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bootloader.h
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bootloader.h
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#ifndef _BOOTY_H
#define _BOOTY_H
#include "boot_user.h"
/** @brief the version of the transmission protocol
*/
#define VERSION_STRING "0.1"
#define TX_BUF_LEN ((MAX_PROG_SIZE * 4) + 0x10)
#define RX_BUF_LEN ((MAX_PROG_SIZE * 4) + 0x10)
/**
* @brief the byte that indicates the start of a frame
*/
#define START_OF_FRAME 0xf7
/**
* @brief the byte that indicates the end of a frame
*/
#define END_OF_FRAME 0x7f
/**
* @brief the escape byte, which indicates that the following byte will be
* XORed with the ESC_XOR byte before being transmitted
*/
#define ESC 0xf6
/**
* @brief the value to use to escape characters
*/
#define ESC_XOR 0x20
/**
* @brief commands available for the bootloader
*/
typedef enum{
/* textual commands */
CMD_READ_PLATFORM = 0x00,
CMD_READ_VERSION = 0x01,
CMD_READ_ROW_LEN = 0x02,
CMD_READ_PAGE_LEN = 0x03,
CMD_READ_PROG_LEN = 0x04,
CMD_READ_MAX_PROG_SIZE = 0x05,
CMD_READ_APP_START_ADDR = 0x06,
CMD_READ_BOOT_START_ADDR = 0x07,
/* erase operations */
CMD_ERASE_PAGE = 0x10,
/* flash read memory operations */
CMD_READ_ADDR = 0x20,
CMD_READ_MAX = 0x21,
/* flash write operations */
CMD_WRITE_ROW = 0x30,
CMD_WRITE_MAX_PROG_SIZE = 0x31,
/* application */
CMD_START_APP = 0x40
}CommCommand;
/**
* @brief initializes the pins
*/
void initPins(void);
/**
* @brief receives data from the UART
*/
void receiveBytes(void);
/**
* @brief processes the rx buffer into commands with parameters from packets
*/
void processReceived(void);
/**
* @brief processes commands
* @param data byte buffer of data that has been stripped of transmission
* protocols
*/
void processCommand(uint8_t* data);
/**
* @brief send the start byte and initialize fletcher checksum accumulator
*/
void txStart(void);
/**
* @brief transmits a single byte, escaping if necessary, along with
* accumulating the fletcher checksum
* @param byte a byte of data to transmit
*/
void txByte(uint8_t byte);
/**
* @brief convenience function for transmitting an array of bytes with the
* associated command
* @param cmd the type of message
* @param bytes an array of bytes to transmit
* @param len the number of bytes to transmit from the array
*/
void txBytes(uint8_t cmd, uint8_t* bytes, uint16_t len);
/**
* @brief convenience function for transmitting an array of bytes with the
* associated command
* @param cmd the type of message
* @param bytes an array of bytes to transmit
* @param len the number of bytes to transmit from the array
*/
void txArray8bit(uint8_t cmd, uint8_t* bytes, uint16_t len);
/**
* @brief convenience function for transmitting an array of 16-bit words
* with the associated command
* @param cmd the type of message
* @param bytes an array of 16-bit words to transmit
* @param len the number of bytes to transmit from the array
*/
void txArray16bit(uint8_t cmd, uint16_t* words, uint16_t len);
/**
* @brief convenience function for transmitting an array of 32-bit words
* with the associated command
* @param cmd the type of message
* @param bytes an array of 32-bit words to transmit
* @param len the number of bytes to transmit from the array
*/
void txArray32bit(uint8_t cmd, uint32_t* words, uint16_t len);
/**
* @brief convenience function for transmitting a string
* @param cmd the type of message
* @param str a pointer to a string buffer to transmit
*/
void txString(uint8_t cmd, char* str);
/**
* @brief appends the checksum, properly escaping the sequence where necessary,
* and sends the end byte
*/
void txEnd(void);
/**
* @brief accumulates a single byte into the running accumulator
* @param byte the byte to accumulate
* @return the current fletcher16 value
*/
uint16_t fletcher16Accum(uint8_t byte);
/**
* @brief calculate the fletcher16 value of an array given the array pointer
* and length
* @param data an 8-bit array pointer
* @param length the length of the array
* @return the fletcher16 value
*/
uint16_t fletcher16(uint8_t* data, uint16_t length);
/**
* @brief starts the application
* @param applicationAddress
*/
void startApp(uint16_t applicationAddress);
#endif