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1 69661903 Thomas Schöpping
/************************************************************************************//**
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* \file         main.c
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* \brief        SerialBoot command line demonstration program for OpenBLT.
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* \ingroup      SerialBoot
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* \internal
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*----------------------------------------------------------------------------------------
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*                          C O P Y R I G H T
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*----------------------------------------------------------------------------------------
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*   Copyright (c) 2014  by Feaser    http://www.feaser.com    All rights reserved
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*
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*----------------------------------------------------------------------------------------
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*                            L I C E N S E
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*----------------------------------------------------------------------------------------
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* This file is part of OpenBLT. OpenBLT is free software: you can redistribute it and/or
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* modify it under the terms of the GNU General Public License as published by the Free
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* Software Foundation, either version 3 of the License, or (at your option) any later
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* version.
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*
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* OpenBLT is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY;
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* without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
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* PURPOSE. See the GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License along with OpenBLT.
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* If not, see <http://www.gnu.org/licenses/>.
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*
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* A special exception to the GPL is included to allow you to distribute a combined work
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* that includes OpenBLT without being obliged to provide the source code for any
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* proprietary components. The exception text is included at the bottom of the license
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* file <license.html>.
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*
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* \endinternal
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****************************************************************************************/
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/****************************************************************************************
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* Include files
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****************************************************************************************/
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#include <assert.h>                                   /* assertion module              */
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#include <sb_types.h>                                 /* C types                       */
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#include <stdio.h>                                    /* standard I/O library          */
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#include <string.h>                                   /* string library                */
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#include "xcpmaster.h"                                /* XCP master protocol module    */
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#include "srecord.h"                                  /* S-record file handling        */
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#include "timeutil.h"                                 /* time utility module           */
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#include "stdlib.h"                                   /* ascii to integral conversion  */
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47
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/****************************************************************************************
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* Function prototypes
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****************************************************************************************/
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static void     DisplayProgramInfo(void);
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static void     DisplayProgramUsage(void);
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static void     DisplayProgramInput(void);
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static void     printErrors(void);
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static sb_uint8 ParseCommandLine(sb_int32 argc, sb_char *argv[]);
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static sb_int32 startFlashMode(void);
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static sb_int32 flashProgram(void);
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static sb_int32 startUserProgram(void);
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static sb_int32 originalMainPart(void);
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static sb_int32 openSerialPort(void);
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static sb_int32 openSerialPortConnect(sb_uint8 start);
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static sb_int32 closeSerialPort(void);
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static sb_int32 buildConnection(sb_uint8 start);
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static sb_int32 closeConnection(sb_file *hSrecord);
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static sb_int32 closeConnectionWithReset(sb_file *hSrecord);
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static sb_int32 prepareProgrammingSession(sb_file *hSrecord, tSrecordParseResults *fileParseResults);
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static sb_int32 programCode(sb_file *hSrecord, tSrecordParseResults *fileParseResults, tSrecordLineParseResults *lineParseResults);
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/****************************************************************************************
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* Macro definitions
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****************************************************************************************/
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/** \brief Program return code if all went ok. */
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#define PROG_RESULT_OK    (0)
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/** \brief Program return code if an error occurred. */
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#define PROG_RESULT_ERROR (1)
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/* mode definitions of the program status */
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#define PROGSTATE_ORIGIN           0
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#define PROGSTATE_STARTFLASHMODE   1
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#define PROGSTATE_RESET            2
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#define PROGSTATE_FLASHPROGRAM     3
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#define PROGSTATE_SETFLAGS         4
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/* error definitions */
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#define ERROR_NO                   0
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#define ERROR_FILE                 1
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#define ERROR_DEVICE               2
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#define ERROR_UNKNOWN              255
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/* maximal space for flashing programs */
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#define MAX_COUNT_FLASHING_PROGRAMS 5
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/****************************************************************************************
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* Local data declarations
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****************************************************************************************/
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/** \brief Name of the serial device, such as COM4 or /dev/ttyUSB0. */
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static sb_char serialDeviceName[32];
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/** \brief Id of the bluetooth device, such as 01:23:45:67:89:AB. */
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static sb_char bluetoothID[18];
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/** \brief Serial communication speed in bits per second. */
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static sb_uint32 serialBaudrate;
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/** \brief Name of the S-record file. */
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static sb_char *srecordFileName;
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/* program status */
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static sb_uint8 prog_state = 1;
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/* id of flashing target */
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static sb_uint32 flashingTargetID = 0;
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/* list of program names */
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static sb_char *srecordFileNames[MAX_COUNT_FLASHING_PROGRAMS];
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/* list of target ids */
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static sb_uint32 flashingTargetIDs[MAX_COUNT_FLASHING_PROGRAMS];
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/* list of errors */
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static sb_uint8 errors[MAX_COUNT_FLASHING_PROGRAMS];
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/* last error */
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static sb_uint8 errorDetected = ERROR_NO;
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/* program counter */
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static sb_uint8 countFlashingPrograms = 0;
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/* RTS register value */
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static sb_uint8 registerRTSvalue = 0;
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/* Type of communication is about UART, not Bluetooth */
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static sb_uint8 comIsUart = SB_TRUE;
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/************************************************************************************//**
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** \brief     Program entry point.
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** \param     argc Number of program parameters.
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** \param     argv array to program parameter strings.
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** \return    0 on success, > 0 on error.
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**
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****************************************************************************************/
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sb_int32 main(sb_int32 argc, sb_char *argv[])
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{
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  /* disable buffering for the standard output to make sure printf does not wait until
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   * a newline character is detected before outputting text on the console.
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   */
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  setbuf(stdout, SB_NULL);
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  /* inform user about the program */
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  DisplayProgramInfo();
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  /* start out by making sure program was started with the correct parameters */
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  if (ParseCommandLine(argc, argv) == SB_FALSE)
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  {
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    /* parameters invalid. inform user about how this program works */
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    DisplayProgramUsage();
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    return PROG_RESULT_ERROR;
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  }
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  DisplayProgramInput();
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  if (openSerialPortConnect(0) == PROG_RESULT_ERROR) {
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    return PROG_RESULT_ERROR;
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  }
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  /* initialize errors */
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  sb_uint8 errorIdx;
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  for (errorIdx=0; errorIdx<MAX_COUNT_FLASHING_PROGRAMS; errorIdx++) {
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    errors[errorIdx] = ERROR_NO;
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  }
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  flashingTargetID = 0;
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  if (startFlashMode() == PROG_RESULT_ERROR) {
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    return PROG_RESULT_ERROR;
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  }
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  sb_uint8 flashIdx;
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  for (flashIdx=0; flashIdx<countFlashingPrograms; flashIdx++) {
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    errorDetected = ERROR_NO;
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    flashingTargetID = flashingTargetIDs[flashIdx];
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    srecordFileName = srecordFileNames[flashIdx];
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    printf("\nFlash %i: Flashing %s on device 0x%08X\n\n", flashIdx+1, srecordFileName, flashingTargetID);
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    if (flashProgram() == PROG_RESULT_ERROR) {
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      closeSerialPort();
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      openSerialPortConnect(0);
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    }
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    errors[flashIdx] = errorDetected;
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  }
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  flashingTargetID = 0;
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  if (startUserProgram() == PROG_RESULT_ERROR) {
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    return PROG_RESULT_ERROR;
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  }
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  printErrors();
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  return PROG_RESULT_OK;
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} /*** end of main ***/
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/************************************************************************************//**
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** \brief     Outputs information to the user about this program.
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** \return    none.
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**
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****************************************************************************************/
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static void DisplayProgramInfo(void)
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{
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  printf("---------------------------------------------------------------------------\n");
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  printf("SerialBoot version 1.00. Performs firmware updates via the serial port     \n");
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  printf("for a microcontroller based system that runs the OpenBLT bootloader.       \n");
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  printf("                                                                           \n");
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  printf("Copyright (c) by Feaser  http://www.feaser.com                             \n");
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  printf("---------------------------------------------------------------------------\n");
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  printf("This tool was modified for the 'Autonomous Mini Robot' - AMiRo.            \n");
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  printf("Copyright (c) 2016..2018  Marvin Barther, Thomas Schoepping, and Stefan    \n");
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  printf("                          Herbrechtsmeier                                  \n");
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  printf("This is free software; see the source for copying conditions. There is NO  \n");
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  printf("warranty; not even for MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.\n");
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  printf("The development of this software was supported by the Excellence Cluster   \n");
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  printf("EXC 227 Cognitive Interaction Technology. The Excellence Cluster EXC 227 is\n");
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  printf("a grant of the Deutsche Forschungsgemeinschaft (DFG) in the context of the \n");
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  printf("German Excellence Initiative.                                              \n");
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  printf("---------------------------------------------------------------------------\n");
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} /*** end of DisplayProgramInfo ***/
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/************************************************************************************//**
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** \brief     Outputs information to the user about how to use this program.
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** \return    none.
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**
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****************************************************************************************/
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static void DisplayProgramUsage(void)
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{
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  printf("Usage: SerialBoot -d<device> -b<baudrate> <s-record file>/(-T<flash-id> <s-record file>)\n\n");
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  printf("Example 1:  SerialBoot -h\n");
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#ifdef PLATFORM_WIN32
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  printf("Example 2:  SerialBoot -dCOM4 -b57600 -T3 firmware.srec\n");
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  printf("Example 3:  SerialBoot -dCOM4 -b57600 -T0 firm1.srec -T3 firm2.srec\n");
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  printf("Example 4:  SerialBoot -dCOM4 -b57600 firmware.srec\n\n");
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  printf("WARNING: SerialBoot is not really functional with windows! Please use\n");
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  printf("         the Linux version.\n\n");
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  printf("  -> In all four cases it connects to COM4 and configures a communication\n");
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#else
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  printf("Example 2:  SerialBoot -d/dev/ttyUSB0 -b57600 -T3 firmware.srec\n");
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  printf("Example 3:  SerialBoot -d/dev/ttyUSB0 -b57600 -T0 firm1.srec -T3 firm2.srec\n");
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  printf("Example 4:  SerialBoot -d/dev/ttyUSB0 -b57600 firmware.srec\n\n");
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  printf("  -> In all four cases it connects to ttyUSB0 and configures a communication\n");
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#endif
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  printf("     speed of 57600 bits/second. The bootloaders will be set into flashing\n");
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  printf("     mode and will be reset after flashing the last binary file.\n");
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  printf("  -> In the first example this help will be opened\n");
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  printf("  -> In the second example the binary file 'firmware.srec' will be flashed on\n");
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  printf("     device 0x03.\n");
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  printf("  -> In the third example the binary file 'firm1.srec' will be flashed on\n");
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  printf("     device 0x00 and the other binary file 'firm2.srec' on device 0x03.\n");
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  printf("  -> In the last example the standard configuration is shown. The binary file\n");
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  printf("     'firmware.srec' will be flashed on device 0x00. It equals the\n");
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  printf("     configuration '-T0 firmware.srec'.\n");
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  printf("  -> Don't forget that you always have to give the parameters -d and -b.\n");
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  printf("  -> There is also the parameter -a for giving an address for bluetooth\n");
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  printf("     communication, but this part is not functional yet.\n");
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  printf("--------------------------------------------------------------------------------\n");
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} /*** end of DisplayProgramUsage ***/
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static void DisplayProgramInput(void) {
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#ifdef PLATFORM_WIN32
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  printf("WARNING: SerialBoot is designed for Linux. While using Windows the correct\n");
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  printf("         functionality can not be guaranteed! Please use Linux for using best\n");
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  printf("         performance and savety.\n");
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  printf("\n--------------------------------------------------------------------------------\n\n");
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#endif
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  printf("\nOpen device at %s @ %u bits/s and RTS=%i\n\n", serialDeviceName, serialBaudrate, registerRTSvalue);
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  printf("Programming will start immediately in following order:\n");
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  sb_uint8 idx;
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  for (idx=0; idx<countFlashingPrograms; idx++) {
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    printf("  %i) device 0x%08X: %s\n", idx+1, flashingTargetIDs[idx], srecordFileNames[idx]);
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  }
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}
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/************************************************************************************//**
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** \brief     Parses the command line arguments. A fixed amount of arguments is expected.
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**            The program should be called as:
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**              SerialBoot -d[device] -b[baudrate] [s-record file]
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** \param     argc Number of program parameters.
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** \param     argv array to program parameter strings.
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** \return    SB_TRUE on success, SB_FALSE otherwise.
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**
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****************************************************************************************/
297
static sb_uint8 ParseCommandLine(sb_int32 argc, sb_char *argv[])
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{
299
  sb_uint8 paramIdx;
300
  sb_uint8 paramAfound = SB_FALSE;
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  sb_uint8 paramDfound = SB_FALSE;
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  sb_uint8 paramBfound = SB_FALSE;
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  sb_uint8 paramTfound = SB_FALSE;
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  sb_uint8 paramRTSfound = SB_FALSE;
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  sb_uint8 paramXfound = SB_FALSE;
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  sb_uint8 srecordfound = SB_FALSE;
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  /* make sure the right amount of arguments are given */
309
  if (argc < 4 || argc > 14)
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  {
311
    return SB_FALSE;
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  }
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  /* loop through all the command lina parameters, just skip the 1st one because this
315
   * is the name of the program, which we are not interested in.
316
   */
317
  for (paramIdx=1; paramIdx<argc; paramIdx++)
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  {
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    /* is this the device name? */
320
    if ( (argv[paramIdx][0] == '-') && (argv[paramIdx][1] == 'd') && (paramDfound == SB_FALSE) && (paramTfound == SB_FALSE) && (paramAfound == SB_FALSE))
321
    {
322
      /* copy the device name and set flag that this parameter was found */
323
      strcpy(serialDeviceName, &argv[paramIdx][2]);
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      paramDfound = SB_TRUE;
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      comIsUart = SB_TRUE;
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    }
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    /* is this the bluetooth id? */
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/*
329
    else if ( (argv[paramIdx][0] == '-') && (argv[paramIdx][1] == 'a') && (paramDfound == SB_FALSE) && (paramTfound == SB_FALSE) && (paramAfound == SB_FALSE))
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    {
331
      if ((argv[paramIdx][4] != ':') || (argv[paramIdx][7] != ':') || (argv[paramIdx][10] != ':') || (argv[paramIdx][13] != ':') || (argv[paramIdx][16] != ':')) {
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        printf("The bluetooth ID %s has not the format xx:xx:xx:xx:xx:xx\n", &argv[paramIdx][2]);
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        return SB_FALSE;
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      }
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      // copy the bluetooth id and set flag that this parameter was found
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      strcpy(serialDeviceName, &argv[paramIdx][2]);
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      paramAfound = SB_TRUE;
338
      comIsUart = SB_FALSE;
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      // TODO accept bluetooth communication
340
      printf("Bluetooth communication is not available yet!");
341
      return SB_FALSE;
342
    }
343
*/
344
    /* is this the baudrate? */
345
    else if ( (argv[paramIdx][0] == '-') && (argv[paramIdx][1] == 'b') && (paramBfound == SB_FALSE) && (paramTfound == SB_FALSE) )
346
    {
347
      /* extract the baudrate and set flag that this parameter was found */
348
      sscanf(&argv[paramIdx][2], "%u", &serialBaudrate);
349
      paramBfound = SB_TRUE;
350
    }
351
    /* is this the RTS flag? */
352
    else if ( (argv[paramIdx][0] == '-') && (argv[paramIdx][1] == 'R') && (argv[paramIdx][2] == 'T') && (argv[paramIdx][3] == 'S') && (paramRTSfound == SB_FALSE) && (paramTfound == SB_FALSE) )
353
    {
354
      /* extract RTS flag [0,1] and set that this parameter was found */
355
      sb_char setValue[2];
356
      strcpy(setValue, &argv[paramIdx][4]);
357
      if (setValue[0] == 0x0) {
358
        registerRTSvalue = 0;
359
      } else {
360
        registerRTSvalue = ((int)setValue[0])-48;
361
      }
362
      if (registerRTSvalue > 1 || registerRTSvalue < 0 || setValue[1] != 0x0) {
363
        registerRTSvalue = 0;
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        printf("Not allowed value for RTS register. RTS=[0,1]\n");
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        return SB_FALSE;
366
      }
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      paramRTSfound = SB_TRUE;
368
    }
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    /* is this the target number? */
370
    else if ( (argv[paramIdx][0] == '-') && (argv[paramIdx][1] == 'T') && (paramTfound == SB_FALSE) && (paramXfound == SB_FALSE) && (paramDfound == SB_TRUE) && (paramBfound == SB_TRUE) )
371
    {
372
      if (countFlashingPrograms >= MAX_COUNT_FLASHING_PROGRAMS) {
373
        printf("too many programs to flash (-T)\n");
374
        return SB_FALSE;
375
      }
376
      /* prog status has to be set in flashing mode */
377
      paramTfound = SB_TRUE;
378
      prog_state = PROGSTATE_FLASHPROGRAM;
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      sb_char choosenID[128];
380
      strcpy(choosenID, &argv[paramIdx][2]);
381
      /* Transform ascii numbers in string to an integer */
382
      flashingTargetID = 0;
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      if (choosenID[0] == '0' && (choosenID[1] < '0' || choosenID[1] > '9')) {  // if the ID is something like "0x..." or "0o..."
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        switch (choosenID[1]) {
385
          case 'x':
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          case 'X':
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            flashingTargetID = strtoul(&choosenID[2], NULL, 16);
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            break;
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          case 'o':
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          case 'O':
391
            flashingTargetID = strtoul(&choosenID[2], NULL, 8);
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            break;
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          case 'b':
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          case 'B':
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            flashingTargetID = strtoul(&choosenID[2], NULL, 2);
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            break;
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          case 'd':
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          case 'D':
399
            flashingTargetID = strtoul(&choosenID[2], NULL, 10);
400
            break;
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          default:
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            printf("could not interprete target ID\n");
403
            return SB_FALSE;
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            break;
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        }
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      } else {
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        flashingTargetID = strtoul(choosenID, NULL, 10);
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      }
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      if (flashingTargetID == 0) {
410
        printf("target ID invalid (0x%08X)\n", flashingTargetID);
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        return SB_FALSE;
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      }
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      flashingTargetIDs[countFlashingPrograms] = flashingTargetID;
414
    }
415
    /* is this a srec file (a parameter without "-" in the beginning) */
416
    else if (argv[paramIdx][0] != '-')
417
    {
418
      if (countFlashingPrograms >= MAX_COUNT_FLASHING_PROGRAMS) {
419
        printf("too many programs to flash (without -T)\n");
420
        return SB_FALSE;
421
      }
422
      /* srecord file has been found */
423
      if (paramTfound == SB_FALSE) {
424
        paramTfound = SB_TRUE;
425
        flashingTargetIDs[countFlashingPrograms] = 0;
426
        prog_state = PROGSTATE_ORIGIN;
427
      }
428
      srecordFileNames[countFlashingPrograms] = &(argv[paramIdx][0]);
429
      countFlashingPrograms++;
430
      paramTfound = SB_FALSE;
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      srecordfound = SB_TRUE;
432
    }
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  }
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  /* verify if all parameters were found */
436
  if ( ( ((paramDfound == SB_FALSE) || (paramBfound == SB_FALSE)) && (paramAfound == SB_FALSE)) || (srecordfound == SB_FALSE) )
437
  {
438
    printf("-a, -d, -b or srecord file missing, remember that you can only choose -a or -d\n");
439
    return SB_FALSE;
440
  }
441
442
  /* still here so the parsing was successful */
443
  return SB_TRUE;
444
} /*** end of ParseCommandLine ***/
445
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static void printErrors(void) {
451
  sb_uint8 detected = 0;
452
  sb_uint8 errorIdx;
453
  for (errorIdx=0; errorIdx<MAX_COUNT_FLASHING_PROGRAMS; errorIdx++) {
454
    if (errors[errorIdx] != ERROR_NO) {
455
      detected++;
456
    }
457
  }
458
  if (detected == 0) {
459
    printf("\nEvery firmware successfully updated.\nSerialBoot finished without any errors.\n\n");
460
  } else {
461
    if (detected < countFlashingPrograms) {
462
      printf("\n%i ERRORs detected!\nOnly in the following %i cases SerialBoot updated the firmware:\n", detected, countFlashingPrograms-detected);
463
      for (errorIdx=0; errorIdx<countFlashingPrograms; errorIdx++) {
464
        if (errors[errorIdx] == ERROR_NO) {
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          printf(" * Flash %i: %s on device 0x%08X\n", errorIdx+1, srecordFileNames[errorIdx], flashingTargetIDs[errorIdx]);
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        }
467
      }
468
      printf("In the following %i cases SerialBoot could not update the firmware:\n", detected);
469
    } else {
470
      printf("\nERRORs detected!\nEvery firmware update by SerialBoot failed:\n");
471
    }
472
    for (errorIdx=0; errorIdx<countFlashingPrograms; errorIdx++) {
473
      if (errors[errorIdx] != ERROR_NO) {
474
        printf(" * ERROR in Flash %i: ", errorIdx+1);
475
        switch (errors[errorIdx]) {
476
          case ERROR_FILE:
477
            printf("The file %s couldn't be read!\n", srecordFileNames[errorIdx]); break;
478
          case ERROR_DEVICE:
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            printf("No connection to device 0x%08X!\n", flashingTargetIDs[errorIdx]); break;
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          default:
481
            printf("Couldn't specify the error. Please check output above!\n"); break;
482
        }
483
      }
484
    }
485
    printf("Please check the errors before trying to update again.\n\n");
486
  }
487
}
488
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static sb_int32 startFlashMode(void) {
494
495
  /* -------------------- start flashing mode ---------------------------------------- */
496
  printf("Set main device on flashing mode\n");
497
498
  /* -------------------- open connection -------------------------------------------- */
499
  if (buildConnection(1) == PROG_RESULT_ERROR) {
500
    return PROG_RESULT_ERROR;
501
  }
502
503
  //printf("close...");
504
505
  /* -------------------- close connection ------------------------------------------- */
506
  if(closeConnection(NULL) == PROG_RESULT_ERROR) {
507
    return PROG_RESULT_ERROR;
508
  }
509
510
  /* all done */
511
  printf("Main device is now in flashing mode!\n\n");
512
513
  return PROG_RESULT_OK;
514
}
515
516
517
518
static sb_int32 flashProgram(void) {
519
  sb_file hSrecord;
520
  tSrecordParseResults fileParseResults;
521
  tSrecordLineParseResults lineParseResults;
522
523
  /* -------------------- start the firmware update procedure ------------------------ */
524 d54d2f07 Thomas Schöpping
  printf("Starting firmware update for \"%s\" on device 0x%08X\n", srecordFileName, flashingTargetID);
525
  printf("Using %s @ %u bits/s\n", serialDeviceName, serialBaudrate);
526 69661903 Thomas Schöpping
527
  /* -------------------- prepare programming session -------------------------------- */
528
  if (prepareProgrammingSession(&hSrecord, &fileParseResults) == PROG_RESULT_ERROR) {
529
    errorDetected = ERROR_FILE;
530
    return PROG_RESULT_ERROR;
531
  }
532
533
  /* -------------------- open connection -------------------------------------------- */
534
  if (buildConnection(0) == PROG_RESULT_ERROR) {
535
    errorDetected = ERROR_DEVICE;
536
    return PROG_RESULT_ERROR;
537
  }
538
539
  /* -------------------- programming code ------------------------------------------- */
540
  if (programCode(&hSrecord, &fileParseResults, &lineParseResults) == PROG_RESULT_ERROR) {
541
    errorDetected = ERROR_UNKNOWN;
542
    return PROG_RESULT_ERROR;
543
  }
544
545
  /* -------------------- close connection ------------------------------------------- */
546
  if (closeConnection(&hSrecord) == PROG_RESULT_ERROR) {
547
    errorDetected = ERROR_UNKNOWN;
548
    return PROG_RESULT_ERROR;
549
  }
550
551
  /* -------------------- close the S-record file ------------------------------------ */
552
  SrecordClose(hSrecord);
553
  printf("Closed S-record file \"%s\"\n", srecordFileName);
554
555
  /* all done */
556
  printf("Firmware successfully updated!\n\n");
557
558
  return PROG_RESULT_OK;
559
}
560
561
562
563
564
565
566
static sb_int32 startUserProgram(void) {
567
  /* -------------------- start the user program ------------------------------------- */
568
  printf("Resetting all using %s @ %u bits/s\n", serialDeviceName, serialBaudrate);
569
570
  /* -------------------- open connection -------------------------------------------- */
571
  if (buildConnection(0) == PROG_RESULT_ERROR) {
572
    return PROG_RESULT_ERROR;
573
  }
574
575
  /* -------------------- close connection and reset --------------------------------- */
576
  if (closeConnectionWithReset(NULL) == PROG_RESULT_ERROR) {
577
    return PROG_RESULT_ERROR;
578
  }
579
580
  /* all done */
581
  printf("User programs have been started!\n\n");
582
583
  return PROG_RESULT_OK;
584
}
585
586
587
588
589
static sb_int32 originalMainPart(void) {
590
  sb_file hSrecord;
591
  tSrecordParseResults fileParseResults;
592
  tSrecordLineParseResults lineParseResults;
593
594
  /* -------------------- start the firmware update procedure ------------------------ */
595
  printf("Starting firmware update for \"%s\" using %s @ %u bits/s\n", srecordFileName, serialDeviceName, serialBaudrate);
596
597
  /* -------------------- prepare programming session -------------------------------- */
598
  if (prepareProgrammingSession(&hSrecord, &fileParseResults) == PROG_RESULT_ERROR) {
599
    return PROG_RESULT_ERROR;
600
  }
601
602
  /* -------------------- open serial port and open connection ----------------------- */
603
  if (openSerialPortConnect(0) == PROG_RESULT_ERROR) {
604
    return PROG_RESULT_ERROR;
605
  }
606
607
  /* -------------------- open connection -------------------------------------------- */
608
//  if (buildConnection(0) == PROG_RESULT_ERROR) {
609
//    return PROG_RESULT_ERROR;
610
//  }
611
612
  /* -------------------- programming code ------------------------------------------- */
613
  if (programCode(&hSrecord, &fileParseResults, &lineParseResults) == PROG_RESULT_ERROR) {
614
    return PROG_RESULT_ERROR;
615
  }
616
617
  /* -------------------- close connection and reset --------------------------------- */
618
  if (closeConnectionWithReset(&hSrecord) == PROG_RESULT_ERROR) {
619
    return PROG_RESULT_ERROR;
620
  }
621
622
  /* -------------------- close the S-record file ------------------------------------ */
623
  SrecordClose(hSrecord);
624
  printf("Closed S-record file \"%s\"\n", srecordFileName);
625
626
  /* all done */
627
  printf("Firmware successfully updated!\n\n");
628
629
  return PROG_RESULT_OK;
630
}
631
632
633
634
635
636
static sb_int32 openSerialPort(void) {
637
  /* -------------------- Open the serial port --------------------------------------- */
638
//  printf("Opening serial port %s...", serialDeviceName);
639
  if (XcpMasterInit(serialDeviceName, serialBaudrate, comIsUart) == SB_FALSE)
640
  {
641
    printf("ERROR\n");
642
    return PROG_RESULT_ERROR;
643
  }
644
//  printf("OK\n");
645
  return PROG_RESULT_OK;
646
}
647
648
649
650
651
652
static sb_int32 closeSerialPort(void) {
653
  /* -------------------- close the serial port -------------------------------------- */
654
  XcpMasterDeinit();
655
  return PROG_RESULT_OK;
656
}
657
658
659
660
661
662
static sb_int32 openSerialPortConnect(sb_uint8 start) {
663
  /* -------------------- Connect to XCP slave --------------------------------------- */
664
//  printf("Connecting to bootloader...");
665
  sb_uint8 connections = 0;
666
  if (XcpMasterInit(serialDeviceName, serialBaudrate, comIsUart) == SB_FALSE) {
667
    printf("Could not open serial port\n");
668
  } else {
669
    if (XcpMasterConnect(0) == SB_FALSE) {
670
      connections++;
671
      /* no response. prompt the user to reset the system */
672
      if (flashingTargetID == 0 && start > 0) {
673
        printf("Please connect main device to serial port %s...", serialDeviceName);
674
      } else  {
675
        printf("Try to connect to device...");
676
      }
677
    }
678
  }
679
  /* now keep retrying until we get a response */
680
  sb_uint16 timeoutIdx = 0;
681
  sb_uint16 timeoutEnd = 60;
682
  sb_uint8 noConnectionYet = SB_TRUE;
683
  while (noConnectionYet == SB_TRUE) {
684
    if (XcpMasterInit(serialDeviceName, serialBaudrate, comIsUart) == SB_FALSE) {
685
      if (timeoutIdx == timeoutEnd) {
686
        printf("\nTIMEOUT in building connection. Please start serial port of the main device ...");
687
      }
688
    } else {
689
      if (XcpMasterConnect(0) == SB_FALSE) {
690
        if (timeoutIdx == timeoutEnd) {
691
          printf("\nTIMEOUT in reset. Please reset the main device ...");
692
        }
693
      } else {
694
        noConnectionYet = SB_FALSE;
695
      }
696
    }
697
    /* delay a bit to not pump up the CPU load */
698
    TimeUtilDelayMs(20);
699
    timeoutIdx++;
700
  }
701
  if (connections > 0) {
702
    printf("OK\n");
703
  }
704
705
  return PROG_RESULT_OK;
706
}
707
708
709
710
711
static sb_int32 buildConnection(sb_uint8 start) {
712
  /* -------------------- Connect to XCP slave --------------------------------------- */
713
//  printf("Connecting to bootloader...");
714
  sb_uint8 connections = 0;
715
  if (XcpMasterConnect(flashingTargetID) == SB_FALSE) {
716
    connections++;
717
    /* no response. prompt the user to reset the system */
718
    if (flashingTargetID == 0 && start > 0) {
719
      printf("Please connect main device to serial port %s...", serialDeviceName);
720
    } else if (flashingTargetID == 0) {
721
      printf("Try to connect to device...");
722
    } else {
723 d54d2f07 Thomas Schöpping
      printf("Try to connect to device 0x%08X...", flashingTargetID);
724 69661903 Thomas Schöpping
    }
725
  }
726
  /* now keep retrying until we get a response */
727
  sb_uint16 timeoutIdx = 0;
728
  sb_uint16 timeoutEnd = 50;
729
  while (XcpMasterConnect(flashingTargetID) == SB_FALSE) {
730
    if (timeoutIdx == timeoutEnd) {
731
      printf("\nTIMEOUT: No connection possible.\n\n");
732
      return PROG_RESULT_ERROR;
733
    }
734
    /* delay a bit to not pump up the CPU load */
735
    TimeUtilDelayMs(20);
736
    timeoutIdx++;
737
  }
738
  if (connections > 0) {
739
    printf("OK\n");
740
  }
741
742
  return PROG_RESULT_OK;
743
}
744
745
746
747
748
static sb_int32 closeConnection(sb_file *hSrecord) {
749
  /* -------------------- Disconnect from XCP slave and perform software reset ------- */
750
//  printf("Performing software reset...");
751
  if (XcpMasterDisconnect() == SB_FALSE)
752
  {
753
    printf("ERROR\n");
754
    if (hSrecord != NULL) {
755
      SrecordClose(*hSrecord);
756
    }
757
    return PROG_RESULT_ERROR;
758
  }
759
//  printf("OK\n");
760
761
  return PROG_RESULT_OK;
762
}
763
764
765
766
767
static sb_int32 closeConnectionWithReset(sb_file *hSrecord) {
768
  /* -------------------- Disconnect from XCP slave ---------------------------------- */
769
  printf("Resetting...");
770
  if (XcpMasterProgramReset() == SB_FALSE)
771
  {
772
    printf("ERROR\n");
773
    XcpMasterDisconnect();
774
    if (hSrecord != NULL) {
775
      SrecordClose(*hSrecord);
776
    }
777
    return PROG_RESULT_ERROR;
778
  }
779
  printf("OK\n");
780
781
  closeSerialPort();
782
  printf("Closed serial port %s\n", serialDeviceName);
783
784
  return PROG_RESULT_OK;
785
}
786
787
788
789
790
static sb_int32 prepareProgrammingSession(sb_file *hSrecord, tSrecordParseResults *fileParseResults) {
791
  /* -------------------- validating the S-record file ------------------------------- */
792
  printf("Checking formatting of S-record file \"%s\"...", srecordFileName);
793
  if (SrecordIsValid(srecordFileName) == SB_FALSE)
794
  {
795
    printf("ERROR\n\n");
796
    return PROG_RESULT_ERROR;
797
  }
798
  printf("OK\n");
799
800
  /* -------------------- opening the S-record file ---------------------------------- */
801
  printf("Opening S-record file \"%s\"...", srecordFileName);
802
  if ((*hSrecord = SrecordOpen(srecordFileName)) == SB_NULL)
803
  {
804
    printf("ERROR\n\n");
805
    return PROG_RESULT_ERROR;
806
  }
807
  printf("OK\n");
808
809
  /* -------------------- parsing the S-record file ---------------------------------- */
810
  printf("Parsing S-record file \"%s\"...", srecordFileName);
811
  SrecordParse(*hSrecord, fileParseResults);
812
  printf("OK\n");
813
  printf("-> Lowest memory address:  0x%08x\n", fileParseResults->address_low);
814
  printf("-> Highest memory address: 0x%08x\n", fileParseResults->address_high);
815
  printf("-> Total data bytes: %u\n", fileParseResults->data_bytes_total);
816
817
  return PROG_RESULT_OK;
818
}
819
820
821
822
823
static sb_int32 programCode(sb_file *hSrecord, tSrecordParseResults *fileParseResults, tSrecordLineParseResults *lineParseResults) {
824
  /* -------------------- Prepare the programming session ---------------------------- */
825
  printf("Initializing programming session...");
826
  if (XcpMasterStartProgrammingSession() == SB_FALSE)
827
  {
828
    printf("ERROR\n");
829
    XcpMasterDisconnect();
830
    SrecordClose(*hSrecord);
831
    return PROG_RESULT_ERROR;
832
  }
833
  printf("OK\n");
834
835
  /* -------------------- Erase memory ----------------------------------------------- */
836
  printf("Erasing %u bytes starting at 0x%08x...", fileParseResults->data_bytes_total, fileParseResults->address_low);
837
  if (XcpMasterClearMemory(fileParseResults->address_low, (fileParseResults->address_high - fileParseResults->address_low)) == SB_FALSE)
838
  {
839
    printf("ERROR\n");
840
    XcpMasterDisconnect();
841
    SrecordClose(*hSrecord);
842
    return PROG_RESULT_ERROR;
843
  }
844
  printf("OK\n");
845
846
  /* -------------------- Program data ----------------------------------------------- */
847
  printf("Programming data. Please wait...");
848
  /* loop through all S-records with program data */
849
  while (SrecordParseNextDataLine(*hSrecord, lineParseResults) == SB_TRUE)
850
  {
851
    if (XcpMasterProgramData(lineParseResults->address, lineParseResults->length, lineParseResults->data) == SB_FALSE)
852
    {
853
      printf("ERROR\n");
854
      XcpMasterDisconnect();
855
      SrecordClose(*hSrecord);
856
      return PROG_RESULT_ERROR;
857
    }
858
  }
859
  printf("OK\n");
860
861
  /* -------------------- Stop the programming session ------------------------------- */
862
  printf("Finishing programming session...");
863
  if (XcpMasterStopProgrammingSession() == SB_FALSE)
864
  {
865
    printf("ERROR\n");
866
    XcpMasterDisconnect();
867
    SrecordClose(*hSrecord);
868
    return PROG_RESULT_ERROR;
869
  }
870
  printf("OK\n");
871
872
  return PROG_RESULT_OK;
873
}
874
875
876
877
/*********************************** end of main.c *************************************/