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path="Projects\Webserver\Descriptors.h"></File><File path="Projects\Webserver\USBHostMode.c"></File><File path="Projects\Webserver\USBHostMode.h"></File><File path="Projects\Webserver\USBDeviceMode.c"></File><File path="Projects\Webserver\USBDeviceMode.h"></File></Folder><Folder name="XPLAINBridge"><Folder name="Lib"><File path="Projects\XPLAINBridge\Lib\RingBuff.c"></File><File path="Projects\XPLAINBridge\Lib\RingBuff.h"></File><File path="Projects\XPLAINBridge\Lib\SoftUART.c"></File><File path="Projects\XPLAINBridge\Lib\SoftUART.h"></File></Folder><File path="Projects\XPLAINBridge\LUFA XPLAIN Bridge.inf"></File><File path="Projects\XPLAINBridge\makefile"></File><File path="Projects\XPLAINBridge\XPLAINBridge.c"></File><File path="Projects\XPLAINBridge\XPLAINBridge.h"></File><File path="Projects\XPLAINBridge\XPLAINBridge.txt"></File><File path="Projects\XPLAINBridge\USARTDescriptors.c"></File><File path="Projects\XPLAINBridge\USARTDescriptors.h"></File><File 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path="makefile"></File><File path="README.txt"></File></Project>
\ No newline at end of file
+++ /dev/null
-/*\r
- LUFA Library\r
- Copyright (C) Dean Camera, 2010.\r
-\r
- dean [at] fourwalledcubicle [dot] com\r
- www.fourwalledcubicle.com\r
-*/\r
-\r
-/*\r
- Copyright 2010 Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
-\r
- Permission to use, copy, modify, distribute, and sell this\r
- software and its documentation for any purpose is hereby granted\r
- without fee, provided that the above copyright notice appear in\r
- all copies and that both that the copyright notice and this\r
- permission notice and warranty disclaimer appear in supporting\r
- documentation, and that the name of the author not be used in\r
- advertising or publicity pertaining to distribution of the\r
- software without specific, written prior permission.\r
-\r
- The author disclaim all warranties with regard to this\r
- software, including all implied warranties of merchantability\r
- and fitness. In no event shall the author be liable for any\r
- special, indirect or consequential damages or any damages\r
- whatsoever resulting from loss of use, data or profits, whether\r
- in an action of contract, negligence or other tortious action,\r
- arising out of or in connection with the use or performance of\r
- this software.\r
-*/\r
-\r
-/** \file\r
- *\r
- * Atomic block header for the 32-bit AVRs, modelled on the 8-bit AVR's util/atomic.h\r
- * header.\r
- *\r
- * \note Do not include this file directly, rather include the Common.h header file instead to gain this file's\r
- * functionality on the 32-bit AVRs.\r
- */\r
-\r
-#ifndef __ATOMIC_H__\r
-#define __ATOMIC_H__\r
-\r
- /* Includes: */\r
- #include <avr32/io.h>\r
- #include <stdint.h>\r
- #include <stdbool.h>\r
-\r
- /* Public Interface - May be used in end-application: */\r
- /* Macros: */\r
- #define ATOMIC_BLOCK(type) for ( type, __ToDo = __iCliRetVal(); \\r
- __ToDo ; __ToDo = 0 )\r
- #define NONATOMIC_BLOCK(type) for ( type, __ToDo = __iSeiRetVal(); \\r
- __ToDo ; __ToDo = 0 )\r
- #define ATOMIC_RESTORESTATE uint8_t sreg_save \\r
- __attribute__((__cleanup__(__iRestore))) = 0 /* TODO */\r
- #define ATOMIC_FORCEON uint8_t sreg_save \\r
- __attribute__((__cleanup__(__iSeiParam))) = 0\r
- #define NONATOMIC_RESTORESTATE uint8_t sreg_save \\r
- __attribute__((__cleanup__(__iRestore))) = 0 /* TODO */\r
- #define NONATOMIC_FORCEOFF uint8_t sreg_save \\r
- __attribute__((__cleanup__(__iCliParam))) = 0\r
-\r
- /* Private Interface - For use in library only: */\r
- #if !defined(__DOXYGEN__)\r
- /* Inline Functions: */\r
- static __inline__ uint8_t __iSeiRetVal(void)\r
- {\r
- ((avr32_sr_t*)AVR32_SR_T)->gm = true;\r
- return 1;\r
- }\r
-\r
- static __inline__ uint8_t __iCliRetVal(void)\r
- {\r
- ((avr32_sr_t*)AVR32_SR_T)->gm = false;\r
- return 1;\r
- }\r
-\r
- static __inline__ void __iSeiParam(const uint8_t *__s)\r
- {\r
- ((avr32_sr_t*)AVR32_SR_T)->gm = true;\r
- __asm__ volatile ("" ::: "memory");\r
- (void)__s;\r
- }\r
-\r
- static __inline__ void __iCliParam(const uint8_t *__s)\r
- {\r
- ((avr32_sr_t*)AVR32_SR_T)->gm = false;\r
- __asm__ volatile ("" ::: "memory");\r
- (void)__s;\r
- }\r
-\r
- static __inline__ void __iRestore(const uint8_t *__s)\r
- {\r
- ((avr32_sr_t*)AVR32_SR_T)->gm = *__s;\r
- __asm__ volatile ("" ::: "memory");\r
- }\r
- #endif\r
-\r
-#endif\r
* such as the Joystick driver, where the removal would adversely affect the code's operation is still disallowed. */\r
#define BOARD_NONE 10\r
\r
- /** Selects the EVK1101 specific board drivers, including Temperature, Button, Dataflash, Joystick and LED drivers. */\r
- #define BOARD_EVK1101 11\r
-\r
#if !defined(__DOXYGEN__)\r
#define BOARD_ BOARD_NONE\r
\r
#define __COMMON_H__\r
\r
/* Includes: */\r
- #if defined(__AVR32__)\r
- #include <avr32/io.h>\r
- #include <stdint.h>\r
-\r
- #include "Atomic.h"\r
-\r
- #define PROGMEM const\r
- #elif defined(__AVR__)\r
- #include <avr/io.h>\r
- #endif\r
-\r
+ #include <avr/io.h>\r
+ \r
#include "FunctionAttributes.h"\r
#include "BoardTypes.h"\r
\r
}\r
}\r
\r
- /* Type Defines: */\r
- #if defined(__AVR32__)\r
- /** Type define for an unsigned native word-sized chunk of data. */\r
- typedef uint32_t uintN_t;\r
-\r
- /** Type define for a signed native word-sized chunk of data. */\r
- typedef int32_t intN_t;\r
- #elif defined(__AVR__)\r
- /** Type define for an unsigned native word-sized chunk of data. */\r
- typedef uint8_t uintN_t;\r
-\r
- /** Type define for a signed native word-sized chunk of data. */\r
- typedef int8_t intN_t;\r
- #endif\r
#endif\r
\r
/** @} */\r
// TODO: Initialize the appropriate port pins as an inputs here, with pull-ups\r
}\r
\r
- static inline uintN_t Buttons_GetStatus(void)\r
+ static inline uint8_t Buttons_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t Buttons_GetStatus(void)\r
{\r
// TODO: Return current button status here, debounced if required\r
}\r
// TODO: Initialize joystick port pins as inputs with pull-ups\r
}\r
\r
- static inline uintN_t Joystick_GetStatus(void)\r
+ static inline uint8_t Joystick_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t Joystick_GetStatus(void)\r
{\r
// TODO: Return current joystick position data which can be obtained by masking against the JOY_* macros\r
}\r
// TODO: Add code to initialize LED port pins as outputs here\r
}\r
\r
- static inline void LEDs_TurnOnLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_TurnOnLEDs(const uint8_t LEDMask)\r
{\r
// TODO: Add code to turn on LEDs given in the LEDMask mask here, leave others as-is\r
}\r
\r
- static inline void LEDs_TurnOffLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_TurnOffLEDs(const uint8_t LEDMask)\r
{\r
// TODO: Add code to turn off LEDs given in the LEDMask mask here, leave others as-is\r
}\r
\r
- static inline void LEDs_SetAllLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_SetAllLEDs(const uint8_t LEDMask)\r
{\r
// TODO: Add code to turn on only LEDs given in the LEDMask mask here, all others off\r
}\r
\r
- static inline void LEDs_ChangeLEDs(const uintN_t LEDMask, const uintN_t ActiveMask)\r
+ static inline void LEDs_ChangeLEDs(const uint8_t LEDMask, const uint8_t ActiveMask)\r
{\r
// TODO: Add code to set the Leds in the given LEDMask to the status given in ActiveMask here\r
}\r
\r
- static inline void LEDs_ToggleLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_ToggleLEDs(const uint8_t LEDMask)\r
{\r
// TODO: Add code to toggle the Leds in the given LEDMask, ignoring all others\r
}\r
\r
- static inline uintN_t LEDs_GetLEDs(void)\r
+ static inline uint8_t LEDs_GetLEDs(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t LEDs_GetLEDs(void)\r
{\r
// TODO: Add code to return the current LEDs status' here which can be masked against LED_LED* macros\r
}\r
PORTD |= BUTTONS_BUTTON1;\r
}\r
\r
- static inline uintN_t Buttons_GetStatus(void)\r
+ static inline uint8_t Buttons_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t Buttons_GetStatus(void)\r
{\r
return ((PIND & BUTTONS_BUTTON1) ^ BUTTONS_BUTTON1);\r
}\r
PORTD &= ~LEDS_ALL_LEDS;\r
}\r
\r
- static inline void LEDs_TurnOnLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_TurnOnLEDs(const uint8_t LEDMask)\r
{\r
PORTD |= (LEDMask & LEDS_ALL_LEDS);\r
}\r
\r
- static inline void LEDs_TurnOffLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_TurnOffLEDs(const uint8_t LEDMask)\r
{\r
PORTD &= ~(LEDMask & LEDS_ALL_LEDS);\r
}\r
\r
- static inline void LEDs_SetAllLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_SetAllLEDs(const uint8_t LEDMask)\r
{\r
PORTD = (PORTD & ~LEDS_ALL_LEDS) | (LEDMask & LEDS_ALL_LEDS);\r
}\r
\r
- static inline void LEDs_ChangeLEDs(const uintN_t LEDMask, const uintN_t ActiveMask)\r
+ static inline void LEDs_ChangeLEDs(const uint8_t LEDMask, const uint8_t ActiveMask)\r
{\r
PORTD = ((PORTD & ~(LEDMask & LEDS_ALL_LEDS)) | (ActiveMask & LEDS_ALL_LEDS));\r
}\r
\r
- static inline void LEDs_ToggleLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_ToggleLEDs(const uint8_t LEDMask)\r
{\r
PORTD = (PORTD ^ (LEDMask & LEDS_ALL_LEDS));\r
}\r
\r
- static inline uintN_t LEDs_GetLEDs(void)\r
+ static inline uint8_t LEDs_GetLEDs(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t LEDs_GetLEDs(void)\r
{\r
return (PORTD & LEDS_ALL_LEDS);\r
}\r
PORTD |= BUTTONS_BUTTON1;\r
}\r
\r
- static inline uintN_t Buttons_GetStatus(void)\r
+ static inline uint8_t Buttons_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t Buttons_GetStatus(void)\r
{\r
return ((PIND & BUTTONS_BUTTON1) ^ BUTTONS_BUTTON1);\r
}\r
\r
/** \file\r
*\r
- * Board specific joystick driver header for the BUMBLEB. The BUMBLEB third-party board does not include any on-board\r
+ * Board specific joystick driver header for the USBKEY. The BUMBLEB third-party board does not include any on-board\r
* peripherals, but does have an officially recommended external peripheral layout for buttons, LEDs and a Joystick.\r
*\r
* \note This file should not be included directly. It is automatically included as needed by the joystick driver\r
/** \ingroup Group_Joystick\r
* @defgroup Group_Joystick_BUMBLEB BUMBLEB\r
*\r
- * Board specific joystick driver header for the BUMBLEB. The BUMBLEB third-party board does not include any on-board\r
+ * Board specific joystick driver header for the USBKEY. The BUMBLEB third-party board does not include any on-board\r
* peripherals, but does have an officially recommended external peripheral layout for buttons, LEDs and a Joystick.\r
*\r
* \note This file should not be included directly. It is automatically included as needed by the joystick driver\r
PORTD |= JOY_MASK;\r
}\r
\r
- static inline uintN_t Joystick_GetStatus(void)\r
+ static inline uint8_t Joystick_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t Joystick_GetStatus(void)\r
{\r
return (uint8_t)(~PIND & JOY_MASK);\r
}\r
PORTB &= ~LEDS_ALL_LEDS;\r
}\r
\r
- static inline void LEDs_TurnOnLEDs(const uintN_t LedMask)\r
+ static inline void LEDs_TurnOnLEDs(const uint8_t LedMask)\r
{\r
PORTB |= LedMask;\r
}\r
\r
- static inline void LEDs_TurnOffLEDs(const uintN_t LedMask)\r
+ static inline void LEDs_TurnOffLEDs(const uint8_t LedMask)\r
{\r
PORTB &= ~LedMask;\r
}\r
\r
- static inline void LEDs_SetAllLEDs(const uintN_t LedMask)\r
+ static inline void LEDs_SetAllLEDs(const uint8_t LedMask)\r
{\r
PORTB = ((PORTB & ~LEDS_ALL_LEDS) | LedMask);\r
}\r
\r
- static inline void LEDs_ChangeLEDs(const uintN_t LedMask, const uintN_t ActiveMask)\r
+ static inline void LEDs_ChangeLEDs(const uint8_t LedMask, const uint8_t ActiveMask)\r
{\r
PORTB = ((PORTB & ~LedMask) | ActiveMask);\r
}\r
\r
- static inline uintN_t LEDs_GetLEDs(void)\r
+ static inline uint8_t LEDs_GetLEDs(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t LEDs_GetLEDs(void)\r
{\r
return (PORTB & LEDS_ALL_LEDS);\r
}\r
#include "EVK527/Buttons.h"\r
#elif (BOARD == BOARD_USER)\r
#include "Board/Buttons.h"\r
- #elif (BOARD == BOARD_EVK1101)\r
- #include "EVK1101/Buttons.h"\r
#else\r
#error The selected board does not contain any GPIO buttons.\r
#endif\r
*\r
* \return Mask indicating which board buttons are currently pressed\r
*/\r
- static inline uintN_t Buttons_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t Buttons_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
#endif\r
\r
#endif\r
static inline uint8_t Dataflash_TransferByte(const uint8_t Byte) ATTR_ALWAYS_INLINE;\r
static inline uint8_t Dataflash_TransferByte(const uint8_t Byte)\r
{\r
- return SPI_Transfer(Byte);\r
+ return SPI_TransferByte(Byte);\r
}\r
\r
/** Sends a byte to the currently selected dataflash IC, and ignores the next byte from the dataflash.\r
static inline void Dataflash_SendByte(const uint8_t Byte) ATTR_ALWAYS_INLINE;\r
static inline void Dataflash_SendByte(const uint8_t Byte)\r
{\r
- SPI_Send(Byte);\r
+ SPI_SendByte(Byte);\r
}\r
\r
/** Sends a dummy byte to the currently selected dataflash IC, and returns the next byte from the dataflash.\r
static inline uint8_t Dataflash_ReceiveByte(void) ATTR_ALWAYS_INLINE ATTR_WARN_UNUSED_RESULT;\r
static inline uint8_t Dataflash_ReceiveByte(void)\r
{\r
- return SPI_Receive();\r
+ return SPI_ReceiveByte();\r
}\r
\r
/* Includes: */\r
#include "EVK527/Dataflash.h"\r
#elif (BOARD == BOARD_USER)\r
#include "Board/Dataflash.h"\r
- #elif (BOARD = BOARD_EVK1101)\r
- #include "EVK1101/Dataflash.h"\r
#else\r
#error The selected board does not contain a dataflash IC.\r
#endif\r
+++ /dev/null
-/*\r
- LUFA Library\r
- Copyright (C) Dean Camera, 2010.\r
- \r
- dean [at] fourwalledcubicle [dot] com\r
- www.fourwalledcubicle.com\r
-*/\r
-\r
-/*\r
- Copyright 2010 Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
-\r
- Permission to use, copy, modify, distribute, and sell this \r
- software and its documentation for any purpose is hereby granted\r
- without fee, provided that the above copyright notice appear in \r
- all copies and that both that the copyright notice and this\r
- permission notice and warranty disclaimer appear in supporting \r
- documentation, and that the name of the author not be used in \r
- advertising or publicity pertaining to distribution of the \r
- software without specific, written prior permission.\r
-\r
- The author disclaim all warranties with regard to this\r
- software, including all implied warranties of merchantability\r
- and fitness. In no event shall the author be liable for any\r
- special, indirect or consequential damages or any damages\r
- whatsoever resulting from loss of use, data or profits, whether\r
- in an action of contract, negligence or other tortious action,\r
- arising out of or in connection with the use or performance of\r
- this software.\r
-*/\r
-\r
-/** \file\r
- *\r
- * Board specific Buttons driver header for the EVK1101.\r
- *\r
- * \note This file should not be included directly. It is automatically included as needed by the Buttons driver\r
- * dispatch header located in LUFA/Drivers/Board/Buttons.h.\r
- */\r
-\r
-/** \ingroup Group_Buttons\r
- * @defgroup Group_Buttons_EVK1101 EVK1101\r
- *\r
- * Board specific Buttons driver header for the EVK1101.\r
- *\r
- * \note This file should not be included directly. It is automatically included as needed by the Buttons driver\r
- * dispatch header located in LUFA/Drivers/Board/Buttons.h.\r
- *\r
- * @{\r
- */\r
-\r
-#ifndef __BUTTONS_EVK1101_H__\r
-#define __BUTTONS_EVK1101_H__\r
-\r
- /* Includes: */\r
- #include <avr32/io.h>\r
- #include <stdbool.h>\r
-\r
- #include "../../../Common/Common.h"\r
-\r
- /* Enable C linkage for C++ Compilers: */\r
- #if defined(__cplusplus)\r
- extern "C" {\r
- #endif\r
-\r
- /* Preprocessor Checks: */\r
- #if !defined(__INCLUDE_FROM_BUTTONS_H)\r
- #error Do not include this file directly. Include LUFA/Drivers/Board/Buttons.h instead.\r
- #endif\r
- \r
- /* Public Interface - May be used in end-application: */\r
- /* Macros: */\r
- /** Button mask for the first button on the board. */\r
- #define BUTTONS_BUTTON1 (1UL << 2)\r
- \r
- /** Button mask for the second button on the board. */\r
- #define BUTTONS_BUTTON2 (1UL << 3)\r
-\r
- /* Inline Functions: */\r
- #if !defined(__DOXYGEN__)\r
- static inline void Buttons_Init(void)\r
- {\r
- AVR32_GPIO.port[1].gpers = (BUTTONS_BUTTON1 | BUTTONS_BUTTON2);\r
- AVR32_GPIO.port[1].puers = (BUTTONS_BUTTON1 | BUTTONS_BUTTON2);\r
- }\r
-\r
- static inline uintN_t Buttons_GetStatus(void)\r
- {\r
- return (~AVR32_GPIO.port[1].pvr & (BUTTONS_BUTTON1 | BUTTONS_BUTTON2));\r
- }\r
- #endif\r
-\r
- /* Disable C linkage for C++ Compilers: */\r
- #if defined(__cplusplus)\r
- }\r
- #endif\r
- \r
-#endif\r
-\r
-/** @} */\r
+++ /dev/null
-/*\r
- LUFA Library\r
- Copyright (C) Dean Camera, 2010.\r
- \r
- dean [at] fourwalledcubicle [dot] com\r
- www.fourwalledcubicle.com\r
-*/\r
-\r
-/*\r
- Copyright 2010 Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
-\r
- Permission to use, copy, modify, distribute, and sell this \r
- software and its documentation for any purpose is hereby granted\r
- without fee, provided that the above copyright notice appear in \r
- all copies and that both that the copyright notice and this\r
- permission notice and warranty disclaimer appear in supporting \r
- documentation, and that the name of the author not be used in \r
- advertising or publicity pertaining to distribution of the \r
- software without specific, written prior permission.\r
-\r
- The author disclaim all warranties with regard to this\r
- software, including all implied warranties of merchantability\r
- and fitness. In no event shall the author be liable for any\r
- special, indirect or consequential damages or any damages\r
- whatsoever resulting from loss of use, data or profits, whether\r
- in an action of contract, negligence or other tortious action,\r
- arising out of or in connection with the use or performance of\r
- this software.\r
-*/\r
-\r
-/** \file\r
- *\r
- * Board specific joystick driver header for the EVK1101.\r
- *\r
- * \note This file should not be included directly. It is automatically included as needed by the joystick driver\r
- * dispatch header located in LUFA/Drivers/Board/Joystick.h.\r
- */\r
-\r
-/** \ingroup Group_Joystick\r
- * @defgroup Group_Joystick_EVK1101 EVK1101\r
- *\r
- * Board specific joystick driver header for the EVK1101.\r
- *\r
- * \note This file should not be included directly. It is automatically included as needed by the joystick driver\r
- * dispatch header located in LUFA/Drivers/Board/Joystick.h.\r
- *\r
- * @{\r
- */\r
-\r
-#ifndef __JOYSTICK_EVK1101_H__\r
-#define __JOYSTICK_EVK1101_H__\r
-\r
- /* Includes: */\r
- #include <avr32/io.h>\r
-\r
- #include "../../../Common/Common.h"\r
-\r
- /* Enable C linkage for C++ Compilers: */\r
- #if defined(__cplusplus)\r
- extern "C" {\r
- #endif\r
-\r
- /* Preprocessor Checks: */\r
- #if !defined(__INCLUDE_FROM_JOYSTICK_H)\r
- #error Do not include this file directly. Include LUFA/Drivers/Board/Joystick.h instead.\r
- #endif\r
-\r
- /* Private Interface - For use in library only: */\r
- #if !defined(__DOXYGEN__)\r
- /* Macros: */\r
- #define JOY_MASK_PA (1 << 13)\r
- #define JOY_MASK_PB ((1 << 6) | (1 << 7) | (1 << 8) | (1 << 9))\r
- #endif\r
-\r
- /* Public Interface - May be used in end-application: */\r
- /* Macros: */\r
- /** Mask for the joystick being pushed in the left direction. */\r
- #define JOY_LEFT (1UL << 6)\r
-\r
- /** Mask for the joystick being pushed in the upward direction. */\r
- #define JOY_UP (1UL << 7)\r
-\r
- /** Mask for the joystick being pushed in the right direction. */\r
- #define JOY_RIGHT (1UL << 8)\r
-\r
- /** Mask for the joystick being pushed in the downward direction. */\r
- #define JOY_DOWN (1UL << 9)\r
-\r
- /** Mask for the joystick being pushed inward. */\r
- #define JOY_PRESS (1UL << 13)\r
- \r
- /* Inline Functions: */\r
- #if !defined(__DOXYGEN__)\r
- static inline void Joystick_Init(void)\r
- {\r
- AVR32_GPIO.port[0].gpers = JOY_MASK_PA;\r
- AVR32_GPIO.port[0].puers = JOY_MASK_PA;\r
- AVR32_GPIO.port[1].gpers = JOY_MASK_PB;\r
- AVR32_GPIO.port[1].puers = JOY_MASK_PB;\r
- }\r
- \r
- static inline uintN_t Joystick_GetStatus(void)\r
- {\r
- return ((~AVR32_GPIO.port[1].pvr & JOY_MASK_PB) |\r
- (~AVR32_GPIO.port[0].pvr & JOY_MASK_PA));\r
- }\r
- #endif\r
-\r
- /* Disable C linkage for C++ Compilers: */\r
- #if defined(__cplusplus)\r
- }\r
- #endif\r
-\r
-#endif\r
-\r
-/** @} */\r
+++ /dev/null
-/*\r
- LUFA Library\r
- Copyright (C) Dean Camera, 2010.\r
- \r
- dean [at] fourwalledcubicle [dot] com\r
- www.fourwalledcubicle.com\r
-*/\r
-\r
-/*\r
- Copyright 2010 Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
-\r
- Permission to use, copy, modify, distribute, and sell this \r
- software and its documentation for any purpose is hereby granted\r
- without fee, provided that the above copyright notice appear in \r
- all copies and that both that the copyright notice and this\r
- permission notice and warranty disclaimer appear in supporting \r
- documentation, and that the name of the author not be used in \r
- advertising or publicity pertaining to distribution of the \r
- software without specific, written prior permission.\r
-\r
- The author disclaim all warranties with regard to this\r
- software, including all implied warranties of merchantability\r
- and fitness. In no event shall the author be liable for any\r
- special, indirect or consequential damages or any damages\r
- whatsoever resulting from loss of use, data or profits, whether\r
- in an action of contract, negligence or other tortious action,\r
- arising out of or in connection with the use or performance of\r
- this software.\r
-*/\r
-\r
-/** \file\r
- *\r
- * Board specific LED driver header for the EVK1101.\r
- *\r
- * \note This file should not be included directly. It is automatically included as needed by the LEDs driver\r
- * dispatch header located in LUFA/Drivers/Board/LEDs.h.\r
- */\r
-\r
-/** \ingroup Group_LEDs\r
- * @defgroup Group_LEDs_EVK1101 EVK1101\r
- *\r
- * Board specific LED driver header for the EVK1101.\r
- *\r
- * \note This file should not be included directly. It is automatically included as needed by the LEDs driver\r
- * dispatch header located in LUFA/Drivers/Board/LEDs.h.\r
- *\r
- * @{\r
- */\r
-\r
-#ifndef __LEDS_EVK1101_H__\r
-#define __LEDS_EVK1101_H__\r
-\r
- /* Includes: */\r
- #include <avr32/io.h>\r
-\r
- #include "../../../Common/Common.h"\r
-\r
- /* Enable C linkage for C++ Compilers: */\r
- #if defined(__cplusplus)\r
- extern "C" {\r
- #endif\r
-\r
- /* Preprocessor Checks: */\r
- #if !defined(__INCLUDE_FROM_LEDS_H)\r
- #error Do not include this file directly. Include LUFA/Drivers/Board/LEDS.h instead.\r
- #endif\r
-\r
- /* Public Interface - May be used in end-application: */\r
- /* Macros: */\r
- /** LED mask for the first LED on the board. */\r
- #define LEDS_LED1 (1UL << 7)\r
-\r
- /** LED mask for the second LED on the board. */\r
- #define LEDS_LED2 (1UL << 8)\r
-\r
- /** LED mask for the third LED on the board. */\r
- #define LEDS_LED3 (1UL << 21)\r
-\r
- /** LED mask for the fourth LED on the board. */\r
- #define LEDS_LED4 (1UL << 22)\r
-\r
- /** LED mask for all the LEDs on the board. */\r
- #define LEDS_ALL_LEDS (LEDS_LED1 | LEDS_LED2 | LEDS_LED3 | LEDS_LED4)\r
-\r
- /** LED mask for the none of the board LEDs */\r
- #define LEDS_NO_LEDS 0\r
-\r
- /* Inline Functions: */\r
- #if !defined(__DOXYGEN__)\r
- static inline void LEDs_Init(void)\r
- {\r
- AVR32_GPIO.port[0].gpers = LEDS_ALL_LEDS;\r
- AVR32_GPIO.port[0].oders = LEDS_ALL_LEDS;\r
- AVR32_GPIO.port[0].ovrs = LEDS_ALL_LEDS;\r
- }\r
- \r
- static inline void LEDs_TurnOnLEDs(const uintN_t LEDMask)\r
- {\r
- AVR32_GPIO.port[0].ovrc = LEDMask;\r
- }\r
-\r
- static inline void LEDs_TurnOffLEDs(const uintN_t LEDMask)\r
- {\r
- AVR32_GPIO.port[0].ovrs = LEDMask;\r
- }\r
-\r
- static inline void LEDs_SetAllLEDs(const uintN_t LEDMask)\r
- {\r
- AVR32_GPIO.port[0].ovrs = LEDS_ALL_LEDS;\r
- AVR32_GPIO.port[0].ovrc = LEDMask;\r
- }\r
- \r
- static inline void LEDs_ChangeLEDs(const uintN_t LEDMask, const uintN_t ActiveMask)\r
- {\r
- AVR32_GPIO.port[0].ovrs = LEDMask;\r
- AVR32_GPIO.port[0].ovrc = ActiveMask;\r
- }\r
- \r
- static inline void LEDs_ToggleLEDs(const uintN_t LEDMask)\r
- {\r
- AVR32_GPIO.port[0].ovrt = LEDMask;\r
- }\r
- \r
- static inline uintN_t LEDs_GetLEDs(void)\r
- {\r
- return (AVR32_GPIO.port[0].ovr & LEDS_ALL_LEDS);\r
- }\r
- #endif\r
-\r
- /* Disable C linkage for C++ Compilers: */\r
- #if defined(__cplusplus)\r
- }\r
- #endif\r
- \r
-#endif\r
-\r
-/** @} */\r
PORTE |= BUTTONS_BUTTON1;\r
}\r
\r
- static inline uintN_t Buttons_GetStatus(void)\r
+ static inline uint8_t Buttons_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t Buttons_GetStatus(void)\r
{\r
return ((PINE & BUTTONS_BUTTON1) ^ BUTTONS_BUTTON1);\r
}\r
/* Private Interface - For use in library only: */\r
#if !defined(__DOXYGEN__)\r
/* Macros: */\r
- #define JOY_FMASK ((1 << 4) | (1 << 5) | (1 << 6) | (1 << 7))\r
+ #define JOY_FMASK ((1 << 4) | (1 << 5) | (1 << 6) | (1 << 7))\r
#define JOY_CMASK (1 << 6))\r
#endif\r
\r
PORTC |= JOY_CMASK; \r
}\r
\r
- static inline uintN_t Joystick_GetStatus(void)\r
+ static inline uint8_t Joystick_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t Joystick_GetStatus(void)\r
{\r
return (((uint8_t)~PINF & JOY_FMASK) | (((uint8_t)~PINC & JOY_CMASK) >> 3));\r
}\r
PORTD &= ~LEDS_ALL_LEDS;\r
}\r
\r
- static inline void LEDs_TurnOnLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_TurnOnLEDs(const uint8_t LEDMask)\r
{\r
PORTD |= LEDMask;\r
}\r
\r
- static inline void LEDs_TurnOffLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_TurnOffLEDs(const uint8_t LEDMask)\r
{\r
PORTD &= ~LEDMask;\r
}\r
\r
- static inline void LEDs_SetAllLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_SetAllLEDs(const uint8_t LEDMask)\r
{\r
PORTD = ((PORTD & ~LEDS_ALL_LEDS) | LEDMask);\r
}\r
\r
- static inline void LEDs_ChangeLEDs(const uintN_t LEDMask, const uintN_t ActiveMask)\r
+ static inline void LEDs_ChangeLEDs(const uint8_t LEDMask, const uint8_t ActiveMask)\r
{\r
PORTD = ((PORTD & ~LEDMask) | ActiveMask);\r
}\r
\r
- static inline void LEDs_ToggleLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_ToggleLEDs(const uint8_t LEDMask)\r
{\r
PORTD = (PORTD ^ (LEDMask & LEDS_ALL_LEDS));\r
}\r
\r
+ static inline uint8_t LEDs_GetLEDs(void) ATTR_WARN_UNUSED_RESULT;\r
static inline uint8_t LEDs_GetLEDs(void)\r
{\r
return (PORTD & LEDS_ALL_LEDS);\r
#include "EVK527/Joystick.h"\r
#elif (BOARD == BOARD_USER)\r
#include "Board/Joystick.h"\r
- #elif (BOARD == BOARD_EVK1101)\r
- #include "EVK1101/Joystick.h"\r
#else\r
#error The selected board does not contain a joystick.\r
#endif\r
* \return Mask indicating the joystick direction - see corresponding board specific Joystick.h file\r
* for direction masks\r
*/\r
- static inline uintN_t Joystick_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t Joystick_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
#endif\r
\r
#endif\r
static inline void LEDs_SetAllLEDs(const uint8_t LEDMask) {};\r
static inline void LEDs_ChangeLEDs(const uint8_t LEDMask, const uint8_t ActiveMask) {};\r
static inline void LEDs_ToggleLEDs(const uint8_t LEDMask) {};\r
- static inline uintN_t LEDs_GetLEDs(void) { return 0; }\r
+ static inline uint8_t LEDs_GetLEDs(void) { return 0; }\r
#elif (BOARD == BOARD_USBKEY)\r
#include "USBKEY/LEDs.h"\r
#elif (BOARD == BOARD_STK525)\r
#include "EVK527/LEDs.h" \r
#elif (BOARD == BOARD_USER)\r
#include "Board/LEDs.h"\r
- #elif (BOARD == BOARD_EVK1101)\r
- #include "EVK1101/LEDs.h"\r
#endif\r
\r
#if !defined(LEDS_LED1)\r
*\r
* \param[in] LEDMask Mask of the board LEDs to manipulate (see board-specific LEDs.h driver file)\r
*/\r
- static inline void LEDs_TurnOnLEDs(const uintN_t LEDMask);\r
+ static inline void LEDs_TurnOnLEDs(const uint8_t LEDMask);\r
\r
/** Turns off the LEDs specified in the given LED mask.\r
*\r
* \param[in] LEDMask Mask of the board LEDs to manipulate (see board-specific LEDs.h driver file)\r
*/\r
- static inline void LEDs_TurnOffLEDs(const uintN_t LEDMask);\r
+ static inline void LEDs_TurnOffLEDs(const uint8_t LEDMask);\r
\r
/** Turns off all LEDs not specified in the given LED mask, and turns on all the LEDs in the given LED\r
* mask.\r
*\r
* \param[in] LEDMask Mask of the board LEDs to manipulate (see board-specific LEDs.h driver file)\r
*/\r
- static inline void LEDs_SetAllLEDs(const uintN_t LEDMask);\r
+ static inline void LEDs_SetAllLEDs(const uint8_t LEDMask);\r
\r
/** Turns off all LEDs in the LED mask that are not set in the active mask, and turns on all the LEDs\r
* specified in both the LED and active masks.\r
* \param[in] LEDMask Mask of the board LEDs to manipulate (see board-specific LEDs.h driver file)\r
* \param[in] ActiveMask Mask of whether the LEDs in the LED mask should be turned on or off\r
*/\r
- static inline void LEDs_ChangeLEDs(const uintN_t LEDMask, const uintN_t ActiveMask);\r
+ static inline void LEDs_ChangeLEDs(const uint8_t LEDMask, const uint8_t ActiveMask);\r
\r
/** Toggles all LEDs in the LED mask, leaving all others in their current states.\r
*\r
* \param[in] LEDMask Mask of the board LEDs to manipulate (see board-specific LEDs.h driver file)\r
*/\r
- static inline void LEDs_ToggleLEDs(const uintN_t LEDMask);\r
+ static inline void LEDs_ToggleLEDs(const uint8_t LEDMask);\r
\r
/** Returns the status of all the board LEDs; set LED masks in the return value indicate that the\r
* corresponding LED is on.\r
*\r
* \return Mask of the board LEDs which are currently turned on\r
*/\r
- static inline uintN_t LEDs_GetLEDs(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t LEDs_GetLEDs(void) ATTR_WARN_UNUSED_RESULT;\r
#endif\r
\r
#endif\r
PORTE |= (LEDS_PORTE_LEDS << LEDS_PORTE_MASK_SHIFT);\r
}\r
\r
- static inline void LEDs_TurnOnLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_TurnOnLEDs(const uint8_t LEDMask)\r
{\r
PORTD |= (LEDMask & LEDS_LED1);\r
PORTD &= ~(LEDMask & LEDS_LED2); \r
PORTE &= ~((LEDMask & LEDS_PORTE_LEDS) << LEDS_PORTE_MASK_SHIFT);\r
}\r
\r
- static inline void LEDs_TurnOffLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_TurnOffLEDs(const uint8_t LEDMask)\r
{\r
PORTD &= ~(LEDMask & LEDS_LED1);\r
PORTD |= (LEDMask & LEDS_LED2);\r
PORTE |= ((LEDMask & LEDS_PORTE_LEDS) << LEDS_PORTE_MASK_SHIFT);\r
}\r
\r
- static inline void LEDs_SetAllLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_SetAllLEDs(const uint8_t LEDMask)\r
{\r
PORTD = (((PORTD & ~LEDS_LED1) | (LEDMask & LEDS_LED1)) |\r
((PORTD | LEDS_LED2) & ~(LEDMask & LEDS_LED2)));\r
~((LEDMask & LEDS_PORTE_LEDS) << LEDS_PORTE_MASK_SHIFT));\r
}\r
\r
- static inline void LEDs_ChangeLEDs(const uintN_t LEDMask, const uintN_t ActiveMask)\r
+ static inline void LEDs_ChangeLEDs(const uint8_t LEDMask, const uint8_t ActiveMask)\r
{\r
PORTD = (((PORTD & ~(LEDMask & LEDS_LED1)) | (ActiveMask & LEDS_LED1)) |\r
((PORTD | (LEDMask & LEDS_LED2)) & ~(ActiveMask & LEDS_LED2)));\r
~((ActiveMask & LEDS_PORTE_LEDS) << LEDS_PORTE_MASK_SHIFT));\r
}\r
\r
- static inline void LEDs_ToggleLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_ToggleLEDs(const uint8_t LEDMask)\r
{\r
PORTD = (PORTD ^ (LEDMask & LEDS_PORTD_LEDS));\r
PORTE = (PORTE ^ ((LEDMask & LEDS_PORTE_LEDS) << LEDS_PORTE_MASK_SHIFT));\r
}\r
\r
+ static inline uint8_t LEDs_GetLEDs(void) ATTR_WARN_UNUSED_RESULT;\r
static inline uint8_t LEDs_GetLEDs(void)\r
{\r
return (((PORTD & LEDS_LED1) | (~PORTD & LEDS_LED2)) |\r
PORTE |= BUTTONS_BUTTON1;\r
}\r
\r
- static inline uintN_t Buttons_GetStatus(void)\r
+ static inline uint8_t Buttons_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t Buttons_GetStatus(void)\r
{\r
return ((PINE & BUTTONS_BUTTON1) ^ BUTTONS_BUTTON1);\r
}\r
PORTE |= JOY_EMASK; \r
}\r
\r
- static inline uintN_t Joystick_GetStatus(void)\r
+ static inline uint8_t Joystick_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t Joystick_GetStatus(void)\r
{\r
return (((uint8_t)~PINB & JOY_BMASK) | (((uint8_t)~PINE & JOY_EMASK) >> 1));\r
}\r
PORTD &= ~LEDS_ALL_LEDS;\r
}\r
\r
- static inline void LEDs_TurnOnLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_TurnOnLEDs(const uint8_t LEDMask)\r
{\r
PORTD |= LEDMask;\r
}\r
\r
- static inline void LEDs_TurnOffLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_TurnOffLEDs(const uint8_t LEDMask)\r
{\r
PORTD &= ~LEDMask;\r
}\r
\r
- static inline void LEDs_SetAllLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_SetAllLEDs(const uint8_t LEDMask)\r
{\r
PORTD = ((PORTD & ~LEDS_ALL_LEDS) | LEDMask);\r
}\r
\r
- static inline void LEDs_ChangeLEDs(const uintN_t LEDMask, const uintN_t ActiveMask)\r
+ static inline void LEDs_ChangeLEDs(const uint8_t LEDMask, const uint8_t ActiveMask)\r
{\r
PORTD = ((PORTD & ~LEDMask) | ActiveMask);\r
}\r
\r
- static inline void LEDs_ToggleLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_ToggleLEDs(const uint8_t LEDMask)\r
{\r
PORTD = (PORTD ^ (LEDMask & LEDS_ALL_LEDS));\r
}\r
\r
- static inline uintN_t LEDs_GetLEDs(void)\r
+ static inline uint8_t LEDs_GetLEDs(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t LEDs_GetLEDs(void)\r
{\r
return (PORTD & LEDS_ALL_LEDS);\r
}\r
PORTD |= BUTTONS_BUTTON1;\r
}\r
\r
- static inline uintN_t Buttons_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
- static inline uintN_t Buttons_GetStatus(void)\r
+ static inline uint8_t Buttons_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t Buttons_GetStatus(void)\r
{\r
return ((PIND & BUTTONS_BUTTON1) ^ BUTTONS_BUTTON1);\r
}\r
PORTB |= JOY_BMASK;\r
}\r
\r
- static inline uintN_t Joystick_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
- static inline uintN_t Joystick_GetStatus(void)\r
+ static inline uint8_t Joystick_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t Joystick_GetStatus(void)\r
{\r
return ((uint8_t)~PINB & JOY_BMASK);\r
}\r
PORTD &= ~LEDS_ALL_LEDS;\r
}\r
\r
- static inline void LEDs_TurnOnLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_TurnOnLEDs(const uint8_t LEDMask)\r
{\r
PORTD |= LEDMask;\r
}\r
\r
- static inline void LEDs_TurnOffLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_TurnOffLEDs(const uint8_t LEDMask)\r
{\r
PORTD &= ~LEDMask;\r
}\r
\r
- static inline void LEDs_SetAllLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_SetAllLEDs(const uint8_t LEDMask)\r
{\r
PORTD = ((PORTD & ~LEDS_ALL_LEDS) | LEDMask);\r
}\r
\r
- static inline void LEDs_ChangeLEDs(const uintN_t LEDMask, const uintN_t ActiveMask)\r
+ static inline void LEDs_ChangeLEDs(const uint8_t LEDMask, const uint8_t ActiveMask)\r
{\r
PORTD = ((PORTD & ~(LEDMask & LEDS_ALL_LEDS)) | (ActiveMask & LEDS_ALL_LEDS));\r
}\r
\r
- static inline void LEDs_ToggleLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_ToggleLEDs(const uint8_t LEDMask)\r
{\r
PORTD = (PORTD ^ (LEDMask & LEDS_ALL_LEDS));\r
}\r
\r
- static inline uintN_t LEDs_GetLEDs(void)\r
+ static inline uint8_t LEDs_GetLEDs(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t LEDs_GetLEDs(void)\r
{\r
return (PORTD & LEDS_ALL_LEDS);\r
}\r
{\r
uint16_t Temp_ADC = ADC_GetChannelReading(ADC_REFERENCE_AVCC | ADC_RIGHT_ADJUSTED | TEMP_ADC_CHANNEL_MASK);\r
\r
- #if defined(__AVR32__)\r
- if (Temp_ADC > Temperature_Lookup[0])\r
- return TEMP_MIN_TEMP; \r
-\r
- for (uint16_t Index = 0; Index < TEMP_TABLE_SIZE; Index++)\r
- {\r
- if (Temp_ADC > Temperature_Lookup[Index])\r
- return (Index + TEMP_TABLE_OFFSET);\r
- }\r
- #elif defined(__AVR__)\r
if (Temp_ADC > pgm_read_word(&Temperature_Lookup[0]))\r
- return TEMP_MIN_TEMP; \r
+ return TEMP_MIN_TEMP;\r
\r
for (uint16_t Index = 0; Index < TEMP_TABLE_SIZE; Index++)\r
{\r
if (Temp_ADC > pgm_read_word(&Temperature_Lookup[Index]))\r
return (Index + TEMP_TABLE_OFFSET);\r
}\r
- #endif\r
\r
return TEMP_MAX_TEMP;\r
}\r
#define __TEMPERATURE_H__\r
\r
/* Includes: */\r
- #if defined(__AVR32__)\r
- #include <avr32/io.h>\r
- #include <stdint.h>\r
- #elif defined(__AVR__)\r
- #include <avr/io.h>\r
- #include <avr/pgmspace.h>\r
- #endif\r
+ #include <avr/pgmspace.h>\r
\r
#include "../../Common/Common.h"\r
#include "../Peripheral/ADC.h"\r
PORTE |= BUTTONS_BUTTON1;\r
}\r
\r
- static inline uintN_t Buttons_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
- static inline uintN_t Buttons_GetStatus(void)\r
+ static inline uint8_t Buttons_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t Buttons_GetStatus(void)\r
{\r
return ((PINE & BUTTONS_BUTTON1) ^ BUTTONS_BUTTON1);\r
}\r
PORTE |= JOY_EMASK; \r
}\r
\r
- static inline uintN_t Joystick_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
- static inline uintN_t Joystick_GetStatus(void)\r
+ static inline uint8_t Joystick_GetStatus(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t Joystick_GetStatus(void)\r
{\r
return (((uint8_t)~PINB & JOY_BMASK) | (((uint8_t)~PINE & JOY_EMASK) >> 1));\r
}\r
PORTD &= ~LEDS_ALL_LEDS;\r
}\r
\r
- static inline void LEDs_TurnOnLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_TurnOnLEDs(const uint8_t LEDMask)\r
{\r
PORTD |= LEDMask;\r
}\r
\r
- static inline void LEDs_TurnOffLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_TurnOffLEDs(const uint8_t LEDMask)\r
{\r
PORTD &= ~LEDMask;\r
}\r
\r
- static inline void LEDs_SetAllLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_SetAllLEDs(const uint8_t LEDMask)\r
{\r
PORTD = ((PORTD & ~LEDS_ALL_LEDS) | LEDMask);\r
}\r
\r
- static inline void LEDs_ChangeLEDs(const uintN_t LEDMask, const uintN_t ActiveMask)\r
+ static inline void LEDs_ChangeLEDs(const uint8_t LEDMask, const uint8_t ActiveMask)\r
{\r
PORTD = ((PORTD & ~LEDMask) | ActiveMask);\r
}\r
\r
- static inline void LEDs_ToggleLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_ToggleLEDs(const uint8_t LEDMask)\r
{\r
PORTD = (PORTD ^ (LEDMask & LEDS_ALL_LEDS));\r
}\r
\r
- static inline uintN_t LEDs_GetLEDs(void)\r
+ static inline uint8_t LEDs_GetLEDs(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t LEDs_GetLEDs(void)\r
{\r
return (PORTD & LEDS_ALL_LEDS);\r
}\r
PORTB |= LEDS_ALL_LEDS;\r
}\r
\r
- static inline void LEDs_TurnOnLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_TurnOnLEDs(const uint8_t LEDMask)\r
{\r
PORTB &= ~LEDMask;\r
}\r
\r
- static inline void LEDs_TurnOffLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_TurnOffLEDs(const uint8_t LEDMask)\r
{\r
PORTB |= LEDMask;\r
}\r
\r
- static inline void LEDs_SetAllLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_SetAllLEDs(const uint8_t LEDMask)\r
{\r
PORTB = ((PORTB | LEDS_ALL_LEDS) & ~LEDMask);\r
}\r
\r
- static inline void LEDs_ChangeLEDs(const uintN_t LEDMask, const uintN_t ActiveMask)\r
+ static inline void LEDs_ChangeLEDs(const uint8_t LEDMask, const uint8_t ActiveMask)\r
{\r
PORTB = ((PORTB | (LEDMask & LEDS_ALL_LEDS)) & (~ActiveMask & LEDS_ALL_LEDS));\r
}\r
\r
- static inline void LEDs_ToggleLEDs(const uintN_t LEDMask)\r
+ static inline void LEDs_ToggleLEDs(const uint8_t LEDMask)\r
{\r
PORTD = (PORTB ^ (LEDMask & LEDS_ALL_LEDS));\r
}\r
\r
- static inline uintN_t LEDs_GetLEDs(void)\r
+ static inline uint8_t LEDs_GetLEDs(void) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t LEDs_GetLEDs(void)\r
{\r
return (~PORTB & LEDS_ALL_LEDS);\r
}\r
#endif\r
\r
/* Includes: */\r
- #include "../../Common/Common.h" \r
-\r
#if (defined(__AVR_AT90USB1286__) || defined(__AVR_AT90USB646__) || \\r
defined(__AVR_AT90USB1287__) || defined(__AVR_AT90USB647__) || \\r
defined(__AVR_ATmega16U4__) || defined(__AVR_ATmega32U4__) || \\r
defined(__AVR_ATmega32U6__))\r
- #include "AVR8/ADC.h"\r
+ #include "AVRU4U6U7/ADC.h"\r
#else\r
#error "ADC is not available for the currently selected AVR model."\r
#endif\r
+++ /dev/null
-/*\r
- LUFA Library\r
- Copyright (C) Dean Camera, 2010.\r
- \r
- dean [at] fourwalledcubicle [dot] com\r
- www.fourwalledcubicle.com\r
-*/\r
-\r
-/*\r
- Copyright 2010 Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
-\r
- Permission to use, copy, modify, distribute, and sell this \r
- software and its documentation for any purpose is hereby granted\r
- without fee, provided that the above copyright notice appear in \r
- all copies and that both that the copyright notice and this\r
- permission notice and warranty disclaimer appear in supporting \r
- documentation, and that the name of the author not be used in \r
- advertising or publicity pertaining to distribution of the \r
- software without specific, written prior permission.\r
-\r
- The author disclaim all warranties with regard to this\r
- software, including all implied warranties of merchantability\r
- and fitness. In no event shall the author be liable for any\r
- special, indirect or consequential damages or any damages\r
- whatsoever resulting from loss of use, data or profits, whether\r
- in an action of contract, negligence or other tortious action,\r
- arising out of or in connection with the use or performance of\r
- this software.\r
-*/\r
-\r
-/** \file\r
- *\r
- * SPI driver for the 32-bit AVRs.\r
- *\r
- * \note This file should not be included directly. It is automatically included as needed by the SPI driver\r
- * dispatch header located in LUFA/Drivers/Peripheral/SPI.h.\r
- */\r
- \r
-/** \ingroup Group_SPI\r
- * @defgroup Group_SPI_AVR32 32-Bit AVR SPI Driver\r
- *\r
- * SPI driver for the 32-bit AVRs.\r
- *\r
- * \note This file should not be included directly. It is automatically included as needed by the ADC driver\r
- * dispatch header located in LUFA/Drivers/Peripheral/SPI.h.\r
- *\r
- * @{\r
- */\r
-\r
-#ifndef __SPI_AVR32_H__\r
-#define __SPI_AVR32_H__\r
-\r
- /* Includes: */\r
- #include <avr32/io.h>\r
- #include <stdbool.h>\r
-\r
- /* Preprocessor Checks: */\r
- #if !defined(__INCLUDE_FROM_SPI_H)\r
- #error Do not include this file directly. Include LUFA/Drivers/Peripheral/SPI.h instead.\r
- #endif\r
-\r
- /* Enable C linkage for C++ Compilers: */\r
- #if defined(__cplusplus)\r
- extern "C" {\r
- #endif\r
- \r
- /* Public Interface - May be used in end-application: */\r
- /* Macros: */\r
- /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 1. */\r
- #define SPI_SPEED_FCPU_DIV_1 0\r
-\r
- /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 32. */\r
- #define SPI_SPEED_FCPU_DIV_32 AVR32_SPI_MR_FDIV_MASK\r
- \r
- /** SPI chip selection mode for direct peripheral-to-CS pin connections. */\r
- #define SPI_CS_4BITDECODER AVR32_SPI_MR_PSDEC_MASK\r
- \r
- /** SPI chip selection mode for peripheral CS pin connections through a 4-bit decoder. */\r
- #define SPI_CS_DIRECT 0\r
- \r
- /** SPI mode mask for SPI_Init(). Indicates that the SPI interface should be initialized into slave mode. */\r
- #define SPI_MODE_SLAVE 0\r
-\r
- /** SPI mode mask for SPI_Init(). Indicates that the SPI interface should be initialized into master mode. */\r
- #define SPI_MODE_MASTER AVR32_SPI_MR_MSTR_MASK\r
-\r
- /* Inline Functions: */\r
- /** Initialises the SPI subsystem, ready for transfers. Must be called before calling any other\r
- * SPI routines.\r
- *\r
- * \note The individual AVR32 chip select control registers are left at their defaults; it is up to the user\r
- * to configure these seperately once the SPI module has been initialized.\r
- *\r
- * \note The physical GPIO pins for the AVR32's SPI are not altered; it is up to the user to\r
- * configure these seperately to connect the SPI module to the desired GPIO pins via the\r
- * GPIO MUX registers.\r
- *\r
- * \param[in] SPIOptions SPI Options, a mask consisting of one of each of the SPI_SPEED_*,\r
- * SPI_CS_* and SPI_MODE_* masks\r
- */\r
- static inline void SPI_Init(const uintN_t SPIOptions)\r
- {\r
- AVR32_PM.pbamask = (1 << 5);\r
-\r
- AVR32_SPI.CR.swrst = true;\r
- AVR32_SPI.CR.spien = true;\r
- AVR32_SPI.mr = SPIOptions;\r
- }\r
-\r
- /** Turns off the SPI driver, disabling and returning used hardware to their default configuration. */\r
- static inline void SPI_ShutDown(void)\r
- {\r
- AVR32_SPI.cr = AVR32_SPI_CR_SPIDIS_MASK;\r
-\r
- AVR32_PM.pbamask &= ~(1 << 5);\r
- }\r
- \r
- /** Sends and receives a transfer through the SPI interface, blocking until the transfer is complete.\r
- * The width of the data that is transferred is dependant on the settings of the currently selected\r
- * peripheral.\r
- *\r
- * \param[in] Data Data to send through the SPI interface\r
- *\r
- * \return Response data from the attached SPI device\r
- */\r
- static inline uint16_t SPI_Transfer(const uint16_t Data) ATTR_ALWAYS_INLINE;\r
- static inline uint16_t SPI_Transfer(const uint16_t Data)\r
- {\r
- while (!(AVR32_SPI.SR.tdre));\r
- AVR32_SPI.TDR.td = Data;\r
-\r
- while ((AVR32_SPI.sr & (AVR32_SPI_SR_RDRF_MASK | AVR32_SPI_SR_TXEMPTY_MASK)) !=\r
- (AVR32_SPI_SR_RDRF_MASK | AVR32_SPI_SR_TXEMPTY_MASK));\r
- return AVR32_SPI.RDR.rd;\r
- }\r
-\r
- /** Sends a transfer through the SPI interface, blocking until the transfer is complete. The response\r
- * data sent to from the attached SPI device is ignored. The width of the data that is transferred is\r
- * dependant on the settings of the currently selected peripheral.\r
- *\r
- * \param[in] Data Data to send through the SPI interface\r
- */\r
- static inline void SPI_Send(const uint16_t Data) ATTR_ALWAYS_INLINE;\r
- static inline void SPI_Send(const uint16_t Data)\r
- {\r
- while (!(AVR32_SPI.SR.tdre));\r
- AVR32_SPI.TDR.td = Data;\r
- }\r
-\r
- /** Sends a dummy transfer through the SPI interface, blocking until the transfer is complete. The response\r
- * data from the attached SPI device is returned. The width of the data that is transferred is dependant on\r
- * the settings of the currently selected peripheral.\r
- *\r
- * \return The response data from the attached SPI device\r
- */\r
- static inline uint16_t SPI_Receive(void) ATTR_ALWAYS_INLINE ATTR_WARN_UNUSED_RESULT;\r
- static inline uint16_t SPI_Receive(void)\r
- {\r
- while (!(AVR32_SPI.SR.tdre));\r
- AVR32_SPI.TDR.td = 0x0000;\r
-\r
- while ((AVR32_SPI.sr & (AVR32_SPI_SR_RDRF_MASK | AVR32_SPI_SR_TXEMPTY_MASK)) !=\r
- (AVR32_SPI_SR_RDRF_MASK | AVR32_SPI_SR_TXEMPTY_MASK));\r
- return AVR32_SPI.RDR.rd;\r
- }\r
-\r
- /* Disable C linkage for C++ Compilers: */\r
- #if defined(__cplusplus)\r
- }\r
- #endif\r
- \r
-#endif\r
-\r
-/** @} */\r
+++ /dev/null
-/*\r
- LUFA Library\r
- Copyright (C) Dean Camera, 2010.\r
- \r
- dean [at] fourwalledcubicle [dot] com\r
- www.fourwalledcubicle.com\r
-*/\r
-\r
-/*\r
- Copyright 2010 Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
-\r
- Permission to use, copy, modify, distribute, and sell this \r
- software and its documentation for any purpose is hereby granted\r
- without fee, provided that the above copyright notice appear in \r
- all copies and that both that the copyright notice and this\r
- permission notice and warranty disclaimer appear in supporting \r
- documentation, and that the name of the author not be used in \r
- advertising or publicity pertaining to distribution of the \r
- software without specific, written prior permission.\r
-\r
- The author disclaim all warranties with regard to this\r
- software, including all implied warranties of merchantability\r
- and fitness. In no event shall the author be liable for any\r
- special, indirect or consequential damages or any damages\r
- whatsoever resulting from loss of use, data or profits, whether\r
- in an action of contract, negligence or other tortious action,\r
- arising out of or in connection with the use or performance of\r
- this software.\r
-*/\r
-\r
-/** \file\r
- *\r
- * ADC driver for the 8-Bit AVRs containing a hardware ADC module.\r
- *\r
- * \note This file should not be included directly. It is automatically included as needed by the ADC driver\r
- * dispatch header located in LUFA/Drivers/Peripheral/ADC.h.\r
- */\r
-\r
-/** \ingroup Group_ADC\r
- * @defgroup Group_ADC_AVR8 8-Bit AVR ADC Driver\r
- *\r
- * ADC driver for 8-Bit AVRs containing a hardware ADC module.\r
- *\r
- * \note This file should not be included directly. It is automatically included as needed by the ADC driver\r
- * dispatch header located in LUFA/Drivers/Peripheral/ADC.h.\r
- *\r
- * @{\r
- */\r
- \r
-#ifndef __ADC_AVR8_H__\r
-#define __ADC_AVR8_H__\r
-\r
- /* Includes: */\r
- #include <avr/io.h>\r
- #include <stdbool.h>\r
- \r
- /* Enable C linkage for C++ Compilers: */\r
- #if defined(__cplusplus)\r
- extern "C" {\r
- #endif\r
-\r
- /* Preprocessor Checks: */\r
- #if !defined(__INCLUDE_FROM_ADC_H)\r
- #error Do not include this file directly. Include LUFA/Drivers/Peripheral/ADC.h instead.\r
- #endif\r
-\r
- /* Public Interface - May be used in end-application: */\r
- /* Macros: */ \r
- /** Reference mask, for using the voltage present at the AVR's AREF pin for the ADC reference. */\r
- #define ADC_REFERENCE_AREF 0\r
-\r
- /** Reference mask, for using the voltage present at the AVR's AVCC pin for the ADC reference. */\r
- #define ADC_REFERENCE_AVCC (1 << REFS0)\r
-\r
- /** Reference mask, for using the internally generated 2.56V reference voltage as the ADC reference. */\r
- #define ADC_REFERENCE_INT2560MV ((1 << REFS1)| (1 << REFS0))\r
- \r
- /** Left-adjusts the 10-bit ADC result, so that the upper 8 bits of the value returned by the\r
- * ADC_GetResult() macro contain the 8 most significant bits of the result. */\r
- #define ADC_LEFT_ADJUSTED (1 << ADLAR)\r
-\r
- /** Right-adjusts the 10-bit ADC result, so that the lower 8 bits of the value returned by the\r
- * ADC_GetResult() macro contain the 8 least significant bits of the result. */\r
- #define ADC_RIGHT_ADJUSTED (0 << ADLAR)\r
- \r
- /** Sets the ADC mode to free running, so that conversions take place continuously as fast as the ADC\r
- * is capable of at the given input clock speed. */\r
- #define ADC_FREE_RUNNING (1 << ADATE)\r
-\r
- /** Sets the ADC mode to single conversion, so that only a single conversion will take place before\r
- * the ADC returns to idle. */\r
- #define ADC_SINGLE_CONVERSION (0 << ADATE)\r
- \r
- /** Sets the ADC input clock to prescale by a factor of 2 the AVR's system clock. */\r
- #define ADC_PRESCALE_2 (1 << ADPS0)\r
-\r
- /** Sets the ADC input clock to prescale by a factor of 4 the AVR's system clock. */\r
- #define ADC_PRESCALE_4 (1 << ADPS1)\r
-\r
- /** Sets the ADC input clock to prescale by a factor of 8 the AVR's system clock. */\r
- #define ADC_PRESCALE_8 ((1 << ADPS0) | (1 << ADPS1))\r
-\r
- /** Sets the ADC input clock to prescale by a factor of 16 the AVR's system clock. */\r
- #define ADC_PRESCALE_16 (1 << ADPS2)\r
-\r
- /** Sets the ADC input clock to prescale by a factor of 32 the AVR's system clock. */\r
- #define ADC_PRESCALE_32 ((1 << ADPS2) | (1 << ADPS0))\r
-\r
- /** Sets the ADC input clock to prescale by a factor of 64 the AVR's system clock. */\r
- #define ADC_PRESCALE_64 ((1 << ADPS2) | (1 << ADPS1))\r
-\r
- /** Sets the ADC input clock to prescale by a factor of 128 the AVR's system clock. */\r
- #define ADC_PRESCALE_128 ((1 << ADPS2) | (1 << ADPS1) | (1 << ADPS0))\r
- \r
- //@{\r
- /** MUX mask define for the ADC0 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading. */\r
- #define ADC_CHANNEL0 0x00\r
-\r
- /** MUX mask define for the ADC1 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading. */\r
- #define ADC_CHANNEL1 0x01\r
-\r
- #if !(defined(__AVR_ATmega16U4__) || defined(__AVR_ATmega32U4__) || defined(__DOXYGEN__))\r
- /** MUX mask define for the ADC2 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading.\r
- *\r
- * \note Note available on all AVR models.\r
- */\r
- #define ADC_CHANNEL2 0x02\r
-\r
- /** MUX mask define for the ADC3 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading.\r
- *\r
- * \note Note available on all AVR models.\r
- */\r
- #define ADC_CHANNEL3 0x03\r
- #endif\r
-\r
- /** MUX mask define for the ADC4 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading. */\r
- #define ADC_CHANNEL4 0x04\r
-\r
- /** MUX mask define for the ADC5 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading. */\r
- #define ADC_CHANNEL5 0x05\r
-\r
- /** MUX mask define for the ADC6 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading. */\r
- #define ADC_CHANNEL6 0x06\r
-\r
- /** MUX mask define for the ADC7 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading. */\r
- #define ADC_CHANNEL7 0x07\r
-\r
- /** MUX mask define for the internal 1.1V bandgap channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading. */\r
- #define ADC_1100MV_BANDGAP 0x1E\r
- \r
- #if (defined(__AVR_ATmega16U4__) || defined(__AVR_ATmega32U4__) || defined(__DOXYGEN__))\r
- /** MUX mask define for the ADC8 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading.\r
- *\r
- * \note Note available on all AVR models.\r
- */\r
- #define ADC_CHANNEL8 0x20\r
-\r
- /** MUX mask define for the ADC9 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading.\r
- *\r
- * \note Note available on all AVR models.\r
- */\r
- #define ADC_CHANNEL9 0x21\r
-\r
- /** MUX mask define for the ADC10 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading.\r
- *\r
- * \note Note available on all AVR models.\r
- */\r
- #define ADC_CHANNEL10 0x22\r
-\r
- /** MUX mask define for the ADC11 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading.\r
- *\r
- * \note Note available on all AVR models.\r
- */\r
- #define ADC_CHANNEL11 0x23\r
-\r
- /** MUX mask define for the ADC12 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading.\r
- *\r
- * \note Note available on all AVR models.\r
- */\r
- #define ADC_CHANNEL12 0x24\r
-\r
- /** MUX mask define for the ADC13 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading.\r
- *\r
- * \note Note available on all AVR models.\r
- */\r
- #define ADC_CHANNEL13 0x25\r
-\r
- /** MUX mask define for the internal temperature sensor channel of the ADC. See \ref ADC_StartReading and\r
- * \ref ADC_GetChannelReading.\r
- *\r
- * \note Note available on all AVR models.\r
- */\r
- #define ADC_INT_TEMP_SENS 0x27 \r
- #endif\r
- //@}\r
- \r
- /* Pseudo-Function Macros: */\r
- #if defined(__DOXYGEN__)\r
- /** Initializes the ADC, ready for conversions. This must be called before any other ADC operations.\r
- * The "mode" parameter should be a mask comprised of a conversion mode (free running or single) and\r
- * prescaler masks.\r
- *\r
- * \param[in] Mode Mask of ADC settings, including adjustment, prescale, mode and reference\r
- */\r
- static inline void ADC_Init(uint8_t Mode);\r
-\r
- /** Turns off the ADC. If this is called, any further ADC operations will require a call to\r
- * \ref ADC_Init() before the ADC can be used again.\r
- */\r
- static inline void ADC_ShutDown(void);\r
- \r
- /** Indicates if the ADC is currently enabled.\r
- *\r
- * \return Boolean true if the ADC subsystem is currently enabled, false otherwise.\r
- */\r
- static inline bool ADC_GetStatus(void);\r
- \r
- /** Indicates if the current ADC conversion is completed, or still in progress.\r
- *\r
- * \return Boolean false if the reading is still taking place, or true if the conversion is\r
- * complete and ready to be read out with \ref ADC_GetResult()\r
- */\r
- static inline bool ADC_IsReadingComplete(void);\r
- \r
- /** Retrieves the conversion value of the last completed ADC conversion.\r
- *\r
- * \return The result of the last ADC conversion\r
- */\r
- static inline uint16_t ADC_GetResult(void);\r
- #else\r
- #define ADC_Init(mode) MACROS{ ADCSRA = ((1 << ADEN) | mode); }MACROE\r
-\r
- #define ADC_ShutDown() MACROS{ ADCSRA = 0; }MACROE\r
- \r
- #define ADC_GetStatus() ((ADCSRA & (1 << ADEN)) ? true : false)\r
-\r
- #define ADC_IsReadingComplete() (ADCSRA & (1 << ADSC))\r
- \r
- #define ADC_GetResult() ADC \r
- #endif\r
- \r
- /* Inline Functions: */\r
- /** Configures the given ADC channel, ready for ADC conversions. This function sets the\r
- * associated port pin as an input and disables the digital portion of the I/O to reduce\r
- * power consumption.\r
- *\r
- * \note This must only be called for ADC channels with are connected to a physical port\r
- * pin of the AVR, denoted by its special alternative function ADCx.\r
- *\r
- * \note The channel number must be specified as an integer, and NOT a ADC_CHANNELx mask.\r
- *\r
- * \param[in] Channel ADC channel number to set up for conversions\r
- */\r
- static inline void ADC_SetupChannel(const uint8_t Channel)\r
- {\r
- #if (defined(__AVR_AT90USB1286__) || defined(__AVR_AT90USB646__) || \\r
- defined(__AVR_AT90USB1287__) || defined(__AVR_AT90USB647__) || \\r
- defined(__AVR_ATmega32U6__)) \r
- DDRF &= ~(1 << Channel);\r
- DIDR0 |= (1 << Channel);\r
- #elif (defined(__AVR_ATmega16U4__) || defined(__AVR_ATmega32U4__))\r
- if (Channel < 8)\r
- {\r
- DDRF &= ~(1 << Channel);\r
- DIDR0 |= (1 << Channel);\r
- }\r
- else if (Channel == 8)\r
- {\r
- DDRD &= ~(1 << 4);\r
- DIDR2 |= (1 << 0);\r
- }\r
- else if (Channel < 11)\r
- {\r
- DDRD &= ~(1 << (Channel - 3));\r
- DIDR2 |= (1 << (Channel - 8));\r
- }\r
- else\r
- {\r
- DDRB &= ~(1 << (Channel - 7));\r
- DIDR2 |= (1 << (Channel - 8));\r
- }\r
- #endif\r
- }\r
- \r
- /** Starts the reading of the given channel, but does not wait until the conversion has completed.\r
- * Once executed, the conversion status can be determined via the \ref ADC_IsReadingComplete() macro and\r
- * the result read via the \ref ADC_GetResult() macro.\r
- *\r
- * \param[in] MUXMask Mask comprising of an ADC channel mask, reference mask and adjustment mask\r
- */\r
- static inline void ADC_StartReading(const uint8_t MUXMask)\r
- {\r
- ADMUX = MUXMask;\r
- \r
- ADCSRA |= (1 << ADSC);\r
- }\r
-\r
- /** Performs a complete single reading from channel, including a polling spin-loop to wait for the\r
- * conversion to complete, and the returning of the converted value.\r
- *\r
- * \param[in] MUXMask Mask comprising of an ADC channel mask, reference mask and adjustment mask\r
- */\r
- static inline uint16_t ADC_GetChannelReading(const uint8_t MUXMask) ATTR_WARN_UNUSED_RESULT;\r
- static inline uint16_t ADC_GetChannelReading(const uint8_t MUXMask)\r
- {\r
- ADC_StartReading(MUXMask);\r
- \r
- while (!(ADC_IsReadingComplete()));\r
- \r
- return ADC_GetResult();\r
- }\r
-\r
- /* Disable C linkage for C++ Compilers: */\r
- #if defined(__cplusplus)\r
- }\r
- #endif\r
- \r
-#endif\r
-\r
-/** @} */\r
+++ /dev/null
-/*\r
- LUFA Library\r
- Copyright (C) Dean Camera, 2010.\r
- \r
- dean [at] fourwalledcubicle [dot] com\r
- www.fourwalledcubicle.com\r
-*/\r
-\r
-/*\r
- Copyright 2010 Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
-\r
- Permission to use, copy, modify, distribute, and sell this \r
- software and its documentation for any purpose is hereby granted\r
- without fee, provided that the above copyright notice appear in \r
- all copies and that both that the copyright notice and this\r
- permission notice and warranty disclaimer appear in supporting \r
- documentation, and that the name of the author not be used in \r
- advertising or publicity pertaining to distribution of the \r
- software without specific, written prior permission.\r
-\r
- The author disclaim all warranties with regard to this\r
- software, including all implied warranties of merchantability\r
- and fitness. In no event shall the author be liable for any\r
- special, indirect or consequential damages or any damages\r
- whatsoever resulting from loss of use, data or profits, whether\r
- in an action of contract, negligence or other tortious action,\r
- arising out of or in connection with the use or performance of\r
- this software.\r
-*/\r
-\r
-/** \file\r
- *\r
- * SPI driver for the 8-bit AVRs.\r
- *\r
- * \note This file should not be included directly. It is automatically included as needed by the SPI driver\r
- * dispatch header located in LUFA/Drivers/Peripheral/SPI.h.\r
- */\r
- \r
-/** \ingroup Group_SPI\r
- * @defgroup Group_SPI_AVR8 8-Bit AVR SPI Driver\r
- *\r
- * SPI driver for the 8-bit AVRs.\r
- *\r
- * \note This file should not be included directly. It is automatically included as needed by the ADC driver\r
- * dispatch header located in LUFA/Drivers/Peripheral/SPI.h.\r
- *\r
- * @{\r
- */\r
-\r
-#ifndef __SPI_AVR8_H__\r
-#define __SPI_AVR8_H__\r
-\r
- /* Includes: */\r
- #include <avr/io.h>\r
- #include <stdbool.h>\r
-\r
- /* Preprocessor Checks: */\r
- #if !defined(__INCLUDE_FROM_SPI_H)\r
- #error Do not include this file directly. Include LUFA/Drivers/Peripheral/SPI.h instead.\r
- #endif\r
-\r
- /* Enable C linkage for C++ Compilers: */\r
- #if defined(__cplusplus)\r
- extern "C" {\r
- #endif\r
-\r
- /* Private Interface - For use in library only: */\r
- #if !defined(__DOXYGEN__)\r
- /* Macros: */\r
- #define SPI_USE_DOUBLESPEED (1 << SPE)\r
- #endif\r
- \r
- /* Public Interface - May be used in end-application: */\r
- /* Macros: */\r
- /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 2. */\r
- #define SPI_SPEED_FCPU_DIV_2 SPI_USE_DOUBLESPEED\r
-\r
- /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 4. */\r
- #define SPI_SPEED_FCPU_DIV_4 0\r
-\r
- /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 8. */\r
- #define SPI_SPEED_FCPU_DIV_8 (SPI_USE_DOUBLESPEED | (1 << SPR0))\r
-\r
- /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 16. */\r
- #define SPI_SPEED_FCPU_DIV_16 (1 << SPR0)\r
-\r
- /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 32. */\r
- #define SPI_SPEED_FCPU_DIV_32 (SPI_USE_DOUBLESPEED | (1 << SPR1))\r
-\r
- /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 64. */\r
- #define SPI_SPEED_FCPU_DIV_64 (SPI_USE_DOUBLESPEED | (1 << SPR1) | (1 << SPR0))\r
-\r
- /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 128. */\r
- #define SPI_SPEED_FCPU_DIV_128 ((1 << SPR1) | (1 << SPR0))\r
- \r
- /** SPI clock polarity mask for SPI_Init(). Indicates that the SCK should lead on the rising edge. */\r
- #define SPI_SCK_LEAD_RISING (0 << CPOL)\r
-\r
- /** SPI clock polarity mask for SPI_Init(). Indicates that the SCK should lead on the falling edge. */\r
- #define SPI_SCK_LEAD_FALLING (1 << CPOL)\r
-\r
- /** SPI data sample mode mask for SPI_Init(). Indicates that the data should sampled on the leading edge. */\r
- #define SPI_SAMPLE_LEADING (0 << CPHA)\r
-\r
- /** SPI data sample mode mask for SPI_Init(). Indicates that the data should be sampled on the trailing edge. */\r
- #define SPI_SAMPLE_TRAILING (1 << CPHA)\r
- \r
- /** SPI mode mask for SPI_Init(). Indicates that the SPI interface should be initialized into slave mode. */\r
- #define SPI_MODE_SLAVE (0 << MSTR)\r
-\r
- /** SPI mode mask for SPI_Init(). Indicates that the SPI interface should be initialized into master mode. */\r
- #define SPI_MODE_MASTER (1 << MSTR)\r
-\r
- /* Inline Functions: */\r
- /** Initialises the SPI subsystem, ready for transfers. Must be called before calling any other\r
- * SPI routines.\r
- *\r
- * \param[in] SPIOptions SPI Options, a mask consisting of one of each of the SPI_SPEED_*,\r
- * SPI_SCK_*, SPI_SAMPLE_* and SPI_MODE_* masks\r
- */\r
- static inline void SPI_Init(const uintN_t SPIOptions)\r
- {\r
- DDRB |= ((1 << 1) | (1 << 2));\r
- PORTB |= ((1 << 0) | (1 << 3));\r
- \r
- SPCR = ((1 << SPE) | SPIOptions);\r
- \r
- if (SPIOptions & SPI_USE_DOUBLESPEED)\r
- SPSR |= (1 << SPI2X);\r
- else\r
- SPSR &= ~(1 << SPI2X);\r
- }\r
- \r
- /** Turns off the SPI driver, disabling and returning used hardware to their default configuration. */\r
- static inline void SPI_ShutDown(void)\r
- {\r
- DDRB &= ~((1 << 1) | (1 << 2));\r
- PORTB &= ~((1 << 0) | (1 << 3));\r
- \r
- SPCR = 0;\r
- SPSR = 0;\r
- }\r
- \r
- /** Sends and receives a byte through the SPI interface, blocking until the transfer is complete.\r
- *\r
- * \param[in] Data Byte to send through the SPI interface\r
- *\r
- * \return Response byte from the attached SPI device\r
- */\r
- static inline uint8_t SPI_Transfer(const uint8_t Data) ATTR_ALWAYS_INLINE;\r
- static inline uint8_t SPI_Transfer(const uint8_t Data)\r
- {\r
- SPDR = Data;\r
- while (!(SPSR & (1 << SPIF)));\r
- return SPDR;\r
- }\r
-\r
- /** Sends a byte through the SPI interface, blocking until the transfer is complete. The response\r
- * byte sent to from the attached SPI device is ignored.\r
- *\r
- * \param[in] Data Byte to send through the SPI interface\r
- */\r
- static inline void SPI_Send(const uint8_t Data) ATTR_ALWAYS_INLINE;\r
- static inline void SPI_Send(const uint8_t Data)\r
- {\r
- SPDR = Data;\r
- while (!(SPSR & (1 << SPIF)));\r
- }\r
-\r
- /** Sends a dummy byte through the SPI interface, blocking until the transfer is complete. The response\r
- * byte from the attached SPI device is returned.\r
- *\r
- * \return The response byte from the attached SPI device\r
- */\r
- static inline uint8_t SPI_Receive(void) ATTR_ALWAYS_INLINE ATTR_WARN_UNUSED_RESULT;\r
- static inline uint8_t SPI_Receive(void)\r
- {\r
- SPDR = 0x00;\r
- while (!(SPSR & (1 << SPIF)));\r
- return SPDR;\r
- }\r
- \r
- #if defined(__DOXYGEN__)\r
- /** Alias for \ref SPI_Transfer(), for compatibility with legacy LUFA applications. */\r
- static inline uint8_t SPI_TransferByte(const uint8_t Byte) ATTR_DEPRECATED;\r
-\r
- /** Alias for \ref SPI_Send(), for compatibility with legacy LUFA applications. */\r
- static inline void SPI_SendByte(const uint8_t Byte) ATTR_DEPRECATED;\r
-\r
- /** Alias for \ref SPI_Receive(), for compatibility with legacy LUFA applications. */\r
- static inline uint8_t SPI_ReceiveByte(void) ATTR_DEPRECATED;\r
- #else\r
- #define SPI_TransferByte(x) SPI_Transfer(x)\r
- #define SPI_SendByte(x) SPI_Send(x)\r
- #define SPI_ReceiveByte() SPI_Receive()\r
- #endif\r
-\r
- /* Disable C linkage for C++ Compilers: */\r
- #if defined(__cplusplus)\r
- }\r
- #endif\r
- \r
-#endif\r
-\r
-/** @} */\r
+++ /dev/null
-/*\r
- LUFA Library\r
- Copyright (C) Dean Camera, 2010.\r
- \r
- dean [at] fourwalledcubicle [dot] com\r
- www.fourwalledcubicle.com\r
-*/\r
-\r
-/*\r
- Copyright 2010 Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
-\r
- Permission to use, copy, modify, distribute, and sell this \r
- software and its documentation for any purpose is hereby granted\r
- without fee, provided that the above copyright notice appear in \r
- all copies and that both that the copyright notice and this\r
- permission notice and warranty disclaimer appear in supporting \r
- documentation, and that the name of the author not be used in \r
- advertising or publicity pertaining to distribution of the \r
- software without specific, written prior permission.\r
-\r
- The author disclaim all warranties with regard to this\r
- software, including all implied warranties of merchantability\r
- and fitness. In no event shall the author be liable for any\r
- special, indirect or consequential damages or any damages\r
- whatsoever resulting from loss of use, data or profits, whether\r
- in an action of contract, negligence or other tortious action,\r
- arising out of or in connection with the use or performance of\r
- this software.\r
-*/\r
-\r
-/** \file\r
- *\r
- * ADC driver for the 8-bit AVRs.\r
- *\r
- * \note This file should not be included directly. It is automatically included as needed by the USART driver\r
- * dispatch header located in LUFA/Drivers/Peripheral/Serial.h.\r
- */\r
- \r
-/** \ingroup Group_Serial\r
- * @defgroup Group_Serial_AVR8 8-Bit AVR Serial Driver\r
- *\r
- * Serial driver for the 8-bit AVRs.\r
- *\r
- * \note This file should not be included directly. It is automatically included as needed by the ADC driver\r
- * dispatch header located in LUFA/Drivers/Peripheral/USART.h.\r
- *\r
- * @{\r
- */\r
- \r
-#ifndef __SERIAL_AVR8_H__\r
-#define __SERIAL_AVR8_H__\r
-\r
- /* Includes: */\r
- #include <avr/io.h>\r
- #include <avr/pgmspace.h>\r
- #include <stdbool.h>\r
- \r
- /* Preprocessor Checks: */\r
- #if !defined(__INCLUDE_FROM_SERIAL_H)\r
- #error Do not include this file directly. Include LUFA/Drivers/Peripheral/Serial.h instead.\r
- #endif\r
-\r
- /* Public Interface - May be used in end-application: */\r
- /* Macros: */\r
- /** Macro for calculating the baud value from a given baud rate when the U2X (double speed) bit is\r
- * not set.\r
- */\r
- #define SERIAL_UBBRVAL(baud) ((((F_CPU / 16) + (baud / 2)) / (baud)) - 1)\r
-\r
- /** Macro for calculating the baud value from a given baud rate when the U2X (double speed) bit is\r
- * set.\r
- */\r
- #define SERIAL_2X_UBBRVAL(baud) ((((F_CPU / 8) + (baud / 2)) / (baud)) - 1)\r
-\r
- /* Pseudo-Function Macros: */\r
- #if defined(__DOXYGEN__)\r
- /** Indicates whether a character has been received through the USART.\r
- *\r
- * \return Boolean true if a character has been received, false otherwise\r
- */\r
- static inline bool Serial_IsCharReceived(void);\r
- #else\r
- #define Serial_IsCharReceived() ((UCSR1A & (1 << RXC1)) ? true : false)\r
- #endif\r
-\r
- /* Inline Functions: */\r
- /** Initializes the USART, ready for serial data transmission and reception. This initializes the interface to\r
- * standard 8-bit, no parity, 1 stop bit settings suitable for most applications.\r
- *\r
- * \param[in] BaudRate Serial baud rate, in bits per second\r
- * \param[in] DoubleSpeed Enables double speed mode when set, halving the sample time to double the baud rate\r
- */\r
- static inline void Serial_Init(const uint32_t BaudRate, const bool DoubleSpeed)\r
- {\r
- UCSR1A = (DoubleSpeed ? (1 << U2X1) : 0);\r
- UCSR1B = ((1 << TXEN1) | (1 << RXEN1));\r
- UCSR1C = ((1 << UCSZ11) | (1 << UCSZ10));\r
- \r
- DDRD |= (1 << 3); \r
- PORTD |= (1 << 2);\r
- \r
- UBRR1 = (DoubleSpeed ? SERIAL_2X_UBBRVAL(BaudRate) : SERIAL_UBBRVAL(BaudRate));\r
- }\r
-\r
- /** Turns off the USART driver, disabling and returning used hardware to their default configuration. */\r
- static inline void Serial_ShutDown(void)\r
- {\r
- UCSR1A = 0;\r
- UCSR1B = 0;\r
- UCSR1C = 0;\r
- \r
- DDRD &= ~(1 << 3); \r
- PORTD &= ~(1 << 2);\r
- \r
- UBRR1 = 0;\r
- }\r
- \r
- /** Transmits a given byte through the USART.\r
- *\r
- * \param[in] DataByte Byte to transmit through the USART\r
- */\r
- static inline void Serial_TxByte(const char DataByte)\r
- {\r
- while (!(UCSR1A & (1 << UDRE1)));\r
- UDR1 = DataByte;\r
- }\r
-\r
- /** Receives a byte from the USART.\r
- *\r
- * \return Byte received from the USART\r
- */\r
- static inline uint8_t Serial_RxByte(void)\r
- {\r
- while (!(UCSR1A & (1 << RXC1)));\r
- return UDR1; \r
- }\r
-\r
- /* Disable C linkage for C++ Compilers: */\r
- #if defined(__cplusplus)\r
- }\r
- #endif\r
- \r
-#endif\r
-\r
-/** @} */\r
+++ /dev/null
-/*\r
- LUFA Library\r
- Copyright (C) Dean Camera, 2010.\r
- \r
- dean [at] fourwalledcubicle [dot] com\r
- www.fourwalledcubicle.com\r
-*/\r
-\r
-/*\r
- Copyright 2010 Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
-\r
- Permission to use, copy, modify, distribute, and sell this \r
- software and its documentation for any purpose is hereby granted\r
- without fee, provided that the above copyright notice appear in \r
- all copies and that both that the copyright notice and this\r
- permission notice and warranty disclaimer appear in supporting \r
- documentation, and that the name of the author not be used in \r
- advertising or publicity pertaining to distribution of the \r
- software without specific, written prior permission.\r
-\r
- The author disclaim all warranties with regard to this\r
- software, including all implied warranties of merchantability\r
- and fitness. In no event shall the author be liable for any\r
- special, indirect or consequential damages or any damages\r
- whatsoever resulting from loss of use, data or profits, whether\r
- in an action of contract, negligence or other tortious action,\r
- arising out of or in connection with the use or performance of\r
- this software.\r
-*/\r
-\r
-/** \file\r
- *\r
- * Master mode TWI driver for the 8-Bit AVRs containing a hardware TWI module.\r
- *\r
- * \note This file should not be included directly. It is automatically included as needed by the TWI driver\r
- * dispatch header located in LUFA/Drivers/Peripheral/TWI.h.\r
- */\r
-\r
-/** \ingroup Group_TWI\r
- * @defgroup Group_TWI_AVR8 8-Bit AVR TWI Driver\r
- *\r
- * Master mode TWI driver for the 8-Bit AVRs containing a hardware TWI module.\r
- *\r
- * \note This file should not be included directly. It is automatically included as needed by the TWI driver\r
- * dispatch header located in LUFA/Drivers/Peripheral/TWI.h.\r
- *\r
- * @{\r
- */\r
-\r
-#ifndef __TWI_AVR8_H__\r
-#define __TWI_AVR8_H__\r
-\r
- /* Includes: */\r
- #include <avr/io.h>\r
- #include <stdbool.h>\r
- #include <util/twi.h>\r
- \r
- /* Enable C linkage for C++ Compilers: */\r
- #if defined(__cplusplus)\r
- extern "C" {\r
- #endif\r
-\r
- /* Preprocessor Checks: */\r
- #if !defined(__INCLUDE_FROM_TWI_H)\r
- #error Do not include this file directly. Include LUFA/Drivers/Peripheral/TWI.h instead.\r
- #endif\r
-\r
- /* Public Interface - May be used in end-application: */\r
- /* Pseudo-Function Macros: */\r
- #if defined(__DOXYGEN__)\r
- /** Initializes the TWI hardware into master mode, ready for data transmission and reception. This must be\r
- * before any other TWI operations.\r
- */\r
- static inline void TWI_Init(void);\r
- \r
- /** Turns off the TWI driver hardware. If this is called, any further TWI operations will require a call to\r
- * \ref TWI_Init() before the TWI can be used again.\r
- */ \r
- static inline void TWI_ShutDown(void);\r
- #else\r
- #define TWI_Init() MACROS{ TWCR |= (1 << TWEN); }MACROE\r
- #define TWI_ShutDown() MACROS{ TWCR &= ~(1 << TWEN); }MACROE\r
- #endif\r
-\r
- /* Inline Functions: */\r
- /** Sends a TWI STOP onto the TWI bus, terminating communication with the currently addressed device. */\r
- static inline void TWI_StopTransmission(void)\r
- {\r
- TWCR = ((1 << TWINT) | (1 << TWSTO) | (1 << TWEN));\r
- }\r
-\r
- /** Sends a byte to the currently addressed device on the TWI bus.\r
- *\r
- * \param[in] Byte Byte to send to the currently addressed device\r
- *\r
- * \return Boolean true if the recipient ACKed the byte, false otherwise\r
- */\r
- static inline bool TWI_SendByte(uint8_t Byte)\r
- {\r
- TWDR = Byte;\r
- TWCR = ((1 << TWINT) | (1 << TWEN)); \r
- while (!(TWCR & (1 << TWINT)));\r
-\r
- return ((TWSR & TW_STATUS_MASK) == TW_MT_DATA_ACK);\r
- }\r
-\r
- /** Receives a byte from the currently addressed device on the TWI bus.\r
- *\r
- * \param[in] Byte Location where the read byte is to be stored\r
- * \param[in] LastByte Indicates if the byte should be ACKed if false, NAKed if true\r
- *\r
- * \return Boolean true if the byte reception sucessfully completed, false otherwise\r
- */\r
- static inline bool TWI_ReceiveByte(uint8_t* Byte, bool LastByte)\r
- {\r
- uint8_t TWCRMask = ((1 << TWINT) | (1 << TWEN));\r
- \r
- if (!(LastByte))\r
- TWCRMask |= (1 << TWEA);\r
-\r
- TWCR = TWCRMask;\r
- while (!(TWCR & (1 << TWINT)));\r
- *Byte = TWDR;\r
-\r
- return ((TWSR & TW_STATUS_MASK) == TW_MR_DATA_ACK);\r
- }\r
-\r
- /* Function Prototypes: */\r
- /** Begins a master mode TWI bus communication with the given slave device address.\r
- *\r
- * \param[in] SlaveAddress Address of the slave TWI device to communicate with\r
- *\r
- * \return Boolean true if the device is ready for data, false otherwise\r
- */\r
- bool TWI_StartTransmission(uint8_t SlaveAddress);\r
-\r
- /* Disable C linkage for C++ Compilers: */\r
- #if defined(__cplusplus)\r
- }\r
- #endif\r
-\r
-#endif\r
-\r
-/** @} */\r
--- /dev/null
+/*\r
+ LUFA Library\r
+ Copyright (C) Dean Camera, 2010.\r
+ \r
+ dean [at] fourwalledcubicle [dot] com\r
+ www.fourwalledcubicle.com\r
+*/\r
+\r
+/*\r
+ Copyright 2010 Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
+\r
+ Permission to use, copy, modify, distribute, and sell this \r
+ software and its documentation for any purpose is hereby granted\r
+ without fee, provided that the above copyright notice appear in \r
+ all copies and that both that the copyright notice and this\r
+ permission notice and warranty disclaimer appear in supporting \r
+ documentation, and that the name of the author not be used in \r
+ advertising or publicity pertaining to distribution of the \r
+ software without specific, written prior permission.\r
+\r
+ The author disclaim all warranties with regard to this\r
+ software, including all implied warranties of merchantability\r
+ and fitness. In no event shall the author be liable for any\r
+ special, indirect or consequential damages or any damages\r
+ whatsoever resulting from loss of use, data or profits, whether\r
+ in an action of contract, negligence or other tortious action,\r
+ arising out of or in connection with the use or performance of\r
+ this software.\r
+*/\r
+\r
+/** \file\r
+ *\r
+ * ADC driver for the AT90USB1287, AT90USB1286, AT90USB647, AT90USB646, ATMEGA16U4 and ATMEGA32U4 AVRs.\r
+ *\r
+ * \note This file should not be included directly. It is automatically included as needed by the ADC driver\r
+ * dispatch header located in LUFA/Drivers/Peripheral/ADC.h.\r
+ */\r
+\r
+/** \ingroup Group_ADC\r
+ * @defgroup Group_ADC_AVRU4U6U7 Series U4, U6 and U7 Model ADC Driver\r
+ *\r
+ * ADC driver for the AT90USB1287, AT90USB1286, AT90USB647, AT90USB646, ATMEGA16U4 and ATMEGA32U4 AVRs.\r
+ *\r
+ * \note This file should not be included directly. It is automatically included as needed by the ADC driver\r
+ * dispatch header located in LUFA/Drivers/Peripheral/ADC.h.\r
+ *\r
+ * @{\r
+ */\r
+ \r
+#ifndef __ADC_AVRU4U6U7_H__\r
+#define __ADC_AVRU4U6U7_H__\r
+\r
+ /* Includes: */\r
+ #include "../../../Common/Common.h"\r
+ \r
+ #include <avr/io.h>\r
+ #include <stdbool.h>\r
+ \r
+ /* Enable C linkage for C++ Compilers: */\r
+ #if defined(__cplusplus)\r
+ extern "C" {\r
+ #endif\r
+\r
+ /* Preprocessor Checks: */\r
+ #if !defined(__INCLUDE_FROM_ADC_H)\r
+ #error Do not include this file directly. Include LUFA/Drivers/Peripheral/ADC.h instead.\r
+ #endif\r
+\r
+ /* Public Interface - May be used in end-application: */\r
+ /* Macros: */ \r
+ /** Reference mask, for using the voltage present at the AVR's AREF pin for the ADC reference. */\r
+ #define ADC_REFERENCE_AREF 0\r
+\r
+ /** Reference mask, for using the voltage present at the AVR's AVCC pin for the ADC reference. */\r
+ #define ADC_REFERENCE_AVCC (1 << REFS0)\r
+\r
+ /** Reference mask, for using the internally generated 2.56V reference voltage as the ADC reference. */\r
+ #define ADC_REFERENCE_INT2560MV ((1 << REFS1)| (1 << REFS0))\r
+ \r
+ /** Left-adjusts the 10-bit ADC result, so that the upper 8 bits of the value returned by the\r
+ * ADC_GetResult() macro contain the 8 most significant bits of the result. */\r
+ #define ADC_LEFT_ADJUSTED (1 << ADLAR)\r
+\r
+ /** Right-adjusts the 10-bit ADC result, so that the lower 8 bits of the value returned by the\r
+ * ADC_GetResult() macro contain the 8 least significant bits of the result. */\r
+ #define ADC_RIGHT_ADJUSTED (0 << ADLAR)\r
+ \r
+ /** Sets the ADC mode to free running, so that conversions take place continuously as fast as the ADC\r
+ * is capable of at the given input clock speed. */\r
+ #define ADC_FREE_RUNNING (1 << ADATE)\r
+\r
+ /** Sets the ADC mode to single conversion, so that only a single conversion will take place before\r
+ * the ADC returns to idle. */\r
+ #define ADC_SINGLE_CONVERSION (0 << ADATE)\r
+ \r
+ /** Sets the ADC input clock to prescale by a factor of 2 the AVR's system clock. */\r
+ #define ADC_PRESCALE_2 (1 << ADPS0)\r
+\r
+ /** Sets the ADC input clock to prescale by a factor of 4 the AVR's system clock. */\r
+ #define ADC_PRESCALE_4 (1 << ADPS1)\r
+\r
+ /** Sets the ADC input clock to prescale by a factor of 8 the AVR's system clock. */\r
+ #define ADC_PRESCALE_8 ((1 << ADPS0) | (1 << ADPS1))\r
+\r
+ /** Sets the ADC input clock to prescale by a factor of 16 the AVR's system clock. */\r
+ #define ADC_PRESCALE_16 (1 << ADPS2)\r
+\r
+ /** Sets the ADC input clock to prescale by a factor of 32 the AVR's system clock. */\r
+ #define ADC_PRESCALE_32 ((1 << ADPS2) | (1 << ADPS0))\r
+\r
+ /** Sets the ADC input clock to prescale by a factor of 64 the AVR's system clock. */\r
+ #define ADC_PRESCALE_64 ((1 << ADPS2) | (1 << ADPS1))\r
+\r
+ /** Sets the ADC input clock to prescale by a factor of 128 the AVR's system clock. */\r
+ #define ADC_PRESCALE_128 ((1 << ADPS2) | (1 << ADPS1) | (1 << ADPS0))\r
+ \r
+ //@{\r
+ /** MUX mask define for the ADC0 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading. */\r
+ #define ADC_CHANNEL0 0x00\r
+\r
+ /** MUX mask define for the ADC1 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading. */\r
+ #define ADC_CHANNEL1 0x01\r
+\r
+ #if !(defined(__AVR_ATmega16U4__) || defined(__AVR_ATmega32U4__) || defined(__DOXYGEN__))\r
+ /** MUX mask define for the ADC2 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading.\r
+ *\r
+ * \note Note available on all AVR models.\r
+ */\r
+ #define ADC_CHANNEL2 0x02\r
+\r
+ /** MUX mask define for the ADC3 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading.\r
+ *\r
+ * \note Note available on all AVR models.\r
+ */\r
+ #define ADC_CHANNEL3 0x03\r
+ #endif\r
+\r
+ /** MUX mask define for the ADC4 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading. */\r
+ #define ADC_CHANNEL4 0x04\r
+\r
+ /** MUX mask define for the ADC5 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading. */\r
+ #define ADC_CHANNEL5 0x05\r
+\r
+ /** MUX mask define for the ADC6 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading. */\r
+ #define ADC_CHANNEL6 0x06\r
+\r
+ /** MUX mask define for the ADC7 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading. */\r
+ #define ADC_CHANNEL7 0x07\r
+\r
+ /** MUX mask define for the internal 1.1V bandgap channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading. */\r
+ #define ADC_1100MV_BANDGAP 0x1E\r
+ \r
+ #if (defined(__AVR_ATmega16U4__) || defined(__AVR_ATmega32U4__) || defined(__DOXYGEN__))\r
+ /** MUX mask define for the ADC8 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading.\r
+ *\r
+ * \note Note available on all AVR models.\r
+ */\r
+ #define ADC_CHANNEL8 0x20\r
+\r
+ /** MUX mask define for the ADC9 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading.\r
+ *\r
+ * \note Note available on all AVR models.\r
+ */\r
+ #define ADC_CHANNEL9 0x21\r
+\r
+ /** MUX mask define for the ADC10 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading.\r
+ *\r
+ * \note Note available on all AVR models.\r
+ */\r
+ #define ADC_CHANNEL10 0x22\r
+\r
+ /** MUX mask define for the ADC11 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading.\r
+ *\r
+ * \note Note available on all AVR models.\r
+ */\r
+ #define ADC_CHANNEL11 0x23\r
+\r
+ /** MUX mask define for the ADC12 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading.\r
+ *\r
+ * \note Note available on all AVR models.\r
+ */\r
+ #define ADC_CHANNEL12 0x24\r
+\r
+ /** MUX mask define for the ADC13 channel of the ADC. See \ref ADC_StartReading and \ref ADC_GetChannelReading.\r
+ *\r
+ * \note Note available on all AVR models.\r
+ */\r
+ #define ADC_CHANNEL13 0x25\r
+\r
+ /** MUX mask define for the internal temperature sensor channel of the ADC. See \ref ADC_StartReading and\r
+ * \ref ADC_GetChannelReading.\r
+ *\r
+ * \note Note available on all AVR models.\r
+ */\r
+ #define ADC_INT_TEMP_SENS 0x27 \r
+ #endif\r
+ //@}\r
+ \r
+ /* Pseudo-Function Macros: */\r
+ #if defined(__DOXYGEN__)\r
+ /** Initializes the ADC, ready for conversions. This must be called before any other ADC operations.\r
+ * The "mode" parameter should be a mask comprised of a conversion mode (free running or single) and\r
+ * prescaler masks.\r
+ *\r
+ * \param[in] Mode Mask of ADC settings, including adjustment, prescale, mode and reference\r
+ */\r
+ static inline void ADC_Init(uint8_t Mode);\r
+\r
+ /** Turns off the ADC. If this is called, any further ADC operations will require a call to\r
+ * \ref ADC_Init() before the ADC can be used again.\r
+ */\r
+ static inline void ADC_ShutDown(void);\r
+ \r
+ /** Indicates if the ADC is currently enabled.\r
+ *\r
+ * \return Boolean true if the ADC subsystem is currently enabled, false otherwise.\r
+ */\r
+ static inline bool ADC_GetStatus(void);\r
+ \r
+ /** Indicates if the current ADC conversion is completed, or still in progress.\r
+ *\r
+ * \return Boolean false if the reading is still taking place, or true if the conversion is\r
+ * complete and ready to be read out with \ref ADC_GetResult()\r
+ */\r
+ static inline bool ADC_IsReadingComplete(void);\r
+ \r
+ /** Retrieves the conversion value of the last completed ADC conversion.\r
+ *\r
+ * \return The result of the last ADC conversion\r
+ */\r
+ static inline uint16_t ADC_GetResult(void);\r
+ #else\r
+ #define ADC_Init(mode) MACROS{ ADCSRA = ((1 << ADEN) | mode); }MACROE\r
+\r
+ #define ADC_ShutDown() MACROS{ ADCSRA = 0; }MACROE\r
+ \r
+ #define ADC_GetStatus() ((ADCSRA & (1 << ADEN)) ? true : false)\r
+\r
+ #define ADC_IsReadingComplete() (ADCSRA & (1 << ADSC))\r
+ \r
+ #define ADC_GetResult() ADC \r
+ #endif\r
+ \r
+ /* Inline Functions: */\r
+ /** Configures the given ADC channel, ready for ADC conversions. This function sets the\r
+ * associated port pin as an input and disables the digital portion of the I/O to reduce\r
+ * power consumption.\r
+ *\r
+ * \note This must only be called for ADC channels with are connected to a physical port\r
+ * pin of the AVR, denoted by its special alternative function ADCx.\r
+ *\r
+ * \note The channel number must be specified as an integer, and NOT a ADC_CHANNELx mask.\r
+ *\r
+ * \param[in] Channel ADC channel number to set up for conversions\r
+ */\r
+ static inline void ADC_SetupChannel(const uint8_t Channel)\r
+ {\r
+ #if (defined(__AVR_AT90USB1286__) || defined(__AVR_AT90USB646__) || \\r
+ defined(__AVR_AT90USB1287__) || defined(__AVR_AT90USB647__) || \\r
+ defined(__AVR_ATmega32U6__)) \r
+ DDRF &= ~(1 << Channel);\r
+ DIDR0 |= (1 << Channel);\r
+ #elif (defined(__AVR_ATmega16U4__) || defined(__AVR_ATmega32U4__))\r
+ if (Channel < 8)\r
+ {\r
+ DDRF &= ~(1 << Channel);\r
+ DIDR0 |= (1 << Channel);\r
+ }\r
+ else if (Channel == 8)\r
+ {\r
+ DDRD &= ~(1 << 4);\r
+ DIDR2 |= (1 << 0);\r
+ }\r
+ else if (Channel < 11)\r
+ {\r
+ DDRD &= ~(1 << (Channel - 3));\r
+ DIDR2 |= (1 << (Channel - 8));\r
+ }\r
+ else\r
+ {\r
+ DDRB &= ~(1 << (Channel - 7));\r
+ DIDR2 |= (1 << (Channel - 8));\r
+ }\r
+ #endif\r
+ }\r
+ \r
+ /** Starts the reading of the given channel, but does not wait until the conversion has completed.\r
+ * Once executed, the conversion status can be determined via the \ref ADC_IsReadingComplete() macro and\r
+ * the result read via the \ref ADC_GetResult() macro.\r
+ *\r
+ * \param[in] MUXMask Mask comprising of an ADC channel mask, reference mask and adjustment mask\r
+ */\r
+ static inline void ADC_StartReading(const uint8_t MUXMask)\r
+ {\r
+ ADMUX = MUXMask;\r
+ \r
+ ADCSRA |= (1 << ADSC);\r
+ }\r
+\r
+ /** Performs a complete single reading from channel, including a polling spin-loop to wait for the\r
+ * conversion to complete, and the returning of the converted value.\r
+ *\r
+ * \param[in] MUXMask Mask comprising of an ADC channel mask, reference mask and adjustment mask\r
+ */\r
+ static inline uint16_t ADC_GetChannelReading(const uint8_t MUXMask) ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint16_t ADC_GetChannelReading(const uint8_t MUXMask)\r
+ {\r
+ ADC_StartReading(MUXMask);\r
+ \r
+ while (!(ADC_IsReadingComplete()));\r
+ \r
+ return ADC_GetResult();\r
+ }\r
+\r
+ /* Disable C linkage for C++ Compilers: */\r
+ #if defined(__cplusplus)\r
+ }\r
+ #endif\r
+ \r
+#endif\r
+\r
+/** @} */\r
--- /dev/null
+/*\r
+ LUFA Library\r
+ Copyright (C) Dean Camera, 2010.\r
+ \r
+ dean [at] fourwalledcubicle [dot] com\r
+ www.fourwalledcubicle.com\r
+*/\r
+\r
+/*\r
+ Copyright 2010 Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
+\r
+ Permission to use, copy, modify, distribute, and sell this \r
+ software and its documentation for any purpose is hereby granted\r
+ without fee, provided that the above copyright notice appear in \r
+ all copies and that both that the copyright notice and this\r
+ permission notice and warranty disclaimer appear in supporting \r
+ documentation, and that the name of the author not be used in \r
+ advertising or publicity pertaining to distribution of the \r
+ software without specific, written prior permission.\r
+\r
+ The author disclaim all warranties with regard to this\r
+ software, including all implied warranties of merchantability\r
+ and fitness. In no event shall the author be liable for any\r
+ special, indirect or consequential damages or any damages\r
+ whatsoever resulting from loss of use, data or profits, whether\r
+ in an action of contract, negligence or other tortious action,\r
+ arising out of or in connection with the use or performance of\r
+ this software.\r
+*/\r
+\r
+/** \file\r
+ *\r
+ * SPI driver for the 8-bit AVRs.\r
+ *\r
+ * \note This file should not be included directly. It is automatically included as needed by the SPI driver\r
+ * dispatch header located in LUFA/Drivers/Peripheral/SPI.h.\r
+ */\r
+ \r
+/** \ingroup Group_SPI\r
+ * @defgroup Group_SPI_AVR8 8-Bit AVR SPI Driver\r
+ *\r
+ * SPI driver for the 8-bit AVRs.\r
+ *\r
+ * \note This file should not be included directly. It is automatically included as needed by the ADC driver\r
+ * dispatch header located in LUFA/Drivers/Peripheral/SPI.h.\r
+ *\r
+ * @{\r
+ */\r
+\r
+#ifndef __SPI_AVR8_H__\r
+#define __SPI_AVR8_H__\r
+\r
+ /* Includes: */\r
+ #include <stdbool.h>\r
+\r
+ /* Preprocessor Checks: */\r
+ #if !defined(__INCLUDE_FROM_SPI_H)\r
+ #error Do not include this file directly. Include LUFA/Drivers/Peripheral/SPI.h instead.\r
+ #endif\r
+\r
+ /* Enable C linkage for C++ Compilers: */\r
+ #if defined(__cplusplus)\r
+ extern "C" {\r
+ #endif\r
+\r
+ /* Private Interface - For use in library only: */\r
+ #if !defined(__DOXYGEN__)\r
+ /* Macros: */\r
+ #define SPI_USE_DOUBLESPEED (1 << SPE)\r
+ #endif\r
+ \r
+ /* Public Interface - May be used in end-application: */\r
+ /* Macros: */\r
+ /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 2. */\r
+ #define SPI_SPEED_FCPU_DIV_2 SPI_USE_DOUBLESPEED\r
+\r
+ /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 4. */\r
+ #define SPI_SPEED_FCPU_DIV_4 0\r
+\r
+ /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 8. */\r
+ #define SPI_SPEED_FCPU_DIV_8 (SPI_USE_DOUBLESPEED | (1 << SPR0))\r
+\r
+ /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 16. */\r
+ #define SPI_SPEED_FCPU_DIV_16 (1 << SPR0)\r
+\r
+ /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 32. */\r
+ #define SPI_SPEED_FCPU_DIV_32 (SPI_USE_DOUBLESPEED | (1 << SPR1))\r
+\r
+ /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 64. */\r
+ #define SPI_SPEED_FCPU_DIV_64 (SPI_USE_DOUBLESPEED | (1 << SPR1) | (1 << SPR0))\r
+\r
+ /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 128. */\r
+ #define SPI_SPEED_FCPU_DIV_128 ((1 << SPR1) | (1 << SPR0))\r
+ \r
+ /** SPI clock polarity mask for SPI_Init(). Indicates that the SCK should lead on the rising edge. */\r
+ #define SPI_SCK_LEAD_RISING (0 << CPOL)\r
+\r
+ /** SPI clock polarity mask for SPI_Init(). Indicates that the SCK should lead on the falling edge. */\r
+ #define SPI_SCK_LEAD_FALLING (1 << CPOL)\r
+\r
+ /** SPI data sample mode mask for SPI_Init(). Indicates that the data should sampled on the leading edge. */\r
+ #define SPI_SAMPLE_LEADING (0 << CPHA)\r
+\r
+ /** SPI data sample mode mask for SPI_Init(). Indicates that the data should be sampled on the trailing edge. */\r
+ #define SPI_SAMPLE_TRAILING (1 << CPHA)\r
+ \r
+ /** SPI mode mask for SPI_Init(). Indicates that the SPI interface should be initialized into slave mode. */\r
+ #define SPI_MODE_SLAVE (0 << MSTR)\r
+\r
+ /** SPI mode mask for SPI_Init(). Indicates that the SPI interface should be initialized into master mode. */\r
+ #define SPI_MODE_MASTER (1 << MSTR)\r
+\r
+ /* Inline Functions: */\r
+ /** Initialises the SPI subsystem, ready for transfers. Must be called before calling any other\r
+ * SPI routines.\r
+ *\r
+ * \param[in] SPIOptions SPI Options, a mask consisting of one of each of the SPI_SPEED_*,\r
+ * SPI_SCK_*, SPI_SAMPLE_* and SPI_MODE_* masks\r
+ */\r
+ static inline void SPI_Init(const uint8_t SPIOptions)\r
+ {\r
+ DDRB |= ((1 << 1) | (1 << 2));\r
+ PORTB |= ((1 << 0) | (1 << 3));\r
+ \r
+ SPCR = ((1 << SPE) | SPIOptions);\r
+ \r
+ if (SPIOptions & SPI_USE_DOUBLESPEED)\r
+ SPSR |= (1 << SPI2X);\r
+ else\r
+ SPSR &= ~(1 << SPI2X);\r
+ }\r
+ \r
+ /** Turns off the SPI driver, disabling and returning used hardware to their default configuration. */\r
+ static inline void SPI_ShutDown(void)\r
+ {\r
+ DDRB &= ~((1 << 1) | (1 << 2));\r
+ PORTB &= ~((1 << 0) | (1 << 3));\r
+ \r
+ SPCR = 0;\r
+ SPSR = 0;\r
+ }\r
+ \r
+ /** Sends and receives a byte through the SPI interface, blocking until the transfer is complete.\r
+ *\r
+ * \param[in] Byte Byte to send through the SPI interface\r
+ *\r
+ * \return Response byte from the attached SPI device\r
+ */\r
+ static inline uint8_t SPI_TransferByte(const uint8_t Byte) ATTR_ALWAYS_INLINE;\r
+ static inline uint8_t SPI_TransferByte(const uint8_t Byte)\r
+ {\r
+ SPDR = Byte;\r
+ while (!(SPSR & (1 << SPIF)));\r
+ return SPDR;\r
+ }\r
+\r
+ /** Sends a byte through the SPI interface, blocking until the transfer is complete. The response\r
+ * byte sent to from the attached SPI device is ignored.\r
+ *\r
+ * \param[in] Byte Byte to send through the SPI interface\r
+ */\r
+ static inline void SPI_SendByte(const uint8_t Byte) ATTR_ALWAYS_INLINE;\r
+ static inline void SPI_SendByte(const uint8_t Byte)\r
+ {\r
+ SPDR = Byte;\r
+ while (!(SPSR & (1 << SPIF)));\r
+ }\r
+\r
+ /** Sends a dummy byte through the SPI interface, blocking until the transfer is complete. The response\r
+ * byte from the attached SPI device is returned.\r
+ *\r
+ * \return The response byte from the attached SPI device\r
+ */\r
+ static inline uint8_t SPI_ReceiveByte(void) ATTR_ALWAYS_INLINE ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t SPI_ReceiveByte(void)\r
+ {\r
+ SPDR = 0x00;\r
+ while (!(SPSR & (1 << SPIF)));\r
+ return SPDR;\r
+ }\r
+\r
+ /* Disable C linkage for C++ Compilers: */\r
+ #if defined(__cplusplus)\r
+ }\r
+ #endif\r
+ \r
+#endif\r
+\r
+/** @} */\r
--- /dev/null
+/*\r
+ LUFA Library\r
+ Copyright (C) Dean Camera, 2010.\r
+ \r
+ dean [at] fourwalledcubicle [dot] com\r
+ www.fourwalledcubicle.com\r
+*/\r
+\r
+/*\r
+ Copyright 2010 Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
+\r
+ Permission to use, copy, modify, distribute, and sell this \r
+ software and its documentation for any purpose is hereby granted\r
+ without fee, provided that the above copyright notice appear in \r
+ all copies and that both that the copyright notice and this\r
+ permission notice and warranty disclaimer appear in supporting \r
+ documentation, and that the name of the author not be used in \r
+ advertising or publicity pertaining to distribution of the \r
+ software without specific, written prior permission.\r
+\r
+ The author disclaim all warranties with regard to this\r
+ software, including all implied warranties of merchantability\r
+ and fitness. In no event shall the author be liable for any\r
+ special, indirect or consequential damages or any damages\r
+ whatsoever resulting from loss of use, data or profits, whether\r
+ in an action of contract, negligence or other tortious action,\r
+ arising out of or in connection with the use or performance of\r
+ this software.\r
+*/\r
+\r
+/** \file\r
+ *\r
+ * ADC driver for the 8-bit AVRs.\r
+ *\r
+ * \note This file should not be included directly. It is automatically included as needed by the USART driver\r
+ * dispatch header located in LUFA/Drivers/Peripheral/Serial.h.\r
+ */\r
+ \r
+/** \ingroup Group_Serial\r
+ * @defgroup Group_Serial_AVR8 8-Bit AVR Serial Driver\r
+ *\r
+ * Serial driver for the 8-bit AVRs.\r
+ *\r
+ * \note This file should not be included directly. It is automatically included as needed by the ADC driver\r
+ * dispatch header located in LUFA/Drivers/Peripheral/USART.h.\r
+ *\r
+ * @{\r
+ */\r
+ \r
+#ifndef __SERIAL_AVR8_H__\r
+#define __SERIAL_AVR8_H__\r
+\r
+ /* Includes: */\r
+ #include <avr/io.h>\r
+ #include <avr/pgmspace.h>\r
+ #include <stdbool.h>\r
+ \r
+ /* Preprocessor Checks: */\r
+ #if !defined(__INCLUDE_FROM_SERIAL_H)\r
+ #error Do not include this file directly. Include LUFA/Drivers/Peripheral/Serial.h instead.\r
+ #endif\r
+\r
+ /* Public Interface - May be used in end-application: */\r
+ /* Macros: */\r
+ /** Macro for calculating the baud value from a given baud rate when the U2X (double speed) bit is\r
+ * not set.\r
+ */\r
+ #define SERIAL_UBBRVAL(baud) ((((F_CPU / 16) + (baud / 2)) / (baud)) - 1)\r
+\r
+ /** Macro for calculating the baud value from a given baud rate when the U2X (double speed) bit is\r
+ * set.\r
+ */\r
+ #define SERIAL_2X_UBBRVAL(baud) ((((F_CPU / 8) + (baud / 2)) / (baud)) - 1)\r
+\r
+ /* Pseudo-Function Macros: */\r
+ #if defined(__DOXYGEN__)\r
+ /** Indicates whether a character has been received through the USART.\r
+ *\r
+ * \return Boolean true if a character has been received, false otherwise\r
+ */\r
+ static inline bool Serial_IsCharReceived(void);\r
+ #else\r
+ #define Serial_IsCharReceived() ((UCSR1A & (1 << RXC1)) ? true : false)\r
+ #endif\r
+\r
+ /* Inline Functions: */\r
+ /** Initializes the USART, ready for serial data transmission and reception. This initializes the interface to\r
+ * standard 8-bit, no parity, 1 stop bit settings suitable for most applications.\r
+ *\r
+ * \param[in] BaudRate Serial baud rate, in bits per second\r
+ * \param[in] DoubleSpeed Enables double speed mode when set, halving the sample time to double the baud rate\r
+ */\r
+ static inline void Serial_Init(const uint32_t BaudRate, const bool DoubleSpeed)\r
+ {\r
+ UCSR1A = (DoubleSpeed ? (1 << U2X1) : 0);\r
+ UCSR1B = ((1 << TXEN1) | (1 << RXEN1));\r
+ UCSR1C = ((1 << UCSZ11) | (1 << UCSZ10));\r
+ \r
+ DDRD |= (1 << 3); \r
+ PORTD |= (1 << 2);\r
+ \r
+ UBRR1 = (DoubleSpeed ? SERIAL_2X_UBBRVAL(BaudRate) : SERIAL_UBBRVAL(BaudRate));\r
+ }\r
+\r
+ /** Turns off the USART driver, disabling and returning used hardware to their default configuration. */\r
+ static inline void Serial_ShutDown(void)\r
+ {\r
+ UCSR1A = 0;\r
+ UCSR1B = 0;\r
+ UCSR1C = 0;\r
+ \r
+ DDRD &= ~(1 << 3); \r
+ PORTD &= ~(1 << 2);\r
+ \r
+ UBRR1 = 0;\r
+ }\r
+ \r
+ /** Transmits a given byte through the USART.\r
+ *\r
+ * \param[in] DataByte Byte to transmit through the USART\r
+ */\r
+ static inline void Serial_TxByte(const char DataByte)\r
+ {\r
+ while (!(UCSR1A & (1 << UDRE1)));\r
+ UDR1 = DataByte;\r
+ }\r
+\r
+ /** Receives a byte from the USART.\r
+ *\r
+ * \return Byte received from the USART\r
+ */\r
+ static inline uint8_t Serial_RxByte(void)\r
+ {\r
+ while (!(UCSR1A & (1 << RXC1)));\r
+ return UDR1; \r
+ }\r
+\r
+ /* Disable C linkage for C++ Compilers: */\r
+ #if defined(__cplusplus)\r
+ }\r
+ #endif\r
+ \r
+#endif\r
+\r
+/** @} */\r
--- /dev/null
+/*\r
+ LUFA Library\r
+ Copyright (C) Dean Camera, 2010.\r
+ \r
+ dean [at] fourwalledcubicle [dot] com\r
+ www.fourwalledcubicle.com\r
+*/\r
+\r
+/*\r
+ Copyright 2010 Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
+\r
+ Permission to use, copy, modify, distribute, and sell this \r
+ software and its documentation for any purpose is hereby granted\r
+ without fee, provided that the above copyright notice appear in \r
+ all copies and that both that the copyright notice and this\r
+ permission notice and warranty disclaimer appear in supporting \r
+ documentation, and that the name of the author not be used in \r
+ advertising or publicity pertaining to distribution of the \r
+ software without specific, written prior permission.\r
+\r
+ The author disclaim all warranties with regard to this\r
+ software, including all implied warranties of merchantability\r
+ and fitness. In no event shall the author be liable for any\r
+ special, indirect or consequential damages or any damages\r
+ whatsoever resulting from loss of use, data or profits, whether\r
+ in an action of contract, negligence or other tortious action,\r
+ arising out of or in connection with the use or performance of\r
+ this software.\r
+*/\r
+\r
+/** \file\r
+ *\r
+ * Master mode TWI driver for the AT90USB1287, AT90USB1286, AT90USB647, AT90USB646, ATMEGA16U4 and ATMEGA32U4 AVRs.\r
+ *\r
+ * \note This file should not be included directly. It is automatically included as needed by the TWI driver\r
+ * dispatch header located in LUFA/Drivers/Peripheral/TWI.h.\r
+ */\r
+\r
+/** \ingroup Group_TWI\r
+ * @defgroup Group_TWI_AVRU4U6U7 Series U4, U6 and U7 Model TWI Driver\r
+ *\r
+ * Master mode TWI driver for the AT90USB1287, AT90USB1286, AT90USB647, AT90USB646, ATMEGA16U4 and ATMEGA32U4 AVRs.\r
+ *\r
+ * \note This file should not be included directly. It is automatically included as needed by the TWI driver\r
+ * dispatch header located in LUFA/Drivers/Peripheral/TWI.h.\r
+ *\r
+ * @{\r
+ */\r
+\r
+#ifndef __TWI_AVRU4U6U7_H__\r
+#define __TWI_AVRU4U6U7_H__\r
+\r
+ /* Includes: */\r
+ #include "../../../Common/Common.h"\r
+ \r
+ #include <avr/io.h>\r
+ #include <stdbool.h>\r
+ #include <util/twi.h>\r
+ \r
+ /* Enable C linkage for C++ Compilers: */\r
+ #if defined(__cplusplus)\r
+ extern "C" {\r
+ #endif\r
+\r
+ /* Preprocessor Checks: */\r
+ #if !defined(__INCLUDE_FROM_TWI_H)\r
+ #error Do not include this file directly. Include LUFA/Drivers/Peripheral/TWI.h instead.\r
+ #endif\r
+\r
+ /* Public Interface - May be used in end-application: */\r
+ /* Pseudo-Function Macros: */\r
+ #if defined(__DOXYGEN__)\r
+ /** Initializes the TWI hardware into master mode, ready for data transmission and reception. This must be\r
+ * before any other TWI operations.\r
+ */\r
+ static inline void TWI_Init(void);\r
+ \r
+ /** Turns off the TWI driver hardware. If this is called, any further TWI operations will require a call to\r
+ * \ref TWI_Init() before the TWI can be used again.\r
+ */ \r
+ static inline void TWI_ShutDown(void);\r
+ #else\r
+ #define TWI_Init() MACROS{ TWCR |= (1 << TWEN); }MACROE\r
+ #define TWI_ShutDown() MACROS{ TWCR &= ~(1 << TWEN); }MACROE\r
+ #endif\r
+\r
+ /* Inline Functions: */\r
+ /** Sends a TWI STOP onto the TWI bus, terminating communication with the currently addressed device. */\r
+ static inline void TWI_StopTransmission(void)\r
+ {\r
+ TWCR = ((1 << TWINT) | (1 << TWSTO) | (1 << TWEN));\r
+ }\r
+\r
+ /** Sends a byte to the currently addressed device on the TWI bus.\r
+ *\r
+ * \param[in] Byte Byte to send to the currently addressed device\r
+ *\r
+ * \return Boolean true if the recipient ACKed the byte, false otherwise\r
+ */\r
+ static inline bool TWI_SendByte(uint8_t Byte)\r
+ {\r
+ TWDR = Byte;\r
+ TWCR = ((1 << TWINT) | (1 << TWEN)); \r
+ while (!(TWCR & (1 << TWINT)));\r
+\r
+ return ((TWSR & TW_STATUS_MASK) == TW_MT_DATA_ACK);\r
+ }\r
+\r
+ /** Receives a byte from the currently addressed device on the TWI bus.\r
+ *\r
+ * \param[in] Byte Location where the read byte is to be stored\r
+ * \param[in] LastByte Indicates if the byte should be ACKed if false, NAKed if true\r
+ *\r
+ * \return Boolean true if the byte reception sucessfully completed, false otherwise\r
+ */\r
+ static inline bool TWI_ReceiveByte(uint8_t* Byte, bool LastByte)\r
+ {\r
+ uint8_t TWCRMask = ((1 << TWINT) | (1 << TWEN));\r
+ \r
+ if (!(LastByte))\r
+ TWCRMask |= (1 << TWEA);\r
+\r
+ TWCR = TWCRMask;\r
+ while (!(TWCR & (1 << TWINT)));\r
+ *Byte = TWDR;\r
+\r
+ return ((TWSR & TW_STATUS_MASK) == TW_MR_DATA_ACK);\r
+ }\r
+\r
+ /* Function Prototypes: */\r
+ /** Begins a master mode TWI bus communication with the given slave device address.\r
+ *\r
+ * \param[in] SlaveAddress Address of the slave TWI device to communicate with\r
+ *\r
+ * \return Boolean true if the device is ready for data, false otherwise\r
+ */\r
+ bool TWI_StartTransmission(uint8_t SlaveAddress);\r
+\r
+ /* Disable C linkage for C++ Compilers: */\r
+ #if defined(__cplusplus)\r
+ }\r
+ #endif\r
+\r
+#endif\r
+\r
+/** @} */\r
\r
/** \file\r
*\r
- * This file is the master dispatch header file for the device-specific SPI driver, for AVRs containing a SPI.\r
- *\r
- * User code should include this file, which will in turn include the correct SPI driver header file for the\r
- * currently selected AVR model.\r
+ * Hardware SPI subsystem driver for the supported USB AVRs models.\r
*/\r
\r
/** \ingroup Group_PeripheralDrivers\r
#ifndef __SPI_H__\r
#define __SPI_H__\r
\r
- /* Macros: */\r
+ /* Includes: */\r
+ #include <stdbool.h>\r
+\r
+ /* Enable C linkage for C++ Compilers: */\r
+ #if defined(__cplusplus)\r
+ extern "C" {\r
+ #endif\r
+\r
+ /* Private Interface - For use in library only: */\r
#if !defined(__DOXYGEN__)\r
- #define __INCLUDE_FROM_SPI_H\r
+ /* Macros: */\r
+ #define SPI_USE_DOUBLESPEED (1 << SPE)\r
#endif\r
+ \r
+ /* Public Interface - May be used in end-application: */\r
+ /* Macros: */\r
+ /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 2. */\r
+ #define SPI_SPEED_FCPU_DIV_2 SPI_USE_DOUBLESPEED\r
\r
- /* Includes: */\r
- #include "../../Common/Common.h" \r
+ /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 4. */\r
+ #define SPI_SPEED_FCPU_DIV_4 0\r
+\r
+ /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 8. */\r
+ #define SPI_SPEED_FCPU_DIV_8 (SPI_USE_DOUBLESPEED | (1 << SPR0))\r
+\r
+ /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 16. */\r
+ #define SPI_SPEED_FCPU_DIV_16 (1 << SPR0)\r
+\r
+ /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 32. */\r
+ #define SPI_SPEED_FCPU_DIV_32 (SPI_USE_DOUBLESPEED | (1 << SPR1))\r
+\r
+ /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 64. */\r
+ #define SPI_SPEED_FCPU_DIV_64 (SPI_USE_DOUBLESPEED | (1 << SPR1) | (1 << SPR0))\r
+\r
+ /** SPI prescaler mask for SPI_Init(). Divides the system clock by a factor of 128. */\r
+ #define SPI_SPEED_FCPU_DIV_128 ((1 << SPR1) | (1 << SPR0))\r
+ \r
+ /** SPI clock polarity mask for SPI_Init(). Indicates that the SCK should lead on the rising edge. */\r
+ #define SPI_SCK_LEAD_RISING (0 << CPOL)\r
+\r
+ /** SPI clock polarity mask for SPI_Init(). Indicates that the SCK should lead on the falling edge. */\r
+ #define SPI_SCK_LEAD_FALLING (1 << CPOL)\r
+\r
+ /** SPI data sample mode mask for SPI_Init(). Indicates that the data should sampled on the leading edge. */\r
+ #define SPI_SAMPLE_LEADING (0 << CPHA)\r
+\r
+ /** SPI data sample mode mask for SPI_Init(). Indicates that the data should be sampled on the trailing edge. */\r
+ #define SPI_SAMPLE_TRAILING (1 << CPHA)\r
+ \r
+ /** SPI mode mask for SPI_Init(). Indicates that the SPI interface should be initialized into slave mode. */\r
+ #define SPI_MODE_SLAVE (0 << MSTR)\r
+\r
+ /** SPI mode mask for SPI_Init(). Indicates that the SPI interface should be initialized into master mode. */\r
+ #define SPI_MODE_MASTER (1 << MSTR)\r
+\r
+ /* Inline Functions: */\r
+ /** Initializes the SPI subsystem, ready for transfers. Must be called before calling any other\r
+ * SPI routines.\r
+ *\r
+ * \param[in] SPIOptions SPI Options, a mask consisting of one of each of the SPI_SPEED_*,\r
+ * SPI_SCK_*, SPI_SAMPLE_* and SPI_MODE_* masks\r
+ */\r
+ static inline void SPI_Init(const uint8_t SPIOptions)\r
+ {\r
+ DDRB |= ((1 << 1) | (1 << 2));\r
+ PORTB |= ((1 << 0) | (1 << 3));\r
+ \r
+ SPCR = ((1 << SPE) | SPIOptions);\r
+ \r
+ if (SPIOptions & SPI_USE_DOUBLESPEED)\r
+ SPSR |= (1 << SPI2X);\r
+ else\r
+ SPSR &= ~(1 << SPI2X);\r
+ }\r
+ \r
+ /** Turns off the SPI driver, disabling and returning used hardware to their default configuration. */\r
+ static inline void SPI_ShutDown(void)\r
+ {\r
+ DDRB &= ~((1 << 1) | (1 << 2));\r
+ PORTB &= ~((1 << 0) | (1 << 3));\r
+ \r
+ SPCR = 0;\r
+ SPSR = 0;\r
+ }\r
+ \r
+ /** Sends and receives a byte through the SPI interface, blocking until the transfer is complete.\r
+ *\r
+ * \param[in] Byte Byte to send through the SPI interface\r
+ *\r
+ * \return Response byte from the attached SPI device\r
+ */\r
+ static inline uint8_t SPI_TransferByte(const uint8_t Byte) ATTR_ALWAYS_INLINE;\r
+ static inline uint8_t SPI_TransferByte(const uint8_t Byte)\r
+ {\r
+ SPDR = Byte;\r
+ while (!(SPSR & (1 << SPIF)));\r
+ return SPDR;\r
+ }\r
+\r
+ /** Sends a byte through the SPI interface, blocking until the transfer is complete. The response\r
+ * byte sent to from the attached SPI device is ignored.\r
+ *\r
+ * \param[in] Byte Byte to send through the SPI interface\r
+ */\r
+ static inline void SPI_SendByte(const uint8_t Byte) ATTR_ALWAYS_INLINE;\r
+ static inline void SPI_SendByte(const uint8_t Byte)\r
+ {\r
+ SPDR = Byte;\r
+ while (!(SPSR & (1 << SPIF)));\r
+ }\r
+\r
+ /** Sends a dummy byte through the SPI interface, blocking until the transfer is complete. The response\r
+ * byte from the attached SPI device is returned.\r
+ *\r
+ * \return The response byte from the attached SPI device\r
+ */\r
+ static inline uint8_t SPI_ReceiveByte(void) ATTR_ALWAYS_INLINE ATTR_WARN_UNUSED_RESULT;\r
+ static inline uint8_t SPI_ReceiveByte(void)\r
+ {\r
+ SPDR = 0x00;\r
+ while (!(SPSR & (1 << SPIF)));\r
+ return SPDR;\r
+ }\r
\r
- #if defined(__AVR32__)\r
- #include "AVR32/SPI.h"\r
- #elif defined(__AVR__)\r
- #include "AVR8/SPI.h" \r
+ /* Disable C linkage for C++ Compilers: */\r
+ #if defined(__cplusplus)\r
+ }\r
#endif\r
\r
#endif\r
\r
/** \file\r
*\r
- * This file is the master dispatch header file for the device-specific USART driver, for AVRs containing a\r
- * USART.\r
- *\r
- * User code should include this file, which will in turn include the correct USART driver header file for\r
- * the currently selected AVR model.\r
+ * Driver for the USART subsystem on supported USB AVRs.\r
*/\r
\r
/** \ingroup Group_PeripheralDrivers\r
#ifndef __SERIAL_H__\r
#define __SERIAL_H__\r
\r
- /* Macros: */\r
- #if !defined(__DOXYGEN__)\r
- #define __INCLUDE_FROM_SERIAL_H\r
- #endif\r
-\r
/* Includes: */\r
- #include "../../Common/Common.h" \r
+ #include <avr/io.h>\r
+ #include <avr/pgmspace.h>\r
+ #include <stdbool.h>\r
+ \r
+ #include "../../Common/Common.h"\r
#include "../Misc/TerminalCodes.h"\r
\r
- #if defined(__AVR32__)\r
- #include "AVR32/Serial.h"\r
- #elif defined(__AVR__)\r
- #include "AVR8/Serial.h" \r
- #endif\r
- \r
/* Enable C linkage for C++ Compilers: */\r
#if defined(__cplusplus)\r
extern "C" {\r
#endif\r
\r
/* Public Interface - May be used in end-application: */\r
+ /* Macros: */\r
+ /** Macro for calculating the baud value from a given baud rate when the U2X (double speed) bit is\r
+ * not set.\r
+ */\r
+ #define SERIAL_UBBRVAL(baud) ((((F_CPU / 16) + (baud / 2)) / (baud)) - 1)\r
+\r
+ /** Macro for calculating the baud value from a given baud rate when the U2X (double speed) bit is\r
+ * set.\r
+ */\r
+ #define SERIAL_2X_UBBRVAL(baud) ((((F_CPU / 8) + (baud / 2)) / (baud)) - 1)\r
+\r
+ /* Pseudo-Function Macros: */\r
+ #if defined(__DOXYGEN__)\r
+ /** Indicates whether a character has been received through the USART.\r
+ *\r
+ * \return Boolean true if a character has been received, false otherwise\r
+ */\r
+ static inline bool Serial_IsCharReceived(void);\r
+ #else\r
+ #define Serial_IsCharReceived() ((UCSR1A & (1 << RXC1)) ? true : false)\r
+ #endif\r
+\r
/* Function Prototypes: */\r
/** Transmits a given string located in program space (FLASH) through the USART.\r
*\r
*/\r
void Serial_TxString(const char *StringPtr) ATTR_NON_NULL_PTR_ARG(1);\r
\r
+ /* Inline Functions: */\r
+ /** Initializes the USART, ready for serial data transmission and reception. This initializes the interface to\r
+ * standard 8-bit, no parity, 1 stop bit settings suitable for most applications.\r
+ *\r
+ * \param[in] BaudRate Serial baud rate, in bits per second\r
+ * \param[in] DoubleSpeed Enables double speed mode when set, halving the sample time to double the baud rate\r
+ */\r
+ static inline void Serial_Init(const uint32_t BaudRate, const bool DoubleSpeed)\r
+ {\r
+ UCSR1A = (DoubleSpeed ? (1 << U2X1) : 0);\r
+ UCSR1B = ((1 << TXEN1) | (1 << RXEN1));\r
+ UCSR1C = ((1 << UCSZ11) | (1 << UCSZ10));\r
+ \r
+ DDRD |= (1 << 3); \r
+ PORTD |= (1 << 2);\r
+ \r
+ UBRR1 = (DoubleSpeed ? SERIAL_2X_UBBRVAL(BaudRate) : SERIAL_UBBRVAL(BaudRate));\r
+ }\r
+\r
+ /** Turns off the USART driver, disabling and returning used hardware to their default configuration. */\r
+ static inline void Serial_ShutDown(void)\r
+ {\r
+ UCSR1A = 0;\r
+ UCSR1B = 0;\r
+ UCSR1C = 0;\r
+ \r
+ DDRD &= ~(1 << 3); \r
+ PORTD &= ~(1 << 2);\r
+ \r
+ UBRR1 = 0;\r
+ }\r
+ \r
+ /** Transmits a given byte through the USART.\r
+ *\r
+ * \param[in] DataByte Byte to transmit through the USART\r
+ */\r
+ static inline void Serial_TxByte(const char DataByte)\r
+ {\r
+ while (!(UCSR1A & (1 << UDRE1)));\r
+ UDR1 = DataByte;\r
+ }\r
+\r
+ /** Receives a byte from the USART.\r
+ *\r
+ * \return Byte received from the USART\r
+ */\r
+ static inline char Serial_RxByte(void)\r
+ {\r
+ while (!(UCSR1A & (1 << RXC1)));\r
+ return UDR1; \r
+ }\r
+\r
/* Disable C linkage for C++ Compilers: */\r
#if defined(__cplusplus)\r
}\r
#include <avr/io.h>\r
#include <stdio.h>\r
\r
- #include "../../Common/Common.h" \r
-\r
#include "Serial.h"\r
\r
/* Enable C linkage for C++ Compilers: */\r
#endif\r
\r
/* Includes: */\r
- #include "../../Common/Common.h" \r
-\r
#if (defined(__AVR_AT90USB1286__) || defined(__AVR_AT90USB646__) || \\r
defined(__AVR_AT90USB1287__) || defined(__AVR_AT90USB647__) || \\r
defined(__AVR_ATmega16U4__) || defined(__AVR_ATmega32U4__) || \\r
defined(__AVR_ATmega32U6__))\r
- #include "AVR8/TWI.h"\r
+ #include "AVRU4U6U7/TWI.h"\r
#else\r
#error "TWI is not available for the currently selected AVR model."\r
#endif\r
case OID_GEN_SUPPORTED_LIST:\r
*ResponseSize = sizeof(AdapterSupportedOIDList);\r
\r
- #if defined(__AVR32__)\r
- memcpy(ResponseData, AdapterSupportedOIDList, sizeof(AdapterSupportedOIDList)); \r
- #elif defined(__AVR__)\r
- memcpy_P(ResponseData, AdapterSupportedOIDList, sizeof(AdapterSupportedOIDList)); \r
- #endif\r
+ memcpy_P(ResponseData, AdapterSupportedOIDList, sizeof(AdapterSupportedOIDList));\r
\r
return true;\r
case OID_GEN_PHYSICAL_MEDIUM:\r
#define __CONFIGDESCRIPTOR_H__\r
\r
/* Includes: */\r
- #if defined(__AVR32__)\r
- #include <avr32/io.h>\r
- #elif defined(__AVR__)\r
- #include <avr/io.h>\r
- #endif\r
+ #include <avr/io.h>\r
\r
#include "../../../Common/Common.h"\r
#include "../HighLevel/USBMode.h"\r
\r
/* Preprocessor Checks: */\r
#if !defined(__INCLUDE_FROM_USB_DRIVER)\r
- #error Do not include this file directly. Include LUFA/Drivers/USB/USB.h instead.\r
+ #error Do not include this file directly. Include LUFA/Drivers/USB.h instead.\r
#endif\r
\r
/* Public Interface - May be used in end-application: */ \r
#define __USBEVENTS_H__\r
\r
/* Includes: */\r
- #if defined(__AVR32__)\r
- #include <avr32/io.h>\r
- #elif defined(__AVR__)\r
- #include <avr/io.h>\r
- #endif\r
+ #include <avr/io.h>\r
\r
#include "../../../Common/Common.h"\r
#include "USBMode.h"\r
\r
/* Preprocessor Checks: */\r
#if !defined(__INCLUDE_FROM_USB_DRIVER)\r
- #error Do not include this file directly. Include LUFA/Drivers/USB/USB.h instead.\r
+ #error Do not include this file directly. Include LUFA/Drivers/USB.h instead.\r
#endif\r
\r
/* Public Interface - May be used in end-application: */ \r
#define __USBDESCRIPTORS_H__\r
\r
/* Includes: */\r
- #if defined(__AVR32__)\r
- #include <avr32/io.h>\r
- #include <stdint.h>\r
- #include <stdbool.h>\r
- #include <stddef.h>\r
- #elif defined(__AVR__)\r
- #include <avr/pgmspace.h>\r
- #include <stdbool.h>\r
- #include <stddef.h>\r
- #endif\r
+ #include <avr/pgmspace.h>\r
+ #include <stdbool.h>\r
+ #include <stddef.h>\r
\r
#include "../../../Common/Common.h"\r
#include "USBMode.h"\r
\r
/* Preprocessor Checks: */\r
#if !defined(__INCLUDE_FROM_USB_DRIVER)\r
- #error Do not include this file directly. Include LUFA/Drivers/USB/USB.h instead.\r
+ #error Do not include this file directly. Include LUFA/Drivers/USB.h instead.\r
#endif\r
\r
/* Public Interface - May be used in end-application: */\r
\r
/* Preprocessor Checks: */\r
#if !defined(__INCLUDE_FROM_USB_DRIVER)\r
- #error Do not include this file directly. Include LUFA/Drivers/USB/USB.h instead.\r
+ #error Do not include this file directly. Include LUFA/Drivers/USB.h instead.\r
#endif\r
\r
/* Public Interface - May be used in end-application: */\r
\r
/* Preprocessor Checks: */\r
#if !defined(__INCLUDE_FROM_USB_DRIVER)\r
- #error Do not include this file directly. Include LUFA/Drivers/USB/USB.h instead.\r
+ #error Do not include this file directly. Include LUFA/Drivers/USB.h instead.\r
#endif\r
\r
/* Public Interface - May be used in end-application: */\r
\r
void USB_INT_ClearAllInterrupts(void)\r
{\r
- #if defined(__AVR32__)\r
- AVR32_USBB.USBSTACLR = 0xFFFFFF;\r
- AVR32_USBB.UHINTCLR = 0xFFFFFF;\r
- AVR32_USBB.UECONX = \r
- AVR32_USBB.UDINTCLR = 0xFFFFFF; \r
- #elif defined(__AVR__)\r
- #if defined(USB_SERIES_4_AVR) || defined(USB_SERIES_6_AVR) || defined(USB_SERIES_7_AVR)\r
- USBINT = 0;\r
- #endif\r
- \r
- #if defined(USB_CAN_BE_HOST)\r
- UHINT = 0;\r
- OTGINT = 0;\r
- #endif\r
- \r
- #if defined(USB_CAN_BE_DEVICE)\r
- UDINT = 0;\r
- #endif\r
+ #if defined(USB_SERIES_4_AVR) || defined(USB_SERIES_6_AVR) || defined(USB_SERIES_7_AVR)\r
+ USBINT = 0;\r
+ #endif\r
+ \r
+ #if defined(USB_CAN_BE_HOST)\r
+ UHINT = 0;\r
+ OTGINT = 0;\r
+ #endif\r
+ \r
+ #if defined(USB_CAN_BE_DEVICE)\r
+ UDINT = 0;\r
#endif\r
}\r
\r
#define __USBINTERRUPT_H__\r
\r
/* Includes: */\r
- #if defined(__AVR32__)\r
- #include <avr32/io.h>\r
- #include <stdbool.h>\r
- #include <stdint.h>\r
- #elif defined(__AVR__)\r
- #include <avr/io.h>\r
- #include <stdbool.h>\r
- #endif\r
+ #include <avr/io.h>\r
+ #include <stdbool.h>\r
\r
#include "../../../Common/Common.h"\r
#include "../LowLevel/LowLevel.h"\r
\r
/* Preprocessor Checks: */\r
#if !defined(__INCLUDE_FROM_USB_DRIVER)\r
- #error Do not include this file directly. Include LUFA/Drivers/USB/USB.h instead.\r
+ #error Do not include this file directly. Include LUFA/Drivers/USB.h instead.\r
#endif\r
\r
/* Private Interface - For use in library only: */\r
#if !defined(__DOXYGEN__)\r
/* Macros: */\r
- #if defined(__AVR32__)\r
- #define USB_INT_Enable(int) MACROS{ USB_INT_GET_EN_REG(int) |= USB_INT_GET_EN_MASK(int); }MACROE\r
- #define USB_INT_Disable(int) MACROS{ USB_INT_GET_EN_REG(int) &= ~(USB_INT_GET_EN_MASK(int)); }MACROE\r
- #define USB_INT_Clear(int) MACROS{ USB_INT_GET_INTC_REG(int) |= USB_INT_GET_INTC_MASK(int); }MACROE\r
- #define USB_INT_IsEnabled(int) ((USB_INT_GET_EN_REG(int) & USB_INT_GET_EN_MASK(int)) ? true : false)\r
- #define USB_INT_HasOccurred(int) ((USB_INT_GET_INT_REG(int) & USB_INT_GET_INT_MASK(int)) ? true : false)\r
-\r
- #define USB_INT_GET_EN_REG(a, b, c, d) *( (volatile uint32_t*)AVR32_USBB_ ## a )\r
- #define USB_INT_GET_EN_MASK(a, b, c, d) AVR32_USBB_ ## b\r
- #define USB_INT_GET_INT_REG(a, b, c, d) *( (volatile uint32_t*)AVR32_USBB_ ## c )\r
- #define USB_INT_GET_INT_MASK(a, b, c, d) AVR32_USBB_ ## d\r
- #define USB_INT_GET_INTC_REG(a, b, c, d) *( (volatile uint32_t*)AVR32_USBB_ ## c ## CLR )\r
- #define USB_INT_GET_INTC_MASK(a, b, c, d) AVR32_USBB_ ## d ## C\r
-\r
- #define USB_INT_VBUS USBCON, USBCON_VBUSTE_MASK, USBSTA, USBSTA_VBUSTI_MASK\r
- #define USB_INT_IDTI USBCON, USBCON_IDTE_MASK , USBSTA, USBCON_IDTI_MASK\r
- #define USB_INT_WAKEUP UDIEN , UDIEN_WAKEUPE_MASK, UDINT , UDIEN_WAKEUPI_MASK\r
- #define USB_INT_SUSPEND UDIEN , UDIEN_SUSPE_MASK , UDINT , UDIEN_SUSPI_MASK\r
- #define USB_INT_EORSTI UDIEN , UDIEN_EORSTE_MASK , UDINT , UDIEN_EORSTI_MASK\r
- #define USB_INT_SOFI UDIEN, UDIEN_SOFE_MASK , UDINT , UDIEN_SOFI_MASK\r
- #define USB_INT_DCONNI UHIEN , UDIEN_DCONNE_MASK , UHINT , UHIEN_DCONNI_MASK\r
- #define USB_INT_DDISCI UHIEN , UDIEN_DDISCE_MASK , UHINT , UHIEN_DDISCI_MASK\r
- #define USB_INT_HSOFI UHIEN, UHIEN_HSOFE_MASK , UHINT , UHIEN_HSOFI_MASK\r
- #define USB_INT_RSTI UHIEN , UHIEN_RSTE_MASK , UHINT , UHIEN_RSTI_MASK\r
- #define USB_INT_RXSTPI UECONX, UECONX_RXSTPE_MASK, UESTAX, UESTAX_RXSTPI_MASK\r
- #define USB_INT_BCERRI USBCON, USBCON_BCERRE_MASK, USBSTA, USBSTA_BCERRI_MASK\r
- #define USB_INT_VBERRI USBCON, USBCON_VBERRE_MASK, USBSTA, USBSTA_VBERRI_MASK\r
- #define USB_INT_SRPI USBCON, USBCON_SRPE_MASK , USBSTA, USBSTA_SRPI_MASK\r
- #elif defined(__AVR__)\r
- #define USB_INT_Enable(int) MACROS{ USB_INT_GET_EN_REG(int) |= USB_INT_GET_EN_MASK(int); }MACROE\r
- #define USB_INT_Disable(int) MACROS{ USB_INT_GET_EN_REG(int) &= ~(USB_INT_GET_EN_MASK(int)); }MACROE\r
- #define USB_INT_Clear(int) MACROS{ USB_INT_GET_INT_REG(int) &= ~(USB_INT_GET_INT_MASK(int)); }MACROE\r
- #define USB_INT_IsEnabled(int) ((USB_INT_GET_EN_REG(int) & USB_INT_GET_EN_MASK(int)) ? true : false)\r
- #define USB_INT_HasOccurred(int) ((USB_INT_GET_INT_REG(int) & USB_INT_GET_INT_MASK(int)) ? true : false)\r
+ #define USB_INT_Enable(int) MACROS{ USB_INT_GET_EN_REG(int) |= USB_INT_GET_EN_MASK(int); }MACROE\r
+ #define USB_INT_Disable(int) MACROS{ USB_INT_GET_EN_REG(int) &= ~(USB_INT_GET_EN_MASK(int)); }MACROE\r
+ #define USB_INT_Clear(int) MACROS{ USB_INT_GET_INT_REG(int) &= ~(USB_INT_GET_INT_MASK(int)); }MACROE\r
+ #define USB_INT_IsEnabled(int) ((USB_INT_GET_EN_REG(int) & USB_INT_GET_EN_MASK(int)) ? true : false)\r
+ #define USB_INT_HasOccurred(int) ((USB_INT_GET_INT_REG(int) & USB_INT_GET_INT_MASK(int)) ? true : false)\r
\r
- #define USB_INT_GET_EN_REG(a, b, c, d) a\r
- #define USB_INT_GET_EN_MASK(a, b, c, d) b\r
- #define USB_INT_GET_INT_REG(a, b, c, d) c\r
- #define USB_INT_GET_INT_MASK(a, b, c, d) d\r
+ #define USB_INT_GET_EN_REG(a, b, c, d) a\r
+ #define USB_INT_GET_EN_MASK(a, b, c, d) b\r
+ #define USB_INT_GET_INT_REG(a, b, c, d) c\r
+ #define USB_INT_GET_INT_MASK(a, b, c, d) d\r
\r
- #define USB_INT_VBUS USBCON, (1 << VBUSTE) , USBINT, (1 << VBUSTI)\r
- #define USB_INT_IDTI USBCON, (1 << IDTE) , USBINT, (1 << IDTI)\r
- #define USB_INT_WAKEUP UDIEN , (1 << WAKEUPE), UDINT , (1 << WAKEUPI)\r
- #define USB_INT_SUSPEND UDIEN , (1 << SUSPE) , UDINT , (1 << SUSPI)\r
- #define USB_INT_EORSTI UDIEN , (1 << EORSTE) , UDINT , (1 << EORSTI)\r
- #define USB_INT_SOFI UDIEN, (1 << SOFE) , UDINT , (1 << SOFI)\r
- #define USB_INT_DCONNI UHIEN , (1 << DCONNE) , UHINT , (1 << DCONNI)\r
- #define USB_INT_DDISCI UHIEN , (1 << DDISCE) , UHINT , (1 << DDISCI)\r
- #define USB_INT_HSOFI UHIEN, (1 << HSOFE) , UHINT , (1 << HSOFI)\r
- #define USB_INT_RSTI UHIEN , (1 << RSTE) , UHINT , (1 << RSTI)\r
- #define USB_INT_BCERRI OTGIEN, (1 << BCERRE) , OTGINT, (1 << BCERRI)\r
- #define USB_INT_VBERRI OTGIEN, (1 << VBERRE) , OTGINT, (1 << VBERRI)\r
- #define USB_INT_SRPI OTGIEN, (1 << SRPE) , OTGINT, (1 << SRPI)\r
- #define USB_INT_RXSTPI UEIENX, (1 << RXSTPE) , UEINTX, (1 << RXSTPI)\r
- #endif\r
+ #define USB_INT_VBUS USBCON, (1 << VBUSTE) , USBINT, (1 << VBUSTI)\r
+ #define USB_INT_IDTI USBCON, (1 << IDTE) , USBINT, (1 << IDTI)\r
+ #define USB_INT_WAKEUP UDIEN , (1 << WAKEUPE), UDINT , (1 << WAKEUPI)\r
+ #define USB_INT_SUSPEND UDIEN , (1 << SUSPE) , UDINT , (1 << SUSPI)\r
+ #define USB_INT_EORSTI UDIEN , (1 << EORSTE) , UDINT , (1 << EORSTI)\r
+ #define USB_INT_DCONNI UHIEN , (1 << DCONNE) , UHINT , (1 << DCONNI)\r
+ #define USB_INT_DDISCI UHIEN , (1 << DDISCE) , UHINT , (1 << DDISCI)\r
+ #define USB_INT_BCERRI OTGIEN, (1 << BCERRE) , OTGINT, (1 << BCERRI)\r
+ #define USB_INT_VBERRI OTGIEN, (1 << VBERRE) , OTGINT, (1 << VBERRI)\r
+ #define USB_INT_SOFI UDIEN, (1 << SOFE) , UDINT , (1 << SOFI)\r
+ #define USB_INT_HSOFI UHIEN, (1 << HSOFE) , UHINT , (1 << HSOFI)\r
+ #define USB_INT_RSTI UHIEN , (1 << RSTE) , UHINT , (1 << RSTI)\r
+ #define USB_INT_SRPI OTGIEN, (1 << SRPE) , OTGINT, (1 << SRPI)\r
+ #define USB_INT_RXSTPI UEIENX, (1 << RXSTPE) , UEINTX, (1 << RXSTPI)\r
\r
/* Function Prototypes: */\r
void USB_INT_ClearAllInterrupts(void);\r
\r
/* Preprocessor Checks: */\r
#if !defined(__INCLUDE_FROM_USB_DRIVER)\r
- #error Do not include this file directly. Include LUFA/Drivers/USB/USB.h instead.\r
+ #error Do not include this file directly. Include LUFA/Drivers/USB.h instead.\r
#endif\r
\r
/* Public Interface - May be used in end-application: */\r
* (i.e. AT90USBXXX7) when defined.\r
*/\r
#define USB_SERIES_7_AVR\r
- \r
- /** Indicates that the target AVR microcontroller belongs to the Series UC3B USB controller\r
- * (i.e. AT32UC3BXXXX) when defined.\r
- */\r
- #define USB_SERIES_UC3B_AVR\r
\r
/** Indicates that the target AVR microcontroller and compilation settings allow for the\r
* target to be configured in USB Device mode when defined.\r
#define USB_SERIES_6_AVR\r
#elif (defined(__AVR_AT90USB647__) || defined(__AVR_AT90USB1287__))\r
#define USB_SERIES_7_AVR\r
- #elif (defined(__AVR32_UC3B0256__))\r
- #define USB_SERIES_UC3B_AVR\r
#endif \r
\r
- #if !defined(USB_SERIES_7_AVR) && !defined(USB_SERIES_UC3B_AVR)\r
+ #if !defined(USB_SERIES_7_AVR) \r
#if defined(USB_HOST_ONLY)\r
#error USB_HOST_ONLY is not available for the currently selected USB AVR model.\r
#endif\r
#define __USBTASK_H__\r
\r
/* Includes: */\r
- #if defined(__AVR32__)\r
- #include <avr32/io.h>\r
- #include <stdint.h>\r
- #include <stdbool.h>\r
- #elif defined(__AVR__)\r
- #include <avr/io.h>\r
- #include <avr/interrupt.h>\r
- #include <stdbool.h>\r
- #endif\r
+ #include <avr/io.h>\r
+ #include <avr/interrupt.h>\r
+ #include <stdbool.h>\r
\r
#include "../LowLevel/LowLevel.h"\r
#include "Events.h"\r
\r
/* Preprocessor Checks: */\r
#if !defined(__INCLUDE_FROM_USB_DRIVER)\r
- #error Do not include this file directly. Include LUFA/Drivers/USB/USB.h instead.\r
+ #error Do not include this file directly. Include LUFA/Drivers/USB.h instead.\r
#endif\r
\r
/* Public Interface - May be used in end-application: */\r
extern USB_Request_Header_t USB_ControlRequest;\r
\r
#if defined(USB_CAN_BE_HOST) || defined(__DOXYGEN__)\r
- #if (!defined(__AVR32__) || !defined(HOST_STATE_AS_GPIOR)) || defined(__DOXYGEN__)\r
+ #if !defined(HOST_STATE_AS_GPIOR) || defined(__DOXYGEN__)\r
/** Indicates the current host state machine state. When in host mode, this indicates the state\r
* via one of the values of the \ref USB_Host_States_t enum values.\r
*\r
#endif\r
\r
#if defined(USB_CAN_BE_DEVICE) || defined(__DOXYGEN__)\r
- #if (defined(__AVR32__) || !defined(DEVICE_STATE_AS_GPIOR)) || defined(__DOXYGEN__)\r
+ #if !defined(DEVICE_STATE_AS_GPIOR) || defined(__DOXYGEN__)\r
/** Indicates the current device state machine state. When in device mode, this indicates the state\r
* via one of the values of the \ref USB_Device_States_t enum values.\r
*\r
if (DeviceAddress)\r
USB_DeviceState = DEVICE_STATE_Addressed;\r
\r
- USB_Device_SetDeviceAddress(DeviceAddress);\r
+ UDADDR = ((1 << ADDEN) | DeviceAddress);\r
\r
return;\r
}\r
#define __DEVCHAPTER9_H__\r
\r
/* Includes: */\r
- #if defined(__AVR32__)\r
- #include <avr32/io.h>\r
- #include <stdint.h>\r
- #elif defined(__AVR__)\r
- #include <avr/io.h>\r
- #include <avr/pgmspace.h>\r
- #include <avr/eeprom.h>\r
- #include <avr/boot.h>\r
- #endif\r
+ #include <avr/io.h>\r
+ #include <avr/pgmspace.h>\r
+ #include <avr/eeprom.h>\r
+ #include <avr/boot.h>\r
\r
#include "../HighLevel/StdDescriptors.h"\r
#include "../HighLevel/Events.h"\r
\r
/* Preprocessor Checks: */\r
#if !defined(__INCLUDE_FROM_USB_DRIVER)\r
- #error Do not include this file directly. Include LUFA/Drivers/USB/USB.h instead.\r
+ #error Do not include this file directly. Include LUFA/Drivers/USB.h instead.\r
#endif\r
\r
/* Public Interface - May be used in end-application: */\r
enum USB_DescriptorMemorySpaces_t\r
{\r
MEMSPACE_FLASH = 0, /**< Indicates the requested descriptor is located in FLASH memory */\r
- \r
- #if defined(__AVR__) || defined(__DOXYGEN__)\r
MEMSPACE_EEPROM = 1, /**< Indicates the requested descriptor is located in EEPROM memory */\r
- #endif\r
- \r
MEMSPACE_RAM = 2, /**< Indicates the requested descriptor is located in RAM memory */\r
};\r
#endif\r
#elif defined(USE_FLASH_DESCRIPTORS) && defined(USE_EEPROM_DESCRIPTORS) && defined(USE_RAM_DESCRIPTORS)\r
#error Only one of the USE_*_DESCRIPTORS modes should be selected.\r
#endif\r
- \r
- #if defined(USE_EEPROM_DESCRIPTORS) && defined(USB_SERIES_UC3B_AVR)\r
- #error USE_EEPROM_DESCRIPTORS is not available on the UC3B series AVRs.\r
- #endif\r
\r
/* Function Prototypes: */\r
void USB_Device_ProcessControlRequest(void);\r
#define __USBDEVICE_H__\r
\r
/* Includes: */\r
- #if defined(__AVR__)\r
- #include <avr/pgmspace.h>\r
- #include <avr/eeprom.h>\r
- #endif\r
- \r
+ #include <avr/pgmspace.h>\r
+ #include <avr/eeprom.h>\r
+\r
#include "../../../Common/Common.h" \r
#include "../HighLevel/StdDescriptors.h"\r
#include "Endpoint.h"\r
#endif\r
\r
#if !defined(__INCLUDE_FROM_USB_DRIVER)\r
- #error Do not include this file directly. Include LUFA/Drivers/USB/USB.h instead.\r
+ #error Do not include this file directly. Include LUFA/Drivers/USB.h instead.\r
#endif\r
\r
/* Public Interface - May be used in end-application: */\r
/* Macros: */\r
- #if (defined(USB_SERIES_4_AVR) || defined(USB_SERIES_6_AVR) || defined(USB_SERIES_7_AVR) || \\r
- defined(USB_SERIES_UC3B_AVR) || defined(__DOXYGEN__))\r
+ #if defined(USB_SERIES_4_AVR) || defined(USB_SERIES_6_AVR) || defined(USB_SERIES_7_AVR) || defined(__DOXYGEN__)\r
/** Mask for the Options parameter of the \ref USB_Init() function. This indicates that the\r
* USB interface should be initialized in low speed (1.5Mb/s) mode.\r
*\r
* \note Restrictions apply on the number, size and type of endpoints which can be used\r
* when running in low speed mode -- refer to the USB 2.0 standard.\r
*/\r
- #define USB_DEVICE_OPT_LOWSPEED (1 << 0)\r
+ #define USB_DEVICE_OPT_LOWSPEED (1 << 0)\r
#endif\r
\r
/** Mask for the Options parameter of the USB_Init() function. This indicates that the\r
* USB interface should be initialized in full speed (12Mb/s) mode.\r
*/\r
- #define USB_DEVICE_OPT_FULLSPEED (0 << 0)\r
+ #define USB_DEVICE_OPT_FULLSPEED (0 << 0)\r
\r
/* Pseudo-Function Macros: */\r
#if defined(__DOXYGEN__)\r
*/\r
static inline bool USB_Device_DisableSOFEvents(void);\r
#else\r
- #if defined(__AVR32__)\r
- #if !defined(NO_DEVICE_REMOTE_WAKEUP)\r
- #define USB_Device_SendRemoteWakeup() MACROS{ AVR32_USBB.UDCON.rmwkup = true; }MACROE\r
-\r
- #define USB_Device_IsRemoteWakeupSent() AVR32_USBB.UDCON.rmwkup\r
- #endif\r
- \r
- #define USB_Device_IsUSBSuspended() AVR32_USBB.UDINT.susp \r
- #elif defined(__AVR__)\r
- #if !defined(NO_DEVICE_REMOTE_WAKEUP)\r
- #define USB_Device_SendRemoteWakeup() MACROS{ UDCON |= (1 << RMWKUP); }MACROE\r
+ #if !defined(NO_DEVICE_REMOTE_WAKEUP)\r
+ #define USB_Device_SendRemoteWakeup() MACROS{ UDCON |= (1 << RMWKUP); }MACROE\r
\r
- #define USB_Device_IsRemoteWakeupSent() ((UDCON & (1 << RMWKUP)) ? false : true)\r
- #endif\r
- \r
- #define USB_Device_IsUSBSuspended() ((UDINT & (1 << SUSPI)) ? true : false)\r
+ #define USB_Device_IsRemoteWakeupSent() ((UDCON & (1 << RMWKUP)) ? false : true)\r
#endif\r
-\r
+ \r
+ #define USB_Device_IsUSBSuspended() ((UDINT & (1 << SUSPI)) ? true : false)\r
+ \r
#define USB_Device_EnableSOFEvents() MACROS{ USB_INT_Enable(USB_INT_SOFI); }MACROE\r
+\r
#define USB_Device_DisableSOFEvents() MACROS{ USB_INT_Disable(USB_INT_SOFI); }MACROE\r
#endif\r
\r
/* Private Interface - For use in library only: */\r
#if !defined(__DOXYGEN__)\r
/* Macros: */ \r
- #if defined(__AVR32__)\r
- #define USB_Device_SetLowSpeed() MACROS{ AVR32_USBB.UDCON.ls = true; }MACROE\r
- #define USB_Device_SetFullSpeed() MACROS{ AVR32_USBB.UDCON.ls = false; }MACROE\r
- \r
- #define USB_Device_SetDeviceAddress(addr) MACROS{ AVR32_USBB.UDCON.uadd = DeviceAddress; AVR32_USBB.UDCON.adden = true; }MACROE \r
- #elif defined(__AVR__)\r
- #define USB_Device_SetLowSpeed() MACROS{ UDCON |= (1 << LSM); }MACROE\r
- #define USB_Device_SetFullSpeed() MACROS{ UDCON &= ~(1 << LSM); }MACROE\r
- \r
- #define USB_Device_SetDeviceAddress(addr) MACROS{ UDADDR = ((1 << ADDEN) | DeviceAddress); }MACROE\r
- #endif\r
+ #define USB_Device_SetLowSpeed() MACROS{ UDCON |= (1 << LSM); }MACROE\r
+ #define USB_Device_SetFullSpeed() MACROS{ UDCON &= ~(1 << LSM); }MACROE\r
#endif\r
\r
#endif\r
uint8_t USB_ControlEndpointSize = ENDPOINT_CONTROLEP_DEFAULT_SIZE;\r
#endif\r
\r
-uintN_t Endpoint_BytesToEPSizeMaskDynamic(const uint16_t Size)\r
+uint8_t Endpoint_BytesToEPSizeMaskDynamic(const uint16_t Size)\r
{\r
return Endpoint_BytesToEPSizeMask(Size);\r
}\r
\r
-bool Endpoint_ConfigureEndpoint_Prv(const uintN_t Number, const uintN_t UECFG0XData, const uintN_t UECFG1XData)\r
+bool Endpoint_ConfigureEndpoint_Prv(const uint8_t Number, const uint8_t UECFG0XData, const uint8_t UECFG1XData)\r
{\r
Endpoint_SelectEndpoint(Number);\r
Endpoint_EnableEndpoint();\r
#define TEMPLATE_TRANSFER_BYTE(BufferPtr) Endpoint_Write_Byte(pgm_read_byte((uint8_t*)BufferPtr++))\r
#include "Template/Template_Endpoint_RW.c"\r
\r
-#if defined(__AVR__)\r
- #define TEMPLATE_FUNC_NAME Endpoint_Write_EStream_LE\r
- #define TEMPLATE_BUFFER_TYPE const void*\r
- #define TEMPLATE_CLEAR_ENDPOINT() Endpoint_ClearIN()\r
- #define TEMPLATE_BUFFER_OFFSET(Length) 0\r
- #define TEMPLATE_TRANSFER_BYTE(BufferPtr) Endpoint_Write_Byte(eeprom_read_byte((uint8_t*)BufferPtr++))\r
- #include "Template/Template_Endpoint_RW.c"\r
-#endif\r
+#define TEMPLATE_FUNC_NAME Endpoint_Write_EStream_LE\r
+#define TEMPLATE_BUFFER_TYPE const void*\r
+#define TEMPLATE_CLEAR_ENDPOINT() Endpoint_ClearIN()\r
+#define TEMPLATE_BUFFER_OFFSET(Length) 0\r
+#define TEMPLATE_TRANSFER_BYTE(BufferPtr) Endpoint_Write_Byte(eeprom_read_byte((uint8_t*)BufferPtr++))\r
+#include "Template/Template_Endpoint_RW.c"\r
\r
#define TEMPLATE_FUNC_NAME Endpoint_Write_Stream_BE\r
#define TEMPLATE_BUFFER_TYPE const void*\r
#define TEMPLATE_TRANSFER_BYTE(BufferPtr) Endpoint_Write_Byte(*((uint8_t*)BufferPtr--))\r
#include "Template/Template_Endpoint_RW.c"\r
\r
-#if defined(__AVR__)\r
- #define TEMPLATE_FUNC_NAME Endpoint_Write_EStream_BE\r
- #define TEMPLATE_BUFFER_TYPE const void*\r
- #define TEMPLATE_CLEAR_ENDPOINT() Endpoint_ClearIN()\r
- #define TEMPLATE_BUFFER_OFFSET(Length) (Length - 1)\r
- #define TEMPLATE_TRANSFER_BYTE(BufferPtr) Endpoint_Write_Byte(eeprom_read_byte((uint8_t*)BufferPtr--))\r
- #include "Template/Template_Endpoint_RW.c"\r
-#endif\r
+#define TEMPLATE_FUNC_NAME Endpoint_Write_EStream_BE\r
+#define TEMPLATE_BUFFER_TYPE const void*\r
+#define TEMPLATE_CLEAR_ENDPOINT() Endpoint_ClearIN()\r
+#define TEMPLATE_BUFFER_OFFSET(Length) (Length - 1)\r
+#define TEMPLATE_TRANSFER_BYTE(BufferPtr) Endpoint_Write_Byte(eeprom_read_byte((uint8_t*)BufferPtr--))\r
+#include "Template/Template_Endpoint_RW.c"\r
\r
#define TEMPLATE_FUNC_NAME Endpoint_Write_PStream_BE\r
#define TEMPLATE_BUFFER_TYPE const void*\r
#define TEMPLATE_TRANSFER_BYTE(BufferPtr) *((uint8_t*)BufferPtr++) = Endpoint_Read_Byte()\r
#include "Template/Template_Endpoint_RW.c"\r
\r
-#if defined(__AVR__)\r
- #define TEMPLATE_FUNC_NAME Endpoint_Read_EStream_LE\r
- #define TEMPLATE_BUFFER_TYPE void*\r
- #define TEMPLATE_CLEAR_ENDPOINT() Endpoint_ClearOUT()\r
- #define TEMPLATE_BUFFER_OFFSET(Length) 0\r
- #define TEMPLATE_TRANSFER_BYTE(BufferPtr) eeprom_write_byte((uint8_t*)BufferPtr++, Endpoint_Read_Byte())\r
- #include "Template/Template_Endpoint_RW.c"\r
-#endif\r
+#define TEMPLATE_FUNC_NAME Endpoint_Read_EStream_LE\r
+#define TEMPLATE_BUFFER_TYPE void*\r
+#define TEMPLATE_CLEAR_ENDPOINT() Endpoint_ClearOUT()\r
+#define TEMPLATE_BUFFER_OFFSET(Length) 0\r
+#define TEMPLATE_TRANSFER_BYTE(BufferPtr) eeprom_write_byte((uint8_t*)BufferPtr++, Endpoint_Read_Byte())\r
+#include "Template/Template_Endpoint_RW.c"\r
\r
#define TEMPLATE_FUNC_NAME Endpoint_Read_Stream_BE\r
#define TEMPLATE_BUFFER_TYPE void*\r
#define TEMPLATE_TRANSFER_BYTE(BufferPtr) *((uint8_t*)BufferPtr--) = Endpoint_Read_Byte()\r
#include "Template/Template_Endpoint_RW.c"\r
\r
-#if defined(__AVR__)\r
- #define TEMPLATE_FUNC_NAME Endpoint_Read_EStream_BE\r
- #define TEMPLATE_BUFFER_TYPE void*\r
- #define TEMPLATE_CLEAR_ENDPOINT() Endpoint_ClearOUT()\r
- #define TEMPLATE_BUFFER_OFFSET(Length) (Length - 1)\r
- #define TEMPLATE_TRANSFER_BYTE(BufferPtr) eeprom_write_byte((uint8_t*)BufferPtr--, Endpoint_Read_Byte())\r
- #include "Template/Template_Endpoint_RW.c"\r
-#endif\r
+#define TEMPLATE_FUNC_NAME Endpoint_Read_EStream_BE\r
+#define TEMPLATE_BUFFER_TYPE void*\r
+#define TEMPLATE_CLEAR_ENDPOINT() Endpoint_ClearOUT()\r
+#define TEMPLATE_BUFFER_OFFSET(Length) (Length - 1)\r
+#define TEMPLATE_TRANSFER_BYTE(BufferPtr) eeprom_write_byte((uint8_t*)BufferPtr--, Endpoint_Read_Byte())\r
+#include "Template/Template_Endpoint_RW.c"\r
\r
#endif\r
\r
#define TEMPLATE_TRANSFER_BYTE(BufferPtr) Endpoint_Write_Byte(pgm_read_byte((uint8_t*)BufferPtr++))\r
#include "Template/Template_Endpoint_Control_W.c"\r
\r
-#if defined(__AVR__)\r
- #define TEMPLATE_FUNC_NAME Endpoint_Write_Control_EStream_LE\r
- #define TEMPLATE_BUFFER_OFFSET(Length) 0\r
- #define TEMPLATE_TRANSFER_BYTE(BufferPtr) Endpoint_Write_Byte(eeprom_read_byte((uint8_t*)BufferPtr++))\r
- #include "Template/Template_Endpoint_Control_W.c"\r
-#endif\r
+#define TEMPLATE_FUNC_NAME Endpoint_Write_Control_EStream_LE\r
+#define TEMPLATE_BUFFER_OFFSET(Length) 0\r
+#define TEMPLATE_TRANSFER_BYTE(BufferPtr) Endpoint_Write_Byte(eeprom_read_byte((uint8_t*)BufferPtr++))\r
+#include "Template/Template_Endpoint_Control_W.c"\r
\r
#define TEMPLATE_FUNC_NAME Endpoint_Write_Control_Stream_BE\r
#define TEMPLATE_BUFFER_OFFSET(Length) (Length - 1)\r
#define TEMPLATE_TRANSFER_BYTE(BufferPtr) Endpoint_Write_Byte(pgm_read_byte((uint8_t*)BufferPtr--))\r
#include "Template/Template_Endpoint_Control_W.c"\r
\r
-#if defined(__AVR__)\r
- #define TEMPLATE_FUNC_NAME Endpoint_Write_Control_EStream_BE\r
- #define TEMPLATE_BUFFER_OFFSET(Length) (Length - 1)\r
- #define TEMPLATE_TRANSFER_BYTE(BufferPtr) Endpoint_Write_Byte(eeprom_read_byte((uint8_t*)BufferPtr--))\r
- #include "Template/Template_Endpoint_Control_W.c"\r
-#endif\r
+#define TEMPLATE_FUNC_NAME Endpoint_Write_Control_EStream_BE\r
+#define TEMPLATE_BUFFER_OFFSET(Length) (Length - 1)\r
+#define TEMPLATE_TRANSFER_BYTE(BufferPtr) Endpoint_Write_Byte(eeprom_read_byte((uint8_t*)BufferPtr--))\r
+#include "Template/Template_Endpoint_Control_W.c"\r
\r
#define TEMPLATE_FUNC_NAME Endpoint_Read_Control_Stream_LE\r
#define TEMPLATE_BUFFER_OFFSET(Length) 0\r
#define TEMPLATE_TRANSFER_BYTE(BufferPtr) *((uint8_t*)BufferPtr++) = Endpoint_Read_Byte()\r
#include "Template/Template_Endpoint_Control_R.c"\r
\r
-#if defined(__AVR__)\r
- #define TEMPLATE_FUNC_NAME Endpoint_Read_Control_EStream_LE\r
- #define TEMPLATE_BUFFER_OFFSET(Length) 0\r
- #define TEMPLATE_TRANSFER_BYTE(BufferPtr) eeprom_write_byte((uint8_t*)BufferPtr++, Endpoint_Read_Byte())\r
- #include "Template/Template_Endpoint_Control_R.c"\r
-#endif\r
+#define TEMPLATE_FUNC_NAME Endpoint_Read_Control_EStream_LE\r
+#define TEMPLATE_BUFFER_OFFSET(Length) 0\r
+#define TEMPLATE_TRANSFER_BYTE(BufferPtr) eeprom_write_byte((uint8_t*)BufferPtr++, Endpoint_Read_Byte())\r
+#include "Template/Template_Endpoint_Control_R.c"\r
\r
#define TEMPLATE_FUNC_NAME Endpoint_Read_Control_Stream_BE\r
#define TEMPLATE_BUFFER_OFFSET(Length) (Length - 1)\r
#define TEMPLATE_TRANSFER_BYTE(BufferPtr) *((uint8_t*)BufferPtr--) = Endpoint_Read_Byte()\r
#include "Template/Template_Endpoint_Control_R.c"\r
\r
-#if defined(__AVR__)\r
- #define TEMPLATE_FUNC_NAME Endpoint_Read_Control_EStream_BE\r
- #define TEMPLATE_BUFFER_OFFSET(Length) (Length - 1)\r
- #define TEMPLATE_TRANSFER_BYTE(BufferPtr) eeprom_write_byte((uint8_t*)BufferPtr--, Endpoint_Read_Byte())\r
- #include "Template/Template_Endpoint_Control_R.c"\r
-#endif\r
+#define TEMPLATE_FUNC_NAME Endpoint_Read_Control_EStream_BE\r
+#define TEMPLATE_BUFFER_OFFSET(Length) (Length - 1)\r
+#define TEMPLATE_TRANSFER_BYTE(BufferPtr) eeprom_write_byte((uint8_t*)BufferPtr--, Endpoint_Read_Byte())\r
+#include "Template/Template_Endpoint_Control_R.c"\r
\r
#endif\r
#define __ENDPOINT_H__\r
\r
/* Includes: */\r
- #if defined(__AVR32__)\r
- #include <avr32/io.h>\r
- #include <stdint.h>\r
- #include <stdbool.h>\r
- #elif defined(__AVR__)\r
- #include <avr/io.h>\r
- #include <avr/pgmspace.h>\r
- #include <avr/eeprom.h>\r
- #include <stdbool.h>\r
- #endif\r
- \r
+ #include <avr/io.h>\r
+ #include <avr/pgmspace.h>\r
+ #include <avr/eeprom.h>\r
+ #include <stdbool.h>\r
+\r
#include "../../../Common/Common.h"\r
- #include "LowLevel.h"\r
#include "../HighLevel/USBTask.h"\r
\r
#if !defined(NO_STREAM_CALLBACKS) || defined(__DOXYGEN__)\r
\r
/* Preprocessor Checks: */\r
#if !defined(__INCLUDE_FROM_USB_DRIVER)\r
- #error Do not include this file directly. Include LUFA/Drivers/USB/USB.h instead.\r
+ #error Do not include this file directly. Include LUFA/Drivers/USB.h instead.\r
#endif\r
\r
- #if defined(__AVR32__) && !defined(__AVR32_EPREG_X)\r
- #define __AVR32_EPREG_X(x) ((volatile uint32_t*)AVR32_USBB_ ## x)[USB_SelectedEPNumber] \r
- #endif\r
-\r
/* Public Interface - May be used in end-application: */\r
/* Macros: */\r
- #if defined(__AVR32__) || defined(__DOXYGEN__)\r
- /** Endpoint data direction mask for \ref Endpoint_ConfigureEndpoint(). This indicates that the endpoint\r
- * should be initialized in the OUT direction - i.e. data flows from host to device.\r
- */\r
- #define ENDPOINT_DIR_OUT 0\r
+ /** Endpoint data direction mask for \ref Endpoint_ConfigureEndpoint(). This indicates that the endpoint\r
+ * should be initialized in the OUT direction - i.e. data flows from host to device.\r
+ */\r
+ #define ENDPOINT_DIR_OUT (0 << EPDIR)\r
\r
- /** Endpoint data direction mask for \ref Endpoint_ConfigureEndpoint(). This indicates that the endpoint\r
- * should be initialized in the IN direction - i.e. data flows from device to host.\r
- */\r
- #define ENDPOINT_DIR_IN AVR32_USBB_EPDIR_IN\r
+ /** Endpoint data direction mask for \ref Endpoint_ConfigureEndpoint(). This indicates that the endpoint\r
+ * should be initialized in the IN direction - i.e. data flows from device to host.\r
+ */\r
+ #define ENDPOINT_DIR_IN (1 << EPDIR)\r
\r
- /** Mask for the bank mode selection for the \ref Endpoint_ConfigureEndpoint() macro. This indicates\r
- * that the endpoint should have one single bank, which requires less USB FIFO memory but results\r
- * in slower transfers as only one USB device (the AVR or the host) can access the endpoint's\r
- * bank at the one time.\r
- */\r
- #define ENDPOINT_BANK_SINGLE AVR32_USBB_EPBK_SINGLE\r
- \r
- /** Mask for the bank mode selection for the \ref Endpoint_ConfigureEndpoint() macro. This indicates\r
- * that the endpoint should have two banks, which requires more USB FIFO memory but results\r
- * in faster transfers as one USB device (the AVR or the host) can access one bank while the other\r
- * accesses the second bank.\r
- */\r
- #define ENDPOINT_BANK_DOUBLE AVR32_USBB_EPBK_DOUBLE\r
- #elif defined(__AVR__)\r
- #define ENDPOINT_DIR_OUT (0 << EPDIR)\r
- #define ENDPOINT_DIR_IN (1 << EPDIR)\r
- #define ENDPOINT_BANK_SINGLE (0 << EPBK0)\r
- #define ENDPOINT_BANK_DOUBLE (1 << EPBK0) \r
- #endif\r
+ /** Mask for the bank mode selection for the \ref Endpoint_ConfigureEndpoint() macro. This indicates\r
+ * that the endpoint should have one single bank, which requires less USB FIFO memory but results\r
+ * in slower transfers as only one USB device (the AVR or the host) can access the endpoint's\r
+ * bank at the one time.\r
+ */\r
+ #define ENDPOINT_BANK_SINGLE (0 << EPBK0)\r
+\r
+ /** Mask for the bank mode selection for the \ref Endpoint_ConfigureEndpoint() macro. This indicates\r
+ * that the endpoint should have two banks, which requires more USB FIFO memory but results\r
+ * in faster transfers as one USB device (the AVR or the host) can access one bank while the other\r
+ * accesses the second bank.\r
+ */\r
+ #define ENDPOINT_BANK_DOUBLE (1 << EPBK0)\r
\r
/** Endpoint address for the default control endpoint, which always resides in address 0. This is\r
* defined for convenience to give more readable code when used with the endpoint macros.\r
#define ENDPOINT_DOUBLEBANK_SUPPORTED(n) _ENDPOINT_GET_DOUBLEBANK(n)\r
\r
#if !defined(CONTROL_ONLY_DEVICE)\r
- #if (defined(USB_SERIES_4_AVR) || defined(USB_SERIES_6_AVR) || defined(USB_SERIES_7_AVR) || \\r
- defined(USB_SERIES_UC3B_AVR) || defined(__DOXYGEN__))\r
+ #if defined(USB_SERIES_4_AVR) || defined(USB_SERIES_6_AVR) || defined(USB_SERIES_7_AVR) || defined(__DOXYGEN__)\r
/** Total number of endpoints (including the default control endpoint at address 0) which may\r
* be used in the device. Different USB AVR models support different amounts of endpoints,\r
* this value reflects the maximum number of endpoints for the currently selected AVR model.\r
*/\r
- #define ENDPOINT_TOTAL_ENDPOINTS 7\r
+ #define ENDPOINT_TOTAL_ENDPOINTS 7\r
#else\r
- #define ENDPOINT_TOTAL_ENDPOINTS 5 \r
+ #define ENDPOINT_TOTAL_ENDPOINTS 5 \r
#endif\r
#else\r
- #define ENDPOINT_TOTAL_ENDPOINTS 1\r
+ #define ENDPOINT_TOTAL_ENDPOINTS 1\r
#endif\r
\r
/* Pseudo-Function Macros: */\r
#define Endpoint_BytesInEndpoint() (((uint16_t)UEBCHX << 8) | UEBCLX) \r
#elif defined(USB_SERIES_2_AVR)\r
#define Endpoint_BytesInEndpoint() UEBCLX\r
- #elif defined(USB_SERIES_UC3B_AVR)\r
- #define Endpoint_BytesInEndpoint() ((__AVR32_EPREG_X(UESTA0) & AVR32_USBB_BYCT_MASK) >> AVR32_USBB_BYCT)\r
#endif\r
\r
- #if defined(__AVR32__)\r
- #if !defined(CONTROL_ONLY_DEVICE)\r
- #define Endpoint_GetCurrentEndpoint() USB_SelectedEPNumber\r
- #define Endpoint_SelectEndpoint(epnum) MACROS{ USB_SelectedEPNumber = (epnum); }MACROE \r
- #define Endpoint_IsReadWriteAllowed() (__AVR32_EPREG_X(UESTA0) & AVR32_USBB_RWALL_MASK)\r
- #else\r
- #define Endpoint_GetCurrentEndpoint() ENDPOINT_CONTROLEP\r
- #define Endpoint_SelectEndpoint(epnum) (void)(epnum)\r
- #endif\r
-\r
- #define Endpoint_ResetFIFO(epnum) MACROS{ AVR32_USBB.uerst |= (AVR32_USBB_EPRST0_MASK << (epnum)); \\r
- AVR32_USBB.uerst &= ~(AVR32_USBB_EPRST0_MASK << (epnum)); }MACROE\r
- #define Endpoint_EnableEndpoint() MACROS{ AVR32_USBB.uerst |= (AVR32_USBB_UERST_EPEN0_MASK << USB_SelectedEPNumber); }MACROE\r
- #define Endpoint_DisableEndpoint() MACROS{ AVR32_USBB.uerst &= ~(AVR32_USBB_UERST_EPEN0_MASK << USB_SelectedEPNumber); }MACROE\r
- #define Endpoint_IsEnabled() ((AVR32_USBB.uerst & (AVR32_USBB_UERST_EPEN0_MASK << USB_SelectedEPNumber)) ? true : false)\r
- \r
- #define Endpoint_IsConfigured() ((__AVR32_EPREG_X(UESTA0) & AVR32_USBB_UESTA0_CFGOK_MASK) ? true : false)\r
- #define Endpoint_GetEndpointInterrupts() (AVR32_USBB.UDINT >> AVR32_USBB_EP0INT)\r
- #define Endpoint_HasEndpointInterrupted(n) ((AVR32_USBB.UDINT & (AVR32_USBB_EP0INT << (n))) ? true : false)\r
- #define Endpoint_IsINReady() ((__AVR32_EPREG_X(UESTA0) & AVR32_USBB_TXINI) ? true : false)\r
- #define Endpoint_IsOUTReceived() ((__AVR32_EPREG_X(UESTA0) & AVR32_USBB_RXOUTI) ? true : false)\r
- #define Endpoint_IsSETUPReceived() ((__AVR32_EPREG_X(UESTA0) & AVR32_USBB_RXSTPI) ? true : false)\r
- #define Endpoint_ClearSETUP() MACROS{ __AVR32_EPREG_X(UESTA0CLR) = AVR32_USBB_RXSTPIC; }MACROE\r
- #define Endpoint_ClearIN() MACROS{ __AVR32_EPREG_X(UESTA0CLR) = AVR32_USBB_TXINIC; \\r
- __AVR32_EPREG_X(UECON0CLR) = AVR32_USBB_FIFOCONC; }MACROE\r
- #define Endpoint_ClearOUT() MACROS{ __AVR32_EPREG_X(UESTA0CLR) = AVR32_USBB_RXOUTI; \\r
- __AVR32_EPREG_X(UECON0CLR) = AVR32_USBB_FIFOCONC; }MACROE\r
- #define Endpoint_StallTransaction() MACROS{ __AVR32_EPREG_X(UECON0SET) = AVR32_USBB_STALLRQS; }MACROE\r
- #define Endpoint_ClearStall() MACROS{ __AVR32_EPREG_X(UECON0CLR) = AVR32_USBB_STALLRQC; }MACROE\r
- #define Endpoint_IsStalled() ((__AVR32_EPREG_X(UECON0) & AVR32_USBB_STALLRQ) ? true : false)\r
- #define Endpoint_ResetDataToggle() MACROS{ __AVR32_EPREG_X(UECON0CLR) = AVR32_USBB_RSTDTS; }MACROE\r
- #define Endpoint_GetEndpointDirection() ((__AVR32_EPREG_X(UECFG0) & ENDPOINT_DIR_IN) ? true : false)\r
- #define Endpoint_SetEndpointDirection(dir) MACROS{ __AVR32_EPREG_X(UECFG0) = \\r
- ((__AVR32_EPREG_X(UECFG0) & ENDPOINT_DIR_IN) | (dir)); }MACROE\r
- #elif defined(__AVR__)\r
- #if !defined(CONTROL_ONLY_DEVICE)\r
- #define Endpoint_GetCurrentEndpoint() (UENUM & ENDPOINT_EPNUM_MASK)\r
- #define Endpoint_SelectEndpoint(epnum) MACROS{ UENUM = (epnum); }MACROE\r
- #define Endpoint_IsReadWriteAllowed() ((UEINTX & (1 << RWAL)) ? true : false)\r
- #else\r
- #define Endpoint_GetCurrentEndpoint() ENDPOINT_CONTROLEP\r
- #define Endpoint_SelectEndpoint(epnum) (void)(epnum)\r
- #endif\r
-\r
- #define Endpoint_ResetFIFO(epnum) MACROS{ UERST = (1 << (epnum)); UERST = 0; }MACROE\r
- #define Endpoint_EnableEndpoint() MACROS{ UECONX |= (1 << EPEN); }MACROE\r
- #define Endpoint_DisableEndpoint() MACROS{ UECONX &= ~(1 << EPEN); }MACROE\r
- #define Endpoint_IsEnabled() ((UECONX & (1 << EPEN)) ? true : false)\r
- \r
- #define Endpoint_IsConfigured() ((UESTA0X & (1 << CFGOK)) ? true : false)\r
- #define Endpoint_GetEndpointInterrupts() UEINT\r
- #define Endpoint_HasEndpointInterrupted(n) ((UEINT & (1 << (n))) ? true : false)\r
- #define Endpoint_IsINReady() ((UEINTX & (1 << TXINI)) ? true : false)\r
- #define Endpoint_IsOUTReceived() ((UEINTX & (1 << RXOUTI)) ? true : false)\r
- #define Endpoint_IsSETUPReceived() ((UEINTX & (1 << RXSTPI)) ? true : false)\r
- #define Endpoint_ClearSETUP() MACROS{ UEINTX &= ~(1 << RXSTPI); }MACROE\r
-\r
- #if !defined(CONTROL_ONLY_DEVICE)\r
- #define Endpoint_ClearIN() MACROS{ uint8_t Temp = UEINTX; UEINTX = (Temp & ~(1 << TXINI)); \\r
- UEINTX = (Temp & ~(1 << FIFOCON)); }MACROE\r
- #define Endpoint_ClearOUT() MACROS{ uint8_t Temp = UEINTX; UEINTX = (Temp & ~(1 << RXOUTI)); \\r
- UEINTX = (Temp & ~(1 << FIFOCON)); }MACROE\r
- #else\r
- #define Endpoint_ClearIN() MACROS{ UEINTX &= ~(1 << TXINI); }MACROE\r
- #define Endpoint_ClearOUT() MACROS{ UEINTX &= ~(1 << RXOUTI); }MACROE \r
- #endif\r
-\r
- #define Endpoint_StallTransaction() MACROS{ UECONX |= (1 << STALLRQ); }MACROE\r
- #define Endpoint_ClearStall() MACROS{ UECONX |= (1 << STALLRQC); }MACROE\r
- #define Endpoint_IsStalled() ((UECONX & (1 << STALLRQ)) ? true : false)\r
- #define Endpoint_ResetDataToggle() MACROS{ UECONX |= (1 << RSTDT); }MACROE\r
- #define Endpoint_GetEndpointDirection() (UECFG0X & ENDPOINT_DIR_IN)\r
- #define Endpoint_SetEndpointDirection(dir) MACROS{ UECFG0X = ((UECFG0X & ~ENDPOINT_DIR_IN) | (dir)); }MACROE \r
+ #if !defined(CONTROL_ONLY_DEVICE)\r
+ #define Endpoint_GetCurrentEndpoint() (UENUM & ENDPOINT_EPNUM_MASK)\r
+ #else\r
+ #define Endpoint_GetCurrentEndpoint() ENDPOINT_CONTROLEP\r
#endif\r
+ \r
+ #if !defined(CONTROL_ONLY_DEVICE)\r
+ #define Endpoint_SelectEndpoint(epnum) MACROS{ UENUM = (epnum); }MACROE\r
+ #else\r
+ #define Endpoint_SelectEndpoint(epnum) (void)(epnum)\r
+ #endif\r
+\r
+ #define Endpoint_ResetFIFO(epnum) MACROS{ UERST = (1 << (epnum)); UERST = 0; }MACROE\r
+\r
+ #define Endpoint_EnableEndpoint() MACROS{ UECONX |= (1 << EPEN); }MACROE\r
+\r
+ #define Endpoint_DisableEndpoint() MACROS{ UECONX &= ~(1 << EPEN); }MACROE\r
+\r
+ #define Endpoint_IsEnabled() ((UECONX & (1 << EPEN)) ? true : false)\r
+\r
+ #if !defined(CONTROL_ONLY_DEVICE)\r
+ #define Endpoint_IsReadWriteAllowed() ((UEINTX & (1 << RWAL)) ? true : false)\r
+ #endif\r
+ \r
+ #define Endpoint_IsConfigured() ((UESTA0X & (1 << CFGOK)) ? true : false)\r
+\r
+ #define Endpoint_GetEndpointInterrupts() UEINT\r
+\r
+ #define Endpoint_HasEndpointInterrupted(n) ((UEINT & (1 << (n))) ? true : false)\r
+ \r
+ #define Endpoint_IsINReady() ((UEINTX & (1 << TXINI)) ? true : false)\r
+ \r
+ #define Endpoint_IsOUTReceived() ((UEINTX & (1 << RXOUTI)) ? true : false)\r
+\r
+ #define Endpoint_IsSETUPReceived() ((UEINTX & (1 << RXSTPI)) ? true : false)\r
+\r
+ #define Endpoint_ClearSETUP() MACROS{ UEINTX &= ~(1 << RXSTPI); }MACROE\r
+\r
+ #if !defined(CONTROL_ONLY_DEVICE)\r
+ #define Endpoint_ClearIN() MACROS{ uint8_t Temp = UEINTX; UEINTX = (Temp & ~(1 << TXINI)); \\r
+ UEINTX = (Temp & ~(1 << FIFOCON)); }MACROE\r
+ #else\r
+ #define Endpoint_ClearIN() MACROS{ UEINTX &= ~(1 << TXINI); }MACROE\r
+ #endif\r
+\r
+ #if !defined(CONTROL_ONLY_DEVICE)\r
+ #define Endpoint_ClearOUT() MACROS{ uint8_t Temp = UEINTX; UEINTX = (Temp & ~(1 << RXOUTI)); \\r
+ UEINTX = (Temp & ~(1 << FIFOCON)); }MACROE\r
+ #else\r
+ #define Endpoint_ClearOUT() MACROS{ UEINTX &= ~(1 << RXOUTI); }MACROE \r
+ #endif\r
+\r
+ #define Endpoint_StallTransaction() MACROS{ UECONX |= (1 << STALLRQ); }MACROE\r
+\r
+ #define Endpoint_ClearStall() MACROS{ UECONX |= (1 << STALLRQC); }MACROE\r
+\r
+ #define Endpoint_IsStalled() ((UECONX & (1 << STALLRQ)) ? true : false)\r
+\r
+ #define Endpoint_ResetDataToggle() MACROS{ UECONX |= (1 << RSTDT); }MACROE\r
+ \r
+ #define Endpoint_GetEndpointDirection() (UECFG0X & ENDPOINT_DIR_IN)\r
+ \r
+ #define Endpoint_SetEndpointDirection(dir) MACROS{ UECFG0X = ((UECFG0X & ~ENDPOINT_DIR_IN) | (dir)); }MACROE\r
#endif\r
\r
/* Enums: */\r
static inline uint8_t Endpoint_Read_Byte(void) ATTR_WARN_UNUSED_RESULT ATTR_ALWAYS_INLINE;\r
static inline uint8_t Endpoint_Read_Byte(void)\r
{\r
- #if defined(__AVR32__)\r
- return __AVR32_EPREG_X(UEDAT0);\r
- #elif defined(__AVR__)\r
return UEDATX;\r
- #endif\r
}\r
\r
/** Writes one byte from the currently selected endpoint's bank, for IN direction endpoints.\r
static inline void Endpoint_Write_Byte(const uint8_t Byte) ATTR_ALWAYS_INLINE;\r
static inline void Endpoint_Write_Byte(const uint8_t Byte)\r
{\r
- #if defined(__AVR32__)\r
- __AVR32_EPREG_X(UEDAT0) = Byte;\r
- #elif defined(__AVR__)\r
UEDATX = Byte;\r
- #endif\r
}\r
\r
/** Discards one byte from the currently selected endpoint's bank, for OUT direction endpoints.\r
{\r
uint8_t Dummy;\r
\r
- #if defined(__AVR32__)\r
- Dummy = __AVR32_EPREG_X(UEDAT0);\r
- #elif defined(__AVR__)\r
Dummy = UEDATX;\r
- #endif\r
}\r
\r
/** Reads two bytes from the currently selected endpoint's bank in little endian format, for OUT\r
uint8_t Bytes[2];\r
} Data;\r
\r
- #if defined(__AVR32__)\r
- Data.Bytes[0] = __AVR32_EPREG_X(UEDAT0);\r
- Data.Bytes[1] = __AVR32_EPREG_X(UEDAT0);\r
- #elif defined(__AVR__)\r
Data.Bytes[0] = UEDATX;\r
Data.Bytes[1] = UEDATX;\r
- #endif\r
\r
return Data.Word;\r
}\r
uint8_t Bytes[2];\r
} Data;\r
\r
- #if defined(__AVR32__)\r
- Data.Bytes[1] = __AVR32_EPREG_X(UEDAT0);\r
- Data.Bytes[0] = __AVR32_EPREG_X(UEDAT0);\r
- #elif defined(__AVR__)\r
Data.Bytes[1] = UEDATX;\r
Data.Bytes[0] = UEDATX;\r
- #endif\r
\r
return Data.Word;\r
}\r
static inline void Endpoint_Write_Word_LE(const uint16_t Word) ATTR_ALWAYS_INLINE;\r
static inline void Endpoint_Write_Word_LE(const uint16_t Word)\r
{\r
- #if defined(__AVR32__)\r
- __AVR32_EPREG_X(UEDAT0) = (Word & 0xFF);\r
- __AVR32_EPREG_X(UEDAT0) = (Word >> 8);\r
- #elif defined(__AVR__)\r
UEDATX = (Word & 0xFF);\r
UEDATX = (Word >> 8);\r
- #endif\r
}\r
\r
/** Writes two bytes to the currently selected endpoint's bank in big endian format, for IN\r
static inline void Endpoint_Write_Word_BE(const uint16_t Word) ATTR_ALWAYS_INLINE;\r
static inline void Endpoint_Write_Word_BE(const uint16_t Word)\r
{\r
- #if defined(__AVR32__)\r
- __AVR32_EPREG_X(UEDAT0) = (Word >> 8);\r
- __AVR32_EPREG_X(UEDAT0) = (Word & 0xFF);\r
- #elif defined(__AVR__)\r
UEDATX = (Word >> 8);\r
UEDATX = (Word & 0xFF);\r
- #endif\r
}\r
\r
/** Discards two bytes from the currently selected endpoint's bank, for OUT direction endpoints.\r
{\r
uint8_t Dummy;\r
\r
- #if defined(__AVR32__)\r
- Dummy = __AVR32_EPREG_X(UEDAT0);\r
- Dummy = __AVR32_EPREG_X(UEDAT0);\r
- #elif defined(__AVR__)\r
Dummy = UEDATX;\r
Dummy = UEDATX;\r
- #endif\r
}\r
\r
/** Reads four bytes from the currently selected endpoint's bank in little endian format, for OUT\r
uint8_t Bytes[4];\r
} Data;\r
\r
- #if defined(__AVR32__)\r
- Data.Bytes[0] = __AVR32_EPREG_X(UEDAT0);\r
- Data.Bytes[1] = __AVR32_EPREG_X(UEDAT0);\r
- Data.Bytes[2] = __AVR32_EPREG_X(UEDAT0);\r
- Data.Bytes[3] = __AVR32_EPREG_X(UEDAT0);\r
- #elif defined(__AVR__)\r
Data.Bytes[0] = UEDATX;\r
Data.Bytes[1] = UEDATX;\r
Data.Bytes[2] = UEDATX;\r
Data.Bytes[3] = UEDATX;\r
- #endif\r
\r
return Data.DWord;\r
}\r
uint8_t Bytes[4];\r
} Data;\r
\r
- #if defined(__AVR32__)\r
- Data.Bytes[3] = __AVR32_EPREG_X(UEDAT0);\r
- Data.Bytes[2] = __AVR32_EPREG_X(UEDAT0);\r
- Data.Bytes[1] = __AVR32_EPREG_X(UEDAT0);\r
- Data.Bytes[0] = __AVR32_EPREG_X(UEDAT0);\r
- #elif defined(__AVR__)\r
Data.Bytes[3] = UEDATX;\r
Data.Bytes[2] = UEDATX;\r
Data.Bytes[1] = UEDATX;\r
Data.Bytes[0] = UEDATX;\r
- #endif\r
\r
return Data.DWord;\r
}\r
static inline void Endpoint_Write_DWord_LE(const uint32_t DWord) ATTR_ALWAYS_INLINE;\r
static inline void Endpoint_Write_DWord_LE(const uint32_t DWord)\r
{\r
- #if defined(__AVR32__)\r
- __AVR32_EPREG_X(UEDAT0) = (DWord & 0xFF);\r
- __AVR32_EPREG_X(UEDAT0) = (DWord >> 8);\r
- __AVR32_EPREG_X(UEDAT0) = (DWord >> 16);\r
- __AVR32_EPREG_X(UEDAT0) = (DWord >> 24);\r
- #elif defined(__AVR__)\r
UEDATX = (DWord & 0xFF);\r
UEDATX = (DWord >> 8);\r
UEDATX = (DWord >> 16);\r
UEDATX = (DWord >> 24);\r
- #endif\r
}\r
\r
/** Writes four bytes to the currently selected endpoint's bank in big endian format, for IN\r
static inline void Endpoint_Write_DWord_BE(const uint32_t DWord) ATTR_ALWAYS_INLINE;\r
static inline void Endpoint_Write_DWord_BE(const uint32_t DWord)\r
{\r
- #if defined(__AVR32__)\r
- __AVR32_EPREG_X(UEDAT0) = (DWord >> 24);\r
- __AVR32_EPREG_X(UEDAT0) = (DWord >> 16);\r
- __AVR32_EPREG_X(UEDAT0) = (DWord >> 8);\r
- __AVR32_EPREG_X(UEDAT0) = (DWord & 0xFF);\r
- #elif defined(__AVR__)\r
UEDATX = (DWord >> 24);\r
UEDATX = (DWord >> 16);\r
UEDATX = (DWord >> 8);\r
UEDATX = (DWord & 0xFF);\r
- #endif\r
}\r
\r
/** Discards four bytes from the currently selected endpoint's bank, for OUT direction endpoints. \r
{\r
uint8_t Dummy;\r
\r
- #if defined(__AVR32__)\r
- Dummy = __AVR32_EPREG_X(UEDAT0);\r
- Dummy = __AVR32_EPREG_X(UEDAT0);\r
- Dummy = __AVR32_EPREG_X(UEDAT0);\r
- Dummy = __AVR32_EPREG_X(UEDAT0);\r
- #elif defined(__AVR__)\r
Dummy = UEDATX;\r
Dummy = UEDATX;\r
Dummy = UEDATX;\r
Dummy = UEDATX;\r
- #endif\r
}\r
\r
/* External Variables: */\r
* endpoint numbers can handle different maximum packet sizes - refer to the chosen USB AVR's\r
* datasheet to determine the maximum bank size for each endpoint.\r
*\r
- * The banking mode must be a ENDPOINT_BANK_* mask.\r
+ * The banking mode may be either \ref ENDPOINT_BANK_SINGLE or \ref ENDPOINT_BANK_DOUBLE.\r
*\r
* \note The default control endpoint does not have to be manually configured, as it is automatically\r
* configured by the library internally.\r
*\r
* \return Boolean true if the configuration succeeded, false otherwise\r
*/\r
- bool Endpoint_ConfigureEndpoint(const uintN_t Number, const uintN_t Type, const uintN_t Direction,\r
- const uint16_t Size, const uintN_t Banks);\r
+ bool Endpoint_ConfigureEndpoint(const uint8_t Number, const uint8_t Type, const uint8_t Direction,\r
+ const uint16_t Size, const uint8_t Banks);\r
\r
/** Spin-loops until the currently selected non-control endpoint is ready for the next packet of data\r
* to be read or written to it.\r
* \param[in] Length Number of bytes to read for the currently selected endpoint into the buffer.\r
* \param[in] Callback Name of a callback routine to call between successive USB packet transfers, NULL if no callback\r
*\r
- * \note Not available on AVR32 UC3B targets.\r
- *\r
* \return A value from the \ref Endpoint_Stream_RW_ErrorCodes_t enum.\r
*/\r
uint8_t Endpoint_Write_EStream_LE(const void* Buffer, uint16_t Length __CALLBACK_PARAM) ATTR_NON_NULL_PTR_ARG(1);\r
* \param[in] Length Number of bytes to read for the currently selected endpoint into the buffer.\r
* \param[in] Callback Name of a callback routine to call between successive USB packet transfers, NULL if no callback\r
*\r
- * \note Not available on AVR32 UC3B targets.\r
- *\r
* \return A value from the \ref Endpoint_Stream_RW_ErrorCodes_t enum.\r
*/\r
uint8_t Endpoint_Write_EStream_BE(const void* Buffer, uint16_t Length __CALLBACK_PARAM) ATTR_NON_NULL_PTR_ARG(1);\r
* \param[in] Length Number of bytes to send via the currently selected endpoint.\r
* \param[in] Callback Name of a callback routine to call between successive USB packet transfers, NULL if no callback\r
*\r
- * \note Not available on AVR32 UC3B targets.\r
- *\r
* \return A value from the \ref Endpoint_Stream_RW_ErrorCodes_t enum.\r
*/\r
uint8_t Endpoint_Read_EStream_LE(void* Buffer, uint16_t Length __CALLBACK_PARAM) ATTR_NON_NULL_PTR_ARG(1);\r
* \param[in] Length Number of bytes to send via the currently selected endpoint.\r
* \param[in] Callback Name of a callback routine to call between successive USB packet transfers, NULL if no callback\r
*\r
- * \note Not available on AVR32 UC3B targets.\r
- *\r
* \return A value from the \ref Endpoint_Stream_RW_ErrorCodes_t enum.\r
*/\r
uint8_t Endpoint_Read_EStream_BE(void* Buffer, uint16_t Length __CALLBACK_PARAM) ATTR_NON_NULL_PTR_ARG(1);\r
* \param[in] Buffer Pointer to the source data buffer to read from.\r
* \param[in] Length Number of bytes to read for the currently selected endpoint into the buffer.\r
*\r
- * \note Not available on AVR32 UC3B targets.\r
- *\r
* \return A value from the \ref Endpoint_ControlStream_RW_ErrorCodes_t enum.\r
*/\r
uint8_t Endpoint_Write_Control_EStream_LE(const void* Buffer, uint16_t Length) ATTR_NON_NULL_PTR_ARG(1);\r
* \param[in] Buffer Pointer to the source data buffer to read from.\r
* \param[in] Length Number of bytes to read for the currently selected endpoint into the buffer.\r
*\r
- * \note Not available on AVR32 UC3B targets.\r
- *\r
* \return A value from the \ref Endpoint_ControlStream_RW_ErrorCodes_t enum.\r
*/\r
uint8_t Endpoint_Write_Control_EStream_BE(const void* Buffer, uint16_t Length) ATTR_NON_NULL_PTR_ARG(1);\r
* \param[out] Buffer Pointer to the destination data buffer to write to.\r
* \param[in] Length Number of bytes to send via the currently selected endpoint.\r
*\r
- * \note Not available on AVR32 UC3B targets.\r
- *\r
* \return A value from the \ref Endpoint_ControlStream_RW_ErrorCodes_t enum.\r
*/\r
uint8_t Endpoint_Read_Control_EStream_LE(void* Buffer, uint16_t Length) ATTR_NON_NULL_PTR_ARG(1);\r
* \param[out] Buffer Pointer to the destination data buffer to write to.\r
* \param[in] Length Number of bytes to send via the currently selected endpoint.\r
*\r
- * \note Not available on AVR32 UC3B targets.\r
- *\r
* \return A value from the \ref Endpoint_ControlStream_RW_ErrorCodes_t enum.\r
*/\r
uint8_t Endpoint_Read_Control_EStream_BE(void* Buffer, uint16_t Length) ATTR_NON_NULL_PTR_ARG(1); \r
/* Private Interface - For use in library only: */\r
#if !defined(__DOXYGEN__)\r
/* Macros: */\r
- #if defined(__AVR32__)\r
- #define Endpoint_AllocateMemory() MACROS{ __AVR32_EPREG_X(UECFG10) |= AVR32_USBB_UECFG0_ALLOC_MASK; }MACROE\r
- #define Endpoint_DeallocateMemory() MACROS{ __AVR32_EPREG_X(UECFG10) &= ~AVR32_USBB_UECFG0_ALLOC_MASK; }MACROE\r
-\r
- #define Endpoint_ConfigureEndpoint(Number, Type, Direction, Size, Banks) \\r
- Endpoint_ConfigureEndpoint_Prv((Number), \\r
- (((Type) << AVR32_USBB_UECFG0_EPTYPE) | (Direction)), \\r
- (AVR32_USBB_UECFG0_ALLOC_MASK | (Banks) | \\r
- (__builtin_constant_p(Size) ? \\r
- Endpoint_BytesToEPSizeMask(Size) : \\r
- Endpoint_BytesToEPSizeMaskDynamic(Size))))\r
- #elif defined(__AVR__)\r
- #define Endpoint_AllocateMemory() MACROS{ UECFG1X |= (1 << ALLOC); }MACROE\r
- #define Endpoint_DeallocateMemory() MACROS{ UECFG1X &= ~(1 << ALLOC); }MACROE\r
-\r
- #define Endpoint_ConfigureEndpoint(Number, Type, Direction, Size, Banks) \\r
- Endpoint_ConfigureEndpoint_Prv((Number), \\r
- (((Type) << EPTYPE0) | (Direction)), \\r
- ((1 << ALLOC) | (Banks) | \\r
- (__builtin_constant_p(Size) ? \\r
- Endpoint_BytesToEPSizeMask(Size) : \\r
- Endpoint_BytesToEPSizeMaskDynamic(Size))))\r
- #endif\r
+ #define Endpoint_AllocateMemory() MACROS{ UECFG1X |= (1 << ALLOC); }MACROE\r
+ #define Endpoint_DeallocateMemory() MACROS{ UECFG1X &= ~(1 << ALLOC); }MACROE\r
\r
#define _ENDPOINT_GET_MAXSIZE(n) _ENDPOINT_GET_MAXSIZE2(ENDPOINT_DETAILS_EP ## n)\r
#define _ENDPOINT_GET_MAXSIZE2(details) _ENDPOINT_GET_MAXSIZE3(details)\r
#define ENDPOINT_DETAILS_EP4 64, true\r
#define ENDPOINT_DETAILS_EP5 64, true\r
#define ENDPOINT_DETAILS_EP6 64, true\r
- #elif defined(USB_SERIES_UC3B_AVR)\r
- #define ENDPOINT_DETAILS_EP0 64, false\r
- #define ENDPOINT_DETAILS_EP1 64, true\r
- #define ENDPOINT_DETAILS_EP2 64, true\r
- #define ENDPOINT_DETAILS_EP3 64, true\r
- #define ENDPOINT_DETAILS_EP4 64, true\r
- #define ENDPOINT_DETAILS_EP5 256, true\r
- #define ENDPOINT_DETAILS_EP6 256, true \r
- #elif defined(USB_SERIES_2_AVR)\r
+ #else\r
#define ENDPOINT_DETAILS_EP0 64, true\r
#define ENDPOINT_DETAILS_EP1 64, false\r
#define ENDPOINT_DETAILS_EP2 64, false\r
#define ENDPOINT_DETAILS_EP4 64, true \r
#endif\r
\r
+ #define Endpoint_ConfigureEndpoint(Number, Type, Direction, Size, Banks) \\r
+ Endpoint_ConfigureEndpoint_Prv((Number), \\r
+ (((Type) << EPTYPE0) | (Direction)), \\r
+ ((1 << ALLOC) | (Banks) | \\r
+ (__builtin_constant_p(Size) ? \\r
+ Endpoint_BytesToEPSizeMask(Size) : \\r
+ Endpoint_BytesToEPSizeMaskDynamic(Size))))\r
+ \r
/* Function Prototypes: */\r
void Endpoint_ClearEndpoints(void);\r
- uintN_t Endpoint_BytesToEPSizeMaskDynamic(const uint16_t Size);\r
- bool Endpoint_ConfigureEndpoint_Prv(const uintN_t Number, const uintN_t UECFG0XData, const uintN_t UECFG1XData);\r
+ uint8_t Endpoint_BytesToEPSizeMaskDynamic(const uint16_t Size);\r
+ bool Endpoint_ConfigureEndpoint_Prv(const uint8_t Number, const uint8_t UECFG0XData, const uint8_t UECFG1XData);\r
\r
/* Inline Functions: */\r
- static inline uintN_t Endpoint_BytesToEPSizeMask(const uint16_t Bytes) ATTR_WARN_UNUSED_RESULT ATTR_CONST ATTR_ALWAYS_INLINE;\r
- static inline uintN_t Endpoint_BytesToEPSizeMask(const uint16_t Bytes)\r
+ static inline uint8_t Endpoint_BytesToEPSizeMask(const uint16_t Bytes) ATTR_WARN_UNUSED_RESULT ATTR_CONST ATTR_ALWAYS_INLINE;\r
+ static inline uint8_t Endpoint_BytesToEPSizeMask(const uint16_t Bytes)\r
{\r
- #if defined(__AVR32__)\r
- uint8_t MaskVal = 0;\r
- uint16_t CheckBytes = 8;\r
- \r
- while (CheckBytes < Bytes)\r
- {\r
- MaskVal++;\r
- CheckBytes <<= 1;\r
- }\r
- \r
- return (MaskVal << AVR32_USBB_EPSIZE);\r
- #else\r
uint8_t MaskVal = 0;\r
uint16_t CheckBytes = 8;\r
\r
}\r
\r
return (MaskVal << EPSIZE0);\r
- #endif\r
}\r
\r
#endif\r
#define __USBHOST_H__\r
\r
/* Includes: */\r
- #if defined(__AVR32__)\r
- #include <avr32/io.h>\r
- #include <stdint.h>\r
- #include <stdbool.h>\r
- #elif defined(__AVR__)\r
- #include <avr/io.h>\r
- #include <stdbool.h>\r
- #include <util/delay.h>\r
- #endif\r
- \r
+ #include <avr/io.h>\r
+ #include <stdbool.h>\r
+ #include <util/delay.h>\r
+\r
#include "../../../Common/Common.h"\r
#include "../HighLevel/USBInterrupt.h"\r
#include "../HighLevel/StdDescriptors.h"\r
\r
/* Preprocessor Checks: */\r
#if !defined(__INCLUDE_FROM_USB_DRIVER)\r
- #error Do not include this file directly. Include LUFA/Drivers/USB/USB.h instead.\r
+ #error Do not include this file directly. Include LUFA/Drivers/USB.h instead.\r
#endif\r
\r
/* Public Interface - May be used in end-application: */\r
*/\r
static inline bool USB_Host_IsResumeFromWakeupRequestSent(void);\r
#else\r
- #if defined(__AVR32__)\r
- #define USB_Host_ResetBus() MACROS{ AVR32_USBB.UHCON.reset = true; }MACROE\r
- #define USB_Host_IsBusResetComplete() AVR32_USBB.UHCON.reset\r
- #define USB_Host_ResumeBus() MACROS{ AVR32_USBB.UHCON.sofen = true; }MACROE \r
- #define USB_Host_SuspendBus() MACROS{ AVR32_USBB.UHCON.sofen = false; }MACROE \r
- #define USB_Host_IsBusSuspended() AVR32_USBB.UHCON.sofen\r
- #define USB_Host_IsDeviceFullSpeed() (AVR32_USBB.USBSTA.speed == 0) \r
- #define USB_Host_IsRemoteWakeupSent() AVR32_USBB.UHINT.rxrsmi\r
- #define USB_Host_ClearRemoteWakeupSent() MACROS{ AVR32_USBB.UHINTCLR.rxrsmic = true; }MACROE\r
- #define USB_Host_ResumeFromWakeupRequest() MACROS{ AVR32_USBB.UHCON.resume = true; }MACROE\r
- #define USB_Host_IsResumeFromWakeupRequestSent() AVR32_USBB.UHCON.resume \r
- #elif defined(__AVR__)\r
- #define USB_Host_ResetBus() MACROS{ UHCON |= (1 << RESET); }MACROE\r
- #define USB_Host_IsBusResetComplete() ((UHCON & (1 << RESET)) ? false : true)\r
- #define USB_Host_ResumeBus() MACROS{ UHCON |= (1 << SOFEN); }MACROE \r
- #define USB_Host_SuspendBus() MACROS{ UHCON &= ~(1 << SOFEN); }MACROE \r
- #define USB_Host_IsBusSuspended() ((UHCON & (1 << SOFEN)) ? false : true)\r
- #define USB_Host_IsDeviceFullSpeed() ((USBSTA & (1 << SPEED)) ? true : false)\r
- #define USB_Host_IsRemoteWakeupSent() ((UHINT & (1 << RXRSMI)) ? true : false)\r
- #define USB_Host_ClearRemoteWakeupSent() MACROS{ UHINT &= ~(1 << RXRSMI); }MACROE\r
- #define USB_Host_ResumeFromWakeupRequest() MACROS{ UHCON |= (1 << RESUME); }MACROE\r
- #define USB_Host_IsResumeFromWakeupRequestSent() ((UHCON & (1 << RESUME)) ? false : true)\r
- #endif\r
+ #define USB_Host_ResetBus() MACROS{ UHCON |= (1 << RESET); }MACROE\r
+\r
+ #define USB_Host_IsBusResetComplete() ((UHCON & (1 << RESET)) ? false : true)\r
+\r
+ #define USB_Host_ResumeBus() MACROS{ UHCON |= (1 << SOFEN); }MACROE \r
+\r
+ #define USB_Host_SuspendBus() MACROS{ UHCON &= ~(1 << SOFEN); }MACROE \r
+ \r
+ #define USB_Host_IsBusSuspended() ((UHCON & (1 << SOFEN)) ? false : true)\r
+ \r
+ #define USB_Host_IsDeviceFullSpeed() ((USBSTA & (1 << SPEED)) ? true : false)\r
+\r
+ #define USB_Host_IsRemoteWakeupSent() ((UHINT & (1 << RXRSMI)) ? true : false)\r
+\r
+ #define USB_Host_ClearRemoteWakeupSent() MACROS{ UHINT &= ~(1 << RXRSMI); }MACROE\r
+\r
+ #define USB_Host_ResumeFromWakeupRequest() MACROS{ UHCON |= (1 << RESUME); }MACROE\r
+ \r
+ #define USB_Host_IsResumeFromWakeupRequestSent() ((UHCON & (1 << RESUME)) ? false : true)\r
#endif\r
\r
/* Function Prototypes: */\r
/* Private Interface - For use in library only: */\r
#if !defined(__DOXYGEN__)\r
/* Macros: */\r
- #if defined(__AVR32__)\r
- #define USB_Host_HostMode_On() MACROS{ AVR32_USBB.USBCON.uimod = false; }MACROE\r
- #define USB_Host_HostMode_Off() MACROS{ AVR32_USBB.USBCON.uimod = true; }MACROE\r
-\r
- #define USB_Host_VBUS_Auto_Enable() MACROS{ OTGCON &= ~(1 << VBUSHWC); UHWCON |= (1 << UVCONE); }MACROE\r
- #define USB_Host_VBUS_Manual_Enable() MACROS{ OTGCON |= (1 << VBUSHWC); UHWCON &= ~(1 << UVCONE); DDRE |= (1 << 7); }MACROE\r
+ #define USB_Host_HostMode_On() MACROS{ USBCON |= (1 << HOST); }MACROE\r
+ #define USB_Host_HostMode_Off() MACROS{ USBCON &= ~(1 << HOST); }MACROE\r
\r
- #define USB_Host_VBUS_Auto_On() MACROS{ OTGCON |= (1 << VBUSREQ); }MACROE\r
- #define USB_Host_VBUS_Manual_On() MACROS{ PORTE |= (1 << 7); }MACROE\r
+ #define USB_Host_VBUS_Auto_Enable() MACROS{ OTGCON &= ~(1 << VBUSHWC); UHWCON |= (1 << UVCONE); }MACROE\r
+ #define USB_Host_VBUS_Manual_Enable() MACROS{ OTGCON |= (1 << VBUSHWC); UHWCON &= ~(1 << UVCONE); DDRE |= (1 << 7); }MACROE\r
\r
- #define USB_Host_VBUS_Auto_Off() MACROS{ OTGCON |= (1 << VBUSRQC); }MACROE\r
- #define USB_Host_VBUS_Manual_Off() MACROS{ PORTE &= ~(1 << 7); }MACROE\r
+ #define USB_Host_VBUS_Auto_On() MACROS{ OTGCON |= (1 << VBUSREQ); }MACROE\r
+ #define USB_Host_VBUS_Manual_On() MACROS{ PORTE |= (1 << 7); }MACROE\r
\r
- #define USB_Host_SetDeviceAddress(addr) MACROS{ UHADDR = ((addr) & 0x7F); }MACROE \r
- #elif defined(__AVR__)\r
- #define USB_Host_HostMode_On() MACROS{ USBCON |= (1 << HOST); }MACROE\r
- #define USB_Host_HostMode_Off() MACROS{ USBCON &= ~(1 << HOST); }MACROE\r
+ #define USB_Host_VBUS_Auto_Off() MACROS{ OTGCON |= (1 << VBUSRQC); }MACROE\r
+ #define USB_Host_VBUS_Manual_Off() MACROS{ PORTE &= ~(1 << 7); }MACROE\r
\r
- #define USB_Host_VBUS_Auto_Enable() MACROS{ OTGCON &= ~(1 << VBUSHWC); UHWCON |= (1 << UVCONE); }MACROE\r
- #define USB_Host_VBUS_Manual_Enable() MACROS{ OTGCON |= (1 << VBUSHWC); UHWCON &= ~(1 << UVCONE); DDRE |= (1 << 7); }MACROE\r
+ #define USB_Host_SetDeviceAddress(addr) MACROS{ UHADDR = ((addr) & 0x7F); }MACROE\r
\r
- #define USB_Host_VBUS_Auto_On() MACROS{ OTGCON |= (1 << VBUSREQ); }MACROE\r
- #define USB_Host_VBUS_Manual_On() MACROS{ PORTE |= (1 << 7); }MACROE\r
-\r
- #define USB_Host_VBUS_Auto_Off() MACROS{ OTGCON |= (1 << VBUSRQC); }MACROE\r
- #define USB_Host_VBUS_Manual_Off() MACROS{ PORTE &= ~(1 << 7); }MACROE\r
-\r
- #define USB_Host_SetDeviceAddress(addr) MACROS{ UHADDR = ((addr) & 0x7F); }MACROE\r
- #endif\r
- \r
/* Enums: */\r
enum USB_Host_WaitMSErrorCodes_t\r
{\r
#define __HOSTCHAPTER9_H__\r
\r
/* Includes: */\r
- #if defined(__AVR32__)\r
- #include <avr32/io.h>\r
- #include <stdint.h>\r
- #include <stdbool.h>\r
- #elif defined(__AVR__)\r
- #include <avr/io.h>\r
- #include <stdbool.h>\r
- #endif\r
+ #include <avr/io.h>\r
+ #include <stdbool.h>\r
\r
#include "LowLevel.h"\r
#include "../HighLevel/USBMode.h"\r
\r
/* Preprocessor Checks: */\r
#if !defined(__INCLUDE_FROM_USB_DRIVER)\r
- #error Do not include this file directly. Include LUFA/Drivers/USB/USB.h instead.\r
+ #error Do not include this file directly. Include LUFA/Drivers/USB.h instead.\r
#endif\r
\r
/* Public Interface - May be used in end-application: */\r
volatile uint8_t USB_Options;\r
#endif\r
\r
-#if defined(__AVR32__) && !defined(CONTROL_ONLY_DEVICE)\r
-uint8_t USB_SelectedEPNumber;\r
-#endif\r
-\r
void USB_Init(\r
#if defined(USB_CAN_BE_BOTH)\r
const uint8_t Mode\r
#endif\r
)\r
{\r
- #if defined(__AVR32__)\r
- USB_SelectedEPNumber = 0;\r
- #endif\r
-\r
#if defined(USB_CAN_BE_BOTH)\r
USB_CurrentMode = Mode;\r
#endif\r
#ifndef __USBLOWLEVEL_H__\r
#define __USBLOWLEVEL_H__\r
\r
- /* External Variables: */\r
- #if defined(__AVR32__)\r
- #if !defined(CONTROL_ONLY_DEVICE)\r
- extern uint8_t USB_SelectedEPNumber;\r
- #else\r
- #define USB_SelectedEPNumber 0\r
- #endif\r
- #endif\r
- \r
/* Includes: */\r
- #if defined(__AVR32__)\r
- #include <avr32/io.h>\r
- #include <stdint.h>\r
- #include <stdbool.h>\r
- #elif defined(__AVR__)\r
- #include <avr/io.h>\r
- #include <avr/interrupt.h>\r
- #include <stdbool.h>\r
- #endif\r
- \r
+ #include <avr/io.h>\r
+ #include <avr/interrupt.h>\r
+ #include <stdbool.h>\r
+ \r
#include "../HighLevel/USBMode.h"\r
\r
#include "../../../Common/Common.h"\r
\r
/* Preprocessor Checks and Defines: */\r
#if !defined(__INCLUDE_FROM_USB_DRIVER)\r
- #error Do not include this file directly. Include LUFA/Drivers/USB/USB.h instead.\r
+ #error Do not include this file directly. Include LUFA/Drivers/USB.h instead.\r
#endif\r
- \r
- #if defined(__AVR32__)\r
- #define USB_PLL_PSC 0\r
- #elif defined(__AVR__)\r
- #if !defined(F_CLOCK)\r
- #error F_CLOCK is not defined. You must define F_CLOCK to the frequency of the unprescaled input clock in your project makefile.\r
- #endif\r
- \r
- #if (F_CLOCK == 8000000)\r
- #if (defined(__AVR_AT90USB82__) || defined(__AVR_AT90USB162__) || \\r
- defined(__AVR_ATmega8U2__) || defined(__AVR_ATmega16U2__) || \\r
- defined(__AVR_ATmega32U2__))\r
- #define USB_PLL_PSC 0\r
- #elif (defined(__AVR_ATmega16U4__) || defined(__AVR_ATmega32U4__))\r
- #define USB_PLL_PSC 0\r
- #elif (defined(__AVR_AT90USB646__) || defined(__AVR_AT90USB1286__) || defined(__AVR_ATmega32U6__))\r
- #define USB_PLL_PSC ((1 << PLLP1) | (1 << PLLP0))\r
- #elif (defined(__AVR_AT90USB647__) || defined(__AVR_AT90USB1287__))\r
- #define USB_PLL_PSC ((1 << PLLP1) | (1 << PLLP0))\r
- #endif\r
- #elif (F_CLOCK == 16000000)\r
- #if (defined(__AVR_AT90USB82__) || defined(__AVR_AT90USB162__) || \\r
- defined(__AVR_ATmega8U2__) || defined(__AVR_ATmega16U2__) || \\r
- defined(__AVR_ATmega32U2__))\r
- #define USB_PLL_PSC (1 << PLLP0)\r
- #elif (defined(__AVR_ATmega16U4__) || defined(__AVR_ATmega32U4__))\r
- #define USB_PLL_PSC (1 << PINDIV)\r
- #elif (defined(__AVR_AT90USB646__) || defined(__AVR_AT90USB647__) || defined(__AVR_ATmega32U6__))\r
- #define USB_PLL_PSC ((1 << PLLP2) | (1 << PLLP1))\r
- #elif (defined(__AVR_AT90USB1286__) || defined(__AVR_AT90USB1287__))\r
- #define USB_PLL_PSC ((1 << PLLP2) | (1 << PLLP0))\r
- #endif\r
+\r
+ #if !defined(F_CLOCK)\r
+ #error F_CLOCK is not defined. You must define F_CLOCK to the frequency of the unprescaled input clock in your project makefile.\r
+ #endif\r
+ \r
+ #if (F_CLOCK == 8000000)\r
+ #if (defined(__AVR_AT90USB82__) || defined(__AVR_AT90USB162__) || \\r
+ defined(__AVR_ATmega8U2__) || defined(__AVR_ATmega16U2__) || \\r
+ defined(__AVR_ATmega32U2__))\r
+ #define USB_PLL_PSC 0\r
+ #elif (defined(__AVR_ATmega16U4__) || defined(__AVR_ATmega32U4__))\r
+ #define USB_PLL_PSC 0\r
+ #elif (defined(__AVR_AT90USB646__) || defined(__AVR_AT90USB1286__) || defined(__AVR_ATmega32U6__))\r
+ #define USB_PLL_PSC ((1 << PLLP1) | (1 << PLLP0))\r
+ #elif (defined(__AVR_AT90USB647__) || defined(__AVR_AT90USB1287__))\r
+ #define USB_PLL_PSC ((1 << PLLP1) | (1 << PLLP0))\r
#endif\r
- \r
- #if !defined(USB_PLL_PSC)\r
- #error No PLL prescale value available for chosen F_CLOCK value and AVR model.\r
+ #elif (F_CLOCK == 16000000)\r
+ #if (defined(__AVR_AT90USB82__) || defined(__AVR_AT90USB162__) || \\r
+ defined(__AVR_ATmega8U2__) || defined(__AVR_ATmega16U2__) || \\r
+ defined(__AVR_ATmega32U2__))\r
+ #define USB_PLL_PSC (1 << PLLP0)\r
+ #elif (defined(__AVR_ATmega16U4__) || defined(__AVR_ATmega32U4__))\r
+ #define USB_PLL_PSC (1 << PINDIV)\r
+ #elif (defined(__AVR_AT90USB646__) || defined(__AVR_AT90USB647__) || defined(__AVR_ATmega32U6__))\r
+ #define USB_PLL_PSC ((1 << PLLP2) | (1 << PLLP1))\r
+ #elif (defined(__AVR_AT90USB1286__) || defined(__AVR_AT90USB1287__))\r
+ #define USB_PLL_PSC ((1 << PLLP2) | (1 << PLLP0))\r
#endif\r
#endif\r
\r
+ #if !defined(USB_PLL_PSC)\r
+ #error No PLL prescale value available for chosen F_CPU value and AVR model.\r
+ #endif\r
+ \r
/* Public Interface - May be used in end-application: */\r
/* Macros: */\r
/** Mode mask for the \ref USB_CurrentMode global. This indicates that the USB interface is currently not\r
*\r
* \note This token is not available on AVR models which do not support both host and device modes.\r
*/\r
- #define USB_MODE_UID 3\r
+ #define USB_MODE_UID 3\r
#endif\r
\r
/** Regulator disable option mask for \ref USB_Init(). This indicates that the internal 3.3V USB data pad\r
*\r
* \note This token is not available on some AVR models which do not support hardware VBUS monitoring.\r
*/\r
- #define USB_VBUS_GetStatus() ((USBSTA & (1 << VBUS)) ? true : false)\r
+ #define USB_VBUS_GetStatus() ((USBSTA & (1 << VBUS)) ? true : false)\r
#endif\r
\r
/** Detaches the device from the USB bus. This has the effect of removing the device from any\r
#define USB_Controller_Disable() MACROS{ USBCON &= ~(1 << USBE); }MACROE\r
#define USB_Controller_Reset() MACROS{ const uint8_t Temp = USBCON; USBCON = (Temp & ~(1 << USBE)); \\r
USBCON = (Temp | (1 << USBE)); }MACROE\r
+ \r
/* Inline Functions: */\r
#if defined(USB_CAN_BE_BOTH)\r
static inline uint8_t USB_GetUSBModeFromUID(void) ATTR_WARN_UNUSED_RESULT ATTR_ALWAYS_INLINE;\r
static inline uint8_t USB_GetUSBModeFromUID(void)\r
{\r
- #if defined(__AVR32__)\r
- if (AVR32_USBB.USBSTA.id)\r
- return USB_MODE_DEVICE;\r
- else\r
- return USB_MODE_HOST; \r
- #elif defined(__AVR__)\r
if (USBSTA & (1 << ID))\r
return USB_MODE_DEVICE;\r
else\r
return USB_MODE_HOST;\r
- #endif\r
}\r
#endif\r
\r
#define __USBOTG_H__\r
\r
/* Includes: */\r
- #if defined(__AVR32__)\r
- #include <avr32/io.h>\r
- #include <stdint.h>\r
- #include <stdbool.h>\r
- #elif defined(__AVR__)\r
- #include <avr/io.h>\r
- #include <stdbool.h>\r
- #endif\r
+ #include <avr/io.h>\r
+ #include <stdbool.h>\r
\r
#include "../../../Common/Common.h"\r
\r
/* Preprocessor Checks: */\r
#if !defined(__INCLUDE_FROM_USB_DRIVER)\r
- #error Do not include this file directly. Include LUFA/Drivers/USB/USB.h instead.\r
+ #error Do not include this file directly. Include LUFA/Drivers/USB.h instead.\r
#endif\r
\r
/* Public Interface - May be used in end-application: */\r
#define TEMPLATE_TRANSFER_BYTE(BufferPtr) Pipe_Write_Byte(pgm_read_byte((uint8_t*)BufferPtr++))\r
#include "Template/Template_Pipe_RW.c"\r
\r
-#if defined(__AVR__)\r
- #define TEMPLATE_FUNC_NAME Pipe_Write_EStream_LE\r
- #define TEMPLATE_BUFFER_TYPE const void*\r
- #define TEMPLATE_TOKEN PIPE_TOKEN_OUT\r
- #define TEMPLATE_CLEAR_PIPE() Pipe_ClearOUT()\r
- #define TEMPLATE_BUFFER_OFFSET(Length) 0\r
- #define TEMPLATE_TRANSFER_BYTE(BufferPtr) Pipe_Write_Byte(eeprom_read_byte((uint8_t*)BufferPtr++))\r
- #include "Template/Template_Pipe_RW.c"\r
-#endif\r
+#define TEMPLATE_FUNC_NAME Pipe_Write_EStream_LE\r
+#define TEMPLATE_BUFFER_TYPE const void*\r
+#define TEMPLATE_TOKEN PIPE_TOKEN_OUT\r
+#define TEMPLATE_CLEAR_PIPE() Pipe_ClearOUT()\r
+#define TEMPLATE_BUFFER_OFFSET(Length) 0\r
+#define TEMPLATE_TRANSFER_BYTE(BufferPtr) Pipe_Write_Byte(eeprom_read_byte((uint8_t*)BufferPtr++))\r
+#include "Template/Template_Pipe_RW.c"\r
\r
#define TEMPLATE_FUNC_NAME Pipe_Write_Stream_BE\r
#define TEMPLATE_BUFFER_TYPE const void*\r
#define TEMPLATE_TRANSFER_BYTE(BufferPtr) Pipe_Write_Byte(pgm_read_byte((uint8_t*)BufferPtr--))\r
#include "Template/Template_Pipe_RW.c"\r
\r
-#if defined(__AVR__)\r
- #define TEMPLATE_FUNC_NAME Pipe_Write_EStream_BE\r
- #define TEMPLATE_BUFFER_TYPE const void*\r
- #define TEMPLATE_TOKEN PIPE_TOKEN_OUT\r
- #define TEMPLATE_CLEAR_PIPE() Pipe_ClearOUT()\r
- #define TEMPLATE_BUFFER_OFFSET(Length) (Length - 1)\r
- #define TEMPLATE_TRANSFER_BYTE(BufferPtr) Pipe_Write_Byte(eeprom_read_byte((uint8_t*)BufferPtr--))\r
- #include "Template/Template_Pipe_RW.c"\r
-#endif\r
+#define TEMPLATE_FUNC_NAME Pipe_Write_EStream_BE\r
+#define TEMPLATE_BUFFER_TYPE const void*\r
+#define TEMPLATE_TOKEN PIPE_TOKEN_OUT\r
+#define TEMPLATE_CLEAR_PIPE() Pipe_ClearOUT()\r
+#define TEMPLATE_BUFFER_OFFSET(Length) (Length - 1)\r
+#define TEMPLATE_TRANSFER_BYTE(BufferPtr) Pipe_Write_Byte(eeprom_read_byte((uint8_t*)BufferPtr--))\r
+#include "Template/Template_Pipe_RW.c"\r
\r
#define TEMPLATE_FUNC_NAME Pipe_Read_Stream_LE\r
#define TEMPLATE_BUFFER_TYPE void*\r
#define TEMPLATE_TRANSFER_BYTE(BufferPtr) *((uint8_t*)BufferPtr++) = Pipe_Read_Byte()\r
#include "Template/Template_Pipe_RW.c"\r
\r
-#if defined(__AVR__)\r
- #define TEMPLATE_FUNC_NAME Pipe_Read_EStream_LE\r
- #define TEMPLATE_BUFFER_TYPE void*\r
- #define TEMPLATE_TOKEN PIPE_TOKEN_IN\r
- #define TEMPLATE_CLEAR_PIPE() Pipe_ClearIN()\r
- #define TEMPLATE_BUFFER_OFFSET(Length) 0\r
- #define TEMPLATE_TRANSFER_BYTE(BufferPtr) eeprom_write_byte((uint8_t*)BufferPtr++, Pipe_Read_Byte())\r
- #include "Template/Template_Pipe_RW.c"\r
-#endif\r
+#define TEMPLATE_FUNC_NAME Pipe_Read_EStream_LE\r
+#define TEMPLATE_BUFFER_TYPE void*\r
+#define TEMPLATE_TOKEN PIPE_TOKEN_IN\r
+#define TEMPLATE_CLEAR_PIPE() Pipe_ClearIN()\r
+#define TEMPLATE_BUFFER_OFFSET(Length) 0\r
+#define TEMPLATE_TRANSFER_BYTE(BufferPtr) eeprom_write_byte((uint8_t*)BufferPtr++, Pipe_Read_Byte())\r
+#include "Template/Template_Pipe_RW.c"\r
\r
#define TEMPLATE_FUNC_NAME Pipe_Read_Stream_BE\r
#define TEMPLATE_BUFFER_TYPE void*\r
#define TEMPLATE_TRANSFER_BYTE(BufferPtr) *((uint8_t*)BufferPtr--) = Pipe_Read_Byte()\r
#include "Template/Template_Pipe_RW.c"\r
\r
-#if defined(__AVR__)\r
- #define TEMPLATE_FUNC_NAME Pipe_Read_EStream_BE\r
- #define TEMPLATE_BUFFER_TYPE void*\r
- #define TEMPLATE_TOKEN PIPE_TOKEN_IN\r
- #define TEMPLATE_CLEAR_PIPE() Pipe_ClearIN()\r
- #define TEMPLATE_BUFFER_OFFSET(Length) (Length - 1)\r
- #define TEMPLATE_TRANSFER_BYTE(BufferPtr) eeprom_write_byte((uint8_t*)BufferPtr--, Pipe_Read_Byte())\r
- #include "Template/Template_Pipe_RW.c"\r
-#endif\r
+#define TEMPLATE_FUNC_NAME Pipe_Read_EStream_BE\r
+#define TEMPLATE_BUFFER_TYPE void*\r
+#define TEMPLATE_TOKEN PIPE_TOKEN_IN\r
+#define TEMPLATE_CLEAR_PIPE() Pipe_ClearIN()\r
+#define TEMPLATE_BUFFER_OFFSET(Length) (Length - 1)\r
+#define TEMPLATE_TRANSFER_BYTE(BufferPtr) eeprom_write_byte((uint8_t*)BufferPtr--, Pipe_Read_Byte())\r
+#include "Template/Template_Pipe_RW.c"\r
\r
#endif\r
#define __PIPE_H__\r
\r
/* Includes: */\r
- #if defined(__AVR32__)\r
- #include <avr32/io.h>\r
- #include <stdint.h>\r
- #include <stdbool.h>\r
- #elif defined(__AVR__)\r
- #include <avr/io.h>\r
- #include <avr/pgmspace.h>\r
- #include <avr/eeprom.h>\r
- #include <stdbool.h>\r
- #endif\r
+ #include <avr/io.h>\r
+ #include <avr/pgmspace.h>\r
+ #include <avr/eeprom.h>\r
+ #include <stdbool.h>\r
\r
#include "../../../Common/Common.h"\r
- #include "LowLevel.h"\r
#include "../HighLevel/USBTask.h"\r
\r
#if !defined(NO_STREAM_CALLBACKS) || defined(__DOXYGEN__)\r
\r
/* Preprocessor Checks: */\r
#if !defined(__INCLUDE_FROM_USB_DRIVER)\r
- #error Do not include this file directly. Include LUFA/Drivers/USB/USB.h instead.\r
+ #error Do not include this file directly. Include LUFA/Drivers/USB.h instead.\r
#endif\r
\r
- #if defined(__AVR32__) && !defined(__AVR32_EPREG_X)\r
- #define __AVR32_EPREG_X(x) ((volatile uint32_t*)AVR32_USBB_ ## x)[USB_SelectedEPNumber] \r
- #endif\r
-\r
/* Public Interface - May be used in end-application: */\r
/* Macros: */\r
/** Mask for \ref Pipe_GetErrorFlags(), indicating that an overflow error occurred in the pipe on the received data. */\r
static inline uint8_t Pipe_Read_Byte(void) ATTR_WARN_UNUSED_RESULT ATTR_ALWAYS_INLINE;\r
static inline uint8_t Pipe_Read_Byte(void)\r
{\r
- #if defined(__AVR32__)\r
- return __AVR32_EPREG_X(UEDAT0);\r
- #elif defined(__AVR__)\r
return UPDATX;\r
- #endif\r
}\r
\r
/** Writes one byte from the currently selected pipe's bank, for IN direction pipes.\r
static inline void Pipe_Write_Byte(const uint8_t Byte) ATTR_ALWAYS_INLINE;\r
static inline void Pipe_Write_Byte(const uint8_t Byte)\r
{\r
- #if defined(__AVR32__)\r
- __AVR32_EPREG_X(UEDAT0) = Byte;\r
- #elif defined(__AVR__)\r
UPDATX = Byte;\r
- #endif\r
}\r
\r
/** Discards one byte from the currently selected pipe's bank, for OUT direction pipes.\r
{\r
uint8_t Dummy;\r
\r
- #if defined(__AVR32__)\r
- Dummy = __AVR32_EPREG_X(UEDAT0);\r
- #elif defined(__AVR__)\r
Dummy = UPDATX;\r
- #endif\r
}\r
\r
/** Reads two bytes from the currently selected pipe's bank in little endian format, for OUT\r
uint8_t Bytes[2];\r
} Data;\r
\r
- #if defined(__AVR32__)\r
- Data.Bytes[0] = __AVR32_EPREG_X(UEDAT0);\r
- Data.Bytes[1] = __AVR32_EPREG_X(UEDAT0);\r
- #elif defined(__AVR__)\r
Data.Bytes[0] = UPDATX;\r
Data.Bytes[1] = UPDATX;\r
- #endif\r
\r
return Data.Word;\r
}\r
uint8_t Bytes[2];\r
} Data;\r
\r
- #if defined(__AVR32__)\r
- Data.Bytes[1] = __AVR32_EPREG_X(UEDAT0);\r
- Data.Bytes[0] = __AVR32_EPREG_X(UEDAT0);\r
- #elif defined(__AVR__)\r
Data.Bytes[1] = UPDATX;\r
Data.Bytes[0] = UPDATX;\r
- #endif\r
\r
return Data.Word;\r
}\r
static inline void Pipe_Write_Word_LE(const uint16_t Word) ATTR_ALWAYS_INLINE;\r
static inline void Pipe_Write_Word_LE(const uint16_t Word)\r
{\r
- #if defined(__AVR32__)\r
- __AVR32_EPREG_X(UEDAT0) = (Word & 0xFF);\r
- __AVR32_EPREG_X(UEDAT0) = (Word >> 8);\r
- #elif defined(__AVR__)\r
UPDATX = (Word & 0xFF);\r
UPDATX = (Word >> 8);\r
- #endif\r
}\r
\r
/** Writes two bytes to the currently selected pipe's bank in big endian format, for IN\r
static inline void Pipe_Write_Word_BE(const uint16_t Word) ATTR_ALWAYS_INLINE;\r
static inline void Pipe_Write_Word_BE(const uint16_t Word)\r
{\r
- #if defined(__AVR32__)\r
- __AVR32_EPREG_X(UEDAT0) = (Word >> 8);\r
- __AVR32_EPREG_X(UEDAT0) = (Word & 0xFF);\r
- #elif defined(__AVR__)\r
UPDATX = (Word >> 8);\r
UPDATX = (Word & 0xFF);\r
- #endif\r
}\r
\r
/** Discards two bytes from the currently selected pipe's bank, for OUT direction pipes.\r
{\r
uint8_t Dummy;\r
\r
- #if defined(__AVR32__)\r
- Dummy = __AVR32_EPREG_X(UEDAT0);\r
- Dummy = __AVR32_EPREG_X(UEDAT0);\r
- #elif defined(__AVR__)\r
Dummy = UPDATX;\r
Dummy = UPDATX;\r
- #endif\r
}\r
\r
/** Reads four bytes from the currently selected pipe's bank in little endian format, for OUT\r
uint8_t Bytes[4];\r
} Data;\r
\r
- #if defined(__AVR32__)\r
- Data.Bytes[0] = __AVR32_EPREG_X(UEDAT0);\r
- Data.Bytes[1] = __AVR32_EPREG_X(UEDAT0);\r
- Data.Bytes[2] = __AVR32_EPREG_X(UEDAT0);\r
- Data.Bytes[3] = __AVR32_EPREG_X(UEDAT0);\r
- #elif defined(__AVR__)\r
Data.Bytes[0] = UPDATX;\r
Data.Bytes[1] = UPDATX;\r
Data.Bytes[2] = UPDATX;\r
Data.Bytes[3] = UPDATX;\r
- #endif\r
\r
return Data.DWord;\r
}\r
uint8_t Bytes[4];\r
} Data;\r
\r
- #if defined(__AVR32__)\r
- Data.Bytes[3] = __AVR32_EPREG_X(UEDAT0);\r
- Data.Bytes[2] = __AVR32_EPREG_X(UEDAT0);\r
- Data.Bytes[1] = __AVR32_EPREG_X(UEDAT0);\r
- Data.Bytes[0] = __AVR32_EPREG_X(UEDAT0);\r
- #elif defined(__AVR__)\r
Data.Bytes[3] = UPDATX;\r
Data.Bytes[2] = UPDATX;\r
Data.Bytes[1] = UPDATX;\r
Data.Bytes[0] = UPDATX;\r
- #endif\r
\r
return Data.DWord;\r
}\r
static inline void Pipe_Write_DWord_LE(const uint32_t DWord) ATTR_ALWAYS_INLINE;\r
static inline void Pipe_Write_DWord_LE(const uint32_t DWord)\r
{\r
- #if defined(__AVR32__)\r
- __AVR32_EPREG_X(UEDAT0) = (DWord & 0xFF);\r
- __AVR32_EPREG_X(UEDAT0) = (DWord >> 8);\r
- __AVR32_EPREG_X(UEDAT0) = (DWord >> 16);\r
- __AVR32_EPREG_X(UEDAT0) = (DWord >> 24);\r
- #elif defined(__AVR__)\r
UPDATX = (DWord & 0xFF);\r
UPDATX = (DWord >> 8);\r
UPDATX = (DWord >> 16);\r
UPDATX = (DWord >> 24);\r
- #endif\r
}\r
\r
/** Writes four bytes to the currently selected pipe's bank in big endian format, for IN\r
static inline void Pipe_Write_DWord_BE(const uint32_t DWord) ATTR_ALWAYS_INLINE;\r
static inline void Pipe_Write_DWord_BE(const uint32_t DWord)\r
{\r
- #if defined(__AVR32__)\r
- __AVR32_EPREG_X(UEDAT0) = (DWord >> 24);\r
- __AVR32_EPREG_X(UEDAT0) = (DWord >> 16);\r
- __AVR32_EPREG_X(UEDAT0) = (DWord >> 8);\r
- __AVR32_EPREG_X(UEDAT0) = (DWord & 0xFF);\r
- #elif defined(__AVR__)\r
UPDATX = (DWord >> 24);\r
UPDATX = (DWord >> 16);\r
UPDATX = (DWord >> 8);\r
UPDATX = (DWord & 0xFF);\r
- #endif\r
} \r
\r
/** Discards four bytes from the currently selected pipe's bank, for OUT direction pipes. \r
{\r
uint8_t Dummy;\r
\r
- #if defined(__AVR32__)\r
- Dummy = __AVR32_EPREG_X(UEDAT0);\r
- Dummy = __AVR32_EPREG_X(UEDAT0);\r
- Dummy = __AVR32_EPREG_X(UEDAT0);\r
- Dummy = __AVR32_EPREG_X(UEDAT0);\r
- #elif defined(__AVR__)\r
Dummy = UPDATX;\r
Dummy = UPDATX;\r
Dummy = UPDATX;\r
Dummy = UPDATX;\r
- #endif\r
}\r
\r
/* External Variables: */\r
* \param[in] Length Number of bytes to read for the currently selected pipe into the buffer.\r
* \param[in] Callback Name of a callback routine to call between successive USB packet transfers, NULL if no callback\r
*\r
- * \note Not available on AVR32 UC3B targets.\r
- *\r
* \return A value from the \ref Pipe_Stream_RW_ErrorCodes_t enum.\r
*/\r
uint8_t Pipe_Write_EStream_LE(const void* Buffer, uint16_t Length __CALLBACK_PARAM) ATTR_NON_NULL_PTR_ARG(1);\r
* \param[in] Length Number of bytes to read for the currently selected pipe into the buffer.\r
* \param[in] Callback Name of a callback routine to call between successive USB packet transfers, NULL if no callback\r
*\r
- * \note Not available on AVR32 UC3B targets.\r
- *\r
* \return A value from the \ref Pipe_Stream_RW_ErrorCodes_t enum.\r
*/\r
uint8_t Pipe_Write_EStream_BE(const void* Buffer, uint16_t Length __CALLBACK_PARAM) ATTR_NON_NULL_PTR_ARG(1);\r
* \param[in] Length Number of bytes to read for the currently selected pipe to read from.\r
* \param[in] Callback Name of a callback routine to call between successive USB packet transfers, NULL if no callback\r
*\r
- * \note Not available on AVR32 UC3B targets.\r
- *\r
* \return A value from the \ref Pipe_Stream_RW_ErrorCodes_t enum.\r
*/\r
uint8_t Pipe_Read_EStream_LE(void* Buffer, uint16_t Length __CALLBACK_PARAM) ATTR_NON_NULL_PTR_ARG(1);\r
* \param[in] Length Number of bytes to read for the currently selected pipe to read from.\r
* \param[in] Callback Name of a callback routine to call between successive USB packet transfers, NULL if no callback\r
*\r
- * \note Not available on AVR32 UC3B targets.\r
- *\r
* \return A value from the \ref Pipe_Stream_RW_ErrorCodes_t enum.\r
*/\r
uint8_t Pipe_Read_EStream_BE(void* Buffer, uint16_t Length __CALLBACK_PARAM) ATTR_NON_NULL_PTR_ARG(1);\r
void Pipe_ClearPipes(void);\r
\r
/* Inline Functions: */\r
- static inline uintN_t Pipe_BytesToEPSizeMask(uint16_t Bytes) ATTR_WARN_UNUSED_RESULT ATTR_CONST ATTR_ALWAYS_INLINE;\r
- static inline uintN_t Pipe_BytesToEPSizeMask(uint16_t Bytes)\r
+ static inline uint8_t Pipe_BytesToEPSizeMask(uint16_t Bytes) ATTR_WARN_UNUSED_RESULT ATTR_CONST ATTR_ALWAYS_INLINE;\r
+ static inline uint8_t Pipe_BytesToEPSizeMask(uint16_t Bytes)\r
{\r
- #if defined(__AVR32__)\r
- // TODO\r
- return 0;\r
- #elif defined(__AVR__)\r
if (Bytes <= 8)\r
return (0 << EPSIZE0);\r
else if (Bytes <= 16)\r
return (4 << EPSIZE0);\r
else\r
return (5 << EPSIZE0);\r
- #endif\r
}\r
\r
#endif\r
#if !defined(__DOXYGEN__)\r
#define __INCLUDE_FROM_USB_DRIVER\r
#endif\r
- \r
+\r
/* Includes: */\r
#include "HighLevel/USBMode.h"\r
\r
/* Preprocessor Checks: */ \r
#if (!defined(USB_SERIES_2_AVR) && !defined(USB_SERIES_4_AVR) && \\r
- !defined(USB_SERIES_6_AVR) && !defined(USB_SERIES_7_AVR) && \\r
- !defined(USB_SERIES_UC3B_AVR))\r
+ !defined(USB_SERIES_6_AVR) && !defined(USB_SERIES_7_AVR))\r
#error The currently selected AVR model is not supported under the USB component of the LUFA library.\r
#endif\r
\r
* \section Sec_ChangeLogXXXXXX Version XXXXXX\r
*\r
* <b>New:</b>\r
- * - Added support for the UC3B0256 AVR32 microcontroller\r
+ * - (None)\r
*\r
* <b>Changed:</b>\r
* - AVRISP programmer project now has a more robust timeout system, allowing for a doubling of the software USART speed\r
* may be defined to a value between 0 and 2 to fix the state variable into one of the three general purpose IO registers inside the AVR\r
* reserved for application use. When defined, the corresponding GPIOR register should not be used within the user application except\r
* implicitly via the library APIs.\r
- * \note This compile time option is ignored for the AVR32 UC3B architecture.\r
*\r
* <b>FIXED_NUM_CONFIGURATIONS</b>=<i>x</i> - ( \ref Group_Device ) \n\r
* By default, the library determines the number of configurations a USB device supports by reading the device descriptor. This reduces\r
* may be defined to a value between 0 and 2 to fix the state variable into one of the three general purpose IO registers inside the AVR\r
* reserved for application use. When defined, the corresponding GPIOR register should not be used within the user application except\r
* implicitly via the library APIs.\r
- * \note This compile time option is ignored for the AVR32 UC3B architecture.\r
*\r
* <b>USB_HOST_TIMEOUT_MS</b>=<i>x</i> - ( \ref Group_Host ) \n\r
* When a control transfer is initiated in host mode to an attached device, a timeout is used to abort the transfer if the attached\r
* - AT90USB647 (USB Host and Device)\r
* - AT90USB1286 (USB Device Only)\r
* - AT90USB1287 (USB Host and Device)\r
- * - AT32UC3B0256 (EXPERIMENTAL - see \ref Sec_AVR32Port)\r
*\r
* Currently supported Atmel boards:\r
* - AT90USBKEY\r
* - ATAVRUSBRF01\r
* - EVK527\r
- * - EVK1101 (EXPERIMENTAL - see \ref Sec_AVR32Port)\r
* - RZUSBSTICK\r
* - STK525\r
* - STK526\r
* This folder contains drivers for several of the AVR internal peripherals such as the USART, compatible with\r
* all USB AVR models.\r
*\r
- * \dir LUFA/Drivers/Peripheral/AVR8\r
- * \brief 8-Bit AVR model peripheral driver files.\r
+ * \dir LUFA/Drivers/Peripheral/AVRU4U6U7\r
+ * \brief AT90USBXXX6, AT90USBXXX7 and ATMEGAXXU4 AVR model peripheral driver files.\r
* \r
- * This folder contains drivers for several of the AVR internal peripherals such as the USART and ADC, on supported\r
- * 32-Bit AVR models. Its contents should <b>not</b> be included by the user application - the dispatch header file\r
- * located in the parent directory should be used instead.\r
- *\r
- * \dir LUFA/Drivers/Peripheral/AVR32\r
- * \brief 32-Bit AVR model peripheral driver files.\r
- *\r
- * This folder contains drivers for several of the AVR internal peripherals such as the USART and ADC, on supported\r
- * 8-Bit AVR models. Its contents should <b>not</b> be included by the user application - the dispatch header file\r
- * located in the parent directory should be used instead.\r
+ * This folder contains drivers for several of the AVR internal peripherals such as the USART, compatible only with\r
+ * the AT90USBXXX6, AT90USBXXX7 and ATMEGAXXU4 USB AVR models, such as the AT90USB1287. Its contents should <b>not</b> be\r
+ * included by the user application - the dispatch header file located in the parent directory should be used\r
+ * instead.\r
*\r
* \dir LUFA/Drivers/USB\r
* \brief USB controller peripheral driver files.\r
* -# Finish SideShow demo\r
* -# Finish StandaloneProgrammer project\r
* - Ports\r
+ * -# AVR32 UC3B series microcontrollers\r
* -# Atmel ARM7 series microcontrollers\r
* -# Other (commercial) C compilers\r
- *\r
- * \section Sec_AVR32Port AVR32 Port Status\r
- * The following drivers have been ported:\r
- * - Joystick Board Driver\r
- * - Buttons Board Driver\r
- * - LEDs Board Driver\r
- * - Simple Scheduler\r
- * - Temperature Board Driver\r
- *\r
- * The following drivers have been partially ported:\r
- * - SPI Peripheral Driver\r
- * - USB Driver\r
- *\r
- * The following drivers have not yet been ported:\r
- * - Dataflash Board Driver\r
- * - Serial Peripheral Driver\r
- * - ADC Peripheral Driver\r
- * - TWI Peripheral Driver\r
*/\r
*\r
* <b>LUFA is donationware. For author and donation information, see \ref Page_Donating.</b>\r
*\r
- * LUFA is an open-source USB library for the USB-enabled AVR8 and AVR32 microcontrollers, released under the MIT license. It\r
- * supports a large number of USB AVR models and boards (see \ref Page_DeviceSupport). It is designed to provide an easy to use,\r
- * feature rich framework for the development of USB peripherals and hosts.\r
+ * LUFA is an open-source USB library for the USB-enabled AVR microcontrollers, released under the MIT license. It supports\r
+ * a large number of USB AVR models and boards (see \ref Page_DeviceSupport). It is designed to provide an easy to use, feature\r
+ * rich framework for the development of USB peripherals and hosts.\r
*\r
* LUFA focuses on the microcontroller side of USB development only; it includes no host USB driver development facilities. While\r
* custom USB devices can be made with LUFA, the included demos all use the inbuilt OS drivers for each USB class for simplicity.\r
* \section Sec_MigrationXXXXXX Migrating from 100219 to XXXXXX\r
*\r
* \section Sec_Migration100219 Migrating from 091223 to 100219\r
- * <b>Non-USB Library Components</b>\r
- * - The "Byte" suffix on the SPI peripheral driver's send and receive routines has been dropped, to make the interface consistant\r
- * between the AVR8 driver and the new AVR32 driver, which supports variable width transfers.\r
+ * - (None)\r
*\r
* <b>Non-USB Library Components</b>\r
* - Due to some ADC channels not being identical to their ADC MUX selection masks for single-ended conversions on some AVR models,\r
* {\r
* { .Task = MyTask1, .TaskStatus = TASK_RUN, .GroupID = 1 },\r
* { .Task = MyTask2, .TaskStatus = TASK_RUN, .GroupID = 1 },\r
- * };\r
+ * }\r
*\r
* int main(void)\r
* {\r
#define __SCHEDULER_H__\r
\r
/* Includes: */\r
- #if defined(__AVR32__)\r
- #include <avr32/io.h>\r
- #include <stdbool.h>\r
- #elif defined(__AVR__)\r
#include <avr/io.h>\r
- #include <util/atomic.h>\r
#include <stdbool.h>\r
- #endif\r
+ \r
+ #include <util/atomic.h>\r
\r
- #include "../Common/Common.h"\r
+ #include "../Common/Common.h"\r
\r
/* Enable C linkage for C++ Compilers: */\r
#if defined(__cplusplus)\r
for (uint8_t RByte = 0; RByte < sizeof(ResponseBytes); RByte++)\r
{\r
ISPProtocol_DelayMS(Enter_ISP_Params.ByteDelay);\r
- ResponseBytes[RByte] = SPI_Transfer(Enter_ISP_Params.EnterProgBytes[RByte]);\r
+ ResponseBytes[RByte] = SPI_TransferByte(Enter_ISP_Params.EnterProgBytes[RByte]);\r
}\r
\r
/* Check if polling disabled, or if the polled value matches the expected value */\r
bool IsOddByte = (CurrentByte & 0x01);\r
uint8_t ByteToWrite = *(NextWriteByte++);\r
\r
- SPI_Send(Write_Memory_Params.ProgrammingCommands[0]);\r
- SPI_Send(CurrentAddress >> 8);\r
- SPI_Send(CurrentAddress & 0xFF);\r
- SPI_Send(ByteToWrite);\r
+ SPI_SendByte(Write_Memory_Params.ProgrammingCommands[0]);\r
+ SPI_SendByte(CurrentAddress >> 8);\r
+ SPI_SendByte(CurrentAddress & 0xFF);\r
+ SPI_SendByte(ByteToWrite);\r
\r
/* AVR FLASH addressing requires us to modify the write command based on if we are writing a high\r
* or low byte at the current word address */\r
/* If the current page must be committed, send the PROGRAM PAGE command to the target */\r
if (Write_Memory_Params.ProgrammingMode & PROG_MODE_COMMIT_PAGE_MASK)\r
{\r
- SPI_Send(Write_Memory_Params.ProgrammingCommands[1]);\r
- SPI_Send(StartAddress >> 8);\r
- SPI_Send(StartAddress & 0xFF);\r
- SPI_Send(0x00);\r
+ SPI_SendByte(Write_Memory_Params.ProgrammingCommands[1]);\r
+ SPI_SendByte(StartAddress >> 8);\r
+ SPI_SendByte(StartAddress & 0xFF);\r
+ SPI_SendByte(0x00);\r
\r
/* Check if polling is possible, if not switch to timed delay mode */\r
if (!(PollAddress))\r
bool IsOddByte = (CurrentByte & 0x01);\r
uint8_t ByteToWrite = *(NextWriteByte++);\r
\r
- SPI_Send(Write_Memory_Params.ProgrammingCommands[0]);\r
- SPI_Send(CurrentAddress >> 8);\r
- SPI_Send(CurrentAddress & 0xFF);\r
- SPI_Send(ByteToWrite);\r
+ SPI_SendByte(Write_Memory_Params.ProgrammingCommands[0]);\r
+ SPI_SendByte(CurrentAddress >> 8);\r
+ SPI_SendByte(CurrentAddress & 0xFF);\r
+ SPI_SendByte(ByteToWrite);\r
\r
/* AVR FLASH addressing requires us to modify the write command based on if we are writing a high\r
* or low byte at the current word address */\r
for (uint16_t CurrentByte = 0; CurrentByte < Read_Memory_Params.BytesToRead; CurrentByte++)\r
{\r
/* Read the next byte from the desired memory space in the device */\r
- SPI_Send(Read_Memory_Params.ReadMemoryCommand);\r
- SPI_Send(CurrentAddress >> 8);\r
- SPI_Send(CurrentAddress & 0xFF);\r
- Endpoint_Write_Byte(SPI_Receive());\r
+ SPI_SendByte(Read_Memory_Params.ReadMemoryCommand);\r
+ SPI_SendByte(CurrentAddress >> 8);\r
+ SPI_SendByte(CurrentAddress & 0xFF);\r
+ Endpoint_Write_Byte(SPI_ReceiveByte());\r
\r
/* Check if the endpoint bank is currently full, if so send the packet */\r
if (!(Endpoint_IsReadWriteAllowed()))\r
\r
/* Send the chip erase commands as given by the host to the device */\r
for (uint8_t SByte = 0; SByte < sizeof(Erase_Chip_Params.EraseCommandBytes); SByte++)\r
- SPI_Send(Erase_Chip_Params.EraseCommandBytes[SByte]);\r
+ SPI_SendByte(Erase_Chip_Params.EraseCommandBytes[SByte]);\r
\r
/* Use appropriate command completion check as given by the host (delay or busy polling) */\r
if (!(Erase_Chip_Params.PollMethod))\r
\r
/* Send the Fuse or Lock byte read commands as given by the host to the device, store response */\r
for (uint8_t RByte = 0; RByte < sizeof(ResponseBytes); RByte++)\r
- ResponseBytes[RByte] = SPI_Transfer(Read_FuseLockSigOSCCAL_Params.ReadCommandBytes[RByte]);\r
+ ResponseBytes[RByte] = SPI_TransferByte(Read_FuseLockSigOSCCAL_Params.ReadCommandBytes[RByte]);\r
\r
Endpoint_Write_Byte(V2Command);\r
Endpoint_Write_Byte(STATUS_CMD_OK);\r
\r
/* Send the Fuse or Lock byte program commands as given by the host to the device */\r
for (uint8_t SByte = 0; SByte < sizeof(Write_FuseLockSig_Params.WriteCommandBytes); SByte++)\r
- SPI_Send(Write_FuseLockSig_Params.WriteCommandBytes[SByte]);\r
+ SPI_SendByte(Write_FuseLockSig_Params.WriteCommandBytes[SByte]);\r
\r
Endpoint_Write_Byte(V2Command);\r
Endpoint_Write_Byte(STATUS_CMD_OK);\r
while (CurrTxPos < SPI_Multi_Params.RxStartAddr)\r
{\r
if (CurrTxPos < SPI_Multi_Params.TxBytes)\r
- SPI_Send(SPI_Multi_Params.TxData[CurrTxPos]);\r
+ SPI_SendByte(SPI_Multi_Params.TxData[CurrTxPos]);\r
else\r
- SPI_Send(0);\r
+ SPI_SendByte(0);\r
\r
CurrTxPos++;\r
}\r
while (CurrRxPos < SPI_Multi_Params.RxBytes)\r
{\r
if (CurrTxPos < SPI_Multi_Params.TxBytes)\r
- Endpoint_Write_Byte(SPI_Transfer(SPI_Multi_Params.TxData[CurrTxPos++]));\r
+ Endpoint_Write_Byte(SPI_TransferByte(SPI_Multi_Params.TxData[CurrTxPos++]));\r
else\r
- Endpoint_Write_Byte(SPI_Receive());\r
+ Endpoint_Write_Byte(SPI_ReceiveByte());\r
\r
/* Check to see if we have filled the endpoint bank and need to send the packet */\r
if (!(Endpoint_IsReadWriteAllowed()))\r
TimeoutMSRemaining--;\r
}\r
\r
- SPI_Send(ReadMemCommand);\r
- SPI_Send(PollAddress >> 8);\r
- SPI_Send(PollAddress & 0xFF);\r
+ SPI_SendByte(ReadMemCommand);\r
+ SPI_SendByte(PollAddress >> 8);\r
+ SPI_SendByte(PollAddress & 0xFF);\r
}\r
- while ((SPI_Transfer(0x00) == PollValue) && TimeoutMSRemaining);\r
+ while ((SPI_TransferByte(0x00) == PollValue) && TimeoutMSRemaining);\r
\r
if (!(TimeoutMSRemaining))\r
ProgrammingStatus = STATUS_CMD_TOUT;\r
TimeoutMSRemaining--;\r
} \r
\r
- SPI_Send(0xF0);\r
- SPI_Send(0x00);\r
- SPI_Send(0x00);\r
+ SPI_SendByte(0xF0);\r
+ SPI_SendByte(0x00);\r
+ SPI_SendByte(0x00);\r
}\r
- while ((SPI_Receive() & 0x01) && TimeoutMSRemaining);\r
+ while ((SPI_ReceiveByte() & 0x01) && TimeoutMSRemaining);\r
\r
if (TimeoutMSRemaining)\r
{\r
*/\r
void ISPTarget_LoadExtendedAddress(void)\r
{\r
- SPI_Send(LOAD_EXTENDED_ADDRESS_CMD);\r
- SPI_Send(0x00);\r
- SPI_Send((CurrentAddress & 0x00FF0000) >> 16);\r
- SPI_Send(0x00); \r
+ SPI_SendByte(LOAD_EXTENDED_ADDRESS_CMD);\r
+ SPI_SendByte(0x00);\r
+ SPI_SendByte((CurrentAddress & 0x00FF0000) >> 16);\r
+ SPI_SendByte(0x00); \r
}\r
\r
#endif\r
# Target board (see library "Board Types" documentation, NONE for projects not requiring\r
# LUFA board drivers). If USER is selected, put custom board drivers in a directory called \r
# "Board" inside the application directory.\r
-BOARD = USBKEY\r
+BOARD = XPLAIN\r
\r
\r
# Processor frequency.\r