main.c 40 KB

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  1. #include <stdio.h>
  2. #include <stdint.h>
  3. #include <stdbool.h>
  4. #include <stdlib.h>
  5. #include <stdarg.h>
  6. #include <limits.h>
  7. #include <string.h>
  8. #include <ctype.h>
  9. #include <unistd.h>
  10. #include <stddef.h>
  11. #include <signal.h>
  12. #include <time.h>
  13. #include <errno.h>
  14. #include <getopt.h>
  15. #include <sys/types.h>
  16. #include <sys/stat.h>
  17. #include <gfaserial.h>
  18. #include <gfabootlmast.h>
  19. #include "main.h"
  20. #include "cmdopt.h"
  21. #include "image.h"
  22. #include "output.h"
  23. #include "modbmst.h"
  24. #include "error.h"
  25. /////////////////////////////////////////////////////////////////////////////
  26. /////////////////////////////////////////////////////////////////////////////
  27. #define _ABBR_BOOTLOADER "Boot"
  28. #define _ABBR_APPLICATION "Appl"
  29. #define _ABBR_MININET "MiNe"
  30. #define _ABBR_MODBUS "ModB"
  31. /////////////////////////////////////////////////////////////////////////////
  32. static bool g_bSig = false;
  33. /////////////////////////////////////////////////////////////////////////////
  34. static void _SigHandler(int sig)
  35. {
  36. g_bSig = !!sig;
  37. TRACE3("\n");
  38. }
  39. /////////////////////////////////////////////////////////////////////////////
  40. static int _ShowDevImgInfo(HIMGFILE hIf, HGFABLM hBlm, LPCCMD_LINE_ARGS pcla, GFA_BLM_EXEC_CONTEXT ctx)
  41. {
  42. int nRet;
  43. GFA_BL_APP_IMG_INFO aii;
  44. UNUSED(hIf);
  45. TRACE3("Getting image information.\n");
  46. TTRACE3("Getting image information");
  47. if((ctx == GfaBlmCtx_App) && ((nRet = GfaBlmGetInfoBI(hBlm, pcla->nNodeAddr, &aii)) == 0))
  48. {
  49. GfaTfuDumpImageInfo("Bootloader", &aii.bl);
  50. GfaTfuDumpImageInfo("Application", &aii.app);
  51. if( (aii.bl.nImgLength != 0xFFFFFFFF) &&
  52. (aii.bl.nImgCRC32 != 0xFFFFFFFF) &&
  53. (*aii.bl.szImgMaterialNum != 0xFF) &&
  54. (*aii.bl.szImgNameBuild != 0xFF))
  55. {
  56. TTRACE(PLUGIN_TAG_IMG_LENGTH_BOOT, "%u", aii.bl.nImgLength);
  57. TTRACE(PLUGIN_TAG_IMG_CRC32_BOOT, "%u", aii.bl.nImgCRC32);
  58. TTRACE(PLUGIN_TAG_IMG_MATERIAL_BOOT, "%s", aii.bl.szImgMaterialNum);
  59. TTRACE(PLUGIN_TAG_IMG_BUILD_BOOT, "%s", aii.bl.szImgNameBuild);
  60. }
  61. else
  62. {
  63. TTRACE(PLUGIN_TAG_IMG_LENGTH_BOOT, "%u", 0);
  64. TTRACE(PLUGIN_TAG_IMG_CRC32_BOOT, "%u", 0);
  65. TTRACE(PLUGIN_TAG_IMG_MATERIAL_BOOT, "%s", "n/a");
  66. TTRACE(PLUGIN_TAG_IMG_BUILD_BOOT, "%s", "n/a");
  67. }
  68. if( (aii.app.nImgLength != 0xFFFFFFFF) &&
  69. (aii.app.nImgCRC32 != 0xFFFFFFFF) &&
  70. (*aii.app.szImgMaterialNum != 0xFF) &&
  71. (*aii.app.szImgNameBuild != 0xFF))
  72. {
  73. TTRACE(PLUGIN_TAG_IMG_LENGTH_APP, "%u", aii.app.nImgLength);
  74. TTRACE(PLUGIN_TAG_IMG_CRC32_APP, "%u", aii.app.nImgCRC32);
  75. TTRACE(PLUGIN_TAG_IMG_MATERIAL_APP, "%s", aii.app.szImgMaterialNum);
  76. TTRACE(PLUGIN_TAG_IMG_BUILD_APP, "%s", aii.app.szImgNameBuild);
  77. }
  78. else
  79. {
  80. TTRACE(PLUGIN_TAG_IMG_LENGTH_APP, "%u", 0);
  81. TTRACE(PLUGIN_TAG_IMG_CRC32_APP, "%u", 0);
  82. TTRACE(PLUGIN_TAG_IMG_MATERIAL_APP, "%s", "n/a");
  83. TTRACE(PLUGIN_TAG_IMG_BUILD_APP, "%s", "n/a");
  84. }
  85. }
  86. else
  87. {
  88. bool bStartApp = false;
  89. if(ctx == GfaBlmCtx_App)
  90. {
  91. TRACE3("Application doesn't recognize BI command!\n");
  92. TRACE3("Starting bootloader.\n");
  93. TTRACE3("Application doesn't recognize BI command");
  94. TTRACE3("Starting bootloader");
  95. if((nRet = GfaBlmBootloaderExecute(hBlm, pcla->nNodeAddr, NULL, 1000)) != 0)
  96. {
  97. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  98. TTRACE1(GfaTfuStrError(errno));
  99. return nRet;
  100. }
  101. bStartApp = true;
  102. }
  103. if(pcla->nExBaudrate != pcla->nInitBaudrate)
  104. {
  105. TRACE3("Setting baud-rate to %u.\n", pcla->nExBaudrate);
  106. TTRACE3("Setting baud-rate to %u", pcla->nExBaudrate);
  107. if((nRet = GfaBlmBootloaderSetBaudrate(hBlm, pcla->nNodeAddr, pcla->nExBaudrate)) != 0)
  108. {
  109. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  110. TTRACE1(GfaTfuStrError(errno));
  111. return nRet;
  112. }
  113. }
  114. if((nRet = GfaBlmGetInfoBD(hBlm, pcla->nNodeAddr, pcla->nStartAddr, &aii)) > -2)
  115. {
  116. GfaTfuDumpImageInfo("Bootloader", &aii.bl);
  117. GfaTfuDumpImageInfo("Application", &aii.app);
  118. if( (aii.bl.nImgLength != 0xFFFFFFFF) &&
  119. (aii.bl.nImgCRC32 != 0xFFFFFFFF) &&
  120. (*aii.bl.szImgMaterialNum != 0xFF) &&
  121. (*aii.bl.szImgNameBuild != 0xFF))
  122. {
  123. TTRACE(PLUGIN_TAG_IMG_LENGTH_BOOT, "%u", aii.bl.nImgLength);
  124. TTRACE(PLUGIN_TAG_IMG_CRC32_BOOT, "%u", aii.bl.nImgCRC32);
  125. TTRACE(PLUGIN_TAG_IMG_MATERIAL_BOOT, "%s", aii.bl.szImgMaterialNum);
  126. TTRACE(PLUGIN_TAG_IMG_BUILD_BOOT, "%s", aii.bl.szImgNameBuild);
  127. }
  128. else
  129. {
  130. TTRACE(PLUGIN_TAG_IMG_LENGTH_BOOT, "%u", 0);
  131. TTRACE(PLUGIN_TAG_IMG_CRC32_BOOT, "%u", 0);
  132. TTRACE(PLUGIN_TAG_IMG_MATERIAL_BOOT, "%s", "n/a");
  133. TTRACE(PLUGIN_TAG_IMG_BUILD_BOOT, "%s", "n/a");
  134. }
  135. if( (aii.app.nImgLength != 0xFFFFFFFF) &&
  136. (aii.app.nImgCRC32 != 0xFFFFFFFF) &&
  137. (*aii.app.szImgMaterialNum != 0xFF) &&
  138. (*aii.app.szImgNameBuild != 0xFF))
  139. {
  140. TTRACE(PLUGIN_TAG_IMG_LENGTH_APP, "%u", aii.app.nImgLength);
  141. TTRACE(PLUGIN_TAG_IMG_CRC32_APP, "%u", aii.app.nImgCRC32);
  142. TTRACE(PLUGIN_TAG_IMG_MATERIAL_APP, "%s", aii.app.szImgMaterialNum);
  143. TTRACE(PLUGIN_TAG_IMG_BUILD_APP, "%s", aii.app.szImgNameBuild);
  144. }
  145. else
  146. {
  147. TTRACE(PLUGIN_TAG_IMG_LENGTH_APP, "%u", 0);
  148. TTRACE(PLUGIN_TAG_IMG_CRC32_APP, "%u", 0);
  149. TTRACE(PLUGIN_TAG_IMG_MATERIAL_APP, "%s", "n/a");
  150. TTRACE(PLUGIN_TAG_IMG_BUILD_APP, "%s", "n/a");
  151. }
  152. }
  153. else
  154. {
  155. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  156. TTRACE1(GfaTfuStrError(errno));
  157. return nRet;
  158. }
  159. if(pcla->nExBaudrate != pcla->nInitBaudrate)
  160. {
  161. TRACE3("Setting baud-rate to %u.\n", pcla->nInitBaudrate);
  162. TTRACE3("Setting baud-rate to %u", pcla->nInitBaudrate);
  163. if((nRet = GfaBlmBootloaderSetBaudrate(hBlm, pcla->nNodeAddr, pcla->nInitBaudrate)) != 0)
  164. {
  165. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  166. TTRACE1(GfaTfuStrError(errno));
  167. return nRet;
  168. }
  169. }
  170. if(bStartApp)
  171. {
  172. TRACE3("Starting application.\n");
  173. TTRACE3("Starting application");
  174. if((nRet = GfaBlmBUCmdReset(hBlm, pcla->nNodeAddr, pcla->nInitBaudrate)) != 0)
  175. {
  176. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  177. TTRACE1(GfaTfuStrError(errno));
  178. return nRet;
  179. }
  180. }
  181. }
  182. return 0;
  183. }
  184. /////////////////////////////////////////////////////////////////////////////
  185. static int _ValidateImg(HIMGFILE hIf, HGFABLM hBlm, LPCCMD_LINE_ARGS pcla, GFA_BLM_EXEC_CONTEXT ctx)
  186. {
  187. int nRet;
  188. GFA_IMG_INFO ii;
  189. char szMaterial[16], szSerial[16];
  190. UNUSED(ctx);
  191. TRACE3("Reading material number.\n");
  192. TTRACE3("Reading material number");
  193. if((nRet = GfaBlmReadMaterialAndSerialID(hBlm, pcla->nNodeAddr, szMaterial, sizeof(szMaterial), szSerial, sizeof(szSerial))) != 0)
  194. {
  195. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  196. TTRACE1(GfaTfuStrError(errno));
  197. return nRet;
  198. }
  199. if(szMaterial[0] == '\xFF')
  200. strcpy(szMaterial, "n/a");
  201. if(szSerial[0] == '\xFF')
  202. strcpy(szSerial, "n/a");
  203. TTRACE(PLUGIN_TAG_IMG_MATERIAL_EEPROM, szMaterial);
  204. TTRACE(PLUGIN_TAG_IMG_SERIAL_EEPROM, szSerial);
  205. GfaTfuImageFileGetInfo(hIf, &ii);
  206. TRACE2("Material number target: \"%s\"\n", szMaterial);
  207. TRACE2("Material number file: \"%s\"\n", ii.szImgMaterialNum);
  208. TTRACE2("Material number target: \"%s\"", szMaterial);
  209. TTRACE2("Material number file: \"%s\"", ii.szImgMaterialNum);
  210. if(!GfaTfuImageFileMatchMaterialNum(hIf, szMaterial))
  211. {
  212. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  213. TTRACE1(GfaTfuStrError(errno));
  214. return -1;
  215. }
  216. TRACE2("\"%s\" - Image is valid for target @ node 0x%02hhX!\n", pcla->pszImgFileBase, pcla->nNodeAddr);
  217. TTRACE2("\"%s\" - Image is valid for target @ node 0x%02hhX", pcla->pszImgFileBase, pcla->nNodeAddr);
  218. return 0;
  219. }
  220. /////////////////////////////////////////////////////////////////////////////
  221. static int _ShowMatSer(HIMGFILE hIf, HGFABLM hBlm, LPCCMD_LINE_ARGS pcla, GFA_BLM_EXEC_CONTEXT ctx)
  222. {
  223. int nRet;
  224. char szMaterial[GFA_APP_MAX_IMG_MATERIAL_NUM_LENGTH], szSerial[GFA_APP_MAX_IMG_SERIAL_NUM_LENGTH];
  225. UNUSED(hIf);
  226. UNUSED(ctx);
  227. TRACE3("Reading material and serial number.\n");
  228. TTRACE3("Reading material and serial number");
  229. if((nRet = GfaBlmReadMaterialAndSerialID(hBlm, pcla->nNodeAddr, szMaterial, sizeof(szMaterial), szSerial, sizeof(szSerial))) != 0)
  230. {
  231. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  232. TTRACE1(GfaTfuStrError(errno));
  233. return nRet;
  234. }
  235. if(szMaterial[0] == '\xFF')
  236. strcpy(szMaterial, "n/a");
  237. if(szSerial[0] == '\xFF')
  238. strcpy(szSerial, "n/a");
  239. TRACE2("Material and Serial number:\n");
  240. TRACE2(" Material: \"%s\"\n", szMaterial);
  241. TRACE2(" Serial: \"%s\"\n", szSerial);
  242. TTRACE(PLUGIN_TAG_IMG_MATERIAL_EEPROM, szMaterial);
  243. TTRACE(PLUGIN_TAG_IMG_SERIAL_EEPROM, szSerial);
  244. return nRet;
  245. }
  246. /////////////////////////////////////////////////////////////////////////////
  247. static int _SetMatSer(HIMGFILE hIf, HGFABLM hBlm, LPCCMD_LINE_ARGS pcla, GFA_BLM_EXEC_CONTEXT ctx)
  248. {
  249. int nRet;
  250. bool bStartApp = false;
  251. if(ctx == GfaBlmCtx_App)
  252. {
  253. TRACE3("Starting bootloader.\n");
  254. if((nRet = GfaBlmBootloaderExecute(hBlm, pcla->nNodeAddr, NULL, 1000)) != 0)
  255. {
  256. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  257. TTRACE1(GfaTfuStrError(errno));
  258. return nRet;
  259. }
  260. bStartApp = true;
  261. }
  262. TRACE3("Setting material and serial number.\n");
  263. TRACE2(" Mat.Nr.: \"%s\"\n", pcla->pszMaterial);
  264. TRACE2(" Serial: \"%s\"\n", pcla->pszSerial);
  265. if((nRet = GfaBlmWriteMaterialAndSerialID(hBlm, pcla->nNodeAddr, pcla->pszMaterial, pcla->pszSerial)) != 0)
  266. {
  267. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  268. TTRACE1(GfaTfuStrError(errno));
  269. return nRet;
  270. }
  271. TRACE2("Material and serial number successfully set!\n");
  272. if(bStartApp)
  273. {
  274. TRACE3("Starting application.\n");
  275. if((nRet = GfaBlmBUCmdReset(hBlm, pcla->nNodeAddr, pcla->nInitBaudrate)) != 0)
  276. {
  277. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  278. TTRACE1(GfaTfuStrError(errno));
  279. return nRet;
  280. }
  281. }
  282. return _ShowMatSer(hIf, hBlm, pcla, ctx);
  283. }
  284. /////////////////////////////////////////////////////////////////////////////
  285. static int _Ping(HIMGFILE hIf, HGFABLM hBlm, LPCCMD_LINE_ARGS pcla, GFA_BLM_EXEC_CONTEXT ctx)
  286. {
  287. int nRet;
  288. time_t t;
  289. char szTime[64];
  290. struct timespec tsStart, tsEnd, ts = {0, 0};
  291. int64_t nIntervalBoot = 0, nIntervalMini = 0, nIntervalModB = 0;
  292. HGFAMINEMST hMst = GfaBlmGetMininetMasterHandle(hBlm);
  293. HMINETDEV hDev = GfaMininetMasterGetDeviceHandle(hMst);
  294. HGFAMBMST hMbm = NULL;
  295. GFA_SER_CFG_PARAMS scp, scpSave;
  296. UNUSED(hIf);
  297. if(ctx == GfaBlmCtx_ModB)
  298. {
  299. if(!(hMbm = GfaMbMstOpen(hMst, pcla->nModbBaudrate, pcla->modbParity, pcla->nModbusCtrlReg)))
  300. return -1;
  301. GfaMbMstSetVerbosity(hMbm, pcla->nVerbosity);
  302. if(GfaMininetDeviceGetConfigParams(hDev, &scp, sizeof(scp)) != sizeof(scp))
  303. {
  304. GfaMbMstClose(hMbm);
  305. return -1;
  306. }
  307. memcpy(&scpSave, &scp, sizeof(scpSave));
  308. scp.parity = pcla->modbParity;
  309. scp.baud = pcla->nModbBaudrate;
  310. if(GfaMininetDeviceSetConfigParams(hDev, &scp, sizeof(scp)) != 0)
  311. {
  312. GfaMbMstClose(hMbm);
  313. return -1;
  314. }
  315. }
  316. do
  317. {
  318. t = time(NULL);
  319. strftime(szTime, sizeof(szTime), "%T", localtime(&t));
  320. GfaTfuGetClock(&tsStart);
  321. if(ctx == GfaBlmCtx_ModB)
  322. {
  323. if((nRet = GfaMbMstPing(hMbm, pcla->nModbusSlvID)) == 0)
  324. {
  325. GfaTfuGetClock(&tsEnd);
  326. nIntervalModB = GfaTfuClockDiff(&tsEnd, &tsStart);
  327. TRACE2("Slave 0x%02hhX [%s] ping success [%.1f ms] - %s.\n", pcla->nModbusSlvID, _ABBR_MODBUS, (double)nIntervalModB / 1000000.0, szTime);
  328. TTRACE2("Slave 0x%02hhX [%s] ping success [%.1f ms] - %s", pcla->nModbusSlvID, _ABBR_MODBUS, (double)nIntervalModB / 1000000.0, szTime);
  329. }
  330. else
  331. {
  332. TRACE1("Slave 0x%02hhX [%s] ping error: %s - %s.\n", pcla->nModbusSlvID, _ABBR_MODBUS, GfaTfuStrError(errno), szTime);
  333. TTRACE1("Slave 0x%02hhX [%s] ping error: %s - %s", pcla->nModbusSlvID, _ABBR_MODBUS, GfaTfuStrError(errno), szTime);
  334. }
  335. }
  336. else if((nRet = GfaBlmMininetPing(hBlm, pcla->nNodeAddr)) == 0)
  337. {
  338. GfaTfuGetClock(&tsEnd);
  339. nIntervalMini = GfaTfuClockDiff(&tsEnd, &tsStart);
  340. GfaTfuGetClock(&tsStart);
  341. if((nRet = GfaBlmBUCmdPing(hBlm, pcla->nNodeAddr)) != 0)
  342. {
  343. if( (ctx == GfaBlmCtx_Boot) ||
  344. (errno != -MINET_SLAVE_STATUS_INDEX_INVALID_PARAM))
  345. {
  346. if(errno == -MINET_SLAVE_STATUS_INDEX_ERROR)
  347. {
  348. if((nRet = GfaBlmResetSlaveIndex(hBlm, pcla->nNodeAddr)) != 0)
  349. {
  350. TRACE1("Node 0x%02hhX [%s] ping error: %s - %s.\n", pcla->nNodeAddr, (ctx == GfaBlmCtx_Boot) ? _ABBR_BOOTLOADER : _ABBR_APPLICATION, GfaTfuStrError(errno), szTime);
  351. TTRACE1("Node 0x%02hhX [%s] ping error: %s - %s", pcla->nNodeAddr, (ctx == GfaBlmCtx_Boot) ? _ABBR_BOOTLOADER : _ABBR_APPLICATION, GfaTfuStrError(errno), szTime);
  352. break;
  353. }
  354. if((ctx = GfaBlmGetExecutionContext(hBlm, pcla->nNodeAddr)) == GfaBlmCtx_Err)
  355. {
  356. TRACE1("Node 0x%02hhX ping error: %s - %s.\n", pcla->nNodeAddr, GfaTfuStrError(errno), szTime);
  357. TTRACE1("Node 0x%02hhX ping error: %s - %s", pcla->nNodeAddr, GfaTfuStrError(errno), szTime);
  358. break;
  359. }
  360. continue;
  361. }
  362. }
  363. else
  364. {
  365. nRet = 0;
  366. }
  367. }
  368. if(nRet == 0)
  369. {
  370. GfaTfuGetClock(&tsEnd);
  371. nIntervalBoot = GfaTfuClockDiff(&tsEnd, &tsStart);
  372. TRACE2("Node 0x%02hhX [%s] ping success [%.1f ms] - %s.\n", pcla->nNodeAddr, (ctx == GfaBlmCtx_Boot) ? _ABBR_BOOTLOADER : _ABBR_APPLICATION, (double)nIntervalBoot / 1000000.0, szTime);
  373. TTRACE2("Node 0x%02hhX [%s] ping success [%.1f ms] - %s", pcla->nNodeAddr, (ctx == GfaBlmCtx_Boot) ? _ABBR_BOOTLOADER : _ABBR_APPLICATION, (double)nIntervalBoot / 1000000.0, szTime);
  374. }
  375. else
  376. {
  377. TRACE2("Node 0x%02hhX [%s] ping success [%.1f ms] - %s.\n", pcla->nNodeAddr, _ABBR_MININET, (double)nIntervalMini / 1000000.0, szTime);
  378. TTRACE2("Node 0x%02hhX [%s] ping success [%.1f ms] - %s", pcla->nNodeAddr, _ABBR_MININET, (double)nIntervalMini / 1000000.0, szTime);
  379. TRACE1("Node 0x%02hhX [%s] ping error: %s - %s.\n", pcla->nNodeAddr, (ctx == GfaBlmCtx_Boot) ? _ABBR_BOOTLOADER : _ABBR_APPLICATION, GfaTfuStrError(errno), szTime);
  380. TTRACE1("Node 0x%02hhX [%s] ping error: %s - %s", pcla->nNodeAddr, (ctx == GfaBlmCtx_Boot) ? _ABBR_BOOTLOADER : _ABBR_APPLICATION, GfaTfuStrError(errno), szTime);
  381. }
  382. }
  383. else
  384. {
  385. if(errno == -MINET_SLAVE_STATUS_INDEX_ERROR)
  386. {
  387. if((nRet = GfaBlmResetSlaveIndex(hBlm, pcla->nNodeAddr)) != 0)
  388. {
  389. TRACE1("Node 0x%02hhX [%s] ping error: %s - %s.\n", pcla->nNodeAddr, (ctx == GfaBlmCtx_Boot) ? _ABBR_BOOTLOADER : _ABBR_APPLICATION, GfaTfuStrError(errno), szTime);
  390. TTRACE1("Node 0x%02hhX [%s] ping error: %s - %s", pcla->nNodeAddr, (ctx == GfaBlmCtx_Boot) ? _ABBR_BOOTLOADER : _ABBR_APPLICATION, GfaTfuStrError(errno), szTime);
  391. break;
  392. }
  393. continue;
  394. }
  395. TRACE1("Node 0x%02hhX [%s] ping error: %s - %s.\n", pcla->nNodeAddr, _ABBR_MININET, GfaTfuStrError(errno), szTime);
  396. TTRACE1("Node 0x%02hhX [%s] ping error: %s - %s", pcla->nNodeAddr, _ABBR_MININET, GfaTfuStrError(errno), szTime);
  397. }
  398. if(pcla->nPingIntervalSec > 0)
  399. {
  400. ts.tv_sec = pcla->nPingIntervalSec;
  401. if(nanosleep(&ts, NULL) < 0)
  402. break;
  403. }
  404. }
  405. while(pcla->nPingIntervalSec && !g_bSig);
  406. if(hMbm)
  407. {
  408. GfaMbMstClose(hMbm);
  409. if(GfaMininetDeviceSetConfigParams(hDev, &scpSave, sizeof(scpSave)) != 0)
  410. return -1;
  411. }
  412. return nRet;
  413. }
  414. /////////////////////////////////////////////////////////////////////////////
  415. static int _UploadImg(HIMGFILE hIf, HGFABLM hBlm, LPCCMD_LINE_ARGS pcla, GFA_BLM_EXEC_CONTEXT ctx)
  416. {
  417. int nRet;
  418. uint32_t nCntFlashPages;
  419. size_t nImgLength;
  420. const void *pImgData;
  421. if((nRet = _ValidateImg(hIf, hBlm, pcla, ctx)) == 0)
  422. {
  423. if(ctx == GfaBlmCtx_App)
  424. {
  425. TRACE3("Starting bootloader.\n");
  426. TTRACE3("Starting bootloader");
  427. if((nRet = GfaBlmBootloaderExecute(hBlm, pcla->nNodeAddr, NULL, 1000)) != 0)
  428. {
  429. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  430. TTRACE1(GfaTfuStrError(errno));
  431. return nRet;
  432. }
  433. }
  434. if(pcla->nExBaudrate != pcla->nBootBaudrate)
  435. {
  436. TRACE3("Setting baud-rate to %u.\n", pcla->nExBaudrate);
  437. TTRACE3("Setting baud-rate to %u", pcla->nExBaudrate);
  438. if((nRet = GfaBlmBootloaderSetBaudrate(hBlm, pcla->nNodeAddr, pcla->nExBaudrate)) != 0)
  439. {
  440. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  441. TTRACE1(GfaTfuStrError(errno));
  442. return nRet;
  443. }
  444. }
  445. pImgData = GfaTfuImageFileGetData(hIf);
  446. nImgLength = GfaTfuImageFileGetSize(hIf);
  447. nCntFlashPages = (nImgLength + GFA_BOOTLOADER_FLASH_PAGE_SIZE - 1) / GFA_BOOTLOADER_FLASH_PAGE_SIZE;
  448. if((nRet = GfaBlmBUCmdDownload(hBlm, pcla->nNodeAddr, pcla->nStartAddr, nImgLength, nCntFlashPages * pcla->nPageErsaeTime)) == 0)
  449. {
  450. if((nRet = GfaBlmBUCmdSendData(hBlm, pcla->nNodeAddr, pImgData, nImgLength, pcla->nBlockSize)) != 0)
  451. {
  452. if(pcla->nExBaudrate != pcla->nBootBaudrate)
  453. {
  454. TRACE3("Trying to reset baud-rate to %u.\n", pcla->nBootBaudrate);
  455. TTRACE3("Trying to reset baud-rate to %u", pcla->nBootBaudrate);
  456. if((nRet = GfaBlmBootloaderSetBaudrate(hBlm, pcla->nNodeAddr, pcla->nBootBaudrate)) != 0)
  457. {
  458. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  459. TTRACE1(GfaTfuStrError(errno));
  460. }
  461. }
  462. return -1;
  463. }
  464. }
  465. else
  466. {
  467. if(pcla->nExBaudrate != pcla->nBootBaudrate)
  468. {
  469. TRACE3("Trying to reset baud-rate to %u.\n", pcla->nBootBaudrate);
  470. TTRACE3("Trying to reset baud-rate to %u", pcla->nBootBaudrate);
  471. if((nRet = GfaBlmBootloaderSetBaudrate(hBlm, pcla->nNodeAddr, pcla->nBootBaudrate)) != 0)
  472. {
  473. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  474. TTRACE1(GfaTfuStrError(errno));
  475. }
  476. }
  477. return -1;
  478. }
  479. TRACE3("Starting application.\n");
  480. TTRACE3("Starting application");
  481. if((nRet = GfaBlmBUCmdReset(hBlm, pcla->nNodeAddr, pcla->nInitBaudrate)) != 0)
  482. {
  483. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  484. TTRACE1(GfaTfuStrError(errno));
  485. return nRet;
  486. }
  487. }
  488. return nRet;
  489. }
  490. /////////////////////////////////////////////////////////////////////////////
  491. static int _ResetBootloader(HIMGFILE hIf, HGFABLM hBlm, LPCCMD_LINE_ARGS pcla, GFA_BLM_EXEC_CONTEXT ctx)
  492. {
  493. int nRet;
  494. UNUSED(hIf);
  495. if(ctx == GfaBlmCtx_App)
  496. {
  497. TRACE2("Application already executing!\n");
  498. TTRACE2("Application already executing");
  499. return 0; // no error
  500. }
  501. TRACE3("Resetting bootloader.\n");
  502. TTRACE3("Resetting bootloader");
  503. if((nRet = GfaBlmBUCmdReset(hBlm, pcla->nNodeAddr, pcla->nInitBaudrate)) != 0)
  504. {
  505. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  506. TTRACE1(GfaTfuStrError(errno));
  507. return nRet;
  508. }
  509. return 0;
  510. }
  511. /////////////////////////////////////////////////////////////////////////////
  512. static int _ReviveBootloader(HIMGFILE hIf, HGFABLM hBlm, LPCCMD_LINE_ARGS pcla, GFA_BLM_EXEC_CONTEXT ctx, bool bImplicitCall)
  513. {
  514. int nLen, nRet = 0, nCnt = 0;
  515. uint8_t nStatus;
  516. struct timespec ts = {0, 250000000};
  517. UNUSED(hIf);
  518. if(ctx == GfaBlmCtx_App)
  519. {
  520. TRACE1("Bootloader not executing!\n");
  521. TTRACE1("Bootloader not executing");
  522. return 0;
  523. }
  524. uint8_t data[128], frm[256], rx[256], cmd[256];
  525. size_t nCbData = sizeof(data);
  526. HGFAMINEMST hMst = GfaBlmGetMininetMasterHandle(hBlm);
  527. memset(data, 0, sizeof(data));
  528. if(!bImplicitCall)
  529. {
  530. TRACE2("Reviving bootloader.\n");
  531. TTRACE2("Reviving bootloader");
  532. }
  533. while(!g_bSig)
  534. {
  535. nLen = GfaBlmBuildCmdDataPacket("BU", 0, data, nCbData, cmd, sizeof(cmd), false);
  536. nLen = GfaMininetMasterBuildFrame(hMst, pcla->nNodeAddr, 0, cmd, nLen, frm, sizeof(frm));
  537. if((nRet = GfaMininetMasterTransmitFrame(hMst, frm, nLen)) != nLen)
  538. {
  539. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  540. TTRACE1(GfaTfuStrError(errno));
  541. return -1;
  542. }
  543. if((nRet = GfaMininetMasterReceiveFrame(hMst, rx, sizeof(rx), true)) <= 0)
  544. {
  545. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  546. TTRACE1(GfaTfuStrError(errno));
  547. return -1;
  548. }
  549. nRet = GfaMininetMasterEvaluateSlaveResponse(hMst, pcla->nNodeAddr, rx, nRet, true, &nStatus);
  550. if(nRet == MINET_SLAVE_RESPONSE_INDEX_IS_STATUS_CODE)
  551. {
  552. TRACE1("Error: %s!\n", GfaTfuStrError(-nStatus));
  553. TTRACE1(GfaTfuStrError(-nStatus));
  554. return -1;
  555. }
  556. else if(nRet == MINET_SLAVE_RESPONSE_SUCCESS)
  557. {
  558. nCbData = 0;
  559. }
  560. else if(nRet == MINET_SLAVE_RESPONSE_ACK)
  561. {
  562. nCbData = sizeof(data);
  563. ++nCnt;
  564. }
  565. if(nCnt >= 3)
  566. return 0;
  567. if(nanosleep(&ts, NULL) < 0)
  568. break;
  569. }
  570. return nRet;
  571. }
  572. /////////////////////////////////////////////////////////////////////////////
  573. static int _ModbusStartBootloader(HIMGFILE hIf, HGFABLM hBlm, LPCCMD_LINE_ARGS pcla, GFA_BLM_EXEC_CONTEXT ctx)
  574. {
  575. HGFAMINEMST hMst = GfaBlmGetMininetMasterHandle(hBlm);
  576. UNUSED(hIf);
  577. UNUSED(ctx);
  578. TRACE3("Starting bootloader.\n");
  579. TTRACE3("Starting bootloader");
  580. if(hMst)
  581. {
  582. HGFAMBMST hMbm = GfaMbMstOpen(hMst, pcla->nModbBaudrate, pcla->modbParity, pcla->nModbusCtrlReg);
  583. if(hMbm)
  584. {
  585. int nRet;
  586. GfaMbMstSetVerbosity(hMbm, pcla->nVerbosity);
  587. if((nRet = GfaMbMstBootloaderExecute(hMbm, pcla->nModbusSlvID)) == 0)
  588. {
  589. if(pcla->nNodeAddr)
  590. GfaMininetMasterResetLocalIndex(hMst, pcla->nNodeAddr);
  591. }
  592. else
  593. {
  594. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  595. TTRACE1(GfaTfuStrError(errno));
  596. }
  597. GfaMbMstClose(hMbm);
  598. return nRet;
  599. }
  600. }
  601. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  602. TTRACE1(GfaTfuStrError(errno));
  603. return -1;
  604. }
  605. /////////////////////////////////////////////////////////////////////////////
  606. static int _StartBootloader(HIMGFILE hIf, HGFABLM hBlm, LPCCMD_LINE_ARGS pcla, GFA_BLM_EXEC_CONTEXT ctx)
  607. {
  608. int nRet;
  609. if(ctx == GfaBlmCtx_Boot)
  610. {
  611. TRACE2("Bootloader already executing!\n");
  612. TTRACE2("Bootloader already executing");
  613. return 0; // no error
  614. }
  615. else if(ctx == GfaBlmCtx_ModB)
  616. {
  617. return _ModbusStartBootloader(hIf, hBlm, pcla, ctx);
  618. }
  619. TRACE3("Starting bootloader.\n");
  620. TTRACE3("Starting bootloader");
  621. if((nRet = GfaBlmBootloaderExecute(hBlm, pcla->nNodeAddr, NULL, 1000)) != 0)
  622. {
  623. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  624. TTRACE1(GfaTfuStrError(errno));
  625. return nRet;
  626. }
  627. return 0;
  628. }
  629. /////////////////////////////////////////////////////////////////////////////
  630. static bool _AutoBaud(HGFABLM hBlm, LPCMD_LINE_ARGS pcla)
  631. {
  632. const uint32_t nBaudrates[] = {19200, 9600, 38400, 57600, 115200, 230400, 4800, 460800/*, 921600, 50, 75, 110, 134, 150, 200, 300, 600, 1200, 1800, 2400*/};
  633. const uint8_t nParities[] = {'N', 'E', 'O'};
  634. size_t nCntParities = pcla->bForceAllParities ? _countof(nParities) : 1;
  635. HGFAMINEMST hMst = GfaBlmGetMininetMasterHandle(hBlm);
  636. HMINETDEV hDev = GfaMininetMasterGetDeviceHandle(hMst);
  637. if(hDev)
  638. {
  639. int nRet;
  640. size_t i, j;
  641. bool bBaudrateHit = false;
  642. struct timeval tvRX = {0, 100000};
  643. GFA_SER_CFG_PARAMS scp, scpSave;
  644. if(GfaMininetDeviceGetConfigParams(hDev, &scp, sizeof(scp)) != sizeof(scp))
  645. return false;
  646. memcpy(&scpSave, &scp, sizeof(scpSave));
  647. GfaMininetMasterSaveTimeouts(hMst);
  648. GfaMininetMasterSetTimeouts(hMst, &tvRX, NULL);
  649. for(i = 0; i < nCntParities; ++i)
  650. {
  651. scp.parity = nParities[i];
  652. for(j = 0; j < _countof(nBaudrates); ++j)
  653. {
  654. scp.baud = nBaudrates[j];
  655. TRACE4("MiniNet - Try to connect @ %u,8,1,%c\n", scp.baud, scp.parity);
  656. if(GfaMininetDeviceSetConfigParams(hDev, &scp, sizeof(scp)) != 0)
  657. {
  658. nRet = -1;
  659. break;
  660. }
  661. if((nRet = GfaBlmResetSlaveIndex(hBlm, pcla->nNodeAddr)) == 0)
  662. {
  663. pcla->nInitBaudrate = nBaudrates[j];
  664. if(!pcla->nExBaudrate)
  665. pcla->nExBaudrate = pcla->nInitBaudrate;
  666. bBaudrateHit = true;
  667. TRACE3("Detected MiniNet connection @ %u,8,1,%c\n", scp.baud, scp.parity);
  668. TTRACE3("Detected MiniNet connection @ %u,8,1,%c", scp.baud, scp.parity);
  669. break;
  670. }
  671. usleep(10000);
  672. }
  673. if(bBaudrateHit)
  674. break;
  675. }
  676. GfaMininetMasterRestoreTimeouts(hMst);
  677. if(nRet)
  678. {
  679. GfaMininetDeviceSetConfigParams(hDev, &scpSave, sizeof(scpSave));
  680. return false;
  681. }
  682. return true;
  683. }
  684. return false;
  685. }
  686. /////////////////////////////////////////////////////////////////////////////
  687. static bool _ModbusAutobaud(HGFABLM hBlm, LPCMD_LINE_ARGS pcla)
  688. {
  689. const uint32_t nBaudrates[] = {19200, 9600, 38400, 57600, 115200, 230400, 4800, 460800/*, 921600, 50, 75, 110, 134, 150, 200, 300, 600, 1200, 1800, 2400*/};
  690. const uint8_t nParities[] = {'E', 'O', 'N'};
  691. size_t nCntParities = pcla->bForceAllParities ? _countof(nParities) : 2;
  692. uint32_t i, j;
  693. HGFAMINEMST hMst = GfaBlmGetMininetMasterHandle(hBlm);
  694. HMINETDEV hDev = GfaMininetMasterGetDeviceHandle(hMst);
  695. if(hDev)
  696. {
  697. HGFAMBMST hMbm;
  698. GFA_SER_CFG_PARAMS scp, scpSave;
  699. if(GfaMininetDeviceGetConfigParams(hDev, &scp, sizeof(scp)) != sizeof(scp))
  700. return false;
  701. memcpy(&scpSave, &scp, sizeof(scpSave));
  702. hMbm = GfaMbMstOpen(hMst, pcla->nModbBaudrate, pcla->modbParity, pcla->nModbusCtrlReg);
  703. if(hMbm)
  704. {
  705. int nRet;
  706. bool bBaudrateHit = false;
  707. struct timeval tvRX = {0, 200000};
  708. GfaMbMstSetVerbosity(hMbm, pcla->nVerbosity);
  709. GfaMininetMasterSaveTimeouts(hMst);
  710. GfaMininetMasterSetTimeouts(hMst, &tvRX, NULL);
  711. for(i = 0; i < nCntParities; ++i)
  712. {
  713. scp.parity = nParities[i];
  714. for(j = 0; j < _countof(nBaudrates); ++j)
  715. {
  716. scp.baud = nBaudrates[j];
  717. TRACE4("Modbus - Try to connect @ %u,8,1,%c\n", scp.baud, scp.parity);
  718. if(GfaMininetDeviceSetConfigParams(hDev, &scp, sizeof(scp)) != 0)
  719. {
  720. nRet = -1;
  721. break;
  722. }
  723. if((nRet = GfaMbMstPing(hMbm, pcla->nModbusSlvID)) == 0)
  724. {
  725. pcla->modbParity = nParities[i];
  726. pcla->nModbBaudrate = nBaudrates[j];
  727. TRACE3("Detected Modbus application @ %u,8,1,%c\n", pcla->nModbBaudrate, pcla->modbParity);
  728. TTRACE3("Detected Modbus application @ %u,8,1,%c", pcla->nModbBaudrate, pcla->modbParity);
  729. bBaudrateHit = true;
  730. GfaMbMstWaitFrameDelay(hMbm);
  731. break;
  732. }
  733. GfaMbMstWaitFrameDelay(hMbm);
  734. }
  735. if(bBaudrateHit)
  736. break;
  737. }
  738. GfaMininetMasterRestoreTimeouts(hMst);
  739. GfaMbMstClose(hMbm);
  740. if(GfaMininetDeviceSetConfigParams(hDev, &scpSave, sizeof(scpSave)) != 0)
  741. return false;
  742. return (nRet == 0);
  743. }
  744. }
  745. return false;
  746. }
  747. /////////////////////////////////////////////////////////////////////////////
  748. static void _OnUploadProgress(const char *pszFile, int nLine, LPGFA_BLM_DL_PROGRESS_PARAMS pdlpp)
  749. {
  750. if(pdlpp)
  751. {
  752. static struct timespec tsStart, tsEnd;
  753. static uint32_t nBlockNr;
  754. static int nOldPerc;
  755. LPCCMD_LINE_ARGS pcla = (LPCCMD_LINE_ARGS)pdlpp->pParam;
  756. int64_t nInterval = 0;
  757. char szPercString[8];
  758. int nPerc;
  759. switch(pdlpp->nCtx)
  760. {
  761. case GBDPS_Error:
  762. UNUSED(pszFile);
  763. UNUSED(nLine);
  764. TRACE1("Error: %s!\n", GfaBlmStrError(pdlpp->nErrorCode));
  765. TTRACE1(GfaBlmStrError(pdlpp->nErrorCode));
  766. TTRACE(PLUGIN_TAG_UPLOAD_ERROR, "%d", pdlpp->nErrorCode);
  767. break;
  768. case GBDPS_StartEraseFlash:
  769. TRACE2("Start download of %u bytes to node 0x%02hhX @ address 0x%X.\n", pdlpp->nCbTotal, pdlpp->nNodeAddr, pdlpp->nFlashStartAddr);
  770. TRACE2("Erasing %u flash pages.\n", pdlpp->nCntFlashPages);
  771. TTRACE2("Start download of %u bytes to node 0x%02hhX @ address 0x%X", pdlpp->nCbTotal, pdlpp->nNodeAddr, pdlpp->nFlashStartAddr);
  772. TTRACE2("Erasing %u flash pages", pdlpp->nCntFlashPages);
  773. TTRACE(PLUGIN_TAG_UPLOAD_START_ERASE_FLASH, "%u|%u", pdlpp->nCntFlashPages, pdlpp->nCbTotal);
  774. GfaTfuGetClock(&tsStart);
  775. break;
  776. case GBDPS_EndEraseFlash:
  777. GfaTfuGetClock(&tsEnd);
  778. nInterval = GfaTfuClockDiff(&tsEnd, &tsStart);
  779. TRACE2("Erased %u flash pages in %lld ms (%.1f ms/page).\n", pdlpp->nCntFlashPages, nInterval / 1000000, ((double)nInterval / 1000000.0) / (double)pdlpp->nCntFlashPages);
  780. TTRACE2("Erased %u flash pages in %lld ms (%.1f ms/page)", pdlpp->nCntFlashPages, nInterval / 1000000, ((double)nInterval / 1000000.0) / (double)pdlpp->nCntFlashPages);
  781. TTRACE(PLUGIN_TAG_UPLOAD_END_ERASE_FLASH, "%u|%u", pdlpp->nCntFlashPages, pdlpp->nCbTotal);
  782. break;
  783. case GBDPS_StartUploadBlocks:
  784. nBlockNr = 0;
  785. nOldPerc = -1;
  786. TRACE2("Start sending data to node 0x%02hhX - block size: %u bytes.\n", pdlpp->nNodeAddr, pdlpp->nCbBlock);
  787. TTRACE2("Start sending data to node 0x%02hhX - block size: %u bytes", pdlpp->nNodeAddr, pdlpp->nCbBlock);
  788. TTRACE(PLUGIN_TAG_UPLOAD_BLOCKS_START, "%u", pdlpp->nCbBlock);
  789. GfaTfuGetClock(&tsStart);
  790. break;
  791. case GBDPS_UploadBlock:
  792. if(!pcla || !pcla->bNoProgressBlock)
  793. {
  794. if((nPerc = GfaTfuGetPercentString(pdlpp->nCbSent, pdlpp->nCbTotal, szPercString, sizeof(szPercString)))!= nOldPerc)
  795. {
  796. if((pcla->nVerbosity < 4) && (nBlockNr > 0))
  797. TRACE2("\b\b\b\b\b");
  798. TRACE2("%s", szPercString);
  799. nOldPerc = nPerc;
  800. }
  801. }
  802. ++nBlockNr;
  803. TTRACE(PLUGIN_TAG_UPLOAD_BLOCK, "%u|%u", pdlpp->nCbSent, nBlockNr);
  804. break;
  805. case GBDPS_EndUploadBlocks:
  806. GfaTfuGetClock(&tsEnd);
  807. nInterval = GfaTfuClockDiff(&tsEnd, &tsStart);
  808. if(!pcla || !pcla->bNoProgressBlock)
  809. TRACE2(" - Done.\n");
  810. TRACE2("Sent %u blocks to node 0x%02hhX in %llu ms (%.1f Kb/s).\n", nBlockNr, pdlpp->nNodeAddr, nInterval / 1000000, (double)pdlpp->nCbTotal / ((double)nInterval / 1000000000.0) / 1024.0);
  811. TTRACE2("Sent %u blocks to node 0x%02hhX in %llu ms (%.1f Kb/s)", nBlockNr, pdlpp->nNodeAddr, nInterval / 1000000, (double)pdlpp->nCbTotal / ((double)nInterval / 1000000000.0) / 1024.0);
  812. TTRACE(PLUGIN_TAG_UPLOAD_BLOCKS_END, "%u", nBlockNr);
  813. break;
  814. }
  815. }
  816. }
  817. /////////////////////////////////////////////////////////////////////////////
  818. /////////////////////////////////////////////////////////////////////////////
  819. /////////////////////////////////////////////////////////////////////////////
  820. int main(int argc, char* argv[])
  821. {
  822. int nRet = 0;
  823. HIMGFILE hIf = NULL; // Handle to the image file
  824. HGFABLM hBlm = NULL; // Handle to the bootloader master
  825. CMD_LINE_ARGS cla; // structure that receives all required options and parameters
  826. struct sigaction sa;
  827. /////////////////////////////////////////////////////////////////////////
  828. // process command line
  829. GfaTfuCmdOptInitOpts(&cla); // set options defaults
  830. GfaTfuCmdOptParse(argc, argv, &cla); // parse the command line
  831. if((nRet = GfaTfuCmdOptProcess(&cla)) != 0) // validate the options in their context
  832. {
  833. if(nRet > 0)
  834. {
  835. if(!cla.bPluginMode)
  836. {
  837. GfaTfuCmdOptDisplayHelp(cla.nQuestionMarks == 3); // show Help and exit
  838. return 0;
  839. }
  840. else
  841. {
  842. TTRACE1("Invalid command or option");
  843. TTRACEEXIT("1");
  844. return 1;
  845. }
  846. }
  847. else if(nRet == (int)GFA_FU_ERROR_MISSING_COMMAND_OPT) // A required option is missing
  848. {
  849. TRACE0("Error: %s: %s!\n", GfaTfuStrError(nRet), GfaTfuCmdOpt2String(cla.nMissingOptFlags));
  850. TTRACE1("%s: %s", GfaTfuStrError(nRet), GfaTfuCmdOpt2String(cla.nMissingOptFlags));
  851. }
  852. else if(nRet == (int)GFA_FU_ERROR_MULTIPLE_COMMANDS) // Multiple commands were given
  853. {
  854. TRACE0("Error: %s: %s!\n", GfaTfuStrError(nRet), GfaTfuCmdOpt2String(cla.nCmdFlags));
  855. TTRACE1("%s: %s", GfaTfuStrError(nRet), GfaTfuCmdOpt2String(cla.nCmdFlags));
  856. }
  857. else // Another error occured
  858. {
  859. TRACE0("Error: %s!\n", GfaTfuStrError(nRet));
  860. TTRACE1("%s", GfaTfuStrError(nRet));
  861. }
  862. TTRACEEXIT("%d", nRet);
  863. return nRet;
  864. }
  865. // At this point all command line options have been parsed and validated and the cla structure
  866. // contains all necessary parameters for the requested command.
  867. // Dump an overview of the provided command and the explicitly set options.
  868. GfaTfuCmdOptDumpOptions(&cla);
  869. /////////////////////////////////////////////////////////////////////////
  870. // configure signal handling
  871. memset(&sa, 0, sizeof(sa));
  872. sa.sa_handler = _SigHandler;
  873. sigaction(SIGHUP, &sa, NULL); // handle user's terminal disconnect
  874. sigaction(SIGQUIT, &sa, NULL); // handle Ctrl + '\'
  875. sigaction(SIGTERM, &sa, NULL); // handle normal termination
  876. sigaction(SIGABRT, &sa, NULL); // handle abnormal termination (i.e. abort())
  877. sigaction(SIGINT, &sa, NULL); // handle Ctrl + 'C'
  878. sa.sa_handler = SIG_IGN;
  879. sigaction(SIGTSTP, &sa, NULL); // ignore Ctrl + 'Z'
  880. sigaction(SIGSTOP, &sa, NULL); // ignore Stop
  881. sigaction(SIGCONT, &sa, NULL); // ignore Continue
  882. sigaction(SIGCHLD, &sa, NULL); // ignore child process termination
  883. sigaction(0, &sa, NULL); // ignore shell termination
  884. /////////////////////////////////////////////////////////////////////////
  885. do
  886. {
  887. GFA_BLM_CFG_PARAMS blmcp; // bootloader master configuration struct
  888. memset(&blmcp, 0, sizeof(blmcp));
  889. if(cla.bNeedImgFile) // If the given command requires an image file, open it.
  890. { // This also performs some basic validations on the file.
  891. GFA_IMG_INFO ii;
  892. TRACE3("Opening image file %s.\n", cla.pszImgFile);
  893. TTRACE3("Opening image file %s", cla.pszImgFile);
  894. if(!(hIf = GfaTfuImageFileOpen(cla.pszImgFile, cla.nStartAddr, true)))
  895. {
  896. TRACE1("Error: %s!\n", GfaTfuStrError(errno)); // Something is wrong with the file
  897. TTRACE1(GfaTfuStrError(errno));
  898. break;
  899. }
  900. GfaTfuImageFileGetInfo(hIf, &ii);
  901. TTRACE(PLUGIN_TAG_IMG_LENGTH_FILE, "%u", ii.nImgLength);
  902. TTRACE(PLUGIN_TAG_IMG_CRC32_FILE, "%u", ii.nImgCRC32);
  903. TTRACE(PLUGIN_TAG_IMG_MATERIAL_FILE, "%s", ii.szImgMaterialNum);
  904. TTRACE(PLUGIN_TAG_IMG_BUILD_FILE, "%s", ii.szImgNameBuild);
  905. if(cla.bShowFileImgInfo) // If only the file's image information was requested, dump it and exit.
  906. {
  907. GfaTfuDumpImageInfo(cla.pszImgFile, &ii);
  908. break;
  909. }
  910. }
  911. // As of this point we require a connection to the target.
  912. // In our case we request the serial device interface,
  913. // which is in turn used by the abstract mininet device
  914. if(GfaSerialGetDeviceInterface(&blmcp.mmcp.devcfg.itf))
  915. {
  916. GFA_SER_CFG_PARAMS scp; // serial device configuration parameters
  917. memset(&scp, 0, sizeof(scp));
  918. /////////////////////////////////////////////////////////////////
  919. // serial device configuration
  920. scp.baud = cla.nInitBaudrate; // open with default bootloader baud-rate
  921. scp.data = 8; // always use 8 data bits
  922. scp.stop = 1; // always use 1 stop bit
  923. scp.parity = 'N'; // open with mininet default
  924. #ifdef _TARGET_BUILD
  925. scp.bHandleTxEcho = true; // On GfA Sitara targets we have to handle transmit echo!
  926. scp.bIsRS485 = true; // Interface is a RS485
  927. #endif // _TARGET_BUILD
  928. /////////////////////////////////////////////////////////////////
  929. // mininet master device configuration
  930. // since the mininet master handles the opening and closing of the
  931. // mininet device, which is the abstraction layer of our physical
  932. // device and in turn handles our serial device, we provide the
  933. // appropriate parameters.
  934. blmcp.mmcp.devcfg.pszDeviceName = cla.pszDevName; // name of the interface, i.e. "/dev/ttyO4"
  935. blmcp.mmcp.devcfg.pDevParams = &scp; // pointer to the serial device configuration parameters
  936. blmcp.mmcp.devcfg.nSizeDevParams = sizeof(scp); // size of the serial device configuration parameters
  937. /////////////////////////////////////////////////////////////////
  938. // bootloader master configuration
  939. blmcp.pfnDlProgress = _OnUploadProgress; // progress output function for the image upload
  940. blmcp.pUserParam = &cla; // will be passed to the progress function
  941. /////////////////////////////////////////////////////////////////
  942. // open a bootloader master instance
  943. TRACE3("Opening bootloader master.\n");
  944. TTRACE3("Opening bootloader master");
  945. if((hBlm = GfaBlmOpen(&blmcp)))
  946. {
  947. // At this point the bootloader master, the mininet master and the mininet device
  948. // have been opened and initialized successfully
  949. GFA_BLM_EXEC_CONTEXT ctx;
  950. bool bModbusAppDetected = false;
  951. GfaBlmSetVerbosity(hBlm, cla.nVerbosity); // Set the verbosity of the bootloader master and it's descendants
  952. TRACE3("Connecting to target.\n");
  953. TTRACE3("Connecting to target");
  954. if(!_AutoBaud(hBlm, &cla)) // Try to detect the mininet baudrate and parity
  955. {
  956. // If no mininet connection could be detected, try to scan for a modbus connection, given that
  957. // a valid modbus slave-id has been provided.
  958. if( !MODBUS_IS_VALID_SLAVE_ID(cla.nModbusSlvID) ||
  959. !(bModbusAppDetected = _ModbusAutobaud(hBlm, &cla)))
  960. {
  961. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  962. TTRACE1(GfaTfuStrError(errno));
  963. break;
  964. }
  965. }
  966. if(bModbusAppDetected)
  967. {
  968. // A modbus application is running on the target
  969. ctx = GfaBlmCtx_ModB;
  970. // Most (but not all) of the commands require the bootloader to be started implicitly, especially when a modbus application is running,
  971. // which is not capable of any command that even a minintet application could handle
  972. if(cla.bUploadImg || cla.bShowDevImgInfo || cla.bValidateImg || cla.bShowMatSer || cla.bSetMatSer)
  973. {
  974. if((nRet = _ModbusStartBootloader(hIf, hBlm, &cla, ctx)) != 0)
  975. break;
  976. ctx = GfaBlmCtx_Boot;
  977. }
  978. else if(!cla.bPing && !cla.bStartBoot) // Ping works with a modbus application as well, so there's no need to start the bootloader.
  979. { // --start-boot is an explicit command on it's own and is handled later.
  980. TRACE2("Nothing to do.\n"); // At this point either a --reset-boot or --revive-boot command was given. Both commands make no sense when any
  981. TTRACE2("Nothing to do"); // kind of application is running, so just exit.
  982. break;
  983. }
  984. }
  985. else
  986. {
  987. // No modbus application was detected, so we are dealing either with a mininet application or the bootloader itself. Find out what ...
  988. TRACE3("Detecting running image.\n");
  989. TTRACE3("Detecting running image");
  990. ctx = GfaBlmGetExecutionContext(hBlm, cla.nNodeAddr);
  991. if((ctx == GfaBlmCtx_Err) || (ctx == GfaBlmCtx_Boot))
  992. {
  993. // Either an error was returned, or the bootloader is running.
  994. // In the latter case, we don't know yet, if it is in a responsive state, because the detection
  995. // involved mininet communication only! We force the bootloader into a working state preventively.
  996. // If the bootloader has already been working correctly, nothing will happen.
  997. if((nRet = _ReviveBootloader(hIf, hBlm, &cla, ctx, true)) != 0)
  998. {
  999. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  1000. TTRACE1(GfaTfuStrError(errno));
  1001. break;
  1002. }
  1003. ctx = GfaBlmCtx_Boot;
  1004. }
  1005. TRACE3("Currently running: %s.\n", (ctx == GfaBlmCtx_App) ? "Application" : "Bootloader");
  1006. TTRACE3("Currently running: %s", (ctx == GfaBlmCtx_App) ? "Application" : "Bootloader");
  1007. }
  1008. // handle the commands
  1009. if(cla.bUploadImg)
  1010. nRet = _UploadImg(hIf, hBlm, &cla, ctx); // handle --upload-img
  1011. else if(cla.bValidateImg)
  1012. nRet = _ValidateImg(hIf, hBlm, &cla, ctx); // handle --validate-img
  1013. else if(cla.bShowDevImgInfo)
  1014. nRet = _ShowDevImgInfo(hIf, hBlm, &cla, ctx); // handle --show-dev-img-info
  1015. else if(cla.bShowMatSer)
  1016. nRet = _ShowMatSer(hIf, hBlm, &cla, ctx); // handle --show-mat-ser
  1017. else if(cla.bSetMatSer)
  1018. nRet = _SetMatSer(hIf, hBlm, &cla, ctx); // handle --set-mat-ser
  1019. else if(cla.bPing)
  1020. nRet = _Ping(hIf, hBlm, &cla, ctx); // handle --ping-target
  1021. else if(cla.bStartBoot)
  1022. nRet = _StartBootloader(hIf, hBlm, &cla, ctx); // handle --start-boot
  1023. else if(cla.bResetBoot)
  1024. nRet = _ResetBootloader(hIf, hBlm, &cla, ctx); // handle --reset-boot
  1025. else if(cla.bReviveBoot)
  1026. nRet = _ReviveBootloader(hIf, hBlm, &cla, ctx, false); // handle --revive-boot
  1027. }
  1028. else
  1029. { // GfaBlmOpen failed
  1030. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  1031. TTRACE1(GfaTfuStrError(errno));
  1032. break;
  1033. }
  1034. }
  1035. else
  1036. { // GfaSerialGetDeviceInterface failed
  1037. TRACE1("Error: %s!\n", GfaTfuStrError(errno));
  1038. TTRACE1(GfaTfuStrError(errno));
  1039. break;
  1040. }
  1041. }
  1042. while(false);
  1043. if(hBlm)
  1044. {
  1045. TRACE3("Closing bootloader master.\n");
  1046. TTRACE3("Closing bootloader master");
  1047. GfaBlmClose(hBlm);
  1048. }
  1049. if(hIf)
  1050. {
  1051. TRACE3("Closing image file.\n");
  1052. TTRACE3("Closing image file");
  1053. GfaTfuImageFileClose(hIf);
  1054. }
  1055. TTRACEEXIT("%d", nRet);
  1056. return nRet;
  1057. }