update_manifest.c 7.4 KB

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  1. #include "update_manifest.h"
  2. #include <storage/storage.h>
  3. #include <flipper_format/flipper_format.h>
  4. #include <flipper_format/flipper_format_i.h>
  5. #define MANIFEST_KEY_INFO "Info"
  6. #define MANIFEST_KEY_TARGET "Target"
  7. #define MANIFEST_KEY_LOADER_FILE "Loader"
  8. #define MANIFEST_KEY_LOADER_CRC "Loader CRC"
  9. #define MANIFEST_KEY_DFU_FILE "Firmware"
  10. #define MANIFEST_KEY_RADIO_FILE "Radio"
  11. #define MANIFEST_KEY_RADIO_ADDRESS "Radio address"
  12. #define MANIFEST_KEY_RADIO_VERSION "Radio version"
  13. #define MANIFEST_KEY_RADIO_CRC "Radio CRC"
  14. #define MANIFEST_KEY_ASSETS_FILE "Resources"
  15. #define MANIFEST_KEY_OB_REFERENCE "OB reference"
  16. #define MANIFEST_KEY_OB_MASK "OB mask"
  17. #define MANIFEST_KEY_OB_WRITE_MASK "OB write mask"
  18. #define MANIFEST_KEY_SPLASH_FILE "Splashscreen"
  19. UpdateManifest* update_manifest_alloc() {
  20. UpdateManifest* update_manifest = malloc(sizeof(UpdateManifest));
  21. update_manifest->version = furi_string_alloc();
  22. update_manifest->firmware_dfu_image = furi_string_alloc();
  23. update_manifest->radio_image = furi_string_alloc();
  24. update_manifest->staged_loader_file = furi_string_alloc();
  25. update_manifest->resource_bundle = furi_string_alloc();
  26. update_manifest->splash_file = furi_string_alloc();
  27. update_manifest->target = 0;
  28. update_manifest->manifest_version = 0;
  29. memset(update_manifest->ob_reference.bytes, 0, FURI_HAL_FLASH_OB_RAW_SIZE_BYTES);
  30. memset(update_manifest->ob_compare_mask.bytes, 0, FURI_HAL_FLASH_OB_RAW_SIZE_BYTES);
  31. memset(update_manifest->ob_write_mask.bytes, 0, FURI_HAL_FLASH_OB_RAW_SIZE_BYTES);
  32. update_manifest->valid = false;
  33. return update_manifest;
  34. }
  35. void update_manifest_free(UpdateManifest* update_manifest) {
  36. furi_assert(update_manifest);
  37. furi_string_free(update_manifest->version);
  38. furi_string_free(update_manifest->firmware_dfu_image);
  39. furi_string_free(update_manifest->radio_image);
  40. furi_string_free(update_manifest->staged_loader_file);
  41. furi_string_free(update_manifest->resource_bundle);
  42. furi_string_free(update_manifest->splash_file);
  43. free(update_manifest);
  44. }
  45. static bool
  46. update_manifest_init_from_ff(UpdateManifest* update_manifest, FlipperFormat* flipper_file) {
  47. furi_assert(update_manifest);
  48. furi_assert(flipper_file);
  49. FuriString* filetype;
  50. // TODO: compare filetype?
  51. filetype = furi_string_alloc();
  52. update_manifest->valid =
  53. flipper_format_read_header(flipper_file, filetype, &update_manifest->manifest_version) &&
  54. flipper_format_read_string(flipper_file, MANIFEST_KEY_INFO, update_manifest->version) &&
  55. flipper_format_read_uint32(
  56. flipper_file, MANIFEST_KEY_TARGET, &update_manifest->target, 1) &&
  57. flipper_format_read_string(
  58. flipper_file, MANIFEST_KEY_LOADER_FILE, update_manifest->staged_loader_file) &&
  59. flipper_format_read_hex(
  60. flipper_file,
  61. MANIFEST_KEY_LOADER_CRC,
  62. (uint8_t*)&update_manifest->staged_loader_crc,
  63. sizeof(uint32_t));
  64. furi_string_free(filetype);
  65. if(update_manifest->valid) {
  66. /* Optional fields - we can have dfu, radio, resources, or any combination */
  67. flipper_format_read_string(
  68. flipper_file, MANIFEST_KEY_DFU_FILE, update_manifest->firmware_dfu_image);
  69. flipper_format_read_string(
  70. flipper_file, MANIFEST_KEY_RADIO_FILE, update_manifest->radio_image);
  71. flipper_format_read_hex(
  72. flipper_file,
  73. MANIFEST_KEY_RADIO_ADDRESS,
  74. (uint8_t*)&update_manifest->radio_address,
  75. sizeof(uint32_t));
  76. flipper_format_read_hex(
  77. flipper_file,
  78. MANIFEST_KEY_RADIO_VERSION,
  79. update_manifest->radio_version.raw,
  80. sizeof(UpdateManifestRadioVersion));
  81. flipper_format_read_hex(
  82. flipper_file,
  83. MANIFEST_KEY_RADIO_CRC,
  84. (uint8_t*)&update_manifest->radio_crc,
  85. sizeof(uint32_t));
  86. flipper_format_read_string(
  87. flipper_file, MANIFEST_KEY_ASSETS_FILE, update_manifest->resource_bundle);
  88. flipper_format_read_hex(
  89. flipper_file,
  90. MANIFEST_KEY_OB_REFERENCE,
  91. update_manifest->ob_reference.bytes,
  92. FURI_HAL_FLASH_OB_RAW_SIZE_BYTES);
  93. flipper_format_read_hex(
  94. flipper_file,
  95. MANIFEST_KEY_OB_MASK,
  96. update_manifest->ob_compare_mask.bytes,
  97. FURI_HAL_FLASH_OB_RAW_SIZE_BYTES);
  98. flipper_format_read_hex(
  99. flipper_file,
  100. MANIFEST_KEY_OB_WRITE_MASK,
  101. update_manifest->ob_write_mask.bytes,
  102. FURI_HAL_FLASH_OB_RAW_SIZE_BYTES);
  103. flipper_format_read_string(
  104. flipper_file, MANIFEST_KEY_SPLASH_FILE, update_manifest->splash_file);
  105. update_manifest->valid =
  106. (!furi_string_empty(update_manifest->firmware_dfu_image) ||
  107. !furi_string_empty(update_manifest->radio_image) ||
  108. !furi_string_empty(update_manifest->resource_bundle));
  109. }
  110. return update_manifest->valid;
  111. }
  112. // Verifies that mask values are same for adjacent words (value & inverted)
  113. static bool ob_data_check_mask_valid(const FuriHalFlashRawOptionByteData* mask) {
  114. bool mask_valid = true;
  115. for(size_t idx = 0; mask_valid && (idx < FURI_HAL_FLASH_OB_TOTAL_VALUES); ++idx) {
  116. mask_valid &= mask->obs[idx].values.base == mask->obs[idx].values.complementary_value;
  117. }
  118. return mask_valid;
  119. }
  120. // Verifies that all reference values have no unmasked bits
  121. static bool ob_data_check_masked_values_valid(
  122. const FuriHalFlashRawOptionByteData* data,
  123. const FuriHalFlashRawOptionByteData* mask) {
  124. bool valid = true;
  125. for(size_t idx = 0; valid && (idx < FURI_HAL_FLASH_OB_TOTAL_VALUES); ++idx) {
  126. valid &= (data->obs[idx].dword & mask->obs[idx].dword) == data->obs[idx].dword;
  127. }
  128. return valid;
  129. }
  130. bool update_manifest_has_obdata(UpdateManifest* update_manifest) {
  131. bool ob_data_valid = false;
  132. // do we have at least 1 value?
  133. for(size_t idx = 0; !ob_data_valid && (idx < FURI_HAL_FLASH_OB_RAW_SIZE_BYTES); ++idx) {
  134. ob_data_valid |= update_manifest->ob_reference.bytes[idx] != 0;
  135. }
  136. // sanity checks
  137. ob_data_valid &= ob_data_check_mask_valid(&update_manifest->ob_write_mask);
  138. ob_data_valid &= ob_data_check_mask_valid(&update_manifest->ob_compare_mask);
  139. ob_data_valid &= ob_data_check_masked_values_valid(
  140. &update_manifest->ob_reference, &update_manifest->ob_compare_mask);
  141. return ob_data_valid;
  142. }
  143. bool update_manifest_init(UpdateManifest* update_manifest, const char* manifest_filename) {
  144. Storage* storage = furi_record_open(RECORD_STORAGE);
  145. FlipperFormat* flipper_file = flipper_format_file_alloc(storage);
  146. if(flipper_format_file_open_existing(flipper_file, manifest_filename)) {
  147. update_manifest_init_from_ff(update_manifest, flipper_file);
  148. }
  149. flipper_format_free(flipper_file);
  150. furi_record_close(RECORD_STORAGE);
  151. return update_manifest->valid;
  152. }
  153. bool update_manifest_init_mem(
  154. UpdateManifest* update_manifest,
  155. const uint8_t* manifest_data,
  156. const uint16_t length) {
  157. FlipperFormat* flipper_file = flipper_format_string_alloc();
  158. Stream* sstream = flipper_format_get_raw_stream(flipper_file);
  159. stream_write(sstream, manifest_data, length);
  160. stream_seek(sstream, 0, StreamOffsetFromStart);
  161. update_manifest_init_from_ff(update_manifest, flipper_file);
  162. flipper_format_free(flipper_file);
  163. return update_manifest->valid;
  164. }