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b.liue9582032025-04-17 19:18:16 +08001// SPDX-License-Identifier: GPL-2.0
2// Copyright (c) 2018 MediaTek Inc.
3
4/*
5 * Bluetooth support for MediaTek serial devices
6 *
7 * Author: Sean Wang <sean.wang@mediatek.com>
8 *
9 */
10
11#include <asm/unaligned.h>
12#include <linux/atomic.h>
13#include <linux/clk.h>
14#include <linux/firmware.h>
15#include <linux/gpio/consumer.h>
16#include <linux/iopoll.h>
17#include <linux/kernel.h>
18#include <linux/module.h>
19#include <linux/of.h>
20#include <linux/of_device.h>
21#include <linux/pinctrl/consumer.h>
22#include <linux/pm_runtime.h>
23#include <linux/regulator/consumer.h>
24#include <linux/serdev.h>
25#include <linux/skbuff.h>
26
27#include <net/bluetooth/bluetooth.h>
28#include <net/bluetooth/hci_core.h>
29
30#include "h4_recv.h"
31
32#define VERSION "0.2"
33
34#define FIRMWARE_MT7622 "mediatek/mt7622pr2h.bin"
35#define FIRMWARE_MT7663 "mediatek/mt7663pr2h.bin"
36#define FIRMWARE_MT7668 "mediatek/mt7668pr2h.bin"
37
38#define MTK_STP_TLR_SIZE 2
39
40#define BTMTKUART_TX_STATE_ACTIVE 1
41#define BTMTKUART_TX_STATE_WAKEUP 2
42#define BTMTKUART_TX_WAIT_VND_EVT 3
43#define BTMTKUART_REQUIRED_WAKEUP 4
44
45#define BTMTKUART_FLAG_STANDALONE_HW BIT(0)
46
47enum {
48 MTK_WMT_PATCH_DWNLD = 0x1,
49 MTK_WMT_TEST = 0x2,
50 MTK_WMT_WAKEUP = 0x3,
51 MTK_WMT_HIF = 0x4,
52 MTK_WMT_FUNC_CTRL = 0x6,
53 MTK_WMT_RST = 0x7,
54 MTK_WMT_SEMAPHORE = 0x17,
55};
56
57enum {
58 BTMTK_WMT_INVALID,
59 BTMTK_WMT_PATCH_UNDONE,
60 BTMTK_WMT_PATCH_DONE,
61 BTMTK_WMT_ON_UNDONE,
62 BTMTK_WMT_ON_DONE,
63 BTMTK_WMT_ON_PROGRESS,
64};
65
66struct mtk_stp_hdr {
67 u8 prefix;
68 __be16 dlen;
69 u8 cs;
70} __packed;
71
72struct btmtkuart_data {
73 unsigned int flags;
74 const char *fwname;
75};
76
77struct mtk_wmt_hdr {
78 u8 dir;
79 u8 op;
80 __le16 dlen;
81 u8 flag;
82} __packed;
83
84struct mtk_hci_wmt_cmd {
85 struct mtk_wmt_hdr hdr;
86 u8 data[256];
87} __packed;
88
89struct btmtk_hci_wmt_evt {
90 struct hci_event_hdr hhdr;
91 struct mtk_wmt_hdr whdr;
92} __packed;
93
94struct btmtk_hci_wmt_evt_funcc {
95 struct btmtk_hci_wmt_evt hwhdr;
96 __be16 status;
97} __packed;
98
99struct btmtk_tci_sleep {
100 u8 mode;
101 __le16 duration;
102 __le16 host_duration;
103 u8 host_wakeup_pin;
104 u8 time_compensation;
105} __packed;
106
107struct btmtk_hci_wmt_params {
108 u8 op;
109 u8 flag;
110 u16 dlen;
111 const void *data;
112 u32 *status;
113};
114
115struct btmtkuart_dev {
116 struct hci_dev *hdev;
117 struct serdev_device *serdev;
118
119 struct clk *clk;
120 struct clk *osc;
121 struct regulator *vcc;
122 struct gpio_desc *reset;
123 struct gpio_desc *boot;
124 struct pinctrl *pinctrl;
125 struct pinctrl_state *pins_runtime;
126 struct pinctrl_state *pins_boot;
127 speed_t desired_speed;
128 speed_t curr_speed;
129
130 struct work_struct tx_work;
131 unsigned long tx_state;
132 struct sk_buff_head txq;
133
134 struct sk_buff *rx_skb;
135 struct sk_buff *evt_skb;
136
137 u8 stp_pad[6];
138 u8 stp_cursor;
139 u16 stp_dlen;
140
141 const struct btmtkuart_data *data;
142};
143
144#define btmtkuart_is_standalone(bdev) \
145 ((bdev)->data->flags & BTMTKUART_FLAG_STANDALONE_HW)
146#define btmtkuart_is_builtin_soc(bdev) \
147 !((bdev)->data->flags & BTMTKUART_FLAG_STANDALONE_HW)
148
149static int mtk_hci_wmt_sync(struct hci_dev *hdev,
150 struct btmtk_hci_wmt_params *wmt_params)
151{
152 struct btmtkuart_dev *bdev = hci_get_drvdata(hdev);
153 struct btmtk_hci_wmt_evt_funcc *wmt_evt_funcc;
154 u32 hlen, status = BTMTK_WMT_INVALID;
155 struct btmtk_hci_wmt_evt *wmt_evt;
156 struct mtk_hci_wmt_cmd wc;
157 struct mtk_wmt_hdr *hdr;
158 int err;
159
160 hlen = sizeof(*hdr) + wmt_params->dlen;
161 if (hlen > 255) {
162 err = -EINVAL;
163 goto err_free_skb;
164 }
165
166 hdr = (struct mtk_wmt_hdr *)&wc;
167 hdr->dir = 1;
168 hdr->op = wmt_params->op;
169 hdr->dlen = cpu_to_le16(wmt_params->dlen + 1);
170 hdr->flag = wmt_params->flag;
171 memcpy(wc.data, wmt_params->data, wmt_params->dlen);
172
173 set_bit(BTMTKUART_TX_WAIT_VND_EVT, &bdev->tx_state);
174
175 err = __hci_cmd_send(hdev, 0xfc6f, hlen, &wc);
176 if (err < 0) {
177 clear_bit(BTMTKUART_TX_WAIT_VND_EVT, &bdev->tx_state);
178 goto err_free_skb;
179 }
180
181 /* The vendor specific WMT commands are all answered by a vendor
182 * specific event and will not have the Command Status or Command
183 * Complete as with usual HCI command flow control.
184 *
185 * After sending the command, wait for BTMTKUART_TX_WAIT_VND_EVT
186 * state to be cleared. The driver specific event receive routine
187 * will clear that state and with that indicate completion of the
188 * WMT command.
189 */
190 err = wait_on_bit_timeout(&bdev->tx_state, BTMTKUART_TX_WAIT_VND_EVT,
191 TASK_INTERRUPTIBLE, HCI_INIT_TIMEOUT);
192 if (err == -EINTR) {
193 bt_dev_err(hdev, "Execution of wmt command interrupted");
194 clear_bit(BTMTKUART_TX_WAIT_VND_EVT, &bdev->tx_state);
195 goto err_free_skb;
196 }
197
198 if (err) {
199 bt_dev_err(hdev, "Execution of wmt command timed out");
200 clear_bit(BTMTKUART_TX_WAIT_VND_EVT, &bdev->tx_state);
201 err = -ETIMEDOUT;
202 goto err_free_skb;
203 }
204
205 /* Parse and handle the return WMT event */
206 wmt_evt = (struct btmtk_hci_wmt_evt *)bdev->evt_skb->data;
207 if (wmt_evt->whdr.op != hdr->op) {
208 bt_dev_err(hdev, "Wrong op received %d expected %d",
209 wmt_evt->whdr.op, hdr->op);
210 err = -EIO;
211 goto err_free_skb;
212 }
213
214 switch (wmt_evt->whdr.op) {
215 case MTK_WMT_SEMAPHORE:
216 if (wmt_evt->whdr.flag == 2)
217 status = BTMTK_WMT_PATCH_UNDONE;
218 else
219 status = BTMTK_WMT_PATCH_DONE;
220 break;
221 case MTK_WMT_FUNC_CTRL:
222 wmt_evt_funcc = (struct btmtk_hci_wmt_evt_funcc *)wmt_evt;
223 if (be16_to_cpu(wmt_evt_funcc->status) == 0x404)
224 status = BTMTK_WMT_ON_DONE;
225 else if (be16_to_cpu(wmt_evt_funcc->status) == 0x420)
226 status = BTMTK_WMT_ON_PROGRESS;
227 else
228 status = BTMTK_WMT_ON_UNDONE;
229 break;
230 }
231
232 if (wmt_params->status)
233 *wmt_params->status = status;
234
235err_free_skb:
236 kfree_skb(bdev->evt_skb);
237 bdev->evt_skb = NULL;
238
239 return err;
240}
241
242static int mtk_setup_firmware(struct hci_dev *hdev, const char *fwname)
243{
244 struct btmtk_hci_wmt_params wmt_params;
245 const struct firmware *fw;
246 const u8 *fw_ptr;
247 size_t fw_size;
248 int err, dlen;
249 u8 flag;
250
251 err = request_firmware(&fw, fwname, &hdev->dev);
252 if (err < 0) {
253 bt_dev_err(hdev, "Failed to load firmware file (%d)", err);
254 return err;
255 }
256
257 fw_ptr = fw->data;
258 fw_size = fw->size;
259
260 /* The size of patch header is 30 bytes, should be skip */
261 if (fw_size < 30) {
262 err = -EINVAL;
263 goto free_fw;
264 }
265
266 fw_size -= 30;
267 fw_ptr += 30;
268 flag = 1;
269
270 wmt_params.op = MTK_WMT_PATCH_DWNLD;
271 wmt_params.status = NULL;
272
273 while (fw_size > 0) {
274 dlen = min_t(int, 250, fw_size);
275
276 /* Tell device the position in sequence */
277 if (fw_size - dlen <= 0)
278 flag = 3;
279 else if (fw_size < fw->size - 30)
280 flag = 2;
281
282 wmt_params.flag = flag;
283 wmt_params.dlen = dlen;
284 wmt_params.data = fw_ptr;
285
286 err = mtk_hci_wmt_sync(hdev, &wmt_params);
287 if (err < 0) {
288 bt_dev_err(hdev, "Failed to send wmt patch dwnld (%d)",
289 err);
290 goto free_fw;
291 }
292
293 fw_size -= dlen;
294 fw_ptr += dlen;
295 }
296
297 wmt_params.op = MTK_WMT_RST;
298 wmt_params.flag = 4;
299 wmt_params.dlen = 0;
300 wmt_params.data = NULL;
301 wmt_params.status = NULL;
302
303 /* Activate funciton the firmware providing to */
304 err = mtk_hci_wmt_sync(hdev, &wmt_params);
305 if (err < 0) {
306 bt_dev_err(hdev, "Failed to send wmt rst (%d)", err);
307 goto free_fw;
308 }
309
310 /* Wait a few moments for firmware activation done */
311 usleep_range(10000, 12000);
312
313free_fw:
314 release_firmware(fw);
315 return err;
316}
317
318static int btmtkuart_recv_event(struct hci_dev *hdev, struct sk_buff *skb)
319{
320 struct btmtkuart_dev *bdev = hci_get_drvdata(hdev);
321 struct hci_event_hdr *hdr = (void *)skb->data;
322 int err;
323
324 /* Fix up the vendor event id with 0xff for vendor specific instead
325 * of 0xe4 so that event send via monitoring socket can be parsed
326 * properly.
327 */
328 if (hdr->evt == 0xe4)
329 hdr->evt = HCI_EV_VENDOR;
330
331 /* When someone waits for the WMT event, the skb is being cloned
332 * and being processed the events from there then.
333 */
334 if (test_bit(BTMTKUART_TX_WAIT_VND_EVT, &bdev->tx_state)) {
335 bdev->evt_skb = skb_clone(skb, GFP_KERNEL);
336 if (!bdev->evt_skb) {
337 err = -ENOMEM;
338 goto err_out;
339 }
340 }
341
342 err = hci_recv_frame(hdev, skb);
343 if (err < 0)
344 goto err_free_skb;
345
346 if (hdr->evt == HCI_EV_VENDOR) {
347 if (test_and_clear_bit(BTMTKUART_TX_WAIT_VND_EVT,
348 &bdev->tx_state)) {
349 /* Barrier to sync with other CPUs */
350 smp_mb__after_atomic();
351 wake_up_bit(&bdev->tx_state, BTMTKUART_TX_WAIT_VND_EVT);
352 }
353 }
354
355 return 0;
356
357err_free_skb:
358 kfree_skb(bdev->evt_skb);
359 bdev->evt_skb = NULL;
360
361err_out:
362 return err;
363}
364
365static const struct h4_recv_pkt mtk_recv_pkts[] = {
366 { H4_RECV_ACL, .recv = hci_recv_frame },
367 { H4_RECV_SCO, .recv = hci_recv_frame },
368 { H4_RECV_EVENT, .recv = btmtkuart_recv_event },
369};
370
371static void btmtkuart_tx_work(struct work_struct *work)
372{
373 struct btmtkuart_dev *bdev = container_of(work, struct btmtkuart_dev,
374 tx_work);
375 struct serdev_device *serdev = bdev->serdev;
376 struct hci_dev *hdev = bdev->hdev;
377
378 while (1) {
379 clear_bit(BTMTKUART_TX_STATE_WAKEUP, &bdev->tx_state);
380
381 while (1) {
382 struct sk_buff *skb = skb_dequeue(&bdev->txq);
383 int len;
384
385 if (!skb)
386 break;
387
388 len = serdev_device_write_buf(serdev, skb->data,
389 skb->len);
390 hdev->stat.byte_tx += len;
391
392 skb_pull(skb, len);
393 if (skb->len > 0) {
394 skb_queue_head(&bdev->txq, skb);
395 break;
396 }
397
398 switch (hci_skb_pkt_type(skb)) {
399 case HCI_COMMAND_PKT:
400 hdev->stat.cmd_tx++;
401 break;
402 case HCI_ACLDATA_PKT:
403 hdev->stat.acl_tx++;
404 break;
405 case HCI_SCODATA_PKT:
406 hdev->stat.sco_tx++;
407 break;
408 }
409
410 kfree_skb(skb);
411 }
412
413 if (!test_bit(BTMTKUART_TX_STATE_WAKEUP, &bdev->tx_state))
414 break;
415 }
416
417 clear_bit(BTMTKUART_TX_STATE_ACTIVE, &bdev->tx_state);
418}
419
420static void btmtkuart_tx_wakeup(struct btmtkuart_dev *bdev)
421{
422 if (test_and_set_bit(BTMTKUART_TX_STATE_ACTIVE, &bdev->tx_state))
423 set_bit(BTMTKUART_TX_STATE_WAKEUP, &bdev->tx_state);
424
425 schedule_work(&bdev->tx_work);
426}
427
428static const unsigned char *
429mtk_stp_split(struct btmtkuart_dev *bdev, const unsigned char *data, int count,
430 int *sz_h4)
431{
432 struct mtk_stp_hdr *shdr;
433
434 /* The cursor is reset when all the data of STP is consumed out */
435 if (!bdev->stp_dlen && bdev->stp_cursor >= 6)
436 bdev->stp_cursor = 0;
437
438 /* Filling pad until all STP info is obtained */
439 while (bdev->stp_cursor < 6 && count > 0) {
440 bdev->stp_pad[bdev->stp_cursor] = *data;
441 bdev->stp_cursor++;
442 data++;
443 count--;
444 }
445
446 /* Retrieve STP info and have a sanity check */
447 if (!bdev->stp_dlen && bdev->stp_cursor >= 6) {
448 shdr = (struct mtk_stp_hdr *)&bdev->stp_pad[2];
449 bdev->stp_dlen = be16_to_cpu(shdr->dlen) & 0x0fff;
450
451 /* Resync STP when unexpected data is being read */
452 if (shdr->prefix != 0x80 || bdev->stp_dlen > 2048) {
453 bt_dev_err(bdev->hdev, "stp format unexpect (%d, %d)",
454 shdr->prefix, bdev->stp_dlen);
455 bdev->stp_cursor = 2;
456 bdev->stp_dlen = 0;
457 }
458 }
459
460 /* Directly quit when there's no data found for H4 can process */
461 if (count <= 0)
462 return NULL;
463
464 /* Tranlate to how much the size of data H4 can handle so far */
465 *sz_h4 = min_t(int, count, bdev->stp_dlen);
466
467 /* Update the remaining size of STP packet */
468 bdev->stp_dlen -= *sz_h4;
469
470 /* Data points to STP payload which can be handled by H4 */
471 return data;
472}
473
474static void btmtkuart_recv(struct hci_dev *hdev, const u8 *data, size_t count)
475{
476 struct btmtkuart_dev *bdev = hci_get_drvdata(hdev);
477 const unsigned char *p_left = data, *p_h4;
478 int sz_left = count, sz_h4, adv;
479 int err;
480
481 while (sz_left > 0) {
482 /* The serial data received from MT7622 BT controller is
483 * at all time padded around with the STP header and tailer.
484 *
485 * A full STP packet is looking like
486 * -----------------------------------
487 * | STP header | H:4 | STP tailer |
488 * -----------------------------------
489 * but it doesn't guarantee to contain a full H:4 packet which
490 * means that it's possible for multiple STP packets forms a
491 * full H:4 packet that means extra STP header + length doesn't
492 * indicate a full H:4 frame, things can fragment. Whose length
493 * recorded in STP header just shows up the most length the
494 * H:4 engine can handle currently.
495 */
496
497 p_h4 = mtk_stp_split(bdev, p_left, sz_left, &sz_h4);
498 if (!p_h4)
499 break;
500
501 adv = p_h4 - p_left;
502 sz_left -= adv;
503 p_left += adv;
504
505 bdev->rx_skb = h4_recv_buf(bdev->hdev, bdev->rx_skb, p_h4,
506 sz_h4, mtk_recv_pkts,
507 ARRAY_SIZE(mtk_recv_pkts));
508 if (IS_ERR(bdev->rx_skb)) {
509 err = PTR_ERR(bdev->rx_skb);
510 bt_dev_err(bdev->hdev,
511 "Frame reassembly failed (%d)", err);
512 bdev->rx_skb = NULL;
513 return;
514 }
515
516 sz_left -= sz_h4;
517 p_left += sz_h4;
518 }
519}
520
521static int btmtkuart_receive_buf(struct serdev_device *serdev, const u8 *data,
522 size_t count)
523{
524 struct btmtkuart_dev *bdev = serdev_device_get_drvdata(serdev);
525
526 btmtkuart_recv(bdev->hdev, data, count);
527
528 bdev->hdev->stat.byte_rx += count;
529
530 return count;
531}
532
533static void btmtkuart_write_wakeup(struct serdev_device *serdev)
534{
535 struct btmtkuart_dev *bdev = serdev_device_get_drvdata(serdev);
536
537 btmtkuart_tx_wakeup(bdev);
538}
539
540static const struct serdev_device_ops btmtkuart_client_ops = {
541 .receive_buf = btmtkuart_receive_buf,
542 .write_wakeup = btmtkuart_write_wakeup,
543};
544
545static int btmtkuart_open(struct hci_dev *hdev)
546{
547 struct btmtkuart_dev *bdev = hci_get_drvdata(hdev);
548 struct device *dev;
549 int err;
550
551 err = serdev_device_open(bdev->serdev);
552 if (err) {
553 bt_dev_err(hdev, "Unable to open UART device %s",
554 dev_name(&bdev->serdev->dev));
555 goto err_open;
556 }
557
558 if (btmtkuart_is_standalone(bdev)) {
559 if (bdev->curr_speed != bdev->desired_speed)
560 err = serdev_device_set_baudrate(bdev->serdev,
561 115200);
562 else
563 err = serdev_device_set_baudrate(bdev->serdev,
564 bdev->desired_speed);
565
566 if (err < 0) {
567 bt_dev_err(hdev, "Unable to set baudrate UART device %s",
568 dev_name(&bdev->serdev->dev));
569 goto err_serdev_close;
570 }
571
572 serdev_device_set_flow_control(bdev->serdev, false);
573 }
574
575 bdev->stp_cursor = 2;
576 bdev->stp_dlen = 0;
577
578 dev = &bdev->serdev->dev;
579
580 /* Enable the power domain and clock the device requires */
581 pm_runtime_enable(dev);
582 err = pm_runtime_get_sync(dev);
583 if (err < 0) {
584 pm_runtime_put_noidle(dev);
585 goto err_disable_rpm;
586 }
587
588 err = clk_prepare_enable(bdev->clk);
589 if (err < 0)
590 goto err_put_rpm;
591
592 return 0;
593
594err_put_rpm:
595 pm_runtime_put_sync(dev);
596err_disable_rpm:
597 pm_runtime_disable(dev);
598err_serdev_close:
599 serdev_device_close(bdev->serdev);
600err_open:
601 return err;
602}
603
604static int btmtkuart_close(struct hci_dev *hdev)
605{
606 struct btmtkuart_dev *bdev = hci_get_drvdata(hdev);
607 struct device *dev = &bdev->serdev->dev;
608
609 /* Shutdown the clock and power domain the device requires */
610 clk_disable_unprepare(bdev->clk);
611 pm_runtime_put_sync(dev);
612 pm_runtime_disable(dev);
613
614 serdev_device_close(bdev->serdev);
615
616 return 0;
617}
618
619static int btmtkuart_flush(struct hci_dev *hdev)
620{
621 struct btmtkuart_dev *bdev = hci_get_drvdata(hdev);
622
623 /* Flush any pending characters */
624 serdev_device_write_flush(bdev->serdev);
625 skb_queue_purge(&bdev->txq);
626
627 cancel_work_sync(&bdev->tx_work);
628
629 kfree_skb(bdev->rx_skb);
630 bdev->rx_skb = NULL;
631
632 bdev->stp_cursor = 2;
633 bdev->stp_dlen = 0;
634
635 return 0;
636}
637
638static int btmtkuart_func_query(struct hci_dev *hdev)
639{
640 struct btmtk_hci_wmt_params wmt_params;
641 int status, err;
642 u8 param = 0;
643
644 /* Query whether the function is enabled */
645 wmt_params.op = MTK_WMT_FUNC_CTRL;
646 wmt_params.flag = 4;
647 wmt_params.dlen = sizeof(param);
648 wmt_params.data = &param;
649 wmt_params.status = &status;
650
651 err = mtk_hci_wmt_sync(hdev, &wmt_params);
652 if (err < 0) {
653 bt_dev_err(hdev, "Failed to query function status (%d)", err);
654 return err;
655 }
656
657 return status;
658}
659
660static int btmtkuart_change_baudrate(struct hci_dev *hdev)
661{
662 struct btmtkuart_dev *bdev = hci_get_drvdata(hdev);
663 struct btmtk_hci_wmt_params wmt_params;
664 __le32 baudrate;
665 u8 param;
666 int err;
667
668 /* Indicate the device to enter the probe state the host is
669 * ready to change a new baudrate.
670 */
671 baudrate = cpu_to_le32(bdev->desired_speed);
672 wmt_params.op = MTK_WMT_HIF;
673 wmt_params.flag = 1;
674 wmt_params.dlen = 4;
675 wmt_params.data = &baudrate;
676 wmt_params.status = NULL;
677
678 err = mtk_hci_wmt_sync(hdev, &wmt_params);
679 if (err < 0) {
680 bt_dev_err(hdev, "Failed to device baudrate (%d)", err);
681 return err;
682 }
683
684 err = serdev_device_set_baudrate(bdev->serdev,
685 bdev->desired_speed);
686 if (err < 0) {
687 bt_dev_err(hdev, "Failed to set up host baudrate (%d)",
688 err);
689 return err;
690 }
691
692 serdev_device_set_flow_control(bdev->serdev, false);
693
694 /* Send a dummy byte 0xff to activate the new baudrate */
695 param = 0xff;
696 err = serdev_device_write(bdev->serdev, &param, sizeof(param),
697 MAX_SCHEDULE_TIMEOUT);
698 if (err < 0 || err < sizeof(param))
699 return err;
700
701 serdev_device_wait_until_sent(bdev->serdev, 0);
702
703 /* Wait some time for the device changing baudrate done */
704 usleep_range(20000, 22000);
705
706 /* Test the new baudrate */
707 wmt_params.op = MTK_WMT_TEST;
708 wmt_params.flag = 7;
709 wmt_params.dlen = 0;
710 wmt_params.data = NULL;
711 wmt_params.status = NULL;
712
713 err = mtk_hci_wmt_sync(hdev, &wmt_params);
714 if (err < 0) {
715 bt_dev_err(hdev, "Failed to test new baudrate (%d)",
716 err);
717 return err;
718 }
719
720 bdev->curr_speed = bdev->desired_speed;
721
722 return 0;
723}
724
725static int btmtkuart_setup(struct hci_dev *hdev)
726{
727 struct btmtkuart_dev *bdev = hci_get_drvdata(hdev);
728 struct btmtk_hci_wmt_params wmt_params;
729 ktime_t calltime, delta, rettime;
730 struct btmtk_tci_sleep tci_sleep;
731 unsigned long long duration;
732 struct sk_buff *skb;
733 int err, status;
734 u8 param = 0x1;
735
736 calltime = ktime_get();
737
738 /* Wakeup MCUSYS is required for certain devices before we start to
739 * do any setups.
740 */
741 if (test_bit(BTMTKUART_REQUIRED_WAKEUP, &bdev->tx_state)) {
742 wmt_params.op = MTK_WMT_WAKEUP;
743 wmt_params.flag = 3;
744 wmt_params.dlen = 0;
745 wmt_params.data = NULL;
746 wmt_params.status = NULL;
747
748 err = mtk_hci_wmt_sync(hdev, &wmt_params);
749 if (err < 0) {
750 bt_dev_err(hdev, "Failed to wakeup the chip (%d)", err);
751 return err;
752 }
753
754 clear_bit(BTMTKUART_REQUIRED_WAKEUP, &bdev->tx_state);
755 }
756
757 if (btmtkuart_is_standalone(bdev))
758 btmtkuart_change_baudrate(hdev);
759
760 /* Query whether the firmware is already download */
761 wmt_params.op = MTK_WMT_SEMAPHORE;
762 wmt_params.flag = 1;
763 wmt_params.dlen = 0;
764 wmt_params.data = NULL;
765 wmt_params.status = &status;
766
767 err = mtk_hci_wmt_sync(hdev, &wmt_params);
768 if (err < 0) {
769 bt_dev_err(hdev, "Failed to query firmware status (%d)", err);
770 return err;
771 }
772
773 if (status == BTMTK_WMT_PATCH_DONE) {
774 bt_dev_info(hdev, "Firmware already downloaded");
775 goto ignore_setup_fw;
776 }
777
778 /* Setup a firmware which the device definitely requires */
779 err = mtk_setup_firmware(hdev, bdev->data->fwname);
780 if (err < 0)
781 return err;
782
783ignore_setup_fw:
784 /* Query whether the device is already enabled */
785 err = readx_poll_timeout(btmtkuart_func_query, hdev, status,
786 status < 0 || status != BTMTK_WMT_ON_PROGRESS,
787 2000, 5000000);
788 /* -ETIMEDOUT happens */
789 if (err < 0)
790 return err;
791
792 /* The other errors happen in btusb_mtk_func_query */
793 if (status < 0)
794 return status;
795
796 if (status == BTMTK_WMT_ON_DONE) {
797 bt_dev_info(hdev, "function already on");
798 goto ignore_func_on;
799 }
800
801 /* Enable Bluetooth protocol */
802 wmt_params.op = MTK_WMT_FUNC_CTRL;
803 wmt_params.flag = 0;
804 wmt_params.dlen = sizeof(param);
805 wmt_params.data = &param;
806 wmt_params.status = NULL;
807
808 err = mtk_hci_wmt_sync(hdev, &wmt_params);
809 if (err < 0) {
810 bt_dev_err(hdev, "Failed to send wmt func ctrl (%d)", err);
811 return err;
812 }
813
814ignore_func_on:
815 /* Apply the low power environment setup */
816 tci_sleep.mode = 0x5;
817 tci_sleep.duration = cpu_to_le16(0x640);
818 tci_sleep.host_duration = cpu_to_le16(0x640);
819 tci_sleep.host_wakeup_pin = 0;
820 tci_sleep.time_compensation = 0;
821
822 skb = __hci_cmd_sync(hdev, 0xfc7a, sizeof(tci_sleep), &tci_sleep,
823 HCI_INIT_TIMEOUT);
824 if (IS_ERR(skb)) {
825 err = PTR_ERR(skb);
826 bt_dev_err(hdev, "Failed to apply low power setting (%d)", err);
827 return err;
828 }
829 kfree_skb(skb);
830
831 rettime = ktime_get();
832 delta = ktime_sub(rettime, calltime);
833 duration = (unsigned long long)ktime_to_ns(delta) >> 10;
834
835 bt_dev_info(hdev, "Device setup in %llu usecs", duration);
836
837 return 0;
838}
839
840static int btmtkuart_shutdown(struct hci_dev *hdev)
841{
842 struct btmtk_hci_wmt_params wmt_params;
843 u8 param = 0x0;
844 int err;
845
846 /* Disable the device */
847 wmt_params.op = MTK_WMT_FUNC_CTRL;
848 wmt_params.flag = 0;
849 wmt_params.dlen = sizeof(param);
850 wmt_params.data = &param;
851 wmt_params.status = NULL;
852
853 err = mtk_hci_wmt_sync(hdev, &wmt_params);
854 if (err < 0) {
855 bt_dev_err(hdev, "Failed to send wmt func ctrl (%d)", err);
856 return err;
857 }
858
859 return 0;
860}
861
862static int btmtkuart_send_frame(struct hci_dev *hdev, struct sk_buff *skb)
863{
864 struct btmtkuart_dev *bdev = hci_get_drvdata(hdev);
865 struct mtk_stp_hdr *shdr;
866 int err, dlen, type = 0;
867
868 /* Prepend skb with frame type */
869 memcpy(skb_push(skb, 1), &hci_skb_pkt_type(skb), 1);
870
871 /* Make sure that there is enough rooms for STP header and trailer */
872 if (unlikely(skb_headroom(skb) < sizeof(*shdr)) ||
873 (skb_tailroom(skb) < MTK_STP_TLR_SIZE)) {
874 err = pskb_expand_head(skb, sizeof(*shdr), MTK_STP_TLR_SIZE,
875 GFP_ATOMIC);
876 if (err < 0)
877 return err;
878 }
879
880 /* Add the STP header */
881 dlen = skb->len;
882 shdr = skb_push(skb, sizeof(*shdr));
883 shdr->prefix = 0x80;
884 shdr->dlen = cpu_to_be16((dlen & 0x0fff) | (type << 12));
885 shdr->cs = 0; /* MT7622 doesn't care about checksum value */
886
887 /* Add the STP trailer */
888 skb_put_zero(skb, MTK_STP_TLR_SIZE);
889
890 skb_queue_tail(&bdev->txq, skb);
891
892 btmtkuart_tx_wakeup(bdev);
893 return 0;
894}
895
896static int btmtkuart_parse_dt(struct serdev_device *serdev)
897{
898 struct btmtkuart_dev *bdev = serdev_device_get_drvdata(serdev);
899 struct device_node *node = serdev->dev.of_node;
900 u32 speed = 921600;
901 int err;
902
903 if (btmtkuart_is_standalone(bdev)) {
904 of_property_read_u32(node, "current-speed", &speed);
905
906 bdev->desired_speed = speed;
907
908 bdev->vcc = devm_regulator_get(&serdev->dev, "vcc");
909 if (IS_ERR(bdev->vcc)) {
910 err = PTR_ERR(bdev->vcc);
911 return err;
912 }
913
914 bdev->osc = devm_clk_get_optional(&serdev->dev, "osc");
915 if (IS_ERR(bdev->osc)) {
916 err = PTR_ERR(bdev->osc);
917 return err;
918 }
919
920 bdev->boot = devm_gpiod_get_optional(&serdev->dev, "boot",
921 GPIOD_OUT_LOW);
922 if (IS_ERR(bdev->boot)) {
923 err = PTR_ERR(bdev->boot);
924 return err;
925 }
926
927 bdev->pinctrl = devm_pinctrl_get(&serdev->dev);
928 if (IS_ERR(bdev->pinctrl)) {
929 err = PTR_ERR(bdev->pinctrl);
930 return err;
931 }
932
933 bdev->pins_boot = pinctrl_lookup_state(bdev->pinctrl,
934 "default");
935 if (IS_ERR(bdev->pins_boot) && !bdev->boot) {
936 err = PTR_ERR(bdev->pins_boot);
937 dev_err(&serdev->dev,
938 "Should assign RXD to LOW at boot stage\n");
939 return err;
940 }
941
942 bdev->pins_runtime = pinctrl_lookup_state(bdev->pinctrl,
943 "runtime");
944 if (IS_ERR(bdev->pins_runtime)) {
945 err = PTR_ERR(bdev->pins_runtime);
946 return err;
947 }
948
949 bdev->reset = devm_gpiod_get_optional(&serdev->dev, "reset",
950 GPIOD_OUT_LOW);
951 if (IS_ERR(bdev->reset)) {
952 err = PTR_ERR(bdev->reset);
953 return err;
954 }
955 } else if (btmtkuart_is_builtin_soc(bdev)) {
956 bdev->clk = devm_clk_get(&serdev->dev, "ref");
957 if (IS_ERR(bdev->clk))
958 return PTR_ERR(bdev->clk);
959 }
960
961 return 0;
962}
963
964static int btmtkuart_probe(struct serdev_device *serdev)
965{
966 struct btmtkuart_dev *bdev;
967 struct hci_dev *hdev;
968 int err;
969
970 bdev = devm_kzalloc(&serdev->dev, sizeof(*bdev), GFP_KERNEL);
971 if (!bdev)
972 return -ENOMEM;
973
974 bdev->data = of_device_get_match_data(&serdev->dev);
975 if (!bdev->data)
976 return -ENODEV;
977
978 bdev->serdev = serdev;
979 serdev_device_set_drvdata(serdev, bdev);
980
981 serdev_device_set_client_ops(serdev, &btmtkuart_client_ops);
982
983 err = btmtkuart_parse_dt(serdev);
984 if (err < 0)
985 return err;
986
987 INIT_WORK(&bdev->tx_work, btmtkuart_tx_work);
988 skb_queue_head_init(&bdev->txq);
989
990 /* Initialize and register HCI device */
991 hdev = hci_alloc_dev();
992 if (!hdev) {
993 dev_err(&serdev->dev, "Can't allocate HCI device\n");
994 return -ENOMEM;
995 }
996
997 bdev->hdev = hdev;
998
999 hdev->bus = HCI_UART;
1000 hci_set_drvdata(hdev, bdev);
1001
1002 hdev->open = btmtkuart_open;
1003 hdev->close = btmtkuart_close;
1004 hdev->flush = btmtkuart_flush;
1005 hdev->setup = btmtkuart_setup;
1006 hdev->shutdown = btmtkuart_shutdown;
1007 hdev->send = btmtkuart_send_frame;
1008 SET_HCIDEV_DEV(hdev, &serdev->dev);
1009
1010 hdev->manufacturer = 70;
1011 set_bit(HCI_QUIRK_NON_PERSISTENT_SETUP, &hdev->quirks);
1012
1013 if (btmtkuart_is_standalone(bdev)) {
1014 err = clk_prepare_enable(bdev->osc);
1015 if (err < 0)
1016 goto err_hci_free_dev;
1017
1018 if (bdev->boot) {
1019 gpiod_set_value_cansleep(bdev->boot, 1);
1020 } else {
1021 /* Switch to the specific pin state for the booting
1022 * requires.
1023 */
1024 pinctrl_select_state(bdev->pinctrl, bdev->pins_boot);
1025 }
1026
1027 /* Power on */
1028 err = regulator_enable(bdev->vcc);
1029 if (err < 0)
1030 goto err_clk_disable_unprepare;
1031
1032 /* Reset if the reset-gpios is available otherwise the board
1033 * -level design should be guaranteed.
1034 */
1035 if (bdev->reset) {
1036 gpiod_set_value_cansleep(bdev->reset, 1);
1037 usleep_range(1000, 2000);
1038 gpiod_set_value_cansleep(bdev->reset, 0);
1039 }
1040
1041 /* Wait some time until device got ready and switch to the pin
1042 * mode the device requires for UART transfers.
1043 */
1044 msleep(50);
1045
1046 if (bdev->boot)
1047 devm_gpiod_put(&serdev->dev, bdev->boot);
1048
1049 pinctrl_select_state(bdev->pinctrl, bdev->pins_runtime);
1050
1051 /* A standalone device doesn't depends on power domain on SoC,
1052 * so mark it as no callbacks.
1053 */
1054 pm_runtime_no_callbacks(&serdev->dev);
1055
1056 set_bit(BTMTKUART_REQUIRED_WAKEUP, &bdev->tx_state);
1057 }
1058
1059 err = hci_register_dev(hdev);
1060 if (err < 0) {
1061 dev_err(&serdev->dev, "Can't register HCI device\n");
1062 goto err_regulator_disable;
1063 }
1064
1065 return 0;
1066
1067err_regulator_disable:
1068 if (btmtkuart_is_standalone(bdev))
1069 regulator_disable(bdev->vcc);
1070err_clk_disable_unprepare:
1071 if (btmtkuart_is_standalone(bdev))
1072 clk_disable_unprepare(bdev->osc);
1073err_hci_free_dev:
1074 hci_free_dev(hdev);
1075
1076 return err;
1077}
1078
1079static void btmtkuart_remove(struct serdev_device *serdev)
1080{
1081 struct btmtkuart_dev *bdev = serdev_device_get_drvdata(serdev);
1082 struct hci_dev *hdev = bdev->hdev;
1083
1084 if (btmtkuart_is_standalone(bdev)) {
1085 regulator_disable(bdev->vcc);
1086 clk_disable_unprepare(bdev->osc);
1087 }
1088
1089 hci_unregister_dev(hdev);
1090 hci_free_dev(hdev);
1091}
1092
1093static const struct btmtkuart_data mt7622_data = {
1094 .fwname = FIRMWARE_MT7622,
1095};
1096
1097static const struct btmtkuart_data mt7663_data = {
1098 .flags = BTMTKUART_FLAG_STANDALONE_HW,
1099 .fwname = FIRMWARE_MT7663,
1100};
1101
1102static const struct btmtkuart_data mt7668_data = {
1103 .flags = BTMTKUART_FLAG_STANDALONE_HW,
1104 .fwname = FIRMWARE_MT7668,
1105};
1106
1107#ifdef CONFIG_OF
1108static const struct of_device_id mtk_of_match_table[] = {
1109 { .compatible = "mediatek,mt7622-bluetooth", .data = &mt7622_data},
1110 { .compatible = "mediatek,mt7663u-bluetooth", .data = &mt7663_data},
1111 { .compatible = "mediatek,mt7668u-bluetooth", .data = &mt7668_data},
1112 { }
1113};
1114MODULE_DEVICE_TABLE(of, mtk_of_match_table);
1115#endif
1116
1117static struct serdev_device_driver btmtkuart_driver = {
1118 .probe = btmtkuart_probe,
1119 .remove = btmtkuart_remove,
1120 .driver = {
1121 .name = "btmtkuart",
1122 .of_match_table = of_match_ptr(mtk_of_match_table),
1123 },
1124};
1125
1126module_serdev_device_driver(btmtkuart_driver);
1127
1128MODULE_AUTHOR("Sean Wang <sean.wang@mediatek.com>");
1129MODULE_DESCRIPTION("MediaTek Bluetooth Serial driver ver " VERSION);
1130MODULE_VERSION(VERSION);
1131MODULE_LICENSE("GPL");
1132MODULE_FIRMWARE(FIRMWARE_MT7622);
1133MODULE_FIRMWARE(FIRMWARE_MT7663);
1134MODULE_FIRMWARE(FIRMWARE_MT7668);