usb_subr.c revision 1.220.2.6 1 /* $NetBSD: usb_subr.c,v 1.220.2.6 2018/11/04 11:08:10 martin Exp $ */
2 /* $FreeBSD: src/sys/dev/usb/usb_subr.c,v 1.18 1999/11/17 22:33:47 n_hibma Exp $ */
3
4 /*
5 * Copyright (c) 1998, 2004 The NetBSD Foundation, Inc.
6 * All rights reserved.
7 *
8 * This code is derived from software contributed to The NetBSD Foundation
9 * by Lennart Augustsson (lennart (at) augustsson.net) at
10 * Carlstedt Research & Technology.
11 *
12 * Redistribution and use in source and binary forms, with or without
13 * modification, are permitted provided that the following conditions
14 * are met:
15 * 1. Redistributions of source code must retain the above copyright
16 * notice, this list of conditions and the following disclaimer.
17 * 2. Redistributions in binary form must reproduce the above copyright
18 * notice, this list of conditions and the following disclaimer in the
19 * documentation and/or other materials provided with the distribution.
20 *
21 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
22 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
23 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
24 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
25 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
26 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
27 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
28 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
29 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
30 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
31 * POSSIBILITY OF SUCH DAMAGE.
32 */
33
34 #include <sys/cdefs.h>
35 __KERNEL_RCSID(0, "$NetBSD: usb_subr.c,v 1.220.2.6 2018/11/04 11:08:10 martin Exp $");
36
37 #ifdef _KERNEL_OPT
38 #include "opt_compat_netbsd.h"
39 #include "opt_usb.h"
40 #include "opt_usbverbose.h"
41 #endif
42
43 #include <sys/param.h>
44 #include <sys/systm.h>
45 #include <sys/kernel.h>
46 #include <sys/kmem.h>
47 #include <sys/device.h>
48 #include <sys/select.h>
49 #include <sys/proc.h>
50
51 #include <sys/bus.h>
52 #include <sys/module.h>
53
54 #include <dev/usb/usb.h>
55
56 #include <dev/usb/usbdi.h>
57 #include <dev/usb/usbdi_util.h>
58 #include <dev/usb/usbdivar.h>
59 #include <dev/usb/usbdevs.h>
60 #include <dev/usb/usb_quirks.h>
61 #include <dev/usb/usb_verbose.h>
62 #include <dev/usb/usbhist.h>
63
64 #include "locators.h"
65
66 #define DPRINTF(FMT,A,B,C,D) USBHIST_LOG(usbdebug,FMT,A,B,C,D)
67 #define DPRINTFN(N,FMT,A,B,C,D) USBHIST_LOGN(usbdebug,N,FMT,A,B,C,D)
68
69 Static usbd_status usbd_set_config(struct usbd_device *, int);
70 Static void usbd_devinfo(struct usbd_device *, int, char *, size_t);
71 Static void usbd_devinfo_vp(struct usbd_device *, char *, size_t, char *, size_t,
72 int, int);
73 Static int usbd_getnewaddr(struct usbd_bus *);
74 Static int usbd_print(void *, const char *);
75 Static int usbd_ifprint(void *, const char *);
76 Static void usbd_free_iface_data(struct usbd_device *, int);
77
78 uint32_t usb_cookie_no = 0;
79
80 Static const char * const usbd_error_strs[] = {
81 "NORMAL_COMPLETION",
82 "IN_PROGRESS",
83 "PENDING_REQUESTS",
84 "NOT_STARTED",
85 "INVAL",
86 "NOMEM",
87 "CANCELLED",
88 "BAD_ADDRESS",
89 "IN_USE",
90 "NO_ADDR",
91 "SET_ADDR_FAILED",
92 "NO_POWER",
93 "TOO_DEEP",
94 "IOERROR",
95 "NOT_CONFIGURED",
96 "TIMEOUT",
97 "SHORT_XFER",
98 "STALLED",
99 "INTERRUPTED",
100 "XXX",
101 };
102
103 DEV_VERBOSE_DEFINE(usb);
104
105 const char *
106 usbd_errstr(usbd_status err)
107 {
108 static char buffer[5];
109
110 if (err < USBD_ERROR_MAX) {
111 return usbd_error_strs[err];
112 } else {
113 snprintf(buffer, sizeof(buffer), "%d", err);
114 return buffer;
115 }
116 }
117
118 usbd_status
119 usbd_get_string_desc(struct usbd_device *dev, int sindex, int langid,
120 usb_string_descriptor_t *sdesc, int *sizep)
121 {
122 USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
123 usb_device_request_t req;
124 usbd_status err;
125 int actlen;
126
127 req.bmRequestType = UT_READ_DEVICE;
128 req.bRequest = UR_GET_DESCRIPTOR;
129 USETW2(req.wValue, UDESC_STRING, sindex);
130 USETW(req.wIndex, langid);
131 USETW(req.wLength, 2); /* only size byte first */
132 err = usbd_do_request_flags(dev, &req, sdesc, USBD_SHORT_XFER_OK,
133 &actlen, USBD_DEFAULT_TIMEOUT);
134 if (err)
135 return err;
136
137 if (actlen < 2)
138 return USBD_SHORT_XFER;
139
140 USETW(req.wLength, sdesc->bLength); /* the whole string */
141 err = usbd_do_request_flags(dev, &req, sdesc, USBD_SHORT_XFER_OK,
142 &actlen, USBD_DEFAULT_TIMEOUT);
143 if (err)
144 return err;
145
146 if (actlen != sdesc->bLength) {
147 DPRINTF("expected %jd, got %jd", sdesc->bLength, actlen, 0, 0);
148 }
149
150 *sizep = actlen;
151 return USBD_NORMAL_COMPLETION;
152 }
153
154 static void
155 usbd_trim_spaces(char *p)
156 {
157 char *q, *e;
158
159 q = e = p;
160 while (*q == ' ') /* skip leading spaces */
161 q++;
162 while ((*p = *q++)) /* copy string */
163 if (*p++ != ' ') /* remember last non-space */
164 e = p;
165 *e = '\0'; /* kill trailing spaces */
166 }
167
168 static void
169 usbd_get_device_string(struct usbd_device *ud, uByte index, char **buf)
170 {
171 char *b;
172 usbd_status err;
173
174 b = kmem_alloc(USB_MAX_ENCODED_STRING_LEN, KM_SLEEP);
175 err = usbd_get_string0(ud, index, b, true);
176 if (err != USBD_NORMAL_COMPLETION) {
177 kmem_free(b, USB_MAX_ENCODED_STRING_LEN);
178 b = NULL;
179 } else {
180 usbd_trim_spaces(b);
181 }
182
183 *buf = b;
184 }
185
186 void
187 usbd_get_device_strings(struct usbd_device *ud)
188 {
189 usb_device_descriptor_t *udd = &ud->ud_ddesc;
190
191 usbd_get_device_string(ud, udd->iManufacturer, &ud->ud_vendor);
192 usbd_get_device_string(ud, udd->iProduct, &ud->ud_product);
193 usbd_get_device_string(ud, udd->iSerialNumber, &ud->ud_serial);
194 }
195
196
197 Static void
198 usbd_devinfo_vp(struct usbd_device *dev, char *v, size_t vl, char *p,
199 size_t pl, int usedev, int useencoded)
200 {
201 usb_device_descriptor_t *udd = &dev->ud_ddesc;
202 if (dev == NULL)
203 return;
204
205 v[0] = p[0] = '\0';
206
207 if (usedev) {
208 if (usbd_get_string0(dev, udd->iManufacturer, v, useencoded) ==
209 USBD_NORMAL_COMPLETION)
210 usbd_trim_spaces(v);
211 if (usbd_get_string0(dev, udd->iProduct, p, useencoded) ==
212 USBD_NORMAL_COMPLETION)
213 usbd_trim_spaces(p);
214 } else {
215 if (dev->ud_vendor) {
216 strlcpy(v, dev->ud_vendor, vl);
217 }
218 if (dev->ud_product) {
219 strlcpy(p, dev->ud_product, pl);
220 }
221 }
222 if (v[0] == '\0')
223 usb_findvendor(v, vl, UGETW(udd->idVendor));
224 if (p[0] == '\0')
225 usb_findproduct(p, pl, UGETW(udd->idVendor),
226 UGETW(udd->idProduct));
227 }
228
229 int
230 usbd_printBCD(char *cp, size_t l, int bcd)
231 {
232 return snprintf(cp, l, "%x.%02x", bcd >> 8, bcd & 0xff);
233 }
234
235 Static void
236 usbd_devinfo(struct usbd_device *dev, int showclass, char *cp, size_t l)
237 {
238 usb_device_descriptor_t *udd = &dev->ud_ddesc;
239 char *vendor, *product;
240 int bcdDevice, bcdUSB;
241 char *ep;
242
243 vendor = kmem_alloc(USB_MAX_ENCODED_STRING_LEN * 2, KM_SLEEP);
244 product = &vendor[USB_MAX_ENCODED_STRING_LEN];
245
246 ep = cp + l;
247
248 usbd_devinfo_vp(dev, vendor, USB_MAX_ENCODED_STRING_LEN,
249 product, USB_MAX_ENCODED_STRING_LEN, 0, 1);
250 cp += snprintf(cp, ep - cp, "%s (%#04x) %s (%#04x)", vendor,
251 UGETW(udd->idVendor), product, UGETW(udd->idProduct));
252 if (showclass)
253 cp += snprintf(cp, ep - cp, ", class %d/%d",
254 udd->bDeviceClass, udd->bDeviceSubClass);
255 bcdUSB = UGETW(udd->bcdUSB);
256 bcdDevice = UGETW(udd->bcdDevice);
257 cp += snprintf(cp, ep - cp, ", rev ");
258 cp += usbd_printBCD(cp, ep - cp, bcdUSB);
259 *cp++ = '/';
260 cp += usbd_printBCD(cp, ep - cp, bcdDevice);
261 cp += snprintf(cp, ep - cp, ", addr %d", dev->ud_addr);
262 *cp = 0;
263 kmem_free(vendor, USB_MAX_ENCODED_STRING_LEN * 2);
264 }
265
266 char *
267 usbd_devinfo_alloc(struct usbd_device *dev, int showclass)
268 {
269 char *devinfop;
270
271 devinfop = kmem_alloc(DEVINFOSIZE, KM_SLEEP);
272 usbd_devinfo(dev, showclass, devinfop, DEVINFOSIZE);
273 return devinfop;
274 }
275
276 void
277 usbd_devinfo_free(char *devinfop)
278 {
279 kmem_free(devinfop, DEVINFOSIZE);
280 }
281
282 /* Delay for a certain number of ms */
283 void
284 usb_delay_ms_locked(struct usbd_bus *bus, u_int ms, kmutex_t *lock)
285 {
286 /* Wait at least two clock ticks so we know the time has passed. */
287 if (bus->ub_usepolling || cold)
288 delay((ms+1) * 1000);
289 else
290 kpause("usbdly", false, (ms*hz+999)/1000 + 1, lock);
291 }
292
293 void
294 usb_delay_ms(struct usbd_bus *bus, u_int ms)
295 {
296 usb_delay_ms_locked(bus, ms, NULL);
297 }
298
299 /* Delay given a device handle. */
300 void
301 usbd_delay_ms_locked(struct usbd_device *dev, u_int ms, kmutex_t *lock)
302 {
303 usb_delay_ms_locked(dev->ud_bus, ms, lock);
304 }
305
306 /* Delay given a device handle. */
307 void
308 usbd_delay_ms(struct usbd_device *dev, u_int ms)
309 {
310 usb_delay_ms_locked(dev->ud_bus, ms, NULL);
311 }
312
313 usbd_status
314 usbd_reset_port(struct usbd_device *dev, int port, usb_port_status_t *ps)
315 {
316 USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
317 usb_device_request_t req;
318 usbd_status err;
319 int n;
320
321 req.bmRequestType = UT_WRITE_CLASS_OTHER;
322 req.bRequest = UR_SET_FEATURE;
323 USETW(req.wValue, UHF_PORT_RESET);
324 USETW(req.wIndex, port);
325 USETW(req.wLength, 0);
326 err = usbd_do_request(dev, &req, 0);
327 DPRINTFN(1, "port %jd reset done, error=%jd", port, err, 0, 0);
328 if (err)
329 return err;
330 n = 10;
331 do {
332 /* Wait for device to recover from reset. */
333 usbd_delay_ms(dev, USB_PORT_RESET_DELAY);
334 err = usbd_get_port_status(dev, port, ps);
335 if (err) {
336 DPRINTF("get status failed %jd", err, 0, 0, 0);
337 return err;
338 }
339 /* If the device disappeared, just give up. */
340 if (!(UGETW(ps->wPortStatus) & UPS_CURRENT_CONNECT_STATUS))
341 return USBD_NORMAL_COMPLETION;
342 } while ((UGETW(ps->wPortChange) & UPS_C_PORT_RESET) == 0 && --n > 0);
343 if (n == 0)
344 return USBD_TIMEOUT;
345 err = usbd_clear_port_feature(dev, port, UHF_C_PORT_RESET);
346 #ifdef USB_DEBUG
347 if (err)
348 DPRINTF("clear port feature failed %jd", err, 0, 0, 0);
349 #endif
350
351 /* Wait for the device to recover from reset. */
352 usbd_delay_ms(dev, USB_PORT_RESET_RECOVERY);
353 return err;
354 }
355
356 usb_interface_descriptor_t *
357 usbd_find_idesc(usb_config_descriptor_t *cd, int ifaceidx, int altidx)
358 {
359 USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
360 char *p = (char *)cd;
361 char *end = p + UGETW(cd->wTotalLength);
362 usb_interface_descriptor_t *d;
363 int curidx, lastidx, curaidx = 0;
364
365 for (curidx = lastidx = -1; p < end; ) {
366 d = (usb_interface_descriptor_t *)p;
367 DPRINTFN(4, "idx=%jd(%jd) altidx=%jd(%jd)", ifaceidx, curidx,
368 altidx, curaidx);
369 DPRINTFN(4, "len=%jd type=%jd", d->bLength, d->bDescriptorType,
370 0, 0);
371 if (d->bLength == 0) /* bad descriptor */
372 break;
373 p += d->bLength;
374 if (p <= end && d->bDescriptorType == UDESC_INTERFACE) {
375 if (d->bInterfaceNumber != lastidx) {
376 lastidx = d->bInterfaceNumber;
377 curidx++;
378 curaidx = 0;
379 } else
380 curaidx++;
381 if (ifaceidx == curidx && altidx == curaidx)
382 return d;
383 }
384 }
385 return NULL;
386 }
387
388 usb_endpoint_descriptor_t *
389 usbd_find_edesc(usb_config_descriptor_t *cd, int ifaceidx, int altidx,
390 int endptidx)
391 {
392 char *p = (char *)cd;
393 char *end = p + UGETW(cd->wTotalLength);
394 usb_interface_descriptor_t *d;
395 usb_endpoint_descriptor_t *e;
396 int curidx;
397
398 d = usbd_find_idesc(cd, ifaceidx, altidx);
399 if (d == NULL)
400 return NULL;
401 if (endptidx >= d->bNumEndpoints) /* quick exit */
402 return NULL;
403
404 curidx = -1;
405 for (p = (char *)d + d->bLength; p < end; ) {
406 e = (usb_endpoint_descriptor_t *)p;
407 if (e->bLength == 0) /* bad descriptor */
408 break;
409 p += e->bLength;
410 if (p <= end && e->bDescriptorType == UDESC_INTERFACE)
411 return NULL;
412 if (p <= end && e->bDescriptorType == UDESC_ENDPOINT) {
413 curidx++;
414 if (curidx == endptidx)
415 return e;
416 }
417 }
418 return NULL;
419 }
420
421 usbd_status
422 usbd_fill_iface_data(struct usbd_device *dev, int ifaceidx, int altidx)
423 {
424 USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
425 struct usbd_interface *ifc = &dev->ud_ifaces[ifaceidx];
426 usb_interface_descriptor_t *idesc;
427 char *p, *end;
428 int endpt, nendpt;
429
430 DPRINTFN(4, "ifaceidx=%jd altidx=%jd", ifaceidx, altidx, 0, 0);
431 idesc = usbd_find_idesc(dev->ud_cdesc, ifaceidx, altidx);
432 if (idesc == NULL)
433 return USBD_INVAL;
434 ifc->ui_dev = dev;
435 ifc->ui_idesc = idesc;
436 ifc->ui_index = ifaceidx;
437 ifc->ui_altindex = altidx;
438 nendpt = ifc->ui_idesc->bNumEndpoints;
439 DPRINTFN(4, "found idesc nendpt=%jd", nendpt, 0, 0, 0);
440 if (nendpt != 0) {
441 ifc->ui_endpoints = kmem_alloc(nendpt * sizeof(struct usbd_endpoint),
442 KM_SLEEP);
443 } else
444 ifc->ui_endpoints = NULL;
445 ifc->ui_priv = NULL;
446 p = (char *)ifc->ui_idesc + ifc->ui_idesc->bLength;
447 end = (char *)dev->ud_cdesc + UGETW(dev->ud_cdesc->wTotalLength);
448 #define ed ((usb_endpoint_descriptor_t *)p)
449 for (endpt = 0; endpt < nendpt; endpt++) {
450 DPRINTFN(10, "endpt=%jd", endpt, 0, 0, 0);
451 for (; p < end; p += ed->bLength) {
452 DPRINTFN(10, "p=%#jx end=%#jx len=%jd type=%jd",
453 (uintptr_t)p, (uintptr_t)end, ed->bLength,
454 ed->bDescriptorType);
455 if (p + ed->bLength <= end && ed->bLength != 0 &&
456 ed->bDescriptorType == UDESC_ENDPOINT)
457 goto found;
458 if (ed->bLength == 0 ||
459 ed->bDescriptorType == UDESC_INTERFACE)
460 break;
461 }
462 /* passed end, or bad desc */
463 printf("usbd_fill_iface_data: bad descriptor(s): %s\n",
464 ed->bLength == 0 ? "0 length" :
465 ed->bDescriptorType == UDESC_INTERFACE ? "iface desc":
466 "out of data");
467 goto bad;
468 found:
469 ifc->ui_endpoints[endpt].ue_edesc = ed;
470 if (dev->ud_speed == USB_SPEED_HIGH) {
471 u_int mps;
472 /* Control and bulk endpoints have max packet limits. */
473 switch (UE_GET_XFERTYPE(ed->bmAttributes)) {
474 case UE_CONTROL:
475 mps = USB_2_MAX_CTRL_PACKET;
476 goto check;
477 case UE_BULK:
478 mps = USB_2_MAX_BULK_PACKET;
479 check:
480 if (UGETW(ed->wMaxPacketSize) != mps) {
481 USETW(ed->wMaxPacketSize, mps);
482 #ifdef DIAGNOSTIC
483 printf("usbd_fill_iface_data: bad max "
484 "packet size\n");
485 #endif
486 }
487 break;
488 default:
489 break;
490 }
491 }
492 ifc->ui_endpoints[endpt].ue_refcnt = 0;
493 ifc->ui_endpoints[endpt].ue_toggle = 0;
494 p += ed->bLength;
495 }
496 #undef ed
497 LIST_INIT(&ifc->ui_pipes);
498 return USBD_NORMAL_COMPLETION;
499
500 bad:
501 if (ifc->ui_endpoints != NULL) {
502 kmem_free(ifc->ui_endpoints, nendpt * sizeof(struct usbd_endpoint));
503 ifc->ui_endpoints = NULL;
504 }
505 return USBD_INVAL;
506 }
507
508 void
509 usbd_free_iface_data(struct usbd_device *dev, int ifcno)
510 {
511 struct usbd_interface *ifc = &dev->ud_ifaces[ifcno];
512 if (ifc->ui_endpoints) {
513 int nendpt = ifc->ui_idesc->bNumEndpoints;
514 size_t sz = nendpt * sizeof(struct usbd_endpoint);
515 kmem_free(ifc->ui_endpoints, sz);
516 }
517 }
518
519 Static usbd_status
520 usbd_set_config(struct usbd_device *dev, int conf)
521 {
522 USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
523 usb_device_request_t req;
524
525 DPRINTFN(5, "dev %#jx conf %jd", (uintptr_t)dev, conf, 0, 0);
526
527 req.bmRequestType = UT_WRITE_DEVICE;
528 req.bRequest = UR_SET_CONFIG;
529 USETW(req.wValue, conf);
530 USETW(req.wIndex, 0);
531 USETW(req.wLength, 0);
532 return usbd_do_request(dev, &req, 0);
533 }
534
535 usbd_status
536 usbd_set_config_no(struct usbd_device *dev, int no, int msg)
537 {
538 USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
539 usb_config_descriptor_t cd;
540 usbd_status err;
541 int index;
542
543 if (no == USB_UNCONFIG_NO)
544 return usbd_set_config_index(dev, USB_UNCONFIG_INDEX, msg);
545
546 DPRINTFN(5, "%jd", no, 0, 0, 0);
547 /* Figure out what config index to use. */
548 for (index = 0; index < dev->ud_ddesc.bNumConfigurations; index++) {
549 err = usbd_get_config_desc(dev, index, &cd);
550 if (err)
551 return err;
552 if (cd.bConfigurationValue == no)
553 return usbd_set_config_index(dev, index, msg);
554 }
555 return USBD_INVAL;
556 }
557
558 usbd_status
559 usbd_set_config_index(struct usbd_device *dev, int index, int msg)
560 {
561 USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
562 usb_config_descriptor_t cd, *cdp;
563 usb_bos_descriptor_t *bdp = NULL;
564 usbd_status err;
565 int i, ifcidx, nifc, len, selfpowered, power;
566
567 DPRINTFN(5, "dev=%#jx index=%jd", (uintptr_t)dev, index, 0, 0);
568
569 if (index >= dev->ud_ddesc.bNumConfigurations &&
570 index != USB_UNCONFIG_INDEX) {
571 /* panic? */
572 printf("usbd_set_config_index: illegal index\n");
573 return USBD_INVAL;
574 }
575
576 /* XXX check that all interfaces are idle */
577 if (dev->ud_config != USB_UNCONFIG_NO) {
578 DPRINTF("free old config", 0, 0, 0, 0);
579 /* Free all configuration data structures. */
580 nifc = dev->ud_cdesc->bNumInterface;
581 for (ifcidx = 0; ifcidx < nifc; ifcidx++)
582 usbd_free_iface_data(dev, ifcidx);
583 kmem_free(dev->ud_ifaces, nifc * sizeof(struct usbd_interface));
584 kmem_free(dev->ud_cdesc, UGETW(dev->ud_cdesc->wTotalLength));
585 if (dev->ud_bdesc != NULL)
586 kmem_free(dev->ud_bdesc,
587 UGETW(dev->ud_bdesc->wTotalLength));
588 dev->ud_ifaces = NULL;
589 dev->ud_cdesc = NULL;
590 dev->ud_bdesc = NULL;
591 dev->ud_config = USB_UNCONFIG_NO;
592 }
593
594 if (index == USB_UNCONFIG_INDEX) {
595 /* We are unconfiguring the device, so leave unallocated. */
596 DPRINTF("set config 0", 0, 0, 0, 0);
597 err = usbd_set_config(dev, USB_UNCONFIG_NO);
598 if (err) {
599 DPRINTF("setting config=0 failed, err = %jd", err,
600 0, 0, 0);
601 }
602 return err;
603 }
604
605 /* Get the short descriptor. */
606 err = usbd_get_config_desc(dev, index, &cd);
607 if (err) {
608 DPRINTF("get_config_desc=%jd", err, 0, 0, 0);
609 return err;
610 }
611 len = UGETW(cd.wTotalLength);
612 if (len == 0) {
613 DPRINTF("empty short descriptor", 0, 0, 0, 0);
614 return USBD_INVAL;
615 }
616 cdp = kmem_alloc(len, KM_SLEEP);
617
618 /* Get the full descriptor. Try a few times for slow devices. */
619 for (i = 0; i < 3; i++) {
620 err = usbd_get_desc(dev, UDESC_CONFIG, index, len, cdp);
621 if (!err)
622 break;
623 usbd_delay_ms(dev, 200);
624 }
625 if (err) {
626 DPRINTF("get_desc=%jd", err, 0, 0, 0);
627 goto bad;
628 }
629 if (cdp->bDescriptorType != UDESC_CONFIG) {
630 DPRINTF("bad desc %jd", cdp->bDescriptorType, 0, 0, 0);
631 err = USBD_INVAL;
632 goto bad;
633 }
634
635 if (USB_IS_SS(dev->ud_speed)) {
636 usb_bos_descriptor_t bd;
637
638 /* get short bos desc */
639 err = usbd_get_bos_desc(dev, index, &bd);
640 if (!err) {
641 int blen = UGETW(bd.wTotalLength);
642 if (blen == 0) {
643 DPRINTF("empty bos descriptor", 0, 0, 0, 0);
644 err = USBD_INVAL;
645 goto bad;
646 }
647 bdp = kmem_alloc(blen, KM_SLEEP);
648
649 /* Get the full desc */
650 for (i = 0; i < 3; i++) {
651 err = usbd_get_desc(dev, UDESC_BOS, index, blen,
652 bdp);
653 if (!err)
654 break;
655 usbd_delay_ms(dev, 200);
656 }
657 if (err || bdp->bDescriptorType != UDESC_BOS) {
658 DPRINTF("error %jd or bad desc %jd", err,
659 bdp->bDescriptorType, 0, 0);
660 kmem_free(bdp, blen);
661 bdp = NULL;
662 }
663 }
664 }
665 dev->ud_bdesc = bdp;
666
667 /*
668 * Figure out if the device is self or bus powered.
669 */
670 #if 0 /* XXX various devices don't report the power state correctly */
671 selfpowered = 0;
672 err = usbd_get_device_status(dev, &ds);
673 if (!err && (UGETW(ds.wStatus) & UDS_SELF_POWERED))
674 selfpowered = 1;
675 #endif
676 /*
677 * Use the power state in the configuration we are going
678 * to set. This doesn't necessarily reflect the actual
679 * power state of the device; the driver can control this
680 * by choosing the appropriate configuration.
681 */
682 selfpowered = !!(cdp->bmAttributes & UC_SELF_POWERED);
683
684 DPRINTF("addr %jd cno=%jd attr=%#02jx, selfpowered=%jd",
685 dev->ud_addr, cdp->bConfigurationValue, cdp->bmAttributes,
686 selfpowered);
687 DPRINTF("max power=%jd", cdp->bMaxPower * 2, 0, 0, 0);
688
689 /* Check if we have enough power. */
690 #if 0 /* this is a no-op, see above */
691 if ((cdp->bmAttributes & UC_SELF_POWERED) && !selfpowered) {
692 if (msg)
693 printf("%s: device addr %d (config %d): "
694 "can't set self powered configuration\n",
695 device_xname(dev->ud_bus->bdev), dev->ud_addr,
696 cdp->bConfigurationValue);
697 err = USBD_NO_POWER;
698 goto bad;
699 }
700 #endif
701 #ifdef USB_DEBUG
702 if (dev->ud_powersrc == NULL) {
703 DPRINTF("No power source?", 0, 0, 0, 0);
704 err = USBD_IOERROR;
705 goto bad;
706 }
707 #endif
708 power = cdp->bMaxPower * 2;
709 if (power > dev->ud_powersrc->up_power) {
710 DPRINTF("power exceeded %jd %jd", power,
711 dev->ud_powersrc->up_power, 0, 0);
712 /* XXX print nicer message. */
713 if (msg)
714 printf("%s: device addr %d (config %d) exceeds power "
715 "budget, %d mA > %d mA\n",
716 device_xname(dev->ud_bus->ub_usbctl), dev->ud_addr,
717 cdp->bConfigurationValue,
718 power, dev->ud_powersrc->up_power);
719 err = USBD_NO_POWER;
720 goto bad;
721 }
722 dev->ud_power = power;
723 dev->ud_selfpowered = selfpowered;
724
725 /* Set the actual configuration value. */
726 DPRINTF("set config %jd", cdp->bConfigurationValue, 0, 0, 0);
727 err = usbd_set_config(dev, cdp->bConfigurationValue);
728 if (err) {
729 DPRINTF("setting config=%jd failed, error=%jd",
730 cdp->bConfigurationValue, err, 0, 0);
731 goto bad;
732 }
733
734 /* Allocate and fill interface data. */
735 nifc = cdp->bNumInterface;
736 if (nifc == 0) {
737 DPRINTF("no interfaces", 0, 0, 0, 0);
738 err = USBD_INVAL;
739 goto bad;
740 }
741 dev->ud_ifaces = kmem_alloc(nifc * sizeof(struct usbd_interface),
742 KM_SLEEP);
743 DPRINTFN(5, "dev=%#jx cdesc=%#jx", (uintptr_t)dev, (uintptr_t)cdp,
744 0, 0);
745 dev->ud_cdesc = cdp;
746 dev->ud_config = cdp->bConfigurationValue;
747 for (ifcidx = 0; ifcidx < nifc; ifcidx++) {
748 err = usbd_fill_iface_data(dev, ifcidx, 0);
749 if (err) {
750 while (--ifcidx >= 0)
751 usbd_free_iface_data(dev, ifcidx);
752 goto bad;
753 }
754 }
755
756 return USBD_NORMAL_COMPLETION;
757
758 bad:
759 kmem_free(cdp, len);
760 if (bdp != NULL) {
761 kmem_free(bdp, UGETW(bdp->wTotalLength));
762 dev->ud_bdesc = NULL;
763 }
764 return err;
765 }
766
767 /* XXX add function for alternate settings */
768
769 usbd_status
770 usbd_setup_pipe(struct usbd_device *dev, struct usbd_interface *iface,
771 struct usbd_endpoint *ep, int ival, struct usbd_pipe **pipe)
772 {
773 return usbd_setup_pipe_flags(dev, iface, ep, ival, pipe, 0);
774 }
775
776 usbd_status
777 usbd_setup_pipe_flags(struct usbd_device *dev, struct usbd_interface *iface,
778 struct usbd_endpoint *ep, int ival, struct usbd_pipe **pipe, uint8_t flags)
779 {
780 USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
781 struct usbd_pipe *p;
782 usbd_status err;
783
784 p = kmem_alloc(dev->ud_bus->ub_pipesize, KM_SLEEP);
785 DPRINTFN(1, "dev=%#jx addr=%jd iface=%#jx ep=%#jx",
786 (uintptr_t)dev, dev->ud_addr, (uintptr_t)iface, (uintptr_t)ep);
787 DPRINTFN(1, "pipe=%#jx", (uintptr_t)p, 0, 0, 0);
788 p->up_dev = dev;
789 p->up_iface = iface;
790 p->up_endpoint = ep;
791 ep->ue_refcnt++;
792 p->up_intrxfer = NULL;
793 p->up_running = 0;
794 p->up_aborting = 0;
795 p->up_serialise = true;
796 p->up_repeat = 0;
797 p->up_interval = ival;
798 p->up_flags = flags;
799 p->up_serialise = true;
800 SIMPLEQ_INIT(&p->up_queue);
801 err = dev->ud_bus->ub_methods->ubm_open(p);
802 if (err) {
803 DPRINTF("endpoint=%#jx failed, error=%jd",
804 (uintptr_t)ep->ue_edesc->bEndpointAddress, err, 0, 0);
805 kmem_free(p, dev->ud_bus->ub_pipesize);
806 return err;
807 }
808
809 KASSERT(p->up_methods->upm_start || p->up_serialise == false);
810
811 usb_init_task(&p->up_async_task, usbd_clear_endpoint_stall_task, p,
812 USB_TASKQ_MPSAFE);
813 DPRINTFN(1, "pipe=%#jx", (uintptr_t)p, 0, 0, 0);
814 *pipe = p;
815 return USBD_NORMAL_COMPLETION;
816 }
817
818 /* Abort the device control pipe. */
819 void
820 usbd_kill_pipe(struct usbd_pipe *pipe)
821 {
822 usbd_abort_pipe(pipe);
823 usbd_lock_pipe(pipe);
824 pipe->up_methods->upm_close(pipe);
825 usbd_unlock_pipe(pipe);
826 usb_rem_task_wait(pipe->up_dev, &pipe->up_async_task, USB_TASKQ_DRIVER,
827 NULL);
828 pipe->up_endpoint->ue_refcnt--;
829 kmem_free(pipe, pipe->up_dev->ud_bus->ub_pipesize);
830 }
831
832 int
833 usbd_getnewaddr(struct usbd_bus *bus)
834 {
835 int addr;
836
837 for (addr = 1; addr < USB_MAX_DEVICES; addr++) {
838 size_t dindex = usb_addr2dindex(addr);
839 if (bus->ub_devices[dindex] == NULL)
840 return addr;
841 }
842 return -1;
843 }
844
845 usbd_status
846 usbd_attach_roothub(device_t parent, struct usbd_device *dev)
847 {
848 struct usb_attach_arg uaa;
849 usb_device_descriptor_t *dd = &dev->ud_ddesc;
850 device_t dv;
851
852 uaa.uaa_device = dev;
853 uaa.uaa_usegeneric = 0;
854 uaa.uaa_port = 0;
855 uaa.uaa_vendor = UGETW(dd->idVendor);
856 uaa.uaa_product = UGETW(dd->idProduct);
857 uaa.uaa_release = UGETW(dd->bcdDevice);
858 uaa.uaa_class = dd->bDeviceClass;
859 uaa.uaa_subclass = dd->bDeviceSubClass;
860 uaa.uaa_proto = dd->bDeviceProtocol;
861
862 KERNEL_LOCK(1, curlwp);
863 dv = config_found_ia(parent, "usbroothubif", &uaa, 0);
864 KERNEL_UNLOCK_ONE(curlwp);
865 if (dv) {
866 dev->ud_subdevs = kmem_alloc(sizeof(dv), KM_SLEEP);
867 dev->ud_subdevs[0] = dv;
868 dev->ud_subdevlen = 1;
869 }
870 return USBD_NORMAL_COMPLETION;
871 }
872
873 static void
874 usbd_serialnumber(device_t dv, struct usbd_device *dev)
875 {
876 if (dev->ud_serial) {
877 prop_dictionary_set_cstring(device_properties(dv),
878 "serialnumber", dev->ud_serial);
879 }
880 }
881
882 static usbd_status
883 usbd_attachwholedevice(device_t parent, struct usbd_device *dev, int port,
884 int usegeneric)
885 {
886 struct usb_attach_arg uaa;
887 usb_device_descriptor_t *dd = &dev->ud_ddesc;
888 device_t dv;
889 int dlocs[USBDEVIFCF_NLOCS];
890
891 uaa.uaa_device = dev;
892 uaa.uaa_usegeneric = usegeneric;
893 uaa.uaa_port = port;
894 uaa.uaa_vendor = UGETW(dd->idVendor);
895 uaa.uaa_product = UGETW(dd->idProduct);
896 uaa.uaa_release = UGETW(dd->bcdDevice);
897 uaa.uaa_class = dd->bDeviceClass;
898 uaa.uaa_subclass = dd->bDeviceSubClass;
899 uaa.uaa_proto = dd->bDeviceProtocol;
900
901 dlocs[USBDEVIFCF_PORT] = uaa.uaa_port;
902 dlocs[USBDEVIFCF_VENDOR] = uaa.uaa_vendor;
903 dlocs[USBDEVIFCF_PRODUCT] = uaa.uaa_product;
904 dlocs[USBDEVIFCF_RELEASE] = uaa.uaa_release;
905 /* the rest is historical ballast */
906 dlocs[USBDEVIFCF_CONFIGURATION] = -1;
907 dlocs[USBDEVIFCF_INTERFACE] = -1;
908
909 KERNEL_LOCK(1, curlwp);
910 config_pending_incr(parent);
911 dv = config_found_sm_loc(parent, "usbdevif", dlocs, &uaa, usbd_print,
912 config_stdsubmatch);
913 KERNEL_UNLOCK_ONE(curlwp);
914 if (dv) {
915 dev->ud_subdevs = kmem_alloc(sizeof(dv), KM_SLEEP);
916 dev->ud_subdevs[0] = dv;
917 dev->ud_subdevlen = 1;
918 dev->ud_nifaces_claimed = 1; /* XXX */
919 usbd_serialnumber(dv, dev);
920 }
921 config_pending_decr(parent);
922 return USBD_NORMAL_COMPLETION;
923 }
924
925 static usbd_status
926 usbd_attachinterfaces(device_t parent, struct usbd_device *dev,
927 int port, const int *locators)
928 {
929 USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
930 struct usbif_attach_arg uiaa;
931 int ilocs[USBIFIFCF_NLOCS];
932 usb_device_descriptor_t *dd = &dev->ud_ddesc;
933 int nifaces;
934 struct usbd_interface **ifaces;
935 int i, j, loc;
936 device_t dv;
937
938 nifaces = dev->ud_cdesc->bNumInterface;
939 ifaces = kmem_zalloc(nifaces * sizeof(*ifaces), KM_SLEEP);
940 for (i = 0; i < nifaces; i++) {
941 if (!dev->ud_subdevs[i]) {
942 ifaces[i] = &dev->ud_ifaces[i];
943 }
944 DPRINTF("interface %jd %#jx", i, (uintptr_t)ifaces[i], 0, 0);
945 }
946
947
948 uiaa.uiaa_device = dev;
949 uiaa.uiaa_port = port;
950 uiaa.uiaa_vendor = UGETW(dd->idVendor);
951 uiaa.uiaa_product = UGETW(dd->idProduct);
952 uiaa.uiaa_release = UGETW(dd->bcdDevice);
953 uiaa.uiaa_configno = dev->ud_cdesc->bConfigurationValue;
954 uiaa.uiaa_ifaces = ifaces;
955 uiaa.uiaa_nifaces = nifaces;
956 ilocs[USBIFIFCF_PORT] = uiaa.uiaa_port;
957 ilocs[USBIFIFCF_VENDOR] = uiaa.uiaa_vendor;
958 ilocs[USBIFIFCF_PRODUCT] = uiaa.uiaa_product;
959 ilocs[USBIFIFCF_RELEASE] = uiaa.uiaa_release;
960 ilocs[USBIFIFCF_CONFIGURATION] = uiaa.uiaa_configno;
961
962 for (i = 0; i < nifaces; i++) {
963 if (!ifaces[i]) {
964 DPRINTF("interface %jd claimed", i, 0, 0, 0);
965 continue; /* interface already claimed */
966 }
967 uiaa.uiaa_iface = ifaces[i];
968 uiaa.uiaa_class = ifaces[i]->ui_idesc->bInterfaceClass;
969 uiaa.uiaa_subclass = ifaces[i]->ui_idesc->bInterfaceSubClass;
970 uiaa.uiaa_proto = ifaces[i]->ui_idesc->bInterfaceProtocol;
971 uiaa.uiaa_ifaceno = ifaces[i]->ui_idesc->bInterfaceNumber;
972
973 DPRINTF("searching for interface %jd...", i, 0, 0, 0);
974 DPRINTF("class %jx subclass %jx proto %jx ifaceno %jd",
975 uiaa.uiaa_class, uiaa.uiaa_subclass, uiaa.uiaa_proto,
976 uiaa.uiaa_ifaceno);
977 ilocs[USBIFIFCF_INTERFACE] = uiaa.uiaa_ifaceno;
978 if (locators != NULL) {
979 loc = locators[USBIFIFCF_CONFIGURATION];
980 if (loc != USBIFIFCF_CONFIGURATION_DEFAULT &&
981 loc != uiaa.uiaa_configno)
982 continue;
983 loc = locators[USBIFIFCF_INTERFACE];
984 if (loc != USBIFIFCF_INTERFACE_DEFAULT &&
985 loc != uiaa.uiaa_ifaceno)
986 continue;
987 }
988 KERNEL_LOCK(1, curlwp);
989 dv = config_found_sm_loc(parent, "usbifif", ilocs, &uiaa,
990 usbd_ifprint, config_stdsubmatch);
991 KERNEL_UNLOCK_ONE(curlwp);
992 if (!dv)
993 continue;
994
995 usbd_serialnumber(dv, dev);
996
997 /* claim */
998 ifaces[i] = NULL;
999 /* account for ifaces claimed by the driver behind our back */
1000 for (j = 0; j < nifaces; j++) {
1001
1002 if (!ifaces[j] && !dev->ud_subdevs[j]) {
1003 DPRINTF("interface %jd claimed behind our back",
1004 j, 0, 0, 0);
1005 dev->ud_subdevs[j] = dv;
1006 dev->ud_nifaces_claimed++;
1007 }
1008 }
1009 }
1010
1011 kmem_free(ifaces, nifaces * sizeof(*ifaces));
1012 return USBD_NORMAL_COMPLETION;
1013 }
1014
1015 usbd_status
1016 usbd_probe_and_attach(device_t parent, struct usbd_device *dev,
1017 int port, int addr)
1018 {
1019 USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
1020 usb_device_descriptor_t *dd = &dev->ud_ddesc;
1021 int confi, nifaces;
1022 usbd_status err;
1023
1024 /* First try with device specific drivers. */
1025 DPRINTF("trying device specific drivers", 0, 0, 0, 0);
1026 err = usbd_attachwholedevice(parent, dev, port, 0);
1027 if (dev->ud_nifaces_claimed || err)
1028 return err;
1029 DPRINTF("no device specific driver found", 0, 0, 0, 0);
1030
1031 DPRINTF("looping over %jd configurations", dd->bNumConfigurations,
1032 0, 0, 0);
1033 for (confi = 0; confi < dd->bNumConfigurations; confi++) {
1034 DPRINTFN(1, "trying config idx=%jd", confi, 0, 0, 0);
1035 err = usbd_set_config_index(dev, confi, 1);
1036 if (err) {
1037 DPRINTF("port %jd, set config at addr %jd failed, "
1038 "error=%d", port, addr, err, 0);
1039 printf("%s: port %d, set config at addr %d failed\n",
1040 device_xname(parent), port, addr);
1041 return err;
1042 }
1043 nifaces = dev->ud_cdesc->bNumInterface;
1044 dev->ud_subdevs = kmem_zalloc(nifaces * sizeof(device_t),
1045 KM_SLEEP);
1046 if (dev->ud_subdevs == NULL)
1047 return USBD_NOMEM;
1048 dev->ud_subdevlen = nifaces;
1049
1050 err = usbd_attachinterfaces(parent, dev, port, NULL);
1051
1052 if (!dev->ud_nifaces_claimed) {
1053 kmem_free(dev->ud_subdevs,
1054 dev->ud_subdevlen * sizeof(device_t));
1055 dev->ud_subdevs = 0;
1056 dev->ud_subdevlen = 0;
1057 }
1058 if (dev->ud_nifaces_claimed || err)
1059 return err;
1060 }
1061 /* No interfaces were attached in any of the configurations. */
1062
1063 if (dd->bNumConfigurations > 1) /* don't change if only 1 config */
1064 usbd_set_config_index(dev, 0, 0);
1065
1066 DPRINTF("no interface drivers found", 0, 0, 0, 0);
1067
1068 /* Finally try the generic driver. */
1069 err = usbd_attachwholedevice(parent, dev, port, 1);
1070
1071 /*
1072 * The generic attach failed, but leave the device as it is.
1073 * We just did not find any drivers, that's all. The device is
1074 * fully operational and not harming anyone.
1075 */
1076 DPRINTF("generic attach failed", 0, 0, 0, 0);
1077
1078 return USBD_NORMAL_COMPLETION;
1079 }
1080
1081 /**
1082 * Called from uhub_rescan(). usbd_new_device() for the target dev must be
1083 * called before calling this.
1084 */
1085 usbd_status
1086 usbd_reattach_device(device_t parent, struct usbd_device *dev,
1087 int port, const int *locators)
1088 {
1089 int i, loc;
1090
1091 if (locators != NULL) {
1092 loc = locators[USBIFIFCF_PORT];
1093 if (loc != USBIFIFCF_PORT_DEFAULT && loc != port)
1094 return USBD_NORMAL_COMPLETION;
1095 loc = locators[USBIFIFCF_VENDOR];
1096 if (loc != USBIFIFCF_VENDOR_DEFAULT &&
1097 loc != UGETW(dev->ud_ddesc.idVendor))
1098 return USBD_NORMAL_COMPLETION;
1099 loc = locators[USBIFIFCF_PRODUCT];
1100 if (loc != USBIFIFCF_PRODUCT_DEFAULT &&
1101 loc != UGETW(dev->ud_ddesc.idProduct))
1102 return USBD_NORMAL_COMPLETION;
1103 loc = locators[USBIFIFCF_RELEASE];
1104 if (loc != USBIFIFCF_RELEASE_DEFAULT &&
1105 loc != UGETW(dev->ud_ddesc.bcdDevice))
1106 return USBD_NORMAL_COMPLETION;
1107 }
1108 if (dev->ud_subdevlen == 0) {
1109 /* XXX: check USBIFIFCF_CONFIGURATION and
1110 * USBIFIFCF_INTERFACE too */
1111 return usbd_probe_and_attach(parent, dev, port, dev->ud_addr);
1112 } else if (dev->ud_subdevlen != dev->ud_cdesc->bNumInterface) {
1113 /* device-specific or generic driver is already attached. */
1114 return USBD_NORMAL_COMPLETION;
1115 }
1116 /* Does the device have unconfigured interfaces? */
1117 for (i = 0; i < dev->ud_subdevlen; i++) {
1118 if (dev->ud_subdevs[i] == NULL) {
1119 break;
1120 }
1121 }
1122 if (i >= dev->ud_subdevlen)
1123 return USBD_NORMAL_COMPLETION;
1124 return usbd_attachinterfaces(parent, dev, port, locators);
1125 }
1126
1127 /*
1128 * Get the first 8 bytes of the device descriptor.
1129 * Do as Windows does: try to read 64 bytes -- there are devices which
1130 * recognize the initial descriptor fetch (before the control endpoint's
1131 * MaxPacketSize is known by the host) by exactly this length.
1132 */
1133 usbd_status
1134 usbd_get_initial_ddesc(struct usbd_device *dev, usb_device_descriptor_t *desc)
1135 {
1136 USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
1137 usb_device_request_t req;
1138 char buf[64];
1139 int res, actlen;
1140
1141 DPRINTFN(5, "dev %#jx", (uintptr_t)dev, 0, 0, 0);
1142
1143 req.bmRequestType = UT_READ_DEVICE;
1144 req.bRequest = UR_GET_DESCRIPTOR;
1145 USETW2(req.wValue, UDESC_DEVICE, 0);
1146 USETW(req.wIndex, 0);
1147 USETW(req.wLength, 64);
1148 res = usbd_do_request_flags(dev, &req, buf, USBD_SHORT_XFER_OK,
1149 &actlen, USBD_DEFAULT_TIMEOUT);
1150 if (res)
1151 return res;
1152 if (actlen < 8)
1153 return USBD_SHORT_XFER;
1154 memcpy(desc, buf, 8);
1155 return USBD_NORMAL_COMPLETION;
1156 }
1157
1158 /*
1159 * Called when a new device has been put in the powered state,
1160 * but not yet in the addressed state.
1161 * Get initial descriptor, set the address, get full descriptor,
1162 * and attach a driver.
1163 */
1164 usbd_status
1165 usbd_new_device(device_t parent, struct usbd_bus *bus, int depth, int speed,
1166 int port, struct usbd_port *up)
1167 {
1168 USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
1169 struct usbd_device *dev, *adev;
1170 struct usbd_device *hub;
1171 usb_device_descriptor_t *dd;
1172 usb_port_status_t ps;
1173 usbd_status err;
1174 int addr;
1175 int i;
1176 int p;
1177
1178 DPRINTF("bus=%#jx port=%jd depth=%jd speed=%jd",
1179 (uintptr_t)bus, port, depth, speed);
1180
1181 if (bus->ub_methods->ubm_newdev != NULL)
1182 return (bus->ub_methods->ubm_newdev)(parent, bus, depth, speed,
1183 port, up);
1184
1185 addr = usbd_getnewaddr(bus);
1186 if (addr < 0) {
1187 printf("%s: No free USB addresses, new device ignored.\n",
1188 device_xname(bus->ub_usbctl));
1189 return USBD_NO_ADDR;
1190 }
1191
1192 dev = kmem_zalloc(sizeof(*dev), KM_SLEEP);
1193 dev->ud_bus = bus;
1194
1195 /* Set up default endpoint handle. */
1196 dev->ud_ep0.ue_edesc = &dev->ud_ep0desc;
1197
1198 /* Set up default endpoint descriptor. */
1199 dev->ud_ep0desc.bLength = USB_ENDPOINT_DESCRIPTOR_SIZE;
1200 dev->ud_ep0desc.bDescriptorType = UDESC_ENDPOINT;
1201 dev->ud_ep0desc.bEndpointAddress = USB_CONTROL_ENDPOINT;
1202 dev->ud_ep0desc.bmAttributes = UE_CONTROL;
1203 /*
1204 * temporary, will be fixed after first descriptor fetch
1205 * (which uses 64 bytes so it shouldn't be less),
1206 * highspeed devices must support 64 byte packets anyway
1207 */
1208 if (speed == USB_SPEED_HIGH || speed == USB_SPEED_FULL)
1209 USETW(dev->ud_ep0desc.wMaxPacketSize, 64);
1210 else
1211 USETW(dev->ud_ep0desc.wMaxPacketSize, USB_MAX_IPACKET);
1212
1213 dev->ud_ep0desc.bInterval = 0;
1214
1215 /* doesn't matter, just don't leave it uninitialized */
1216 dev->ud_ep0.ue_toggle = 0;
1217
1218 dev->ud_quirks = &usbd_no_quirk;
1219 dev->ud_addr = USB_START_ADDR;
1220 dev->ud_ddesc.bMaxPacketSize = 0;
1221 dev->ud_depth = depth;
1222 dev->ud_powersrc = up;
1223 dev->ud_myhub = up->up_parent;
1224
1225 up->up_dev = dev;
1226
1227 /* Locate port on upstream high speed hub */
1228 for (adev = dev, hub = up->up_parent;
1229 hub != NULL && hub->ud_speed != USB_SPEED_HIGH;
1230 adev = hub, hub = hub->ud_myhub)
1231 ;
1232 if (hub) {
1233 for (p = 1; p <= hub->ud_hub->uh_hubdesc.bNbrPorts; p++) {
1234 if (hub->ud_hub->uh_ports[p - 1].up_dev == adev) {
1235 dev->ud_myhsport =
1236 &hub->ud_hub->uh_ports[p - 1];
1237 goto found;
1238 }
1239 }
1240 panic("usbd_new_device: cannot find HS port");
1241 found:
1242 DPRINTFN(1, "high speed port %jd", p, 0, 0, 0);
1243 } else {
1244 dev->ud_myhsport = NULL;
1245 }
1246 dev->ud_speed = speed;
1247 dev->ud_langid = USBD_NOLANG;
1248 dev->ud_cookie.cookie = ++usb_cookie_no;
1249
1250 /* Establish the default pipe. */
1251 err = usbd_setup_pipe_flags(dev, 0, &dev->ud_ep0, USBD_DEFAULT_INTERVAL,
1252 &dev->ud_pipe0, USBD_MPSAFE);
1253 if (err) {
1254 usbd_remove_device(dev, up);
1255 return err;
1256 }
1257
1258 dd = &dev->ud_ddesc;
1259 /* Try a few times in case the device is slow (i.e. outside specs.) */
1260 for (i = 0; i < 10; i++) {
1261 /* Get the first 8 bytes of the device descriptor. */
1262 err = usbd_get_initial_ddesc(dev, dd);
1263 if (!err)
1264 break;
1265 /*
1266 * The root hub can never fail to give the initial descriptor,
1267 * but assert it just in case.
1268 */
1269 KASSERT(up->up_parent);
1270 usbd_delay_ms(dev, 200);
1271 if ((i & 3) == 3)
1272 usbd_reset_port(up->up_parent, port, &ps);
1273 }
1274 if (err) {
1275 DPRINTF("addr=%jd, getting first desc failed: %jd", addr, err,
1276 0, 0);
1277 usbd_remove_device(dev, up);
1278 return err;
1279 }
1280
1281 /* Windows resets the port here, do likewise */
1282 if (up->up_parent)
1283 usbd_reset_port(up->up_parent, port, &ps);
1284
1285 if (speed == USB_SPEED_HIGH) {
1286 /* Max packet size must be 64 (sec 5.5.3). */
1287 if (dd->bMaxPacketSize != USB_2_MAX_CTRL_PACKET) {
1288 #ifdef DIAGNOSTIC
1289 printf("usbd_new_device: addr=%d bad max packet "
1290 "size=%d. adjusting to %d.\n",
1291 addr, dd->bMaxPacketSize, USB_2_MAX_CTRL_PACKET);
1292 #endif
1293 dd->bMaxPacketSize = USB_2_MAX_CTRL_PACKET;
1294 }
1295 }
1296
1297 DPRINTF("adding unit addr=%jd, rev=%02jx, class=%jd, subclass=%jd",
1298 addr, UGETW(dd->bcdUSB), dd->bDeviceClass, dd->bDeviceSubClass);
1299 DPRINTF("protocol=%jd, maxpacket=%jd, len=%jd, speed=%jd",
1300 dd->bDeviceProtocol, dd->bMaxPacketSize, dd->bLength, dev->ud_speed);
1301
1302 if (dd->bDescriptorType != UDESC_DEVICE) {
1303 /* Illegal device descriptor */
1304 DPRINTF("illegal descriptor %jd", dd->bDescriptorType, 0, 0, 0);
1305 usbd_remove_device(dev, up);
1306 return USBD_INVAL;
1307 }
1308
1309 if (dd->bLength < USB_DEVICE_DESCRIPTOR_SIZE) {
1310 DPRINTF("bad length %jd", dd->bLength, 0, 0, 0);
1311 usbd_remove_device(dev, up);
1312 return USBD_INVAL;
1313 }
1314
1315 USETW(dev->ud_ep0desc.wMaxPacketSize, dd->bMaxPacketSize);
1316
1317 /* Re-establish the default pipe with the new MPS. */
1318 usbd_kill_pipe(dev->ud_pipe0);
1319 err = usbd_setup_pipe_flags(dev, 0, &dev->ud_ep0, USBD_DEFAULT_INTERVAL,
1320 &dev->ud_pipe0, USBD_MPSAFE);
1321 if (err) {
1322 DPRINTF("setup default pipe failed err %jd", err, 0, 0, 0);
1323 usbd_remove_device(dev, up);
1324 return err;
1325 }
1326
1327 /* Set the address */
1328 DPRINTFN(5, "setting device address=%jd", addr, 0, 0, 0);
1329 err = usbd_set_address(dev, addr);
1330 if (err) {
1331 DPRINTF("set address %jd failed, err = %jd", addr, err, 0, 0);
1332 err = USBD_SET_ADDR_FAILED;
1333 usbd_remove_device(dev, up);
1334 return err;
1335 }
1336
1337 /* Allow device time to set new address */
1338 usbd_delay_ms(dev, USB_SET_ADDRESS_SETTLE);
1339 dev->ud_addr = addr; /* new device address now */
1340 bus->ub_devices[usb_addr2dindex(addr)] = dev;
1341
1342 /* Re-establish the default pipe with the new address. */
1343 usbd_kill_pipe(dev->ud_pipe0);
1344 err = usbd_setup_pipe_flags(dev, 0, &dev->ud_ep0, USBD_DEFAULT_INTERVAL,
1345 &dev->ud_pipe0, USBD_MPSAFE);
1346 if (err) {
1347 DPRINTF("setup default pipe failed, err = %jd", err, 0, 0, 0);
1348 usbd_remove_device(dev, up);
1349 return err;
1350 }
1351
1352 err = usbd_reload_device_desc(dev);
1353 if (err) {
1354 DPRINTF("addr=%jd, getting full desc failed, err = %jd", addr,
1355 err, 0, 0);
1356 usbd_remove_device(dev, up);
1357 return err;
1358 }
1359
1360 /* Assume 100mA bus powered for now. Changed when configured. */
1361 dev->ud_power = USB_MIN_POWER;
1362 dev->ud_selfpowered = 0;
1363
1364 DPRINTF("new dev (addr %jd), dev=%#jx, parent=%#jx",
1365 addr, (uintptr_t)dev, (uintptr_t)parent, 0);
1366
1367 usbd_get_device_strings(dev);
1368
1369 usbd_add_dev_event(USB_EVENT_DEVICE_ATTACH, dev);
1370
1371 if (port == 0) { /* root hub */
1372 KASSERT(addr == 1);
1373 usbd_attach_roothub(parent, dev);
1374 return USBD_NORMAL_COMPLETION;
1375 }
1376
1377 err = usbd_probe_and_attach(parent, dev, port, addr);
1378 if (err) {
1379 usbd_remove_device(dev, up);
1380 return err;
1381 }
1382
1383 return USBD_NORMAL_COMPLETION;
1384 }
1385
1386 usbd_status
1387 usbd_reload_device_desc(struct usbd_device *dev)
1388 {
1389 USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
1390 usb_device_descriptor_t *udd = &dev->ud_ddesc;
1391 usbd_status err;
1392
1393 /* Get the full device descriptor. */
1394 err = usbd_get_device_desc(dev, udd);
1395 if (err)
1396 return err;
1397
1398 DPRINTFN(15, "bLength %5ju", udd->bLength, 0, 0, 0);
1399 DPRINTFN(15, "bDescriptorType %5ju", udd->bDescriptorType, 0, 0, 0);
1400 DPRINTFN(15, "bcdUSB %2jx.%02jx", udd->bcdUSB[1],
1401 udd->bcdUSB[0], 0, 0);
1402 DPRINTFN(15, "bDeviceClass %5ju", udd->bDeviceClass, 0, 0, 0);
1403 DPRINTFN(15, "bDeviceSubClass %5ju", udd->bDeviceSubClass, 0, 0, 0);
1404 DPRINTFN(15, "bDeviceProtocol %5ju", udd->bDeviceProtocol, 0, 0, 0);
1405 DPRINTFN(15, "bMaxPacketSize0 %5ju", udd->bMaxPacketSize, 0, 0, 0);
1406 DPRINTFN(15, "idVendor %#02jx %#02jx",
1407 udd->idVendor[0],
1408 udd->idVendor[1], 0, 0);
1409 DPRINTFN(15, "idProduct %#02jx %#02jx",
1410 udd->idProduct[0],
1411 udd->idProduct[1], 0, 0);
1412 DPRINTFN(15, "bcdDevice %2jx.%02jx", udd->bcdDevice[1],
1413 udd->bcdDevice[0], 0, 0);
1414 DPRINTFN(15, "iManufacturer %5ju", udd->iManufacturer, 0, 0, 0);
1415 DPRINTFN(15, "iProduct %5ju", udd->iProduct, 0, 0, 0);
1416 DPRINTFN(15, "iSerial %5ju", udd->iSerialNumber, 0, 0, 0);
1417 DPRINTFN(15, "bNumConfigurations %5ju", udd->bNumConfigurations, 0, 0,
1418 0);
1419
1420 /* Figure out what's wrong with this device. */
1421 dev->ud_quirks = usbd_find_quirk(udd);
1422
1423 return USBD_NORMAL_COMPLETION;
1424 }
1425
1426 void
1427 usbd_remove_device(struct usbd_device *dev, struct usbd_port *up)
1428 {
1429
1430 USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
1431
1432 DPRINTF("dev %#jx up %#jx", (uintptr_t)dev, (uintptr_t)up, 0, 0);
1433
1434 if (dev->ud_pipe0 != NULL)
1435 usbd_kill_pipe(dev->ud_pipe0);
1436 up->up_dev = NULL;
1437 dev->ud_bus->ub_devices[usb_addr2dindex(dev->ud_addr)] = NULL;
1438
1439 kmem_free(dev, sizeof(*dev));
1440 }
1441
1442 int
1443 usbd_print(void *aux, const char *pnp)
1444 {
1445 struct usb_attach_arg *uaa = aux;
1446
1447 if (pnp) {
1448 #define USB_DEVINFO 1024
1449 char *devinfo;
1450 if (!uaa->uaa_usegeneric)
1451 return QUIET;
1452 devinfo = kmem_alloc(USB_DEVINFO, KM_SLEEP);
1453 usbd_devinfo(uaa->uaa_device, 1, devinfo, USB_DEVINFO);
1454 aprint_normal("%s, %s", devinfo, pnp);
1455 kmem_free(devinfo, USB_DEVINFO);
1456 }
1457 aprint_normal(" port %d", uaa->uaa_port);
1458 #if 0
1459 /*
1460 * It gets very crowded with these locators on the attach line.
1461 * They are not really needed since they are printed in the clear
1462 * by each driver.
1463 */
1464 if (uaa->uaa_vendor != UHUB_UNK_VENDOR)
1465 aprint_normal(" vendor %#04x", uaa->uaa_vendor);
1466 if (uaa->uaa_product != UHUB_UNK_PRODUCT)
1467 aprint_normal(" product %#04x", uaa->uaa_product);
1468 if (uaa->uaa_release != UHUB_UNK_RELEASE)
1469 aprint_normal(" release %#04x", uaa->uaa_release);
1470 #endif
1471 return UNCONF;
1472 }
1473
1474 int
1475 usbd_ifprint(void *aux, const char *pnp)
1476 {
1477 struct usbif_attach_arg *uiaa = aux;
1478
1479 if (pnp)
1480 return QUIET;
1481 aprint_normal(" port %d", uiaa->uiaa_port);
1482 aprint_normal(" configuration %d", uiaa->uiaa_configno);
1483 aprint_normal(" interface %d", uiaa->uiaa_ifaceno);
1484 #if 0
1485 /*
1486 * It gets very crowded with these locators on the attach line.
1487 * They are not really needed since they are printed in the clear
1488 * by each driver.
1489 */
1490 if (uaa->uaa_vendor != UHUB_UNK_VENDOR)
1491 aprint_normal(" vendor %#04x", uaa->uaa_vendor);
1492 if (uaa->uaa_product != UHUB_UNK_PRODUCT)
1493 aprint_normal(" product %#04x", uaa->uaa_product);
1494 if (uaa->uaa_release != UHUB_UNK_RELEASE)
1495 aprint_normal(" release %#04x", uaa->uaa_release);
1496 #endif
1497 return UNCONF;
1498 }
1499
1500 void
1501 usbd_fill_deviceinfo(struct usbd_device *dev, struct usb_device_info *di,
1502 int usedev)
1503 {
1504 struct usbd_port *p;
1505 int i, j, err;
1506
1507 di->udi_bus = device_unit(dev->ud_bus->ub_usbctl);
1508 di->udi_addr = dev->ud_addr;
1509 di->udi_cookie = dev->ud_cookie;
1510 usbd_devinfo_vp(dev, di->udi_vendor, sizeof(di->udi_vendor),
1511 di->udi_product, sizeof(di->udi_product), usedev, 1);
1512 usbd_printBCD(di->udi_release, sizeof(di->udi_release),
1513 UGETW(dev->ud_ddesc.bcdDevice));
1514 if (usedev) {
1515 usbd_status uerr = usbd_get_string(dev,
1516 dev->ud_ddesc.iSerialNumber, di->udi_serial);
1517 if (uerr != USBD_NORMAL_COMPLETION) {
1518 di->udi_serial[0] = '\0';
1519 } else {
1520 usbd_trim_spaces(di->udi_serial);
1521 }
1522 } else {
1523 di->udi_serial[0] = '\0';
1524 if (dev->ud_serial) {
1525 strlcpy(di->udi_serial, dev->ud_serial,
1526 sizeof(di->udi_serial));
1527 }
1528 }
1529
1530 di->udi_vendorNo = UGETW(dev->ud_ddesc.idVendor);
1531 di->udi_productNo = UGETW(dev->ud_ddesc.idProduct);
1532 di->udi_releaseNo = UGETW(dev->ud_ddesc.bcdDevice);
1533 di->udi_class = dev->ud_ddesc.bDeviceClass;
1534 di->udi_subclass = dev->ud_ddesc.bDeviceSubClass;
1535 di->udi_protocol = dev->ud_ddesc.bDeviceProtocol;
1536 di->udi_config = dev->ud_config;
1537 di->udi_power = dev->ud_selfpowered ? 0 : dev->ud_power;
1538 di->udi_speed = dev->ud_speed;
1539
1540 if (dev->ud_subdevlen > 0) {
1541 for (i = 0, j = 0; i < dev->ud_subdevlen &&
1542 j < USB_MAX_DEVNAMES; i++) {
1543 if (!dev->ud_subdevs[i])
1544 continue;
1545 strncpy(di->udi_devnames[j],
1546 device_xname(dev->ud_subdevs[i]), USB_MAX_DEVNAMELEN);
1547 di->udi_devnames[j][USB_MAX_DEVNAMELEN-1] = '\0';
1548 j++;
1549 }
1550 } else {
1551 j = 0;
1552 }
1553 for (/* j is set */; j < USB_MAX_DEVNAMES; j++)
1554 di->udi_devnames[j][0] = 0; /* empty */
1555
1556 if (!dev->ud_hub) {
1557 di->udi_nports = 0;
1558 return;
1559 }
1560
1561 const int nports = dev->ud_hub->uh_hubdesc.bNbrPorts;
1562 for (i = 1; i <= __arraycount(di->udi_ports) && i <= nports; i++) {
1563 p = &dev->ud_hub->uh_ports[i - 1];
1564 if (p->up_dev)
1565 err = p->up_dev->ud_addr;
1566 else {
1567 const int s = UGETW(p->up_status.wPortStatus);
1568 const bool sshub_p = USB_IS_SS(dev->ud_speed);
1569 if (s & UPS_PORT_ENABLED)
1570 err = USB_PORT_ENABLED;
1571 else if (s & UPS_SUSPEND)
1572 err = USB_PORT_SUSPENDED;
1573 /*
1574 * Note: UPS_PORT_POWER_SS is available only
1575 * on 3.x, and UPS_PORT_POWER is available
1576 * only on 2.0 or 1.1.
1577 */
1578 else if (sshub_p && (s & UPS_PORT_POWER_SS))
1579 err = USB_PORT_POWERED;
1580 else if (!sshub_p && (s & UPS_PORT_POWER))
1581 err = USB_PORT_POWERED;
1582 else
1583 err = USB_PORT_DISABLED;
1584 }
1585 di->udi_ports[i - 1] = err;
1586 }
1587 di->udi_nports = nports;
1588 }
1589
1590 #ifdef COMPAT_30
1591 void
1592 usbd_fill_deviceinfo_old(struct usbd_device *dev, struct usb_device_info_old *di,
1593 int usedev)
1594 {
1595 struct usbd_port *p;
1596 int i, j, err;
1597
1598 di->udi_bus = device_unit(dev->ud_bus->ub_usbctl);
1599 di->udi_addr = dev->ud_addr;
1600 di->udi_cookie = dev->ud_cookie;
1601 usbd_devinfo_vp(dev, di->udi_vendor, sizeof(di->udi_vendor),
1602 di->udi_product, sizeof(di->udi_product), usedev, 0);
1603 usbd_printBCD(di->udi_release, sizeof(di->udi_release),
1604 UGETW(dev->ud_ddesc.bcdDevice));
1605 di->udi_vendorNo = UGETW(dev->ud_ddesc.idVendor);
1606 di->udi_productNo = UGETW(dev->ud_ddesc.idProduct);
1607 di->udi_releaseNo = UGETW(dev->ud_ddesc.bcdDevice);
1608 di->udi_class = dev->ud_ddesc.bDeviceClass;
1609 di->udi_subclass = dev->ud_ddesc.bDeviceSubClass;
1610 di->udi_protocol = dev->ud_ddesc.bDeviceProtocol;
1611 di->udi_config = dev->ud_config;
1612 di->udi_power = dev->ud_selfpowered ? 0 : dev->ud_power;
1613 di->udi_speed = dev->ud_speed;
1614
1615 if (dev->ud_subdevlen > 0) {
1616 for (i = 0, j = 0; i < dev->ud_subdevlen &&
1617 j < USB_MAX_DEVNAMES; i++) {
1618 if (!dev->ud_subdevs[i])
1619 continue;
1620 strncpy(di->udi_devnames[j],
1621 device_xname(dev->ud_subdevs[i]), USB_MAX_DEVNAMELEN);
1622 di->udi_devnames[j][USB_MAX_DEVNAMELEN-1] = '\0';
1623 j++;
1624 }
1625 } else {
1626 j = 0;
1627 }
1628 for (/* j is set */; j < USB_MAX_DEVNAMES; j++)
1629 di->udi_devnames[j][0] = 0; /* empty */
1630
1631 if (!dev->ud_hub) {
1632 di->udi_nports = 0;
1633 return;
1634 }
1635
1636 const int nports = dev->ud_hub->uh_hubdesc.bNbrPorts;
1637 for (i = 1; i <= __arraycount(di->udi_ports) && i <= nports;
1638 i++) {
1639 p = &dev->ud_hub->uh_ports[i - 1];
1640 if (p->up_dev)
1641 err = p->up_dev->ud_addr;
1642 else {
1643 const int s = UGETW(p->up_status.wPortStatus);
1644 if (s & UPS_PORT_ENABLED)
1645 err = USB_PORT_ENABLED;
1646 else if (s & UPS_SUSPEND)
1647 err = USB_PORT_SUSPENDED;
1648 else if (s & UPS_PORT_POWER)
1649 err = USB_PORT_POWERED;
1650 else
1651 err = USB_PORT_DISABLED;
1652 }
1653 di->udi_ports[i - 1] = err;
1654 }
1655 di->udi_nports = nports;
1656 }
1657 #endif
1658
1659
1660 void
1661 usb_free_device(struct usbd_device *dev)
1662 {
1663 int ifcidx, nifc;
1664
1665 if (dev->ud_pipe0 != NULL)
1666 usbd_kill_pipe(dev->ud_pipe0);
1667 if (dev->ud_ifaces != NULL) {
1668 nifc = dev->ud_cdesc->bNumInterface;
1669 for (ifcidx = 0; ifcidx < nifc; ifcidx++)
1670 usbd_free_iface_data(dev, ifcidx);
1671 kmem_free(dev->ud_ifaces,
1672 nifc * sizeof(struct usbd_interface));
1673 }
1674 if (dev->ud_cdesc != NULL)
1675 kmem_free(dev->ud_cdesc, UGETW(dev->ud_cdesc->wTotalLength));
1676 if (dev->ud_bdesc != NULL)
1677 kmem_free(dev->ud_bdesc, UGETW(dev->ud_bdesc->wTotalLength));
1678 if (dev->ud_subdevlen > 0) {
1679 kmem_free(dev->ud_subdevs,
1680 dev->ud_subdevlen * sizeof(device_t));
1681 dev->ud_subdevlen = 0;
1682 }
1683 if (dev->ud_vendor) {
1684 kmem_free(dev->ud_vendor, USB_MAX_ENCODED_STRING_LEN);
1685 }
1686 if (dev->ud_product) {
1687 kmem_free(dev->ud_product, USB_MAX_ENCODED_STRING_LEN);
1688 }
1689 if (dev->ud_serial) {
1690 kmem_free(dev->ud_serial, USB_MAX_ENCODED_STRING_LEN);
1691 }
1692 kmem_free(dev, sizeof(*dev));
1693 }
1694
1695 /*
1696 * The general mechanism for detaching drivers works as follows: Each
1697 * driver is responsible for maintaining a reference count on the
1698 * number of outstanding references to its softc (e.g. from
1699 * processing hanging in a read or write). The detach method of the
1700 * driver decrements this counter and flags in the softc that the
1701 * driver is dying and then wakes any sleepers. It then sleeps on the
1702 * softc. Each place that can sleep must maintain the reference
1703 * count. When the reference count drops to -1 (0 is the normal value
1704 * of the reference count) the a wakeup on the softc is performed
1705 * signaling to the detach waiter that all references are gone.
1706 */
1707
1708 /*
1709 * Called from process context when we discover that a port has
1710 * been disconnected.
1711 */
1712 int
1713 usb_disconnect_port(struct usbd_port *up, device_t parent, int flags)
1714 {
1715 USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
1716 struct usbd_device *dev = up->up_dev;
1717 device_t subdev;
1718 char subdevname[16];
1719 const char *hubname = device_xname(parent);
1720 int i, rc;
1721
1722 DPRINTFN(3, "up=%#jx dev=%#jx port=%jd", (uintptr_t)up, (uintptr_t)dev,
1723 up->up_portno, 0);
1724
1725 if (dev == NULL) {
1726 return 0;
1727 }
1728
1729 if (dev->ud_subdevlen > 0) {
1730 DPRINTFN(3, "disconnect subdevs", 0, 0, 0, 0);
1731 for (i = 0; i < dev->ud_subdevlen; i++) {
1732 if ((subdev = dev->ud_subdevs[i]) == NULL)
1733 continue;
1734 strlcpy(subdevname, device_xname(subdev),
1735 sizeof(subdevname));
1736 KERNEL_LOCK(1, curlwp);
1737 rc = config_detach(subdev, flags);
1738 KERNEL_UNLOCK_ONE(curlwp);
1739 if (rc != 0)
1740 return rc;
1741 printf("%s: at %s", subdevname, hubname);
1742 if (up->up_portno != 0)
1743 printf(" port %d", up->up_portno);
1744 printf(" (addr %d) disconnected\n", dev->ud_addr);
1745 }
1746 KASSERT(!dev->ud_nifaces_claimed);
1747 }
1748
1749 mutex_enter(dev->ud_bus->ub_lock);
1750 dev->ud_bus->ub_devices[usb_addr2dindex(dev->ud_addr)] = NULL;
1751 up->up_dev = NULL;
1752 mutex_exit(dev->ud_bus->ub_lock);
1753
1754 usbd_add_dev_event(USB_EVENT_DEVICE_DETACH, dev);
1755
1756 usb_free_device(dev);
1757
1758 return 0;
1759 }
1760