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jeremybenn |
/*This file is prepared for Doxygen automatic documentation generation.*/
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/*! \file *********************************************************************
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*
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* \brief AT32UC3A EVK1100 board header file.
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*
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* This file contains definitions and services related to the features of the
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* EVK1100 board.
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*
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* - Compiler: IAR EWAVR32 and GNU GCC for AVR32
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* - Supported devices: All AVR32 AT32UC3A devices can be used.
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* - AppNote:
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*
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* \author Atmel Corporation: http://www.atmel.com \n
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* Support and FAQ: http://support.atmel.no/
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*
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******************************************************************************/
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/* Copyright (c) 2007, Atmel Corporation All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are met:
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*
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* 1. Redistributions of source code must retain the above copyright notice,
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* this list of conditions and the following disclaimer.
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*
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* 2. Redistributions in binary form must reproduce the above copyright notice,
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* this list of conditions and the following disclaimer in the documentation
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* and/or other materials provided with the distribution.
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*
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* 3. The name of ATMEL may not be used to endorse or promote products derived
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* from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY ATMEL ``AS IS'' AND ANY EXPRESS OR IMPLIED
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* WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE EXPRESSLY AND
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* SPECIFICALLY DISCLAIMED. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT,
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* INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
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* (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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* LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
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* ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#ifndef _EVK1100_H_
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#define _EVK1100_H_
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#include "compiler.h"
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#ifdef __AVR32_ABI_COMPILER__ // Automatically defined when compiling for AVR32, not when assembling.
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# include "led.h"
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#endif // __AVR32_ABI_COMPILER__
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/*! \name Oscillator Definitions
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*/
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//! @{
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// RCOsc has no custom calibration by default. Set the following definition to
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// the appropriate value if a custom RCOsc calibration has been applied to your
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// part.
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//#define FRCOSC 115200 //!< RCOsc frequency: Hz.
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#define FOSC32 32768 //!< Osc32 frequency: Hz.
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#define OSC32_STARTUP 3 //!< Osc32 startup time: RCOsc periods.
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#define FOSC0 12000000 //!< Osc0 frequency: Hz.
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#define OSC0_STARTUP 3 //!< Osc0 startup time: RCOsc periods.
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// Osc1 crystal is not mounted by default. Set the following definitions to the
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// appropriate values if a custom Osc1 crystal is mounted on your board.
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//#define FOSC1 12000000 //!< Osc1 frequency: Hz.
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//#define OSC1_STARTUP 3 //!< Osc1 startup time: RCOsc periods.
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//! @}
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/*! \name SDRAM Definitions
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*/
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//! @{
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//! Part header file of used SDRAM(s).
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#define SDRAM_PART_HDR "MT48LC16M16A2TG7E/mt48lc16m16a2tg7e.h"
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//! Data bus width to use the SDRAM(s) with (16 or 32 bits; always 16 bits on
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//! UC3).
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#define SDRAM_DBW 16
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//! @}
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/*! \name USB Definitions
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*/
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//! @{
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//! Multiplexed pin used for USB_ID: AVR32_USBB_USB_ID_x_x.
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//! To be selected according to the AVR32_USBB_USB_ID_x_x_PIN and
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//! AVR32_USBB_USB_ID_x_x_FUNCTION definitions from <avr32/uc3axxxx.h>.
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#define USB_ID AVR32_USBB_USB_ID_0_0
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//! Multiplexed pin used for USB_VBOF: AVR32_USBB_USB_VBOF_x_x.
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//! To be selected according to the AVR32_USBB_USB_VBOF_x_x_PIN and
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//! AVR32_USBB_USB_VBOF_x_x_FUNCTION definitions from <avr32/uc3axxxx.h>.
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#ifdef EVK1100_REVA
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# define USB_VBOF AVR32_USBB_USB_VBOF_0_0
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#else
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# define USB_VBOF AVR32_USBB_USB_VBOF_0_1
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#endif
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//! Active level of the USB_VBOF output pin.
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#ifdef EVK1100_REVA
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# define USB_VBOF_ACTIVE_LEVEL HIGH
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#else
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# define USB_VBOF_ACTIVE_LEVEL LOW
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#endif
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//! USB overcurrent detection pin.
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#ifdef EVK1100_REVA
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# define USB_OVERCURRENT_DETECT_PIN AVR32_PIN_PB18
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#else
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# define USB_OVERCURRENT_DETECT_PIN AVR32_PIN_PX33
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#endif
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//! @}
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//! GPIO connection of the MAC PHY PWR_DOWN/INT signal.
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#ifdef EVK1100_REVA
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# define MACB_INTERRUPT_PIN AVR32_PIN_PX12
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#else
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# define MACB_INTERRUPT_PIN AVR32_PIN_PA24
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#endif
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//! Number of LEDs.
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#define LED_COUNT 8
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/*! \name GPIO Connections of LEDs
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*/
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//! @{
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#ifdef EVK1100_REVA
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# define LED0_GPIO AVR32_PIN_PX13
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# define LED1_GPIO AVR32_PIN_PX14
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# define LED2_GPIO AVR32_PIN_PX15
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# define LED3_GPIO AVR32_PIN_PX16
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# define LED4_GPIO AVR32_PIN_PB19
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# define LED5_GPIO AVR32_PIN_PB20
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# define LED6_GPIO AVR32_PIN_PB21
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# define LED7_GPIO AVR32_PIN_PB22
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#else
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# define LED0_GPIO AVR32_PIN_PB27
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# define LED1_GPIO AVR32_PIN_PB28
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# define LED2_GPIO AVR32_PIN_PB29
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# define LED3_GPIO AVR32_PIN_PB30
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# define LED4_GPIO AVR32_PIN_PB19
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# define LED5_GPIO AVR32_PIN_PB20
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# define LED6_GPIO AVR32_PIN_PB21
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# define LED7_GPIO AVR32_PIN_PB22
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#endif
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//! @}
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/*! \name PWM Channels of LEDs
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*/
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//! @{
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#define LED0_PWM (-1)
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#define LED1_PWM (-1)
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#define LED2_PWM (-1)
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#define LED3_PWM (-1)
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#define LED4_PWM 0
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#define LED5_PWM 1
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#define LED6_PWM 2
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#define LED7_PWM 3
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//! @}
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/*! \name PWM Functions of LEDs
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*/
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//! @{
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#define LED0_PWM_FUNCTION (-1)
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#define LED1_PWM_FUNCTION (-1)
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#define LED2_PWM_FUNCTION (-1)
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#define LED3_PWM_FUNCTION (-1)
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#define LED4_PWM_FUNCTION AVR32_PWM_PWM_0_FUNCTION
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#define LED5_PWM_FUNCTION AVR32_PWM_PWM_1_FUNCTION
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#define LED6_PWM_FUNCTION AVR32_PWM_PWM_2_FUNCTION
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#define LED7_PWM_FUNCTION AVR32_PWM_PWM_3_FUNCTION
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//! @}
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/*! \name Color Identifiers of LEDs to Use with LED Functions
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*/
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//! @{
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#ifdef EVK1100_REVA
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# define LED_MONO0_GREEN LED4
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# define LED_MONO1_GREEN LED5
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# define LED_MONO2_GREEN LED6
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# define LED_MONO3_GREEN LED7
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# define LED_BI0_GREEN LED1
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# define LED_BI0_RED LED0
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# define LED_BI1_GREEN LED3
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# define LED_BI1_RED LED2
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#else
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# define LED_MONO0_GREEN LED0
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# define LED_MONO1_GREEN LED1
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# define LED_MONO2_GREEN LED2
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# define LED_MONO3_GREEN LED3
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# define LED_BI0_GREEN LED5
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# define LED_BI0_RED LED4
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# define LED_BI1_GREEN LED7
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# define LED_BI1_RED LED6
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#endif
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//! @}
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/*! \name GPIO Connections of Push Buttons
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*/
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//! @{
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#ifdef EVK1100_REVA
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# define GPIO_PUSH_BUTTON_0 AVR32_PIN_PB28
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# define GPIO_PUSH_BUTTON_1 AVR32_PIN_PB29
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# define GPIO_PUSH_BUTTON_2 AVR32_PIN_PB27
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#else
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# define GPIO_PUSH_BUTTON_0 AVR32_PIN_PX16
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# define GPIO_PUSH_BUTTON_1 AVR32_PIN_PX19
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# define GPIO_PUSH_BUTTON_2 AVR32_PIN_PX22
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#endif
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//! @}
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/*! \name GPIO Connections of the Joystick
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*/
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//! @{
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#define GPIO_JOYSTICK_PUSH AVR32_PIN_PA20
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#define GPIO_JOYSTICK_LEFT AVR32_PIN_PA25
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#define GPIO_JOYSTICK_RIGHT AVR32_PIN_PA28
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#define GPIO_JOYSTICK_UP AVR32_PIN_PA26
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#define GPIO_JOYSTICK_DOWN AVR32_PIN_PA27
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//! @}
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/*! \name ADC Connection of the Potentiometer
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*/
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//! @{
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#define ADC_POTENTIOMETER_CHANNEL 1
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#define ADC_POTENTIOMETER_PIN AVR32_ADC_AD_1_PIN
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#define ADC_POTENTIOMETER_FUNCTION AVR32_ADC_AD_1_FUNCTION
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//! @}
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/*! \name ADC Connection of the Temperature Sensor
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*/
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//! @{
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#define ADC_TEMPERATURE_CHANNEL 0
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#define ADC_TEMPERATURE_PIN AVR32_ADC_AD_0_PIN
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#define ADC_TEMPERATURE_FUNCTION AVR32_ADC_AD_0_FUNCTION
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//! @}
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/*! \name ADC Connection of the Light Sensor
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*/
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//! @{
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#define ADC_LIGHT_CHANNEL 2
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#define ADC_LIGHT_PIN AVR32_ADC_AD_2_PIN
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#define ADC_LIGHT_FUNCTION AVR32_ADC_AD_2_FUNCTION
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//! @}
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| 267 |
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/*! \name SPI Connections of the DIP204 LCD
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*/
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//! @{
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| 270 |
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#define DIP204_SPI (&AVR32_SPI1)
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#define DIP204_SPI_CS 2
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#define DIP204_SPI_SCK_PIN AVR32_SPI1_SCK_0_PIN
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#define DIP204_SPI_SCK_FUNCTION AVR32_SPI1_SCK_0_FUNCTION
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#define DIP204_SPI_MISO_PIN AVR32_SPI1_MISO_0_PIN
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#define DIP204_SPI_MISO_FUNCTION AVR32_SPI1_MISO_0_FUNCTION
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#define DIP204_SPI_MOSI_PIN AVR32_SPI1_MOSI_0_PIN
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#define DIP204_SPI_MOSI_FUNCTION AVR32_SPI1_MOSI_0_FUNCTION
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| 278 |
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#define DIP204_SPI_NPCS_PIN AVR32_SPI1_NPCS_2_PIN
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| 279 |
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#define DIP204_SPI_NPCS_FUNCTION AVR32_SPI1_NPCS_2_FUNCTION
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| 280 |
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//! @}
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| 281 |
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| 282 |
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/*! \name GPIO and PWM Connections of the DIP204 LCD Backlight
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| 283 |
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*/
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| 284 |
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//! @{
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| 285 |
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#define DIP204_BACKLIGHT_PIN AVR32_PIN_PB18
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| 286 |
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#define DIP204_PWM_CHANNEL 6
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| 287 |
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#define DIP204_PWM_PIN AVR32_PWM_PWM_6_PIN
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| 288 |
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#define DIP204_PWM_FUNCTION AVR32_PWM_PWM_6_FUNCTION
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| 289 |
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//! @}
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| 290 |
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| 291 |
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| 292 |
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/*! \name SPI Connections of the AT45DBX Data Flash Memory
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| 293 |
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*/
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| 294 |
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//! @{
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| 295 |
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#define AT45DBX_SPI (&AVR32_SPI1)
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| 296 |
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#define AT45DBX_SPI_SCK_PIN AVR32_SPI1_SCK_0_PIN
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| 297 |
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#define AT45DBX_SPI_SCK_FUNCTION AVR32_SPI1_SCK_0_FUNCTION
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| 298 |
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#define AT45DBX_SPI_MISO_PIN AVR32_SPI1_MISO_0_PIN
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| 299 |
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#define AT45DBX_SPI_MISO_FUNCTION AVR32_SPI1_MISO_0_FUNCTION
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| 300 |
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#define AT45DBX_SPI_MOSI_PIN AVR32_SPI1_MOSI_0_PIN
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| 301 |
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#define AT45DBX_SPI_MOSI_FUNCTION AVR32_SPI1_MOSI_0_FUNCTION
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| 302 |
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#define AT45DBX_SPI_NPCS0_PIN AVR32_SPI1_NPCS_0_PIN
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| 303 |
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#define AT45DBX_SPI_NPCS0_FUNCTION AVR32_SPI1_NPCS_0_FUNCTION
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| 304 |
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//! @}
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| 306 |
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| 307 |
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/*! \name GPIO and SPI Connections of the SD/MMC Connector
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| 308 |
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*/
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| 309 |
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//! @{
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| 310 |
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#define SD_MMC_CARD_DETECT_PIN AVR32_PIN_PA02
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| 311 |
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#define SD_MMC_WRITE_PROTECT_PIN AVR32_PIN_PA07
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| 312 |
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#define SD_MMC_SPI (&AVR32_SPI1)
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| 313 |
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#define SD_MMC_SPI_CS 1
|
| 314 |
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#define SD_MMC_SPI_SCK_PIN AVR32_SPI1_SCK_0_PIN
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| 315 |
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#define SD_MMC_SPI_SCK_FUNCTION AVR32_SPI1_SCK_0_FUNCTION
|
| 316 |
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#define SD_MMC_SPI_MISO_PIN AVR32_SPI1_MISO_0_PIN
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#define SD_MMC_SPI_MISO_FUNCTION AVR32_SPI1_MISO_0_FUNCTION
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#define SD_MMC_SPI_MOSI_PIN AVR32_SPI1_MOSI_0_PIN
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#define SD_MMC_SPI_MOSI_FUNCTION AVR32_SPI1_MOSI_0_FUNCTION
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| 320 |
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#define SD_MMC_SPI_NPCS_PIN AVR32_SPI1_NPCS_1_PIN
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#define SD_MMC_SPI_NPCS_FUNCTION AVR32_SPI1_NPCS_1_FUNCTION
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| 322 |
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//! @}
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| 323 |
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| 324 |
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| 325 |
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#endif // _EVK1100_H_
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