1 /*-
2 * SPDX-License-Identifier: BSD-2-Clause
3 *
4 * Copyright (c) 2008 Hans Petter Selasky. All rights reserved.
5 *
6 * Redistribution and use in source and binary forms, with or without
7 * modification, are permitted provided that the following conditions
8 * are met:
9 * 1. Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * 2. Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 *
15 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
16 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
17 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
18 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
19 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
20 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
21 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
22 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
23 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
24 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
25 * SUCH DAMAGE.
26 */
27
28 #ifdef USB_GLOBAL_INCLUDE_FILE
29 #include USB_GLOBAL_INCLUDE_FILE
30 #else
31 #include "opt_ddb.h"
32
33 #include <sys/stdint.h>
34 #include <sys/stddef.h>
35 #include <sys/param.h>
36 #include <sys/queue.h>
37 #include <sys/types.h>
38 #include <sys/systm.h>
39 #include <sys/kernel.h>
40 #include <sys/bus.h>
41 #include <sys/module.h>
42 #include <sys/lock.h>
43 #include <sys/mutex.h>
44 #include <sys/condvar.h>
45 #include <sys/sysctl.h>
46 #include <sys/sx.h>
47 #include <sys/unistd.h>
48 #include <sys/callout.h>
49 #include <sys/malloc.h>
50 #include <sys/priv.h>
51
52 #include <dev/usb/usb.h>
53 #include <dev/usb/usbdi.h>
54
55 #define USB_DEBUG_VAR usb_ctrl_debug
56
57 #include <dev/usb/usb_core.h>
58 #include <dev/usb/usb_debug.h>
59 #include <dev/usb/usb_process.h>
60 #include <dev/usb/usb_busdma.h>
61 #include <dev/usb/usb_dynamic.h>
62 #include <dev/usb/usb_device.h>
63 #include <dev/usb/usb_dev.h>
64 #include <dev/usb/usb_hub.h>
65
66 #include <dev/usb/usb_controller.h>
67 #include <dev/usb/usb_bus.h>
68 #include <dev/usb/usb_pf.h>
69 #include "usb_if.h"
70 #endif /* USB_GLOBAL_INCLUDE_FILE */
71
72 /* function prototypes */
73
74 static device_probe_t usb_probe;
75 static device_attach_t usb_attach;
76 static device_detach_t usb_detach;
77 static device_suspend_t usb_suspend;
78 static device_resume_t usb_resume;
79 static device_shutdown_t usb_shutdown;
80
81 static void usb_attach_sub(device_t, struct usb_bus *);
82
83 /* static variables */
84
85 #ifdef USB_DEBUG
86 static int usb_ctrl_debug = 0;
87
88 static SYSCTL_NODE(_hw_usb, OID_AUTO, ctrl, CTLFLAG_RW | CTLFLAG_MPSAFE, 0,
89 "USB controller");
90 SYSCTL_INT(_hw_usb_ctrl, OID_AUTO, debug, CTLFLAG_RWTUN, &usb_ctrl_debug, 0,
91 "Debug level");
92 #endif
93
94 #if USB_HAVE_ROOT_MOUNT_HOLD
95 static int usb_no_boot_wait = 0;
96 SYSCTL_INT(_hw_usb, OID_AUTO, no_boot_wait, CTLFLAG_RDTUN, &usb_no_boot_wait, 0,
97 "No USB device enumerate waiting at boot.");
98 #endif
99
100 static int usb_no_suspend_wait = 0;
101 SYSCTL_INT(_hw_usb, OID_AUTO, no_suspend_wait, CTLFLAG_RWTUN,
102 &usb_no_suspend_wait, 0, "No USB device waiting at system suspend.");
103
104 static int usb_no_shutdown_wait = 0;
105 SYSCTL_INT(_hw_usb, OID_AUTO, no_shutdown_wait, CTLFLAG_RWTUN,
106 &usb_no_shutdown_wait, 0, "No USB device waiting at system shutdown.");
107
108 static device_method_t usb_methods[] = {
109 DEVMETHOD(device_probe, usb_probe),
110 DEVMETHOD(device_attach, usb_attach),
111 DEVMETHOD(device_detach, usb_detach),
112 DEVMETHOD(device_suspend, usb_suspend),
113 DEVMETHOD(device_resume, usb_resume),
114 DEVMETHOD(device_shutdown, usb_shutdown),
115
116 DEVMETHOD_END
117 };
118
119 static driver_t usb_driver = {
120 .name = "usbus",
121 .methods = usb_methods,
122 .size = 0,
123 };
124
125 /* Host Only Drivers */
126 DRIVER_MODULE(usbus, ohci, usb_driver, 0, 0);
127 DRIVER_MODULE(usbus, uhci, usb_driver, 0, 0);
128 DRIVER_MODULE(usbus, ehci, usb_driver, 0, 0);
129 DRIVER_MODULE(usbus, xhci, usb_driver, 0, 0);
130
131 /* Device Only Drivers */
132 DRIVER_MODULE(usbus, musbotg, usb_driver, 0, 0);
133 DRIVER_MODULE(usbus, uss820dci, usb_driver, 0, 0);
134 DRIVER_MODULE(usbus, octusb, usb_driver, 0, 0);
135
136 /* Dual Mode Drivers */
137 DRIVER_MODULE(usbus, dwcotg, usb_driver, 0, 0);
138 DRIVER_MODULE(usbus, bce_vhci, usb_driver, 0, 0);
139
140 /*------------------------------------------------------------------------*
141 * usb_probe
142 *
143 * This function is called from "{ehci,ohci,uhci}_pci_attach()".
144 *------------------------------------------------------------------------*/
145 static int
usb_probe(device_t dev)146 usb_probe(device_t dev)
147 {
148 DPRINTF("\n");
149 return (0);
150 }
151
152 #if USB_HAVE_ROOT_MOUNT_HOLD
153 static void
usb_root_mount_rel(struct usb_bus * bus)154 usb_root_mount_rel(struct usb_bus *bus)
155 {
156 if (bus->bus_roothold != NULL) {
157 DPRINTF("Releasing root mount hold %p\n", bus->bus_roothold);
158 root_mount_rel(bus->bus_roothold);
159 bus->bus_roothold = NULL;
160 }
161 }
162 #endif
163
164 /*------------------------------------------------------------------------*
165 * usb_attach
166 *------------------------------------------------------------------------*/
167 static int
usb_attach(device_t dev)168 usb_attach(device_t dev)
169 {
170 struct usb_bus *bus = device_get_ivars(dev);
171
172 DPRINTF("\n");
173
174 if (bus == NULL) {
175 device_printf(dev, "USB device has no ivars\n");
176 return (ENXIO);
177 }
178
179 #if USB_HAVE_ROOT_MOUNT_HOLD
180 if (usb_no_boot_wait == 0) {
181 /* delay vfs_mountroot until the bus is explored */
182 bus->bus_roothold = root_mount_hold(device_get_nameunit(dev));
183 }
184 #endif
185 usb_attach_sub(dev, bus);
186
187 return (0); /* return success */
188 }
189
190 /*------------------------------------------------------------------------*
191 * usb_detach
192 *------------------------------------------------------------------------*/
193 static int
usb_detach(device_t dev)194 usb_detach(device_t dev)
195 {
196 struct usb_bus *bus = device_get_softc(dev);
197
198 DPRINTF("\n");
199
200 if (bus == NULL) {
201 /* was never setup properly */
202 return (0);
203 }
204 /* Stop power watchdog */
205 usb_callout_drain(&bus->power_wdog);
206
207 #if USB_HAVE_ROOT_MOUNT_HOLD
208 /* Let the USB explore process detach all devices. */
209 usb_root_mount_rel(bus);
210 #endif
211
212 USB_BUS_LOCK(bus);
213
214 /* Queue detach job */
215 usb_proc_msignal(USB_BUS_EXPLORE_PROC(bus),
216 &bus->detach_msg[0], &bus->detach_msg[1]);
217
218 /* Wait for detach to complete */
219 usb_proc_mwait(USB_BUS_EXPLORE_PROC(bus),
220 &bus->detach_msg[0], &bus->detach_msg[1]);
221
222 #if USB_HAVE_UGEN
223 /* Wait for cleanup to complete */
224 usb_proc_mwait(USB_BUS_EXPLORE_PROC(bus),
225 &bus->cleanup_msg[0], &bus->cleanup_msg[1]);
226 #endif
227 USB_BUS_UNLOCK(bus);
228
229 #if USB_HAVE_PER_BUS_PROCESS
230 /* Get rid of USB callback processes */
231
232 usb_proc_free(USB_BUS_GIANT_PROC(bus));
233 usb_proc_free(USB_BUS_NON_GIANT_ISOC_PROC(bus));
234 usb_proc_free(USB_BUS_NON_GIANT_BULK_PROC(bus));
235
236 /* Get rid of USB explore process */
237
238 usb_proc_free(USB_BUS_EXPLORE_PROC(bus));
239
240 /* Get rid of control transfer process */
241
242 usb_proc_free(USB_BUS_CONTROL_XFER_PROC(bus));
243 #endif
244
245 #if USB_HAVE_PF
246 usbpf_detach(bus);
247 #endif
248 return (0);
249 }
250
251 /*------------------------------------------------------------------------*
252 * usb_suspend
253 *------------------------------------------------------------------------*/
254 static int
usb_suspend(device_t dev)255 usb_suspend(device_t dev)
256 {
257 struct usb_bus *bus = device_get_softc(dev);
258
259 DPRINTF("\n");
260
261 if (bus == NULL) {
262 /* was never setup properly */
263 return (0);
264 }
265
266 USB_BUS_LOCK(bus);
267 usb_proc_msignal(USB_BUS_EXPLORE_PROC(bus),
268 &bus->suspend_msg[0], &bus->suspend_msg[1]);
269 if (usb_no_suspend_wait == 0) {
270 /* wait for suspend callback to be executed */
271 usb_proc_mwait(USB_BUS_EXPLORE_PROC(bus),
272 &bus->suspend_msg[0], &bus->suspend_msg[1]);
273 }
274 USB_BUS_UNLOCK(bus);
275
276 return (0);
277 }
278
279 /*------------------------------------------------------------------------*
280 * usb_resume
281 *------------------------------------------------------------------------*/
282 static int
usb_resume(device_t dev)283 usb_resume(device_t dev)
284 {
285 struct usb_bus *bus = device_get_softc(dev);
286
287 DPRINTF("\n");
288
289 if (bus == NULL) {
290 /* was never setup properly */
291 return (0);
292 }
293
294 USB_BUS_LOCK(bus);
295 usb_proc_msignal(USB_BUS_EXPLORE_PROC(bus),
296 &bus->resume_msg[0], &bus->resume_msg[1]);
297 USB_BUS_UNLOCK(bus);
298
299 return (0);
300 }
301
302 /*------------------------------------------------------------------------*
303 * usb_bus_reset_async_locked
304 *------------------------------------------------------------------------*/
305 void
usb_bus_reset_async_locked(struct usb_bus * bus)306 usb_bus_reset_async_locked(struct usb_bus *bus)
307 {
308 USB_BUS_LOCK_ASSERT(bus, MA_OWNED);
309
310 DPRINTF("\n");
311
312 if (bus->reset_msg[0].hdr.pm_qentry.tqe_prev != NULL ||
313 bus->reset_msg[1].hdr.pm_qentry.tqe_prev != NULL) {
314 DPRINTF("Reset already pending\n");
315 return;
316 }
317
318 device_printf(bus->parent, "Resetting controller\n");
319
320 usb_proc_msignal(USB_BUS_EXPLORE_PROC(bus),
321 &bus->reset_msg[0], &bus->reset_msg[1]);
322 }
323
324 /*------------------------------------------------------------------------*
325 * usb_shutdown
326 *------------------------------------------------------------------------*/
327 static int
usb_shutdown(device_t dev)328 usb_shutdown(device_t dev)
329 {
330 struct usb_bus *bus = device_get_softc(dev);
331
332 DPRINTF("\n");
333
334 if (bus == NULL) {
335 /* was never setup properly */
336 return (0);
337 }
338
339 DPRINTF("%s: Controller shutdown\n", device_get_nameunit(bus->bdev));
340
341 USB_BUS_LOCK(bus);
342 usb_proc_msignal(USB_BUS_EXPLORE_PROC(bus),
343 &bus->shutdown_msg[0], &bus->shutdown_msg[1]);
344 if (usb_no_shutdown_wait == 0) {
345 /* wait for shutdown callback to be executed */
346 usb_proc_mwait(USB_BUS_EXPLORE_PROC(bus),
347 &bus->shutdown_msg[0], &bus->shutdown_msg[1]);
348 }
349 USB_BUS_UNLOCK(bus);
350
351 DPRINTF("%s: Controller shutdown complete\n",
352 device_get_nameunit(bus->bdev));
353
354 return (0);
355 }
356
357 /*------------------------------------------------------------------------*
358 * usb_bus_explore
359 *
360 * This function is used to explore the device tree from the root.
361 *------------------------------------------------------------------------*/
362 static void
usb_bus_explore(struct usb_proc_msg * pm)363 usb_bus_explore(struct usb_proc_msg *pm)
364 {
365 struct usb_bus *bus;
366 struct usb_device *udev;
367
368 bus = ((struct usb_bus_msg *)pm)->bus;
369 udev = bus->devices[USB_ROOT_HUB_ADDR];
370
371 if (bus->no_explore != 0)
372 return;
373
374 if (udev != NULL) {
375 USB_BUS_UNLOCK(bus);
376 uhub_explore_handle_re_enumerate(udev);
377 USB_BUS_LOCK(bus);
378 }
379
380 if (udev != NULL && udev->hub != NULL) {
381 if (bus->do_probe) {
382 bus->do_probe = 0;
383 bus->driver_added_refcount++;
384 }
385 if (bus->driver_added_refcount == 0) {
386 /* avoid zero, hence that is memory default */
387 bus->driver_added_refcount = 1;
388 }
389
390 #ifdef DDB
391 /*
392 * The following three lines of code are only here to
393 * recover from DDB:
394 */
395 usb_proc_rewakeup(USB_BUS_CONTROL_XFER_PROC(bus));
396 usb_proc_rewakeup(USB_BUS_GIANT_PROC(bus));
397 usb_proc_rewakeup(USB_BUS_NON_GIANT_ISOC_PROC(bus));
398 usb_proc_rewakeup(USB_BUS_NON_GIANT_BULK_PROC(bus));
399 #endif
400
401 USB_BUS_UNLOCK(bus);
402
403 #if USB_HAVE_POWERD
404 /*
405 * First update the USB power state!
406 */
407 usb_bus_powerd(bus);
408 #endif
409 /* Explore the Root USB HUB. */
410 (udev->hub->explore) (udev);
411 USB_BUS_LOCK(bus);
412 }
413 #if USB_HAVE_ROOT_MOUNT_HOLD
414 usb_root_mount_rel(bus);
415 #endif
416
417 /* Nice the enumeration a bit, to avoid looping too fast. */
418 usb_pause_mtx(&bus->bus_mtx, USB_MS_TO_TICKS(usb_enum_nice_time));
419 }
420
421 /*------------------------------------------------------------------------*
422 * usb_bus_detach
423 *
424 * This function is used to detach the device tree from the root.
425 *------------------------------------------------------------------------*/
426 static void
usb_bus_detach(struct usb_proc_msg * pm)427 usb_bus_detach(struct usb_proc_msg *pm)
428 {
429 struct usb_bus *bus;
430 struct usb_device *udev;
431 device_t dev;
432
433 bus = ((struct usb_bus_msg *)pm)->bus;
434 udev = bus->devices[USB_ROOT_HUB_ADDR];
435 dev = bus->bdev;
436 /* clear the softc */
437 device_set_softc(dev, NULL);
438 USB_BUS_UNLOCK(bus);
439
440 /* detach children first */
441 bus_topo_lock();
442 bus_detach_children(dev);
443 bus_topo_unlock();
444
445 /*
446 * Free USB device and all subdevices, if any.
447 */
448 usb_free_device(udev, 0);
449
450 USB_BUS_LOCK(bus);
451 /* clear bdev variable last */
452 bus->bdev = NULL;
453 }
454
455 /*------------------------------------------------------------------------*
456 * usb_bus_suspend
457 *
458 * This function is used to suspend the USB controller.
459 *------------------------------------------------------------------------*/
460 static void
usb_bus_suspend(struct usb_proc_msg * pm)461 usb_bus_suspend(struct usb_proc_msg *pm)
462 {
463 struct usb_bus *bus;
464 struct usb_device *udev;
465 usb_error_t err;
466 uint8_t do_unlock;
467
468 DPRINTF("\n");
469
470 bus = ((struct usb_bus_msg *)pm)->bus;
471 udev = bus->devices[USB_ROOT_HUB_ADDR];
472
473 if (udev == NULL || bus->bdev == NULL)
474 return;
475
476 USB_BUS_UNLOCK(bus);
477
478 /*
479 * We use the shutdown event here because the suspend and
480 * resume events are reserved for the USB port suspend and
481 * resume. The USB system suspend is implemented like full
482 * shutdown and all connected USB devices will be disconnected
483 * subsequently. At resume all USB devices will be
484 * re-connected again.
485 */
486
487 bus_generic_shutdown(bus->bdev);
488
489 do_unlock = usbd_enum_lock(udev);
490
491 err = usbd_set_config_index(udev, USB_UNCONFIG_INDEX);
492 if (err)
493 device_printf(bus->bdev, "Could not unconfigure root HUB\n");
494
495 USB_BUS_LOCK(bus);
496 bus->hw_power_state = 0;
497 bus->no_explore = 1;
498 USB_BUS_UNLOCK(bus);
499
500 if (bus->methods->set_hw_power != NULL)
501 (bus->methods->set_hw_power) (bus);
502
503 if (bus->methods->set_hw_power_sleep != NULL)
504 (bus->methods->set_hw_power_sleep) (bus, USB_HW_POWER_SUSPEND);
505
506 if (do_unlock)
507 usbd_enum_unlock(udev);
508
509 USB_BUS_LOCK(bus);
510 }
511
512 /*------------------------------------------------------------------------*
513 * usb_bus_resume
514 *
515 * This function is used to resume the USB controller.
516 *------------------------------------------------------------------------*/
517 static void
usb_bus_resume(struct usb_proc_msg * pm)518 usb_bus_resume(struct usb_proc_msg *pm)
519 {
520 struct usb_bus *bus;
521 struct usb_device *udev;
522 usb_error_t err;
523 uint8_t do_unlock;
524
525 DPRINTF("\n");
526
527 bus = ((struct usb_bus_msg *)pm)->bus;
528 udev = bus->devices[USB_ROOT_HUB_ADDR];
529
530 if (udev == NULL || bus->bdev == NULL)
531 return;
532
533 USB_BUS_UNLOCK(bus);
534
535 do_unlock = usbd_enum_lock(udev);
536 #if 0
537 DEVMETHOD(usb_take_controller, NULL); /* dummy */
538 #endif
539 USB_TAKE_CONTROLLER(device_get_parent(bus->bdev));
540
541 USB_BUS_LOCK(bus);
542 bus->hw_power_state =
543 USB_HW_POWER_CONTROL |
544 USB_HW_POWER_BULK |
545 USB_HW_POWER_INTERRUPT |
546 USB_HW_POWER_ISOC |
547 USB_HW_POWER_NON_ROOT_HUB;
548 bus->no_explore = 0;
549 USB_BUS_UNLOCK(bus);
550
551 if (bus->methods->set_hw_power_sleep != NULL)
552 (bus->methods->set_hw_power_sleep) (bus, USB_HW_POWER_RESUME);
553
554 if (bus->methods->set_hw_power != NULL)
555 (bus->methods->set_hw_power) (bus);
556
557 /* restore USB configuration to index 0 */
558 err = usbd_set_config_index(udev, 0);
559 if (err)
560 device_printf(bus->bdev, "Could not configure root HUB\n");
561
562 /* probe and attach */
563 err = usb_probe_and_attach(udev, USB_IFACE_INDEX_ANY);
564 if (err) {
565 device_printf(bus->bdev, "Could not probe and "
566 "attach root HUB\n");
567 }
568
569 if (do_unlock)
570 usbd_enum_unlock(udev);
571
572 USB_BUS_LOCK(bus);
573 }
574
575 /*------------------------------------------------------------------------*
576 * usb_bus_reset
577 *
578 * This function is used to reset the USB controller.
579 *------------------------------------------------------------------------*/
580 static void
usb_bus_reset(struct usb_proc_msg * pm)581 usb_bus_reset(struct usb_proc_msg *pm)
582 {
583 struct usb_bus *bus;
584
585 DPRINTF("\n");
586
587 bus = ((struct usb_bus_msg *)pm)->bus;
588
589 if (bus->bdev == NULL || bus->no_explore != 0)
590 return;
591
592 /* a suspend and resume will reset the USB controller */
593 usb_bus_suspend(pm);
594 usb_bus_resume(pm);
595 }
596
597 /*------------------------------------------------------------------------*
598 * usb_bus_shutdown
599 *
600 * This function is used to shutdown the USB controller.
601 *------------------------------------------------------------------------*/
602 static void
usb_bus_shutdown(struct usb_proc_msg * pm)603 usb_bus_shutdown(struct usb_proc_msg *pm)
604 {
605 struct usb_bus *bus;
606 struct usb_device *udev;
607 usb_error_t err;
608 uint8_t do_unlock;
609
610 bus = ((struct usb_bus_msg *)pm)->bus;
611 udev = bus->devices[USB_ROOT_HUB_ADDR];
612
613 if (udev == NULL || bus->bdev == NULL)
614 return;
615
616 USB_BUS_UNLOCK(bus);
617
618 bus_generic_shutdown(bus->bdev);
619
620 do_unlock = usbd_enum_lock(udev);
621
622 err = usbd_set_config_index(udev, USB_UNCONFIG_INDEX);
623 if (err)
624 device_printf(bus->bdev, "Could not unconfigure root HUB\n");
625
626 USB_BUS_LOCK(bus);
627 bus->hw_power_state = 0;
628 bus->no_explore = 1;
629 USB_BUS_UNLOCK(bus);
630
631 if (bus->methods->set_hw_power != NULL)
632 (bus->methods->set_hw_power) (bus);
633
634 if (bus->methods->set_hw_power_sleep != NULL)
635 (bus->methods->set_hw_power_sleep) (bus, USB_HW_POWER_SHUTDOWN);
636
637 if (do_unlock)
638 usbd_enum_unlock(udev);
639
640 USB_BUS_LOCK(bus);
641 }
642
643 /*------------------------------------------------------------------------*
644 * usb_bus_cleanup
645 *
646 * This function is used to cleanup leftover USB character devices.
647 *------------------------------------------------------------------------*/
648 #if USB_HAVE_UGEN
649 static void
usb_bus_cleanup(struct usb_proc_msg * pm)650 usb_bus_cleanup(struct usb_proc_msg *pm)
651 {
652 struct usb_bus *bus;
653 struct usb_fs_privdata *pd;
654
655 bus = ((struct usb_bus_msg *)pm)->bus;
656
657 while ((pd = SLIST_FIRST(&bus->pd_cleanup_list)) != NULL) {
658 SLIST_REMOVE(&bus->pd_cleanup_list, pd, usb_fs_privdata, pd_next);
659 USB_BUS_UNLOCK(bus);
660
661 usb_destroy_dev_sync(pd);
662
663 USB_BUS_LOCK(bus);
664 }
665 }
666 #endif
667
668 static void
usb_power_wdog(void * arg)669 usb_power_wdog(void *arg)
670 {
671 struct usb_bus *bus = arg;
672
673 USB_BUS_LOCK_ASSERT(bus, MA_OWNED);
674
675 usb_callout_reset(&bus->power_wdog,
676 4 * hz, usb_power_wdog, arg);
677
678 #ifdef DDB
679 /*
680 * The following line of code is only here to recover from
681 * DDB:
682 */
683 usb_proc_rewakeup(USB_BUS_EXPLORE_PROC(bus)); /* recover from DDB */
684 #endif
685
686 #if USB_HAVE_POWERD
687 USB_BUS_UNLOCK(bus);
688
689 usb_bus_power_update(bus);
690
691 USB_BUS_LOCK(bus);
692 #endif
693 }
694
695 /*------------------------------------------------------------------------*
696 * usb_bus_attach
697 *
698 * This function attaches USB in context of the explore thread.
699 *------------------------------------------------------------------------*/
700 static void
usb_bus_attach(struct usb_proc_msg * pm)701 usb_bus_attach(struct usb_proc_msg *pm)
702 {
703 struct usb_bus *bus;
704 struct usb_device *child;
705 device_t dev;
706 usb_error_t err;
707 enum usb_dev_speed speed;
708
709 bus = ((struct usb_bus_msg *)pm)->bus;
710 dev = bus->bdev;
711
712 DPRINTF("\n");
713
714 switch (bus->usbrev) {
715 case USB_REV_1_0:
716 speed = USB_SPEED_FULL;
717 device_printf(bus->bdev, "12Mbps Full Speed USB v1.0\n");
718 break;
719
720 case USB_REV_1_1:
721 speed = USB_SPEED_FULL;
722 device_printf(bus->bdev, "12Mbps Full Speed USB v1.1\n");
723 break;
724
725 case USB_REV_2_0:
726 speed = USB_SPEED_HIGH;
727 device_printf(bus->bdev, "480Mbps High Speed USB v2.0\n");
728 break;
729
730 case USB_REV_2_5:
731 speed = USB_SPEED_VARIABLE;
732 device_printf(bus->bdev, "480Mbps Wireless USB v2.5\n");
733 break;
734
735 case USB_REV_3_0:
736 speed = USB_SPEED_SUPER;
737 device_printf(bus->bdev, "5.0Gbps Super Speed USB v3.0\n");
738 break;
739
740 default:
741 device_printf(bus->bdev, "Unsupported USB revision\n");
742 #if USB_HAVE_ROOT_MOUNT_HOLD
743 usb_root_mount_rel(bus);
744 #endif
745 return;
746 }
747
748 /* default power_mask value */
749 bus->hw_power_state =
750 USB_HW_POWER_CONTROL |
751 USB_HW_POWER_BULK |
752 USB_HW_POWER_INTERRUPT |
753 USB_HW_POWER_ISOC |
754 USB_HW_POWER_NON_ROOT_HUB;
755
756 USB_BUS_UNLOCK(bus);
757
758 /* make sure power is set at least once */
759
760 if (bus->methods->set_hw_power != NULL) {
761 (bus->methods->set_hw_power) (bus);
762 }
763
764 /* allocate the Root USB device */
765
766 child = usb_alloc_device(bus->bdev, bus, NULL, 0, 0, 1,
767 speed, USB_MODE_HOST);
768 if (child) {
769 err = usb_probe_and_attach(child,
770 USB_IFACE_INDEX_ANY);
771 if (!err) {
772 if ((bus->devices[USB_ROOT_HUB_ADDR] == NULL) ||
773 (bus->devices[USB_ROOT_HUB_ADDR]->hub == NULL)) {
774 err = USB_ERR_NO_ROOT_HUB;
775 }
776 }
777 } else {
778 err = USB_ERR_NOMEM;
779 }
780
781 USB_BUS_LOCK(bus);
782
783 if (err) {
784 device_printf(bus->bdev, "Root HUB problem, error=%s\n",
785 usbd_errstr(err));
786 #if USB_HAVE_ROOT_MOUNT_HOLD
787 usb_root_mount_rel(bus);
788 #endif
789 }
790
791 /* set softc - we are ready */
792 device_set_softc(dev, bus);
793
794 /* start watchdog */
795 usb_power_wdog(bus);
796 }
797
798 /*------------------------------------------------------------------------*
799 * usb_attach_sub
800 *
801 * This function creates a thread which runs the USB attach code.
802 *------------------------------------------------------------------------*/
803 static void
usb_attach_sub(device_t dev,struct usb_bus * bus)804 usb_attach_sub(device_t dev, struct usb_bus *bus)
805 {
806 bus_topo_lock();
807 if (usb_devclass_ptr == NULL)
808 usb_devclass_ptr = devclass_find("usbus");
809 bus_topo_unlock();
810
811 #if USB_HAVE_PF
812 usbpf_attach(bus);
813 #endif
814 /* Initialise USB process messages */
815 bus->explore_msg[0].hdr.pm_callback = &usb_bus_explore;
816 bus->explore_msg[0].bus = bus;
817 bus->explore_msg[1].hdr.pm_callback = &usb_bus_explore;
818 bus->explore_msg[1].bus = bus;
819
820 bus->detach_msg[0].hdr.pm_callback = &usb_bus_detach;
821 bus->detach_msg[0].bus = bus;
822 bus->detach_msg[1].hdr.pm_callback = &usb_bus_detach;
823 bus->detach_msg[1].bus = bus;
824
825 bus->attach_msg[0].hdr.pm_callback = &usb_bus_attach;
826 bus->attach_msg[0].bus = bus;
827 bus->attach_msg[1].hdr.pm_callback = &usb_bus_attach;
828 bus->attach_msg[1].bus = bus;
829
830 bus->suspend_msg[0].hdr.pm_callback = &usb_bus_suspend;
831 bus->suspend_msg[0].bus = bus;
832 bus->suspend_msg[1].hdr.pm_callback = &usb_bus_suspend;
833 bus->suspend_msg[1].bus = bus;
834
835 bus->resume_msg[0].hdr.pm_callback = &usb_bus_resume;
836 bus->resume_msg[0].bus = bus;
837 bus->resume_msg[1].hdr.pm_callback = &usb_bus_resume;
838 bus->resume_msg[1].bus = bus;
839
840 bus->reset_msg[0].hdr.pm_callback = &usb_bus_reset;
841 bus->reset_msg[0].bus = bus;
842 bus->reset_msg[1].hdr.pm_callback = &usb_bus_reset;
843 bus->reset_msg[1].bus = bus;
844
845 bus->shutdown_msg[0].hdr.pm_callback = &usb_bus_shutdown;
846 bus->shutdown_msg[0].bus = bus;
847 bus->shutdown_msg[1].hdr.pm_callback = &usb_bus_shutdown;
848 bus->shutdown_msg[1].bus = bus;
849
850 #if USB_HAVE_UGEN
851 SLIST_INIT(&bus->pd_cleanup_list);
852 bus->cleanup_msg[0].hdr.pm_callback = &usb_bus_cleanup;
853 bus->cleanup_msg[0].bus = bus;
854 bus->cleanup_msg[1].hdr.pm_callback = &usb_bus_cleanup;
855 bus->cleanup_msg[1].bus = bus;
856 #endif
857
858 #if USB_HAVE_PER_BUS_PROCESS
859 /* Create USB explore and callback processes */
860
861 if (usb_proc_create(USB_BUS_GIANT_PROC(bus),
862 &bus->bus_mtx, device_get_nameunit(dev), USB_PRI_MED)) {
863 device_printf(dev, "WARNING: Creation of USB Giant "
864 "callback process failed.\n");
865 } else if (usb_proc_create(USB_BUS_NON_GIANT_ISOC_PROC(bus),
866 &bus->bus_mtx, device_get_nameunit(dev), USB_PRI_HIGHEST)) {
867 device_printf(dev, "WARNING: Creation of USB non-Giant ISOC "
868 "callback process failed.\n");
869 } else if (usb_proc_create(USB_BUS_NON_GIANT_BULK_PROC(bus),
870 &bus->bus_mtx, device_get_nameunit(dev), USB_PRI_HIGH)) {
871 device_printf(dev, "WARNING: Creation of USB non-Giant BULK "
872 "callback process failed.\n");
873 } else if (usb_proc_create(USB_BUS_EXPLORE_PROC(bus),
874 &bus->bus_mtx, device_get_nameunit(dev), USB_PRI_MED)) {
875 device_printf(dev, "WARNING: Creation of USB explore "
876 "process failed.\n");
877 } else if (usb_proc_create(USB_BUS_CONTROL_XFER_PROC(bus),
878 &bus->bus_mtx, device_get_nameunit(dev), USB_PRI_MED)) {
879 device_printf(dev, "WARNING: Creation of USB control transfer "
880 "process failed.\n");
881 } else
882 #endif
883 {
884 /* Get final attach going */
885 USB_BUS_LOCK(bus);
886 usb_proc_msignal(USB_BUS_EXPLORE_PROC(bus),
887 &bus->attach_msg[0], &bus->attach_msg[1]);
888 USB_BUS_UNLOCK(bus);
889
890 /* Do initial explore */
891 usb_needs_explore(bus, 1);
892 }
893 }
894 SYSUNINIT(usb_bus_unload, SI_SUB_KLD, SI_ORDER_ANY, usb_bus_unload, NULL);
895
896 /*------------------------------------------------------------------------*
897 * usb_bus_mem_flush_all_cb
898 *------------------------------------------------------------------------*/
899 #if USB_HAVE_BUSDMA
900 static void
usb_bus_mem_flush_all_cb(struct usb_bus * bus,struct usb_page_cache * pc,struct usb_page * pg,usb_size_t size,usb_size_t align)901 usb_bus_mem_flush_all_cb(struct usb_bus *bus, struct usb_page_cache *pc,
902 struct usb_page *pg, usb_size_t size, usb_size_t align)
903 {
904 usb_pc_cpu_flush(pc);
905 }
906 #endif
907
908 /*------------------------------------------------------------------------*
909 * usb_bus_mem_flush_all - factored out code
910 *------------------------------------------------------------------------*/
911 #if USB_HAVE_BUSDMA
912 void
usb_bus_mem_flush_all(struct usb_bus * bus,usb_bus_mem_cb_t * cb)913 usb_bus_mem_flush_all(struct usb_bus *bus, usb_bus_mem_cb_t *cb)
914 {
915 if (cb) {
916 cb(bus, &usb_bus_mem_flush_all_cb);
917 }
918 }
919 #endif
920
921 /*------------------------------------------------------------------------*
922 * usb_bus_mem_alloc_all_cb
923 *------------------------------------------------------------------------*/
924 #if USB_HAVE_BUSDMA
925 static void
usb_bus_mem_alloc_all_cb(struct usb_bus * bus,struct usb_page_cache * pc,struct usb_page * pg,usb_size_t size,usb_size_t align)926 usb_bus_mem_alloc_all_cb(struct usb_bus *bus, struct usb_page_cache *pc,
927 struct usb_page *pg, usb_size_t size, usb_size_t align)
928 {
929 /* need to initialize the page cache */
930 pc->tag_parent = bus->dma_parent_tag;
931
932 if (usb_pc_alloc_mem(pc, pg, size, align)) {
933 bus->alloc_failed = 1;
934 }
935 }
936 #endif
937
938 /*------------------------------------------------------------------------*
939 * usb_bus_mem_alloc_all - factored out code
940 *
941 * Returns:
942 * 0: Success
943 * Else: Failure
944 *------------------------------------------------------------------------*/
945 uint8_t
usb_bus_mem_alloc_all(struct usb_bus * bus,bus_dma_tag_t dmat,usb_bus_mem_cb_t * cb)946 usb_bus_mem_alloc_all(struct usb_bus *bus, bus_dma_tag_t dmat,
947 usb_bus_mem_cb_t *cb)
948 {
949 bus->alloc_failed = 0;
950
951 mtx_init(&bus->bus_mtx, device_get_nameunit(bus->parent),
952 "usb_def_mtx", MTX_DEF | MTX_RECURSE);
953
954 mtx_init(&bus->bus_spin_lock, device_get_nameunit(bus->parent),
955 "usb_spin_mtx", MTX_SPIN | MTX_RECURSE);
956
957 usb_callout_init_mtx(&bus->power_wdog,
958 &bus->bus_mtx, 0);
959
960 TAILQ_INIT(&bus->intr_q.head);
961
962 #if USB_HAVE_BUSDMA
963 usb_dma_tag_setup(bus->dma_parent_tag, bus->dma_tags,
964 dmat, &bus->bus_mtx, NULL, bus->dma_bits, USB_BUS_DMA_TAG_MAX);
965 #endif
966 if ((bus->devices_max > USB_MAX_DEVICES) ||
967 (bus->devices_max < USB_MIN_DEVICES) ||
968 (bus->devices == NULL)) {
969 DPRINTFN(0, "Devices field has not been "
970 "initialised properly\n");
971 bus->alloc_failed = 1; /* failure */
972 }
973 #if USB_HAVE_BUSDMA
974 if (cb) {
975 cb(bus, &usb_bus_mem_alloc_all_cb);
976 }
977 #endif
978 if (bus->alloc_failed) {
979 usb_bus_mem_free_all(bus, cb);
980 }
981 return (bus->alloc_failed);
982 }
983
984 /*------------------------------------------------------------------------*
985 * usb_bus_mem_free_all_cb
986 *------------------------------------------------------------------------*/
987 #if USB_HAVE_BUSDMA
988 static void
usb_bus_mem_free_all_cb(struct usb_bus * bus,struct usb_page_cache * pc,struct usb_page * pg,usb_size_t size,usb_size_t align)989 usb_bus_mem_free_all_cb(struct usb_bus *bus, struct usb_page_cache *pc,
990 struct usb_page *pg, usb_size_t size, usb_size_t align)
991 {
992 usb_pc_free_mem(pc);
993 }
994 #endif
995
996 /*------------------------------------------------------------------------*
997 * usb_bus_mem_free_all - factored out code
998 *------------------------------------------------------------------------*/
999 void
usb_bus_mem_free_all(struct usb_bus * bus,usb_bus_mem_cb_t * cb)1000 usb_bus_mem_free_all(struct usb_bus *bus, usb_bus_mem_cb_t *cb)
1001 {
1002 #if USB_HAVE_BUSDMA
1003 if (cb) {
1004 cb(bus, &usb_bus_mem_free_all_cb);
1005 }
1006 usb_dma_tag_unsetup(bus->dma_parent_tag);
1007 #endif
1008
1009 mtx_destroy(&bus->bus_mtx);
1010 mtx_destroy(&bus->bus_spin_lock);
1011 }
1012
1013 /* convenience wrappers */
1014 void
usb_proc_explore_mwait(struct usb_device * udev,void * pm1,void * pm2)1015 usb_proc_explore_mwait(struct usb_device *udev, void *pm1, void *pm2)
1016 {
1017 usb_proc_mwait(USB_BUS_EXPLORE_PROC(udev->bus), pm1, pm2);
1018 }
1019
1020 void *
usb_proc_explore_msignal(struct usb_device * udev,void * pm1,void * pm2)1021 usb_proc_explore_msignal(struct usb_device *udev, void *pm1, void *pm2)
1022 {
1023 return (usb_proc_msignal(USB_BUS_EXPLORE_PROC(udev->bus), pm1, pm2));
1024 }
1025
1026 void
usb_proc_explore_lock(struct usb_device * udev)1027 usb_proc_explore_lock(struct usb_device *udev)
1028 {
1029 USB_BUS_LOCK(udev->bus);
1030 }
1031
1032 void
usb_proc_explore_unlock(struct usb_device * udev)1033 usb_proc_explore_unlock(struct usb_device *udev)
1034 {
1035 USB_BUS_UNLOCK(udev->bus);
1036 }
1037