ccci_ld_md_padding.c 21 KB

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  1. /* Copyright Statement:
  2. *
  3. * This software/firmware and related documentation ("MediaTek Software") are
  4. * protected under relevant copyright laws. The information contained herein
  5. * is confidential and proprietary to MediaTek Inc. and/or its licensors.
  6. * Without the prior written permission of MediaTek inc. and/or its licensors,
  7. * any reproduction, modification, use or disclosure of MediaTek Software,
  8. * and information contained herein, in whole or in part, shall be strictly prohibited.
  9. */
  10. /* MediaTek Inc. (C) 2015. All rights reserved.
  11. *
  12. * BY OPENING THIS FILE, RECEIVER HEREBY UNEQUIVOCALLY ACKNOWLEDGES AND AGREES
  13. * THAT THE SOFTWARE/FIRMWARE AND ITS DOCUMENTATIONS ("MEDIATEK SOFTWARE")
  14. * RECEIVED FROM MEDIATEK AND/OR ITS REPRESENTATIVES ARE PROVIDED TO RECEIVER ON
  15. * AN "AS-IS" BASIS ONLY. MEDIATEK EXPRESSLY DISCLAIMS ANY AND ALL WARRANTIES,
  16. * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE IMPLIED WARRANTIES OF
  17. * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE OR NONINFRINGEMENT.
  18. * NEITHER DOES MEDIATEK PROVIDE ANY WARRANTY WHATSOEVER WITH RESPECT TO THE
  19. * SOFTWARE OF ANY THIRD PARTY WHICH MAY BE USED BY, INCORPORATED IN, OR
  20. * SUPPLIED WITH THE MEDIATEK SOFTWARE, AND RECEIVER AGREES TO LOOK ONLY TO SUCH
  21. * THIRD PARTY FOR ANY WARRANTY CLAIM RELATING THERETO. RECEIVER EXPRESSLY ACKNOWLEDGES
  22. * THAT IT IS RECEIVER'S SOLE RESPONSIBILITY TO OBTAIN FROM ANY THIRD PARTY ALL PROPER LICENSES
  23. * CONTAINED IN MEDIATEK SOFTWARE. MEDIATEK SHALL ALSO NOT BE RESPONSIBLE FOR ANY MEDIATEK
  24. * SOFTWARE RELEASES MADE TO RECEIVER'S SPECIFICATION OR TO CONFORM TO A PARTICULAR
  25. * STANDARD OR OPEN FORUM. RECEIVER'S SOLE AND EXCLUSIVE REMEDY AND MEDIATEK'S ENTIRE AND
  26. * CUMULATIVE LIABILITY WITH RESPECT TO THE MEDIATEK SOFTWARE RELEASED HEREUNDER WILL BE,
  27. * AT MEDIATEK'S OPTION, TO REVISE OR REPLACE THE MEDIATEK SOFTWARE AT ISSUE,
  28. * OR REFUND ANY SOFTWARE LICENSE FEES OR SERVICE CHARGE PAID BY RECEIVER TO
  29. * MEDIATEK FOR SUCH MEDIATEK SOFTWARE AT ISSUE.
  30. */
  31. #include <sys/types.h>
  32. #include <stdint.h>
  33. #include <platform/partition.h>
  34. #include <platform/mt_typedefs.h>
  35. #include <platform/boot_mode.h>
  36. #include <platform/mt_reg_base.h>
  37. #include <platform/errno.h>
  38. #include <printf.h>
  39. #include <string.h>
  40. #include <malloc.h>
  41. #include <libfdt.h>
  42. #include <platform/mt_gpt.h>
  43. #include <debug.h>
  44. #include "ccci_ld_md_core.h"
  45. #include "ccci_ld_md_errno.h"
  46. #define MODULE_NAME "LK_LD_MD"
  47. /***************************************************************************************************
  48. ** Sub section:
  49. ** padding memory for v5 check hdr
  50. ***************************************************************************************************/
  51. /* This function only support 3 cases
  52. ** case 0: |======|======| ==> |++====|======|
  53. ** case 1: |======|======| ==> |==++==|======|
  54. ** case 2: |======|======| ==> |====++|======|
  55. ** case 4: |======|======| ==> |=====+|+=====| NOT suppose this case !!!!
  56. **
  57. ** return value:
  58. ** 1 : retrieve success and used one mpu region
  59. ** 0 : retrieve success but not used one mpu region
  60. ** -1 : error
  61. */
  62. static int free_padding_mem_blk_match(modem_info_t *info, struct image_section_desc mem_tbl[],
  63. int mem_tbl_item_num, free_padding_block_t *free_mem)
  64. {
  65. int i;
  66. int mem_blk_num = mem_tbl_item_num;
  67. unsigned int tmp_start_addr, tmp_end_addr;
  68. unsigned int old_start, old_end;
  69. unsigned char *mem_addr = (unsigned char *)((unsigned long)info->base_addr);
  70. ALWAYS_LOG("== Get retrieve %p~%p =======\n",
  71. (unsigned char *)free_mem->start_offset,
  72. (unsigned char *)free_mem->start_offset
  73. + free_mem->length - 1);
  74. if (free_mem->length < MPU_64K_VALUE) {
  75. ALWAYS_LOG("free memory too small\n");
  76. return -LD_ERR_PAD_SIZE_LESS_THAN_64K;
  77. }
  78. /* Find free memory position */
  79. for (i = 0; i < mem_blk_num; i++) {
  80. PADDING_LOG("i=%d, offset 0x%x, size 0x%x\n", i, mem_tbl[i].offset, mem_tbl[i].size);
  81. if ((free_mem->start_offset >= mem_tbl[i].offset) &&
  82. (free_mem->start_offset <= (mem_tbl[i].offset + mem_tbl[i].size -1)))
  83. break;
  84. }
  85. if (i == mem_blk_num) {
  86. ALWAYS_LOG("invalid free memory slot info, not at any block\n");
  87. return -LD_ERR_PAD_INVALID_INF;
  88. }
  89. old_start = mem_tbl[i].offset;
  90. old_end = mem_tbl[i].offset + mem_tbl[i].size -1;
  91. DBG_LOG("[%p~%p] ==>\n", mem_addr + old_start, mem_addr + old_end);
  92. if (free_mem->start_offset == mem_tbl[i].offset) {
  93. /* case 0, no need use one mpu region */
  94. if (free_mem->length > mem_tbl[i].size) {
  95. ALWAYS_LOG("free memory size too large\n");
  96. return -LD_ERR_PAD_FREE_INF_ABNORMAL;
  97. }
  98. /* Adjust mpu start address */
  99. tmp_start_addr = mem_tbl[i].offset;
  100. mem_tbl[i].offset += free_mem->length;
  101. mem_tbl[i].offset &= MPU_64K_ALIGN_MASK;
  102. mem_tbl[i].size = mem_tbl[i].size - (mem_tbl[i].offset - tmp_start_addr);
  103. mem_tbl[i].ext_flag |= VALID_PADDING;
  104. ALWAYS_LOG("[%p-Retrieve-%p|%p-Reserved-%p]\n",
  105. mem_addr + free_mem->start_offset, mem_addr + mem_tbl[i].offset + mem_tbl[i].size -1,
  106. mem_addr + mem_tbl[i].offset, mem_addr + mem_tbl[i].offset + mem_tbl[i].size - 1);
  107. ccci_retrieve_mem((unsigned char*)(free_mem->start_offset + mem_addr), mem_tbl[i].offset - tmp_start_addr);
  108. return 0;
  109. }
  110. if ((free_mem->start_offset + free_mem->length) < (mem_tbl[i].offset + mem_tbl[i].size)) {
  111. /* case 1, need use one mpu region, seperate it to three part */
  112. tmp_end_addr = mem_tbl[i].offset + mem_tbl[i].size -1;
  113. mem_tbl[i].size = ((free_mem->start_offset + MPU_64K_VALUE - 1) & MPU_64K_ALIGN_MASK) - mem_tbl[i].offset;
  114. tmp_start_addr = (free_mem->start_offset + free_mem->length) & MPU_64K_ALIGN_MASK;
  115. if (((mem_tbl[i].size - mem_tbl[i].offset + 1) >= MPU_64K_VALUE) &&
  116. ((tmp_end_addr - tmp_start_addr +1) >= MPU_64K_VALUE)) {
  117. ALWAYS_LOG("[%p-Reserved-%p|%p-Retrieve-0%p|%p-Reserved-%p]\n",
  118. mem_addr + mem_tbl[i].offset, mem_addr + mem_tbl[i].offset + mem_tbl[i].size -1,
  119. mem_addr + mem_tbl[i].offset + mem_tbl[i].size, mem_addr + tmp_start_addr - 1,
  120. mem_addr + tmp_start_addr, mem_addr + tmp_end_addr);
  121. ccci_retrieve_mem((unsigned char*)(mem_tbl[i].offset + mem_tbl[i].size + mem_addr),
  122. tmp_start_addr - (mem_tbl[i].offset + mem_tbl[i].size));
  123. mem_tbl[mem_blk_num].offset = tmp_start_addr;
  124. mem_tbl[mem_blk_num].size = tmp_end_addr - tmp_start_addr + 1;
  125. mem_tbl[mem_blk_num].ext_flag = NEED_MPU_MORE|VALID_PADDING;
  126. if (mem_tbl[i].relate_idx != 0)
  127. mem_tbl[mem_blk_num].relate_idx = mem_tbl[i].relate_idx; /* Multiple - cut */
  128. else {
  129. mem_tbl[mem_blk_num].relate_idx = LOGIC_BINDING_IDX_START + i;
  130. mem_tbl[i].relate_idx = LOGIC_BINDING_IDX_START + i;
  131. }
  132. mem_blk_num++;
  133. }
  134. return 1;
  135. }
  136. if ((free_mem->start_offset + free_mem->length) == (mem_tbl[i].offset + mem_tbl[i].size)) {
  137. /* case 2, no need use one mpu region */
  138. tmp_end_addr = mem_tbl[i].offset + mem_tbl[i].size - 1;
  139. mem_tbl[i].size = ((free_mem->start_offset + MPU_64K_VALUE - 1) & MPU_64K_ALIGN_MASK) - mem_tbl[i].offset;
  140. mem_tbl[i].ext_flag |= VALID_PADDING;
  141. ALWAYS_LOG("[%p-Reserved-%p|%p-Retrieve-%p]\n",
  142. mem_addr + mem_tbl[i].offset, mem_addr + mem_tbl[i].offset + mem_tbl[i].size -1,
  143. mem_addr + mem_tbl[i].offset + mem_tbl[i].size, mem_addr + tmp_end_addr);
  144. ccci_retrieve_mem((unsigned char*)(mem_addr + mem_tbl[i].offset + mem_tbl[i].size),
  145. tmp_end_addr - (mem_tbl[i].offset + mem_tbl[i].size) + 1);
  146. return 0;
  147. }
  148. if ((free_mem->start_offset + free_mem->length) > (mem_tbl[i].offset + mem_tbl[i].size)) {
  149. ALWAYS_LOG("over two region\n");
  150. return -LD_ERR_PAD_OVER_TWO_REGION;
  151. }
  152. return -LD_ERR_PAD_MISC;
  153. }
  154. static int padding_mem_pre_process_v5_hdr(struct image_section_desc mem_tbl[],
  155. free_padding_block_t free_slot[], int mpu_num)
  156. {
  157. int i, j;
  158. int mem_blk_num = 0;
  159. int padding_mem_num = 0;
  160. free_padding_block_t *padding_mem;
  161. struct padding_tag padding_tag_tbl[MAX_PADDING_NUM_V5_HDR+1], *small_ptr = NULL;
  162. int padding_with_additional_num = 0;
  163. unsigned int small_length = 0;
  164. while (mem_tbl[mem_blk_num].offset || mem_tbl[mem_blk_num].size) {
  165. PADDING_LOG("mem_tbl[mem_blk_num].offset:%x\n", mem_tbl[mem_blk_num].offset);
  166. PADDING_LOG("mem_tbl[mem_blk_num].size:%x\n", mem_tbl[mem_blk_num].size);
  167. mem_blk_num++;
  168. }
  169. PADDING_LOG("mem_blk_num:%d\n", mem_blk_num);
  170. while (free_slot[padding_mem_num].start_offset || free_slot[padding_mem_num].length) {
  171. padding_tag_tbl[padding_mem_num].padding_mem.start_offset = free_slot[padding_mem_num].start_offset;
  172. padding_tag_tbl[padding_mem_num].padding_mem.length = free_slot[padding_mem_num].length;
  173. padding_tag_tbl[padding_mem_num].status = VALID_PADDING;
  174. PADDING_LOG("padding_tag_tbl[%d].offset:0x%x\n", padding_mem_num,
  175. padding_tag_tbl[padding_mem_num].padding_mem.start_offset);
  176. PADDING_LOG("padding_tag_tbl[%d].length:0x%x\n", padding_mem_num,
  177. padding_tag_tbl[padding_mem_num].padding_mem.length);
  178. PADDING_LOG("padding_tag_tbl[%d].status:0x%x\n", padding_mem_num,
  179. padding_tag_tbl[padding_mem_num].status);
  180. padding_mem_num++;
  181. if (padding_mem_num >= MAX_PADDING_NUM_V5_HDR)
  182. /* For current design, only have MAX_PADDING_NUM_V5_HDR number padding */
  183. break;
  184. }
  185. for (i = padding_mem_num; i < (MAX_PADDING_NUM_V5_HDR+1); i++)
  186. padding_tag_tbl[i].status = 0;
  187. for (j = 0; j < padding_mem_num; j++) {
  188. padding_mem = &padding_tag_tbl[j].padding_mem;
  189. /* Find free memory position */
  190. for (i = 0; i < mem_blk_num; i++) {
  191. if ((padding_mem->start_offset >= mem_tbl[i].offset) &&
  192. (padding_mem->start_offset < (mem_tbl[i].offset + mem_tbl[i].size)))
  193. break;
  194. }
  195. if (i == mem_blk_num)
  196. continue;
  197. PADDING_LOG("padding_pre, get: offset:0x%x, size:0x%x\n",
  198. padding_mem->start_offset, padding_mem->length);
  199. if (padding_mem->start_offset == mem_tbl[i].offset) {
  200. PADDING_LOG("case I\n");
  201. continue;/* case 0, no need use one mpu region */
  202. } else if ((padding_mem->start_offset + padding_mem->length) < (mem_tbl[i].offset + mem_tbl[i].size)) {
  203. /* case 1, need use one mpu region, seperate it to three part */
  204. padding_tag_tbl[j].status |= NEED_MPU_MORE;
  205. padding_with_additional_num++;
  206. PADDING_LOG("case II\n");
  207. } else if ((padding_mem->start_offset + padding_mem->length) == (mem_tbl[i].offset + mem_tbl[i].size)) {
  208. PADDING_LOG("case III\n");
  209. continue;/* case 2, no need use one mpu region */
  210. } else if ((padding_mem->start_offset + padding_mem->length) > (mem_tbl[i].offset + mem_tbl[i].size)) {
  211. PADDING_LOG("case IV\n");
  212. continue;/* over two region */
  213. }
  214. }
  215. ALWAYS_LOG("padding_with_additional_num:%d with mpu_num:%d\n", padding_with_additional_num, mpu_num);
  216. /* If mpu region not enough, remove the small padding memory part */
  217. while (padding_with_additional_num > mpu_num) {
  218. /* Find first tag that with additional region */
  219. for (i = 0; i < (MAX_PADDING_NUM_V5_HDR + 1); i++) {
  220. if (padding_tag_tbl[i].status & NEED_MPU_MORE) {
  221. small_ptr = &padding_tag_tbl[i];
  222. small_length = small_ptr->padding_mem.length;
  223. break;
  224. }
  225. }
  226. for (j = i; j < (MAX_PADDING_NUM_V5_HDR + 1); j++) {
  227. /* Find the smallest padding with mpu */
  228. if ((padding_tag_tbl[j].status & NEED_MPU_MORE) &&
  229. (padding_tag_tbl[j].padding_mem.length < small_length)) {
  230. small_ptr = &padding_tag_tbl[j];
  231. small_length = small_ptr->padding_mem.length;
  232. }
  233. }
  234. small_ptr->status |= NEED_REMOVE;
  235. small_ptr->status &= (~NEED_MPU_MORE);
  236. padding_mem_num--;
  237. padding_with_additional_num--;
  238. ALWAYS_LOG("MPU region not enough, cancel to retrieve padding(offset):0x%08x ~ 0x%08x\n",
  239. small_ptr->padding_mem.start_offset,
  240. small_ptr->padding_mem.start_offset+small_ptr->padding_mem.length);
  241. }
  242. /* Update final padding list
  243. ** Remove smallest item, j always <= i */
  244. j = 0;
  245. for (i = 0; i < MAX_PADDING_NUM_V5_HDR ; i++) {
  246. if (padding_tag_tbl[i].status & NEED_REMOVE)
  247. continue;
  248. free_slot[j].start_offset = padding_tag_tbl[i].padding_mem.start_offset;
  249. free_slot[j].length = padding_tag_tbl[i].padding_mem.length;
  250. j++;
  251. }
  252. free_slot[j].start_offset = 0;/* mark for new end */
  253. free_slot[j].length = 0;/* mark for new end */
  254. return padding_mem_num;
  255. }
  256. int retrieve_free_padding_mem_v5_hdr(modem_info_t *info,
  257. struct image_section_desc mem_tbl[], void *hdr, int mpu_num)
  258. {
  259. int i, j;
  260. int retrieve_blk_num = 0;
  261. struct md_check_header_v5 *chk_hdr = (struct md_check_header_v5 *)hdr;
  262. int mem_blk_num = 0;
  263. free_padding_block_t free_slot[MAX_PADDING_NUM_V5_HDR+1]; /* Maximux is 3, that confirned with MD */
  264. if (mpu_num < 1) {
  265. ALWAYS_LOG("free mpu region not enough for padding memory feature\n");
  266. return -LD_ERR_PAD_REGION_NOT_ENOUGH;
  267. }
  268. j = 0;
  269. for (i = 0; i < MAX_PADDING_NUM_V5_HDR; i++) {
  270. if ((chk_hdr->padding_blk[i].start_offset == 0) &&
  271. (chk_hdr->padding_blk[i].length == 0))
  272. continue;
  273. else {
  274. free_slot[j].start_offset = chk_hdr->padding_blk[i].start_offset;
  275. free_slot[j].length = chk_hdr->padding_blk[i].length;
  276. j++;
  277. }
  278. }
  279. free_slot[j].start_offset = 0; /* Mark for last */
  280. free_slot[j].length = 0;
  281. if (0 == j) {
  282. ALWAYS_LOG("no free padding memmory to retrieve\n");
  283. return -LD_ERR_PAD_NO_REGION_RETRIEVE;
  284. }
  285. /* Reserve 1 region for all range protect usage */
  286. retrieve_blk_num = padding_mem_pre_process_v5_hdr(mem_tbl, free_slot, mpu_num - 1);
  287. /* Calculate mem_tbl number again */
  288. mem_blk_num = 0;
  289. while (mem_tbl[mem_blk_num].offset || mem_tbl[mem_blk_num].size)
  290. mem_blk_num++;
  291. ALWAYS_LOG("retrieve_blk_num: %d\n", retrieve_blk_num);
  292. for (i = 0; i < retrieve_blk_num; i++) {
  293. if (free_padding_mem_blk_match(info, mem_tbl, mem_blk_num, &free_slot[i]) > 0)
  294. mem_blk_num++;
  295. }
  296. /* Add lowest padding mpu setting to avoid prefetch violation */
  297. mem_tbl[mem_blk_num].offset = 0;
  298. mem_tbl[mem_blk_num].size = chk_hdr->common.mem_size;
  299. mem_tbl[mem_blk_num].mpu_attr = 0xFFFFFFFF;
  300. mem_tbl[mem_blk_num].ext_flag = MD_ALL_RANGE;
  301. mem_tbl[mem_blk_num].relate_idx = 0;
  302. /* Mark for end */
  303. mem_blk_num++;
  304. mem_tbl[mem_blk_num].offset = 0;
  305. mem_tbl[mem_blk_num].size = 0;
  306. return 0;
  307. }
  308. static int padding_mem_pre_process_v6_hdr(struct image_section_desc mem_tbl[],
  309. free_padding_block_t free_slot[], int mpu_num)
  310. {
  311. int i, j;
  312. int mem_blk_num = 0;
  313. int padding_mem_num = 0;
  314. free_padding_block_t *padding_mem;
  315. struct padding_tag padding_tag_tbl[MAX_PADDING_NUM_V6_HDR+1], *small_ptr = NULL;
  316. int padding_with_additional_num = 0;
  317. unsigned int small_length = 0;
  318. while (mem_tbl[mem_blk_num].offset || mem_tbl[mem_blk_num].size) {
  319. PADDING_LOG("mem_tbl[%d].offset:%x\n", mem_blk_num, mem_tbl[mem_blk_num].offset);
  320. PADDING_LOG("mem_tbl[%d].size:%x\n", mem_blk_num, mem_tbl[mem_blk_num].size);
  321. mem_blk_num++;
  322. }
  323. PADDING_LOG("mem_blk_num:%d\n", mem_blk_num);
  324. while (free_slot[padding_mem_num].start_offset || free_slot[padding_mem_num].length) {
  325. padding_tag_tbl[padding_mem_num].padding_mem.start_offset = free_slot[padding_mem_num].start_offset;
  326. padding_tag_tbl[padding_mem_num].padding_mem.length = free_slot[padding_mem_num].length;
  327. padding_tag_tbl[padding_mem_num].status = VALID_PADDING;
  328. PADDING_LOG("padding_tag_tbl[%d].offset:0x%x\n", padding_mem_num,
  329. padding_tag_tbl[padding_mem_num].padding_mem.start_offset);
  330. PADDING_LOG("padding_tag_tbl[%d].length:0x%x\n", padding_mem_num,
  331. padding_tag_tbl[padding_mem_num].padding_mem.length);
  332. PADDING_LOG("padding_tag_tbl[%d].status:0x%x\n", padding_mem_num,
  333. padding_tag_tbl[padding_mem_num].status);
  334. padding_mem_num++;
  335. if (padding_mem_num >= MAX_PADDING_NUM_V6_HDR)
  336. /* For current design, only have MAX_PADDING_NUM_V6_HDR number padding */
  337. break;
  338. }
  339. for (i = padding_mem_num; i < (MAX_PADDING_NUM_V6_HDR+1); i++)
  340. padding_tag_tbl[i].status = 0;
  341. for (j = 0; j < padding_mem_num; j++) {
  342. padding_mem = &padding_tag_tbl[j].padding_mem;
  343. /* Find free memory position */
  344. for (i = 0; i < mem_blk_num; i++) {
  345. if ((padding_mem->start_offset >= mem_tbl[i].offset) &&
  346. (padding_mem->start_offset < (mem_tbl[i].offset + mem_tbl[i].size)))
  347. break;
  348. }
  349. if (i == mem_blk_num)
  350. continue;
  351. PADDING_LOG("padding_pre, get: offset:0x%x, size:0x%x\n",
  352. padding_mem->start_offset, padding_mem->length);
  353. if (padding_mem->start_offset == mem_tbl[i].offset) {
  354. PADDING_LOG("case I\n");
  355. continue;/* case 0, no need use one mpu region */
  356. } else if ((padding_mem->start_offset + padding_mem->length) < (mem_tbl[i].offset + mem_tbl[i].size)) {
  357. /* case 1, need use one mpu region, seperate it to three part */
  358. padding_tag_tbl[j].status |= NEED_MPU_MORE;
  359. padding_with_additional_num++;
  360. PADDING_LOG("case II\n");
  361. } else if ((padding_mem->start_offset + padding_mem->length) == (mem_tbl[i].offset + mem_tbl[i].size)) {
  362. PADDING_LOG("case III\n");
  363. continue;/* case 2, no need use one mpu region */
  364. } else if ((padding_mem->start_offset + padding_mem->length) > (mem_tbl[i].offset + mem_tbl[i].size)) {
  365. PADDING_LOG("case IV\n");
  366. continue;/* over two region */
  367. }
  368. }
  369. ALWAYS_LOG("padding_with_additional_num:%d with mpu_num:%d\n", padding_with_additional_num, mpu_num);
  370. /* If mpu region not enough, remove the small padding memory part */
  371. while (padding_with_additional_num > mpu_num) {
  372. /* Find first tag that with additional region */
  373. for (i = 0; i < (MAX_PADDING_NUM_V6_HDR + 1); i++) {
  374. if (padding_tag_tbl[i].status & NEED_MPU_MORE) {
  375. small_ptr = &padding_tag_tbl[i];
  376. small_length = small_ptr->padding_mem.length;
  377. break;
  378. }
  379. }
  380. for (j = i; j < (MAX_PADDING_NUM_V6_HDR + 1); j++) {
  381. /* Find the smallest padding with mpu */
  382. if ((padding_tag_tbl[j].status & NEED_MPU_MORE) &&
  383. (padding_tag_tbl[j].padding_mem.length < small_length)) {
  384. small_ptr = &padding_tag_tbl[j];
  385. small_length = small_ptr->padding_mem.length;
  386. }
  387. }
  388. small_ptr->status |= NEED_REMOVE;
  389. small_ptr->status &= (~NEED_MPU_MORE);
  390. padding_mem_num--;
  391. padding_with_additional_num--;
  392. ALWAYS_LOG("MPU region not enough, cancel to retrieve padding(offset):0x%08x ~ 0x%08x\n",
  393. small_ptr->padding_mem.start_offset,
  394. small_ptr->padding_mem.start_offset+small_ptr->padding_mem.length);
  395. }
  396. /* Update final padding list
  397. ** Remove smallest item, j always <= i */
  398. j = 0;
  399. for (i = 0; i < MAX_PADDING_NUM_V6_HDR ; i++) {
  400. if (padding_tag_tbl[i].status & NEED_REMOVE)
  401. continue;
  402. free_slot[j].start_offset = padding_tag_tbl[i].padding_mem.start_offset;
  403. free_slot[j].length = padding_tag_tbl[i].padding_mem.length;
  404. j++;
  405. }
  406. free_slot[j].start_offset = 0;/* mark for new end */
  407. free_slot[j].length = 0;/* mark for new end */
  408. return padding_mem_num;
  409. }
  410. int retrieve_free_padding_mem_v6_hdr(modem_info_t *info,
  411. struct image_section_desc mem_tbl[], void *hdr, int mpu_num)
  412. {
  413. int i, j;
  414. int retrieve_blk_num = 0;
  415. struct md_check_header_v6 *chk_hdr = (struct md_check_header_v6 *)hdr;
  416. int mem_blk_num = 0;
  417. free_padding_block_t free_slot[MAX_PADDING_NUM_V6_HDR+1]; /* Maximux is 8, that confirned with MD */
  418. if (mpu_num < 1) {
  419. ALWAYS_LOG("free mpu region not enough for padding memory feature\n");
  420. return -LD_ERR_PAD_REGION_NOT_ENOUGH;
  421. }
  422. j = 0;
  423. for (i = 0; i < MAX_PADDING_NUM_V6_HDR; i++) {
  424. if ((chk_hdr->padding_blk[i].start_offset == 0) &&
  425. (chk_hdr->padding_blk[i].length == 0))
  426. continue;
  427. else {
  428. free_slot[j].start_offset = chk_hdr->padding_blk[i].start_offset;
  429. free_slot[j].length = chk_hdr->padding_blk[i].length;
  430. j++;
  431. }
  432. }
  433. free_slot[j].start_offset = 0; /* Mark for last */
  434. free_slot[j].length = 0;
  435. if (0 == j) {
  436. ALWAYS_LOG("no free padding memmory to retrieve\n");
  437. return -LD_ERR_PAD_NO_REGION_RETRIEVE;
  438. }
  439. /* Reserve 1 region for all range protect usage */
  440. retrieve_blk_num = padding_mem_pre_process_v6_hdr(mem_tbl, free_slot, mpu_num - 1);
  441. /* Calculate mem_tbl number again */
  442. mem_blk_num = 0;
  443. while (mem_tbl[mem_blk_num].offset || mem_tbl[mem_blk_num].size)
  444. mem_blk_num++;
  445. ALWAYS_LOG("retrieve_blk_num: %d\n", retrieve_blk_num);
  446. for (i = 0; i < retrieve_blk_num; i++) {
  447. if (free_padding_mem_blk_match(info, mem_tbl, mem_blk_num, &free_slot[i]) > 0)
  448. mem_blk_num++;
  449. }
  450. /* Add DRDI mpu setting if need */
  451. if ((chk_hdr->drdi_rt_offset != 0) && (chk_hdr->drdi_rt_size != 0)) {
  452. mem_tbl[mem_blk_num].offset = chk_hdr->drdi_rt_offset;
  453. mem_tbl[mem_blk_num].size = chk_hdr->drdi_rt_size;
  454. mem_tbl[mem_blk_num].mpu_attr = 0xFFFFFFFF;
  455. mem_tbl[mem_blk_num].ext_flag = MD_DRDI_REGION;
  456. mem_tbl[mem_blk_num].relate_idx = 0;
  457. mem_blk_num++;
  458. }
  459. /* Add lowest padding mpu setting to avoid prefetch violation */
  460. mem_tbl[mem_blk_num].offset = 0;
  461. mem_tbl[mem_blk_num].size = chk_hdr->common.mem_size;
  462. mem_tbl[mem_blk_num].mpu_attr = 0xFFFFFFFF;
  463. mem_tbl[mem_blk_num].ext_flag = MD_ALL_RANGE;
  464. mem_tbl[mem_blk_num].relate_idx = 0;
  465. /* Mark for end */
  466. mem_blk_num++;
  467. mem_tbl[mem_blk_num].offset = 0;
  468. mem_tbl[mem_blk_num].size = 0;
  469. return 0;
  470. }
  471. int retrieve_info_num;
  472. void log_retrieve_info(unsigned char *addr, int size)
  473. {
  474. char buf[32];
  475. u64 array[2];
  476. array[0] = (u64)((unsigned long)addr);
  477. array[1] = (u64)size;
  478. snprintf(buf, 32, "retrieve%d", retrieve_info_num);
  479. if (insert_ccci_tag_inf(buf, (char*)&array, sizeof(array)) < 0)
  480. ALWAYS_LOG("insert %s fail\n", buf);
  481. retrieve_info_num++;
  482. }