elfcpp/:
[deliverable/binutils-gdb.git] / gold / options.cc
1 // options.c -- handle command line options for gold
2
3 // Copyright 2006, 2007, 2008 Free Software Foundation, Inc.
4 // Written by Ian Lance Taylor <iant@google.com>.
5
6 // This file is part of gold.
7
8 // This program is free software; you can redistribute it and/or modify
9 // it under the terms of the GNU General Public License as published by
10 // the Free Software Foundation; either version 3 of the License, or
11 // (at your option) any later version.
12
13 // This program is distributed in the hope that it will be useful,
14 // but WITHOUT ANY WARRANTY; without even the implied warranty of
15 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 // GNU General Public License for more details.
17
18 // You should have received a copy of the GNU General Public License
19 // along with this program; if not, write to the Free Software
20 // Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
21 // MA 02110-1301, USA.
22
23 #include "gold.h"
24
25 #include <cstdlib>
26 #include <cstring>
27 #include <vector>
28 #include <iostream>
29 #include <sys/stat.h>
30 #include "filenames.h"
31 #include "libiberty.h"
32 #include "demangle.h"
33 #include "../bfd/bfdver.h"
34
35 #include "debug.h"
36 #include "script.h"
37 #include "target-select.h"
38 #include "options.h"
39
40 namespace gold
41 {
42
43 General_options
44 Position_dependent_options::default_options_;
45
46 namespace options
47 {
48
49 // This global variable is set up as General_options is constructed.
50 static std::vector<const One_option*> registered_options;
51
52 // These are set up at the same time -- the variables that accept one
53 // dash, two, or require -z. A single variable may be in more than
54 // one of thes data structures.
55 typedef Unordered_map<std::string, One_option*> Option_map;
56 static Option_map* long_options = NULL;
57 static One_option* short_options[128];
58
59 void
60 One_option::register_option()
61 {
62 registered_options.push_back(this);
63
64 // We can't make long_options a static Option_map because we can't
65 // guarantee that will be initialized before register_option() is
66 // first called.
67 if (long_options == NULL)
68 long_options = new Option_map;
69
70 // TWO_DASHES means that two dashes are preferred, but one is ok too.
71 if (!this->longname.empty())
72 (*long_options)[this->longname] = this;
73
74 const int shortname_as_int = static_cast<int>(this->shortname);
75 gold_assert(shortname_as_int >= 0 && shortname_as_int < 128);
76 if (this->shortname != '\0')
77 short_options[shortname_as_int] = this;
78 }
79
80 void
81 One_option::print() const
82 {
83 bool comma = false;
84 printf(" ");
85 int len = 2;
86 if (this->shortname != '\0')
87 {
88 len += printf("-%c", this->shortname);
89 if (this->helparg)
90 {
91 // -z takes long-names only.
92 gold_assert(this->dashes != DASH_Z);
93 len += printf(" %s", gettext(this->helparg));
94 }
95 comma = true;
96 }
97 if (!this->longname.empty()
98 && !(this->longname[0] == this->shortname
99 && this->longname[1] == '\0'))
100 {
101 if (comma)
102 len += printf(", ");
103 switch (this->dashes)
104 {
105 case options::ONE_DASH: case options::EXACTLY_ONE_DASH:
106 len += printf("-");
107 break;
108 case options::TWO_DASHES: case options::EXACTLY_TWO_DASHES:
109 len += printf("--");
110 break;
111 case options::DASH_Z:
112 len += printf("-z ");
113 break;
114 default:
115 gold_unreachable();
116 }
117 len += printf("%s", this->longname.c_str());
118 if (this->helparg)
119 {
120 // For most options, we print "--frob FOO". But for -z
121 // we print "-z frob=FOO".
122 len += printf("%c%s", this->dashes == options::DASH_Z ? '=' : ' ',
123 gettext(this->helparg));
124 }
125 }
126
127 if (len >= 30)
128 {
129 printf("\n");
130 len = 0;
131 }
132 for (; len < 30; ++len)
133 std::putchar(' ');
134
135 // TODO: if we're boolean, add " (default)" when appropriate.
136 printf("%s\n", gettext(this->helpstring));
137 }
138
139 void
140 help()
141 {
142 printf(_("Usage: %s [options] file...\nOptions:\n"), gold::program_name);
143
144 std::vector<const One_option*>::const_iterator it;
145 for (it = registered_options.begin(); it != registered_options.end(); ++it)
146 (*it)->print();
147
148 // config.guess and libtool.m4 look in ld --help output for the
149 // string "supported targets".
150 printf(_("%s: supported targets:"), gold::program_name);
151 std::vector<const char*> supported_names;
152 gold::supported_target_names(&supported_names);
153 for (std::vector<const char*>::const_iterator p = supported_names.begin();
154 p != supported_names.end();
155 ++p)
156 printf(" %s", *p);
157 printf("\n");
158
159 // REPORT_BUGS_TO is defined in bfd/bfdver.h.
160 const char* report = REPORT_BUGS_TO;
161 if (*report != '\0')
162 printf(_("Report bugs to %s\n"), report);
163 }
164
165 // For bool, arg will be NULL (boolean options take no argument);
166 // we always just set to true.
167 void
168 parse_bool(const char*, const char*, bool* retval)
169 {
170 *retval = true;
171 }
172
173 void
174 parse_uint(const char* option_name, const char* arg, int* retval)
175 {
176 char* endptr;
177 *retval = strtol(arg, &endptr, 0);
178 if (*endptr != '\0' || retval < 0)
179 gold_fatal(_("%s: invalid option value (expected an integer): %s"),
180 option_name, arg);
181 }
182
183 void
184 parse_uint64(const char* option_name, const char* arg, uint64_t *retval)
185 {
186 char* endptr;
187 *retval = strtoull(arg, &endptr, 0);
188 if (*endptr != '\0')
189 gold_fatal(_("%s: invalid option value (expected an integer): %s"),
190 option_name, arg);
191 }
192
193 void
194 parse_double(const char* option_name, const char* arg, double* retval)
195 {
196 char* endptr;
197 *retval = strtod(arg, &endptr);
198 if (*endptr != '\0')
199 gold_fatal(_("%s: invalid option value "
200 "(expected a floating point number): %s"),
201 option_name, arg);
202 }
203
204 void
205 parse_string(const char* option_name, const char* arg, const char** retval)
206 {
207 if (*arg == '\0')
208 gold_fatal(_("%s: must take a non-empty argument"), option_name);
209 *retval = arg;
210 }
211
212 void
213 parse_optional_string(const char*, const char* arg, const char** retval)
214 {
215 *retval = arg;
216 }
217
218 void
219 parse_dirlist(const char*, const char* arg, Dir_list* retval)
220 {
221 retval->push_back(Search_directory(arg, false));
222 }
223
224 void
225 parse_set(const char*, const char* arg, String_set* retval)
226 {
227 retval->insert(std::string(arg));
228 }
229
230 void
231 parse_choices(const char* option_name, const char* arg, const char** retval,
232 const char* choices[], int num_choices)
233 {
234 for (int i = 0; i < num_choices; i++)
235 if (strcmp(choices[i], arg) == 0)
236 {
237 *retval = arg;
238 return;
239 }
240
241 // If we get here, the user did not enter a valid choice, so we die.
242 std::string choices_list;
243 for (int i = 0; i < num_choices; i++)
244 {
245 choices_list += choices[i];
246 if (i != num_choices - 1)
247 choices_list += ", ";
248 }
249 gold_fatal(_("%s: must take one of the following arguments: %s"),
250 option_name, choices_list.c_str());
251 }
252
253 } // End namespace options.
254
255 // Define the handler for "special" options (set via DEFINE_special).
256
257 void
258 General_options::parse_help(const char*, const char*, Command_line*)
259 {
260 options::help();
261 ::exit(EXIT_SUCCESS);
262 }
263
264 void
265 General_options::parse_version(const char* opt, const char*, Command_line*)
266 {
267 gold::print_version(opt[0] == '-' && opt[1] == 'v');
268 ::exit(EXIT_SUCCESS);
269 }
270
271 void
272 General_options::parse_V(const char*, const char*, Command_line*)
273 {
274 gold::print_version(true);
275 printf(_(" Supported targets:\n"));
276 std::vector<const char*> supported_names;
277 gold::supported_target_names(&supported_names);
278 for (std::vector<const char*>::const_iterator p = supported_names.begin();
279 p != supported_names.end();
280 ++p)
281 printf(" %s\n", *p);
282 }
283
284 void
285 General_options::parse_defsym(const char*, const char* arg,
286 Command_line* cmdline)
287 {
288 cmdline->script_options().define_symbol(arg);
289 }
290
291 void
292 General_options::parse_library(const char*, const char* arg,
293 Command_line* cmdline)
294 {
295 Input_file_argument file(arg, true, "", false, *this);
296 cmdline->inputs().add_file(file);
297 }
298
299 void
300 General_options::parse_R(const char* option, const char* arg,
301 Command_line* cmdline)
302 {
303 struct stat s;
304 if (::stat(arg, &s) != 0 || S_ISDIR(s.st_mode))
305 this->add_to_rpath(arg);
306 else
307 this->parse_just_symbols(option, arg, cmdline);
308 }
309
310 void
311 General_options::parse_just_symbols(const char*, const char* arg,
312 Command_line* cmdline)
313 {
314 Input_file_argument file(arg, false, "", true, *this);
315 cmdline->inputs().add_file(file);
316 }
317
318 void
319 General_options::parse_static(const char*, const char*, Command_line*)
320 {
321 this->set_static(true);
322 }
323
324 void
325 General_options::parse_script(const char*, const char* arg,
326 Command_line* cmdline)
327 {
328 if (!read_commandline_script(arg, cmdline))
329 gold::gold_fatal(_("unable to parse script file %s"), arg);
330 }
331
332 void
333 General_options::parse_version_script(const char*, const char* arg,
334 Command_line* cmdline)
335 {
336 if (!read_version_script(arg, cmdline))
337 gold::gold_fatal(_("unable to parse version script file %s"), arg);
338 }
339
340 void
341 General_options::parse_start_group(const char*, const char*,
342 Command_line* cmdline)
343 {
344 cmdline->inputs().start_group();
345 }
346
347 void
348 General_options::parse_end_group(const char*, const char*,
349 Command_line* cmdline)
350 {
351 cmdline->inputs().end_group();
352 }
353
354 } // End namespace gold.
355
356 namespace
357 {
358
359 void
360 usage()
361 {
362 fprintf(stderr,
363 _("%s: use the --help option for usage information\n"),
364 gold::program_name);
365 ::exit(EXIT_FAILURE);
366 }
367
368 void
369 usage(const char* msg, const char *opt)
370 {
371 fprintf(stderr,
372 _("%s: %s: %s\n"),
373 gold::program_name, opt, msg);
374 usage();
375 }
376
377 // Recognize input and output target names. The GNU linker accepts
378 // these with --format and --oformat. This code is intended to be
379 // minimally compatible. In practice for an ELF target this would be
380 // the same target as the input files; that name always start with
381 // "elf". Non-ELF targets would be "srec", "symbolsrec", "tekhex",
382 // "binary", "ihex".
383
384 gold::General_options::Object_format
385 string_to_object_format(const char* arg)
386 {
387 if (strncmp(arg, "elf", 3) == 0)
388 return gold::General_options::OBJECT_FORMAT_ELF;
389 else if (strcmp(arg, "binary") == 0)
390 return gold::General_options::OBJECT_FORMAT_BINARY;
391 else
392 {
393 gold::gold_error(_("format '%s' not supported; treating as elf "
394 "(supported formats: elf, binary)"),
395 arg);
396 return gold::General_options::OBJECT_FORMAT_ELF;
397 }
398 }
399
400 // If the default sysroot is relocatable, try relocating it based on
401 // the prefix FROM.
402
403 char*
404 get_relative_sysroot(const char* from)
405 {
406 char* path = make_relative_prefix(gold::program_name, from,
407 TARGET_SYSTEM_ROOT);
408 if (path != NULL)
409 {
410 struct stat s;
411 if (::stat(path, &s) == 0 && S_ISDIR(s.st_mode))
412 return path;
413 free(path);
414 }
415
416 return NULL;
417 }
418
419 // Return the default sysroot. This is set by the --with-sysroot
420 // option to configure. Note we do not free the return value of
421 // get_relative_sysroot, which is a small memory leak, but is
422 // necessary since we store this pointer directly in General_options.
423
424 const char*
425 get_default_sysroot()
426 {
427 const char* sysroot = TARGET_SYSTEM_ROOT;
428 if (*sysroot == '\0')
429 return NULL;
430
431 if (TARGET_SYSTEM_ROOT_RELOCATABLE)
432 {
433 char* path = get_relative_sysroot(BINDIR);
434 if (path == NULL)
435 path = get_relative_sysroot(TOOLBINDIR);
436 if (path != NULL)
437 return path;
438 }
439
440 return sysroot;
441 }
442
443 // Parse a long option. Such options have the form
444 // <-|--><option>[=arg]. If "=arg" is not present but the option
445 // takes an argument, the next word is taken to the be the argument.
446 // If equals_only is set, then only the <option>=<arg> form is
447 // accepted, not the <option><space><arg> form. Returns a One_option
448 // struct or NULL if argv[i] cannot be parsed as a long option. In
449 // the not-NULL case, *arg is set to the option's argument (NULL if
450 // the option takes no argument), and *i is advanced past this option.
451 // NOTE: it is safe for argv and arg to point to the same place.
452 gold::options::One_option*
453 parse_long_option(int argc, const char** argv, bool equals_only,
454 const char** arg, int* i)
455 {
456 const char* const this_argv = argv[*i];
457
458 const char* equals = strchr(this_argv, '=');
459 const char* option_start = this_argv + strspn(this_argv, "-");
460 std::string option(option_start,
461 equals ? equals - option_start : strlen(option_start));
462
463 gold::options::Option_map::iterator it
464 = gold::options::long_options->find(option);
465 if (it == gold::options::long_options->end())
466 return NULL;
467
468 gold::options::One_option* retval = it->second;
469
470 // If the dash-count doesn't match, we fail.
471 if (this_argv[0] != '-') // no dashes at all: had better be "-z <longopt>"
472 {
473 if (retval->dashes != gold::options::DASH_Z)
474 return NULL;
475 }
476 else if (this_argv[1] != '-') // one dash
477 {
478 if (retval->dashes != gold::options::ONE_DASH
479 && retval->dashes != gold::options::EXACTLY_ONE_DASH
480 && retval->dashes != gold::options::TWO_DASHES)
481 return NULL;
482 }
483 else // two dashes (or more!)
484 {
485 if (retval->dashes != gold::options::TWO_DASHES
486 && retval->dashes != gold::options::EXACTLY_TWO_DASHES
487 && retval->dashes != gold::options::ONE_DASH)
488 return NULL;
489 }
490
491 // Now that we know the option is good (or else bad in a way that
492 // will cause us to die), increment i to point past this argv.
493 ++(*i);
494
495 // Figure out the option's argument, if any.
496 if (!retval->takes_argument())
497 {
498 if (equals)
499 usage(_("unexpected argument"), this_argv);
500 else
501 *arg = NULL;
502 }
503 else
504 {
505 if (equals)
506 *arg = equals + 1;
507 else if (retval->takes_optional_argument())
508 *arg = retval->default_value;
509 else if (*i < argc && !equals_only)
510 *arg = argv[(*i)++];
511 else
512 usage(_("missing argument"), this_argv);
513 }
514
515 return retval;
516 }
517
518 // Parse a short option. Such options have the form -<option>[arg].
519 // If "arg" is not present but the option takes an argument, the next
520 // word is taken to the be the argument. If the option does not take
521 // an argument, it may be followed by another short option. Returns a
522 // One_option struct or NULL if argv[i] cannot be parsed as a short
523 // option. In the not-NULL case, *arg is set to the option's argument
524 // (NULL if the option takes no argument), and *i is advanced past
525 // this option. This function keeps *i the same if we parsed a short
526 // option that does not take an argument, that looks to be followed by
527 // another short option in the same word.
528 gold::options::One_option*
529 parse_short_option(int argc, const char** argv, int pos_in_argv_i,
530 const char** arg, int* i)
531 {
532 const char* const this_argv = argv[*i];
533
534 if (this_argv[0] != '-')
535 return NULL;
536
537 // We handle -z as a special case.
538 static gold::options::One_option dash_z("", gold::options::DASH_Z,
539 'z', "", "-z", "Z-OPTION", false,
540 NULL);
541 gold::options::One_option* retval = NULL;
542 if (this_argv[pos_in_argv_i] == 'z')
543 retval = &dash_z;
544 else
545 {
546 const int char_as_int = static_cast<int>(this_argv[pos_in_argv_i]);
547 if (char_as_int > 0 && char_as_int < 128)
548 retval = gold::options::short_options[char_as_int];
549 }
550
551 if (retval == NULL)
552 return NULL;
553
554 // Figure out the option's argument, if any.
555 if (!retval->takes_argument())
556 {
557 *arg = NULL;
558 // We only advance past this argument if it's the only one in argv.
559 if (this_argv[pos_in_argv_i + 1] == '\0')
560 ++(*i);
561 }
562 else
563 {
564 // If we take an argument, we'll eat up this entire argv entry.
565 ++(*i);
566 if (this_argv[pos_in_argv_i + 1] != '\0')
567 *arg = this_argv + pos_in_argv_i + 1;
568 else if (retval->takes_optional_argument())
569 *arg = retval->default_value;
570 else if (*i < argc)
571 *arg = argv[(*i)++];
572 else
573 usage(_("missing argument"), this_argv);
574 }
575
576 // If we're a -z option, we need to parse our argument as a
577 // long-option, e.g. "-z stacksize=8192".
578 if (retval == &dash_z)
579 {
580 int dummy_i = 0;
581 const char* dash_z_arg = *arg;
582 retval = parse_long_option(1, arg, true, arg, &dummy_i);
583 if (retval == NULL)
584 usage(_("unknown -z option"), dash_z_arg);
585 }
586
587 return retval;
588 }
589
590 } // End anonymous namespace.
591
592 namespace gold
593 {
594
595 General_options::General_options()
596 : execstack_status_(General_options::EXECSTACK_FROM_INPUT), static_(false),
597 do_demangle_(false)
598 {
599 }
600
601 General_options::Object_format
602 General_options::format_enum() const
603 {
604 return string_to_object_format(this->format());
605 }
606
607 General_options::Object_format
608 General_options::oformat_enum() const
609 {
610 return string_to_object_format(this->oformat());
611 }
612
613 // Add the sysroot, if any, to the search paths.
614
615 void
616 General_options::add_sysroot()
617 {
618 if (this->sysroot() == NULL || this->sysroot()[0] == '\0')
619 {
620 this->set_sysroot(get_default_sysroot());
621 if (this->sysroot() == NULL || this->sysroot()[0] == '\0')
622 return;
623 }
624
625 char* canonical_sysroot = lrealpath(this->sysroot());
626
627 for (Dir_list::iterator p = this->library_path_.value.begin();
628 p != this->library_path_.value.end();
629 ++p)
630 p->add_sysroot(this->sysroot(), canonical_sysroot);
631
632 free(canonical_sysroot);
633 }
634
635 // Set up variables and other state that isn't set up automatically by
636 // the parse routine, and ensure options don't contradict each other
637 // and are otherwise kosher.
638
639 void
640 General_options::finalize()
641 {
642 // Normalize the strip modifiers. They have a total order:
643 // strip_all > strip_debug > strip_non_line > strip_debug_gdb.
644 // If one is true, set all beneath it to true as well.
645 if (this->strip_all())
646 this->set_strip_debug(true);
647 if (this->strip_debug())
648 this->set_strip_debug_non_line(true);
649 if (this->strip_debug_non_line())
650 this->set_strip_debug_gdb(true);
651
652 // If the user specifies both -s and -r, convert the -s to -S.
653 // -r requires us to keep externally visible symbols!
654 if (this->strip_all() && this->relocatable())
655 {
656 this->set_strip_all(false);
657 gold_assert(this->strip_debug());
658 }
659
660 // For us, -dc and -dp are synonyms for --define-common.
661 if (this->dc())
662 this->set_define_common(true);
663 if (this->dp())
664 this->set_define_common(true);
665
666 // We also set --define-common if we're not relocatable, as long as
667 // the user didn't explicitly ask for something different.
668 if (!this->user_set_define_common())
669 this->set_define_common(!this->relocatable());
670
671 // execstack_status_ is a three-state variable; update it based on
672 // -z [no]execstack.
673 if (this->execstack())
674 this->set_execstack_status(EXECSTACK_YES);
675 else if (this->noexecstack())
676 this->set_execstack_status(EXECSTACK_NO);
677
678 // Handle the optional argument for --demangle.
679 if (this->user_set_demangle())
680 {
681 this->set_do_demangle(true);
682 const char* style = this->demangle();
683 if (*style != '\0')
684 {
685 enum demangling_styles style_code;
686
687 style_code = cplus_demangle_name_to_style(style);
688 if (style_code == unknown_demangling)
689 gold_fatal("unknown demangling style '%s'", style);
690 cplus_demangle_set_style(style_code);
691 }
692 }
693 else if (this->user_set_no_demangle())
694 this->set_do_demangle(false);
695 else
696 {
697 // Testing COLLECT_NO_DEMANGLE makes our default demangling
698 // behaviour identical to that of gcc's linker wrapper.
699 this->set_do_demangle(getenv("COLLECT_NO_DEMANGLE") == NULL);
700 }
701
702 // -M is equivalent to "-Map -".
703 if (this->print_map() && !this->user_set_Map())
704 {
705 this->set_Map("-");
706 this->set_user_set_Map();
707 }
708
709 // If --thread_count is specified, it applies to
710 // --thread-count-{initial,middle,final}, though it doesn't override
711 // them.
712 if (this->thread_count() > 0 && this->thread_count_initial() == 0)
713 this->set_thread_count_initial(this->thread_count());
714 if (this->thread_count() > 0 && this->thread_count_middle() == 0)
715 this->set_thread_count_middle(this->thread_count());
716 if (this->thread_count() > 0 && this->thread_count_final() == 0)
717 this->set_thread_count_final(this->thread_count());
718
719 // Let's warn if you set the thread-count but we're going to ignore it.
720 #ifndef ENABLE_THREADS
721 if (this->threads())
722 {
723 gold_warning(_("ignoring --threads: "
724 "%s was compiled without thread support"),
725 program_name);
726 this->set_threads(false);
727 }
728 if (this->thread_count() > 0 || this->thread_count_initial() > 0
729 || this->thread_count_middle() > 0 || this->thread_count_final() > 0)
730 gold_warning(_("ignoring --thread-count: "
731 "%s was compiled without thread support"),
732 program_name);
733 #endif
734
735 if (this->user_set_Y())
736 {
737 std::string s = this->Y();
738 if (s.compare(0, 2, "P,") == 0)
739 s.erase(0, 2);
740
741 size_t pos = 0;
742 size_t next_pos;
743 do
744 {
745 next_pos = s.find(':', pos);
746 size_t len = (next_pos == std::string::npos
747 ? next_pos
748 : next_pos - pos);
749 if (len != 0)
750 this->add_to_library_path_with_sysroot(s.substr(pos, len).c_str());
751 pos = next_pos + 1;
752 }
753 while (next_pos != std::string::npos);
754 }
755 else
756 {
757 // Even if they don't specify it, we add -L /lib and -L /usr/lib.
758 // FIXME: We should only do this when configured in native mode.
759 this->add_to_library_path_with_sysroot("/lib");
760 this->add_to_library_path_with_sysroot("/usr/lib");
761 }
762
763 // Normalize library_path() by adding the sysroot to all directories
764 // in the path, as appropriate.
765 this->add_sysroot();
766
767 // Now that we've normalized the options, check for contradictory ones.
768 if (this->shared() && this->relocatable())
769 gold_fatal(_("-shared and -r are incompatible"));
770
771 if (this->oformat_enum() != General_options::OBJECT_FORMAT_ELF
772 && (this->shared() || this->relocatable()))
773 gold_fatal(_("binary output format not compatible with -shared or -r"));
774
775 if (this->user_set_hash_bucket_empty_fraction()
776 && (this->hash_bucket_empty_fraction() < 0.0
777 || this->hash_bucket_empty_fraction() >= 1.0))
778 gold_fatal(_("--hash-bucket-empty-fraction value %g out of range "
779 "[0.0, 1.0)"),
780 this->hash_bucket_empty_fraction());
781
782 // FIXME: we can/should be doing a lot more sanity checking here.
783 }
784
785 // Search_directory methods.
786
787 // This is called if we have a sysroot. Apply the sysroot if
788 // appropriate. Record whether the directory is in the sysroot.
789
790 void
791 Search_directory::add_sysroot(const char* sysroot,
792 const char* canonical_sysroot)
793 {
794 gold_assert(*sysroot != '\0');
795 if (this->put_in_sysroot_)
796 {
797 if (!IS_DIR_SEPARATOR(this->name_[0])
798 && !IS_DIR_SEPARATOR(sysroot[strlen(sysroot) - 1]))
799 this->name_ = '/' + this->name_;
800 this->name_ = sysroot + this->name_;
801 this->is_in_sysroot_ = true;
802 }
803 else
804 {
805 // Check whether this entry is in the sysroot. To do this
806 // correctly, we need to use canonical names. Otherwise we will
807 // get confused by the ../../.. paths that gcc tends to use.
808 char* canonical_name = lrealpath(this->name_.c_str());
809 int canonical_name_len = strlen(canonical_name);
810 int canonical_sysroot_len = strlen(canonical_sysroot);
811 if (canonical_name_len > canonical_sysroot_len
812 && IS_DIR_SEPARATOR(canonical_name[canonical_sysroot_len]))
813 {
814 canonical_name[canonical_sysroot_len] = '\0';
815 if (FILENAME_CMP(canonical_name, canonical_sysroot) == 0)
816 this->is_in_sysroot_ = true;
817 }
818 free(canonical_name);
819 }
820 }
821
822 // Input_arguments methods.
823
824 // Add a file to the list.
825
826 void
827 Input_arguments::add_file(const Input_file_argument& file)
828 {
829 if (!this->in_group_)
830 this->input_argument_list_.push_back(Input_argument(file));
831 else
832 {
833 gold_assert(!this->input_argument_list_.empty());
834 gold_assert(this->input_argument_list_.back().is_group());
835 this->input_argument_list_.back().group()->add_file(file);
836 }
837 }
838
839 // Start a group.
840
841 void
842 Input_arguments::start_group()
843 {
844 if (this->in_group_)
845 gold_fatal(_("May not nest groups"));
846 Input_file_group* group = new Input_file_group();
847 this->input_argument_list_.push_back(Input_argument(group));
848 this->in_group_ = true;
849 }
850
851 // End a group.
852
853 void
854 Input_arguments::end_group()
855 {
856 if (!this->in_group_)
857 gold_fatal(_("Group end without group start"));
858 this->in_group_ = false;
859 }
860
861 // Command_line options.
862
863 Command_line::Command_line()
864 {
865 }
866
867 // Process the command line options. For process_one_option, i is the
868 // index of argv to process next, and must be an option (that is,
869 // start with a dash). The return value is the index of the next
870 // option to process (i+1 or i+2, or argc to indicate processing is
871 // done). no_more_options is set to true if (and when) "--" is seen
872 // as an option.
873
874 int
875 Command_line::process_one_option(int argc, const char** argv, int i,
876 bool* no_more_options)
877 {
878 gold_assert(argv[i][0] == '-' && !(*no_more_options));
879
880 // If we are reading "--", then just set no_more_options and return.
881 if (argv[i][1] == '-' && argv[i][2] == '\0')
882 {
883 *no_more_options = true;
884 return i + 1;
885 }
886
887 int new_i = i;
888 options::One_option* option = NULL;
889 const char* arg = NULL;
890
891 // First, try to process argv as a long option.
892 option = parse_long_option(argc, argv, false, &arg, &new_i);
893 if (option)
894 {
895 option->reader->parse_to_value(argv[i], arg, this, &this->options_);
896 return new_i;
897 }
898
899 // Now, try to process argv as a short option. Since several short
900 // options can be combined in one argv, we may have to parse a lot
901 // until we're done reading this argv.
902 int pos_in_argv_i = 1;
903 while (new_i == i)
904 {
905 option = parse_short_option(argc, argv, pos_in_argv_i, &arg, &new_i);
906 if (!option)
907 break;
908 option->reader->parse_to_value(argv[i], arg, this, &this->options_);
909 ++pos_in_argv_i;
910 }
911 if (option)
912 return new_i;
913
914 // I guess it's neither a long option nor a short option.
915 usage(_("unknown option"), argv[i]);
916 return argc;
917 }
918
919
920 void
921 Command_line::process(int argc, const char** argv)
922 {
923 bool no_more_options = false;
924 int i = 0;
925 while (i < argc)
926 {
927 this->position_options_.copy_from_options(this->options());
928 if (no_more_options || argv[i][0] != '-')
929 {
930 Input_file_argument file(argv[i], false, "", false,
931 this->position_options_);
932 this->inputs_.add_file(file);
933 ++i;
934 }
935 else
936 i = process_one_option(argc, argv, i, &no_more_options);
937 }
938
939 if (this->inputs_.in_group())
940 {
941 fprintf(stderr, _("%s: missing group end\n"), program_name);
942 usage();
943 }
944
945 // Normalize the options and ensure they don't contradict each other.
946 this->options_.finalize();
947 }
948
949 } // End namespace gold.
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