)
1431 return op->ntf(ndev, skb);
1434 int nci_prop_rsp_packet(struct nci_dev *ndev, __u16 opcode,
1435 struct sk_buff *skb)
1437 return nci_op_rsp_packet(ndev, opcode, skb, ndev->ops->prop_ops,
1438 ndev->ops->n_prop_ops);
1441 int nci_prop_ntf_packet(struct nci_dev *ndev, __u16 opcode,
1442 struct sk_buff *skb)
1444 return nci_op_ntf_packet(ndev, opcode, skb, ndev->ops->prop_ops,
1445 ndev->ops->n_prop_ops);
1448 int nci_core_rsp_packet(struct nci_dev *ndev, __u16 opcode,
1449 struct sk_buff *skb)
1451 return nci_op_rsp_packet(ndev, opcode, skb, ndev->ops->core_ops,
1452 ndev->ops->n_core_ops);
1455 int nci_core_ntf_packet(struct nci_dev *ndev, __u16 opcode,
1456 struct sk_buff *skb)
1458 return nci_op_ntf_packet(ndev, opcode, skb, ndev->ops->core_ops,
1459 ndev->ops->n_core_ops);
1462 /* ---- NCI TX Data worker thread ---- */
1464 static void nci_tx_work(struct work_struct *work)
1466 struct nci_dev *ndev = container_of(work, struct nci_dev, tx_work);
1467 struct nci_conn_info *conn_info;
1468 struct sk_buff *skb;
1470 conn_info = nci_get_conn_info_by_conn_id(ndev, ndev->cur_conn_id);
1474 pr_debug("credits_cnt %d\n", atomic_read(&conn_info->credits_cnt));
1476 /* Send queued tx data */
1477 while (atomic_read(&conn_info->credits_cnt)) {
1478 skb = skb_dequeue(&ndev->tx_q);
1481 kcov_remote_start_common(skb_get_kcov_handle(skb));
1483 /* Check if data flow control is used */
1484 if (atomic_read(&conn_info->credits_cnt) !=
1485 NCI_DATA_FLOW_CONTROL_NOT_USED)
1486 atomic_dec(&conn_info->credits_cnt);
1488 pr_debug("NCI TX: MT=data, PBF=%d, conn_id=%d, plen=%d\n",
1490 nci_conn_id(skb->data),
1491 nci_plen(skb->data));
1493 nci_send_frame(ndev, skb);
1495 mod_timer(&ndev->data_timer,
1496 jiffies + msecs_to_jiffies(NCI_DATA_TIMEOUT));
1501 /* ----- NCI RX worker thread (data & control) ----- */
1503 static void nci_rx_work(struct work_struct *work)
1505 struct nci_dev *ndev = container_of(work, struct nci_dev, rx_work);
1506 struct sk_buff *skb;
1508 for (; (skb = skb_dequeue(&ndev->rx_q)); kcov_remote_stop()) {
1509 kcov_remote_start_common(skb_get_kcov_handle(skb));
1511 /* Send copy to sniffer */
1512 nfc_send_to_raw_sock(ndev->nfc_dev, skb,
1513 RAW_PAYLOAD_NCI, NFC_DIRECTION_RX);
1516 switch (nci_mt(skb->data)) {
1517 case NCI_MT_RSP_PKT:
1518 nci_rsp_packet(ndev, skb);
1521 case NCI_MT_NTF_PKT:
1522 nci_ntf_packet(ndev, skb);
1525 case NCI_MT_DATA_PKT:
1526 nci_rx_data_packet(ndev, skb);
1530 pr_err("unknown MT 0x%x\n", nci_mt(skb->data));
1536 /* check if a data exchange timeout has occurred */
1537 if (test_bit(NCI_DATA_EXCHANGE_TO, &ndev->flags)) {
1538 /* complete the data exchange transaction, if exists */
1539 if (test_bit(NCI_DATA_EXCHANGE, &ndev->flags))
1540 nci_data_exchange_complete(ndev, NULL,
1544 clear_bit(NCI_DATA_EXCHANGE_TO, &ndev->flags);
1548 /* ----- NCI TX CMD worker thread ----- */
1550 static void nci_cmd_work(struct work_struct *work)
1552 struct nci_dev *ndev = container_of(work, struct nci_dev, cmd_work);
1553 struct sk_buff *skb;
1555 pr_debug("cmd_cnt %d\n", atomic_read(&ndev->cmd_cnt));
1557 /* Send queued command */
1558 if (atomic_read(&ndev->cmd_cnt)) {
1559 skb = skb_dequeue(&ndev->cmd_q);
1563 kcov_remote_start_common(skb_get_kcov_handle(skb));
1564 atomic_dec(&ndev->cmd_cnt);
1566 pr_debug("NCI TX: MT=cmd, PBF=%d, GID=0x%x, OID=0x%x, plen=%d\n",
1568 nci_opcode_gid(nci_opcode(skb->data)),
1569 nci_opcode_oid(nci_opcode(skb->data)),
1570 nci_plen(skb->data));
1572 nci_send_frame(ndev, skb);
1574 mod_timer(&ndev->cmd_timer,
1575 jiffies + msecs_to_jiffies(NCI_CMD_TIMEOUT));
1580 MODULE_LICENSE("GPL");