04b6fa8330
facilities as well as support for the Octeon 2 family of SoCs. XXX Note that with our antediluvian assembler, we can't support some Octeon 2 instructions and fall back to using the old ones instead.
301 lines
9.8 KiB
C
301 lines
9.8 KiB
C
#ifndef __CVMX_USBD_H__
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#define __CVMX_USBD_H__
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/***********************license start***************
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* Copyright (c) 2003-2010 Cavium Networks (support@cavium.com). All rights
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* reserved.
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*
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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 are
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* met:
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*
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* * 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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*
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* * Redistributions in binary form must reproduce the above
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* copyright notice, this list of conditions and the following
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* disclaimer in the documentation and/or other materials provided
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* with the distribution.
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* * Neither the name of Cavium Networks nor the names of
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* its contributors may be used to endorse or promote products
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* derived from this software without specific prior written
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* permission.
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* This Software, including technical data, may be subject to U.S. export control
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* laws, including the U.S. Export Administration Act and its associated
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* regulations, and may be subject to export or import regulations in other
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* countries.
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* TO THE MAXIMUM EXTENT PERMITTED BY LAW, THE SOFTWARE IS PROVIDED "AS IS"
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* AND WITH ALL FAULTS AND CAVIUM NETWORKS MAKES NO PROMISES, REPRESENTATIONS OR
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* WARRANTIES, EITHER EXPRESS, IMPLIED, STATUTORY, OR OTHERWISE, WITH RESPECT TO
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* THE SOFTWARE, INCLUDING ITS CONDITION, ITS CONFORMITY TO ANY REPRESENTATION OR
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* DESCRIPTION, OR THE EXISTENCE OF ANY LATENT OR PATENT DEFECTS, AND CAVIUM
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* SPECIFICALLY DISCLAIMS ALL IMPLIED (IF ANY) WARRANTIES OF TITLE,
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* MERCHANTABILITY, NONINFRINGEMENT, FITNESS FOR A PARTICULAR PURPOSE, LACK OF
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* VIRUSES, ACCURACY OR COMPLETENESS, QUIET ENJOYMENT, QUIET POSSESSION OR
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* CORRESPONDENCE TO DESCRIPTION. THE ENTIRE RISK ARISING OUT OF USE OR
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* PERFORMANCE OF THE SOFTWARE LIES WITH YOU.
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***********************license end**************************************/
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/**
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* @file
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*
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* "cvmx-usbd.h" defines a set of low level USB functions to help developers
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* create Octeon USB devices for various operating systems. These functions
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* provide a generic API to the Octeon USB blocks, hiding the internal hardware
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* specific operations.
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*
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* <hr>$Revision: 32636 $<hr>
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*/
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#ifdef __cplusplus
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extern "C" {
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#endif
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typedef enum
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{
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CVMX_USBD_TRANSFER_CONTROL = 0,
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CVMX_USBD_TRANSFER_ISOCHRONOUS = 1,
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CVMX_USBD_TRANSFER_BULK = 2,
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CVMX_USBD_TRANSFER_INTERRUPT = 3,
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} cvmx_usbd_transfer_t;
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typedef enum
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{
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CVMX_USBD_SPEED_HIGH = 0,
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CVMX_USBD_SPEED_FULL = 1,
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CVMX_USBD_SPEED_LOW = 2,
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} cvmx_usbd_speed_t;
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typedef enum
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{
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CVMX_USBD_CALLBACK_SUSPEND,
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CVMX_USBD_CALLBACK_RESET,
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CVMX_USBD_CALLBACK_ENUM_COMPLETE,
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CVMX_USBD_CALLBACK_DEVICE_SETUP,
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CVMX_USBD_CALLBACK_IN_COMPLETE,
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CVMX_USBD_CALLBACK_OUT_COMPLETE,
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__CVMX_USBD_CALLBACK_END
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} cvmx_usbd_callback_t;
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typedef enum
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{
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CVMX_USBD_INITIALIZE_FLAGS_CLOCK_XO_XI = 1<<0, /**< The USB port uses a 12MHz crystal as clock source
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at USB_XO and USB_XI. */
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CVMX_USBD_INITIALIZE_FLAGS_CLOCK_XO_GND = 1<<1, /**< The USB port uses 12/24/48MHz 2.5V board clock
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source at USB_XO. USB_XI should be tied to GND.*/
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CVMX_USBD_INITIALIZE_FLAGS_CLOCK_AUTO = 0, /**< Automatically determine clock type based on function
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in cvmx-helper-board.c. */
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CVMX_USBD_INITIALIZE_FLAGS_CLOCK_MHZ_MASK = 3<<3, /**< Mask for clock speed field */
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CVMX_USBD_INITIALIZE_FLAGS_CLOCK_12MHZ = 1<<3, /**< Speed of reference clock or crystal */
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CVMX_USBD_INITIALIZE_FLAGS_CLOCK_24MHZ = 2<<3, /**< Speed of reference clock */
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CVMX_USBD_INITIALIZE_FLAGS_CLOCK_48MHZ = 3<<3, /**< Speed of reference clock */
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/* Bits 3-4 used to encode the clock frequency */
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CVMX_USBD_INITIALIZE_FLAGS_DEBUG = 1<<16
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} cvmx_usbd_initialize_flags_t;
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typedef void (*cvmx_usbd_callback_func_t)(cvmx_usbd_callback_t reason, int endpoint_num, int bytes_transferred, void *user_data);
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typedef struct
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{
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int init_flags;
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int index;
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cvmx_usbd_callback_func_t callback[__CVMX_USBD_CALLBACK_END];
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void *callback_data[__CVMX_USBD_CALLBACK_END];
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struct {
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int buffer_length;
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} endpoint[16];
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} cvmx_usbd_state_t;
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/**
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* Initialize a USB port for use. This must be called before any
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* other access to the Octeon USB port is made. The port starts
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* off in the disabled state.
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*
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* @param usb Pointer to an empty cvmx_usbd_state_t structure
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* that will be populated by the initialize call.
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* This structure is then passed to all other USB
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* functions.
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* @param usb_port_number
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* Which Octeon USB port to initialize.
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* @param flags Flags to control hardware initialization. See
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* cvmx_usbd_initialize_flags_t for the flag
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* definitions. Some flags are mandatory.
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*
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* @return Zero or a negative on error.
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*/
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int cvmx_usbd_initialize(cvmx_usbd_state_t *usb, int usb_port_number,
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cvmx_usbd_initialize_flags_t flags);
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/**
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* Shutdown a USB port after a call to cvmx_usbd_initialize().
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*
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* @param usb USB device state populated by
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* cvmx_usbd_initialize().
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*
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* @return Zero or a negative on error.
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*/
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int cvmx_usbd_shutdown(cvmx_usbd_state_t *usb);
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/**
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* Enable a USB port. After this call succeeds, the USB port is
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* online and servicing requests.
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*
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* @param usb USB device state populated by
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* cvmx_usb_initialize().
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*
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* @return Zero or negative on error.
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*/
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int cvmx_usbd_enable(cvmx_usbd_state_t *usb);
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/**
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* Disable a USB port. After this call the USB port will not
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* generate data transfers and will not generate events.
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*
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* @param usb USB device state populated by
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* cvmx_usb_initialize().
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*
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* @return Zero or negative on error.
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*/
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int cvmx_usbd_disable(cvmx_usbd_state_t *usb);
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/**
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* Register a callback function to process USB events
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*
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* @param usb USB device state populated by
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* cvmx_usbd_initialize().
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* @param reason The reason this callback should be called
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* @param func Function to call
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* @param user_data User supplied data for the callback
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*
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* @return Zero on succes, negative on failure
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*/
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int cvmx_usbd_register(cvmx_usbd_state_t *usb, cvmx_usbd_callback_t reason, cvmx_usbd_callback_func_t func, void *user_data);
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/**
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* Poll the USB block for status and call all needed callback
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* handlers. This function is meant to be called in the interrupt
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* handler for the USB controller. It can also be called
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* periodically in a loop for non-interrupt based operation.
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*
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* @param usb USB device state populated by
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* cvmx_usbd_initialize().
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*
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* @return Zero or negative on error.
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*/
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int cvmx_usbd_poll(cvmx_usbd_state_t *usb);
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/**
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* Get the current USB address
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*
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* @param usb USB device state populated by
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* cvmx_usbd_initialize().
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*
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* @return The USB address
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*/
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int cvmx_usbd_get_address(cvmx_usbd_state_t *usb);
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/**
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* Set the current USB address
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*
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* @param usb USB device state populated by
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* cvmx_usbd_initialize().
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* @param address Address to set
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*/
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void cvmx_usbd_set_address(cvmx_usbd_state_t *usb, int address);
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/**
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* Get the current USB speed
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*
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* @param usb USB device state populated by
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* cvmx_usbd_initialize().
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*
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* @return The USB speed
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*/
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cvmx_usbd_speed_t cvmx_usbd_get_speed(cvmx_usbd_state_t *usb);
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/**
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* Set the current USB speed
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*
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* @param usb USB device state populated by
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* cvmx_usbd_initialize().
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* @param speed The requested speed
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*/
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void cvmx_usbd_set_speed(cvmx_usbd_state_t *usb, cvmx_usbd_speed_t speed);
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/**
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* Enable an endpoint to respond to an OUT transaction
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*
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* @param usb USB device state populated by
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* cvmx_usbd_initialize().
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* @param endpoint_num
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* Endpoint number to enable
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* @param transfer_type
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* Transfer type for the endpoint
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* @param max_packet_size
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* Maximum packet size for the endpoint
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* @param buffer Buffer to receive the data
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* @param buffer_length
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* Length of the buffer in bytes
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*
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* @return Zero on success, negative on failure
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*/
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int cvmx_usbd_out_endpoint_enable(cvmx_usbd_state_t *usb,
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int endpoint_num, cvmx_usbd_transfer_t transfer_type,
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int max_packet_size, uint64_t buffer, int buffer_length);
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/**
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* Disable an OUT endpoint
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*
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* @param usb USB device state populated by
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* cvmx_usbd_initialize().
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* @param endpoint_num
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* Endpoint number to disable
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*
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* @return Zero on success, negative on failure
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*/
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int cvmx_usbd_out_endpoint_disable(cvmx_usbd_state_t *usb, int endpoint_num);
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/**
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* Enable an endpoint to respond to an IN transaction
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*
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* @param usb USB device state populated by
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* cvmx_usbd_initialize().
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* @param endpoint_num
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* Endpoint number to enable
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* @param transfer_type
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* Transfer type for the endpoint
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* @param max_packet_size
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* Maximum packet size for the endpoint
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* @param buffer Buffer to send
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* @param buffer_length
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* Length of the buffer in bytes
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*
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* @return Zero on success, negative on failure
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*/
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int cvmx_usbd_in_endpoint_enable(cvmx_usbd_state_t *usb,
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int endpoint_num, cvmx_usbd_transfer_t transfer_type,
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int max_packet_size, uint64_t buffer, int buffer_length);
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/**
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* Disable an IN endpoint
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*
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* @param usb USB device state populated by
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* cvmx_usbd_initialize().
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* @param endpoint_num
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* Endpoint number to disable
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*
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* @return Zero on success, negative on failure
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*/
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int cvmx_usbd_in_endpoint_disable(cvmx_usbd_state_t *usb, int endpoint_num);
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#ifdef __cplusplus
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}
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#endif
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#endif /* __CVMX_USBD_H__ */
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