* RFID: pull antenna down when emulating * Rfid: fixed HID emulation by adding zero pulse every 4 bits * Rfid: HID emulation fixed with DSP based FSK oscillator. * Rfid: receive 125KHz clock for emulation timer from antenna and comparator * Rfid: commented unused variable * Firmware: rollback changes in f6. * Add F7 target based on F6. * F7/F6: update cube projects, apply changes to the targets, update linker scripts with correct RAM start values. * FuriHal: RFID init routine. * Scripts: update OTP tool for v11 board Co-authored-by: Aleksandr Kutuzov <alleteam@gmail.com>
		
			
				
	
	
		
			101 lines
		
	
	
		
			3.0 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			101 lines
		
	
	
		
			3.0 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
#include "main.h"
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#include <furi-hal.h>
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#include <furi.h>
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#define SD_DUMMY_BYTE 0xFF
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const uint32_t SpiTimeout = 1000;
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uint8_t SD_IO_WriteByte(uint8_t Data);
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static const FuriHalSpiDevice* sd_spi_dev = &furi_hal_spi_devices[FuriHalSpiDeviceIdSdCardFast];
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/******************************************************************************
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                            BUS OPERATIONS
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 *******************************************************************************/
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/**
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 * @brief  SPI Write byte(s) to device
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 * @param  DataIn: Pointer to data buffer to write
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 * @param  DataOut: Pointer to data buffer for read data
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 * @param  DataLength: number of bytes to write
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 * @retval None
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 */
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static void SPIx_WriteReadData(const uint8_t* DataIn, uint8_t* DataOut, uint16_t DataLength) {
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    furi_check(furi_hal_spi_bus_trx(sd_spi_dev->bus, (uint8_t*)DataIn, DataOut, DataLength, SpiTimeout));
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}
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/**
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 * @brief  SPI Write a byte to device
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 * @param  Value: value to be written
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 * @retval None
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 */
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__attribute__((unused)) static void SPIx_Write(uint8_t Value) {
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    furi_check(furi_hal_spi_bus_tx(sd_spi_dev->bus, (uint8_t*)&Value, 1, SpiTimeout));
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}
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/******************************************************************************
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                            LINK OPERATIONS
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 *******************************************************************************/
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/********************************* LINK SD ************************************/
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/**
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 * @brief  Initialize the SD Card and put it into StandBy State (Ready for
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 *         data transfer).
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 * @retval None
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 */
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void SD_IO_Init(void) {
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    uint8_t counter = 0;
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    /* SD chip select high */
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    hal_gpio_write(sd_spi_dev->chip_select, true);
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    delay_us(10);
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    /* Send dummy byte 0xFF, 10 times with CS high */
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    /* Rise CS and MOSI for 80 clocks cycles */
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    for(counter = 0; counter <= 200; counter++) {
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        /* Send dummy byte 0xFF */
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        SD_IO_WriteByte(SD_DUMMY_BYTE);
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    }
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}
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/**
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 * @brief  Set SD interface Chip Select state
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 * @param  val: 0 (low) or 1 (high) state
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 * @retval None
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 */
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void SD_IO_CSState(uint8_t val) {
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    /* Some SD Cards are prone to fail if CLK-ed too soon after CS transition. Worst case found: 8us */
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    if(val == 1) {
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        delay_us(10); // Exit guard time for some SD cards
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        hal_gpio_write(sd_spi_dev->chip_select, true);
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    } else {
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        hal_gpio_write(sd_spi_dev->chip_select, false);
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        delay_us(10); // Entry guard time for some SD cards
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    }
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}
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/**
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 * @brief  Write byte(s) on the SD
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 * @param  DataIn: Pointer to data buffer to write
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 * @param  DataOut: Pointer to data buffer for read data
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 * @param  DataLength: number of bytes to write
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 * @retval None
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 */
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void SD_IO_WriteReadData(const uint8_t* DataIn, uint8_t* DataOut, uint16_t DataLength) {
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    /* Send the byte */
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    SPIx_WriteReadData(DataIn, DataOut, DataLength);
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}
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/**
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 * @brief  Write a byte on the SD.
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 * @param  Data: byte to send.
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 * @retval Data written
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 */
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uint8_t SD_IO_WriteByte(uint8_t Data) {
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    uint8_t tmp;
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    /* Send the byte */
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    SPIx_WriteReadData(&Data, &tmp, 1);
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    return tmp;
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}
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