xref: /openbmc/linux/drivers/usb/core/port.c (revision be2ed207)
1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * usb port device code
4  *
5  * Copyright (C) 2012 Intel Corp
6  *
7  * Author: Lan Tianyu <tianyu.lan@intel.com>
8  */
9 
10 #include <linux/slab.h>
11 #include <linux/pm_qos.h>
12 
13 #include "hub.h"
14 
15 static int usb_port_block_power_off;
16 
17 static const struct attribute_group *port_dev_group[];
18 
19 static ssize_t connect_type_show(struct device *dev,
20 				 struct device_attribute *attr, char *buf)
21 {
22 	struct usb_port *port_dev = to_usb_port(dev);
23 	char *result;
24 
25 	switch (port_dev->connect_type) {
26 	case USB_PORT_CONNECT_TYPE_HOT_PLUG:
27 		result = "hotplug";
28 		break;
29 	case USB_PORT_CONNECT_TYPE_HARD_WIRED:
30 		result = "hardwired";
31 		break;
32 	case USB_PORT_NOT_USED:
33 		result = "not used";
34 		break;
35 	default:
36 		result = "unknown";
37 		break;
38 	}
39 
40 	return sprintf(buf, "%s\n", result);
41 }
42 static DEVICE_ATTR_RO(connect_type);
43 
44 static ssize_t usb3_lpm_permit_show(struct device *dev,
45 			      struct device_attribute *attr, char *buf)
46 {
47 	struct usb_port *port_dev = to_usb_port(dev);
48 	const char *p;
49 
50 	if (port_dev->usb3_lpm_u1_permit) {
51 		if (port_dev->usb3_lpm_u2_permit)
52 			p = "u1_u2";
53 		else
54 			p = "u1";
55 	} else {
56 		if (port_dev->usb3_lpm_u2_permit)
57 			p = "u2";
58 		else
59 			p = "0";
60 	}
61 
62 	return sprintf(buf, "%s\n", p);
63 }
64 
65 static ssize_t usb3_lpm_permit_store(struct device *dev,
66 			       struct device_attribute *attr,
67 			       const char *buf, size_t count)
68 {
69 	struct usb_port *port_dev = to_usb_port(dev);
70 	struct usb_device *udev = port_dev->child;
71 	struct usb_hcd *hcd;
72 
73 	if (!strncmp(buf, "u1_u2", 5)) {
74 		port_dev->usb3_lpm_u1_permit = 1;
75 		port_dev->usb3_lpm_u2_permit = 1;
76 
77 	} else if (!strncmp(buf, "u1", 2)) {
78 		port_dev->usb3_lpm_u1_permit = 1;
79 		port_dev->usb3_lpm_u2_permit = 0;
80 
81 	} else if (!strncmp(buf, "u2", 2)) {
82 		port_dev->usb3_lpm_u1_permit = 0;
83 		port_dev->usb3_lpm_u2_permit = 1;
84 
85 	} else if (!strncmp(buf, "0", 1)) {
86 		port_dev->usb3_lpm_u1_permit = 0;
87 		port_dev->usb3_lpm_u2_permit = 0;
88 	} else
89 		return -EINVAL;
90 
91 	/* If device is connected to the port, disable or enable lpm
92 	 * to make new u1 u2 setting take effect immediately.
93 	 */
94 	if (udev) {
95 		hcd = bus_to_hcd(udev->bus);
96 		if (!hcd)
97 			return -EINVAL;
98 		usb_lock_device(udev);
99 		mutex_lock(hcd->bandwidth_mutex);
100 		if (!usb_disable_lpm(udev))
101 			usb_enable_lpm(udev);
102 		mutex_unlock(hcd->bandwidth_mutex);
103 		usb_unlock_device(udev);
104 	}
105 
106 	return count;
107 }
108 static DEVICE_ATTR_RW(usb3_lpm_permit);
109 
110 static struct attribute *port_dev_attrs[] = {
111 	&dev_attr_connect_type.attr,
112 	NULL,
113 };
114 
115 static struct attribute_group port_dev_attr_grp = {
116 	.attrs = port_dev_attrs,
117 };
118 
119 static const struct attribute_group *port_dev_group[] = {
120 	&port_dev_attr_grp,
121 	NULL,
122 };
123 
124 static struct attribute *port_dev_usb3_attrs[] = {
125 	&dev_attr_usb3_lpm_permit.attr,
126 	NULL,
127 };
128 
129 static struct attribute_group port_dev_usb3_attr_grp = {
130 	.attrs = port_dev_usb3_attrs,
131 };
132 
133 static const struct attribute_group *port_dev_usb3_group[] = {
134 	&port_dev_attr_grp,
135 	&port_dev_usb3_attr_grp,
136 	NULL,
137 };
138 
139 static void usb_port_device_release(struct device *dev)
140 {
141 	struct usb_port *port_dev = to_usb_port(dev);
142 
143 	kfree(port_dev->req);
144 	kfree(port_dev);
145 }
146 
147 #ifdef CONFIG_PM
148 static int usb_port_runtime_resume(struct device *dev)
149 {
150 	struct usb_port *port_dev = to_usb_port(dev);
151 	struct usb_device *hdev = to_usb_device(dev->parent->parent);
152 	struct usb_interface *intf = to_usb_interface(dev->parent);
153 	struct usb_hub *hub = usb_hub_to_struct_hub(hdev);
154 	struct usb_device *udev = port_dev->child;
155 	struct usb_port *peer = port_dev->peer;
156 	int port1 = port_dev->portnum;
157 	int retval;
158 
159 	if (!hub)
160 		return -EINVAL;
161 	if (hub->in_reset) {
162 		set_bit(port1, hub->power_bits);
163 		return 0;
164 	}
165 
166 	/*
167 	 * Power on our usb3 peer before this usb2 port to prevent a usb3
168 	 * device from degrading to its usb2 connection
169 	 */
170 	if (!port_dev->is_superspeed && peer)
171 		pm_runtime_get_sync(&peer->dev);
172 
173 	usb_autopm_get_interface(intf);
174 	retval = usb_hub_set_port_power(hdev, hub, port1, true);
175 	msleep(hub_power_on_good_delay(hub));
176 	if (udev && !retval) {
177 		/*
178 		 * Our preference is to simply wait for the port to reconnect,
179 		 * as that is the lowest latency method to restart the port.
180 		 * However, there are cases where toggling port power results in
181 		 * the host port and the device port getting out of sync causing
182 		 * a link training live lock.  Upon timeout, flag the port as
183 		 * needing warm reset recovery (to be performed later by
184 		 * usb_port_resume() as requested via usb_wakeup_notification())
185 		 */
186 		if (hub_port_debounce_be_connected(hub, port1) < 0) {
187 			dev_dbg(&port_dev->dev, "reconnect timeout\n");
188 			if (hub_is_superspeed(hdev))
189 				set_bit(port1, hub->warm_reset_bits);
190 		}
191 
192 		/* Force the child awake to revalidate after the power loss. */
193 		if (!test_and_set_bit(port1, hub->child_usage_bits)) {
194 			pm_runtime_get_noresume(&port_dev->dev);
195 			pm_request_resume(&udev->dev);
196 		}
197 	}
198 
199 	usb_autopm_put_interface(intf);
200 
201 	return retval;
202 }
203 
204 static int usb_port_runtime_suspend(struct device *dev)
205 {
206 	struct usb_port *port_dev = to_usb_port(dev);
207 	struct usb_device *hdev = to_usb_device(dev->parent->parent);
208 	struct usb_interface *intf = to_usb_interface(dev->parent);
209 	struct usb_hub *hub = usb_hub_to_struct_hub(hdev);
210 	struct usb_port *peer = port_dev->peer;
211 	int port1 = port_dev->portnum;
212 	int retval;
213 
214 	if (!hub)
215 		return -EINVAL;
216 	if (hub->in_reset)
217 		return -EBUSY;
218 
219 	if (dev_pm_qos_flags(&port_dev->dev, PM_QOS_FLAG_NO_POWER_OFF)
220 			== PM_QOS_FLAGS_ALL)
221 		return -EAGAIN;
222 
223 	if (usb_port_block_power_off)
224 		return -EBUSY;
225 
226 	usb_autopm_get_interface(intf);
227 	retval = usb_hub_set_port_power(hdev, hub, port1, false);
228 	usb_clear_port_feature(hdev, port1, USB_PORT_FEAT_C_CONNECTION);
229 	if (!port_dev->is_superspeed)
230 		usb_clear_port_feature(hdev, port1, USB_PORT_FEAT_C_ENABLE);
231 	usb_autopm_put_interface(intf);
232 
233 	/*
234 	 * Our peer usb3 port may now be able to suspend, so
235 	 * asynchronously queue a suspend request to observe that this
236 	 * usb2 port is now off.
237 	 */
238 	if (!port_dev->is_superspeed && peer)
239 		pm_runtime_put(&peer->dev);
240 
241 	return retval;
242 }
243 #endif
244 
245 static const struct dev_pm_ops usb_port_pm_ops = {
246 #ifdef CONFIG_PM
247 	.runtime_suspend =	usb_port_runtime_suspend,
248 	.runtime_resume =	usb_port_runtime_resume,
249 #endif
250 };
251 
252 struct device_type usb_port_device_type = {
253 	.name =		"usb_port",
254 	.release =	usb_port_device_release,
255 	.pm =		&usb_port_pm_ops,
256 };
257 
258 static struct device_driver usb_port_driver = {
259 	.name = "usb",
260 	.owner = THIS_MODULE,
261 };
262 
263 static int link_peers(struct usb_port *left, struct usb_port *right)
264 {
265 	struct usb_port *ss_port, *hs_port;
266 	int rc;
267 
268 	if (left->peer == right && right->peer == left)
269 		return 0;
270 
271 	if (left->peer || right->peer) {
272 		struct usb_port *lpeer = left->peer;
273 		struct usb_port *rpeer = right->peer;
274 		char *method;
275 
276 		if (left->location && left->location == right->location)
277 			method = "location";
278 		else
279 			method = "default";
280 
281 		pr_debug("usb: failed to peer %s and %s by %s (%s:%s) (%s:%s)\n",
282 			dev_name(&left->dev), dev_name(&right->dev), method,
283 			dev_name(&left->dev),
284 			lpeer ? dev_name(&lpeer->dev) : "none",
285 			dev_name(&right->dev),
286 			rpeer ? dev_name(&rpeer->dev) : "none");
287 		return -EBUSY;
288 	}
289 
290 	rc = sysfs_create_link(&left->dev.kobj, &right->dev.kobj, "peer");
291 	if (rc)
292 		return rc;
293 	rc = sysfs_create_link(&right->dev.kobj, &left->dev.kobj, "peer");
294 	if (rc) {
295 		sysfs_remove_link(&left->dev.kobj, "peer");
296 		return rc;
297 	}
298 
299 	/*
300 	 * We need to wake the HiSpeed port to make sure we don't race
301 	 * setting ->peer with usb_port_runtime_suspend().  Otherwise we
302 	 * may miss a suspend event for the SuperSpeed port.
303 	 */
304 	if (left->is_superspeed) {
305 		ss_port = left;
306 		WARN_ON(right->is_superspeed);
307 		hs_port = right;
308 	} else {
309 		ss_port = right;
310 		WARN_ON(!right->is_superspeed);
311 		hs_port = left;
312 	}
313 	pm_runtime_get_sync(&hs_port->dev);
314 
315 	left->peer = right;
316 	right->peer = left;
317 
318 	/*
319 	 * The SuperSpeed reference is dropped when the HiSpeed port in
320 	 * this relationship suspends, i.e. when it is safe to allow a
321 	 * SuperSpeed connection to drop since there is no risk of a
322 	 * device degrading to its powered-off HiSpeed connection.
323 	 *
324 	 * Also, drop the HiSpeed ref taken above.
325 	 */
326 	pm_runtime_get_sync(&ss_port->dev);
327 	pm_runtime_put(&hs_port->dev);
328 
329 	return 0;
330 }
331 
332 static void link_peers_report(struct usb_port *left, struct usb_port *right)
333 {
334 	int rc;
335 
336 	rc = link_peers(left, right);
337 	if (rc == 0) {
338 		dev_dbg(&left->dev, "peered to %s\n", dev_name(&right->dev));
339 	} else {
340 		dev_dbg(&left->dev, "failed to peer to %s (%d)\n",
341 				dev_name(&right->dev), rc);
342 		pr_warn_once("usb: port power management may be unreliable\n");
343 		usb_port_block_power_off = 1;
344 	}
345 }
346 
347 static void unlink_peers(struct usb_port *left, struct usb_port *right)
348 {
349 	struct usb_port *ss_port, *hs_port;
350 
351 	WARN(right->peer != left || left->peer != right,
352 			"%s and %s are not peers?\n",
353 			dev_name(&left->dev), dev_name(&right->dev));
354 
355 	/*
356 	 * We wake the HiSpeed port to make sure we don't race its
357 	 * usb_port_runtime_resume() event which takes a SuperSpeed ref
358 	 * when ->peer is !NULL.
359 	 */
360 	if (left->is_superspeed) {
361 		ss_port = left;
362 		hs_port = right;
363 	} else {
364 		ss_port = right;
365 		hs_port = left;
366 	}
367 
368 	pm_runtime_get_sync(&hs_port->dev);
369 
370 	sysfs_remove_link(&left->dev.kobj, "peer");
371 	right->peer = NULL;
372 	sysfs_remove_link(&right->dev.kobj, "peer");
373 	left->peer = NULL;
374 
375 	/* Drop the SuperSpeed ref held on behalf of the active HiSpeed port */
376 	pm_runtime_put(&ss_port->dev);
377 
378 	/* Drop the ref taken above */
379 	pm_runtime_put(&hs_port->dev);
380 }
381 
382 /*
383  * For each usb hub device in the system check to see if it is in the
384  * peer domain of the given port_dev, and if it is check to see if it
385  * has a port that matches the given port by location
386  */
387 static int match_location(struct usb_device *peer_hdev, void *p)
388 {
389 	int port1;
390 	struct usb_hcd *hcd, *peer_hcd;
391 	struct usb_port *port_dev = p, *peer;
392 	struct usb_hub *peer_hub = usb_hub_to_struct_hub(peer_hdev);
393 	struct usb_device *hdev = to_usb_device(port_dev->dev.parent->parent);
394 
395 	if (!peer_hub)
396 		return 0;
397 
398 	hcd = bus_to_hcd(hdev->bus);
399 	peer_hcd = bus_to_hcd(peer_hdev->bus);
400 	/* peer_hcd is provisional until we verify it against the known peer */
401 	if (peer_hcd != hcd->shared_hcd)
402 		return 0;
403 
404 	for (port1 = 1; port1 <= peer_hdev->maxchild; port1++) {
405 		peer = peer_hub->ports[port1 - 1];
406 		if (peer && peer->location == port_dev->location) {
407 			link_peers_report(port_dev, peer);
408 			return 1; /* done */
409 		}
410 	}
411 
412 	return 0;
413 }
414 
415 /*
416  * Find the peer port either via explicit platform firmware "location"
417  * data, the peer hcd for root hubs, or the upstream peer relationship
418  * for all other hubs.
419  */
420 static void find_and_link_peer(struct usb_hub *hub, int port1)
421 {
422 	struct usb_port *port_dev = hub->ports[port1 - 1], *peer;
423 	struct usb_device *hdev = hub->hdev;
424 	struct usb_device *peer_hdev;
425 	struct usb_hub *peer_hub;
426 
427 	/*
428 	 * If location data is available then we can only peer this port
429 	 * by a location match, not the default peer (lest we create a
430 	 * situation where we need to go back and undo a default peering
431 	 * when the port is later peered by location data)
432 	 */
433 	if (port_dev->location) {
434 		/* we link the peer in match_location() if found */
435 		usb_for_each_dev(port_dev, match_location);
436 		return;
437 	} else if (!hdev->parent) {
438 		struct usb_hcd *hcd = bus_to_hcd(hdev->bus);
439 		struct usb_hcd *peer_hcd = hcd->shared_hcd;
440 
441 		if (!peer_hcd)
442 			return;
443 
444 		peer_hdev = peer_hcd->self.root_hub;
445 	} else {
446 		struct usb_port *upstream;
447 		struct usb_device *parent = hdev->parent;
448 		struct usb_hub *parent_hub = usb_hub_to_struct_hub(parent);
449 
450 		if (!parent_hub)
451 			return;
452 
453 		upstream = parent_hub->ports[hdev->portnum - 1];
454 		if (!upstream || !upstream->peer)
455 			return;
456 
457 		peer_hdev = upstream->peer->child;
458 	}
459 
460 	peer_hub = usb_hub_to_struct_hub(peer_hdev);
461 	if (!peer_hub || port1 > peer_hdev->maxchild)
462 		return;
463 
464 	/*
465 	 * we found a valid default peer, last check is to make sure it
466 	 * does not have location data
467 	 */
468 	peer = peer_hub->ports[port1 - 1];
469 	if (peer && peer->location == 0)
470 		link_peers_report(port_dev, peer);
471 }
472 
473 int usb_hub_create_port_device(struct usb_hub *hub, int port1)
474 {
475 	struct usb_port *port_dev;
476 	struct usb_device *hdev = hub->hdev;
477 	int retval;
478 
479 	port_dev = kzalloc(sizeof(*port_dev), GFP_KERNEL);
480 	if (!port_dev)
481 		return -ENOMEM;
482 
483 	port_dev->req = kzalloc(sizeof(*(port_dev->req)), GFP_KERNEL);
484 	if (!port_dev->req) {
485 		kfree(port_dev);
486 		return -ENOMEM;
487 	}
488 
489 	hub->ports[port1 - 1] = port_dev;
490 	port_dev->portnum = port1;
491 	set_bit(port1, hub->power_bits);
492 	port_dev->dev.parent = hub->intfdev;
493 	if (hub_is_superspeed(hdev)) {
494 		port_dev->usb3_lpm_u1_permit = 1;
495 		port_dev->usb3_lpm_u2_permit = 1;
496 		port_dev->dev.groups = port_dev_usb3_group;
497 	} else
498 		port_dev->dev.groups = port_dev_group;
499 	port_dev->dev.type = &usb_port_device_type;
500 	port_dev->dev.driver = &usb_port_driver;
501 	if (hub_is_superspeed(hub->hdev))
502 		port_dev->is_superspeed = 1;
503 	dev_set_name(&port_dev->dev, "%s-port%d", dev_name(&hub->hdev->dev),
504 			port1);
505 	mutex_init(&port_dev->status_lock);
506 	retval = device_register(&port_dev->dev);
507 	if (retval) {
508 		put_device(&port_dev->dev);
509 		return retval;
510 	}
511 
512 	/* Set default policy of port-poweroff disabled. */
513 	retval = dev_pm_qos_add_request(&port_dev->dev, port_dev->req,
514 			DEV_PM_QOS_FLAGS, PM_QOS_FLAG_NO_POWER_OFF);
515 	if (retval < 0) {
516 		device_unregister(&port_dev->dev);
517 		return retval;
518 	}
519 
520 	find_and_link_peer(hub, port1);
521 
522 	/*
523 	 * Enable runtime pm and hold a refernce that hub_configure()
524 	 * will drop once the PM_QOS_NO_POWER_OFF flag state has been set
525 	 * and the hub has been fully registered (hdev->maxchild set).
526 	 */
527 	pm_runtime_set_active(&port_dev->dev);
528 	pm_runtime_get_noresume(&port_dev->dev);
529 	pm_runtime_enable(&port_dev->dev);
530 	device_enable_async_suspend(&port_dev->dev);
531 
532 	/*
533 	 * Keep hidden the ability to enable port-poweroff if the hub
534 	 * does not support power switching.
535 	 */
536 	if (!hub_is_port_power_switchable(hub))
537 		return 0;
538 
539 	/* Attempt to let userspace take over the policy. */
540 	retval = dev_pm_qos_expose_flags(&port_dev->dev,
541 			PM_QOS_FLAG_NO_POWER_OFF);
542 	if (retval < 0) {
543 		dev_warn(&port_dev->dev, "failed to expose pm_qos_no_poweroff\n");
544 		return 0;
545 	}
546 
547 	/* Userspace owns the policy, drop the kernel 'no_poweroff' request. */
548 	retval = dev_pm_qos_remove_request(port_dev->req);
549 	if (retval >= 0) {
550 		kfree(port_dev->req);
551 		port_dev->req = NULL;
552 	}
553 	return 0;
554 }
555 
556 void usb_hub_remove_port_device(struct usb_hub *hub, int port1)
557 {
558 	struct usb_port *port_dev = hub->ports[port1 - 1];
559 	struct usb_port *peer;
560 
561 	peer = port_dev->peer;
562 	if (peer)
563 		unlink_peers(port_dev, peer);
564 	device_unregister(&port_dev->dev);
565 }
566