usb_request.c revision 241987
1184610Salfred/* $FreeBSD: head/sys/dev/usb/usb_request.c 241987 2012-10-24 07:23:29Z hselasky $ */
2184610Salfred/*-
3184610Salfred * Copyright (c) 1998 The NetBSD Foundation, Inc. All rights reserved.
4184610Salfred * Copyright (c) 1998 Lennart Augustsson. All rights reserved.
5184610Salfred * Copyright (c) 2008 Hans Petter Selasky. All rights reserved.
6184610Salfred *
7184610Salfred * Redistribution and use in source and binary forms, with or without
8184610Salfred * modification, are permitted provided that the following conditions
9184610Salfred * are met:
10184610Salfred * 1. Redistributions of source code must retain the above copyright
11184610Salfred *    notice, this list of conditions and the following disclaimer.
12184610Salfred * 2. Redistributions in binary form must reproduce the above copyright
13184610Salfred *    notice, this list of conditions and the following disclaimer in the
14184610Salfred *    documentation and/or other materials provided with the distribution.
15184610Salfred *
16184610Salfred * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
17184610Salfred * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18184610Salfred * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19184610Salfred * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
20184610Salfred * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21184610Salfred * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22184610Salfred * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23184610Salfred * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24184610Salfred * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25184610Salfred * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26184610Salfred * SUCH DAMAGE.
27190754Sthompsa */
28184610Salfred
29194677Sthompsa#include <sys/stdint.h>
30194677Sthompsa#include <sys/stddef.h>
31194677Sthompsa#include <sys/param.h>
32194677Sthompsa#include <sys/queue.h>
33194677Sthompsa#include <sys/types.h>
34194677Sthompsa#include <sys/systm.h>
35194677Sthompsa#include <sys/kernel.h>
36194677Sthompsa#include <sys/bus.h>
37194677Sthompsa#include <sys/module.h>
38194677Sthompsa#include <sys/lock.h>
39194677Sthompsa#include <sys/mutex.h>
40194677Sthompsa#include <sys/condvar.h>
41194677Sthompsa#include <sys/sysctl.h>
42194677Sthompsa#include <sys/sx.h>
43194677Sthompsa#include <sys/unistd.h>
44194677Sthompsa#include <sys/callout.h>
45194677Sthompsa#include <sys/malloc.h>
46194677Sthompsa#include <sys/priv.h>
47194677Sthompsa
48188942Sthompsa#include <dev/usb/usb.h>
49194677Sthompsa#include <dev/usb/usbdi.h>
50194677Sthompsa#include <dev/usb/usbdi_util.h>
51188942Sthompsa#include <dev/usb/usb_ioctl.h>
52188942Sthompsa#include <dev/usb/usbhid.h>
53184610Salfred
54194228Sthompsa#define	USB_DEBUG_VAR usb_debug
55184610Salfred
56188942Sthompsa#include <dev/usb/usb_core.h>
57188942Sthompsa#include <dev/usb/usb_busdma.h>
58188942Sthompsa#include <dev/usb/usb_request.h>
59188942Sthompsa#include <dev/usb/usb_process.h>
60188942Sthompsa#include <dev/usb/usb_transfer.h>
61188942Sthompsa#include <dev/usb/usb_debug.h>
62188942Sthompsa#include <dev/usb/usb_device.h>
63188942Sthompsa#include <dev/usb/usb_util.h>
64188942Sthompsa#include <dev/usb/usb_dynamic.h>
65184610Salfred
66188942Sthompsa#include <dev/usb/usb_controller.h>
67188942Sthompsa#include <dev/usb/usb_bus.h>
68184610Salfred#include <sys/ctype.h>
69184610Salfred
70225000Shselaskystatic int usb_no_cs_fail;
71225000Shselasky
72225000ShselaskySYSCTL_INT(_hw_usb, OID_AUTO, no_cs_fail, CTLFLAG_RW,
73225000Shselasky    &usb_no_cs_fail, 0, "USB clear stall failures are ignored, if set");
74225000Shselasky
75207077Sthompsa#ifdef USB_DEBUG
76208018Sthompsa#ifdef USB_REQ_DEBUG
77208018Sthompsa/* The following structures are used in connection to fault injection. */
78208018Sthompsastruct usb_ctrl_debug {
79208018Sthompsa	int bus_index;		/* target bus */
80208018Sthompsa	int dev_index;		/* target address */
81208018Sthompsa	int ds_fail;		/* fail data stage */
82240750Shselasky	int ss_fail;		/* fail status stage */
83208018Sthompsa	int ds_delay;		/* data stage delay in ms */
84208018Sthompsa	int ss_delay;		/* status stage delay in ms */
85208018Sthompsa	int bmRequestType_value;
86208018Sthompsa	int bRequest_value;
87208018Sthompsa};
88208018Sthompsa
89208018Sthompsastruct usb_ctrl_debug_bits {
90208018Sthompsa	uint16_t ds_delay;
91208018Sthompsa	uint16_t ss_delay;
92208018Sthompsa	uint8_t ds_fail:1;
93208018Sthompsa	uint8_t ss_fail:1;
94208018Sthompsa	uint8_t enabled:1;
95208018Sthompsa};
96208018Sthompsa
97208018Sthompsa/* The default is to disable fault injection. */
98208018Sthompsa
99208018Sthompsastatic struct usb_ctrl_debug usb_ctrl_debug = {
100208018Sthompsa	.bus_index = -1,
101208018Sthompsa	.dev_index = -1,
102208018Sthompsa	.bmRequestType_value = -1,
103208018Sthompsa	.bRequest_value = -1,
104208018Sthompsa};
105208018Sthompsa
106208018SthompsaSYSCTL_INT(_hw_usb, OID_AUTO, ctrl_bus_fail, CTLFLAG_RW,
107208018Sthompsa    &usb_ctrl_debug.bus_index, 0, "USB controller index to fail");
108208018SthompsaSYSCTL_INT(_hw_usb, OID_AUTO, ctrl_dev_fail, CTLFLAG_RW,
109208018Sthompsa    &usb_ctrl_debug.dev_index, 0, "USB device address to fail");
110208018SthompsaSYSCTL_INT(_hw_usb, OID_AUTO, ctrl_ds_fail, CTLFLAG_RW,
111208018Sthompsa    &usb_ctrl_debug.ds_fail, 0, "USB fail data stage");
112208018SthompsaSYSCTL_INT(_hw_usb, OID_AUTO, ctrl_ss_fail, CTLFLAG_RW,
113208018Sthompsa    &usb_ctrl_debug.ss_fail, 0, "USB fail status stage");
114208018SthompsaSYSCTL_INT(_hw_usb, OID_AUTO, ctrl_ds_delay, CTLFLAG_RW,
115208018Sthompsa    &usb_ctrl_debug.ds_delay, 0, "USB data stage delay in ms");
116208018SthompsaSYSCTL_INT(_hw_usb, OID_AUTO, ctrl_ss_delay, CTLFLAG_RW,
117208018Sthompsa    &usb_ctrl_debug.ss_delay, 0, "USB status stage delay in ms");
118208018SthompsaSYSCTL_INT(_hw_usb, OID_AUTO, ctrl_rt_fail, CTLFLAG_RW,
119208018Sthompsa    &usb_ctrl_debug.bmRequestType_value, 0, "USB bmRequestType to fail");
120208018SthompsaSYSCTL_INT(_hw_usb, OID_AUTO, ctrl_rv_fail, CTLFLAG_RW,
121208018Sthompsa    &usb_ctrl_debug.bRequest_value, 0, "USB bRequest to fail");
122208018Sthompsa
123184610Salfred/*------------------------------------------------------------------------*
124208018Sthompsa *	usbd_get_debug_bits
125208018Sthompsa *
126208018Sthompsa * This function is only useful in USB host mode.
127208018Sthompsa *------------------------------------------------------------------------*/
128208018Sthompsastatic void
129208018Sthompsausbd_get_debug_bits(struct usb_device *udev, struct usb_device_request *req,
130208018Sthompsa    struct usb_ctrl_debug_bits *dbg)
131208018Sthompsa{
132208018Sthompsa	int temp;
133208018Sthompsa
134208018Sthompsa	memset(dbg, 0, sizeof(*dbg));
135208018Sthompsa
136208018Sthompsa	/* Compute data stage delay */
137208018Sthompsa
138208018Sthompsa	temp = usb_ctrl_debug.ds_delay;
139208018Sthompsa	if (temp < 0)
140208018Sthompsa		temp = 0;
141208018Sthompsa	else if (temp > (16*1024))
142208018Sthompsa		temp = (16*1024);
143208018Sthompsa
144208018Sthompsa	dbg->ds_delay = temp;
145208018Sthompsa
146208018Sthompsa	/* Compute status stage delay */
147208018Sthompsa
148208018Sthompsa	temp = usb_ctrl_debug.ss_delay;
149208018Sthompsa	if (temp < 0)
150208018Sthompsa		temp = 0;
151208018Sthompsa	else if (temp > (16*1024))
152208018Sthompsa		temp = (16*1024);
153208018Sthompsa
154208018Sthompsa	dbg->ss_delay = temp;
155208018Sthompsa
156208018Sthompsa	/* Check if this control request should be failed */
157208018Sthompsa
158208018Sthompsa	if (usbd_get_bus_index(udev) != usb_ctrl_debug.bus_index)
159208018Sthompsa		return;
160208018Sthompsa
161208018Sthompsa	if (usbd_get_device_index(udev) != usb_ctrl_debug.dev_index)
162208018Sthompsa		return;
163208018Sthompsa
164208018Sthompsa	temp = usb_ctrl_debug.bmRequestType_value;
165208018Sthompsa
166208018Sthompsa	if ((temp != req->bmRequestType) && (temp >= 0) && (temp <= 255))
167208018Sthompsa		return;
168208018Sthompsa
169208018Sthompsa	temp = usb_ctrl_debug.bRequest_value;
170208018Sthompsa
171208018Sthompsa	if ((temp != req->bRequest) && (temp >= 0) && (temp <= 255))
172208018Sthompsa		return;
173208018Sthompsa
174208018Sthompsa	temp = usb_ctrl_debug.ds_fail;
175208018Sthompsa	if (temp)
176208018Sthompsa		dbg->ds_fail = 1;
177208018Sthompsa
178208018Sthompsa	temp = usb_ctrl_debug.ss_fail;
179208018Sthompsa	if (temp)
180208018Sthompsa		dbg->ss_fail = 1;
181208018Sthompsa
182208018Sthompsa	dbg->enabled = 1;
183208018Sthompsa}
184208018Sthompsa#endif	/* USB_REQ_DEBUG */
185208018Sthompsa#endif	/* USB_DEBUG */
186208018Sthompsa
187208018Sthompsa/*------------------------------------------------------------------------*
188194228Sthompsa *	usbd_do_request_callback
189184610Salfred *
190184610Salfred * This function is the USB callback for generic USB Host control
191184610Salfred * transfers.
192184610Salfred *------------------------------------------------------------------------*/
193184610Salfredvoid
194194677Sthompsausbd_do_request_callback(struct usb_xfer *xfer, usb_error_t error)
195184610Salfred{
196184610Salfred	;				/* workaround for a bug in "indent" */
197184610Salfred
198184610Salfred	DPRINTF("st=%u\n", USB_GET_STATE(xfer));
199184610Salfred
200184610Salfred	switch (USB_GET_STATE(xfer)) {
201184610Salfred	case USB_ST_SETUP:
202194228Sthompsa		usbd_transfer_submit(xfer);
203184610Salfred		break;
204184610Salfred	default:
205207079Sthompsa		cv_signal(&xfer->xroot->udev->ctrlreq_cv);
206184610Salfred		break;
207184610Salfred	}
208184610Salfred}
209184610Salfred
210184610Salfred/*------------------------------------------------------------------------*
211194228Sthompsa *	usb_do_clear_stall_callback
212184610Salfred *
213184610Salfred * This function is the USB callback for generic clear stall requests.
214184610Salfred *------------------------------------------------------------------------*/
215184610Salfredvoid
216194677Sthompsausb_do_clear_stall_callback(struct usb_xfer *xfer, usb_error_t error)
217184610Salfred{
218192984Sthompsa	struct usb_device_request req;
219192984Sthompsa	struct usb_device *udev;
220193644Sthompsa	struct usb_endpoint *ep;
221193644Sthompsa	struct usb_endpoint *ep_end;
222193644Sthompsa	struct usb_endpoint *ep_first;
223239214Shselasky	usb_stream_t x;
224190731Sthompsa	uint8_t to;
225184610Salfred
226187173Sthompsa	udev = xfer->xroot->udev;
227184610Salfred
228187173Sthompsa	USB_BUS_LOCK(udev->bus);
229187173Sthompsa
230193644Sthompsa	/* round robin endpoint clear stall */
231184610Salfred
232193644Sthompsa	ep = udev->ep_curr;
233193644Sthompsa	ep_end = udev->endpoints + udev->endpoints_max;
234193644Sthompsa	ep_first = udev->endpoints;
235193644Sthompsa	to = udev->endpoints_max;
236193318Sthompsa
237184610Salfred	switch (USB_GET_STATE(xfer)) {
238184610Salfred	case USB_ST_TRANSFERRED:
239225000Shselaskytr_transferred:
240222786Shselasky		/* reset error counter */
241222786Shselasky		udev->clear_stall_errors = 0;
242222786Shselasky
243193644Sthompsa		if (ep == NULL)
244193318Sthompsa			goto tr_setup;		/* device was unconfigured */
245193644Sthompsa		if (ep->edesc &&
246193644Sthompsa		    ep->is_stalled) {
247193644Sthompsa			ep->toggle_next = 0;
248193644Sthompsa			ep->is_stalled = 0;
249213435Shselasky			/* some hardware needs a callback to clear the data toggle */
250213435Shselasky			usbd_clear_stall_locked(udev, ep);
251239214Shselasky			for (x = 0; x != USB_MAX_EP_STREAMS; x++) {
252239214Shselasky				/* start the current or next transfer, if any */
253239214Shselasky				usb_command_wrapper(&ep->endpoint_q[x],
254239214Shselasky				    ep->endpoint_q[x].curr);
255239214Shselasky			}
256184610Salfred		}
257193644Sthompsa		ep++;
258184610Salfred
259184610Salfred	case USB_ST_SETUP:
260184610Salfredtr_setup:
261193318Sthompsa		if (to == 0)
262193644Sthompsa			break;			/* no endpoints - nothing to do */
263193644Sthompsa		if ((ep < ep_first) || (ep >= ep_end))
264193644Sthompsa			ep = ep_first;	/* endpoint wrapped around */
265193644Sthompsa		if (ep->edesc &&
266193644Sthompsa		    ep->is_stalled) {
267184610Salfred
268184610Salfred			/* setup a clear-stall packet */
269184610Salfred
270184610Salfred			req.bmRequestType = UT_WRITE_ENDPOINT;
271184610Salfred			req.bRequest = UR_CLEAR_FEATURE;
272184610Salfred			USETW(req.wValue, UF_ENDPOINT_HALT);
273193644Sthompsa			req.wIndex[0] = ep->edesc->bEndpointAddress;
274184610Salfred			req.wIndex[1] = 0;
275184610Salfred			USETW(req.wLength, 0);
276184610Salfred
277184610Salfred			/* copy in the transfer */
278184610Salfred
279194228Sthompsa			usbd_copy_in(xfer->frbuffers, 0, &req, sizeof(req));
280184610Salfred
281184610Salfred			/* set length */
282194677Sthompsa			usbd_xfer_set_frame_len(xfer, 0, sizeof(req));
283184610Salfred			xfer->nframes = 1;
284187173Sthompsa			USB_BUS_UNLOCK(udev->bus);
285184610Salfred
286194228Sthompsa			usbd_transfer_submit(xfer);
287184610Salfred
288187173Sthompsa			USB_BUS_LOCK(udev->bus);
289184610Salfred			break;
290184610Salfred		}
291193644Sthompsa		ep++;
292193318Sthompsa		to--;
293193318Sthompsa		goto tr_setup;
294184610Salfred
295184610Salfred	default:
296222786Shselasky		if (error == USB_ERR_CANCELLED)
297184610Salfred			break;
298222786Shselasky
299222786Shselasky		DPRINTF("Clear stall failed.\n");
300225000Shselasky
301225000Shselasky		/*
302225000Shselasky		 * Some VMs like VirtualBox always return failure on
303225000Shselasky		 * clear-stall which we sometimes should just ignore.
304225000Shselasky		 */
305225000Shselasky		if (usb_no_cs_fail)
306225000Shselasky			goto tr_transferred;
307222786Shselasky		if (udev->clear_stall_errors == USB_CS_RESET_LIMIT)
308222786Shselasky			goto tr_setup;
309222786Shselasky
310222786Shselasky		if (error == USB_ERR_TIMEOUT) {
311222786Shselasky			udev->clear_stall_errors = USB_CS_RESET_LIMIT;
312222786Shselasky			DPRINTF("Trying to re-enumerate.\n");
313222786Shselasky			usbd_start_re_enumerate(udev);
314222786Shselasky		} else {
315222786Shselasky			udev->clear_stall_errors++;
316222786Shselasky			if (udev->clear_stall_errors == USB_CS_RESET_LIMIT) {
317222786Shselasky				DPRINTF("Trying to re-enumerate.\n");
318222786Shselasky				usbd_start_re_enumerate(udev);
319222786Shselasky			}
320184610Salfred		}
321184610Salfred		goto tr_setup;
322184610Salfred	}
323184610Salfred
324193644Sthompsa	/* store current endpoint */
325193644Sthompsa	udev->ep_curr = ep;
326187173Sthompsa	USB_BUS_UNLOCK(udev->bus);
327184610Salfred}
328184610Salfred
329193045Sthompsastatic usb_handle_req_t *
330194228Sthompsausbd_get_hr_func(struct usb_device *udev)
331191402Sthompsa{
332191402Sthompsa	/* figure out if there is a Handle Request function */
333192499Sthompsa	if (udev->flags.usb_mode == USB_MODE_DEVICE)
334194228Sthompsa		return (usb_temp_get_desc_p);
335191402Sthompsa	else if (udev->parent_hub == NULL)
336191402Sthompsa		return (udev->bus->methods->roothub_exec);
337191402Sthompsa	else
338191402Sthompsa		return (NULL);
339191402Sthompsa}
340191402Sthompsa
341184610Salfred/*------------------------------------------------------------------------*
342194228Sthompsa *	usbd_do_request_flags and usbd_do_request
343184610Salfred *
344184610Salfred * Description of arguments passed to these functions:
345184610Salfred *
346192984Sthompsa * "udev" - this is the "usb_device" structure pointer on which the
347184610Salfred * request should be performed. It is possible to call this function
348184610Salfred * in both Host Side mode and Device Side mode.
349184610Salfred *
350184610Salfred * "mtx" - if this argument is non-NULL the mutex pointed to by it
351184610Salfred * will get dropped and picked up during the execution of this
352184610Salfred * function, hence this function sometimes needs to sleep. If this
353184610Salfred * argument is NULL it has no effect.
354184610Salfred *
355184610Salfred * "req" - this argument must always be non-NULL and points to an
356184610Salfred * 8-byte structure holding the USB request to be done. The USB
357184610Salfred * request structure has a bit telling the direction of the USB
358184610Salfred * request, if it is a read or a write.
359184610Salfred *
360184610Salfred * "data" - if the "wLength" part of the structure pointed to by "req"
361184610Salfred * is non-zero this argument must point to a valid kernel buffer which
362184610Salfred * can hold at least "wLength" bytes. If "wLength" is zero "data" can
363184610Salfred * be NULL.
364184610Salfred *
365184610Salfred * "flags" - here is a list of valid flags:
366184610Salfred *
367184610Salfred *  o USB_SHORT_XFER_OK: allows the data transfer to be shorter than
368184610Salfred *  specified
369184610Salfred *
370184610Salfred *  o USB_DELAY_STATUS_STAGE: allows the status stage to be performed
371184610Salfred *  at a later point in time. This is tunable by the "hw.usb.ss_delay"
372184610Salfred *  sysctl. This flag is mostly useful for debugging.
373184610Salfred *
374184610Salfred *  o USB_USER_DATA_PTR: treat the "data" pointer like a userland
375184610Salfred *  pointer.
376184610Salfred *
377184610Salfred * "actlen" - if non-NULL the actual transfer length will be stored in
378184610Salfred * the 16-bit unsigned integer pointed to by "actlen". This
379184610Salfred * information is mostly useful when the "USB_SHORT_XFER_OK" flag is
380184610Salfred * used.
381184610Salfred *
382184610Salfred * "timeout" - gives the timeout for the control transfer in
383184610Salfred * milliseconds. A "timeout" value less than 50 milliseconds is
384184610Salfred * treated like a 50 millisecond timeout. A "timeout" value greater
385184610Salfred * than 30 seconds is treated like a 30 second timeout. This USB stack
386184610Salfred * does not allow control requests without a timeout.
387184610Salfred *
388184610Salfred * NOTE: This function is thread safe. All calls to
389194228Sthompsa * "usbd_do_request_flags" will be serialised by the use of an
390184610Salfred * internal "sx_lock".
391184610Salfred *
392184610Salfred * Returns:
393184610Salfred *    0: Success
394184610Salfred * Else: Failure
395184610Salfred *------------------------------------------------------------------------*/
396193045Sthompsausb_error_t
397194228Sthompsausbd_do_request_flags(struct usb_device *udev, struct mtx *mtx,
398192984Sthompsa    struct usb_device_request *req, void *data, uint16_t flags,
399193045Sthompsa    uint16_t *actlen, usb_timeout_t timeout)
400184610Salfred{
401208018Sthompsa#ifdef USB_REQ_DEBUG
402208018Sthompsa	struct usb_ctrl_debug_bits dbg;
403208018Sthompsa#endif
404193045Sthompsa	usb_handle_req_t *hr_func;
405192984Sthompsa	struct usb_xfer *xfer;
406184610Salfred	const void *desc;
407184610Salfred	int err = 0;
408193045Sthompsa	usb_ticks_t start_ticks;
409193045Sthompsa	usb_ticks_t delta_ticks;
410193045Sthompsa	usb_ticks_t max_ticks;
411184610Salfred	uint16_t length;
412184610Salfred	uint16_t temp;
413208018Sthompsa	uint16_t acttemp;
414208008Sthompsa	uint8_t enum_locked;
415184610Salfred
416184610Salfred	if (timeout < 50) {
417184610Salfred		/* timeout is too small */
418184610Salfred		timeout = 50;
419184610Salfred	}
420184610Salfred	if (timeout > 30000) {
421184610Salfred		/* timeout is too big */
422184610Salfred		timeout = 30000;
423184610Salfred	}
424184610Salfred	length = UGETW(req->wLength);
425184610Salfred
426208008Sthompsa	enum_locked = usbd_enum_is_locked(udev);
427208008Sthompsa
428184610Salfred	DPRINTFN(5, "udev=%p bmRequestType=0x%02x bRequest=0x%02x "
429184610Salfred	    "wValue=0x%02x%02x wIndex=0x%02x%02x wLength=0x%02x%02x\n",
430184610Salfred	    udev, req->bmRequestType, req->bRequest,
431184610Salfred	    req->wValue[1], req->wValue[0],
432184610Salfred	    req->wIndex[1], req->wIndex[0],
433184610Salfred	    req->wLength[1], req->wLength[0]);
434184610Salfred
435191494Sthompsa	/* Check if the device is still alive */
436191494Sthompsa	if (udev->state < USB_STATE_POWERED) {
437191494Sthompsa		DPRINTF("usb device has gone\n");
438191494Sthompsa		return (USB_ERR_NOT_CONFIGURED);
439191494Sthompsa	}
440191494Sthompsa
441184610Salfred	/*
442184610Salfred	 * Set "actlen" to a known value in case the caller does not
443184610Salfred	 * check the return value:
444184610Salfred	 */
445190735Sthompsa	if (actlen)
446184610Salfred		*actlen = 0;
447190735Sthompsa
448190180Sthompsa#if (USB_HAVE_USER_IO == 0)
449190180Sthompsa	if (flags & USB_USER_DATA_PTR)
450190180Sthompsa		return (USB_ERR_INVAL);
451190180Sthompsa#endif
452208008Sthompsa	if ((mtx != NULL) && (mtx != &Giant)) {
453184610Salfred		mtx_unlock(mtx);
454208008Sthompsa		mtx_assert(mtx, MA_NOTOWNED);
455184610Salfred	}
456208008Sthompsa
457184610Salfred	/*
458208008Sthompsa	 * We need to allow suspend and resume at this point, else the
459208008Sthompsa	 * control transfer will timeout if the device is suspended!
460208008Sthompsa	 */
461208008Sthompsa	if (enum_locked)
462208008Sthompsa		usbd_sr_unlock(udev);
463208008Sthompsa
464208008Sthompsa	/*
465184610Salfred	 * Grab the default sx-lock so that serialisation
466184610Salfred	 * is achieved when multiple threads are involved:
467184610Salfred	 */
468207079Sthompsa	sx_xlock(&udev->ctrl_sx);
469184610Salfred
470194228Sthompsa	hr_func = usbd_get_hr_func(udev);
471190735Sthompsa
472191402Sthompsa	if (hr_func != NULL) {
473191402Sthompsa		DPRINTF("Handle Request function is set\n");
474190735Sthompsa
475191402Sthompsa		desc = NULL;
476191402Sthompsa		temp = 0;
477191402Sthompsa
478191402Sthompsa		if (!(req->bmRequestType & UT_READ)) {
479190735Sthompsa			if (length != 0) {
480191402Sthompsa				DPRINTFN(1, "The handle request function "
481191402Sthompsa				    "does not support writing data!\n");
482191402Sthompsa				err = USB_ERR_INVAL;
483191402Sthompsa				goto done;
484190735Sthompsa			}
485190735Sthompsa		}
486190735Sthompsa
487191402Sthompsa		/* The root HUB code needs the BUS lock locked */
488191402Sthompsa
489190735Sthompsa		USB_BUS_LOCK(udev->bus);
490191402Sthompsa		err = (hr_func) (udev, req, &desc, &temp);
491190735Sthompsa		USB_BUS_UNLOCK(udev->bus);
492190735Sthompsa
493190735Sthompsa		if (err)
494190735Sthompsa			goto done;
495190735Sthompsa
496191402Sthompsa		if (length > temp) {
497190735Sthompsa			if (!(flags & USB_SHORT_XFER_OK)) {
498190735Sthompsa				err = USB_ERR_SHORT_XFER;
499190735Sthompsa				goto done;
500190735Sthompsa			}
501191402Sthompsa			length = temp;
502190735Sthompsa		}
503190735Sthompsa		if (actlen)
504190735Sthompsa			*actlen = length;
505190735Sthompsa
506190735Sthompsa		if (length > 0) {
507190735Sthompsa#if USB_HAVE_USER_IO
508190735Sthompsa			if (flags & USB_USER_DATA_PTR) {
509191402Sthompsa				if (copyout(desc, data, length)) {
510190735Sthompsa					err = USB_ERR_INVAL;
511190735Sthompsa					goto done;
512190735Sthompsa				}
513190735Sthompsa			} else
514190735Sthompsa#endif
515227461Shselasky				memcpy(data, desc, length);
516190735Sthompsa		}
517191402Sthompsa		goto done;		/* success */
518190735Sthompsa	}
519190735Sthompsa
520184610Salfred	/*
521184610Salfred	 * Setup a new USB transfer or use the existing one, if any:
522184610Salfred	 */
523207080Sthompsa	usbd_ctrl_transfer_setup(udev);
524184610Salfred
525207080Sthompsa	xfer = udev->ctrl_xfer[0];
526184610Salfred	if (xfer == NULL) {
527184610Salfred		/* most likely out of memory */
528184610Salfred		err = USB_ERR_NOMEM;
529184610Salfred		goto done;
530184610Salfred	}
531208018Sthompsa
532208018Sthompsa#ifdef USB_REQ_DEBUG
533208018Sthompsa	/* Get debug bits */
534208018Sthompsa	usbd_get_debug_bits(udev, req, &dbg);
535208018Sthompsa
536208018Sthompsa	/* Check for fault injection */
537208018Sthompsa	if (dbg.enabled)
538208018Sthompsa		flags |= USB_DELAY_STATUS_STAGE;
539208018Sthompsa#endif
540184824Sthompsa	USB_XFER_LOCK(xfer);
541184610Salfred
542190734Sthompsa	if (flags & USB_DELAY_STATUS_STAGE)
543184610Salfred		xfer->flags.manual_status = 1;
544190734Sthompsa	else
545184610Salfred		xfer->flags.manual_status = 0;
546184610Salfred
547190734Sthompsa	if (flags & USB_SHORT_XFER_OK)
548190734Sthompsa		xfer->flags.short_xfer_ok = 1;
549190734Sthompsa	else
550190734Sthompsa		xfer->flags.short_xfer_ok = 0;
551190734Sthompsa
552184610Salfred	xfer->timeout = timeout;
553184610Salfred
554184610Salfred	start_ticks = ticks;
555184610Salfred
556184610Salfred	max_ticks = USB_MS_TO_TICKS(timeout);
557184610Salfred
558194228Sthompsa	usbd_copy_in(xfer->frbuffers, 0, req, sizeof(*req));
559184610Salfred
560194677Sthompsa	usbd_xfer_set_frame_len(xfer, 0, sizeof(*req));
561184610Salfred
562184610Salfred	while (1) {
563184610Salfred		temp = length;
564208018Sthompsa		if (temp > usbd_xfer_max_len(xfer)) {
565194677Sthompsa			temp = usbd_xfer_max_len(xfer);
566184610Salfred		}
567208018Sthompsa#ifdef USB_REQ_DEBUG
568208018Sthompsa		if (xfer->flags.manual_status) {
569208018Sthompsa			if (usbd_xfer_frame_len(xfer, 0) != 0) {
570208018Sthompsa				/* Execute data stage separately */
571208018Sthompsa				temp = 0;
572208018Sthompsa			} else if (temp > 0) {
573208018Sthompsa				if (dbg.ds_fail) {
574208018Sthompsa					err = USB_ERR_INVAL;
575208018Sthompsa					break;
576208018Sthompsa				}
577208018Sthompsa				if (dbg.ds_delay > 0) {
578208018Sthompsa					usb_pause_mtx(
579208018Sthompsa					    xfer->xroot->xfer_mtx,
580208018Sthompsa				            USB_MS_TO_TICKS(dbg.ds_delay));
581208018Sthompsa					/* make sure we don't time out */
582208018Sthompsa					start_ticks = ticks;
583208018Sthompsa				}
584208018Sthompsa			}
585208018Sthompsa		}
586208018Sthompsa#endif
587194677Sthompsa		usbd_xfer_set_frame_len(xfer, 1, temp);
588184610Salfred
589184610Salfred		if (temp > 0) {
590184610Salfred			if (!(req->bmRequestType & UT_READ)) {
591190180Sthompsa#if USB_HAVE_USER_IO
592184610Salfred				if (flags & USB_USER_DATA_PTR) {
593184824Sthompsa					USB_XFER_UNLOCK(xfer);
594194228Sthompsa					err = usbd_copy_in_user(xfer->frbuffers + 1,
595184610Salfred					    0, data, temp);
596184824Sthompsa					USB_XFER_LOCK(xfer);
597184610Salfred					if (err) {
598184610Salfred						err = USB_ERR_INVAL;
599184610Salfred						break;
600184610Salfred					}
601190180Sthompsa				} else
602190180Sthompsa#endif
603194228Sthompsa					usbd_copy_in(xfer->frbuffers + 1,
604190180Sthompsa					    0, data, temp);
605184610Salfred			}
606208018Sthompsa			usbd_xfer_set_frames(xfer, 2);
607184610Salfred		} else {
608208018Sthompsa			if (usbd_xfer_frame_len(xfer, 0) == 0) {
609184610Salfred				if (xfer->flags.manual_status) {
610208018Sthompsa#ifdef USB_REQ_DEBUG
611208018Sthompsa					if (dbg.ss_fail) {
612208018Sthompsa						err = USB_ERR_INVAL;
613208018Sthompsa						break;
614184610Salfred					}
615208018Sthompsa					if (dbg.ss_delay > 0) {
616194228Sthompsa						usb_pause_mtx(
617187173Sthompsa						    xfer->xroot->xfer_mtx,
618208018Sthompsa						    USB_MS_TO_TICKS(dbg.ss_delay));
619208018Sthompsa						/* make sure we don't time out */
620208018Sthompsa						start_ticks = ticks;
621184610Salfred					}
622184610Salfred#endif
623184610Salfred					xfer->flags.manual_status = 0;
624184610Salfred				} else {
625184610Salfred					break;
626184610Salfred				}
627184610Salfred			}
628208018Sthompsa			usbd_xfer_set_frames(xfer, 1);
629184610Salfred		}
630184610Salfred
631194228Sthompsa		usbd_transfer_start(xfer);
632184610Salfred
633194228Sthompsa		while (usbd_transfer_pending(xfer)) {
634207079Sthompsa			cv_wait(&udev->ctrlreq_cv,
635188983Sthompsa			    xfer->xroot->xfer_mtx);
636184610Salfred		}
637184610Salfred
638184610Salfred		err = xfer->error;
639184610Salfred
640184610Salfred		if (err) {
641184610Salfred			break;
642184610Salfred		}
643184610Salfred
644208018Sthompsa		/* get actual length of DATA stage */
645208018Sthompsa
646208018Sthompsa		if (xfer->aframes < 2) {
647208018Sthompsa			acttemp = 0;
648184610Salfred		} else {
649208018Sthompsa			acttemp = usbd_xfer_frame_len(xfer, 1);
650184610Salfred		}
651184610Salfred
652184610Salfred		/* check for short packet */
653184610Salfred
654208018Sthompsa		if (temp > acttemp) {
655208018Sthompsa			temp = acttemp;
656184610Salfred			length = temp;
657184610Salfred		}
658184610Salfred		if (temp > 0) {
659184610Salfred			if (req->bmRequestType & UT_READ) {
660190180Sthompsa#if USB_HAVE_USER_IO
661184610Salfred				if (flags & USB_USER_DATA_PTR) {
662184824Sthompsa					USB_XFER_UNLOCK(xfer);
663194228Sthompsa					err = usbd_copy_out_user(xfer->frbuffers + 1,
664184610Salfred					    0, data, temp);
665184824Sthompsa					USB_XFER_LOCK(xfer);
666184610Salfred					if (err) {
667184610Salfred						err = USB_ERR_INVAL;
668184610Salfred						break;
669184610Salfred					}
670190180Sthompsa				} else
671190180Sthompsa#endif
672194228Sthompsa					usbd_copy_out(xfer->frbuffers + 1,
673184610Salfred					    0, data, temp);
674184610Salfred			}
675184610Salfred		}
676184610Salfred		/*
677184610Salfred		 * Clear "frlengths[0]" so that we don't send the setup
678184610Salfred		 * packet again:
679184610Salfred		 */
680194677Sthompsa		usbd_xfer_set_frame_len(xfer, 0, 0);
681184610Salfred
682184610Salfred		/* update length and data pointer */
683184610Salfred		length -= temp;
684184610Salfred		data = USB_ADD_BYTES(data, temp);
685184610Salfred
686184610Salfred		if (actlen) {
687184610Salfred			(*actlen) += temp;
688184610Salfred		}
689184610Salfred		/* check for timeout */
690184610Salfred
691184610Salfred		delta_ticks = ticks - start_ticks;
692184610Salfred		if (delta_ticks > max_ticks) {
693184610Salfred			if (!err) {
694184610Salfred				err = USB_ERR_TIMEOUT;
695184610Salfred			}
696184610Salfred		}
697184610Salfred		if (err) {
698184610Salfred			break;
699184610Salfred		}
700184610Salfred	}
701184610Salfred
702184610Salfred	if (err) {
703184610Salfred		/*
704184610Salfred		 * Make sure that the control endpoint is no longer
705184610Salfred		 * blocked in case of a non-transfer related error:
706184610Salfred		 */
707194228Sthompsa		usbd_transfer_stop(xfer);
708184610Salfred	}
709184824Sthompsa	USB_XFER_UNLOCK(xfer);
710184610Salfred
711184610Salfreddone:
712207079Sthompsa	sx_xunlock(&udev->ctrl_sx);
713184610Salfred
714208008Sthompsa	if (enum_locked)
715208008Sthompsa		usbd_sr_lock(udev);
716208008Sthompsa
717208008Sthompsa	if ((mtx != NULL) && (mtx != &Giant))
718184610Salfred		mtx_lock(mtx);
719208008Sthompsa
720193045Sthompsa	return ((usb_error_t)err);
721184610Salfred}
722184610Salfred
723184610Salfred/*------------------------------------------------------------------------*
724194228Sthompsa *	usbd_do_request_proc - factored out code
725188411Sthompsa *
726188411Sthompsa * This function is factored out code. It does basically the same like
727194228Sthompsa * usbd_do_request_flags, except it will check the status of the
728188411Sthompsa * passed process argument before doing the USB request. If the
729188411Sthompsa * process is draining the USB_ERR_IOERROR code will be returned. It
730188411Sthompsa * is assumed that the mutex associated with the process is locked
731188411Sthompsa * when calling this function.
732188411Sthompsa *------------------------------------------------------------------------*/
733193045Sthompsausb_error_t
734194228Sthompsausbd_do_request_proc(struct usb_device *udev, struct usb_process *pproc,
735192984Sthompsa    struct usb_device_request *req, void *data, uint16_t flags,
736193045Sthompsa    uint16_t *actlen, usb_timeout_t timeout)
737188411Sthompsa{
738193045Sthompsa	usb_error_t err;
739188411Sthompsa	uint16_t len;
740188411Sthompsa
741188411Sthompsa	/* get request data length */
742188411Sthompsa	len = UGETW(req->wLength);
743188411Sthompsa
744188411Sthompsa	/* check if the device is being detached */
745194228Sthompsa	if (usb_proc_is_gone(pproc)) {
746188411Sthompsa		err = USB_ERR_IOERROR;
747188411Sthompsa		goto done;
748188411Sthompsa	}
749188411Sthompsa
750188411Sthompsa	/* forward the USB request */
751194228Sthompsa	err = usbd_do_request_flags(udev, pproc->up_mtx,
752188411Sthompsa	    req, data, flags, actlen, timeout);
753188411Sthompsa
754188411Sthompsadone:
755188411Sthompsa	/* on failure we zero the data */
756188411Sthompsa	/* on short packet we zero the unused data */
757188411Sthompsa	if ((len != 0) && (req->bmRequestType & UE_DIR_IN)) {
758188411Sthompsa		if (err)
759188411Sthompsa			memset(data, 0, len);
760188411Sthompsa		else if (actlen && *actlen != len)
761188411Sthompsa			memset(((uint8_t *)data) + *actlen, 0, len - *actlen);
762188411Sthompsa	}
763188411Sthompsa	return (err);
764188411Sthompsa}
765188411Sthompsa
766188411Sthompsa/*------------------------------------------------------------------------*
767194228Sthompsa *	usbd_req_reset_port
768184610Salfred *
769214804Shselasky * This function will instruct a USB HUB to perform a reset sequence
770184610Salfred * on the specified port number.
771184610Salfred *
772184610Salfred * Returns:
773184610Salfred *    0: Success. The USB device should now be at address zero.
774184610Salfred * Else: Failure. No USB device is present and the USB port should be
775184610Salfred *       disabled.
776184610Salfred *------------------------------------------------------------------------*/
777193045Sthompsausb_error_t
778194228Sthompsausbd_req_reset_port(struct usb_device *udev, struct mtx *mtx, uint8_t port)
779184610Salfred{
780192984Sthompsa	struct usb_port_status ps;
781193045Sthompsa	usb_error_t err;
782184610Salfred	uint16_t n;
783230091Shselasky	uint16_t status;
784230091Shselasky	uint16_t change;
785184610Salfred
786230091Shselasky	DPRINTF("\n");
787230091Shselasky
788224095Shselasky	/* clear any leftover port reset changes first */
789224095Shselasky	usbd_req_clear_port_feature(
790224095Shselasky	    udev, mtx, port, UHF_C_PORT_RESET);
791224095Shselasky
792224095Shselasky	/* assert port reset on the given port */
793224095Shselasky	err = usbd_req_set_port_feature(
794224095Shselasky	    udev, mtx, port, UHF_PORT_RESET);
795224095Shselasky
796224095Shselasky	/* check for errors */
797224095Shselasky	if (err)
798184610Salfred		goto done;
799207077Sthompsa#ifdef USB_DEBUG
800184610Salfred#endif
801184610Salfred	n = 0;
802184610Salfred	while (1) {
803184610Salfred		/* wait for the device to recover from reset */
804241987Shselasky		usb_pause_mtx(mtx, USB_MS_TO_TICKS(usb_port_reset_delay));
805241987Shselasky		n += usb_port_reset_delay;
806194228Sthompsa		err = usbd_req_get_port_status(udev, mtx, &ps, port);
807230091Shselasky		if (err)
808184610Salfred			goto done;
809230091Shselasky
810224095Shselasky		status = UGETW(ps.wPortStatus);
811224095Shselasky		change = UGETW(ps.wPortChange);
812224095Shselasky
813216249Shselasky		/* if the device disappeared, just give up */
814224095Shselasky		if (!(status & UPS_CURRENT_CONNECT_STATUS))
815216249Shselasky			goto done;
816224095Shselasky
817214804Shselasky		/* check if reset is complete */
818224095Shselasky		if (change & UPS_C_PORT_RESET)
819214804Shselasky			break;
820224095Shselasky
821224095Shselasky		/*
822224095Shselasky		 * Some Virtual Machines like VirtualBox 4.x fail to
823224095Shselasky		 * generate a port reset change event. Check if reset
824224095Shselasky		 * is no longer asserted.
825224095Shselasky		 */
826224095Shselasky		if (!(status & UPS_RESET))
827224095Shselasky			break;
828224095Shselasky
829214804Shselasky		/* check for timeout */
830214804Shselasky		if (n > 1000) {
831214804Shselasky			n = 0;
832214804Shselasky			break;
833214804Shselasky		}
834214804Shselasky	}
835214804Shselasky
836214804Shselasky	/* clear port reset first */
837214804Shselasky	err = usbd_req_clear_port_feature(
838214804Shselasky	    udev, mtx, port, UHF_C_PORT_RESET);
839230091Shselasky	if (err)
840214804Shselasky		goto done;
841230091Shselasky
842214804Shselasky	/* check for timeout */
843214804Shselasky	if (n == 0) {
844214804Shselasky		err = USB_ERR_TIMEOUT;
845214804Shselasky		goto done;
846214804Shselasky	}
847214804Shselasky	/* wait for the device to recover from reset */
848241987Shselasky	usb_pause_mtx(mtx, USB_MS_TO_TICKS(usb_port_reset_recovery));
849214804Shselasky
850214804Shselaskydone:
851214804Shselasky	DPRINTFN(2, "port %d reset returning error=%s\n",
852214804Shselasky	    port, usbd_errstr(err));
853214804Shselasky	return (err);
854214804Shselasky}
855214804Shselasky
856214804Shselasky/*------------------------------------------------------------------------*
857214804Shselasky *	usbd_req_warm_reset_port
858214804Shselasky *
859214804Shselasky * This function will instruct an USB HUB to perform a warm reset
860214804Shselasky * sequence on the specified port number. This kind of reset is not
861214804Shselasky * mandatory for LOW-, FULL- and HIGH-speed USB HUBs and is targeted
862214804Shselasky * for SUPER-speed USB HUBs.
863214804Shselasky *
864214804Shselasky * Returns:
865214804Shselasky *    0: Success. The USB device should now be available again.
866214804Shselasky * Else: Failure. No USB device is present and the USB port should be
867214804Shselasky *       disabled.
868214804Shselasky *------------------------------------------------------------------------*/
869214804Shselaskyusb_error_t
870230091Shselaskyusbd_req_warm_reset_port(struct usb_device *udev, struct mtx *mtx,
871230091Shselasky    uint8_t port)
872214804Shselasky{
873214804Shselasky	struct usb_port_status ps;
874214804Shselasky	usb_error_t err;
875214804Shselasky	uint16_t n;
876230091Shselasky	uint16_t status;
877230091Shselasky	uint16_t change;
878214804Shselasky
879230091Shselasky	DPRINTF("\n");
880230091Shselasky
881230091Shselasky	err = usbd_req_get_port_status(udev, mtx, &ps, port);
882230091Shselasky	if (err)
883214804Shselasky		goto done;
884230091Shselasky
885230091Shselasky	status = UGETW(ps.wPortStatus);
886230091Shselasky
887230091Shselasky	switch (UPS_PORT_LINK_STATE_GET(status)) {
888230091Shselasky	case UPS_PORT_LS_U3:
889230091Shselasky	case UPS_PORT_LS_COMP_MODE:
890230091Shselasky	case UPS_PORT_LS_LOOPBACK:
891230091Shselasky	case UPS_PORT_LS_SS_INA:
892230091Shselasky		break;
893230091Shselasky	default:
894230091Shselasky		DPRINTF("Wrong state for warm reset\n");
895230091Shselasky		return (0);
896214804Shselasky	}
897230091Shselasky
898230091Shselasky	/* clear any leftover warm port reset changes first */
899230091Shselasky	usbd_req_clear_port_feature(udev, mtx,
900230091Shselasky	    port, UHF_C_BH_PORT_RESET);
901230091Shselasky
902230091Shselasky	/* set warm port reset */
903230091Shselasky	err = usbd_req_set_port_feature(udev, mtx,
904230091Shselasky	    port, UHF_BH_PORT_RESET);
905230091Shselasky	if (err)
906230091Shselasky		goto done;
907230091Shselasky
908214804Shselasky	n = 0;
909214804Shselasky	while (1) {
910214804Shselasky		/* wait for the device to recover from reset */
911241987Shselasky		usb_pause_mtx(mtx, USB_MS_TO_TICKS(usb_port_reset_delay));
912241987Shselasky		n += usb_port_reset_delay;
913214804Shselasky		err = usbd_req_get_port_status(udev, mtx, &ps, port);
914230091Shselasky		if (err)
915214804Shselasky			goto done;
916230091Shselasky
917230091Shselasky		status = UGETW(ps.wPortStatus);
918230091Shselasky		change = UGETW(ps.wPortChange);
919230091Shselasky
920184610Salfred		/* if the device disappeared, just give up */
921230091Shselasky		if (!(status & UPS_CURRENT_CONNECT_STATUS))
922184610Salfred			goto done;
923230091Shselasky
924184610Salfred		/* check if reset is complete */
925230091Shselasky		if (change & UPS_C_BH_PORT_RESET)
926184610Salfred			break;
927230091Shselasky
928184610Salfred		/* check for timeout */
929184610Salfred		if (n > 1000) {
930184610Salfred			n = 0;
931184610Salfred			break;
932184610Salfred		}
933184610Salfred	}
934184610Salfred
935184610Salfred	/* clear port reset first */
936194228Sthompsa	err = usbd_req_clear_port_feature(
937214804Shselasky	    udev, mtx, port, UHF_C_BH_PORT_RESET);
938230091Shselasky	if (err)
939184610Salfred		goto done;
940230091Shselasky
941184610Salfred	/* check for timeout */
942184610Salfred	if (n == 0) {
943184610Salfred		err = USB_ERR_TIMEOUT;
944184610Salfred		goto done;
945184610Salfred	}
946184610Salfred	/* wait for the device to recover from reset */
947241987Shselasky	usb_pause_mtx(mtx, USB_MS_TO_TICKS(usb_port_reset_recovery));
948184610Salfred
949184610Salfreddone:
950214804Shselasky	DPRINTFN(2, "port %d warm reset returning error=%s\n",
951194228Sthompsa	    port, usbd_errstr(err));
952184610Salfred	return (err);
953184610Salfred}
954184610Salfred
955184610Salfred/*------------------------------------------------------------------------*
956194228Sthompsa *	usbd_req_get_desc
957184610Salfred *
958184610Salfred * This function can be used to retrieve USB descriptors. It contains
959184610Salfred * some additional logic like zeroing of missing descriptor bytes and
960184610Salfred * retrying an USB descriptor in case of failure. The "min_len"
961184610Salfred * argument specifies the minimum descriptor length. The "max_len"
962184610Salfred * argument specifies the maximum descriptor length. If the real
963184610Salfred * descriptor length is less than the minimum length the missing
964188985Sthompsa * byte(s) will be zeroed. The type field, the second byte of the USB
965188985Sthompsa * descriptor, will get forced to the correct type. If the "actlen"
966188985Sthompsa * pointer is non-NULL, the actual length of the transfer will get
967188985Sthompsa * stored in the 16-bit unsigned integer which it is pointing to. The
968188985Sthompsa * first byte of the descriptor will not get updated. If the "actlen"
969188985Sthompsa * pointer is NULL the first byte of the descriptor will get updated
970188985Sthompsa * to reflect the actual length instead. If "min_len" is not equal to
971188985Sthompsa * "max_len" then this function will try to retrive the beginning of
972188985Sthompsa * the descriptor and base the maximum length on the first byte of the
973188985Sthompsa * descriptor.
974184610Salfred *
975184610Salfred * Returns:
976184610Salfred *    0: Success
977184610Salfred * Else: Failure
978184610Salfred *------------------------------------------------------------------------*/
979193045Sthompsausb_error_t
980194228Sthompsausbd_req_get_desc(struct usb_device *udev,
981188985Sthompsa    struct mtx *mtx, uint16_t *actlen, void *desc,
982184610Salfred    uint16_t min_len, uint16_t max_len,
983184610Salfred    uint16_t id, uint8_t type, uint8_t index,
984184610Salfred    uint8_t retries)
985184610Salfred{
986192984Sthompsa	struct usb_device_request req;
987184610Salfred	uint8_t *buf;
988193045Sthompsa	usb_error_t err;
989184610Salfred
990184610Salfred	DPRINTFN(4, "id=%d, type=%d, index=%d, max_len=%d\n",
991184610Salfred	    id, type, index, max_len);
992184610Salfred
993184610Salfred	req.bmRequestType = UT_READ_DEVICE;
994184610Salfred	req.bRequest = UR_GET_DESCRIPTOR;
995184610Salfred	USETW2(req.wValue, type, index);
996184610Salfred	USETW(req.wIndex, id);
997184610Salfred
998184610Salfred	while (1) {
999184610Salfred
1000184610Salfred		if ((min_len < 2) || (max_len < 2)) {
1001184610Salfred			err = USB_ERR_INVAL;
1002184610Salfred			goto done;
1003184610Salfred		}
1004184610Salfred		USETW(req.wLength, min_len);
1005184610Salfred
1006194228Sthompsa		err = usbd_do_request_flags(udev, mtx, &req,
1007186730Salfred		    desc, 0, NULL, 1000);
1008184610Salfred
1009184610Salfred		if (err) {
1010184610Salfred			if (!retries) {
1011184610Salfred				goto done;
1012184610Salfred			}
1013184610Salfred			retries--;
1014184610Salfred
1015194228Sthompsa			usb_pause_mtx(mtx, hz / 5);
1016184610Salfred
1017184610Salfred			continue;
1018184610Salfred		}
1019184610Salfred		buf = desc;
1020184610Salfred
1021184610Salfred		if (min_len == max_len) {
1022184610Salfred
1023188985Sthompsa			/* enforce correct length */
1024188985Sthompsa			if ((buf[0] > min_len) && (actlen == NULL))
1025188985Sthompsa				buf[0] = min_len;
1026184610Salfred
1027188985Sthompsa			/* enforce correct type */
1028184610Salfred			buf[1] = type;
1029184610Salfred
1030184610Salfred			goto done;
1031184610Salfred		}
1032184610Salfred		/* range check */
1033184610Salfred
1034184610Salfred		if (max_len > buf[0]) {
1035184610Salfred			max_len = buf[0];
1036184610Salfred		}
1037184610Salfred		/* zero minimum data */
1038184610Salfred
1039184610Salfred		while (min_len > max_len) {
1040184610Salfred			min_len--;
1041184610Salfred			buf[min_len] = 0;
1042184610Salfred		}
1043184610Salfred
1044184610Salfred		/* set new minimum length */
1045184610Salfred
1046184610Salfred		min_len = max_len;
1047184610Salfred	}
1048184610Salfreddone:
1049188985Sthompsa	if (actlen != NULL) {
1050188985Sthompsa		if (err)
1051188985Sthompsa			*actlen = 0;
1052188985Sthompsa		else
1053188985Sthompsa			*actlen = min_len;
1054188985Sthompsa	}
1055184610Salfred	return (err);
1056184610Salfred}
1057184610Salfred
1058184610Salfred/*------------------------------------------------------------------------*
1059194228Sthompsa *	usbd_req_get_string_any
1060184610Salfred *
1061184610Salfred * This function will return the string given by "string_index"
1062184610Salfred * using the first language ID. The maximum length "len" includes
1063184610Salfred * the terminating zero. The "len" argument should be twice as
1064184610Salfred * big pluss 2 bytes, compared with the actual maximum string length !
1065184610Salfred *
1066184610Salfred * Returns:
1067184610Salfred *    0: Success
1068184610Salfred * Else: Failure
1069184610Salfred *------------------------------------------------------------------------*/
1070193045Sthompsausb_error_t
1071194228Sthompsausbd_req_get_string_any(struct usb_device *udev, struct mtx *mtx, char *buf,
1072184610Salfred    uint16_t len, uint8_t string_index)
1073184610Salfred{
1074184610Salfred	char *s;
1075184610Salfred	uint8_t *temp;
1076184610Salfred	uint16_t i;
1077184610Salfred	uint16_t n;
1078184610Salfred	uint16_t c;
1079184610Salfred	uint8_t swap;
1080193045Sthompsa	usb_error_t err;
1081184610Salfred
1082184610Salfred	if (len == 0) {
1083184610Salfred		/* should not happen */
1084184610Salfred		return (USB_ERR_NORMAL_COMPLETION);
1085184610Salfred	}
1086184610Salfred	if (string_index == 0) {
1087184610Salfred		/* this is the language table */
1088185087Salfred		buf[0] = 0;
1089184610Salfred		return (USB_ERR_INVAL);
1090184610Salfred	}
1091184610Salfred	if (udev->flags.no_strings) {
1092185087Salfred		buf[0] = 0;
1093184610Salfred		return (USB_ERR_STALLED);
1094184610Salfred	}
1095194228Sthompsa	err = usbd_req_get_string_desc
1096184610Salfred	    (udev, mtx, buf, len, udev->langid, string_index);
1097184610Salfred	if (err) {
1098185087Salfred		buf[0] = 0;
1099184610Salfred		return (err);
1100184610Salfred	}
1101184610Salfred	temp = (uint8_t *)buf;
1102184610Salfred
1103184610Salfred	if (temp[0] < 2) {
1104184610Salfred		/* string length is too short */
1105185087Salfred		buf[0] = 0;
1106184610Salfred		return (USB_ERR_INVAL);
1107184610Salfred	}
1108184610Salfred	/* reserve one byte for terminating zero */
1109184610Salfred	len--;
1110184610Salfred
1111184610Salfred	/* find maximum length */
1112184610Salfred	s = buf;
1113184610Salfred	n = (temp[0] / 2) - 1;
1114184610Salfred	if (n > len) {
1115184610Salfred		n = len;
1116184610Salfred	}
1117184610Salfred	/* skip descriptor header */
1118184610Salfred	temp += 2;
1119184610Salfred
1120184610Salfred	/* reset swap state */
1121184610Salfred	swap = 3;
1122184610Salfred
1123184610Salfred	/* convert and filter */
1124184610Salfred	for (i = 0; (i != n); i++) {
1125184610Salfred		c = UGETW(temp + (2 * i));
1126184610Salfred
1127184610Salfred		/* convert from Unicode, handle buggy strings */
1128184610Salfred		if (((c & 0xff00) == 0) && (swap & 1)) {
1129184610Salfred			/* Little Endian, default */
1130184610Salfred			*s = c;
1131184610Salfred			swap = 1;
1132184610Salfred		} else if (((c & 0x00ff) == 0) && (swap & 2)) {
1133184610Salfred			/* Big Endian */
1134184610Salfred			*s = c >> 8;
1135184610Salfred			swap = 2;
1136184610Salfred		} else {
1137185087Salfred			/* silently skip bad character */
1138185087Salfred			continue;
1139184610Salfred		}
1140184610Salfred
1141184610Salfred		/*
1142213433Shselasky		 * Filter by default - We only allow alphanumerical
1143213433Shselasky		 * and a few more to avoid any problems with scripts
1144213433Shselasky		 * and daemons.
1145184610Salfred		 */
1146213433Shselasky		if (isalpha(*s) ||
1147213433Shselasky		    isdigit(*s) ||
1148213433Shselasky		    *s == '-' ||
1149213433Shselasky		    *s == '+' ||
1150213433Shselasky		    *s == ' ' ||
1151213433Shselasky		    *s == '.' ||
1152213433Shselasky		    *s == ',') {
1153213433Shselasky			/* allowed */
1154213433Shselasky			s++;
1155184610Salfred		}
1156213433Shselasky		/* silently skip bad character */
1157184610Salfred	}
1158185087Salfred	*s = 0;				/* zero terminate resulting string */
1159184610Salfred	return (USB_ERR_NORMAL_COMPLETION);
1160184610Salfred}
1161184610Salfred
1162184610Salfred/*------------------------------------------------------------------------*
1163194228Sthompsa *	usbd_req_get_string_desc
1164184610Salfred *
1165184610Salfred * If you don't know the language ID, consider using
1166194228Sthompsa * "usbd_req_get_string_any()".
1167184610Salfred *
1168184610Salfred * Returns:
1169184610Salfred *    0: Success
1170184610Salfred * Else: Failure
1171184610Salfred *------------------------------------------------------------------------*/
1172193045Sthompsausb_error_t
1173194228Sthompsausbd_req_get_string_desc(struct usb_device *udev, struct mtx *mtx, void *sdesc,
1174184610Salfred    uint16_t max_len, uint16_t lang_id,
1175184610Salfred    uint8_t string_index)
1176184610Salfred{
1177194228Sthompsa	return (usbd_req_get_desc(udev, mtx, NULL, sdesc, 2, max_len, lang_id,
1178184610Salfred	    UDESC_STRING, string_index, 0));
1179184610Salfred}
1180184610Salfred
1181184610Salfred/*------------------------------------------------------------------------*
1182194228Sthompsa *	usbd_req_get_config_desc_ptr
1183190727Sthompsa *
1184190727Sthompsa * This function is used in device side mode to retrieve the pointer
1185190727Sthompsa * to the generated config descriptor. This saves allocating space for
1186190727Sthompsa * an additional config descriptor when setting the configuration.
1187190727Sthompsa *
1188190727Sthompsa * Returns:
1189190727Sthompsa *    0: Success
1190190727Sthompsa * Else: Failure
1191190727Sthompsa *------------------------------------------------------------------------*/
1192193045Sthompsausb_error_t
1193194228Sthompsausbd_req_get_descriptor_ptr(struct usb_device *udev,
1194192984Sthompsa    struct usb_config_descriptor **ppcd, uint16_t wValue)
1195190727Sthompsa{
1196192984Sthompsa	struct usb_device_request req;
1197193045Sthompsa	usb_handle_req_t *hr_func;
1198191402Sthompsa	const void *ptr;
1199190727Sthompsa	uint16_t len;
1200193045Sthompsa	usb_error_t err;
1201190727Sthompsa
1202190731Sthompsa	req.bmRequestType = UT_READ_DEVICE;
1203190727Sthompsa	req.bRequest = UR_GET_DESCRIPTOR;
1204191402Sthompsa	USETW(req.wValue, wValue);
1205190727Sthompsa	USETW(req.wIndex, 0);
1206190727Sthompsa	USETW(req.wLength, 0);
1207190727Sthompsa
1208191402Sthompsa	ptr = NULL;
1209191402Sthompsa	len = 0;
1210190727Sthompsa
1211194228Sthompsa	hr_func = usbd_get_hr_func(udev);
1212191402Sthompsa
1213191402Sthompsa	if (hr_func == NULL)
1214191402Sthompsa		err = USB_ERR_INVAL;
1215191402Sthompsa	else {
1216191402Sthompsa		USB_BUS_LOCK(udev->bus);
1217191402Sthompsa		err = (hr_func) (udev, &req, &ptr, &len);
1218191402Sthompsa		USB_BUS_UNLOCK(udev->bus);
1219191402Sthompsa	}
1220191402Sthompsa
1221191402Sthompsa	if (err)
1222191402Sthompsa		ptr = NULL;
1223191402Sthompsa	else if (ptr == NULL)
1224191402Sthompsa		err = USB_ERR_INVAL;
1225191402Sthompsa
1226192984Sthompsa	*ppcd = __DECONST(struct usb_config_descriptor *, ptr);
1227191402Sthompsa
1228191402Sthompsa	return (err);
1229190727Sthompsa}
1230190727Sthompsa
1231190727Sthompsa/*------------------------------------------------------------------------*
1232194228Sthompsa *	usbd_req_get_config_desc
1233184610Salfred *
1234184610Salfred * Returns:
1235184610Salfred *    0: Success
1236184610Salfred * Else: Failure
1237184610Salfred *------------------------------------------------------------------------*/
1238193045Sthompsausb_error_t
1239194228Sthompsausbd_req_get_config_desc(struct usb_device *udev, struct mtx *mtx,
1240192984Sthompsa    struct usb_config_descriptor *d, uint8_t conf_index)
1241184610Salfred{
1242193045Sthompsa	usb_error_t err;
1243184610Salfred
1244184610Salfred	DPRINTFN(4, "confidx=%d\n", conf_index);
1245184610Salfred
1246194228Sthompsa	err = usbd_req_get_desc(udev, mtx, NULL, d, sizeof(*d),
1247184610Salfred	    sizeof(*d), 0, UDESC_CONFIG, conf_index, 0);
1248184610Salfred	if (err) {
1249184610Salfred		goto done;
1250184610Salfred	}
1251184610Salfred	/* Extra sanity checking */
1252233774Shselasky	if (UGETW(d->wTotalLength) < (uint16_t)sizeof(*d)) {
1253184610Salfred		err = USB_ERR_INVAL;
1254184610Salfred	}
1255184610Salfreddone:
1256184610Salfred	return (err);
1257184610Salfred}
1258184610Salfred
1259184610Salfred/*------------------------------------------------------------------------*
1260194228Sthompsa *	usbd_req_get_config_desc_full
1261184610Salfred *
1262184610Salfred * This function gets the complete USB configuration descriptor and
1263184610Salfred * ensures that "wTotalLength" is correct.
1264184610Salfred *
1265184610Salfred * Returns:
1266184610Salfred *    0: Success
1267184610Salfred * Else: Failure
1268184610Salfred *------------------------------------------------------------------------*/
1269193045Sthompsausb_error_t
1270194228Sthompsausbd_req_get_config_desc_full(struct usb_device *udev, struct mtx *mtx,
1271192984Sthompsa    struct usb_config_descriptor **ppcd, struct malloc_type *mtype,
1272184610Salfred    uint8_t index)
1273184610Salfred{
1274192984Sthompsa	struct usb_config_descriptor cd;
1275192984Sthompsa	struct usb_config_descriptor *cdesc;
1276184610Salfred	uint16_t len;
1277193045Sthompsa	usb_error_t err;
1278184610Salfred
1279184610Salfred	DPRINTFN(4, "index=%d\n", index);
1280184610Salfred
1281184610Salfred	*ppcd = NULL;
1282184610Salfred
1283194228Sthompsa	err = usbd_req_get_config_desc(udev, mtx, &cd, index);
1284184610Salfred	if (err) {
1285184610Salfred		return (err);
1286184610Salfred	}
1287184610Salfred	/* get full descriptor */
1288184610Salfred	len = UGETW(cd.wTotalLength);
1289184610Salfred	if (len < sizeof(*cdesc)) {
1290184610Salfred		/* corrupt descriptor */
1291184610Salfred		return (USB_ERR_INVAL);
1292184610Salfred	}
1293184610Salfred	cdesc = malloc(len, mtype, M_WAITOK);
1294184610Salfred	if (cdesc == NULL) {
1295184610Salfred		return (USB_ERR_NOMEM);
1296184610Salfred	}
1297194228Sthompsa	err = usbd_req_get_desc(udev, mtx, NULL, cdesc, len, len, 0,
1298184610Salfred	    UDESC_CONFIG, index, 3);
1299184610Salfred	if (err) {
1300184610Salfred		free(cdesc, mtype);
1301184610Salfred		return (err);
1302184610Salfred	}
1303184610Salfred	/* make sure that the device is not fooling us: */
1304184610Salfred	USETW(cdesc->wTotalLength, len);
1305184610Salfred
1306184610Salfred	*ppcd = cdesc;
1307184610Salfred
1308184610Salfred	return (0);			/* success */
1309184610Salfred}
1310184610Salfred
1311184610Salfred/*------------------------------------------------------------------------*
1312194228Sthompsa *	usbd_req_get_device_desc
1313184610Salfred *
1314184610Salfred * Returns:
1315184610Salfred *    0: Success
1316184610Salfred * Else: Failure
1317184610Salfred *------------------------------------------------------------------------*/
1318193045Sthompsausb_error_t
1319194228Sthompsausbd_req_get_device_desc(struct usb_device *udev, struct mtx *mtx,
1320192984Sthompsa    struct usb_device_descriptor *d)
1321184610Salfred{
1322184610Salfred	DPRINTFN(4, "\n");
1323194228Sthompsa	return (usbd_req_get_desc(udev, mtx, NULL, d, sizeof(*d),
1324184610Salfred	    sizeof(*d), 0, UDESC_DEVICE, 0, 3));
1325184610Salfred}
1326184610Salfred
1327184610Salfred/*------------------------------------------------------------------------*
1328194228Sthompsa *	usbd_req_get_alt_interface_no
1329184610Salfred *
1330184610Salfred * Returns:
1331184610Salfred *    0: Success
1332184610Salfred * Else: Failure
1333184610Salfred *------------------------------------------------------------------------*/
1334193045Sthompsausb_error_t
1335194228Sthompsausbd_req_get_alt_interface_no(struct usb_device *udev, struct mtx *mtx,
1336184610Salfred    uint8_t *alt_iface_no, uint8_t iface_index)
1337184610Salfred{
1338194228Sthompsa	struct usb_interface *iface = usbd_get_iface(udev, iface_index);
1339192984Sthompsa	struct usb_device_request req;
1340184610Salfred
1341195963Salfred	if ((iface == NULL) || (iface->idesc == NULL))
1342184610Salfred		return (USB_ERR_INVAL);
1343195963Salfred
1344184610Salfred	req.bmRequestType = UT_READ_INTERFACE;
1345184610Salfred	req.bRequest = UR_GET_INTERFACE;
1346184610Salfred	USETW(req.wValue, 0);
1347184610Salfred	req.wIndex[0] = iface->idesc->bInterfaceNumber;
1348184610Salfred	req.wIndex[1] = 0;
1349184610Salfred	USETW(req.wLength, 1);
1350194228Sthompsa	return (usbd_do_request(udev, mtx, &req, alt_iface_no));
1351184610Salfred}
1352184610Salfred
1353184610Salfred/*------------------------------------------------------------------------*
1354194228Sthompsa *	usbd_req_set_alt_interface_no
1355184610Salfred *
1356184610Salfred * Returns:
1357184610Salfred *    0: Success
1358184610Salfred * Else: Failure
1359184610Salfred *------------------------------------------------------------------------*/
1360193045Sthompsausb_error_t
1361194228Sthompsausbd_req_set_alt_interface_no(struct usb_device *udev, struct mtx *mtx,
1362184610Salfred    uint8_t iface_index, uint8_t alt_no)
1363184610Salfred{
1364194228Sthompsa	struct usb_interface *iface = usbd_get_iface(udev, iface_index);
1365192984Sthompsa	struct usb_device_request req;
1366184610Salfred
1367195963Salfred	if ((iface == NULL) || (iface->idesc == NULL))
1368184610Salfred		return (USB_ERR_INVAL);
1369195963Salfred
1370184610Salfred	req.bmRequestType = UT_WRITE_INTERFACE;
1371184610Salfred	req.bRequest = UR_SET_INTERFACE;
1372184610Salfred	req.wValue[0] = alt_no;
1373184610Salfred	req.wValue[1] = 0;
1374184610Salfred	req.wIndex[0] = iface->idesc->bInterfaceNumber;
1375184610Salfred	req.wIndex[1] = 0;
1376184610Salfred	USETW(req.wLength, 0);
1377194228Sthompsa	return (usbd_do_request(udev, mtx, &req, 0));
1378184610Salfred}
1379184610Salfred
1380184610Salfred/*------------------------------------------------------------------------*
1381194228Sthompsa *	usbd_req_get_device_status
1382184610Salfred *
1383184610Salfred * Returns:
1384184610Salfred *    0: Success
1385184610Salfred * Else: Failure
1386184610Salfred *------------------------------------------------------------------------*/
1387193045Sthompsausb_error_t
1388194228Sthompsausbd_req_get_device_status(struct usb_device *udev, struct mtx *mtx,
1389192984Sthompsa    struct usb_status *st)
1390184610Salfred{
1391192984Sthompsa	struct usb_device_request req;
1392184610Salfred
1393184610Salfred	req.bmRequestType = UT_READ_DEVICE;
1394184610Salfred	req.bRequest = UR_GET_STATUS;
1395184610Salfred	USETW(req.wValue, 0);
1396184610Salfred	USETW(req.wIndex, 0);
1397184610Salfred	USETW(req.wLength, sizeof(*st));
1398194228Sthompsa	return (usbd_do_request(udev, mtx, &req, st));
1399184610Salfred}
1400184610Salfred
1401184610Salfred/*------------------------------------------------------------------------*
1402194228Sthompsa *	usbd_req_get_hub_descriptor
1403184610Salfred *
1404184610Salfred * Returns:
1405184610Salfred *    0: Success
1406184610Salfred * Else: Failure
1407184610Salfred *------------------------------------------------------------------------*/
1408193045Sthompsausb_error_t
1409194228Sthompsausbd_req_get_hub_descriptor(struct usb_device *udev, struct mtx *mtx,
1410192984Sthompsa    struct usb_hub_descriptor *hd, uint8_t nports)
1411184610Salfred{
1412192984Sthompsa	struct usb_device_request req;
1413184610Salfred	uint16_t len = (nports + 7 + (8 * 8)) / 8;
1414184610Salfred
1415184610Salfred	req.bmRequestType = UT_READ_CLASS_DEVICE;
1416184610Salfred	req.bRequest = UR_GET_DESCRIPTOR;
1417184610Salfred	USETW2(req.wValue, UDESC_HUB, 0);
1418184610Salfred	USETW(req.wIndex, 0);
1419184610Salfred	USETW(req.wLength, len);
1420194228Sthompsa	return (usbd_do_request(udev, mtx, &req, hd));
1421184610Salfred}
1422184610Salfred
1423184610Salfred/*------------------------------------------------------------------------*
1424213435Shselasky *	usbd_req_get_ss_hub_descriptor
1425213435Shselasky *
1426213435Shselasky * Returns:
1427213435Shselasky *    0: Success
1428213435Shselasky * Else: Failure
1429213435Shselasky *------------------------------------------------------------------------*/
1430213435Shselaskyusb_error_t
1431213435Shselaskyusbd_req_get_ss_hub_descriptor(struct usb_device *udev, struct mtx *mtx,
1432213435Shselasky    struct usb_hub_ss_descriptor *hd, uint8_t nports)
1433213435Shselasky{
1434213435Shselasky	struct usb_device_request req;
1435213435Shselasky	uint16_t len = sizeof(*hd) - 32 + 1 + ((nports + 7) / 8);
1436213435Shselasky
1437213435Shselasky	req.bmRequestType = UT_READ_CLASS_DEVICE;
1438213435Shselasky	req.bRequest = UR_GET_DESCRIPTOR;
1439213435Shselasky	USETW2(req.wValue, UDESC_SS_HUB, 0);
1440213435Shselasky	USETW(req.wIndex, 0);
1441213435Shselasky	USETW(req.wLength, len);
1442213435Shselasky	return (usbd_do_request(udev, mtx, &req, hd));
1443213435Shselasky}
1444213435Shselasky
1445213435Shselasky/*------------------------------------------------------------------------*
1446194228Sthompsa *	usbd_req_get_hub_status
1447184610Salfred *
1448184610Salfred * Returns:
1449184610Salfred *    0: Success
1450184610Salfred * Else: Failure
1451184610Salfred *------------------------------------------------------------------------*/
1452193045Sthompsausb_error_t
1453194228Sthompsausbd_req_get_hub_status(struct usb_device *udev, struct mtx *mtx,
1454192984Sthompsa    struct usb_hub_status *st)
1455184610Salfred{
1456192984Sthompsa	struct usb_device_request req;
1457184610Salfred
1458184610Salfred	req.bmRequestType = UT_READ_CLASS_DEVICE;
1459184610Salfred	req.bRequest = UR_GET_STATUS;
1460184610Salfred	USETW(req.wValue, 0);
1461184610Salfred	USETW(req.wIndex, 0);
1462192984Sthompsa	USETW(req.wLength, sizeof(struct usb_hub_status));
1463194228Sthompsa	return (usbd_do_request(udev, mtx, &req, st));
1464184610Salfred}
1465184610Salfred
1466184610Salfred/*------------------------------------------------------------------------*
1467194228Sthompsa *	usbd_req_set_address
1468184610Salfred *
1469184610Salfred * This function is used to set the address for an USB device. After
1470184610Salfred * port reset the USB device will respond at address zero.
1471184610Salfred *
1472184610Salfred * Returns:
1473184610Salfred *    0: Success
1474184610Salfred * Else: Failure
1475184610Salfred *------------------------------------------------------------------------*/
1476193045Sthompsausb_error_t
1477194228Sthompsausbd_req_set_address(struct usb_device *udev, struct mtx *mtx, uint16_t addr)
1478184610Salfred{
1479192984Sthompsa	struct usb_device_request req;
1480213435Shselasky	usb_error_t err;
1481184610Salfred
1482184610Salfred	DPRINTFN(6, "setting device address=%d\n", addr);
1483184610Salfred
1484184610Salfred	req.bmRequestType = UT_WRITE_DEVICE;
1485184610Salfred	req.bRequest = UR_SET_ADDRESS;
1486184610Salfred	USETW(req.wValue, addr);
1487184610Salfred	USETW(req.wIndex, 0);
1488184610Salfred	USETW(req.wLength, 0);
1489184610Salfred
1490213435Shselasky	err = USB_ERR_INVAL;
1491213435Shselasky
1492213435Shselasky	/* check if USB controller handles set address */
1493213435Shselasky	if (udev->bus->methods->set_address != NULL)
1494213435Shselasky		err = (udev->bus->methods->set_address) (udev, mtx, addr);
1495213435Shselasky
1496213435Shselasky	if (err != USB_ERR_INVAL)
1497213435Shselasky		goto done;
1498213435Shselasky
1499184610Salfred	/* Setting the address should not take more than 1 second ! */
1500213435Shselasky	err = usbd_do_request_flags(udev, mtx, &req, NULL,
1501213435Shselasky	    USB_DELAY_STATUS_STAGE, NULL, 1000);
1502213435Shselasky
1503213435Shselaskydone:
1504213435Shselasky	/* allow device time to set new address */
1505213435Shselasky	usb_pause_mtx(mtx,
1506241987Shselasky	    USB_MS_TO_TICKS(usb_set_address_settle));
1507213435Shselasky
1508213435Shselasky	return (err);
1509184610Salfred}
1510184610Salfred
1511184610Salfred/*------------------------------------------------------------------------*
1512194228Sthompsa *	usbd_req_get_port_status
1513184610Salfred *
1514184610Salfred * Returns:
1515184610Salfred *    0: Success
1516184610Salfred * Else: Failure
1517184610Salfred *------------------------------------------------------------------------*/
1518193045Sthompsausb_error_t
1519194228Sthompsausbd_req_get_port_status(struct usb_device *udev, struct mtx *mtx,
1520192984Sthompsa    struct usb_port_status *ps, uint8_t port)
1521184610Salfred{
1522192984Sthompsa	struct usb_device_request req;
1523184610Salfred
1524184610Salfred	req.bmRequestType = UT_READ_CLASS_OTHER;
1525184610Salfred	req.bRequest = UR_GET_STATUS;
1526184610Salfred	USETW(req.wValue, 0);
1527184610Salfred	req.wIndex[0] = port;
1528184610Salfred	req.wIndex[1] = 0;
1529184610Salfred	USETW(req.wLength, sizeof *ps);
1530194228Sthompsa	return (usbd_do_request(udev, mtx, &req, ps));
1531184610Salfred}
1532184610Salfred
1533184610Salfred/*------------------------------------------------------------------------*
1534194228Sthompsa *	usbd_req_clear_hub_feature
1535184610Salfred *
1536184610Salfred * Returns:
1537184610Salfred *    0: Success
1538184610Salfred * Else: Failure
1539184610Salfred *------------------------------------------------------------------------*/
1540193045Sthompsausb_error_t
1541194228Sthompsausbd_req_clear_hub_feature(struct usb_device *udev, struct mtx *mtx,
1542184610Salfred    uint16_t sel)
1543184610Salfred{
1544192984Sthompsa	struct usb_device_request req;
1545184610Salfred
1546184610Salfred	req.bmRequestType = UT_WRITE_CLASS_DEVICE;
1547184610Salfred	req.bRequest = UR_CLEAR_FEATURE;
1548184610Salfred	USETW(req.wValue, sel);
1549184610Salfred	USETW(req.wIndex, 0);
1550184610Salfred	USETW(req.wLength, 0);
1551194228Sthompsa	return (usbd_do_request(udev, mtx, &req, 0));
1552184610Salfred}
1553184610Salfred
1554184610Salfred/*------------------------------------------------------------------------*
1555194228Sthompsa *	usbd_req_set_hub_feature
1556184610Salfred *
1557184610Salfred * Returns:
1558184610Salfred *    0: Success
1559184610Salfred * Else: Failure
1560184610Salfred *------------------------------------------------------------------------*/
1561193045Sthompsausb_error_t
1562194228Sthompsausbd_req_set_hub_feature(struct usb_device *udev, struct mtx *mtx,
1563184610Salfred    uint16_t sel)
1564184610Salfred{
1565192984Sthompsa	struct usb_device_request req;
1566184610Salfred
1567184610Salfred	req.bmRequestType = UT_WRITE_CLASS_DEVICE;
1568184610Salfred	req.bRequest = UR_SET_FEATURE;
1569184610Salfred	USETW(req.wValue, sel);
1570184610Salfred	USETW(req.wIndex, 0);
1571184610Salfred	USETW(req.wLength, 0);
1572194228Sthompsa	return (usbd_do_request(udev, mtx, &req, 0));
1573184610Salfred}
1574184610Salfred
1575184610Salfred/*------------------------------------------------------------------------*
1576213435Shselasky *	usbd_req_set_hub_u1_timeout
1577213435Shselasky *
1578213435Shselasky * Returns:
1579213435Shselasky *    0: Success
1580213435Shselasky * Else: Failure
1581213435Shselasky *------------------------------------------------------------------------*/
1582213435Shselaskyusb_error_t
1583213435Shselaskyusbd_req_set_hub_u1_timeout(struct usb_device *udev, struct mtx *mtx,
1584213435Shselasky    uint8_t port, uint8_t timeout)
1585213435Shselasky{
1586213435Shselasky	struct usb_device_request req;
1587213435Shselasky
1588213435Shselasky	req.bmRequestType = UT_WRITE_CLASS_OTHER;
1589213435Shselasky	req.bRequest = UR_SET_FEATURE;
1590213435Shselasky	USETW(req.wValue, UHF_PORT_U1_TIMEOUT);
1591213435Shselasky	req.wIndex[0] = port;
1592213435Shselasky	req.wIndex[1] = timeout;
1593213435Shselasky	USETW(req.wLength, 0);
1594213435Shselasky	return (usbd_do_request(udev, mtx, &req, 0));
1595213435Shselasky}
1596213435Shselasky
1597213435Shselasky/*------------------------------------------------------------------------*
1598213435Shselasky *	usbd_req_set_hub_u2_timeout
1599213435Shselasky *
1600213435Shselasky * Returns:
1601213435Shselasky *    0: Success
1602213435Shselasky * Else: Failure
1603213435Shselasky *------------------------------------------------------------------------*/
1604213435Shselaskyusb_error_t
1605213435Shselaskyusbd_req_set_hub_u2_timeout(struct usb_device *udev, struct mtx *mtx,
1606213435Shselasky    uint8_t port, uint8_t timeout)
1607213435Shselasky{
1608213435Shselasky	struct usb_device_request req;
1609213435Shselasky
1610213435Shselasky	req.bmRequestType = UT_WRITE_CLASS_OTHER;
1611213435Shselasky	req.bRequest = UR_SET_FEATURE;
1612213435Shselasky	USETW(req.wValue, UHF_PORT_U2_TIMEOUT);
1613213435Shselasky	req.wIndex[0] = port;
1614213435Shselasky	req.wIndex[1] = timeout;
1615213435Shselasky	USETW(req.wLength, 0);
1616213435Shselasky	return (usbd_do_request(udev, mtx, &req, 0));
1617213435Shselasky}
1618213435Shselasky
1619213435Shselasky/*------------------------------------------------------------------------*
1620213435Shselasky *	usbd_req_set_hub_depth
1621213435Shselasky *
1622213435Shselasky * Returns:
1623213435Shselasky *    0: Success
1624213435Shselasky * Else: Failure
1625213435Shselasky *------------------------------------------------------------------------*/
1626213435Shselaskyusb_error_t
1627213435Shselaskyusbd_req_set_hub_depth(struct usb_device *udev, struct mtx *mtx,
1628213435Shselasky    uint16_t depth)
1629213435Shselasky{
1630213435Shselasky	struct usb_device_request req;
1631213435Shselasky
1632213435Shselasky	req.bmRequestType = UT_WRITE_CLASS_DEVICE;
1633213435Shselasky	req.bRequest = UR_SET_HUB_DEPTH;
1634213435Shselasky	USETW(req.wValue, depth);
1635213435Shselasky	USETW(req.wIndex, 0);
1636213435Shselasky	USETW(req.wLength, 0);
1637213435Shselasky	return (usbd_do_request(udev, mtx, &req, 0));
1638213435Shselasky}
1639213435Shselasky
1640213435Shselasky/*------------------------------------------------------------------------*
1641194228Sthompsa *	usbd_req_clear_port_feature
1642184610Salfred *
1643184610Salfred * Returns:
1644184610Salfred *    0: Success
1645184610Salfred * Else: Failure
1646184610Salfred *------------------------------------------------------------------------*/
1647193045Sthompsausb_error_t
1648194228Sthompsausbd_req_clear_port_feature(struct usb_device *udev, struct mtx *mtx,
1649184610Salfred    uint8_t port, uint16_t sel)
1650184610Salfred{
1651192984Sthompsa	struct usb_device_request req;
1652184610Salfred
1653184610Salfred	req.bmRequestType = UT_WRITE_CLASS_OTHER;
1654184610Salfred	req.bRequest = UR_CLEAR_FEATURE;
1655184610Salfred	USETW(req.wValue, sel);
1656184610Salfred	req.wIndex[0] = port;
1657184610Salfred	req.wIndex[1] = 0;
1658184610Salfred	USETW(req.wLength, 0);
1659194228Sthompsa	return (usbd_do_request(udev, mtx, &req, 0));
1660184610Salfred}
1661184610Salfred
1662184610Salfred/*------------------------------------------------------------------------*
1663194228Sthompsa *	usbd_req_set_port_feature
1664184610Salfred *
1665184610Salfred * Returns:
1666184610Salfred *    0: Success
1667184610Salfred * Else: Failure
1668184610Salfred *------------------------------------------------------------------------*/
1669193045Sthompsausb_error_t
1670194228Sthompsausbd_req_set_port_feature(struct usb_device *udev, struct mtx *mtx,
1671184610Salfred    uint8_t port, uint16_t sel)
1672184610Salfred{
1673192984Sthompsa	struct usb_device_request req;
1674184610Salfred
1675184610Salfred	req.bmRequestType = UT_WRITE_CLASS_OTHER;
1676184610Salfred	req.bRequest = UR_SET_FEATURE;
1677184610Salfred	USETW(req.wValue, sel);
1678184610Salfred	req.wIndex[0] = port;
1679184610Salfred	req.wIndex[1] = 0;
1680184610Salfred	USETW(req.wLength, 0);
1681194228Sthompsa	return (usbd_do_request(udev, mtx, &req, 0));
1682184610Salfred}
1683184610Salfred
1684184610Salfred/*------------------------------------------------------------------------*
1685194228Sthompsa *	usbd_req_set_protocol
1686184610Salfred *
1687184610Salfred * Returns:
1688184610Salfred *    0: Success
1689184610Salfred * Else: Failure
1690184610Salfred *------------------------------------------------------------------------*/
1691193045Sthompsausb_error_t
1692194228Sthompsausbd_req_set_protocol(struct usb_device *udev, struct mtx *mtx,
1693184610Salfred    uint8_t iface_index, uint16_t report)
1694184610Salfred{
1695194228Sthompsa	struct usb_interface *iface = usbd_get_iface(udev, iface_index);
1696192984Sthompsa	struct usb_device_request req;
1697184610Salfred
1698184610Salfred	if ((iface == NULL) || (iface->idesc == NULL)) {
1699184610Salfred		return (USB_ERR_INVAL);
1700184610Salfred	}
1701184610Salfred	DPRINTFN(5, "iface=%p, report=%d, endpt=%d\n",
1702184610Salfred	    iface, report, iface->idesc->bInterfaceNumber);
1703184610Salfred
1704184610Salfred	req.bmRequestType = UT_WRITE_CLASS_INTERFACE;
1705184610Salfred	req.bRequest = UR_SET_PROTOCOL;
1706184610Salfred	USETW(req.wValue, report);
1707184610Salfred	req.wIndex[0] = iface->idesc->bInterfaceNumber;
1708184610Salfred	req.wIndex[1] = 0;
1709184610Salfred	USETW(req.wLength, 0);
1710194228Sthompsa	return (usbd_do_request(udev, mtx, &req, 0));
1711184610Salfred}
1712184610Salfred
1713184610Salfred/*------------------------------------------------------------------------*
1714194228Sthompsa *	usbd_req_set_report
1715184610Salfred *
1716184610Salfred * Returns:
1717184610Salfred *    0: Success
1718184610Salfred * Else: Failure
1719184610Salfred *------------------------------------------------------------------------*/
1720193045Sthompsausb_error_t
1721194228Sthompsausbd_req_set_report(struct usb_device *udev, struct mtx *mtx, void *data, uint16_t len,
1722184610Salfred    uint8_t iface_index, uint8_t type, uint8_t id)
1723184610Salfred{
1724194228Sthompsa	struct usb_interface *iface = usbd_get_iface(udev, iface_index);
1725192984Sthompsa	struct usb_device_request req;
1726184610Salfred
1727184610Salfred	if ((iface == NULL) || (iface->idesc == NULL)) {
1728184610Salfred		return (USB_ERR_INVAL);
1729184610Salfred	}
1730184610Salfred	DPRINTFN(5, "len=%d\n", len);
1731184610Salfred
1732184610Salfred	req.bmRequestType = UT_WRITE_CLASS_INTERFACE;
1733184610Salfred	req.bRequest = UR_SET_REPORT;
1734184610Salfred	USETW2(req.wValue, type, id);
1735184610Salfred	req.wIndex[0] = iface->idesc->bInterfaceNumber;
1736184610Salfred	req.wIndex[1] = 0;
1737184610Salfred	USETW(req.wLength, len);
1738194228Sthompsa	return (usbd_do_request(udev, mtx, &req, data));
1739184610Salfred}
1740184610Salfred
1741184610Salfred/*------------------------------------------------------------------------*
1742194228Sthompsa *	usbd_req_get_report
1743184610Salfred *
1744184610Salfred * Returns:
1745184610Salfred *    0: Success
1746184610Salfred * Else: Failure
1747184610Salfred *------------------------------------------------------------------------*/
1748193045Sthompsausb_error_t
1749194228Sthompsausbd_req_get_report(struct usb_device *udev, struct mtx *mtx, void *data,
1750184610Salfred    uint16_t len, uint8_t iface_index, uint8_t type, uint8_t id)
1751184610Salfred{
1752194228Sthompsa	struct usb_interface *iface = usbd_get_iface(udev, iface_index);
1753192984Sthompsa	struct usb_device_request req;
1754184610Salfred
1755224728Smav	if ((iface == NULL) || (iface->idesc == NULL)) {
1756184610Salfred		return (USB_ERR_INVAL);
1757184610Salfred	}
1758184610Salfred	DPRINTFN(5, "len=%d\n", len);
1759184610Salfred
1760184610Salfred	req.bmRequestType = UT_READ_CLASS_INTERFACE;
1761184610Salfred	req.bRequest = UR_GET_REPORT;
1762184610Salfred	USETW2(req.wValue, type, id);
1763184610Salfred	req.wIndex[0] = iface->idesc->bInterfaceNumber;
1764184610Salfred	req.wIndex[1] = 0;
1765184610Salfred	USETW(req.wLength, len);
1766194228Sthompsa	return (usbd_do_request(udev, mtx, &req, data));
1767184610Salfred}
1768184610Salfred
1769184610Salfred/*------------------------------------------------------------------------*
1770194228Sthompsa *	usbd_req_set_idle
1771184610Salfred *
1772184610Salfred * Returns:
1773184610Salfred *    0: Success
1774184610Salfred * Else: Failure
1775184610Salfred *------------------------------------------------------------------------*/
1776193045Sthompsausb_error_t
1777194228Sthompsausbd_req_set_idle(struct usb_device *udev, struct mtx *mtx,
1778184610Salfred    uint8_t iface_index, uint8_t duration, uint8_t id)
1779184610Salfred{
1780194228Sthompsa	struct usb_interface *iface = usbd_get_iface(udev, iface_index);
1781192984Sthompsa	struct usb_device_request req;
1782184610Salfred
1783184610Salfred	if ((iface == NULL) || (iface->idesc == NULL)) {
1784184610Salfred		return (USB_ERR_INVAL);
1785184610Salfred	}
1786184610Salfred	DPRINTFN(5, "%d %d\n", duration, id);
1787184610Salfred
1788184610Salfred	req.bmRequestType = UT_WRITE_CLASS_INTERFACE;
1789184610Salfred	req.bRequest = UR_SET_IDLE;
1790184610Salfred	USETW2(req.wValue, duration, id);
1791184610Salfred	req.wIndex[0] = iface->idesc->bInterfaceNumber;
1792184610Salfred	req.wIndex[1] = 0;
1793184610Salfred	USETW(req.wLength, 0);
1794194228Sthompsa	return (usbd_do_request(udev, mtx, &req, 0));
1795184610Salfred}
1796184610Salfred
1797184610Salfred/*------------------------------------------------------------------------*
1798194228Sthompsa *	usbd_req_get_report_descriptor
1799184610Salfred *
1800184610Salfred * Returns:
1801184610Salfred *    0: Success
1802184610Salfred * Else: Failure
1803184610Salfred *------------------------------------------------------------------------*/
1804193045Sthompsausb_error_t
1805194228Sthompsausbd_req_get_report_descriptor(struct usb_device *udev, struct mtx *mtx,
1806184610Salfred    void *d, uint16_t size, uint8_t iface_index)
1807184610Salfred{
1808194228Sthompsa	struct usb_interface *iface = usbd_get_iface(udev, iface_index);
1809192984Sthompsa	struct usb_device_request req;
1810184610Salfred
1811184610Salfred	if ((iface == NULL) || (iface->idesc == NULL)) {
1812184610Salfred		return (USB_ERR_INVAL);
1813184610Salfred	}
1814184610Salfred	req.bmRequestType = UT_READ_INTERFACE;
1815184610Salfred	req.bRequest = UR_GET_DESCRIPTOR;
1816184610Salfred	USETW2(req.wValue, UDESC_REPORT, 0);	/* report id should be 0 */
1817184610Salfred	req.wIndex[0] = iface->idesc->bInterfaceNumber;
1818184610Salfred	req.wIndex[1] = 0;
1819184610Salfred	USETW(req.wLength, size);
1820194228Sthompsa	return (usbd_do_request(udev, mtx, &req, d));
1821184610Salfred}
1822184610Salfred
1823184610Salfred/*------------------------------------------------------------------------*
1824194228Sthompsa *	usbd_req_set_config
1825184610Salfred *
1826184610Salfred * This function is used to select the current configuration number in
1827184610Salfred * both USB device side mode and USB host side mode. When setting the
1828184610Salfred * configuration the function of the interfaces can change.
1829184610Salfred *
1830184610Salfred * Returns:
1831184610Salfred *    0: Success
1832184610Salfred * Else: Failure
1833184610Salfred *------------------------------------------------------------------------*/
1834193045Sthompsausb_error_t
1835194228Sthompsausbd_req_set_config(struct usb_device *udev, struct mtx *mtx, uint8_t conf)
1836184610Salfred{
1837192984Sthompsa	struct usb_device_request req;
1838184610Salfred
1839184610Salfred	DPRINTF("setting config %d\n", conf);
1840184610Salfred
1841184610Salfred	/* do "set configuration" request */
1842184610Salfred
1843184610Salfred	req.bmRequestType = UT_WRITE_DEVICE;
1844184610Salfred	req.bRequest = UR_SET_CONFIG;
1845184610Salfred	req.wValue[0] = conf;
1846184610Salfred	req.wValue[1] = 0;
1847184610Salfred	USETW(req.wIndex, 0);
1848184610Salfred	USETW(req.wLength, 0);
1849194228Sthompsa	return (usbd_do_request(udev, mtx, &req, 0));
1850184610Salfred}
1851184610Salfred
1852184610Salfred/*------------------------------------------------------------------------*
1853194228Sthompsa *	usbd_req_get_config
1854184610Salfred *
1855184610Salfred * Returns:
1856184610Salfred *    0: Success
1857184610Salfred * Else: Failure
1858184610Salfred *------------------------------------------------------------------------*/
1859193045Sthompsausb_error_t
1860194228Sthompsausbd_req_get_config(struct usb_device *udev, struct mtx *mtx, uint8_t *pconf)
1861184610Salfred{
1862192984Sthompsa	struct usb_device_request req;
1863184610Salfred
1864184610Salfred	req.bmRequestType = UT_READ_DEVICE;
1865184610Salfred	req.bRequest = UR_GET_CONFIG;
1866184610Salfred	USETW(req.wValue, 0);
1867184610Salfred	USETW(req.wIndex, 0);
1868184610Salfred	USETW(req.wLength, 1);
1869194228Sthompsa	return (usbd_do_request(udev, mtx, &req, pconf));
1870184610Salfred}
1871184610Salfred
1872184610Salfred/*------------------------------------------------------------------------*
1873213435Shselasky *	usbd_setup_device_desc
1874213435Shselasky *------------------------------------------------------------------------*/
1875213435Shselaskyusb_error_t
1876213435Shselaskyusbd_setup_device_desc(struct usb_device *udev, struct mtx *mtx)
1877213435Shselasky{
1878213435Shselasky	usb_error_t err;
1879213435Shselasky
1880213435Shselasky	/*
1881213435Shselasky	 * Get the first 8 bytes of the device descriptor !
1882213435Shselasky	 *
1883213435Shselasky	 * NOTE: "usbd_do_request()" will check the device descriptor
1884213435Shselasky	 * next time we do a request to see if the maximum packet size
1885213435Shselasky	 * changed! The 8 first bytes of the device descriptor
1886213435Shselasky	 * contains the maximum packet size to use on control endpoint
1887213435Shselasky	 * 0. If this value is different from "USB_MAX_IPACKET" a new
1888213435Shselasky	 * USB control request will be setup!
1889213435Shselasky	 */
1890213435Shselasky	switch (udev->speed) {
1891213435Shselasky	case USB_SPEED_FULL:
1892213435Shselasky	case USB_SPEED_LOW:
1893213435Shselasky		err = usbd_req_get_desc(udev, mtx, NULL, &udev->ddesc,
1894213435Shselasky		    USB_MAX_IPACKET, USB_MAX_IPACKET, 0, UDESC_DEVICE, 0, 0);
1895213435Shselasky		if (err != 0) {
1896213435Shselasky			DPRINTFN(0, "getting device descriptor "
1897213435Shselasky			    "at addr %d failed, %s\n", udev->address,
1898213435Shselasky			    usbd_errstr(err));
1899213435Shselasky			return (err);
1900213435Shselasky		}
1901213435Shselasky		break;
1902213435Shselasky	default:
1903213435Shselasky		DPRINTF("Minimum MaxPacketSize is large enough "
1904213435Shselasky		    "to hold the complete device descriptor\n");
1905213435Shselasky		break;
1906213435Shselasky	}
1907213435Shselasky
1908213435Shselasky	/* get the full device descriptor */
1909213435Shselasky	err = usbd_req_get_device_desc(udev, mtx, &udev->ddesc);
1910213435Shselasky
1911213435Shselasky	/* try one more time, if error */
1912213435Shselasky	if (err)
1913213435Shselasky		err = usbd_req_get_device_desc(udev, mtx, &udev->ddesc);
1914213435Shselasky
1915213435Shselasky	if (err) {
1916213435Shselasky		DPRINTF("addr=%d, getting full desc failed\n",
1917213435Shselasky		    udev->address);
1918213435Shselasky		return (err);
1919213435Shselasky	}
1920213435Shselasky
1921213435Shselasky	DPRINTF("adding unit addr=%d, rev=%02x, class=%d, "
1922213435Shselasky	    "subclass=%d, protocol=%d, maxpacket=%d, len=%d, speed=%d\n",
1923213435Shselasky	    udev->address, UGETW(udev->ddesc.bcdUSB),
1924213435Shselasky	    udev->ddesc.bDeviceClass,
1925213435Shselasky	    udev->ddesc.bDeviceSubClass,
1926213435Shselasky	    udev->ddesc.bDeviceProtocol,
1927213435Shselasky	    udev->ddesc.bMaxPacketSize,
1928213435Shselasky	    udev->ddesc.bLength,
1929213435Shselasky	    udev->speed);
1930213435Shselasky
1931213435Shselasky	return (err);
1932213435Shselasky}
1933213435Shselasky
1934213435Shselasky/*------------------------------------------------------------------------*
1935194228Sthompsa *	usbd_req_re_enumerate
1936184610Salfred *
1937185087Salfred * NOTE: After this function returns the hardware is in the
1938185087Salfred * unconfigured state! The application is responsible for setting a
1939185087Salfred * new configuration.
1940185087Salfred *
1941184610Salfred * Returns:
1942184610Salfred *    0: Success
1943184610Salfred * Else: Failure
1944184610Salfred *------------------------------------------------------------------------*/
1945193045Sthompsausb_error_t
1946194228Sthompsausbd_req_re_enumerate(struct usb_device *udev, struct mtx *mtx)
1947184610Salfred{
1948192984Sthompsa	struct usb_device *parent_hub;
1949193045Sthompsa	usb_error_t err;
1950184610Salfred	uint8_t old_addr;
1951186730Salfred	uint8_t do_retry = 1;
1952184610Salfred
1953192499Sthompsa	if (udev->flags.usb_mode != USB_MODE_HOST) {
1954185290Salfred		return (USB_ERR_INVAL);
1955185290Salfred	}
1956184610Salfred	old_addr = udev->address;
1957184610Salfred	parent_hub = udev->parent_hub;
1958184610Salfred	if (parent_hub == NULL) {
1959185290Salfred		return (USB_ERR_INVAL);
1960184610Salfred	}
1961186730Salfredretry:
1962222786Shselasky	/*
1963222786Shselasky	 * Try to reset the High Speed parent HUB of a LOW- or FULL-
1964222786Shselasky	 * speed device, if any.
1965222786Shselasky	 */
1966222786Shselasky	if (udev->parent_hs_hub != NULL &&
1967222786Shselasky	    udev->speed != USB_SPEED_HIGH) {
1968222786Shselasky		DPRINTF("Trying to reset parent High Speed TT.\n");
1969222786Shselasky		err = usbd_req_reset_tt(udev->parent_hs_hub, NULL,
1970222786Shselasky		    udev->hs_port_no);
1971222786Shselasky		if (err) {
1972222786Shselasky			DPRINTF("Resetting parent High "
1973222786Shselasky			    "Speed TT failed (%s).\n",
1974222786Shselasky			    usbd_errstr(err));
1975222786Shselasky		}
1976222786Shselasky	}
1977222786Shselasky
1978230091Shselasky	/* Try to warm reset first */
1979230091Shselasky	if (parent_hub->speed == USB_SPEED_SUPER)
1980230091Shselasky		usbd_req_warm_reset_port(parent_hub, mtx, udev->port_no);
1981230091Shselasky
1982222786Shselasky	/* Try to reset the parent HUB port. */
1983194228Sthompsa	err = usbd_req_reset_port(parent_hub, mtx, udev->port_no);
1984184610Salfred	if (err) {
1985190739Sthompsa		DPRINTFN(0, "addr=%d, port reset failed, %s\n",
1986194228Sthompsa		    old_addr, usbd_errstr(err));
1987184610Salfred		goto done;
1988184610Salfred	}
1989213435Shselasky
1990184610Salfred	/*
1991184610Salfred	 * After that the port has been reset our device should be at
1992184610Salfred	 * address zero:
1993184610Salfred	 */
1994184610Salfred	udev->address = USB_START_ADDR;
1995184610Salfred
1996185290Salfred	/* reset "bMaxPacketSize" */
1997185290Salfred	udev->ddesc.bMaxPacketSize = USB_MAX_IPACKET;
1998185290Salfred
1999213435Shselasky	/* reset USB state */
2000213435Shselasky	usb_set_device_state(udev, USB_STATE_POWERED);
2001213435Shselasky
2002184610Salfred	/*
2003184610Salfred	 * Restore device address:
2004184610Salfred	 */
2005194228Sthompsa	err = usbd_req_set_address(udev, mtx, old_addr);
2006184610Salfred	if (err) {
2007184610Salfred		/* XXX ignore any errors! */
2008190739Sthompsa		DPRINTFN(0, "addr=%d, set address failed! (%s, ignored)\n",
2009194228Sthompsa		    old_addr, usbd_errstr(err));
2010184610Salfred	}
2011213435Shselasky	/*
2012213435Shselasky	 * Restore device address, if the controller driver did not
2013213435Shselasky	 * set a new one:
2014213435Shselasky	 */
2015213435Shselasky	if (udev->address == USB_START_ADDR)
2016213435Shselasky		udev->address = old_addr;
2017184610Salfred
2018213435Shselasky	/* setup the device descriptor and the initial "wMaxPacketSize" */
2019213435Shselasky	err = usbd_setup_device_desc(udev, mtx);
2020184610Salfred
2021184610Salfreddone:
2022186730Salfred	if (err && do_retry) {
2023186730Salfred		/* give the USB firmware some time to load */
2024194228Sthompsa		usb_pause_mtx(mtx, hz / 2);
2025186730Salfred		/* no more retries after this retry */
2026186730Salfred		do_retry = 0;
2027186730Salfred		/* try again */
2028186730Salfred		goto retry;
2029186730Salfred	}
2030184610Salfred	/* restore address */
2031213435Shselasky	if (udev->address == USB_START_ADDR)
2032213435Shselasky		udev->address = old_addr;
2033213435Shselasky	/* update state, if successful */
2034213435Shselasky	if (err == 0)
2035213435Shselasky		usb_set_device_state(udev, USB_STATE_ADDRESSED);
2036184610Salfred	return (err);
2037184610Salfred}
2038186730Salfred
2039186730Salfred/*------------------------------------------------------------------------*
2040194228Sthompsa *	usbd_req_clear_device_feature
2041186730Salfred *
2042186730Salfred * Returns:
2043186730Salfred *    0: Success
2044186730Salfred * Else: Failure
2045186730Salfred *------------------------------------------------------------------------*/
2046193045Sthompsausb_error_t
2047194228Sthompsausbd_req_clear_device_feature(struct usb_device *udev, struct mtx *mtx,
2048186730Salfred    uint16_t sel)
2049186730Salfred{
2050192984Sthompsa	struct usb_device_request req;
2051186730Salfred
2052186730Salfred	req.bmRequestType = UT_WRITE_DEVICE;
2053186730Salfred	req.bRequest = UR_CLEAR_FEATURE;
2054186730Salfred	USETW(req.wValue, sel);
2055186730Salfred	USETW(req.wIndex, 0);
2056186730Salfred	USETW(req.wLength, 0);
2057194228Sthompsa	return (usbd_do_request(udev, mtx, &req, 0));
2058186730Salfred}
2059186730Salfred
2060186730Salfred/*------------------------------------------------------------------------*
2061194228Sthompsa *	usbd_req_set_device_feature
2062186730Salfred *
2063186730Salfred * Returns:
2064186730Salfred *    0: Success
2065186730Salfred * Else: Failure
2066186730Salfred *------------------------------------------------------------------------*/
2067193045Sthompsausb_error_t
2068194228Sthompsausbd_req_set_device_feature(struct usb_device *udev, struct mtx *mtx,
2069186730Salfred    uint16_t sel)
2070186730Salfred{
2071192984Sthompsa	struct usb_device_request req;
2072186730Salfred
2073186730Salfred	req.bmRequestType = UT_WRITE_DEVICE;
2074186730Salfred	req.bRequest = UR_SET_FEATURE;
2075186730Salfred	USETW(req.wValue, sel);
2076186730Salfred	USETW(req.wIndex, 0);
2077186730Salfred	USETW(req.wLength, 0);
2078194228Sthompsa	return (usbd_do_request(udev, mtx, &req, 0));
2079186730Salfred}
2080222786Shselasky
2081222786Shselasky/*------------------------------------------------------------------------*
2082222786Shselasky *	usbd_req_reset_tt
2083222786Shselasky *
2084222786Shselasky * Returns:
2085222786Shselasky *    0: Success
2086222786Shselasky * Else: Failure
2087222786Shselasky *------------------------------------------------------------------------*/
2088222786Shselaskyusb_error_t
2089222786Shselaskyusbd_req_reset_tt(struct usb_device *udev, struct mtx *mtx,
2090222786Shselasky    uint8_t port)
2091222786Shselasky{
2092222786Shselasky	struct usb_device_request req;
2093222786Shselasky
2094222786Shselasky	/* For single TT HUBs the port should be 1 */
2095222786Shselasky
2096222786Shselasky	if (udev->ddesc.bDeviceClass == UDCLASS_HUB &&
2097222786Shselasky	    udev->ddesc.bDeviceProtocol == UDPROTO_HSHUBSTT)
2098222786Shselasky		port = 1;
2099222786Shselasky
2100222786Shselasky	req.bmRequestType = UT_WRITE_CLASS_OTHER;
2101222786Shselasky	req.bRequest = UR_RESET_TT;
2102222786Shselasky	USETW(req.wValue, 0);
2103222786Shselasky	req.wIndex[0] = port;
2104222786Shselasky	req.wIndex[1] = 0;
2105222786Shselasky	USETW(req.wLength, 0);
2106222786Shselasky	return (usbd_do_request(udev, mtx, &req, 0));
2107222786Shselasky}
2108222786Shselasky
2109222786Shselasky/*------------------------------------------------------------------------*
2110222786Shselasky *	usbd_req_clear_tt_buffer
2111222786Shselasky *
2112222786Shselasky * For single TT HUBs the port should be 1.
2113222786Shselasky *
2114222786Shselasky * Returns:
2115222786Shselasky *    0: Success
2116222786Shselasky * Else: Failure
2117222786Shselasky *------------------------------------------------------------------------*/
2118222786Shselaskyusb_error_t
2119222786Shselaskyusbd_req_clear_tt_buffer(struct usb_device *udev, struct mtx *mtx,
2120222786Shselasky    uint8_t port, uint8_t addr, uint8_t type, uint8_t endpoint)
2121222786Shselasky{
2122222786Shselasky	struct usb_device_request req;
2123222786Shselasky	uint16_t wValue;
2124222786Shselasky
2125222786Shselasky	/* For single TT HUBs the port should be 1 */
2126222786Shselasky
2127222786Shselasky	if (udev->ddesc.bDeviceClass == UDCLASS_HUB &&
2128222786Shselasky	    udev->ddesc.bDeviceProtocol == UDPROTO_HSHUBSTT)
2129222786Shselasky		port = 1;
2130222786Shselasky
2131222786Shselasky	wValue = (endpoint & 0xF) | ((addr & 0x7F) << 4) |
2132222786Shselasky	    ((endpoint & 0x80) << 8) | ((type & 3) << 12);
2133222786Shselasky
2134222786Shselasky	req.bmRequestType = UT_WRITE_CLASS_OTHER;
2135222786Shselasky	req.bRequest = UR_CLEAR_TT_BUFFER;
2136222786Shselasky	USETW(req.wValue, wValue);
2137222786Shselasky	req.wIndex[0] = port;
2138222786Shselasky	req.wIndex[1] = 0;
2139222786Shselasky	USETW(req.wLength, 0);
2140222786Shselasky	return (usbd_do_request(udev, mtx, &req, 0));
2141222786Shselasky}
2142230032Shselasky
2143230032Shselasky/*------------------------------------------------------------------------*
2144230032Shselasky *	usbd_req_set_port_link_state
2145230032Shselasky *
2146230032Shselasky * USB 3.0 specific request
2147230032Shselasky *
2148230032Shselasky * Returns:
2149230032Shselasky *    0: Success
2150230032Shselasky * Else: Failure
2151230032Shselasky *------------------------------------------------------------------------*/
2152230032Shselaskyusb_error_t
2153230032Shselaskyusbd_req_set_port_link_state(struct usb_device *udev, struct mtx *mtx,
2154230032Shselasky    uint8_t port, uint8_t link_state)
2155230032Shselasky{
2156230032Shselasky	struct usb_device_request req;
2157230032Shselasky
2158230032Shselasky	req.bmRequestType = UT_WRITE_CLASS_OTHER;
2159230032Shselasky	req.bRequest = UR_SET_FEATURE;
2160230032Shselasky	USETW(req.wValue, UHF_PORT_LINK_STATE);
2161230032Shselasky	req.wIndex[0] = port;
2162230032Shselasky	req.wIndex[1] = link_state;
2163230032Shselasky	USETW(req.wLength, 0);
2164230032Shselasky	return (usbd_do_request(udev, mtx, &req, 0));
2165230032Shselasky}
2166233771Shselasky
2167233771Shselasky/*------------------------------------------------------------------------*
2168233771Shselasky *		usbd_req_set_lpm_info
2169233771Shselasky *
2170233771Shselasky * USB 2.0 specific request for Link Power Management.
2171233771Shselasky *
2172233771Shselasky * Returns:
2173233771Shselasky * 0:				Success
2174233771Shselasky * USB_ERR_PENDING_REQUESTS:	NYET
2175233771Shselasky * USB_ERR_TIMEOUT:		TIMEOUT
2176233771Shselasky * USB_ERR_STALL:		STALL
2177233771Shselasky * Else:			Failure
2178233771Shselasky *------------------------------------------------------------------------*/
2179233771Shselaskyusb_error_t
2180233771Shselaskyusbd_req_set_lpm_info(struct usb_device *udev, struct mtx *mtx,
2181233771Shselasky    uint8_t port, uint8_t besl, uint8_t addr, uint8_t rwe)
2182233771Shselasky{
2183233771Shselasky	struct usb_device_request req;
2184233771Shselasky	usb_error_t err;
2185233771Shselasky	uint8_t buf[1];
2186233771Shselasky
2187233771Shselasky	req.bmRequestType = UT_WRITE_CLASS_OTHER;
2188233771Shselasky	req.bRequest = UR_SET_AND_TEST;
2189233771Shselasky	USETW(req.wValue, UHF_PORT_L1);
2190233771Shselasky	req.wIndex[0] = (port & 0xF) | ((besl & 0xF) << 4);
2191233771Shselasky	req.wIndex[1] = (addr & 0x7F) | (rwe ? 0x80 : 0x00);
2192233771Shselasky	USETW(req.wLength, sizeof(buf));
2193233771Shselasky
2194233771Shselasky	/* set default value in case of short transfer */
2195233771Shselasky	buf[0] = 0x00;
2196233771Shselasky
2197233771Shselasky	err = usbd_do_request(udev, mtx, &req, buf);
2198233771Shselasky	if (err)
2199233771Shselasky		return (err);
2200233771Shselasky
2201233771Shselasky	switch (buf[0]) {
2202233771Shselasky	case 0x00:	/* SUCCESS */
2203233771Shselasky		break;
2204233771Shselasky	case 0x10:	/* NYET */
2205233771Shselasky		err = USB_ERR_PENDING_REQUESTS;
2206233771Shselasky		break;
2207233771Shselasky	case 0x11:	/* TIMEOUT */
2208233771Shselasky		err = USB_ERR_TIMEOUT;
2209233771Shselasky		break;
2210233771Shselasky	case 0x30:	/* STALL */
2211233771Shselasky		err = USB_ERR_STALLED;
2212233771Shselasky		break;
2213233771Shselasky	default:	/* reserved */
2214233771Shselasky		err = USB_ERR_IOERROR;
2215233771Shselasky		break;
2216233771Shselasky	}
2217233771Shselasky	return (err);
2218233771Shselasky}
2219233771Shselasky
2220