language.c 7.9 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241
  1. //language.c
  2. #include "language.h"
  3. #include <avr/pgmspace.h>
  4. #include <avr/eeprom.h>
  5. #include "bootapp.h"
  6. #include "Configuration.h"
  7. #ifdef W25X20CL
  8. #include "w25x20cl.h"
  9. #endif //W25X20CL
  10. // Currently active language selection.
  11. uint8_t lang_selected = 0;
  12. #if (LANG_MODE == 0) //primary language only
  13. uint8_t lang_select(uint8_t lang) { return 0; }
  14. uint8_t lang_get_count() { return 1; }
  15. uint16_t lang_get_code(uint8_t lang) { return LANG_CODE_EN; }
  16. const char* lang_get_name_by_code(uint16_t code) { return _n("English"); }
  17. void lang_reset(void) { }
  18. uint8_t lang_is_selected(void) { return 1; }
  19. #else //(LANG_MODE == 0) //secondary languages in progmem or xflash
  20. //reserved xx kbytes for secondary language table
  21. const char _SEC_LANG[LANG_SIZE_RESERVED] PROGMEM_I2 = "_SEC_LANG";
  22. //primary language signature
  23. const uint32_t _PRI_LANG_SIGNATURE[1] __attribute__((section(".progmem0"))) = {0xffffffff};
  24. //lang_table pointer
  25. lang_table_t* lang_table = 0;
  26. const char* lang_get_translation(const char* s)
  27. {
  28. if (lang_selected == 0) return s + 2; //primary language selected, return orig. str.
  29. if (lang_table == 0) return s + 2; //sec. lang table not found, return orig. str.
  30. uint16_t ui = pgm_read_word(((uint16_t*)s)); //read string id
  31. if (ui == 0xffff) return s + 2; //translation not found, return orig. str.
  32. ui = pgm_read_word(((uint16_t*)(((char*)lang_table + 16 + ui*2)))); //read relative offset
  33. if (pgm_read_byte(((uint8_t*)((char*)lang_table + ui))) == 0) //read first character
  34. return s + 2;//zero length string == not translated, return orig. str.
  35. return (const char*)((char*)lang_table + ui); //return calculated pointer
  36. }
  37. uint8_t lang_select(uint8_t lang)
  38. {
  39. if (lang == LANG_ID_PRI) //primary language
  40. {
  41. lang_table = 0;
  42. lang_selected = lang;
  43. }
  44. #ifdef W25X20CL
  45. if (lang_get_code(lang) == lang_get_code(LANG_ID_SEC)) lang = LANG_ID_SEC;
  46. if (lang == LANG_ID_SEC) //current secondary language
  47. {
  48. if (pgm_read_dword(((uint32_t*)_SEC_LANG_TABLE)) == LANG_MAGIC) //magic valid
  49. {
  50. if (lang_check(_SEC_LANG_TABLE))
  51. if (pgm_read_dword(((uint32_t*)(_SEC_LANG_TABLE + 12))) == pgm_read_dword(((uint32_t*)(_PRI_LANG_SIGNATURE)))) //signature valid
  52. {
  53. lang_table = _SEC_LANG_TABLE; // set table pointer
  54. lang_selected = lang; // set language id
  55. }
  56. }
  57. }
  58. #else //W25X20CL
  59. #endif //W25X20CL
  60. if (lang_selected == lang)
  61. {
  62. eeprom_update_byte((unsigned char*)EEPROM_LANG, lang_selected);
  63. return 1;
  64. }
  65. return 0;
  66. }
  67. uint8_t lang_check(uint16_t addr)
  68. {
  69. uint16_t sum = 0;
  70. uint16_t size = pgm_read_word((uint16_t*)(addr + 4));
  71. uint16_t lt_sum = pgm_read_word((uint16_t*)(addr + 8));
  72. uint16_t i; for (i = 0; i < size; i++)
  73. sum += (uint16_t)pgm_read_byte((uint8_t*)(addr + i)) << ((i & 1)?0:8);
  74. sum -= lt_sum; //subtract checksum
  75. sum = (sum >> 8) | ((sum & 0xff) << 8); //swap bytes
  76. return (sum == lt_sum);
  77. }
  78. uint8_t lang_get_count()
  79. {
  80. #ifdef W25X20CL
  81. if (pgm_read_dword(((uint32_t*)(_PRI_LANG_SIGNATURE))) == 0xffffffff)
  82. return 1; //signature not set - only primary language will be available
  83. W25X20CL_SPI_ENTER();
  84. uint8_t count = 2; //count = 1+n (primary + secondary + all in xflash)
  85. uint32_t addr = 0x00000; //start of xflash
  86. lang_table_header_t header; //table header structure
  87. while (1)
  88. {
  89. w25x20cl_rd_data(addr, (uint8_t*)&header, sizeof(lang_table_header_t)); //read table header from xflash
  90. if (header.magic != LANG_MAGIC) break; //break if magic not valid
  91. addr += header.size; //calc address of next table
  92. count++; //inc counter
  93. }
  94. return count;
  95. #else //W25X20CL
  96. #endif //W25X20CL
  97. }
  98. uint8_t lang_get_header(uint8_t lang, lang_table_header_t* header, uint32_t* offset)
  99. {
  100. if (lang == LANG_ID_PRI) return 0; //primary lang not supported for this function
  101. #ifdef W25X20CL
  102. if (lang == LANG_ID_SEC)
  103. {
  104. uint16_t ui = _SEC_LANG_TABLE; //table pointer
  105. memcpy_P(header, ui, sizeof(lang_table_header_t)); //read table header from progmem
  106. if (offset) *offset = ui;
  107. return (header->magic == LANG_MAGIC)?1:0; //return 1 if magic valid
  108. }
  109. W25X20CL_SPI_ENTER();
  110. uint32_t addr = 0x00000; //start of xflash
  111. lang--;
  112. while (1)
  113. {
  114. w25x20cl_rd_data(addr, header, sizeof(lang_table_header_t)); //read table header from xflash
  115. if (header->magic != LANG_MAGIC) break; //break if not valid
  116. if (offset) *offset = addr;
  117. if (--lang == 0) return 1;
  118. addr += header->size; //calc address of next table
  119. }
  120. return 0;
  121. #else //W25X20CL
  122. #endif //W25X20CL
  123. }
  124. uint16_t lang_get_code(uint8_t lang)
  125. {
  126. if (lang == LANG_ID_PRI) return LANG_CODE_EN; //primary lang = EN
  127. #ifdef W25X20CL
  128. if (lang == LANG_ID_SEC)
  129. {
  130. uint16_t ui = _SEC_LANG_TABLE; //table pointer
  131. if (pgm_read_dword(((uint32_t*)(ui + 0))) != LANG_MAGIC) return LANG_CODE_XX; //magic not valid
  132. return pgm_read_word(((uint32_t*)(ui + 10))); //return lang code from progmem
  133. }
  134. W25X20CL_SPI_ENTER();
  135. uint32_t addr = 0x00000; //start of xflash
  136. lang_table_header_t header; //table header structure
  137. lang--;
  138. while (1)
  139. {
  140. w25x20cl_rd_data(addr, (uint8_t*)&header, sizeof(lang_table_header_t)); //read table header from xflash
  141. if (header.magic != LANG_MAGIC) break; //break if not valid
  142. if (--lang == 0) return header.code;
  143. addr += header.size; //calc address of next table
  144. }
  145. #else //W25X20CL
  146. #endif //W25X20CL
  147. // if (lang == LANG_ID_SEC)
  148. // {
  149. // uint16_t ui = _SEC_LANG_TABLE; //table pointer
  150. // if (pgm_read_dword(((uint32_t*)(ui + 0))) == LANG_MAGIC) //magic num is OK
  151. // return pgm_read_word(((uint16_t*)(ui + 10))); //read language code
  152. // }
  153. return LANG_CODE_XX;
  154. }
  155. const char* lang_get_name_by_code(uint16_t code)
  156. {
  157. switch (code)
  158. {
  159. case LANG_CODE_EN: return _n("English");
  160. case LANG_CODE_CZ: return _n("Cestina");
  161. case LANG_CODE_DE: return _n("Deutsch");
  162. case LANG_CODE_ES: return _n("Espanol");
  163. case LANG_CODE_IT: return _n("Italiano");
  164. case LANG_CODE_PL: return _n("Polski");
  165. }
  166. return _n("??");
  167. }
  168. void lang_reset(void)
  169. {
  170. lang_selected = 0;
  171. eeprom_update_byte((unsigned char*)EEPROM_LANG, LANG_ID_FORCE_SELECTION);
  172. }
  173. uint8_t lang_is_selected(void)
  174. {
  175. uint8_t lang_eeprom = eeprom_read_byte((unsigned char*)EEPROM_LANG);
  176. return (lang_eeprom != LANG_ID_FORCE_SELECTION) && (lang_eeprom == lang_selected);
  177. }
  178. #ifdef DEBUG_SEC_LANG
  179. const char* lang_get_sec_lang_str_by_id(uint16_t id)
  180. {
  181. uint16_t ui = _SEC_LANG_TABLE; //table pointer
  182. return ui + pgm_read_word(((uint16_t*)(ui + 16 + id * 2))); //read relative offset and return calculated pointer
  183. }
  184. uint16_t lang_print_sec_lang(FILE* out)
  185. {
  186. printf_P(_n("&_SEC_LANG = 0x%04x\n"), &_SEC_LANG);
  187. printf_P(_n("sizeof(_SEC_LANG) = 0x%04x\n"), sizeof(_SEC_LANG));
  188. uint16_t ptr_lang_table0 = ((uint16_t)(&_SEC_LANG) + 0xff) & 0xff00;
  189. printf_P(_n("&_lang_table0 = 0x%04x\n"), ptr_lang_table0);
  190. uint32_t _lt_magic = pgm_read_dword(((uint32_t*)(ptr_lang_table0 + 0)));
  191. uint16_t _lt_size = pgm_read_word(((uint16_t*)(ptr_lang_table0 + 4)));
  192. uint16_t _lt_count = pgm_read_word(((uint16_t*)(ptr_lang_table0 + 6)));
  193. uint16_t _lt_chsum = pgm_read_word(((uint16_t*)(ptr_lang_table0 + 8)));
  194. uint16_t _lt_resv0 = pgm_read_word(((uint16_t*)(ptr_lang_table0 + 10)));
  195. uint32_t _lt_resv1 = pgm_read_dword(((uint32_t*)(ptr_lang_table0 + 12)));
  196. printf_P(_n(" _lt_magic = 0x%08lx %S\n"), _lt_magic, (_lt_magic==LANG_MAGIC)?_n("OK"):_n("NA"));
  197. printf_P(_n(" _lt_size = 0x%04x (%d)\n"), _lt_size, _lt_size);
  198. printf_P(_n(" _lt_count = 0x%04x (%d)\n"), _lt_count, _lt_count);
  199. printf_P(_n(" _lt_chsum = 0x%04x\n"), _lt_chsum);
  200. printf_P(_n(" _lt_resv0 = 0x%04x\n"), _lt_resv0);
  201. printf_P(_n(" _lt_resv1 = 0x%08lx\n"), _lt_resv1);
  202. if (_lt_magic != LANG_MAGIC) return 0;
  203. puts_P(_n(" strings:\n"));
  204. uint16_t ui = _SEC_LANG_TABLE; //table pointer
  205. for (ui = 0; ui < _lt_count; ui++)
  206. fprintf_P(out, _n(" %3d %S\n"), ui, lang_get_sec_lang_str_by_id(ui));
  207. return _lt_count;
  208. }
  209. #endif //DEBUG_SEC_LANG
  210. #endif //(LANG_MODE == 0)
  211. void lang_boot_update_start(uint8_t lang)
  212. {
  213. uint8_t cnt = lang_get_count();
  214. if ((lang < 2) || (lang > cnt)) return; //only languages from xflash can be selected
  215. bootapp_reboot_user0(lang << 4);
  216. }