fpc_sw_repair2sw.c 12 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360
  1. #include <platform/mt_reg_base.h>
  2. #include <platform/mt_typedefs.h>
  3. #include <platform/mtk_wdt.h>
  4. #include <platform/mt_gpt.h>
  5. #include <platform/ddp_hal.h>
  6. #include <printf.h>
  7. #define MBIST_CHK_SRAM_REPAIRED 1
  8. #define MBIST_CHK_SRAM_NOT_REPAIR 0
  9. #define CHECK_OR_ALL_ONE 1
  10. #define CHECK_AND_ALL_ZERO 0
  11. struct sram_repair_chk_items {
  12. UINT32 addr;
  13. UINT32 mask;
  14. UINT32 rule;
  15. const char *name;
  16. };
  17. struct sram_repair_chk_items chk_items_not_repair[]= {
  18. {0x12000024, 0xfffff800, CHECK_OR_ALL_ONE, "MJC_MBIST_DONE"},
  19. {0x2011002c, 0xfffff801, CHECK_OR_ALL_ONE, "MDMCU_MBIST_DONE"},
  20. {0x2405001c, 0x897fffff, CHECK_OR_ALL_ONE, "TDD_MBIST_DONE"},
  21. {0x26706038, 0x00000001, CHECK_OR_ALL_ONE, "MML1_FC1_MBIST_DONE_0"},
  22. {0x2670603c, 0xffffe3e0, CHECK_OR_ALL_ONE, "MML1_FC1_MBIST_DONE_1"},
  23. {0x26716034, 0xf0000001, CHECK_OR_ALL_ONE, "MML1_BC1_MBIST_DONE_0"},
  24. {0x26726060, 0x00000001, CHECK_OR_ALL_ONE, "MML1_MC1_MBIST_DONE_0"},
  25. {0x26726064, 0x00000078, CHECK_OR_ALL_ONE, "MML1_MC1_MBIST_DONE_1"},
  26. {0x26726068, 0xfffffffe, CHECK_OR_ALL_ONE, "MML1_MC1_MBIST_DONE_2"},
  27. {0x26736034, 0xfffe0001, CHECK_OR_ALL_ONE, "MML1_FC2_MBIST_DONE_0"},
  28. {0x26736038, 0xfffffffe, CHECK_OR_ALL_ONE, "MML1_FC2_MBIST_DONE_1"},
  29. {0x2674602c, 0xfe000001, CHECK_OR_ALL_ONE, "MML1_MC2_MBIST_DONE_0"},
  30. {0x26756030, 0xf0000001, CHECK_OR_ALL_ONE, "MML1_MC3_MBIST_DONE_0"},
  31. };
  32. struct sram_repair_chk_items chk_items_repaired[]= {
  33. {0x12000024, 0xfffff800, CHECK_OR_ALL_ONE, "MJC_MBIST_DONE"},
  34. {0x12000028, 0xfffffffe, CHECK_AND_ALL_ZERO, "MJC_MBIST_FAIL_0"},
  35. {0x1200002c, 0xffffffff, CHECK_AND_ALL_ZERO, "MJC_MBIST_FAIL_1"},
  36. {0x12000030, 0xffffffff, CHECK_AND_ALL_ZERO, "MJC_MBIST_FAIL_2"},
  37. {0x2011002c, 0xfffff801, CHECK_OR_ALL_ONE, "MDMCU_MBIST_DONE"},
  38. {0x20110030, 0xfffffffe, CHECK_AND_ALL_ZERO, "MDMCU_MBIST_FAIL_0"},
  39. {0x20110034, 0xffffffff, CHECK_AND_ALL_ZERO, "MDMCU_MBIST_FAIL_1"},
  40. {0x20110038, 0xffffffff, CHECK_AND_ALL_ZERO, "MDMCU_MBIST_FAIL_2"},
  41. {0x2011003c, 0xffffffff, CHECK_AND_ALL_ZERO, "MDMCU_MBIST_FAIL_3"},
  42. {0x2405001c, 0x897fffff, CHECK_OR_ALL_ONE, "TDD_MBIST_DONE"},
  43. {0x24050030, 0xf7980000, CHECK_AND_ALL_ZERO, "TDD_MBIST_FAIL_3"},
  44. {0x24050034, 0x00000001, CHECK_AND_ALL_ZERO, "TDD_MBIST_FAIL_4"},
  45. {0x26706038, 0x00000001, CHECK_OR_ALL_ONE, "MML1_FC1_MBIST_DONE_0"},
  46. {0x2670603c, 0xffffe3e0, CHECK_OR_ALL_ONE, "MML1_FC1_MBIST_DONE_1"},
  47. {0x26706040, 0xfffffffe, CHECK_AND_ALL_ZERO, "MML1_FC1_MBIST_FAIL_0"},
  48. {0x26706044, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_FC1_MBIST_FAIL_1"},
  49. {0x26706048, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_FC1_MBIST_FAIL_2"},
  50. {0x2670604c, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_FC1_MBIST_FAIL_3"},
  51. {0x26706050, 0x00007801, CHECK_AND_ALL_ZERO, "MML1_FC1_MBIST_FAIL_4"},
  52. {0x26716034, 0xf0000001, CHECK_OR_ALL_ONE, "MML1_BC1_MBIST_DONE_0"},
  53. {0x26716038, 0xfffffffe, CHECK_AND_ALL_ZERO, "MML1_BC1_MBIST_FAIL_0"},
  54. {0x2671603c, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_BC1_MBIST_FAIL_1"},
  55. {0x26716040, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_BC1_MBIST_FAIL_2"},
  56. {0x26716044, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_BC1_MBIST_FAIL_3"},
  57. {0x26716048, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_BC1_MBIST_FAIL_4"},
  58. {0x2671604c, 0x3fffffff, CHECK_AND_ALL_ZERO, "MML1_BC1_MBIST_FAIL_5"},
  59. {0x26726060, 0x00000001, CHECK_OR_ALL_ONE, "MML1_MC1_MBIST_DONE_0"},
  60. {0x26726064, 0x00000078, CHECK_OR_ALL_ONE, "MML1_MC1_MBIST_DONE_1"},
  61. {0x26726068, 0xfffffffe, CHECK_OR_ALL_ONE, "MML1_MC1_MBIST_DONE_2"},
  62. {0x2672606c, 0x0000007e, CHECK_AND_ALL_ZERO, "MML1_MC1_MBIST_FAIL_0"},
  63. {0x26726070, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_MC1_MBIST_FAIL_1"},
  64. {0x26726074, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_MC1_MBIST_FAIL_2"},
  65. {0x26726078, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_MC1_MBIST_FAIL_3"},
  66. {0x2672607c, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_MC1_MBIST_FAIL_4"},
  67. {0x26726080, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_MC1_MBIST_FAIL_5"},
  68. {0x26726084, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_MC1_MBIST_FAIL_6"},
  69. {0x26726088, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_MC1_MBIST_FAIL_7"},
  70. {0x2672608c, 0xe0001fff, CHECK_AND_ALL_ZERO, "MML1_MC1_MBIST_FAIL_8"},
  71. {0x26726090, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_MC1_MBIST_FAIL_9"},
  72. {0x26726094, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_MC1_MBIST_FAIL_A"},
  73. {0x26726098, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_MC1_MBIST_FAIL_B"},
  74. {0x26736034, 0xfffe0001, CHECK_OR_ALL_ONE, "MML1_FC2_MBIST_DONE_0"},
  75. {0x26736038, 0xfffffffe, CHECK_OR_ALL_ONE, "MML1_FC2_MBIST_DONE_1"},
  76. {0x2673603c, 0xfffffffe, CHECK_AND_ALL_ZERO, "MML1_FC2_MBIST_FAIL_0"},
  77. {0x26736040, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_FC2_MBIST_FAIL_1"},
  78. {0x26736044, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_FC2_MBIST_FAIL_2"},
  79. {0x26736048, 0x00000003, CHECK_AND_ALL_ZERO, "MML1_FC2_MBIST_FAIL_3"},
  80. {0x2674602c, 0xfe000001, CHECK_OR_ALL_ONE, "MML1_MC2_MBIST_DONE_0"},
  81. {0x26746030, 0xfffffffe, CHECK_AND_ALL_ZERO, "MML1_MC2_MBIST_FAIL_0"},
  82. {0x26746034, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_MC2_MBIST_FAIL_1"},
  83. {0x26746038, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_MC2_MBIST_FAIL_2"},
  84. {0x2674603c, 0x003fffff, CHECK_AND_ALL_ZERO, "MML1_MC2_MBIST_FAIL_3"},
  85. {0x26756030, 0xf0000001, CHECK_OR_ALL_ONE, "MML1_MC3_MBIST_DONE_0"},
  86. {0x26756034, 0xfffffffe, CHECK_AND_ALL_ZERO, "MML1_MC3_MBIST_FAIL_0"},
  87. {0x26756038, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_MC3_MBIST_FAIL_1"},
  88. {0x2675603c, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_MC3_MBIST_FAIL_2"},
  89. {0x26756040, 0xffffffff, CHECK_AND_ALL_ZERO, "MML1_MC3_MBIST_FAIL_3"},
  90. {0x26756044, 0x01ffffff, CHECK_AND_ALL_ZERO, "MML1_MC3_MBIST_FAIL_4"},
  91. };
  92. int sram_mbist_chk_result(int sarm_repaired)
  93. {
  94. int error = 0;
  95. int size, i;
  96. volatile UINT32 data;
  97. struct sram_repair_chk_items *chk, *chk_end;
  98. //give size and chk default value of MBIST_CHK_SRAM_NOT_REPAIR
  99. size = sizeof(chk_items_not_repair)/ sizeof(struct sram_repair_chk_items);
  100. chk = &chk_items_not_repair[0];
  101. switch (sarm_repaired) {
  102. case MBIST_CHK_SRAM_REPAIRED:
  103. size = sizeof(chk_items_repaired)/ sizeof(struct sram_repair_chk_items);
  104. chk = &chk_items_repaired[0];
  105. break;
  106. }
  107. chk_end = chk + size;
  108. while (chk < chk_end) {
  109. if (chk->rule == CHECK_OR_ALL_ONE) {
  110. /* CHECK_OR_ALL_ONE */
  111. data = *((UINT32P)chk->addr) | chk->mask;
  112. if (~data) {
  113. dprintf(CRITICAL, "%s: 0x%x.\n", chk->name, data);
  114. error = 1;
  115. }
  116. } else {
  117. /* CHECK_AND_ALL_ZERO */
  118. data = *((UINT32P)chk->addr) & chk->mask;
  119. if (data) {
  120. dprintf(CRITICAL, "%s: 0x%x.\n", chk->name, data);
  121. error = 1;
  122. }
  123. }
  124. chk++;
  125. }
  126. if (error) {
  127. dprintf(CRITICAL, "ERROR!!!\n");
  128. dprintf(CRITICAL, "MBIST %s sram repair --- failed\n", sarm_repaired == MBIST_CHK_SRAM_NOT_REPAIR ? "before" : "after");
  129. }
  130. return error;
  131. }
  132. int skip_sw_sram_repair(void)
  133. {
  134. UINT32 value = get_devinfo_with_index(5);
  135. /* bit 28:
  136. * 0: skip sw_sram_repair
  137. * 1: run sw_sram_repair routine
  138. */
  139. value &= (0x1 << 28);
  140. return value ? 0 : 1;
  141. }
  142. int repair_sram(void)
  143. {
  144. volatile UINT32 rdata;
  145. UINT32 rstd_reg;
  146. int error = 0;
  147. if (skip_sw_sram_repair()) {
  148. dprintf(CRITICAL, "SKIP sw sram repair\n");
  149. return error;
  150. }
  151. dprintf(CRITICAL, "repair_sram START\n");
  152. dprintf(INFO, "TURN ON MD and MJC MTCMOS\n");
  153. *((UINT32P)0x10006000) = 0x0b160001;
  154. dprintf(INFO, "TURN ON MMSYS\n");
  155. *((UINT32P)0x1000623c) = 0x00000f16;
  156. *((UINT32P)0x1000623c) = 0x00000f1e;
  157. *((UINT32P)0x1000623c) = 0x00000f0e;
  158. *((UINT32P)0x1000623c) = 0x00000f0c;
  159. *((UINT32P)0x1000623c) = 0x00000f0d;
  160. *((UINT32P)0x1000623c) = 0x00000e0d;
  161. *((UINT32P)0x1000623c) = 0x00000c0d;
  162. *((UINT32P)0x1000623c) = 0x0000080d;
  163. *((UINT32P)0x1000623c) = 0x0000000d;
  164. dprintf(INFO, "TURN ON MJC\n");
  165. *((UINT32P)0x10006298) = 0x00000f16;
  166. *((UINT32P)0x10006298) = 0x00000f1e;
  167. *((UINT32P)0x10006298) = 0x00000f0e;
  168. *((UINT32P)0x10006298) = 0x00000f0c;
  169. *((UINT32P)0x10006298) = 0x00000f0d;
  170. *((UINT32P)0x10006298) = 0x00000e0d;
  171. *((UINT32P)0x10006298) = 0x00000c0d;
  172. *((UINT32P)0x10006298) = 0x0000080d;
  173. *((UINT32P)0x10006298) = 0x0000000d;
  174. udelay(10);
  175. dprintf(INFO, "APPLL alreasy ON\n");
  176. dprintf(INFO, "MDPLL turn ON\n");
  177. *((UINT32P)0x201200ac) = 0x000001FF;
  178. *((UINT32P)0x2012004c) = 0x8300;
  179. *((UINT32P)0x20120028) = 0x0070;
  180. udelay(2);
  181. *((UINT32P)0x2012004c) = 0x0000;
  182. *((UINT32P)0x20120028) = 0x0000;
  183. *((UINT32P)0x20120048) = 0x0;
  184. *((UINT32P)0x20120024) = 0x10;
  185. *((UINT32P)0x20120700) = 0x10;
  186. *((UINT32P)0x20120050) = 0x13;
  187. *((UINT32P)0x20120054) = 0x0A25;
  188. udelay(3);
  189. *((UINT32P)0x20120208) = 0x8050;
  190. *((UINT32P)0x20120100) = 0x0000c70f;
  191. *((UINT32P)0x20120140) = 0x00008410;
  192. *((UINT32P)0x201201c0) = 0x00008800;
  193. *((UINT32P)0x20120200) = 0x00008800;
  194. *((UINT32P)0x20120150) = 0x00008810;
  195. *((UINT32P)0x201201E0) = 0x00008410;
  196. udelay(10);
  197. *((UINT32P)0x2012003C) = 0x0113;
  198. *((UINT32P)0x2012003C) = 0x0133;
  199. *((UINT32P)0x2012003C) = 0x5133;
  200. *((UINT32P)0x20120100) &= (~0x00008000);
  201. *((UINT32P)0x20120110) = 0x0002;
  202. *((UINT32P)0x20120100) |= 0x00008000;
  203. *((UINT32P)0x2012008C) = 0xC100;
  204. *((UINT32P)0x2000045c) = 0x21008510;
  205. *((UINT32P)0x20120060) = 0x2020;
  206. *((UINT32P)0x20120064) = 0x2000;
  207. *((UINT32P)0x20120068) = 0x6F40;
  208. *((UINT32P)0x2012006c) = 0x0423;
  209. *((UINT32P)0x20120094) = 0x4500;
  210. *((UINT32P)0x20120098) = 0x0020;
  211. *((UINT32P)0x2012009C) = 0x0003;
  212. *((UINT32P)0x201200A0) = 0x0001;
  213. *((UINT32P)0x201200A4) = 0x00FF;
  214. *((UINT32P)0x20000458) = 0xFFF50147;
  215. udelay(20);
  216. dprintf(INFO, "disable MJC DCM\n");
  217. *((UINT32P)0x12000000) = 0x00000000;
  218. *((UINT32P)0x12000010) = 0xffffffff;
  219. dprintf(INFO, "Turn ON TDD clock\n");
  220. *((UINT16P)0x24000422) = 0x4911;
  221. *((UINT16P)0x24000422) = 0xc911;
  222. dprintf(INFO, "enable mbist\n");
  223. // MJC
  224. *((UINT32P)0x12000040) = 0x00000000;
  225. *((UINT32P)0x12000040) = 0x00010000;
  226. *((UINT32P)0x12000050) = 0x00000000;
  227. *((UINT32P)0x12000050) = 0x00000001;
  228. *((UINT32P)0x12000038) = 0x00000000;
  229. *((UINT32P)0x12000038) = 0x000007ff;
  230. // MDMCU
  231. *((UINT32P)0x200004B0) = 0x00000001;
  232. *((UINT32P)0x20110074) = 0x00000000;
  233. *((UINT32P)0x20110074) = 0x00000007;
  234. // TDD
  235. *((UINT32P)0x24050068) = 0x00000000;
  236. *((UINT32P)0x24050068) = 0x00000001;
  237. *((UINT32P)0x24050000) = 0x3b400000;
  238. // MML1
  239. *((UINT32P)0x2670600c) = 0x00000000;
  240. *((UINT32P)0x2673600c) = 0x00000000;
  241. *((UINT32P)0x26716008) = 0x00000000;
  242. *((UINT32P)0x26726010) = 0x00000000;
  243. *((UINT32P)0x26746008) = 0x00000000;
  244. *((UINT32P)0x26756008) = 0x00000000;
  245. *((UINT32P)0x26756008) = 0x00000000;
  246. *((UINT32P)0x20110074) = 0x00000000;
  247. *((UINT32P)0x20110074) = 0x00000007;
  248. *((UINT32P)0x200004B0) = 0x00000201;
  249. udelay(1000);
  250. dprintf(INFO, "1. AFTER MBIST_RUN\n");
  251. error = sram_mbist_chk_result(MBIST_CHK_SRAM_NOT_REPAIR);
  252. if (error)
  253. return error;
  254. dprintf(INFO, "infra fuse_latch\n");
  255. *((UINT32P)0x100011a8) |= 0x00080000;
  256. dprintf(INFO, "mdmcu fuse_latch\n");
  257. *((UINT32P)0x200004b0) = 0x00000008;
  258. dprintf(INFO, "tdd fuse_latch\n");
  259. *((UINT16P)0x2400001e) = 0x004d;
  260. dprintf(INFO, "mml1 fuse_latch\n");
  261. *((UINT32P)0x26612028) = 0x00000004;
  262. *((UINT32P)0x2660202c) = 0x00000004;
  263. *((UINT32P)0x26632024) = 0x00000004;
  264. *((UINT32P)0x26622040) = 0x00000004;
  265. *((UINT32P)0x26642028) = 0x00000004;
  266. *((UINT32P)0x26652028) = 0x00000004;
  267. *((UINT32P)0x26652028) = 0x00000004;
  268. *((UINT32P)0x26612028) = 0x00000000;
  269. *((UINT32P)0x2660202c) = 0x00000000;
  270. *((UINT32P)0x26632024) = 0x00000000;
  271. *((UINT32P)0x26622040) = 0x00000000;
  272. *((UINT32P)0x26642028) = 0x00000000;
  273. *((UINT32P)0x26652028) = 0x00000000;
  274. *((UINT32P)0x26652028) = 0x00000000;
  275. dprintf(INFO, "rerun mbist\n");
  276. // MJC
  277. *((UINT32P)0x12000040) = 0x00000000;
  278. *((UINT32P)0x12000040) = 0x00010000;
  279. *((UINT32P)0x12000050) = 0x00000000;
  280. *((UINT32P)0x12000050) = 0x00000001;
  281. *((UINT32P)0x12000038) = 0x00000000;
  282. *((UINT32P)0x12000038) = 0x000007ff;
  283. // MDMCU
  284. *((UINT32P)0x200004B0) = 0x00000001;
  285. *((UINT32P)0x20110074) = 0x00000000;
  286. *((UINT32P)0x20110074) = 0x00000007;
  287. // TDD
  288. *((UINT32P)0x24050068) = 0x00000000;
  289. *((UINT32P)0x24050000) = 0x00000000;
  290. *((UINT32P)0x24050068) = 0x00000001;
  291. *((UINT32P)0x24050000) = 0x3b400000;
  292. // MML1
  293. *((UINT32P)0x20110074) = 0x00000000;
  294. *((UINT32P)0x20110074) = 0x00000007;
  295. *((UINT32P)0x200004B0) = 0x00000201;
  296. udelay(1000);
  297. dprintf(INFO, "2. AFTER MBIST_RERUN\n");
  298. error = sram_mbist_chk_result(MBIST_CHK_SRAM_REPAIRED);
  299. dprintf(CRITICAL, "repair_sram END\n");
  300. return error;
  301. }