iap.c 3.4 KB

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  1. #include <string.h>
  2. #include "app/iap.h"
  3. #include "app/nv_storage.h"
  4. #include "bsp/fmc_flash.h"
  5. static int iap_write_image(uint8_t *data, int len);
  6. static int iap_check_image(uint8_t *data, int len);
  7. void _reboot_timer_handler(shark_timer_t *t);
  8. void iap_read_string(can_frame_t *frame);
  9. static u8 _write_success = 0;
  10. static int _write_position = 0;
  11. static shark_timer_t _reboot_timer = {.handler = _reboot_timer_handler,};
  12. void process_iap_message(can_frame_t *frame, int len){
  13. uint8_t *data = NULL;
  14. int data_len = 0;
  15. switch(frame->key) {
  16. case CAN_KEY_IAP_ENTER:
  17. if (gd32_flash_size() < 128 * 1024){
  18. wdog_reload();
  19. fmc_iap_write_magic(0xFFFFFFFF);
  20. NVIC_SystemReset();
  21. while(1);
  22. }
  23. protocol_send_ack(frame->head.can_addr, frame->key, 0);
  24. break;
  25. case CAN_KEY_IAP_BEGIN:
  26. if (gd32_flash_size() < 128 * 1024){
  27. protocol_send_ack(frame->head.can_addr, frame->key, 1);
  28. break;
  29. }
  30. fmc_erase_image();
  31. _write_position = 0;
  32. _write_success = 0;
  33. protocol_send_ack(frame->head.can_addr, frame->key, 0);
  34. break;
  35. case CAN_KEY_IAP_WRITE:
  36. _write_success = 0;
  37. data_len = iap_write_image(frame->data, len);
  38. data = frame->data;
  39. break;
  40. case CAN_KEY_IAP_CHECK:
  41. data_len = iap_check_image(frame->data, len);
  42. data = frame->data;
  43. break;
  44. case CAN_KEY_IAP_BOOT:
  45. if (_write_success) {
  46. NVIC_SystemReset();
  47. while(1);
  48. } else {
  49. protocol_send_ack(frame->head.can_addr, frame->key, 0);
  50. }
  51. break;
  52. case CAN_KEY_IAP_STAT:
  53. protocol_send_ack(frame->head.can_addr, frame->key, 0);
  54. break;
  55. case CAN_EEY_IAP_READ_STRING:
  56. iap_read_string(frame);
  57. break;
  58. case CAN_KEY_REBOOT:
  59. if (len == 4 && shark_decode_u32(frame->data) == SHARK_IAP_MAGIC_SUCCESS) {
  60. fmc_iap_write_magic(0xFFFFFFFF);
  61. }
  62. shark_timer_post(&_reboot_timer, 100);
  63. protocol_send_ack(frame->head.can_addr, frame->key, 1);
  64. break;
  65. case CAN_KET_ERASE_NV:
  66. nv_erase();
  67. shark_timer_post(&_reboot_timer, 100);
  68. protocol_send_ack(frame->head.can_addr, frame->key, 1);
  69. break;
  70. }
  71. if (data != NULL && data_len > 0){
  72. protocol_send_bms_info(frame->head.can_addr, frame->key, frame->data, data_len);
  73. }
  74. }
  75. void _reboot_timer_handler(shark_timer_t *t){
  76. NVIC_SystemReset();
  77. }
  78. static int iap_write_image(uint8_t *data, int len){
  79. int w_pos = shark_decode_u24(data);
  80. if (w_pos == _write_position) {
  81. fmc_write_image(data + 3, len - 3);
  82. _write_position += len - 3;
  83. }
  84. data[0] = 0;
  85. shark_encode_u24(data+1, _write_position);
  86. return 4;
  87. }
  88. void iap_read_string(can_frame_t *frame)
  89. {
  90. uint8_t buff[64];
  91. const char *text;
  92. uint32_t addr;
  93. uint32_t len;
  94. addr = ((uint32_t) frame->data[2]) << 16 | ((uint32_t) frame->data[1]) << 8 | frame->data[0];
  95. text = (const char *) (0x08000000 + addr);
  96. len = strlen(text);
  97. if (len > (sizeof(buff)-4)) {
  98. len = sizeof(buff) - 4;
  99. }
  100. buff[0] = 0;
  101. memcpy(buff+1, frame->data, 3);
  102. memcpy(buff + 4, text, len);
  103. protocol_send_bms_info(frame->head.can_addr, frame->key, buff, len + 4);
  104. }
  105. static int iap_check_image(uint8_t *data, int len) {
  106. uint32_t size, checksum;
  107. size = shark_decode_u24(data);
  108. checksum = shark_decode_u32(data + 3);
  109. uint32_t d_checksum = shark_iap_checksum_init();
  110. d_checksum = shark_iap_checksum_put(d_checksum, (const u8 *)fmc_iap_image_addr(), size);
  111. d_checksum = shark_iap_checksum_finish(d_checksum);
  112. if (checksum != d_checksum) {
  113. data[0] = 1;
  114. return 1;
  115. }
  116. fmc_write_magic(size, checksum, SHARK_IAP_MAGIC_FLASH);
  117. _write_success = 1;
  118. data[0] = 0;
  119. return 1;
  120. }