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426 lines
12 KiB
Groff
426 lines
12 KiB
Groff
.\" Copyright (c) 1997, 1998
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.\" Nick Hibma <n_hibma@FreeBSD.org>. 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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.\" 3. Neither the name of the author nor the names of any co-contributors
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.\" may be used to endorse or promote products derived from this software
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.\" without specific prior written permission.
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.\"
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.\" THIS SOFTWARE IS PROVIDED BY NICK HIBMA 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 NICK HIBMA OR THE VOICES IN HIS HEAD
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.\" BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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.\" CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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.\" SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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.\" INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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.\" CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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.\" ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
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.\" THE POSSIBILITY OF SUCH DAMAGE.
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.\"
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.\" $FreeBSD$
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.\"
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.Dd February 21, 1999
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.Dt USB 4
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.Os
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.Sh NAME
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.Nm usb
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.Nd Universal Serial Bus
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.Sh SYNOPSIS
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.Cd "device usb"
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.Pp
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.In dev/usb/usb.h
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.In dev/usb/usbhid.h
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.Sh DESCRIPTION
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.Fx
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provides machine-independent bus support and drivers for
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.Tn USB
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devices.
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.Pp
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The
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.Nm
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driver has three layers: the controller, the bus, and the
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device layer.
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The controller attaches to a physical bus
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(like
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.Xr pci 4 ) .
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The
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.Tn USB
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bus attaches to the controller, and the root hub attaches
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to the controller.
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Any devices attached to the bus will attach to the root hub
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or another hub attached to the
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.Tn USB
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bus.
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.Pp
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The
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.Nm uhub
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device will always be present as it is needed for the
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root hub.
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.Sh INTRODUCTION TO USB
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The
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.Tn USB
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is a 12 Mb/s serial bus (1.5 Mb/s for low speed devices).
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Each
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.Tn USB
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has a host controller that is the master of the bus;
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all other devices on the bus only speak when spoken to.
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.Pp
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There can be up to 127 devices (apart from the host controller)
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on a bus, each with its own address.
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The addresses are assigned
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dynamically by the host when each device is attached to the bus.
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.Pp
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Within each device there can be up to 16 endpoints.
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Each endpoint
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is individually addressed and the addresses are static.
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Each of these endpoints will communicate in one of four different modes:
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.Em control , isochronous , bulk ,
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or
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.Em interrupt .
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A device always has at least one endpoint.
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This endpoint has address 0 and is a control
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endpoint and is used to give commands to and extract basic data,
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such as descriptors, from the device.
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Each endpoint, except the control endpoint, is unidirectional.
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.Pp
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The endpoints in a device are grouped into interfaces.
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An interface is a logical unit within a device; e.g.\&
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a compound device with both a keyboard and a trackball would present
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one interface for each.
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An interface can sometimes be set into different modes,
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called alternate settings, which affects how it operates.
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Different alternate settings can have different endpoints
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within it.
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.Pp
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A device may operate in different configurations.
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Depending on the
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configuration, the device may present different sets of endpoints
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and interfaces.
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.\" .Pp
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.\" Each device located on a hub has several
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.\" .Xr config 8
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.\" locators:
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.\" .Bl -tag -compact -width xxxxxx
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.\" .It Cd port
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.\" this is the number of the port on the closest upstream hub.
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.\" .It Cd configuration
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.\" this is the configuration the device must be in for this driver to attach.
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.\" This locator does not set the configuration; it is iterated by the bus
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.\" enumeration.
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.\" .It Cd interface
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.\" this is the interface number within a device that an interface driver
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.\" attaches to.
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.\" .It Cd vendor
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.\" this is the 16 bit vendor id of the device.
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.\" .It Cd product
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.\" this is the 16 bit product id of the device.
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.\" .It Cd release
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.\" this is the 16 bit release (revision) number of the device.
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.\" .El
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.\" The first locator can be used to pin down a particular device
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.\" according to its physical position in the device tree.
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.\" The last three locators can be used to pin down a particular
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.\" device according to what device it actually is.
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.Pp
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The bus enumeration of the
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.Tn USB
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bus proceeds in several steps:
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.Bl -enum
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.It
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Any device specific driver can attach to the device.
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.It
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If none is found, any device class specific driver can attach.
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.It
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If none is found, all configurations are iterated over.
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For each configuration, all the interfaces are iterated over, and interface
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drivers can attach.
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If any interface driver attached in a certain
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configuration, the iteration over configurations is stopped.
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.It
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If still no drivers have been found, the generic
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.Tn USB
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driver can attach.
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.El
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.Sh USB CONTROLLER INTERFACE
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Use the following to get access to the
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.Tn USB
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specific structures and defines.
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.Pp
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The
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.Pa /dev/usb Ns Ar N
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can be opened and a few operations can be performed on it.
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The
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.Xr poll 2
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system call will say that I/O is possible on the controller device when a
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.Tn USB
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device has been connected or disconnected to the bus.
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.Pp
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The following
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.Xr ioctl 2
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commands are supported on the controller device:
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.Bl -tag -width xxxxxx
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.It Dv USB_DISCOVER
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This command will cause a complete bus discovery to be initiated.
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If any devices attached or detached from the bus they will be
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processed during this command.
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This is the only way that new devices are found on the bus.
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.It Dv USB_DEVICEINFO Vt "struct usb_device_info"
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This command can be used to retrieve some information about a device
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on the bus.
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The
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.Va udi_addr
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field should be filled before the call and the other fields will
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be filled by information about the device on that address.
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Should no such device exist, an error is reported.
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.Bd -literal
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#define USB_MAX_DEVNAMES 4
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#define USB_MAX_DEVNAMELEN 16
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struct usb_device_info {
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u_int8_t udi_bus;
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u_int8_t udi_addr; /* device address */
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usb_event_cookie_t udi_cookie;
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char udi_product[USB_MAX_STRING_LEN];
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char udi_vendor[USB_MAX_STRING_LEN];
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char udi_release[8];
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u_int16_t udi_productNo;
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u_int16_t udi_vendorNo;
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u_int16_t udi_releaseNo;
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u_int8_t udi_class;
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u_int8_t udi_subclass;
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u_int8_t udi_protocol;
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u_int8_t udi_config;
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u_int8_t udi_speed;
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#define USB_SPEED_LOW 1
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#define USB_SPEED_FULL 2
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#define USB_SPEED_HIGH 3
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int udi_power;/* power consumption in mA, 0 if selfpowered */
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int udi_nports;
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char udi_devnames[USB_MAX_DEVNAMES][USB_MAX_DEVNAMELEN];
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u_int8_t udi_ports[16];/* hub only: addresses of devices on ports */
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#define USB_PORT_ENABLED 0xff
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#define USB_PORT_SUSPENDED 0xfe
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#define USB_PORT_POWERED 0xfd
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#define USB_PORT_DISABLED 0xfc
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};
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.Ed
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.Pp
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.Va udi_bus
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and
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.Va udi_addr
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contain the topological information for the device.
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.Va udi_devnames
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contains the device names of the connected drivers.
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For example, the
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third
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.Tn USB
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Zip drive connected will be
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.Li umass2 .
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The
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.Va udi_product , udi_vendor
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and
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.Va udi_release
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fields contain self-explanatory descriptions of the device.
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.Va udi_productNo , udi_vendorNo , udi_releaseNo , udi_class , udi_subclass
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and
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.Va udi_protocol
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contain the corresponding values from the device descriptors.
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The
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.Va udi_config
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field shows the current configuration of the device.
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.Pp
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.Va udi_peed
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indicates whether the device is at low speed
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.Pq Dv USB_SPEED_LOW ,
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full speed
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.Pq Dv USB_SPEED_FULL
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or high speed
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.Pq Dv USB_SPEED_HIGH .
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The
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.Va udi_power
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field shows the power consumption in milli-amps drawn at 5 volts,
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or zero if the device is self powered.
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.Pp
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If the device is a hub, the
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.Va udi_nports
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field is non-zero, and the
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.Va udi_ports
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field contains the addresses of the connected devices.
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If no device is connected to a port, one of the
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.Dv USB_PORT_*
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values indicates its status.
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.It Dv USB_DEVICESTATS Vt "struct usb_device_stats"
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This command retrieves statistics about the controller.
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.Bd -literal
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struct usb_device_stats {
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u_long uds_requests[4];
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};
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.Ed
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.Pp
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The
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.Va udi_requests
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field is indexed by the transfer kind, i.e.\&
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.Dv UE_* ,
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and indicates how many transfers of each kind that has been completed
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by the controller.
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.It Dv USB_REQUEST Vt "struct usb_ctl_request"
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This command can be used to execute arbitrary requests on the control pipe.
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This is
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.Em DANGEROUS
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and should be used with great care since it
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can destroy the bus integrity.
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.El
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.Pp
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The include file
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.In dev/usb/usb.h
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contains definitions for the types used by the various
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.Xr ioctl 2
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calls.
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The naming convention of the fields for the various
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.Tn USB
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descriptors exactly follows the naming in the
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.Tn USB
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specification.
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Byte sized fields can be accessed directly, but word (16 bit)
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sized fields must be access by the
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.Fn UGETW field
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and
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.Fn USETW field value
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macros to handle byte order and alignment properly.
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.Pp
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The include file
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.In dev/usb/usbhid.h
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similarly contains the definitions for
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Human Interface Devices
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.Pq Tn HID .
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.Sh USB EVENT INTERFACE
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All
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.Tn USB
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events are reported via the
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.Pa /dev/usb
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device.
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This devices can be opened for reading and each
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.Xr read 2
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will yield an event record (if something has happened).
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The
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.Xr poll 2
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system call can be used to determine if an event record is available
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for reading.
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.Pp
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The event record has the following definition:
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.Bd -literal
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struct usb_event {
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int ue_type;
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#define USB_EVENT_CTRLR_ATTACH 1
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#define USB_EVENT_CTRLR_DETACH 2
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#define USB_EVENT_DEVICE_ATTACH 3
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#define USB_EVENT_DEVICE_DETACH 4
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#define USB_EVENT_DRIVER_ATTACH 5
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#define USB_EVENT_DRIVER_DETACH 6
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struct timespec ue_time;
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union {
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struct {
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int ue_bus;
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} ue_ctrlr;
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struct usb_device_info ue_device;
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struct {
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usb_event_cookie_t ue_cookie;
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char ue_devname[16];
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} ue_driver;
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} u;
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};
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.Ed
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The
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.Va ue_type
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field identifies the type of event that is described.
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The possible events are attach/detach of a host controller,
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a device, or a device driver.
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The union contains information
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pertinent to the different types of events.
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Macros,
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.Fn USB_EVENT_IS_ATTACH "ue_type"
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and
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.Fn USB_EVENT_IS_DETACH "ue_type"
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can be used to determine if an event was an
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.Dq attach
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or a
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.Dq detach
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request.
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.Pp
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The
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.Va ue_bus
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contains the number of the
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.Tn USB
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bus for host controller events.
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.Pp
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The
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.Va ue_device
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record contains information about the device in a device event event.
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.Pp
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The
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.Va ue_cookie
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is an opaque value that uniquely determines which
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device a device driver has been attached to (i.e., it equals
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the cookie value in the device that the driver attached to).
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.Pp
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The
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.Va ue_devname
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contains the name of the device (driver) as seen in, e.g.,
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kernel messages.
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.Pp
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Note that there is a separation between device and device
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driver events.
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A device event is generated when a physical
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.Tn USB
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device is attached or detached.
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A single
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.Tn USB
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device may
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have zero, one, or many device drivers associated with it.
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.Sh SEE ALSO
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The
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.Tn USB
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specifications can be found at:
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.Pp
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.D1 Pa http://www.usb.org/developers/docs/
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.Pp
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.Xr aue 4 ,
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.Xr cue 4 ,
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.Xr kue 4 ,
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.Xr ohci 4 ,
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.Xr pci 4 ,
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.Xr ucom 4 ,
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.Xr ugen 4 ,
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.Xr uhci 4 ,
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.Xr uhid 4 ,
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.Xr ukbd 4 ,
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.Xr ulpt 4 ,
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.Xr umass 4 ,
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.Xr ums 4 ,
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.Xr uplcom 4 ,
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.Xr urio 4 ,
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.Xr uscanner 4 ,
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.Xr uvscom 4 ,
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.Xr usbd 8 ,
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.Xr usbdevs 8
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.Sh HISTORY
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The
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.Nm
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driver first appeared in
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.Fx 3.0 .
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.Sh AUTHORS
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The
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.Nm
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driver was written by
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.An Lennart Augustsson Aq augustss@carlstedt.se
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for the
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.Nx
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project.
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