xref: /openbmc/linux/drivers/bluetooth/hci_bcm.c (revision b240b419db5d624ce7a5a397d6f62a1a686009ec)
1 /*
2  *
3  *  Bluetooth HCI UART driver for Broadcom devices
4  *
5  *  Copyright (C) 2015  Intel Corporation
6  *
7  *
8  *  This program is free software; you can redistribute it and/or modify
9  *  it under the terms of the GNU General Public License as published by
10  *  the Free Software Foundation; either version 2 of the License, or
11  *  (at your option) any later version.
12  *
13  *  This program is distributed in the hope that it will be useful,
14  *  but WITHOUT ANY WARRANTY; without even the implied warranty of
15  *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
16  *  GNU General Public License for more details.
17  *
18  *  You should have received a copy of the GNU General Public License
19  *  along with this program; if not, write to the Free Software
20  *  Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
21  *
22  */
23 
24 #include <linux/kernel.h>
25 #include <linux/errno.h>
26 #include <linux/skbuff.h>
27 #include <linux/firmware.h>
28 #include <linux/module.h>
29 #include <linux/acpi.h>
30 #include <linux/of.h>
31 #include <linux/property.h>
32 #include <linux/platform_data/x86/apple.h>
33 #include <linux/platform_device.h>
34 #include <linux/clk.h>
35 #include <linux/gpio/consumer.h>
36 #include <linux/tty.h>
37 #include <linux/interrupt.h>
38 #include <linux/dmi.h>
39 #include <linux/pm_runtime.h>
40 #include <linux/serdev.h>
41 
42 #include <net/bluetooth/bluetooth.h>
43 #include <net/bluetooth/hci_core.h>
44 
45 #include "btbcm.h"
46 #include "hci_uart.h"
47 
48 #define BCM_NULL_PKT 0x00
49 #define BCM_NULL_SIZE 0
50 
51 #define BCM_LM_DIAG_PKT 0x07
52 #define BCM_LM_DIAG_SIZE 63
53 
54 #define BCM_AUTOSUSPEND_DELAY	5000 /* default autosleep delay */
55 
56 /**
57  * struct bcm_device - device driver resources
58  * @serdev_hu: HCI UART controller struct
59  * @list: bcm_device_list node
60  * @dev: physical UART slave
61  * @name: device name logged by bt_dev_*() functions
62  * @device_wakeup: BT_WAKE pin,
63  *	assert = Bluetooth device must wake up or remain awake,
64  *	deassert = Bluetooth device may sleep when sleep criteria are met
65  * @shutdown: BT_REG_ON pin,
66  *	power up or power down Bluetooth device internal regulators
67  * @set_device_wakeup: callback to toggle BT_WAKE pin
68  *	either by accessing @device_wakeup or by calling @btlp
69  * @set_shutdown: callback to toggle BT_REG_ON pin
70  *	either by accessing @shutdown or by calling @btpu/@btpd
71  * @btlp: Apple ACPI method to toggle BT_WAKE pin ("Bluetooth Low Power")
72  * @btpu: Apple ACPI method to drive BT_REG_ON pin high ("Bluetooth Power Up")
73  * @btpd: Apple ACPI method to drive BT_REG_ON pin low ("Bluetooth Power Down")
74  * @clk: clock used by Bluetooth device
75  * @clk_enabled: whether @clk is prepared and enabled
76  * @init_speed: default baudrate of Bluetooth device;
77  *	the host UART is initially set to this baudrate so that
78  *	it can configure the Bluetooth device for @oper_speed
79  * @oper_speed: preferred baudrate of Bluetooth device;
80  *	set to 0 if @init_speed is already the preferred baudrate
81  * @irq: interrupt triggered by HOST_WAKE_BT pin
82  * @irq_active_low: whether @irq is active low
83  * @hu: pointer to HCI UART controller struct,
84  *	used to disable flow control during runtime suspend and system sleep
85  * @is_suspended: whether flow control is currently disabled
86  */
87 struct bcm_device {
88 	/* Must be the first member, hci_serdev.c expects this. */
89 	struct hci_uart		serdev_hu;
90 	struct list_head	list;
91 
92 	struct device		*dev;
93 
94 	const char		*name;
95 	struct gpio_desc	*device_wakeup;
96 	struct gpio_desc	*shutdown;
97 	int			(*set_device_wakeup)(struct bcm_device *, bool);
98 	int			(*set_shutdown)(struct bcm_device *, bool);
99 #ifdef CONFIG_ACPI
100 	acpi_handle		btlp, btpu, btpd;
101 	int			gpio_count;
102 	int			gpio_int_idx;
103 #endif
104 
105 	struct clk		*clk;
106 	bool			clk_enabled;
107 
108 	u32			init_speed;
109 	u32			oper_speed;
110 	int			irq;
111 	bool			irq_active_low;
112 
113 #ifdef CONFIG_PM
114 	struct hci_uart		*hu;
115 	bool			is_suspended;
116 #endif
117 };
118 
119 /* generic bcm uart resources */
120 struct bcm_data {
121 	struct sk_buff		*rx_skb;
122 	struct sk_buff_head	txq;
123 
124 	struct bcm_device	*dev;
125 };
126 
127 /* List of BCM BT UART devices */
128 static DEFINE_MUTEX(bcm_device_lock);
129 static LIST_HEAD(bcm_device_list);
130 
131 static int irq_polarity = -1;
132 module_param(irq_polarity, int, 0444);
133 MODULE_PARM_DESC(irq_polarity, "IRQ polarity 0: active-high 1: active-low");
134 
135 static inline void host_set_baudrate(struct hci_uart *hu, unsigned int speed)
136 {
137 	if (hu->serdev)
138 		serdev_device_set_baudrate(hu->serdev, speed);
139 	else
140 		hci_uart_set_baudrate(hu, speed);
141 }
142 
143 static int bcm_set_baudrate(struct hci_uart *hu, unsigned int speed)
144 {
145 	struct hci_dev *hdev = hu->hdev;
146 	struct sk_buff *skb;
147 	struct bcm_update_uart_baud_rate param;
148 
149 	if (speed > 3000000) {
150 		struct bcm_write_uart_clock_setting clock;
151 
152 		clock.type = BCM_UART_CLOCK_48MHZ;
153 
154 		bt_dev_dbg(hdev, "Set Controller clock (%d)", clock.type);
155 
156 		/* This Broadcom specific command changes the UART's controller
157 		 * clock for baud rate > 3000000.
158 		 */
159 		skb = __hci_cmd_sync(hdev, 0xfc45, 1, &clock, HCI_INIT_TIMEOUT);
160 		if (IS_ERR(skb)) {
161 			int err = PTR_ERR(skb);
162 			bt_dev_err(hdev, "BCM: failed to write clock (%d)",
163 				   err);
164 			return err;
165 		}
166 
167 		kfree_skb(skb);
168 	}
169 
170 	bt_dev_dbg(hdev, "Set Controller UART speed to %d bit/s", speed);
171 
172 	param.zero = cpu_to_le16(0);
173 	param.baud_rate = cpu_to_le32(speed);
174 
175 	/* This Broadcom specific command changes the UART's controller baud
176 	 * rate.
177 	 */
178 	skb = __hci_cmd_sync(hdev, 0xfc18, sizeof(param), &param,
179 			     HCI_INIT_TIMEOUT);
180 	if (IS_ERR(skb)) {
181 		int err = PTR_ERR(skb);
182 		bt_dev_err(hdev, "BCM: failed to write update baudrate (%d)",
183 			   err);
184 		return err;
185 	}
186 
187 	kfree_skb(skb);
188 
189 	return 0;
190 }
191 
192 /* bcm_device_exists should be protected by bcm_device_lock */
193 static bool bcm_device_exists(struct bcm_device *device)
194 {
195 	struct list_head *p;
196 
197 #ifdef CONFIG_PM
198 	/* Devices using serdev always exist */
199 	if (device && device->hu && device->hu->serdev)
200 		return true;
201 #endif
202 
203 	list_for_each(p, &bcm_device_list) {
204 		struct bcm_device *dev = list_entry(p, struct bcm_device, list);
205 
206 		if (device == dev)
207 			return true;
208 	}
209 
210 	return false;
211 }
212 
213 static int bcm_gpio_set_power(struct bcm_device *dev, bool powered)
214 {
215 	int err;
216 
217 	if (powered && !IS_ERR(dev->clk) && !dev->clk_enabled) {
218 		err = clk_prepare_enable(dev->clk);
219 		if (err)
220 			return err;
221 	}
222 
223 	err = dev->set_shutdown(dev, powered);
224 	if (err)
225 		goto err_clk_disable;
226 
227 	err = dev->set_device_wakeup(dev, powered);
228 	if (err)
229 		goto err_revert_shutdown;
230 
231 	if (!powered && !IS_ERR(dev->clk) && dev->clk_enabled)
232 		clk_disable_unprepare(dev->clk);
233 
234 	dev->clk_enabled = powered;
235 
236 	return 0;
237 
238 err_revert_shutdown:
239 	dev->set_shutdown(dev, !powered);
240 err_clk_disable:
241 	if (powered && !IS_ERR(dev->clk) && !dev->clk_enabled)
242 		clk_disable_unprepare(dev->clk);
243 	return err;
244 }
245 
246 #ifdef CONFIG_PM
247 static irqreturn_t bcm_host_wake(int irq, void *data)
248 {
249 	struct bcm_device *bdev = data;
250 
251 	bt_dev_dbg(bdev, "Host wake IRQ");
252 
253 	pm_runtime_get(bdev->dev);
254 	pm_runtime_mark_last_busy(bdev->dev);
255 	pm_runtime_put_autosuspend(bdev->dev);
256 
257 	return IRQ_HANDLED;
258 }
259 
260 static int bcm_request_irq(struct bcm_data *bcm)
261 {
262 	struct bcm_device *bdev = bcm->dev;
263 	int err;
264 
265 	mutex_lock(&bcm_device_lock);
266 	if (!bcm_device_exists(bdev)) {
267 		err = -ENODEV;
268 		goto unlock;
269 	}
270 
271 	if (bdev->irq <= 0) {
272 		err = -EOPNOTSUPP;
273 		goto unlock;
274 	}
275 
276 	err = devm_request_irq(bdev->dev, bdev->irq, bcm_host_wake,
277 			       bdev->irq_active_low ? IRQF_TRIGGER_FALLING :
278 						      IRQF_TRIGGER_RISING,
279 			       "host_wake", bdev);
280 	if (err) {
281 		bdev->irq = err;
282 		goto unlock;
283 	}
284 
285 	device_init_wakeup(bdev->dev, true);
286 
287 	pm_runtime_set_autosuspend_delay(bdev->dev,
288 					 BCM_AUTOSUSPEND_DELAY);
289 	pm_runtime_use_autosuspend(bdev->dev);
290 	pm_runtime_set_active(bdev->dev);
291 	pm_runtime_enable(bdev->dev);
292 
293 unlock:
294 	mutex_unlock(&bcm_device_lock);
295 
296 	return err;
297 }
298 
299 static const struct bcm_set_sleep_mode default_sleep_params = {
300 	.sleep_mode = 1,	/* 0=Disabled, 1=UART, 2=Reserved, 3=USB */
301 	.idle_host = 2,		/* idle threshold HOST, in 300ms */
302 	.idle_dev = 2,		/* idle threshold device, in 300ms */
303 	.bt_wake_active = 1,	/* BT_WAKE active mode: 1 = high, 0 = low */
304 	.host_wake_active = 0,	/* HOST_WAKE active mode: 1 = high, 0 = low */
305 	.allow_host_sleep = 1,	/* Allow host sleep in SCO flag */
306 	.combine_modes = 1,	/* Combine sleep and LPM flag */
307 	.tristate_control = 0,	/* Allow tri-state control of UART tx flag */
308 	/* Irrelevant USB flags */
309 	.usb_auto_sleep = 0,
310 	.usb_resume_timeout = 0,
311 	.break_to_host = 0,
312 	.pulsed_host_wake = 1,
313 };
314 
315 static int bcm_setup_sleep(struct hci_uart *hu)
316 {
317 	struct bcm_data *bcm = hu->priv;
318 	struct sk_buff *skb;
319 	struct bcm_set_sleep_mode sleep_params = default_sleep_params;
320 
321 	sleep_params.host_wake_active = !bcm->dev->irq_active_low;
322 
323 	skb = __hci_cmd_sync(hu->hdev, 0xfc27, sizeof(sleep_params),
324 			     &sleep_params, HCI_INIT_TIMEOUT);
325 	if (IS_ERR(skb)) {
326 		int err = PTR_ERR(skb);
327 		bt_dev_err(hu->hdev, "Sleep VSC failed (%d)", err);
328 		return err;
329 	}
330 	kfree_skb(skb);
331 
332 	bt_dev_dbg(hu->hdev, "Set Sleep Parameters VSC succeeded");
333 
334 	return 0;
335 }
336 #else
337 static inline int bcm_request_irq(struct bcm_data *bcm) { return 0; }
338 static inline int bcm_setup_sleep(struct hci_uart *hu) { return 0; }
339 #endif
340 
341 static int bcm_set_diag(struct hci_dev *hdev, bool enable)
342 {
343 	struct hci_uart *hu = hci_get_drvdata(hdev);
344 	struct bcm_data *bcm = hu->priv;
345 	struct sk_buff *skb;
346 
347 	if (!test_bit(HCI_RUNNING, &hdev->flags))
348 		return -ENETDOWN;
349 
350 	skb = bt_skb_alloc(3, GFP_KERNEL);
351 	if (!skb)
352 		return -ENOMEM;
353 
354 	skb_put_u8(skb, BCM_LM_DIAG_PKT);
355 	skb_put_u8(skb, 0xf0);
356 	skb_put_u8(skb, enable);
357 
358 	skb_queue_tail(&bcm->txq, skb);
359 	hci_uart_tx_wakeup(hu);
360 
361 	return 0;
362 }
363 
364 static int bcm_open(struct hci_uart *hu)
365 {
366 	struct bcm_data *bcm;
367 	struct list_head *p;
368 	int err;
369 
370 	bt_dev_dbg(hu->hdev, "hu %p", hu);
371 
372 	bcm = kzalloc(sizeof(*bcm), GFP_KERNEL);
373 	if (!bcm)
374 		return -ENOMEM;
375 
376 	skb_queue_head_init(&bcm->txq);
377 
378 	hu->priv = bcm;
379 
380 	mutex_lock(&bcm_device_lock);
381 
382 	if (hu->serdev) {
383 		err = serdev_device_open(hu->serdev);
384 		if (err)
385 			goto err_free;
386 
387 		bcm->dev = serdev_device_get_drvdata(hu->serdev);
388 		goto out;
389 	}
390 
391 	if (!hu->tty->dev)
392 		goto out;
393 
394 	list_for_each(p, &bcm_device_list) {
395 		struct bcm_device *dev = list_entry(p, struct bcm_device, list);
396 
397 		/* Retrieve saved bcm_device based on parent of the
398 		 * platform device (saved during device probe) and
399 		 * parent of tty device used by hci_uart
400 		 */
401 		if (hu->tty->dev->parent == dev->dev->parent) {
402 			bcm->dev = dev;
403 #ifdef CONFIG_PM
404 			dev->hu = hu;
405 #endif
406 			break;
407 		}
408 	}
409 
410 out:
411 	if (bcm->dev) {
412 		hu->init_speed = bcm->dev->init_speed;
413 		hu->oper_speed = bcm->dev->oper_speed;
414 		err = bcm_gpio_set_power(bcm->dev, true);
415 		if (err)
416 			goto err_unset_hu;
417 	}
418 
419 	mutex_unlock(&bcm_device_lock);
420 	return 0;
421 
422 err_unset_hu:
423 	if (hu->serdev)
424 		serdev_device_close(hu->serdev);
425 #ifdef CONFIG_PM
426 	else
427 		bcm->dev->hu = NULL;
428 #endif
429 err_free:
430 	mutex_unlock(&bcm_device_lock);
431 	hu->priv = NULL;
432 	kfree(bcm);
433 	return err;
434 }
435 
436 static int bcm_close(struct hci_uart *hu)
437 {
438 	struct bcm_data *bcm = hu->priv;
439 	struct bcm_device *bdev = NULL;
440 	int err;
441 
442 	bt_dev_dbg(hu->hdev, "hu %p", hu);
443 
444 	/* Protect bcm->dev against removal of the device or driver */
445 	mutex_lock(&bcm_device_lock);
446 
447 	if (hu->serdev) {
448 		serdev_device_close(hu->serdev);
449 		bdev = serdev_device_get_drvdata(hu->serdev);
450 	} else if (bcm_device_exists(bcm->dev)) {
451 		bdev = bcm->dev;
452 #ifdef CONFIG_PM
453 		bdev->hu = NULL;
454 #endif
455 	}
456 
457 	if (bdev) {
458 		if (IS_ENABLED(CONFIG_PM) && bdev->irq > 0) {
459 			devm_free_irq(bdev->dev, bdev->irq, bdev);
460 			device_init_wakeup(bdev->dev, false);
461 			pm_runtime_disable(bdev->dev);
462 		}
463 
464 		err = bcm_gpio_set_power(bdev, false);
465 		if (err)
466 			bt_dev_err(hu->hdev, "Failed to power down");
467 		else
468 			pm_runtime_set_suspended(bdev->dev);
469 	}
470 	mutex_unlock(&bcm_device_lock);
471 
472 	skb_queue_purge(&bcm->txq);
473 	kfree_skb(bcm->rx_skb);
474 	kfree(bcm);
475 
476 	hu->priv = NULL;
477 	return 0;
478 }
479 
480 static int bcm_flush(struct hci_uart *hu)
481 {
482 	struct bcm_data *bcm = hu->priv;
483 
484 	bt_dev_dbg(hu->hdev, "hu %p", hu);
485 
486 	skb_queue_purge(&bcm->txq);
487 
488 	return 0;
489 }
490 
491 static int bcm_setup(struct hci_uart *hu)
492 {
493 	struct bcm_data *bcm = hu->priv;
494 	char fw_name[64];
495 	const struct firmware *fw;
496 	unsigned int speed;
497 	int err;
498 
499 	bt_dev_dbg(hu->hdev, "hu %p", hu);
500 
501 	hu->hdev->set_diag = bcm_set_diag;
502 	hu->hdev->set_bdaddr = btbcm_set_bdaddr;
503 
504 	err = btbcm_initialize(hu->hdev, fw_name, sizeof(fw_name));
505 	if (err)
506 		return err;
507 
508 	err = request_firmware(&fw, fw_name, &hu->hdev->dev);
509 	if (err < 0) {
510 		bt_dev_info(hu->hdev, "BCM: Patch %s not found", fw_name);
511 		return 0;
512 	}
513 
514 	err = btbcm_patchram(hu->hdev, fw);
515 	if (err) {
516 		bt_dev_info(hu->hdev, "BCM: Patch failed (%d)", err);
517 		goto finalize;
518 	}
519 
520 	/* Init speed if any */
521 	if (hu->init_speed)
522 		speed = hu->init_speed;
523 	else if (hu->proto->init_speed)
524 		speed = hu->proto->init_speed;
525 	else
526 		speed = 0;
527 
528 	if (speed)
529 		host_set_baudrate(hu, speed);
530 
531 	/* Operational speed if any */
532 	if (hu->oper_speed)
533 		speed = hu->oper_speed;
534 	else if (hu->proto->oper_speed)
535 		speed = hu->proto->oper_speed;
536 	else
537 		speed = 0;
538 
539 	if (speed) {
540 		err = bcm_set_baudrate(hu, speed);
541 		if (!err)
542 			host_set_baudrate(hu, speed);
543 	}
544 
545 finalize:
546 	release_firmware(fw);
547 
548 	err = btbcm_finalize(hu->hdev);
549 	if (err)
550 		return err;
551 
552 	if (!bcm_request_irq(bcm))
553 		err = bcm_setup_sleep(hu);
554 
555 	return err;
556 }
557 
558 #define BCM_RECV_LM_DIAG \
559 	.type = BCM_LM_DIAG_PKT, \
560 	.hlen = BCM_LM_DIAG_SIZE, \
561 	.loff = 0, \
562 	.lsize = 0, \
563 	.maxlen = BCM_LM_DIAG_SIZE
564 
565 #define BCM_RECV_NULL \
566 	.type = BCM_NULL_PKT, \
567 	.hlen = BCM_NULL_SIZE, \
568 	.loff = 0, \
569 	.lsize = 0, \
570 	.maxlen = BCM_NULL_SIZE
571 
572 static const struct h4_recv_pkt bcm_recv_pkts[] = {
573 	{ H4_RECV_ACL,      .recv = hci_recv_frame },
574 	{ H4_RECV_SCO,      .recv = hci_recv_frame },
575 	{ H4_RECV_EVENT,    .recv = hci_recv_frame },
576 	{ BCM_RECV_LM_DIAG, .recv = hci_recv_diag  },
577 	{ BCM_RECV_NULL,    .recv = hci_recv_diag  },
578 };
579 
580 static int bcm_recv(struct hci_uart *hu, const void *data, int count)
581 {
582 	struct bcm_data *bcm = hu->priv;
583 
584 	if (!test_bit(HCI_UART_REGISTERED, &hu->flags))
585 		return -EUNATCH;
586 
587 	bcm->rx_skb = h4_recv_buf(hu->hdev, bcm->rx_skb, data, count,
588 				  bcm_recv_pkts, ARRAY_SIZE(bcm_recv_pkts));
589 	if (IS_ERR(bcm->rx_skb)) {
590 		int err = PTR_ERR(bcm->rx_skb);
591 		bt_dev_err(hu->hdev, "Frame reassembly failed (%d)", err);
592 		bcm->rx_skb = NULL;
593 		return err;
594 	} else if (!bcm->rx_skb) {
595 		/* Delay auto-suspend when receiving completed packet */
596 		mutex_lock(&bcm_device_lock);
597 		if (bcm->dev && bcm_device_exists(bcm->dev)) {
598 			pm_runtime_get(bcm->dev->dev);
599 			pm_runtime_mark_last_busy(bcm->dev->dev);
600 			pm_runtime_put_autosuspend(bcm->dev->dev);
601 		}
602 		mutex_unlock(&bcm_device_lock);
603 	}
604 
605 	return count;
606 }
607 
608 static int bcm_enqueue(struct hci_uart *hu, struct sk_buff *skb)
609 {
610 	struct bcm_data *bcm = hu->priv;
611 
612 	bt_dev_dbg(hu->hdev, "hu %p skb %p", hu, skb);
613 
614 	/* Prepend skb with frame type */
615 	memcpy(skb_push(skb, 1), &hci_skb_pkt_type(skb), 1);
616 	skb_queue_tail(&bcm->txq, skb);
617 
618 	return 0;
619 }
620 
621 static struct sk_buff *bcm_dequeue(struct hci_uart *hu)
622 {
623 	struct bcm_data *bcm = hu->priv;
624 	struct sk_buff *skb = NULL;
625 	struct bcm_device *bdev = NULL;
626 
627 	mutex_lock(&bcm_device_lock);
628 
629 	if (bcm_device_exists(bcm->dev)) {
630 		bdev = bcm->dev;
631 		pm_runtime_get_sync(bdev->dev);
632 		/* Shall be resumed here */
633 	}
634 
635 	skb = skb_dequeue(&bcm->txq);
636 
637 	if (bdev) {
638 		pm_runtime_mark_last_busy(bdev->dev);
639 		pm_runtime_put_autosuspend(bdev->dev);
640 	}
641 
642 	mutex_unlock(&bcm_device_lock);
643 
644 	return skb;
645 }
646 
647 #ifdef CONFIG_PM
648 static int bcm_suspend_device(struct device *dev)
649 {
650 	struct bcm_device *bdev = dev_get_drvdata(dev);
651 	int err;
652 
653 	bt_dev_dbg(bdev, "");
654 
655 	if (!bdev->is_suspended && bdev->hu) {
656 		hci_uart_set_flow_control(bdev->hu, true);
657 
658 		/* Once this returns, driver suspends BT via GPIO */
659 		bdev->is_suspended = true;
660 	}
661 
662 	/* Suspend the device */
663 	err = bdev->set_device_wakeup(bdev, false);
664 	if (err) {
665 		if (bdev->is_suspended && bdev->hu) {
666 			bdev->is_suspended = false;
667 			hci_uart_set_flow_control(bdev->hu, false);
668 		}
669 		return -EBUSY;
670 	}
671 
672 	bt_dev_dbg(bdev, "suspend, delaying 15 ms");
673 	msleep(15);
674 
675 	return 0;
676 }
677 
678 static int bcm_resume_device(struct device *dev)
679 {
680 	struct bcm_device *bdev = dev_get_drvdata(dev);
681 	int err;
682 
683 	bt_dev_dbg(bdev, "");
684 
685 	err = bdev->set_device_wakeup(bdev, true);
686 	if (err) {
687 		dev_err(dev, "Failed to power up\n");
688 		return err;
689 	}
690 
691 	bt_dev_dbg(bdev, "resume, delaying 15 ms");
692 	msleep(15);
693 
694 	/* When this executes, the device has woken up already */
695 	if (bdev->is_suspended && bdev->hu) {
696 		bdev->is_suspended = false;
697 
698 		hci_uart_set_flow_control(bdev->hu, false);
699 	}
700 
701 	return 0;
702 }
703 #endif
704 
705 #ifdef CONFIG_PM_SLEEP
706 /* suspend callback */
707 static int bcm_suspend(struct device *dev)
708 {
709 	struct bcm_device *bdev = dev_get_drvdata(dev);
710 	int error;
711 
712 	bt_dev_dbg(bdev, "suspend: is_suspended %d", bdev->is_suspended);
713 
714 	/*
715 	 * When used with a device instantiated as platform_device, bcm_suspend
716 	 * can be called at any time as long as the platform device is bound,
717 	 * so it should use bcm_device_lock to protect access to hci_uart
718 	 * and device_wake-up GPIO.
719 	 */
720 	mutex_lock(&bcm_device_lock);
721 
722 	if (!bdev->hu)
723 		goto unlock;
724 
725 	if (pm_runtime_active(dev))
726 		bcm_suspend_device(dev);
727 
728 	if (device_may_wakeup(dev) && bdev->irq > 0) {
729 		error = enable_irq_wake(bdev->irq);
730 		if (!error)
731 			bt_dev_dbg(bdev, "BCM irq: enabled");
732 	}
733 
734 unlock:
735 	mutex_unlock(&bcm_device_lock);
736 
737 	return 0;
738 }
739 
740 /* resume callback */
741 static int bcm_resume(struct device *dev)
742 {
743 	struct bcm_device *bdev = dev_get_drvdata(dev);
744 	int err = 0;
745 
746 	bt_dev_dbg(bdev, "resume: is_suspended %d", bdev->is_suspended);
747 
748 	/*
749 	 * When used with a device instantiated as platform_device, bcm_resume
750 	 * can be called at any time as long as platform device is bound,
751 	 * so it should use bcm_device_lock to protect access to hci_uart
752 	 * and device_wake-up GPIO.
753 	 */
754 	mutex_lock(&bcm_device_lock);
755 
756 	if (!bdev->hu)
757 		goto unlock;
758 
759 	if (device_may_wakeup(dev) && bdev->irq > 0) {
760 		disable_irq_wake(bdev->irq);
761 		bt_dev_dbg(bdev, "BCM irq: disabled");
762 	}
763 
764 	err = bcm_resume_device(dev);
765 
766 unlock:
767 	mutex_unlock(&bcm_device_lock);
768 
769 	if (!err) {
770 		pm_runtime_disable(dev);
771 		pm_runtime_set_active(dev);
772 		pm_runtime_enable(dev);
773 	}
774 
775 	return 0;
776 }
777 #endif
778 
779 static const struct acpi_gpio_params first_gpio = { 0, 0, false };
780 static const struct acpi_gpio_params second_gpio = { 1, 0, false };
781 static const struct acpi_gpio_params third_gpio = { 2, 0, false };
782 
783 static const struct acpi_gpio_mapping acpi_bcm_int_last_gpios[] = {
784 	{ "device-wakeup-gpios", &first_gpio, 1 },
785 	{ "shutdown-gpios", &second_gpio, 1 },
786 	{ "host-wakeup-gpios", &third_gpio, 1 },
787 	{ },
788 };
789 
790 static const struct acpi_gpio_mapping acpi_bcm_int_first_gpios[] = {
791 	{ "host-wakeup-gpios", &first_gpio, 1 },
792 	{ "device-wakeup-gpios", &second_gpio, 1 },
793 	{ "shutdown-gpios", &third_gpio, 1 },
794 	{ },
795 };
796 
797 #ifdef CONFIG_ACPI
798 /* IRQ polarity of some chipsets are not defined correctly in ACPI table. */
799 static const struct dmi_system_id bcm_active_low_irq_dmi_table[] = {
800 	{	/* Handle ThinkPad 8 tablets with BCM2E55 chipset ACPI ID */
801 		.ident = "Lenovo ThinkPad 8",
802 		.matches = {
803 			DMI_EXACT_MATCH(DMI_SYS_VENDOR, "LENOVO"),
804 			DMI_EXACT_MATCH(DMI_PRODUCT_VERSION, "ThinkPad 8"),
805 		},
806 	},
807 	{ }
808 };
809 
810 static int bcm_resource(struct acpi_resource *ares, void *data)
811 {
812 	struct bcm_device *dev = data;
813 	struct acpi_resource_extended_irq *irq;
814 	struct acpi_resource_gpio *gpio;
815 	struct acpi_resource_uart_serialbus *sb;
816 
817 	switch (ares->type) {
818 	case ACPI_RESOURCE_TYPE_EXTENDED_IRQ:
819 		irq = &ares->data.extended_irq;
820 		if (irq->polarity != ACPI_ACTIVE_LOW)
821 			dev_info(dev->dev, "ACPI Interrupt resource is active-high, this is usually wrong, treating the IRQ as active-low\n");
822 		dev->irq_active_low = true;
823 		break;
824 
825 	case ACPI_RESOURCE_TYPE_GPIO:
826 		gpio = &ares->data.gpio;
827 		if (gpio->connection_type == ACPI_RESOURCE_GPIO_TYPE_INT) {
828 			dev->gpio_int_idx = dev->gpio_count;
829 			dev->irq_active_low = gpio->polarity == ACPI_ACTIVE_LOW;
830 		}
831 		dev->gpio_count++;
832 		break;
833 
834 	case ACPI_RESOURCE_TYPE_SERIAL_BUS:
835 		sb = &ares->data.uart_serial_bus;
836 		if (sb->type == ACPI_RESOURCE_SERIAL_TYPE_UART) {
837 			dev->init_speed = sb->default_baud_rate;
838 			dev->oper_speed = 4000000;
839 		}
840 		break;
841 
842 	default:
843 		break;
844 	}
845 
846 	return 0;
847 }
848 
849 static int bcm_apple_set_device_wakeup(struct bcm_device *dev, bool awake)
850 {
851 	if (ACPI_FAILURE(acpi_execute_simple_method(dev->btlp, NULL, !awake)))
852 		return -EIO;
853 
854 	return 0;
855 }
856 
857 static int bcm_apple_set_shutdown(struct bcm_device *dev, bool powered)
858 {
859 	if (ACPI_FAILURE(acpi_evaluate_object(powered ? dev->btpu : dev->btpd,
860 					      NULL, NULL, NULL)))
861 		return -EIO;
862 
863 	return 0;
864 }
865 
866 static int bcm_apple_get_resources(struct bcm_device *dev)
867 {
868 	struct acpi_device *adev = ACPI_COMPANION(dev->dev);
869 	const union acpi_object *obj;
870 
871 	if (!adev ||
872 	    ACPI_FAILURE(acpi_get_handle(adev->handle, "BTLP", &dev->btlp)) ||
873 	    ACPI_FAILURE(acpi_get_handle(adev->handle, "BTPU", &dev->btpu)) ||
874 	    ACPI_FAILURE(acpi_get_handle(adev->handle, "BTPD", &dev->btpd)))
875 		return -ENODEV;
876 
877 	if (!acpi_dev_get_property(adev, "baud", ACPI_TYPE_BUFFER, &obj) &&
878 	    obj->buffer.length == 8)
879 		dev->init_speed = *(u64 *)obj->buffer.pointer;
880 
881 	dev->set_device_wakeup = bcm_apple_set_device_wakeup;
882 	dev->set_shutdown = bcm_apple_set_shutdown;
883 
884 	return 0;
885 }
886 #else
887 static inline int bcm_apple_get_resources(struct bcm_device *dev)
888 {
889 	return -EOPNOTSUPP;
890 }
891 #endif /* CONFIG_ACPI */
892 
893 static int bcm_gpio_set_device_wakeup(struct bcm_device *dev, bool awake)
894 {
895 	gpiod_set_value_cansleep(dev->device_wakeup, awake);
896 	return 0;
897 }
898 
899 static int bcm_gpio_set_shutdown(struct bcm_device *dev, bool powered)
900 {
901 	gpiod_set_value_cansleep(dev->shutdown, powered);
902 	return 0;
903 }
904 
905 static int bcm_get_resources(struct bcm_device *dev)
906 {
907 	dev->name = dev_name(dev->dev);
908 
909 	if (x86_apple_machine && !bcm_apple_get_resources(dev))
910 		return 0;
911 
912 	dev->clk = devm_clk_get(dev->dev, NULL);
913 
914 	dev->device_wakeup = devm_gpiod_get_optional(dev->dev, "device-wakeup",
915 						     GPIOD_OUT_LOW);
916 	if (IS_ERR(dev->device_wakeup))
917 		return PTR_ERR(dev->device_wakeup);
918 
919 	dev->shutdown = devm_gpiod_get_optional(dev->dev, "shutdown",
920 						GPIOD_OUT_LOW);
921 	if (IS_ERR(dev->shutdown))
922 		return PTR_ERR(dev->shutdown);
923 
924 	dev->set_device_wakeup = bcm_gpio_set_device_wakeup;
925 	dev->set_shutdown = bcm_gpio_set_shutdown;
926 
927 	/* IRQ can be declared in ACPI table as Interrupt or GpioInt */
928 	if (dev->irq <= 0) {
929 		struct gpio_desc *gpio;
930 
931 		gpio = devm_gpiod_get_optional(dev->dev, "host-wakeup",
932 					       GPIOD_IN);
933 		if (IS_ERR(gpio))
934 			return PTR_ERR(gpio);
935 
936 		dev->irq = gpiod_to_irq(gpio);
937 	}
938 
939 	dev_dbg(dev->dev, "BCM irq: %d\n", dev->irq);
940 	return 0;
941 }
942 
943 #ifdef CONFIG_ACPI
944 static int bcm_acpi_probe(struct bcm_device *dev)
945 {
946 	LIST_HEAD(resources);
947 	const struct dmi_system_id *dmi_id;
948 	const struct acpi_gpio_mapping *gpio_mapping = acpi_bcm_int_last_gpios;
949 	struct resource_entry *entry;
950 	int ret;
951 
952 	/* Retrieve UART ACPI info */
953 	dev->gpio_int_idx = -1;
954 	ret = acpi_dev_get_resources(ACPI_COMPANION(dev->dev),
955 				     &resources, bcm_resource, dev);
956 	if (ret < 0)
957 		return ret;
958 
959 	resource_list_for_each_entry(entry, &resources) {
960 		if (resource_type(entry->res) == IORESOURCE_IRQ) {
961 			dev->irq = entry->res->start;
962 			break;
963 		}
964 	}
965 	acpi_dev_free_resource_list(&resources);
966 
967 	/* If the DSDT uses an Interrupt resource for the IRQ, then there are
968 	 * only 2 GPIO resources, we use the irq-last mapping for this, since
969 	 * we already have an irq the 3th / last mapping will not be used.
970 	 */
971 	if (dev->irq)
972 		gpio_mapping = acpi_bcm_int_last_gpios;
973 	else if (dev->gpio_int_idx == 0)
974 		gpio_mapping = acpi_bcm_int_first_gpios;
975 	else if (dev->gpio_int_idx == 2)
976 		gpio_mapping = acpi_bcm_int_last_gpios;
977 	else
978 		dev_warn(dev->dev, "Unexpected ACPI gpio_int_idx: %d\n",
979 			 dev->gpio_int_idx);
980 
981 	/* Warn if our expectations are not met. */
982 	if (dev->gpio_count != (dev->irq ? 2 : 3))
983 		dev_warn(dev->dev, "Unexpected number of ACPI GPIOs: %d\n",
984 			 dev->gpio_count);
985 
986 	ret = devm_acpi_dev_add_driver_gpios(dev->dev, gpio_mapping);
987 	if (ret)
988 		return ret;
989 
990 	if (irq_polarity != -1) {
991 		dev->irq_active_low = irq_polarity;
992 		dev_warn(dev->dev, "Overwriting IRQ polarity to active %s by module-param\n",
993 			 dev->irq_active_low ? "low" : "high");
994 	} else {
995 		dmi_id = dmi_first_match(bcm_active_low_irq_dmi_table);
996 		if (dmi_id) {
997 			dev_warn(dev->dev, "%s: Overwriting IRQ polarity to active low",
998 				 dmi_id->ident);
999 			dev->irq_active_low = true;
1000 		}
1001 	}
1002 
1003 	return 0;
1004 }
1005 #else
1006 static int bcm_acpi_probe(struct bcm_device *dev)
1007 {
1008 	return -EINVAL;
1009 }
1010 #endif /* CONFIG_ACPI */
1011 
1012 static int bcm_of_probe(struct bcm_device *bdev)
1013 {
1014 	device_property_read_u32(bdev->dev, "max-speed", &bdev->oper_speed);
1015 	return 0;
1016 }
1017 
1018 static int bcm_probe(struct platform_device *pdev)
1019 {
1020 	struct bcm_device *dev;
1021 	int ret;
1022 
1023 	dev = devm_kzalloc(&pdev->dev, sizeof(*dev), GFP_KERNEL);
1024 	if (!dev)
1025 		return -ENOMEM;
1026 
1027 	dev->dev = &pdev->dev;
1028 	dev->irq = platform_get_irq(pdev, 0);
1029 
1030 	if (has_acpi_companion(&pdev->dev)) {
1031 		ret = bcm_acpi_probe(dev);
1032 		if (ret)
1033 			return ret;
1034 	}
1035 
1036 	ret = bcm_get_resources(dev);
1037 	if (ret)
1038 		return ret;
1039 
1040 	platform_set_drvdata(pdev, dev);
1041 
1042 	dev_info(&pdev->dev, "%s device registered.\n", dev->name);
1043 
1044 	/* Place this instance on the device list */
1045 	mutex_lock(&bcm_device_lock);
1046 	list_add_tail(&dev->list, &bcm_device_list);
1047 	mutex_unlock(&bcm_device_lock);
1048 
1049 	ret = bcm_gpio_set_power(dev, false);
1050 	if (ret)
1051 		dev_err(&pdev->dev, "Failed to power down\n");
1052 
1053 	return 0;
1054 }
1055 
1056 static int bcm_remove(struct platform_device *pdev)
1057 {
1058 	struct bcm_device *dev = platform_get_drvdata(pdev);
1059 
1060 	mutex_lock(&bcm_device_lock);
1061 	list_del(&dev->list);
1062 	mutex_unlock(&bcm_device_lock);
1063 
1064 	dev_info(&pdev->dev, "%s device unregistered.\n", dev->name);
1065 
1066 	return 0;
1067 }
1068 
1069 static const struct hci_uart_proto bcm_proto = {
1070 	.id		= HCI_UART_BCM,
1071 	.name		= "Broadcom",
1072 	.manufacturer	= 15,
1073 	.init_speed	= 115200,
1074 	.open		= bcm_open,
1075 	.close		= bcm_close,
1076 	.flush		= bcm_flush,
1077 	.setup		= bcm_setup,
1078 	.set_baudrate	= bcm_set_baudrate,
1079 	.recv		= bcm_recv,
1080 	.enqueue	= bcm_enqueue,
1081 	.dequeue	= bcm_dequeue,
1082 };
1083 
1084 #ifdef CONFIG_ACPI
1085 static const struct acpi_device_id bcm_acpi_match[] = {
1086 	{ "BCM2E00" },
1087 	{ "BCM2E01" },
1088 	{ "BCM2E02" },
1089 	{ "BCM2E03" },
1090 	{ "BCM2E04" },
1091 	{ "BCM2E05" },
1092 	{ "BCM2E06" },
1093 	{ "BCM2E07" },
1094 	{ "BCM2E08" },
1095 	{ "BCM2E09" },
1096 	{ "BCM2E0A" },
1097 	{ "BCM2E0B" },
1098 	{ "BCM2E0C" },
1099 	{ "BCM2E0D" },
1100 	{ "BCM2E0E" },
1101 	{ "BCM2E0F" },
1102 	{ "BCM2E10" },
1103 	{ "BCM2E11" },
1104 	{ "BCM2E12" },
1105 	{ "BCM2E13" },
1106 	{ "BCM2E14" },
1107 	{ "BCM2E15" },
1108 	{ "BCM2E16" },
1109 	{ "BCM2E17" },
1110 	{ "BCM2E18" },
1111 	{ "BCM2E19" },
1112 	{ "BCM2E1A" },
1113 	{ "BCM2E1B" },
1114 	{ "BCM2E1C" },
1115 	{ "BCM2E1D" },
1116 	{ "BCM2E1F" },
1117 	{ "BCM2E20" },
1118 	{ "BCM2E21" },
1119 	{ "BCM2E22" },
1120 	{ "BCM2E23" },
1121 	{ "BCM2E24" },
1122 	{ "BCM2E25" },
1123 	{ "BCM2E26" },
1124 	{ "BCM2E27" },
1125 	{ "BCM2E28" },
1126 	{ "BCM2E29" },
1127 	{ "BCM2E2A" },
1128 	{ "BCM2E2B" },
1129 	{ "BCM2E2C" },
1130 	{ "BCM2E2D" },
1131 	{ "BCM2E2E" },
1132 	{ "BCM2E2F" },
1133 	{ "BCM2E30" },
1134 	{ "BCM2E31" },
1135 	{ "BCM2E32" },
1136 	{ "BCM2E33" },
1137 	{ "BCM2E34" },
1138 	{ "BCM2E35" },
1139 	{ "BCM2E36" },
1140 	{ "BCM2E37" },
1141 	{ "BCM2E38" },
1142 	{ "BCM2E39" },
1143 	{ "BCM2E3A" },
1144 	{ "BCM2E3B" },
1145 	{ "BCM2E3C" },
1146 	{ "BCM2E3D" },
1147 	{ "BCM2E3E" },
1148 	{ "BCM2E3F" },
1149 	{ "BCM2E40" },
1150 	{ "BCM2E41" },
1151 	{ "BCM2E42" },
1152 	{ "BCM2E43" },
1153 	{ "BCM2E44" },
1154 	{ "BCM2E45" },
1155 	{ "BCM2E46" },
1156 	{ "BCM2E47" },
1157 	{ "BCM2E48" },
1158 	{ "BCM2E49" },
1159 	{ "BCM2E4A" },
1160 	{ "BCM2E4B" },
1161 	{ "BCM2E4C" },
1162 	{ "BCM2E4D" },
1163 	{ "BCM2E4E" },
1164 	{ "BCM2E4F" },
1165 	{ "BCM2E50" },
1166 	{ "BCM2E51" },
1167 	{ "BCM2E52" },
1168 	{ "BCM2E53" },
1169 	{ "BCM2E54" },
1170 	{ "BCM2E55" },
1171 	{ "BCM2E56" },
1172 	{ "BCM2E57" },
1173 	{ "BCM2E58" },
1174 	{ "BCM2E59" },
1175 	{ "BCM2E5A" },
1176 	{ "BCM2E5B" },
1177 	{ "BCM2E5C" },
1178 	{ "BCM2E5D" },
1179 	{ "BCM2E5E" },
1180 	{ "BCM2E5F" },
1181 	{ "BCM2E60" },
1182 	{ "BCM2E61" },
1183 	{ "BCM2E62" },
1184 	{ "BCM2E63" },
1185 	{ "BCM2E64" },
1186 	{ "BCM2E65" },
1187 	{ "BCM2E66" },
1188 	{ "BCM2E67" },
1189 	{ "BCM2E68" },
1190 	{ "BCM2E69" },
1191 	{ "BCM2E6B" },
1192 	{ "BCM2E6D" },
1193 	{ "BCM2E6E" },
1194 	{ "BCM2E6F" },
1195 	{ "BCM2E70" },
1196 	{ "BCM2E71" },
1197 	{ "BCM2E72" },
1198 	{ "BCM2E73" },
1199 	{ "BCM2E74" },
1200 	{ "BCM2E75" },
1201 	{ "BCM2E76" },
1202 	{ "BCM2E77" },
1203 	{ "BCM2E78" },
1204 	{ "BCM2E79" },
1205 	{ "BCM2E7A" },
1206 	{ "BCM2E7B" },
1207 	{ "BCM2E7C" },
1208 	{ "BCM2E7D" },
1209 	{ "BCM2E7E" },
1210 	{ "BCM2E7F" },
1211 	{ "BCM2E80" },
1212 	{ "BCM2E81" },
1213 	{ "BCM2E82" },
1214 	{ "BCM2E83" },
1215 	{ "BCM2E84" },
1216 	{ "BCM2E85" },
1217 	{ "BCM2E86" },
1218 	{ "BCM2E87" },
1219 	{ "BCM2E88" },
1220 	{ "BCM2E89" },
1221 	{ "BCM2E8A" },
1222 	{ "BCM2E8B" },
1223 	{ "BCM2E8C" },
1224 	{ "BCM2E8D" },
1225 	{ "BCM2E8E" },
1226 	{ "BCM2E90" },
1227 	{ "BCM2E92" },
1228 	{ "BCM2E93" },
1229 	{ "BCM2E94" },
1230 	{ "BCM2E95" },
1231 	{ "BCM2E96" },
1232 	{ "BCM2E97" },
1233 	{ "BCM2E98" },
1234 	{ "BCM2E99" },
1235 	{ "BCM2E9A" },
1236 	{ "BCM2E9B" },
1237 	{ "BCM2E9C" },
1238 	{ "BCM2E9D" },
1239 	{ "BCM2EA0" },
1240 	{ "BCM2EA1" },
1241 	{ "BCM2EA2" },
1242 	{ "BCM2EA3" },
1243 	{ "BCM2EA4" },
1244 	{ "BCM2EA5" },
1245 	{ "BCM2EA6" },
1246 	{ "BCM2EA7" },
1247 	{ "BCM2EA8" },
1248 	{ "BCM2EA9" },
1249 	{ "BCM2EAA" },
1250 	{ "BCM2EAB" },
1251 	{ "BCM2EAC" },
1252 	{ },
1253 };
1254 MODULE_DEVICE_TABLE(acpi, bcm_acpi_match);
1255 #endif
1256 
1257 /* suspend and resume callbacks */
1258 static const struct dev_pm_ops bcm_pm_ops = {
1259 	SET_SYSTEM_SLEEP_PM_OPS(bcm_suspend, bcm_resume)
1260 	SET_RUNTIME_PM_OPS(bcm_suspend_device, bcm_resume_device, NULL)
1261 };
1262 
1263 static struct platform_driver bcm_driver = {
1264 	.probe = bcm_probe,
1265 	.remove = bcm_remove,
1266 	.driver = {
1267 		.name = "hci_bcm",
1268 		.acpi_match_table = ACPI_PTR(bcm_acpi_match),
1269 		.pm = &bcm_pm_ops,
1270 	},
1271 };
1272 
1273 static int bcm_serdev_probe(struct serdev_device *serdev)
1274 {
1275 	struct bcm_device *bcmdev;
1276 	int err;
1277 
1278 	bcmdev = devm_kzalloc(&serdev->dev, sizeof(*bcmdev), GFP_KERNEL);
1279 	if (!bcmdev)
1280 		return -ENOMEM;
1281 
1282 	bcmdev->dev = &serdev->dev;
1283 #ifdef CONFIG_PM
1284 	bcmdev->hu = &bcmdev->serdev_hu;
1285 #endif
1286 	bcmdev->serdev_hu.serdev = serdev;
1287 	serdev_device_set_drvdata(serdev, bcmdev);
1288 
1289 	if (has_acpi_companion(&serdev->dev))
1290 		err = bcm_acpi_probe(bcmdev);
1291 	else
1292 		err = bcm_of_probe(bcmdev);
1293 	if (err)
1294 		return err;
1295 
1296 	err = bcm_get_resources(bcmdev);
1297 	if (err)
1298 		return err;
1299 
1300 	if (!bcmdev->shutdown) {
1301 		dev_warn(&serdev->dev,
1302 			 "No reset resource, using default baud rate\n");
1303 		bcmdev->oper_speed = bcmdev->init_speed;
1304 	}
1305 
1306 	err = bcm_gpio_set_power(bcmdev, false);
1307 	if (err)
1308 		dev_err(&serdev->dev, "Failed to power down\n");
1309 
1310 	return hci_uart_register_device(&bcmdev->serdev_hu, &bcm_proto);
1311 }
1312 
1313 static void bcm_serdev_remove(struct serdev_device *serdev)
1314 {
1315 	struct bcm_device *bcmdev = serdev_device_get_drvdata(serdev);
1316 
1317 	hci_uart_unregister_device(&bcmdev->serdev_hu);
1318 }
1319 
1320 #ifdef CONFIG_OF
1321 static const struct of_device_id bcm_bluetooth_of_match[] = {
1322 	{ .compatible = "brcm,bcm43438-bt" },
1323 	{ },
1324 };
1325 MODULE_DEVICE_TABLE(of, bcm_bluetooth_of_match);
1326 #endif
1327 
1328 static struct serdev_device_driver bcm_serdev_driver = {
1329 	.probe = bcm_serdev_probe,
1330 	.remove = bcm_serdev_remove,
1331 	.driver = {
1332 		.name = "hci_uart_bcm",
1333 		.of_match_table = of_match_ptr(bcm_bluetooth_of_match),
1334 		.acpi_match_table = ACPI_PTR(bcm_acpi_match),
1335 		.pm = &bcm_pm_ops,
1336 	},
1337 };
1338 
1339 int __init bcm_init(void)
1340 {
1341 	/* For now, we need to keep both platform device
1342 	 * driver (ACPI generated) and serdev driver (DT).
1343 	 */
1344 	platform_driver_register(&bcm_driver);
1345 	serdev_device_driver_register(&bcm_serdev_driver);
1346 
1347 	return hci_uart_register_proto(&bcm_proto);
1348 }
1349 
1350 int __exit bcm_deinit(void)
1351 {
1352 	platform_driver_unregister(&bcm_driver);
1353 	serdev_device_driver_unregister(&bcm_serdev_driver);
1354 
1355 	return hci_uart_unregister_proto(&bcm_proto);
1356 }
1357