recordmcount.h 16 KB

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  1. /*
  2. * recordmcount.h
  3. *
  4. * This code was taken out of recordmcount.c written by
  5. * Copyright 2009 John F. Reiser <jreiser@BitWagon.com>. All rights reserved.
  6. *
  7. * The original code had the same algorithms for both 32bit
  8. * and 64bit ELF files, but the code was duplicated to support
  9. * the difference in structures that were used. This
  10. * file creates a macro of everything that is different between
  11. * the 64 and 32 bit code, such that by including this header
  12. * twice we can create both sets of functions by including this
  13. * header once with RECORD_MCOUNT_64 undefined, and again with
  14. * it defined.
  15. *
  16. * This conversion to macros was done by:
  17. * Copyright 2010 Steven Rostedt <srostedt@redhat.com>, Red Hat Inc.
  18. *
  19. * Licensed under the GNU General Public License, version 2 (GPLv2).
  20. */
  21. #undef append_func
  22. #undef is_fake_mcount
  23. #undef fn_is_fake_mcount
  24. #undef MIPS_is_fake_mcount
  25. #undef mcount_adjust
  26. #undef sift_rel_mcount
  27. #undef nop_mcount
  28. #undef find_secsym_ndx
  29. #undef __has_rel_mcount
  30. #undef has_rel_mcount
  31. #undef tot_relsize
  32. #undef get_mcountsym
  33. #undef get_sym_str_and_relp
  34. #undef do_func
  35. #undef Elf_Addr
  36. #undef Elf_Ehdr
  37. #undef Elf_Shdr
  38. #undef Elf_Rel
  39. #undef Elf_Rela
  40. #undef Elf_Sym
  41. #undef ELF_R_SYM
  42. #undef Elf_r_sym
  43. #undef ELF_R_INFO
  44. #undef Elf_r_info
  45. #undef ELF_ST_BIND
  46. #undef fn_ELF_R_SYM
  47. #undef fn_ELF_R_INFO
  48. #undef uint_t
  49. #undef _w
  50. #undef _align
  51. #undef _size
  52. #ifdef RECORD_MCOUNT_64
  53. # define append_func append64
  54. # define sift_rel_mcount sift64_rel_mcount
  55. # define nop_mcount nop_mcount_64
  56. # define find_secsym_ndx find64_secsym_ndx
  57. # define __has_rel_mcount __has64_rel_mcount
  58. # define has_rel_mcount has64_rel_mcount
  59. # define tot_relsize tot64_relsize
  60. # define get_sym_str_and_relp get_sym_str_and_relp_64
  61. # define do_func do64
  62. # define get_mcountsym get_mcountsym_64
  63. # define is_fake_mcount is_fake_mcount64
  64. # define fn_is_fake_mcount fn_is_fake_mcount64
  65. # define MIPS_is_fake_mcount MIPS64_is_fake_mcount
  66. # define mcount_adjust mcount_adjust_64
  67. # define Elf_Addr Elf64_Addr
  68. # define Elf_Ehdr Elf64_Ehdr
  69. # define Elf_Shdr Elf64_Shdr
  70. # define Elf_Rel Elf64_Rel
  71. # define Elf_Rela Elf64_Rela
  72. # define Elf_Sym Elf64_Sym
  73. # define ELF_R_SYM ELF64_R_SYM
  74. # define Elf_r_sym Elf64_r_sym
  75. # define ELF_R_INFO ELF64_R_INFO
  76. # define Elf_r_info Elf64_r_info
  77. # define ELF_ST_BIND ELF64_ST_BIND
  78. # define fn_ELF_R_SYM fn_ELF64_R_SYM
  79. # define fn_ELF_R_INFO fn_ELF64_R_INFO
  80. # define uint_t uint64_t
  81. # define _w w8
  82. # define _align 7u
  83. # define _size 8
  84. #else
  85. # define append_func append32
  86. # define sift_rel_mcount sift32_rel_mcount
  87. # define nop_mcount nop_mcount_32
  88. # define find_secsym_ndx find32_secsym_ndx
  89. # define __has_rel_mcount __has32_rel_mcount
  90. # define has_rel_mcount has32_rel_mcount
  91. # define tot_relsize tot32_relsize
  92. # define get_sym_str_and_relp get_sym_str_and_relp_32
  93. # define do_func do32
  94. # define get_mcountsym get_mcountsym_32
  95. # define is_fake_mcount is_fake_mcount32
  96. # define fn_is_fake_mcount fn_is_fake_mcount32
  97. # define MIPS_is_fake_mcount MIPS32_is_fake_mcount
  98. # define mcount_adjust mcount_adjust_32
  99. # define Elf_Addr Elf32_Addr
  100. # define Elf_Ehdr Elf32_Ehdr
  101. # define Elf_Shdr Elf32_Shdr
  102. # define Elf_Rel Elf32_Rel
  103. # define Elf_Rela Elf32_Rela
  104. # define Elf_Sym Elf32_Sym
  105. # define ELF_R_SYM ELF32_R_SYM
  106. # define Elf_r_sym Elf32_r_sym
  107. # define ELF_R_INFO ELF32_R_INFO
  108. # define Elf_r_info Elf32_r_info
  109. # define ELF_ST_BIND ELF32_ST_BIND
  110. # define fn_ELF_R_SYM fn_ELF32_R_SYM
  111. # define fn_ELF_R_INFO fn_ELF32_R_INFO
  112. # define uint_t uint32_t
  113. # define _w w
  114. # define _align 3u
  115. # define _size 4
  116. #endif
  117. /* Functions and pointers that do_file() may override for specific e_machine. */
  118. static int fn_is_fake_mcount(Elf_Rel const *rp)
  119. {
  120. return 0;
  121. }
  122. static int (*is_fake_mcount)(Elf_Rel const *rp) = fn_is_fake_mcount;
  123. static uint_t fn_ELF_R_SYM(Elf_Rel const *rp)
  124. {
  125. return ELF_R_SYM(_w(rp->r_info));
  126. }
  127. static uint_t (*Elf_r_sym)(Elf_Rel const *rp) = fn_ELF_R_SYM;
  128. static void fn_ELF_R_INFO(Elf_Rel *const rp, unsigned sym, unsigned type)
  129. {
  130. rp->r_info = _w(ELF_R_INFO(sym, type));
  131. }
  132. static void (*Elf_r_info)(Elf_Rel *const rp, unsigned sym, unsigned type) = fn_ELF_R_INFO;
  133. static int mcount_adjust = 0;
  134. /*
  135. * MIPS mcount long call has 2 _mcount symbols, only the position of the 1st
  136. * _mcount symbol is needed for dynamic function tracer, with it, to disable
  137. * tracing(ftrace_make_nop), the instruction in the position is replaced with
  138. * the "b label" instruction, to enable tracing(ftrace_make_call), replace the
  139. * instruction back. So, here, we set the 2nd one as fake and filter it.
  140. *
  141. * c: 3c030000 lui v1,0x0 <--> b label
  142. * c: R_MIPS_HI16 _mcount
  143. * c: R_MIPS_NONE *ABS*
  144. * c: R_MIPS_NONE *ABS*
  145. * 10: 64630000 daddiu v1,v1,0
  146. * 10: R_MIPS_LO16 _mcount
  147. * 10: R_MIPS_NONE *ABS*
  148. * 10: R_MIPS_NONE *ABS*
  149. * 14: 03e0082d move at,ra
  150. * 18: 0060f809 jalr v1
  151. * label:
  152. */
  153. #define MIPS_FAKEMCOUNT_OFFSET 4
  154. static int MIPS_is_fake_mcount(Elf_Rel const *rp)
  155. {
  156. static Elf_Addr old_r_offset;
  157. Elf_Addr current_r_offset = _w(rp->r_offset);
  158. int is_fake;
  159. is_fake = old_r_offset &&
  160. (current_r_offset - old_r_offset == MIPS_FAKEMCOUNT_OFFSET);
  161. old_r_offset = current_r_offset;
  162. return is_fake;
  163. }
  164. /* Append the new shstrtab, Elf_Shdr[], __mcount_loc and its relocations. */
  165. static void append_func(Elf_Ehdr *const ehdr,
  166. Elf_Shdr *const shstr,
  167. uint_t const *const mloc0,
  168. uint_t const *const mlocp,
  169. Elf_Rel const *const mrel0,
  170. Elf_Rel const *const mrelp,
  171. unsigned int const rel_entsize,
  172. unsigned int const symsec_sh_link)
  173. {
  174. /* Begin constructing output file */
  175. Elf_Shdr mcsec;
  176. char const *mc_name = (sizeof(Elf_Rela) == rel_entsize)
  177. ? ".rela__mcount_loc"
  178. : ".rel__mcount_loc";
  179. unsigned const old_shnum = w2(ehdr->e_shnum);
  180. uint_t const old_shoff = _w(ehdr->e_shoff);
  181. uint_t const old_shstr_sh_size = _w(shstr->sh_size);
  182. uint_t const old_shstr_sh_offset = _w(shstr->sh_offset);
  183. uint_t t = 1 + strlen(mc_name) + _w(shstr->sh_size);
  184. uint_t new_e_shoff;
  185. shstr->sh_size = _w(t);
  186. shstr->sh_offset = _w(sb.st_size);
  187. t += sb.st_size;
  188. t += (_align & -t); /* word-byte align */
  189. new_e_shoff = t;
  190. /* body for new shstrtab */
  191. ulseek(fd_map, sb.st_size, SEEK_SET);
  192. uwrite(fd_map, old_shstr_sh_offset + (void *)ehdr, old_shstr_sh_size);
  193. uwrite(fd_map, mc_name, 1 + strlen(mc_name));
  194. /* old(modified) Elf_Shdr table, word-byte aligned */
  195. ulseek(fd_map, t, SEEK_SET);
  196. t += sizeof(Elf_Shdr) * old_shnum;
  197. uwrite(fd_map, old_shoff + (void *)ehdr,
  198. sizeof(Elf_Shdr) * old_shnum);
  199. /* new sections __mcount_loc and .rel__mcount_loc */
  200. t += 2*sizeof(mcsec);
  201. mcsec.sh_name = w((sizeof(Elf_Rela) == rel_entsize) + strlen(".rel")
  202. + old_shstr_sh_size);
  203. mcsec.sh_type = w(SHT_PROGBITS);
  204. mcsec.sh_flags = _w(SHF_ALLOC);
  205. mcsec.sh_addr = 0;
  206. mcsec.sh_offset = _w(t);
  207. mcsec.sh_size = _w((void *)mlocp - (void *)mloc0);
  208. mcsec.sh_link = 0;
  209. mcsec.sh_info = 0;
  210. mcsec.sh_addralign = _w(_size);
  211. mcsec.sh_entsize = _w(_size);
  212. uwrite(fd_map, &mcsec, sizeof(mcsec));
  213. mcsec.sh_name = w(old_shstr_sh_size);
  214. mcsec.sh_type = (sizeof(Elf_Rela) == rel_entsize)
  215. ? w(SHT_RELA)
  216. : w(SHT_REL);
  217. mcsec.sh_flags = 0;
  218. mcsec.sh_addr = 0;
  219. mcsec.sh_offset = _w((void *)mlocp - (void *)mloc0 + t);
  220. mcsec.sh_size = _w((void *)mrelp - (void *)mrel0);
  221. mcsec.sh_link = w(symsec_sh_link);
  222. mcsec.sh_info = w(old_shnum);
  223. mcsec.sh_addralign = _w(_size);
  224. mcsec.sh_entsize = _w(rel_entsize);
  225. uwrite(fd_map, &mcsec, sizeof(mcsec));
  226. uwrite(fd_map, mloc0, (void *)mlocp - (void *)mloc0);
  227. uwrite(fd_map, mrel0, (void *)mrelp - (void *)mrel0);
  228. ehdr->e_shoff = _w(new_e_shoff);
  229. ehdr->e_shnum = w2(2 + w2(ehdr->e_shnum)); /* {.rel,}__mcount_loc */
  230. ulseek(fd_map, 0, SEEK_SET);
  231. uwrite(fd_map, ehdr, sizeof(*ehdr));
  232. }
  233. static unsigned get_mcountsym(Elf_Sym const *const sym0,
  234. Elf_Rel const *relp,
  235. char const *const str0)
  236. {
  237. unsigned mcountsym = 0;
  238. Elf_Sym const *const symp =
  239. &sym0[Elf_r_sym(relp)];
  240. char const *symname = &str0[w(symp->st_name)];
  241. char const *mcount = gpfx == '_' ? "_mcount" : "mcount";
  242. if (symname[0] == '.')
  243. ++symname; /* ppc64 hack */
  244. if (strcmp(mcount, symname) == 0 ||
  245. (altmcount && strcmp(altmcount, symname) == 0))
  246. mcountsym = Elf_r_sym(relp);
  247. return mcountsym;
  248. }
  249. static void get_sym_str_and_relp(Elf_Shdr const *const relhdr,
  250. Elf_Ehdr const *const ehdr,
  251. Elf_Sym const **sym0,
  252. char const **str0,
  253. Elf_Rel const **relp)
  254. {
  255. Elf_Shdr *const shdr0 = (Elf_Shdr *)(_w(ehdr->e_shoff)
  256. + (void *)ehdr);
  257. unsigned const symsec_sh_link = w(relhdr->sh_link);
  258. Elf_Shdr const *const symsec = &shdr0[symsec_sh_link];
  259. Elf_Shdr const *const strsec = &shdr0[w(symsec->sh_link)];
  260. Elf_Rel const *const rel0 = (Elf_Rel const *)(_w(relhdr->sh_offset)
  261. + (void *)ehdr);
  262. *sym0 = (Elf_Sym const *)(_w(symsec->sh_offset)
  263. + (void *)ehdr);
  264. *str0 = (char const *)(_w(strsec->sh_offset)
  265. + (void *)ehdr);
  266. *relp = rel0;
  267. }
  268. /*
  269. * Look at the relocations in order to find the calls to mcount.
  270. * Accumulate the section offsets that are found, and their relocation info,
  271. * onto the end of the existing arrays.
  272. */
  273. static uint_t *sift_rel_mcount(uint_t *mlocp,
  274. unsigned const offbase,
  275. Elf_Rel **const mrelpp,
  276. Elf_Shdr const *const relhdr,
  277. Elf_Ehdr const *const ehdr,
  278. unsigned const recsym,
  279. uint_t const recval,
  280. unsigned const reltype)
  281. {
  282. uint_t *const mloc0 = mlocp;
  283. Elf_Rel *mrelp = *mrelpp;
  284. Elf_Sym const *sym0;
  285. char const *str0;
  286. Elf_Rel const *relp;
  287. unsigned rel_entsize = _w(relhdr->sh_entsize);
  288. unsigned const nrel = _w(relhdr->sh_size) / rel_entsize;
  289. unsigned mcountsym = 0;
  290. unsigned t;
  291. get_sym_str_and_relp(relhdr, ehdr, &sym0, &str0, &relp);
  292. for (t = nrel; t; --t) {
  293. if (!mcountsym)
  294. mcountsym = get_mcountsym(sym0, relp, str0);
  295. if (mcountsym == Elf_r_sym(relp) && !is_fake_mcount(relp)) {
  296. uint_t const addend =
  297. _w(_w(relp->r_offset) - recval + mcount_adjust);
  298. mrelp->r_offset = _w(offbase
  299. + ((void *)mlocp - (void *)mloc0));
  300. Elf_r_info(mrelp, recsym, reltype);
  301. if (rel_entsize == sizeof(Elf_Rela)) {
  302. ((Elf_Rela *)mrelp)->r_addend = addend;
  303. *mlocp++ = 0;
  304. } else
  305. *mlocp++ = addend;
  306. mrelp = (Elf_Rel *)(rel_entsize + (void *)mrelp);
  307. }
  308. relp = (Elf_Rel const *)(rel_entsize + (void *)relp);
  309. }
  310. *mrelpp = mrelp;
  311. return mlocp;
  312. }
  313. /*
  314. * Read the relocation table again, but this time its called on sections
  315. * that are not going to be traced. The mcount calls here will be converted
  316. * into nops.
  317. */
  318. static void nop_mcount(Elf_Shdr const *const relhdr,
  319. Elf_Ehdr const *const ehdr,
  320. const char *const txtname)
  321. {
  322. Elf_Shdr *const shdr0 = (Elf_Shdr *)(_w(ehdr->e_shoff)
  323. + (void *)ehdr);
  324. Elf_Sym const *sym0;
  325. char const *str0;
  326. Elf_Rel const *relp;
  327. Elf_Shdr const *const shdr = &shdr0[w(relhdr->sh_info)];
  328. unsigned rel_entsize = _w(relhdr->sh_entsize);
  329. unsigned const nrel = _w(relhdr->sh_size) / rel_entsize;
  330. unsigned mcountsym = 0;
  331. unsigned t;
  332. int once = 0;
  333. get_sym_str_and_relp(relhdr, ehdr, &sym0, &str0, &relp);
  334. for (t = nrel; t; --t) {
  335. int ret = -1;
  336. if (!mcountsym)
  337. mcountsym = get_mcountsym(sym0, relp, str0);
  338. if (mcountsym == Elf_r_sym(relp) && !is_fake_mcount(relp)) {
  339. if (make_nop)
  340. ret = make_nop((void *)ehdr, shdr->sh_offset + relp->r_offset);
  341. if (warn_on_notrace_sect && !once) {
  342. printf("Section %s has mcount callers being ignored\n",
  343. txtname);
  344. once = 1;
  345. /* just warn? */
  346. if (!make_nop)
  347. return;
  348. }
  349. }
  350. /*
  351. * If we successfully removed the mcount, mark the relocation
  352. * as a nop (don't do anything with it).
  353. */
  354. if (!ret) {
  355. Elf_Rel rel;
  356. rel = *(Elf_Rel *)relp;
  357. Elf_r_info(&rel, Elf_r_sym(relp), rel_type_nop);
  358. ulseek(fd_map, (void *)relp - (void *)ehdr, SEEK_SET);
  359. uwrite(fd_map, &rel, sizeof(rel));
  360. }
  361. relp = (Elf_Rel const *)(rel_entsize + (void *)relp);
  362. }
  363. }
  364. /*
  365. * Find a symbol in the given section, to be used as the base for relocating
  366. * the table of offsets of calls to mcount. A local or global symbol suffices,
  367. * but avoid a Weak symbol because it may be overridden; the change in value
  368. * would invalidate the relocations of the offsets of the calls to mcount.
  369. * Often the found symbol will be the unnamed local symbol generated by
  370. * GNU 'as' for the start of each section. For example:
  371. * Num: Value Size Type Bind Vis Ndx Name
  372. * 2: 00000000 0 SECTION LOCAL DEFAULT 1
  373. */
  374. static unsigned find_secsym_ndx(unsigned const txtndx,
  375. char const *const txtname,
  376. uint_t *const recvalp,
  377. Elf_Shdr const *const symhdr,
  378. Elf_Ehdr const *const ehdr)
  379. {
  380. Elf_Sym const *const sym0 = (Elf_Sym const *)(_w(symhdr->sh_offset)
  381. + (void *)ehdr);
  382. unsigned const nsym = _w(symhdr->sh_size) / _w(symhdr->sh_entsize);
  383. Elf_Sym const *symp;
  384. unsigned t;
  385. for (symp = sym0, t = nsym; t; --t, ++symp) {
  386. unsigned int const st_bind = ELF_ST_BIND(symp->st_info);
  387. if (txtndx == w2(symp->st_shndx)
  388. /* avoid STB_WEAK */
  389. && (STB_LOCAL == st_bind || STB_GLOBAL == st_bind)) {
  390. *recvalp = _w(symp->st_value);
  391. return symp - sym0;
  392. }
  393. }
  394. fprintf(stderr, "Cannot find symbol for section %d: %s.\n",
  395. txtndx, txtname);
  396. fail_file();
  397. }
  398. /* Evade ISO C restriction: no declaration after statement in has_rel_mcount. */
  399. static char const *
  400. __has_rel_mcount(Elf_Shdr const *const relhdr, /* is SHT_REL or SHT_RELA */
  401. Elf_Shdr const *const shdr0,
  402. char const *const shstrtab,
  403. char const *const fname)
  404. {
  405. /* .sh_info depends on .sh_type == SHT_REL[,A] */
  406. Elf_Shdr const *const txthdr = &shdr0[w(relhdr->sh_info)];
  407. char const *const txtname = &shstrtab[w(txthdr->sh_name)];
  408. if (strcmp("__mcount_loc", txtname) == 0) {
  409. fprintf(stderr, "warning: __mcount_loc already exists: %s\n",
  410. fname);
  411. succeed_file();
  412. }
  413. if (w(txthdr->sh_type) != SHT_PROGBITS ||
  414. !(w(txthdr->sh_flags) & SHF_EXECINSTR))
  415. return NULL;
  416. return txtname;
  417. }
  418. static char const *has_rel_mcount(Elf_Shdr const *const relhdr,
  419. Elf_Shdr const *const shdr0,
  420. char const *const shstrtab,
  421. char const *const fname)
  422. {
  423. if (w(relhdr->sh_type) != SHT_REL && w(relhdr->sh_type) != SHT_RELA)
  424. return NULL;
  425. return __has_rel_mcount(relhdr, shdr0, shstrtab, fname);
  426. }
  427. static unsigned tot_relsize(Elf_Shdr const *const shdr0,
  428. unsigned nhdr,
  429. const char *const shstrtab,
  430. const char *const fname)
  431. {
  432. unsigned totrelsz = 0;
  433. Elf_Shdr const *shdrp = shdr0;
  434. char const *txtname;
  435. for (; nhdr; --nhdr, ++shdrp) {
  436. txtname = has_rel_mcount(shdrp, shdr0, shstrtab, fname);
  437. if (txtname && is_mcounted_section_name(txtname))
  438. totrelsz += _w(shdrp->sh_size);
  439. }
  440. return totrelsz;
  441. }
  442. /* Overall supervision for Elf32 ET_REL file. */
  443. static void
  444. do_func(Elf_Ehdr *const ehdr, char const *const fname, unsigned const reltype)
  445. {
  446. Elf_Shdr *const shdr0 = (Elf_Shdr *)(_w(ehdr->e_shoff)
  447. + (void *)ehdr);
  448. unsigned const nhdr = w2(ehdr->e_shnum);
  449. Elf_Shdr *const shstr = &shdr0[w2(ehdr->e_shstrndx)];
  450. char const *const shstrtab = (char const *)(_w(shstr->sh_offset)
  451. + (void *)ehdr);
  452. Elf_Shdr const *relhdr;
  453. unsigned k;
  454. /* Upper bound on space: assume all relevant relocs are for mcount. */
  455. unsigned const totrelsz = tot_relsize(shdr0, nhdr, shstrtab, fname);
  456. Elf_Rel *const mrel0 = umalloc(totrelsz);
  457. Elf_Rel * mrelp = mrel0;
  458. /* 2*sizeof(address) <= sizeof(Elf_Rel) */
  459. uint_t *const mloc0 = umalloc(totrelsz>>1);
  460. uint_t * mlocp = mloc0;
  461. unsigned rel_entsize = 0;
  462. unsigned symsec_sh_link = 0;
  463. for (relhdr = shdr0, k = nhdr; k; --k, ++relhdr) {
  464. char const *const txtname = has_rel_mcount(relhdr, shdr0,
  465. shstrtab, fname);
  466. if (txtname && is_mcounted_section_name(txtname)) {
  467. uint_t recval = 0;
  468. unsigned const recsym = find_secsym_ndx(
  469. w(relhdr->sh_info), txtname, &recval,
  470. &shdr0[symsec_sh_link = w(relhdr->sh_link)],
  471. ehdr);
  472. rel_entsize = _w(relhdr->sh_entsize);
  473. mlocp = sift_rel_mcount(mlocp,
  474. (void *)mlocp - (void *)mloc0, &mrelp,
  475. relhdr, ehdr, recsym, recval, reltype);
  476. } else if (txtname && (warn_on_notrace_sect || make_nop)) {
  477. /*
  478. * This section is ignored by ftrace, but still
  479. * has mcount calls. Convert them to nops now.
  480. */
  481. nop_mcount(relhdr, ehdr, txtname);
  482. }
  483. }
  484. if (mloc0 != mlocp) {
  485. append_func(ehdr, shstr, mloc0, mlocp, mrel0, mrelp,
  486. rel_entsize, symsec_sh_link);
  487. }
  488. free(mrel0);
  489. free(mloc0);
  490. }