xref: /freebsd/sys/dev/usb/usb_transfer.c (revision 963169b4af5d1a347560f060254e1df9541b2350)
102ac6454SAndrew Thompson /* $FreeBSD$ */
202ac6454SAndrew Thompson /*-
302ac6454SAndrew Thompson  * Copyright (c) 2008 Hans Petter Selasky. All rights reserved.
402ac6454SAndrew Thompson  *
502ac6454SAndrew Thompson  * Redistribution and use in source and binary forms, with or without
602ac6454SAndrew Thompson  * modification, are permitted provided that the following conditions
702ac6454SAndrew Thompson  * are met:
802ac6454SAndrew Thompson  * 1. Redistributions of source code must retain the above copyright
902ac6454SAndrew Thompson  *    notice, this list of conditions and the following disclaimer.
1002ac6454SAndrew Thompson  * 2. Redistributions in binary form must reproduce the above copyright
1102ac6454SAndrew Thompson  *    notice, this list of conditions and the following disclaimer in the
1202ac6454SAndrew Thompson  *    documentation and/or other materials provided with the distribution.
1302ac6454SAndrew Thompson  *
1402ac6454SAndrew Thompson  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
1502ac6454SAndrew Thompson  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
1602ac6454SAndrew Thompson  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
1702ac6454SAndrew Thompson  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
1802ac6454SAndrew Thompson  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
1902ac6454SAndrew Thompson  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
2002ac6454SAndrew Thompson  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
2102ac6454SAndrew Thompson  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
2202ac6454SAndrew Thompson  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
2302ac6454SAndrew Thompson  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
2402ac6454SAndrew Thompson  * SUCH DAMAGE.
2502ac6454SAndrew Thompson  */
2602ac6454SAndrew Thompson 
27ed6d949aSAndrew Thompson #include <sys/stdint.h>
28ed6d949aSAndrew Thompson #include <sys/stddef.h>
29ed6d949aSAndrew Thompson #include <sys/param.h>
30ed6d949aSAndrew Thompson #include <sys/queue.h>
31ed6d949aSAndrew Thompson #include <sys/types.h>
32ed6d949aSAndrew Thompson #include <sys/systm.h>
33ed6d949aSAndrew Thompson #include <sys/kernel.h>
34ed6d949aSAndrew Thompson #include <sys/bus.h>
35ed6d949aSAndrew Thompson #include <sys/linker_set.h>
36ed6d949aSAndrew Thompson #include <sys/module.h>
37ed6d949aSAndrew Thompson #include <sys/lock.h>
38ed6d949aSAndrew Thompson #include <sys/mutex.h>
39ed6d949aSAndrew Thompson #include <sys/condvar.h>
40ed6d949aSAndrew Thompson #include <sys/sysctl.h>
41ed6d949aSAndrew Thompson #include <sys/sx.h>
42ed6d949aSAndrew Thompson #include <sys/unistd.h>
43ed6d949aSAndrew Thompson #include <sys/callout.h>
44ed6d949aSAndrew Thompson #include <sys/malloc.h>
45ed6d949aSAndrew Thompson #include <sys/priv.h>
46ed6d949aSAndrew Thompson 
4702ac6454SAndrew Thompson #include <dev/usb/usb.h>
48ed6d949aSAndrew Thompson #include <dev/usb/usbdi.h>
49ed6d949aSAndrew Thompson #include <dev/usb/usbdi_util.h>
5002ac6454SAndrew Thompson 
51a593f6b8SAndrew Thompson #define	USB_DEBUG_VAR usb_debug
5202ac6454SAndrew Thompson 
5302ac6454SAndrew Thompson #include <dev/usb/usb_core.h>
5402ac6454SAndrew Thompson #include <dev/usb/usb_busdma.h>
5502ac6454SAndrew Thompson #include <dev/usb/usb_process.h>
5602ac6454SAndrew Thompson #include <dev/usb/usb_transfer.h>
5702ac6454SAndrew Thompson #include <dev/usb/usb_device.h>
5802ac6454SAndrew Thompson #include <dev/usb/usb_debug.h>
5902ac6454SAndrew Thompson #include <dev/usb/usb_util.h>
6002ac6454SAndrew Thompson 
6102ac6454SAndrew Thompson #include <dev/usb/usb_controller.h>
6202ac6454SAndrew Thompson #include <dev/usb/usb_bus.h>
6302ac6454SAndrew Thompson 
64a593f6b8SAndrew Thompson struct usb_std_packet_size {
6502ac6454SAndrew Thompson 	struct {
6602ac6454SAndrew Thompson 		uint16_t min;		/* inclusive */
6702ac6454SAndrew Thompson 		uint16_t max;		/* inclusive */
6802ac6454SAndrew Thompson 	}	range;
6902ac6454SAndrew Thompson 
7002ac6454SAndrew Thompson 	uint16_t fixed[4];
7102ac6454SAndrew Thompson };
7202ac6454SAndrew Thompson 
73a593f6b8SAndrew Thompson static usb_callback_t usb_request_callback;
7402ac6454SAndrew Thompson 
755b3bb704SAndrew Thompson static const struct usb_config usb_control_ep_cfg[USB_CTRL_XFER_MAX] = {
7602ac6454SAndrew Thompson 
7702ac6454SAndrew Thompson 	/* This transfer is used for generic control endpoint transfers */
7802ac6454SAndrew Thompson 
7902ac6454SAndrew Thompson 	[0] = {
8002ac6454SAndrew Thompson 		.type = UE_CONTROL,
8102ac6454SAndrew Thompson 		.endpoint = 0x00,	/* Control endpoint */
8202ac6454SAndrew Thompson 		.direction = UE_DIR_ANY,
834eae601eSAndrew Thompson 		.bufsize = USB_EP0_BUFSIZE,	/* bytes */
844eae601eSAndrew Thompson 		.flags = {.proxy_buffer = 1,},
85a593f6b8SAndrew Thompson 		.callback = &usb_request_callback,
86f29a0724SAndrew Thompson 		.usb_mode = USB_MODE_DUAL,	/* both modes */
8702ac6454SAndrew Thompson 	},
8802ac6454SAndrew Thompson 
8902ac6454SAndrew Thompson 	/* This transfer is used for generic clear stall only */
9002ac6454SAndrew Thompson 
9102ac6454SAndrew Thompson 	[1] = {
9202ac6454SAndrew Thompson 		.type = UE_CONTROL,
9302ac6454SAndrew Thompson 		.endpoint = 0x00,	/* Control pipe */
9402ac6454SAndrew Thompson 		.direction = UE_DIR_ANY,
95760bc48eSAndrew Thompson 		.bufsize = sizeof(struct usb_device_request),
96a593f6b8SAndrew Thompson 		.callback = &usb_do_clear_stall_callback,
974eae601eSAndrew Thompson 		.timeout = 1000,	/* 1 second */
984eae601eSAndrew Thompson 		.interval = 50,	/* 50ms */
994eae601eSAndrew Thompson 		.usb_mode = USB_MODE_HOST,
10002ac6454SAndrew Thompson 	},
10102ac6454SAndrew Thompson };
10202ac6454SAndrew Thompson 
10302ac6454SAndrew Thompson /* function prototypes */
10402ac6454SAndrew Thompson 
105a593f6b8SAndrew Thompson static void	usbd_update_max_frame_size(struct usb_xfer *);
106a593f6b8SAndrew Thompson static void	usbd_transfer_unsetup_sub(struct usb_xfer_root *, uint8_t);
107a593f6b8SAndrew Thompson static void	usbd_control_transfer_init(struct usb_xfer *);
108ed6d949aSAndrew Thompson static int	usbd_setup_ctrl_transfer(struct usb_xfer *);
109a593f6b8SAndrew Thompson static void	usb_callback_proc(struct usb_proc_msg *);
110a593f6b8SAndrew Thompson static void	usbd_callback_ss_done_defer(struct usb_xfer *);
111a593f6b8SAndrew Thompson static void	usbd_callback_wrapper(struct usb_xfer_queue *);
112a593f6b8SAndrew Thompson static void	usbd_transfer_start_cb(void *);
113a593f6b8SAndrew Thompson static uint8_t	usbd_callback_wrapper_sub(struct usb_xfer *);
114a593f6b8SAndrew Thompson static void	usbd_get_std_packet_size(struct usb_std_packet_size *ptr,
1158d2dd5ddSAndrew Thompson 		    uint8_t type, enum usb_dev_speed speed);
1164eae601eSAndrew Thompson 
1174eae601eSAndrew Thompson /*------------------------------------------------------------------------*
118a593f6b8SAndrew Thompson  *	usb_request_callback
1194eae601eSAndrew Thompson  *------------------------------------------------------------------------*/
1204eae601eSAndrew Thompson static void
121ed6d949aSAndrew Thompson usb_request_callback(struct usb_xfer *xfer, usb_error_t error)
1224eae601eSAndrew Thompson {
123f29a0724SAndrew Thompson 	if (xfer->flags_int.usb_mode == USB_MODE_DEVICE)
124ed6d949aSAndrew Thompson 		usb_handle_request_callback(xfer, error);
1254eae601eSAndrew Thompson 	else
126ed6d949aSAndrew Thompson 		usbd_do_request_callback(xfer, error);
1274eae601eSAndrew Thompson }
12802ac6454SAndrew Thompson 
12902ac6454SAndrew Thompson /*------------------------------------------------------------------------*
130a593f6b8SAndrew Thompson  *	usbd_update_max_frame_size
13102ac6454SAndrew Thompson  *
13202ac6454SAndrew Thompson  * This function updates the maximum frame size, hence high speed USB
13302ac6454SAndrew Thompson  * can transfer multiple consecutive packets.
13402ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
13502ac6454SAndrew Thompson static void
136a593f6b8SAndrew Thompson usbd_update_max_frame_size(struct usb_xfer *xfer)
13702ac6454SAndrew Thompson {
13802ac6454SAndrew Thompson 	/* compute maximum frame size */
139*963169b4SHans Petter Selasky 	/* this computation should not overflow 16-bit */
140*963169b4SHans Petter Selasky 	/* max = 15 * 1024 */
14102ac6454SAndrew Thompson 
142*963169b4SHans Petter Selasky 	xfer->max_frame_size = xfer->max_packet_size * xfer->max_packet_count;
14302ac6454SAndrew Thompson }
14402ac6454SAndrew Thompson 
14502ac6454SAndrew Thompson /*------------------------------------------------------------------------*
146a593f6b8SAndrew Thompson  *	usbd_get_dma_delay
14702ac6454SAndrew Thompson  *
14802ac6454SAndrew Thompson  * The following function is called when we need to
14902ac6454SAndrew Thompson  * synchronize with DMA hardware.
15002ac6454SAndrew Thompson  *
15102ac6454SAndrew Thompson  * Returns:
15202ac6454SAndrew Thompson  *    0: no DMA delay required
15302ac6454SAndrew Thompson  * Else: milliseconds of DMA delay
15402ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
155e0a69b51SAndrew Thompson usb_timeout_t
156527aa7b2SAndrew Thompson usbd_get_dma_delay(struct usb_device *udev)
15702ac6454SAndrew Thompson {
158527aa7b2SAndrew Thompson 	struct usb_bus_methods *mtod;
159527aa7b2SAndrew Thompson 	uint32_t temp;
16002ac6454SAndrew Thompson 
161527aa7b2SAndrew Thompson 	mtod = udev->bus->methods;
162527aa7b2SAndrew Thompson 	temp = 0;
163527aa7b2SAndrew Thompson 
164527aa7b2SAndrew Thompson 	if (mtod->get_dma_delay) {
165527aa7b2SAndrew Thompson 		(mtod->get_dma_delay) (udev, &temp);
16602ac6454SAndrew Thompson 		/*
16702ac6454SAndrew Thompson 		 * Round up and convert to milliseconds. Note that we use
16802ac6454SAndrew Thompson 		 * 1024 milliseconds per second. to save a division.
16902ac6454SAndrew Thompson 		 */
17002ac6454SAndrew Thompson 		temp += 0x3FF;
17102ac6454SAndrew Thompson 		temp /= 0x400;
17202ac6454SAndrew Thompson 	}
17302ac6454SAndrew Thompson 	return (temp);
17402ac6454SAndrew Thompson }
17502ac6454SAndrew Thompson 
17602ac6454SAndrew Thompson /*------------------------------------------------------------------------*
177a593f6b8SAndrew Thompson  *	usbd_transfer_setup_sub_malloc
17802ac6454SAndrew Thompson  *
17902ac6454SAndrew Thompson  * This function will allocate one or more DMA'able memory chunks
18002ac6454SAndrew Thompson  * according to "size", "align" and "count" arguments. "ppc" is
18102ac6454SAndrew Thompson  * pointed to a linear array of USB page caches afterwards.
18202ac6454SAndrew Thompson  *
18302ac6454SAndrew Thompson  * Returns:
18402ac6454SAndrew Thompson  *    0: Success
18502ac6454SAndrew Thompson  * Else: Failure
18602ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
187bdc081c6SAndrew Thompson #if USB_HAVE_BUSDMA
18802ac6454SAndrew Thompson uint8_t
189a593f6b8SAndrew Thompson usbd_transfer_setup_sub_malloc(struct usb_setup_params *parm,
190f9cb546cSAndrew Thompson     struct usb_page_cache **ppc, usb_size_t size, usb_size_t align,
191f9cb546cSAndrew Thompson     usb_size_t count)
19202ac6454SAndrew Thompson {
193760bc48eSAndrew Thompson 	struct usb_page_cache *pc;
194760bc48eSAndrew Thompson 	struct usb_page *pg;
19502ac6454SAndrew Thompson 	void *buf;
196f9cb546cSAndrew Thompson 	usb_size_t n_dma_pc;
197f9cb546cSAndrew Thompson 	usb_size_t n_obj;
198f9cb546cSAndrew Thompson 	usb_size_t x;
199f9cb546cSAndrew Thompson 	usb_size_t y;
200f9cb546cSAndrew Thompson 	usb_size_t r;
201f9cb546cSAndrew Thompson 	usb_size_t z;
20202ac6454SAndrew Thompson 
203767cb2e2SAndrew Thompson 	USB_ASSERT(align > 1, ("Invalid alignment, 0x%08x\n",
20402ac6454SAndrew Thompson 	    align));
205767cb2e2SAndrew Thompson 	USB_ASSERT(size > 0, ("Invalid size = 0\n"));
20602ac6454SAndrew Thompson 
20702ac6454SAndrew Thompson 	if (count == 0) {
20802ac6454SAndrew Thompson 		return (0);		/* nothing to allocate */
20902ac6454SAndrew Thompson 	}
21002ac6454SAndrew Thompson 	/*
21102ac6454SAndrew Thompson 	 * Make sure that the size is aligned properly.
21202ac6454SAndrew Thompson 	 */
21302ac6454SAndrew Thompson 	size = -((-size) & (-align));
21402ac6454SAndrew Thompson 
21502ac6454SAndrew Thompson 	/*
21602ac6454SAndrew Thompson 	 * Try multi-allocation chunks to reduce the number of DMA
21702ac6454SAndrew Thompson 	 * allocations, hence DMA allocations are slow.
21802ac6454SAndrew Thompson 	 */
21902ac6454SAndrew Thompson 	if (size >= PAGE_SIZE) {
22002ac6454SAndrew Thompson 		n_dma_pc = count;
22102ac6454SAndrew Thompson 		n_obj = 1;
22202ac6454SAndrew Thompson 	} else {
22302ac6454SAndrew Thompson 		/* compute number of objects per page */
22402ac6454SAndrew Thompson 		n_obj = (PAGE_SIZE / size);
22502ac6454SAndrew Thompson 		/*
22602ac6454SAndrew Thompson 		 * Compute number of DMA chunks, rounded up
22702ac6454SAndrew Thompson 		 * to nearest one:
22802ac6454SAndrew Thompson 		 */
22902ac6454SAndrew Thompson 		n_dma_pc = ((count + n_obj - 1) / n_obj);
23002ac6454SAndrew Thompson 	}
23102ac6454SAndrew Thompson 
23202ac6454SAndrew Thompson 	if (parm->buf == NULL) {
23302ac6454SAndrew Thompson 		/* for the future */
23402ac6454SAndrew Thompson 		parm->dma_page_ptr += n_dma_pc;
23502ac6454SAndrew Thompson 		parm->dma_page_cache_ptr += n_dma_pc;
23602ac6454SAndrew Thompson 		parm->dma_page_ptr += count;
23702ac6454SAndrew Thompson 		parm->xfer_page_cache_ptr += count;
23802ac6454SAndrew Thompson 		return (0);
23902ac6454SAndrew Thompson 	}
24002ac6454SAndrew Thompson 	for (x = 0; x != n_dma_pc; x++) {
24102ac6454SAndrew Thompson 		/* need to initialize the page cache */
24202ac6454SAndrew Thompson 		parm->dma_page_cache_ptr[x].tag_parent =
24302ac6454SAndrew Thompson 		    &parm->curr_xfer->xroot->dma_parent_tag;
24402ac6454SAndrew Thompson 	}
24502ac6454SAndrew Thompson 	for (x = 0; x != count; x++) {
24602ac6454SAndrew Thompson 		/* need to initialize the page cache */
24702ac6454SAndrew Thompson 		parm->xfer_page_cache_ptr[x].tag_parent =
24802ac6454SAndrew Thompson 		    &parm->curr_xfer->xroot->dma_parent_tag;
24902ac6454SAndrew Thompson 	}
25002ac6454SAndrew Thompson 
25102ac6454SAndrew Thompson 	if (ppc) {
25202ac6454SAndrew Thompson 		*ppc = parm->xfer_page_cache_ptr;
25302ac6454SAndrew Thompson 	}
25402ac6454SAndrew Thompson 	r = count;			/* set remainder count */
25502ac6454SAndrew Thompson 	z = n_obj * size;		/* set allocation size */
25602ac6454SAndrew Thompson 	pc = parm->xfer_page_cache_ptr;
25702ac6454SAndrew Thompson 	pg = parm->dma_page_ptr;
25802ac6454SAndrew Thompson 
25902ac6454SAndrew Thompson 	for (x = 0; x != n_dma_pc; x++) {
26002ac6454SAndrew Thompson 
26102ac6454SAndrew Thompson 		if (r < n_obj) {
26202ac6454SAndrew Thompson 			/* compute last remainder */
26302ac6454SAndrew Thompson 			z = r * size;
26402ac6454SAndrew Thompson 			n_obj = r;
26502ac6454SAndrew Thompson 		}
266a593f6b8SAndrew Thompson 		if (usb_pc_alloc_mem(parm->dma_page_cache_ptr,
26702ac6454SAndrew Thompson 		    pg, z, align)) {
26802ac6454SAndrew Thompson 			return (1);	/* failure */
26902ac6454SAndrew Thompson 		}
27002ac6454SAndrew Thompson 		/* Set beginning of current buffer */
27102ac6454SAndrew Thompson 		buf = parm->dma_page_cache_ptr->buffer;
27202ac6454SAndrew Thompson 		/* Make room for one DMA page cache and one page */
27302ac6454SAndrew Thompson 		parm->dma_page_cache_ptr++;
27402ac6454SAndrew Thompson 		pg++;
27502ac6454SAndrew Thompson 
27602ac6454SAndrew Thompson 		for (y = 0; (y != n_obj); y++, r--, pc++, pg++) {
27702ac6454SAndrew Thompson 
27802ac6454SAndrew Thompson 			/* Load sub-chunk into DMA */
279a593f6b8SAndrew Thompson 			if (usb_pc_dmamap_create(pc, size)) {
28002ac6454SAndrew Thompson 				return (1);	/* failure */
28102ac6454SAndrew Thompson 			}
28202ac6454SAndrew Thompson 			pc->buffer = USB_ADD_BYTES(buf, y * size);
28302ac6454SAndrew Thompson 			pc->page_start = pg;
28402ac6454SAndrew Thompson 
28502ac6454SAndrew Thompson 			mtx_lock(pc->tag_parent->mtx);
286a593f6b8SAndrew Thompson 			if (usb_pc_load_mem(pc, size, 1 /* synchronous */ )) {
28702ac6454SAndrew Thompson 				mtx_unlock(pc->tag_parent->mtx);
28802ac6454SAndrew Thompson 				return (1);	/* failure */
28902ac6454SAndrew Thompson 			}
29002ac6454SAndrew Thompson 			mtx_unlock(pc->tag_parent->mtx);
29102ac6454SAndrew Thompson 		}
29202ac6454SAndrew Thompson 	}
29302ac6454SAndrew Thompson 
29402ac6454SAndrew Thompson 	parm->xfer_page_cache_ptr = pc;
29502ac6454SAndrew Thompson 	parm->dma_page_ptr = pg;
29602ac6454SAndrew Thompson 	return (0);
29702ac6454SAndrew Thompson }
298bdc081c6SAndrew Thompson #endif
29902ac6454SAndrew Thompson 
30002ac6454SAndrew Thompson /*------------------------------------------------------------------------*
301a593f6b8SAndrew Thompson  *	usbd_transfer_setup_sub - transfer setup subroutine
30202ac6454SAndrew Thompson  *
30302ac6454SAndrew Thompson  * This function must be called from the "xfer_setup" callback of the
30402ac6454SAndrew Thompson  * USB Host or Device controller driver when setting up an USB
30502ac6454SAndrew Thompson  * transfer. This function will setup correct packet sizes, buffer
306760bc48eSAndrew Thompson  * sizes, flags and more, that are stored in the "usb_xfer"
30702ac6454SAndrew Thompson  * structure.
30802ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
30902ac6454SAndrew Thompson void
310a593f6b8SAndrew Thompson usbd_transfer_setup_sub(struct usb_setup_params *parm)
31102ac6454SAndrew Thompson {
31202ac6454SAndrew Thompson 	enum {
31302ac6454SAndrew Thompson 		REQ_SIZE = 8,
31402ac6454SAndrew Thompson 		MIN_PKT = 8,
31502ac6454SAndrew Thompson 	};
316760bc48eSAndrew Thompson 	struct usb_xfer *xfer = parm->curr_xfer;
317760bc48eSAndrew Thompson 	const struct usb_config *setup = parm->curr_setup;
318*963169b4SHans Petter Selasky 	struct usb_endpoint_ss_comp_descriptor *ecomp;
319760bc48eSAndrew Thompson 	struct usb_endpoint_descriptor *edesc;
320a593f6b8SAndrew Thompson 	struct usb_std_packet_size std_size;
321e0a69b51SAndrew Thompson 	usb_frcount_t n_frlengths;
322e0a69b51SAndrew Thompson 	usb_frcount_t n_frbuffers;
323e0a69b51SAndrew Thompson 	usb_frcount_t x;
32402ac6454SAndrew Thompson 	uint8_t type;
32502ac6454SAndrew Thompson 	uint8_t zmps;
32602ac6454SAndrew Thompson 
32702ac6454SAndrew Thompson 	/*
32802ac6454SAndrew Thompson 	 * Sanity check. The following parameters must be initialized before
32902ac6454SAndrew Thompson 	 * calling this function.
33002ac6454SAndrew Thompson 	 */
33102ac6454SAndrew Thompson 	if ((parm->hc_max_packet_size == 0) ||
33202ac6454SAndrew Thompson 	    (parm->hc_max_packet_count == 0) ||
33302ac6454SAndrew Thompson 	    (parm->hc_max_frame_size == 0)) {
33402ac6454SAndrew Thompson 		parm->err = USB_ERR_INVAL;
33502ac6454SAndrew Thompson 		goto done;
33602ac6454SAndrew Thompson 	}
337ae60fdfbSAndrew Thompson 	edesc = xfer->endpoint->edesc;
338*963169b4SHans Petter Selasky 	ecomp = xfer->endpoint->ecomp;
33902ac6454SAndrew Thompson 
34002ac6454SAndrew Thompson 	type = (edesc->bmAttributes & UE_XFERTYPE);
34102ac6454SAndrew Thompson 
3424eae601eSAndrew Thompson 	xfer->flags = setup->flags;
3434eae601eSAndrew Thompson 	xfer->nframes = setup->frames;
3444eae601eSAndrew Thompson 	xfer->timeout = setup->timeout;
3454eae601eSAndrew Thompson 	xfer->callback = setup->callback;
3464eae601eSAndrew Thompson 	xfer->interval = setup->interval;
347ae60fdfbSAndrew Thompson 	xfer->endpointno = edesc->bEndpointAddress;
34802ac6454SAndrew Thompson 	xfer->max_packet_size = UGETW(edesc->wMaxPacketSize);
34902ac6454SAndrew Thompson 	xfer->max_packet_count = 1;
35002ac6454SAndrew Thompson 	/* make a shadow copy: */
351f29a0724SAndrew Thompson 	xfer->flags_int.usb_mode = parm->udev->flags.usb_mode;
35202ac6454SAndrew Thompson 
3534eae601eSAndrew Thompson 	parm->bufsize = setup->bufsize;
35402ac6454SAndrew Thompson 
355*963169b4SHans Petter Selasky 	switch (parm->speed) {
356*963169b4SHans Petter Selasky 	case USB_SPEED_HIGH:
357*963169b4SHans Petter Selasky 		switch (type) {
358*963169b4SHans Petter Selasky 		case UE_ISOCHRONOUS:
359*963169b4SHans Petter Selasky 		case UE_INTERRUPT:
36002ac6454SAndrew Thompson 			xfer->max_packet_count += (xfer->max_packet_size >> 11) & 3;
361*963169b4SHans Petter Selasky 
362*963169b4SHans Petter Selasky 			/* check for invalid max packet count */
363*963169b4SHans Petter Selasky 			if (xfer->max_packet_count > 3)
364*963169b4SHans Petter Selasky 				xfer->max_packet_count = 3;
365*963169b4SHans Petter Selasky 			break;
366*963169b4SHans Petter Selasky 		default:
367*963169b4SHans Petter Selasky 			break;
368*963169b4SHans Petter Selasky 		}
36902ac6454SAndrew Thompson 		xfer->max_packet_size &= 0x7FF;
370*963169b4SHans Petter Selasky 		break;
371*963169b4SHans Petter Selasky 	case USB_SPEED_SUPER:
372*963169b4SHans Petter Selasky 		xfer->max_packet_count += (xfer->max_packet_size >> 11) & 3;
373*963169b4SHans Petter Selasky 
374*963169b4SHans Petter Selasky 		if (ecomp != NULL)
375*963169b4SHans Petter Selasky 			xfer->max_packet_count += ecomp->bMaxBurst;
376*963169b4SHans Petter Selasky 
377*963169b4SHans Petter Selasky 		if ((xfer->max_packet_count == 0) ||
378*963169b4SHans Petter Selasky 		    (xfer->max_packet_count > 16))
379*963169b4SHans Petter Selasky 			xfer->max_packet_count = 16;
380*963169b4SHans Petter Selasky 
381*963169b4SHans Petter Selasky 		switch (type) {
382*963169b4SHans Petter Selasky 		case UE_CONTROL:
383*963169b4SHans Petter Selasky 			xfer->max_packet_count = 1;
384*963169b4SHans Petter Selasky 			break;
385*963169b4SHans Petter Selasky 		case UE_ISOCHRONOUS:
386*963169b4SHans Petter Selasky 			if (ecomp != NULL) {
387*963169b4SHans Petter Selasky 				uint8_t mult;
388*963169b4SHans Petter Selasky 
389*963169b4SHans Petter Selasky 				mult = (ecomp->bmAttributes & 3) + 1;
390*963169b4SHans Petter Selasky 				if (mult > 3)
391*963169b4SHans Petter Selasky 					mult = 3;
392*963169b4SHans Petter Selasky 
393*963169b4SHans Petter Selasky 				xfer->max_packet_count *= mult;
394*963169b4SHans Petter Selasky 			}
395*963169b4SHans Petter Selasky 			break;
396*963169b4SHans Petter Selasky 		default:
397*963169b4SHans Petter Selasky 			break;
398*963169b4SHans Petter Selasky 		}
399*963169b4SHans Petter Selasky 		xfer->max_packet_size &= 0x7FF;
400*963169b4SHans Petter Selasky 		break;
401*963169b4SHans Petter Selasky 	default:
402*963169b4SHans Petter Selasky 		break;
40302ac6454SAndrew Thompson 	}
40402ac6454SAndrew Thompson 	/* range check "max_packet_count" */
40502ac6454SAndrew Thompson 
40602ac6454SAndrew Thompson 	if (xfer->max_packet_count > parm->hc_max_packet_count) {
40702ac6454SAndrew Thompson 		xfer->max_packet_count = parm->hc_max_packet_count;
40802ac6454SAndrew Thompson 	}
40902ac6454SAndrew Thompson 	/* filter "wMaxPacketSize" according to HC capabilities */
41002ac6454SAndrew Thompson 
41102ac6454SAndrew Thompson 	if ((xfer->max_packet_size > parm->hc_max_packet_size) ||
41202ac6454SAndrew Thompson 	    (xfer->max_packet_size == 0)) {
41302ac6454SAndrew Thompson 		xfer->max_packet_size = parm->hc_max_packet_size;
41402ac6454SAndrew Thompson 	}
41502ac6454SAndrew Thompson 	/* filter "wMaxPacketSize" according to standard sizes */
41602ac6454SAndrew Thompson 
417a593f6b8SAndrew Thompson 	usbd_get_std_packet_size(&std_size, type, parm->speed);
41802ac6454SAndrew Thompson 
41902ac6454SAndrew Thompson 	if (std_size.range.min || std_size.range.max) {
42002ac6454SAndrew Thompson 
42102ac6454SAndrew Thompson 		if (xfer->max_packet_size < std_size.range.min) {
42202ac6454SAndrew Thompson 			xfer->max_packet_size = std_size.range.min;
42302ac6454SAndrew Thompson 		}
42402ac6454SAndrew Thompson 		if (xfer->max_packet_size > std_size.range.max) {
42502ac6454SAndrew Thompson 			xfer->max_packet_size = std_size.range.max;
42602ac6454SAndrew Thompson 		}
42702ac6454SAndrew Thompson 	} else {
42802ac6454SAndrew Thompson 
42902ac6454SAndrew Thompson 		if (xfer->max_packet_size >= std_size.fixed[3]) {
43002ac6454SAndrew Thompson 			xfer->max_packet_size = std_size.fixed[3];
43102ac6454SAndrew Thompson 		} else if (xfer->max_packet_size >= std_size.fixed[2]) {
43202ac6454SAndrew Thompson 			xfer->max_packet_size = std_size.fixed[2];
43302ac6454SAndrew Thompson 		} else if (xfer->max_packet_size >= std_size.fixed[1]) {
43402ac6454SAndrew Thompson 			xfer->max_packet_size = std_size.fixed[1];
43502ac6454SAndrew Thompson 		} else {
43602ac6454SAndrew Thompson 			/* only one possibility left */
43702ac6454SAndrew Thompson 			xfer->max_packet_size = std_size.fixed[0];
43802ac6454SAndrew Thompson 		}
43902ac6454SAndrew Thompson 	}
44002ac6454SAndrew Thompson 
44102ac6454SAndrew Thompson 	/* compute "max_frame_size" */
44202ac6454SAndrew Thompson 
443a593f6b8SAndrew Thompson 	usbd_update_max_frame_size(xfer);
44402ac6454SAndrew Thompson 
44502ac6454SAndrew Thompson 	/* check interrupt interval and transfer pre-delay */
44602ac6454SAndrew Thompson 
44702ac6454SAndrew Thompson 	if (type == UE_ISOCHRONOUS) {
44802ac6454SAndrew Thompson 
449578d0effSAndrew Thompson 		uint16_t frame_limit;
45002ac6454SAndrew Thompson 
45102ac6454SAndrew Thompson 		xfer->interval = 0;	/* not used, must be zero */
45202ac6454SAndrew Thompson 		xfer->flags_int.isochronous_xfr = 1;	/* set flag */
45302ac6454SAndrew Thompson 
45402ac6454SAndrew Thompson 		if (xfer->timeout == 0) {
45502ac6454SAndrew Thompson 			/*
45602ac6454SAndrew Thompson 			 * set a default timeout in
45702ac6454SAndrew Thompson 			 * case something goes wrong!
45802ac6454SAndrew Thompson 			 */
45902ac6454SAndrew Thompson 			xfer->timeout = 1000 / 4;
46002ac6454SAndrew Thompson 		}
46102ac6454SAndrew Thompson 		switch (parm->speed) {
46202ac6454SAndrew Thompson 		case USB_SPEED_LOW:
46302ac6454SAndrew Thompson 		case USB_SPEED_FULL:
46402ac6454SAndrew Thompson 			frame_limit = USB_MAX_FS_ISOC_FRAMES_PER_XFER;
465883bb300SAndrew Thompson 			xfer->fps_shift = 0;
46602ac6454SAndrew Thompson 			break;
46702ac6454SAndrew Thompson 		default:
46802ac6454SAndrew Thompson 			frame_limit = USB_MAX_HS_ISOC_FRAMES_PER_XFER;
469883bb300SAndrew Thompson 			xfer->fps_shift = edesc->bInterval;
470883bb300SAndrew Thompson 			if (xfer->fps_shift > 0)
471883bb300SAndrew Thompson 				xfer->fps_shift--;
472883bb300SAndrew Thompson 			if (xfer->fps_shift > 3)
473883bb300SAndrew Thompson 				xfer->fps_shift = 3;
47402ac6454SAndrew Thompson 			break;
47502ac6454SAndrew Thompson 		}
47602ac6454SAndrew Thompson 
47702ac6454SAndrew Thompson 		if (xfer->nframes > frame_limit) {
47802ac6454SAndrew Thompson 			/*
47902ac6454SAndrew Thompson 			 * this is not going to work
48002ac6454SAndrew Thompson 			 * cross hardware
48102ac6454SAndrew Thompson 			 */
48202ac6454SAndrew Thompson 			parm->err = USB_ERR_INVAL;
48302ac6454SAndrew Thompson 			goto done;
48402ac6454SAndrew Thompson 		}
48502ac6454SAndrew Thompson 		if (xfer->nframes == 0) {
48602ac6454SAndrew Thompson 			/*
48702ac6454SAndrew Thompson 			 * this is not a valid value
48802ac6454SAndrew Thompson 			 */
48902ac6454SAndrew Thompson 			parm->err = USB_ERR_ZERO_NFRAMES;
49002ac6454SAndrew Thompson 			goto done;
49102ac6454SAndrew Thompson 		}
49202ac6454SAndrew Thompson 	} else {
49302ac6454SAndrew Thompson 
49402ac6454SAndrew Thompson 		/*
495*963169b4SHans Petter Selasky 		 * If a value is specified use that else check the
496*963169b4SHans Petter Selasky 		 * endpoint descriptor!
49702ac6454SAndrew Thompson 		 */
49802ac6454SAndrew Thompson 		if (type == UE_INTERRUPT) {
49902ac6454SAndrew Thompson 
500*963169b4SHans Petter Selasky 			uint32_t temp;
501*963169b4SHans Petter Selasky 
502*963169b4SHans Petter Selasky 			if (xfer->interval == 0) {
503*963169b4SHans Petter Selasky 
50402ac6454SAndrew Thompson 				xfer->interval = edesc->bInterval;
50502ac6454SAndrew Thompson 
50602ac6454SAndrew Thompson 				switch (parm->speed) {
507*963169b4SHans Petter Selasky 				case USB_SPEED_LOW:
508*963169b4SHans Petter Selasky 				case USB_SPEED_FULL:
509*963169b4SHans Petter Selasky 					break;
510*963169b4SHans Petter Selasky 				default:
51102ac6454SAndrew Thompson 					/* 125us -> 1ms */
51202ac6454SAndrew Thompson 					if (xfer->interval < 4)
51302ac6454SAndrew Thompson 						xfer->interval = 1;
51402ac6454SAndrew Thompson 					else if (xfer->interval > 16)
51502ac6454SAndrew Thompson 						xfer->interval = (1 << (16 - 4));
51602ac6454SAndrew Thompson 					else
51702ac6454SAndrew Thompson 						xfer->interval =
51802ac6454SAndrew Thompson 						    (1 << (xfer->interval - 4));
51902ac6454SAndrew Thompson 					break;
52002ac6454SAndrew Thompson 				}
521*963169b4SHans Petter Selasky 			}
522*963169b4SHans Petter Selasky 
52302ac6454SAndrew Thompson 			if (xfer->interval == 0) {
52402ac6454SAndrew Thompson 				/*
52502ac6454SAndrew Thompson 				 * One millisecond is the smallest
52602ac6454SAndrew Thompson 				 * interval we support:
52702ac6454SAndrew Thompson 				 */
52802ac6454SAndrew Thompson 				xfer->interval = 1;
52902ac6454SAndrew Thompson 			}
530*963169b4SHans Petter Selasky 
531*963169b4SHans Petter Selasky 			xfer->fps_shift = 0;
532*963169b4SHans Petter Selasky 			temp = 1;
533*963169b4SHans Petter Selasky 
534*963169b4SHans Petter Selasky 			while ((temp != 0) && (temp < xfer->interval)) {
535*963169b4SHans Petter Selasky 				xfer->fps_shift++;
536*963169b4SHans Petter Selasky 				temp *= 2;
537*963169b4SHans Petter Selasky 			}
538*963169b4SHans Petter Selasky 
539*963169b4SHans Petter Selasky 			switch (parm->speed) {
540*963169b4SHans Petter Selasky 			case USB_SPEED_LOW:
541*963169b4SHans Petter Selasky 			case USB_SPEED_FULL:
542*963169b4SHans Petter Selasky 				break;
543*963169b4SHans Petter Selasky 			default:
544*963169b4SHans Petter Selasky 				xfer->fps_shift += 3;
545*963169b4SHans Petter Selasky 				break;
54602ac6454SAndrew Thompson 			}
54702ac6454SAndrew Thompson 		}
54802ac6454SAndrew Thompson 	}
54902ac6454SAndrew Thompson 
55002ac6454SAndrew Thompson 	/*
55102ac6454SAndrew Thompson 	 * NOTE: we do not allow "max_packet_size" or "max_frame_size"
55202ac6454SAndrew Thompson 	 * to be equal to zero when setting up USB transfers, hence
55302ac6454SAndrew Thompson 	 * this leads to alot of extra code in the USB kernel.
55402ac6454SAndrew Thompson 	 */
55502ac6454SAndrew Thompson 
55602ac6454SAndrew Thompson 	if ((xfer->max_frame_size == 0) ||
55702ac6454SAndrew Thompson 	    (xfer->max_packet_size == 0)) {
55802ac6454SAndrew Thompson 
55902ac6454SAndrew Thompson 		zmps = 1;
56002ac6454SAndrew Thompson 
56102ac6454SAndrew Thompson 		if ((parm->bufsize <= MIN_PKT) &&
56202ac6454SAndrew Thompson 		    (type != UE_CONTROL) &&
56302ac6454SAndrew Thompson 		    (type != UE_BULK)) {
56402ac6454SAndrew Thompson 
56502ac6454SAndrew Thompson 			/* workaround */
56602ac6454SAndrew Thompson 			xfer->max_packet_size = MIN_PKT;
56702ac6454SAndrew Thompson 			xfer->max_packet_count = 1;
56802ac6454SAndrew Thompson 			parm->bufsize = 0;	/* automatic setup length */
569a593f6b8SAndrew Thompson 			usbd_update_max_frame_size(xfer);
57002ac6454SAndrew Thompson 
57102ac6454SAndrew Thompson 		} else {
57202ac6454SAndrew Thompson 			parm->err = USB_ERR_ZERO_MAXP;
57302ac6454SAndrew Thompson 			goto done;
57402ac6454SAndrew Thompson 		}
57502ac6454SAndrew Thompson 
57602ac6454SAndrew Thompson 	} else {
57702ac6454SAndrew Thompson 		zmps = 0;
57802ac6454SAndrew Thompson 	}
57902ac6454SAndrew Thompson 
58002ac6454SAndrew Thompson 	/*
58102ac6454SAndrew Thompson 	 * check if we should setup a default
58202ac6454SAndrew Thompson 	 * length:
58302ac6454SAndrew Thompson 	 */
58402ac6454SAndrew Thompson 
58502ac6454SAndrew Thompson 	if (parm->bufsize == 0) {
58602ac6454SAndrew Thompson 
58702ac6454SAndrew Thompson 		parm->bufsize = xfer->max_frame_size;
58802ac6454SAndrew Thompson 
58902ac6454SAndrew Thompson 		if (type == UE_ISOCHRONOUS) {
59002ac6454SAndrew Thompson 			parm->bufsize *= xfer->nframes;
59102ac6454SAndrew Thompson 		}
59202ac6454SAndrew Thompson 	}
59302ac6454SAndrew Thompson 	/*
59402ac6454SAndrew Thompson 	 * check if we are about to setup a proxy
59502ac6454SAndrew Thompson 	 * type of buffer:
59602ac6454SAndrew Thompson 	 */
59702ac6454SAndrew Thompson 
59802ac6454SAndrew Thompson 	if (xfer->flags.proxy_buffer) {
59902ac6454SAndrew Thompson 
60002ac6454SAndrew Thompson 		/* round bufsize up */
60102ac6454SAndrew Thompson 
60202ac6454SAndrew Thompson 		parm->bufsize += (xfer->max_frame_size - 1);
60302ac6454SAndrew Thompson 
60402ac6454SAndrew Thompson 		if (parm->bufsize < xfer->max_frame_size) {
60502ac6454SAndrew Thompson 			/* length wrapped around */
60602ac6454SAndrew Thompson 			parm->err = USB_ERR_INVAL;
60702ac6454SAndrew Thompson 			goto done;
60802ac6454SAndrew Thompson 		}
60902ac6454SAndrew Thompson 		/* subtract remainder */
61002ac6454SAndrew Thompson 
61102ac6454SAndrew Thompson 		parm->bufsize -= (parm->bufsize % xfer->max_frame_size);
61202ac6454SAndrew Thompson 
61302ac6454SAndrew Thompson 		/* add length of USB device request structure, if any */
61402ac6454SAndrew Thompson 
61502ac6454SAndrew Thompson 		if (type == UE_CONTROL) {
61602ac6454SAndrew Thompson 			parm->bufsize += REQ_SIZE;	/* SETUP message */
61702ac6454SAndrew Thompson 		}
61802ac6454SAndrew Thompson 	}
61902ac6454SAndrew Thompson 	xfer->max_data_length = parm->bufsize;
62002ac6454SAndrew Thompson 
62102ac6454SAndrew Thompson 	/* Setup "n_frlengths" and "n_frbuffers" */
62202ac6454SAndrew Thompson 
62302ac6454SAndrew Thompson 	if (type == UE_ISOCHRONOUS) {
62402ac6454SAndrew Thompson 		n_frlengths = xfer->nframes;
62502ac6454SAndrew Thompson 		n_frbuffers = 1;
62602ac6454SAndrew Thompson 	} else {
62702ac6454SAndrew Thompson 
62802ac6454SAndrew Thompson 		if (type == UE_CONTROL) {
62902ac6454SAndrew Thompson 			xfer->flags_int.control_xfr = 1;
63002ac6454SAndrew Thompson 			if (xfer->nframes == 0) {
63102ac6454SAndrew Thompson 				if (parm->bufsize <= REQ_SIZE) {
63202ac6454SAndrew Thompson 					/*
63302ac6454SAndrew Thompson 					 * there will never be any data
63402ac6454SAndrew Thompson 					 * stage
63502ac6454SAndrew Thompson 					 */
63602ac6454SAndrew Thompson 					xfer->nframes = 1;
63702ac6454SAndrew Thompson 				} else {
63802ac6454SAndrew Thompson 					xfer->nframes = 2;
63902ac6454SAndrew Thompson 				}
64002ac6454SAndrew Thompson 			}
64102ac6454SAndrew Thompson 		} else {
64202ac6454SAndrew Thompson 			if (xfer->nframes == 0) {
64302ac6454SAndrew Thompson 				xfer->nframes = 1;
64402ac6454SAndrew Thompson 			}
64502ac6454SAndrew Thompson 		}
64602ac6454SAndrew Thompson 
64702ac6454SAndrew Thompson 		n_frlengths = xfer->nframes;
64802ac6454SAndrew Thompson 		n_frbuffers = xfer->nframes;
64902ac6454SAndrew Thompson 	}
65002ac6454SAndrew Thompson 
65102ac6454SAndrew Thompson 	/*
65202ac6454SAndrew Thompson 	 * check if we have room for the
65302ac6454SAndrew Thompson 	 * USB device request structure:
65402ac6454SAndrew Thompson 	 */
65502ac6454SAndrew Thompson 
65602ac6454SAndrew Thompson 	if (type == UE_CONTROL) {
65702ac6454SAndrew Thompson 
65802ac6454SAndrew Thompson 		if (xfer->max_data_length < REQ_SIZE) {
65902ac6454SAndrew Thompson 			/* length wrapped around or too small bufsize */
66002ac6454SAndrew Thompson 			parm->err = USB_ERR_INVAL;
66102ac6454SAndrew Thompson 			goto done;
66202ac6454SAndrew Thompson 		}
66302ac6454SAndrew Thompson 		xfer->max_data_length -= REQ_SIZE;
66402ac6454SAndrew Thompson 	}
66502ac6454SAndrew Thompson 	/* setup "frlengths" */
66602ac6454SAndrew Thompson 	xfer->frlengths = parm->xfer_length_ptr;
66702ac6454SAndrew Thompson 	parm->xfer_length_ptr += n_frlengths;
66802ac6454SAndrew Thompson 
66902ac6454SAndrew Thompson 	/* setup "frbuffers" */
67002ac6454SAndrew Thompson 	xfer->frbuffers = parm->xfer_page_cache_ptr;
67102ac6454SAndrew Thompson 	parm->xfer_page_cache_ptr += n_frbuffers;
67202ac6454SAndrew Thompson 
673ed6d949aSAndrew Thompson 	/* initialize max frame count */
674ed6d949aSAndrew Thompson 	xfer->max_frame_count = xfer->nframes;
675ed6d949aSAndrew Thompson 
67602ac6454SAndrew Thompson 	/*
67702ac6454SAndrew Thompson 	 * check if we need to setup
67802ac6454SAndrew Thompson 	 * a local buffer:
67902ac6454SAndrew Thompson 	 */
68002ac6454SAndrew Thompson 
68102ac6454SAndrew Thompson 	if (!xfer->flags.ext_buffer) {
68202ac6454SAndrew Thompson 
68302ac6454SAndrew Thompson 		/* align data */
68402ac6454SAndrew Thompson 		parm->size[0] += ((-parm->size[0]) & (USB_HOST_ALIGN - 1));
68502ac6454SAndrew Thompson 
68602ac6454SAndrew Thompson 		if (parm->buf) {
68702ac6454SAndrew Thompson 
68802ac6454SAndrew Thompson 			xfer->local_buffer =
68902ac6454SAndrew Thompson 			    USB_ADD_BYTES(parm->buf, parm->size[0]);
69002ac6454SAndrew Thompson 
691ed6d949aSAndrew Thompson 			usbd_xfer_set_frame_offset(xfer, 0, 0);
69202ac6454SAndrew Thompson 
69302ac6454SAndrew Thompson 			if ((type == UE_CONTROL) && (n_frbuffers > 1)) {
694ed6d949aSAndrew Thompson 				usbd_xfer_set_frame_offset(xfer, REQ_SIZE, 1);
69502ac6454SAndrew Thompson 			}
69602ac6454SAndrew Thompson 		}
69702ac6454SAndrew Thompson 		parm->size[0] += parm->bufsize;
69802ac6454SAndrew Thompson 
69902ac6454SAndrew Thompson 		/* align data again */
70002ac6454SAndrew Thompson 		parm->size[0] += ((-parm->size[0]) & (USB_HOST_ALIGN - 1));
70102ac6454SAndrew Thompson 	}
70202ac6454SAndrew Thompson 	/*
70302ac6454SAndrew Thompson 	 * Compute maximum buffer size
70402ac6454SAndrew Thompson 	 */
70502ac6454SAndrew Thompson 
70602ac6454SAndrew Thompson 	if (parm->bufsize_max < parm->bufsize) {
70702ac6454SAndrew Thompson 		parm->bufsize_max = parm->bufsize;
70802ac6454SAndrew Thompson 	}
709bdc081c6SAndrew Thompson #if USB_HAVE_BUSDMA
71002ac6454SAndrew Thompson 	if (xfer->flags_int.bdma_enable) {
71102ac6454SAndrew Thompson 		/*
71202ac6454SAndrew Thompson 		 * Setup "dma_page_ptr".
71302ac6454SAndrew Thompson 		 *
71402ac6454SAndrew Thompson 		 * Proof for formula below:
71502ac6454SAndrew Thompson 		 *
71602ac6454SAndrew Thompson 		 * Assume there are three USB frames having length "a", "b" and
71702ac6454SAndrew Thompson 		 * "c". These USB frames will at maximum need "z"
718760bc48eSAndrew Thompson 		 * "usb_page" structures. "z" is given by:
71902ac6454SAndrew Thompson 		 *
72002ac6454SAndrew Thompson 		 * z = ((a / USB_PAGE_SIZE) + 2) + ((b / USB_PAGE_SIZE) + 2) +
72102ac6454SAndrew Thompson 		 * ((c / USB_PAGE_SIZE) + 2);
72202ac6454SAndrew Thompson 		 *
72302ac6454SAndrew Thompson 		 * Constraining "a", "b" and "c" like this:
72402ac6454SAndrew Thompson 		 *
72502ac6454SAndrew Thompson 		 * (a + b + c) <= parm->bufsize
72602ac6454SAndrew Thompson 		 *
72702ac6454SAndrew Thompson 		 * We know that:
72802ac6454SAndrew Thompson 		 *
72902ac6454SAndrew Thompson 		 * z <= ((parm->bufsize / USB_PAGE_SIZE) + (3*2));
73002ac6454SAndrew Thompson 		 *
73102ac6454SAndrew Thompson 		 * Here is the general formula:
73202ac6454SAndrew Thompson 		 */
73302ac6454SAndrew Thompson 		xfer->dma_page_ptr = parm->dma_page_ptr;
73402ac6454SAndrew Thompson 		parm->dma_page_ptr += (2 * n_frbuffers);
73502ac6454SAndrew Thompson 		parm->dma_page_ptr += (parm->bufsize / USB_PAGE_SIZE);
73602ac6454SAndrew Thompson 	}
737bdc081c6SAndrew Thompson #endif
73802ac6454SAndrew Thompson 	if (zmps) {
73902ac6454SAndrew Thompson 		/* correct maximum data length */
74002ac6454SAndrew Thompson 		xfer->max_data_length = 0;
74102ac6454SAndrew Thompson 	}
74202ac6454SAndrew Thompson 	/* subtract USB frame remainder from "hc_max_frame_size" */
74302ac6454SAndrew Thompson 
744578d0effSAndrew Thompson 	xfer->max_hc_frame_size =
74502ac6454SAndrew Thompson 	    (parm->hc_max_frame_size -
74602ac6454SAndrew Thompson 	    (parm->hc_max_frame_size % xfer->max_frame_size));
74702ac6454SAndrew Thompson 
748578d0effSAndrew Thompson 	if (xfer->max_hc_frame_size == 0) {
74902ac6454SAndrew Thompson 		parm->err = USB_ERR_INVAL;
75002ac6454SAndrew Thompson 		goto done;
75102ac6454SAndrew Thompson 	}
75202ac6454SAndrew Thompson 
75302ac6454SAndrew Thompson 	/* initialize frame buffers */
75402ac6454SAndrew Thompson 
75502ac6454SAndrew Thompson 	if (parm->buf) {
75602ac6454SAndrew Thompson 		for (x = 0; x != n_frbuffers; x++) {
75702ac6454SAndrew Thompson 			xfer->frbuffers[x].tag_parent =
75802ac6454SAndrew Thompson 			    &xfer->xroot->dma_parent_tag;
759bdc081c6SAndrew Thompson #if USB_HAVE_BUSDMA
76002ac6454SAndrew Thompson 			if (xfer->flags_int.bdma_enable &&
76102ac6454SAndrew Thompson 			    (parm->bufsize_max > 0)) {
76202ac6454SAndrew Thompson 
763a593f6b8SAndrew Thompson 				if (usb_pc_dmamap_create(
76402ac6454SAndrew Thompson 				    xfer->frbuffers + x,
76502ac6454SAndrew Thompson 				    parm->bufsize_max)) {
76602ac6454SAndrew Thompson 					parm->err = USB_ERR_NOMEM;
76702ac6454SAndrew Thompson 					goto done;
76802ac6454SAndrew Thompson 				}
76902ac6454SAndrew Thompson 			}
770bdc081c6SAndrew Thompson #endif
77102ac6454SAndrew Thompson 		}
77202ac6454SAndrew Thompson 	}
77302ac6454SAndrew Thompson done:
77402ac6454SAndrew Thompson 	if (parm->err) {
77502ac6454SAndrew Thompson 		/*
77602ac6454SAndrew Thompson 		 * Set some dummy values so that we avoid division by zero:
77702ac6454SAndrew Thompson 		 */
778578d0effSAndrew Thompson 		xfer->max_hc_frame_size = 1;
77902ac6454SAndrew Thompson 		xfer->max_frame_size = 1;
78002ac6454SAndrew Thompson 		xfer->max_packet_size = 1;
78102ac6454SAndrew Thompson 		xfer->max_data_length = 0;
78202ac6454SAndrew Thompson 		xfer->nframes = 0;
78302ac6454SAndrew Thompson 		xfer->max_frame_count = 0;
78402ac6454SAndrew Thompson 	}
78502ac6454SAndrew Thompson }
78602ac6454SAndrew Thompson 
78702ac6454SAndrew Thompson /*------------------------------------------------------------------------*
788a593f6b8SAndrew Thompson  *	usbd_transfer_setup - setup an array of USB transfers
78902ac6454SAndrew Thompson  *
790a593f6b8SAndrew Thompson  * NOTE: You must always call "usbd_transfer_unsetup" after calling
791a593f6b8SAndrew Thompson  * "usbd_transfer_setup" if success was returned.
79202ac6454SAndrew Thompson  *
79302ac6454SAndrew Thompson  * The idea is that the USB device driver should pre-allocate all its
79402ac6454SAndrew Thompson  * transfers by one call to this function.
79502ac6454SAndrew Thompson  *
79602ac6454SAndrew Thompson  * Return values:
79702ac6454SAndrew Thompson  *    0: Success
79802ac6454SAndrew Thompson  * Else: Failure
79902ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
800e0a69b51SAndrew Thompson usb_error_t
801a593f6b8SAndrew Thompson usbd_transfer_setup(struct usb_device *udev,
802760bc48eSAndrew Thompson     const uint8_t *ifaces, struct usb_xfer **ppxfer,
803760bc48eSAndrew Thompson     const struct usb_config *setup_start, uint16_t n_setup,
80402ac6454SAndrew Thompson     void *priv_sc, struct mtx *xfer_mtx)
80502ac6454SAndrew Thompson {
806760bc48eSAndrew Thompson 	struct usb_xfer dummy;
807760bc48eSAndrew Thompson 	struct usb_setup_params parm;
808760bc48eSAndrew Thompson 	const struct usb_config *setup_end = setup_start + n_setup;
809760bc48eSAndrew Thompson 	const struct usb_config *setup;
810ae60fdfbSAndrew Thompson 	struct usb_endpoint *ep;
811760bc48eSAndrew Thompson 	struct usb_xfer_root *info;
812760bc48eSAndrew Thompson 	struct usb_xfer *xfer;
81302ac6454SAndrew Thompson 	void *buf = NULL;
81402ac6454SAndrew Thompson 	uint16_t n;
81502ac6454SAndrew Thompson 	uint16_t refcount;
81602ac6454SAndrew Thompson 
81702ac6454SAndrew Thompson 	parm.err = 0;
81802ac6454SAndrew Thompson 	refcount = 0;
81902ac6454SAndrew Thompson 	info = NULL;
82002ac6454SAndrew Thompson 
82102ac6454SAndrew Thompson 	WITNESS_WARN(WARN_GIANTOK | WARN_SLEEPOK, NULL,
822a593f6b8SAndrew Thompson 	    "usbd_transfer_setup can sleep!");
82302ac6454SAndrew Thompson 
82402ac6454SAndrew Thompson 	/* do some checking first */
82502ac6454SAndrew Thompson 
82602ac6454SAndrew Thompson 	if (n_setup == 0) {
82702ac6454SAndrew Thompson 		DPRINTFN(6, "setup array has zero length!\n");
82802ac6454SAndrew Thompson 		return (USB_ERR_INVAL);
82902ac6454SAndrew Thompson 	}
83002ac6454SAndrew Thompson 	if (ifaces == 0) {
83102ac6454SAndrew Thompson 		DPRINTFN(6, "ifaces array is NULL!\n");
83202ac6454SAndrew Thompson 		return (USB_ERR_INVAL);
83302ac6454SAndrew Thompson 	}
83402ac6454SAndrew Thompson 	if (xfer_mtx == NULL) {
83502ac6454SAndrew Thompson 		DPRINTFN(6, "using global lock\n");
83602ac6454SAndrew Thompson 		xfer_mtx = &Giant;
83702ac6454SAndrew Thompson 	}
83802ac6454SAndrew Thompson 	/* sanity checks */
83902ac6454SAndrew Thompson 	for (setup = setup_start, n = 0;
84002ac6454SAndrew Thompson 	    setup != setup_end; setup++, n++) {
841e0a69b51SAndrew Thompson 		if (setup->bufsize == (usb_frlength_t)-1) {
84202ac6454SAndrew Thompson 			parm.err = USB_ERR_BAD_BUFSIZE;
84302ac6454SAndrew Thompson 			DPRINTF("invalid bufsize\n");
84402ac6454SAndrew Thompson 		}
8454eae601eSAndrew Thompson 		if (setup->callback == NULL) {
84602ac6454SAndrew Thompson 			parm.err = USB_ERR_NO_CALLBACK;
84702ac6454SAndrew Thompson 			DPRINTF("no callback\n");
84802ac6454SAndrew Thompson 		}
84902ac6454SAndrew Thompson 		ppxfer[n] = NULL;
85002ac6454SAndrew Thompson 	}
85102ac6454SAndrew Thompson 
85202ac6454SAndrew Thompson 	if (parm.err) {
85302ac6454SAndrew Thompson 		goto done;
85402ac6454SAndrew Thompson 	}
85502ac6454SAndrew Thompson 	bzero(&parm, sizeof(parm));
85602ac6454SAndrew Thompson 
85702ac6454SAndrew Thompson 	parm.udev = udev;
858a593f6b8SAndrew Thompson 	parm.speed = usbd_get_speed(udev);
85902ac6454SAndrew Thompson 	parm.hc_max_packet_count = 1;
86002ac6454SAndrew Thompson 
86102ac6454SAndrew Thompson 	if (parm.speed >= USB_SPEED_MAX) {
86202ac6454SAndrew Thompson 		parm.err = USB_ERR_INVAL;
86302ac6454SAndrew Thompson 		goto done;
86402ac6454SAndrew Thompson 	}
86502ac6454SAndrew Thompson 	/* setup all transfers */
86602ac6454SAndrew Thompson 
86702ac6454SAndrew Thompson 	while (1) {
86802ac6454SAndrew Thompson 
86902ac6454SAndrew Thompson 		if (buf) {
87002ac6454SAndrew Thompson 			/*
871760bc48eSAndrew Thompson 			 * Initialize the "usb_xfer_root" structure,
87202ac6454SAndrew Thompson 			 * which is common for all our USB transfers.
87302ac6454SAndrew Thompson 			 */
87402ac6454SAndrew Thompson 			info = USB_ADD_BYTES(buf, 0);
87502ac6454SAndrew Thompson 
87602ac6454SAndrew Thompson 			info->memory_base = buf;
87702ac6454SAndrew Thompson 			info->memory_size = parm.size[0];
87802ac6454SAndrew Thompson 
879bdc081c6SAndrew Thompson #if USB_HAVE_BUSDMA
88002ac6454SAndrew Thompson 			info->dma_page_cache_start = USB_ADD_BYTES(buf, parm.size[4]);
88102ac6454SAndrew Thompson 			info->dma_page_cache_end = USB_ADD_BYTES(buf, parm.size[5]);
882bdc081c6SAndrew Thompson #endif
88302ac6454SAndrew Thompson 			info->xfer_page_cache_start = USB_ADD_BYTES(buf, parm.size[5]);
88402ac6454SAndrew Thompson 			info->xfer_page_cache_end = USB_ADD_BYTES(buf, parm.size[2]);
88502ac6454SAndrew Thompson 
8868437751dSAndrew Thompson 			cv_init(&info->cv_drain, "WDRAIN");
88702ac6454SAndrew Thompson 
88802ac6454SAndrew Thompson 			info->xfer_mtx = xfer_mtx;
889bdc081c6SAndrew Thompson #if USB_HAVE_BUSDMA
890a593f6b8SAndrew Thompson 			usb_dma_tag_setup(&info->dma_parent_tag,
89102ac6454SAndrew Thompson 			    parm.dma_tag_p, udev->bus->dma_parent_tag[0].tag,
892a593f6b8SAndrew Thompson 			    xfer_mtx, &usb_bdma_done_event, 32, parm.dma_tag_max);
893bdc081c6SAndrew Thompson #endif
89402ac6454SAndrew Thompson 
89502ac6454SAndrew Thompson 			info->bus = udev->bus;
89602ac6454SAndrew Thompson 			info->udev = udev;
89702ac6454SAndrew Thompson 
89802ac6454SAndrew Thompson 			TAILQ_INIT(&info->done_q.head);
899a593f6b8SAndrew Thompson 			info->done_q.command = &usbd_callback_wrapper;
900bdc081c6SAndrew Thompson #if USB_HAVE_BUSDMA
90102ac6454SAndrew Thompson 			TAILQ_INIT(&info->dma_q.head);
902a593f6b8SAndrew Thompson 			info->dma_q.command = &usb_bdma_work_loop;
903bdc081c6SAndrew Thompson #endif
904a593f6b8SAndrew Thompson 			info->done_m[0].hdr.pm_callback = &usb_callback_proc;
90502ac6454SAndrew Thompson 			info->done_m[0].xroot = info;
906a593f6b8SAndrew Thompson 			info->done_m[1].hdr.pm_callback = &usb_callback_proc;
90702ac6454SAndrew Thompson 			info->done_m[1].xroot = info;
90802ac6454SAndrew Thompson 
909672c9965SAndrew Thompson 			/*
910672c9965SAndrew Thompson 			 * In device side mode control endpoint
911672c9965SAndrew Thompson 			 * requests need to run from a separate
912672c9965SAndrew Thompson 			 * context, else there is a chance of
913672c9965SAndrew Thompson 			 * deadlock!
914672c9965SAndrew Thompson 			 */
915a593f6b8SAndrew Thompson 			if (setup_start == usb_control_ep_cfg)
916672c9965SAndrew Thompson 				info->done_p =
917672c9965SAndrew Thompson 				    &udev->bus->control_xfer_proc;
918672c9965SAndrew Thompson 			else if (xfer_mtx == &Giant)
91902ac6454SAndrew Thompson 				info->done_p =
92002ac6454SAndrew Thompson 				    &udev->bus->giant_callback_proc;
92102ac6454SAndrew Thompson 			else
92202ac6454SAndrew Thompson 				info->done_p =
92302ac6454SAndrew Thompson 				    &udev->bus->non_giant_callback_proc;
92402ac6454SAndrew Thompson 		}
92502ac6454SAndrew Thompson 		/* reset sizes */
92602ac6454SAndrew Thompson 
92702ac6454SAndrew Thompson 		parm.size[0] = 0;
92802ac6454SAndrew Thompson 		parm.buf = buf;
92902ac6454SAndrew Thompson 		parm.size[0] += sizeof(info[0]);
93002ac6454SAndrew Thompson 
93102ac6454SAndrew Thompson 		for (setup = setup_start, n = 0;
93202ac6454SAndrew Thompson 		    setup != setup_end; setup++, n++) {
93302ac6454SAndrew Thompson 
93402ac6454SAndrew Thompson 			/* skip USB transfers without callbacks: */
9354eae601eSAndrew Thompson 			if (setup->callback == NULL) {
93602ac6454SAndrew Thompson 				continue;
93702ac6454SAndrew Thompson 			}
93802ac6454SAndrew Thompson 			/* see if there is a matching endpoint */
939a593f6b8SAndrew Thompson 			ep = usbd_get_endpoint(udev,
94002ac6454SAndrew Thompson 			    ifaces[setup->if_index], setup);
94102ac6454SAndrew Thompson 
942ae60fdfbSAndrew Thompson 			if ((ep == NULL) || (ep->methods == NULL)) {
9434eae601eSAndrew Thompson 				if (setup->flags.no_pipe_ok)
94402ac6454SAndrew Thompson 					continue;
945f29a0724SAndrew Thompson 				if ((setup->usb_mode != USB_MODE_DUAL) &&
946f29a0724SAndrew Thompson 				    (setup->usb_mode != udev->flags.usb_mode))
9474eae601eSAndrew Thompson 					continue;
94802ac6454SAndrew Thompson 				parm.err = USB_ERR_NO_PIPE;
94902ac6454SAndrew Thompson 				goto done;
95002ac6454SAndrew Thompson 			}
95102ac6454SAndrew Thompson 
95202ac6454SAndrew Thompson 			/* align data properly */
95302ac6454SAndrew Thompson 			parm.size[0] += ((-parm.size[0]) & (USB_HOST_ALIGN - 1));
95402ac6454SAndrew Thompson 
9554eae601eSAndrew Thompson 			/* store current setup pointer */
9564eae601eSAndrew Thompson 			parm.curr_setup = setup;
9574eae601eSAndrew Thompson 
95802ac6454SAndrew Thompson 			if (buf) {
95902ac6454SAndrew Thompson 				/*
96002ac6454SAndrew Thompson 				 * Common initialization of the
961760bc48eSAndrew Thompson 				 * "usb_xfer" structure.
96202ac6454SAndrew Thompson 				 */
96302ac6454SAndrew Thompson 				xfer = USB_ADD_BYTES(buf, parm.size[0]);
96402ac6454SAndrew Thompson 				xfer->address = udev->address;
96502ac6454SAndrew Thompson 				xfer->priv_sc = priv_sc;
96602ac6454SAndrew Thompson 				xfer->xroot = info;
96702ac6454SAndrew Thompson 
968a593f6b8SAndrew Thompson 				usb_callout_init_mtx(&xfer->timeout_handle,
96902ac6454SAndrew Thompson 				    &udev->bus->bus_mtx, 0);
97002ac6454SAndrew Thompson 			} else {
97102ac6454SAndrew Thompson 				/*
97202ac6454SAndrew Thompson 				 * Setup a dummy xfer, hence we are
973760bc48eSAndrew Thompson 				 * writing to the "usb_xfer"
97402ac6454SAndrew Thompson 				 * structure pointed to by "xfer"
97502ac6454SAndrew Thompson 				 * before we have allocated any
97602ac6454SAndrew Thompson 				 * memory:
97702ac6454SAndrew Thompson 				 */
97802ac6454SAndrew Thompson 				xfer = &dummy;
97902ac6454SAndrew Thompson 				bzero(&dummy, sizeof(dummy));
98002ac6454SAndrew Thompson 				refcount++;
98102ac6454SAndrew Thompson 			}
98202ac6454SAndrew Thompson 
983ae60fdfbSAndrew Thompson 			/* set transfer endpoint pointer */
984ae60fdfbSAndrew Thompson 			xfer->endpoint = ep;
98502ac6454SAndrew Thompson 
986bce32d7bSAndrew Thompson 			parm.size[0] += sizeof(xfer[0]);
987ae60fdfbSAndrew Thompson 			parm.methods = xfer->endpoint->methods;
988bce32d7bSAndrew Thompson 			parm.curr_xfer = xfer;
989bce32d7bSAndrew Thompson 
990bce32d7bSAndrew Thompson 			/*
991bce32d7bSAndrew Thompson 			 * Call the Host or Device controller transfer
992bce32d7bSAndrew Thompson 			 * setup routine:
993bce32d7bSAndrew Thompson 			 */
994bce32d7bSAndrew Thompson 			(udev->bus->methods->xfer_setup) (&parm);
995bce32d7bSAndrew Thompson 
996bce32d7bSAndrew Thompson 			/* check for error */
997bce32d7bSAndrew Thompson 			if (parm.err)
998bce32d7bSAndrew Thompson 				goto done;
999bce32d7bSAndrew Thompson 
100002ac6454SAndrew Thompson 			if (buf) {
100102ac6454SAndrew Thompson 				/*
1002ae60fdfbSAndrew Thompson 				 * Increment the endpoint refcount. This
100302ac6454SAndrew Thompson 				 * basically prevents setting a new
100402ac6454SAndrew Thompson 				 * configuration and alternate setting
100502ac6454SAndrew Thompson 				 * when USB transfers are in use on
100602ac6454SAndrew Thompson 				 * the given interface. Search the USB
1007f12c6c29SAndrew Thompson 				 * code for "endpoint->refcount_alloc" if you
100802ac6454SAndrew Thompson 				 * want more information.
100902ac6454SAndrew Thompson 				 */
1010f12c6c29SAndrew Thompson 				USB_BUS_LOCK(info->bus);
1011f12c6c29SAndrew Thompson 				if (xfer->endpoint->refcount_alloc >= USB_EP_REF_MAX)
1012f12c6c29SAndrew Thompson 					parm.err = USB_ERR_INVAL;
1013f12c6c29SAndrew Thompson 
1014f12c6c29SAndrew Thompson 				xfer->endpoint->refcount_alloc++;
1015f12c6c29SAndrew Thompson 
1016f12c6c29SAndrew Thompson 				if (xfer->endpoint->refcount_alloc == 0)
1017f12c6c29SAndrew Thompson 					panic("usbd_transfer_setup(): Refcount wrapped to zero\n");
1018f12c6c29SAndrew Thompson 				USB_BUS_UNLOCK(info->bus);
101902ac6454SAndrew Thompson 
102002ac6454SAndrew Thompson 				/*
1021bce32d7bSAndrew Thompson 				 * Whenever we set ppxfer[] then we
1022bce32d7bSAndrew Thompson 				 * also need to increment the
1023bce32d7bSAndrew Thompson 				 * "setup_refcount":
102402ac6454SAndrew Thompson 				 */
1025bce32d7bSAndrew Thompson 				info->setup_refcount++;
102602ac6454SAndrew Thompson 
1027bce32d7bSAndrew Thompson 				/*
1028bce32d7bSAndrew Thompson 				 * Transfer is successfully setup and
1029bce32d7bSAndrew Thompson 				 * can be used:
1030bce32d7bSAndrew Thompson 				 */
1031bce32d7bSAndrew Thompson 				ppxfer[n] = xfer;
103202ac6454SAndrew Thompson 			}
1033f12c6c29SAndrew Thompson 
1034f12c6c29SAndrew Thompson 			/* check for error */
1035f12c6c29SAndrew Thompson 			if (parm.err)
1036f12c6c29SAndrew Thompson 				goto done;
103702ac6454SAndrew Thompson 		}
103802ac6454SAndrew Thompson 
103902ac6454SAndrew Thompson 		if (buf || parm.err) {
104002ac6454SAndrew Thompson 			goto done;
104102ac6454SAndrew Thompson 		}
104202ac6454SAndrew Thompson 		if (refcount == 0) {
104302ac6454SAndrew Thompson 			/* no transfers - nothing to do ! */
104402ac6454SAndrew Thompson 			goto done;
104502ac6454SAndrew Thompson 		}
104602ac6454SAndrew Thompson 		/* align data properly */
104702ac6454SAndrew Thompson 		parm.size[0] += ((-parm.size[0]) & (USB_HOST_ALIGN - 1));
104802ac6454SAndrew Thompson 
104902ac6454SAndrew Thompson 		/* store offset temporarily */
105002ac6454SAndrew Thompson 		parm.size[1] = parm.size[0];
105102ac6454SAndrew Thompson 
105202ac6454SAndrew Thompson 		/*
105302ac6454SAndrew Thompson 		 * The number of DMA tags required depends on
105402ac6454SAndrew Thompson 		 * the number of endpoints. The current estimate
105502ac6454SAndrew Thompson 		 * for maximum number of DMA tags per endpoint
105602ac6454SAndrew Thompson 		 * is two.
105702ac6454SAndrew Thompson 		 */
105802ac6454SAndrew Thompson 		parm.dma_tag_max += 2 * MIN(n_setup, USB_EP_MAX);
105902ac6454SAndrew Thompson 
106002ac6454SAndrew Thompson 		/*
106102ac6454SAndrew Thompson 		 * DMA tags for QH, TD, Data and more.
106202ac6454SAndrew Thompson 		 */
106302ac6454SAndrew Thompson 		parm.dma_tag_max += 8;
106402ac6454SAndrew Thompson 
106502ac6454SAndrew Thompson 		parm.dma_tag_p += parm.dma_tag_max;
106602ac6454SAndrew Thompson 
106702ac6454SAndrew Thompson 		parm.size[0] += ((uint8_t *)parm.dma_tag_p) -
106802ac6454SAndrew Thompson 		    ((uint8_t *)0);
106902ac6454SAndrew Thompson 
107002ac6454SAndrew Thompson 		/* align data properly */
107102ac6454SAndrew Thompson 		parm.size[0] += ((-parm.size[0]) & (USB_HOST_ALIGN - 1));
107202ac6454SAndrew Thompson 
107302ac6454SAndrew Thompson 		/* store offset temporarily */
107402ac6454SAndrew Thompson 		parm.size[3] = parm.size[0];
107502ac6454SAndrew Thompson 
107602ac6454SAndrew Thompson 		parm.size[0] += ((uint8_t *)parm.dma_page_ptr) -
107702ac6454SAndrew Thompson 		    ((uint8_t *)0);
107802ac6454SAndrew Thompson 
107902ac6454SAndrew Thompson 		/* align data properly */
108002ac6454SAndrew Thompson 		parm.size[0] += ((-parm.size[0]) & (USB_HOST_ALIGN - 1));
108102ac6454SAndrew Thompson 
108202ac6454SAndrew Thompson 		/* store offset temporarily */
108302ac6454SAndrew Thompson 		parm.size[4] = parm.size[0];
108402ac6454SAndrew Thompson 
108502ac6454SAndrew Thompson 		parm.size[0] += ((uint8_t *)parm.dma_page_cache_ptr) -
108602ac6454SAndrew Thompson 		    ((uint8_t *)0);
108702ac6454SAndrew Thompson 
108802ac6454SAndrew Thompson 		/* store end offset temporarily */
108902ac6454SAndrew Thompson 		parm.size[5] = parm.size[0];
109002ac6454SAndrew Thompson 
109102ac6454SAndrew Thompson 		parm.size[0] += ((uint8_t *)parm.xfer_page_cache_ptr) -
109202ac6454SAndrew Thompson 		    ((uint8_t *)0);
109302ac6454SAndrew Thompson 
109402ac6454SAndrew Thompson 		/* store end offset temporarily */
109502ac6454SAndrew Thompson 
109602ac6454SAndrew Thompson 		parm.size[2] = parm.size[0];
109702ac6454SAndrew Thompson 
109802ac6454SAndrew Thompson 		/* align data properly */
109902ac6454SAndrew Thompson 		parm.size[0] += ((-parm.size[0]) & (USB_HOST_ALIGN - 1));
110002ac6454SAndrew Thompson 
110102ac6454SAndrew Thompson 		parm.size[6] = parm.size[0];
110202ac6454SAndrew Thompson 
110302ac6454SAndrew Thompson 		parm.size[0] += ((uint8_t *)parm.xfer_length_ptr) -
110402ac6454SAndrew Thompson 		    ((uint8_t *)0);
110502ac6454SAndrew Thompson 
110602ac6454SAndrew Thompson 		/* align data properly */
110702ac6454SAndrew Thompson 		parm.size[0] += ((-parm.size[0]) & (USB_HOST_ALIGN - 1));
110802ac6454SAndrew Thompson 
110902ac6454SAndrew Thompson 		/* allocate zeroed memory */
111002ac6454SAndrew Thompson 		buf = malloc(parm.size[0], M_USB, M_WAITOK | M_ZERO);
111102ac6454SAndrew Thompson 
111202ac6454SAndrew Thompson 		if (buf == NULL) {
111302ac6454SAndrew Thompson 			parm.err = USB_ERR_NOMEM;
111402ac6454SAndrew Thompson 			DPRINTFN(0, "cannot allocate memory block for "
111502ac6454SAndrew Thompson 			    "configuration (%d bytes)\n",
111602ac6454SAndrew Thompson 			    parm.size[0]);
111702ac6454SAndrew Thompson 			goto done;
111802ac6454SAndrew Thompson 		}
111902ac6454SAndrew Thompson 		parm.dma_tag_p = USB_ADD_BYTES(buf, parm.size[1]);
112002ac6454SAndrew Thompson 		parm.dma_page_ptr = USB_ADD_BYTES(buf, parm.size[3]);
112102ac6454SAndrew Thompson 		parm.dma_page_cache_ptr = USB_ADD_BYTES(buf, parm.size[4]);
112202ac6454SAndrew Thompson 		parm.xfer_page_cache_ptr = USB_ADD_BYTES(buf, parm.size[5]);
112302ac6454SAndrew Thompson 		parm.xfer_length_ptr = USB_ADD_BYTES(buf, parm.size[6]);
112402ac6454SAndrew Thompson 	}
112502ac6454SAndrew Thompson 
112602ac6454SAndrew Thompson done:
112702ac6454SAndrew Thompson 	if (buf) {
112802ac6454SAndrew Thompson 		if (info->setup_refcount == 0) {
112902ac6454SAndrew Thompson 			/*
1130a593f6b8SAndrew Thompson 			 * "usbd_transfer_unsetup_sub" will unlock
113102ac6454SAndrew Thompson 			 * the bus mutex before returning !
113202ac6454SAndrew Thompson 			 */
113302ac6454SAndrew Thompson 			USB_BUS_LOCK(info->bus);
113402ac6454SAndrew Thompson 
113502ac6454SAndrew Thompson 			/* something went wrong */
1136a593f6b8SAndrew Thompson 			usbd_transfer_unsetup_sub(info, 0);
113702ac6454SAndrew Thompson 		}
113802ac6454SAndrew Thompson 	}
113902ac6454SAndrew Thompson 	if (parm.err) {
1140a593f6b8SAndrew Thompson 		usbd_transfer_unsetup(ppxfer, n_setup);
114102ac6454SAndrew Thompson 	}
114202ac6454SAndrew Thompson 	return (parm.err);
114302ac6454SAndrew Thompson }
114402ac6454SAndrew Thompson 
114502ac6454SAndrew Thompson /*------------------------------------------------------------------------*
1146a593f6b8SAndrew Thompson  *	usbd_transfer_unsetup_sub - factored out code
114702ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
114802ac6454SAndrew Thompson static void
1149a593f6b8SAndrew Thompson usbd_transfer_unsetup_sub(struct usb_xfer_root *info, uint8_t needs_delay)
115002ac6454SAndrew Thompson {
1151760bc48eSAndrew Thompson 	struct usb_page_cache *pc;
115202ac6454SAndrew Thompson 
115302ac6454SAndrew Thompson 	USB_BUS_LOCK_ASSERT(info->bus, MA_OWNED);
115402ac6454SAndrew Thompson 
115502ac6454SAndrew Thompson 	/* wait for any outstanding DMA operations */
115602ac6454SAndrew Thompson 
115702ac6454SAndrew Thompson 	if (needs_delay) {
1158e0a69b51SAndrew Thompson 		usb_timeout_t temp;
1159527aa7b2SAndrew Thompson 		temp = usbd_get_dma_delay(info->udev);
1160527aa7b2SAndrew Thompson 		if (temp != 0) {
1161a593f6b8SAndrew Thompson 			usb_pause_mtx(&info->bus->bus_mtx,
116202ac6454SAndrew Thompson 			    USB_MS_TO_TICKS(temp));
116302ac6454SAndrew Thompson 		}
1164527aa7b2SAndrew Thompson 	}
116502ac6454SAndrew Thompson 
116602ac6454SAndrew Thompson 	/* make sure that our done messages are not queued anywhere */
1167a593f6b8SAndrew Thompson 	usb_proc_mwait(info->done_p, &info->done_m[0], &info->done_m[1]);
116802ac6454SAndrew Thompson 
116902ac6454SAndrew Thompson 	USB_BUS_UNLOCK(info->bus);
117002ac6454SAndrew Thompson 
1171bdc081c6SAndrew Thompson #if USB_HAVE_BUSDMA
117202ac6454SAndrew Thompson 	/* free DMA'able memory, if any */
117302ac6454SAndrew Thompson 	pc = info->dma_page_cache_start;
117402ac6454SAndrew Thompson 	while (pc != info->dma_page_cache_end) {
1175a593f6b8SAndrew Thompson 		usb_pc_free_mem(pc);
117602ac6454SAndrew Thompson 		pc++;
117702ac6454SAndrew Thompson 	}
117802ac6454SAndrew Thompson 
117902ac6454SAndrew Thompson 	/* free DMA maps in all "xfer->frbuffers" */
118002ac6454SAndrew Thompson 	pc = info->xfer_page_cache_start;
118102ac6454SAndrew Thompson 	while (pc != info->xfer_page_cache_end) {
1182a593f6b8SAndrew Thompson 		usb_pc_dmamap_destroy(pc);
118302ac6454SAndrew Thompson 		pc++;
118402ac6454SAndrew Thompson 	}
118502ac6454SAndrew Thompson 
118602ac6454SAndrew Thompson 	/* free all DMA tags */
1187a593f6b8SAndrew Thompson 	usb_dma_tag_unsetup(&info->dma_parent_tag);
1188bdc081c6SAndrew Thompson #endif
118902ac6454SAndrew Thompson 
11908437751dSAndrew Thompson 	cv_destroy(&info->cv_drain);
119102ac6454SAndrew Thompson 
119202ac6454SAndrew Thompson 	/*
119302ac6454SAndrew Thompson 	 * free the "memory_base" last, hence the "info" structure is
119402ac6454SAndrew Thompson 	 * contained within the "memory_base"!
119502ac6454SAndrew Thompson 	 */
119602ac6454SAndrew Thompson 	free(info->memory_base, M_USB);
119702ac6454SAndrew Thompson }
119802ac6454SAndrew Thompson 
119902ac6454SAndrew Thompson /*------------------------------------------------------------------------*
1200a593f6b8SAndrew Thompson  *	usbd_transfer_unsetup - unsetup/free an array of USB transfers
120102ac6454SAndrew Thompson  *
120202ac6454SAndrew Thompson  * NOTE: All USB transfers in progress will get called back passing
120302ac6454SAndrew Thompson  * the error code "USB_ERR_CANCELLED" before this function
120402ac6454SAndrew Thompson  * returns.
120502ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
120602ac6454SAndrew Thompson void
1207a593f6b8SAndrew Thompson usbd_transfer_unsetup(struct usb_xfer **pxfer, uint16_t n_setup)
120802ac6454SAndrew Thompson {
1209760bc48eSAndrew Thompson 	struct usb_xfer *xfer;
1210760bc48eSAndrew Thompson 	struct usb_xfer_root *info;
121102ac6454SAndrew Thompson 	uint8_t needs_delay = 0;
121202ac6454SAndrew Thompson 
121302ac6454SAndrew Thompson 	WITNESS_WARN(WARN_GIANTOK | WARN_SLEEPOK, NULL,
1214a593f6b8SAndrew Thompson 	    "usbd_transfer_unsetup can sleep!");
121502ac6454SAndrew Thompson 
121602ac6454SAndrew Thompson 	while (n_setup--) {
121702ac6454SAndrew Thompson 		xfer = pxfer[n_setup];
121802ac6454SAndrew Thompson 
1219bce32d7bSAndrew Thompson 		if (xfer == NULL)
1220bce32d7bSAndrew Thompson 			continue;
1221bce32d7bSAndrew Thompson 
1222bce32d7bSAndrew Thompson 		info = xfer->xroot;
1223bce32d7bSAndrew Thompson 
122402ac6454SAndrew Thompson 		USB_XFER_LOCK(xfer);
1225bce32d7bSAndrew Thompson 		USB_BUS_LOCK(info->bus);
122602ac6454SAndrew Thompson 
122702ac6454SAndrew Thompson 		/*
1228bce32d7bSAndrew Thompson 		 * HINT: when you start/stop a transfer, it might be a
1229bce32d7bSAndrew Thompson 		 * good idea to directly use the "pxfer[]" structure:
123002ac6454SAndrew Thompson 		 *
1231a593f6b8SAndrew Thompson 		 * usbd_transfer_start(sc->pxfer[0]);
1232a593f6b8SAndrew Thompson 		 * usbd_transfer_stop(sc->pxfer[0]);
123302ac6454SAndrew Thompson 		 *
1234bce32d7bSAndrew Thompson 		 * That way, if your code has many parts that will not
1235bce32d7bSAndrew Thompson 		 * stop running under the same lock, in other words
1236a593f6b8SAndrew Thompson 		 * "xfer_mtx", the usbd_transfer_start and
1237a593f6b8SAndrew Thompson 		 * usbd_transfer_stop functions will simply return
1238bce32d7bSAndrew Thompson 		 * when they detect a NULL pointer argument.
123902ac6454SAndrew Thompson 		 *
1240bce32d7bSAndrew Thompson 		 * To avoid any races we clear the "pxfer[]" pointer
1241bce32d7bSAndrew Thompson 		 * while holding the private mutex of the driver:
124202ac6454SAndrew Thompson 		 */
124302ac6454SAndrew Thompson 		pxfer[n_setup] = NULL;
124402ac6454SAndrew Thompson 
1245bce32d7bSAndrew Thompson 		USB_BUS_UNLOCK(info->bus);
124602ac6454SAndrew Thompson 		USB_XFER_UNLOCK(xfer);
124702ac6454SAndrew Thompson 
1248a593f6b8SAndrew Thompson 		usbd_transfer_drain(xfer);
124902ac6454SAndrew Thompson 
1250bdc081c6SAndrew Thompson #if USB_HAVE_BUSDMA
1251bce32d7bSAndrew Thompson 		if (xfer->flags_int.bdma_enable)
125202ac6454SAndrew Thompson 			needs_delay = 1;
1253bdc081c6SAndrew Thompson #endif
125402ac6454SAndrew Thompson 		/*
1255ae60fdfbSAndrew Thompson 		 * NOTE: default endpoint does not have an
1256ae60fdfbSAndrew Thompson 		 * interface, even if endpoint->iface_index == 0
125702ac6454SAndrew Thompson 		 */
1258f12c6c29SAndrew Thompson 		USB_BUS_LOCK(info->bus);
1259f12c6c29SAndrew Thompson 		xfer->endpoint->refcount_alloc--;
1260f12c6c29SAndrew Thompson 		USB_BUS_UNLOCK(info->bus);
126102ac6454SAndrew Thompson 
1262a593f6b8SAndrew Thompson 		usb_callout_drain(&xfer->timeout_handle);
126302ac6454SAndrew Thompson 
126402ac6454SAndrew Thompson 		USB_BUS_LOCK(info->bus);
126502ac6454SAndrew Thompson 
1266bce32d7bSAndrew Thompson 		USB_ASSERT(info->setup_refcount != 0, ("Invalid setup "
1267767cb2e2SAndrew Thompson 		    "reference count\n"));
126802ac6454SAndrew Thompson 
126902ac6454SAndrew Thompson 		info->setup_refcount--;
127002ac6454SAndrew Thompson 
127102ac6454SAndrew Thompson 		if (info->setup_refcount == 0) {
1272a593f6b8SAndrew Thompson 			usbd_transfer_unsetup_sub(info,
127302ac6454SAndrew Thompson 			    needs_delay);
127402ac6454SAndrew Thompson 		} else {
127502ac6454SAndrew Thompson 			USB_BUS_UNLOCK(info->bus);
127602ac6454SAndrew Thompson 		}
127702ac6454SAndrew Thompson 	}
127802ac6454SAndrew Thompson }
127902ac6454SAndrew Thompson 
128002ac6454SAndrew Thompson /*------------------------------------------------------------------------*
1281a593f6b8SAndrew Thompson  *	usbd_control_transfer_init - factored out code
128202ac6454SAndrew Thompson  *
128302ac6454SAndrew Thompson  * In USB Device Mode we have to wait for the SETUP packet which
1284760bc48eSAndrew Thompson  * containst the "struct usb_device_request" structure, before we can
128502ac6454SAndrew Thompson  * transfer any data. In USB Host Mode we already have the SETUP
128602ac6454SAndrew Thompson  * packet at the moment the USB transfer is started. This leads us to
128702ac6454SAndrew Thompson  * having to setup the USB transfer at two different places in
128802ac6454SAndrew Thompson  * time. This function just contains factored out control transfer
128902ac6454SAndrew Thompson  * initialisation code, so that we don't duplicate the code.
129002ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
129102ac6454SAndrew Thompson static void
1292a593f6b8SAndrew Thompson usbd_control_transfer_init(struct usb_xfer *xfer)
129302ac6454SAndrew Thompson {
1294760bc48eSAndrew Thompson 	struct usb_device_request req;
129502ac6454SAndrew Thompson 
129602ac6454SAndrew Thompson 	/* copy out the USB request header */
129702ac6454SAndrew Thompson 
1298a593f6b8SAndrew Thompson 	usbd_copy_out(xfer->frbuffers, 0, &req, sizeof(req));
129902ac6454SAndrew Thompson 
130002ac6454SAndrew Thompson 	/* setup remainder */
130102ac6454SAndrew Thompson 
130202ac6454SAndrew Thompson 	xfer->flags_int.control_rem = UGETW(req.wLength);
130302ac6454SAndrew Thompson 
130402ac6454SAndrew Thompson 	/* copy direction to endpoint variable */
130502ac6454SAndrew Thompson 
1306ae60fdfbSAndrew Thompson 	xfer->endpointno &= ~(UE_DIR_IN | UE_DIR_OUT);
1307ae60fdfbSAndrew Thompson 	xfer->endpointno |=
130802ac6454SAndrew Thompson 	    (req.bmRequestType & UT_READ) ? UE_DIR_IN : UE_DIR_OUT;
130902ac6454SAndrew Thompson }
131002ac6454SAndrew Thompson 
131102ac6454SAndrew Thompson /*------------------------------------------------------------------------*
1312ed6d949aSAndrew Thompson  *	usbd_setup_ctrl_transfer
131302ac6454SAndrew Thompson  *
131402ac6454SAndrew Thompson  * This function handles initialisation of control transfers. Control
131502ac6454SAndrew Thompson  * transfers are special in that regard that they can both transmit
131602ac6454SAndrew Thompson  * and receive data.
131702ac6454SAndrew Thompson  *
131802ac6454SAndrew Thompson  * Return values:
131902ac6454SAndrew Thompson  *    0: Success
132002ac6454SAndrew Thompson  * Else: Failure
132102ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
1322ed6d949aSAndrew Thompson static int
1323ed6d949aSAndrew Thompson usbd_setup_ctrl_transfer(struct usb_xfer *xfer)
132402ac6454SAndrew Thompson {
1325e0a69b51SAndrew Thompson 	usb_frlength_t len;
132602ac6454SAndrew Thompson 
132702ac6454SAndrew Thompson 	/* Check for control endpoint stall */
1328476183dfSAndrew Thompson 	if (xfer->flags.stall_pipe && xfer->flags_int.control_act) {
1329476183dfSAndrew Thompson 		/* the control transfer is no longer active */
1330476183dfSAndrew Thompson 		xfer->flags_int.control_stall = 1;
133102ac6454SAndrew Thompson 		xfer->flags_int.control_act = 0;
1332476183dfSAndrew Thompson 	} else {
1333476183dfSAndrew Thompson 		/* don't stall control transfer by default */
1334476183dfSAndrew Thompson 		xfer->flags_int.control_stall = 0;
133502ac6454SAndrew Thompson 	}
1336e1ccac96SAndrew Thompson 
1337e1ccac96SAndrew Thompson 	/* Check for invalid number of frames */
1338e1ccac96SAndrew Thompson 	if (xfer->nframes > 2) {
1339e1ccac96SAndrew Thompson 		/*
1340e1ccac96SAndrew Thompson 		 * If you need to split a control transfer, you
1341e1ccac96SAndrew Thompson 		 * have to do one part at a time. Only with
1342e1ccac96SAndrew Thompson 		 * non-control transfers you can do multiple
1343e1ccac96SAndrew Thompson 		 * parts a time.
1344e1ccac96SAndrew Thompson 		 */
1345e1ccac96SAndrew Thompson 		DPRINTFN(0, "Too many frames: %u\n",
1346e1ccac96SAndrew Thompson 		    (unsigned int)xfer->nframes);
1347e1ccac96SAndrew Thompson 		goto error;
1348e1ccac96SAndrew Thompson 	}
1349e1ccac96SAndrew Thompson 
135002ac6454SAndrew Thompson 	/*
135102ac6454SAndrew Thompson          * Check if there is a control
135202ac6454SAndrew Thompson          * transfer in progress:
135302ac6454SAndrew Thompson          */
135402ac6454SAndrew Thompson 	if (xfer->flags_int.control_act) {
135502ac6454SAndrew Thompson 
135602ac6454SAndrew Thompson 		if (xfer->flags_int.control_hdr) {
135702ac6454SAndrew Thompson 
135802ac6454SAndrew Thompson 			/* clear send header flag */
135902ac6454SAndrew Thompson 
136002ac6454SAndrew Thompson 			xfer->flags_int.control_hdr = 0;
136102ac6454SAndrew Thompson 
136202ac6454SAndrew Thompson 			/* setup control transfer */
1363f29a0724SAndrew Thompson 			if (xfer->flags_int.usb_mode == USB_MODE_DEVICE) {
1364a593f6b8SAndrew Thompson 				usbd_control_transfer_init(xfer);
136502ac6454SAndrew Thompson 			}
136602ac6454SAndrew Thompson 		}
136702ac6454SAndrew Thompson 		/* get data length */
136802ac6454SAndrew Thompson 
136902ac6454SAndrew Thompson 		len = xfer->sumlen;
137002ac6454SAndrew Thompson 
137102ac6454SAndrew Thompson 	} else {
137202ac6454SAndrew Thompson 
137302ac6454SAndrew Thompson 		/* the size of the SETUP structure is hardcoded ! */
137402ac6454SAndrew Thompson 
1375760bc48eSAndrew Thompson 		if (xfer->frlengths[0] != sizeof(struct usb_device_request)) {
137602ac6454SAndrew Thompson 			DPRINTFN(0, "Wrong framelength %u != %zu\n",
137702ac6454SAndrew Thompson 			    xfer->frlengths[0], sizeof(struct
1378760bc48eSAndrew Thompson 			    usb_device_request));
137902ac6454SAndrew Thompson 			goto error;
138002ac6454SAndrew Thompson 		}
138102ac6454SAndrew Thompson 		/* check USB mode */
1382f29a0724SAndrew Thompson 		if (xfer->flags_int.usb_mode == USB_MODE_DEVICE) {
138302ac6454SAndrew Thompson 
138402ac6454SAndrew Thompson 			/* check number of frames */
138502ac6454SAndrew Thompson 			if (xfer->nframes != 1) {
138602ac6454SAndrew Thompson 				/*
138702ac6454SAndrew Thompson 			         * We need to receive the setup
138802ac6454SAndrew Thompson 			         * message first so that we know the
138902ac6454SAndrew Thompson 			         * data direction!
139002ac6454SAndrew Thompson 			         */
139102ac6454SAndrew Thompson 				DPRINTF("Misconfigured transfer\n");
139202ac6454SAndrew Thompson 				goto error;
139302ac6454SAndrew Thompson 			}
139402ac6454SAndrew Thompson 			/*
139502ac6454SAndrew Thompson 			 * Set a dummy "control_rem" value.  This
139602ac6454SAndrew Thompson 			 * variable will be overwritten later by a
1397a593f6b8SAndrew Thompson 			 * call to "usbd_control_transfer_init()" !
139802ac6454SAndrew Thompson 			 */
139902ac6454SAndrew Thompson 			xfer->flags_int.control_rem = 0xFFFF;
140002ac6454SAndrew Thompson 		} else {
140102ac6454SAndrew Thompson 
140202ac6454SAndrew Thompson 			/* setup "endpoint" and "control_rem" */
140302ac6454SAndrew Thompson 
1404a593f6b8SAndrew Thompson 			usbd_control_transfer_init(xfer);
140502ac6454SAndrew Thompson 		}
140602ac6454SAndrew Thompson 
140702ac6454SAndrew Thompson 		/* set transfer-header flag */
140802ac6454SAndrew Thompson 
140902ac6454SAndrew Thompson 		xfer->flags_int.control_hdr = 1;
141002ac6454SAndrew Thompson 
141102ac6454SAndrew Thompson 		/* get data length */
141202ac6454SAndrew Thompson 
1413760bc48eSAndrew Thompson 		len = (xfer->sumlen - sizeof(struct usb_device_request));
141402ac6454SAndrew Thompson 	}
141502ac6454SAndrew Thompson 
141602ac6454SAndrew Thompson 	/* check if there is a length mismatch */
141702ac6454SAndrew Thompson 
141802ac6454SAndrew Thompson 	if (len > xfer->flags_int.control_rem) {
1419a8725281SAndrew Thompson 		DPRINTFN(0, "Length (%d) greater than "
1420767cb2e2SAndrew Thompson 		    "remaining length (%d)\n", len,
1421a8725281SAndrew Thompson 		    xfer->flags_int.control_rem);
142202ac6454SAndrew Thompson 		goto error;
142302ac6454SAndrew Thompson 	}
142402ac6454SAndrew Thompson 	/* check if we are doing a short transfer */
142502ac6454SAndrew Thompson 
142602ac6454SAndrew Thompson 	if (xfer->flags.force_short_xfer) {
142702ac6454SAndrew Thompson 		xfer->flags_int.control_rem = 0;
142802ac6454SAndrew Thompson 	} else {
142902ac6454SAndrew Thompson 		if ((len != xfer->max_data_length) &&
143002ac6454SAndrew Thompson 		    (len != xfer->flags_int.control_rem) &&
143102ac6454SAndrew Thompson 		    (xfer->nframes != 1)) {
143202ac6454SAndrew Thompson 			DPRINTFN(0, "Short control transfer without "
1433767cb2e2SAndrew Thompson 			    "force_short_xfer set\n");
143402ac6454SAndrew Thompson 			goto error;
143502ac6454SAndrew Thompson 		}
143602ac6454SAndrew Thompson 		xfer->flags_int.control_rem -= len;
143702ac6454SAndrew Thompson 	}
143802ac6454SAndrew Thompson 
143902ac6454SAndrew Thompson 	/* the status part is executed when "control_act" is 0 */
144002ac6454SAndrew Thompson 
144102ac6454SAndrew Thompson 	if ((xfer->flags_int.control_rem > 0) ||
144202ac6454SAndrew Thompson 	    (xfer->flags.manual_status)) {
144302ac6454SAndrew Thompson 		/* don't execute the STATUS stage yet */
144402ac6454SAndrew Thompson 		xfer->flags_int.control_act = 1;
144502ac6454SAndrew Thompson 
144602ac6454SAndrew Thompson 		/* sanity check */
144702ac6454SAndrew Thompson 		if ((!xfer->flags_int.control_hdr) &&
144802ac6454SAndrew Thompson 		    (xfer->nframes == 1)) {
144902ac6454SAndrew Thompson 			/*
145002ac6454SAndrew Thompson 		         * This is not a valid operation!
145102ac6454SAndrew Thompson 		         */
145202ac6454SAndrew Thompson 			DPRINTFN(0, "Invalid parameter "
145302ac6454SAndrew Thompson 			    "combination\n");
145402ac6454SAndrew Thompson 			goto error;
145502ac6454SAndrew Thompson 		}
145602ac6454SAndrew Thompson 	} else {
145702ac6454SAndrew Thompson 		/* time to execute the STATUS stage */
145802ac6454SAndrew Thompson 		xfer->flags_int.control_act = 0;
145902ac6454SAndrew Thompson 	}
146002ac6454SAndrew Thompson 	return (0);			/* success */
146102ac6454SAndrew Thompson 
146202ac6454SAndrew Thompson error:
146302ac6454SAndrew Thompson 	return (1);			/* failure */
146402ac6454SAndrew Thompson }
146502ac6454SAndrew Thompson 
146602ac6454SAndrew Thompson /*------------------------------------------------------------------------*
1467a593f6b8SAndrew Thompson  *	usbd_transfer_submit - start USB hardware for the given transfer
146802ac6454SAndrew Thompson  *
146902ac6454SAndrew Thompson  * This function should only be called from the USB callback.
147002ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
147102ac6454SAndrew Thompson void
1472a593f6b8SAndrew Thompson usbd_transfer_submit(struct usb_xfer *xfer)
147302ac6454SAndrew Thompson {
1474760bc48eSAndrew Thompson 	struct usb_xfer_root *info;
1475760bc48eSAndrew Thompson 	struct usb_bus *bus;
1476e0a69b51SAndrew Thompson 	usb_frcount_t x;
147702ac6454SAndrew Thompson 
1478bd216778SAndrew Thompson 	info = xfer->xroot;
1479bd216778SAndrew Thompson 	bus = info->bus;
1480bd216778SAndrew Thompson 
1481ae60fdfbSAndrew Thompson 	DPRINTF("xfer=%p, endpoint=%p, nframes=%d, dir=%s\n",
1482ae60fdfbSAndrew Thompson 	    xfer, xfer->endpoint, xfer->nframes, USB_GET_DATA_ISREAD(xfer) ?
148302ac6454SAndrew Thompson 	    "read" : "write");
148402ac6454SAndrew Thompson 
1485b850ecc1SAndrew Thompson #ifdef USB_DEBUG
148602ac6454SAndrew Thompson 	if (USB_DEBUG_VAR > 0) {
1487bd216778SAndrew Thompson 		USB_BUS_LOCK(bus);
148802ac6454SAndrew Thompson 
1489a593f6b8SAndrew Thompson 		usb_dump_endpoint(xfer->endpoint);
149002ac6454SAndrew Thompson 
1491bd216778SAndrew Thompson 		USB_BUS_UNLOCK(bus);
149202ac6454SAndrew Thompson 	}
149302ac6454SAndrew Thompson #endif
149402ac6454SAndrew Thompson 
149502ac6454SAndrew Thompson 	USB_XFER_LOCK_ASSERT(xfer, MA_OWNED);
1496bd216778SAndrew Thompson 	USB_BUS_LOCK_ASSERT(bus, MA_NOTOWNED);
149702ac6454SAndrew Thompson 
149802ac6454SAndrew Thompson 	/* Only open the USB transfer once! */
149902ac6454SAndrew Thompson 	if (!xfer->flags_int.open) {
150002ac6454SAndrew Thompson 		xfer->flags_int.open = 1;
150102ac6454SAndrew Thompson 
150202ac6454SAndrew Thompson 		DPRINTF("open\n");
150302ac6454SAndrew Thompson 
1504bd216778SAndrew Thompson 		USB_BUS_LOCK(bus);
1505ae60fdfbSAndrew Thompson 		(xfer->endpoint->methods->open) (xfer);
1506bd216778SAndrew Thompson 		USB_BUS_UNLOCK(bus);
150702ac6454SAndrew Thompson 	}
150802ac6454SAndrew Thompson 	/* set "transferring" flag */
150902ac6454SAndrew Thompson 	xfer->flags_int.transferring = 1;
151002ac6454SAndrew Thompson 
15114eae601eSAndrew Thompson #if USB_HAVE_POWERD
151202ac6454SAndrew Thompson 	/* increment power reference */
1513a593f6b8SAndrew Thompson 	usbd_transfer_power_ref(xfer, 1);
15144eae601eSAndrew Thompson #endif
151502ac6454SAndrew Thompson 	/*
151602ac6454SAndrew Thompson 	 * Check if the transfer is waiting on a queue, most
151702ac6454SAndrew Thompson 	 * frequently the "done_q":
151802ac6454SAndrew Thompson 	 */
151902ac6454SAndrew Thompson 	if (xfer->wait_queue) {
1520bd216778SAndrew Thompson 		USB_BUS_LOCK(bus);
1521a593f6b8SAndrew Thompson 		usbd_transfer_dequeue(xfer);
1522bd216778SAndrew Thompson 		USB_BUS_UNLOCK(bus);
152302ac6454SAndrew Thompson 	}
152402ac6454SAndrew Thompson 	/* clear "did_dma_delay" flag */
152502ac6454SAndrew Thompson 	xfer->flags_int.did_dma_delay = 0;
152602ac6454SAndrew Thompson 
152702ac6454SAndrew Thompson 	/* clear "did_close" flag */
152802ac6454SAndrew Thompson 	xfer->flags_int.did_close = 0;
152902ac6454SAndrew Thompson 
1530bdc081c6SAndrew Thompson #if USB_HAVE_BUSDMA
153102ac6454SAndrew Thompson 	/* clear "bdma_setup" flag */
153202ac6454SAndrew Thompson 	xfer->flags_int.bdma_setup = 0;
1533bdc081c6SAndrew Thompson #endif
153402ac6454SAndrew Thompson 	/* by default we cannot cancel any USB transfer immediately */
153502ac6454SAndrew Thompson 	xfer->flags_int.can_cancel_immed = 0;
153602ac6454SAndrew Thompson 
153702ac6454SAndrew Thompson 	/* clear lengths and frame counts by default */
153802ac6454SAndrew Thompson 	xfer->sumlen = 0;
153902ac6454SAndrew Thompson 	xfer->actlen = 0;
154002ac6454SAndrew Thompson 	xfer->aframes = 0;
154102ac6454SAndrew Thompson 
154202ac6454SAndrew Thompson 	/* clear any previous errors */
154302ac6454SAndrew Thompson 	xfer->error = 0;
154402ac6454SAndrew Thompson 
1545ec8f3127SAndrew Thompson 	/* Check if the device is still alive */
1546ec8f3127SAndrew Thompson 	if (info->udev->state < USB_STATE_POWERED) {
1547ec8f3127SAndrew Thompson 		USB_BUS_LOCK(bus);
1548f1f88408SAndrew Thompson 		/*
1549f1f88408SAndrew Thompson 		 * Must return cancelled error code else
1550f1f88408SAndrew Thompson 		 * device drivers can hang.
1551f1f88408SAndrew Thompson 		 */
1552a593f6b8SAndrew Thompson 		usbd_transfer_done(xfer, USB_ERR_CANCELLED);
1553ec8f3127SAndrew Thompson 		USB_BUS_UNLOCK(bus);
1554ec8f3127SAndrew Thompson 		return;
1555ec8f3127SAndrew Thompson 	}
155602ac6454SAndrew Thompson 
1557ec8f3127SAndrew Thompson 	/* sanity check */
155802ac6454SAndrew Thompson 	if (xfer->nframes == 0) {
155902ac6454SAndrew Thompson 		if (xfer->flags.stall_pipe) {
156002ac6454SAndrew Thompson 			/*
156102ac6454SAndrew Thompson 			 * Special case - want to stall without transferring
156202ac6454SAndrew Thompson 			 * any data:
156302ac6454SAndrew Thompson 			 */
156402ac6454SAndrew Thompson 			DPRINTF("xfer=%p nframes=0: stall "
156502ac6454SAndrew Thompson 			    "or clear stall!\n", xfer);
1566bd216778SAndrew Thompson 			USB_BUS_LOCK(bus);
156702ac6454SAndrew Thompson 			xfer->flags_int.can_cancel_immed = 1;
156802ac6454SAndrew Thompson 			/* start the transfer */
1569a593f6b8SAndrew Thompson 			usb_command_wrapper(&xfer->endpoint->endpoint_q, xfer);
1570bd216778SAndrew Thompson 			USB_BUS_UNLOCK(bus);
157102ac6454SAndrew Thompson 			return;
157202ac6454SAndrew Thompson 		}
1573bd216778SAndrew Thompson 		USB_BUS_LOCK(bus);
1574a593f6b8SAndrew Thompson 		usbd_transfer_done(xfer, USB_ERR_INVAL);
1575bd216778SAndrew Thompson 		USB_BUS_UNLOCK(bus);
157602ac6454SAndrew Thompson 		return;
157702ac6454SAndrew Thompson 	}
157802ac6454SAndrew Thompson 	/* compute total transfer length */
157902ac6454SAndrew Thompson 
158002ac6454SAndrew Thompson 	for (x = 0; x != xfer->nframes; x++) {
158102ac6454SAndrew Thompson 		xfer->sumlen += xfer->frlengths[x];
158202ac6454SAndrew Thompson 		if (xfer->sumlen < xfer->frlengths[x]) {
158302ac6454SAndrew Thompson 			/* length wrapped around */
1584bd216778SAndrew Thompson 			USB_BUS_LOCK(bus);
1585a593f6b8SAndrew Thompson 			usbd_transfer_done(xfer, USB_ERR_INVAL);
1586bd216778SAndrew Thompson 			USB_BUS_UNLOCK(bus);
158702ac6454SAndrew Thompson 			return;
158802ac6454SAndrew Thompson 		}
158902ac6454SAndrew Thompson 	}
159002ac6454SAndrew Thompson 
159102ac6454SAndrew Thompson 	/* clear some internal flags */
159202ac6454SAndrew Thompson 
159302ac6454SAndrew Thompson 	xfer->flags_int.short_xfer_ok = 0;
159402ac6454SAndrew Thompson 	xfer->flags_int.short_frames_ok = 0;
159502ac6454SAndrew Thompson 
159602ac6454SAndrew Thompson 	/* check if this is a control transfer */
159702ac6454SAndrew Thompson 
159802ac6454SAndrew Thompson 	if (xfer->flags_int.control_xfr) {
159902ac6454SAndrew Thompson 
1600ed6d949aSAndrew Thompson 		if (usbd_setup_ctrl_transfer(xfer)) {
1601bd216778SAndrew Thompson 			USB_BUS_LOCK(bus);
1602a593f6b8SAndrew Thompson 			usbd_transfer_done(xfer, USB_ERR_STALLED);
1603bd216778SAndrew Thompson 			USB_BUS_UNLOCK(bus);
160402ac6454SAndrew Thompson 			return;
160502ac6454SAndrew Thompson 		}
160602ac6454SAndrew Thompson 	}
160702ac6454SAndrew Thompson 	/*
160802ac6454SAndrew Thompson 	 * Setup filtered version of some transfer flags,
160902ac6454SAndrew Thompson 	 * in case of data read direction
161002ac6454SAndrew Thompson 	 */
161102ac6454SAndrew Thompson 	if (USB_GET_DATA_ISREAD(xfer)) {
161202ac6454SAndrew Thompson 
161302ac6454SAndrew Thompson 		if (xfer->flags.short_frames_ok) {
161402ac6454SAndrew Thompson 			xfer->flags_int.short_xfer_ok = 1;
161502ac6454SAndrew Thompson 			xfer->flags_int.short_frames_ok = 1;
161602ac6454SAndrew Thompson 		} else if (xfer->flags.short_xfer_ok) {
161702ac6454SAndrew Thompson 			xfer->flags_int.short_xfer_ok = 1;
1618e1ccac96SAndrew Thompson 
1619e1ccac96SAndrew Thompson 			/* check for control transfer */
1620e1ccac96SAndrew Thompson 			if (xfer->flags_int.control_xfr) {
1621e1ccac96SAndrew Thompson 				/*
1622e1ccac96SAndrew Thompson 				 * 1) Control transfers do not support
1623e1ccac96SAndrew Thompson 				 * reception of multiple short USB
1624e1ccac96SAndrew Thompson 				 * frames in host mode and device side
1625e1ccac96SAndrew Thompson 				 * mode, with exception of:
1626e1ccac96SAndrew Thompson 				 *
1627e1ccac96SAndrew Thompson 				 * 2) Due to sometimes buggy device
1628e1ccac96SAndrew Thompson 				 * side firmware we need to do a
1629e1ccac96SAndrew Thompson 				 * STATUS stage in case of short
1630e1ccac96SAndrew Thompson 				 * control transfers in USB host mode.
1631e1ccac96SAndrew Thompson 				 * The STATUS stage then becomes the
1632e1ccac96SAndrew Thompson 				 * "alt_next" to the DATA stage.
1633e1ccac96SAndrew Thompson 				 */
1634e1ccac96SAndrew Thompson 				xfer->flags_int.short_frames_ok = 1;
163502ac6454SAndrew Thompson 			}
163602ac6454SAndrew Thompson 		}
163702ac6454SAndrew Thompson 	}
163802ac6454SAndrew Thompson 	/*
163902ac6454SAndrew Thompson 	 * Check if BUS-DMA support is enabled and try to load virtual
164002ac6454SAndrew Thompson 	 * buffers into DMA, if any:
164102ac6454SAndrew Thompson 	 */
1642bdc081c6SAndrew Thompson #if USB_HAVE_BUSDMA
164302ac6454SAndrew Thompson 	if (xfer->flags_int.bdma_enable) {
164402ac6454SAndrew Thompson 		/* insert the USB transfer last in the BUS-DMA queue */
1645a593f6b8SAndrew Thompson 		usb_command_wrapper(&xfer->xroot->dma_q, xfer);
164602ac6454SAndrew Thompson 		return;
164702ac6454SAndrew Thompson 	}
1648bdc081c6SAndrew Thompson #endif
164902ac6454SAndrew Thompson 	/*
165002ac6454SAndrew Thompson 	 * Enter the USB transfer into the Host Controller or
165102ac6454SAndrew Thompson 	 * Device Controller schedule:
165202ac6454SAndrew Thompson 	 */
1653a593f6b8SAndrew Thompson 	usbd_pipe_enter(xfer);
165402ac6454SAndrew Thompson }
165502ac6454SAndrew Thompson 
165602ac6454SAndrew Thompson /*------------------------------------------------------------------------*
1657a593f6b8SAndrew Thompson  *	usbd_pipe_enter - factored out code
165802ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
165902ac6454SAndrew Thompson void
1660a593f6b8SAndrew Thompson usbd_pipe_enter(struct usb_xfer *xfer)
166102ac6454SAndrew Thompson {
1662ae60fdfbSAndrew Thompson 	struct usb_endpoint *ep;
166302ac6454SAndrew Thompson 
166402ac6454SAndrew Thompson 	USB_XFER_LOCK_ASSERT(xfer, MA_OWNED);
166502ac6454SAndrew Thompson 
166602ac6454SAndrew Thompson 	USB_BUS_LOCK(xfer->xroot->bus);
166702ac6454SAndrew Thompson 
1668ae60fdfbSAndrew Thompson 	ep = xfer->endpoint;
166902ac6454SAndrew Thompson 
167002ac6454SAndrew Thompson 	DPRINTF("enter\n");
167102ac6454SAndrew Thompson 
167202ac6454SAndrew Thompson 	/* enter the transfer */
1673ae60fdfbSAndrew Thompson 	(ep->methods->enter) (xfer);
167402ac6454SAndrew Thompson 
167502ac6454SAndrew Thompson 	xfer->flags_int.can_cancel_immed = 1;
16764565300dSAndrew Thompson 
167702ac6454SAndrew Thompson 	/* check for transfer error */
167802ac6454SAndrew Thompson 	if (xfer->error) {
167902ac6454SAndrew Thompson 		/* some error has happened */
1680a593f6b8SAndrew Thompson 		usbd_transfer_done(xfer, 0);
168102ac6454SAndrew Thompson 		USB_BUS_UNLOCK(xfer->xroot->bus);
168202ac6454SAndrew Thompson 		return;
168302ac6454SAndrew Thompson 	}
168402ac6454SAndrew Thompson 
168502ac6454SAndrew Thompson 	/* start the transfer */
1686a593f6b8SAndrew Thompson 	usb_command_wrapper(&ep->endpoint_q, xfer);
168702ac6454SAndrew Thompson 	USB_BUS_UNLOCK(xfer->xroot->bus);
168802ac6454SAndrew Thompson }
168902ac6454SAndrew Thompson 
169002ac6454SAndrew Thompson /*------------------------------------------------------------------------*
1691a593f6b8SAndrew Thompson  *	usbd_transfer_start - start an USB transfer
169202ac6454SAndrew Thompson  *
169302ac6454SAndrew Thompson  * NOTE: Calling this function more than one time will only
169402ac6454SAndrew Thompson  *       result in a single transfer start, until the USB transfer
169502ac6454SAndrew Thompson  *       completes.
169602ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
169702ac6454SAndrew Thompson void
1698a593f6b8SAndrew Thompson usbd_transfer_start(struct usb_xfer *xfer)
169902ac6454SAndrew Thompson {
170002ac6454SAndrew Thompson 	if (xfer == NULL) {
170102ac6454SAndrew Thompson 		/* transfer is gone */
170202ac6454SAndrew Thompson 		return;
170302ac6454SAndrew Thompson 	}
170402ac6454SAndrew Thompson 	USB_XFER_LOCK_ASSERT(xfer, MA_OWNED);
170502ac6454SAndrew Thompson 
170602ac6454SAndrew Thompson 	/* mark the USB transfer started */
170702ac6454SAndrew Thompson 
170802ac6454SAndrew Thompson 	if (!xfer->flags_int.started) {
1709a8725281SAndrew Thompson 		/* lock the BUS lock to avoid races updating flags_int */
1710a8725281SAndrew Thompson 		USB_BUS_LOCK(xfer->xroot->bus);
171102ac6454SAndrew Thompson 		xfer->flags_int.started = 1;
1712a8725281SAndrew Thompson 		USB_BUS_UNLOCK(xfer->xroot->bus);
171302ac6454SAndrew Thompson 	}
171402ac6454SAndrew Thompson 	/* check if the USB transfer callback is already transferring */
171502ac6454SAndrew Thompson 
171602ac6454SAndrew Thompson 	if (xfer->flags_int.transferring) {
171702ac6454SAndrew Thompson 		return;
171802ac6454SAndrew Thompson 	}
171902ac6454SAndrew Thompson 	USB_BUS_LOCK(xfer->xroot->bus);
172002ac6454SAndrew Thompson 	/* call the USB transfer callback */
1721a593f6b8SAndrew Thompson 	usbd_callback_ss_done_defer(xfer);
172202ac6454SAndrew Thompson 	USB_BUS_UNLOCK(xfer->xroot->bus);
172302ac6454SAndrew Thompson }
172402ac6454SAndrew Thompson 
172502ac6454SAndrew Thompson /*------------------------------------------------------------------------*
1726a593f6b8SAndrew Thompson  *	usbd_transfer_stop - stop an USB transfer
172702ac6454SAndrew Thompson  *
172802ac6454SAndrew Thompson  * NOTE: Calling this function more than one time will only
172902ac6454SAndrew Thompson  *       result in a single transfer stop.
173002ac6454SAndrew Thompson  * NOTE: When this function returns it is not safe to free nor
1731a593f6b8SAndrew Thompson  *       reuse any DMA buffers. See "usbd_transfer_drain()".
173202ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
173302ac6454SAndrew Thompson void
1734a593f6b8SAndrew Thompson usbd_transfer_stop(struct usb_xfer *xfer)
173502ac6454SAndrew Thompson {
1736ae60fdfbSAndrew Thompson 	struct usb_endpoint *ep;
173702ac6454SAndrew Thompson 
173802ac6454SAndrew Thompson 	if (xfer == NULL) {
173902ac6454SAndrew Thompson 		/* transfer is gone */
174002ac6454SAndrew Thompson 		return;
174102ac6454SAndrew Thompson 	}
174202ac6454SAndrew Thompson 	USB_XFER_LOCK_ASSERT(xfer, MA_OWNED);
174302ac6454SAndrew Thompson 
174402ac6454SAndrew Thompson 	/* check if the USB transfer was ever opened */
174502ac6454SAndrew Thompson 
174602ac6454SAndrew Thompson 	if (!xfer->flags_int.open) {
1747a8725281SAndrew Thompson 		if (xfer->flags_int.started) {
174802ac6454SAndrew Thompson 			/* nothing to do except clearing the "started" flag */
1749a8725281SAndrew Thompson 			/* lock the BUS lock to avoid races updating flags_int */
1750a8725281SAndrew Thompson 			USB_BUS_LOCK(xfer->xroot->bus);
175102ac6454SAndrew Thompson 			xfer->flags_int.started = 0;
1752a8725281SAndrew Thompson 			USB_BUS_UNLOCK(xfer->xroot->bus);
1753a8725281SAndrew Thompson 		}
175402ac6454SAndrew Thompson 		return;
175502ac6454SAndrew Thompson 	}
175602ac6454SAndrew Thompson 	/* try to stop the current USB transfer */
175702ac6454SAndrew Thompson 
175802ac6454SAndrew Thompson 	USB_BUS_LOCK(xfer->xroot->bus);
1759a8725281SAndrew Thompson 	/* override any previous error */
1760a8725281SAndrew Thompson 	xfer->error = USB_ERR_CANCELLED;
1761a8725281SAndrew Thompson 
176202ac6454SAndrew Thompson 	/*
176302ac6454SAndrew Thompson 	 * Clear "open" and "started" when both private and USB lock
176402ac6454SAndrew Thompson 	 * is locked so that we don't get a race updating "flags_int"
176502ac6454SAndrew Thompson 	 */
176602ac6454SAndrew Thompson 	xfer->flags_int.open = 0;
176702ac6454SAndrew Thompson 	xfer->flags_int.started = 0;
176802ac6454SAndrew Thompson 
176902ac6454SAndrew Thompson 	/*
177002ac6454SAndrew Thompson 	 * Check if we can cancel the USB transfer immediately.
177102ac6454SAndrew Thompson 	 */
177202ac6454SAndrew Thompson 	if (xfer->flags_int.transferring) {
177302ac6454SAndrew Thompson 		if (xfer->flags_int.can_cancel_immed &&
177402ac6454SAndrew Thompson 		    (!xfer->flags_int.did_close)) {
177502ac6454SAndrew Thompson 			DPRINTF("close\n");
177602ac6454SAndrew Thompson 			/*
177702ac6454SAndrew Thompson 			 * The following will lead to an USB_ERR_CANCELLED
177802ac6454SAndrew Thompson 			 * error code being passed to the USB callback.
177902ac6454SAndrew Thompson 			 */
1780ae60fdfbSAndrew Thompson 			(xfer->endpoint->methods->close) (xfer);
178102ac6454SAndrew Thompson 			/* only close once */
178202ac6454SAndrew Thompson 			xfer->flags_int.did_close = 1;
178302ac6454SAndrew Thompson 		} else {
178402ac6454SAndrew Thompson 			/* need to wait for the next done callback */
178502ac6454SAndrew Thompson 		}
178602ac6454SAndrew Thompson 	} else {
178702ac6454SAndrew Thompson 		DPRINTF("close\n");
178802ac6454SAndrew Thompson 
178902ac6454SAndrew Thompson 		/* close here and now */
1790ae60fdfbSAndrew Thompson 		(xfer->endpoint->methods->close) (xfer);
179102ac6454SAndrew Thompson 
179202ac6454SAndrew Thompson 		/*
179302ac6454SAndrew Thompson 		 * Any additional DMA delay is done by
1794a593f6b8SAndrew Thompson 		 * "usbd_transfer_unsetup()".
179502ac6454SAndrew Thompson 		 */
179602ac6454SAndrew Thompson 
179702ac6454SAndrew Thompson 		/*
179802ac6454SAndrew Thompson 		 * Special case. Check if we need to restart a blocked
1799ae60fdfbSAndrew Thompson 		 * endpoint.
180002ac6454SAndrew Thompson 		 */
1801ae60fdfbSAndrew Thompson 		ep = xfer->endpoint;
180202ac6454SAndrew Thompson 
180302ac6454SAndrew Thompson 		/*
180402ac6454SAndrew Thompson 		 * If the current USB transfer is completing we need
180502ac6454SAndrew Thompson 		 * to start the next one:
180602ac6454SAndrew Thompson 		 */
1807ae60fdfbSAndrew Thompson 		if (ep->endpoint_q.curr == xfer) {
1808a593f6b8SAndrew Thompson 			usb_command_wrapper(&ep->endpoint_q, NULL);
180902ac6454SAndrew Thompson 		}
181002ac6454SAndrew Thompson 	}
181102ac6454SAndrew Thompson 
181202ac6454SAndrew Thompson 	USB_BUS_UNLOCK(xfer->xroot->bus);
181302ac6454SAndrew Thompson }
181402ac6454SAndrew Thompson 
181502ac6454SAndrew Thompson /*------------------------------------------------------------------------*
1816a593f6b8SAndrew Thompson  *	usbd_transfer_pending
181702ac6454SAndrew Thompson  *
181802ac6454SAndrew Thompson  * This function will check if an USB transfer is pending which is a
181902ac6454SAndrew Thompson  * little bit complicated!
182002ac6454SAndrew Thompson  * Return values:
182102ac6454SAndrew Thompson  * 0: Not pending
182202ac6454SAndrew Thompson  * 1: Pending: The USB transfer will receive a callback in the future.
182302ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
182402ac6454SAndrew Thompson uint8_t
1825a593f6b8SAndrew Thompson usbd_transfer_pending(struct usb_xfer *xfer)
182602ac6454SAndrew Thompson {
1827760bc48eSAndrew Thompson 	struct usb_xfer_root *info;
1828760bc48eSAndrew Thompson 	struct usb_xfer_queue *pq;
182902ac6454SAndrew Thompson 
183002ac6454SAndrew Thompson 	if (xfer == NULL) {
183102ac6454SAndrew Thompson 		/* transfer is gone */
183202ac6454SAndrew Thompson 		return (0);
183302ac6454SAndrew Thompson 	}
183402ac6454SAndrew Thompson 	USB_XFER_LOCK_ASSERT(xfer, MA_OWNED);
183502ac6454SAndrew Thompson 
183602ac6454SAndrew Thompson 	if (xfer->flags_int.transferring) {
183702ac6454SAndrew Thompson 		/* trivial case */
183802ac6454SAndrew Thompson 		return (1);
183902ac6454SAndrew Thompson 	}
184002ac6454SAndrew Thompson 	USB_BUS_LOCK(xfer->xroot->bus);
184102ac6454SAndrew Thompson 	if (xfer->wait_queue) {
184202ac6454SAndrew Thompson 		/* we are waiting on a queue somewhere */
184302ac6454SAndrew Thompson 		USB_BUS_UNLOCK(xfer->xroot->bus);
184402ac6454SAndrew Thompson 		return (1);
184502ac6454SAndrew Thompson 	}
184602ac6454SAndrew Thompson 	info = xfer->xroot;
184702ac6454SAndrew Thompson 	pq = &info->done_q;
184802ac6454SAndrew Thompson 
184902ac6454SAndrew Thompson 	if (pq->curr == xfer) {
185002ac6454SAndrew Thompson 		/* we are currently scheduled for callback */
185102ac6454SAndrew Thompson 		USB_BUS_UNLOCK(xfer->xroot->bus);
185202ac6454SAndrew Thompson 		return (1);
185302ac6454SAndrew Thompson 	}
185402ac6454SAndrew Thompson 	/* we are not pending */
185502ac6454SAndrew Thompson 	USB_BUS_UNLOCK(xfer->xroot->bus);
185602ac6454SAndrew Thompson 	return (0);
185702ac6454SAndrew Thompson }
185802ac6454SAndrew Thompson 
185902ac6454SAndrew Thompson /*------------------------------------------------------------------------*
1860a593f6b8SAndrew Thompson  *	usbd_transfer_drain
186102ac6454SAndrew Thompson  *
186202ac6454SAndrew Thompson  * This function will stop the USB transfer and wait for any
186302ac6454SAndrew Thompson  * additional BUS-DMA and HW-DMA operations to complete. Buffers that
186402ac6454SAndrew Thompson  * are loaded into DMA can safely be freed or reused after that this
186502ac6454SAndrew Thompson  * function has returned.
186602ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
186702ac6454SAndrew Thompson void
1868a593f6b8SAndrew Thompson usbd_transfer_drain(struct usb_xfer *xfer)
186902ac6454SAndrew Thompson {
187002ac6454SAndrew Thompson 	WITNESS_WARN(WARN_GIANTOK | WARN_SLEEPOK, NULL,
1871a593f6b8SAndrew Thompson 	    "usbd_transfer_drain can sleep!");
187202ac6454SAndrew Thompson 
187302ac6454SAndrew Thompson 	if (xfer == NULL) {
187402ac6454SAndrew Thompson 		/* transfer is gone */
187502ac6454SAndrew Thompson 		return;
187602ac6454SAndrew Thompson 	}
187702ac6454SAndrew Thompson 	if (xfer->xroot->xfer_mtx != &Giant) {
187802ac6454SAndrew Thompson 		USB_XFER_LOCK_ASSERT(xfer, MA_NOTOWNED);
187902ac6454SAndrew Thompson 	}
188002ac6454SAndrew Thompson 	USB_XFER_LOCK(xfer);
188102ac6454SAndrew Thompson 
1882a593f6b8SAndrew Thompson 	usbd_transfer_stop(xfer);
188302ac6454SAndrew Thompson 
1884bb9c7a8bSAndrew Thompson 	while (usbd_transfer_pending(xfer) ||
1885bb9c7a8bSAndrew Thompson 	    xfer->flags_int.doing_callback) {
1886bb9c7a8bSAndrew Thompson 
1887bb9c7a8bSAndrew Thompson 		/*
1888bb9c7a8bSAndrew Thompson 		 * It is allowed that the callback can drop its
1889bb9c7a8bSAndrew Thompson 		 * transfer mutex. In that case checking only
1890bb9c7a8bSAndrew Thompson 		 * "usbd_transfer_pending()" is not enough to tell if
1891bb9c7a8bSAndrew Thompson 		 * the USB transfer is fully drained. We also need to
1892bb9c7a8bSAndrew Thompson 		 * check the internal "doing_callback" flag.
1893bb9c7a8bSAndrew Thompson 		 */
189402ac6454SAndrew Thompson 		xfer->flags_int.draining = 1;
1895bb9c7a8bSAndrew Thompson 
189602ac6454SAndrew Thompson 		/*
189702ac6454SAndrew Thompson 		 * Wait until the current outstanding USB
189802ac6454SAndrew Thompson 		 * transfer is complete !
189902ac6454SAndrew Thompson 		 */
19008437751dSAndrew Thompson 		cv_wait(&xfer->xroot->cv_drain, xfer->xroot->xfer_mtx);
190102ac6454SAndrew Thompson 	}
190202ac6454SAndrew Thompson 	USB_XFER_UNLOCK(xfer);
190302ac6454SAndrew Thompson }
190402ac6454SAndrew Thompson 
1905ed6d949aSAndrew Thompson struct usb_page_cache *
1906ed6d949aSAndrew Thompson usbd_xfer_get_frame(struct usb_xfer *xfer, usb_frcount_t frindex)
1907ed6d949aSAndrew Thompson {
1908ed6d949aSAndrew Thompson 	KASSERT(frindex < xfer->max_frame_count, ("frame index overflow"));
1909ed6d949aSAndrew Thompson 
1910ed6d949aSAndrew Thompson 	return (&xfer->frbuffers[frindex]);
1911ed6d949aSAndrew Thompson }
1912ed6d949aSAndrew Thompson 
1913883bb300SAndrew Thompson /*------------------------------------------------------------------------*
1914883bb300SAndrew Thompson  *	usbd_xfer_get_fps_shift
1915883bb300SAndrew Thompson  *
1916883bb300SAndrew Thompson  * The following function is only useful for isochronous transfers. It
1917883bb300SAndrew Thompson  * returns how many times the frame execution rate has been shifted
1918883bb300SAndrew Thompson  * down.
1919883bb300SAndrew Thompson  *
1920883bb300SAndrew Thompson  * Return value:
1921883bb300SAndrew Thompson  * Success: 0..3
1922883bb300SAndrew Thompson  * Failure: 0
1923883bb300SAndrew Thompson  *------------------------------------------------------------------------*/
1924883bb300SAndrew Thompson uint8_t
1925883bb300SAndrew Thompson usbd_xfer_get_fps_shift(struct usb_xfer *xfer)
1926883bb300SAndrew Thompson {
1927883bb300SAndrew Thompson 	return (xfer->fps_shift);
1928883bb300SAndrew Thompson }
1929883bb300SAndrew Thompson 
1930ed6d949aSAndrew Thompson usb_frlength_t
19318f9e0ef9SAndrew Thompson usbd_xfer_frame_len(struct usb_xfer *xfer, usb_frcount_t frindex)
1932ed6d949aSAndrew Thompson {
1933ed6d949aSAndrew Thompson 	KASSERT(frindex < xfer->max_frame_count, ("frame index overflow"));
1934ed6d949aSAndrew Thompson 
1935ed6d949aSAndrew Thompson 	return (xfer->frlengths[frindex]);
1936ed6d949aSAndrew Thompson }
1937ed6d949aSAndrew Thompson 
193802ac6454SAndrew Thompson /*------------------------------------------------------------------------*
1939ed6d949aSAndrew Thompson  *	usbd_xfer_set_frame_data
194002ac6454SAndrew Thompson  *
194102ac6454SAndrew Thompson  * This function sets the pointer of the buffer that should
194202ac6454SAndrew Thompson  * loaded directly into DMA for the given USB frame. Passing "ptr"
194302ac6454SAndrew Thompson  * equal to NULL while the corresponding "frlength" is greater
194402ac6454SAndrew Thompson  * than zero gives undefined results!
194502ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
194602ac6454SAndrew Thompson void
1947ed6d949aSAndrew Thompson usbd_xfer_set_frame_data(struct usb_xfer *xfer, usb_frcount_t frindex,
1948ed6d949aSAndrew Thompson     void *ptr, usb_frlength_t len)
194902ac6454SAndrew Thompson {
1950ed6d949aSAndrew Thompson 	KASSERT(frindex < xfer->max_frame_count, ("frame index overflow"));
1951ed6d949aSAndrew Thompson 
195202ac6454SAndrew Thompson 	/* set virtual address to load and length */
195302ac6454SAndrew Thompson 	xfer->frbuffers[frindex].buffer = ptr;
1954ed6d949aSAndrew Thompson 	usbd_xfer_set_frame_len(xfer, frindex, len);
1955ed6d949aSAndrew Thompson }
1956ed6d949aSAndrew Thompson 
1957ed6d949aSAndrew Thompson void
19588f9e0ef9SAndrew Thompson usbd_xfer_frame_data(struct usb_xfer *xfer, usb_frcount_t frindex,
1959ed6d949aSAndrew Thompson     void **ptr, int *len)
1960ed6d949aSAndrew Thompson {
1961ed6d949aSAndrew Thompson 	KASSERT(frindex < xfer->max_frame_count, ("frame index overflow"));
1962ed6d949aSAndrew Thompson 
1963ed6d949aSAndrew Thompson 	if (ptr != NULL)
1964ed6d949aSAndrew Thompson 		*ptr = xfer->frbuffers[frindex].buffer;
1965ed6d949aSAndrew Thompson 	if (len != NULL)
1966ed6d949aSAndrew Thompson 		*len = xfer->frlengths[frindex];
1967ed6d949aSAndrew Thompson }
1968ed6d949aSAndrew Thompson 
1969ed6d949aSAndrew Thompson void
1970ed6d949aSAndrew Thompson usbd_xfer_status(struct usb_xfer *xfer, int *actlen, int *sumlen, int *aframes,
1971ed6d949aSAndrew Thompson     int *nframes)
1972ed6d949aSAndrew Thompson {
1973ed6d949aSAndrew Thompson 	if (actlen != NULL)
1974ed6d949aSAndrew Thompson 		*actlen = xfer->actlen;
1975ed6d949aSAndrew Thompson 	if (sumlen != NULL)
1976ed6d949aSAndrew Thompson 		*sumlen = xfer->sumlen;
1977ed6d949aSAndrew Thompson 	if (aframes != NULL)
1978ed6d949aSAndrew Thompson 		*aframes = xfer->aframes;
1979ed6d949aSAndrew Thompson 	if (nframes != NULL)
1980ed6d949aSAndrew Thompson 		*nframes = xfer->nframes;
198102ac6454SAndrew Thompson }
198202ac6454SAndrew Thompson 
198302ac6454SAndrew Thompson /*------------------------------------------------------------------------*
1984ed6d949aSAndrew Thompson  *	usbd_xfer_set_frame_offset
198502ac6454SAndrew Thompson  *
198602ac6454SAndrew Thompson  * This function sets the frame data buffer offset relative to the beginning
198702ac6454SAndrew Thompson  * of the USB DMA buffer allocated for this USB transfer.
198802ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
198902ac6454SAndrew Thompson void
1990ed6d949aSAndrew Thompson usbd_xfer_set_frame_offset(struct usb_xfer *xfer, usb_frlength_t offset,
1991e0a69b51SAndrew Thompson     usb_frcount_t frindex)
199202ac6454SAndrew Thompson {
1993ed6d949aSAndrew Thompson 	KASSERT(!xfer->flags.ext_buffer, ("Cannot offset data frame "
1994767cb2e2SAndrew Thompson 	    "when the USB buffer is external\n"));
1995ed6d949aSAndrew Thompson 	KASSERT(frindex < xfer->max_frame_count, ("frame index overflow"));
199602ac6454SAndrew Thompson 
199702ac6454SAndrew Thompson 	/* set virtual address to load */
199802ac6454SAndrew Thompson 	xfer->frbuffers[frindex].buffer =
199902ac6454SAndrew Thompson 	    USB_ADD_BYTES(xfer->local_buffer, offset);
200002ac6454SAndrew Thompson }
200102ac6454SAndrew Thompson 
2002ed6d949aSAndrew Thompson void
2003ed6d949aSAndrew Thompson usbd_xfer_set_interval(struct usb_xfer *xfer, int i)
2004ed6d949aSAndrew Thompson {
2005ed6d949aSAndrew Thompson 	xfer->interval = i;
2006ed6d949aSAndrew Thompson }
2007ed6d949aSAndrew Thompson 
2008ed6d949aSAndrew Thompson void
2009ed6d949aSAndrew Thompson usbd_xfer_set_timeout(struct usb_xfer *xfer, int t)
2010ed6d949aSAndrew Thompson {
2011ed6d949aSAndrew Thompson 	xfer->timeout = t;
2012ed6d949aSAndrew Thompson }
2013ed6d949aSAndrew Thompson 
2014ed6d949aSAndrew Thompson void
2015ed6d949aSAndrew Thompson usbd_xfer_set_frames(struct usb_xfer *xfer, usb_frcount_t n)
2016ed6d949aSAndrew Thompson {
2017ed6d949aSAndrew Thompson 	xfer->nframes = n;
2018ed6d949aSAndrew Thompson }
2019ed6d949aSAndrew Thompson 
2020ed6d949aSAndrew Thompson usb_frcount_t
2021ed6d949aSAndrew Thompson usbd_xfer_max_frames(struct usb_xfer *xfer)
2022ed6d949aSAndrew Thompson {
2023ed6d949aSAndrew Thompson 	return (xfer->max_frame_count);
2024ed6d949aSAndrew Thompson }
2025ed6d949aSAndrew Thompson 
2026ed6d949aSAndrew Thompson usb_frlength_t
2027ed6d949aSAndrew Thompson usbd_xfer_max_len(struct usb_xfer *xfer)
2028ed6d949aSAndrew Thompson {
2029ed6d949aSAndrew Thompson 	return (xfer->max_data_length);
2030ed6d949aSAndrew Thompson }
2031ed6d949aSAndrew Thompson 
2032ed6d949aSAndrew Thompson usb_frlength_t
2033ed6d949aSAndrew Thompson usbd_xfer_max_framelen(struct usb_xfer *xfer)
2034ed6d949aSAndrew Thompson {
2035ed6d949aSAndrew Thompson 	return (xfer->max_frame_size);
2036ed6d949aSAndrew Thompson }
2037ed6d949aSAndrew Thompson 
2038ed6d949aSAndrew Thompson void
2039ed6d949aSAndrew Thompson usbd_xfer_set_frame_len(struct usb_xfer *xfer, usb_frcount_t frindex,
2040ed6d949aSAndrew Thompson     usb_frlength_t len)
2041ed6d949aSAndrew Thompson {
2042ed6d949aSAndrew Thompson 	KASSERT(frindex < xfer->max_frame_count, ("frame index overflow"));
2043ed6d949aSAndrew Thompson 
2044ed6d949aSAndrew Thompson 	xfer->frlengths[frindex] = len;
2045ed6d949aSAndrew Thompson }
2046ed6d949aSAndrew Thompson 
204702ac6454SAndrew Thompson /*------------------------------------------------------------------------*
2048a593f6b8SAndrew Thompson  *	usb_callback_proc - factored out code
204902ac6454SAndrew Thompson  *
205002ac6454SAndrew Thompson  * This function performs USB callbacks.
205102ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
205202ac6454SAndrew Thompson static void
2053a593f6b8SAndrew Thompson usb_callback_proc(struct usb_proc_msg *_pm)
205402ac6454SAndrew Thompson {
2055760bc48eSAndrew Thompson 	struct usb_done_msg *pm = (void *)_pm;
2056760bc48eSAndrew Thompson 	struct usb_xfer_root *info = pm->xroot;
205702ac6454SAndrew Thompson 
205802ac6454SAndrew Thompson 	/* Change locking order */
205902ac6454SAndrew Thompson 	USB_BUS_UNLOCK(info->bus);
206002ac6454SAndrew Thompson 
206102ac6454SAndrew Thompson 	/*
206202ac6454SAndrew Thompson 	 * We exploit the fact that the mutex is the same for all
206302ac6454SAndrew Thompson 	 * callbacks that will be called from this thread:
206402ac6454SAndrew Thompson 	 */
206502ac6454SAndrew Thompson 	mtx_lock(info->xfer_mtx);
206602ac6454SAndrew Thompson 	USB_BUS_LOCK(info->bus);
206702ac6454SAndrew Thompson 
206802ac6454SAndrew Thompson 	/* Continue where we lost track */
2069a593f6b8SAndrew Thompson 	usb_command_wrapper(&info->done_q,
207002ac6454SAndrew Thompson 	    info->done_q.curr);
207102ac6454SAndrew Thompson 
207202ac6454SAndrew Thompson 	mtx_unlock(info->xfer_mtx);
207302ac6454SAndrew Thompson }
207402ac6454SAndrew Thompson 
207502ac6454SAndrew Thompson /*------------------------------------------------------------------------*
2076a593f6b8SAndrew Thompson  *	usbd_callback_ss_done_defer
207702ac6454SAndrew Thompson  *
207802ac6454SAndrew Thompson  * This function will defer the start, stop and done callback to the
207902ac6454SAndrew Thompson  * correct thread.
208002ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
208102ac6454SAndrew Thompson static void
2082a593f6b8SAndrew Thompson usbd_callback_ss_done_defer(struct usb_xfer *xfer)
208302ac6454SAndrew Thompson {
2084760bc48eSAndrew Thompson 	struct usb_xfer_root *info = xfer->xroot;
2085760bc48eSAndrew Thompson 	struct usb_xfer_queue *pq = &info->done_q;
208602ac6454SAndrew Thompson 
208702ac6454SAndrew Thompson 	USB_BUS_LOCK_ASSERT(xfer->xroot->bus, MA_OWNED);
208802ac6454SAndrew Thompson 
208902ac6454SAndrew Thompson 	if (pq->curr != xfer) {
2090a593f6b8SAndrew Thompson 		usbd_transfer_enqueue(pq, xfer);
209102ac6454SAndrew Thompson 	}
209202ac6454SAndrew Thompson 	if (!pq->recurse_1) {
209302ac6454SAndrew Thompson 
209402ac6454SAndrew Thompson 		/*
209502ac6454SAndrew Thompson 	         * We have to postpone the callback due to the fact we
209602ac6454SAndrew Thompson 	         * will have a Lock Order Reversal, LOR, if we try to
209702ac6454SAndrew Thompson 	         * proceed !
209802ac6454SAndrew Thompson 	         */
2099a593f6b8SAndrew Thompson 		if (usb_proc_msignal(info->done_p,
210002ac6454SAndrew Thompson 		    &info->done_m[0], &info->done_m[1])) {
210102ac6454SAndrew Thompson 			/* ignore */
210202ac6454SAndrew Thompson 		}
210302ac6454SAndrew Thompson 	} else {
210402ac6454SAndrew Thompson 		/* clear second recurse flag */
210502ac6454SAndrew Thompson 		pq->recurse_2 = 0;
210602ac6454SAndrew Thompson 	}
210702ac6454SAndrew Thompson 	return;
210802ac6454SAndrew Thompson 
210902ac6454SAndrew Thompson }
211002ac6454SAndrew Thompson 
211102ac6454SAndrew Thompson /*------------------------------------------------------------------------*
2112a593f6b8SAndrew Thompson  *	usbd_callback_wrapper
211302ac6454SAndrew Thompson  *
211402ac6454SAndrew Thompson  * This is a wrapper for USB callbacks. This wrapper does some
211502ac6454SAndrew Thompson  * auto-magic things like figuring out if we can call the callback
211602ac6454SAndrew Thompson  * directly from the current context or if we need to wakeup the
211702ac6454SAndrew Thompson  * interrupt process.
211802ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
211902ac6454SAndrew Thompson static void
2120a593f6b8SAndrew Thompson usbd_callback_wrapper(struct usb_xfer_queue *pq)
212102ac6454SAndrew Thompson {
2122760bc48eSAndrew Thompson 	struct usb_xfer *xfer = pq->curr;
2123760bc48eSAndrew Thompson 	struct usb_xfer_root *info = xfer->xroot;
212402ac6454SAndrew Thompson 
21254565300dSAndrew Thompson 	USB_BUS_LOCK_ASSERT(info->bus, MA_OWNED);
21264565300dSAndrew Thompson 	if (!mtx_owned(info->xfer_mtx)) {
212702ac6454SAndrew Thompson 		/*
212802ac6454SAndrew Thompson 	       	 * Cases that end up here:
212902ac6454SAndrew Thompson 		 *
213002ac6454SAndrew Thompson 		 * 5) HW interrupt done callback or other source.
213102ac6454SAndrew Thompson 		 */
213202ac6454SAndrew Thompson 		DPRINTFN(3, "case 5\n");
213302ac6454SAndrew Thompson 
213402ac6454SAndrew Thompson 		/*
213502ac6454SAndrew Thompson 	         * We have to postpone the callback due to the fact we
213602ac6454SAndrew Thompson 	         * will have a Lock Order Reversal, LOR, if we try to
213702ac6454SAndrew Thompson 	         * proceed !
213802ac6454SAndrew Thompson 	         */
2139a593f6b8SAndrew Thompson 		if (usb_proc_msignal(info->done_p,
214002ac6454SAndrew Thompson 		    &info->done_m[0], &info->done_m[1])) {
214102ac6454SAndrew Thompson 			/* ignore */
214202ac6454SAndrew Thompson 		}
214302ac6454SAndrew Thompson 		return;
214402ac6454SAndrew Thompson 	}
214502ac6454SAndrew Thompson 	/*
214602ac6454SAndrew Thompson 	 * Cases that end up here:
214702ac6454SAndrew Thompson 	 *
214802ac6454SAndrew Thompson 	 * 1) We are starting a transfer
214902ac6454SAndrew Thompson 	 * 2) We are prematurely calling back a transfer
215002ac6454SAndrew Thompson 	 * 3) We are stopping a transfer
215102ac6454SAndrew Thompson 	 * 4) We are doing an ordinary callback
215202ac6454SAndrew Thompson 	 */
215302ac6454SAndrew Thompson 	DPRINTFN(3, "case 1-4\n");
215402ac6454SAndrew Thompson 	/* get next USB transfer in the queue */
215502ac6454SAndrew Thompson 	info->done_q.curr = NULL;
215602ac6454SAndrew Thompson 
2157bb9c7a8bSAndrew Thompson 	/* set flag in case of drain */
2158bb9c7a8bSAndrew Thompson 	xfer->flags_int.doing_callback = 1;
2159bb9c7a8bSAndrew Thompson 
21604565300dSAndrew Thompson 	USB_BUS_UNLOCK(info->bus);
21614565300dSAndrew Thompson 	USB_BUS_LOCK_ASSERT(info->bus, MA_NOTOWNED);
216202ac6454SAndrew Thompson 
216302ac6454SAndrew Thompson 	/* set correct USB state for callback */
216402ac6454SAndrew Thompson 	if (!xfer->flags_int.transferring) {
2165a593f6b8SAndrew Thompson 		xfer->usb_state = USB_ST_SETUP;
216602ac6454SAndrew Thompson 		if (!xfer->flags_int.started) {
216702ac6454SAndrew Thompson 			/* we got stopped before we even got started */
21684565300dSAndrew Thompson 			USB_BUS_LOCK(info->bus);
216902ac6454SAndrew Thompson 			goto done;
217002ac6454SAndrew Thompson 		}
217102ac6454SAndrew Thompson 	} else {
217202ac6454SAndrew Thompson 
2173a593f6b8SAndrew Thompson 		if (usbd_callback_wrapper_sub(xfer)) {
217402ac6454SAndrew Thompson 			/* the callback has been deferred */
21754565300dSAndrew Thompson 			USB_BUS_LOCK(info->bus);
217602ac6454SAndrew Thompson 			goto done;
217702ac6454SAndrew Thompson 		}
21784eae601eSAndrew Thompson #if USB_HAVE_POWERD
217902ac6454SAndrew Thompson 		/* decrement power reference */
2180a593f6b8SAndrew Thompson 		usbd_transfer_power_ref(xfer, -1);
21814eae601eSAndrew Thompson #endif
218202ac6454SAndrew Thompson 		xfer->flags_int.transferring = 0;
218302ac6454SAndrew Thompson 
218402ac6454SAndrew Thompson 		if (xfer->error) {
2185a593f6b8SAndrew Thompson 			xfer->usb_state = USB_ST_ERROR;
218602ac6454SAndrew Thompson 		} else {
218702ac6454SAndrew Thompson 			/* set transferred state */
2188a593f6b8SAndrew Thompson 			xfer->usb_state = USB_ST_TRANSFERRED;
2189bdc081c6SAndrew Thompson #if USB_HAVE_BUSDMA
219002ac6454SAndrew Thompson 			/* sync DMA memory, if any */
219102ac6454SAndrew Thompson 			if (xfer->flags_int.bdma_enable &&
219202ac6454SAndrew Thompson 			    (!xfer->flags_int.bdma_no_post_sync)) {
2193a593f6b8SAndrew Thompson 				usb_bdma_post_sync(xfer);
219402ac6454SAndrew Thompson 			}
2195bdc081c6SAndrew Thompson #endif
219602ac6454SAndrew Thompson 		}
219702ac6454SAndrew Thompson 	}
219802ac6454SAndrew Thompson 
219902ac6454SAndrew Thompson 	/* call processing routine */
2200ed6d949aSAndrew Thompson 	(xfer->callback) (xfer, xfer->error);
220102ac6454SAndrew Thompson 
220202ac6454SAndrew Thompson 	/* pickup the USB mutex again */
22034565300dSAndrew Thompson 	USB_BUS_LOCK(info->bus);
220402ac6454SAndrew Thompson 
220502ac6454SAndrew Thompson 	/*
220602ac6454SAndrew Thompson 	 * Check if we got started after that we got cancelled, but
220702ac6454SAndrew Thompson 	 * before we managed to do the callback.
220802ac6454SAndrew Thompson 	 */
220902ac6454SAndrew Thompson 	if ((!xfer->flags_int.open) &&
221002ac6454SAndrew Thompson 	    (xfer->flags_int.started) &&
2211a593f6b8SAndrew Thompson 	    (xfer->usb_state == USB_ST_ERROR)) {
2212bb9c7a8bSAndrew Thompson 		/* clear flag in case of drain */
2213bb9c7a8bSAndrew Thompson 		xfer->flags_int.doing_callback = 0;
221402ac6454SAndrew Thompson 		/* try to loop, but not recursivly */
2215a593f6b8SAndrew Thompson 		usb_command_wrapper(&info->done_q, xfer);
221602ac6454SAndrew Thompson 		return;
221702ac6454SAndrew Thompson 	}
221802ac6454SAndrew Thompson 
221902ac6454SAndrew Thompson done:
2220bb9c7a8bSAndrew Thompson 	/* clear flag in case of drain */
2221bb9c7a8bSAndrew Thompson 	xfer->flags_int.doing_callback = 0;
2222bb9c7a8bSAndrew Thompson 
222302ac6454SAndrew Thompson 	/*
222402ac6454SAndrew Thompson 	 * Check if we are draining.
222502ac6454SAndrew Thompson 	 */
222602ac6454SAndrew Thompson 	if (xfer->flags_int.draining &&
222702ac6454SAndrew Thompson 	    (!xfer->flags_int.transferring)) {
2228a593f6b8SAndrew Thompson 		/* "usbd_transfer_drain()" is waiting for end of transfer */
222902ac6454SAndrew Thompson 		xfer->flags_int.draining = 0;
22308437751dSAndrew Thompson 		cv_broadcast(&info->cv_drain);
223102ac6454SAndrew Thompson 	}
223202ac6454SAndrew Thompson 
223302ac6454SAndrew Thompson 	/* do the next callback, if any */
2234a593f6b8SAndrew Thompson 	usb_command_wrapper(&info->done_q,
223502ac6454SAndrew Thompson 	    info->done_q.curr);
223602ac6454SAndrew Thompson }
223702ac6454SAndrew Thompson 
223802ac6454SAndrew Thompson /*------------------------------------------------------------------------*
2239a593f6b8SAndrew Thompson  *	usb_dma_delay_done_cb
224002ac6454SAndrew Thompson  *
224102ac6454SAndrew Thompson  * This function is called when the DMA delay has been exectuded, and
224202ac6454SAndrew Thompson  * will make sure that the callback is called to complete the USB
224302ac6454SAndrew Thompson  * transfer. This code path is ususally only used when there is an USB
224402ac6454SAndrew Thompson  * error like USB_ERR_CANCELLED.
224502ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
2246*963169b4SHans Petter Selasky void
2247*963169b4SHans Petter Selasky usb_dma_delay_done_cb(struct usb_xfer *xfer)
224802ac6454SAndrew Thompson {
224902ac6454SAndrew Thompson 	USB_BUS_LOCK_ASSERT(xfer->xroot->bus, MA_OWNED);
225002ac6454SAndrew Thompson 
225102ac6454SAndrew Thompson 	DPRINTFN(3, "Completed %p\n", xfer);
225202ac6454SAndrew Thompson 
225302ac6454SAndrew Thompson 	/* queue callback for execution, again */
2254a593f6b8SAndrew Thompson 	usbd_transfer_done(xfer, 0);
225502ac6454SAndrew Thompson }
225602ac6454SAndrew Thompson 
225702ac6454SAndrew Thompson /*------------------------------------------------------------------------*
2258a593f6b8SAndrew Thompson  *	usbd_transfer_dequeue
225902ac6454SAndrew Thompson  *
226002ac6454SAndrew Thompson  *  - This function is used to remove an USB transfer from a USB
226102ac6454SAndrew Thompson  *  transfer queue.
226202ac6454SAndrew Thompson  *
226302ac6454SAndrew Thompson  *  - This function can be called multiple times in a row.
226402ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
226502ac6454SAndrew Thompson void
2266a593f6b8SAndrew Thompson usbd_transfer_dequeue(struct usb_xfer *xfer)
226702ac6454SAndrew Thompson {
2268760bc48eSAndrew Thompson 	struct usb_xfer_queue *pq;
226902ac6454SAndrew Thompson 
227002ac6454SAndrew Thompson 	pq = xfer->wait_queue;
227102ac6454SAndrew Thompson 	if (pq) {
227202ac6454SAndrew Thompson 		TAILQ_REMOVE(&pq->head, xfer, wait_entry);
227302ac6454SAndrew Thompson 		xfer->wait_queue = NULL;
227402ac6454SAndrew Thompson 	}
227502ac6454SAndrew Thompson }
227602ac6454SAndrew Thompson 
227702ac6454SAndrew Thompson /*------------------------------------------------------------------------*
2278a593f6b8SAndrew Thompson  *	usbd_transfer_enqueue
227902ac6454SAndrew Thompson  *
228002ac6454SAndrew Thompson  *  - This function is used to insert an USB transfer into a USB *
228102ac6454SAndrew Thompson  *  transfer queue.
228202ac6454SAndrew Thompson  *
228302ac6454SAndrew Thompson  *  - This function can be called multiple times in a row.
228402ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
228502ac6454SAndrew Thompson void
2286a593f6b8SAndrew Thompson usbd_transfer_enqueue(struct usb_xfer_queue *pq, struct usb_xfer *xfer)
228702ac6454SAndrew Thompson {
228802ac6454SAndrew Thompson 	/*
228902ac6454SAndrew Thompson 	 * Insert the USB transfer into the queue, if it is not
229002ac6454SAndrew Thompson 	 * already on a USB transfer queue:
229102ac6454SAndrew Thompson 	 */
229202ac6454SAndrew Thompson 	if (xfer->wait_queue == NULL) {
229302ac6454SAndrew Thompson 		xfer->wait_queue = pq;
229402ac6454SAndrew Thompson 		TAILQ_INSERT_TAIL(&pq->head, xfer, wait_entry);
229502ac6454SAndrew Thompson 	}
229602ac6454SAndrew Thompson }
229702ac6454SAndrew Thompson 
229802ac6454SAndrew Thompson /*------------------------------------------------------------------------*
2299a593f6b8SAndrew Thompson  *	usbd_transfer_done
230002ac6454SAndrew Thompson  *
230102ac6454SAndrew Thompson  *  - This function is used to remove an USB transfer from the busdma,
230202ac6454SAndrew Thompson  *  pipe or interrupt queue.
230302ac6454SAndrew Thompson  *
230402ac6454SAndrew Thompson  *  - This function is used to queue the USB transfer on the done
230502ac6454SAndrew Thompson  *  queue.
230602ac6454SAndrew Thompson  *
230702ac6454SAndrew Thompson  *  - This function is used to stop any USB transfer timeouts.
230802ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
230902ac6454SAndrew Thompson void
2310a593f6b8SAndrew Thompson usbd_transfer_done(struct usb_xfer *xfer, usb_error_t error)
231102ac6454SAndrew Thompson {
231202ac6454SAndrew Thompson 	USB_BUS_LOCK_ASSERT(xfer->xroot->bus, MA_OWNED);
231302ac6454SAndrew Thompson 
2314a593f6b8SAndrew Thompson 	DPRINTF("err=%s\n", usbd_errstr(error));
231502ac6454SAndrew Thompson 
231602ac6454SAndrew Thompson 	/*
231702ac6454SAndrew Thompson 	 * If we are not transferring then just return.
231802ac6454SAndrew Thompson 	 * This can happen during transfer cancel.
231902ac6454SAndrew Thompson 	 */
232002ac6454SAndrew Thompson 	if (!xfer->flags_int.transferring) {
232102ac6454SAndrew Thompson 		DPRINTF("not transferring\n");
2322a8725281SAndrew Thompson 		/* end of control transfer, if any */
2323a8725281SAndrew Thompson 		xfer->flags_int.control_act = 0;
232402ac6454SAndrew Thompson 		return;
232502ac6454SAndrew Thompson 	}
232602ac6454SAndrew Thompson 	/* only set transfer error if not already set */
232702ac6454SAndrew Thompson 	if (!xfer->error) {
232802ac6454SAndrew Thompson 		xfer->error = error;
232902ac6454SAndrew Thompson 	}
233002ac6454SAndrew Thompson 	/* stop any callouts */
2331a593f6b8SAndrew Thompson 	usb_callout_stop(&xfer->timeout_handle);
233202ac6454SAndrew Thompson 
233302ac6454SAndrew Thompson 	/*
233402ac6454SAndrew Thompson 	 * If we are waiting on a queue, just remove the USB transfer
233502ac6454SAndrew Thompson 	 * from the queue, if any. We should have the required locks
233602ac6454SAndrew Thompson 	 * locked to do the remove when this function is called.
233702ac6454SAndrew Thompson 	 */
2338a593f6b8SAndrew Thompson 	usbd_transfer_dequeue(xfer);
233902ac6454SAndrew Thompson 
2340bdc081c6SAndrew Thompson #if USB_HAVE_BUSDMA
234102ac6454SAndrew Thompson 	if (mtx_owned(xfer->xroot->xfer_mtx)) {
2342760bc48eSAndrew Thompson 		struct usb_xfer_queue *pq;
2343bdc081c6SAndrew Thompson 
234402ac6454SAndrew Thompson 		/*
234502ac6454SAndrew Thompson 		 * If the private USB lock is not locked, then we assume
234602ac6454SAndrew Thompson 		 * that the BUS-DMA load stage has been passed:
234702ac6454SAndrew Thompson 		 */
234802ac6454SAndrew Thompson 		pq = &xfer->xroot->dma_q;
234902ac6454SAndrew Thompson 
235002ac6454SAndrew Thompson 		if (pq->curr == xfer) {
235102ac6454SAndrew Thompson 			/* start the next BUS-DMA load, if any */
2352a593f6b8SAndrew Thompson 			usb_command_wrapper(pq, NULL);
235302ac6454SAndrew Thompson 		}
235402ac6454SAndrew Thompson 	}
2355bdc081c6SAndrew Thompson #endif
235602ac6454SAndrew Thompson 	/* keep some statistics */
235702ac6454SAndrew Thompson 	if (xfer->error) {
235802ac6454SAndrew Thompson 		xfer->xroot->bus->stats_err.uds_requests
2359ae60fdfbSAndrew Thompson 		    [xfer->endpoint->edesc->bmAttributes & UE_XFERTYPE]++;
236002ac6454SAndrew Thompson 	} else {
236102ac6454SAndrew Thompson 		xfer->xroot->bus->stats_ok.uds_requests
2362ae60fdfbSAndrew Thompson 		    [xfer->endpoint->edesc->bmAttributes & UE_XFERTYPE]++;
236302ac6454SAndrew Thompson 	}
236402ac6454SAndrew Thompson 
236502ac6454SAndrew Thompson 	/* call the USB transfer callback */
2366a593f6b8SAndrew Thompson 	usbd_callback_ss_done_defer(xfer);
236702ac6454SAndrew Thompson }
236802ac6454SAndrew Thompson 
236902ac6454SAndrew Thompson /*------------------------------------------------------------------------*
2370a593f6b8SAndrew Thompson  *	usbd_transfer_start_cb
237102ac6454SAndrew Thompson  *
237202ac6454SAndrew Thompson  * This function is called to start the USB transfer when
237302ac6454SAndrew Thompson  * "xfer->interval" is greater than zero, and and the endpoint type is
237402ac6454SAndrew Thompson  * BULK or CONTROL.
237502ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
237602ac6454SAndrew Thompson static void
2377a593f6b8SAndrew Thompson usbd_transfer_start_cb(void *arg)
237802ac6454SAndrew Thompson {
2379760bc48eSAndrew Thompson 	struct usb_xfer *xfer = arg;
2380ae60fdfbSAndrew Thompson 	struct usb_endpoint *ep = xfer->endpoint;
238102ac6454SAndrew Thompson 
238202ac6454SAndrew Thompson 	USB_BUS_LOCK_ASSERT(xfer->xroot->bus, MA_OWNED);
238302ac6454SAndrew Thompson 
238402ac6454SAndrew Thompson 	DPRINTF("start\n");
238502ac6454SAndrew Thompson 
238602ac6454SAndrew Thompson 	/* start the transfer */
2387ae60fdfbSAndrew Thompson 	(ep->methods->start) (xfer);
238802ac6454SAndrew Thompson 
238902ac6454SAndrew Thompson 	xfer->flags_int.can_cancel_immed = 1;
23904565300dSAndrew Thompson 
23914565300dSAndrew Thompson 	/* check for error */
239202ac6454SAndrew Thompson 	if (xfer->error) {
239302ac6454SAndrew Thompson 		/* some error has happened */
2394a593f6b8SAndrew Thompson 		usbd_transfer_done(xfer, 0);
239502ac6454SAndrew Thompson 	}
239602ac6454SAndrew Thompson }
239702ac6454SAndrew Thompson 
239802ac6454SAndrew Thompson /*------------------------------------------------------------------------*
2399ed6d949aSAndrew Thompson  *	usbd_xfer_set_stall
240002ac6454SAndrew Thompson  *
240102ac6454SAndrew Thompson  * This function is used to set the stall flag outside the
240202ac6454SAndrew Thompson  * callback. This function is NULL safe.
240302ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
240402ac6454SAndrew Thompson void
2405ed6d949aSAndrew Thompson usbd_xfer_set_stall(struct usb_xfer *xfer)
240602ac6454SAndrew Thompson {
240702ac6454SAndrew Thompson 	if (xfer == NULL) {
240802ac6454SAndrew Thompson 		/* tearing down */
240902ac6454SAndrew Thompson 		return;
241002ac6454SAndrew Thompson 	}
241102ac6454SAndrew Thompson 	USB_XFER_LOCK_ASSERT(xfer, MA_OWNED);
241202ac6454SAndrew Thompson 
241302ac6454SAndrew Thompson 	/* avoid any races by locking the USB mutex */
241402ac6454SAndrew Thompson 	USB_BUS_LOCK(xfer->xroot->bus);
241502ac6454SAndrew Thompson 	xfer->flags.stall_pipe = 1;
241602ac6454SAndrew Thompson 	USB_BUS_UNLOCK(xfer->xroot->bus);
241702ac6454SAndrew Thompson }
241802ac6454SAndrew Thompson 
2419ed6d949aSAndrew Thompson int
2420ed6d949aSAndrew Thompson usbd_xfer_is_stalled(struct usb_xfer *xfer)
2421ed6d949aSAndrew Thompson {
2422ed6d949aSAndrew Thompson 	return (xfer->endpoint->is_stalled);
2423ed6d949aSAndrew Thompson }
2424ed6d949aSAndrew Thompson 
242502ac6454SAndrew Thompson /*------------------------------------------------------------------------*
2426a593f6b8SAndrew Thompson  *	usbd_transfer_clear_stall
242702ac6454SAndrew Thompson  *
242802ac6454SAndrew Thompson  * This function is used to clear the stall flag outside the
242902ac6454SAndrew Thompson  * callback. This function is NULL safe.
243002ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
243102ac6454SAndrew Thompson void
2432a593f6b8SAndrew Thompson usbd_transfer_clear_stall(struct usb_xfer *xfer)
243302ac6454SAndrew Thompson {
243402ac6454SAndrew Thompson 	if (xfer == NULL) {
243502ac6454SAndrew Thompson 		/* tearing down */
243602ac6454SAndrew Thompson 		return;
243702ac6454SAndrew Thompson 	}
243802ac6454SAndrew Thompson 	USB_XFER_LOCK_ASSERT(xfer, MA_OWNED);
243902ac6454SAndrew Thompson 
244002ac6454SAndrew Thompson 	/* avoid any races by locking the USB mutex */
244102ac6454SAndrew Thompson 	USB_BUS_LOCK(xfer->xroot->bus);
244202ac6454SAndrew Thompson 
244302ac6454SAndrew Thompson 	xfer->flags.stall_pipe = 0;
244402ac6454SAndrew Thompson 
244502ac6454SAndrew Thompson 	USB_BUS_UNLOCK(xfer->xroot->bus);
244602ac6454SAndrew Thompson }
244702ac6454SAndrew Thompson 
244802ac6454SAndrew Thompson /*------------------------------------------------------------------------*
2449a593f6b8SAndrew Thompson  *	usbd_pipe_start
245002ac6454SAndrew Thompson  *
245102ac6454SAndrew Thompson  * This function is used to add an USB transfer to the pipe transfer list.
245202ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
245302ac6454SAndrew Thompson void
2454a593f6b8SAndrew Thompson usbd_pipe_start(struct usb_xfer_queue *pq)
245502ac6454SAndrew Thompson {
2456ae60fdfbSAndrew Thompson 	struct usb_endpoint *ep;
2457760bc48eSAndrew Thompson 	struct usb_xfer *xfer;
245802ac6454SAndrew Thompson 	uint8_t type;
245902ac6454SAndrew Thompson 
246002ac6454SAndrew Thompson 	xfer = pq->curr;
2461ae60fdfbSAndrew Thompson 	ep = xfer->endpoint;
246202ac6454SAndrew Thompson 
246302ac6454SAndrew Thompson 	USB_BUS_LOCK_ASSERT(xfer->xroot->bus, MA_OWNED);
246402ac6454SAndrew Thompson 
246502ac6454SAndrew Thompson 	/*
2466ae60fdfbSAndrew Thompson 	 * If the endpoint is already stalled we do nothing !
246702ac6454SAndrew Thompson 	 */
2468ae60fdfbSAndrew Thompson 	if (ep->is_stalled) {
246902ac6454SAndrew Thompson 		return;
247002ac6454SAndrew Thompson 	}
247102ac6454SAndrew Thompson 	/*
2472ae60fdfbSAndrew Thompson 	 * Check if we are supposed to stall the endpoint:
247302ac6454SAndrew Thompson 	 */
247402ac6454SAndrew Thompson 	if (xfer->flags.stall_pipe) {
24753f6c7805SAndrew Thompson 		struct usb_device *udev;
24763f6c7805SAndrew Thompson 		struct usb_xfer_root *info;
24773f6c7805SAndrew Thompson 
247802ac6454SAndrew Thompson 		/* clear stall command */
247902ac6454SAndrew Thompson 		xfer->flags.stall_pipe = 0;
248002ac6454SAndrew Thompson 
24813f6c7805SAndrew Thompson 		/* get pointer to USB device */
24823f6c7805SAndrew Thompson 		info = xfer->xroot;
24833f6c7805SAndrew Thompson 		udev = info->udev;
24843f6c7805SAndrew Thompson 
248502ac6454SAndrew Thompson 		/*
248602ac6454SAndrew Thompson 		 * Only stall BULK and INTERRUPT endpoints.
248702ac6454SAndrew Thompson 		 */
2488ae60fdfbSAndrew Thompson 		type = (ep->edesc->bmAttributes & UE_XFERTYPE);
248902ac6454SAndrew Thompson 		if ((type == UE_BULK) ||
249002ac6454SAndrew Thompson 		    (type == UE_INTERRUPT)) {
249129bd7d7eSAndrew Thompson 			uint8_t did_stall;
249202ac6454SAndrew Thompson 
249329bd7d7eSAndrew Thompson 			did_stall = 1;
249402ac6454SAndrew Thompson 
2495f29a0724SAndrew Thompson 			if (udev->flags.usb_mode == USB_MODE_DEVICE) {
249602ac6454SAndrew Thompson 				(udev->bus->methods->set_stall) (
249729bd7d7eSAndrew Thompson 				    udev, NULL, ep, &did_stall);
24985b3bb704SAndrew Thompson 			} else if (udev->ctrl_xfer[1]) {
24995b3bb704SAndrew Thompson 				info = udev->ctrl_xfer[1]->xroot;
250029bd7d7eSAndrew Thompson 				usb_proc_msignal(
250102ac6454SAndrew Thompson 				    &info->bus->non_giant_callback_proc,
250229bd7d7eSAndrew Thompson 				    &udev->cs_msg[0], &udev->cs_msg[1]);
250302ac6454SAndrew Thompson 			} else {
250402ac6454SAndrew Thompson 				/* should not happen */
2505767cb2e2SAndrew Thompson 				DPRINTFN(0, "No stall handler\n");
250602ac6454SAndrew Thompson 			}
250702ac6454SAndrew Thompson 			/*
250829bd7d7eSAndrew Thompson 			 * Check if we should stall. Some USB hardware
250929bd7d7eSAndrew Thompson 			 * handles set- and clear-stall in hardware.
251002ac6454SAndrew Thompson 			 */
251129bd7d7eSAndrew Thompson 			if (did_stall) {
251229bd7d7eSAndrew Thompson 				/*
251329bd7d7eSAndrew Thompson 				 * The transfer will be continued when
251429bd7d7eSAndrew Thompson 				 * the clear-stall control endpoint
251529bd7d7eSAndrew Thompson 				 * message is received.
251629bd7d7eSAndrew Thompson 				 */
251729bd7d7eSAndrew Thompson 				ep->is_stalled = 1;
251802ac6454SAndrew Thompson 				return;
251902ac6454SAndrew Thompson 			}
25203f6c7805SAndrew Thompson 		} else if (type == UE_ISOCHRONOUS) {
25213f6c7805SAndrew Thompson 
25223f6c7805SAndrew Thompson 			/*
25233f6c7805SAndrew Thompson 			 * Make sure any FIFO overflow or other FIFO
25243f6c7805SAndrew Thompson 			 * error conditions go away by resetting the
25253f6c7805SAndrew Thompson 			 * endpoint FIFO through the clear stall
25263f6c7805SAndrew Thompson 			 * method.
25273f6c7805SAndrew Thompson 			 */
25283f6c7805SAndrew Thompson 			if (udev->flags.usb_mode == USB_MODE_DEVICE) {
25293f6c7805SAndrew Thompson 				(udev->bus->methods->clear_stall) (udev, ep);
25303f6c7805SAndrew Thompson 			}
253102ac6454SAndrew Thompson 		}
253229bd7d7eSAndrew Thompson 	}
253302ac6454SAndrew Thompson 	/* Set or clear stall complete - special case */
253402ac6454SAndrew Thompson 	if (xfer->nframes == 0) {
253502ac6454SAndrew Thompson 		/* we are complete */
253602ac6454SAndrew Thompson 		xfer->aframes = 0;
2537a593f6b8SAndrew Thompson 		usbd_transfer_done(xfer, 0);
253802ac6454SAndrew Thompson 		return;
253902ac6454SAndrew Thompson 	}
254002ac6454SAndrew Thompson 	/*
254102ac6454SAndrew Thompson 	 * Handled cases:
254202ac6454SAndrew Thompson 	 *
254302ac6454SAndrew Thompson 	 * 1) Start the first transfer queued.
254402ac6454SAndrew Thompson 	 *
254502ac6454SAndrew Thompson 	 * 2) Re-start the current USB transfer.
254602ac6454SAndrew Thompson 	 */
254702ac6454SAndrew Thompson 	/*
254802ac6454SAndrew Thompson 	 * Check if there should be any
254902ac6454SAndrew Thompson 	 * pre transfer start delay:
255002ac6454SAndrew Thompson 	 */
255102ac6454SAndrew Thompson 	if (xfer->interval > 0) {
2552ae60fdfbSAndrew Thompson 		type = (ep->edesc->bmAttributes & UE_XFERTYPE);
255302ac6454SAndrew Thompson 		if ((type == UE_BULK) ||
255402ac6454SAndrew Thompson 		    (type == UE_CONTROL)) {
2555a593f6b8SAndrew Thompson 			usbd_transfer_timeout_ms(xfer,
2556a593f6b8SAndrew Thompson 			    &usbd_transfer_start_cb,
255702ac6454SAndrew Thompson 			    xfer->interval);
255802ac6454SAndrew Thompson 			return;
255902ac6454SAndrew Thompson 		}
256002ac6454SAndrew Thompson 	}
256102ac6454SAndrew Thompson 	DPRINTF("start\n");
256202ac6454SAndrew Thompson 
256302ac6454SAndrew Thompson 	/* start USB transfer */
2564ae60fdfbSAndrew Thompson 	(ep->methods->start) (xfer);
256502ac6454SAndrew Thompson 
256602ac6454SAndrew Thompson 	xfer->flags_int.can_cancel_immed = 1;
25674565300dSAndrew Thompson 
25684565300dSAndrew Thompson 	/* check for error */
256902ac6454SAndrew Thompson 	if (xfer->error) {
257002ac6454SAndrew Thompson 		/* some error has happened */
2571a593f6b8SAndrew Thompson 		usbd_transfer_done(xfer, 0);
257202ac6454SAndrew Thompson 	}
257302ac6454SAndrew Thompson }
257402ac6454SAndrew Thompson 
257502ac6454SAndrew Thompson /*------------------------------------------------------------------------*
2576a593f6b8SAndrew Thompson  *	usbd_transfer_timeout_ms
257702ac6454SAndrew Thompson  *
257802ac6454SAndrew Thompson  * This function is used to setup a timeout on the given USB
257902ac6454SAndrew Thompson  * transfer. If the timeout has been deferred the callback given by
258002ac6454SAndrew Thompson  * "cb" will get called after "ms" milliseconds.
258102ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
258202ac6454SAndrew Thompson void
2583a593f6b8SAndrew Thompson usbd_transfer_timeout_ms(struct usb_xfer *xfer,
2584e0a69b51SAndrew Thompson     void (*cb) (void *arg), usb_timeout_t ms)
258502ac6454SAndrew Thompson {
258602ac6454SAndrew Thompson 	USB_BUS_LOCK_ASSERT(xfer->xroot->bus, MA_OWNED);
258702ac6454SAndrew Thompson 
258802ac6454SAndrew Thompson 	/* defer delay */
2589a593f6b8SAndrew Thompson 	usb_callout_reset(&xfer->timeout_handle,
259002ac6454SAndrew Thompson 	    USB_MS_TO_TICKS(ms), cb, xfer);
259102ac6454SAndrew Thompson }
259202ac6454SAndrew Thompson 
259302ac6454SAndrew Thompson /*------------------------------------------------------------------------*
2594a593f6b8SAndrew Thompson  *	usbd_callback_wrapper_sub
259502ac6454SAndrew Thompson  *
259602ac6454SAndrew Thompson  *  - This function will update variables in an USB transfer after
259702ac6454SAndrew Thompson  *  that the USB transfer is complete.
259802ac6454SAndrew Thompson  *
259902ac6454SAndrew Thompson  *  - This function is used to start the next USB transfer on the
2600ae60fdfbSAndrew Thompson  *  ep transfer queue, if any.
260102ac6454SAndrew Thompson  *
260202ac6454SAndrew Thompson  * NOTE: In some special cases the USB transfer will not be removed from
260302ac6454SAndrew Thompson  * the pipe queue, but remain first. To enforce USB transfer removal call
260402ac6454SAndrew Thompson  * this function passing the error code "USB_ERR_CANCELLED".
260502ac6454SAndrew Thompson  *
260602ac6454SAndrew Thompson  * Return values:
260702ac6454SAndrew Thompson  * 0: Success.
260802ac6454SAndrew Thompson  * Else: The callback has been deferred.
260902ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
261002ac6454SAndrew Thompson static uint8_t
2611a593f6b8SAndrew Thompson usbd_callback_wrapper_sub(struct usb_xfer *xfer)
261202ac6454SAndrew Thompson {
2613ae60fdfbSAndrew Thompson 	struct usb_endpoint *ep;
2614*963169b4SHans Petter Selasky 	struct usb_bus *bus;
2615e0a69b51SAndrew Thompson 	usb_frcount_t x;
261602ac6454SAndrew Thompson 
2617*963169b4SHans Petter Selasky 	bus = xfer->xroot->bus;
2618*963169b4SHans Petter Selasky 
261902ac6454SAndrew Thompson 	if ((!xfer->flags_int.open) &&
262002ac6454SAndrew Thompson 	    (!xfer->flags_int.did_close)) {
262102ac6454SAndrew Thompson 		DPRINTF("close\n");
2622*963169b4SHans Petter Selasky 		USB_BUS_LOCK(bus);
2623ae60fdfbSAndrew Thompson 		(xfer->endpoint->methods->close) (xfer);
2624*963169b4SHans Petter Selasky 		USB_BUS_UNLOCK(bus);
262502ac6454SAndrew Thompson 		/* only close once */
262602ac6454SAndrew Thompson 		xfer->flags_int.did_close = 1;
262702ac6454SAndrew Thompson 		return (1);		/* wait for new callback */
262802ac6454SAndrew Thompson 	}
262902ac6454SAndrew Thompson 	/*
263002ac6454SAndrew Thompson 	 * If we have a non-hardware induced error we
263102ac6454SAndrew Thompson 	 * need to do the DMA delay!
263202ac6454SAndrew Thompson 	 */
2633*963169b4SHans Petter Selasky 	if (xfer->error != 0 && !xfer->flags_int.did_dma_delay &&
2634*963169b4SHans Petter Selasky 	    (xfer->error == USB_ERR_CANCELLED ||
2635*963169b4SHans Petter Selasky 	    xfer->error == USB_ERR_TIMEOUT ||
2636*963169b4SHans Petter Selasky 	    bus->methods->start_dma_delay != NULL)) {
263702ac6454SAndrew Thompson 
2638e0a69b51SAndrew Thompson 		usb_timeout_t temp;
263902ac6454SAndrew Thompson 
2640a8725281SAndrew Thompson 		/* only delay once */
2641a8725281SAndrew Thompson 		xfer->flags_int.did_dma_delay = 1;
2642a8725281SAndrew Thompson 
264302ac6454SAndrew Thompson 		/* we can not cancel this delay */
264402ac6454SAndrew Thompson 		xfer->flags_int.can_cancel_immed = 0;
264502ac6454SAndrew Thompson 
2646527aa7b2SAndrew Thompson 		temp = usbd_get_dma_delay(xfer->xroot->udev);
264702ac6454SAndrew Thompson 
264802ac6454SAndrew Thompson 		DPRINTFN(3, "DMA delay, %u ms, "
264902ac6454SAndrew Thompson 		    "on %p\n", temp, xfer);
265002ac6454SAndrew Thompson 
265102ac6454SAndrew Thompson 		if (temp != 0) {
2652*963169b4SHans Petter Selasky 			USB_BUS_LOCK(bus);
2653*963169b4SHans Petter Selasky 			/*
2654*963169b4SHans Petter Selasky 			 * Some hardware solutions have dedicated
2655*963169b4SHans Petter Selasky 			 * events when it is safe to free DMA'ed
2656*963169b4SHans Petter Selasky 			 * memory. For the other hardware platforms we
2657*963169b4SHans Petter Selasky 			 * use a static delay.
2658*963169b4SHans Petter Selasky 			 */
2659*963169b4SHans Petter Selasky 			if (bus->methods->start_dma_delay != NULL) {
2660*963169b4SHans Petter Selasky 				(bus->methods->start_dma_delay) (xfer);
2661*963169b4SHans Petter Selasky 			} else {
2662a593f6b8SAndrew Thompson 				usbd_transfer_timeout_ms(xfer,
2663*963169b4SHans Petter Selasky 				    (void *)&usb_dma_delay_done_cb, temp);
2664*963169b4SHans Petter Selasky 			}
2665*963169b4SHans Petter Selasky 			USB_BUS_UNLOCK(bus);
266602ac6454SAndrew Thompson 			return (1);	/* wait for new callback */
266702ac6454SAndrew Thompson 		}
266802ac6454SAndrew Thompson 	}
266902ac6454SAndrew Thompson 	/* check actual number of frames */
267002ac6454SAndrew Thompson 	if (xfer->aframes > xfer->nframes) {
267102ac6454SAndrew Thompson 		if (xfer->error == 0) {
267202ac6454SAndrew Thompson 			panic("%s: actual number of frames, %d, is "
2673767cb2e2SAndrew Thompson 			    "greater than initial number of frames, %d\n",
267402ac6454SAndrew Thompson 			    __FUNCTION__, xfer->aframes, xfer->nframes);
267502ac6454SAndrew Thompson 		} else {
267602ac6454SAndrew Thompson 			/* just set some valid value */
267702ac6454SAndrew Thompson 			xfer->aframes = xfer->nframes;
267802ac6454SAndrew Thompson 		}
267902ac6454SAndrew Thompson 	}
268002ac6454SAndrew Thompson 	/* compute actual length */
268102ac6454SAndrew Thompson 	xfer->actlen = 0;
268202ac6454SAndrew Thompson 
268302ac6454SAndrew Thompson 	for (x = 0; x != xfer->aframes; x++) {
268402ac6454SAndrew Thompson 		xfer->actlen += xfer->frlengths[x];
268502ac6454SAndrew Thompson 	}
268602ac6454SAndrew Thompson 
268702ac6454SAndrew Thompson 	/*
268802ac6454SAndrew Thompson 	 * Frames that were not transferred get zero actual length in
268902ac6454SAndrew Thompson 	 * case the USB device driver does not check the actual number
269002ac6454SAndrew Thompson 	 * of frames transferred, "xfer->aframes":
269102ac6454SAndrew Thompson 	 */
269202ac6454SAndrew Thompson 	for (; x < xfer->nframes; x++) {
2693ed6d949aSAndrew Thompson 		usbd_xfer_set_frame_len(xfer, x, 0);
269402ac6454SAndrew Thompson 	}
269502ac6454SAndrew Thompson 
269602ac6454SAndrew Thompson 	/* check actual length */
269702ac6454SAndrew Thompson 	if (xfer->actlen > xfer->sumlen) {
269802ac6454SAndrew Thompson 		if (xfer->error == 0) {
269902ac6454SAndrew Thompson 			panic("%s: actual length, %d, is greater than "
2700767cb2e2SAndrew Thompson 			    "initial length, %d\n",
270102ac6454SAndrew Thompson 			    __FUNCTION__, xfer->actlen, xfer->sumlen);
270202ac6454SAndrew Thompson 		} else {
270302ac6454SAndrew Thompson 			/* just set some valid value */
270402ac6454SAndrew Thompson 			xfer->actlen = xfer->sumlen;
270502ac6454SAndrew Thompson 		}
270602ac6454SAndrew Thompson 	}
2707ed6d949aSAndrew Thompson 	DPRINTFN(1, "xfer=%p endpoint=%p sts=%d alen=%d, slen=%d, afrm=%d, nfrm=%d\n",
2708ae60fdfbSAndrew Thompson 	    xfer, xfer->endpoint, xfer->error, xfer->actlen, xfer->sumlen,
270902ac6454SAndrew Thompson 	    xfer->aframes, xfer->nframes);
271002ac6454SAndrew Thompson 
271102ac6454SAndrew Thompson 	if (xfer->error) {
271202ac6454SAndrew Thompson 		/* end of control transfer, if any */
271302ac6454SAndrew Thompson 		xfer->flags_int.control_act = 0;
271402ac6454SAndrew Thompson 
271502ac6454SAndrew Thompson 		/* check if we should block the execution queue */
271602ac6454SAndrew Thompson 		if ((xfer->error != USB_ERR_CANCELLED) &&
271702ac6454SAndrew Thompson 		    (xfer->flags.pipe_bof)) {
271802ac6454SAndrew Thompson 			DPRINTFN(2, "xfer=%p: Block On Failure "
2719ae60fdfbSAndrew Thompson 			    "on endpoint=%p\n", xfer, xfer->endpoint);
272002ac6454SAndrew Thompson 			goto done;
272102ac6454SAndrew Thompson 		}
272202ac6454SAndrew Thompson 	} else {
272302ac6454SAndrew Thompson 		/* check for short transfers */
272402ac6454SAndrew Thompson 		if (xfer->actlen < xfer->sumlen) {
272502ac6454SAndrew Thompson 
272602ac6454SAndrew Thompson 			/* end of control transfer, if any */
272702ac6454SAndrew Thompson 			xfer->flags_int.control_act = 0;
272802ac6454SAndrew Thompson 
272902ac6454SAndrew Thompson 			if (!xfer->flags_int.short_xfer_ok) {
273002ac6454SAndrew Thompson 				xfer->error = USB_ERR_SHORT_XFER;
273102ac6454SAndrew Thompson 				if (xfer->flags.pipe_bof) {
273202ac6454SAndrew Thompson 					DPRINTFN(2, "xfer=%p: Block On Failure on "
2733ae60fdfbSAndrew Thompson 					    "Short Transfer on endpoint %p.\n",
2734ae60fdfbSAndrew Thompson 					    xfer, xfer->endpoint);
273502ac6454SAndrew Thompson 					goto done;
273602ac6454SAndrew Thompson 				}
273702ac6454SAndrew Thompson 			}
273802ac6454SAndrew Thompson 		} else {
273902ac6454SAndrew Thompson 			/*
274002ac6454SAndrew Thompson 			 * Check if we are in the middle of a
274102ac6454SAndrew Thompson 			 * control transfer:
274202ac6454SAndrew Thompson 			 */
274302ac6454SAndrew Thompson 			if (xfer->flags_int.control_act) {
274402ac6454SAndrew Thompson 				DPRINTFN(5, "xfer=%p: Control transfer "
2745ae60fdfbSAndrew Thompson 				    "active on endpoint=%p\n", xfer, xfer->endpoint);
274602ac6454SAndrew Thompson 				goto done;
274702ac6454SAndrew Thompson 			}
274802ac6454SAndrew Thompson 		}
274902ac6454SAndrew Thompson 	}
275002ac6454SAndrew Thompson 
2751ae60fdfbSAndrew Thompson 	ep = xfer->endpoint;
275202ac6454SAndrew Thompson 
275302ac6454SAndrew Thompson 	/*
275402ac6454SAndrew Thompson 	 * If the current USB transfer is completing we need to start the
275502ac6454SAndrew Thompson 	 * next one:
275602ac6454SAndrew Thompson 	 */
2757*963169b4SHans Petter Selasky 	USB_BUS_LOCK(bus);
2758ae60fdfbSAndrew Thompson 	if (ep->endpoint_q.curr == xfer) {
2759a593f6b8SAndrew Thompson 		usb_command_wrapper(&ep->endpoint_q, NULL);
276002ac6454SAndrew Thompson 
2761ae60fdfbSAndrew Thompson 		if (ep->endpoint_q.curr || TAILQ_FIRST(&ep->endpoint_q.head)) {
276202ac6454SAndrew Thompson 			/* there is another USB transfer waiting */
276302ac6454SAndrew Thompson 		} else {
276402ac6454SAndrew Thompson 			/* this is the last USB transfer */
276502ac6454SAndrew Thompson 			/* clear isochronous sync flag */
2766ae60fdfbSAndrew Thompson 			xfer->endpoint->is_synced = 0;
276702ac6454SAndrew Thompson 		}
276802ac6454SAndrew Thompson 	}
2769*963169b4SHans Petter Selasky 	USB_BUS_UNLOCK(bus);
277002ac6454SAndrew Thompson done:
277102ac6454SAndrew Thompson 	return (0);
277202ac6454SAndrew Thompson }
277302ac6454SAndrew Thompson 
277402ac6454SAndrew Thompson /*------------------------------------------------------------------------*
2775a593f6b8SAndrew Thompson  *	usb_command_wrapper
277602ac6454SAndrew Thompson  *
277702ac6454SAndrew Thompson  * This function is used to execute commands non-recursivly on an USB
277802ac6454SAndrew Thompson  * transfer.
277902ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
278002ac6454SAndrew Thompson void
2781a593f6b8SAndrew Thompson usb_command_wrapper(struct usb_xfer_queue *pq, struct usb_xfer *xfer)
278202ac6454SAndrew Thompson {
278302ac6454SAndrew Thompson 	if (xfer) {
278402ac6454SAndrew Thompson 		/*
278502ac6454SAndrew Thompson 		 * If the transfer is not already processing,
278602ac6454SAndrew Thompson 		 * queue it!
278702ac6454SAndrew Thompson 		 */
278802ac6454SAndrew Thompson 		if (pq->curr != xfer) {
2789a593f6b8SAndrew Thompson 			usbd_transfer_enqueue(pq, xfer);
279002ac6454SAndrew Thompson 			if (pq->curr != NULL) {
279102ac6454SAndrew Thompson 				/* something is already processing */
279202ac6454SAndrew Thompson 				DPRINTFN(6, "busy %p\n", pq->curr);
279302ac6454SAndrew Thompson 				return;
279402ac6454SAndrew Thompson 			}
279502ac6454SAndrew Thompson 		}
279602ac6454SAndrew Thompson 	} else {
279702ac6454SAndrew Thompson 		/* Get next element in queue */
279802ac6454SAndrew Thompson 		pq->curr = NULL;
279902ac6454SAndrew Thompson 	}
280002ac6454SAndrew Thompson 
280102ac6454SAndrew Thompson 	if (!pq->recurse_1) {
280202ac6454SAndrew Thompson 
280302ac6454SAndrew Thompson 		do {
280402ac6454SAndrew Thompson 
280502ac6454SAndrew Thompson 			/* set both recurse flags */
280602ac6454SAndrew Thompson 			pq->recurse_1 = 1;
280702ac6454SAndrew Thompson 			pq->recurse_2 = 1;
280802ac6454SAndrew Thompson 
280902ac6454SAndrew Thompson 			if (pq->curr == NULL) {
281002ac6454SAndrew Thompson 				xfer = TAILQ_FIRST(&pq->head);
281102ac6454SAndrew Thompson 				if (xfer) {
281202ac6454SAndrew Thompson 					TAILQ_REMOVE(&pq->head, xfer,
281302ac6454SAndrew Thompson 					    wait_entry);
281402ac6454SAndrew Thompson 					xfer->wait_queue = NULL;
281502ac6454SAndrew Thompson 					pq->curr = xfer;
281602ac6454SAndrew Thompson 				} else {
281702ac6454SAndrew Thompson 					break;
281802ac6454SAndrew Thompson 				}
281902ac6454SAndrew Thompson 			}
282002ac6454SAndrew Thompson 			DPRINTFN(6, "cb %p (enter)\n", pq->curr);
282102ac6454SAndrew Thompson 			(pq->command) (pq);
282202ac6454SAndrew Thompson 			DPRINTFN(6, "cb %p (leave)\n", pq->curr);
282302ac6454SAndrew Thompson 
282402ac6454SAndrew Thompson 		} while (!pq->recurse_2);
282502ac6454SAndrew Thompson 
282602ac6454SAndrew Thompson 		/* clear first recurse flag */
282702ac6454SAndrew Thompson 		pq->recurse_1 = 0;
282802ac6454SAndrew Thompson 
282902ac6454SAndrew Thompson 	} else {
283002ac6454SAndrew Thompson 		/* clear second recurse flag */
283102ac6454SAndrew Thompson 		pq->recurse_2 = 0;
283202ac6454SAndrew Thompson 	}
283302ac6454SAndrew Thompson }
283402ac6454SAndrew Thompson 
283502ac6454SAndrew Thompson /*------------------------------------------------------------------------*
28365b3bb704SAndrew Thompson  *	usbd_ctrl_transfer_setup
283702ac6454SAndrew Thompson  *
283802ac6454SAndrew Thompson  * This function is used to setup the default USB control endpoint
283902ac6454SAndrew Thompson  * transfer.
284002ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
284102ac6454SAndrew Thompson void
28425b3bb704SAndrew Thompson usbd_ctrl_transfer_setup(struct usb_device *udev)
284302ac6454SAndrew Thompson {
2844760bc48eSAndrew Thompson 	struct usb_xfer *xfer;
284502ac6454SAndrew Thompson 	uint8_t no_resetup;
284602ac6454SAndrew Thompson 	uint8_t iface_index;
284702ac6454SAndrew Thompson 
284839307315SAndrew Thompson 	/* check for root HUB */
284939307315SAndrew Thompson 	if (udev->parent_hub == NULL)
285039307315SAndrew Thompson 		return;
285102ac6454SAndrew Thompson repeat:
285202ac6454SAndrew Thompson 
28535b3bb704SAndrew Thompson 	xfer = udev->ctrl_xfer[0];
285402ac6454SAndrew Thompson 	if (xfer) {
285502ac6454SAndrew Thompson 		USB_XFER_LOCK(xfer);
285602ac6454SAndrew Thompson 		no_resetup =
285702ac6454SAndrew Thompson 		    ((xfer->address == udev->address) &&
28585b3bb704SAndrew Thompson 		    (udev->ctrl_ep_desc.wMaxPacketSize[0] ==
285902ac6454SAndrew Thompson 		    udev->ddesc.bMaxPacketSize));
2860f29a0724SAndrew Thompson 		if (udev->flags.usb_mode == USB_MODE_DEVICE) {
286102ac6454SAndrew Thompson 			if (no_resetup) {
286202ac6454SAndrew Thompson 				/*
286302ac6454SAndrew Thompson 				 * NOTE: checking "xfer->address" and
286402ac6454SAndrew Thompson 				 * starting the USB transfer must be
286502ac6454SAndrew Thompson 				 * atomic!
286602ac6454SAndrew Thompson 				 */
2867a593f6b8SAndrew Thompson 				usbd_transfer_start(xfer);
286802ac6454SAndrew Thompson 			}
286902ac6454SAndrew Thompson 		}
287002ac6454SAndrew Thompson 		USB_XFER_UNLOCK(xfer);
287102ac6454SAndrew Thompson 	} else {
287202ac6454SAndrew Thompson 		no_resetup = 0;
287302ac6454SAndrew Thompson 	}
287402ac6454SAndrew Thompson 
287502ac6454SAndrew Thompson 	if (no_resetup) {
287602ac6454SAndrew Thompson 		/*
287702ac6454SAndrew Thompson 	         * All parameters are exactly the same like before.
287802ac6454SAndrew Thompson 	         * Just return.
287902ac6454SAndrew Thompson 	         */
288002ac6454SAndrew Thompson 		return;
288102ac6454SAndrew Thompson 	}
288202ac6454SAndrew Thompson 	/*
288302ac6454SAndrew Thompson 	 * Update wMaxPacketSize for the default control endpoint:
288402ac6454SAndrew Thompson 	 */
28855b3bb704SAndrew Thompson 	udev->ctrl_ep_desc.wMaxPacketSize[0] =
288602ac6454SAndrew Thompson 	    udev->ddesc.bMaxPacketSize;
288702ac6454SAndrew Thompson 
288802ac6454SAndrew Thompson 	/*
288902ac6454SAndrew Thompson 	 * Unsetup any existing USB transfer:
289002ac6454SAndrew Thompson 	 */
28915b3bb704SAndrew Thompson 	usbd_transfer_unsetup(udev->ctrl_xfer, USB_CTRL_XFER_MAX);
289202ac6454SAndrew Thompson 
289302ac6454SAndrew Thompson 	/*
289402ac6454SAndrew Thompson 	 * Try to setup a new USB transfer for the
289502ac6454SAndrew Thompson 	 * default control endpoint:
289602ac6454SAndrew Thompson 	 */
289702ac6454SAndrew Thompson 	iface_index = 0;
2898a593f6b8SAndrew Thompson 	if (usbd_transfer_setup(udev, &iface_index,
28995b3bb704SAndrew Thompson 	    udev->ctrl_xfer, usb_control_ep_cfg, USB_CTRL_XFER_MAX, NULL,
290091cd9240SAndrew Thompson 	    &udev->device_mtx)) {
290102ac6454SAndrew Thompson 		DPRINTFN(0, "could not setup default "
2902767cb2e2SAndrew Thompson 		    "USB transfer\n");
290302ac6454SAndrew Thompson 	} else {
290402ac6454SAndrew Thompson 		goto repeat;
290502ac6454SAndrew Thompson 	}
290602ac6454SAndrew Thompson }
290702ac6454SAndrew Thompson 
290802ac6454SAndrew Thompson /*------------------------------------------------------------------------*
2909a593f6b8SAndrew Thompson  *	usbd_clear_data_toggle - factored out code
291002ac6454SAndrew Thompson  *
291102ac6454SAndrew Thompson  * NOTE: the intention of this function is not to reset the hardware
291202ac6454SAndrew Thompson  * data toggle.
291302ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
291402ac6454SAndrew Thompson void
2915*963169b4SHans Petter Selasky usbd_clear_stall_locked(struct usb_device *udev, struct usb_endpoint *ep)
2916*963169b4SHans Petter Selasky {
2917*963169b4SHans Petter Selasky 	USB_BUS_LOCK_ASSERT(udev->bus, MA_OWNED);
2918*963169b4SHans Petter Selasky 
2919*963169b4SHans Petter Selasky 	/* check that we have a valid case */
2920*963169b4SHans Petter Selasky 	if (udev->flags.usb_mode == USB_MODE_HOST &&
2921*963169b4SHans Petter Selasky 	    udev->parent_hub != NULL &&
2922*963169b4SHans Petter Selasky 	    udev->bus->methods->clear_stall != NULL &&
2923*963169b4SHans Petter Selasky 	    ep->methods != NULL) {
2924*963169b4SHans Petter Selasky 		(udev->bus->methods->clear_stall) (udev, ep);
2925*963169b4SHans Petter Selasky 	}
2926*963169b4SHans Petter Selasky }
2927*963169b4SHans Petter Selasky 
2928*963169b4SHans Petter Selasky /*------------------------------------------------------------------------*
2929*963169b4SHans Petter Selasky  *	usbd_clear_data_toggle - factored out code
2930*963169b4SHans Petter Selasky  *
2931*963169b4SHans Petter Selasky  * NOTE: the intention of this function is not to reset the hardware
2932*963169b4SHans Petter Selasky  * data toggle on the USB device side.
2933*963169b4SHans Petter Selasky  *------------------------------------------------------------------------*/
2934*963169b4SHans Petter Selasky void
2935a593f6b8SAndrew Thompson usbd_clear_data_toggle(struct usb_device *udev, struct usb_endpoint *ep)
293602ac6454SAndrew Thompson {
2937ae60fdfbSAndrew Thompson 	DPRINTFN(5, "udev=%p endpoint=%p\n", udev, ep);
293802ac6454SAndrew Thompson 
293902ac6454SAndrew Thompson 	USB_BUS_LOCK(udev->bus);
2940ae60fdfbSAndrew Thompson 	ep->toggle_next = 0;
2941*963169b4SHans Petter Selasky 	/* some hardware needs a callback to clear the data toggle */
2942*963169b4SHans Petter Selasky 	usbd_clear_stall_locked(udev, ep);
294302ac6454SAndrew Thompson 	USB_BUS_UNLOCK(udev->bus);
294402ac6454SAndrew Thompson }
294502ac6454SAndrew Thompson 
294602ac6454SAndrew Thompson /*------------------------------------------------------------------------*
2947a593f6b8SAndrew Thompson  *	usbd_clear_stall_callback - factored out clear stall callback
294802ac6454SAndrew Thompson  *
294902ac6454SAndrew Thompson  * Input parameters:
295002ac6454SAndrew Thompson  *  xfer1: Clear Stall Control Transfer
295102ac6454SAndrew Thompson  *  xfer2: Stalled USB Transfer
295202ac6454SAndrew Thompson  *
295302ac6454SAndrew Thompson  * This function is NULL safe.
295402ac6454SAndrew Thompson  *
295502ac6454SAndrew Thompson  * Return values:
295602ac6454SAndrew Thompson  *   0: In progress
295702ac6454SAndrew Thompson  *   Else: Finished
295802ac6454SAndrew Thompson  *
295902ac6454SAndrew Thompson  * Clear stall config example:
296002ac6454SAndrew Thompson  *
2961760bc48eSAndrew Thompson  * static const struct usb_config my_clearstall =  {
296202ac6454SAndrew Thompson  *	.type = UE_CONTROL,
296302ac6454SAndrew Thompson  *	.endpoint = 0,
296402ac6454SAndrew Thompson  *	.direction = UE_DIR_ANY,
296502ac6454SAndrew Thompson  *	.interval = 50, //50 milliseconds
2966760bc48eSAndrew Thompson  *	.bufsize = sizeof(struct usb_device_request),
29674eae601eSAndrew Thompson  *	.timeout = 1000, //1.000 seconds
29684eae601eSAndrew Thompson  *	.callback = &my_clear_stall_callback, // **
29694eae601eSAndrew Thompson  *	.usb_mode = USB_MODE_HOST,
297002ac6454SAndrew Thompson  * };
297102ac6454SAndrew Thompson  *
2972a593f6b8SAndrew Thompson  * ** "my_clear_stall_callback" calls "usbd_clear_stall_callback"
297302ac6454SAndrew Thompson  * passing the correct parameters.
297402ac6454SAndrew Thompson  *------------------------------------------------------------------------*/
297502ac6454SAndrew Thompson uint8_t
2976a593f6b8SAndrew Thompson usbd_clear_stall_callback(struct usb_xfer *xfer1,
2977760bc48eSAndrew Thompson     struct usb_xfer *xfer2)
297802ac6454SAndrew Thompson {
2979760bc48eSAndrew Thompson 	struct usb_device_request req;
298002ac6454SAndrew Thompson 
298102ac6454SAndrew Thompson 	if (xfer2 == NULL) {
298202ac6454SAndrew Thompson 		/* looks like we are tearing down */
298302ac6454SAndrew Thompson 		DPRINTF("NULL input parameter\n");
298402ac6454SAndrew Thompson 		return (0);
298502ac6454SAndrew Thompson 	}
298602ac6454SAndrew Thompson 	USB_XFER_LOCK_ASSERT(xfer1, MA_OWNED);
298702ac6454SAndrew Thompson 	USB_XFER_LOCK_ASSERT(xfer2, MA_OWNED);
298802ac6454SAndrew Thompson 
298902ac6454SAndrew Thompson 	switch (USB_GET_STATE(xfer1)) {
299002ac6454SAndrew Thompson 	case USB_ST_SETUP:
299102ac6454SAndrew Thompson 
299202ac6454SAndrew Thompson 		/*
299302ac6454SAndrew Thompson 		 * pre-clear the data toggle to DATA0 ("umass.c" and
299402ac6454SAndrew Thompson 		 * "ata-usb.c" depends on this)
299502ac6454SAndrew Thompson 		 */
299602ac6454SAndrew Thompson 
2997a593f6b8SAndrew Thompson 		usbd_clear_data_toggle(xfer2->xroot->udev, xfer2->endpoint);
299802ac6454SAndrew Thompson 
299902ac6454SAndrew Thompson 		/* setup a clear-stall packet */
300002ac6454SAndrew Thompson 
300102ac6454SAndrew Thompson 		req.bmRequestType = UT_WRITE_ENDPOINT;
300202ac6454SAndrew Thompson 		req.bRequest = UR_CLEAR_FEATURE;
300302ac6454SAndrew Thompson 		USETW(req.wValue, UF_ENDPOINT_HALT);
3004ae60fdfbSAndrew Thompson 		req.wIndex[0] = xfer2->endpoint->edesc->bEndpointAddress;
300502ac6454SAndrew Thompson 		req.wIndex[1] = 0;
300602ac6454SAndrew Thompson 		USETW(req.wLength, 0);
300702ac6454SAndrew Thompson 
300802ac6454SAndrew Thompson 		/*
3009a593f6b8SAndrew Thompson 		 * "usbd_transfer_setup_sub()" will ensure that
301002ac6454SAndrew Thompson 		 * we have sufficient room in the buffer for
301102ac6454SAndrew Thompson 		 * the request structure!
301202ac6454SAndrew Thompson 		 */
301302ac6454SAndrew Thompson 
301402ac6454SAndrew Thompson 		/* copy in the transfer */
301502ac6454SAndrew Thompson 
3016a593f6b8SAndrew Thompson 		usbd_copy_in(xfer1->frbuffers, 0, &req, sizeof(req));
301702ac6454SAndrew Thompson 
301802ac6454SAndrew Thompson 		/* set length */
301902ac6454SAndrew Thompson 		xfer1->frlengths[0] = sizeof(req);
302002ac6454SAndrew Thompson 		xfer1->nframes = 1;
302102ac6454SAndrew Thompson 
3022a593f6b8SAndrew Thompson 		usbd_transfer_submit(xfer1);
302302ac6454SAndrew Thompson 		return (0);
302402ac6454SAndrew Thompson 
302502ac6454SAndrew Thompson 	case USB_ST_TRANSFERRED:
302602ac6454SAndrew Thompson 		break;
302702ac6454SAndrew Thompson 
302802ac6454SAndrew Thompson 	default:			/* Error */
302902ac6454SAndrew Thompson 		if (xfer1->error == USB_ERR_CANCELLED) {
303002ac6454SAndrew Thompson 			return (0);
303102ac6454SAndrew Thompson 		}
303202ac6454SAndrew Thompson 		break;
303302ac6454SAndrew Thompson 	}
303402ac6454SAndrew Thompson 	return (1);			/* Clear Stall Finished */
303502ac6454SAndrew Thompson }
303602ac6454SAndrew Thompson 
3037dddb25f9SAlfred Perlstein /*------------------------------------------------------------------------*
3038dddb25f9SAlfred Perlstein  *	usbd_transfer_poll
3039dddb25f9SAlfred Perlstein  *
3040dddb25f9SAlfred Perlstein  * The following function gets called from the USB keyboard driver and
3041dddb25f9SAlfred Perlstein  * UMASS when the system has paniced.
3042dddb25f9SAlfred Perlstein  *
3043dddb25f9SAlfred Perlstein  * NOTE: It is currently not possible to resume normal operation on
3044dddb25f9SAlfred Perlstein  * the USB controller which has been polled, due to clearing of the
3045dddb25f9SAlfred Perlstein  * "up_dsleep" and "up_msleep" flags.
3046dddb25f9SAlfred Perlstein  *------------------------------------------------------------------------*/
304702ac6454SAndrew Thompson void
3048ed6d949aSAndrew Thompson usbd_transfer_poll(struct usb_xfer **ppxfer, uint16_t max)
304902ac6454SAndrew Thompson {
3050dddb25f9SAlfred Perlstein 	struct usb_xfer *xfer;
3051dddb25f9SAlfred Perlstein 	struct usb_xfer_root *xroot;
3052dddb25f9SAlfred Perlstein 	struct usb_device *udev;
3053dddb25f9SAlfred Perlstein 	struct usb_proc_msg *pm;
3054dddb25f9SAlfred Perlstein 	uint16_t n;
3055dddb25f9SAlfred Perlstein 	uint16_t drop_bus;
3056dddb25f9SAlfred Perlstein 	uint16_t drop_xfer;
3057dddb25f9SAlfred Perlstein 
3058dddb25f9SAlfred Perlstein 	for (n = 0; n != max; n++) {
3059dddb25f9SAlfred Perlstein 		/* Extra checks to avoid panic */
3060dddb25f9SAlfred Perlstein 		xfer = ppxfer[n];
3061dddb25f9SAlfred Perlstein 		if (xfer == NULL)
3062dddb25f9SAlfred Perlstein 			continue;	/* no USB transfer */
3063dddb25f9SAlfred Perlstein 		xroot = xfer->xroot;
3064dddb25f9SAlfred Perlstein 		if (xroot == NULL)
3065dddb25f9SAlfred Perlstein 			continue;	/* no USB root */
3066dddb25f9SAlfred Perlstein 		udev = xroot->udev;
3067dddb25f9SAlfred Perlstein 		if (udev == NULL)
3068dddb25f9SAlfred Perlstein 			continue;	/* no USB device */
3069dddb25f9SAlfred Perlstein 		if (udev->bus == NULL)
3070dddb25f9SAlfred Perlstein 			continue;	/* no BUS structure */
3071dddb25f9SAlfred Perlstein 		if (udev->bus->methods == NULL)
3072dddb25f9SAlfred Perlstein 			continue;	/* no BUS methods */
3073dddb25f9SAlfred Perlstein 		if (udev->bus->methods->xfer_poll == NULL)
3074dddb25f9SAlfred Perlstein 			continue;	/* no poll method */
3075dddb25f9SAlfred Perlstein 
3076dddb25f9SAlfred Perlstein 		/* make sure that the BUS mutex is not locked */
3077dddb25f9SAlfred Perlstein 		drop_bus = 0;
3078dddb25f9SAlfred Perlstein 		while (mtx_owned(&xroot->udev->bus->bus_mtx)) {
3079dddb25f9SAlfred Perlstein 			mtx_unlock(&xroot->udev->bus->bus_mtx);
3080dddb25f9SAlfred Perlstein 			drop_bus++;
3081dddb25f9SAlfred Perlstein 		}
3082dddb25f9SAlfred Perlstein 
3083dddb25f9SAlfred Perlstein 		/* make sure that the transfer mutex is not locked */
3084dddb25f9SAlfred Perlstein 		drop_xfer = 0;
3085dddb25f9SAlfred Perlstein 		while (mtx_owned(xroot->xfer_mtx)) {
3086dddb25f9SAlfred Perlstein 			mtx_unlock(xroot->xfer_mtx);
3087dddb25f9SAlfred Perlstein 			drop_xfer++;
3088dddb25f9SAlfred Perlstein 		}
3089dddb25f9SAlfred Perlstein 
3090dddb25f9SAlfred Perlstein 		/* Make sure cv_signal() and cv_broadcast() is not called */
3091dddb25f9SAlfred Perlstein 		udev->bus->control_xfer_proc.up_msleep = 0;
3092dddb25f9SAlfred Perlstein 		udev->bus->explore_proc.up_msleep = 0;
3093dddb25f9SAlfred Perlstein 		udev->bus->giant_callback_proc.up_msleep = 0;
3094dddb25f9SAlfred Perlstein 		udev->bus->non_giant_callback_proc.up_msleep = 0;
3095dddb25f9SAlfred Perlstein 
3096dddb25f9SAlfred Perlstein 		/* poll USB hardware */
3097dddb25f9SAlfred Perlstein 		(udev->bus->methods->xfer_poll) (udev->bus);
3098dddb25f9SAlfred Perlstein 
3099dddb25f9SAlfred Perlstein 		USB_BUS_LOCK(xroot->bus);
3100dddb25f9SAlfred Perlstein 
3101dddb25f9SAlfred Perlstein 		/* check for clear stall */
31025b3bb704SAndrew Thompson 		if (udev->ctrl_xfer[1] != NULL) {
3103dddb25f9SAlfred Perlstein 
3104dddb25f9SAlfred Perlstein 			/* poll clear stall start */
3105dddb25f9SAlfred Perlstein 			pm = &udev->cs_msg[0].hdr;
3106dddb25f9SAlfred Perlstein 			(pm->pm_callback) (pm);
3107dddb25f9SAlfred Perlstein 			/* poll clear stall done thread */
31085b3bb704SAndrew Thompson 			pm = &udev->ctrl_xfer[1]->
3109dddb25f9SAlfred Perlstein 			    xroot->done_m[0].hdr;
3110dddb25f9SAlfred Perlstein 			(pm->pm_callback) (pm);
3111dddb25f9SAlfred Perlstein 		}
3112dddb25f9SAlfred Perlstein 
3113dddb25f9SAlfred Perlstein 		/* poll done thread */
3114dddb25f9SAlfred Perlstein 		pm = &xroot->done_m[0].hdr;
3115dddb25f9SAlfred Perlstein 		(pm->pm_callback) (pm);
3116dddb25f9SAlfred Perlstein 
3117dddb25f9SAlfred Perlstein 		USB_BUS_UNLOCK(xroot->bus);
3118dddb25f9SAlfred Perlstein 
3119dddb25f9SAlfred Perlstein 		/* restore transfer mutex */
3120dddb25f9SAlfred Perlstein 		while (drop_xfer--)
3121dddb25f9SAlfred Perlstein 			mtx_lock(xroot->xfer_mtx);
3122dddb25f9SAlfred Perlstein 
3123dddb25f9SAlfred Perlstein 		/* restore BUS mutex */
3124dddb25f9SAlfred Perlstein 		while (drop_bus--)
3125dddb25f9SAlfred Perlstein 			mtx_lock(&xroot->udev->bus->bus_mtx);
312602ac6454SAndrew Thompson 	}
312702ac6454SAndrew Thompson }
31284eae601eSAndrew Thompson 
31294eae601eSAndrew Thompson static void
3130a593f6b8SAndrew Thompson usbd_get_std_packet_size(struct usb_std_packet_size *ptr,
31318d2dd5ddSAndrew Thompson     uint8_t type, enum usb_dev_speed speed)
31324eae601eSAndrew Thompson {
31334eae601eSAndrew Thompson 	static const uint16_t intr_range_max[USB_SPEED_MAX] = {
31344eae601eSAndrew Thompson 		[USB_SPEED_LOW] = 8,
31354eae601eSAndrew Thompson 		[USB_SPEED_FULL] = 64,
31364eae601eSAndrew Thompson 		[USB_SPEED_HIGH] = 1024,
31374eae601eSAndrew Thompson 		[USB_SPEED_VARIABLE] = 1024,
31384eae601eSAndrew Thompson 		[USB_SPEED_SUPER] = 1024,
31394eae601eSAndrew Thompson 	};
31404eae601eSAndrew Thompson 
31414eae601eSAndrew Thompson 	static const uint16_t isoc_range_max[USB_SPEED_MAX] = {
31424eae601eSAndrew Thompson 		[USB_SPEED_LOW] = 0,	/* invalid */
31434eae601eSAndrew Thompson 		[USB_SPEED_FULL] = 1023,
31444eae601eSAndrew Thompson 		[USB_SPEED_HIGH] = 1024,
31454eae601eSAndrew Thompson 		[USB_SPEED_VARIABLE] = 3584,
31464eae601eSAndrew Thompson 		[USB_SPEED_SUPER] = 1024,
31474eae601eSAndrew Thompson 	};
31484eae601eSAndrew Thompson 
31494eae601eSAndrew Thompson 	static const uint16_t control_min[USB_SPEED_MAX] = {
31504eae601eSAndrew Thompson 		[USB_SPEED_LOW] = 8,
31514eae601eSAndrew Thompson 		[USB_SPEED_FULL] = 8,
31524eae601eSAndrew Thompson 		[USB_SPEED_HIGH] = 64,
31534eae601eSAndrew Thompson 		[USB_SPEED_VARIABLE] = 512,
31544eae601eSAndrew Thompson 		[USB_SPEED_SUPER] = 512,
31554eae601eSAndrew Thompson 	};
31564eae601eSAndrew Thompson 
31574eae601eSAndrew Thompson 	static const uint16_t bulk_min[USB_SPEED_MAX] = {
3158a4cadedbSAndrew Thompson 		[USB_SPEED_LOW] = 8,
31594eae601eSAndrew Thompson 		[USB_SPEED_FULL] = 8,
31604eae601eSAndrew Thompson 		[USB_SPEED_HIGH] = 512,
31614eae601eSAndrew Thompson 		[USB_SPEED_VARIABLE] = 512,
31624eae601eSAndrew Thompson 		[USB_SPEED_SUPER] = 1024,
31634eae601eSAndrew Thompson 	};
31644eae601eSAndrew Thompson 
31654eae601eSAndrew Thompson 	uint16_t temp;
31664eae601eSAndrew Thompson 
31674eae601eSAndrew Thompson 	memset(ptr, 0, sizeof(*ptr));
31684eae601eSAndrew Thompson 
31694eae601eSAndrew Thompson 	switch (type) {
31704eae601eSAndrew Thompson 	case UE_INTERRUPT:
31718d2dd5ddSAndrew Thompson 		ptr->range.max = intr_range_max[speed];
31724eae601eSAndrew Thompson 		break;
31734eae601eSAndrew Thompson 	case UE_ISOCHRONOUS:
31748d2dd5ddSAndrew Thompson 		ptr->range.max = isoc_range_max[speed];
31754eae601eSAndrew Thompson 		break;
31764eae601eSAndrew Thompson 	default:
31774eae601eSAndrew Thompson 		if (type == UE_BULK)
31788d2dd5ddSAndrew Thompson 			temp = bulk_min[speed];
31794eae601eSAndrew Thompson 		else /* UE_CONTROL */
31808d2dd5ddSAndrew Thompson 			temp = control_min[speed];
31814eae601eSAndrew Thompson 
31824eae601eSAndrew Thompson 		/* default is fixed */
31834eae601eSAndrew Thompson 		ptr->fixed[0] = temp;
31844eae601eSAndrew Thompson 		ptr->fixed[1] = temp;
31854eae601eSAndrew Thompson 		ptr->fixed[2] = temp;
31864eae601eSAndrew Thompson 		ptr->fixed[3] = temp;
31874eae601eSAndrew Thompson 
31888d2dd5ddSAndrew Thompson 		if (speed == USB_SPEED_FULL) {
31894eae601eSAndrew Thompson 			/* multiple sizes */
31904eae601eSAndrew Thompson 			ptr->fixed[1] = 16;
31914eae601eSAndrew Thompson 			ptr->fixed[2] = 32;
31924eae601eSAndrew Thompson 			ptr->fixed[3] = 64;
31934eae601eSAndrew Thompson 		}
31948d2dd5ddSAndrew Thompson 		if ((speed == USB_SPEED_VARIABLE) &&
31954eae601eSAndrew Thompson 		    (type == UE_BULK)) {
31964eae601eSAndrew Thompson 			/* multiple sizes */
31974eae601eSAndrew Thompson 			ptr->fixed[2] = 1024;
31984eae601eSAndrew Thompson 			ptr->fixed[3] = 1536;
31994eae601eSAndrew Thompson 		}
32004eae601eSAndrew Thompson 		break;
32014eae601eSAndrew Thompson 	}
32024eae601eSAndrew Thompson }
3203ed6d949aSAndrew Thompson 
3204ed6d949aSAndrew Thompson void	*
3205ed6d949aSAndrew Thompson usbd_xfer_softc(struct usb_xfer *xfer)
3206ed6d949aSAndrew Thompson {
3207ed6d949aSAndrew Thompson 	return (xfer->priv_sc);
3208ed6d949aSAndrew Thompson }
3209ed6d949aSAndrew Thompson 
3210ed6d949aSAndrew Thompson void *
3211ed6d949aSAndrew Thompson usbd_xfer_get_priv(struct usb_xfer *xfer)
3212ed6d949aSAndrew Thompson {
3213ed6d949aSAndrew Thompson 	return (xfer->priv_fifo);
3214ed6d949aSAndrew Thompson }
3215ed6d949aSAndrew Thompson 
3216ed6d949aSAndrew Thompson void
3217ed6d949aSAndrew Thompson usbd_xfer_set_priv(struct usb_xfer *xfer, void *ptr)
3218ed6d949aSAndrew Thompson {
3219ed6d949aSAndrew Thompson 	xfer->priv_fifo = ptr;
3220ed6d949aSAndrew Thompson }
3221ed6d949aSAndrew Thompson 
3222ed6d949aSAndrew Thompson uint8_t
3223ed6d949aSAndrew Thompson usbd_xfer_state(struct usb_xfer *xfer)
3224ed6d949aSAndrew Thompson {
3225ed6d949aSAndrew Thompson 	return (xfer->usb_state);
3226ed6d949aSAndrew Thompson }
3227ed6d949aSAndrew Thompson 
3228ed6d949aSAndrew Thompson void
3229ed6d949aSAndrew Thompson usbd_xfer_set_flag(struct usb_xfer *xfer, int flag)
3230ed6d949aSAndrew Thompson {
3231ed6d949aSAndrew Thompson 	switch (flag) {
3232ed6d949aSAndrew Thompson 		case USB_FORCE_SHORT_XFER:
3233ed6d949aSAndrew Thompson 			xfer->flags.force_short_xfer = 1;
3234ed6d949aSAndrew Thompson 			break;
3235ed6d949aSAndrew Thompson 		case USB_SHORT_XFER_OK:
3236ed6d949aSAndrew Thompson 			xfer->flags.short_xfer_ok = 1;
3237ed6d949aSAndrew Thompson 			break;
323829bd7d7eSAndrew Thompson 		case USB_MULTI_SHORT_OK:
323929bd7d7eSAndrew Thompson 			xfer->flags.short_frames_ok = 1;
324029bd7d7eSAndrew Thompson 			break;
324129bd7d7eSAndrew Thompson 		case USB_MANUAL_STATUS:
324229bd7d7eSAndrew Thompson 			xfer->flags.manual_status = 1;
324329bd7d7eSAndrew Thompson 			break;
3244ed6d949aSAndrew Thompson 	}
3245ed6d949aSAndrew Thompson }
3246ed6d949aSAndrew Thompson 
3247ed6d949aSAndrew Thompson void
3248ed6d949aSAndrew Thompson usbd_xfer_clr_flag(struct usb_xfer *xfer, int flag)
3249ed6d949aSAndrew Thompson {
3250ed6d949aSAndrew Thompson 	switch (flag) {
3251ed6d949aSAndrew Thompson 		case USB_FORCE_SHORT_XFER:
3252ed6d949aSAndrew Thompson 			xfer->flags.force_short_xfer = 0;
3253ed6d949aSAndrew Thompson 			break;
3254ed6d949aSAndrew Thompson 		case USB_SHORT_XFER_OK:
3255ed6d949aSAndrew Thompson 			xfer->flags.short_xfer_ok = 0;
3256ed6d949aSAndrew Thompson 			break;
325729bd7d7eSAndrew Thompson 		case USB_MULTI_SHORT_OK:
325829bd7d7eSAndrew Thompson 			xfer->flags.short_frames_ok = 0;
325929bd7d7eSAndrew Thompson 			break;
326029bd7d7eSAndrew Thompson 		case USB_MANUAL_STATUS:
326129bd7d7eSAndrew Thompson 			xfer->flags.manual_status = 0;
326229bd7d7eSAndrew Thompson 			break;
3263ed6d949aSAndrew Thompson 	}
3264ed6d949aSAndrew Thompson }
326529bd7d7eSAndrew Thompson 
326629bd7d7eSAndrew Thompson /*
326729bd7d7eSAndrew Thompson  * The following function returns in milliseconds when the isochronous
326829bd7d7eSAndrew Thompson  * transfer was completed by the hardware. The returned value wraps
326929bd7d7eSAndrew Thompson  * around 65536 milliseconds.
327029bd7d7eSAndrew Thompson  */
327129bd7d7eSAndrew Thompson uint16_t
327229bd7d7eSAndrew Thompson usbd_xfer_get_timestamp(struct usb_xfer *xfer)
327329bd7d7eSAndrew Thompson {
327429bd7d7eSAndrew Thompson 	return (xfer->isoc_time_complete);
327529bd7d7eSAndrew Thompson }
3276