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