recordmcount.pl 13 KB

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  1. #!/usr/bin/perl -w
  2. # (c) 2008, Steven Rostedt <srostedt@redhat.com>
  3. # Licensed under the terms of the GNU GPL License version 2
  4. #
  5. # recordmcount.pl - makes a section called __mcount_loc that holds
  6. # all the offsets to the calls to mcount.
  7. #
  8. #
  9. # What we want to end up with is a section in vmlinux called
  10. # __mcount_loc that contains a list of pointers to all the
  11. # call sites in the kernel that call mcount. Later on boot up, the kernel
  12. # will read this list, save the locations and turn them into nops.
  13. # When tracing or profiling is later enabled, these locations will then
  14. # be converted back to pointers to some function.
  15. #
  16. # This is no easy feat. This script is called just after the original
  17. # object is compiled and before it is linked.
  18. #
  19. # The references to the call sites are offsets from the section of text
  20. # that the call site is in. Hence, all functions in a section that
  21. # has a call site to mcount, will have the offset from the beginning of
  22. # the section and not the beginning of the function.
  23. #
  24. # The trick is to find a way to record the beginning of the section.
  25. # The way we do this is to look at the first function in the section
  26. # which will also be the location of that section after final link.
  27. # e.g.
  28. #
  29. # .section ".text.sched"
  30. # .globl my_func
  31. # my_func:
  32. # [...]
  33. # call mcount (offset: 0x5)
  34. # [...]
  35. # ret
  36. # other_func:
  37. # [...]
  38. # call mcount (offset: 0x1b)
  39. # [...]
  40. #
  41. # Both relocation offsets for the mcounts in the above example will be
  42. # offset from .text.sched. If we make another file called tmp.s with:
  43. #
  44. # .section __mcount_loc
  45. # .quad my_func + 0x5
  46. # .quad my_func + 0x1b
  47. #
  48. # We can then compile this tmp.s into tmp.o, and link it to the original
  49. # object.
  50. #
  51. # But this gets hard if my_func is not globl (a static function).
  52. # In such a case we have:
  53. #
  54. # .section ".text.sched"
  55. # my_func:
  56. # [...]
  57. # call mcount (offset: 0x5)
  58. # [...]
  59. # ret
  60. # .globl my_func
  61. # other_func:
  62. # [...]
  63. # call mcount (offset: 0x1b)
  64. # [...]
  65. #
  66. # If we make the tmp.s the same as above, when we link together with
  67. # the original object, we will end up with two symbols for my_func:
  68. # one local, one global. After final compile, we will end up with
  69. # an undefined reference to my_func.
  70. #
  71. # Since local objects can reference local variables, we need to find
  72. # a way to make tmp.o reference the local objects of the original object
  73. # file after it is linked together. To do this, we convert the my_func
  74. # into a global symbol before linking tmp.o. Then after we link tmp.o
  75. # we will only have a single symbol for my_func that is global.
  76. # We can convert my_func back into a local symbol and we are done.
  77. #
  78. # Here are the steps we take:
  79. #
  80. # 1) Record all the local symbols by using 'nm'
  81. # 2) Use objdump to find all the call site offsets and sections for
  82. # mcount.
  83. # 3) Compile the list into its own object.
  84. # 4) Do we have to deal with local functions? If not, go to step 8.
  85. # 5) Make an object that converts these local functions to global symbols
  86. # with objcopy.
  87. # 6) Link together this new object with the list object.
  88. # 7) Convert the local functions back to local symbols and rename
  89. # the result as the original object.
  90. # End.
  91. # 8) Link the object with the list object.
  92. # 9) Move the result back to the original object.
  93. # End.
  94. #
  95. use strict;
  96. my $P = $0;
  97. $P =~ s@.*/@@g;
  98. my $V = '0.1';
  99. if ($#ARGV < 7) {
  100. print "usage: $P arch bits objdump objcopy cc ld nm rm mv is_module inputfile\n";
  101. print "version: $V\n";
  102. exit(1);
  103. }
  104. my ($arch, $bits, $objdump, $objcopy, $cc,
  105. $ld, $nm, $rm, $mv, $is_module, $inputfile) = @ARGV;
  106. # This file refers to mcount and shouldn't be ftraced, so lets' ignore it
  107. if ($inputfile eq "kernel/trace/ftrace.o") {
  108. exit(0);
  109. }
  110. # Acceptable sections to record.
  111. my %text_sections = (
  112. ".text" => 1,
  113. ".sched.text" => 1,
  114. ".spinlock.text" => 1,
  115. ".irqentry.text" => 1,
  116. );
  117. $objdump = "objdump" if ((length $objdump) == 0);
  118. $objcopy = "objcopy" if ((length $objcopy) == 0);
  119. $cc = "gcc" if ((length $cc) == 0);
  120. $ld = "ld" if ((length $ld) == 0);
  121. $nm = "nm" if ((length $nm) == 0);
  122. $rm = "rm" if ((length $rm) == 0);
  123. $mv = "mv" if ((length $mv) == 0);
  124. #print STDERR "running: $P '$arch' '$objdump' '$objcopy' '$cc' '$ld' " .
  125. # "'$nm' '$rm' '$mv' '$inputfile'\n";
  126. my %locals; # List of local (static) functions
  127. my %weak; # List of weak functions
  128. my %convert; # List of local functions used that needs conversion
  129. my $type;
  130. my $nm_regex; # Find the local functions (return function)
  131. my $section_regex; # Find the start of a section
  132. my $function_regex; # Find the name of a function
  133. # (return offset and func name)
  134. my $mcount_regex; # Find the call site to mcount (return offset)
  135. my $alignment; # The .align value to use for $mcount_section
  136. my $section_type; # Section header plus possible alignment command
  137. if ($arch eq "x86") {
  138. if ($bits == 64) {
  139. $arch = "x86_64";
  140. } else {
  141. $arch = "i386";
  142. }
  143. }
  144. #
  145. # We base the defaults off of i386, the other archs may
  146. # feel free to change them in the below if statements.
  147. #
  148. $nm_regex = "^[0-9a-fA-F]+\\s+t\\s+(\\S+)";
  149. $section_regex = "Disassembly of section\\s+(\\S+):";
  150. $function_regex = "^([0-9a-fA-F]+)\\s+<(.*?)>:";
  151. $mcount_regex = "^\\s*([0-9a-fA-F]+):.*\\smcount\$";
  152. $section_type = '@progbits';
  153. $type = ".long";
  154. if ($arch eq "x86_64") {
  155. $mcount_regex = "^\\s*([0-9a-fA-F]+):.*\\smcount([+-]0x[0-9a-zA-Z]+)?\$";
  156. $type = ".quad";
  157. $alignment = 8;
  158. # force flags for this arch
  159. $ld .= " -m elf_x86_64";
  160. $objdump .= " -M x86-64";
  161. $objcopy .= " -O elf64-x86-64";
  162. $cc .= " -m64";
  163. } elsif ($arch eq "i386") {
  164. $alignment = 4;
  165. # force flags for this arch
  166. $ld .= " -m elf_i386";
  167. $objdump .= " -M i386";
  168. $objcopy .= " -O elf32-i386";
  169. $cc .= " -m32";
  170. } elsif ($arch eq "sh") {
  171. $alignment = 2;
  172. # force flags for this arch
  173. $ld .= " -m shlelf_linux";
  174. $objcopy .= " -O elf32-sh-linux";
  175. $cc .= " -m32";
  176. } elsif ($arch eq "powerpc") {
  177. $nm_regex = "^[0-9a-fA-F]+\\s+t\\s+(\\.?\\S+)";
  178. $function_regex = "^([0-9a-fA-F]+)\\s+<(\\.?.*?)>:";
  179. $mcount_regex = "^\\s*([0-9a-fA-F]+):.*\\s\\.?_mcount\$";
  180. if ($bits == 64) {
  181. $type = ".quad";
  182. }
  183. } elsif ($arch eq "arm") {
  184. $alignment = 2;
  185. $section_type = '%progbits';
  186. } elsif ($arch eq "ia64") {
  187. $mcount_regex = "^\\s*([0-9a-fA-F]+):.*\\s_mcount\$";
  188. $type = "data8";
  189. if ($is_module eq "0") {
  190. $cc .= " -mconstant-gp";
  191. }
  192. } else {
  193. die "Arch $arch is not supported with CONFIG_FTRACE_MCOUNT_RECORD";
  194. }
  195. my $text_found = 0;
  196. my $read_function = 0;
  197. my $opened = 0;
  198. my $mcount_section = "__mcount_loc";
  199. my $dirname;
  200. my $filename;
  201. my $prefix;
  202. my $ext;
  203. if ($inputfile =~ m,^(.*)/([^/]*)$,) {
  204. $dirname = $1;
  205. $filename = $2;
  206. } else {
  207. $dirname = ".";
  208. $filename = $inputfile;
  209. }
  210. if ($filename =~ m,^(.*)(\.\S),) {
  211. $prefix = $1;
  212. $ext = $2;
  213. } else {
  214. $prefix = $filename;
  215. $ext = "";
  216. }
  217. my $mcount_s = $dirname . "/.tmp_mc_" . $prefix . ".s";
  218. my $mcount_o = $dirname . "/.tmp_mc_" . $prefix . ".o";
  219. #
  220. # --globalize-symbols came out in 2.17, we must test the version
  221. # of objcopy, and if it is less than 2.17, then we can not
  222. # record local functions.
  223. my $use_locals = 01;
  224. my $local_warn_once = 0;
  225. my $found_version = 0;
  226. open (IN, "$objcopy --version |") || die "error running $objcopy";
  227. while (<IN>) {
  228. if (/objcopy.*\s(\d+)\.(\d+)/) {
  229. my $major = $1;
  230. my $minor = $2;
  231. $found_version = 1;
  232. if ($major < 2 ||
  233. ($major == 2 && $minor < 17)) {
  234. $use_locals = 0;
  235. }
  236. last;
  237. }
  238. }
  239. close (IN);
  240. if (!$found_version) {
  241. print STDERR "WARNING: could not find objcopy version.\n" .
  242. "\tDisabling local function references.\n";
  243. }
  244. #
  245. # Step 1: find all the local (static functions) and weak symbols.
  246. # 't' is local, 'w/W' is weak (we never use a weak function)
  247. #
  248. open (IN, "$nm $inputfile|") || die "error running $nm";
  249. while (<IN>) {
  250. if (/$nm_regex/) {
  251. $locals{$1} = 1;
  252. } elsif (/^[0-9a-fA-F]+\s+([wW])\s+(\S+)/) {
  253. $weak{$2} = $1;
  254. }
  255. }
  256. close(IN);
  257. my @offsets; # Array of offsets of mcount callers
  258. my $ref_func; # reference function to use for offsets
  259. my $offset = 0; # offset of ref_func to section beginning
  260. ##
  261. # update_funcs - print out the current mcount callers
  262. #
  263. # Go through the list of offsets to callers and write them to
  264. # the output file in a format that can be read by an assembler.
  265. #
  266. sub update_funcs
  267. {
  268. return if ($#offsets < 0);
  269. defined($ref_func) || die "No function to reference";
  270. # A section only had a weak function, to represent it.
  271. # Unfortunately, a weak function may be overwritten by another
  272. # function of the same name, making all these offsets incorrect.
  273. # To be safe, we simply print a warning and bail.
  274. if (defined $weak{$ref_func}) {
  275. print STDERR
  276. "$inputfile: WARNING: referencing weak function" .
  277. " $ref_func for mcount\n";
  278. return;
  279. }
  280. # is this function static? If so, note this fact.
  281. if (defined $locals{$ref_func}) {
  282. # only use locals if objcopy supports globalize-symbols
  283. if (!$use_locals) {
  284. return;
  285. }
  286. $convert{$ref_func} = 1;
  287. }
  288. # Loop through all the mcount caller offsets and print a reference
  289. # to the caller based from the ref_func.
  290. for (my $i=0; $i <= $#offsets; $i++) {
  291. if (!$opened) {
  292. open(FILE, ">$mcount_s") || die "can't create $mcount_s\n";
  293. $opened = 1;
  294. print FILE "\t.section $mcount_section,\"a\",$section_type\n";
  295. print FILE "\t.align $alignment\n" if (defined($alignment));
  296. }
  297. printf FILE "\t%s %s + %d\n", $type, $ref_func, $offsets[$i] - $offset;
  298. }
  299. }
  300. #
  301. # Step 2: find the sections and mcount call sites
  302. #
  303. open(IN, "$objdump -hdr $inputfile|") || die "error running $objdump";
  304. my $text;
  305. my $read_headers = 1;
  306. while (<IN>) {
  307. # is it a section?
  308. if (/$section_regex/) {
  309. $read_headers = 0;
  310. # Only record text sections that we know are safe
  311. if (defined($text_sections{$1})) {
  312. $read_function = 1;
  313. } else {
  314. $read_function = 0;
  315. }
  316. # print out any recorded offsets
  317. update_funcs() if ($text_found);
  318. # reset all markers and arrays
  319. $text_found = 0;
  320. undef($ref_func);
  321. undef(@offsets);
  322. # section found, now is this a start of a function?
  323. } elsif ($read_function && /$function_regex/) {
  324. $text_found = 1;
  325. $offset = hex $1;
  326. $text = $2;
  327. # if this is either a local function or a weak function
  328. # keep looking for functions that are global that
  329. # we can use safely.
  330. if (!defined($locals{$text}) && !defined($weak{$text})) {
  331. $ref_func = $text;
  332. $read_function = 0;
  333. } else {
  334. # if we already have a function, and this is weak, skip it
  335. if (!defined($ref_func) || !defined($weak{$text})) {
  336. $ref_func = $text;
  337. }
  338. }
  339. } elsif ($read_headers && /$mcount_section/) {
  340. #
  341. # Somehow the make process can execute this script on an
  342. # object twice. If it does, we would duplicate the mcount
  343. # section and it will cause the function tracer self test
  344. # to fail. Check if the mcount section exists, and if it does,
  345. # warn and exit.
  346. #
  347. print STDERR "ERROR: $mcount_section already in $inputfile\n" .
  348. "\tThis may be an indication that your build is corrupted.\n" .
  349. "\tDelete $inputfile and try again. If the same object file\n" .
  350. "\tstill causes an issue, then disable CONFIG_DYNAMIC_FTRACE.\n";
  351. exit(-1);
  352. }
  353. # is this a call site to mcount? If so, record it to print later
  354. if ($text_found && /$mcount_regex/) {
  355. $offsets[$#offsets + 1] = hex $1;
  356. }
  357. }
  358. # dump out anymore offsets that may have been found
  359. update_funcs() if ($text_found);
  360. # If we did not find any mcount callers, we are done (do nothing).
  361. if (!$opened) {
  362. exit(0);
  363. }
  364. close(FILE);
  365. #
  366. # Step 3: Compile the file that holds the list of call sites to mcount.
  367. #
  368. `$cc -o $mcount_o -c $mcount_s`;
  369. my @converts = keys %convert;
  370. #
  371. # Step 4: Do we have sections that started with local functions?
  372. #
  373. if ($#converts >= 0) {
  374. my $globallist = "";
  375. my $locallist = "";
  376. foreach my $con (@converts) {
  377. $globallist .= " --globalize-symbol $con";
  378. $locallist .= " --localize-symbol $con";
  379. }
  380. my $globalobj = $dirname . "/.tmp_gl_" . $filename;
  381. my $globalmix = $dirname . "/.tmp_mx_" . $filename;
  382. #
  383. # Step 5: set up each local function as a global
  384. #
  385. `$objcopy $globallist $inputfile $globalobj`;
  386. #
  387. # Step 6: Link the global version to our list.
  388. #
  389. `$ld -r $globalobj $mcount_o -o $globalmix`;
  390. #
  391. # Step 7: Convert the local functions back into local symbols
  392. #
  393. `$objcopy $locallist $globalmix $inputfile`;
  394. # Remove the temp files
  395. `$rm $globalobj $globalmix`;
  396. } else {
  397. my $mix = $dirname . "/.tmp_mx_" . $filename;
  398. #
  399. # Step 8: Link the object with our list of call sites object.
  400. #
  401. `$ld -r $inputfile $mcount_o -o $mix`;
  402. #
  403. # Step 9: Move the result back to the original object.
  404. #
  405. `$mv $mix $inputfile`;
  406. }
  407. # Clean up the temp files
  408. `$rm $mcount_o $mcount_s`;
  409. exit(0);