2019-08-19 17:16:08 +02:00
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/****************************************************************************
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* boards/arm/stm32/olimex-stm32-h405/include/board.h
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2014-06-03 18:34:36 +02:00
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*
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2016-06-03 19:38:59 +02:00
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* Copyright (C) 2014, 2016 Gregory Nutt. All rights reserved.
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2014-06-03 18:34:36 +02:00
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* Author: Gregory Nutt <gnutt@nuttx.org>
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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
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* are met:
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*
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in
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* the documentation and/or other materials provided with the
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* distribution.
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* 3. Neither the name NuttX nor the names of its contributors may be
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* used to endorse or promote products derived from this software
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* without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
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* FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
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* COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
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* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
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* BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
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* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
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* AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
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* ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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* POSSIBILITY OF SUCH DAMAGE.
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*
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2019-08-19 17:16:08 +02:00
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****************************************************************************/
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2014-06-03 18:34:36 +02:00
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2019-08-19 17:16:08 +02:00
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#ifndef __BOARDS_ARM_STM32_OLIMEX_STM32_H405_INCLUDE_BOARD_H
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2020-01-31 19:07:39 +01:00
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#define __BOARDS_ARM_STM32_OLIMEX_STM32_H405_INCLUDE_BOARD_H
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2014-06-03 18:34:36 +02:00
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2019-08-19 17:16:08 +02:00
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/****************************************************************************
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2014-06-03 18:34:36 +02:00
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* Included Files
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2019-08-19 17:16:08 +02:00
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****************************************************************************/
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2014-06-03 18:34:36 +02:00
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#include <nuttx/config.h>
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#ifndef __ASSEMBLY__
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# include <stdint.h>
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#endif
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#include "stm32_rcc.h"
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#include "stm32.h"
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2019-08-19 17:16:08 +02:00
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/****************************************************************************
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2014-06-03 18:34:36 +02:00
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* Pre-processor Definitions
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2019-08-19 17:16:08 +02:00
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****************************************************************************/
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2014-06-03 18:34:36 +02:00
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/* Clocking *************************************************************************/
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/* HSI - 16 MHz RC factory-trimmed
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* LSI - 32 KHz RC (30-60KHz, uncalibrated)
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* HSE - On-board crystal frequency is 8MHz
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* LSE - 32.768 kHz
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*/
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#define STM32_BOARD_XTAL 8000000ul
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#define STM32_HSI_FREQUENCY 16000000ul
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#define STM32_LSI_FREQUENCY 32000
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#define STM32_HSE_FREQUENCY STM32_BOARD_XTAL
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#define STM32_LSE_FREQUENCY 32768
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/* Main PLL Configuration.
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*
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* PLL source is HSE
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* PLL_VCO = (STM32_HSE_FREQUENCY / PLLM) * PLLN
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* = (25,000,000 / 12) * 360
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* = 240,000,000
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* SYSCLK = PLL_VCO / PLLP
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* = 240,000,000 / 2 = 120,000,000
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* USB OTG FS, SDIO and RNG Clock
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* = PLL_VCO / PLLQ
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* = 240,000,000 / 5 = 48,000,000
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* = 48,000,000
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*/
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#define STM32_PLLCFG_PLLM RCC_PLLCFG_PLLM(12)
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#define STM32_PLLCFG_PLLN RCC_PLLCFG_PLLN(360)
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#define STM32_PLLCFG_PLLP RCC_PLLCFG_PLLP_2
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#define STM32_PLLCFG_PLLQ RCC_PLLCFG_PLLQ(5)
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#define STM32_SYSCLK_FREQUENCY 120000000ul
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/* AHB clock (HCLK) is SYSCLK (120MHz) */
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#define STM32_RCC_CFGR_HPRE RCC_CFGR_HPRE_SYSCLK /* HCLK = SYSCLK / 1 */
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#define STM32_HCLK_FREQUENCY STM32_SYSCLK_FREQUENCY
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#define STM32_BOARD_HCLK STM32_HCLK_FREQUENCY /* same as above, to satisfy compiler */
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/* APB1 clock (PCLK1) is HCLK/4 (30MHz) */
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#define STM32_RCC_CFGR_PPRE1 RCC_CFGR_PPRE1_HCLKd4 /* PCLK1 = HCLK / 4 */
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#define STM32_PCLK1_FREQUENCY (STM32_HCLK_FREQUENCY/4)
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/* Timers driven from APB1 will be twice PCLK1 (60Mhz)*/
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#define STM32_APB1_TIM2_CLKIN (2*STM32_PCLK1_FREQUENCY)
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#define STM32_APB1_TIM3_CLKIN (2*STM32_PCLK1_FREQUENCY)
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#define STM32_APB1_TIM4_CLKIN (2*STM32_PCLK1_FREQUENCY)
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#define STM32_APB1_TIM5_CLKIN (2*STM32_PCLK1_FREQUENCY)
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#define STM32_APB1_TIM6_CLKIN (2*STM32_PCLK1_FREQUENCY)
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#define STM32_APB1_TIM7_CLKIN (2*STM32_PCLK1_FREQUENCY)
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#define STM32_APB1_TIM12_CLKIN (2*STM32_PCLK1_FREQUENCY)
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#define STM32_APB1_TIM13_CLKIN (2*STM32_PCLK1_FREQUENCY)
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#define STM32_APB1_TIM14_CLKIN (2*STM32_PCLK1_FREQUENCY)
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/* APB2 clock (PCLK2) is HCLK/2 (60MHz) */
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#define STM32_RCC_CFGR_PPRE2 RCC_CFGR_PPRE2_HCLKd2 /* PCLK2 = HCLK / 2 */
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#define STM32_PCLK2_FREQUENCY (STM32_HCLK_FREQUENCY/2)
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/* Timers driven from APB2 will be twice PCLK2 (120Mhz)*/
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#define STM32_APB2_TIM1_CLKIN (2*STM32_PCLK2_FREQUENCY)
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#define STM32_APB2_TIM8_CLKIN (2*STM32_PCLK2_FREQUENCY)
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#define STM32_APB2_TIM9_CLKIN (2*STM32_PCLK2_FREQUENCY)
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#define STM32_APB2_TIM10_CLKIN (2*STM32_PCLK2_FREQUENCY)
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#define STM32_APB2_TIM11_CLKIN (2*STM32_PCLK2_FREQUENCY)
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/* Timer Frequencies, if APBx is set to 1, frequency is same to APBx
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* otherwise frequency is 2xAPBx.
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* Note: TIM1,8 are on APB2, others on APB1
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*/
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2016-06-03 19:38:59 +02:00
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#define BOARD_TIM1_FREQUENCY STM32_HCLK_FREQUENCY
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#define BOARD_TIM2_FREQUENCY STM32_HCLK_FREQUENCY
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#define BOARD_TIM3_FREQUENCY STM32_HCLK_FREQUENCY
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#define BOARD_TIM4_FREQUENCY STM32_HCLK_FREQUENCY
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#define BOARD_TIM5_FREQUENCY STM32_HCLK_FREQUENCY
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#define BOARD_TIM6_FREQUENCY STM32_HCLK_FREQUENCY
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#define BOARD_TIM7_FREQUENCY STM32_HCLK_FREQUENCY
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#define BOARD_TIM8_FREQUENCY STM32_HCLK_FREQUENCY
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2014-06-03 18:34:36 +02:00
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/* LED definitions ******************************************************************/
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/* If CONFIG_ARCH_LEDS is not defined, then the user can control the status LED in any
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* way. The following definitions are used to access individual LEDs.
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*/
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2015-11-01 17:53:34 +01:00
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/* LED index values for use with board_userled() */
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2014-06-03 18:34:36 +02:00
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#define BOARD_LED_STATUS 0
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#define BOARD_NLEDS 1
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2015-11-01 17:53:34 +01:00
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/* LED bits for use with board_userled_all() */
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2014-06-03 18:34:36 +02:00
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#define BOARD_LED_STATUS_BIT (1 << BOARD_LED1)
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/* If CONFIG_ARCH_LEDs is defined, then NuttX will control the status LED of the
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* Olimex STM32-H405. The following definitions describe how NuttX controls the LEDs:
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*/
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#define LED_STARTED 0 /* LED_STATUS on */
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#define LED_HEAPALLOCATE 1 /* no change */
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#define LED_IRQSENABLED 2 /* no change */
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#define LED_STACKCREATED 3 /* no change */
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#define LED_INIRQ 4 /* no change */
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#define LED_SIGNAL 5 /* no change */
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#define LED_ASSERTION 6 /* LED_STATUS off */
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#define LED_PANIC 7 /* LED_STATUS blinking */
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/* Button definitions ***************************************************************/
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/* The Olimex STM32-H405 supports one buttons: */
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#define BUTTON_BUT 0
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#define NUM_BUTTONS 1
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#define BUTTON_BUT_BIT (1 << BUTTON_BUT)
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/* Alternate function pin selections ************************************************/
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//USART3:
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#define GPIO_USART3_RX GPIO_USART3_RX_1 //PB11
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#define GPIO_USART3_TX GPIO_USART3_TX_1 //PB10
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#define GPIO_USART3_CTS GPIO_USART3_CTS_1 //PB13
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#define GPIO_USART3_RTS GPIO_USART3_RTS_1 //PB14
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2017-12-17 03:02:03 +01:00
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/* CAN: */
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2014-06-03 18:34:36 +02:00
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#define GPIO_CAN1_RX GPIO_CAN1_RX_2 //PB8
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#define GPIO_CAN1_TX GPIO_CAN1_TX_2 //PB9
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#define GPIO_CAN2_RX GPIO_CAN1_RX_2 //PB5
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#define GPIO_CAN2_TX GPIO_CAN1_TX_2 //PB6
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2019-08-19 17:16:08 +02:00
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#endif /* __BOARDS_ARM_STM32_OLIMEX_STM32_H405_INCLUDE_BOARD_H */
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