204 lines
		
	
	
		
			7.3 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			204 lines
		
	
	
		
			7.3 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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 * The MIT License (MIT)
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 *
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 * Copyright (c) 2018, hathach (tinyusb.org)
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 * Copyright (c) 2020, Koji Kitayama
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 *
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 * Permission is hereby granted, free of charge, to any person obtaining a copy
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 * of this software and associated documentation files (the "Software"), to deal
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 * in the Software without restriction, including without limitation the rights
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 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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 * copies of the Software, and to permit persons to whom the Software is
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 * furnished to do so, subject to the following conditions:
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 *
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 * The above copyright notice and this permission notice shall be included in
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 * all copies or substantial portions of the Software.
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 *
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 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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 * THE SOFTWARE.
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 *
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 * This file is part of the TinyUSB stack.
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 */
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#include "../board.h"
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#include "board.h"
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#include "fsl_smc.h"
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#include "fsl_gpio.h"
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#include "fsl_port.h"
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#include "fsl_clock.h"
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#include "fsl_lpuart.h"
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/*******************************************************************************
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 * Definitions
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 ******************************************************************************/
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#define SIM_OSC32KSEL_LPO_CLK         3U        /*!< OSC32KSEL select: LPO clock */
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#define SOPT5_LPUART1RXSRC_LPUART_RX  0x00u     /*!<@brief LPUART1 Receive Data Source Select: LPUART_RX pin */
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#define SOPT5_LPUART1TXSRC_LPUART_TX  0x00u     /*!<@brief LPUART1 Transmit Data Source Select: LPUART_TX pin */
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#define BOARD_BOOTCLOCKRUN_CORE_CLOCK 48000000U /*!< Core clock frequency: 48000000Hz */
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/*******************************************************************************
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 * Variables
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 ******************************************************************************/
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/* System clock frequency. */
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// extern uint32_t SystemCoreClock;
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/*******************************************************************************
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 * Variables for BOARD_BootClockRUN configuration
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 ******************************************************************************/
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const mcglite_config_t mcgliteConfig_BOARD_BootClockRUN = {
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    .outSrc          = kMCGLITE_ClkSrcHirc,  /* MCGOUTCLK source is HIRC */
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    .irclkEnableMode = kMCGLITE_IrclkEnable, /* MCGIRCLK enabled, MCGIRCLK disabled in STOP mode */
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    .ircs            = kMCGLITE_Lirc8M,      /* Slow internal reference (LIRC) 8 MHz clock selected */
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    .fcrdiv          = kMCGLITE_LircDivBy1,  /* Low-frequency Internal Reference Clock Divider: divided by 1 */
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    .lircDiv2        = kMCGLITE_LircDivBy1,  /* Second Low-frequency Internal Reference Clock Divider: divided by 1 */
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    .hircEnableInNotHircMode = true,         /* HIRC source is enabled */
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};
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const sim_clock_config_t simConfig_BOARD_BootClockRUN = {
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    .er32kSrc = SIM_OSC32KSEL_LPO_CLK,       /* OSC32KSEL select: LPO clock */
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    .clkdiv1  = 0x10000U,                    /* SIM_CLKDIV1 - OUTDIV1: /1, OUTDIV4: /2 */
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};
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/*******************************************************************************
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 * Code for BOARD_BootClockRUN configuration
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 ******************************************************************************/
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void BOARD_BootClockRUN(void)
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{
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    /* Set the system clock dividers in SIM to safe value. */
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    CLOCK_SetSimSafeDivs();
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    /* Set MCG to HIRC mode. */
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    CLOCK_SetMcgliteConfig(&mcgliteConfig_BOARD_BootClockRUN);
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    /* Set the clock configuration in SIM module. */
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    CLOCK_SetSimConfig(&simConfig_BOARD_BootClockRUN);
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    /* Set SystemCoreClock variable. */
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    SystemCoreClock = BOARD_BOOTCLOCKRUN_CORE_CLOCK;
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}
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//--------------------------------------------------------------------+
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// Forward USB interrupt events to TinyUSB IRQ Handler
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//--------------------------------------------------------------------+
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void USB0_IRQHandler(void)
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{
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  tud_int_handler(0);
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}
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void board_init(void)
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{
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  /* Enable port clocks for GPIO pins */
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  CLOCK_EnableClock(kCLOCK_PortA);
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  CLOCK_EnableClock(kCLOCK_PortB);
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  CLOCK_EnableClock(kCLOCK_PortC);
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  CLOCK_EnableClock(kCLOCK_PortD);
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  CLOCK_EnableClock(kCLOCK_PortE);
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  gpio_pin_config_t led_config = { kGPIO_DigitalOutput, 1 };
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  GPIO_PinInit(GPIOA, 1U, &led_config);
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  PORT_SetPinMux(PORTA, 1U, kPORT_MuxAsGpio);
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  led_config.outputLogic = 0;
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  GPIO_PinInit(GPIOA, 2U, &led_config);
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  PORT_SetPinMux(PORTA, 2U, kPORT_MuxAsGpio);
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#ifdef BUTTON_PIN
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  gpio_pin_config_t button_config = { kGPIO_DigitalInput, 0 };
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  GPIO_PinInit(BUTTON_GPIO, BUTTON_PIN, &button_config);
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  const port_pin_config_t BUTTON_CFG = {
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    kPORT_PullUp,
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    kPORT_FastSlewRate,
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    kPORT_PassiveFilterDisable,
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    kPORT_LowDriveStrength,
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    kPORT_MuxAsGpio
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  };
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  PORT_SetPinConfig(BUTTON_PORT, BUTTON_PIN, &BUTTON_CFG);
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#endif
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  /* PORTC3 is configured as LPUART0_RX */
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  PORT_SetPinMux(PORTC, 3U, kPORT_MuxAlt3);
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  /* PORTA2 (pin 24) is configured as LPUART0_TX */
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  PORT_SetPinMux(PORTE, 0U, kPORT_MuxAlt3);
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  SIM->SOPT5 = ((SIM->SOPT5 &
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               /* Mask bits to zero which are setting */
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               (~(SIM_SOPT5_LPUART1TXSRC_MASK | SIM_SOPT5_LPUART1RXSRC_MASK)))
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               /* LPUART0 Transmit Data Source Select: LPUART0_TX pin. */
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               | SIM_SOPT5_LPUART1TXSRC(SOPT5_LPUART1TXSRC_LPUART_TX)
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               /* LPUART0 Receive Data Source Select: LPUART_RX pin. */
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               | SIM_SOPT5_LPUART1RXSRC(SOPT5_LPUART1RXSRC_LPUART_RX));
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  BOARD_BootClockRUN();
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  SystemCoreClockUpdate();
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  CLOCK_SetLpuart1Clock(1);
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#if CFG_TUSB_OS == OPT_OS_NONE
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  // 1ms tick timer
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  SysTick_Config(SystemCoreClock / 1000);
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#elif CFG_TUSB_OS == OPT_OS_FREERTOS
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  // If freeRTOS is used, IRQ priority is limit by max syscall ( smaller is higher )
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  NVIC_SetPriority(USB0_IRQn, configLIBRARY_MAX_SYSCALL_INTERRUPT_PRIORITY );
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#endif
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  lpuart_config_t uart_config;
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  LPUART_GetDefaultConfig(&uart_config);
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  uart_config.baudRate_Bps = CFG_BOARD_UART_BAUDRATE;
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  uart_config.enableTx = true;
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  uart_config.enableRx = true;
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  LPUART_Init(UART_PORT, &uart_config, CLOCK_GetFreq(kCLOCK_McgIrc48MClk));
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  // USB
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  CLOCK_EnableUsbfs0Clock(kCLOCK_UsbSrcIrc48M, 48000000U);
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}
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//--------------------------------------------------------------------+
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// Board porting API
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//--------------------------------------------------------------------+
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void board_led_write(bool state)
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{
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  if (state) {
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    LED_GPIO->PDDR |= GPIO_FIT_REG((1UL << LED_PIN));
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  } else {
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    LED_GPIO->PDDR &= GPIO_FIT_REG(~(1UL << LED_PIN));
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  }
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//  GPIO_PinWrite(GPIOA, 1, state ? LED_STATE_ON : (1-LED_STATE_ON) );
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//  GPIO_PinWrite(GPIOA, 2, state ? (1-LED_STATE_ON) : LED_STATE_ON );
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}
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uint32_t board_button_read(void)
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{
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#ifdef BUTTON_PIN
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  return BUTTON_STATE_ACTIVE == GPIO_PinRead(BUTTON_GPIO, BUTTON_PIN);
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#else
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  return 0;
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#endif
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}
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int board_uart_read(uint8_t* buf, int len)
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{
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  LPUART_ReadBlocking(UART_PORT, buf, len);
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  return len;
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}
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int board_uart_write(void const * buf, int len)
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{
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  LPUART_WriteBlocking(UART_PORT, (uint8_t const*) buf, len);
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  return len;
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}
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#if CFG_TUSB_OS == OPT_OS_NONE
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volatile uint32_t system_ticks = 0;
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void SysTick_Handler(void)
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{
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  system_ticks++;
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}
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uint32_t board_millis(void)
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{
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  return system_ticks;
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}
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#endif
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