/*
LUFA Library
- Copyright (C) Dean Camera, 2012.
+ Copyright (C) Dean Camera, 2017.
dean [at] fourwalledcubicle [dot] com
www.lufa-lib.org
*/
/*
- Copyright 2012 Dean Camera (dean [at] fourwalledcubicle [dot] com)
+ Copyright 2017 Dean Camera (dean [at] fourwalledcubicle [dot] com)
Permission to use, copy, modify, distribute, and sell this
software and its documentation for any purpose is hereby granted
advertising or publicity pertaining to distribution of the
software without specific, written prior permission.
- The author disclaim all warranties with regard to this
+ The author disclaims all warranties with regard to this
software, including all implied warranties of merchantability
and fitness. In no event shall the author be liable for any
special, indirect or consequential damages or any damages
* \defgroup Group_LEDs LEDs Driver - LUFA/Drivers/Board/LEDs.h
* \brief LED board hardware driver.
*
- * \section Sec_Dependencies Module Source Dependencies
+ * \section Sec_LEDs_Dependencies Module Source Dependencies
* The following files must be built with any user project that uses this module:
* - None
*
- * \section Sec_ModDescription Module Description
+ * \section Sec_LEDs_ModDescription Module Description
* Hardware LEDs driver. This provides an easy to use driver for the hardware LEDs present on many boards. It
* provides an interface to configure, test and change the status of all the board LEDs.
*
* compatible code for a board with no LEDs by making a board LED driver (see \ref Page_WritingBoardDrivers)
* which contains only stub functions and defines no LEDs.
*
- * \section Sec_ExampleUsage Example Usage
+ * \section Sec_LEDs_ExampleUsage Example Usage
* The following snippet is an example of how this module may be used within a typical
* application.
*
* \code
* // Initialize the board LED driver before first use
* LEDs_Init();
- *
+ *
* // Turn on each of the four LEDs in turn
* LEDs_SetAllLEDs(LEDS_LED1);
* Delay_MS(500);
* Delay_MS(500);
* LEDs_SetAllLEDs(LEDS_LED4);
* Delay_MS(500);
- *
+ *
* // Turn on all LEDs
* LEDs_SetAllLEDs(LEDS_ALL_LEDS);
* Delay_MS(1000);
- *
+ *
* // Turn on LED 1, turn off LED 2, leaving LEDs 3 and 4 in their current state
* LEDs_ChangeLEDs((LEDS_LED1 | LEDS_LED2), LEDS_LED1);
* \endcode
#include "../../Common/Common.h"
#if (BOARD == BOARD_NONE)
- static inline void LEDs_Init(void) {};
- static inline void LEDs_Disable(void) {};
- static inline void LEDs_TurnOnLEDs(const uint_reg_t LEDMask) {};
- static inline void LEDs_TurnOffLEDs(const uint_reg_t LEDMask) {};
- static inline void LEDs_SetAllLEDs(const uint_reg_t LEDMask) {};
- static inline void LEDs_ChangeLEDs(const uint_reg_t LEDMask, const uint_reg_t ActiveMask) {};
- static inline void LEDs_ToggleLEDs(const uint_reg_t LEDMask) {};
+ static inline void LEDs_Init(void) {}
+ static inline void LEDs_Disable(void) {}
+ static inline void LEDs_TurnOnLEDs(const uint_reg_t LEDMask) {}
+ static inline void LEDs_TurnOffLEDs(const uint_reg_t LEDMask) {}
+ static inline void LEDs_SetAllLEDs(const uint_reg_t LEDMask) {}
+ static inline void LEDs_ChangeLEDs(const uint_reg_t LEDMask, const uint_reg_t ActiveMask) {}
+ static inline void LEDs_ToggleLEDs(const uint_reg_t LEDMask) {}
static inline uint_reg_t LEDs_GetLEDs(void) { return 0; }
#elif (BOARD == BOARD_USBKEY)
#include "AVR8/USBKEY/LEDs.h"
#include "AVR8/LEONARDO/LEDs.h"
#elif (BOARD == BOARD_UC3A3_XPLAINED)
#include "UC3/UC3A3_XPLAINED/LEDs.h"
+ #elif (BOARD == BOARD_STANGE_ISP)
+ #include "AVR8/STANGE_ISP/LEDs.h"
+ #elif (BOARD == BOARD_C3_XPLAINED)
+ #include "XMEGA/C3_XPLAINED/LEDs.h"
+ #elif (BOARD == BOARD_U2S)
+ #include "AVR8/U2S/LEDs.h"
+ #elif (BOARD == BOARD_YUN)
+ #include "AVR8/YUN/LEDs.h"
+ #elif (BOARD == BOARD_MICRO)
+ #include "AVR8/MICRO/LEDs.h"
+ #elif (BOARD == BOARD_POLOLUMICRO)
+ #include "AVR8/POLOLUMICRO/LEDs.h"
+ #elif (BOARD == BOARD_XPLAINED_MINI)
+ #include "AVR8/XPLAINED_MINI/LEDs.h"
#else
#include "Board/LEDs.h"
#endif
/* Preprocessor Checks: */
#if !defined(__DOXYGEN__)
+ #if !defined(LEDS_NO_LEDS)
+ #define LEDS_NO_LEDS 0
+ #endif
+
+ #if !defined(LEDS_ALL_LEDS)
+ #define LEDS_ALL_LEDS (LEDS_LED1 | LEDS_LED2 | LEDS_LED3 | LEDS_LED4)
+ #endif
+
#if !defined(LEDS_LED1)
#define LEDS_LED1 0
#endif