2 * The NFC Controller Interface is the communication protocol between an
3 * NFC Controller (NFCC) and a Device Host (DH).
5 * Copyright (C) 2011 Texas Instruments, Inc.
10 * This file is based on hci_core.c, which was written
11 * by Maxim Krasnyansky.
13 * This program is free software; you can redistribute it and/or modify
14 * it under the terms of the GNU General Public License version 2
15 * as published by the Free Software Foundation
17 * This program is distributed in the hope that it will be useful,
18 * but WITHOUT ANY WARRANTY; without even the implied warranty of
19 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20 * GNU General Public License for more details.
22 * You should have received a copy of the GNU General Public License
23 * along with this program; if not, write to the Free Software
24 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
28 #define pr_fmt(fmt) KBUILD_MODNAME ": %s: " fmt, __func__
30 #include <linux/module.h>
31 #include <linux/types.h>
32 #include <linux/workqueue.h>
33 #include <linux/completion.h>
34 #include <linux/export.h>
35 #include <linux/sched.h>
36 #include <linux/bitops.h>
37 #include <linux/skbuff.h>
40 #include <net/nfc/nci.h>
41 #include <net/nfc/nci_core.h>
42 #include <linux/nfc.h>
44 static void nci_cmd_work(struct work_struct *work);
45 static void nci_rx_work(struct work_struct *work);
46 static void nci_tx_work(struct work_struct *work);
48 /* ---- NCI requests ---- */
50 void nci_req_complete(struct nci_dev *ndev, int result)
52 if (ndev->req_status == NCI_REQ_PEND) {
53 ndev->req_result = result;
54 ndev->req_status = NCI_REQ_DONE;
55 complete(&ndev->req_completion);
59 static void nci_req_cancel(struct nci_dev *ndev, int err)
61 if (ndev->req_status == NCI_REQ_PEND) {
62 ndev->req_result = err;
63 ndev->req_status = NCI_REQ_CANCELED;
64 complete(&ndev->req_completion);
68 /* Execute request and wait for completion. */
69 static int __nci_request(struct nci_dev *ndev,
70 void (*req)(struct nci_dev *ndev, unsigned long opt),
71 unsigned long opt, __u32 timeout)
76 ndev->req_status = NCI_REQ_PEND;
78 init_completion(&ndev->req_completion);
81 wait_for_completion_interruptible_timeout(&ndev->req_completion,
84 pr_debug("wait_for_completion return %ld\n", completion_rc);
86 if (completion_rc > 0) {
87 switch (ndev->req_status) {
89 rc = nci_to_errno(ndev->req_result);
92 case NCI_REQ_CANCELED:
93 rc = -ndev->req_result;
101 pr_err("wait_for_completion_interruptible_timeout failed %ld\n",
104 rc = ((completion_rc == 0) ? (-ETIMEDOUT) : (completion_rc));
107 ndev->req_status = ndev->req_result = 0;
112 static inline int nci_request(struct nci_dev *ndev,
113 void (*req)(struct nci_dev *ndev,
115 unsigned long opt, __u32 timeout)
119 if (!test_bit(NCI_UP, &ndev->flags))
122 /* Serialize all requests */
123 mutex_lock(&ndev->req_lock);
124 rc = __nci_request(ndev, req, opt, timeout);
125 mutex_unlock(&ndev->req_lock);
130 static void nci_reset_req(struct nci_dev *ndev, unsigned long opt)
132 struct nci_core_reset_cmd cmd;
134 cmd.reset_type = NCI_RESET_TYPE_RESET_CONFIG;
135 nci_send_cmd(ndev, NCI_OP_CORE_RESET_CMD, 1, &cmd);
138 static void nci_init_req(struct nci_dev *ndev, unsigned long opt)
140 nci_send_cmd(ndev, NCI_OP_CORE_INIT_CMD, 0, NULL);
143 static void nci_init_complete_req(struct nci_dev *ndev, unsigned long opt)
145 struct nci_rf_disc_map_cmd cmd;
146 struct disc_map_config *cfg = cmd.mapping_configs;
147 __u8 *num = &cmd.num_mapping_configs;
150 /* set rf mapping configurations */
153 /* by default mapping is set to NCI_RF_INTERFACE_FRAME */
154 for (i = 0; i < ndev->num_supported_rf_interfaces; i++) {
155 if (ndev->supported_rf_interfaces[i] ==
156 NCI_RF_INTERFACE_ISO_DEP) {
157 cfg[*num].rf_protocol = NCI_RF_PROTOCOL_ISO_DEP;
158 cfg[*num].mode = NCI_DISC_MAP_MODE_POLL |
159 NCI_DISC_MAP_MODE_LISTEN;
160 cfg[*num].rf_interface = NCI_RF_INTERFACE_ISO_DEP;
162 } else if (ndev->supported_rf_interfaces[i] ==
163 NCI_RF_INTERFACE_NFC_DEP) {
164 cfg[*num].rf_protocol = NCI_RF_PROTOCOL_NFC_DEP;
165 cfg[*num].mode = NCI_DISC_MAP_MODE_POLL |
166 NCI_DISC_MAP_MODE_LISTEN;
167 cfg[*num].rf_interface = NCI_RF_INTERFACE_NFC_DEP;
171 if (*num == NCI_MAX_NUM_MAPPING_CONFIGS)
175 nci_send_cmd(ndev, NCI_OP_RF_DISCOVER_MAP_CMD,
176 (1 + ((*num) * sizeof(struct disc_map_config))), &cmd);
179 struct nci_set_config_param {
185 static void nci_set_config_req(struct nci_dev *ndev, unsigned long opt)
187 struct nci_set_config_param *param = (struct nci_set_config_param *)opt;
188 struct nci_core_set_config_cmd cmd;
190 BUG_ON(param->len > NCI_MAX_PARAM_LEN);
193 cmd.param.id = param->id;
194 cmd.param.len = param->len;
195 memcpy(cmd.param.val, param->val, param->len);
197 nci_send_cmd(ndev, NCI_OP_CORE_SET_CONFIG_CMD, (3 + param->len), &cmd);
200 static void nci_rf_discover_req(struct nci_dev *ndev, unsigned long opt)
202 struct nci_rf_disc_cmd cmd;
203 __u32 protocols = opt;
205 cmd.num_disc_configs = 0;
207 if ((cmd.num_disc_configs < NCI_MAX_NUM_RF_CONFIGS) &&
208 (protocols & NFC_PROTO_JEWEL_MASK
209 || protocols & NFC_PROTO_MIFARE_MASK
210 || protocols & NFC_PROTO_ISO14443_MASK
211 || protocols & NFC_PROTO_NFC_DEP_MASK)) {
212 cmd.disc_configs[cmd.num_disc_configs].rf_tech_and_mode =
213 NCI_NFC_A_PASSIVE_POLL_MODE;
214 cmd.disc_configs[cmd.num_disc_configs].frequency = 1;
215 cmd.num_disc_configs++;
218 if ((cmd.num_disc_configs < NCI_MAX_NUM_RF_CONFIGS) &&
219 (protocols & NFC_PROTO_ISO14443_B_MASK)) {
220 cmd.disc_configs[cmd.num_disc_configs].rf_tech_and_mode =
221 NCI_NFC_B_PASSIVE_POLL_MODE;
222 cmd.disc_configs[cmd.num_disc_configs].frequency = 1;
223 cmd.num_disc_configs++;
226 if ((cmd.num_disc_configs < NCI_MAX_NUM_RF_CONFIGS) &&
227 (protocols & NFC_PROTO_FELICA_MASK
228 || protocols & NFC_PROTO_NFC_DEP_MASK)) {
229 cmd.disc_configs[cmd.num_disc_configs].rf_tech_and_mode =
230 NCI_NFC_F_PASSIVE_POLL_MODE;
231 cmd.disc_configs[cmd.num_disc_configs].frequency = 1;
232 cmd.num_disc_configs++;
235 nci_send_cmd(ndev, NCI_OP_RF_DISCOVER_CMD,
236 (1 + (cmd.num_disc_configs * sizeof(struct disc_config))),
240 struct nci_rf_discover_select_param {
241 __u8 rf_discovery_id;
245 static void nci_rf_discover_select_req(struct nci_dev *ndev, unsigned long opt)
247 struct nci_rf_discover_select_param *param =
248 (struct nci_rf_discover_select_param *)opt;
249 struct nci_rf_discover_select_cmd cmd;
251 cmd.rf_discovery_id = param->rf_discovery_id;
252 cmd.rf_protocol = param->rf_protocol;
254 switch (cmd.rf_protocol) {
255 case NCI_RF_PROTOCOL_ISO_DEP:
256 cmd.rf_interface = NCI_RF_INTERFACE_ISO_DEP;
259 case NCI_RF_PROTOCOL_NFC_DEP:
260 cmd.rf_interface = NCI_RF_INTERFACE_NFC_DEP;
264 cmd.rf_interface = NCI_RF_INTERFACE_FRAME;
268 nci_send_cmd(ndev, NCI_OP_RF_DISCOVER_SELECT_CMD,
269 sizeof(struct nci_rf_discover_select_cmd), &cmd);
272 static void nci_rf_deactivate_req(struct nci_dev *ndev, unsigned long opt)
274 struct nci_rf_deactivate_cmd cmd;
276 cmd.type = NCI_DEACTIVATE_TYPE_IDLE_MODE;
278 nci_send_cmd(ndev, NCI_OP_RF_DEACTIVATE_CMD,
279 sizeof(struct nci_rf_deactivate_cmd), &cmd);
282 static int nci_open_device(struct nci_dev *ndev)
286 mutex_lock(&ndev->req_lock);
288 if (test_bit(NCI_UP, &ndev->flags)) {
293 if (ndev->ops->open(ndev)) {
298 atomic_set(&ndev->cmd_cnt, 1);
300 set_bit(NCI_INIT, &ndev->flags);
302 rc = __nci_request(ndev, nci_reset_req, 0,
303 msecs_to_jiffies(NCI_RESET_TIMEOUT));
306 rc = __nci_request(ndev, nci_init_req, 0,
307 msecs_to_jiffies(NCI_INIT_TIMEOUT));
311 rc = __nci_request(ndev, nci_init_complete_req, 0,
312 msecs_to_jiffies(NCI_INIT_TIMEOUT));
315 clear_bit(NCI_INIT, &ndev->flags);
318 set_bit(NCI_UP, &ndev->flags);
319 nci_clear_target_list(ndev);
320 atomic_set(&ndev->state, NCI_IDLE);
322 /* Init failed, cleanup */
323 skb_queue_purge(&ndev->cmd_q);
324 skb_queue_purge(&ndev->rx_q);
325 skb_queue_purge(&ndev->tx_q);
327 ndev->ops->close(ndev);
332 mutex_unlock(&ndev->req_lock);
336 static int nci_close_device(struct nci_dev *ndev)
338 nci_req_cancel(ndev, ENODEV);
339 mutex_lock(&ndev->req_lock);
341 if (!test_and_clear_bit(NCI_UP, &ndev->flags)) {
342 del_timer_sync(&ndev->cmd_timer);
343 del_timer_sync(&ndev->data_timer);
344 mutex_unlock(&ndev->req_lock);
348 /* Drop RX and TX queues */
349 skb_queue_purge(&ndev->rx_q);
350 skb_queue_purge(&ndev->tx_q);
352 /* Flush RX and TX wq */
353 flush_workqueue(ndev->rx_wq);
354 flush_workqueue(ndev->tx_wq);
357 skb_queue_purge(&ndev->cmd_q);
358 atomic_set(&ndev->cmd_cnt, 1);
360 set_bit(NCI_INIT, &ndev->flags);
361 __nci_request(ndev, nci_reset_req, 0,
362 msecs_to_jiffies(NCI_RESET_TIMEOUT));
363 clear_bit(NCI_INIT, &ndev->flags);
366 flush_workqueue(ndev->cmd_wq);
368 /* After this point our queues are empty
369 * and no works are scheduled. */
370 ndev->ops->close(ndev);
375 mutex_unlock(&ndev->req_lock);
380 /* NCI command timer function */
381 static void nci_cmd_timer(unsigned long arg)
383 struct nci_dev *ndev = (void *) arg;
385 atomic_set(&ndev->cmd_cnt, 1);
386 queue_work(ndev->cmd_wq, &ndev->cmd_work);
389 /* NCI data exchange timer function */
390 static void nci_data_timer(unsigned long arg)
392 struct nci_dev *ndev = (void *) arg;
394 set_bit(NCI_DATA_EXCHANGE_TO, &ndev->flags);
395 queue_work(ndev->rx_wq, &ndev->rx_work);
398 static int nci_dev_up(struct nfc_dev *nfc_dev)
400 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
402 return nci_open_device(ndev);
405 static int nci_dev_down(struct nfc_dev *nfc_dev)
407 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
409 return nci_close_device(ndev);
412 static int nci_set_local_general_bytes(struct nfc_dev *nfc_dev)
414 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
415 struct nci_set_config_param param;
416 __u8 local_gb[NFC_MAX_GT_LEN];
419 param.val = nfc_get_local_general_bytes(nfc_dev, ¶m.len);
420 if ((param.val == NULL) || (param.len == 0))
423 if (param.len > NCI_MAX_PARAM_LEN)
426 for (i = 0; i < param.len; i++)
427 local_gb[param.len-1-i] = param.val[i];
429 param.id = NCI_PN_ATR_REQ_GEN_BYTES;
430 param.val = local_gb;
432 rc = nci_request(ndev, nci_set_config_req, (unsigned long)¶m,
433 msecs_to_jiffies(NCI_SET_CONFIG_TIMEOUT));
438 static int nci_start_poll(struct nfc_dev *nfc_dev,
439 __u32 im_protocols, __u32 tm_protocols)
441 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
444 if ((atomic_read(&ndev->state) == NCI_DISCOVERY) ||
445 (atomic_read(&ndev->state) == NCI_W4_ALL_DISCOVERIES)) {
446 pr_err("unable to start poll, since poll is already active\n");
450 if (ndev->target_active_prot) {
451 pr_err("there is an active target\n");
455 if ((atomic_read(&ndev->state) == NCI_W4_HOST_SELECT) ||
456 (atomic_read(&ndev->state) == NCI_POLL_ACTIVE)) {
457 pr_debug("target active or w4 select, implicitly deactivate\n");
459 rc = nci_request(ndev, nci_rf_deactivate_req, 0,
460 msecs_to_jiffies(NCI_RF_DEACTIVATE_TIMEOUT));
465 if (im_protocols & NFC_PROTO_NFC_DEP_MASK) {
466 rc = nci_set_local_general_bytes(nfc_dev);
468 pr_err("failed to set local general bytes\n");
473 rc = nci_request(ndev, nci_rf_discover_req, im_protocols,
474 msecs_to_jiffies(NCI_RF_DISC_TIMEOUT));
477 ndev->poll_prots = im_protocols;
482 static void nci_stop_poll(struct nfc_dev *nfc_dev)
484 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
486 if ((atomic_read(&ndev->state) != NCI_DISCOVERY) &&
487 (atomic_read(&ndev->state) != NCI_W4_ALL_DISCOVERIES)) {
488 pr_err("unable to stop poll, since poll is not active\n");
492 nci_request(ndev, nci_rf_deactivate_req, 0,
493 msecs_to_jiffies(NCI_RF_DEACTIVATE_TIMEOUT));
496 static int nci_activate_target(struct nfc_dev *nfc_dev,
497 struct nfc_target *target, __u32 protocol)
499 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
500 struct nci_rf_discover_select_param param;
501 struct nfc_target *nci_target = NULL;
505 pr_debug("target_idx %d, protocol 0x%x\n", target->idx, protocol);
507 if ((atomic_read(&ndev->state) != NCI_W4_HOST_SELECT) &&
508 (atomic_read(&ndev->state) != NCI_POLL_ACTIVE)) {
509 pr_err("there is no available target to activate\n");
513 if (ndev->target_active_prot) {
514 pr_err("there is already an active target\n");
518 for (i = 0; i < ndev->n_targets; i++) {
519 if (ndev->targets[i].idx == target->idx) {
520 nci_target = &ndev->targets[i];
526 pr_err("unable to find the selected target\n");
530 if (!(nci_target->supported_protocols & (1 << protocol))) {
531 pr_err("target does not support the requested protocol 0x%x\n",
536 if (atomic_read(&ndev->state) == NCI_W4_HOST_SELECT) {
537 param.rf_discovery_id = nci_target->logical_idx;
539 if (protocol == NFC_PROTO_JEWEL)
540 param.rf_protocol = NCI_RF_PROTOCOL_T1T;
541 else if (protocol == NFC_PROTO_MIFARE)
542 param.rf_protocol = NCI_RF_PROTOCOL_T2T;
543 else if (protocol == NFC_PROTO_FELICA)
544 param.rf_protocol = NCI_RF_PROTOCOL_T3T;
545 else if (protocol == NFC_PROTO_ISO14443 ||
546 protocol == NFC_PROTO_ISO14443_B)
547 param.rf_protocol = NCI_RF_PROTOCOL_ISO_DEP;
549 param.rf_protocol = NCI_RF_PROTOCOL_NFC_DEP;
551 rc = nci_request(ndev, nci_rf_discover_select_req,
552 (unsigned long)¶m,
553 msecs_to_jiffies(NCI_RF_DISC_SELECT_TIMEOUT));
557 ndev->target_active_prot = protocol;
562 static void nci_deactivate_target(struct nfc_dev *nfc_dev,
563 struct nfc_target *target)
565 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
569 if (!ndev->target_active_prot) {
570 pr_err("unable to deactivate target, no active target\n");
574 ndev->target_active_prot = 0;
576 if (atomic_read(&ndev->state) == NCI_POLL_ACTIVE) {
577 nci_request(ndev, nci_rf_deactivate_req, 0,
578 msecs_to_jiffies(NCI_RF_DEACTIVATE_TIMEOUT));
583 static int nci_dep_link_up(struct nfc_dev *nfc_dev, struct nfc_target *target,
584 __u8 comm_mode, __u8 *gb, size_t gb_len)
586 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
589 pr_debug("target_idx %d, comm_mode %d\n", target->idx, comm_mode);
591 rc = nci_activate_target(nfc_dev, target, NFC_PROTO_NFC_DEP);
595 rc = nfc_set_remote_general_bytes(nfc_dev, ndev->remote_gb,
596 ndev->remote_gb_len);
598 rc = nfc_dep_link_is_up(nfc_dev, target->idx, NFC_COMM_PASSIVE,
604 static int nci_dep_link_down(struct nfc_dev *nfc_dev)
608 nci_deactivate_target(nfc_dev, NULL);
614 static int nci_transceive(struct nfc_dev *nfc_dev, struct nfc_target *target,
616 data_exchange_cb_t cb, void *cb_context)
618 struct nci_dev *ndev = nfc_get_drvdata(nfc_dev);
621 pr_debug("target_idx %d, len %d\n", target->idx, skb->len);
623 if (!ndev->target_active_prot) {
624 pr_err("unable to exchange data, no active target\n");
628 if (test_and_set_bit(NCI_DATA_EXCHANGE, &ndev->flags))
631 /* store cb and context to be used on receiving data */
632 ndev->data_exchange_cb = cb;
633 ndev->data_exchange_cb_context = cb_context;
635 rc = nci_send_data(ndev, NCI_STATIC_RF_CONN_ID, skb);
637 clear_bit(NCI_DATA_EXCHANGE, &ndev->flags);
642 static struct nfc_ops nci_nfc_ops = {
643 .dev_up = nci_dev_up,
644 .dev_down = nci_dev_down,
645 .start_poll = nci_start_poll,
646 .stop_poll = nci_stop_poll,
647 .dep_link_up = nci_dep_link_up,
648 .dep_link_down = nci_dep_link_down,
649 .activate_target = nci_activate_target,
650 .deactivate_target = nci_deactivate_target,
651 .im_transceive = nci_transceive,
654 /* ---- Interface to NCI drivers ---- */
657 * nci_allocate_device - allocate a new nci device
659 * @ops: device operations
660 * @supported_protocols: NFC protocols supported by the device
662 struct nci_dev *nci_allocate_device(struct nci_ops *ops,
663 __u32 supported_protocols,
664 int tx_headroom, int tx_tailroom)
666 struct nci_dev *ndev;
668 pr_debug("supported_protocols 0x%x\n", supported_protocols);
670 if (!ops->open || !ops->close || !ops->send)
673 if (!supported_protocols)
676 ndev = kzalloc(sizeof(struct nci_dev), GFP_KERNEL);
681 ndev->tx_headroom = tx_headroom;
682 ndev->tx_tailroom = tx_tailroom;
684 ndev->nfc_dev = nfc_allocate_device(&nci_nfc_ops,
686 tx_headroom + NCI_DATA_HDR_SIZE,
691 nfc_set_drvdata(ndev->nfc_dev, ndev);
699 EXPORT_SYMBOL(nci_allocate_device);
702 * nci_free_device - deallocate nci device
704 * @ndev: The nci device to deallocate
706 void nci_free_device(struct nci_dev *ndev)
708 nfc_free_device(ndev->nfc_dev);
711 EXPORT_SYMBOL(nci_free_device);
714 * nci_register_device - register a nci device in the nfc subsystem
716 * @dev: The nci device to register
718 int nci_register_device(struct nci_dev *ndev)
721 struct device *dev = &ndev->nfc_dev->dev;
724 rc = nfc_register_device(ndev->nfc_dev);
730 INIT_WORK(&ndev->cmd_work, nci_cmd_work);
731 snprintf(name, sizeof(name), "%s_nci_cmd_wq", dev_name(dev));
732 ndev->cmd_wq = create_singlethread_workqueue(name);
738 INIT_WORK(&ndev->rx_work, nci_rx_work);
739 snprintf(name, sizeof(name), "%s_nci_rx_wq", dev_name(dev));
740 ndev->rx_wq = create_singlethread_workqueue(name);
743 goto destroy_cmd_wq_exit;
746 INIT_WORK(&ndev->tx_work, nci_tx_work);
747 snprintf(name, sizeof(name), "%s_nci_tx_wq", dev_name(dev));
748 ndev->tx_wq = create_singlethread_workqueue(name);
751 goto destroy_rx_wq_exit;
754 skb_queue_head_init(&ndev->cmd_q);
755 skb_queue_head_init(&ndev->rx_q);
756 skb_queue_head_init(&ndev->tx_q);
758 setup_timer(&ndev->cmd_timer, nci_cmd_timer,
759 (unsigned long) ndev);
760 setup_timer(&ndev->data_timer, nci_data_timer,
761 (unsigned long) ndev);
763 mutex_init(&ndev->req_lock);
768 destroy_workqueue(ndev->rx_wq);
771 destroy_workqueue(ndev->cmd_wq);
774 nfc_unregister_device(ndev->nfc_dev);
779 EXPORT_SYMBOL(nci_register_device);
782 * nci_unregister_device - unregister a nci device in the nfc subsystem
784 * @dev: The nci device to unregister
786 void nci_unregister_device(struct nci_dev *ndev)
788 nci_close_device(ndev);
790 destroy_workqueue(ndev->cmd_wq);
791 destroy_workqueue(ndev->rx_wq);
792 destroy_workqueue(ndev->tx_wq);
794 nfc_unregister_device(ndev->nfc_dev);
796 EXPORT_SYMBOL(nci_unregister_device);
799 * nci_recv_frame - receive frame from NCI drivers
801 * @skb: The sk_buff to receive
803 int nci_recv_frame(struct sk_buff *skb)
805 struct nci_dev *ndev = (struct nci_dev *) skb->dev;
807 pr_debug("len %d\n", skb->len);
809 if (!ndev || (!test_bit(NCI_UP, &ndev->flags)
810 && !test_bit(NCI_INIT, &ndev->flags))) {
815 /* Queue frame for rx worker thread */
816 skb_queue_tail(&ndev->rx_q, skb);
817 queue_work(ndev->rx_wq, &ndev->rx_work);
821 EXPORT_SYMBOL(nci_recv_frame);
823 static int nci_send_frame(struct sk_buff *skb)
825 struct nci_dev *ndev = (struct nci_dev *) skb->dev;
827 pr_debug("len %d\n", skb->len);
834 /* Get rid of skb owner, prior to sending to the driver. */
837 return ndev->ops->send(skb);
840 /* Send NCI command */
841 int nci_send_cmd(struct nci_dev *ndev, __u16 opcode, __u8 plen, void *payload)
843 struct nci_ctrl_hdr *hdr;
846 pr_debug("opcode 0x%x, plen %d\n", opcode, plen);
848 skb = nci_skb_alloc(ndev, (NCI_CTRL_HDR_SIZE + plen), GFP_KERNEL);
850 pr_err("no memory for command\n");
854 hdr = (struct nci_ctrl_hdr *) skb_put(skb, NCI_CTRL_HDR_SIZE);
855 hdr->gid = nci_opcode_gid(opcode);
856 hdr->oid = nci_opcode_oid(opcode);
859 nci_mt_set((__u8 *)hdr, NCI_MT_CMD_PKT);
860 nci_pbf_set((__u8 *)hdr, NCI_PBF_LAST);
863 memcpy(skb_put(skb, plen), payload, plen);
865 skb->dev = (void *) ndev;
867 skb_queue_tail(&ndev->cmd_q, skb);
868 queue_work(ndev->cmd_wq, &ndev->cmd_work);
873 /* ---- NCI TX Data worker thread ---- */
875 static void nci_tx_work(struct work_struct *work)
877 struct nci_dev *ndev = container_of(work, struct nci_dev, tx_work);
880 pr_debug("credits_cnt %d\n", atomic_read(&ndev->credits_cnt));
882 /* Send queued tx data */
883 while (atomic_read(&ndev->credits_cnt)) {
884 skb = skb_dequeue(&ndev->tx_q);
888 /* Check if data flow control is used */
889 if (atomic_read(&ndev->credits_cnt) !=
890 NCI_DATA_FLOW_CONTROL_NOT_USED)
891 atomic_dec(&ndev->credits_cnt);
893 pr_debug("NCI TX: MT=data, PBF=%d, conn_id=%d, plen=%d\n",
895 nci_conn_id(skb->data),
896 nci_plen(skb->data));
900 mod_timer(&ndev->data_timer,
901 jiffies + msecs_to_jiffies(NCI_DATA_TIMEOUT));
905 /* ----- NCI RX worker thread (data & control) ----- */
907 static void nci_rx_work(struct work_struct *work)
909 struct nci_dev *ndev = container_of(work, struct nci_dev, rx_work);
912 while ((skb = skb_dequeue(&ndev->rx_q))) {
914 switch (nci_mt(skb->data)) {
916 nci_rsp_packet(ndev, skb);
920 nci_ntf_packet(ndev, skb);
923 case NCI_MT_DATA_PKT:
924 nci_rx_data_packet(ndev, skb);
928 pr_err("unknown MT 0x%x\n", nci_mt(skb->data));
934 /* check if a data exchange timout has occurred */
935 if (test_bit(NCI_DATA_EXCHANGE_TO, &ndev->flags)) {
936 /* complete the data exchange transaction, if exists */
937 if (test_bit(NCI_DATA_EXCHANGE, &ndev->flags))
938 nci_data_exchange_complete(ndev, NULL, -ETIMEDOUT);
940 clear_bit(NCI_DATA_EXCHANGE_TO, &ndev->flags);
944 /* ----- NCI TX CMD worker thread ----- */
946 static void nci_cmd_work(struct work_struct *work)
948 struct nci_dev *ndev = container_of(work, struct nci_dev, cmd_work);
951 pr_debug("cmd_cnt %d\n", atomic_read(&ndev->cmd_cnt));
953 /* Send queued command */
954 if (atomic_read(&ndev->cmd_cnt)) {
955 skb = skb_dequeue(&ndev->cmd_q);
959 atomic_dec(&ndev->cmd_cnt);
961 pr_debug("NCI TX: MT=cmd, PBF=%d, GID=0x%x, OID=0x%x, plen=%d\n",
963 nci_opcode_gid(nci_opcode(skb->data)),
964 nci_opcode_oid(nci_opcode(skb->data)),
965 nci_plen(skb->data));
969 mod_timer(&ndev->cmd_timer,
970 jiffies + msecs_to_jiffies(NCI_CMD_TIMEOUT));
974 MODULE_LICENSE("GPL");