mirror of https://github.com/nirenjan/libx52.git
518 lines
15 KiB
C
518 lines
15 KiB
C
/*
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* Saitek X52 Pro MFD & LED driver
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*
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* Copyright (C) 2012-2017 Nirenjan Krishnan (nirenjan@nirenjan.org)
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*
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* SPDX-License-Identifier: GPL-2.0-only WITH Classpath-exception-2.0
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*/
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#ifndef LIBX52_H
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#define LIBX52_H
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#include <time.h>
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#include <stdint.h>
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#ifdef __cplusplus
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extern "C" {
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#endif
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/**
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* @brief Opaque structure used by libx52
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* @ingroup libx52init
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*/
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struct libx52_device;
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/**
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* @brief Opaque structure used by libx52
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* @ingroup libx52init
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*/
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typedef struct libx52_device libx52_device;
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/**
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* @brief List of supported clocks on the MFD
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* @ingroup libx52clock
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*/
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typedef enum {
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/** Primary clock on the MFD, indicated by the number 1 */
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LIBX52_CLOCK_1,
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/** Secondary clock on the MFD, indicated by the number 2 */
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LIBX52_CLOCK_2,
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/** Tertiary clock on the MFD, indicated by the number 3 */
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LIBX52_CLOCK_3,
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} libx52_clock_id;
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/**
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* @brief Supported clock formats
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* @ingroup libx52clock
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*/
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typedef enum {
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/** 12-hour display on the MFD clock */
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LIBX52_CLOCK_FORMAT_12HR,
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/** 24-hour display on the MFD clock */
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LIBX52_CLOCK_FORMAT_24HR,
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} libx52_clock_format;
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/**
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* @brief Supported date formats
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* @ingroup libx52clock
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*/
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typedef enum {
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/** Date format DD-MM-YY */
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LIBX52_DATE_FORMAT_DDMMYY,
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/** Date format MM-DD-YY */
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LIBX52_DATE_FORMAT_MMDDYY,
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/** Date format YY-MM-DD */
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LIBX52_DATE_FORMAT_YYMMDD,
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} libx52_date_format;
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/**
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* @brief Supported LED identifiers
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* @ingroup libx52mfdled
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*/
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typedef enum {
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/** Fire indicator LED */
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LIBX52_LED_FIRE = 0x01,
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/** LED on button A */
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LIBX52_LED_A = 0x02,
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/** LED on button B */
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LIBX52_LED_B = 0x04,
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/** LED on button D */
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LIBX52_LED_D = 0x06,
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/** LED on button E */
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LIBX52_LED_E = 0x08,
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/** LED on toggle T1 */
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LIBX52_LED_T1 = 0x0a,
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/** LED on toggle T2 */
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LIBX52_LED_T2 = 0x0c,
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/** LED on toggle T3 */
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LIBX52_LED_T3 = 0x0e,
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/** LED on POV Hat */
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LIBX52_LED_POV = 0x10,
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/** LED on clutch button */
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LIBX52_LED_CLUTCH = 0x12,
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/** Throttle LED */
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LIBX52_LED_THROTTLE = 0x14,
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} libx52_led_id;
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/**
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* @brief Supported LED states
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*
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* Not all LEDs support all states
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*
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* @ingroup libx52mfdled
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*/
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typedef enum {
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/** LED is off */
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LIBX52_LED_STATE_OFF,
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/**
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* LED is on. This is not supported by those LEDs which can display
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* multiple colors
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*/
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LIBX52_LED_STATE_ON,
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/** LED displays red color. This is not supported by single color LEDs */
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LIBX52_LED_STATE_RED,
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/** LED displays amber color. This is not supported by single color LEDs */
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LIBX52_LED_STATE_AMBER,
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/** LED displays green color. This is not supported by single color LEDs */
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LIBX52_LED_STATE_GREEN,
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} libx52_led_state;
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/**
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* @brief LibX52 Error codes
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*
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* Error codes returned by libx52
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*
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* @ingroup libx52misc
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*/
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typedef enum {
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/** No error, indicates success */
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LIBX52_SUCCESS = 0,
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/** Initialization failure */
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LIBX52_ERROR_INIT_FAILURE,
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/** Out of memory */
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LIBX52_ERROR_OUT_OF_MEMORY,
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/** Invalid parameter(s) */
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LIBX52_ERROR_INVALID_PARAM,
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/** Not supported */
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LIBX52_ERROR_NOT_SUPPORTED,
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/** No change necessary, try again */
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LIBX52_ERROR_TRY_AGAIN,
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/** Clock timezone out of range */
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LIBX52_ERROR_OUT_OF_RANGE,
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/** Error encountered during USB interaction */
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LIBX52_ERROR_USB_FAILURE,
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/** Input output error */
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LIBX52_ERROR_IO,
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/** Insufficient permissions */
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LIBX52_ERROR_PERM,
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/** No such device */
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LIBX52_ERROR_NO_DEVICE,
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/** Entry not found */
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LIBX52_ERROR_NOT_FOUND,
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/** Busy */
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LIBX52_ERROR_BUSY,
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/** Timeout */
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LIBX52_ERROR_TIMEOUT,
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/** Overflow */
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LIBX52_ERROR_OVERFLOW,
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/** Pipe error */
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LIBX52_ERROR_PIPE,
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/** Operation interrupted */
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LIBX52_ERROR_INTERRUPTED,
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} libx52_error_code;
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/**
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* @defgroup libx52init Library Initialization and Deinitialization
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* @{
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*/
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/**
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* @brief Initialize the X52 library
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*
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* This function initializes the libx52 library, sets up any internal data
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* structures to access the joystick, and returns a \ref libx52_device pointer.
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* All calls to libx52 use the returned pointer to control the device.
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*
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* If no joystick is found `libx52_init()` returns _NULL_.
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*
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* @par Limitations
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* This function does not support hotplugging. The joystick must be plugged in
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* before calling this function.
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*
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* @param[out] dev Pointer to a \ref libx52_device *
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*
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* @returns \ref libx52_error_code indicating status
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*/
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int libx52_init(libx52_device ** dev);
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/**
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* @brief Exit the library and free up any resources used
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*
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* This function releases any resources allocated by \ref libx52_init and
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* terminates the library. Using the freed device now is invalid and can
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* cause errors.
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*
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* @param[in] dev Pointer to the device
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* @returns None
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*/
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void libx52_exit(libx52_device *dev);
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/** @} */
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/**
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* @defgroup mfdled MFD & LED control
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* @{
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*/
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/**
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* @brief Set the text on an MFD line
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*
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* The Multifunction display (MFD) supports 3 lines of up to 16 characters.
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* This function will set the text into the internal data structures.
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*
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* \p text must be a pointer to an array of bytes, each byte represents a code
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* point on the MFD's internal character map. \p length is the length of this
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* array.
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*
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* \p line must be \b 0, \b 1, or \b 2 and refers to the first, second or third
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* line of the MFD respectively.
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*
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* @par Limitations
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* This function can only store a maximum of 16 characters per line. Any
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* additional characters are silently discarded.
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*
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* @param[in] x52 Pointer to the device
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* @param[in] line Line to be updated (0, 1 or 2)
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* @param[in] text Pointer to the text string. The text must be mapped to
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* the code page of the X52 display.
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* @param[in] length Length of the text to display
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*
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* @returns 0 on success, \ref LIBX52_ERROR_INVALID_PARAM if either \p x52 is
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* invalid, or \p line is outside the accepted range.
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*/
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int libx52_set_text(libx52_device *x52, uint8_t line, const char *text, uint8_t length);
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/**
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* @brief Set the LED state
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*
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* The X52 pro has several LEDs that can be individually controlled. This
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* function allows you to set the state of each LED in the internal data
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* structures.
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*
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* Note that the LEDs referred to by \ref LIBX52_LED_FIRE and \ref
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* LIBX52_LED_THROTTLE support only the states \ref LIBX52_LED_STATE_OFF and
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* \ref LIBX52_LED_STATE_ON. The remaining LEDs support all the states with
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* the exception of \ref LIBX52_LED_STATE_ON.
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*
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* @param[in] x52 Pointer to the device
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* @param[in] led LED identifier (refer \ref libx52_led_id)
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* @param[in] state State of the LED (refer \ref libx52_led_state)
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*
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* @returns 0 on success, \ref LIBX52_ERROR_INVALID_PARAM if the \p x52
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* parameter is not valid, and \ref LIBX52_ERROR_NOT_SUPPORTED if the \p led
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* and \p state combination is not a supported one. The API also returns \ref
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* LIBX52_ERROR_NOT_SUPPORTED if the probed joystick is not an X52 Pro, but the
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* non-Pro X52 variant.
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*/
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int libx52_set_led_state(libx52_device *x52,
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libx52_led_id led,
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libx52_led_state state);
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/** @} */
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/**
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* @defgroup libx52clock Clock control
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* @{
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*/
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/**
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* @brief Set the clock
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*
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* This function sets the primary clock's date and time with the specified Unix
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* time value. \p time can be obtained from \c time(2). \p local controls
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* whether the primary clock displays local time or GMT.
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*
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* If this function is called again within the same minute as calculated by
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* \c localtime(3) or \c gmtime(3), it will return \ref LIBX52_ERROR_TRY_AGAIN,
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* as it does not require any updates to be written to the joystick. However,
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* if the call changes the timezone from local time to GMT or vice-versa, then
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* the function will return 0, since it requires a write to the device to
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* update the clock with the new timezone.
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*
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* The secondary and tertiary clocks are driven off the primary clock and set
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* using \ref libx52_set_clock_timezone.
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*
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* @param[in] x52 Pointer to the device
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* @param[in] time Time value from \c time(3)
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* @param[in] local 0 for GM time, non-zero for localtime
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*
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* @returns 0 on success, \ref LIBX52_ERROR_TRY_AGAIN if no change from previous
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* time, \ref LIBX52_ERROR_INVALID_PARAM if \p x52 is not valid.
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*/
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int libx52_set_clock(libx52_device *x52, time_t time, int local);
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/**
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* @brief Set the timezone for the secondary and tertiary clocks.
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*
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* The X52 Pro has a total of 3 clock displays. The secondary and tertiary
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* clocks are controlled as an offset from the primary clock in minutes.
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* However, for convenience, the X52 library calculates this offset internally
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* and only requires you to set the timezone as the number of minutes offset
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* from GMT. \p offset is limited to +/- 1440 minutes, and any offset outside
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* this range will result in a return value of \ref LIBX52_ERROR_OUT_OF_RANGE
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*
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* @param[in] x52 Pointer to the device
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* @param[in] clock \ref libx52_clock_id, cannot be \ref
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* LIBX52_CLOCK_1
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* @param[in] offset Offset in minutes from GMT (east is positive, west
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* is negative)
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*
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* @returns 0 on success, \ref LIBX52_ERROR_INVALID_PARAM if \p x52 is invalid,
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* \ref LIBX52_ERROR_NOT_SUPPORTED if \p clock is \ref LIBX52_CLOCK_1, \ref
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* LIBX52_ERROR_OUT_OF_RANGE if \p offset is more than +/- 24 hours.
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*/
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int libx52_set_clock_timezone(libx52_device *x52,
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libx52_clock_id clock,
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int offset);
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/**
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* @brief Set whether the clock is displayed in 12 hour or 24 hour format.
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*
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* The clocks on the X52 Pro MFD are all displayed as HH:MM, but can be set to
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* display it in 12-hour (AM/PM) or 24-hour format. The default format if not
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* specified is 12-hour.
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*
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* @par Limitations
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* The hardware has a limitation that it cannot display 12:00 am in 12 hour
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* mode - instead it will display as 00:00 am
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*
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* @param[in] x52 Pointer to the device
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* @param[in] clock \ref libx52_clock_id
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* @param[in] format \ref libx52_clock_format
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*
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* @returns 0 on success, \ref LIBX52_ERROR_INVALID_PARAM if \p x52 is not valid,
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* or if either of \p clock or \p format are outside their respective ranges.
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*/
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int libx52_set_clock_format(libx52_device *x52,
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libx52_clock_id clock,
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libx52_clock_format format);
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/**
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* @brief Set the hour and minute on clock 1
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*
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* This is a raw API which can be used for manual control if the user
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* so desires, however, it will not update the timezone or the date
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* values.
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*
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* @param[in] x52 Pointer to the device
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* @param[in] hour Hour to display
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* @param[in] minute Minute to display
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*
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* @returns 0 on success, \ref LIBX52_ERROR_INVALID_PARAM if \p x52 is not valid
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*/
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int libx52_set_time(libx52_device *x52, uint8_t hour, uint8_t minute);
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/**
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* @brief Set the date
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*
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* This is a raw API which can be used for manual control if the user
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* so desires, however, it will not update the timezone or the time values.
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*
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* @param[in] x52 Pointer to the device
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* @param[in] dd Day to display
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* @param[in] mm Month to display
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* @param[in] yy Year to display
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*
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* @returns 0 on success, \ref LIBX52_ERROR_INVALID_PARAM if \p x52 is not valid
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*/
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int libx52_set_date(libx52_device *x52, uint8_t dd, uint8_t mm, uint8_t yy);
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/**
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* @brief Set the date format for the MFD date display
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*
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* If not set, the date format defaults to DD-MM-YY
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*
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* @param[in] x52 Pointer to the device
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* @param[in] format \ref libx52_date_format
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*
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* @returns 0 on success, \ref LIBX52_ERROR_INVALID_PARAM if \p x52 is not valid
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*/
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int libx52_set_date_format(libx52_device *x52, libx52_date_format format);
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/** @} */
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/**
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* @addtogroup libx52mfdled
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* @{
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*/
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/**
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* @brief Set the MFD or LED brightness
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*
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* The brightness of the MFD display and the button LEDs can be controlled
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* individually. \p brightness should be a value between 0 and 128. While
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* the library does not fail on values higher than 128, the effect may not
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* be what is intended.
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*
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* @param[in] x52 Pointer to the device
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* @param[in] mfd 0 for LED brightness, 1 for MFD brightness
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* @param[in] brightness Brightness level to set
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*
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* @returns 0 on success, \ref LIBX52_ERROR_INVALID_PARAM if \p x52 is not valid.
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*/
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int libx52_set_brightness(libx52_device *x52, uint8_t mfd, uint16_t brightness);
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/**
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* @brief Set the state of the shift indicator
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*
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* The X52 Pro MFD has a single shift indicator that indicates when the
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* "shift" button is pressed.
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*
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* @param[in] x52 Pointer to the device
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* @param[in] state 0 for off, 1 for on
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*
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* @returns 0 on success, \ref LIBX52_ERROR_INVALID_PARAM if \p x52 is not valid
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*/
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int libx52_set_shift(libx52_device *x52, uint8_t state);
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/**
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* @brief Set the blinking state
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*
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* The X52 Pro has a "blink" state where it blinks the clutch and hat LEDs.
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*
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* @param[in] x52 Pointer to the device
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* @param[in] state 0 for off, 1 for on
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*
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* @returns 0 on success, \ref LIBX52_ERROR_INVALID_PARAM if \p x52 is not valid
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*/
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int libx52_set_blink(libx52_device *x52, uint8_t state);
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/**
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* @brief Update the X52
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*
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* All the libx52_set functions only set the internal data structures, but do
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* not actually write anything to the joystick. This function writes the saved
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* data to the joystick and updates the internal data structures as necessary.
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*
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* @param[in] x52 Pointer to the device
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*
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* @returns 0 on success, \ref LIBX52_ERROR_USB_FAILURE on failure
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*/
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int libx52_update(libx52_device *x52);
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/** @} */
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/**
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* @defgroup libx52misc Miscellaneous
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* @{
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*/
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/**
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* @brief Write a raw vendor control packet
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*
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* This function sends the control packet immediately to the hardware, without
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* having to wait for a call to \ref libx52_update.
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*
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* This can be used to debug issues seen on the hardware, however, it is \b NOT
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* recommended for use by end users, as it can potentially damage the hardware.
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*
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* @param[in] x52 Pointer to the device
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* @param[in] index wIndex in the USB packet
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* @param[in] value wValue in the USB packet
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*
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* @returns 0 on success, \ref LIBX52_ERROR_USB_FAILURE on failure
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*/
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int libx52_vendor_command(libx52_device *x52, uint16_t index, uint16_t value);
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/**
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* @brief Return a string representation of the error code
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*
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* @param[in] error Error code returned by libx52 function
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*
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* @returns Pointer to a NULL terminated string describing the error.
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* Returned pointer must not be freed.
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*/
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const char * libx52_strerror(libx52_error_code error);
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#ifdef __cplusplus
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}
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#endif
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#endif /* !defined LIBX52_H */
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