9360ae4073
Submitted by: Hans Petter Selasky
476 lines
12 KiB
C
476 lines
12 KiB
C
/*-
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* Copyright (c) 2000 Iwasa Kazmi
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions, and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
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* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR
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* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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*
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* This code is based on ugen.c and ulpt.c developed by Lennart Augustsson.
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* This code includes software developed by the NetBSD Foundation, Inc. and
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* its contributors.
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*/
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#include <sys/cdefs.h>
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__FBSDID("$FreeBSD$");
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/*
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* 2000/3/24 added NetBSD/OpenBSD support (from Alex Nemirovsky)
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* 2000/3/07 use two bulk-pipe handles for read and write (Dirk)
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* 2000/3/06 change major number(143), and copyright header
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* some fix for 4.0 (Dirk)
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* 2000/3/05 codes for FreeBSD 4.x - CURRENT (Thanks to Dirk-Willem van Gulik)
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* 2000/3/01 remove retry code from urioioctl()
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* change method of bulk transfer (no interrupt)
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* 2000/2/28 small fixes for new rio_usb.h
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* 2000/2/24 first version.
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*/
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#include "usbdevs.h"
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#include <dev/usb/usb.h>
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#include <dev/usb/usb_mfunc.h>
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#include <dev/usb/usb_error.h>
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#include <dev/usb/usb_ioctl.h>
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#include <dev/usb/storage/rio500_usb.h>
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#define USB_DEBUG_VAR urio_debug
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#include <dev/usb/usb_core.h>
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#include <dev/usb/usb_debug.h>
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#include <dev/usb/usb_process.h>
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#include <dev/usb/usb_request.h>
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#include <dev/usb/usb_lookup.h>
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#include <dev/usb/usb_util.h>
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#include <dev/usb/usb_busdma.h>
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#include <dev/usb/usb_mbuf.h>
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#include <dev/usb/usb_dev.h>
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#include <dev/usb/usb_generic.h>
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#if USB_DEBUG
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static int urio_debug = 0;
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SYSCTL_NODE(_hw_usb, OID_AUTO, urio, CTLFLAG_RW, 0, "USB urio");
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SYSCTL_INT(_hw_usb_urio, OID_AUTO, debug, CTLFLAG_RW,
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&urio_debug, 0, "urio debug level");
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#endif
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#define URIO_T_WR 0
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#define URIO_T_RD 1
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#define URIO_T_WR_CS 2
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#define URIO_T_RD_CS 3
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#define URIO_T_MAX 4
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#define URIO_BSIZE (1<<12) /* bytes */
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#define URIO_IFQ_MAXLEN 2 /* units */
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struct urio_softc {
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struct usb2_fifo_sc sc_fifo;
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struct mtx sc_mtx;
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struct usb2_device *sc_udev;
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struct usb2_xfer *sc_xfer[URIO_T_MAX];
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uint8_t sc_flags;
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#define URIO_FLAG_READ_STALL 0x01 /* read transfer stalled */
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#define URIO_FLAG_WRITE_STALL 0x02 /* write transfer stalled */
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uint8_t sc_name[16];
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};
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/* prototypes */
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static device_probe_t urio_probe;
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static device_attach_t urio_attach;
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static device_detach_t urio_detach;
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static usb2_callback_t urio_write_callback;
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static usb2_callback_t urio_write_clear_stall_callback;
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static usb2_callback_t urio_read_callback;
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static usb2_callback_t urio_read_clear_stall_callback;
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static usb2_fifo_close_t urio_close;
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static usb2_fifo_cmd_t urio_start_read;
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static usb2_fifo_cmd_t urio_start_write;
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static usb2_fifo_cmd_t urio_stop_read;
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static usb2_fifo_cmd_t urio_stop_write;
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static usb2_fifo_ioctl_t urio_ioctl;
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static usb2_fifo_open_t urio_open;
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static struct usb2_fifo_methods urio_fifo_methods = {
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.f_close = &urio_close,
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.f_ioctl = &urio_ioctl,
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.f_open = &urio_open,
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.f_start_read = &urio_start_read,
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.f_start_write = &urio_start_write,
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.f_stop_read = &urio_stop_read,
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.f_stop_write = &urio_stop_write,
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.basename[0] = "urio",
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};
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static const struct usb2_config urio_config[URIO_T_MAX] = {
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[URIO_T_WR] = {
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.type = UE_BULK,
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.endpoint = UE_ADDR_ANY,
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.direction = UE_DIR_OUT,
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.bufsize = URIO_BSIZE,
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.flags = {.pipe_bof = 1,.force_short_xfer = 1,.proxy_buffer = 1,},
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.callback = &urio_write_callback,
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},
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[URIO_T_RD] = {
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.type = UE_BULK,
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.endpoint = UE_ADDR_ANY,
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.direction = UE_DIR_IN,
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.bufsize = URIO_BSIZE,
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.flags = {.pipe_bof = 1,.short_xfer_ok = 1,.proxy_buffer = 1,},
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.callback = &urio_read_callback,
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},
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[URIO_T_WR_CS] = {
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.type = UE_CONTROL,
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.endpoint = 0x00, /* Control pipe */
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.direction = UE_DIR_ANY,
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.bufsize = sizeof(struct usb2_device_request),
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.callback = &urio_write_clear_stall_callback,
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.timeout = 1000, /* 1 second */
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.interval = 50, /* 50ms */
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},
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[URIO_T_RD_CS] = {
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.type = UE_CONTROL,
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.endpoint = 0x00, /* Control pipe */
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.direction = UE_DIR_ANY,
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.bufsize = sizeof(struct usb2_device_request),
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.callback = &urio_read_clear_stall_callback,
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.timeout = 1000, /* 1 second */
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.interval = 50, /* 50ms */
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},
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};
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static devclass_t urio_devclass;
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static device_method_t urio_methods[] = {
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/* Device interface */
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DEVMETHOD(device_probe, urio_probe),
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DEVMETHOD(device_attach, urio_attach),
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DEVMETHOD(device_detach, urio_detach),
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{0, 0}
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};
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static driver_t urio_driver = {
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.name = "urio",
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.methods = urio_methods,
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.size = sizeof(struct urio_softc),
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};
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DRIVER_MODULE(urio, uhub, urio_driver, urio_devclass, NULL, 0);
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MODULE_DEPEND(urio, usb, 1, 1, 1);
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static int
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urio_probe(device_t dev)
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{
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struct usb2_attach_arg *uaa = device_get_ivars(dev);
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if (uaa->usb_mode != USB_MODE_HOST) {
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return (ENXIO);
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}
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if ((((uaa->info.idVendor == USB_VENDOR_DIAMOND) &&
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(uaa->info.idProduct == USB_PRODUCT_DIAMOND_RIO500USB)) ||
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((uaa->info.idVendor == USB_VENDOR_DIAMOND2) &&
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((uaa->info.idProduct == USB_PRODUCT_DIAMOND2_RIO600USB) ||
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(uaa->info.idProduct == USB_PRODUCT_DIAMOND2_RIO800USB)))))
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return (0);
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else
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return (ENXIO);
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}
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static int
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urio_attach(device_t dev)
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{
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struct usb2_attach_arg *uaa = device_get_ivars(dev);
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struct urio_softc *sc = device_get_softc(dev);
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int error;
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device_set_usb2_desc(dev);
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sc->sc_udev = uaa->device;
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mtx_init(&sc->sc_mtx, "urio lock", NULL, MTX_DEF | MTX_RECURSE);
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snprintf(sc->sc_name, sizeof(sc->sc_name),
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"%s", device_get_nameunit(dev));
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error = usb2_transfer_setup(uaa->device,
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&uaa->info.bIfaceIndex, sc->sc_xfer,
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urio_config, URIO_T_MAX, sc, &sc->sc_mtx);
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if (error) {
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DPRINTF("error=%s\n", usb2_errstr(error));
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goto detach;
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}
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error = usb2_fifo_attach(uaa->device, sc, &sc->sc_mtx,
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&urio_fifo_methods, &sc->sc_fifo,
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device_get_unit(dev), 0 - 1, uaa->info.bIfaceIndex,
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UID_ROOT, GID_OPERATOR, 0644);
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if (error) {
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goto detach;
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}
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return (0); /* success */
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detach:
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urio_detach(dev);
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return (ENOMEM); /* failure */
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}
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static void
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urio_write_callback(struct usb2_xfer *xfer)
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{
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struct urio_softc *sc = xfer->priv_sc;
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struct usb2_fifo *f = sc->sc_fifo.fp[USB_FIFO_TX];
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uint32_t actlen;
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switch (USB_GET_STATE(xfer)) {
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case USB_ST_TRANSFERRED:
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case USB_ST_SETUP:
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if (sc->sc_flags & URIO_FLAG_WRITE_STALL) {
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usb2_transfer_start(sc->sc_xfer[URIO_T_WR_CS]);
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return;
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}
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if (usb2_fifo_get_data(f, xfer->frbuffers, 0,
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xfer->max_data_length, &actlen, 0)) {
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xfer->frlengths[0] = actlen;
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usb2_start_hardware(xfer);
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}
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return;
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default: /* Error */
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if (xfer->error != USB_ERR_CANCELLED) {
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/* try to clear stall first */
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sc->sc_flags |= URIO_FLAG_WRITE_STALL;
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usb2_transfer_start(sc->sc_xfer[URIO_T_WR_CS]);
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}
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return;
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}
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}
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static void
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urio_write_clear_stall_callback(struct usb2_xfer *xfer)
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{
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struct urio_softc *sc = xfer->priv_sc;
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struct usb2_xfer *xfer_other = sc->sc_xfer[URIO_T_WR];
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if (usb2_clear_stall_callback(xfer, xfer_other)) {
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DPRINTF("stall cleared\n");
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sc->sc_flags &= ~URIO_FLAG_WRITE_STALL;
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usb2_transfer_start(xfer_other);
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}
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}
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static void
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urio_read_callback(struct usb2_xfer *xfer)
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{
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struct urio_softc *sc = xfer->priv_sc;
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struct usb2_fifo *f = sc->sc_fifo.fp[USB_FIFO_RX];
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switch (USB_GET_STATE(xfer)) {
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case USB_ST_TRANSFERRED:
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usb2_fifo_put_data(f, xfer->frbuffers, 0,
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xfer->actlen, 1);
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case USB_ST_SETUP:
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if (sc->sc_flags & URIO_FLAG_READ_STALL) {
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usb2_transfer_start(sc->sc_xfer[URIO_T_RD_CS]);
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return;
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}
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if (usb2_fifo_put_bytes_max(f) != 0) {
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xfer->frlengths[0] = xfer->max_data_length;
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usb2_start_hardware(xfer);
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}
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return;
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default: /* Error */
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if (xfer->error != USB_ERR_CANCELLED) {
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/* try to clear stall first */
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sc->sc_flags |= URIO_FLAG_READ_STALL;
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usb2_transfer_start(sc->sc_xfer[URIO_T_RD_CS]);
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}
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return;
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}
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}
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static void
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urio_read_clear_stall_callback(struct usb2_xfer *xfer)
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{
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struct urio_softc *sc = xfer->priv_sc;
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struct usb2_xfer *xfer_other = sc->sc_xfer[URIO_T_RD];
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if (usb2_clear_stall_callback(xfer, xfer_other)) {
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DPRINTF("stall cleared\n");
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sc->sc_flags &= ~URIO_FLAG_READ_STALL;
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usb2_transfer_start(xfer_other);
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}
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}
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static void
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urio_start_read(struct usb2_fifo *fifo)
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{
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struct urio_softc *sc = fifo->priv_sc0;
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usb2_transfer_start(sc->sc_xfer[URIO_T_RD]);
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}
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static void
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urio_stop_read(struct usb2_fifo *fifo)
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{
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struct urio_softc *sc = fifo->priv_sc0;
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usb2_transfer_stop(sc->sc_xfer[URIO_T_RD_CS]);
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usb2_transfer_stop(sc->sc_xfer[URIO_T_RD]);
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}
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static void
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urio_start_write(struct usb2_fifo *fifo)
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{
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struct urio_softc *sc = fifo->priv_sc0;
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usb2_transfer_start(sc->sc_xfer[URIO_T_WR]);
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}
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static void
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urio_stop_write(struct usb2_fifo *fifo)
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{
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struct urio_softc *sc = fifo->priv_sc0;
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usb2_transfer_stop(sc->sc_xfer[URIO_T_WR_CS]);
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usb2_transfer_stop(sc->sc_xfer[URIO_T_WR]);
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}
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static int
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urio_open(struct usb2_fifo *fifo, int fflags)
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{
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struct urio_softc *sc = fifo->priv_sc0;
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if ((fflags & (FWRITE | FREAD)) != (FWRITE | FREAD)) {
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return (EACCES);
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}
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if (fflags & FREAD) {
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/* clear stall first */
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mtx_lock(&sc->sc_mtx);
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sc->sc_flags |= URIO_FLAG_READ_STALL;
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mtx_unlock(&sc->sc_mtx);
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if (usb2_fifo_alloc_buffer(fifo,
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sc->sc_xfer[URIO_T_RD]->max_data_length,
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URIO_IFQ_MAXLEN)) {
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return (ENOMEM);
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}
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}
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if (fflags & FWRITE) {
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/* clear stall first */
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sc->sc_flags |= URIO_FLAG_WRITE_STALL;
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if (usb2_fifo_alloc_buffer(fifo,
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sc->sc_xfer[URIO_T_WR]->max_data_length,
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URIO_IFQ_MAXLEN)) {
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return (ENOMEM);
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}
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}
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return (0); /* success */
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}
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static void
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urio_close(struct usb2_fifo *fifo, int fflags)
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{
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if (fflags & (FREAD | FWRITE)) {
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usb2_fifo_free_buffer(fifo);
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}
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}
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static int
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urio_ioctl(struct usb2_fifo *fifo, u_long cmd, void *addr,
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int fflags)
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{
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struct usb2_ctl_request ur;
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struct RioCommand *rio_cmd;
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int error;
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switch (cmd) {
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case RIO_RECV_COMMAND:
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if (!(fflags & FWRITE)) {
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error = EPERM;
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goto done;
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}
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bzero(&ur, sizeof(ur));
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rio_cmd = addr;
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ur.ucr_request.bmRequestType =
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rio_cmd->requesttype | UT_READ_VENDOR_DEVICE;
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break;
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case RIO_SEND_COMMAND:
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if (!(fflags & FWRITE)) {
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error = EPERM;
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goto done;
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}
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bzero(&ur, sizeof(ur));
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rio_cmd = addr;
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ur.ucr_request.bmRequestType =
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rio_cmd->requesttype | UT_WRITE_VENDOR_DEVICE;
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break;
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default:
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error = EINVAL;
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goto done;
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}
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DPRINTFN(2, "Sending command\n");
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/* Send rio control message */
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ur.ucr_request.bRequest = rio_cmd->request;
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USETW(ur.ucr_request.wValue, rio_cmd->value);
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USETW(ur.ucr_request.wIndex, rio_cmd->index);
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USETW(ur.ucr_request.wLength, rio_cmd->length);
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ur.ucr_data = rio_cmd->buffer;
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/* reuse generic USB code */
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error = ugen_do_request(fifo, &ur);
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done:
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return (error);
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}
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static int
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urio_detach(device_t dev)
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{
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struct urio_softc *sc = device_get_softc(dev);
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DPRINTF("\n");
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usb2_fifo_detach(&sc->sc_fifo);
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usb2_transfer_unsetup(sc->sc_xfer, URIO_T_MAX);
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mtx_destroy(&sc->sc_mtx);
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return (0);
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}
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