staging: usbip: usbip_common.h: reorganize and document request headers
Document the request header structures; move #defines out of the structures; organize function declarations by source file; and move inline functions to the end of file. Signed-off-by: matt mooney <mfm@muteddisk.com> Signed-off-by: Greg Kroah-Hartman <gregkh@suse.de>
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1 changed files with 121 additions and 115 deletions
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@ -104,111 +104,110 @@ extern struct device_attribute dev_attr_usbip_debug;
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usbip_dbg_with_flag(usbip_debug_stub_tx, fmt , ##args)
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/*
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* USB/IP request headers.
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* Currently, we define 4 request types:
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* USB/IP request headers
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*
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* - CMD_SUBMIT transfers a USB request, corresponding to usb_submit_urb().
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* Each request is transferred across the network to its counterpart, which
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* facilitates the normal USB communication. The values contained in the headers
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* are basically the same as in a URB. Currently, four request types are
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* defined:
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*
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* - USBIP_CMD_SUBMIT: a USB request block, corresponds to usb_submit_urb()
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* (client to server)
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* - RET_RETURN transfers the result of CMD_SUBMIT.
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* (server to client)
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* - CMD_UNLINK transfers an unlink request of a pending USB request.
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* (client to server)
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* - RET_UNLINK transfers the result of CMD_UNLINK.
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*
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* - USBIP_RET_SUBMIT: the result of USBIP_CMD_SUBMIT
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* (server to client)
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*
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* Note: The below request formats are based on the USB subsystem of Linux. Its
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* details will be defined when other implementations come.
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* - USBIP_CMD_UNLINK: an unlink request of a pending USBIP_CMD_SUBMIT,
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* corresponds to usb_unlink_urb()
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* (client to server)
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*
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* - USBIP_RET_UNLINK: the result of USBIP_CMD_UNLINK
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* (server to client)
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*
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*/
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#define USBIP_CMD_SUBMIT 0x0001
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#define USBIP_RET_SUBMIT 0x0002
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#define USBIP_CMD_UNLINK 0x0003
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#define USBIP_RET_UNLINK 0x0004
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/*
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* A basic header followed by other additional headers.
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#define USBIP_DIR_IN 0x00
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#define USBIP_DIR_OUT 0x01
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/**
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* struct usbip_header_basic - data pertinent to every request
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* @command: the usbip request type
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* @seqnum: sequential number that identifies requests; incremented per
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* connection
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* @devid: specifies a remote USB device uniquely instead of busnum and devnum;
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* in the stub driver, this value is ((busnum << 16) | devnum)
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* @direction: direction of the transfer
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* @ep: endpoint number
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*/
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struct usbip_header_basic {
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#define USBIP_CMD_SUBMIT 0x0001
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#define USBIP_CMD_UNLINK 0x0002
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#define USBIP_RET_SUBMIT 0x0003
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#define USBIP_RET_UNLINK 0x0004
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__u32 command;
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/* sequential number which identifies requests.
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* incremented per connections */
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__u32 seqnum;
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/* devid is used to specify a remote USB device uniquely instead
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* of busnum and devnum in Linux. In the case of Linux stub_driver,
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* this value is ((busnum << 16) | devnum) */
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__u32 devid;
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#define USBIP_DIR_OUT 0
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#define USBIP_DIR_IN 1
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__u32 direction;
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__u32 ep; /* endpoint number */
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__u32 ep;
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} __packed;
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/*
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* An additional header for a CMD_SUBMIT packet.
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/**
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* struct usbip_header_cmd_submit - USBIP_CMD_SUBMIT packet header
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* @transfer_flags: URB flags
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* @transfer_buffer_length: the data size for (in) or (out) transfer
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* @start_frame: initial frame for isochronous or interrupt transfers
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* @number_of_packets: number of isochronous packets
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* @interval: maximum time for the request on the server-side host controller
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* @setup: setup data for a control request
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*/
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struct usbip_header_cmd_submit {
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/* these values are basically the same as in a URB. */
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/* the same in a URB. */
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__u32 transfer_flags;
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/* set the following data size (out),
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* or expected reading data size (in) */
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__s32 transfer_buffer_length;
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/* it is difficult for usbip to sync frames (reserved only?) */
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__s32 start_frame;
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/* the number of iso descriptors that follows this header */
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__s32 number_of_packets;
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/* the maximum time within which this request works in a host
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* controller of a server side */
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__s32 interval;
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/* set setup packet data for a CTRL request */
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unsigned char setup[8];
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} __packed;
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/*
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* An additional header for a RET_SUBMIT packet.
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/**
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* struct usbip_header_ret_submit - USBIP_RET_SUBMIT packet header
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* @status: return status of a non-iso request
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* @actual_length: number of bytes transferred
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* @start_frame: initial frame for isochronous or interrupt transfers
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* @number_of_packets: number of isochronous packets
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* @error_count: number of errors for isochronous transfers
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*/
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struct usbip_header_ret_submit {
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__s32 status;
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__s32 actual_length; /* returned data length */
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__s32 start_frame; /* ISO and INT */
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__s32 number_of_packets; /* ISO only */
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__s32 error_count; /* ISO only */
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__s32 actual_length;
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__s32 start_frame;
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__s32 number_of_packets;
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__s32 error_count;
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} __packed;
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/*
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* An additional header for a CMD_UNLINK packet.
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/**
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* struct usbip_header_cmd_unlink - USBIP_CMD_UNLINK packet header
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* @seqnum: the URB seqnum to unlink
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*/
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struct usbip_header_cmd_unlink {
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__u32 seqnum; /* URB's seqnum that will be unlinked */
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__u32 seqnum;
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} __packed;
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/*
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* An additional header for a RET_UNLINK packet.
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/**
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* struct usbip_header_ret_unlink - USBIP_RET_UNLINK packet header
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* @status: return status of the request
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*/
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struct usbip_header_ret_unlink {
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__s32 status;
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} __packed;
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/* the same as usb_iso_packet_descriptor but packed for pdu */
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struct usbip_iso_packet_descriptor {
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__u32 offset;
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__u32 length; /* expected length */
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__u32 actual_length;
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__u32 status;
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} __packed;
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/*
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* All usbip packets use a common header to keep code simple.
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/**
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* struct usbip_header - common header for all usbip packets
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* @base: the basic header
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* @u: packet type dependent header
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*/
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struct usbip_header {
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struct usbip_header_basic base;
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@ -221,40 +220,15 @@ struct usbip_header {
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} u;
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} __packed;
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int usbip_xmit(int, struct socket *, char *, int, int);
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int usbip_sendmsg(struct socket *, struct msghdr *, int);
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static inline int interface_to_busnum(struct usb_interface *interface)
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{
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struct usb_device *udev = interface_to_usbdev(interface);
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return udev->bus->busnum;
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}
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static inline int interface_to_devnum(struct usb_interface *interface)
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{
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struct usb_device *udev = interface_to_usbdev(interface);
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return udev->devnum;
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}
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static inline int interface_to_infnum(struct usb_interface *interface)
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{
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return interface->cur_altsetting->desc.bInterfaceNumber;
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}
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#if 0
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int setnodelay(struct socket *);
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int setquickack(struct socket *);
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int setkeepalive(struct socket *socket);
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void setreuse(struct socket *);
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#endif
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struct socket *sockfd_to_socket(unsigned int);
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int set_sockaddr(struct socket *socket, struct sockaddr_storage *ss);
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void usbip_dump_urb(struct urb *purb);
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void usbip_dump_header(struct usbip_header *pdu);
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struct usbip_device;
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/*
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* This is the same as usb_iso_packet_descriptor but packed for pdu.
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*/
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struct usbip_iso_packet_descriptor {
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__u32 offset;
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__u32 length; /* expected length */
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__u32 actual_length;
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__u32 status;
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} __packed;
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enum usbip_side {
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USBIP_VHCI,
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@ -277,20 +251,7 @@ enum usbip_status {
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VDEV_ST_ERROR
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};
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/* a common structure for stub_device and vhci_device */
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struct usbip_device {
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enum usbip_side side;
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enum usbip_status status;
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/* lock for status */
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spinlock_t lock;
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struct socket *tcp_socket;
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struct task_struct *tcp_rx;
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struct task_struct *tcp_tx;
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/* event handler */
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/* event handler */
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#define USBIP_EH_SHUTDOWN (1 << 0)
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#define USBIP_EH_BYE (1 << 1)
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#define USBIP_EH_RESET (1 << 2)
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@ -307,6 +268,19 @@ struct usbip_device {
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#define VDEV_EVENT_ERROR_TCP (USBIP_EH_SHUTDOWN | USBIP_EH_RESET)
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#define VDEV_EVENT_ERROR_MALLOC (USBIP_EH_SHUTDOWN | USBIP_EH_UNUSABLE)
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/* a common structure for stub_device and vhci_device */
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struct usbip_device {
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enum usbip_side side;
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enum usbip_status status;
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/* lock for status */
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spinlock_t lock;
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struct socket *tcp_socket;
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struct task_struct *tcp_rx;
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struct task_struct *tcp_tx;
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unsigned long event;
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struct task_struct *eh;
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wait_queue_head_t eh_waitq;
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@ -318,17 +292,32 @@ struct usbip_device {
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} eh_ops;
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};
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#if 0
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int usbip_sendmsg(struct socket *, struct msghdr *, int);
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int set_sockaddr(struct socket *socket, struct sockaddr_storage *ss);
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int setnodelay(struct socket *);
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int setquickack(struct socket *);
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int setkeepalive(struct socket *socket);
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void setreuse(struct socket *);
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#endif
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/* usbip_common.c */
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void usbip_dump_urb(struct urb *purb);
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void usbip_dump_header(struct usbip_header *pdu);
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int usbip_xmit(int send, struct socket *sock, char *buf, int size,
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int msg_flags);
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struct socket *sockfd_to_socket(unsigned int sockfd);
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void usbip_pack_pdu(struct usbip_header *pdu, struct urb *urb, int cmd,
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int pack);
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void usbip_header_correct_endian(struct usbip_header *pdu, int send);
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/* some members of urb must be substituted before. */
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int usbip_recv_xbuff(struct usbip_device *ud, struct urb *urb);
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void *usbip_alloc_iso_desc_pdu(struct urb *urb, ssize_t *bufflen);
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/* some members of urb must be substituted before. */
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int usbip_recv_iso(struct usbip_device *ud, struct urb *urb);
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/* some members of urb must be substituted before. */
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int usbip_pad_iso(struct usbip_device *ud, struct urb *urb);
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void *usbip_alloc_iso_desc_pdu(struct urb *urb, ssize_t *bufflen);
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int usbip_recv_xbuff(struct usbip_device *ud, struct urb *urb);
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/* usbip_event.c */
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int usbip_start_eh(struct usbip_device *ud);
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@ -336,4 +325,21 @@ void usbip_stop_eh(struct usbip_device *ud);
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void usbip_event_add(struct usbip_device *ud, unsigned long event);
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int usbip_event_happened(struct usbip_device *ud);
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static inline int interface_to_busnum(struct usb_interface *interface)
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{
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struct usb_device *udev = interface_to_usbdev(interface);
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return udev->bus->busnum;
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}
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static inline int interface_to_devnum(struct usb_interface *interface)
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{
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struct usb_device *udev = interface_to_usbdev(interface);
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return udev->devnum;
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}
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static inline int interface_to_infnum(struct usb_interface *interface)
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{
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return interface->cur_altsetting->desc.bInterfaceNumber;
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}
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#endif /* __USBIP_COMMON_H */
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