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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#
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9# What we want to end up with this is that each object file will have a
10# section called __mcount_loc that will hold the list of pointers to mcount
11# callers. After final linking, the vmlinux will have within .init.data the
12# list of all callers to mcount between __start_mcount_loc and __stop_mcount_loc.
13# Later on boot up, the kernel will read this list, save the locations and turn
14# them into nops. When tracing or profiling is later enabled, these locations
15# will then be converted back to pointers to some function.
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16#
17# This is no easy feat. This script is called just after the original
18# object is compiled and before it is linked.
19#
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20# When parse this object file using 'objdump', the references to the call
21# sites are offsets from the section that the call site is in. Hence, all
22# functions in a section that has a call site to mcount, will have the
23# offset from the beginning of the section and not the beginning of the
24# function.
25#
26# But where this section will reside finally in vmlinx is undetermined at
27# this point. So we can't use this kind of offsets to record the final
28# address of this call site.
29#
30# The trick is to change the call offset referring the start of a section to
31# referring a function symbol in this section. During the link step, 'ld' will
32# compute the final address according to the information we record.
8da3821b 33#
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34# e.g.
35#
31b6e76e 36# .section ".sched.text", "ax"
8da3821b 37# [...]
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38# func1:
39# [...]
40# call mcount (offset: 0x10)
41# [...]
42# ret
43# .globl fun2
44# func2: (offset: 0x20)
45# [...]
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46# [...]
47# ret
d49f6aa7 48# func3:
8da3821b 49# [...]
d49f6aa7 50# call mcount (offset: 0x30)
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51# [...]
52#
53# Both relocation offsets for the mcounts in the above example will be
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54# offset from .sched.text. If we choose global symbol func2 as a reference and
55# make another file called tmp.s with the new offsets:
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56#
57# .section __mcount_loc
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58# .quad func2 - 0x10
59# .quad func2 + 0x10
8da3821b 60#
d49f6aa7 61# We can then compile this tmp.s into tmp.o, and link it back to the original
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62# object.
63#
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64# In our algorithm, we will choose the first global function we meet in this
65# section as the reference. But this gets hard if there is no global functions
66# in this section. In such a case we have to select a local one. E.g. func1:
8da3821b 67#
31b6e76e 68# .section ".sched.text", "ax"
d49f6aa7 69# func1:
8da3821b 70# [...]
d49f6aa7 71# call mcount (offset: 0x10)
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72# [...]
73# ret
d49f6aa7 74# func2:
8da3821b 75# [...]
d49f6aa7 76# call mcount (offset: 0x20)
8da3821b 77# [...]
d49f6aa7 78# .section "other.section"
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79#
80# If we make the tmp.s the same as above, when we link together with
d49f6aa7 81# the original object, we will end up with two symbols for func1:
8da3821b 82# one local, one global. After final compile, we will end up with
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83# an undefined reference to func1 or a wrong reference to another global
84# func1 in other files.
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85#
86# Since local objects can reference local variables, we need to find
87# a way to make tmp.o reference the local objects of the original object
d49f6aa7 88# file after it is linked together. To do this, we convert func1
8da3821b 89# into a global symbol before linking tmp.o. Then after we link tmp.o
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90# we will only have a single symbol for func1 that is global.
91# We can convert func1 back into a local symbol and we are done.
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92#
93# Here are the steps we take:
94#
306dcf47 95# 1) Record all the local and weak symbols by using 'nm'
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96# 2) Use objdump to find all the call site offsets and sections for
97# mcount.
98# 3) Compile the list into its own object.
99# 4) Do we have to deal with local functions? If not, go to step 8.
100# 5) Make an object that converts these local functions to global symbols
101# with objcopy.
102# 6) Link together this new object with the list object.
103# 7) Convert the local functions back to local symbols and rename
104# the result as the original object.
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105# 8) Link the object with the list object.
106# 9) Move the result back to the original object.
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107#
108
109use strict;
110
111my $P = $0;
112$P =~ s@.*/@@g;
113
114my $V = '0.1';
115
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116if ($#ARGV != 11) {
117 print "usage: $P arch endian bits objdump objcopy cc ld nm rm mv is_module inputfile\n";
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118 print "version: $V\n";
119 exit(1);
120}
121
e6299d26 122my ($arch, $endian, $bits, $objdump, $objcopy, $cc,
18c167fd 123 $ld, $nm, $rm, $mv, $is_module, $inputfile) = @ARGV;
8da3821b 124
25aac9dc 125# This file refers to mcount and shouldn't be ftraced, so lets' ignore it
bdd3b052 126if ($inputfile =~ m,kernel/trace/ftrace\.o$,) {
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127 exit(0);
128}
129
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130# Acceptable sections to record.
131my %text_sections = (
132 ".text" => 1,
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133 ".sched.text" => 1,
134 ".spinlock.text" => 1,
a0343e82 135 ".irqentry.text" => 1,
4d828949 136 ".text.unlikely" => 1,
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137);
138
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139# Note: we are nice to C-programmers here, thus we skip the '||='-idiom.
140$objdump = 'objdump' if (!$objdump);
141$objcopy = 'objcopy' if (!$objcopy);
142$cc = 'gcc' if (!$cc);
143$ld = 'ld' if (!$ld);
144$nm = 'nm' if (!$nm);
145$rm = 'rm' if (!$rm);
146$mv = 'mv' if (!$mv);
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147
148#print STDERR "running: $P '$arch' '$objdump' '$objcopy' '$cc' '$ld' " .
149# "'$nm' '$rm' '$mv' '$inputfile'\n";
150
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151my %locals; # List of local (static) functions
152my %weak; # List of weak functions
153my %convert; # List of local functions used that needs conversion
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154
155my $type;
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156my $local_regex; # Match a local function (return function)
157my $weak_regex; # Match a weak function (return function)
8da3821b 158my $section_regex; # Find the start of a section
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159my $function_regex; # Find the name of a function
160 # (return offset and func name)
8da3821b 161my $mcount_regex; # Find the call site to mcount (return offset)
3a3d04ae 162my $alignment; # The .align value to use for $mcount_section
e58918ab 163my $section_type; # Section header plus possible alignment command
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164my $can_use_local = 0; # If we can use local function references
165
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166# Shut up recordmcount if user has older objcopy
167my $quiet_recordmcount = ".tmp_quiet_recordmcount";
168my $print_warning = 1;
169$print_warning = 0 if ( -f $quiet_recordmcount);
170
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171##
172# check_objcopy - whether objcopy supports --globalize-symbols
173#
174# --globalize-symbols came out in 2.17, we must test the version
175# of objcopy, and if it is less than 2.17, then we can not
176# record local functions.
177sub check_objcopy
178{
179 open (IN, "$objcopy --version |") or die "error running $objcopy";
180 while (<IN>) {
181 if (/objcopy.*\s(\d+)\.(\d+)/) {
182 $can_use_local = 1 if ($1 > 2 || ($1 == 2 && $2 >= 17));
183 last;
184 }
185 }
186 close (IN);
187
638adb05 188 if (!$can_use_local && $print_warning) {
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189 print STDERR "WARNING: could not find objcopy version or version " .
190 "is less than 2.17.\n" .
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191 "\tLocal function references are disabled.\n";
192 open (QUIET, ">$quiet_recordmcount");
193 printf QUIET "Disables the warning from recordmcount.pl\n";
194 close QUIET;
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195 }
196}
8da3821b 197
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198if ($arch eq 'x86') {
199 $arch = ($bits == 64) ? 'x86_64' : 'i386';
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200}
201
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202#
203# We base the defaults off of i386, the other archs may
204# feel free to change them in the below if statements.
205#
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206$local_regex = "^[0-9a-fA-F]+\\s+t\\s+(\\S+)";
207$weak_regex = "^[0-9a-fA-F]+\\s+([wW])\\s+(\\S+)";
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208$section_regex = "Disassembly of section\\s+(\\S+):";
209$function_regex = "^([0-9a-fA-F]+)\\s+<(.*?)>:";
210$mcount_regex = "^\\s*([0-9a-fA-F]+):.*\\smcount\$";
e58918ab 211$section_type = '@progbits';
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212$type = ".long";
213
8da3821b 214if ($arch eq "x86_64") {
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215 $mcount_regex = "^\\s*([0-9a-fA-F]+):.*\\smcount([+-]0x[0-9a-zA-Z]+)?\$";
216 $type = ".quad";
7d5222a6 217 $alignment = 8;
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218
219 # force flags for this arch
220 $ld .= " -m elf_x86_64";
221 $objdump .= " -M x86-64";
222 $objcopy .= " -O elf64-x86-64";
223 $cc .= " -m64";
224
8da3821b 225} elsif ($arch eq "i386") {
7d5222a6 226 $alignment = 4;
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227
228 # force flags for this arch
229 $ld .= " -m elf_i386";
230 $objdump .= " -M i386";
231 $objcopy .= " -O elf32-i386";
232 $cc .= " -m32";
233
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234} elsif ($arch eq "s390" && $bits == 32) {
235 $mcount_regex = "^\\s*([0-9a-fA-F]+):\\s*R_390_32\\s+_mcount\$";
236 $alignment = 4;
237 $ld .= " -m elf_s390";
238 $cc .= " -m31";
239
240} elsif ($arch eq "s390" && $bits == 64) {
241 $mcount_regex = "^\\s*([0-9a-fA-F]+):\\s*R_390_(PC|PLT)32DBL\\s+_mcount\\+0x2\$";
242 $alignment = 8;
243 $type = ".quad";
244 $ld .= " -m elf64_s390";
245 $cc .= " -m64";
246
0da85c09 247} elsif ($arch eq "sh") {
3a3d04ae 248 $alignment = 2;
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249
250 # force flags for this arch
251 $ld .= " -m shlelf_linux";
252 $objcopy .= " -O elf32-sh-linux";
253 $cc .= " -m32";
254
42e007d0 255} elsif ($arch eq "powerpc") {
306dcf47 256 $local_regex = "^[0-9a-fA-F]+\\s+t\\s+(\\.?\\S+)";
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257 $function_regex = "^([0-9a-fA-F]+)\\s+<(\\.?.*?)>:";
258 $mcount_regex = "^\\s*([0-9a-fA-F]+):.*\\s\\.?_mcount\$";
c204f726 259
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260 if ($bits == 64) {
261 $type = ".quad";
42e007d0
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262 }
263
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264} elsif ($arch eq "arm") {
265 $alignment = 2;
266 $section_type = '%progbits';
267
418071eb
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268} elsif ($arch eq "ia64") {
269 $mcount_regex = "^\\s*([0-9a-fA-F]+):.*\\s_mcount\$";
270 $type = "data8";
271
272 if ($is_module eq "0") {
273 $cc .= " -mconstant-gp";
274 }
9be12f9b
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275} elsif ($arch eq "sparc64") {
276 # In the objdump output there are giblets like:
277 # 0000000000000000 <igmp_net_exit-0x18>:
278 # As there's some data blobs that get emitted into the
279 # text section before the first instructions and the first
280 # real symbols. We don't want to match that, so to combat
281 # this we use '\w' so we'll match just plain symbol names,
282 # and not those that also include hex offsets inside of the
283 # '<>' brackets. Actually the generic function_regex setting
284 # could safely use this too.
285 $function_regex = "^([0-9a-fA-F]+)\\s+<(\\w*?)>:";
286
287 # Sparc64 calls '_mcount' instead of plain 'mcount'.
288 $mcount_regex = "^\\s*([0-9a-fA-F]+):.*\\s_mcount\$";
289
290 $alignment = 8;
291 $type = ".xword";
292 $ld .= " -m elf64_sparc";
293 $cc .= " -m64";
294 $objcopy .= " -O elf64-sparc";
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295} elsif ($arch eq "mips") {
296 # To enable module support, we need to enable the -mlong-calls option
297 # of gcc for module, after using this option, we can not get the real
298 # offset of the calling to _mcount, but the offset of the lui
299 # instruction or the addiu one. herein, we record the address of the
300 # first one, and then we can replace this instruction by a branch
301 # instruction to jump over the profiling function to filter the
302 # indicated functions, or swith back to the lui instruction to trace
303 # them, which means dynamic tracing.
304 #
305 # c: 3c030000 lui v1,0x0
306 # c: R_MIPS_HI16 _mcount
307 # c: R_MIPS_NONE *ABS*
308 # c: R_MIPS_NONE *ABS*
309 # 10: 64630000 daddiu v1,v1,0
310 # 10: R_MIPS_LO16 _mcount
311 # 10: R_MIPS_NONE *ABS*
312 # 10: R_MIPS_NONE *ABS*
313 # 14: 03e0082d move at,ra
314 # 18: 0060f809 jalr v1
315 #
316 # for the kernel:
317 #
318 # 10: 03e0082d move at,ra
319 # 14: 0c000000 jal 0 <loongson_halt>
320 # 14: R_MIPS_26 _mcount
321 # 14: R_MIPS_NONE *ABS*
322 # 14: R_MIPS_NONE *ABS*
323 # 18: 00020021 nop
324 if ($is_module eq "0") {
325 $mcount_regex = "^\\s*([0-9a-fA-F]+):.*\\s_mcount\$";
326 } else {
327 $mcount_regex = "^\\s*([0-9a-fA-F]+): R_MIPS_HI16\\s+_mcount\$";
328 }
329 $objdump .= " -Melf-trad".$endian."mips ";
330
331 if ($endian eq "big") {
332 $endian = " -EB ";
333 $ld .= " -melf".$bits."btsmip";
334 } else {
335 $endian = " -EL ";
336 $ld .= " -melf".$bits."ltsmip";
337 }
338
339 $cc .= " -mno-abicalls -fno-pic -mabi=" . $bits . $endian;
340 $ld .= $endian;
341
342 if ($bits == 64) {
343 $function_regex =
344 "^([0-9a-fA-F]+)\\s+<(.|[^\$]L.*?|\$[^L].*?|[^\$][^L].*?)>:";
345 $type = ".dword";
346 }
7d241ff0
MS
347} elsif ($arch eq "microblaze") {
348 # Microblaze calls '_mcount' instead of plain 'mcount'.
349 $mcount_regex = "^\\s*([0-9a-fA-F]+):.*\\s_mcount\$";
8da3821b
SR
350} else {
351 die "Arch $arch is not supported with CONFIG_FTRACE_MCOUNT_RECORD";
352}
353
354my $text_found = 0;
355my $read_function = 0;
356my $opened = 0;
8da3821b
SR
357my $mcount_section = "__mcount_loc";
358
359my $dirname;
360my $filename;
361my $prefix;
362my $ext;
363
364if ($inputfile =~ m,^(.*)/([^/]*)$,) {
365 $dirname = $1;
366 $filename = $2;
367} else {
368 $dirname = ".";
369 $filename = $inputfile;
370}
371
372if ($filename =~ m,^(.*)(\.\S),) {
373 $prefix = $1;
374 $ext = $2;
375} else {
376 $prefix = $filename;
377 $ext = "";
378}
379
380my $mcount_s = $dirname . "/.tmp_mc_" . $prefix . ".s";
381my $mcount_o = $dirname . "/.tmp_mc_" . $prefix . ".o";
382
7b7edc27 383check_objcopy();
f2f8458e 384
8da3821b 385#
8feff1ca 386# Step 1: find all the local (static functions) and weak symbols.
306dcf47 387# 't' is local, 'w/W' is weak
8da3821b
SR
388#
389open (IN, "$nm $inputfile|") || die "error running $nm";
390while (<IN>) {
306dcf47 391 if (/$local_regex/) {
8da3821b 392 $locals{$1} = 1;
306dcf47 393 } elsif (/$weak_regex/) {
8feff1ca 394 $weak{$2} = $1;
8da3821b
SR
395 }
396}
397close(IN);
398
8feff1ca
SR
399my @offsets; # Array of offsets of mcount callers
400my $ref_func; # reference function to use for offsets
401my $offset = 0; # offset of ref_func to section beginning
402
403##
404# update_funcs - print out the current mcount callers
405#
406# Go through the list of offsets to callers and write them to
407# the output file in a format that can be read by an assembler.
408#
409sub update_funcs
410{
6092858c 411 return unless ($ref_func and @offsets);
8feff1ca 412
c4b8ac2c
LH
413 # Sanity check on weak function. A weak function may be overwritten by
414 # another function of the same name, making all these offsets incorrect.
8feff1ca 415 if (defined $weak{$ref_func}) {
c4b8ac2c 416 die "$inputfile: ERROR: referencing weak function" .
8feff1ca 417 " $ref_func for mcount\n";
8feff1ca
SR
418 }
419
420 # is this function static? If so, note this fact.
421 if (defined $locals{$ref_func}) {
f2f8458e
SR
422
423 # only use locals if objcopy supports globalize-symbols
7b7edc27 424 if (!$can_use_local) {
f2f8458e
SR
425 return;
426 }
8feff1ca
SR
427 $convert{$ref_func} = 1;
428 }
429
430 # Loop through all the mcount caller offsets and print a reference
431 # to the caller based from the ref_func.
dc4f8845
WS
432 if (!$opened) {
433 open(FILE, ">$mcount_s") || die "can't create $mcount_s\n";
434 $opened = 1;
435 print FILE "\t.section $mcount_section,\"a\",$section_type\n";
436 print FILE "\t.align $alignment\n" if (defined($alignment));
437 }
438 foreach my $cur_offset (@offsets) {
439 printf FILE "\t%s %s + %d\n", $type, $ref_func, $cur_offset - $offset;
8feff1ca
SR
440 }
441}
442
8da3821b
SR
443#
444# Step 2: find the sections and mcount call sites
445#
b43f7093 446open(IN, "$objdump -hdr $inputfile|") || die "error running $objdump";
8da3821b 447
8feff1ca
SR
448my $text;
449
db24c7dc
LH
450
451# read headers first
b43f7093
SR
452my $read_headers = 1;
453
8da3821b 454while (<IN>) {
db24c7dc
LH
455
456 if ($read_headers && /$mcount_section/) {
457 #
458 # Somehow the make process can execute this script on an
459 # object twice. If it does, we would duplicate the mcount
460 # section and it will cause the function tracer self test
461 # to fail. Check if the mcount section exists, and if it does,
462 # warn and exit.
463 #
464 print STDERR "ERROR: $mcount_section already in $inputfile\n" .
465 "\tThis may be an indication that your build is corrupted.\n" .
466 "\tDelete $inputfile and try again. If the same object file\n" .
467 "\tstill causes an issue, then disable CONFIG_DYNAMIC_FTRACE.\n";
468 exit(-1);
469 }
470
8da3821b
SR
471 # is it a section?
472 if (/$section_regex/) {
b43f7093 473 $read_headers = 0;
34698bcb
SR
474
475 # Only record text sections that we know are safe
dfaa9e2c 476 $read_function = defined($text_sections{$1});
8feff1ca 477 # print out any recorded offsets
6092858c 478 update_funcs();
8feff1ca
SR
479
480 # reset all markers and arrays
8da3821b 481 $text_found = 0;
8feff1ca
SR
482 undef($ref_func);
483 undef(@offsets);
484
8da3821b
SR
485 # section found, now is this a start of a function?
486 } elsif ($read_function && /$function_regex/) {
8da3821b 487 $text_found = 1;
8feff1ca
SR
488 $text = $2;
489
490 # if this is either a local function or a weak function
491 # keep looking for functions that are global that
492 # we can use safely.
493 if (!defined($locals{$text}) && !defined($weak{$text})) {
494 $ref_func = $text;
495 $read_function = 0;
bd171d5f 496 $offset = hex $1;
8feff1ca
SR
497 } else {
498 # if we already have a function, and this is weak, skip it
3f6e968e
SR
499 if (!defined($ref_func) && !defined($weak{$text}) &&
500 # PPC64 can have symbols that start with .L and
501 # gcc considers these special. Don't use them!
502 $text !~ /^\.L/) {
8feff1ca 503 $ref_func = $text;
bd171d5f 504 $offset = hex $1;
8feff1ca 505 }
8da3821b 506 }
8feff1ca 507 }
8feff1ca
SR
508 # is this a call site to mcount? If so, record it to print later
509 if ($text_found && /$mcount_regex/) {
dc4f8845 510 push(@offsets, hex $1);
8da3821b
SR
511 }
512}
513
8feff1ca 514# dump out anymore offsets that may have been found
6092858c 515update_funcs();
8feff1ca 516
8da3821b
SR
517# If we did not find any mcount callers, we are done (do nothing).
518if (!$opened) {
519 exit(0);
520}
521
522close(FILE);
523
524#
525# Step 3: Compile the file that holds the list of call sites to mcount.
526#
527`$cc -o $mcount_o -c $mcount_s`;
528
529my @converts = keys %convert;
530
531#
532# Step 4: Do we have sections that started with local functions?
533#
534if ($#converts >= 0) {
535 my $globallist = "";
536 my $locallist = "";
537
538 foreach my $con (@converts) {
539 $globallist .= " --globalize-symbol $con";
540 $locallist .= " --localize-symbol $con";
541 }
542
543 my $globalobj = $dirname . "/.tmp_gl_" . $filename;
544 my $globalmix = $dirname . "/.tmp_mx_" . $filename;
545
546 #
547 # Step 5: set up each local function as a global
548 #
549 `$objcopy $globallist $inputfile $globalobj`;
550
551 #
552 # Step 6: Link the global version to our list.
553 #
554 `$ld -r $globalobj $mcount_o -o $globalmix`;
555
556 #
557 # Step 7: Convert the local functions back into local symbols
558 #
559 `$objcopy $locallist $globalmix $inputfile`;
560
561 # Remove the temp files
562 `$rm $globalobj $globalmix`;
563
564} else {
565
566 my $mix = $dirname . "/.tmp_mx_" . $filename;
567
568 #
569 # Step 8: Link the object with our list of call sites object.
570 #
571 `$ld -r $inputfile $mcount_o -o $mix`;
572
573 #
574 # Step 9: Move the result back to the original object.
575 #
576 `$mv $mix $inputfile`;
577}
578
579# Clean up the temp files
580`$rm $mcount_o $mcount_s`;
581
582exit(0);