mrdump_elf.c 15 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) 2016. 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 <assert.h>
  32. #include <malloc.h>
  33. #include <string.h>
  34. #include <printf.h>
  35. #include "aee.h"
  36. #include "mrdump_private.h"
  37. #include "mrdump_elf.h"
  38. #define mrdump_elf_setup_elfhdr(elfp, machid, elfhdr_t, elfphdr_t, phdrcount) \
  39. elfp->e_type = ET_CORE; \
  40. elfp->e_machine = machid; \
  41. elfp->e_version = EV_CURRENT; \
  42. elfp->e_entry = 0; \
  43. elfp->e_phoff = sizeof(elfhdr_t); \
  44. elfp->e_shoff = 0; \
  45. elfp->e_flags = ELF_CORE_EFLAGS; \
  46. elfp->e_ehsize = sizeof(elfhdr_t); \
  47. elfp->e_phentsize = sizeof(elfphdr_t); \
  48. elfp->e_phnum = phdrcount; \
  49. elfp->e_shentsize = 0; \
  50. elfp->e_shnum = 0; \
  51. elfp->e_shstrndx = 0; \
  52. static inline void mrdump_elf_setup_eident(unsigned char e_ident[EI_NIDENT], unsigned char elfclasz)
  53. {
  54. memcpy(e_ident, ELFMAG, SELFMAG);
  55. e_ident[EI_CLASS] = elfclasz;
  56. e_ident[EI_DATA] = ELFDATA2LSB;
  57. e_ident[EI_VERSION] = EV_CURRENT;
  58. e_ident[EI_OSABI] = ELFOSABI_NONE;
  59. memset(e_ident+EI_PAD, 0, EI_NIDENT-EI_PAD);
  60. }
  61. static uint32_t roundup(uint32_t x, uint32_t y)
  62. {
  63. return ((x + y - 1) / y) * y;
  64. }
  65. /* An ELF note in memory */
  66. struct memelfnote {
  67. const char *name;
  68. int type;
  69. unsigned int datasz;
  70. void *data;
  71. };
  72. static int notesize(struct memelfnote *en)
  73. {
  74. int sz;
  75. sz = sizeof(struct elf32_note);
  76. sz += roundup((strlen(en->name) + 1), 4);
  77. sz += roundup(en->datasz, 4);
  78. return sz;
  79. }
  80. static uint8_t *storenote(struct memelfnote *men, uint8_t *bufp)
  81. {
  82. struct elf32_note en;
  83. en.n_namesz = strlen(men->name) + 1;
  84. en.n_descsz = men->datasz;
  85. en.n_type = men->type;
  86. memcpy(bufp, &en, sizeof(en));
  87. bufp += sizeof(en);
  88. memcpy(bufp, men->name, en.n_namesz);
  89. bufp += en.n_namesz;
  90. bufp = (uint8_t*) roundup((unsigned long)bufp, 4);
  91. memcpy(bufp, men->data, men->datasz);
  92. bufp += men->datasz;
  93. bufp = (uint8_t*) roundup((unsigned long)bufp, 4);
  94. return bufp;
  95. }
  96. static uint8_t *mrdump_core32_write_cpu_note(const struct mrdump_control_block *mrdump_cb,
  97. unsigned int cpu, struct elf32_phdr *nhdr,
  98. uint8_t *bufp)
  99. {
  100. if (cpu >= MRDUMP_CPU_MAX) {
  101. /* cpu value is not correct, ignore it */
  102. return bufp;
  103. }
  104. struct memelfnote notes;
  105. struct elf32_arm_prstatus prstatus;
  106. char cpustr[16];
  107. memset(&prstatus, 0, sizeof(struct elf32_arm_prstatus));
  108. ASSERT(snprintf(cpustr, sizeof(cpustr), "CPU%d", cpu) > 0);
  109. /* set up the process status */
  110. notes.name = cpustr;
  111. notes.type = NT_PRSTATUS;
  112. notes.datasz = sizeof(struct elf32_arm_prstatus);
  113. notes.data = &prstatus;
  114. prstatus.pr_pid = cpu + 1;
  115. memcpy(&prstatus.pr_reg, (unsigned long*)&mrdump_cb->crash_record.cpu_regs[cpu].arm32_regs,
  116. sizeof(elf_arm_gregset_t));
  117. nhdr->p_filesz += notesize(&notes);
  118. return storenote(&notes, bufp);
  119. }
  120. static uint8_t *mrdump_core32_write_machdesc(const struct mrdump_control_block *mrdump_cb, struct elf32_phdr *nhdr, uint8_t *bufp)
  121. {
  122. struct memelfnote notes;
  123. struct elf_mrdump_machdesc machdesc;
  124. const struct mrdump_machdesc *kparams = &mrdump_cb->machdesc;
  125. memset(&machdesc, 0, sizeof(struct elf_mrdump_machdesc));
  126. notes.name = "MRDUMP01";
  127. notes.type = NT_MRDUMP_MACHDESC;
  128. notes.datasz = sizeof(struct elf_mrdump_machdesc);
  129. notes.data = &machdesc;
  130. machdesc.flags = MRDUMP_TYPE_FULL_MEMORY;
  131. machdesc.nr_cpus = kparams->nr_cpus;
  132. machdesc.phys_offset = kparams->phys_offset;
  133. machdesc.page_offset = kparams->page_offset;
  134. machdesc.high_memory = kparams->high_memory;
  135. machdesc.kimage_vaddr = kparams->kimage_vaddr;
  136. machdesc.modules_start = kparams->modules_start;
  137. machdesc.modules_end = kparams->modules_end;
  138. machdesc.vmalloc_start = kparams->vmalloc_start;
  139. machdesc.vmalloc_end = kparams->vmalloc_end;
  140. machdesc.master_page_table = kparams->master_page_table;
  141. nhdr->p_filesz += notesize(&notes);
  142. return storenote(&notes, bufp);
  143. }
  144. static uint8_t *mrdump_core32_write_cb(const struct mrdump_control_block *mrdump_cb, struct elf32_phdr *nhdr, uint8_t *bufp)
  145. {
  146. struct memelfnote notes;
  147. uint64_t mrdump_cb_paddr = (uint64_t)(uintptr_t)mrdump_cb;
  148. notes.name = MRDUMP_GO_DUMP;
  149. notes.type = NT_MRDUMP_CBLOCK;
  150. notes.datasz = sizeof(mrdump_cb_paddr);
  151. notes.data = &mrdump_cb_paddr;
  152. nhdr->p_filesz += notesize(&notes);
  153. return storenote(&notes, bufp);
  154. }
  155. static void mrdump_core32_header_init(const struct mrdump_control_block *mrdump_cb, const struct kzip_addlist *memlist)
  156. {
  157. struct elf32_phdr *nhdr, *phdr;
  158. struct elf32_hdr *elf;
  159. off_t offset = 0;
  160. const struct mrdump_machdesc *kparams = &mrdump_cb->machdesc;
  161. uint8_t *bufp = (uint8_t *)(uintptr_t)memlist[0].address;
  162. elf = (struct elf32_hdr *) bufp;
  163. bufp += sizeof(struct elf32_hdr);
  164. offset += sizeof(struct elf32_hdr);
  165. nhdr = (struct elf32_phdr *) bufp;
  166. bufp += sizeof(struct elf32_phdr);
  167. offset += sizeof(struct elf32_phdr);
  168. memset(nhdr, 0, sizeof(struct elf32_phdr));
  169. nhdr->p_type = PT_NOTE;
  170. unsigned long long foffset = MRDUMP_CORE_HEADER_SIZE;
  171. int i;
  172. for (i = 1; memlist[i].address != 0;i++) {
  173. phdr = (struct elf32_phdr *) bufp;
  174. bufp += sizeof(struct elf32_phdr);
  175. offset += sizeof(struct elf32_phdr);
  176. phdr->p_type = PT_LOAD;
  177. phdr->p_flags = PF_R|PF_W|PF_X;
  178. phdr->p_offset = foffset;
  179. phdr->p_vaddr = 0;
  180. phdr->p_paddr = memlist[i].address;
  181. phdr->p_filesz = memlist[i].size;
  182. phdr->p_memsz = memlist[i].size;
  183. phdr->p_align = 0;
  184. foffset += phdr->p_filesz;
  185. }
  186. mrdump_elf_setup_eident(elf->e_ident, ELFCLASS32);
  187. mrdump_elf_setup_elfhdr(elf, EM_ARM, struct elf32_hdr, struct elf32_phdr, i);
  188. nhdr->p_offset = offset;
  189. /* NT_PRPSINFO */
  190. struct elf32_prpsinfo prpsinfo;
  191. struct memelfnote notes;
  192. /* set up the process info */
  193. notes.name = CORE_STR;
  194. notes.type = NT_PRPSINFO;
  195. notes.datasz = sizeof(struct elf32_prpsinfo);
  196. notes.data = &prpsinfo;
  197. memset(&prpsinfo, 0, sizeof(struct elf32_prpsinfo));
  198. prpsinfo.pr_state = 0;
  199. prpsinfo.pr_sname = 'R';
  200. prpsinfo.pr_zomb = 0;
  201. prpsinfo.pr_gid = prpsinfo.pr_uid = mrdump_cb->crash_record.fault_cpu + 1;
  202. strlcpy(prpsinfo.pr_fname, "vmlinux", sizeof(prpsinfo.pr_fname));
  203. strlcpy(prpsinfo.pr_psargs, "vmlinux", ELF_PRARGSZ);
  204. nhdr->p_filesz += notesize(&notes);
  205. bufp = storenote(&notes, bufp);
  206. bufp = mrdump_core32_write_machdesc(mrdump_cb, nhdr, bufp);
  207. /* Store pre-cpu backtrace */
  208. bufp = mrdump_core32_write_cpu_note(mrdump_cb, mrdump_cb->crash_record.fault_cpu, nhdr, bufp);
  209. for (unsigned int cpu = 0; cpu < kparams->nr_cpus; cpu++) {
  210. if (cpu != mrdump_cb->crash_record.fault_cpu) {
  211. bufp = mrdump_core32_write_cpu_note(mrdump_cb, cpu, nhdr, bufp);
  212. }
  213. }
  214. /* store mrdump control block */
  215. bufp = mrdump_core32_write_cb(mrdump_cb, nhdr, bufp);
  216. }
  217. static int notesize64(struct memelfnote *en)
  218. {
  219. int sz;
  220. sz = sizeof(struct elf64_note);
  221. sz += roundup((strlen(en->name) + 1), 4);
  222. sz += roundup(en->datasz, 4);
  223. return sz;
  224. }
  225. static uint8_t *storenote64(struct memelfnote *men, uint8_t *bufp)
  226. {
  227. struct elf64_note en;
  228. en.n_namesz = strlen(men->name) + 1;
  229. en.n_descsz = men->datasz;
  230. en.n_type = men->type;
  231. memcpy(bufp, &en, sizeof(en));
  232. bufp += sizeof(en);
  233. memcpy(bufp, men->name, en.n_namesz);
  234. bufp += en.n_namesz;
  235. bufp = (uint8_t*) roundup((unsigned long)bufp, 4);
  236. memcpy(bufp, men->data, men->datasz);
  237. bufp += men->datasz;
  238. bufp = (uint8_t*) roundup((unsigned long)bufp, 4);
  239. return bufp;
  240. }
  241. static uint8_t *mrdump_core64_write_cpu_note(const struct mrdump_control_block *mrdump_cb,
  242. unsigned int cpu, struct elf64_phdr *nhdr, uint8_t *bufp)
  243. {
  244. if (cpu >= MRDUMP_CPU_MAX) {
  245. /* cpu value is not correct, ignore it */
  246. return bufp;
  247. }
  248. struct memelfnote notes;
  249. struct elf_arm64_prstatus64 prstatus;
  250. char cpustr[16];
  251. memset(&prstatus, 0, sizeof(struct elf_arm64_prstatus64));
  252. ASSERT(snprintf(cpustr, sizeof(cpustr), "CPU%d", cpu) > 0);
  253. /* set up the process status */
  254. notes.name = cpustr;
  255. notes.type = NT_PRSTATUS;
  256. notes.datasz = sizeof(struct elf_arm64_prstatus64);
  257. notes.data = &prstatus;
  258. prstatus.pr_pid = cpu + 1;
  259. memcpy(&prstatus.pr_reg, &mrdump_cb->crash_record.cpu_regs[cpu].arm64_regs, sizeof(elf_arm64_gregset_t));
  260. nhdr->p_filesz += notesize64(&notes);
  261. return storenote64(&notes, bufp);
  262. }
  263. static uint8_t *mrdump_core64_write_machdesc(const struct mrdump_control_block *mrdump_cb, struct elf64_phdr *nhdr, uint8_t *bufp)
  264. {
  265. struct memelfnote notes;
  266. struct elf_mrdump_machdesc machdesc;
  267. const struct mrdump_machdesc *kparams = &mrdump_cb->machdesc;
  268. memset(&machdesc, 0, sizeof(struct elf_mrdump_machdesc));
  269. notes.name = "MRDUMP01";
  270. notes.type = NT_MRDUMP_MACHDESC;
  271. notes.datasz = sizeof(struct elf_mrdump_machdesc);
  272. notes.data = &machdesc;
  273. machdesc.flags = MRDUMP_TYPE_FULL_MEMORY;
  274. machdesc.nr_cpus = kparams->nr_cpus;
  275. machdesc.phys_offset = kparams->phys_offset;
  276. machdesc.page_offset = kparams->page_offset;
  277. machdesc.high_memory = kparams->high_memory;
  278. machdesc.kimage_vaddr = kparams->kimage_vaddr;
  279. machdesc.modules_start = kparams->modules_start;
  280. machdesc.modules_end = kparams->modules_end;
  281. machdesc.vmalloc_start = kparams->vmalloc_start;
  282. machdesc.vmalloc_end = kparams->vmalloc_end;
  283. machdesc.master_page_table = kparams->master_page_table;
  284. nhdr->p_filesz += notesize64(&notes);
  285. return storenote64(&notes, bufp);
  286. }
  287. static uint8_t *mrdump_core64_write_vmcoreinfo(const struct mrdump_control_block *mrdump_cb, struct elf64_phdr *nhdr, uint8_t *bufp)
  288. {
  289. struct memelfnote notes;
  290. const struct mrdump_machdesc *kparams = &mrdump_cb->machdesc;
  291. char vmcoreinfo[512];
  292. memset(vmcoreinfo, 0, sizeof(vmcoreinfo));
  293. notes.name = "VMCOREINFO";
  294. notes.type = 0;
  295. notes.datasz = 0;
  296. notes.data = &vmcoreinfo;
  297. ASSERT(snprintf(vmcoreinfo, sizeof(vmcoreinfo),
  298. "PAGESIZE=4096\n"
  299. "NUMBER(kimage_voffset)=0x%llx\n"
  300. "SYMBOL(_stext)=0x%llx\n"
  301. "NUMBER(VA_BITS)=%d\n"
  302. "NUMBER(PHYS_OFFSET)=0x%llx\n",
  303. (uint64_t)kparams->kimage_voffset,
  304. (uint64_t)kparams->kimage_stext_real,
  305. 39,
  306. (uint64_t)kparams->phys_offset) > 0);
  307. notes.datasz = strlen(vmcoreinfo);
  308. nhdr->p_filesz += notesize64(&notes);
  309. return storenote64(&notes, bufp);
  310. }
  311. static uint8_t *mrdump_core64_write_cb(const struct mrdump_control_block *mrdump_cb, struct elf64_phdr *nhdr, uint8_t *bufp)
  312. {
  313. struct memelfnote notes;
  314. uint64_t mrdump_cb_paddr = (uint64_t)(uintptr_t)mrdump_cb;
  315. notes.name = MRDUMP_GO_DUMP;
  316. notes.type = NT_MRDUMP_CBLOCK;
  317. notes.datasz = sizeof(mrdump_cb_paddr);
  318. notes.data = &mrdump_cb_paddr;
  319. nhdr->p_filesz += notesize64(&notes);
  320. return storenote64(&notes, bufp);
  321. }
  322. static void mrdump_core64_header_init(const struct mrdump_control_block *mrdump_cb, const struct kzip_addlist *memlist)
  323. {
  324. struct elf64_phdr *nhdr, *phdr;
  325. struct elf64_hdr *elf;
  326. off_t offset = 0;
  327. const struct mrdump_machdesc *kparams = &mrdump_cb->machdesc;
  328. uint8_t *bufp = (uint8_t *)(uintptr_t)memlist[0].address;
  329. elf = (struct elf64_hdr *) bufp;
  330. bufp += sizeof(struct elf64_hdr);
  331. offset += sizeof(struct elf64_hdr);
  332. nhdr = (struct elf64_phdr *) bufp;
  333. bufp += sizeof(struct elf64_phdr);
  334. offset += sizeof(struct elf64_phdr);
  335. memset(nhdr, 0, sizeof(struct elf64_phdr));
  336. nhdr->p_type = PT_NOTE;
  337. unsigned long long foffset = MRDUMP_CORE_HEADER_SIZE;
  338. int i;
  339. for (i = 1; memlist[i].address != 0;i++) {
  340. phdr = (struct elf64_phdr *) bufp;
  341. bufp += sizeof(struct elf64_phdr);
  342. offset += sizeof(struct elf64_phdr);
  343. phdr->p_type = PT_LOAD;
  344. phdr->p_flags = PF_R|PF_W|PF_X;
  345. phdr->p_offset = foffset;
  346. phdr->p_vaddr = 0;
  347. phdr->p_paddr = memlist[i].address;
  348. phdr->p_filesz = memlist[i].size;
  349. phdr->p_memsz = memlist[i].size;
  350. phdr->p_align = 0;
  351. foffset += phdr->p_filesz;
  352. }
  353. mrdump_elf_setup_eident(elf->e_ident, ELFCLASS64);
  354. mrdump_elf_setup_elfhdr(elf, EM_AARCH64, struct elf64_hdr, struct elf64_phdr, i);
  355. nhdr->p_offset = offset;
  356. /* NT_PRPSINFO */
  357. struct elf_prpsinfo64 prpsinfo;
  358. struct memelfnote notes;
  359. /* set up the process info */
  360. notes.name = CORE_STR;
  361. notes.type = NT_PRPSINFO;
  362. notes.datasz = sizeof(struct elf_prpsinfo64);
  363. notes.data = &prpsinfo;
  364. memset(&prpsinfo, 0, sizeof(struct elf_prpsinfo64));
  365. prpsinfo.pr_state = 0;
  366. prpsinfo.pr_sname = 'R';
  367. prpsinfo.pr_zomb = 0;
  368. prpsinfo.pr_gid = prpsinfo.pr_uid = mrdump_cb->crash_record.fault_cpu + 1;
  369. strlcpy(prpsinfo.pr_fname, "vmlinux", sizeof(prpsinfo.pr_fname));
  370. strlcpy(prpsinfo.pr_psargs, "vmlinux", ELF_PRARGSZ);
  371. nhdr->p_filesz += notesize64(&notes);
  372. bufp = storenote64(&notes, bufp);
  373. bufp = mrdump_core64_write_machdesc(mrdump_cb, nhdr, bufp);
  374. bufp = mrdump_core64_write_vmcoreinfo(mrdump_cb, nhdr, bufp);
  375. /* Store pre-cpu backtrace */
  376. bufp = mrdump_core64_write_cpu_note(mrdump_cb, mrdump_cb->crash_record.fault_cpu, nhdr, bufp);
  377. for (unsigned int cpu = 0; cpu < kparams->nr_cpus; cpu++) {
  378. if (cpu != mrdump_cb->crash_record.fault_cpu) {
  379. bufp = mrdump_core64_write_cpu_note(mrdump_cb, cpu, nhdr, bufp);
  380. }
  381. }
  382. /* store mrdump control block */
  383. bufp = mrdump_core64_write_cb(mrdump_cb, nhdr, bufp);
  384. }
  385. void mrdump_core_header_init(const struct mrdump_control_block *kparams, const struct kzip_addlist *memlist)
  386. {
  387. if (kparams->machdesc.page_offset <= 0xffffffffULL) {
  388. voprintf_info("32b kernel detected\n");
  389. mrdump_core32_header_init(kparams, memlist);
  390. } else {
  391. voprintf_info("64b kernel detected\n");
  392. mrdump_core64_header_init(kparams, memlist);
  393. }
  394. }