blob: d98ed04422017f9f9140c19a5324323e67003fec [file] [log] [blame]
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -07001/*
2 * Bluetooth Software UART Qualcomm protocol
3 *
4 * HCI_IBS (HCI In-Band Sleep) is Qualcomm's power management
5 * protocol extension to H4.
6 *
7 * Copyright (C) 2007 Texas Instruments, Inc.
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05308 * Copyright (c) 2010, 2012, 2018 The Linux Foundation. All rights reserved.
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -07009 *
10 * Acknowledgements:
11 * This file is based on hci_ll.c, which was...
12 * Written by Ohad Ben-Cohen <ohad@bencohen.org>
13 * which was in turn based on hci_h4.c, which was written
14 * by Maxim Krasnyansky and Marcel Holtmann.
15 *
16 * This program is free software; you can redistribute it and/or modify
17 * it under the terms of the GNU General Public License version 2
18 * as published by the Free Software Foundation
19 *
20 * This program is distributed in the hope that it will be useful,
21 * but WITHOUT ANY WARRANTY; without even the implied warranty of
22 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
23 * GNU General Public License for more details.
24 *
25 * You should have received a copy of the GNU General Public License
26 * along with this program; if not, write to the Free Software
27 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
28 *
29 */
30
31#include <linux/kernel.h>
Thierry Escande05ba5332018-03-29 21:15:24 +020032#include <linux/clk.h>
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -070033#include <linux/debugfs.h>
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +053034#include <linux/delay.h>
35#include <linux/device.h>
Thierry Escande05ba5332018-03-29 21:15:24 +020036#include <linux/gpio/consumer.h>
37#include <linux/mod_devicetable.h>
38#include <linux/module.h>
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +053039#include <linux/of_device.h>
40#include <linux/platform_device.h>
41#include <linux/regulator/consumer.h>
Thierry Escande05ba5332018-03-29 21:15:24 +020042#include <linux/serdev.h>
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -070043
44#include <net/bluetooth/bluetooth.h>
45#include <net/bluetooth/hci_core.h>
46
47#include "hci_uart.h"
48#include "btqca.h"
49
50/* HCI_IBS protocol messages */
51#define HCI_IBS_SLEEP_IND 0xFE
52#define HCI_IBS_WAKE_IND 0xFD
53#define HCI_IBS_WAKE_ACK 0xFC
Marcel Holtmannf81b0012015-08-30 23:05:32 +020054#define HCI_MAX_IBS_SIZE 10
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -070055
56/* Controller states */
57#define STATE_IN_BAND_SLEEP_ENABLED 1
58
Marcel Holtmannf81b0012015-08-30 23:05:32 +020059#define IBS_WAKE_RETRANS_TIMEOUT_MS 100
60#define IBS_TX_IDLE_TIMEOUT_MS 2000
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -070061#define BAUDRATE_SETTLE_TIMEOUT_MS 300
62
Thierry Escande05ba5332018-03-29 21:15:24 +020063/* susclk rate */
64#define SUSCLK_RATE_32KHZ 32768
65
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -070066/* HCI_IBS transmit side sleep protocol states */
67enum tx_ibs_states {
68 HCI_IBS_TX_ASLEEP,
69 HCI_IBS_TX_WAKING,
70 HCI_IBS_TX_AWAKE,
71};
72
73/* HCI_IBS receive side sleep protocol states */
74enum rx_states {
75 HCI_IBS_RX_ASLEEP,
76 HCI_IBS_RX_AWAKE,
77};
78
79/* HCI_IBS transmit and receive side clock state vote */
80enum hci_ibs_clock_state_vote {
81 HCI_IBS_VOTE_STATS_UPDATE,
82 HCI_IBS_TX_VOTE_CLOCK_ON,
83 HCI_IBS_TX_VOTE_CLOCK_OFF,
84 HCI_IBS_RX_VOTE_CLOCK_ON,
85 HCI_IBS_RX_VOTE_CLOCK_OFF,
86};
87
88struct qca_data {
89 struct hci_uart *hu;
90 struct sk_buff *rx_skb;
91 struct sk_buff_head txq;
92 struct sk_buff_head tx_wait_q; /* HCI_IBS wait queue */
93 spinlock_t hci_ibs_lock; /* HCI_IBS state lock */
94 u8 tx_ibs_state; /* HCI_IBS transmit side power state*/
95 u8 rx_ibs_state; /* HCI_IBS receive side power state */
Viresh Kumar621a5f72015-09-26 15:04:07 -070096 bool tx_vote; /* Clock must be on for TX */
97 bool rx_vote; /* Clock must be on for RX */
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -070098 struct timer_list tx_idle_timer;
99 u32 tx_idle_delay;
100 struct timer_list wake_retrans_timer;
101 u32 wake_retrans;
102 struct workqueue_struct *workqueue;
103 struct work_struct ws_awake_rx;
104 struct work_struct ws_awake_device;
105 struct work_struct ws_rx_vote_off;
106 struct work_struct ws_tx_vote_off;
107 unsigned long flags;
108
109 /* For debugging purpose */
110 u64 ibs_sent_wacks;
111 u64 ibs_sent_slps;
112 u64 ibs_sent_wakes;
113 u64 ibs_recv_wacks;
114 u64 ibs_recv_slps;
115 u64 ibs_recv_wakes;
116 u64 vote_last_jif;
117 u32 vote_on_ms;
118 u32 vote_off_ms;
119 u64 tx_votes_on;
120 u64 rx_votes_on;
121 u64 tx_votes_off;
122 u64 rx_votes_off;
123 u64 votes_on;
124 u64 votes_off;
125};
126
Balakrishna Godavarthi83d9c5e2018-08-03 17:46:29 +0530127enum qca_speed_type {
128 QCA_INIT_SPEED = 1,
129 QCA_OPER_SPEED
130};
131
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +0530132/*
133 * Voltage regulator information required for configuring the
134 * QCA Bluetooth chipset
135 */
136struct qca_vreg {
137 const char *name;
138 unsigned int min_uV;
139 unsigned int max_uV;
140 unsigned int load_uA;
141};
142
143struct qca_vreg_data {
144 enum qca_btsoc_type soc_type;
145 struct qca_vreg *vregs;
146 size_t num_vregs;
147};
148
149/*
150 * Platform data for the QCA Bluetooth power driver.
151 */
152struct qca_power {
153 struct device *dev;
154 const struct qca_vreg_data *vreg_data;
155 struct regulator_bulk_data *vreg_bulk;
156 bool vregs_on;
157};
158
Thierry Escande05ba5332018-03-29 21:15:24 +0200159struct qca_serdev {
160 struct hci_uart serdev_hu;
161 struct gpio_desc *bt_en;
162 struct clk *susclk;
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +0530163 enum qca_btsoc_type btsoc_type;
164 struct qca_power *bt_power;
165 u32 init_speed;
166 u32 oper_speed;
Thierry Escande05ba5332018-03-29 21:15:24 +0200167};
168
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +0530169static int qca_power_setup(struct hci_uart *hu, bool on);
Balakrishna Godavarthic2d78272018-08-22 17:50:05 +0530170static void qca_power_shutdown(struct hci_uart *hu);
Balakrishna Godavarthi3e4be652018-09-24 20:14:45 +0530171static int qca_power_off(struct hci_dev *hdev);
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +0530172
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700173static void __serial_clock_on(struct tty_struct *tty)
174{
175 /* TODO: Some chipset requires to enable UART clock on client
176 * side to save power consumption or manual work is required.
177 * Please put your code to control UART clock here if needed
178 */
179}
180
181static void __serial_clock_off(struct tty_struct *tty)
182{
183 /* TODO: Some chipset requires to disable UART clock on client
184 * side to save power consumption or manual work is required.
185 * Please put your code to control UART clock off here if needed
186 */
187}
188
189/* serial_clock_vote needs to be called with the ibs lock held */
190static void serial_clock_vote(unsigned long vote, struct hci_uart *hu)
191{
192 struct qca_data *qca = hu->priv;
193 unsigned int diff;
194
195 bool old_vote = (qca->tx_vote | qca->rx_vote);
196 bool new_vote;
197
198 switch (vote) {
199 case HCI_IBS_VOTE_STATS_UPDATE:
200 diff = jiffies_to_msecs(jiffies - qca->vote_last_jif);
201
202 if (old_vote)
203 qca->vote_off_ms += diff;
204 else
205 qca->vote_on_ms += diff;
206 return;
207
208 case HCI_IBS_TX_VOTE_CLOCK_ON:
209 qca->tx_vote = true;
210 qca->tx_votes_on++;
211 new_vote = true;
212 break;
213
214 case HCI_IBS_RX_VOTE_CLOCK_ON:
215 qca->rx_vote = true;
216 qca->rx_votes_on++;
217 new_vote = true;
218 break;
219
220 case HCI_IBS_TX_VOTE_CLOCK_OFF:
221 qca->tx_vote = false;
222 qca->tx_votes_off++;
223 new_vote = qca->rx_vote | qca->tx_vote;
224 break;
225
226 case HCI_IBS_RX_VOTE_CLOCK_OFF:
227 qca->rx_vote = false;
228 qca->rx_votes_off++;
229 new_vote = qca->rx_vote | qca->tx_vote;
230 break;
231
232 default:
233 BT_ERR("Voting irregularity");
234 return;
235 }
236
237 if (new_vote != old_vote) {
238 if (new_vote)
239 __serial_clock_on(hu->tty);
240 else
241 __serial_clock_off(hu->tty);
242
Prasanna Karthikce26d812015-09-15 12:19:45 +0000243 BT_DBG("Vote serial clock %s(%s)", new_vote ? "true" : "false",
244 vote ? "true" : "false");
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700245
246 diff = jiffies_to_msecs(jiffies - qca->vote_last_jif);
247
248 if (new_vote) {
249 qca->votes_on++;
250 qca->vote_off_ms += diff;
251 } else {
252 qca->votes_off++;
253 qca->vote_on_ms += diff;
254 }
255 qca->vote_last_jif = jiffies;
256 }
257}
258
259/* Builds and sends an HCI_IBS command packet.
260 * These are very simple packets with only 1 cmd byte.
261 */
262static int send_hci_ibs_cmd(u8 cmd, struct hci_uart *hu)
263{
264 int err = 0;
265 struct sk_buff *skb = NULL;
266 struct qca_data *qca = hu->priv;
267
268 BT_DBG("hu %p send hci ibs cmd 0x%x", hu, cmd);
269
270 skb = bt_skb_alloc(1, GFP_ATOMIC);
271 if (!skb) {
272 BT_ERR("Failed to allocate memory for HCI_IBS packet");
273 return -ENOMEM;
274 }
275
276 /* Assign HCI_IBS type */
Johannes Berg634fef62017-06-16 14:29:24 +0200277 skb_put_u8(skb, cmd);
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700278
279 skb_queue_tail(&qca->txq, skb);
280
281 return err;
282}
283
284static void qca_wq_awake_device(struct work_struct *work)
285{
286 struct qca_data *qca = container_of(work, struct qca_data,
287 ws_awake_device);
288 struct hci_uart *hu = qca->hu;
289 unsigned long retrans_delay;
290
291 BT_DBG("hu %p wq awake device", hu);
292
293 /* Vote for serial clock */
294 serial_clock_vote(HCI_IBS_TX_VOTE_CLOCK_ON, hu);
295
296 spin_lock(&qca->hci_ibs_lock);
297
298 /* Send wake indication to device */
299 if (send_hci_ibs_cmd(HCI_IBS_WAKE_IND, hu) < 0)
300 BT_ERR("Failed to send WAKE to device");
301
302 qca->ibs_sent_wakes++;
303
304 /* Start retransmit timer */
305 retrans_delay = msecs_to_jiffies(qca->wake_retrans);
306 mod_timer(&qca->wake_retrans_timer, jiffies + retrans_delay);
307
308 spin_unlock(&qca->hci_ibs_lock);
309
310 /* Actually send the packets */
311 hci_uart_tx_wakeup(hu);
312}
313
314static void qca_wq_awake_rx(struct work_struct *work)
315{
316 struct qca_data *qca = container_of(work, struct qca_data,
317 ws_awake_rx);
318 struct hci_uart *hu = qca->hu;
319
320 BT_DBG("hu %p wq awake rx", hu);
321
322 serial_clock_vote(HCI_IBS_RX_VOTE_CLOCK_ON, hu);
323
324 spin_lock(&qca->hci_ibs_lock);
325 qca->rx_ibs_state = HCI_IBS_RX_AWAKE;
326
327 /* Always acknowledge device wake up,
328 * sending IBS message doesn't count as TX ON.
329 */
330 if (send_hci_ibs_cmd(HCI_IBS_WAKE_ACK, hu) < 0)
331 BT_ERR("Failed to acknowledge device wake up");
332
333 qca->ibs_sent_wacks++;
334
335 spin_unlock(&qca->hci_ibs_lock);
336
337 /* Actually send the packets */
338 hci_uart_tx_wakeup(hu);
339}
340
341static void qca_wq_serial_rx_clock_vote_off(struct work_struct *work)
342{
343 struct qca_data *qca = container_of(work, struct qca_data,
344 ws_rx_vote_off);
345 struct hci_uart *hu = qca->hu;
346
347 BT_DBG("hu %p rx clock vote off", hu);
348
349 serial_clock_vote(HCI_IBS_RX_VOTE_CLOCK_OFF, hu);
350}
351
352static void qca_wq_serial_tx_clock_vote_off(struct work_struct *work)
353{
354 struct qca_data *qca = container_of(work, struct qca_data,
355 ws_tx_vote_off);
356 struct hci_uart *hu = qca->hu;
357
358 BT_DBG("hu %p tx clock vote off", hu);
359
360 /* Run HCI tx handling unlocked */
361 hci_uart_tx_wakeup(hu);
362
363 /* Now that message queued to tty driver, vote for tty clocks off.
364 * It is up to the tty driver to pend the clocks off until tx done.
365 */
366 serial_clock_vote(HCI_IBS_TX_VOTE_CLOCK_OFF, hu);
367}
368
Kees Cook04356052017-10-04 17:54:29 -0700369static void hci_ibs_tx_idle_timeout(struct timer_list *t)
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700370{
Kees Cook04356052017-10-04 17:54:29 -0700371 struct qca_data *qca = from_timer(qca, t, tx_idle_timer);
372 struct hci_uart *hu = qca->hu;
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700373 unsigned long flags;
374
375 BT_DBG("hu %p idle timeout in %d state", hu, qca->tx_ibs_state);
376
377 spin_lock_irqsave_nested(&qca->hci_ibs_lock,
378 flags, SINGLE_DEPTH_NESTING);
379
380 switch (qca->tx_ibs_state) {
381 case HCI_IBS_TX_AWAKE:
382 /* TX_IDLE, go to SLEEP */
383 if (send_hci_ibs_cmd(HCI_IBS_SLEEP_IND, hu) < 0) {
384 BT_ERR("Failed to send SLEEP to device");
385 break;
386 }
387 qca->tx_ibs_state = HCI_IBS_TX_ASLEEP;
388 qca->ibs_sent_slps++;
389 queue_work(qca->workqueue, &qca->ws_tx_vote_off);
390 break;
391
392 case HCI_IBS_TX_ASLEEP:
393 case HCI_IBS_TX_WAKING:
394 /* Fall through */
395
396 default:
Colin Ian Kinge059a462017-02-17 19:58:10 +0000397 BT_ERR("Spurious timeout tx state %d", qca->tx_ibs_state);
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700398 break;
399 }
400
401 spin_unlock_irqrestore(&qca->hci_ibs_lock, flags);
402}
403
Kees Cook04356052017-10-04 17:54:29 -0700404static void hci_ibs_wake_retrans_timeout(struct timer_list *t)
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700405{
Kees Cook04356052017-10-04 17:54:29 -0700406 struct qca_data *qca = from_timer(qca, t, wake_retrans_timer);
407 struct hci_uart *hu = qca->hu;
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700408 unsigned long flags, retrans_delay;
Prasanna Karthika9137182015-09-28 08:03:24 +0000409 bool retransmit = false;
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700410
411 BT_DBG("hu %p wake retransmit timeout in %d state",
412 hu, qca->tx_ibs_state);
413
414 spin_lock_irqsave_nested(&qca->hci_ibs_lock,
415 flags, SINGLE_DEPTH_NESTING);
416
417 switch (qca->tx_ibs_state) {
418 case HCI_IBS_TX_WAKING:
419 /* No WAKE_ACK, retransmit WAKE */
Prasanna Karthika9137182015-09-28 08:03:24 +0000420 retransmit = true;
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700421 if (send_hci_ibs_cmd(HCI_IBS_WAKE_IND, hu) < 0) {
422 BT_ERR("Failed to acknowledge device wake up");
423 break;
424 }
425 qca->ibs_sent_wakes++;
426 retrans_delay = msecs_to_jiffies(qca->wake_retrans);
427 mod_timer(&qca->wake_retrans_timer, jiffies + retrans_delay);
428 break;
429
430 case HCI_IBS_TX_ASLEEP:
431 case HCI_IBS_TX_AWAKE:
432 /* Fall through */
433
434 default:
Colin Ian Kinge059a462017-02-17 19:58:10 +0000435 BT_ERR("Spurious timeout tx state %d", qca->tx_ibs_state);
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700436 break;
437 }
438
439 spin_unlock_irqrestore(&qca->hci_ibs_lock, flags);
440
441 if (retransmit)
442 hci_uart_tx_wakeup(hu);
443}
444
445/* Initialize protocol */
446static int qca_open(struct hci_uart *hu)
447{
Thierry Escande05ba5332018-03-29 21:15:24 +0200448 struct qca_serdev *qcadev;
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700449 struct qca_data *qca;
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +0530450 int ret;
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700451
452 BT_DBG("hu %p qca_open", hu);
453
Jia-Ju Bai25a13e382018-07-23 11:56:51 +0800454 qca = kzalloc(sizeof(struct qca_data), GFP_KERNEL);
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700455 if (!qca)
456 return -ENOMEM;
457
458 skb_queue_head_init(&qca->txq);
459 skb_queue_head_init(&qca->tx_wait_q);
460 spin_lock_init(&qca->hci_ibs_lock);
Bhaktipriya Shridharfac9a602016-08-30 22:42:53 +0530461 qca->workqueue = alloc_ordered_workqueue("qca_wq", 0);
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700462 if (!qca->workqueue) {
463 BT_ERR("QCA Workqueue not initialized properly");
464 kfree(qca);
465 return -ENOMEM;
466 }
467
468 INIT_WORK(&qca->ws_awake_rx, qca_wq_awake_rx);
469 INIT_WORK(&qca->ws_awake_device, qca_wq_awake_device);
470 INIT_WORK(&qca->ws_rx_vote_off, qca_wq_serial_rx_clock_vote_off);
471 INIT_WORK(&qca->ws_tx_vote_off, qca_wq_serial_tx_clock_vote_off);
472
473 qca->hu = hu;
474
475 /* Assume we start with both sides asleep -- extra wakes OK */
476 qca->tx_ibs_state = HCI_IBS_TX_ASLEEP;
477 qca->rx_ibs_state = HCI_IBS_RX_ASLEEP;
478
479 /* clocks actually on, but we start votes off */
480 qca->tx_vote = false;
481 qca->rx_vote = false;
482 qca->flags = 0;
483
484 qca->ibs_sent_wacks = 0;
485 qca->ibs_sent_slps = 0;
486 qca->ibs_sent_wakes = 0;
487 qca->ibs_recv_wacks = 0;
488 qca->ibs_recv_slps = 0;
489 qca->ibs_recv_wakes = 0;
490 qca->vote_last_jif = jiffies;
491 qca->vote_on_ms = 0;
492 qca->vote_off_ms = 0;
493 qca->votes_on = 0;
494 qca->votes_off = 0;
495 qca->tx_votes_on = 0;
496 qca->tx_votes_off = 0;
497 qca->rx_votes_on = 0;
498 qca->rx_votes_off = 0;
499
500 hu->priv = qca;
501
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +0530502 if (hu->serdev) {
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +0530503
504 qcadev = serdev_device_get_drvdata(hu->serdev);
505 if (qcadev->btsoc_type != QCA_WCN3990) {
506 gpiod_set_value_cansleep(qcadev->bt_en, 1);
507 } else {
508 hu->init_speed = qcadev->init_speed;
509 hu->oper_speed = qcadev->oper_speed;
510 ret = qca_power_setup(hu, true);
511 if (ret) {
512 destroy_workqueue(qca->workqueue);
513 kfree_skb(qca->rx_skb);
514 hu->priv = NULL;
515 kfree(qca);
516 return ret;
517 }
518 }
519 }
520
Kees Cook04356052017-10-04 17:54:29 -0700521 timer_setup(&qca->wake_retrans_timer, hci_ibs_wake_retrans_timeout, 0);
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700522 qca->wake_retrans = IBS_WAKE_RETRANS_TIMEOUT_MS;
523
Kees Cook04356052017-10-04 17:54:29 -0700524 timer_setup(&qca->tx_idle_timer, hci_ibs_tx_idle_timeout, 0);
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700525 qca->tx_idle_delay = IBS_TX_IDLE_TIMEOUT_MS;
526
527 BT_DBG("HCI_UART_QCA open, tx_idle_delay=%u, wake_retrans=%u",
528 qca->tx_idle_delay, qca->wake_retrans);
529
530 return 0;
531}
532
533static void qca_debugfs_init(struct hci_dev *hdev)
534{
535 struct hci_uart *hu = hci_get_drvdata(hdev);
536 struct qca_data *qca = hu->priv;
537 struct dentry *ibs_dir;
538 umode_t mode;
539
540 if (!hdev->debugfs)
541 return;
542
543 ibs_dir = debugfs_create_dir("ibs", hdev->debugfs);
544
545 /* read only */
546 mode = S_IRUGO;
547 debugfs_create_u8("tx_ibs_state", mode, ibs_dir, &qca->tx_ibs_state);
548 debugfs_create_u8("rx_ibs_state", mode, ibs_dir, &qca->rx_ibs_state);
549 debugfs_create_u64("ibs_sent_sleeps", mode, ibs_dir,
550 &qca->ibs_sent_slps);
551 debugfs_create_u64("ibs_sent_wakes", mode, ibs_dir,
552 &qca->ibs_sent_wakes);
553 debugfs_create_u64("ibs_sent_wake_acks", mode, ibs_dir,
554 &qca->ibs_sent_wacks);
555 debugfs_create_u64("ibs_recv_sleeps", mode, ibs_dir,
556 &qca->ibs_recv_slps);
557 debugfs_create_u64("ibs_recv_wakes", mode, ibs_dir,
558 &qca->ibs_recv_wakes);
559 debugfs_create_u64("ibs_recv_wake_acks", mode, ibs_dir,
560 &qca->ibs_recv_wacks);
Ben YoungTae Kim10be6c02015-08-13 22:09:42 -0700561 debugfs_create_bool("tx_vote", mode, ibs_dir, &qca->tx_vote);
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700562 debugfs_create_u64("tx_votes_on", mode, ibs_dir, &qca->tx_votes_on);
563 debugfs_create_u64("tx_votes_off", mode, ibs_dir, &qca->tx_votes_off);
Ben YoungTae Kim10be6c02015-08-13 22:09:42 -0700564 debugfs_create_bool("rx_vote", mode, ibs_dir, &qca->rx_vote);
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700565 debugfs_create_u64("rx_votes_on", mode, ibs_dir, &qca->rx_votes_on);
566 debugfs_create_u64("rx_votes_off", mode, ibs_dir, &qca->rx_votes_off);
567 debugfs_create_u64("votes_on", mode, ibs_dir, &qca->votes_on);
568 debugfs_create_u64("votes_off", mode, ibs_dir, &qca->votes_off);
569 debugfs_create_u32("vote_on_ms", mode, ibs_dir, &qca->vote_on_ms);
570 debugfs_create_u32("vote_off_ms", mode, ibs_dir, &qca->vote_off_ms);
571
572 /* read/write */
573 mode = S_IRUGO | S_IWUSR;
574 debugfs_create_u32("wake_retrans", mode, ibs_dir, &qca->wake_retrans);
575 debugfs_create_u32("tx_idle_delay", mode, ibs_dir,
576 &qca->tx_idle_delay);
577}
578
579/* Flush protocol data */
580static int qca_flush(struct hci_uart *hu)
581{
582 struct qca_data *qca = hu->priv;
583
584 BT_DBG("hu %p qca flush", hu);
585
586 skb_queue_purge(&qca->tx_wait_q);
587 skb_queue_purge(&qca->txq);
588
589 return 0;
590}
591
592/* Close protocol */
593static int qca_close(struct hci_uart *hu)
594{
Thierry Escande05ba5332018-03-29 21:15:24 +0200595 struct qca_serdev *qcadev;
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700596 struct qca_data *qca = hu->priv;
597
598 BT_DBG("hu %p qca close", hu);
599
600 serial_clock_vote(HCI_IBS_VOTE_STATS_UPDATE, hu);
601
602 skb_queue_purge(&qca->tx_wait_q);
603 skb_queue_purge(&qca->txq);
604 del_timer(&qca->tx_idle_timer);
605 del_timer(&qca->wake_retrans_timer);
606 destroy_workqueue(qca->workqueue);
607 qca->hu = NULL;
608
Thierry Escande05ba5332018-03-29 21:15:24 +0200609 if (hu->serdev) {
Thierry Escande05ba5332018-03-29 21:15:24 +0200610 qcadev = serdev_device_get_drvdata(hu->serdev);
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +0530611 if (qcadev->btsoc_type == QCA_WCN3990)
Balakrishna Godavarthic2d78272018-08-22 17:50:05 +0530612 qca_power_shutdown(hu);
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +0530613 else
614 gpiod_set_value_cansleep(qcadev->bt_en, 0);
615
Thierry Escande05ba5332018-03-29 21:15:24 +0200616 }
617
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700618 kfree_skb(qca->rx_skb);
619
620 hu->priv = NULL;
621
622 kfree(qca);
623
624 return 0;
625}
626
627/* Called upon a wake-up-indication from the device.
628 */
629static void device_want_to_wakeup(struct hci_uart *hu)
630{
631 unsigned long flags;
632 struct qca_data *qca = hu->priv;
633
634 BT_DBG("hu %p want to wake up", hu);
635
636 spin_lock_irqsave(&qca->hci_ibs_lock, flags);
637
638 qca->ibs_recv_wakes++;
639
640 switch (qca->rx_ibs_state) {
641 case HCI_IBS_RX_ASLEEP:
642 /* Make sure clock is on - we may have turned clock off since
643 * receiving the wake up indicator awake rx clock.
644 */
645 queue_work(qca->workqueue, &qca->ws_awake_rx);
646 spin_unlock_irqrestore(&qca->hci_ibs_lock, flags);
647 return;
648
649 case HCI_IBS_RX_AWAKE:
650 /* Always acknowledge device wake up,
651 * sending IBS message doesn't count as TX ON.
652 */
653 if (send_hci_ibs_cmd(HCI_IBS_WAKE_ACK, hu) < 0) {
654 BT_ERR("Failed to acknowledge device wake up");
655 break;
656 }
657 qca->ibs_sent_wacks++;
658 break;
659
660 default:
661 /* Any other state is illegal */
662 BT_ERR("Received HCI_IBS_WAKE_IND in rx state %d",
663 qca->rx_ibs_state);
664 break;
665 }
666
667 spin_unlock_irqrestore(&qca->hci_ibs_lock, flags);
668
669 /* Actually send the packets */
670 hci_uart_tx_wakeup(hu);
671}
672
673/* Called upon a sleep-indication from the device.
674 */
675static void device_want_to_sleep(struct hci_uart *hu)
676{
677 unsigned long flags;
678 struct qca_data *qca = hu->priv;
679
680 BT_DBG("hu %p want to sleep", hu);
681
682 spin_lock_irqsave(&qca->hci_ibs_lock, flags);
683
684 qca->ibs_recv_slps++;
685
686 switch (qca->rx_ibs_state) {
687 case HCI_IBS_RX_AWAKE:
688 /* Update state */
689 qca->rx_ibs_state = HCI_IBS_RX_ASLEEP;
690 /* Vote off rx clock under workqueue */
691 queue_work(qca->workqueue, &qca->ws_rx_vote_off);
692 break;
693
694 case HCI_IBS_RX_ASLEEP:
695 /* Fall through */
696
697 default:
698 /* Any other state is illegal */
699 BT_ERR("Received HCI_IBS_SLEEP_IND in rx state %d",
700 qca->rx_ibs_state);
701 break;
702 }
703
704 spin_unlock_irqrestore(&qca->hci_ibs_lock, flags);
705}
706
707/* Called upon wake-up-acknowledgement from the device
708 */
709static void device_woke_up(struct hci_uart *hu)
710{
711 unsigned long flags, idle_delay;
712 struct qca_data *qca = hu->priv;
713 struct sk_buff *skb = NULL;
714
715 BT_DBG("hu %p woke up", hu);
716
717 spin_lock_irqsave(&qca->hci_ibs_lock, flags);
718
719 qca->ibs_recv_wacks++;
720
721 switch (qca->tx_ibs_state) {
722 case HCI_IBS_TX_AWAKE:
723 /* Expect one if we send 2 WAKEs */
724 BT_DBG("Received HCI_IBS_WAKE_ACK in tx state %d",
725 qca->tx_ibs_state);
726 break;
727
728 case HCI_IBS_TX_WAKING:
729 /* Send pending packets */
730 while ((skb = skb_dequeue(&qca->tx_wait_q)))
731 skb_queue_tail(&qca->txq, skb);
732
733 /* Switch timers and change state to HCI_IBS_TX_AWAKE */
734 del_timer(&qca->wake_retrans_timer);
735 idle_delay = msecs_to_jiffies(qca->tx_idle_delay);
736 mod_timer(&qca->tx_idle_timer, jiffies + idle_delay);
737 qca->tx_ibs_state = HCI_IBS_TX_AWAKE;
738 break;
739
740 case HCI_IBS_TX_ASLEEP:
741 /* Fall through */
742
743 default:
744 BT_ERR("Received HCI_IBS_WAKE_ACK in tx state %d",
745 qca->tx_ibs_state);
746 break;
747 }
748
749 spin_unlock_irqrestore(&qca->hci_ibs_lock, flags);
750
751 /* Actually send the packets */
752 hci_uart_tx_wakeup(hu);
753}
754
755/* Enqueue frame for transmittion (padding, crc, etc) may be called from
756 * two simultaneous tasklets.
757 */
758static int qca_enqueue(struct hci_uart *hu, struct sk_buff *skb)
759{
760 unsigned long flags = 0, idle_delay;
761 struct qca_data *qca = hu->priv;
762
763 BT_DBG("hu %p qca enq skb %p tx_ibs_state %d", hu, skb,
764 qca->tx_ibs_state);
765
766 /* Prepend skb with frame type */
Marcel Holtmann618e8bc2015-11-05 07:33:56 +0100767 memcpy(skb_push(skb, 1), &hci_skb_pkt_type(skb), 1);
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700768
769 /* Don't go to sleep in middle of patch download or
770 * Out-Of-Band(GPIOs control) sleep is selected.
771 */
772 if (!test_bit(STATE_IN_BAND_SLEEP_ENABLED, &qca->flags)) {
773 skb_queue_tail(&qca->txq, skb);
774 return 0;
775 }
776
777 spin_lock_irqsave(&qca->hci_ibs_lock, flags);
778
779 /* Act according to current state */
780 switch (qca->tx_ibs_state) {
781 case HCI_IBS_TX_AWAKE:
782 BT_DBG("Device awake, sending normally");
783 skb_queue_tail(&qca->txq, skb);
784 idle_delay = msecs_to_jiffies(qca->tx_idle_delay);
785 mod_timer(&qca->tx_idle_timer, jiffies + idle_delay);
786 break;
787
788 case HCI_IBS_TX_ASLEEP:
789 BT_DBG("Device asleep, waking up and queueing packet");
790 /* Save packet for later */
791 skb_queue_tail(&qca->tx_wait_q, skb);
792
793 qca->tx_ibs_state = HCI_IBS_TX_WAKING;
794 /* Schedule a work queue to wake up device */
795 queue_work(qca->workqueue, &qca->ws_awake_device);
796 break;
797
798 case HCI_IBS_TX_WAKING:
799 BT_DBG("Device waking up, queueing packet");
800 /* Transient state; just keep packet for later */
801 skb_queue_tail(&qca->tx_wait_q, skb);
802 break;
803
804 default:
805 BT_ERR("Illegal tx state: %d (losing packet)",
806 qca->tx_ibs_state);
807 kfree_skb(skb);
808 break;
809 }
810
811 spin_unlock_irqrestore(&qca->hci_ibs_lock, flags);
812
813 return 0;
814}
815
816static int qca_ibs_sleep_ind(struct hci_dev *hdev, struct sk_buff *skb)
817{
818 struct hci_uart *hu = hci_get_drvdata(hdev);
819
820 BT_DBG("hu %p recv hci ibs cmd 0x%x", hu, HCI_IBS_SLEEP_IND);
821
822 device_want_to_sleep(hu);
823
824 kfree_skb(skb);
825 return 0;
826}
827
828static int qca_ibs_wake_ind(struct hci_dev *hdev, struct sk_buff *skb)
829{
830 struct hci_uart *hu = hci_get_drvdata(hdev);
831
832 BT_DBG("hu %p recv hci ibs cmd 0x%x", hu, HCI_IBS_WAKE_IND);
833
834 device_want_to_wakeup(hu);
835
836 kfree_skb(skb);
837 return 0;
838}
839
840static int qca_ibs_wake_ack(struct hci_dev *hdev, struct sk_buff *skb)
841{
842 struct hci_uart *hu = hci_get_drvdata(hdev);
843
844 BT_DBG("hu %p recv hci ibs cmd 0x%x", hu, HCI_IBS_WAKE_ACK);
845
846 device_woke_up(hu);
847
848 kfree_skb(skb);
849 return 0;
850}
851
852#define QCA_IBS_SLEEP_IND_EVENT \
853 .type = HCI_IBS_SLEEP_IND, \
854 .hlen = 0, \
855 .loff = 0, \
856 .lsize = 0, \
857 .maxlen = HCI_MAX_IBS_SIZE
858
859#define QCA_IBS_WAKE_IND_EVENT \
860 .type = HCI_IBS_WAKE_IND, \
861 .hlen = 0, \
862 .loff = 0, \
863 .lsize = 0, \
864 .maxlen = HCI_MAX_IBS_SIZE
865
866#define QCA_IBS_WAKE_ACK_EVENT \
867 .type = HCI_IBS_WAKE_ACK, \
868 .hlen = 0, \
869 .loff = 0, \
870 .lsize = 0, \
871 .maxlen = HCI_MAX_IBS_SIZE
872
873static const struct h4_recv_pkt qca_recv_pkts[] = {
874 { H4_RECV_ACL, .recv = hci_recv_frame },
875 { H4_RECV_SCO, .recv = hci_recv_frame },
876 { H4_RECV_EVENT, .recv = hci_recv_frame },
877 { QCA_IBS_WAKE_IND_EVENT, .recv = qca_ibs_wake_ind },
878 { QCA_IBS_WAKE_ACK_EVENT, .recv = qca_ibs_wake_ack },
879 { QCA_IBS_SLEEP_IND_EVENT, .recv = qca_ibs_sleep_ind },
880};
881
882static int qca_recv(struct hci_uart *hu, const void *data, int count)
883{
884 struct qca_data *qca = hu->priv;
885
886 if (!test_bit(HCI_UART_REGISTERED, &hu->flags))
887 return -EUNATCH;
888
889 qca->rx_skb = h4_recv_buf(hu->hdev, qca->rx_skb, data, count,
890 qca_recv_pkts, ARRAY_SIZE(qca_recv_pkts));
891 if (IS_ERR(qca->rx_skb)) {
892 int err = PTR_ERR(qca->rx_skb);
Marcel Holtmann2064ee32017-10-30 10:42:59 +0100893 bt_dev_err(hu->hdev, "Frame reassembly failed (%d)", err);
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700894 qca->rx_skb = NULL;
895 return err;
896 }
897
898 return count;
899}
900
901static struct sk_buff *qca_dequeue(struct hci_uart *hu)
902{
903 struct qca_data *qca = hu->priv;
904
905 return skb_dequeue(&qca->txq);
906}
907
908static uint8_t qca_get_baudrate_value(int speed)
909{
Prasanna Karthikce26d812015-09-15 12:19:45 +0000910 switch (speed) {
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700911 case 9600:
912 return QCA_BAUDRATE_9600;
913 case 19200:
914 return QCA_BAUDRATE_19200;
915 case 38400:
916 return QCA_BAUDRATE_38400;
917 case 57600:
918 return QCA_BAUDRATE_57600;
919 case 115200:
920 return QCA_BAUDRATE_115200;
921 case 230400:
922 return QCA_BAUDRATE_230400;
923 case 460800:
924 return QCA_BAUDRATE_460800;
925 case 500000:
926 return QCA_BAUDRATE_500000;
927 case 921600:
928 return QCA_BAUDRATE_921600;
929 case 1000000:
930 return QCA_BAUDRATE_1000000;
931 case 2000000:
932 return QCA_BAUDRATE_2000000;
933 case 3000000:
934 return QCA_BAUDRATE_3000000;
Balakrishna Godavarthibe93a492018-08-03 17:46:30 +0530935 case 3200000:
936 return QCA_BAUDRATE_3200000;
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700937 case 3500000:
938 return QCA_BAUDRATE_3500000;
939 default:
940 return QCA_BAUDRATE_115200;
941 }
942}
943
944static int qca_set_baudrate(struct hci_dev *hdev, uint8_t baudrate)
945{
946 struct hci_uart *hu = hci_get_drvdata(hdev);
947 struct qca_data *qca = hu->priv;
948 struct sk_buff *skb;
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +0530949 struct qca_serdev *qcadev;
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700950 u8 cmd[] = { 0x01, 0x48, 0xFC, 0x01, 0x00 };
951
Balakrishna Godavarthibe93a492018-08-03 17:46:30 +0530952 if (baudrate > QCA_BAUDRATE_3200000)
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700953 return -EINVAL;
954
955 cmd[4] = baudrate;
956
Jia-Ju Bai25a13e382018-07-23 11:56:51 +0800957 skb = bt_skb_alloc(sizeof(cmd), GFP_KERNEL);
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700958 if (!skb) {
Marcel Holtmann2064ee32017-10-30 10:42:59 +0100959 bt_dev_err(hdev, "Failed to allocate baudrate packet");
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700960 return -ENOMEM;
961 }
962
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +0530963 /* Disabling hardware flow control is mandatory while
964 * sending change baudrate request to wcn3990 SoC.
965 */
966 qcadev = serdev_device_get_drvdata(hu->serdev);
967 if (qcadev->btsoc_type == QCA_WCN3990)
968 hci_uart_set_flow_control(hu, true);
969
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700970 /* Assign commands to change baudrate and packet type. */
Johannes Berg59ae1d12017-06-16 14:29:20 +0200971 skb_put_data(skb, cmd, sizeof(cmd));
Marcel Holtmann618e8bc2015-11-05 07:33:56 +0100972 hci_skb_pkt_type(skb) = HCI_COMMAND_PKT;
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700973
974 skb_queue_tail(&qca->txq, skb);
975 hci_uart_tx_wakeup(hu);
976
977 /* wait 300ms to change new baudrate on controller side
978 * controller will come back after they receive this HCI command
979 * then host can communicate with new baudrate to controller
980 */
981 set_current_state(TASK_UNINTERRUPTIBLE);
982 schedule_timeout(msecs_to_jiffies(BAUDRATE_SETTLE_TIMEOUT_MS));
Thierry Escande99605212018-05-29 18:37:16 +0200983 set_current_state(TASK_RUNNING);
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700984
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +0530985 if (qcadev->btsoc_type == QCA_WCN3990)
986 hci_uart_set_flow_control(hu, false);
987
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -0700988 return 0;
989}
990
Thierry Escande05ba5332018-03-29 21:15:24 +0200991static inline void host_set_baudrate(struct hci_uart *hu, unsigned int speed)
992{
993 if (hu->serdev)
994 serdev_device_set_baudrate(hu->serdev, speed);
995 else
996 hci_uart_set_baudrate(hu, speed);
997}
998
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +0530999static int qca_send_power_pulse(struct hci_dev *hdev, u8 cmd)
1000{
1001 struct hci_uart *hu = hci_get_drvdata(hdev);
1002 struct qca_data *qca = hu->priv;
1003 struct sk_buff *skb;
1004
1005 /* These power pulses are single byte command which are sent
1006 * at required baudrate to wcn3990. On wcn3990, we have an external
1007 * circuit at Tx pin which decodes the pulse sent at specific baudrate.
1008 * For example, wcn3990 supports RF COEX antenna for both Wi-Fi/BT
1009 * and also we use the same power inputs to turn on and off for
1010 * Wi-Fi/BT. Powering up the power sources will not enable BT, until
1011 * we send a power on pulse at 115200 bps. This algorithm will help to
1012 * save power. Disabling hardware flow control is mandatory while
1013 * sending power pulses to SoC.
1014 */
1015 bt_dev_dbg(hdev, "sending power pulse %02x to SoC", cmd);
1016
1017 skb = bt_skb_alloc(sizeof(cmd), GFP_KERNEL);
1018 if (!skb)
1019 return -ENOMEM;
1020
1021 hci_uart_set_flow_control(hu, true);
1022
1023 skb_put_u8(skb, cmd);
1024 hci_skb_pkt_type(skb) = HCI_COMMAND_PKT;
1025
1026 skb_queue_tail(&qca->txq, skb);
1027 hci_uart_tx_wakeup(hu);
1028
1029 /* Wait for 100 uS for SoC to settle down */
1030 usleep_range(100, 200);
1031 hci_uart_set_flow_control(hu, false);
1032
1033 return 0;
1034}
1035
Balakrishna Godavarthi83d9c5e2018-08-03 17:46:29 +05301036static unsigned int qca_get_speed(struct hci_uart *hu,
1037 enum qca_speed_type speed_type)
1038{
1039 unsigned int speed = 0;
1040
1041 if (speed_type == QCA_INIT_SPEED) {
1042 if (hu->init_speed)
1043 speed = hu->init_speed;
1044 else if (hu->proto->init_speed)
1045 speed = hu->proto->init_speed;
1046 } else {
1047 if (hu->oper_speed)
1048 speed = hu->oper_speed;
1049 else if (hu->proto->oper_speed)
1050 speed = hu->proto->oper_speed;
1051 }
1052
1053 return speed;
1054}
1055
1056static int qca_check_speeds(struct hci_uart *hu)
1057{
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301058 struct qca_serdev *qcadev;
1059
1060 qcadev = serdev_device_get_drvdata(hu->serdev);
1061 if (qcadev->btsoc_type == QCA_WCN3990) {
1062 if (!qca_get_speed(hu, QCA_INIT_SPEED) &&
1063 !qca_get_speed(hu, QCA_OPER_SPEED))
1064 return -EINVAL;
1065 } else {
1066 if (!qca_get_speed(hu, QCA_INIT_SPEED) ||
1067 !qca_get_speed(hu, QCA_OPER_SPEED))
1068 return -EINVAL;
1069 }
Balakrishna Godavarthi83d9c5e2018-08-03 17:46:29 +05301070
1071 return 0;
1072}
1073
1074static int qca_set_speed(struct hci_uart *hu, enum qca_speed_type speed_type)
1075{
1076 unsigned int speed, qca_baudrate;
1077 int ret;
1078
1079 if (speed_type == QCA_INIT_SPEED) {
1080 speed = qca_get_speed(hu, QCA_INIT_SPEED);
1081 if (speed)
1082 host_set_baudrate(hu, speed);
1083 } else {
1084 speed = qca_get_speed(hu, QCA_OPER_SPEED);
1085 if (!speed)
1086 return 0;
1087
1088 qca_baudrate = qca_get_baudrate_value(speed);
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301089 bt_dev_dbg(hu->hdev, "Set UART speed to %d", speed);
Balakrishna Godavarthi83d9c5e2018-08-03 17:46:29 +05301090 ret = qca_set_baudrate(hu->hdev, qca_baudrate);
1091 if (ret)
1092 return ret;
1093
1094 host_set_baudrate(hu, speed);
1095 }
1096
1097 return 0;
1098}
1099
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301100static int qca_wcn3990_init(struct hci_uart *hu)
1101{
1102 struct hci_dev *hdev = hu->hdev;
Balakrishna Godavarthi3e4be652018-09-24 20:14:45 +05301103 struct qca_serdev *qcadev;
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301104 int ret;
1105
Balakrishna Godavarthi3e4be652018-09-24 20:14:45 +05301106 /* Check for vregs status, may be hci down has turned
1107 * off the voltage regulator.
1108 */
1109 qcadev = serdev_device_get_drvdata(hu->serdev);
1110 if (!qcadev->bt_power->vregs_on) {
1111 serdev_device_close(hu->serdev);
1112 ret = qca_power_setup(hu, true);
1113 if (ret)
1114 return ret;
1115
1116 ret = serdev_device_open(hu->serdev);
1117 if (ret) {
1118 bt_dev_err(hu->hdev, "failed to open port");
1119 return ret;
1120 }
1121 }
1122
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301123 /* Forcefully enable wcn3990 to enter in to boot mode. */
1124 host_set_baudrate(hu, 2400);
1125 ret = qca_send_power_pulse(hdev, QCA_WCN3990_POWEROFF_PULSE);
1126 if (ret)
1127 return ret;
1128
1129 qca_set_speed(hu, QCA_INIT_SPEED);
1130 ret = qca_send_power_pulse(hdev, QCA_WCN3990_POWERON_PULSE);
1131 if (ret)
1132 return ret;
1133
1134 /* Wait for 100 ms for SoC to boot */
1135 msleep(100);
1136
1137 /* Now the device is in ready state to communicate with host.
1138 * To sync host with device we need to reopen port.
1139 * Without this, we will have RTS and CTS synchronization
1140 * issues.
1141 */
1142 serdev_device_close(hu->serdev);
1143 ret = serdev_device_open(hu->serdev);
1144 if (ret) {
1145 bt_dev_err(hu->hdev, "failed to open port");
1146 return ret;
1147 }
1148
1149 hci_uart_set_flow_control(hu, false);
1150
1151 return 0;
1152}
1153
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -07001154static int qca_setup(struct hci_uart *hu)
1155{
1156 struct hci_dev *hdev = hu->hdev;
1157 struct qca_data *qca = hu->priv;
1158 unsigned int speed, qca_baudrate = QCA_BAUDRATE_115200;
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301159 struct qca_serdev *qcadev;
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -07001160 int ret;
Balakrishna Godavarthiaadebac2018-08-03 17:46:28 +05301161 int soc_ver = 0;
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -07001162
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301163 qcadev = serdev_device_get_drvdata(hu->serdev);
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -07001164
Balakrishna Godavarthi83d9c5e2018-08-03 17:46:29 +05301165 ret = qca_check_speeds(hu);
1166 if (ret)
1167 return ret;
1168
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -07001169 /* Patch downloading has to be done without IBS mode */
1170 clear_bit(STATE_IN_BAND_SLEEP_ENABLED, &qca->flags);
1171
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301172 if (qcadev->btsoc_type == QCA_WCN3990) {
1173 bt_dev_info(hdev, "setting up wcn3990");
Balakrishna Godavarthi3e4be652018-09-24 20:14:45 +05301174
1175 /* Enable NON_PERSISTENT_SETUP QUIRK to ensure to execute
1176 * setup for every hci up.
1177 */
1178 set_bit(HCI_QUIRK_NON_PERSISTENT_SETUP, &hdev->quirks);
1179 hu->hdev->shutdown = qca_power_off;
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301180 ret = qca_wcn3990_init(hu);
1181 if (ret)
1182 return ret;
1183
1184 ret = qca_read_soc_version(hdev, &soc_ver);
1185 if (ret)
1186 return ret;
1187 } else {
1188 bt_dev_info(hdev, "ROME setup");
1189 qca_set_speed(hu, QCA_INIT_SPEED);
1190 }
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -07001191
1192 /* Setup user speed if needed */
Balakrishna Godavarthi83d9c5e2018-08-03 17:46:29 +05301193 speed = qca_get_speed(hu, QCA_OPER_SPEED);
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -07001194 if (speed) {
Balakrishna Godavarthi83d9c5e2018-08-03 17:46:29 +05301195 ret = qca_set_speed(hu, QCA_OPER_SPEED);
1196 if (ret)
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -07001197 return ret;
Balakrishna Godavarthi83d9c5e2018-08-03 17:46:29 +05301198
1199 qca_baudrate = qca_get_baudrate_value(speed);
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -07001200 }
1201
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301202 if (qcadev->btsoc_type != QCA_WCN3990) {
1203 /* Get QCA version information */
1204 ret = qca_read_soc_version(hdev, &soc_ver);
1205 if (ret)
1206 return ret;
1207 }
Balakrishna Godavarthiaadebac2018-08-03 17:46:28 +05301208
1209 bt_dev_info(hdev, "QCA controller version 0x%08x", soc_ver);
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -07001210 /* Setup patch / NVM configurations */
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301211 ret = qca_uart_setup(hdev, qca_baudrate, qcadev->btsoc_type, soc_ver);
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -07001212 if (!ret) {
1213 set_bit(STATE_IN_BAND_SLEEP_ENABLED, &qca->flags);
1214 qca_debugfs_init(hdev);
Loic Poulainba8f3592017-11-06 12:16:56 +01001215 } else if (ret == -ENOENT) {
1216 /* No patch/nvm-config found, run with original fw/config */
1217 ret = 0;
Amit Pundir7dc5fe02018-04-16 12:10:24 +05301218 } else if (ret == -EAGAIN) {
1219 /*
1220 * Userspace firmware loader will return -EAGAIN in case no
1221 * patch/nvm-config is found, so run with original fw/config.
1222 */
1223 ret = 0;
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -07001224 }
1225
1226 /* Setup bdaddr */
1227 hu->hdev->set_bdaddr = qca_set_bdaddr_rome;
1228
1229 return ret;
1230}
1231
1232static struct hci_uart_proto qca_proto = {
1233 .id = HCI_UART_QCA,
1234 .name = "QCA",
Marcel Holtmannaee61f72015-10-20 21:30:45 +02001235 .manufacturer = 29,
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -07001236 .init_speed = 115200,
1237 .oper_speed = 3000000,
1238 .open = qca_open,
1239 .close = qca_close,
1240 .flush = qca_flush,
1241 .setup = qca_setup,
1242 .recv = qca_recv,
1243 .enqueue = qca_enqueue,
1244 .dequeue = qca_dequeue,
1245};
1246
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301247static const struct qca_vreg_data qca_soc_data = {
1248 .soc_type = QCA_WCN3990,
1249 .vregs = (struct qca_vreg []) {
1250 { "vddio", 1800000, 1900000, 15000 },
1251 { "vddxo", 1800000, 1900000, 80000 },
1252 { "vddrf", 1300000, 1350000, 300000 },
1253 { "vddch0", 3300000, 3400000, 450000 },
1254 },
1255 .num_vregs = 4,
1256};
1257
Balakrishna Godavarthic2d78272018-08-22 17:50:05 +05301258static void qca_power_shutdown(struct hci_uart *hu)
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301259{
Balakrishna Godavarthic2d78272018-08-22 17:50:05 +05301260 struct serdev_device *serdev = hu->serdev;
1261 unsigned char cmd = QCA_WCN3990_POWEROFF_PULSE;
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301262
1263 host_set_baudrate(hu, 2400);
Balakrishna Godavarthic2d78272018-08-22 17:50:05 +05301264 hci_uart_set_flow_control(hu, true);
1265 serdev_device_write_buf(serdev, &cmd, sizeof(cmd));
1266 hci_uart_set_flow_control(hu, false);
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301267 qca_power_setup(hu, false);
1268}
1269
Balakrishna Godavarthi3e4be652018-09-24 20:14:45 +05301270static int qca_power_off(struct hci_dev *hdev)
1271{
1272 struct hci_uart *hu = hci_get_drvdata(hdev);
1273
1274 qca_power_shutdown(hu);
1275 return 0;
1276}
1277
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301278static int qca_enable_regulator(struct qca_vreg vregs,
1279 struct regulator *regulator)
1280{
1281 int ret;
1282
1283 ret = regulator_set_voltage(regulator, vregs.min_uV,
1284 vregs.max_uV);
1285 if (ret)
1286 return ret;
1287
1288 if (vregs.load_uA)
1289 ret = regulator_set_load(regulator,
1290 vregs.load_uA);
1291
1292 if (ret)
1293 return ret;
1294
1295 return regulator_enable(regulator);
1296
1297}
1298
1299static void qca_disable_regulator(struct qca_vreg vregs,
1300 struct regulator *regulator)
1301{
1302 regulator_disable(regulator);
1303 regulator_set_voltage(regulator, 0, vregs.max_uV);
1304 if (vregs.load_uA)
1305 regulator_set_load(regulator, 0);
1306
1307}
1308
1309static int qca_power_setup(struct hci_uart *hu, bool on)
1310{
1311 struct qca_vreg *vregs;
1312 struct regulator_bulk_data *vreg_bulk;
1313 struct qca_serdev *qcadev;
1314 int i, num_vregs, ret = 0;
1315
1316 qcadev = serdev_device_get_drvdata(hu->serdev);
1317 if (!qcadev || !qcadev->bt_power || !qcadev->bt_power->vreg_data ||
1318 !qcadev->bt_power->vreg_bulk)
1319 return -EINVAL;
1320
1321 vregs = qcadev->bt_power->vreg_data->vregs;
1322 vreg_bulk = qcadev->bt_power->vreg_bulk;
1323 num_vregs = qcadev->bt_power->vreg_data->num_vregs;
1324 BT_DBG("on: %d", on);
1325 if (on && !qcadev->bt_power->vregs_on) {
1326 for (i = 0; i < num_vregs; i++) {
1327 ret = qca_enable_regulator(vregs[i],
1328 vreg_bulk[i].consumer);
1329 if (ret)
1330 break;
1331 }
1332
1333 if (ret) {
1334 BT_ERR("failed to enable regulator:%s", vregs[i].name);
1335 /* turn off regulators which are enabled */
1336 for (i = i - 1; i >= 0; i--)
1337 qca_disable_regulator(vregs[i],
1338 vreg_bulk[i].consumer);
1339 } else {
1340 qcadev->bt_power->vregs_on = true;
1341 }
1342 } else if (!on && qcadev->bt_power->vregs_on) {
1343 /* turn off regulator in reverse order */
1344 i = qcadev->bt_power->vreg_data->num_vregs - 1;
1345 for ( ; i >= 0; i--)
1346 qca_disable_regulator(vregs[i], vreg_bulk[i].consumer);
1347
1348 qcadev->bt_power->vregs_on = false;
1349 }
1350
1351 return ret;
1352}
1353
1354static int qca_init_regulators(struct qca_power *qca,
1355 const struct qca_vreg *vregs, size_t num_vregs)
1356{
1357 int i;
1358
1359 qca->vreg_bulk = devm_kzalloc(qca->dev, num_vregs *
1360 sizeof(struct regulator_bulk_data),
1361 GFP_KERNEL);
1362 if (!qca->vreg_bulk)
1363 return -ENOMEM;
1364
1365 for (i = 0; i < num_vregs; i++)
1366 qca->vreg_bulk[i].supply = vregs[i].name;
1367
1368 return devm_regulator_bulk_get(qca->dev, num_vregs, qca->vreg_bulk);
1369}
1370
Thierry Escande05ba5332018-03-29 21:15:24 +02001371static int qca_serdev_probe(struct serdev_device *serdev)
1372{
1373 struct qca_serdev *qcadev;
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301374 const struct qca_vreg_data *data;
Thierry Escande05ba5332018-03-29 21:15:24 +02001375 int err;
1376
1377 qcadev = devm_kzalloc(&serdev->dev, sizeof(*qcadev), GFP_KERNEL);
1378 if (!qcadev)
1379 return -ENOMEM;
1380
1381 qcadev->serdev_hu.serdev = serdev;
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301382 data = of_device_get_match_data(&serdev->dev);
Thierry Escande05ba5332018-03-29 21:15:24 +02001383 serdev_device_set_drvdata(serdev, qcadev);
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301384 if (data && data->soc_type == QCA_WCN3990) {
1385 qcadev->btsoc_type = QCA_WCN3990;
1386 qcadev->bt_power = devm_kzalloc(&serdev->dev,
1387 sizeof(struct qca_power),
1388 GFP_KERNEL);
1389 if (!qcadev->bt_power)
1390 return -ENOMEM;
Thierry Escande05ba5332018-03-29 21:15:24 +02001391
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301392 qcadev->bt_power->dev = &serdev->dev;
1393 qcadev->bt_power->vreg_data = data;
1394 err = qca_init_regulators(qcadev->bt_power, data->vregs,
1395 data->num_vregs);
1396 if (err) {
1397 BT_ERR("Failed to init regulators:%d", err);
1398 goto out;
1399 }
1400
1401 qcadev->bt_power->vregs_on = false;
1402
1403 device_property_read_u32(&serdev->dev, "max-speed",
1404 &qcadev->oper_speed);
1405 if (!qcadev->oper_speed)
1406 BT_DBG("UART will pick default operating speed");
1407
1408 err = hci_uart_register_device(&qcadev->serdev_hu, &qca_proto);
1409 if (err) {
1410 BT_ERR("wcn3990 serdev registration failed");
1411 goto out;
1412 }
1413 } else {
1414 qcadev->btsoc_type = QCA_ROME;
1415 qcadev->bt_en = devm_gpiod_get(&serdev->dev, "enable",
1416 GPIOD_OUT_LOW);
1417 if (IS_ERR(qcadev->bt_en)) {
1418 dev_err(&serdev->dev, "failed to acquire enable gpio\n");
1419 return PTR_ERR(qcadev->bt_en);
1420 }
1421
1422 qcadev->susclk = devm_clk_get(&serdev->dev, NULL);
1423 if (IS_ERR(qcadev->susclk)) {
1424 dev_err(&serdev->dev, "failed to acquire clk\n");
1425 return PTR_ERR(qcadev->susclk);
1426 }
1427
1428 err = clk_set_rate(qcadev->susclk, SUSCLK_RATE_32KHZ);
1429 if (err)
1430 return err;
1431
1432 err = clk_prepare_enable(qcadev->susclk);
1433 if (err)
1434 return err;
1435
1436 err = hci_uart_register_device(&qcadev->serdev_hu, &qca_proto);
1437 if (err)
1438 clk_disable_unprepare(qcadev->susclk);
Thierry Escande05ba5332018-03-29 21:15:24 +02001439 }
1440
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301441out: return err;
Thierry Escande05ba5332018-03-29 21:15:24 +02001442
Thierry Escande05ba5332018-03-29 21:15:24 +02001443}
1444
1445static void qca_serdev_remove(struct serdev_device *serdev)
1446{
1447 struct qca_serdev *qcadev = serdev_device_get_drvdata(serdev);
1448
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301449 if (qcadev->btsoc_type == QCA_WCN3990)
Balakrishna Godavarthic2d78272018-08-22 17:50:05 +05301450 qca_power_shutdown(&qcadev->serdev_hu);
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301451 else
1452 clk_disable_unprepare(qcadev->susclk);
Thierry Escande05ba5332018-03-29 21:15:24 +02001453
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301454 hci_uart_unregister_device(&qcadev->serdev_hu);
Thierry Escande05ba5332018-03-29 21:15:24 +02001455}
1456
1457static const struct of_device_id qca_bluetooth_of_match[] = {
1458 { .compatible = "qcom,qca6174-bt" },
Balakrishna Godavarthifa9ad872018-08-03 17:46:32 +05301459 { .compatible = "qcom,wcn3990-bt", .data = &qca_soc_data},
Thierry Escande05ba5332018-03-29 21:15:24 +02001460 { /* sentinel */ }
1461};
1462MODULE_DEVICE_TABLE(of, qca_bluetooth_of_match);
1463
1464static struct serdev_device_driver qca_serdev_driver = {
1465 .probe = qca_serdev_probe,
1466 .remove = qca_serdev_remove,
1467 .driver = {
1468 .name = "hci_uart_qca",
1469 .of_match_table = qca_bluetooth_of_match,
1470 },
1471};
1472
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -07001473int __init qca_init(void)
1474{
Thierry Escande05ba5332018-03-29 21:15:24 +02001475 serdev_device_driver_register(&qca_serdev_driver);
1476
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -07001477 return hci_uart_register_proto(&qca_proto);
1478}
1479
1480int __exit qca_deinit(void)
1481{
Thierry Escande05ba5332018-03-29 21:15:24 +02001482 serdev_device_driver_unregister(&qca_serdev_driver);
1483
Ben Young Tae Kim0ff252c2015-08-10 14:24:17 -07001484 return hci_uart_unregister_proto(&qca_proto);
1485}