1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * Copyright (C) 2016-2017 Linaro Ltd., Rob Herring <robh@kernel.org>
4 *
5 * Based on drivers/spmi/spmi.c:
6 * Copyright (c) 2012-2015, The Linux Foundation. All rights reserved.
7 */
8
9 #include <linux/acpi.h>
10 #include <linux/errno.h>
11 #include <linux/idr.h>
12 #include <linux/kernel.h>
13 #include <linux/module.h>
14 #include <linux/of.h>
15 #include <linux/of_device.h>
16 #include <linux/pm_domain.h>
17 #include <linux/pm_runtime.h>
18 #include <linux/property.h>
19 #include <linux/sched.h>
20 #include <linux/serdev.h>
21 #include <linux/slab.h>
22
23 #include <linux/platform_data/x86/apple.h>
24
25 static bool is_registered;
26 static DEFINE_IDA(ctrl_ida);
27
modalias_show(struct device * dev,struct device_attribute * attr,char * buf)28 static ssize_t modalias_show(struct device *dev,
29 struct device_attribute *attr, char *buf)
30 {
31 int len;
32
33 len = acpi_device_modalias(dev, buf, PAGE_SIZE - 1);
34 if (len != -ENODEV)
35 return len;
36
37 return of_device_modalias(dev, buf, PAGE_SIZE);
38 }
39 static DEVICE_ATTR_RO(modalias);
40
41 static struct attribute *serdev_device_attrs[] = {
42 &dev_attr_modalias.attr,
43 NULL,
44 };
45 ATTRIBUTE_GROUPS(serdev_device);
46
serdev_device_uevent(const struct device * dev,struct kobj_uevent_env * env)47 static int serdev_device_uevent(const struct device *dev, struct kobj_uevent_env *env)
48 {
49 int rc;
50
51 /* TODO: platform modalias */
52
53 rc = acpi_device_uevent_modalias(dev, env);
54 if (rc != -ENODEV)
55 return rc;
56
57 return of_device_uevent_modalias(dev, env);
58 }
59
serdev_device_release(struct device * dev)60 static void serdev_device_release(struct device *dev)
61 {
62 struct serdev_device *serdev = to_serdev_device(dev);
63 kfree(serdev);
64 }
65
66 static const struct device_type serdev_device_type = {
67 .groups = serdev_device_groups,
68 .uevent = serdev_device_uevent,
69 .release = serdev_device_release,
70 };
71
is_serdev_device(const struct device * dev)72 static bool is_serdev_device(const struct device *dev)
73 {
74 return dev->type == &serdev_device_type;
75 }
76
serdev_ctrl_release(struct device * dev)77 static void serdev_ctrl_release(struct device *dev)
78 {
79 struct serdev_controller *ctrl = to_serdev_controller(dev);
80 ida_free(&ctrl_ida, ctrl->nr);
81 kfree(ctrl);
82 }
83
84 static const struct device_type serdev_ctrl_type = {
85 .release = serdev_ctrl_release,
86 };
87
serdev_device_match(struct device * dev,const struct device_driver * drv)88 static int serdev_device_match(struct device *dev, const struct device_driver *drv)
89 {
90 if (!is_serdev_device(dev))
91 return 0;
92
93 /* TODO: platform matching */
94 if (acpi_driver_match_device(dev, drv))
95 return 1;
96
97 return of_driver_match_device(dev, drv);
98 }
99
100 /**
101 * serdev_device_add() - add a device previously constructed via serdev_device_alloc()
102 * @serdev: serdev_device to be added
103 */
serdev_device_add(struct serdev_device * serdev)104 int serdev_device_add(struct serdev_device *serdev)
105 {
106 struct serdev_controller *ctrl = serdev->ctrl;
107 struct device *parent = serdev->dev.parent;
108 int err;
109
110 dev_set_name(&serdev->dev, "%s-%d", dev_name(parent), serdev->nr);
111
112 /* Only a single slave device is currently supported. */
113 if (ctrl->serdev) {
114 dev_err(&serdev->dev, "controller busy\n");
115 return -EBUSY;
116 }
117 ctrl->serdev = serdev;
118
119 err = device_add(&serdev->dev);
120 if (err < 0) {
121 dev_err(&serdev->dev, "Failed to add serdev: %d\n", err);
122 goto err_clear_serdev;
123 }
124
125 dev_dbg(&serdev->dev, "serdev registered successfully\n");
126
127 return 0;
128
129 err_clear_serdev:
130 ctrl->serdev = NULL;
131 return err;
132 }
133 EXPORT_SYMBOL_GPL(serdev_device_add);
134
135 /**
136 * serdev_device_remove(): remove an serdev device
137 * @serdev: serdev_device to be removed
138 */
serdev_device_remove(struct serdev_device * serdev)139 void serdev_device_remove(struct serdev_device *serdev)
140 {
141 struct serdev_controller *ctrl = serdev->ctrl;
142
143 device_unregister(&serdev->dev);
144 ctrl->serdev = NULL;
145 }
146 EXPORT_SYMBOL_GPL(serdev_device_remove);
147
serdev_device_open(struct serdev_device * serdev)148 int serdev_device_open(struct serdev_device *serdev)
149 {
150 struct serdev_controller *ctrl = serdev->ctrl;
151 int ret;
152
153 if (!ctrl || !ctrl->ops->open)
154 return -EINVAL;
155
156 ret = ctrl->ops->open(ctrl);
157 if (ret)
158 return ret;
159
160 ret = pm_runtime_get_sync(&ctrl->dev);
161 if (ret < 0) {
162 pm_runtime_put_noidle(&ctrl->dev);
163 goto err_close;
164 }
165
166 return 0;
167
168 err_close:
169 if (ctrl->ops->close)
170 ctrl->ops->close(ctrl);
171
172 return ret;
173 }
174 EXPORT_SYMBOL_GPL(serdev_device_open);
175
serdev_device_close(struct serdev_device * serdev)176 void serdev_device_close(struct serdev_device *serdev)
177 {
178 struct serdev_controller *ctrl = serdev->ctrl;
179
180 if (!ctrl || !ctrl->ops->close)
181 return;
182
183 pm_runtime_put(&ctrl->dev);
184
185 ctrl->ops->close(ctrl);
186 }
187 EXPORT_SYMBOL_GPL(serdev_device_close);
188
devm_serdev_device_close(void * serdev)189 static void devm_serdev_device_close(void *serdev)
190 {
191 serdev_device_close(serdev);
192 }
193
devm_serdev_device_open(struct device * dev,struct serdev_device * serdev)194 int devm_serdev_device_open(struct device *dev, struct serdev_device *serdev)
195 {
196 int ret;
197
198 ret = serdev_device_open(serdev);
199 if (ret)
200 return ret;
201
202 return devm_add_action_or_reset(dev, devm_serdev_device_close, serdev);
203 }
204 EXPORT_SYMBOL_GPL(devm_serdev_device_open);
205
serdev_device_write_wakeup(struct serdev_device * serdev)206 void serdev_device_write_wakeup(struct serdev_device *serdev)
207 {
208 complete(&serdev->write_comp);
209 }
210 EXPORT_SYMBOL_GPL(serdev_device_write_wakeup);
211
212 /**
213 * serdev_device_write_buf() - write data asynchronously
214 * @serdev: serdev device
215 * @buf: data to be written
216 * @count: number of bytes to write
217 *
218 * Write data to the device asynchronously.
219 *
220 * Note that any accepted data has only been buffered by the controller; use
221 * serdev_device_wait_until_sent() to make sure the controller write buffer
222 * has actually been emptied.
223 *
224 * Return: The number of bytes written (less than count if not enough room in
225 * the write buffer), or a negative errno on errors.
226 */
serdev_device_write_buf(struct serdev_device * serdev,const u8 * buf,size_t count)227 int serdev_device_write_buf(struct serdev_device *serdev, const u8 *buf, size_t count)
228 {
229 struct serdev_controller *ctrl = serdev->ctrl;
230
231 if (!ctrl || !ctrl->ops->write_buf)
232 return -EINVAL;
233
234 return ctrl->ops->write_buf(ctrl, buf, count);
235 }
236 EXPORT_SYMBOL_GPL(serdev_device_write_buf);
237
238 /**
239 * serdev_device_write() - write data synchronously
240 * @serdev: serdev device
241 * @buf: data to be written
242 * @count: number of bytes to write
243 * @timeout: timeout in jiffies, or 0 to wait indefinitely
244 *
245 * Write data to the device synchronously by repeatedly calling
246 * serdev_device_write() until the controller has accepted all data (unless
247 * interrupted by a timeout or a signal).
248 *
249 * Note that any accepted data has only been buffered by the controller; use
250 * serdev_device_wait_until_sent() to make sure the controller write buffer
251 * has actually been emptied.
252 *
253 * Note that this function depends on serdev_device_write_wakeup() being
254 * called in the serdev driver write_wakeup() callback.
255 *
256 * Return: The number of bytes written (less than count if interrupted),
257 * -ETIMEDOUT or -ERESTARTSYS if interrupted before any bytes were written, or
258 * a negative errno on errors.
259 */
serdev_device_write(struct serdev_device * serdev,const u8 * buf,size_t count,long timeout)260 ssize_t serdev_device_write(struct serdev_device *serdev, const u8 *buf,
261 size_t count, long timeout)
262 {
263 struct serdev_controller *ctrl = serdev->ctrl;
264 size_t written = 0;
265 ssize_t ret;
266
267 if (!ctrl || !ctrl->ops->write_buf || !serdev->ops->write_wakeup)
268 return -EINVAL;
269
270 if (timeout == 0)
271 timeout = MAX_SCHEDULE_TIMEOUT;
272
273 mutex_lock(&serdev->write_lock);
274 do {
275 reinit_completion(&serdev->write_comp);
276
277 ret = ctrl->ops->write_buf(ctrl, buf, count);
278 if (ret < 0)
279 break;
280
281 written += ret;
282 buf += ret;
283 count -= ret;
284
285 if (count == 0)
286 break;
287
288 timeout = wait_for_completion_interruptible_timeout(&serdev->write_comp,
289 timeout);
290 } while (timeout > 0);
291 mutex_unlock(&serdev->write_lock);
292
293 if (ret < 0)
294 return ret;
295
296 if (timeout <= 0 && written == 0) {
297 if (timeout == -ERESTARTSYS)
298 return -ERESTARTSYS;
299 else
300 return -ETIMEDOUT;
301 }
302
303 return written;
304 }
305 EXPORT_SYMBOL_GPL(serdev_device_write);
306
serdev_device_write_flush(struct serdev_device * serdev)307 void serdev_device_write_flush(struct serdev_device *serdev)
308 {
309 struct serdev_controller *ctrl = serdev->ctrl;
310
311 if (!ctrl || !ctrl->ops->write_flush)
312 return;
313
314 ctrl->ops->write_flush(ctrl);
315 }
316 EXPORT_SYMBOL_GPL(serdev_device_write_flush);
317
serdev_device_set_baudrate(struct serdev_device * serdev,unsigned int speed)318 unsigned int serdev_device_set_baudrate(struct serdev_device *serdev, unsigned int speed)
319 {
320 struct serdev_controller *ctrl = serdev->ctrl;
321
322 if (!ctrl || !ctrl->ops->set_baudrate)
323 return 0;
324
325 return ctrl->ops->set_baudrate(ctrl, speed);
326
327 }
328 EXPORT_SYMBOL_GPL(serdev_device_set_baudrate);
329
serdev_device_set_flow_control(struct serdev_device * serdev,bool enable)330 void serdev_device_set_flow_control(struct serdev_device *serdev, bool enable)
331 {
332 struct serdev_controller *ctrl = serdev->ctrl;
333
334 if (!ctrl || !ctrl->ops->set_flow_control)
335 return;
336
337 ctrl->ops->set_flow_control(ctrl, enable);
338 }
339 EXPORT_SYMBOL_GPL(serdev_device_set_flow_control);
340
serdev_device_set_parity(struct serdev_device * serdev,enum serdev_parity parity)341 int serdev_device_set_parity(struct serdev_device *serdev,
342 enum serdev_parity parity)
343 {
344 struct serdev_controller *ctrl = serdev->ctrl;
345
346 if (!ctrl || !ctrl->ops->set_parity)
347 return -EOPNOTSUPP;
348
349 return ctrl->ops->set_parity(ctrl, parity);
350 }
351 EXPORT_SYMBOL_GPL(serdev_device_set_parity);
352
serdev_device_wait_until_sent(struct serdev_device * serdev,long timeout)353 void serdev_device_wait_until_sent(struct serdev_device *serdev, long timeout)
354 {
355 struct serdev_controller *ctrl = serdev->ctrl;
356
357 if (!ctrl || !ctrl->ops->wait_until_sent)
358 return;
359
360 ctrl->ops->wait_until_sent(ctrl, timeout);
361 }
362 EXPORT_SYMBOL_GPL(serdev_device_wait_until_sent);
363
serdev_device_get_tiocm(struct serdev_device * serdev)364 int serdev_device_get_tiocm(struct serdev_device *serdev)
365 {
366 struct serdev_controller *ctrl = serdev->ctrl;
367
368 if (!ctrl || !ctrl->ops->get_tiocm)
369 return -EOPNOTSUPP;
370
371 return ctrl->ops->get_tiocm(ctrl);
372 }
373 EXPORT_SYMBOL_GPL(serdev_device_get_tiocm);
374
serdev_device_set_tiocm(struct serdev_device * serdev,int set,int clear)375 int serdev_device_set_tiocm(struct serdev_device *serdev, int set, int clear)
376 {
377 struct serdev_controller *ctrl = serdev->ctrl;
378
379 if (!ctrl || !ctrl->ops->set_tiocm)
380 return -EOPNOTSUPP;
381
382 return ctrl->ops->set_tiocm(ctrl, set, clear);
383 }
384 EXPORT_SYMBOL_GPL(serdev_device_set_tiocm);
385
serdev_device_break_ctl(struct serdev_device * serdev,int break_state)386 int serdev_device_break_ctl(struct serdev_device *serdev, int break_state)
387 {
388 struct serdev_controller *ctrl = serdev->ctrl;
389
390 if (!ctrl || !ctrl->ops->break_ctl)
391 return -EOPNOTSUPP;
392
393 return ctrl->ops->break_ctl(ctrl, break_state);
394 }
395 EXPORT_SYMBOL_GPL(serdev_device_break_ctl);
396
serdev_drv_probe(struct device * dev)397 static int serdev_drv_probe(struct device *dev)
398 {
399 const struct serdev_device_driver *sdrv = to_serdev_device_driver(dev->driver);
400 int ret;
401
402 ret = dev_pm_domain_attach(dev, true);
403 if (ret)
404 return ret;
405
406 ret = sdrv->probe(to_serdev_device(dev));
407 if (ret)
408 dev_pm_domain_detach(dev, true);
409
410 return ret;
411 }
412
serdev_drv_remove(struct device * dev)413 static void serdev_drv_remove(struct device *dev)
414 {
415 const struct serdev_device_driver *sdrv = to_serdev_device_driver(dev->driver);
416 if (sdrv->remove)
417 sdrv->remove(to_serdev_device(dev));
418
419 dev_pm_domain_detach(dev, true);
420 }
421
422 static const struct bus_type serdev_bus_type = {
423 .name = "serial",
424 .match = serdev_device_match,
425 .probe = serdev_drv_probe,
426 .remove = serdev_drv_remove,
427 };
428
429 /**
430 * serdev_device_alloc() - Allocate a new serdev device
431 * @ctrl: associated controller
432 *
433 * Caller is responsible for either calling serdev_device_add() to add the
434 * newly allocated controller, or calling serdev_device_put() to discard it.
435 */
serdev_device_alloc(struct serdev_controller * ctrl)436 struct serdev_device *serdev_device_alloc(struct serdev_controller *ctrl)
437 {
438 struct serdev_device *serdev;
439
440 serdev = kzalloc(sizeof(*serdev), GFP_KERNEL);
441 if (!serdev)
442 return NULL;
443
444 serdev->ctrl = ctrl;
445 device_initialize(&serdev->dev);
446 serdev->dev.parent = &ctrl->dev;
447 serdev->dev.bus = &serdev_bus_type;
448 serdev->dev.type = &serdev_device_type;
449 init_completion(&serdev->write_comp);
450 mutex_init(&serdev->write_lock);
451 return serdev;
452 }
453 EXPORT_SYMBOL_GPL(serdev_device_alloc);
454
455 /**
456 * serdev_controller_alloc() - Allocate a new serdev controller
457 * @host: serial port hardware controller device
458 * @parent: parent device
459 * @size: size of private data
460 *
461 * Caller is responsible for either calling serdev_controller_add() to add the
462 * newly allocated controller, or calling serdev_controller_put() to discard it.
463 * The allocated private data region may be accessed via
464 * serdev_controller_get_drvdata()
465 */
serdev_controller_alloc(struct device * host,struct device * parent,size_t size)466 struct serdev_controller *serdev_controller_alloc(struct device *host,
467 struct device *parent,
468 size_t size)
469 {
470 struct serdev_controller *ctrl;
471 int id;
472
473 if (WARN_ON(!parent))
474 return NULL;
475
476 ctrl = kzalloc(sizeof(*ctrl) + size, GFP_KERNEL);
477 if (!ctrl)
478 return NULL;
479
480 id = ida_alloc(&ctrl_ida, GFP_KERNEL);
481 if (id < 0) {
482 dev_err(parent,
483 "unable to allocate serdev controller identifier.\n");
484 goto err_free;
485 }
486
487 ctrl->nr = id;
488
489 device_initialize(&ctrl->dev);
490 ctrl->dev.type = &serdev_ctrl_type;
491 ctrl->dev.bus = &serdev_bus_type;
492 ctrl->dev.parent = parent;
493 ctrl->host = host;
494 device_set_node(&ctrl->dev, dev_fwnode(host));
495 serdev_controller_set_drvdata(ctrl, &ctrl[1]);
496
497 dev_set_name(&ctrl->dev, "serial%d", id);
498
499 pm_runtime_no_callbacks(&ctrl->dev);
500 pm_suspend_ignore_children(&ctrl->dev, true);
501
502 dev_dbg(&ctrl->dev, "allocated controller 0x%p id %d\n", ctrl, id);
503 return ctrl;
504
505 err_free:
506 kfree(ctrl);
507
508 return NULL;
509 }
510 EXPORT_SYMBOL_GPL(serdev_controller_alloc);
511
of_serdev_register_devices(struct serdev_controller * ctrl)512 static int of_serdev_register_devices(struct serdev_controller *ctrl)
513 {
514 struct device_node *node;
515 struct serdev_device *serdev = NULL;
516 int err;
517 bool found = false;
518
519 for_each_available_child_of_node(ctrl->dev.of_node, node) {
520 if (!of_property_present(node, "compatible"))
521 continue;
522
523 dev_dbg(&ctrl->dev, "adding child %pOF\n", node);
524
525 serdev = serdev_device_alloc(ctrl);
526 if (!serdev)
527 continue;
528
529 device_set_node(&serdev->dev, of_fwnode_handle(node));
530
531 err = serdev_device_add(serdev);
532 if (err) {
533 dev_err(&serdev->dev,
534 "failure adding device. status %pe\n",
535 ERR_PTR(err));
536 serdev_device_put(serdev);
537 } else
538 found = true;
539 }
540 if (!found)
541 return -ENODEV;
542
543 return 0;
544 }
545
546 #ifdef CONFIG_ACPI
547
548 #define SERDEV_ACPI_MAX_SCAN_DEPTH 32
549
550 struct acpi_serdev_lookup {
551 acpi_handle device_handle;
552 acpi_handle controller_handle;
553 int n;
554 int index;
555 };
556
557 /**
558 * serdev_acpi_get_uart_resource - Gets UARTSerialBus resource if type matches
559 * @ares: ACPI resource
560 * @uart: Pointer to UARTSerialBus resource will be returned here
561 *
562 * Checks if the given ACPI resource is of type UARTSerialBus.
563 * In this case, returns a pointer to it to the caller.
564 *
565 * Return: True if resource type is of UARTSerialBus, otherwise false.
566 */
serdev_acpi_get_uart_resource(struct acpi_resource * ares,struct acpi_resource_uart_serialbus ** uart)567 bool serdev_acpi_get_uart_resource(struct acpi_resource *ares,
568 struct acpi_resource_uart_serialbus **uart)
569 {
570 struct acpi_resource_uart_serialbus *sb;
571
572 if (ares->type != ACPI_RESOURCE_TYPE_SERIAL_BUS)
573 return false;
574
575 sb = &ares->data.uart_serial_bus;
576 if (sb->type != ACPI_RESOURCE_SERIAL_TYPE_UART)
577 return false;
578
579 *uart = sb;
580 return true;
581 }
582 EXPORT_SYMBOL_GPL(serdev_acpi_get_uart_resource);
583
acpi_serdev_parse_resource(struct acpi_resource * ares,void * data)584 static int acpi_serdev_parse_resource(struct acpi_resource *ares, void *data)
585 {
586 struct acpi_serdev_lookup *lookup = data;
587 struct acpi_resource_uart_serialbus *sb;
588 acpi_status status;
589
590 if (!serdev_acpi_get_uart_resource(ares, &sb))
591 return 1;
592
593 if (lookup->index != -1 && lookup->n++ != lookup->index)
594 return 1;
595
596 status = acpi_get_handle(lookup->device_handle,
597 sb->resource_source.string_ptr,
598 &lookup->controller_handle);
599 if (ACPI_FAILURE(status))
600 return 1;
601
602 /*
603 * NOTE: Ideally, we would also want to retrieve other properties here,
604 * once setting them before opening the device is supported by serdev.
605 */
606
607 return 1;
608 }
609
acpi_serdev_do_lookup(struct acpi_device * adev,struct acpi_serdev_lookup * lookup)610 static int acpi_serdev_do_lookup(struct acpi_device *adev,
611 struct acpi_serdev_lookup *lookup)
612 {
613 struct list_head resource_list;
614 int ret;
615
616 lookup->device_handle = acpi_device_handle(adev);
617 lookup->controller_handle = NULL;
618 lookup->n = 0;
619
620 INIT_LIST_HEAD(&resource_list);
621 ret = acpi_dev_get_resources(adev, &resource_list,
622 acpi_serdev_parse_resource, lookup);
623 acpi_dev_free_resource_list(&resource_list);
624
625 if (ret < 0)
626 return -EINVAL;
627
628 return 0;
629 }
630
acpi_serdev_check_resources(struct serdev_controller * ctrl,struct acpi_device * adev)631 static int acpi_serdev_check_resources(struct serdev_controller *ctrl,
632 struct acpi_device *adev)
633 {
634 struct acpi_serdev_lookup lookup;
635 int ret;
636
637 if (acpi_bus_get_status(adev) || !adev->status.present)
638 return -EINVAL;
639
640 /* Look for UARTSerialBusV2 resource */
641 lookup.index = -1; // we only care for the last device
642
643 ret = acpi_serdev_do_lookup(adev, &lookup);
644 if (ret)
645 return ret;
646
647 /*
648 * Apple machines provide an empty resource template, so on those
649 * machines just look for immediate children with a "baud" property
650 * (from the _DSM method) instead.
651 */
652 if (!lookup.controller_handle && x86_apple_machine &&
653 !acpi_dev_get_property(adev, "baud", ACPI_TYPE_BUFFER, NULL))
654 acpi_get_parent(adev->handle, &lookup.controller_handle);
655
656 /* Make sure controller and ResourceSource handle match */
657 if (!device_match_acpi_handle(ctrl->host, lookup.controller_handle))
658 return -ENODEV;
659
660 return 0;
661 }
662
acpi_serdev_register_device(struct serdev_controller * ctrl,struct acpi_device * adev)663 static acpi_status acpi_serdev_register_device(struct serdev_controller *ctrl,
664 struct acpi_device *adev)
665 {
666 struct serdev_device *serdev;
667 int err;
668
669 serdev = serdev_device_alloc(ctrl);
670 if (!serdev) {
671 dev_err(&ctrl->dev, "failed to allocate serdev device for %s\n",
672 dev_name(&adev->dev));
673 return AE_NO_MEMORY;
674 }
675
676 ACPI_COMPANION_SET(&serdev->dev, adev);
677 acpi_device_set_enumerated(adev);
678
679 err = serdev_device_add(serdev);
680 if (err) {
681 dev_err(&serdev->dev,
682 "failure adding ACPI serdev device. status %pe\n",
683 ERR_PTR(err));
684 serdev_device_put(serdev);
685 }
686
687 return AE_OK;
688 }
689
690 static const struct acpi_device_id serdev_acpi_devices_blacklist[] = {
691 { "INT3511", 0 },
692 { "INT3512", 0 },
693 { },
694 };
695
acpi_serdev_add_device(acpi_handle handle,u32 level,void * data,void ** return_value)696 static acpi_status acpi_serdev_add_device(acpi_handle handle, u32 level,
697 void *data, void **return_value)
698 {
699 struct acpi_device *adev = acpi_fetch_acpi_dev(handle);
700 struct serdev_controller *ctrl = data;
701
702 if (!adev || acpi_device_enumerated(adev))
703 return AE_OK;
704
705 /* Skip if black listed */
706 if (!acpi_match_device_ids(adev, serdev_acpi_devices_blacklist))
707 return AE_OK;
708
709 if (acpi_serdev_check_resources(ctrl, adev))
710 return AE_OK;
711
712 return acpi_serdev_register_device(ctrl, adev);
713 }
714
715
acpi_serdev_register_devices(struct serdev_controller * ctrl)716 static int acpi_serdev_register_devices(struct serdev_controller *ctrl)
717 {
718 acpi_status status;
719 bool skip;
720 int ret;
721
722 if (!has_acpi_companion(ctrl->host))
723 return -ENODEV;
724
725 /*
726 * Skip registration on boards where the ACPI tables are known to
727 * contain buggy devices. Note serdev_controller_add() must still
728 * succeed in this case, so that the proper serdev devices can be
729 * added "manually" later.
730 */
731 ret = acpi_quirk_skip_serdev_enumeration(ctrl->host, &skip);
732 if (ret)
733 return ret;
734 if (skip)
735 return 0;
736
737 status = acpi_walk_namespace(ACPI_TYPE_DEVICE, ACPI_ROOT_OBJECT,
738 SERDEV_ACPI_MAX_SCAN_DEPTH,
739 acpi_serdev_add_device, NULL, ctrl, NULL);
740 if (ACPI_FAILURE(status))
741 dev_warn(&ctrl->dev, "failed to enumerate serdev slaves\n");
742
743 if (!ctrl->serdev)
744 return -ENODEV;
745
746 return 0;
747 }
748 #else
acpi_serdev_register_devices(struct serdev_controller * ctrl)749 static inline int acpi_serdev_register_devices(struct serdev_controller *ctrl)
750 {
751 return -ENODEV;
752 }
753 #endif /* CONFIG_ACPI */
754
755 /**
756 * serdev_controller_add() - Add an serdev controller
757 * @ctrl: controller to be registered.
758 *
759 * Register a controller previously allocated via serdev_controller_alloc() with
760 * the serdev core.
761 */
serdev_controller_add(struct serdev_controller * ctrl)762 int serdev_controller_add(struct serdev_controller *ctrl)
763 {
764 int ret_of, ret_acpi, ret;
765
766 /* Can't register until after driver model init */
767 if (WARN_ON(!is_registered))
768 return -EAGAIN;
769
770 ret = device_add(&ctrl->dev);
771 if (ret)
772 return ret;
773
774 pm_runtime_enable(&ctrl->dev);
775
776 ret_of = of_serdev_register_devices(ctrl);
777 ret_acpi = acpi_serdev_register_devices(ctrl);
778 if (ret_of && ret_acpi) {
779 dev_dbg(&ctrl->dev, "no devices registered: of:%pe acpi:%pe\n",
780 ERR_PTR(ret_of), ERR_PTR(ret_acpi));
781 ret = -ENODEV;
782 goto err_rpm_disable;
783 }
784
785 dev_dbg(&ctrl->dev, "serdev controller registered: dev:%p\n", &ctrl->dev);
786 return 0;
787
788 err_rpm_disable:
789 pm_runtime_disable(&ctrl->dev);
790 device_del(&ctrl->dev);
791 return ret;
792 };
793 EXPORT_SYMBOL_GPL(serdev_controller_add);
794
795 /* Remove a device associated with a controller */
serdev_remove_device(struct device * dev,void * data)796 static int serdev_remove_device(struct device *dev, void *data)
797 {
798 struct serdev_device *serdev = to_serdev_device(dev);
799 if (dev->type == &serdev_device_type)
800 serdev_device_remove(serdev);
801 return 0;
802 }
803
804 /**
805 * serdev_controller_remove(): remove an serdev controller
806 * @ctrl: controller to remove
807 *
808 * Remove a serdev controller. Caller is responsible for calling
809 * serdev_controller_put() to discard the allocated controller.
810 */
serdev_controller_remove(struct serdev_controller * ctrl)811 void serdev_controller_remove(struct serdev_controller *ctrl)
812 {
813 if (!ctrl)
814 return;
815
816 device_for_each_child(&ctrl->dev, NULL, serdev_remove_device);
817 pm_runtime_disable(&ctrl->dev);
818 device_del(&ctrl->dev);
819 }
820 EXPORT_SYMBOL_GPL(serdev_controller_remove);
821
822 /**
823 * __serdev_device_driver_register() - Register client driver with serdev core
824 * @sdrv: client driver to be associated with client-device.
825 * @owner: client driver owner to set.
826 *
827 * This API will register the client driver with the serdev framework.
828 * It is typically called from the driver's module-init function.
829 */
__serdev_device_driver_register(struct serdev_device_driver * sdrv,struct module * owner)830 int __serdev_device_driver_register(struct serdev_device_driver *sdrv, struct module *owner)
831 {
832 sdrv->driver.bus = &serdev_bus_type;
833 sdrv->driver.owner = owner;
834
835 /* force drivers to async probe so I/O is possible in probe */
836 sdrv->driver.probe_type = PROBE_PREFER_ASYNCHRONOUS;
837
838 return driver_register(&sdrv->driver);
839 }
840 EXPORT_SYMBOL_GPL(__serdev_device_driver_register);
841
serdev_exit(void)842 static void __exit serdev_exit(void)
843 {
844 bus_unregister(&serdev_bus_type);
845 ida_destroy(&ctrl_ida);
846 }
847 module_exit(serdev_exit);
848
serdev_init(void)849 static int __init serdev_init(void)
850 {
851 int ret;
852
853 ret = bus_register(&serdev_bus_type);
854 if (ret)
855 return ret;
856
857 is_registered = true;
858 return 0;
859 }
860 /* Must be before serial drivers register */
861 postcore_initcall(serdev_init);
862
863 MODULE_AUTHOR("Rob Herring <robh@kernel.org>");
864 MODULE_LICENSE("GPL v2");
865 MODULE_DESCRIPTION("Serial attached device bus");
866